Compare commits

..
Author SHA1 Message Date
jack ed105f311a refactor(router): make MessageRouter depend on NostrOutboxService; update ChatViewModel wiring 2025-08-26 21:27:55 +02:00
jack 8ebb7411a7 fix(nostr-inbox): initialize NostrInboxService inside @MainActor initializers to satisfy actor isolation 2025-08-26 21:20:51 +02:00
jack fb60c929eb refactor(nostr-outbox): add NostrOutboxService and migrate ChatViewModel geohash PM/ACK sends to it
Centralize Nostr geohash outbox (PM, DELIVERED, READ) into a service wrapping NostrTransport; inject into ChatViewModel and remove ad-hoc NostrTransport instantiations.
2025-08-26 21:19:49 +02:00
jack 678795adcf fix(nostr): mark NostrInboxService @MainActor and use NostrEvent type; resolve Swift 6 actor isolation errors 2025-08-26 21:13:40 +02:00
jack 37e973bf9f refactor(nostr): add NostrInboxService and route geohash/DM subscriptions through it; move de-dup away from ChatViewModel
- Introduce Services/NostrInboxService to centralize subscribe/unsubscribe + event de-dup.\n- Wire ChatViewModel resubscribeCurrentGeohash, switchLocationChannel, sampling, and global DM subscribe to use the service.\n- Remove ChatViewModel's local processedNostrEvents tracking.
2025-08-26 21:01:13 +02:00
jack 8c002b8942 fix(init): initialize autocompleteService in DI initializer to satisfy Swift init rules 2025-08-26 20:15:03 +02:00
jack 6533629362 refactor(init): add dependency-injected initializer for ChatViewModel to enable composition/testing
Provide an alternate initializer that accepts meshService, router, privateChatManager, unifiedPeerService, commandProcessor, and an optional ReadReceiptTracker. Keeps default init intact; both perform the same wiring and startup behavior.
2025-08-26 20:11:59 +02:00
jack dd4e2f6e86 refactor(hex+fingerprint): centralize SHA256 fingerprint helper; reuse PeerIDResolver in ID checks
- Move Data.sha256Fingerprint() to BinaryEncodingUtils for reuse; refactor NoiseEncryptionService to use it.\n- Replace manual short/full hex checks with PeerIDResolver in ChatViewModel, ContentView, and SecureIdentityStateManager.\n- Keep behavior identical; reduce ad-hoc string length/hex parsing.
2025-08-26 19:47:51 +02:00
jack 55187ac5c6 refactor(read-receipts): add ReadReceiptTracker and unify across VM + manager
Introduce Services/ReadReceiptTracker as single source of truth with persistence. Wire into ChatViewModel and PrivateChatManager, replacing duplicated sentReadReceipts sets and persistence logic. Add to Xcode targets (iOS/macOS).
2025-08-26 18:50:52 +02:00
2438 changed files with 11494 additions and 411468 deletions
-20
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@@ -1,20 +0,0 @@
# Prevent Github Languages stats skewing:
# Binaries and assets
**/*.xcframework/** linguist-vendored
**/*.xcassets/** linguist-vendored
# Generated files
**/*.pbxproj linguist-generated
**/*.storyboard linguist-generated
Package.resolved linguist-generated
# Downloaded CSVs
relays/online_relays_gps.csv linguist-vendored
# Docs
**/*.md linguist-documentation
# Configs
Configs/*.xcconfig linguist-documentation
**/*.plist linguist-documentation
-40
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@@ -1,40 +0,0 @@
name: Fetch GeoRelays Data
on:
schedule:
- cron: '0 6 * * 0'
workflow_dispatch:
permissions:
contents: write
jobs:
update-relay-data:
runs-on: ubuntu-latest
steps:
- name: Checkout repository
uses: actions/checkout@v4
with:
token: ${{ secrets.GITHUB_TOKEN }}
- name: Fetch GeoRelays
run: |
wget https://raw.githubusercontent.com/permissionlesstech/georelays/refs/heads/main/nostr_relays.csv
mv nostr_relays.csv ./relays/online_relays_gps.csv
- name: Check for changes
id: git-check
run: |
git diff --exit-code || echo "changes=true" >> $GITHUB_OUTPUT
- name: Commit and push changes
if: steps.git-check.outputs.changes == 'true'
run: |
git config --local user.email "action@github.com"
git config --local user.name "GitHub Action"
git add relays/online_relays_gps.csv
git commit -m "Automated update of relay data - $(date -u)"
git push
env:
GITHUB_TOKEN: ${{ secrets.GITHUB_TOKEN }}
-27
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@@ -1,27 +0,0 @@
name: Build & Test
on:
push:
branches:
- main
pull_request:
branches:
- main
jobs:
test:
name: Run Swift Tests
runs-on: macos-latest
steps:
- name: Checkout code
uses: actions/checkout@v5
- name: Set up Swift
uses: swift-actions/setup-swift@v2
- name: Build the package
run: swift build
- name: Run Tests
run: swift test --parallel
+4 -8
View File
@@ -9,6 +9,9 @@ plans/
CLAUDE.md CLAUDE.md
AGENTS.md AGENTS.md
## User settings
xcuserdata/
## compatibility with Xcode 8 and earlier (ignoring not required starting Xcode 9) ## compatibility with Xcode 8 and earlier (ignoring not required starting Xcode 9)
*.xcscmblueprint *.xcscmblueprint
*.xccheckout *.xccheckout
@@ -54,8 +57,7 @@ iOSInjectionProject/
## Xcode project ## Xcode project
*.xcodeproj/project.xcworkspace/ *.xcodeproj/project.xcworkspace/
## Xcode User settings *.xcodeproj/xcshareddata/
xcuserdata/
## Python ## Python
__pycache__/ __pycache__/
@@ -66,9 +68,6 @@ __pycache__/
*.tmp *.tmp
*.temp *.temp
## Cache
.cache/
# Local build results # Local build results
.Result*/ .Result*/
.Result*.xcresult/ .Result*.xcresult/
@@ -76,6 +75,3 @@ TestResult.xcresult/
*.xcresult/ *.xcresult/
build.log build.log
*.log *.log
# Local configs
Local.xcconfig
+3 -3
View File
@@ -37,7 +37,7 @@ This three-message pattern provides:
#### NoiseEncryptionService #### NoiseEncryptionService
The main service managing all Noise operations: The main service managing all Noise operations:
```swift ```swift
final class NoiseEncryptionService { class NoiseEncryptionService {
private let staticIdentityKey: Curve25519.KeyAgreement.PrivateKey private let staticIdentityKey: Curve25519.KeyAgreement.PrivateKey
private let sessionManager: NoiseSessionManager private let sessionManager: NoiseSessionManager
private let channelEncryption = NoiseChannelEncryption() private let channelEncryption = NoiseChannelEncryption()
@@ -47,7 +47,7 @@ final class NoiseEncryptionService {
#### NoiseSession #### NoiseSession
Individual session state for each peer: Individual session state for each peer:
```swift ```swift
final class NoiseSession { class NoiseSession {
private var handshakeState: NoiseHandshakeState? private var handshakeState: NoiseHandshakeState?
private var sendCipher: NoiseCipherState? private var sendCipher: NoiseCipherState?
private var receiveCipher: NoiseCipherState? private var receiveCipher: NoiseCipherState?
@@ -58,7 +58,7 @@ final class NoiseSession {
#### NoiseSessionManager #### NoiseSessionManager
Thread-safe session management: Thread-safe session management:
```swift ```swift
final class NoiseSessionManager { class NoiseSessionManager {
private var sessions: [String: NoiseSession] = [:] private var sessions: [String: NoiseSession] = [:]
private let sessionsQueue = DispatchQueue(label: "noise.sessions", attributes: .concurrent) private let sessionsQueue = DispatchQueue(label: "noise.sessions", attributes: .concurrent)
} }
-4
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@@ -1,4 +0,0 @@
#include "Release.xcconfig"
// Optional include of local configs
#include? "Local.xcconfig"
-5
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@@ -1,5 +0,0 @@
// Your Apple Developer Team ID - https://stackoverflow.com/a/18727947
DEVELOPMENT_TEAM = ABC123
// Unique bundle id to be able to register and run locally
PRODUCT_BUNDLE_IDENTIFIER = chat.bitchat.$(DEVELOPMENT_TEAM)
-11
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@@ -1,11 +0,0 @@
MARKETING_VERSION = 1.5.0
CURRENT_PROJECT_VERSION = 1
IPHONEOS_DEPLOYMENT_TARGET = 16.0
MACOSX_DEPLOYMENT_TARGET = 13.0
SWIFT_VERSION = 5.0
DEVELOPMENT_TEAM = L3N5LHJD5Y
CODE_SIGN_STYLE = Automatic
PRODUCT_BUNDLE_IDENTIFIER = chat.bitchat
+18 -9
View File
@@ -14,16 +14,16 @@ default:
# Check prerequisites # Check prerequisites
check: check:
@echo "Checking prerequisites..." @echo "Checking prerequisites..."
@command -v xcodebuild >/dev/null 2>&1 || (echo "❌ xcodebuild not found. Install Xcode from App Store" && exit 1) @command -v xcodegen >/dev/null 2>&1 || (echo "❌ XcodeGen not found. Install with: brew install xcodegen" && exit 1)
@xcode-select -p | grep -q "Xcode.app" || (echo "❌ Full Xcode required, not just command line tools. Install from App Store and run:\n sudo xcode-select -s /Applications/Xcode.app/Contents/Developer" && exit 1) @command -v xcodebuild >/dev/null 2>&1 || (echo "❌ Xcode not found. Install Xcode from App Store" && exit 1)
@test -d "/Applications/Xcode.app" || (echo "❌ Xcode.app not found in Applications folder. Install from App Store" && exit 1) @security find-identity -v -p codesigning | grep -q "Developer ID" || (echo "⚠️ No Developer ID found - code signing may fail" && exit 0)
@xcodebuild -version >/dev/null 2>&1 || (echo "❌ Xcode not properly configured. Try:\n sudo xcode-select -s /Applications/Xcode.app/Contents/Developer" && exit 1)
@security find-identity -v -p codesigning | grep -q "Apple Development\|Developer ID" || (echo "⚠️ No Developer ID found - code signing may fail" && exit 0)
@echo "✅ All prerequisites met" @echo "✅ All prerequisites met"
# Backup original files # Backup original files
backup: backup:
@echo "Backing up original project configuration..." @echo "Backing up original project configuration..."
@cp project.yml project.yml.backup 2>/dev/null || true
@# Backup other files that get modified by xcodegen
@if [ -f bitchat.xcodeproj/project.pbxproj ]; then cp bitchat.xcodeproj/project.pbxproj bitchat.xcodeproj/project.pbxproj.backup; fi @if [ -f bitchat.xcodeproj/project.pbxproj ]; then cp bitchat.xcodeproj/project.pbxproj bitchat.xcodeproj/project.pbxproj.backup; fi
@if [ -f bitchat/Info.plist ]; then cp bitchat/Info.plist bitchat/Info.plist.backup; fi @if [ -f bitchat/Info.plist ]; then cp bitchat/Info.plist bitchat/Info.plist.backup; fi
@@ -44,10 +44,15 @@ patch-for-macos: backup
@# Move iOS-specific files out of the way temporarily @# Move iOS-specific files out of the way temporarily
@if [ -f bitchat/LaunchScreen.storyboard ]; then mv bitchat/LaunchScreen.storyboard bitchat/LaunchScreen.storyboard.ios; fi @if [ -f bitchat/LaunchScreen.storyboard ]; then mv bitchat/LaunchScreen.storyboard bitchat/LaunchScreen.storyboard.ios; fi
# Generate Xcode project with patches
generate: patch-for-macos
@echo "Generating Xcode project..."
@xcodegen generate
# Build the macOS app # Build the macOS app
build: #check generate build: check generate
@echo "Building BitChat for macOS..." @echo "Building BitChat for macOS..."
@xcodebuild -project bitchat.xcodeproj -scheme "bitchat_macOS" -configuration Debug CODE_SIGN_IDENTITY="" CODE_SIGNING_REQUIRED=NO CODE_SIGN_ENTITLEMENTS="" build @xcodebuild -project bitchat.xcodeproj -scheme "bitchat (macOS)" -configuration Debug CODE_SIGN_IDENTITY="" CODE_SIGNING_REQUIRED=NO CODE_SIGN_ENTITLEMENTS="" build
# Run the macOS app # Run the macOS app
run: build run: build
@@ -70,7 +75,9 @@ clean: restore
# Quick run without cleaning (for development) # Quick run without cleaning (for development)
dev-run: check dev-run: check
@echo "Quick development build..." @echo "Quick development build..."
@xcodebuild -project bitchat.xcodeproj -scheme "bitchat_macOS" -configuration Debug CODE_SIGN_IDENTITY="" CODE_SIGNING_REQUIRED=NO CODE_SIGN_ENTITLEMENTS="" build @if [ ! -f project.yml.backup ]; then just patch-for-macos; fi
@xcodegen generate
@xcodebuild -project bitchat.xcodeproj -scheme "bitchat (macOS)" -configuration Debug CODE_SIGN_IDENTITY="" CODE_SIGNING_REQUIRED=NO CODE_SIGN_ENTITLEMENTS="" build
@find ~/Library/Developer/Xcode/DerivedData -name "bitchat.app" -path "*/Debug/*" -not -path "*/Index.noindex/*" | head -1 | xargs -I {} open "{}" @find ~/Library/Developer/Xcode/DerivedData -name "bitchat.app" -path "*/Debug/*" -not -path "*/Index.noindex/*" | head -1 | xargs -I {} open "{}"
# Show app info # Show app info
@@ -99,9 +106,11 @@ nuke:
@echo "🧨 Nuclear clean - removing all build artifacts and backups..." @echo "🧨 Nuclear clean - removing all build artifacts and backups..."
@rm -rf ~/Library/Developer/Xcode/DerivedData/bitchat-* 2>/dev/null || true @rm -rf ~/Library/Developer/Xcode/DerivedData/bitchat-* 2>/dev/null || true
@rm -rf bitchat.xcodeproj 2>/dev/null || true @rm -rf bitchat.xcodeproj 2>/dev/null || true
@rm -f project.yml.backup 2>/dev/null || true
@rm -f project-macos.yml 2>/dev/null || true
@rm -f bitchat.xcodeproj/project.pbxproj.backup 2>/dev/null || true @rm -f bitchat.xcodeproj/project.pbxproj.backup 2>/dev/null || true
@rm -f bitchat/Info.plist.backup 2>/dev/null || true @rm -f bitchat/Info.plist.backup 2>/dev/null || true
@# Restore iOS-specific files if they were moved @# Restore iOS-specific files if they were moved
@if [ -f bitchat/LaunchScreen.storyboard.ios ]; then mv bitchat/LaunchScreen.storyboard.ios bitchat/LaunchScreen.storyboard; fi @if [ -f bitchat/LaunchScreen.storyboard.ios ]; then mv bitchat/LaunchScreen.storyboard.ios bitchat/LaunchScreen.storyboard; fi
@git checkout bitchat.xcodeproj/project.pbxproj bitchat/Info.plist 2>/dev/null || echo "⚠️ Not a git repo or no changes to restore" @git checkout -- project.yml bitchat.xcodeproj/project.pbxproj bitchat/Info.plist 2>/dev/null || echo "⚠️ Not a git repo or no changes to restore"
@echo "✅ Nuclear clean complete" @echo "✅ Nuclear clean complete"
+2 -22
View File
@@ -4,7 +4,6 @@ import PackageDescription
let package = Package( let package = Package(
name: "bitchat", name: "bitchat",
defaultLocalization: "en",
platforms: [ platforms: [
.iOS(.v16), .iOS(.v16),
.macOS(.v13) .macOS(.v13)
@@ -16,17 +15,13 @@ let package = Package(
), ),
], ],
dependencies:[ dependencies:[
.package(path: "localPackages/Tor"), .package(url: "https://github.com/21-DOT-DEV/swift-secp256k1", exact: "0.21.1"),
.package(path: "localPackages/BitLogger"),
.package(url: "https://github.com/21-DOT-DEV/swift-secp256k1", exact: "0.21.1")
], ],
targets: [ targets: [
.executableTarget( .executableTarget(
name: "bitchat", name: "bitchat",
dependencies: [ dependencies: [
.product(name: "P256K", package: "swift-secp256k1"), .product(name: "P256K", package: "swift-secp256k1")
.product(name: "BitLogger", package: "BitLogger"),
.product(name: "Tor", package: "Tor")
], ],
path: "bitchat", path: "bitchat",
exclude: [ exclude: [
@@ -35,22 +30,7 @@ let package = Package(
"bitchat.entitlements", "bitchat.entitlements",
"bitchat-macOS.entitlements", "bitchat-macOS.entitlements",
"LaunchScreen.storyboard" "LaunchScreen.storyboard"
],
resources: [
.process("Localizable.xcstrings")
] ]
), ),
.testTarget(
name: "bitchatTests",
dependencies: ["bitchat"],
path: "bitchatTests",
exclude: [
"Info.plist",
"README.md"
],
resources: [
.process("Localization")
]
)
] ]
) )
+31 -18
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@@ -9,7 +9,7 @@ A decentralized peer-to-peer messaging app with dual transport architecture: loc
📲 [App Store](https://apps.apple.com/us/app/bitchat-mesh/id6748219622) 📲 [App Store](https://apps.apple.com/us/app/bitchat-mesh/id6748219622)
> [!WARNING] > [!WARNING]
> Private messages have not received external security review and may contain vulnerabilities. Do not use for sensitive use cases, and do not rely on its security until it has been reviewed. Now uses the [Noise Protocol](https://www.noiseprotocol.org) for identity and encryption. Public local chat (the main feature) has no security concerns. > Private messages have not received external security review and may contain vulnerabilities. Do not use for sensitive use cases, and do not rely on its security until it has been reviewed. Now uses the [Noise Protocol](http://www.noiseprotocol.org) for identity and encryption. Public local chat (the main feature) has no security concerns.
## License ## License
@@ -22,7 +22,7 @@ This project is released into the public domain. See the [LICENSE](LICENSE) file
- **Intelligent Message Routing**: Automatically chooses best transport (Bluetooth → Nostr fallback) - **Intelligent Message Routing**: Automatically chooses best transport (Bluetooth → Nostr fallback)
- **Decentralized Mesh Network**: Automatic peer discovery and multi-hop message relay over Bluetooth LE - **Decentralized Mesh Network**: Automatic peer discovery and multi-hop message relay over Bluetooth LE
- **Privacy First**: No accounts, no phone numbers, no persistent identifiers - **Privacy First**: No accounts, no phone numbers, no persistent identifiers
- **Private Message End-to-End Encryption**: [Noise Protocol](https://noiseprotocol.org) for mesh, NIP-17 for Nostr - **Private Message End-to-End Encryption**: [Noise Protocol](http://noiseprotocol.org) for mesh, NIP-17 for Nostr
- **IRC-Style Commands**: Familiar `/slap`, `/msg`, `/who` style interface - **IRC-Style Commands**: Familiar `/slap`, `/msg`, `/who` style interface
- **Universal App**: Native support for iOS and macOS - **Universal App**: Native support for iOS and macOS
- **Emergency Wipe**: Triple-tap to instantly clear all data - **Emergency Wipe**: Triple-tap to instantly clear all data
@@ -94,32 +94,45 @@ For detailed protocol documentation, see the [Technical Whitepaper](WHITEPAPER.m
## Setup ## Setup
### Option 1: Using Xcode ### Option 1: Using XcodeGen (Recommended)
1. Install XcodeGen if you haven't already:
```bash
brew install xcodegen
```
2. Generate the Xcode project:
```bash ```bash
cd bitchat cd bitchat
xcodegen generate
```
3. Open the generated project:
```bash
open bitchat.xcodeproj open bitchat.xcodeproj
``` ```
To run on a device there're a few steps to prepare the code: ### Option 2: Using Swift Package Manager
- Clone the local configs: `cp Configs/Local.xcconfig.example Configs/Local.xcconfig`
- Add your Developer Team ID into the newly created `Configs/Local.xcconfig`
- Bundle ID would be set to `chat.bitchat.<team_id>` (unless you set to something else)
- Entitlements need to be updated manually (TODO: Automate):
- Search and replace `group.chat.bitchat` with `group.<your_bundle_id>` (e.g. `group.chat.bitchat.ABC123`)
### Option 2: Using `just` 1. Open the project in Xcode:
```bash ```bash
brew install just cd bitchat
open Package.swift
``` ```
2. Select your target device and run
### Option 3: Manual Xcode Project
1. Open Xcode and create a new iOS/macOS App
2. Copy all Swift files from the `bitchat` directory into your project
3. Update Info.plist with Bluetooth permissions
4. Set deployment target to iOS 16.0 / macOS 13.0
### Option 4: just
Want to try this on macos: `just run` will set it up and run from source. Want to try this on macos: `just run` will set it up and run from source.
Run `just clean` afterwards to restore things to original state for mobile app building and development. Run `just clean` afterwards to restore things to original state for mobile app building and development.
## Localization
- Base app resources live under `bitchat/Localization/Base.lproj/`. Add new copy to `Localizable.strings` and plural rules to `Localizable.stringsdict`.
- Share extension strings are separate in `bitchatShareExtension/Localization/Base.lproj/Localizable.strings`.
- Prefer keys that describe intent (`app_info.features.offline.title`) and reuse existing ones where possible.
- Run `xcodebuild -project bitchat.xcodeproj -scheme "bitchat (macOS)" -configuration Debug CODE_SIGNING_ALLOWED=NO build` to compile-check any localization updates.
-41
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@@ -184,28 +184,6 @@ To minimize bandwidth, `BitchatPacket`s are serialized into a compact binary for
**Padding:** All packets are padded to the next standard block size (256, 512, 1024, or 2048 bytes) using a PKCS#7-style scheme to obscure the true message length from network observers. **Padding:** All packets are padded to the next standard block size (256, 512, 1024, or 2048 bytes) using a PKCS#7-style scheme to obscure the true message length from network observers.
```mermaid
---
config:
theme: dark
---
---
title: "BitchatPacket"
---
packet
+8: "Version"
+8: "Type"
+8: "TTL"
+64: "Timestamp"
+8: "Flags"
+16: "Payload Length"
+64: "Sender ID"
+64: "Recipient ID (optional)"
+48: "Payload (variable)"
+64: "Signature (optional)"
```
_A representation of the sizes of the fields in `BitchatPacket`_
### 6.2. Application Message Format (`BitchatMessage`) ### 6.2. Application Message Format (`BitchatMessage`)
For packets of type `message`, the payload is a binary-serialized `BitchatMessage` containing the chat content. For packets of type `message`, the payload is a binary-serialized `BitchatMessage` containing the chat content.
@@ -220,25 +198,6 @@ For packets of type `message`, the payload is a binary-serialized `BitchatMessag
| Original Sender | 1 + len (opt)| Nickname of the original sender if the message is a relay. | | Original Sender | 1 + len (opt)| Nickname of the original sender if the message is a relay. |
| Recipient Nickname | 1 + len (opt)| Nickname of the recipient for private messages. | | Recipient Nickname | 1 + len (opt)| Nickname of the recipient for private messages. |
```mermaid
---
config:
theme: dark
---
---
title: "BitchatMessage"
---
packet
+8: "Flags"
+64: "Timestamp"
+24: "ID (variable)"
+32: "Sender (variable)"
+32: "Content (variable)"
+32: "Original Sender (variable) (optional)"
+32: "Recipient Nickname (variable) (optional)"
```
_A representation of the sizes of the fields in `BitchatMessage`_
--- ---
## 7. Message Routing and Propagation ## 7. Message Routing and Propagation
File diff suppressed because it is too large Load Diff
@@ -1,131 +0,0 @@
<?xml version="1.0" encoding="UTF-8"?>
<Scheme
LastUpgradeVersion = "1640"
version = "1.3">
<BuildAction
parallelizeBuildables = "YES"
buildImplicitDependencies = "YES">
<BuildActionEntries>
<BuildActionEntry
buildForTesting = "YES"
buildForRunning = "YES"
buildForProfiling = "YES"
buildForArchiving = "YES"
buildForAnalyzing = "YES">
<BuildableReference
BuildableIdentifier = "primary"
BlueprintIdentifier = "57CA17A36A2532A6CFF367BB"
BuildableName = "bitchatShareExtension.appex"
BlueprintName = "bitchatShareExtension"
ReferencedContainer = "container:bitchat.xcodeproj">
</BuildableReference>
</BuildActionEntry>
<BuildActionEntry
buildForTesting = "YES"
buildForRunning = "YES"
buildForProfiling = "YES"
buildForArchiving = "YES"
buildForAnalyzing = "YES">
<BuildableReference
BuildableIdentifier = "primary"
BlueprintIdentifier = "AF077EA0474EDEDE2C72716C"
BuildableName = "bitchat.app"
BlueprintName = "bitchat_iOS"
ReferencedContainer = "container:bitchat.xcodeproj">
</BuildableReference>
</BuildActionEntry>
</BuildActionEntries>
</BuildAction>
<TestAction
buildConfiguration = "Debug"
selectedDebuggerIdentifier = "Xcode.DebuggerFoundation.Debugger.LLDB"
selectedLauncherIdentifier = "Xcode.DebuggerFoundation.Launcher.LLDB"
shouldUseLaunchSchemeArgsEnv = "YES"
codeCoverageEnabled = "YES"
onlyGenerateCoverageForSpecifiedTargets = "YES">
<MacroExpansion>
<BuildableReference
BuildableIdentifier = "primary"
BlueprintIdentifier = "AF077EA0474EDEDE2C72716C"
BuildableName = "bitchat.app"
BlueprintName = "bitchat_iOS"
ReferencedContainer = "container:bitchat.xcodeproj">
</BuildableReference>
</MacroExpansion>
<CodeCoverageTargets>
<BuildableReference
BuildableIdentifier = "primary"
BlueprintIdentifier = "AF077EA0474EDEDE2C72716C"
BuildableName = "bitchat.app"
BlueprintName = "bitchat_iOS"
ReferencedContainer = "container:bitchat.xcodeproj">
</BuildableReference>
</CodeCoverageTargets>
<Testables>
<TestableReference
skipped = "NO"
parallelizable = "YES"
testExecutionOrdering = "random">
<BuildableReference
BuildableIdentifier = "primary"
BlueprintIdentifier = "6CB97DF2EA57234CB3E563B8"
BuildableName = "bitchatTests_iOS.xctest"
BlueprintName = "bitchatTests_iOS"
ReferencedContainer = "container:bitchat.xcodeproj">
</BuildableReference>
</TestableReference>
</Testables>
</TestAction>
<LaunchAction
buildConfiguration = "Debug"
selectedDebuggerIdentifier = "Xcode.DebuggerFoundation.Debugger.LLDB"
selectedLauncherIdentifier = "Xcode.DebuggerFoundation.Launcher.LLDB"
launchStyle = "0"
useCustomWorkingDirectory = "NO"
ignoresPersistentStateOnLaunch = "NO"
debugDocumentVersioning = "YES"
debugServiceExtension = "internal"
allowLocationSimulation = "YES">
<BuildableProductRunnable
runnableDebuggingMode = "0">
<BuildableReference
BuildableIdentifier = "primary"
BlueprintIdentifier = "AF077EA0474EDEDE2C72716C"
BuildableName = "bitchat.app"
BlueprintName = "bitchat_iOS"
ReferencedContainer = "container:bitchat.xcodeproj">
</BuildableReference>
</BuildableProductRunnable>
<EnvironmentVariables>
<EnvironmentVariable
key = "-DBITCHAT_DEV_ALLOW_CLEARNET"
value = ""
isEnabled = "YES">
</EnvironmentVariable>
</EnvironmentVariables>
</LaunchAction>
<ProfileAction
buildConfiguration = "Release"
shouldUseLaunchSchemeArgsEnv = "YES"
savedToolIdentifier = ""
useCustomWorkingDirectory = "NO"
debugDocumentVersioning = "YES">
<BuildableProductRunnable
runnableDebuggingMode = "0">
<BuildableReference
BuildableIdentifier = "primary"
BlueprintIdentifier = "AF077EA0474EDEDE2C72716C"
BuildableName = "bitchat.app"
BlueprintName = "bitchat_iOS"
ReferencedContainer = "container:bitchat.xcodeproj">
</BuildableReference>
</BuildableProductRunnable>
</ProfileAction>
<AnalyzeAction
buildConfiguration = "Debug">
</AnalyzeAction>
<ArchiveAction
buildConfiguration = "Release"
revealArchiveInOrganizer = "YES">
</ArchiveAction>
</Scheme>
@@ -1,105 +0,0 @@
<?xml version="1.0" encoding="UTF-8"?>
<Scheme
LastUpgradeVersion = "1640"
version = "1.3">
<BuildAction
parallelizeBuildables = "YES"
buildImplicitDependencies = "YES">
<BuildActionEntries>
<BuildActionEntry
buildForTesting = "YES"
buildForRunning = "YES"
buildForProfiling = "YES"
buildForArchiving = "YES"
buildForAnalyzing = "YES">
<BuildableReference
BuildableIdentifier = "primary"
BlueprintIdentifier = "0576A29205865664C0937536"
BuildableName = "bitchat.app"
BlueprintName = "bitchat_macOS"
ReferencedContainer = "container:bitchat.xcodeproj">
</BuildableReference>
</BuildActionEntry>
</BuildActionEntries>
</BuildAction>
<TestAction
buildConfiguration = "Debug"
selectedDebuggerIdentifier = "Xcode.DebuggerFoundation.Debugger.LLDB"
selectedLauncherIdentifier = "Xcode.DebuggerFoundation.Launcher.LLDB"
shouldUseLaunchSchemeArgsEnv = "YES">
<MacroExpansion>
<BuildableReference
BuildableIdentifier = "primary"
BlueprintIdentifier = "0576A29205865664C0937536"
BuildableName = "bitchat.app"
BlueprintName = "bitchat_macOS"
ReferencedContainer = "container:bitchat.xcodeproj">
</BuildableReference>
</MacroExpansion>
<Testables>
<TestableReference
skipped = "NO"
parallelizable = "NO">
<BuildableReference
BuildableIdentifier = "primary"
BlueprintIdentifier = "47FF23248747DD7CB666CB91"
BuildableName = "bitchatTests_macOS.xctest"
BlueprintName = "bitchatTests_macOS"
ReferencedContainer = "container:bitchat.xcodeproj">
</BuildableReference>
</TestableReference>
</Testables>
</TestAction>
<LaunchAction
buildConfiguration = "Debug"
selectedDebuggerIdentifier = "Xcode.DebuggerFoundation.Debugger.LLDB"
selectedLauncherIdentifier = "Xcode.DebuggerFoundation.Launcher.LLDB"
launchStyle = "0"
useCustomWorkingDirectory = "NO"
ignoresPersistentStateOnLaunch = "NO"
debugDocumentVersioning = "YES"
debugServiceExtension = "internal"
allowLocationSimulation = "YES">
<BuildableProductRunnable
runnableDebuggingMode = "0">
<BuildableReference
BuildableIdentifier = "primary"
BlueprintIdentifier = "0576A29205865664C0937536"
BuildableName = "bitchat.app"
BlueprintName = "bitchat_macOS"
ReferencedContainer = "container:bitchat.xcodeproj">
</BuildableReference>
</BuildableProductRunnable>
<EnvironmentVariables>
<EnvironmentVariable
key = "BITCHAT_LOG_LEVEL"
value = "debug"
isEnabled = "YES">
</EnvironmentVariable>
</EnvironmentVariables>
</LaunchAction>
<ProfileAction
buildConfiguration = "Release"
shouldUseLaunchSchemeArgsEnv = "YES"
savedToolIdentifier = ""
useCustomWorkingDirectory = "NO"
debugDocumentVersioning = "YES">
<BuildableProductRunnable
runnableDebuggingMode = "0">
<BuildableReference
BuildableIdentifier = "primary"
BlueprintIdentifier = "0576A29205865664C0937536"
BuildableName = "bitchat.app"
BlueprintName = "bitchat_macOS"
ReferencedContainer = "container:bitchat.xcodeproj">
</BuildableReference>
</BuildableProductRunnable>
</ProfileAction>
<AnalyzeAction
buildConfiguration = "Debug">
</AnalyzeAction>
<ArchiveAction
buildConfiguration = "Release"
revealArchiveInOrganizer = "YES">
</ArchiveAction>
</Scheme>
@@ -1,9 +1,111 @@
{ {
"images" : [ "images" : [
{
"filename" : "icon_20x20@2x.png",
"idiom" : "iphone",
"scale" : "2x",
"size" : "20x20"
},
{
"filename" : "icon_20x20@3x.png",
"idiom" : "iphone",
"scale" : "3x",
"size" : "20x20"
},
{
"filename" : "icon_29x29@2x.png",
"idiom" : "iphone",
"scale" : "2x",
"size" : "29x29"
},
{
"filename" : "icon_29x29@3x.png",
"idiom" : "iphone",
"scale" : "3x",
"size" : "29x29"
},
{
"filename" : "icon_40x40@2x.png",
"idiom" : "iphone",
"scale" : "2x",
"size" : "40x40"
},
{
"filename" : "icon_40x40@3x.png",
"idiom" : "iphone",
"scale" : "3x",
"size" : "40x40"
},
{
"filename" : "icon_60x60@2x.png",
"idiom" : "iphone",
"scale" : "2x",
"size" : "60x60"
},
{
"filename" : "icon_60x60@3x.png",
"idiom" : "iphone",
"scale" : "3x",
"size" : "60x60"
},
{
"filename" : "icon_20x20.png",
"idiom" : "ipad",
"scale" : "1x",
"size" : "20x20"
},
{
"filename" : "icon_20x20@2x.png",
"idiom" : "ipad",
"scale" : "2x",
"size" : "20x20"
},
{
"filename" : "icon_29x29.png",
"idiom" : "ipad",
"scale" : "1x",
"size" : "29x29"
},
{
"filename" : "icon_29x29@2x.png",
"idiom" : "ipad",
"scale" : "2x",
"size" : "29x29"
},
{
"filename" : "icon_40x40.png",
"idiom" : "ipad",
"scale" : "1x",
"size" : "40x40"
},
{
"filename" : "icon_40x40@2x.png",
"idiom" : "ipad",
"scale" : "2x",
"size" : "40x40"
},
{
"filename" : "icon_76x76.png",
"idiom" : "ipad",
"scale" : "1x",
"size" : "76x76"
},
{
"filename" : "icon_76x76@2x.png",
"idiom" : "ipad",
"scale" : "2x",
"size" : "76x76"
},
{
"filename" : "icon_83.5x83.5@2x.png",
"idiom" : "ipad",
"scale" : "2x",
"size" : "83.5x83.5"
},
{ {
"filename" : "icon_1024x1024.png", "filename" : "icon_1024x1024.png",
"idiom" : "universal", "idiom" : "ios-marketing",
"platform" : "ios", "scale" : "1x",
"size" : "1024x1024" "size" : "1024x1024"
}, },
{ {
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@@ -1,36 +0,0 @@
{
"images" : [
{
"filename" : "image-1024.png",
"idiom" : "universal",
"platform" : "ios",
"size" : "1024x1024"
},
{
"appearances" : [
{
"appearance" : "luminosity",
"value" : "dark"
}
],
"idiom" : "universal",
"platform" : "ios",
"size" : "1024x1024"
},
{
"appearances" : [
{
"appearance" : "luminosity",
"value" : "tinted"
}
],
"idiom" : "universal",
"platform" : "ios",
"size" : "1024x1024"
}
],
"info" : {
"author" : "xcode",
"version" : 1
}
}
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+8 -60
View File
@@ -6,39 +6,20 @@
// For more information, see <https://unlicense.org> // For more information, see <https://unlicense.org>
// //
import Tor
import SwiftUI import SwiftUI
import UserNotifications import UserNotifications
@main @main
struct BitchatApp: App { struct BitchatApp: App {
static let bundleID = Bundle.main.bundleIdentifier ?? "chat.bitchat" @StateObject private var chatViewModel = ChatViewModel()
static let groupID = "group.\(bundleID)"
@StateObject private var chatViewModel: ChatViewModel
#if os(iOS) #if os(iOS)
@Environment(\.scenePhase) var scenePhase @Environment(\.scenePhase) var scenePhase
@UIApplicationDelegateAdaptor(AppDelegate.self) var appDelegate @UIApplicationDelegateAdaptor(AppDelegate.self) var appDelegate
// Skip the very first .active-triggered Tor restart on cold launch
@State private var didHandleInitialActive: Bool = false
@State private var didEnterBackground: Bool = false
#elseif os(macOS) #elseif os(macOS)
@NSApplicationDelegateAdaptor(MacAppDelegate.self) var appDelegate @NSApplicationDelegateAdaptor(MacAppDelegate.self) var appDelegate
#endif #endif
private let idBridge = NostrIdentityBridge()
init() { init() {
let keychain = KeychainManager()
let idBridge = self.idBridge
_chatViewModel = StateObject(
wrappedValue: ChatViewModel(
keychain: keychain,
idBridge: idBridge,
identityManager: SecureIdentityStateManager(keychain)
)
)
UNUserNotificationCenter.current().delegate = NotificationDelegate.shared UNUserNotificationCenter.current().delegate = NotificationDelegate.shared
// Warm up georelay directory and refresh if stale (once/day) // Warm up georelay directory and refresh if stale (once/day)
GeoRelayDirectory.shared.prefetchIfNeeded() GeoRelayDirectory.shared.prefetchIfNeeded()
@@ -54,7 +35,7 @@ struct BitchatApp: App {
VerificationService.shared.configure(with: chatViewModel.meshService.getNoiseService()) VerificationService.shared.configure(with: chatViewModel.meshService.getNoiseService())
// Prewarm Nostr identity and QR to make first VERIFY sheet fast // Prewarm Nostr identity and QR to make first VERIFY sheet fast
DispatchQueue.global(qos: .utility).async { DispatchQueue.global(qos: .utility).async {
let npub = try? idBridge.getCurrentNostrIdentity()?.npub let npub = try? NostrIdentityBridge.getCurrentNostrIdentity()?.npub
_ = VerificationService.shared.buildMyQRString(nickname: chatViewModel.nickname, npub: npub) _ = VerificationService.shared.buildMyQRString(nickname: chatViewModel.nickname, npub: npub)
} }
#if os(iOS) #if os(iOS)
@@ -62,8 +43,6 @@ struct BitchatApp: App {
#elseif os(macOS) #elseif os(macOS)
appDelegate.chatViewModel = chatViewModel appDelegate.chatViewModel = chatViewModel
#endif #endif
// Initialize network activation policy; will start Tor/Nostr only when allowed
NetworkActivationService.shared.start()
// Check for shared content // Check for shared content
checkForSharedContent() checkForSharedContent()
} }
@@ -75,41 +54,10 @@ struct BitchatApp: App {
switch newPhase { switch newPhase {
case .background: case .background:
// Keep BLE mesh running in background; BLEService adapts scanning automatically // Keep BLE mesh running in background; BLEService adapts scanning automatically
// Always send Tor to dormant on background for a clean restart later. break
TorManager.shared.setAppForeground(false)
TorManager.shared.goDormantOnBackground()
// Stop geohash sampling while backgrounded
Task { @MainActor in
chatViewModel.endGeohashSampling()
}
// Proactively disconnect Nostr to avoid spurious socket errors while Tor is down
NostrRelayManager.shared.disconnect()
didEnterBackground = true
case .active: case .active:
// Restart services when becoming active // Restart services when becoming active
chatViewModel.meshService.startServices() chatViewModel.meshService.startServices()
TorManager.shared.setAppForeground(true)
// On initial cold launch, Tor was just started in onAppear.
// Skip the deterministic restart the first time we become active.
if didHandleInitialActive && didEnterBackground {
if TorManager.shared.isAutoStartAllowed() && !TorManager.shared.isReady {
TorManager.shared.ensureRunningOnForeground()
}
} else {
didHandleInitialActive = true
}
didEnterBackground = false
if TorManager.shared.isAutoStartAllowed() {
Task.detached {
let _ = await TorManager.shared.awaitReady(timeout: 60)
await MainActor.run {
// Rebuild proxied sessions to bind to the live Tor after readiness
TorURLSession.shared.rebuild()
// Reconnect Nostr via fresh sessions; will gate until Tor 100%
NostrRelayManager.shared.resetAllConnections()
}
}
}
checkForSharedContent() checkForSharedContent()
case .inactive: case .inactive:
break break
@@ -142,7 +90,7 @@ struct BitchatApp: App {
private func checkForSharedContent() { private func checkForSharedContent() {
// Check app group for shared content from extension // Check app group for shared content from extension
guard let userDefaults = UserDefaults(suiteName: BitchatApp.groupID) else { guard let userDefaults = UserDefaults(suiteName: "group.chat.bitchat") else {
return return
} }
@@ -183,7 +131,7 @@ struct BitchatApp: App {
} }
#if os(iOS) #if os(iOS)
final class AppDelegate: NSObject, UIApplicationDelegate { class AppDelegate: NSObject, UIApplicationDelegate {
weak var chatViewModel: ChatViewModel? weak var chatViewModel: ChatViewModel?
func application(_ application: UIApplication, didFinishLaunchingWithOptions launchOptions: [UIApplication.LaunchOptionsKey : Any]? = nil) -> Bool { func application(_ application: UIApplication, didFinishLaunchingWithOptions launchOptions: [UIApplication.LaunchOptionsKey : Any]? = nil) -> Bool {
@@ -195,7 +143,7 @@ final class AppDelegate: NSObject, UIApplicationDelegate {
#if os(macOS) #if os(macOS)
import AppKit import AppKit
final class MacAppDelegate: NSObject, NSApplicationDelegate { class MacAppDelegate: NSObject, NSApplicationDelegate {
weak var chatViewModel: ChatViewModel? weak var chatViewModel: ChatViewModel?
func applicationWillTerminate(_ notification: Notification) { func applicationWillTerminate(_ notification: Notification) {
@@ -208,7 +156,7 @@ final class MacAppDelegate: NSObject, NSApplicationDelegate {
} }
#endif #endif
final class NotificationDelegate: NSObject, UNUserNotificationCenterDelegate { class NotificationDelegate: NSObject, UNUserNotificationCenterDelegate {
static let shared = NotificationDelegate() static let shared = NotificationDelegate()
weak var chatViewModel: ChatViewModel? weak var chatViewModel: ChatViewModel?
@@ -221,7 +169,7 @@ final class NotificationDelegate: NSObject, UNUserNotificationCenterDelegate {
// Get peer ID from userInfo // Get peer ID from userInfo
if let peerID = userInfo["peerID"] as? String { if let peerID = userInfo["peerID"] as? String {
DispatchQueue.main.async { DispatchQueue.main.async {
self.chatViewModel?.startPrivateChat(with: PeerID(str: peerID)) self.chatViewModel?.startPrivateChat(with: peerID)
} }
} }
} }
-203
View File
@@ -1,203 +0,0 @@
import Foundation
import ImageIO
import UniformTypeIdentifiers
#if os(iOS)
import UIKit
#else
import AppKit
#endif
enum ImageUtilsError: Error {
case invalidImage
case encodingFailed
}
enum ImageUtils {
private static let compressionQuality: CGFloat = 0.85
private static let targetImageBytes: Int = 60_000
static func processImage(at url: URL, maxDimension: CGFloat = 512) throws -> URL {
// Security H1: Check file size BEFORE reading into memory
let attrs = try FileManager.default.attributesOfItem(atPath: url.path)
guard let fileSize = attrs[.size] as? Int else {
throw ImageUtilsError.invalidImage
}
// Allow up to 10MB source images (will be scaled down)
guard fileSize <= 10 * 1024 * 1024 else {
throw ImageUtilsError.invalidImage
}
let data = try Data(contentsOf: url)
#if os(iOS)
guard let image = UIImage(data: data) else { throw ImageUtilsError.invalidImage }
return try processImage(image, maxDimension: maxDimension)
#else
guard let image = NSImage(data: data) else { throw ImageUtilsError.invalidImage }
return try processImage(image, maxDimension: maxDimension)
#endif
}
#if os(iOS)
static func processImage(_ image: UIImage, maxDimension: CGFloat = 512) throws -> URL {
return try autoreleasepool {
// Scale the image first
let scaled = scaledImage(image, maxDimension: maxDimension)
// Get CGImage from UIImage - this is the key to stripping metadata
guard let cgImage = scaled.cgImage else {
throw ImageUtilsError.encodingFailed
}
// Use CGImageDestination to encode without metadata (same as macOS)
var quality = compressionQuality
guard var jpegData = encodeJPEG(from: cgImage, quality: quality) else {
throw ImageUtilsError.encodingFailed
}
// Compress to target size
while jpegData.count > targetImageBytes && quality > 0.3 {
quality -= 0.1
autoreleasepool {
if let next = encodeJPEG(from: cgImage, quality: quality) {
jpegData = next
}
}
}
let outputURL = try makeOutputURL()
try jpegData.write(to: outputURL, options: .atomic)
return outputURL
}
}
private static func scaledImage(_ image: UIImage, maxDimension: CGFloat) -> UIImage {
let size = image.size
let maxSide = max(size.width, size.height)
guard maxSide > maxDimension else { return image }
let scale = maxDimension / maxSide
let newSize = CGSize(width: size.width * scale, height: size.height * scale)
// Draw into a new context to get a clean CGImage without metadata
UIGraphicsBeginImageContextWithOptions(newSize, true, 1.0)
image.draw(in: CGRect(origin: .zero, size: newSize))
let rendered = UIGraphicsGetImageFromCurrentImageContext()
UIGraphicsEndImageContext()
return rendered ?? image
}
// Shared EXIF-stripping JPEG encoder for both iOS and macOS
private static func encodeJPEG(from cgImage: CGImage, quality: CGFloat) -> Data? {
guard let data = CFDataCreateMutable(nil, 0) else {
return nil
}
guard let destination = CGImageDestinationCreateWithData(data, UTType.jpeg.identifier as CFString, 1, nil) else {
return nil
}
// Security: Strip ALL metadata (EXIF, GPS, TIFF, IPTC, XMP)
// By only specifying compression quality and no metadata keys,
// we ensure a clean JPEG with no privacy-leaking information
let options: [CFString: Any] = [
kCGImageDestinationLossyCompressionQuality: quality
]
CGImageDestinationAddImage(destination, cgImage, options as CFDictionary)
guard CGImageDestinationFinalize(destination) else {
return nil
}
return data as Data
}
#else
static func processImage(_ image: NSImage, maxDimension: CGFloat = 512) throws -> URL {
return try autoreleasepool {
let scaled = scaledImage(image, maxDimension: maxDimension)
guard let inputCG = scaled.cgImage(forProposedRect: nil, context: nil, hints: nil) else {
throw ImageUtilsError.encodingFailed
}
let width = inputCG.width
let height = inputCG.height
let colorSpace = CGColorSpace(name: CGColorSpace.sRGB) ?? CGColorSpaceCreateDeviceRGB()
guard let context = CGContext(
data: nil,
width: width,
height: height,
bitsPerComponent: 8,
bytesPerRow: 0,
space: colorSpace,
bitmapInfo: CGImageAlphaInfo.premultipliedLast.rawValue
) else {
throw ImageUtilsError.encodingFailed
}
context.draw(inputCG, in: CGRect(x: 0, y: 0, width: width, height: height))
guard let cgImage = context.makeImage() else {
throw ImageUtilsError.encodingFailed
}
var quality = compressionQuality
guard var jpegData = encodeJPEG(from: cgImage, quality: quality) else {
throw ImageUtilsError.encodingFailed
}
while jpegData.count > targetImageBytes && quality > 0.3 {
quality -= 0.1
autoreleasepool {
if let next = encodeJPEG(from: cgImage, quality: quality) {
jpegData = next
}
}
}
let outputURL = try makeOutputURL()
try jpegData.write(to: outputURL, options: .atomic)
return outputURL
}
}
private static func scaledImage(_ image: NSImage, maxDimension: CGFloat) -> NSImage {
let size = image.size
let maxSide = max(size.width, size.height)
guard maxSide > maxDimension else { return image }
let scale = maxDimension / maxSide
let newSize = NSSize(width: size.width * scale, height: size.height * scale)
let scaledImage = NSImage(size: newSize)
scaledImage.lockFocus()
image.draw(in: NSRect(origin: .zero, size: newSize),
from: NSRect(origin: .zero, size: size),
operation: .copy,
fraction: 1.0)
scaledImage.unlockFocus()
return scaledImage
}
// Shared EXIF-stripping JPEG encoder for both iOS and macOS
private static func encodeJPEG(from cgImage: CGImage, quality: CGFloat) -> Data? {
guard let data = CFDataCreateMutable(nil, 0) else {
return nil
}
guard let destination = CGImageDestinationCreateWithData(data, UTType.jpeg.identifier as CFString, 1, nil) else {
return nil
}
// Security: Strip ALL metadata (EXIF, GPS, TIFF, IPTC, XMP)
// By only specifying compression quality and no metadata keys,
// we ensure a clean JPEG with no privacy-leaking information
let options: [CFString: Any] = [
kCGImageDestinationLossyCompressionQuality: quality
]
CGImageDestinationAddImage(destination, cgImage, options as CFDictionary)
guard CGImageDestinationFinalize(destination) else {
return nil
}
return data as Data
}
#endif
private static func makeOutputURL() throws -> URL {
let formatter = DateFormatter()
formatter.dateFormat = "yyyyMMdd_HHmmss"
let fileName = "img_\(formatter.string(from: Date())).jpg"
let directory = try applicationFilesDirectory().appendingPathComponent("images/outgoing", isDirectory: true)
try FileManager.default.createDirectory(at: directory, withIntermediateDirectories: true, attributes: nil)
return directory.appendingPathComponent(fileName)
}
private static func applicationFilesDirectory() throws -> URL {
let base = try FileManager.default.url(for: .applicationSupportDirectory, in: .userDomainMask, appropriateFor: nil, create: true)
return base.appendingPathComponent("files", isDirectory: true)
}
}
@@ -1,193 +0,0 @@
import Foundation
import AVFoundation
import BitLogger
/// Controls playback for a single voice note and coordinates exclusive playback across the app.
final class VoiceNotePlaybackController: NSObject, ObservableObject, AVAudioPlayerDelegate {
@Published private(set) var isPlaying: Bool = false
@Published private(set) var currentTime: TimeInterval = 0
@Published private(set) var duration: TimeInterval = 0
@Published private(set) var progress: Double = 0
private var player: AVAudioPlayer?
private var timer: Timer?
private var url: URL
init(url: URL) {
self.url = url
super.init()
// Don't load anything eagerly - wait until user interaction or view is fully displayed
}
func loadDuration() {
guard duration == 0 else { return }
DispatchQueue.global(qos: .utility).async { [weak self] in
guard let self = self else { return }
do {
let player = try AVAudioPlayer(contentsOf: self.url)
let loadedDuration = player.duration
DispatchQueue.main.async { [weak self] in
guard let self = self, self.duration == 0 else { return }
self.duration = loadedDuration
}
} catch {
SecureLogger.error("Failed to load audio duration: \(error)", category: .session)
}
}
}
deinit {
timer?.invalidate()
}
func replaceURL(_ url: URL) {
guard url != self.url else { return }
stop()
self.url = url
player = nil
duration = 0
// Duration will be loaded on demand when needed
}
func togglePlayback() {
isPlaying ? pause() : play()
}
func play() {
guard ensurePlayerReady() else { return }
VoiceNotePlaybackCoordinator.shared.activate(self)
player?.play()
startTimer()
updateProgress()
isPlaying = true
}
func pause() {
player?.pause()
stopTimer()
updateProgress()
isPlaying = false
}
func stop() {
player?.stop()
player?.currentTime = 0
stopTimer()
updateProgress()
isPlaying = false
VoiceNotePlaybackCoordinator.shared.deactivate(self)
}
func seek(to fraction: Double) {
guard ensurePlayerReady() else { return }
let clamped = max(0, min(1, fraction))
if let player = player {
player.currentTime = clamped * player.duration
if isPlaying {
player.play()
}
updateProgress()
}
}
// MARK: - AVAudioPlayerDelegate
func audioPlayerDidFinishPlaying(_ player: AVAudioPlayer, successfully flag: Bool) {
// Delegate callback may be on background thread - ensure main thread for UI updates
DispatchQueue.main.async { [weak self] in
guard let self = self else { return }
self.stopTimer()
self.updateProgress()
self.isPlaying = false
VoiceNotePlaybackCoordinator.shared.deactivate(self)
}
}
// MARK: - Private Helpers
private func preparePlayer(for url: URL) {
// Prepare player synchronously (only called when playback is requested)
do {
let player = try AVAudioPlayer(contentsOf: url)
player.delegate = self
player.prepareToPlay()
self.player = player
duration = player.duration
currentTime = player.currentTime
progress = duration > 0 ? currentTime / duration : 0
} catch {
SecureLogger.error("Voice note playback failed for \(url.lastPathComponent): \(error)", category: .session)
player = nil
duration = 0
currentTime = 0
progress = 0
}
}
private func ensurePlayerReady() -> Bool {
if player == nil {
preparePlayer(for: url)
}
#if os(iOS)
let session = AVAudioSession.sharedInstance()
do {
try session.setCategory(.playback, mode: .spokenAudio, options: [.mixWithOthers])
try session.setActive(true, options: [])
} catch {
SecureLogger.error("Failed to activate audio session: \(error)", category: .session)
}
#endif
return player != nil
}
private func startTimer() {
if timer != nil { return }
timer = Timer.scheduledTimer(withTimeInterval: 0.05, repeats: true) { [weak self] _ in
self?.updateProgress()
}
if let timer = timer {
RunLoop.main.add(timer, forMode: .common)
}
}
private func stopTimer() {
timer?.invalidate()
timer = nil
}
private func updateProgress() {
guard let player = player else {
currentTime = 0
duration = 0
progress = 0
return
}
currentTime = player.currentTime
duration = player.duration
progress = duration > 0 ? currentTime / duration : 0
}
}
/// Ensures only one voice note plays at a time.
final class VoiceNotePlaybackCoordinator {
static let shared = VoiceNotePlaybackCoordinator()
private weak var activeController: VoiceNotePlaybackController?
private init() {}
func activate(_ controller: VoiceNotePlaybackController) {
if activeController === controller {
return
}
activeController?.pause()
activeController = controller
}
func deactivate(_ controller: VoiceNotePlaybackController) {
if activeController === controller {
activeController = nil
}
}
}
-169
View File
@@ -1,169 +0,0 @@
import Foundation
import AVFoundation
/// Manages audio capture for mesh voice notes with predictable encoding settings.
/// Recording runs on an internal serial queue to avoid AVAudioSession contention.
final class VoiceRecorder: NSObject, AVAudioRecorderDelegate {
enum RecorderError: Error {
case microphoneAccessDenied
case recorderInitializationFailed
case recordingInProgress
}
static let shared = VoiceRecorder()
private let queue = DispatchQueue(label: "com.bitchat.voice-recorder")
private let paddingInterval: TimeInterval = 0.5
private var recorder: AVAudioRecorder?
private var currentURL: URL?
private var stopWorkItem: DispatchWorkItem?
private override init() {
super.init()
}
// MARK: - Permissions
@discardableResult
func requestPermission() async -> Bool {
#if os(iOS)
return await withCheckedContinuation { continuation in
AVAudioSession.sharedInstance().requestRecordPermission { granted in
continuation.resume(returning: granted)
}
}
#elseif os(macOS)
return await withCheckedContinuation { continuation in
AVCaptureDevice.requestAccess(for: .audio) { granted in
continuation.resume(returning: granted)
}
}
#else
return true
#endif
}
// MARK: - Recording Lifecycle
func startRecording() throws -> URL {
try queue.sync {
if recorder?.isRecording == true {
throw RecorderError.recordingInProgress
}
#if os(iOS)
let session = AVAudioSession.sharedInstance()
guard session.recordPermission == .granted else {
throw RecorderError.microphoneAccessDenied
}
try session.setCategory(
.playAndRecord,
mode: .default,
options: [.defaultToSpeaker, .allowBluetoothA2DP, .allowBluetoothHFP]
)
try session.setActive(true, options: .notifyOthersOnDeactivation)
#endif
#if os(macOS)
guard AVCaptureDevice.authorizationStatus(for: .audio) == .authorized else {
throw RecorderError.microphoneAccessDenied
}
#endif
let outputURL = try makeOutputURL()
let settings: [String: Any] = [
AVFormatIDKey: kAudioFormatMPEG4AAC,
AVSampleRateKey: 16_000,
AVNumberOfChannelsKey: 1,
AVEncoderBitRateKey: 20_000
]
let audioRecorder = try AVAudioRecorder(url: outputURL, settings: settings)
audioRecorder.delegate = self
audioRecorder.isMeteringEnabled = true
audioRecorder.prepareToRecord()
audioRecorder.record()
recorder = audioRecorder
currentURL = outputURL
stopWorkItem?.cancel()
stopWorkItem = nil
return outputURL
}
}
func stopRecording(completion: @escaping (URL?) -> Void) {
queue.async { [weak self] in
guard let self = self, let recorder = self.recorder, recorder.isRecording else {
completion(self?.currentURL)
return
}
let item = DispatchWorkItem { [weak self] in
guard let self = self else { return }
recorder.stop()
self.cleanupSession()
let url = self.currentURL
self.recorder = nil
self.currentURL = url
completion(url)
}
self.stopWorkItem = item
self.queue.asyncAfter(deadline: .now() + self.paddingInterval, execute: item)
}
}
func cancelRecording() {
queue.async { [weak self] in
guard let self = self else { return }
self.stopWorkItem?.cancel()
self.stopWorkItem = nil
if let recorder = self.recorder, recorder.isRecording {
recorder.stop()
}
self.cleanupSession()
if let url = self.currentURL {
try? FileManager.default.removeItem(at: url)
}
self.recorder = nil
self.currentURL = nil
}
}
// MARK: - Metering
func currentAveragePower() -> Float {
queue.sync {
recorder?.updateMeters()
return recorder?.averagePower(forChannel: 0) ?? -160
}
}
// MARK: - Helpers
private func makeOutputURL() throws -> URL {
let formatter = DateFormatter()
formatter.dateFormat = "yyyyMMdd_HHmmss"
let fileName = "voice_\(formatter.string(from: Date())).m4a"
let baseDirectory = try applicationFilesDirectory().appendingPathComponent("voicenotes/outgoing", isDirectory: true)
try FileManager.default.createDirectory(at: baseDirectory, withIntermediateDirectories: true, attributes: nil)
return baseDirectory.appendingPathComponent(fileName)
}
private func applicationFilesDirectory() throws -> URL {
#if os(iOS)
return try FileManager.default.url(for: .applicationSupportDirectory, in: .userDomainMask, appropriateFor: nil, create: true)
.appendingPathComponent("files", isDirectory: true)
#else
let base = try FileManager.default.url(for: .applicationSupportDirectory, in: .userDomainMask, appropriateFor: nil, create: true)
return base.appendingPathComponent("files", isDirectory: true)
#endif
}
private func cleanupSession() {
#if os(iOS)
try? AVAudioSession.sharedInstance().setActive(false, options: .notifyOthersOnDeactivation)
#endif
}
}
-113
View File
@@ -1,113 +0,0 @@
import AVFoundation
import Foundation
import BitLogger
/// Generates and caches downsampled waveforms for audio files so UI rendering is cheap.
final class WaveformCache {
static let shared = WaveformCache()
private let queue = DispatchQueue(label: "com.bitchat.waveform-cache", attributes: .concurrent)
private var cache: [URL: (waveform: [Float], lastAccess: Date)] = [:]
private let maxCacheSize = 20 // Limit cache to prevent unbounded memory growth
private init() {}
func cachedWaveform(for url: URL) -> [Float]? {
queue.sync {
guard let entry = cache[url] else { return nil }
return entry.waveform
}
}
func waveform(for url: URL, bins: Int = 120, completion: @escaping ([Float]) -> Void) {
queue.async { [weak self] in
guard let self = self else { return }
// Check cache (read-only, no update needed on cache hit for performance)
if let entry = self.cache[url] {
DispatchQueue.main.async { completion(entry.waveform) }
return
}
guard let computed = self.computeWaveform(url: url, bins: bins) else {
DispatchQueue.main.async { completion([]) }
return
}
self.queue.async(flags: .barrier) { [weak self] in
guard let self = self else { return }
// Evict oldest entry if cache is full
if self.cache.count >= self.maxCacheSize {
if let oldest = self.cache.min(by: { $0.value.lastAccess < $1.value.lastAccess }) {
self.cache.removeValue(forKey: oldest.key)
}
}
self.cache[url] = (computed, Date())
}
DispatchQueue.main.async { completion(computed) }
}
}
func purge(url: URL) {
queue.async(flags: .barrier) { [weak self] in
self?.cache.removeValue(forKey: url)
}
}
func purgeAll() {
queue.async(flags: .barrier) { [weak self] in
self?.cache.removeAll()
}
}
private func computeWaveform(url: URL, bins: Int) -> [Float]? {
guard bins > 0 else { return nil }
// Use autoreleasepool to manage memory from audio buffer allocations
return autoreleasepool {
do {
let audioFile = try AVAudioFile(forReading: url)
let length = Int(audioFile.length)
guard length > 0 else { return nil }
guard let buffer = AVAudioPCMBuffer(pcmFormat: audioFile.processingFormat, frameCapacity: AVAudioFrameCount(length)) else {
return nil
}
try audioFile.read(into: buffer, frameCount: AVAudioFrameCount(length))
guard let channelData = buffer.floatChannelData else { return nil }
let channelCount = Int(audioFile.processingFormat.channelCount)
let frameLength = Int(buffer.frameLength)
let samplesPerBin = max(1, frameLength / bins)
var magnitudes: [Float] = Array(repeating: 0, count: bins)
for bin in 0..<bins {
let start = bin * samplesPerBin
let end = min(frameLength, start + samplesPerBin)
if start >= end { break }
var sum: Float = 0
var sampleCount = 0
for frame in start..<end {
var sampleValue: Float = 0
for channel in 0..<channelCount {
sampleValue += fabsf(channelData[channel][frame])
}
sum += sampleValue / Float(channelCount)
sampleCount += 1
}
magnitudes[bin] = sampleCount > 0 ? sum / Float(sampleCount) : 0
}
if let maxMagnitude = magnitudes.max(), maxMagnitude > 0 {
magnitudes = magnitudes.map { min($0 / maxMagnitude, 1.0) }
}
return magnitudes
} catch {
SecureLogger.error("Waveform extraction failed for \(url.lastPathComponent): \(error)", category: .session)
return nil
}
}
}
}
+18 -1
View File
@@ -87,7 +87,7 @@ import Foundation
/// Represents the ephemeral layer of identity - short-lived peer IDs that provide network privacy. /// Represents the ephemeral layer of identity - short-lived peer IDs that provide network privacy.
/// These IDs rotate periodically to prevent tracking while maintaining cryptographic relationships. /// These IDs rotate periodically to prevent tracking while maintaining cryptographic relationships.
struct EphemeralIdentity { struct EphemeralIdentity {
let peerID: PeerID // 8 random bytes let peerID: String // 8 random bytes
let sessionStart: Date let sessionStart: Date
var handshakeState: HandshakeState var handshakeState: HandshakeState
} }
@@ -158,6 +158,23 @@ struct IdentityCache: Codable {
var version: Int = 1 var version: Int = 1
} }
// MARK: - Identity Resolution
enum IdentityHint {
case unknown
case likelyKnown(fingerprint: String)
case ambiguous(candidates: Set<String>)
case verified(fingerprint: String)
}
// MARK: - Pending Actions
struct PendingActions {
var toggleFavorite: Bool?
var setTrustLevel: TrustLevel?
var setPetname: String?
}
// //
// MARK: - Migration Support // MARK: - Migration Support
+110 -69
View File
@@ -90,63 +90,27 @@
/// - Advanced conflict resolution /// - Advanced conflict resolution
/// ///
import BitLogger
import Foundation import Foundation
import CryptoKit import CryptoKit
protocol SecureIdentityStateManagerProtocol {
// MARK: Secure Loading/Saving
func forceSave()
// MARK: Social Identity Management
func getSocialIdentity(for fingerprint: String) -> SocialIdentity?
// MARK: Cryptographic Identities
func upsertCryptographicIdentity(fingerprint: String, noisePublicKey: Data, signingPublicKey: Data?, claimedNickname: String?)
func getCryptoIdentitiesByPeerIDPrefix(_ peerID: PeerID) -> [CryptographicIdentity]
func updateSocialIdentity(_ identity: SocialIdentity)
// MARK: Favorites Management
func getFavorites() -> Set<String>
func setFavorite(_ fingerprint: String, isFavorite: Bool)
func isFavorite(fingerprint: String) -> Bool
// MARK: Blocked Users Management
func isBlocked(fingerprint: String) -> Bool
func setBlocked(_ fingerprint: String, isBlocked: Bool)
// MARK: Geohash (Nostr) Blocking
func isNostrBlocked(pubkeyHexLowercased: String) -> Bool
func setNostrBlocked(_ pubkeyHexLowercased: String, isBlocked: Bool)
func getBlockedNostrPubkeys() -> Set<String>
// MARK: Ephemeral Session Management
func registerEphemeralSession(peerID: PeerID, handshakeState: HandshakeState)
func updateHandshakeState(peerID: PeerID, state: HandshakeState)
// MARK: Cleanup
func clearAllIdentityData()
func removeEphemeralSession(peerID: PeerID)
// MARK: Verification
func setVerified(fingerprint: String, verified: Bool)
func isVerified(fingerprint: String) -> Bool
func getVerifiedFingerprints() -> Set<String>
}
/// Singleton manager for secure identity state persistence and retrieval. /// Singleton manager for secure identity state persistence and retrieval.
/// Provides thread-safe access to identity mappings with encryption at rest. /// Provides thread-safe access to identity mappings with encryption at rest.
/// All identity data is stored encrypted in the device Keychain for security. /// All identity data is stored encrypted in the device Keychain for security.
final class SecureIdentityStateManager: SecureIdentityStateManagerProtocol { class SecureIdentityStateManager {
private let keychain: KeychainManagerProtocol static let shared = SecureIdentityStateManager()
private let keychain = KeychainManager.shared
private let cacheKey = "bitchat.identityCache.v2" private let cacheKey = "bitchat.identityCache.v2"
private let encryptionKeyName = "identityCacheEncryptionKey" private let encryptionKeyName = "identityCacheEncryptionKey"
// In-memory state // In-memory state
private var ephemeralSessions: [PeerID: EphemeralIdentity] = [:] private var ephemeralSessions: [String: EphemeralIdentity] = [:]
private var cryptographicIdentities: [String: CryptographicIdentity] = [:] private var cryptographicIdentities: [String: CryptographicIdentity] = [:]
private var cache: IdentityCache = IdentityCache() private var cache: IdentityCache = IdentityCache()
// Pending actions before handshake
private var pendingActions: [String: PendingActions] = [:]
// Thread safety // Thread safety
private let queue = DispatchQueue(label: "bitchat.identity.state", attributes: .concurrent) private let queue = DispatchQueue(label: "bitchat.identity.state", attributes: .concurrent)
@@ -158,16 +122,14 @@ final class SecureIdentityStateManager: SecureIdentityStateManagerProtocol {
// Encryption key // Encryption key
private let encryptionKey: SymmetricKey private let encryptionKey: SymmetricKey
init(_ keychain: KeychainManagerProtocol) { private init() {
self.keychain = keychain
// Generate or retrieve encryption key from keychain // Generate or retrieve encryption key from keychain
let loadedKey: SymmetricKey let loadedKey: SymmetricKey
// Try to load from keychain // Try to load from keychain
if let keyData = keychain.getIdentityKey(forKey: encryptionKeyName) { if let keyData = keychain.getIdentityKey(forKey: encryptionKeyName) {
loadedKey = SymmetricKey(data: keyData) loadedKey = SymmetricKey(data: keyData)
SecureLogger.logKeyOperation(.load, keyType: "identity cache encryption key", success: true) SecureLogger.logKeyOperation("load", keyType: "identity cache encryption key", success: true)
} }
// Generate new key if needed // Generate new key if needed
else { else {
@@ -175,7 +137,7 @@ final class SecureIdentityStateManager: SecureIdentityStateManagerProtocol {
let keyData = loadedKey.withUnsafeBytes { Data($0) } let keyData = loadedKey.withUnsafeBytes { Data($0) }
// Save to keychain // Save to keychain
let saved = keychain.saveIdentityKey(keyData, forKey: encryptionKeyName) let saved = keychain.saveIdentityKey(keyData, forKey: encryptionKeyName)
SecureLogger.logKeyOperation(.generate, keyType: "identity cache encryption key", success: saved) SecureLogger.logKeyOperation("generate", keyType: "identity cache encryption key", success: saved)
} }
self.encryptionKey = loadedKey self.encryptionKey = loadedKey
@@ -184,13 +146,9 @@ final class SecureIdentityStateManager: SecureIdentityStateManagerProtocol {
loadIdentityCache() loadIdentityCache()
} }
deinit {
forceSave()
}
// MARK: - Secure Loading/Saving // MARK: - Secure Loading/Saving
private func loadIdentityCache() { func loadIdentityCache() {
guard let encryptedData = keychain.getIdentityKey(forKey: cacheKey) else { guard let encryptedData = keychain.getIdentityKey(forKey: cacheKey) else {
// No existing cache, start fresh // No existing cache, start fresh
return return
@@ -202,11 +160,16 @@ final class SecureIdentityStateManager: SecureIdentityStateManagerProtocol {
cache = try JSONDecoder().decode(IdentityCache.self, from: decryptedData) cache = try JSONDecoder().decode(IdentityCache.self, from: decryptedData)
} catch { } catch {
// Log error but continue with empty cache // Log error but continue with empty cache
SecureLogger.error(error, context: "Failed to load identity cache", category: .security) SecureLogger.logError(error, context: "Failed to load identity cache", category: SecureLogger.security)
} }
} }
private func saveIdentityCache() { deinit {
// Force save any pending changes
forceSave()
}
func saveIdentityCache() {
// Mark that we need to save // Mark that we need to save
pendingSave = true pendingSave = true
@@ -228,17 +191,35 @@ final class SecureIdentityStateManager: SecureIdentityStateManagerProtocol {
let sealedBox = try AES.GCM.seal(data, using: encryptionKey) let sealedBox = try AES.GCM.seal(data, using: encryptionKey)
let saved = keychain.saveIdentityKey(sealedBox.combined!, forKey: cacheKey) let saved = keychain.saveIdentityKey(sealedBox.combined!, forKey: cacheKey)
if saved { if saved {
SecureLogger.debug("Identity cache saved to keychain", category: .security) SecureLogger.log("Identity cache saved to keychain", category: SecureLogger.security, level: .debug)
} }
} catch { } catch {
SecureLogger.error(error, context: "Failed to save identity cache", category: .security) SecureLogger.logError(error, context: "Failed to save identity cache", category: SecureLogger.security)
} }
} }
// Force immediate save (for app termination) // Force immediate save (for app termination)
func forceSave() { func forceSave() {
saveTimer?.invalidate() saveTimer?.invalidate()
performSave() if pendingSave {
performSave()
}
}
// MARK: - Identity Resolution
func resolveIdentity(peerID: String, claimedNickname: String) -> IdentityHint {
queue.sync {
// Check if we have candidates based on nickname
if let fingerprints = cache.nicknameIndex[claimedNickname] {
if fingerprints.count == 1 {
return .likelyKnown(fingerprint: fingerprints.first!)
} else {
return .ambiguous(candidates: fingerprints)
}
}
return .unknown
}
} }
// MARK: - Social Identity Management // MARK: - Social Identity Management
@@ -320,12 +301,23 @@ final class SecureIdentityStateManager: SecureIdentityStateManagerProtocol {
} }
} }
/// Retrieve cryptographic identity by fingerprint
func getCryptographicIdentity(for fingerprint: String) -> CryptographicIdentity? {
queue.sync { cryptographicIdentities[fingerprint] }
}
/// Find cryptographic identities whose fingerprint prefix matches a peerID (16-hex) short ID /// Find cryptographic identities whose fingerprint prefix matches a peerID (16-hex) short ID
func getCryptoIdentitiesByPeerIDPrefix(_ peerID: PeerID) -> [CryptographicIdentity] { func getCryptoIdentitiesByPeerIDPrefix(_ peerID: String) -> [CryptographicIdentity] {
queue.sync { queue.sync {
// Defensive: ensure hex and correct length // Defensive: ensure hex and correct length
guard peerID.isShort else { return [] } guard PeerIDResolver.isShortID(peerID) else { return [] }
return cryptographicIdentities.values.filter { $0.fingerprint.hasPrefix(peerID.id) } return cryptographicIdentities.values.filter { $0.fingerprint.hasPrefix(peerID) }
}
}
func getAllSocialIdentities() -> [SocialIdentity] {
queue.sync {
return Array(cache.socialIdentities.values)
} }
} }
@@ -403,7 +395,7 @@ final class SecureIdentityStateManager: SecureIdentityStateManagerProtocol {
} }
func setBlocked(_ fingerprint: String, isBlocked: Bool) { func setBlocked(_ fingerprint: String, isBlocked: Bool) {
SecureLogger.info("User \(isBlocked ? "blocked" : "unblocked"): \(fingerprint)", category: .security) SecureLogger.log("User \(isBlocked ? "blocked" : "unblocked"): \(fingerprint)", category: SecureLogger.security, level: .info)
queue.async(flags: .barrier) { queue.async(flags: .barrier) {
if var identity = self.cache.socialIdentities[fingerprint] { if var identity = self.cache.socialIdentities[fingerprint] {
@@ -455,7 +447,7 @@ final class SecureIdentityStateManager: SecureIdentityStateManagerProtocol {
// MARK: - Ephemeral Session Management // MARK: - Ephemeral Session Management
func registerEphemeralSession(peerID: PeerID, handshakeState: HandshakeState = .none) { func registerEphemeralSession(peerID: String, handshakeState: HandshakeState = .none) {
queue.async(flags: .barrier) { queue.async(flags: .barrier) {
self.ephemeralSessions[peerID] = EphemeralIdentity( self.ephemeralSessions[peerID] = EphemeralIdentity(
peerID: peerID, peerID: peerID,
@@ -465,7 +457,7 @@ final class SecureIdentityStateManager: SecureIdentityStateManagerProtocol {
} }
} }
func updateHandshakeState(peerID: PeerID, state: HandshakeState) { func updateHandshakeState(peerID: String, state: HandshakeState) {
queue.async(flags: .barrier) { queue.async(flags: .barrier) {
self.ephemeralSessions[peerID]?.handshakeState = state self.ephemeralSessions[peerID]?.handshakeState = state
@@ -477,32 +469,81 @@ final class SecureIdentityStateManager: SecureIdentityStateManagerProtocol {
} }
} }
func getHandshakeState(peerID: String) -> HandshakeState? {
queue.sync {
return ephemeralSessions[peerID]?.handshakeState
}
}
// MARK: - Pending Actions
func setPendingAction(peerID: String, action: PendingActions) {
queue.async(flags: .barrier) {
self.pendingActions[peerID] = action
}
}
func applyPendingActions(peerID: String, fingerprint: String) {
queue.async(flags: .barrier) {
guard let actions = self.pendingActions[peerID] else { return }
// Get or create social identity
var identity = self.cache.socialIdentities[fingerprint] ?? SocialIdentity(
fingerprint: fingerprint,
localPetname: nil,
claimedNickname: "Unknown",
trustLevel: .unknown,
isFavorite: false,
isBlocked: false,
notes: nil
)
// Apply pending actions
if let toggleFavorite = actions.toggleFavorite {
identity.isFavorite = toggleFavorite
}
if let trustLevel = actions.setTrustLevel {
identity.trustLevel = trustLevel
}
if let petname = actions.setPetname {
identity.localPetname = petname
}
// Save updated identity
self.cache.socialIdentities[fingerprint] = identity
self.pendingActions.removeValue(forKey: peerID)
self.saveIdentityCache()
}
}
// MARK: - Cleanup // MARK: - Cleanup
func clearAllIdentityData() { func clearAllIdentityData() {
SecureLogger.warning("Clearing all identity data", category: .security) SecureLogger.log("Clearing all identity data", category: SecureLogger.security, level: .warning)
queue.async(flags: .barrier) { queue.async(flags: .barrier) {
self.cache = IdentityCache() self.cache = IdentityCache()
self.ephemeralSessions.removeAll() self.ephemeralSessions.removeAll()
self.cryptographicIdentities.removeAll() self.cryptographicIdentities.removeAll()
self.pendingActions.removeAll()
// Delete from keychain // Delete from keychain
let deleted = self.keychain.deleteIdentityKey(forKey: self.cacheKey) let deleted = self.keychain.deleteIdentityKey(forKey: self.cacheKey)
SecureLogger.logKeyOperation(.delete, keyType: "identity cache", success: deleted) SecureLogger.logKeyOperation("delete", keyType: "identity cache", success: deleted)
} }
} }
func removeEphemeralSession(peerID: PeerID) { func removeEphemeralSession(peerID: String) {
queue.async(flags: .barrier) { queue.async(flags: .barrier) {
self.ephemeralSessions.removeValue(forKey: peerID) self.ephemeralSessions.removeValue(forKey: peerID)
self.pendingActions.removeValue(forKey: peerID)
} }
} }
// MARK: - Verification // MARK: - Verification
func setVerified(fingerprint: String, verified: Bool) { func setVerified(fingerprint: String, verified: Bool) {
SecureLogger.info("Fingerprint \(verified ? "verified" : "unverified"): \(fingerprint)", category: .security) SecureLogger.log("Fingerprint \(verified ? "verified" : "unverified"): \(fingerprint)", category: SecureLogger.security, level: .info)
queue.async(flags: .barrier) { queue.async(flags: .barrier) {
if verified { if verified {
+2 -6
View File
@@ -35,14 +35,10 @@
<string>bitchat uses Bluetooth to create a secure mesh network for chatting with nearby users.</string> <string>bitchat uses Bluetooth to create a secure mesh network for chatting with nearby users.</string>
<key>NSBluetoothPeripheralUsageDescription</key> <key>NSBluetoothPeripheralUsageDescription</key>
<string>bitchat uses Bluetooth to discover and connect with other bitchat users nearby.</string> <string>bitchat uses Bluetooth to discover and connect with other bitchat users nearby.</string>
<key>NSCameraUsageDescription</key>
<string>bitchat uses the camera to scan QR codes to verify peers.</string>
<key>NSPhotoLibraryUsageDescription</key>
<string>bitchat lets you pick images from your photo library to share with nearby peers.</string>
<key>NSMicrophoneUsageDescription</key>
<string>bitchat uses the microphone to record voice notes that relay across the mesh.</string>
<key>NSLocationWhenInUseUsageDescription</key> <key>NSLocationWhenInUseUsageDescription</key>
<string>bitchat uses your approximate location to compute local geohash channels for optional public chats. Exact GPS is never shared.</string> <string>bitchat uses your approximate location to compute local geohash channels for optional public chats. Exact GPS is never shared.</string>
<key>NSCameraUsageDescription</key>
<string>bitchat uses the camera to scan QR codes to verify peers.</string>
<key>UIBackgroundModes</key> <key>UIBackgroundModes</key>
<array> <array>
<string>bluetooth-central</string> <string>bluetooth-central</string>
File diff suppressed because it is too large Load Diff
-355
View File
@@ -1,355 +0,0 @@
//
// BitchatMessage.swift
// bitchat
//
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import Foundation
/// Represents a user-visible message in the BitChat system.
/// Handles both broadcast messages and private encrypted messages,
/// with support for mentions, replies, and delivery tracking.
/// - Note: This is the primary data model for chat messages
final class BitchatMessage: Codable {
let id: String
let sender: String
let content: String
let timestamp: Date
let isRelay: Bool
let originalSender: String?
let isPrivate: Bool
let recipientNickname: String?
let senderPeerID: PeerID?
let mentions: [String]? // Array of mentioned nicknames
var deliveryStatus: DeliveryStatus? // Delivery tracking
// Cached formatted text (not included in Codable)
private var _cachedFormattedText: [String: AttributedString] = [:]
func getCachedFormattedText(isDark: Bool, isSelf: Bool) -> AttributedString? {
return _cachedFormattedText["\(isDark)-\(isSelf)"]
}
func setCachedFormattedText(_ text: AttributedString, isDark: Bool, isSelf: Bool) {
_cachedFormattedText["\(isDark)-\(isSelf)"] = text
}
// Codable implementation
enum CodingKeys: String, CodingKey {
case id, sender, content, timestamp, isRelay, originalSender
case isPrivate, recipientNickname, senderPeerID, mentions, deliveryStatus
}
init(
id: String? = nil,
sender: String,
content: String,
timestamp: Date,
isRelay: Bool,
originalSender: String? = nil,
isPrivate: Bool = false,
recipientNickname: String? = nil,
senderPeerID: PeerID? = nil,
mentions: [String]? = nil,
deliveryStatus: DeliveryStatus? = nil
) {
self.id = id ?? UUID().uuidString
self.sender = sender
self.content = content
self.timestamp = timestamp
self.isRelay = isRelay
self.originalSender = originalSender
self.isPrivate = isPrivate
self.recipientNickname = recipientNickname
self.senderPeerID = senderPeerID
self.mentions = mentions
self.deliveryStatus = deliveryStatus ?? (isPrivate ? .sending : nil)
}
}
// MARK: - Equatable Conformance
extension BitchatMessage: Equatable {
static func == (lhs: BitchatMessage, rhs: BitchatMessage) -> Bool {
return lhs.id == rhs.id &&
lhs.sender == rhs.sender &&
lhs.content == rhs.content &&
lhs.timestamp == rhs.timestamp &&
lhs.isRelay == rhs.isRelay &&
lhs.originalSender == rhs.originalSender &&
lhs.isPrivate == rhs.isPrivate &&
lhs.recipientNickname == rhs.recipientNickname &&
lhs.senderPeerID == rhs.senderPeerID &&
lhs.mentions == rhs.mentions &&
lhs.deliveryStatus == rhs.deliveryStatus
}
}
// MARK: - Binary encoding
extension BitchatMessage {
func toBinaryPayload() -> Data? {
var data = Data()
// Message format:
// - Flags: 1 byte (bit 0: isRelay, bit 1: isPrivate, bit 2: hasOriginalSender, bit 3: hasRecipientNickname, bit 4: hasSenderPeerID, bit 5: hasMentions)
// - Timestamp: 8 bytes (seconds since epoch)
// - ID length: 1 byte
// - ID: variable
// - Sender length: 1 byte
// - Sender: variable
// - Content length: 2 bytes
// - Content: variable
// Optional fields based on flags:
// - Original sender length + data
// - Recipient nickname length + data
// - Sender peer ID length + data
// - Mentions array
var flags: UInt8 = 0
if isRelay { flags |= 0x01 }
if isPrivate { flags |= 0x02 }
if originalSender != nil { flags |= 0x04 }
if recipientNickname != nil { flags |= 0x08 }
if senderPeerID != nil { flags |= 0x10 }
if mentions != nil && !mentions!.isEmpty { flags |= 0x20 }
data.append(flags)
// Timestamp (in milliseconds)
let timestampMillis = UInt64(timestamp.timeIntervalSince1970 * 1000)
// Encode as 8 bytes, big-endian
for i in (0..<8).reversed() {
data.append(UInt8((timestampMillis >> (i * 8)) & 0xFF))
}
// ID
if let idData = id.data(using: .utf8) {
data.append(UInt8(min(idData.count, 255)))
data.append(idData.prefix(255))
} else {
data.append(0)
}
// Sender
if let senderData = sender.data(using: .utf8) {
data.append(UInt8(min(senderData.count, 255)))
data.append(senderData.prefix(255))
} else {
data.append(0)
}
// Content
if let contentData = content.data(using: .utf8) {
let length = UInt16(min(contentData.count, 65535))
// Encode length as 2 bytes, big-endian
data.append(UInt8((length >> 8) & 0xFF))
data.append(UInt8(length & 0xFF))
data.append(contentData.prefix(Int(length)))
} else {
data.append(contentsOf: [0, 0])
}
// Optional fields
if let originalSender = originalSender, let origData = originalSender.data(using: .utf8) {
data.append(UInt8(min(origData.count, 255)))
data.append(origData.prefix(255))
}
if let recipientNickname = recipientNickname, let recipData = recipientNickname.data(using: .utf8) {
data.append(UInt8(min(recipData.count, 255)))
data.append(recipData.prefix(255))
}
if let peerData = senderPeerID?.id.data(using: .utf8) {
data.append(UInt8(min(peerData.count, 255)))
data.append(peerData.prefix(255))
}
// Mentions array
if let mentions = mentions {
data.append(UInt8(min(mentions.count, 255))) // Number of mentions
for mention in mentions.prefix(255) {
if let mentionData = mention.data(using: .utf8) {
data.append(UInt8(min(mentionData.count, 255)))
data.append(mentionData.prefix(255))
} else {
data.append(0)
}
}
}
return data
}
convenience init?(_ data: Data) {
// Create an immutable copy to prevent threading issues
let dataCopy = Data(data)
guard dataCopy.count >= 13 else {
return nil
}
var offset = 0
// Flags
guard offset < dataCopy.count else {
return nil
}
let flags = dataCopy[offset]; offset += 1
let isRelay = (flags & 0x01) != 0
let isPrivate = (flags & 0x02) != 0
let hasOriginalSender = (flags & 0x04) != 0
let hasRecipientNickname = (flags & 0x08) != 0
let hasSenderPeerID = (flags & 0x10) != 0
let hasMentions = (flags & 0x20) != 0
// Timestamp
guard offset + 8 <= dataCopy.count else {
return nil
}
let timestampData = dataCopy[offset..<offset+8]
let timestampMillis = timestampData.reduce(0) { result, byte in
(result << 8) | UInt64(byte)
}
offset += 8
let timestamp = Date(timeIntervalSince1970: TimeInterval(timestampMillis) / 1000.0)
// ID
guard offset < dataCopy.count else {
return nil
}
let idLength = Int(dataCopy[offset]); offset += 1
guard offset + idLength <= dataCopy.count else {
return nil
}
let id = String(data: dataCopy[offset..<offset+idLength], encoding: .utf8) ?? UUID().uuidString
offset += idLength
// Sender
guard offset < dataCopy.count else {
return nil
}
let senderLength = Int(dataCopy[offset]); offset += 1
guard offset + senderLength <= dataCopy.count else {
return nil
}
let sender = String(data: dataCopy[offset..<offset+senderLength], encoding: .utf8) ?? "unknown"
offset += senderLength
// Content
guard offset + 2 <= dataCopy.count else {
return nil
}
let contentLengthData = dataCopy[offset..<offset+2]
let contentLength = Int(contentLengthData.reduce(0) { result, byte in
(result << 8) | UInt16(byte)
})
offset += 2
guard offset + contentLength <= dataCopy.count else {
return nil
}
let content = String(data: dataCopy[offset..<offset+contentLength], encoding: .utf8) ?? ""
offset += contentLength
// Optional fields
var originalSender: String?
if hasOriginalSender && offset < dataCopy.count {
let length = Int(dataCopy[offset]); offset += 1
if offset + length <= dataCopy.count {
originalSender = String(data: dataCopy[offset..<offset+length], encoding: .utf8)
offset += length
}
}
var recipientNickname: String?
if hasRecipientNickname && offset < dataCopy.count {
let length = Int(dataCopy[offset]); offset += 1
if offset + length <= dataCopy.count {
recipientNickname = String(data: dataCopy[offset..<offset+length], encoding: .utf8)
offset += length
}
}
var senderPeerID: PeerID?
if hasSenderPeerID && offset < dataCopy.count {
let length = Int(dataCopy[offset]); offset += 1
if offset + length <= dataCopy.count {
senderPeerID = PeerID(data: dataCopy[offset..<offset+length])
offset += length
}
}
// Mentions array
var mentions: [String]?
if hasMentions && offset < dataCopy.count {
let mentionCount = Int(dataCopy[offset]); offset += 1
if mentionCount > 0 {
mentions = []
for _ in 0..<mentionCount {
if offset < dataCopy.count {
let length = Int(dataCopy[offset]); offset += 1
if offset + length <= dataCopy.count {
if let mention = String(data: dataCopy[offset..<offset+length], encoding: .utf8) {
mentions?.append(mention)
}
offset += length
}
}
}
}
}
self.init(
id: id,
sender: sender,
content: content,
timestamp: timestamp,
isRelay: isRelay,
originalSender: originalSender,
isPrivate: isPrivate,
recipientNickname: recipientNickname,
senderPeerID: senderPeerID,
mentions: mentions
)
}
}
// MARK: - Helpers
extension BitchatMessage {
private static let timestampFormatter: DateFormatter = {
let formatter = DateFormatter()
formatter.dateFormat = "HH:mm:ss"
return formatter
}()
var formattedTimestamp: String {
Self.timestampFormatter.string(from: timestamp)
}
}
extension Array where Element == BitchatMessage {
/// Filters out empty ones and deduplicate by ID while preserving order (from oldest to newest)
func cleanedAndDeduped() -> [Element] {
let arr = filter { $0.content.trimmingCharacters(in: .whitespacesAndNewlines).isEmpty == false }
guard arr.count > 1 else {
return arr
}
var seen = Set<String>()
var dedup: [BitchatMessage] = []
for m in arr.sorted(by: { $0.timestamp < $1.timestamp }) {
if !seen.contains(m.id) {
dedup.append(m)
seen.insert(m.id)
}
}
return dedup
}
}
-92
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@@ -1,92 +0,0 @@
//
// BitchatPacket.swift
// bitchat
//
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import Foundation
/// The core packet structure for all BitChat protocol messages.
/// Encapsulates all data needed for routing through the mesh network,
/// including TTL for hop limiting and optional encryption.
/// - Note: Packets larger than BLE MTU (512 bytes) are automatically fragmented
struct BitchatPacket: Codable {
let version: UInt8
let type: UInt8
let senderID: Data
let recipientID: Data?
let timestamp: UInt64
let payload: Data
var signature: Data?
var ttl: UInt8
init(type: UInt8, senderID: Data, recipientID: Data?, timestamp: UInt64, payload: Data, signature: Data?, ttl: UInt8, version: UInt8 = 1) {
self.version = version
self.type = type
self.senderID = senderID
self.recipientID = recipientID
self.timestamp = timestamp
self.payload = payload
self.signature = signature
self.ttl = ttl
}
// Convenience initializer for new binary format
init(type: UInt8, ttl: UInt8, senderID: PeerID, payload: Data) {
self.version = 1
self.type = type
// Convert hex string peer ID to binary data (8 bytes)
var senderData = Data()
var tempID = senderID.id
while tempID.count >= 2 {
let hexByte = String(tempID.prefix(2))
if let byte = UInt8(hexByte, radix: 16) {
senderData.append(byte)
}
tempID = String(tempID.dropFirst(2))
}
self.senderID = senderData
self.recipientID = nil
self.timestamp = UInt64(Date().timeIntervalSince1970 * 1000) // milliseconds
self.payload = payload
self.signature = nil
self.ttl = ttl
}
var data: Data? {
BinaryProtocol.encode(self)
}
func toBinaryData(padding: Bool = true) -> Data? {
BinaryProtocol.encode(self, padding: padding)
}
// Backward-compatible helper (defaults to padded encoding)
func toBinaryData() -> Data? {
toBinaryData(padding: true)
}
/// Create binary representation for signing (without signature and TTL fields)
/// TTL is excluded because it changes during packet relay operations
func toBinaryDataForSigning() -> Data? {
// Create a copy without signature and with fixed TTL for signing
// TTL must be excluded because it changes during relay
let unsignedPacket = BitchatPacket(
type: type,
senderID: senderID,
recipientID: recipientID,
timestamp: timestamp,
payload: payload,
signature: nil, // Remove signature for signing
ttl: 0, // Use fixed TTL=0 for signing to ensure relay compatibility
version: version
)
return BinaryProtocol.encode(unsignedPacket)
}
static func from(_ data: Data) -> BitchatPacket? {
BinaryProtocol.decode(data)
}
}
+8 -6
View File
@@ -2,8 +2,8 @@ import Foundation
import CoreBluetooth import CoreBluetooth
/// Represents a peer in the BitChat network with all associated metadata /// Represents a peer in the BitChat network with all associated metadata
struct BitchatPeer: Equatable { struct BitchatPeer: Identifiable, Equatable {
let peerID: PeerID // Hex-encoded peer ID let id: String // Hex-encoded peer ID
let noisePublicKey: Data let noisePublicKey: Data
let nickname: String let nickname: String
let lastSeen: Date let lastSeen: Date
@@ -51,7 +51,7 @@ struct BitchatPeer: Equatable {
// Display helpers // Display helpers
var displayName: String { var displayName: String {
nickname.isEmpty ? String(peerID.id.prefix(8)) : nickname nickname.isEmpty ? String(id.prefix(8)) : nickname
} }
var statusIcon: String { var statusIcon: String {
@@ -73,14 +73,14 @@ struct BitchatPeer: Equatable {
// Initialize from mesh service data // Initialize from mesh service data
init( init(
peerID: PeerID, id: String,
noisePublicKey: Data, noisePublicKey: Data,
nickname: String, nickname: String,
lastSeen: Date = Date(), lastSeen: Date = Date(),
isConnected: Bool = false, isConnected: Bool = false,
isReachable: Bool = false isReachable: Bool = false
) { ) {
self.peerID = peerID self.id = id
self.noisePublicKey = noisePublicKey self.noisePublicKey = noisePublicKey
self.nickname = nickname self.nickname = nickname
self.lastSeen = lastSeen self.lastSeen = lastSeen
@@ -93,6 +93,8 @@ struct BitchatPeer: Equatable {
} }
static func == (lhs: BitchatPeer, rhs: BitchatPeer) -> Bool { static func == (lhs: BitchatPeer, rhs: BitchatPeer) -> Bool {
lhs.peerID == rhs.peerID lhs.id == rhs.id
} }
} }
//
-61
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@@ -1,61 +0,0 @@
//
// MessagePadding.swift
// bitchat
//
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import Foundation
/// Provides privacy-preserving message padding to obscure actual content length.
/// Uses PKCS#7-style padding with random bytes to prevent traffic analysis.
struct MessagePadding {
// Standard block sizes for padding
static let blockSizes = [256, 512, 1024, 2048]
// Add PKCS#7-style padding to reach target size
static func pad(_ data: Data, toSize targetSize: Int) -> Data {
guard data.count < targetSize else { return data }
let paddingNeeded = targetSize - data.count
// Constrain to 255 to fit a single-byte pad length marker
guard paddingNeeded > 0 && paddingNeeded <= 255 else { return data }
var padded = data
// PKCS#7: All pad bytes are equal to the pad length
padded.append(contentsOf: Array(repeating: UInt8(paddingNeeded), count: paddingNeeded))
return padded
}
// Remove padding from data
static func unpad(_ data: Data) -> Data {
guard !data.isEmpty else { return data }
let last = data.last!
let paddingLength = Int(last)
// Must have at least 1 pad byte and not exceed data length
guard paddingLength > 0 && paddingLength <= data.count else { return data }
// Verify PKCS#7: all last N bytes equal to pad length
let start = data.count - paddingLength
let tail = data[start...]
for b in tail { if b != last { return data } }
return Data(data[..<start])
}
// Find optimal block size for data
static func optimalBlockSize(for dataSize: Int) -> Int {
// Account for encryption overhead (~16 bytes for AES-GCM tag)
let totalSize = dataSize + 16
// Find smallest block that fits
for blockSize in blockSizes {
if totalSize <= blockSize {
return blockSize
}
}
// For very large messages, just use the original size
// (will be fragmented anyway)
return dataSize
}
}
-41
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@@ -1,41 +0,0 @@
//
// NoisePayload.swift
// bitchat
//
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import Foundation
/// Helper to create typed Noise payloads
struct NoisePayload {
let type: NoisePayloadType
let data: Data
/// Encode payload with type prefix
func encode() -> Data {
var encoded = Data()
encoded.append(type.rawValue)
encoded.append(data)
return encoded
}
/// Decode payload from data
static func decode(_ data: Data) -> NoisePayload? {
// Ensure we have at least 1 byte for the type
guard !data.isEmpty else {
return nil
}
// Safely get the first byte
let firstByte = data[data.startIndex]
guard let type = NoisePayloadType(rawValue: firstByte) else {
return nil
}
// Create a proper Data copy (not a subsequence) for thread safety
let payloadData = data.count > 1 ? Data(data.dropFirst()) : Data()
return NoisePayload(type: type, data: payloadData)
}
}
-217
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@@ -1,217 +0,0 @@
//
// PeerID.swift
// bitchat
//
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import Foundation
struct PeerID: Equatable, Hashable {
enum Prefix: String, CaseIterable {
/// When no prefix is provided
case empty = ""
/// `"mesh:"`
case mesh = "mesh:"
/// `"name:"`
case name = "name:"
/// `"noise:"` (+ 64 characters hex)
case noise = "noise:"
/// `"nostr_"` (+ 16 characters hex)
case geoDM = "nostr_"
/// `"nostr:"` (+ 8 characters hex)
case geoChat = "nostr:"
}
let prefix: Prefix
/// Returns the actual value without any prefix
let bare: String
/// Returns the full `id` value by combining `(prefix + bare)`
var id: String { prefix.rawValue + bare }
// Private so the callers have to go through a convenience init
private init(prefix: Prefix, bare: any StringProtocol) {
self.prefix = prefix
self.bare = String(bare)
}
}
// MARK: - Convenience Inits
extension PeerID {
/// Convenience init to create GeoDM PeerID by appending `"nostr_"` to the first 16 characters of `pubKey`
init(nostr_ pubKey: String) {
self.init(prefix: .geoDM, bare: pubKey.prefix(TransportConfig.nostrConvKeyPrefixLength))
}
/// Convenience init to create GeoChat PeerID by appending `"nostr:"` to the first 8 characters of `pubKey`
init(nostr pubKey: String) {
self.init(prefix: .geoChat, bare: pubKey.prefix(TransportConfig.nostrShortKeyDisplayLength))
}
/// Convenience init to create PeerID from String/Substring by splitting it into prefix and bare parts
init(str: any StringProtocol) {
if let prefix = Prefix.allCases.first(where: { $0 != .empty && str.hasPrefix($0.rawValue) }) {
self.init(prefix: prefix, bare: String(str).dropFirst(prefix.rawValue.count))
} else {
self.init(prefix: .empty, bare: str)
}
}
/// Convenience init to handle `Optional<String>`
init?(str: (any StringProtocol)?) {
guard let str else { return nil }
self.init(str: str)
}
/// Convenience init to create PeerID by converting Data to String
init?(data: Data) {
self.init(str: String(data: data, encoding: .utf8))
}
/// Convenience init to "hide" hex-encoding implementation detail
init(hexData: Data) {
self.init(str: hexData.hexEncodedString())
}
}
// MARK: - Noise Public Key Helpers
extension PeerID {
/// Derive the stable 16-hex peer ID from a Noise static public key
init(publicKey: Data) {
self.init(str: publicKey.sha256Fingerprint().prefix(16))
}
/// Returns a 16-hex short peer ID derived from a 64-hex Noise public key if needed
func toShort() -> PeerID {
if let noiseKey {
return PeerID(publicKey: noiseKey)
}
return self
}
}
// MARK: - Codable
extension PeerID: Codable {
init(from decoder: any Decoder) throws {
self.init(str: try decoder.singleValueContainer().decode(String.self))
}
func encode(to encoder: any Encoder) throws {
var container = encoder.singleValueContainer()
try container.encode(id)
}
}
// MARK: - Helpers
extension PeerID {
var isEmpty: Bool {
id.isEmpty
}
/// Returns true if `id` starts with "`nostr:`"
var isGeoChat: Bool {
prefix == .geoChat
}
/// Returns true if `id` starts with "`nostr_`"
var isGeoDM: Bool {
prefix == .geoDM
}
func toPercentEncoded() -> String {
id.addingPercentEncoding(withAllowedCharacters: .urlPathAllowed) ?? id
}
}
// MARK: - Validation
extension PeerID {
private enum Constants {
static let maxIDLength = 64
static let hexIDLength = 16 // 8 bytes = 16 hex chars
}
/// Validates a peer ID from any source (short 16-hex, full 64-hex, or internal alnum/-/_ up to 64)
var isValid: Bool {
if prefix != .empty {
return PeerID(str: bare).isValid
}
// Accept short routing IDs (exact 16-hex) or Full Noise key hex (exact 64-hex)
if isShort || isNoiseKeyHex {
return true
}
// If length equals short or full but isn't valid hex, reject
if id.count == Constants.hexIDLength || id.count == Constants.maxIDLength {
return false
}
// Internal format: alphanumeric + dash/underscore up to 63 (not 16 or 64)
let validCharset = CharacterSet.alphanumerics.union(CharacterSet(charactersIn: "-_"))
return !id.isEmpty &&
id.count < Constants.maxIDLength &&
id.rangeOfCharacter(from: validCharset.inverted) == nil
}
/// Returns true if the `bare` id is all hex
var isHex: Bool {
bare.allSatisfy { $0.isHexDigit }
}
/// Short routing IDs (exact 16-hex)
var isShort: Bool {
bare.count == Constants.hexIDLength && isHex
}
/// Full Noise key hex (exact 64-hex)
var isNoiseKeyHex: Bool {
noiseKey != nil
}
/// Full Noise key (exact 64-hex) as Data
var noiseKey: Data? {
guard bare.count == Constants.maxIDLength else { return nil }
return Data(hexString: bare)
}
}
// MARK: - Comparable
extension PeerID: Comparable {
static func < (lhs: PeerID, rhs: PeerID) -> Bool {
lhs.id < rhs.id
}
}
// MARK: - String Interop Helpers
// MARK: CustomStringConvertible
extension PeerID: CustomStringConvertible {
/// So it returns the actual `id` like before even inside another String
var description: String {
id
}
}
// MARK: Custom Equatable w/ String & Optionality
// PeerID <> String
extension Optional where Wrapped == PeerID {
static func ==(lhs: Optional<Wrapped>, rhs: Optional<String>) -> Bool { lhs?.id == rhs }
static func !=(lhs: Optional<Wrapped>, rhs: Optional<String>) -> Bool { lhs?.id != rhs }
}
// String <> PeerID
extension Optional where Wrapped == String {
static func ==(lhs: Optional<Wrapped>, rhs: Optional<PeerID>) -> Bool { lhs == rhs?.id }
static func !=(lhs: Optional<Wrapped>, rhs: Optional<PeerID>) -> Bool { lhs != rhs?.id }
}
-95
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@@ -1,95 +0,0 @@
//
// ReadReceipt.swift
// bitchat
//
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import Foundation
struct ReadReceipt: Codable {
let originalMessageID: String
let receiptID: String
var readerID: String // Who read it
let readerNickname: String
let timestamp: Date
init(originalMessageID: String, readerID: String, readerNickname: String) {
self.originalMessageID = originalMessageID
self.receiptID = UUID().uuidString
self.readerID = readerID
self.readerNickname = readerNickname
self.timestamp = Date()
}
// For binary decoding
private init(originalMessageID: String, receiptID: String, readerID: String, readerNickname: String, timestamp: Date) {
self.originalMessageID = originalMessageID
self.receiptID = receiptID
self.readerID = readerID
self.readerNickname = readerNickname
self.timestamp = timestamp
}
func encode() -> Data? {
try? JSONEncoder().encode(self)
}
static func decode(from data: Data) -> ReadReceipt? {
try? JSONDecoder().decode(ReadReceipt.self, from: data)
}
// MARK: - Binary Encoding
func toBinaryData() -> Data {
var data = Data()
data.appendUUID(originalMessageID)
data.appendUUID(receiptID)
// ReaderID as 8-byte hex string
var readerData = Data()
var tempID = readerID
while tempID.count >= 2 && readerData.count < 8 {
let hexByte = String(tempID.prefix(2))
if let byte = UInt8(hexByte, radix: 16) {
readerData.append(byte)
}
tempID = String(tempID.dropFirst(2))
}
while readerData.count < 8 {
readerData.append(0)
}
data.append(readerData)
data.appendDate(timestamp)
data.appendString(readerNickname)
return data
}
static func fromBinaryData(_ data: Data) -> ReadReceipt? {
// Create defensive copy
let dataCopy = Data(data)
// Minimum size: 2 UUIDs (32) + readerID (8) + timestamp (8) + min nickname
guard dataCopy.count >= 49 else { return nil }
var offset = 0
guard let originalMessageID = dataCopy.readUUID(at: &offset),
let receiptID = dataCopy.readUUID(at: &offset) else { return nil }
guard let readerIDData = dataCopy.readFixedBytes(at: &offset, count: 8) else { return nil }
let readerID = readerIDData.hexEncodedString()
guard PeerID(str: readerID).isValid else { return nil }
guard let timestamp = dataCopy.readDate(at: &offset),
InputValidator.validateTimestamp(timestamp),
let readerNicknameRaw = dataCopy.readString(at: &offset),
let readerNickname = InputValidator.validateNickname(readerNicknameRaw) else { return nil }
return ReadReceipt(originalMessageID: originalMessageID,
receiptID: receiptID,
readerID: readerID,
readerNickname: readerNickname,
timestamp: timestamp)
}
}
-63
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@@ -1,63 +0,0 @@
import Foundation
// REQUEST_SYNC payload TLV (type, length16, value)
// - 0x01: P (uint8) Golomb-Rice parameter
// - 0x02: M (uint32, big-endian) hash range (N * 2^P)
// - 0x03: data (opaque) GR bitstream bytes (MSB-first)
struct RequestSyncPacket {
let p: Int
let m: UInt32
let data: Data
func encode() -> Data {
var out = Data()
func putTLV(_ t: UInt8, _ v: Data) {
out.append(t)
let len = UInt16(v.count)
out.append(UInt8((len >> 8) & 0xFF))
out.append(UInt8(len & 0xFF))
out.append(v)
}
// P
putTLV(0x01, Data([UInt8(p & 0xFF)]))
// M (uint32)
var mBE = m.bigEndian
putTLV(0x02, withUnsafeBytes(of: &mBE) { Data($0) })
// data
putTLV(0x03, data)
return out
}
static func decode(from data: Data, maxAcceptBytes: Int = 1024) -> RequestSyncPacket? {
var off = 0
var p: Int? = nil
var m: UInt32? = nil
var payload: Data? = nil
while off + 3 <= data.count {
let t = Int(data[off]); off += 1
guard off + 2 <= data.count else { return nil }
let len = (Int(data[off]) << 8) | Int(data[off+1]); off += 2
guard off + len <= data.count else { return nil }
let v = data.subdata(in: off..<(off+len)); off += len
switch t {
case 0x01:
if v.count == 1 { p = Int(v[0]) }
case 0x02:
if v.count == 4 {
var mm: UInt32 = 0
for b in v { mm = (mm << 8) | UInt32(b) }
m = mm
}
case 0x03:
if v.count > maxAcceptBytes { return nil }
payload = v
default:
break // forward compatible; ignore unknown TLVs
}
}
guard let pp = p, let mm = m, let dd = payload, pp >= 1, mm > 0 else { return nil }
return RequestSyncPacket(p: pp, m: mm, data: dd)
}
}
@@ -0,0 +1,369 @@
//
// NoiseHandshakeCoordinator.swift
// bitchat
//
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import Foundation
/// Coordinates Noise handshakes to prevent race conditions and ensure reliable encryption establishment
class NoiseHandshakeCoordinator {
// MARK: - Handshake State
enum HandshakeState: Equatable {
case idle
case waitingToInitiate(since: Date)
case initiating(attempt: Int, lastAttempt: Date)
case responding(since: Date)
case waitingForResponse(messagesSent: [Data], timeout: Date)
case established(since: Date)
case failed(reason: String, canRetry: Bool, lastAttempt: Date)
var isActive: Bool {
switch self {
case .idle, .established, .failed:
return false
default:
return true
}
}
}
// MARK: - Properties
private var handshakeStates: [String: HandshakeState] = [:]
private var handshakeQueue = DispatchQueue(label: "chat.bitchat.noise.handshake", attributes: .concurrent)
// Configuration
private let maxHandshakeAttempts = 3
private let handshakeTimeout: TimeInterval = 10.0
private let retryDelay: TimeInterval = 2.0
private let minTimeBetweenHandshakes: TimeInterval = 1.0 // Reduced from 5.0 for faster recovery
private let establishedSessionTTL: TimeInterval = 300.0 // 5 minutes - sessions older than this can be cleaned up
private let maxEstablishedSessions = 50 // Limit total established sessions
// Track handshake messages to detect duplicates
private var processedHandshakeMessages: Set<Data> = []
private let messageHistoryLimit = 100
// MARK: - Role Determination
/// Deterministically determine who should initiate the handshake
/// Lower peer ID becomes the initiator to prevent simultaneous attempts
func determineHandshakeRole(myPeerID: String, remotePeerID: String) -> NoiseRole {
// Use simple string comparison for deterministic ordering
return myPeerID < remotePeerID ? .initiator : .responder
}
/// Check if we should initiate handshake with a peer
func shouldInitiateHandshake(myPeerID: String, remotePeerID: String, forceIfStale: Bool = false) -> Bool {
return handshakeQueue.sync {
// Check if we're already in an active handshake
if let state = handshakeStates[remotePeerID], state.isActive {
// Check if the handshake is stale and we should force a new one
if forceIfStale {
switch state {
case .initiating(_, let lastAttempt):
if Date().timeIntervalSince(lastAttempt) > handshakeTimeout {
SecureLogger.log("Forcing new handshake with \(remotePeerID) - previous stuck in initiating",
category: SecureLogger.handshake, level: .warning)
return true
}
default:
break
}
}
SecureLogger.log("Already in active handshake with \(remotePeerID), state: \(state)",
category: SecureLogger.handshake, level: .debug)
return false
}
// Check role
let role = determineHandshakeRole(myPeerID: myPeerID, remotePeerID: remotePeerID)
if role != .initiator {
return false
}
// Check if we've failed recently and can't retry yet
if case .failed(_, let canRetry, let lastAttempt) = handshakeStates[remotePeerID] {
if !canRetry {
return false
}
if Date().timeIntervalSince(lastAttempt) < retryDelay {
return false
}
}
return true
}
}
/// Record that we're initiating a handshake
func recordHandshakeInitiation(peerID: String) {
handshakeQueue.async(flags: .barrier) {
let attempt = self.getCurrentAttempt(for: peerID) + 1
self.handshakeStates[peerID] = .initiating(attempt: attempt, lastAttempt: Date())
SecureLogger.log("Recording handshake initiation with \(peerID), attempt \(attempt)",
category: SecureLogger.handshake, level: .info)
}
}
/// Record that we're responding to a handshake
func recordHandshakeResponse(peerID: String) {
handshakeQueue.async(flags: .barrier) {
self.handshakeStates[peerID] = .responding(since: Date())
SecureLogger.log("Recording handshake response to \(peerID)",
category: SecureLogger.handshake, level: .info)
}
}
/// Record successful handshake completion
func recordHandshakeSuccess(peerID: String) {
handshakeQueue.async(flags: .barrier) {
self.handshakeStates[peerID] = .established(since: Date())
SecureLogger.log("Handshake successfully established with \(peerID)",
category: SecureLogger.handshake, level: .info)
}
}
/// Record handshake failure
func recordHandshakeFailure(peerID: String, reason: String) {
handshakeQueue.async(flags: .barrier) {
let attempts = self.getCurrentAttempt(for: peerID)
let canRetry = attempts < self.maxHandshakeAttempts
self.handshakeStates[peerID] = .failed(reason: reason, canRetry: canRetry, lastAttempt: Date())
SecureLogger.log("Handshake failed with \(peerID): \(reason), canRetry: \(canRetry)",
category: SecureLogger.handshake, level: .warning)
}
}
/// Check if we should accept an incoming handshake initiation
func shouldAcceptHandshakeInitiation(myPeerID: String, remotePeerID: String) -> Bool {
return handshakeQueue.sync {
// If we're already established, reject new handshakes
if case .established = handshakeStates[remotePeerID] {
SecureLogger.log("Rejecting handshake from \(remotePeerID) - already established",
category: SecureLogger.handshake, level: .debug)
return false
}
let role = determineHandshakeRole(myPeerID: myPeerID, remotePeerID: remotePeerID)
// If we're the initiator and already initiating, this is a race condition
if role == .initiator {
if case .initiating = handshakeStates[remotePeerID] {
// They shouldn't be initiating, but accept it to recover from race condition
SecureLogger.log("Accepting handshake from \(remotePeerID) despite being initiator (race condition recovery)",
category: SecureLogger.handshake, level: .warning)
return true
}
}
// If we're the responder, we should accept
return true
}
}
/// Check if this is a duplicate handshake message
func isDuplicateHandshakeMessage(_ data: Data) -> Bool {
return handshakeQueue.sync {
if processedHandshakeMessages.contains(data) {
return true
}
// Add to processed messages with size limit
if processedHandshakeMessages.count >= messageHistoryLimit {
processedHandshakeMessages.removeAll()
}
processedHandshakeMessages.insert(data)
return false
}
}
/// Get time to wait before next handshake attempt
func getRetryDelay(for peerID: String) -> TimeInterval? {
return handshakeQueue.sync {
guard let state = handshakeStates[peerID] else { return nil }
switch state {
case .failed(_, let canRetry, let lastAttempt):
if !canRetry { return nil }
let timeSinceFailure = Date().timeIntervalSince(lastAttempt)
if timeSinceFailure >= retryDelay {
return 0
}
return retryDelay - timeSinceFailure
case .initiating(_, let lastAttempt):
let timeSinceAttempt = Date().timeIntervalSince(lastAttempt)
if timeSinceAttempt >= minTimeBetweenHandshakes {
return 0
}
return minTimeBetweenHandshakes - timeSinceAttempt
default:
return nil
}
}
}
/// Reset handshake state for a peer
func resetHandshakeState(for peerID: String) {
handshakeQueue.async(flags: .barrier) {
self.handshakeStates.removeValue(forKey: peerID)
SecureLogger.log("Reset handshake state for \(peerID)",
category: SecureLogger.handshake, level: .debug)
}
}
/// Clean up stale handshake states and old established sessions
func cleanupStaleHandshakes(staleTimeout: TimeInterval = 30.0) -> [String] {
return handshakeQueue.sync {
let now = Date()
var stalePeerIDs: [String] = []
var establishedSessions: [(peerID: String, since: Date)] = []
for (peerID, state) in handshakeStates {
var isStale = false
switch state {
case .initiating(_, let lastAttempt):
if now.timeIntervalSince(lastAttempt) > staleTimeout {
isStale = true
}
case .responding(let since):
if now.timeIntervalSince(since) > staleTimeout {
isStale = true
}
case .waitingForResponse(_, let timeout):
if now > timeout {
isStale = true
}
case .established(let since):
// Track established sessions for potential cleanup
establishedSessions.append((peerID, since))
// Clean up very old established sessions
if now.timeIntervalSince(since) > establishedSessionTTL {
isStale = true
}
default:
break
}
if isStale {
stalePeerIDs.append(peerID)
SecureLogger.log("Found stale handshake state for \(peerID): \(state)",
category: SecureLogger.handshake, level: .warning)
}
}
// If we have too many established sessions, clean up the oldest ones
if establishedSessions.count > maxEstablishedSessions {
// Sort by age (oldest first)
let sortedSessions = establishedSessions.sorted { $0.since < $1.since }
let sessionsToRemove = sortedSessions.count - maxEstablishedSessions
for i in 0..<sessionsToRemove {
let peerID = sortedSessions[i].peerID
stalePeerIDs.append(peerID)
SecureLogger.log("Removing old established session for \(peerID) to maintain session limit",
category: SecureLogger.handshake, level: .info)
}
}
// Clean up stale states
for peerID in stalePeerIDs {
handshakeStates.removeValue(forKey: peerID)
}
if !stalePeerIDs.isEmpty {
SecureLogger.log("Cleaned up \(stalePeerIDs.count) stale handshake states",
category: SecureLogger.handshake, level: .info)
}
return stalePeerIDs
}
}
/// Get current handshake state
func getHandshakeState(for peerID: String) -> HandshakeState {
return handshakeQueue.sync {
return handshakeStates[peerID] ?? .idle
}
}
/// Get current retry count for a peer
func getRetryCount(for peerID: String) -> Int {
return handshakeQueue.sync {
switch handshakeStates[peerID] {
case .initiating(let attempt, _):
return attempt - 1 // Attempts start at 1, retries start at 0
default:
return 0
}
}
}
/// Increment retry count for a peer
func incrementRetryCount(for peerID: String) {
handshakeQueue.async(flags: .barrier) {
let currentAttempt = self.getCurrentAttempt(for: peerID)
self.handshakeStates[peerID] = .initiating(attempt: currentAttempt + 1, lastAttempt: Date())
}
}
// MARK: - Private Helpers
private func getCurrentAttempt(for peerID: String) -> Int {
switch handshakeStates[peerID] {
case .initiating(let attempt, _):
return attempt
case .failed(_, _, _):
// Count previous attempts
return 1 // Simplified for now
default:
return 0
}
}
/// Log current handshake states for debugging
func logHandshakeStates() {
handshakeQueue.sync {
SecureLogger.log("=== Handshake States ===", category: SecureLogger.handshake, level: .debug)
for (peerID, state) in handshakeStates {
let stateDesc: String
switch state {
case .idle:
stateDesc = "idle"
case .waitingToInitiate(let since):
stateDesc = "waiting to initiate (since \(since))"
case .initiating(let attempt, let lastAttempt):
stateDesc = "initiating (attempt \(attempt), last: \(lastAttempt))"
case .responding(let since):
stateDesc = "responding (since: \(since))"
case .waitingForResponse(let messages, let timeout):
stateDesc = "waiting for response (\(messages.count) messages, timeout: \(timeout))"
case .established(let since):
stateDesc = "established (since \(since))"
case .failed(let reason, let canRetry, let lastAttempt):
stateDesc = "failed: \(reason) (canRetry: \(canRetry), last: \(lastAttempt))"
}
SecureLogger.log(" \(peerID): \(stateDesc)", category: SecureLogger.handshake, level: .debug)
}
SecureLogger.log("========================", category: SecureLogger.handshake, level: .debug)
}
}
/// Clear all handshake states - used during panic mode
func clearAllHandshakeStates() {
handshakeQueue.async(flags: .barrier) {
SecureLogger.log("Clearing all handshake states for panic mode", category: SecureLogger.handshake, level: .warning)
self.handshakeStates.removeAll()
self.processedHandshakeMessages.removeAll()
}
}
}
+24 -32
View File
@@ -77,9 +77,9 @@
/// - Noise Specification: http://www.noiseprotocol.org/noise.html /// - Noise Specification: http://www.noiseprotocol.org/noise.html
/// ///
import BitLogger
import Foundation import Foundation
import CryptoKit import CryptoKit
import os.log
// Core Noise Protocol implementation // Core Noise Protocol implementation
// Based on the Noise Protocol Framework specification // Based on the Noise Protocol Framework specification
@@ -127,7 +127,7 @@ struct NoiseProtocolName {
/// Handles ChaCha20-Poly1305 AEAD encryption with automatic nonce management /// Handles ChaCha20-Poly1305 AEAD encryption with automatic nonce management
/// and replay protection using a sliding window algorithm. /// and replay protection using a sliding window algorithm.
/// - Warning: Nonce reuse would be catastrophic for security /// - Warning: Nonce reuse would be catastrophic for security
final class NoiseCipherState { class NoiseCipherState {
// Constants for replay protection // Constants for replay protection
private static let NONCE_SIZE_BYTES = 4 private static let NONCE_SIZE_BYTES = 4
private static let REPLAY_WINDOW_SIZE = 1024 private static let REPLAY_WINDOW_SIZE = 1024
@@ -285,7 +285,7 @@ final class NoiseCipherState {
// Log high nonce values that might indicate issues // Log high nonce values that might indicate issues
if currentNonce > Self.HIGH_NONCE_WARNING_THRESHOLD { if currentNonce > Self.HIGH_NONCE_WARNING_THRESHOLD {
SecureLogger.warning("High nonce value detected: \(currentNonce) - consider rekeying", category: .encryption) SecureLogger.log("High nonce value detected: \(currentNonce) - consider rekeying", category: SecureLogger.encryption, level: .warning)
} }
return combinedPayload return combinedPayload
@@ -307,13 +307,13 @@ final class NoiseCipherState {
if useExtractedNonce { if useExtractedNonce {
// Extract nonce and ciphertext from combined payload // Extract nonce and ciphertext from combined payload
guard let (extractedNonce, actualCiphertext) = try extractNonceFromCiphertextPayload(ciphertext) else { guard let (extractedNonce, actualCiphertext) = try extractNonceFromCiphertextPayload(ciphertext) else {
SecureLogger.debug("Decrypt failed: Could not extract nonce from payload") SecureLogger.log("Decrypt failed: Could not extract nonce from payload")
throw NoiseError.invalidCiphertext throw NoiseError.invalidCiphertext
} }
// Validate nonce with sliding window replay protection // Validate nonce with sliding window replay protection
guard isValidNonce(extractedNonce) else { guard isValidNonce(extractedNonce) else {
SecureLogger.debug("Replay attack detected: nonce \(extractedNonce) rejected") SecureLogger.log("Replay attack detected: nonce \(extractedNonce) rejected")
throw NoiseError.replayDetected throw NoiseError.replayDetected
} }
@@ -342,7 +342,7 @@ final class NoiseCipherState {
// Log high nonce values that might indicate issues // Log high nonce values that might indicate issues
if decryptionNonce > Self.HIGH_NONCE_WARNING_THRESHOLD { if decryptionNonce > Self.HIGH_NONCE_WARNING_THRESHOLD {
SecureLogger.warning("High nonce value detected: \(decryptionNonce) - consider rekeying", category: .encryption) SecureLogger.log("High nonce value detected: \(decryptionNonce) - consider rekeying", category: SecureLogger.encryption, level: .warning)
} }
do { do {
@@ -355,9 +355,9 @@ final class NoiseCipherState {
nonce += 1 nonce += 1
return plaintext return plaintext
} catch { } catch {
SecureLogger.debug("Decrypt failed: \(error) for nonce \(decryptionNonce)") SecureLogger.log("Decrypt failed: \(error) for nonce \(decryptionNonce)")
// Log authentication failures with nonce info // Log authentication failures with nonce info
SecureLogger.error("Decryption failed at nonce \(decryptionNonce)", category: .encryption) SecureLogger.log("Decryption failed at nonce \(decryptionNonce)", category: SecureLogger.encryption, level: .error)
throw error throw error
} }
} }
@@ -384,7 +384,7 @@ final class NoiseCipherState {
/// Responsible for key derivation, protocol name hashing, and maintaining /// Responsible for key derivation, protocol name hashing, and maintaining
/// the chaining key that provides key separation between handshake messages. /// the chaining key that provides key separation between handshake messages.
/// - Note: This class implements the SymmetricState object from the Noise spec /// - Note: This class implements the SymmetricState object from the Noise spec
final class NoiseSymmetricState { class NoiseSymmetricState {
private var cipherState: NoiseCipherState private var cipherState: NoiseCipherState
private var chainingKey: Data private var chainingKey: Data
private var hash: Data private var hash: Data
@@ -397,7 +397,7 @@ final class NoiseSymmetricState {
if nameData.count <= 32 { if nameData.count <= 32 {
self.hash = nameData + Data(repeating: 0, count: 32 - nameData.count) self.hash = nameData + Data(repeating: 0, count: 32 - nameData.count)
} else { } else {
self.hash = nameData.sha256Hash() self.hash = Data(SHA256.hash(data: nameData))
} }
self.chainingKey = self.hash self.chainingKey = self.hash
} }
@@ -410,7 +410,7 @@ final class NoiseSymmetricState {
} }
func mixHash(_ data: Data) { func mixHash(_ data: Data) {
hash = (hash + data).sha256Hash() hash = Data(SHA256.hash(data: hash + data))
} }
func mixKeyAndHash(_ inputKeyMaterial: Data) { func mixKeyAndHash(_ inputKeyMaterial: Data) {
@@ -488,10 +488,9 @@ final class NoiseSymmetricState {
/// This is the main interface for establishing encrypted sessions between peers. /// This is the main interface for establishing encrypted sessions between peers.
/// Manages the handshake state machine, message patterns, and key derivation. /// Manages the handshake state machine, message patterns, and key derivation.
/// - Important: Each handshake instance should only be used once /// - Important: Each handshake instance should only be used once
final class NoiseHandshakeState { class NoiseHandshakeState {
private let role: NoiseRole private let role: NoiseRole
private let pattern: NoisePattern private let pattern: NoisePattern
private let keychain: KeychainManagerProtocol
private var symmetricState: NoiseSymmetricState private var symmetricState: NoiseSymmetricState
// Keys // Keys
@@ -507,16 +506,9 @@ final class NoiseHandshakeState {
private var messagePatterns: [[NoiseMessagePattern]] = [] private var messagePatterns: [[NoiseMessagePattern]] = []
private var currentPattern = 0 private var currentPattern = 0
init( init(role: NoiseRole, pattern: NoisePattern, localStaticKey: Curve25519.KeyAgreement.PrivateKey? = nil, remoteStaticKey: Curve25519.KeyAgreement.PublicKey? = nil) {
role: NoiseRole,
pattern: NoisePattern,
keychain: KeychainManagerProtocol,
localStaticKey: Curve25519.KeyAgreement.PrivateKey? = nil,
remoteStaticKey: Curve25519.KeyAgreement.PublicKey? = nil
) {
self.role = role self.role = role
self.pattern = pattern self.pattern = pattern
self.keychain = keychain
// Initialize static keys // Initialize static keys
if let localKey = localStaticKey { if let localKey = localStaticKey {
@@ -587,7 +579,7 @@ final class NoiseHandshakeState {
var sharedData = shared.withUnsafeBytes { Data($0) } var sharedData = shared.withUnsafeBytes { Data($0) }
symmetricState.mixKey(sharedData) symmetricState.mixKey(sharedData)
// Clear sensitive shared secret // Clear sensitive shared secret
keychain.secureClear(&sharedData) KeychainManager.secureClear(&sharedData)
case .es: case .es:
// DH(ephemeral, static) - direction depends on role // DH(ephemeral, static) - direction depends on role
@@ -635,7 +627,7 @@ final class NoiseHandshakeState {
var sharedData = shared.withUnsafeBytes { Data($0) } var sharedData = shared.withUnsafeBytes { Data($0) }
symmetricState.mixKey(sharedData) symmetricState.mixKey(sharedData)
// Clear sensitive shared secret // Clear sensitive shared secret
keychain.secureClear(&sharedData) KeychainManager.secureClear(&sharedData)
} }
} }
@@ -669,7 +661,7 @@ final class NoiseHandshakeState {
do { do {
remoteEphemeralPublic = try NoiseHandshakeState.validatePublicKey(ephemeralData) remoteEphemeralPublic = try NoiseHandshakeState.validatePublicKey(ephemeralData)
} catch { } catch {
SecureLogger.warning("Invalid ephemeral public key received", category: .security) SecureLogger.log("Invalid ephemeral public key received", category: SecureLogger.security, level: .warning)
throw NoiseError.invalidMessage throw NoiseError.invalidMessage
} }
symmetricState.mixHash(ephemeralData) symmetricState.mixHash(ephemeralData)
@@ -686,7 +678,7 @@ final class NoiseHandshakeState {
let decrypted = try symmetricState.decryptAndHash(staticData) let decrypted = try symmetricState.decryptAndHash(staticData)
remoteStaticPublic = try NoiseHandshakeState.validatePublicKey(decrypted) remoteStaticPublic = try NoiseHandshakeState.validatePublicKey(decrypted)
} catch { } catch {
SecureLogger.error(.authenticationFailed(peerID: "Unknown - handshake")) SecureLogger.logSecurityEvent(.authenticationFailed(peerID: "Unknown - handshake"), level: .error)
throw NoiseError.authenticationFailure throw NoiseError.authenticationFailure
} }
@@ -723,7 +715,7 @@ final class NoiseHandshakeState {
var sharedData = shared.withUnsafeBytes { Data($0) } var sharedData = shared.withUnsafeBytes { Data($0) }
symmetricState.mixKey(sharedData) symmetricState.mixKey(sharedData)
// Clear sensitive shared secret // Clear sensitive shared secret
keychain.secureClear(&sharedData) KeychainManager.secureClear(&sharedData)
} else { } else {
guard let localStatic = localStaticPrivate, guard let localStatic = localStaticPrivate,
let remoteEphemeral = remoteEphemeralPublic else { let remoteEphemeral = remoteEphemeralPublic else {
@@ -733,7 +725,7 @@ final class NoiseHandshakeState {
var sharedData = shared.withUnsafeBytes { Data($0) } var sharedData = shared.withUnsafeBytes { Data($0) }
symmetricState.mixKey(sharedData) symmetricState.mixKey(sharedData)
// Clear sensitive shared secret // Clear sensitive shared secret
keychain.secureClear(&sharedData) KeychainManager.secureClear(&sharedData)
} }
case .se: case .se:
@@ -746,7 +738,7 @@ final class NoiseHandshakeState {
var sharedData = shared.withUnsafeBytes { Data($0) } var sharedData = shared.withUnsafeBytes { Data($0) }
symmetricState.mixKey(sharedData) symmetricState.mixKey(sharedData)
// Clear sensitive shared secret // Clear sensitive shared secret
keychain.secureClear(&sharedData) KeychainManager.secureClear(&sharedData)
} else { } else {
guard let localEphemeral = localEphemeralPrivate, guard let localEphemeral = localEphemeralPrivate,
let remoteStatic = remoteStaticPublic else { let remoteStatic = remoteStaticPublic else {
@@ -756,7 +748,7 @@ final class NoiseHandshakeState {
var sharedData = shared.withUnsafeBytes { Data($0) } var sharedData = shared.withUnsafeBytes { Data($0) }
symmetricState.mixKey(sharedData) symmetricState.mixKey(sharedData)
// Clear sensitive shared secret // Clear sensitive shared secret
keychain.secureClear(&sharedData) KeychainManager.secureClear(&sharedData)
} }
case .ss: case .ss:
@@ -767,7 +759,7 @@ final class NoiseHandshakeState {
let shared = try localStatic.sharedSecretFromKeyAgreement(with: remoteStatic) let shared = try localStatic.sharedSecretFromKeyAgreement(with: remoteStatic)
symmetricState.mixKey(shared.withUnsafeBytes { Data($0) }) symmetricState.mixKey(shared.withUnsafeBytes { Data($0) })
case .e, .s: default:
break break
} }
} }
@@ -885,7 +877,7 @@ extension NoiseHandshakeState {
// Check against known bad points // Check against known bad points
if lowOrderPoints.contains(keyData) { if lowOrderPoints.contains(keyData) {
SecureLogger.warning("Low-order point detected", category: .security) SecureLogger.log("Low-order point detected", category: SecureLogger.security, level: .warning)
throw NoiseError.invalidPublicKey throw NoiseError.invalidPublicKey
} }
@@ -895,7 +887,7 @@ extension NoiseHandshakeState {
return publicKey return publicKey
} catch { } catch {
// If CryptoKit rejects it, it's invalid // If CryptoKit rejects it, it's invalid
SecureLogger.warning("CryptoKit validation failed", category: .security) SecureLogger.log("CryptoKit validation failed", category: SecureLogger.security, level: .warning)
throw NoiseError.invalidPublicKey throw NoiseError.invalidPublicKey
} }
} }
-95
View File
@@ -1,95 +0,0 @@
//
// NoiseRateLimiter.swift
// bitchat
//
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import BitLogger
import Foundation
final class NoiseRateLimiter {
private var handshakeTimestamps: [PeerID: [Date]] = [:]
private var messageTimestamps: [PeerID: [Date]] = [:]
// Global rate limiting
private var globalHandshakeTimestamps: [Date] = []
private var globalMessageTimestamps: [Date] = []
private let queue = DispatchQueue(label: "chat.bitchat.noise.ratelimit", attributes: .concurrent)
func allowHandshake(from peerID: PeerID) -> Bool {
return queue.sync(flags: .barrier) {
let now = Date()
let oneMinuteAgo = now.addingTimeInterval(-60)
// Check global rate limit first
globalHandshakeTimestamps = globalHandshakeTimestamps.filter { $0 > oneMinuteAgo }
if globalHandshakeTimestamps.count >= NoiseSecurityConstants.maxGlobalHandshakesPerMinute {
SecureLogger.warning("Global handshake rate limit exceeded: \(globalHandshakeTimestamps.count)/\(NoiseSecurityConstants.maxGlobalHandshakesPerMinute) per minute", category: .security)
return false
}
// Check per-peer rate limit
var timestamps = handshakeTimestamps[peerID] ?? []
timestamps = timestamps.filter { $0 > oneMinuteAgo }
if timestamps.count >= NoiseSecurityConstants.maxHandshakesPerMinute {
SecureLogger.warning("Per-peer handshake rate limit exceeded for \(peerID): \(timestamps.count)/\(NoiseSecurityConstants.maxHandshakesPerMinute) per minute", category: .security)
return false
}
// Record new handshake
timestamps.append(now)
handshakeTimestamps[peerID] = timestamps
globalHandshakeTimestamps.append(now)
return true
}
}
func allowMessage(from peerID: PeerID) -> Bool {
return queue.sync(flags: .barrier) {
let now = Date()
let oneSecondAgo = now.addingTimeInterval(-1)
// Check global rate limit first
globalMessageTimestamps = globalMessageTimestamps.filter { $0 > oneSecondAgo }
if globalMessageTimestamps.count >= NoiseSecurityConstants.maxGlobalMessagesPerSecond {
SecureLogger.warning("Global message rate limit exceeded: \(globalMessageTimestamps.count)/\(NoiseSecurityConstants.maxGlobalMessagesPerSecond) per second", category: .security)
return false
}
// Check per-peer rate limit
var timestamps = messageTimestamps[peerID] ?? []
timestamps = timestamps.filter { $0 > oneSecondAgo }
if timestamps.count >= NoiseSecurityConstants.maxMessagesPerSecond {
SecureLogger.warning("Per-peer message rate limit exceeded for \(peerID): \(timestamps.count)/\(NoiseSecurityConstants.maxMessagesPerSecond) per second", category: .security)
return false
}
// Record new message
timestamps.append(now)
messageTimestamps[peerID] = timestamps
globalMessageTimestamps.append(now)
return true
}
}
func reset(for peerID: PeerID) {
queue.async(flags: .barrier) {
self.handshakeTimestamps.removeValue(forKey: peerID)
self.messageTimestamps.removeValue(forKey: peerID)
}
}
func resetAll() {
queue.async(flags: .barrier) {
self.handshakeTimestamps.removeAll()
self.messageTimestamps.removeAll()
self.globalHandshakeTimestamps.removeAll()
self.globalMessageTimestamps.removeAll()
}
}
}
@@ -0,0 +1,223 @@
//
// NoiseSecurityConsiderations.swift
// bitchat
//
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import Foundation
import CryptoKit
// MARK: - Security Constants
enum NoiseSecurityConstants {
// Maximum message size to prevent memory exhaustion
static let maxMessageSize = 65535 // 64KB as per Noise spec
// Maximum handshake message size
static let maxHandshakeMessageSize = 2048 // 2KB to accommodate XX pattern
// Session timeout - sessions older than this should be renegotiated
static let sessionTimeout: TimeInterval = 86400 // 24 hours
// Maximum number of messages before rekey (2^64 - 1 is the nonce limit)
static let maxMessagesPerSession: UInt64 = 1_000_000_000 // 1 billion messages
// Handshake timeout - abandon incomplete handshakes
static let handshakeTimeout: TimeInterval = 60 // 1 minute
// Maximum concurrent sessions per peer
static let maxSessionsPerPeer = 3
// Rate limiting
static let maxHandshakesPerMinute = 10
static let maxMessagesPerSecond = 100
// Global rate limiting (across all peers)
static let maxGlobalHandshakesPerMinute = 30
static let maxGlobalMessagesPerSecond = 500
}
// MARK: - Security Validations
struct NoiseSecurityValidator {
/// Validate message size
static func validateMessageSize(_ data: Data) -> Bool {
return data.count <= NoiseSecurityConstants.maxMessageSize
}
/// Validate handshake message size
static func validateHandshakeMessageSize(_ data: Data) -> Bool {
return data.count <= NoiseSecurityConstants.maxHandshakeMessageSize
}
/// Validate peer ID format using unified validator
static func validatePeerID(_ peerID: String) -> Bool {
return InputValidator.validatePeerID(peerID)
}
}
// MARK: - Enhanced Noise Session with Security
class SecureNoiseSession: NoiseSession {
private(set) var messageCount: UInt64 = 0
private let sessionStartTime = Date()
private(set) var lastActivityTime = Date()
override func encrypt(_ plaintext: Data) throws -> Data {
// Check session age
if Date().timeIntervalSince(sessionStartTime) > NoiseSecurityConstants.sessionTimeout {
throw NoiseSecurityError.sessionExpired
}
// Check message count
if messageCount >= NoiseSecurityConstants.maxMessagesPerSession {
throw NoiseSecurityError.sessionExhausted
}
// Validate message size
guard NoiseSecurityValidator.validateMessageSize(plaintext) else {
throw NoiseSecurityError.messageTooLarge
}
let encrypted = try super.encrypt(plaintext)
messageCount += 1
lastActivityTime = Date()
return encrypted
}
override func decrypt(_ ciphertext: Data) throws -> Data {
// Check session age
if Date().timeIntervalSince(sessionStartTime) > NoiseSecurityConstants.sessionTimeout {
throw NoiseSecurityError.sessionExpired
}
// Validate message size
guard NoiseSecurityValidator.validateMessageSize(ciphertext) else {
throw NoiseSecurityError.messageTooLarge
}
let decrypted = try super.decrypt(ciphertext)
lastActivityTime = Date()
return decrypted
}
func needsRenegotiation() -> Bool {
// Check if we've used more than 90% of message limit
let messageThreshold = UInt64(Double(NoiseSecurityConstants.maxMessagesPerSession) * 0.9)
if messageCount >= messageThreshold {
return true
}
// Check if last activity was more than 30 minutes ago
if Date().timeIntervalSince(lastActivityTime) > NoiseSecurityConstants.sessionTimeout {
return true
}
return false
}
// MARK: - Testing Support
#if DEBUG
func setLastActivityTimeForTesting(_ date: Date) {
lastActivityTime = date
}
func setMessageCountForTesting(_ count: UInt64) {
messageCount = count
}
#endif
}
// MARK: - Rate Limiter
class NoiseRateLimiter {
private var handshakeTimestamps: [String: [Date]] = [:] // peerID -> timestamps
private var messageTimestamps: [String: [Date]] = [:] // peerID -> timestamps
// Global rate limiting
private var globalHandshakeTimestamps: [Date] = []
private var globalMessageTimestamps: [Date] = []
private let queue = DispatchQueue(label: "chat.bitchat.noise.ratelimit", attributes: .concurrent)
func allowHandshake(from peerID: String) -> Bool {
return queue.sync(flags: .barrier) {
let now = Date()
let oneMinuteAgo = now.addingTimeInterval(-60)
// Check global rate limit first
globalHandshakeTimestamps = globalHandshakeTimestamps.filter { $0 > oneMinuteAgo }
if globalHandshakeTimestamps.count >= NoiseSecurityConstants.maxGlobalHandshakesPerMinute {
SecureLogger.log("Global handshake rate limit exceeded: \(globalHandshakeTimestamps.count)/\(NoiseSecurityConstants.maxGlobalHandshakesPerMinute) per minute", category: SecureLogger.security, level: .warning)
return false
}
// Check per-peer rate limit
var timestamps = handshakeTimestamps[peerID] ?? []
timestamps = timestamps.filter { $0 > oneMinuteAgo }
if timestamps.count >= NoiseSecurityConstants.maxHandshakesPerMinute {
SecureLogger.log("Per-peer handshake rate limit exceeded for \(peerID): \(timestamps.count)/\(NoiseSecurityConstants.maxHandshakesPerMinute) per minute", category: SecureLogger.security, level: .warning)
return false
}
// Record new handshake
timestamps.append(now)
handshakeTimestamps[peerID] = timestamps
globalHandshakeTimestamps.append(now)
return true
}
}
func allowMessage(from peerID: String) -> Bool {
return queue.sync(flags: .barrier) {
let now = Date()
let oneSecondAgo = now.addingTimeInterval(-1)
// Check global rate limit first
globalMessageTimestamps = globalMessageTimestamps.filter { $0 > oneSecondAgo }
if globalMessageTimestamps.count >= NoiseSecurityConstants.maxGlobalMessagesPerSecond {
SecureLogger.log("Global message rate limit exceeded: \(globalMessageTimestamps.count)/\(NoiseSecurityConstants.maxGlobalMessagesPerSecond) per second", category: SecureLogger.security, level: .warning)
return false
}
// Check per-peer rate limit
var timestamps = messageTimestamps[peerID] ?? []
timestamps = timestamps.filter { $0 > oneSecondAgo }
if timestamps.count >= NoiseSecurityConstants.maxMessagesPerSecond {
SecureLogger.log("Per-peer message rate limit exceeded for \(peerID): \(timestamps.count)/\(NoiseSecurityConstants.maxMessagesPerSecond) per second", category: SecureLogger.security, level: .warning)
return false
}
// Record new message
timestamps.append(now)
messageTimestamps[peerID] = timestamps
globalMessageTimestamps.append(now)
return true
}
}
func reset(for peerID: String) {
queue.async(flags: .barrier) {
self.handshakeTimestamps.removeValue(forKey: peerID)
self.messageTimestamps.removeValue(forKey: peerID)
}
}
}
// MARK: - Security Errors
enum NoiseSecurityError: Error {
case sessionExpired
case sessionExhausted
case messageTooLarge
case invalidPeerID
case rateLimitExceeded
case handshakeTimeout
}
@@ -1,37 +0,0 @@
//
// NoiseSecurityConstants.swift
// bitchat
//
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import Foundation
enum NoiseSecurityConstants {
// Maximum message size to prevent memory exhaustion
static let maxMessageSize = 65535 // 64KB as per Noise spec
// Maximum handshake message size
static let maxHandshakeMessageSize = 2048 // 2KB to accommodate XX pattern
// Session timeout - sessions older than this should be renegotiated
static let sessionTimeout: TimeInterval = 86400 // 24 hours
// Maximum number of messages before rekey (2^64 - 1 is the nonce limit)
static let maxMessagesPerSession: UInt64 = 1_000_000_000 // 1 billion messages
// Handshake timeout - abandon incomplete handshakes
static let handshakeTimeout: TimeInterval = 60 // 1 minute
// Maximum concurrent sessions per peer
static let maxSessionsPerPeer = 3
// Rate limiting
static let maxHandshakesPerMinute = 10
static let maxMessagesPerSecond = 100
// Global rate limiting (across all peers)
static let maxGlobalHandshakesPerMinute = 30
static let maxGlobalMessagesPerSecond = 500
}
-18
View File
@@ -1,18 +0,0 @@
//
// NoiseSecurityError.swift
// bitchat
//
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import Foundation
enum NoiseSecurityError: Error {
case sessionExpired
case sessionExhausted
case messageTooLarge
case invalidPeerID
case rateLimitExceeded
case handshakeTimeout
}
@@ -1,22 +0,0 @@
//
// NoiseSecurityValidator.swift
// bitchat
//
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import Foundation
struct NoiseSecurityValidator {
/// Validate message size
static func validateMessageSize(_ data: Data) -> Bool {
return data.count <= NoiseSecurityConstants.maxMessageSize
}
/// Validate handshake message size
static func validateHandshakeMessageSize(_ data: Data) -> Bool {
return data.count <= NoiseSecurityConstants.maxHandshakeMessageSize
}
}
+272 -24
View File
@@ -6,14 +6,37 @@
// For more information, see <https://unlicense.org> // For more information, see <https://unlicense.org>
// //
import BitLogger
import Foundation import Foundation
import CryptoKit import CryptoKit
import os.log
// MARK: - Noise Session State
enum NoiseSessionState: Equatable {
case uninitialized
case handshaking
case established
case failed(Error)
static func == (lhs: NoiseSessionState, rhs: NoiseSessionState) -> Bool {
switch (lhs, rhs) {
case (.uninitialized, .uninitialized),
(.handshaking, .handshaking),
(.established, .established):
return true
case (.failed, .failed):
return true // We don't compare the errors
default:
return false
}
}
}
// MARK: - Noise Session
class NoiseSession { class NoiseSession {
let peerID: PeerID let peerID: String
let role: NoiseRole let role: NoiseRole
private let keychain: KeychainManagerProtocol
private var state: NoiseSessionState = .uninitialized private var state: NoiseSessionState = .uninitialized
private var handshakeState: NoiseHandshakeState? private var handshakeState: NoiseHandshakeState?
private var sendCipher: NoiseCipherState? private var sendCipher: NoiseCipherState?
@@ -30,16 +53,9 @@ class NoiseSession {
// Thread safety // Thread safety
private let sessionQueue = DispatchQueue(label: "chat.bitchat.noise.session", attributes: .concurrent) private let sessionQueue = DispatchQueue(label: "chat.bitchat.noise.session", attributes: .concurrent)
init( init(peerID: String, role: NoiseRole, localStaticKey: Curve25519.KeyAgreement.PrivateKey, remoteStaticKey: Curve25519.KeyAgreement.PublicKey? = nil) {
peerID: PeerID,
role: NoiseRole,
keychain: KeychainManagerProtocol,
localStaticKey: Curve25519.KeyAgreement.PrivateKey,
remoteStaticKey: Curve25519.KeyAgreement.PublicKey? = nil
) {
self.peerID = peerID self.peerID = peerID
self.role = role self.role = role
self.keychain = keychain
self.localStaticKey = localStaticKey self.localStaticKey = localStaticKey
self.remoteStaticPublicKey = remoteStaticKey self.remoteStaticPublicKey = remoteStaticKey
} }
@@ -56,7 +72,6 @@ class NoiseSession {
handshakeState = NoiseHandshakeState( handshakeState = NoiseHandshakeState(
role: role, role: role,
pattern: .XX, pattern: .XX,
keychain: keychain,
localStaticKey: localStaticKey, localStaticKey: localStaticKey,
remoteStaticKey: nil remoteStaticKey: nil
) )
@@ -77,19 +92,18 @@ class NoiseSession {
func processHandshakeMessage(_ message: Data) throws -> Data? { func processHandshakeMessage(_ message: Data) throws -> Data? {
return try sessionQueue.sync(flags: .barrier) { return try sessionQueue.sync(flags: .barrier) {
SecureLogger.debug("NoiseSession[\(peerID)]: Processing handshake message, current state: \(state), role: \(role)") SecureLogger.log("NoiseSession[\(peerID)]: Processing handshake message, current state: \(state), role: \(role)", category: SecureLogger.noise, level: .debug)
// Initialize handshake state if needed (for responders) // Initialize handshake state if needed (for responders)
if state == .uninitialized && role == .responder { if state == .uninitialized && role == .responder {
handshakeState = NoiseHandshakeState( handshakeState = NoiseHandshakeState(
role: role, role: role,
pattern: .XX, pattern: .XX,
keychain: keychain,
localStaticKey: localStaticKey, localStaticKey: localStaticKey,
remoteStaticKey: nil remoteStaticKey: nil
) )
state = .handshaking state = .handshaking
SecureLogger.debug("NoiseSession[\(peerID)]: Initialized handshake state for responder") SecureLogger.log("NoiseSession[\(peerID)]: Initialized handshake state for responder", category: SecureLogger.noise, level: .debug)
} }
guard case .handshaking = state, let handshake = handshakeState else { guard case .handshaking = state, let handshake = handshakeState else {
@@ -98,7 +112,7 @@ class NoiseSession {
// Process incoming message // Process incoming message
_ = try handshake.readMessage(message) _ = try handshake.readMessage(message)
SecureLogger.debug("NoiseSession[\(peerID)]: Read handshake message, checking if complete") SecureLogger.log("NoiseSession[\(peerID)]: Read handshake message, checking if complete", category: SecureLogger.noise, level: .debug)
// Check if handshake is complete // Check if handshake is complete
if handshake.isHandshakeComplete() { if handshake.isHandshakeComplete() {
@@ -116,15 +130,15 @@ class NoiseSession {
state = .established state = .established
handshakeState = nil // Clear handshake state handshakeState = nil // Clear handshake state
SecureLogger.debug("NoiseSession[\(peerID)]: Handshake complete (no response needed), transitioning to established") SecureLogger.log("NoiseSession[\(peerID)]: Handshake complete (no response needed), transitioning to established", category: SecureLogger.noise, level: .debug)
SecureLogger.info(.handshakeCompleted(peerID: peerID.id)) SecureLogger.logSecurityEvent(.handshakeCompleted(peerID: peerID))
return nil return nil
} else { } else {
// Generate response // Generate response
let response = try handshake.writeMessage() let response = try handshake.writeMessage()
sentHandshakeMessages.append(response) sentHandshakeMessages.append(response)
SecureLogger.debug("NoiseSession[\(peerID)]: Generated handshake response of size \(response.count)") SecureLogger.log("NoiseSession[\(peerID)]: Generated handshake response of size \(response.count)", category: SecureLogger.noise, level: .debug)
// Check if handshake is complete after writing // Check if handshake is complete after writing
if handshake.isHandshakeComplete() { if handshake.isHandshakeComplete() {
@@ -142,8 +156,8 @@ class NoiseSession {
state = .established state = .established
handshakeState = nil // Clear handshake state handshakeState = nil // Clear handshake state
SecureLogger.debug("NoiseSession[\(peerID)]: Handshake complete after writing response, transitioning to established") SecureLogger.log("NoiseSession[\(peerID)]: Handshake complete after writing response, transitioning to established", category: SecureLogger.noise, level: .debug)
SecureLogger.info(.handshakeCompleted(peerID: peerID.id)) SecureLogger.logSecurityEvent(.handshakeCompleted(peerID: peerID))
} }
return response return response
@@ -196,6 +210,12 @@ class NoiseSession {
} }
} }
func getHandshakeHash() -> Data? {
return sessionQueue.sync {
return handshakeHash
}
}
func reset() { func reset() {
sessionQueue.sync(flags: .barrier) { sessionQueue.sync(flags: .barrier) {
let wasEstablished = state == .established let wasEstablished = state == .established
@@ -211,19 +231,247 @@ class NoiseSession {
// Clear sent handshake messages // Clear sent handshake messages
for i in 0..<sentHandshakeMessages.count { for i in 0..<sentHandshakeMessages.count {
var message = sentHandshakeMessages[i] var message = sentHandshakeMessages[i]
keychain.secureClear(&message) KeychainManager.secureClear(&message)
} }
sentHandshakeMessages.removeAll() sentHandshakeMessages.removeAll()
// Clear handshake hash // Clear handshake hash
if var hash = handshakeHash { if var hash = handshakeHash {
keychain.secureClear(&hash) KeychainManager.secureClear(&hash)
} }
handshakeHash = nil handshakeHash = nil
if wasEstablished { if wasEstablished {
SecureLogger.info(.sessionExpired(peerID: peerID.id)) SecureLogger.logSecurityEvent(.sessionExpired(peerID: peerID))
} }
} }
} }
} }
// MARK: - Session Manager
class NoiseSessionManager {
private var sessions: [String: NoiseSession] = [:]
private let localStaticKey: Curve25519.KeyAgreement.PrivateKey
private let managerQueue = DispatchQueue(label: "chat.bitchat.noise.manager", attributes: .concurrent)
// Callbacks
var onSessionEstablished: ((String, Curve25519.KeyAgreement.PublicKey) -> Void)?
var onSessionFailed: ((String, Error) -> Void)?
init(localStaticKey: Curve25519.KeyAgreement.PrivateKey) {
self.localStaticKey = localStaticKey
}
// MARK: - Session Management
func createSession(for peerID: String, role: NoiseRole) -> NoiseSession {
return managerQueue.sync(flags: .barrier) {
let session = SecureNoiseSession(
peerID: peerID,
role: role,
localStaticKey: localStaticKey
)
sessions[peerID] = session
return session
}
}
func getSession(for peerID: String) -> NoiseSession? {
return managerQueue.sync {
return sessions[peerID]
}
}
func removeSession(for peerID: String) {
managerQueue.sync(flags: .barrier) {
if let session = sessions[peerID] {
if session.isEstablished() {
SecureLogger.logSecurityEvent(.sessionExpired(peerID: peerID))
}
// Clear sensitive data before removing
session.reset()
}
_ = sessions.removeValue(forKey: peerID)
}
}
func getEstablishedSessions() -> [String: NoiseSession] {
return managerQueue.sync {
return sessions.filter { $0.value.isEstablished() }
}
}
// MARK: - Handshake Helpers
func initiateHandshake(with peerID: String) throws -> Data {
return try managerQueue.sync(flags: .barrier) {
// Check if we already have an established session
if let existingSession = sessions[peerID], existingSession.isEstablished() {
// Session already established, don't recreate
throw NoiseSessionError.alreadyEstablished
}
// Remove any existing non-established session
if let existingSession = sessions[peerID], !existingSession.isEstablished() {
_ = sessions.removeValue(forKey: peerID)
}
// Create new initiator session
let session = SecureNoiseSession(
peerID: peerID,
role: .initiator,
localStaticKey: localStaticKey
)
sessions[peerID] = session
do {
let handshakeData = try session.startHandshake()
return handshakeData
} catch {
// Clean up failed session
_ = sessions.removeValue(forKey: peerID)
SecureLogger.logSecurityEvent(.handshakeFailed(peerID: peerID, error: error.localizedDescription), level: .error)
throw error
}
}
}
func handleIncomingHandshake(from peerID: String, message: Data) throws -> Data? {
// Process everything within the synchronized block to prevent race conditions
return try managerQueue.sync(flags: .barrier) {
var shouldCreateNew = false
var existingSession: NoiseSession? = nil
if let existing = sessions[peerID] {
// If we have an established session, the peer must have cleared their session
// for a good reason (e.g., decryption failure, restart, etc.)
// We should accept the new handshake to re-establish encryption
if existing.isEstablished() {
SecureLogger.log("Accepting handshake from \(peerID) despite existing session - peer likely cleared their session",
category: SecureLogger.session, level: .info)
_ = sessions.removeValue(forKey: peerID)
shouldCreateNew = true
} else {
// If we're in the middle of a handshake and receive a new initiation,
// reset and start fresh (the other side may have restarted)
if existing.getState() == .handshaking && message.count == 32 {
_ = sessions.removeValue(forKey: peerID)
shouldCreateNew = true
} else {
existingSession = existing
}
}
} else {
shouldCreateNew = true
}
// Get or create session
let session: NoiseSession
if shouldCreateNew {
let newSession = SecureNoiseSession(
peerID: peerID,
role: .responder,
localStaticKey: localStaticKey
)
sessions[peerID] = newSession
session = newSession
} else {
session = existingSession!
}
// Process the handshake message within the synchronized block
do {
let response = try session.processHandshakeMessage(message)
// Check if session is established after processing
if session.isEstablished() {
if let remoteKey = session.getRemoteStaticPublicKey() {
// Schedule callback outside the synchronized block to prevent deadlock
DispatchQueue.global().async { [weak self] in
self?.onSessionEstablished?(peerID, remoteKey)
}
}
}
return response
} catch {
// Reset the session on handshake failure so next attempt can start fresh
_ = sessions.removeValue(forKey: peerID)
// Schedule callback outside the synchronized block to prevent deadlock
DispatchQueue.global().async { [weak self] in
self?.onSessionFailed?(peerID, error)
}
SecureLogger.logSecurityEvent(.handshakeFailed(peerID: peerID, error: error.localizedDescription), level: .error)
throw error
}
}
}
// MARK: - Encryption/Decryption
func encrypt(_ plaintext: Data, for peerID: String) throws -> Data {
guard let session = getSession(for: peerID) else {
throw NoiseSessionError.sessionNotFound
}
return try session.encrypt(plaintext)
}
func decrypt(_ ciphertext: Data, from peerID: String) throws -> Data {
guard let session = getSession(for: peerID) else {
throw NoiseSessionError.sessionNotFound
}
return try session.decrypt(ciphertext)
}
// MARK: - Key Management
func getRemoteStaticKey(for peerID: String) -> Curve25519.KeyAgreement.PublicKey? {
return getSession(for: peerID)?.getRemoteStaticPublicKey()
}
func getHandshakeHash(for peerID: String) -> Data? {
return getSession(for: peerID)?.getHandshakeHash()
}
// MARK: - Session Rekeying
func getSessionsNeedingRekey() -> [(peerID: String, needsRekey: Bool)] {
return managerQueue.sync {
var needingRekey: [(peerID: String, needsRekey: Bool)] = []
for (peerID, session) in sessions {
if let secureSession = session as? SecureNoiseSession,
secureSession.isEstablished(),
secureSession.needsRenegotiation() {
needingRekey.append((peerID: peerID, needsRekey: true))
}
}
return needingRekey
}
}
func initiateRekey(for peerID: String) throws {
// Remove old session
removeSession(for: peerID)
// Initiate new handshake
_ = try initiateHandshake(with: peerID)
}
}
// MARK: - Errors
enum NoiseSessionError: Error {
case invalidState
case notEstablished
case sessionNotFound
case handshakeFailed(Error)
case alreadyEstablished
}
-14
View File
@@ -1,14 +0,0 @@
//
// NoiseSessionError.swift
// bitchat
//
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
enum NoiseSessionError: Error, Equatable {
case invalidState
case notEstablished
case sessionNotFound
case alreadyEstablished
}
-211
View File
@@ -1,211 +0,0 @@
//
// NoiseSessionManager.swift
// bitchat
//
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import BitLogger
import CryptoKit
import Foundation
final class NoiseSessionManager {
private var sessions: [PeerID: NoiseSession] = [:]
private let localStaticKey: Curve25519.KeyAgreement.PrivateKey
private let keychain: KeychainManagerProtocol
private let managerQueue = DispatchQueue(label: "chat.bitchat.noise.manager", attributes: .concurrent)
// Callbacks
var onSessionEstablished: ((PeerID, Curve25519.KeyAgreement.PublicKey) -> Void)?
var onSessionFailed: ((PeerID, Error) -> Void)?
init(localStaticKey: Curve25519.KeyAgreement.PrivateKey, keychain: KeychainManagerProtocol) {
self.localStaticKey = localStaticKey
self.keychain = keychain
}
// MARK: - Session Management
func getSession(for peerID: PeerID) -> NoiseSession? {
return managerQueue.sync {
return sessions[peerID]
}
}
func removeSession(for peerID: PeerID) {
managerQueue.sync(flags: .barrier) {
if let session = sessions.removeValue(forKey: peerID) {
session.reset() // Clear sensitive data before removing
}
}
}
func removeAllSessions() {
managerQueue.sync(flags: .barrier) {
for (_, session) in sessions {
session.reset()
}
sessions.removeAll()
}
}
// MARK: - Handshake Helpers
func initiateHandshake(with peerID: PeerID) throws -> Data {
return try managerQueue.sync(flags: .barrier) {
// Check if we already have an established session
if let existingSession = sessions[peerID], existingSession.isEstablished() {
// Session already established, don't recreate
throw NoiseSessionError.alreadyEstablished
}
// Remove any existing non-established session
if let existingSession = sessions[peerID], !existingSession.isEstablished() {
_ = sessions.removeValue(forKey: peerID)
}
// Create new initiator session
let session = SecureNoiseSession(
peerID: peerID,
role: .initiator,
keychain: keychain,
localStaticKey: localStaticKey
)
sessions[peerID] = session
do {
let handshakeData = try session.startHandshake()
return handshakeData
} catch {
// Clean up failed session
_ = sessions.removeValue(forKey: peerID)
SecureLogger.error(.handshakeFailed(peerID: peerID.id, error: error.localizedDescription))
throw error
}
}
}
func handleIncomingHandshake(from peerID: PeerID, message: Data) throws -> Data? {
// Process everything within the synchronized block to prevent race conditions
return try managerQueue.sync(flags: .barrier) {
var shouldCreateNew = false
var existingSession: NoiseSession? = nil
if let existing = sessions[peerID] {
// If we have an established session, the peer must have cleared their session
// for a good reason (e.g., decryption failure, restart, etc.)
// We should accept the new handshake to re-establish encryption
if existing.isEstablished() {
SecureLogger.info("Accepting handshake from \(peerID) despite existing session - peer likely cleared their session", category: .session)
_ = sessions.removeValue(forKey: peerID)
shouldCreateNew = true
} else {
// If we're in the middle of a handshake and receive a new initiation,
// reset and start fresh (the other side may have restarted)
if existing.getState() == .handshaking && message.count == 32 {
_ = sessions.removeValue(forKey: peerID)
shouldCreateNew = true
} else {
existingSession = existing
}
}
} else {
shouldCreateNew = true
}
// Get or create session
let session: NoiseSession
if shouldCreateNew {
let newSession = SecureNoiseSession(
peerID: peerID,
role: .responder,
keychain: keychain,
localStaticKey: localStaticKey
)
sessions[peerID] = newSession
session = newSession
} else {
session = existingSession!
}
// Process the handshake message within the synchronized block
do {
let response = try session.processHandshakeMessage(message)
// Check if session is established after processing
if session.isEstablished() {
if let remoteKey = session.getRemoteStaticPublicKey() {
// Schedule callback outside the synchronized block to prevent deadlock
DispatchQueue.global().async { [weak self] in
self?.onSessionEstablished?(peerID, remoteKey)
}
}
}
return response
} catch {
// Reset the session on handshake failure so next attempt can start fresh
_ = sessions.removeValue(forKey: peerID)
// Schedule callback outside the synchronized block to prevent deadlock
DispatchQueue.global().async { [weak self] in
self?.onSessionFailed?(peerID, error)
}
SecureLogger.error(.handshakeFailed(peerID: peerID.id, error: error.localizedDescription))
throw error
}
}
}
// MARK: - Encryption/Decryption
func encrypt(_ plaintext: Data, for peerID: PeerID) throws -> Data {
guard let session = getSession(for: peerID) else {
throw NoiseSessionError.sessionNotFound
}
return try session.encrypt(plaintext)
}
func decrypt(_ ciphertext: Data, from peerID: PeerID) throws -> Data {
guard let session = getSession(for: peerID) else {
throw NoiseSessionError.sessionNotFound
}
return try session.decrypt(ciphertext)
}
// MARK: - Key Management
func getRemoteStaticKey(for peerID: PeerID) -> Curve25519.KeyAgreement.PublicKey? {
return getSession(for: peerID)?.getRemoteStaticPublicKey()
}
// MARK: - Session Rekeying
func getSessionsNeedingRekey() -> [(peerID: PeerID, needsRekey: Bool)] {
return managerQueue.sync {
var needingRekey: [(peerID: PeerID, needsRekey: Bool)] = []
for (peerID, session) in sessions {
if let secureSession = session as? SecureNoiseSession,
secureSession.isEstablished(),
secureSession.needsRenegotiation() {
needingRekey.append((peerID: peerID, needsRekey: true))
}
}
return needingRekey
}
}
func initiateRekey(for peerID: PeerID) throws {
// Remove old session
removeSession(for: peerID)
// Initiate new handshake
_ = try initiateHandshake(with: peerID)
}
}
-13
View File
@@ -1,13 +0,0 @@
//
// NoiseSessionState.swift
// bitchat
//
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
enum NoiseSessionState: Equatable {
case uninitialized
case handshaking
case established
}
-81
View File
@@ -1,81 +0,0 @@
//
// SecureNoiseSession.swift
// bitchat
//
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import Foundation
final class SecureNoiseSession: NoiseSession {
private(set) var messageCount: UInt64 = 0
private let sessionStartTime = Date()
private(set) var lastActivityTime = Date()
override func encrypt(_ plaintext: Data) throws -> Data {
// Check session age
if Date().timeIntervalSince(sessionStartTime) > NoiseSecurityConstants.sessionTimeout {
throw NoiseSecurityError.sessionExpired
}
// Check message count
if messageCount >= NoiseSecurityConstants.maxMessagesPerSession {
throw NoiseSecurityError.sessionExhausted
}
// Validate message size
guard NoiseSecurityValidator.validateMessageSize(plaintext) else {
throw NoiseSecurityError.messageTooLarge
}
let encrypted = try super.encrypt(plaintext)
messageCount += 1
lastActivityTime = Date()
return encrypted
}
override func decrypt(_ ciphertext: Data) throws -> Data {
// Check session age
if Date().timeIntervalSince(sessionStartTime) > NoiseSecurityConstants.sessionTimeout {
throw NoiseSecurityError.sessionExpired
}
// Validate message size
guard NoiseSecurityValidator.validateMessageSize(ciphertext) else {
throw NoiseSecurityError.messageTooLarge
}
let decrypted = try super.decrypt(ciphertext)
lastActivityTime = Date()
return decrypted
}
func needsRenegotiation() -> Bool {
// Check if we've used more than 90% of message limit
let messageThreshold = UInt64(Double(NoiseSecurityConstants.maxMessagesPerSession) * 0.9)
if messageCount >= messageThreshold {
return true
}
// Check if last activity was more than 30 minutes ago
if Date().timeIntervalSince(lastActivityTime) > NoiseSecurityConstants.sessionTimeout {
return true
}
return false
}
// MARK: - Testing Support
#if DEBUG
func setLastActivityTimeForTesting(_ date: Date) {
lastActivityTime = date
}
func setMessageCountForTesting(_ count: UInt64) {
messageCount = count
}
#endif
}
-135
View File
@@ -1,135 +0,0 @@
import Foundation
/// Bech32 encoding for Nostr (minimal implementation)
enum Bech32 {
private static let charset = "qpzry9x8gf2tvdw0s3jn54khce6mua7l"
private static let generator = [0x3b6a57b2, 0x26508e6d, 0x1ea119fa, 0x3d4233dd, 0x2a1462b3]
static func encode(hrp: String, data: Data) throws -> String {
let values = convertBits(from: 8, to: 5, pad: true, data: Array(data))
let checksum = createChecksum(hrp: hrp, values: values)
let combined = values + checksum
return hrp + "1" + combined.map {
let index = charset.index(charset.startIndex, offsetBy: Int($0))
return String(charset[index])
}.joined()
}
static func decode(_ bech32String: String) throws -> (hrp: String, data: Data) {
// Find the last occurrence of '1'
guard let separatorIndex = bech32String.lastIndex(of: "1") else {
throw Bech32Error.invalidFormat
}
let hrp = String(bech32String[..<separatorIndex])
// Validate HRP contains only ASCII characters
for char in hrp {
guard char.asciiValue != nil else {
throw Bech32Error.invalidCharacter
}
}
let dataString = String(bech32String[bech32String.index(after: separatorIndex)...])
// Convert characters to values
var values = [UInt8]()
for char in dataString {
guard let index = charset.firstIndex(of: char) else {
throw Bech32Error.invalidCharacter
}
values.append(UInt8(charset.distance(from: charset.startIndex, to: index)))
}
// Verify checksum
guard values.count >= 6 else {
throw Bech32Error.invalidChecksum
}
let payloadValues = Array(values.dropLast(6))
let checksum = Array(values.suffix(6))
let expectedChecksum = createChecksum(hrp: hrp, values: payloadValues)
guard checksum == expectedChecksum else {
throw Bech32Error.invalidChecksum
}
// Convert back to bytes
let bytes = convertBits(from: 5, to: 8, pad: false, data: payloadValues)
return (hrp: hrp, data: Data(bytes))
}
enum Bech32Error: Error {
case invalidFormat
case invalidCharacter
case invalidChecksum
}
private static func convertBits(from: Int, to: Int, pad: Bool, data: [UInt8]) -> [UInt8] {
var acc = 0
var bits = 0
var result = [UInt8]()
let maxv = (1 << to) - 1
for value in data {
acc = (acc << from) | Int(value)
bits += from
while bits >= to {
bits -= to
result.append(UInt8((acc >> bits) & maxv))
}
}
if pad && bits > 0 {
result.append(UInt8((acc << (to - bits)) & maxv))
}
return result
}
private static func createChecksum(hrp: String, values: [UInt8]) -> [UInt8] {
let checksumValues = hrpExpand(hrp) + values + [0, 0, 0, 0, 0, 0]
let polymod = polymod(checksumValues) ^ 1
var checksum = [UInt8]()
for i in 0..<6 {
checksum.append(UInt8((polymod >> (5 * (5 - i))) & 31))
}
return checksum
}
private static func hrpExpand(_ hrp: String) -> [UInt8] {
var result = [UInt8]()
for c in hrp {
guard let asciiValue = c.asciiValue else {
return [] // Return empty array for invalid input
}
result.append(UInt8(asciiValue >> 5))
}
result.append(0)
for c in hrp {
guard let asciiValue = c.asciiValue else {
return [] // Return empty array for invalid input
}
result.append(UInt8(asciiValue & 31))
}
return result
}
private static func polymod(_ values: [UInt8]) -> Int {
var chk = 1
for value in values {
let b = chk >> 25
chk = (chk & 0x1ffffff) << 5 ^ Int(value)
for i in 0..<5 {
if (b >> i) & 1 == 1 {
chk ^= generator[i]
}
}
}
return chk
}
}
+21 -50
View File
@@ -1,6 +1,4 @@
import BitLogger
import Foundation import Foundation
import Tor
/// Directory of online Nostr relays with approximate GPS locations, used for geohash routing. /// Directory of online Nostr relays with approximate GPS locations, used for geohash routing.
@MainActor @MainActor
@@ -33,32 +31,13 @@ final class GeoRelayDirectory {
/// Returns up to `count` relay URLs (wss://) closest to the given coordinate. /// Returns up to `count` relay URLs (wss://) closest to the given coordinate.
func closestRelays(toLat lat: Double, lon: Double, count: Int = 5) -> [String] { func closestRelays(toLat lat: Double, lon: Double, count: Int = 5) -> [String] {
guard !entries.isEmpty, count > 0 else { return [] } guard !entries.isEmpty else { return [] }
let sorted = entries
if entries.count <= count { .sorted { a, b in
return entries haversineKm(lat, lon, a.lat, a.lon) < haversineKm(lat, lon, b.lat, b.lon)
.sorted { a, b in
haversineKm(lat, lon, a.lat, a.lon) < haversineKm(lat, lon, b.lat, b.lon)
}
.map { "wss://\($0.host)" }
}
var best: [(entry: Entry, distance: Double)] = []
best.reserveCapacity(count)
for entry in entries {
let distance = haversineKm(lat, lon, entry.lat, entry.lon)
if best.count < count {
let idx = best.firstIndex { $0.distance > distance } ?? best.count
best.insert((entry, distance), at: idx)
} else if let worstDistance = best.last?.distance, distance < worstDistance {
let idx = best.firstIndex { $0.distance > distance } ?? best.count
best.insert((entry, distance), at: idx)
best.removeLast()
} }
} .prefix(count)
return sorted.map { "wss://\($0.host)" }
return best.map { "wss://\($0.entry.host)" }
} }
// MARK: - Remote Fetch // MARK: - Remote Fetch
@@ -71,31 +50,23 @@ final class GeoRelayDirectory {
private func fetchRemote() { private func fetchRemote() {
let req = URLRequest(url: remoteURL, cachePolicy: .reloadIgnoringLocalCacheData, timeoutInterval: 15) let req = URLRequest(url: remoteURL, cachePolicy: .reloadIgnoringLocalCacheData, timeoutInterval: 15)
// Ensure Tor readiness before fetching (fail-closed by default) let task = URLSession.shared.dataTask(with: req) { [weak self] data, _, error in
Task.detached { guard let self = self else { return }
let ready = await TorManager.shared.awaitReady() if let data = data, error == nil, let text = String(data: data, encoding: .utf8) {
if !ready { let parsed = GeoRelayDirectory.parseCSV(text)
SecureLogger.warning("GeoRelayDirectory: Tor not ready; skipping remote fetch (fail-closed)", category: .session) if !parsed.isEmpty {
return Task { @MainActor in
} self.entries = parsed
let task = TorURLSession.shared.session.dataTask(with: req) { [weak self] data, _, error in self.persistCache(text)
guard let self = self else { return } UserDefaults.standard.set(Date(), forKey: self.lastFetchKey)
if let data = data, error == nil, let text = String(data: data, encoding: .utf8) { SecureLogger.log("GeoRelayDirectory: refreshed \(parsed.count) relays from remote", category: SecureLogger.session, level: .info)
let parsed = GeoRelayDirectory.parseCSV(text)
if !parsed.isEmpty {
Task { @MainActor in
self.entries = parsed
self.persistCache(text)
UserDefaults.standard.set(Date(), forKey: self.lastFetchKey)
SecureLogger.info("GeoRelayDirectory: refreshed \(parsed.count) relays from remote", category: .session)
}
return
} }
return
} }
SecureLogger.warning("GeoRelayDirectory: remote fetch failed; keeping local entries", category: .session)
} }
task.resume() SecureLogger.log("GeoRelayDirectory: remote fetch failed; keeping local entries", category: SecureLogger.session, level: .warning)
} }
task.resume()
} }
private func persistCache(_ text: String) { private func persistCache(_ text: String) {
@@ -103,7 +74,7 @@ final class GeoRelayDirectory {
do { do {
try text.data(using: .utf8)?.write(to: url, options: .atomic) try text.data(using: .utf8)?.write(to: url, options: .atomic)
} catch { } catch {
SecureLogger.warning("GeoRelayDirectory: failed to write cache: \(error)", category: .session) SecureLogger.log("GeoRelayDirectory: failed to write cache: \(error)", category: SecureLogger.session, level: .warning)
} }
} }
@@ -134,7 +105,7 @@ final class GeoRelayDirectory {
let text = String(data: data, encoding: .utf8) { let text = String(data: data, encoding: .utf8) {
return Self.parseCSV(text) return Self.parseCSV(text)
} }
SecureLogger.warning("GeoRelayDirectory: no local CSV found; entries empty", category: .session) SecureLogger.log("GeoRelayDirectory: no local CSV found; entries empty", category: SecureLogger.session, level: .warning)
return [] return []
} }
-50
View File
@@ -1,50 +0,0 @@
import Foundation
protocol KeychainHelperProtocol {
func save(key: String, data: Data, service: String, accessible: CFString?)
func load(key: String, service: String) -> Data?
func delete(key: String, service: String)
}
/// Keychain helper for secure storage
struct KeychainHelper: KeychainHelperProtocol {
func save(key: String, data: Data, service: String, accessible: CFString? = nil) {
var query: [String: Any] = [
kSecClass as String: kSecClassGenericPassword,
kSecAttrService as String: service,
kSecAttrAccount as String: key,
kSecValueData as String: data
]
if let accessible = accessible {
query[kSecAttrAccessible as String] = accessible
}
SecItemDelete(query as CFDictionary)
SecItemAdd(query as CFDictionary, nil)
}
func load(key: String, service: String) -> Data? {
let query: [String: Any] = [
kSecClass as String: kSecClassGenericPassword,
kSecAttrService as String: service,
kSecAttrAccount as String: key,
kSecReturnData as String: true
]
var result: AnyObject?
let status = SecItemCopyMatching(query as CFDictionary, &result)
guard status == errSecSuccess else { return nil }
return result as? Data
}
func delete(key: String, service: String) {
let query: [String: Any] = [
kSecClass as String: kSecClassGenericPassword,
kSecAttrService as String: service,
kSecAttrAccount as String: key
]
SecItemDelete(query as CFDictionary)
}
}
+1 -1
View File
@@ -100,7 +100,7 @@ struct NostrEmbeddedBitChat {
if let maybeData = Data(hexString: recipientPeerID) { if let maybeData = Data(hexString: recipientPeerID) {
if maybeData.count == 32 { if maybeData.count == 32 {
// Treat as Noise static public key; derive peerID from fingerprint // Treat as Noise static public key; derive peerID from fingerprint
return PeerID(publicKey: maybeData).id return PeerIDUtils.derivePeerID(fromPublicKey: maybeData)
} else if maybeData.count == 8 { } else if maybeData.count == 8 {
// Already an 8-byte peer ID // Already an 8-byte peer ID
return recipientPeerID return recipientPeerID
+293
View File
@@ -1,5 +1,50 @@
import Foundation import Foundation
import CryptoKit
import P256K import P256K
import Security
// Keychain helper for secure storage
struct KeychainHelper {
static func save(key: String, data: Data, service: String, accessible: CFString? = nil) {
var query: [String: Any] = [
kSecClass as String: kSecClassGenericPassword,
kSecAttrService as String: service,
kSecAttrAccount as String: key,
kSecValueData as String: data
]
if let accessible = accessible {
query[kSecAttrAccessible as String] = accessible
}
SecItemDelete(query as CFDictionary)
SecItemAdd(query as CFDictionary, nil)
}
static func load(key: String, service: String) -> Data? {
let query: [String: Any] = [
kSecClass as String: kSecClassGenericPassword,
kSecAttrService as String: service,
kSecAttrAccount as String: key,
kSecReturnData as String: true
]
var result: AnyObject?
let status = SecItemCopyMatching(query as CFDictionary, &result)
guard status == errSecSuccess else { return nil }
return result as? Data
}
static func delete(key: String, service: String) {
let query: [String: Any] = [
kSecClass as String: kSecClassGenericPassword,
kSecAttrService as String: service,
kSecAttrAccount as String: key
]
SecItemDelete(query as CFDictionary)
}
}
/// Manages Nostr identity (secp256k1 keypair) for NIP-17 private messaging /// Manages Nostr identity (secp256k1 keypair) for NIP-17 private messaging
struct NostrIdentity: Codable { struct NostrIdentity: Codable {
@@ -58,3 +103,251 @@ struct NostrIdentity: Codable {
return publicKey.hexEncodedString() return publicKey.hexEncodedString()
} }
} }
/// Bridge between Noise and Nostr identities
struct NostrIdentityBridge {
private static let keychainService = "chat.bitchat.nostr"
private static let currentIdentityKey = "nostr-current-identity"
private static let deviceSeedKey = "nostr-device-seed"
// In-memory cache to avoid transient keychain access issues
private static var deviceSeedCache: Data?
/// Get or create the current Nostr identity
static func getCurrentNostrIdentity() throws -> NostrIdentity? {
// Check if we already have a Nostr identity
if let existingData = KeychainHelper.load(key: currentIdentityKey, service: keychainService),
let identity = try? JSONDecoder().decode(NostrIdentity.self, from: existingData) {
return identity
}
// Generate new Nostr identity
let nostrIdentity = try NostrIdentity.generate()
// Store it
let data = try JSONEncoder().encode(nostrIdentity)
KeychainHelper.save(key: currentIdentityKey, data: data, service: keychainService)
return nostrIdentity
}
/// Associate a Nostr identity with a Noise public key (for favorites)
static func associateNostrIdentity(_ nostrPubkey: String, with noisePublicKey: Data) {
let key = "nostr-noise-\(noisePublicKey.base64EncodedString())"
if let data = nostrPubkey.data(using: .utf8) {
KeychainHelper.save(key: key, data: data, service: keychainService)
}
}
/// Get Nostr public key associated with a Noise public key
static func getNostrPublicKey(for noisePublicKey: Data) -> String? {
let key = "nostr-noise-\(noisePublicKey.base64EncodedString())"
guard let data = KeychainHelper.load(key: key, service: keychainService),
let pubkey = String(data: data, encoding: .utf8) else {
return nil
}
return pubkey
}
/// Clear all Nostr identity associations and current identity
static func clearAllAssociations() {
// Delete current Nostr identity
KeychainHelper.delete(key: currentIdentityKey, service: keychainService)
KeychainHelper.delete(key: deviceSeedKey, service: keychainService)
// Note: We can't efficiently delete all noise-nostr associations
// without tracking them, but they'll be orphaned and eventually cleaned up
// The important part is deleting the current identity so a new one is generated
}
// MARK: - Per-Geohash Identities (Location Channels)
/// Returns a stable device seed used to derive unlinkable per-geohash identities.
/// Stored only on device keychain.
private static func getOrCreateDeviceSeed() -> Data {
if let cached = deviceSeedCache { return cached }
if let existing = KeychainHelper.load(key: deviceSeedKey, service: keychainService) {
// Migrate to AfterFirstUnlockThisDeviceOnly for stability during lock
KeychainHelper.save(key: deviceSeedKey, data: existing, service: keychainService, accessible: kSecAttrAccessibleAfterFirstUnlockThisDeviceOnly)
deviceSeedCache = existing
return existing
}
var seed = Data(count: 32)
_ = seed.withUnsafeMutableBytes { ptr in
SecRandomCopyBytes(kSecRandomDefault, 32, ptr.baseAddress!)
}
// Ensure availability after first unlock to prevent unintended rotation when locked
KeychainHelper.save(key: deviceSeedKey, data: seed, service: keychainService, accessible: kSecAttrAccessibleAfterFirstUnlockThisDeviceOnly)
deviceSeedCache = seed
return seed
}
/// Derive a deterministic, unlinkable Nostr identity for a given geohash.
/// Uses HMAC-SHA256(deviceSeed, geohash) as private key material, with fallback rehashing
/// if the candidate is not a valid secp256k1 private key.
static func deriveIdentity(forGeohash geohash: String) throws -> NostrIdentity {
let seed = getOrCreateDeviceSeed()
guard let msg = geohash.data(using: .utf8) else {
throw NSError(domain: "NostrIdentity", code: -1, userInfo: [NSLocalizedDescriptionKey: "Invalid geohash string"])
}
func candidateKey(iteration: UInt32) -> Data {
var input = Data(msg)
var iterBE = iteration.bigEndian
withUnsafeBytes(of: &iterBE) { bytes in
input.append(contentsOf: bytes)
}
let code = CryptoKit.HMAC<CryptoKit.SHA256>.authenticationCode(for: input, using: SymmetricKey(data: seed))
return Data(code)
}
// Try a few iterations to ensure a valid key can be formed
for i in 0..<10 {
let keyData = candidateKey(iteration: UInt32(i))
if let identity = try? NostrIdentity(privateKeyData: keyData) {
return identity
}
}
// As a final fallback, hash the seed+msg and try again
var combined = Data()
combined.append(seed)
combined.append(msg)
let fallback = Data(CryptoKit.SHA256.hash(data: combined))
return try NostrIdentity(privateKeyData: fallback)
}
}
// Bech32 encoding for Nostr (minimal implementation)
enum Bech32 {
private static let charset = "qpzry9x8gf2tvdw0s3jn54khce6mua7l"
private static let generator = [0x3b6a57b2, 0x26508e6d, 0x1ea119fa, 0x3d4233dd, 0x2a1462b3]
static func encode(hrp: String, data: Data) throws -> String {
let values = convertBits(from: 8, to: 5, pad: true, data: Array(data))
let checksum = createChecksum(hrp: hrp, values: values)
let combined = values + checksum
return hrp + "1" + combined.map {
let index = charset.index(charset.startIndex, offsetBy: Int($0))
return String(charset[index])
}.joined()
}
static func decode(_ bech32String: String) throws -> (hrp: String, data: Data) {
// Find the last occurrence of '1'
guard let separatorIndex = bech32String.lastIndex(of: "1") else {
throw Bech32Error.invalidFormat
}
let hrp = String(bech32String[..<separatorIndex])
// Validate HRP contains only ASCII characters
for char in hrp {
guard char.asciiValue != nil else {
throw Bech32Error.invalidCharacter
}
}
let dataString = String(bech32String[bech32String.index(after: separatorIndex)...])
// Convert characters to values
var values = [UInt8]()
for char in dataString {
guard let index = charset.firstIndex(of: char) else {
throw Bech32Error.invalidCharacter
}
values.append(UInt8(charset.distance(from: charset.startIndex, to: index)))
}
// Verify checksum
guard values.count >= 6 else {
throw Bech32Error.invalidChecksum
}
let payloadValues = Array(values.dropLast(6))
let checksum = Array(values.suffix(6))
let expectedChecksum = createChecksum(hrp: hrp, values: payloadValues)
guard checksum == expectedChecksum else {
throw Bech32Error.invalidChecksum
}
// Convert back to bytes
let bytes = convertBits(from: 5, to: 8, pad: false, data: payloadValues)
return (hrp: hrp, data: Data(bytes))
}
enum Bech32Error: Error {
case invalidFormat
case invalidCharacter
case invalidChecksum
}
private static func convertBits(from: Int, to: Int, pad: Bool, data: [UInt8]) -> [UInt8] {
var acc = 0
var bits = 0
var result = [UInt8]()
let maxv = (1 << to) - 1
for value in data {
acc = (acc << from) | Int(value)
bits += from
while bits >= to {
bits -= to
result.append(UInt8((acc >> bits) & maxv))
}
}
if pad && bits > 0 {
result.append(UInt8((acc << (to - bits)) & maxv))
}
return result
}
private static func createChecksum(hrp: String, values: [UInt8]) -> [UInt8] {
let checksumValues = hrpExpand(hrp) + values + [0, 0, 0, 0, 0, 0]
let polymod = polymod(checksumValues) ^ 1
var checksum = [UInt8]()
for i in 0..<6 {
checksum.append(UInt8((polymod >> (5 * (5 - i))) & 31))
}
return checksum
}
private static func hrpExpand(_ hrp: String) -> [UInt8] {
var result = [UInt8]()
for c in hrp {
guard let asciiValue = c.asciiValue else {
return [] // Return empty array for invalid input
}
result.append(UInt8(asciiValue >> 5))
}
result.append(0)
for c in hrp {
guard let asciiValue = c.asciiValue else {
return [] // Return empty array for invalid input
}
result.append(UInt8(asciiValue & 31))
}
return result
}
private static func polymod(_ values: [UInt8]) -> Int {
var chk = 1
for value in values {
let b = chk >> 25
chk = (chk & 0x1ffffff) << 5 ^ Int(value)
for i in 0..<5 {
if (b >> i) & 1 == 1 {
chk ^= generator[i]
}
}
}
return chk
}
}
// Data hex encoding extension moved to BinaryEncodingUtils.swift to avoid duplication
-157
View File
@@ -1,157 +0,0 @@
import Foundation
import CryptoKit
/// Bridge between Noise and Nostr identities
final class NostrIdentityBridge {
private let keychainService = "chat.bitchat.nostr"
private let currentIdentityKey = "nostr-current-identity"
private let deviceSeedKey = "nostr-device-seed"
// In-memory cache to avoid transient keychain access issues
private var deviceSeedCache: Data?
// Cache derived identities to avoid repeated crypto during view rendering
private var derivedIdentityCache: [String: NostrIdentity] = [:]
private let cacheLock = NSLock()
private let keychain: KeychainHelperProtocol
init(keychain: KeychainHelperProtocol = KeychainHelper()) {
self.keychain = keychain
}
/// Get or create the current Nostr identity
func getCurrentNostrIdentity() throws -> NostrIdentity? {
// Check if we already have a Nostr identity
if let existingData = keychain.load(key: currentIdentityKey, service: keychainService),
let identity = try? JSONDecoder().decode(NostrIdentity.self, from: existingData) {
return identity
}
// Generate new Nostr identity
let nostrIdentity = try NostrIdentity.generate()
// Store it
let data = try JSONEncoder().encode(nostrIdentity)
keychain.save(key: currentIdentityKey, data: data, service: keychainService, accessible: nil)
return nostrIdentity
}
/// Associate a Nostr identity with a Noise public key (for favorites)
func associateNostrIdentity(_ nostrPubkey: String, with noisePublicKey: Data) {
let key = "nostr-noise-\(noisePublicKey.base64EncodedString())"
if let data = nostrPubkey.data(using: .utf8) {
keychain.save(key: key, data: data, service: keychainService, accessible: nil)
}
}
/// Get Nostr public key associated with a Noise public key
func getNostrPublicKey(for noisePublicKey: Data) -> String? {
let key = "nostr-noise-\(noisePublicKey.base64EncodedString())"
guard let data = keychain.load(key: key, service: keychainService),
let pubkey = String(data: data, encoding: .utf8) else {
return nil
}
return pubkey
}
/// Clear all Nostr identity associations and current identity
func clearAllAssociations() {
let query: [String: Any] = [
kSecClass as String: kSecClassGenericPassword,
kSecAttrService as String: keychainService,
kSecMatchLimit as String: kSecMatchLimitAll,
kSecReturnAttributes as String: true
]
var result: AnyObject?
let status = SecItemCopyMatching(query as CFDictionary, &result)
if status == errSecSuccess, let items = result as? [[String: Any]] {
for item in items {
var deleteQuery: [String: Any] = [
kSecClass as String: kSecClassGenericPassword,
kSecAttrService as String: keychainService
]
if let account = item[kSecAttrAccount as String] as? String {
deleteQuery[kSecAttrAccount as String] = account
}
SecItemDelete(deleteQuery as CFDictionary)
}
} else if status == errSecItemNotFound {
// nothing persisted; no action needed
}
deviceSeedCache = nil
}
// MARK: - Per-Geohash Identities (Location Channels)
/// Returns a stable device seed used to derive unlinkable per-geohash identities.
/// Stored only on device keychain.
private func getOrCreateDeviceSeed() -> Data {
if let cached = deviceSeedCache { return cached }
if let existing = keychain.load(key: deviceSeedKey, service: keychainService) {
// Migrate to AfterFirstUnlockThisDeviceOnly for stability during lock
keychain.save(key: deviceSeedKey, data: existing, service: keychainService, accessible: kSecAttrAccessibleAfterFirstUnlockThisDeviceOnly)
deviceSeedCache = existing
return existing
}
var seed = Data(count: 32)
_ = seed.withUnsafeMutableBytes { ptr in
SecRandomCopyBytes(kSecRandomDefault, 32, ptr.baseAddress!)
}
// Ensure availability after first unlock to prevent unintended rotation when locked
keychain.save(key: deviceSeedKey, data: seed, service: keychainService, accessible: kSecAttrAccessibleAfterFirstUnlockThisDeviceOnly)
deviceSeedCache = seed
return seed
}
/// Derive a deterministic, unlinkable Nostr identity for a given geohash.
/// Uses HMAC-SHA256(deviceSeed, geohash) as private key material, with fallback rehashing
/// if the candidate is not a valid secp256k1 private key.
func deriveIdentity(forGeohash geohash: String) throws -> NostrIdentity {
// Check cache first to avoid repeated crypto + keychain I/O during view rendering
cacheLock.lock()
if let cached = derivedIdentityCache[geohash] {
cacheLock.unlock()
return cached
}
cacheLock.unlock()
let seed = getOrCreateDeviceSeed()
guard let msg = geohash.data(using: .utf8) else {
throw NSError(domain: "NostrIdentity", code: -1, userInfo: [NSLocalizedDescriptionKey: "Invalid geohash string"])
}
func candidateKey(iteration: UInt32) -> Data {
var input = Data(msg)
var iterBE = iteration.bigEndian
withUnsafeBytes(of: &iterBE) { bytes in
input.append(contentsOf: bytes)
}
let code = HMAC<SHA256>.authenticationCode(for: input, using: SymmetricKey(data: seed))
return Data(code)
}
// Try a few iterations to ensure a valid key can be formed
for i in 0..<10 {
let keyData = candidateKey(iteration: UInt32(i))
if let identity = try? NostrIdentity(privateKeyData: keyData) {
// Cache the result
cacheLock.lock()
derivedIdentityCache[geohash] = identity
cacheLock.unlock()
return identity
}
}
// As a final fallback, hash the seed+msg and try again
let fallback = (seed + msg).sha256Hash()
let identity = try NostrIdentity(privateKeyData: fallback)
// Cache the result
cacheLock.lock()
derivedIdentityCache[geohash] = identity
cacheLock.unlock()
return identity
}
}
+9 -27
View File
@@ -1,4 +1,3 @@
import BitLogger
import Foundation import Foundation
import CryptoKit import CryptoKit
import P256K import P256K
@@ -79,7 +78,8 @@ struct NostrProtocol {
) )
// Successfully unwrapped gift wrap // Successfully unwrapped gift wrap
} catch { } catch {
SecureLogger.error("❌ Failed to unwrap gift wrap: \(error)", category: .session) SecureLogger.log("❌ Failed to unwrap gift wrap: \(error)",
category: SecureLogger.session, level: .error)
throw error throw error
} }
@@ -92,7 +92,8 @@ struct NostrProtocol {
) )
// Successfully opened seal // Successfully opened seal
} catch { } catch {
SecureLogger.error("❌ Failed to open seal: \(error)", category: .session) SecureLogger.log("❌ Failed to open seal: \(error)",
category: SecureLogger.session, level: .error)
throw error throw error
} }
@@ -108,7 +109,7 @@ struct NostrProtocol {
teleported: Bool = false teleported: Bool = false
) throws -> NostrEvent { ) throws -> NostrEvent {
var tags = [["g", geohash]] var tags = [["g", geohash]]
if let nickname = nickname?.trimmingCharacters(in: .whitespacesAndNewlines), !nickname.isEmpty { if let nickname = nickname, !nickname.isEmpty {
tags.append(["n", nickname]) tags.append(["n", nickname])
} }
if teleported { if teleported {
@@ -125,28 +126,6 @@ struct NostrProtocol {
return try event.sign(with: schnorrKey) return try event.sign(with: schnorrKey)
} }
/// Create a persistent location note (kind 1: text note) tagged to a street-level geohash.
static func createGeohashTextNote(
content: String,
geohash: String,
senderIdentity: NostrIdentity,
nickname: String? = nil
) throws -> NostrEvent {
var tags = [["g", geohash]]
if let nickname = nickname?.trimmingCharacters(in: .whitespacesAndNewlines), !nickname.isEmpty {
tags.append(["n", nickname])
}
let event = NostrEvent(
pubkey: senderIdentity.publicKeyHex,
createdAt: Date(),
kind: .textNote,
tags: tags,
content: content
)
let schnorrKey = try senderIdentity.schnorrSigningKey()
return try event.sign(with: schnorrKey)
}
// MARK: - Private Methods // MARK: - Private Methods
private static func createSeal( private static func createSeal(
@@ -521,7 +500,10 @@ struct NostrEvent: Codable {
] as [Any] ] as [Any]
let data = try JSONSerialization.data(withJSONObject: serialized, options: [.withoutEscapingSlashes]) let data = try JSONSerialization.data(withJSONObject: serialized, options: [.withoutEscapingSlashes])
return (data.sha256Fingerprint(), data.sha256Hash()) let hash = CryptoKit.SHA256.hash(data: data)
let hashData = Data(hash)
let hashHex = hash.compactMap { String(format: "%02x", $0) }.joined()
return (hashHex, hashData)
} }
func jsonString() throws -> String { func jsonString() throws -> String {
+162 -497
View File
@@ -1,12 +1,10 @@
import BitLogger
import Foundation import Foundation
import Network import Network
import Combine import Combine
import Tor
/// Manages WebSocket connections to Nostr relays /// Manages WebSocket connections to Nostr relays
@MainActor @MainActor
final class NostrRelayManager: ObservableObject { class NostrRelayManager: ObservableObject {
static let shared = NostrRelayManager() static let shared = NostrRelayManager()
// Track gift-wraps (kind 1059) we initiated so we can log OK acks at info // Track gift-wraps (kind 1059) we initiated so we can log OK acks at info
private(set) static var pendingGiftWrapIDs = Set<String>() private(set) static var pendingGiftWrapIDs = Set<String>()
@@ -36,42 +34,18 @@ final class NostrRelayManager: ObservableObject {
"wss://nostr21.com" "wss://nostr21.com"
// For local testing, you can add: "ws://localhost:8080" // For local testing, you can add: "ws://localhost:8080"
] ]
private static let defaultRelaySet = Set(defaultRelays)
@Published private(set) var relays: [Relay] = [] @Published private(set) var relays: [Relay] = []
@Published private(set) var isConnected = false @Published private(set) var isConnected = false
private var allowDefaultRelays: Bool = false
private var hasMutualFavorites: Bool = false
private var hasLocationPermission: Bool = false
private var connections: [String: URLSessionWebSocketTask] = [:] private var connections: [String: URLSessionWebSocketTask] = [:]
private var subscriptions: [String: Set<String>] = [:] // relay URL -> active subscription IDs private var subscriptions: [String: Set<String>] = [:] // relay URL -> subscription IDs
private var pendingSubscriptions: [String: [String: String]] = [:] // relay URL -> (subscription id -> encoded REQ JSON)
private var messageHandlers: [String: (NostrEvent) -> Void] = [:] private var messageHandlers: [String: (NostrEvent) -> Void] = [:]
// Coalesce duplicate subscribe requests for the same id within a short window
private var subscribeCoalesce: [String: Date] = [:]
private var cancellables = Set<AnyCancellable>() private var cancellables = Set<AnyCancellable>()
// Track EOSE per subscription to signal when initial stored events are done
private struct EOSETracker {
var pendingRelays: Set<String>
var callback: () -> Void
var timer: Timer?
}
private var eoseTrackers: [String: EOSETracker] = [:]
// Message queue for reliability // Message queue for reliability
// Pending sends held only for relays that are not yet connected. private var messageQueue: [(event: NostrEvent, relayUrls: [String])] = []
private struct PendingSend {
var event: NostrEvent
var pendingRelays: Set<String>
}
private var messageQueue: [PendingSend] = []
private let messageQueueLock = NSLock() private let messageQueueLock = NSLock()
private let encoder = JSONEncoder()
private let decoder = JSONDecoder()
private var networkService: NetworkActivationService { NetworkActivationService.shared }
private var shouldUseTor: Bool { networkService.userTorEnabled }
// Exponential backoff configuration // Exponential backoff configuration
private let initialBackoffInterval: TimeInterval = TransportConfig.nostrRelayInitialBackoffSeconds private let initialBackoffInterval: TimeInterval = TransportConfig.nostrRelayInitialBackoffSeconds
@@ -81,168 +55,56 @@ final class NostrRelayManager: ObservableObject {
// Reconnection timer // Reconnection timer
private var reconnectionTimer: Timer? private var reconnectionTimer: Timer?
// Bump generation to invalidate scheduled reconnects when we reset/disconnect
private var connectionGeneration: Int = 0
init() { init() {
hasMutualFavorites = !FavoritesPersistenceService.shared.mutualFavorites.isEmpty // Initialize with default relays
hasLocationPermission = LocationChannelManager.shared.permissionState == .authorized self.relays = Self.defaultRelays.map { Relay(url: $0) }
applyDefaultRelayPolicy(force: true)
// Deterministic JSON shape for outbound requests
self.encoder.outputFormatting = .sortedKeys
FavoritesPersistenceService.shared.$mutualFavorites
.receive(on: DispatchQueue.main)
.sink { [weak self] favorites in
guard let self = self else { return }
self.hasMutualFavorites = !favorites.isEmpty
self.applyDefaultRelayPolicy()
}
.store(in: &cancellables)
LocationChannelManager.shared.$permissionState
.receive(on: DispatchQueue.main)
.sink { [weak self] state in
guard let self = self else { return }
let authorized = (state == .authorized)
if authorized == self.hasLocationPermission { return }
self.hasLocationPermission = authorized
self.applyDefaultRelayPolicy()
}
.store(in: &cancellables)
} }
/// Connect to all configured relays /// Connect to all configured relays
func connect() { func connect() {
// Global network policy gate SecureLogger.log("🌐 Connecting to \(relays.count) Nostr relays", category: SecureLogger.session, level: .debug)
guard networkService.activationAllowed else { return } for relay in relays {
if shouldUseTor { connectToRelay(relay.url)
// Ensure Tor is started early and wait for readiness off-main; then hop back to connect.
Task.detached {
let ready = await TorManager.shared.awaitReady()
await MainActor.run {
if !ready {
SecureLogger.error("❌ Tor not ready; aborting relay connections (fail-closed)", category: .session)
return
}
SecureLogger.debug("🌐 Connecting to \(self.relays.count) Nostr relays (via Tor)", category: .session)
for relay in self.relays {
self.connectToRelay(relay.url)
}
}
}
} else {
SecureLogger.debug("🌐 Connecting to \(self.relays.count) Nostr relays (direct)", category: .session)
for relay in self.relays {
connectToRelay(relay.url)
}
} }
} }
/// Disconnect from all relays /// Disconnect from all relays
func disconnect() { func disconnect() {
connectionGeneration &+= 1
for (_, task) in connections { for (_, task) in connections {
task.cancel(with: .goingAway, reason: nil) task.cancel(with: .goingAway, reason: nil)
} }
connections.removeAll() connections.removeAll()
// Clear known subscriptions and any queued subs since connections are gone
subscriptions.removeAll()
pendingSubscriptions.removeAll()
updateConnectionStatus() updateConnectionStatus()
} }
/// Ensure connections exist to the given relay URLs (idempotent). /// Ensure connections exist to the given relay URLs (idempotent).
func ensureConnections(to relayUrls: [String]) { func ensureConnections(to relayUrls: [String]) {
// Global network policy gate let existing = Set(relays.map { $0.url })
guard networkService.activationAllowed else { return } for url in Set(relayUrls) {
let targets = allowedRelayList(from: relayUrls) if !existing.contains(url) {
guard !targets.isEmpty else { return } relays.append(Relay(url: url))
if shouldUseTor && TorManager.shared.torEnforced && !TorManager.shared.isReady { }
// Defer until Tor is fully ready; avoid queuing connection attempts early if connections[url] == nil {
Task.detached { [weak self] in connectToRelay(url)
guard let self = self else { return }
let ready = await TorManager.shared.awaitReady()
await MainActor.run { if ready { self.ensureConnections(to: relayUrls) } }
} }
return
}
var existing = Set(relays.map { $0.url })
for url in targets where !existing.contains(url) {
relays.append(Relay(url: url))
existing.insert(url)
}
for url in targets where connections[url] == nil {
connectToRelay(url)
} }
} }
/// Send an event to specified relays (or all if none specified) /// Send an event to specified relays (or all if none specified)
func sendEvent(_ event: NostrEvent, to relayUrls: [String]? = nil) { func sendEvent(_ event: NostrEvent, to relayUrls: [String]? = nil) {
// Global network policy gate let targetRelays = relayUrls ?? Self.defaultRelays
guard networkService.activationAllowed else { return }
if shouldUseTor && TorManager.shared.torEnforced && !TorManager.shared.isReady {
// Defer sends until Tor is ready to avoid premature queueing
Task.detached { [weak self] in
guard let self = self else { return }
let ready = await TorManager.shared.awaitReady()
await MainActor.run { if ready { self.sendEvent(event, to: relayUrls) } }
}
return
}
let requestedRelays = relayUrls ?? Self.defaultRelays
let targetRelays = allowedRelayList(from: requestedRelays)
guard !targetRelays.isEmpty else { return }
ensureConnections(to: targetRelays) ensureConnections(to: targetRelays)
// Attempt immediate send to relays with active connections; queue the rest // Add to queue for reliability
var stillPending = Set<String>() messageQueueLock.lock()
messageQueue.append((event, targetRelays))
messageQueueLock.unlock()
// Attempt immediate send
for relayUrl in targetRelays { for relayUrl in targetRelays {
if let connection = connections[relayUrl] { if let connection = connections[relayUrl] {
sendToRelay(event: event, connection: connection, relayUrl: relayUrl) sendToRelay(event: event, connection: connection, relayUrl: relayUrl)
} else {
stillPending.insert(relayUrl)
}
}
if !stillPending.isEmpty {
messageQueueLock.lock()
messageQueue.append(PendingSend(event: event, pendingRelays: stillPending))
messageQueueLock.unlock()
}
}
/// Try to flush any queued messages for relays that are now connected.
private func flushMessageQueue(for relayUrl: String? = nil) {
messageQueueLock.lock()
defer { messageQueueLock.unlock() }
guard !messageQueue.isEmpty else { return }
if let target = relayUrl {
// Flush only for a specific relay
for i in (0..<messageQueue.count).reversed() {
var item = messageQueue[i]
if item.pendingRelays.contains(target), let conn = connections[target] {
sendToRelay(event: item.event, connection: conn, relayUrl: target)
item.pendingRelays.remove(target)
if item.pendingRelays.isEmpty {
messageQueue.remove(at: i)
} else {
messageQueue[i] = item
}
}
}
} else {
// Flush for any relays that now have connections
for i in (0..<messageQueue.count).reversed() {
var item = messageQueue[i]
for url in item.pendingRelays {
if let conn = connections[url] {
sendToRelay(event: item.event, connection: conn, relayUrl: url)
item.pendingRelays.remove(url)
}
}
if item.pendingRelays.isEmpty {
messageQueue.remove(at: i)
} else {
messageQueue[i] = item
}
} }
} }
} }
@@ -252,150 +114,68 @@ final class NostrRelayManager: ObservableObject {
filter: NostrFilter, filter: NostrFilter,
id: String = UUID().uuidString, id: String = UUID().uuidString,
relayUrls: [String]? = nil, relayUrls: [String]? = nil,
handler: @escaping (NostrEvent) -> Void, handler: @escaping (NostrEvent) -> Void
onEOSE: (() -> Void)? = nil
) { ) {
// Global network policy gate
guard networkService.activationAllowed else { return }
// Coalesce rapid duplicate subscribe requests only if a handler already exists
let now = Date()
if messageHandlers[id] != nil {
if let last = subscribeCoalesce[id], now.timeIntervalSince(last) < 1.0 {
return
}
}
subscribeCoalesce[id] = now
if shouldUseTor && TorManager.shared.torEnforced && !TorManager.shared.isReady {
// Defer subscription setup until Tor is ready; avoid queuing subs early
Task.detached { [weak self] in
guard let self = self else { return }
let ready = await TorManager.shared.awaitReady()
await MainActor.run {
if ready {
self.subscribe(filter: filter, id: id, relayUrls: relayUrls, handler: handler)
}
}
}
return
}
messageHandlers[id] = handler messageHandlers[id] = handler
SecureLogger.log("📡 Subscribing to Nostr filter id=\(id) kinds=\(filter.kinds ?? []) since=\(filter.since ?? 0)",
category: SecureLogger.session, level: .debug)
let req = NostrRequest.subscribe(id: id, filters: [filter]) let req = NostrRequest.subscribe(id: id, filters: [filter])
do { do {
let encoder = JSONEncoder()
encoder.outputFormatting = .sortedKeys // For consistent output
let message = try encoder.encode(req) let message = try encoder.encode(req)
guard let messageString = String(data: message, encoding: .utf8) else { guard let messageString = String(data: message, encoding: .utf8) else {
SecureLogger.error("❌ Failed to encode subscription request", category: .session) SecureLogger.log("❌ Failed to encode subscription request", category: SecureLogger.session, level: .error)
return return
} }
// SecureLogger.debug("📋 Subscription filter JSON: \(messageString.prefix(200))...", category: .session) // SecureLogger.log("📋 Subscription filter JSON: \(messageString.prefix(200))...",
// category: SecureLogger.session, level: .debug)
// Target specific relays if provided; else default. Filter permanently failed relays. // Target specific relays if provided; else all connections
let baseUrls = relayUrls ?? Self.defaultRelays let urls = relayUrls ?? Self.defaultRelays
let candidateUrls = baseUrls.filter { !isPermanentlyFailed($0) } ensureConnections(to: urls)
let urls = allowedRelayList(from: candidateUrls) let targets: [(String, URLSessionWebSocketTask)] = urls.compactMap { url in
// Always queue subscriptions; sending happens when a relay reports connected connections[url].map { (url, $0) }
let existingSet = Set(relays.map { $0.url })
for url in urls where !existingSet.contains(url) {
relays.append(Relay(url: url))
} }
for url in candidateUrls {
var map = self.pendingSubscriptions[url] ?? [:] for (relayUrl, connection) in targets {
map[id] = messageString connection.send(.string(messageString)) { error in
self.pendingSubscriptions[url] = map if let error = error {
} SecureLogger.log("❌ Failed to send subscription to \(relayUrl): \(error)",
// Initialize EOSE tracking if requested category: SecureLogger.session, level: .error)
if let onEOSE = onEOSE { } else {
if urls.isEmpty { // SecureLogger.log(" Subscription '\(id)' sent to relay: \(relayUrl)",
onEOSE() // category: SecureLogger.session, level: .debug)
} else { // Subscription sent successfully
var tracker = EOSETracker(pendingRelays: Set(urls), callback: onEOSE, timer: nil)
// Fallback timeout to avoid hanging if a relay never sends EOSE
tracker.timer = Timer.scheduledTimer(withTimeInterval: 2.0, repeats: false) { [weak self] _ in
Task { @MainActor in Task { @MainActor in
guard let self = self else { return } var subs = self.subscriptions[relayUrl] ?? Set<String>()
if let t = self.eoseTrackers[id] { subs.insert(id)
t.timer?.invalidate() self.subscriptions[relayUrl] = subs
self.eoseTrackers.removeValue(forKey: id)
onEOSE()
}
} }
} }
eoseTrackers[id] = tracker
} }
} }
SecureLogger.debug("📋 Queued subscription id=\(id) for \(urls.count) relay(s)", category: .session)
// Ensure we actually have sockets opening to these relays so queued REQs can flush if connections.isEmpty {
ensureConnections(to: urls) SecureLogger.log("⚠️ No relay connections available for subscription",
// If some targets are already connected, flush immediately for them category: SecureLogger.session, level: .warning)
for url in urls {
if let r = relays.first(where: { $0.url == url }), r.isConnected {
flushPendingSubscriptions(for: url)
}
} }
} catch { } catch {
SecureLogger.error("❌ Failed to encode subscription request: \(error)", category: .session) SecureLogger.log("❌ Failed to encode subscription request: \(error)",
category: SecureLogger.session, level: .error)
} }
} }
private func applyDefaultRelayPolicy(force: Bool = false) {
let shouldAllow = hasMutualFavorites || hasLocationPermission
if !force && shouldAllow == allowDefaultRelays { return }
allowDefaultRelays = shouldAllow
if shouldAllow {
var existing = Set(relays.map { $0.url })
for url in Self.defaultRelays where !existing.contains(url) {
relays.append(Relay(url: url))
existing.insert(url)
}
if networkService.activationAllowed {
ensureConnections(to: Self.defaultRelays)
}
} else {
for url in Self.defaultRelays {
if let connection = connections[url] {
connection.cancel(with: .goingAway, reason: nil)
}
connections.removeValue(forKey: url)
subscriptions.removeValue(forKey: url)
}
messageQueueLock.lock()
for index in (0..<messageQueue.count).reversed() {
var item = messageQueue[index]
item.pendingRelays.subtract(Self.defaultRelaySet)
if item.pendingRelays.isEmpty {
messageQueue.remove(at: index)
} else {
messageQueue[index] = item
}
}
messageQueueLock.unlock()
relays.removeAll { Self.defaultRelaySet.contains($0.url) }
updateConnectionStatus()
}
}
private func allowedRelayList(from urls: [String]) -> [String] {
var seen = Set<String>()
var result: [String] = []
for url in urls {
if !allowDefaultRelays && Self.defaultRelaySet.contains(url) { continue }
if seen.insert(url).inserted {
result.append(url)
}
}
return result
}
/// Unsubscribe from a subscription /// Unsubscribe from a subscription
func unsubscribe(id: String) { func unsubscribe(id: String) {
messageHandlers.removeValue(forKey: id) messageHandlers.removeValue(forKey: id)
// Allow immediate re-subscription by clearing coalescer timestamp
subscribeCoalesce.removeValue(forKey: id)
let req = NostrRequest.close(id: id) let req = NostrRequest.close(id: id)
let message = try? encoder.encode(req) let message = try? JSONEncoder().encode(req)
guard let messageData = message, guard let messageData = message,
let messageString = String(data: messageData, encoding: .utf8) else { return } let messageString = String(data: messageData, encoding: .utf8) else { return }
@@ -415,15 +195,8 @@ final class NostrRelayManager: ObservableObject {
// MARK: - Private Methods // MARK: - Private Methods
private func connectToRelay(_ urlString: String) { private func connectToRelay(_ urlString: String) {
// Global network policy gate
guard networkService.activationAllowed else { return }
guard let url = URL(string: urlString) else { guard let url = URL(string: urlString) else {
SecureLogger.warning("Invalid relay URL: \(urlString)", category: .session) SecureLogger.log("Invalid relay URL: \(urlString)", category: SecureLogger.session, level: .warning)
return
}
// Avoid initiating connections while app is backgrounded; we'll reconnect on foreground
if shouldUseTor && TorManager.shared.torEnforced && !TorManager.shared.isForeground() {
return return
} }
@@ -431,26 +204,10 @@ final class NostrRelayManager: ObservableObject {
if connections[urlString] != nil { if connections[urlString] != nil {
return return
} }
if isPermanentlyFailed(urlString) {
return
}
// Attempting to connect to Nostr relay via the proxied session // Attempting to connect to Nostr relay
// If Tor is enforced but not ready, delay connection until it is. let session = URLSession(configuration: .default)
if shouldUseTor && TorManager.shared.torEnforced && !TorManager.shared.isReady {
Task.detached { [weak self] in
guard let self = self else { return }
let ready = await TorManager.shared.awaitReady()
await MainActor.run {
if ready { self.connectToRelay(urlString) }
else { SecureLogger.error("❌ Tor not ready; skipping connection to \(urlString)", category: .session) }
}
}
return
}
let session = TorURLSession.shared.session
let task = session.webSocketTask(with: url) let task = session.webSocketTask(with: url)
connections[urlString] = task connections[urlString] = task
@@ -463,12 +220,12 @@ final class NostrRelayManager: ObservableObject {
task.sendPing { [weak self] error in task.sendPing { [weak self] error in
DispatchQueue.main.async { DispatchQueue.main.async {
if error == nil { if error == nil {
SecureLogger.debug("✅ Connected to Nostr relay: \(urlString)", category: .session) SecureLogger.log("✅ Connected to Nostr relay: \(urlString)",
category: SecureLogger.session, level: .debug)
self?.updateRelayStatus(urlString, isConnected: true) self?.updateRelayStatus(urlString, isConnected: true)
// Flush any pending subscriptions for this relay
self?.flushPendingSubscriptions(for: urlString)
} else { } else {
SecureLogger.error("❌ Failed to connect to Nostr relay \(urlString): \(error?.localizedDescription ?? "Unknown error")", category: .session) SecureLogger.log("❌ Failed to connect to Nostr relay \(urlString): \(error?.localizedDescription ?? "Unknown error")",
category: SecureLogger.session, level: .error)
self?.updateRelayStatus(urlString, isConnected: false, error: error) self?.updateRelayStatus(urlString, isConnected: false, error: error)
// Trigger disconnection handler for proper backoff // Trigger disconnection handler for proper backoff
self?.handleDisconnection(relayUrl: urlString, error: error ?? NSError(domain: "NostrRelay", code: -1, userInfo: nil)) self?.handleDisconnection(relayUrl: urlString, error: error ?? NSError(domain: "NostrRelay", code: -1, userInfo: nil))
@@ -477,39 +234,25 @@ final class NostrRelayManager: ObservableObject {
} }
} }
/// Send any queued subscriptions for a relay that just connected.
private func flushPendingSubscriptions(for relayUrl: String) {
guard let map = pendingSubscriptions[relayUrl], !map.isEmpty else { return }
guard let connection = connections[relayUrl] else { return }
for (id, messageString) in map {
if self.subscriptions[relayUrl]?.contains(id) == true { continue }
connection.send(.string(messageString)) { error in
if let error = error {
SecureLogger.error("❌ Failed to send pending subscription to \(relayUrl): \(error)", category: .session)
} else {
Task { @MainActor in
var subs = self.subscriptions[relayUrl] ?? Set<String>()
subs.insert(id)
self.subscriptions[relayUrl] = subs
}
}
}
}
pendingSubscriptions[relayUrl] = nil
}
private func receiveMessage(from task: URLSessionWebSocketTask, relayUrl: String) { private func receiveMessage(from task: URLSessionWebSocketTask, relayUrl: String) {
task.receive { [weak self] result in task.receive { [weak self] result in
guard let self = self else { return } guard let self = self else { return }
switch result { switch result {
case .success(let message): case .success(let message):
// Parse off-main to reduce UI jank, then hop back for state updates switch message {
Task.detached(priority: .utility) { case .string(let text):
guard let parsed = ParsedInbound(message) else { return } Task { @MainActor in
await MainActor.run { self.handleMessage(text, from: relayUrl)
NostrRelayManager.shared.handleParsedMessage(parsed, from: relayUrl)
} }
case .data(let data):
if let text = String(data: data, encoding: .utf8) {
Task { @MainActor in
self.handleMessage(text, from: relayUrl)
}
}
@unknown default:
break
} }
// Continue receiving // Continue receiving
@@ -525,50 +268,79 @@ final class NostrRelayManager: ObservableObject {
} }
} }
// Parsed inbound message type (off-main) private func handleMessage(_ message: String, from relayUrl: String) {
// Note: declared at file scope below to avoid MainActor isolation inside this class guard let data = message.data(using: .utf8) else { return }
// and keep parsing off the main actor.
// Handle parsed message on MainActor (state updates and handlers) do {
private func handleParsedMessage(_ parsed: ParsedInbound, from relayUrl: String) { // Try to decode as an array first
switch parsed { if let array = try JSONSerialization.jsonObject(with: data) as? [Any],
case .event(let subId, let event): array.count >= 2,
if event.kind != 1059 { let type = array[0] as? String {
SecureLogger.debug("📥 Event kind=\(event.kind) id=\(event.id.prefix(16))… relay=\(relayUrl)", category: .session)
} // Received message from relay
if let index = self.relays.firstIndex(where: { $0.url == relayUrl }) {
self.relays[index].messagesReceived += 1 switch type {
} case "EVENT":
if let handler = self.messageHandlers[subId] { if array.count >= 3,
handler(event) let subId = array[1] as? String,
} else { let eventDict = array[2] as? [String: Any] {
SecureLogger.warning("⚠️ No handler for subscription \(subId)", category: .session)
} let event = try NostrEvent(from: eventDict)
case .eose(let subId):
if var tracker = eoseTrackers[subId] { // Only log non-gift-wrap events to reduce noise
tracker.pendingRelays.remove(relayUrl) if event.kind != 1059 {
if tracker.pendingRelays.isEmpty { SecureLogger.log("📥 Event kind=\(event.kind) id=\(event.id.prefix(16))… relay=\(relayUrl)",
tracker.timer?.invalidate() category: SecureLogger.session, level: .debug)
eoseTrackers.removeValue(forKey: subId) }
tracker.callback()
} else { DispatchQueue.main.async {
eoseTrackers[subId] = tracker // Update relay stats
if let index = self.relays.firstIndex(where: { $0.url == relayUrl }) {
self.relays[index].messagesReceived += 1
}
// Call handler
if let handler = self.messageHandlers[subId] {
handler(event)
} else {
SecureLogger.log("⚠️ No handler for subscription \(subId)",
category: SecureLogger.session, level: .warning)
}
}
}
case "EOSE":
if array.count >= 2 {
// End of stored events
}
case "OK":
if array.count >= 3,
let eventId = array[1] as? String,
let success = array[2] as? Bool {
let reason = array.count >= 4 ? (array[3] as? String ?? "no reason given") : "no reason given"
if success {
_ = Self.pendingGiftWrapIDs.remove(eventId)
SecureLogger.log("✅ Accepted id=\(eventId.prefix(16))… relay=\(relayUrl)",
category: SecureLogger.session, level: .debug)
} else {
let isGiftWrap = Self.pendingGiftWrapIDs.remove(eventId) != nil
SecureLogger.log("📮 Rejected id=\(eventId.prefix(16))… reason=\(reason)",
category: SecureLogger.session, level: isGiftWrap ? .warning : .error)
}
}
case "NOTICE":
if array.count >= 2 {
// Server notice received
}
default:
break // Unknown message type
} }
} }
case .ok(let eventId, let success, let reason): } catch {
if success { SecureLogger.log("Failed to parse Nostr message: \(error)", category: SecureLogger.session, level: .error)
_ = Self.pendingGiftWrapIDs.remove(eventId)
SecureLogger.debug("✅ Accepted id=\(eventId.prefix(16))… relay=\(relayUrl)", category: .session)
} else {
let isGiftWrap = Self.pendingGiftWrapIDs.remove(eventId) != nil
if isGiftWrap {
SecureLogger.warning("📮 Rejected id=\(eventId.prefix(16))… reason=\(reason)", category: .session)
} else {
SecureLogger.error("📮 Rejected id=\(eventId.prefix(16))… reason=\(reason)", category: .session)
}
}
case .notice:
break
} }
} }
@@ -576,17 +348,22 @@ final class NostrRelayManager: ObservableObject {
let req = NostrRequest.event(event) let req = NostrRequest.event(event)
do { do {
let encoder = JSONEncoder()
encoder.outputFormatting = .sortedKeys
let data = try encoder.encode(req) let data = try encoder.encode(req)
let message = String(data: data, encoding: .utf8) ?? "" let message = String(data: data, encoding: .utf8) ?? ""
SecureLogger.debug("📤 Send kind=\(event.kind) id=\(event.id.prefix(16))… relay=\(relayUrl)", category: .session) SecureLogger.log("📤 Send kind=\(event.kind) id=\(event.id.prefix(16))… relay=\(relayUrl)",
category: SecureLogger.session, level: .debug)
connection.send(.string(message)) { [weak self] error in connection.send(.string(message)) { [weak self] error in
DispatchQueue.main.async { DispatchQueue.main.async {
if let error = error { if let error = error {
SecureLogger.error("❌ Failed to send event to \(relayUrl): \(error)", category: .session) SecureLogger.log("❌ Failed to send event to \(relayUrl): \(error)",
category: SecureLogger.session, level: .error)
} else { } else {
// SecureLogger.debug(" Event sent to relay: \(relayUrl)", category: .session) // SecureLogger.log(" Event sent to relay: \(relayUrl)",
// category: SecureLogger.session, level: .debug)
// Update relay stats // Update relay stats
if let index = self?.relays.firstIndex(where: { $0.url == relayUrl }) { if let index = self?.relays.firstIndex(where: { $0.url == relayUrl }) {
self?.relays[index].messagesSent += 1 self?.relays[index].messagesSent += 1
@@ -595,7 +372,7 @@ final class NostrRelayManager: ObservableObject {
} }
} }
} catch { } catch {
SecureLogger.error("Failed to encode event: \(error)", category: .session) SecureLogger.log("Failed to encode event: \(error)", category: SecureLogger.session, level: .error)
} }
} }
@@ -612,10 +389,6 @@ final class NostrRelayManager: ObservableObject {
} }
} }
updateConnectionStatus() updateConnectionStatus()
// If we just connected to this relay, flush any queued sends targeting it
if isConnected {
flushMessageQueue(for: url)
}
} }
private func updateConnectionStatus() { private func updateConnectionStatus() {
@@ -623,32 +396,22 @@ final class NostrRelayManager: ObservableObject {
} }
private func handleDisconnection(relayUrl: String, error: Error) { private func handleDisconnection(relayUrl: String, error: Error) {
// If networking is disallowed, do not schedule reconnection
if !networkService.activationAllowed {
connections.removeValue(forKey: relayUrl)
subscriptions.removeValue(forKey: relayUrl)
updateRelayStatus(relayUrl, isConnected: false, error: error)
return
}
connections.removeValue(forKey: relayUrl) connections.removeValue(forKey: relayUrl)
subscriptions.removeValue(forKey: relayUrl) subscriptions.removeValue(forKey: relayUrl)
updateRelayStatus(relayUrl, isConnected: false, error: error) updateRelayStatus(relayUrl, isConnected: false, error: error)
// Check if this is a DNS or handshake error; treat as permanent // Check if this is a DNS error
let errorDescription = error.localizedDescription.lowercased() let errorDescription = error.localizedDescription.lowercased()
let ns = error as NSError
if errorDescription.contains("hostname could not be found") || if errorDescription.contains("hostname could not be found") ||
errorDescription.contains("dns") || errorDescription.contains("dns") {
(ns.domain == NSURLErrorDomain && ns.code == NSURLErrorBadServerResponse) { // Only log once for DNS failures
if relays.first(where: { $0.url == relayUrl })?.lastError == nil { if relays.first(where: { $0.url == relayUrl })?.lastError == nil {
SecureLogger.warning("Nostr relay permanent failure for \(relayUrl) - not retrying (code=\(ns.code))", category: .session) SecureLogger.log("Nostr relay DNS failure for \(relayUrl) - not retrying", category: SecureLogger.session, level: .warning)
} }
// Mark relay as permanently failed
if let index = relays.firstIndex(where: { $0.url == relayUrl }) { if let index = relays.firstIndex(where: { $0.url == relayUrl }) {
relays[index].lastError = error relays[index].lastError = error
relays[index].reconnectAttempts = maxReconnectAttempts
relays[index].nextReconnectTime = nil
} }
pendingSubscriptions[relayUrl] = nil
return return
} }
@@ -659,7 +422,8 @@ final class NostrRelayManager: ObservableObject {
// Stop attempting after max attempts // Stop attempting after max attempts
if relays[index].reconnectAttempts >= maxReconnectAttempts { if relays[index].reconnectAttempts >= maxReconnectAttempts {
SecureLogger.warning("Max reconnection attempts (\(maxReconnectAttempts)) reached for \(relayUrl)", category: .session) SecureLogger.log("Max reconnection attempts (\(maxReconnectAttempts)) reached for \(relayUrl)",
category: SecureLogger.session, level: .warning)
return return
} }
@@ -674,11 +438,9 @@ final class NostrRelayManager: ObservableObject {
// Schedule reconnection with exponential backoff // Schedule reconnection with exponential backoff
let gen = connectionGeneration
DispatchQueue.main.asyncAfter(deadline: .now() + backoffInterval) { [weak self] in DispatchQueue.main.asyncAfter(deadline: .now() + backoffInterval) { [weak self] in
guard let self = self else { return } guard let self = self else { return }
// Ignore stale scheduled reconnects from a previous generation
guard gen == self.connectionGeneration else { return }
// Check if we should still reconnect (relay might have been removed) // Check if we should still reconnect (relay might have been removed)
if self.relays.contains(where: { $0.url == relayUrl }) { if self.relays.contains(where: { $0.url == relayUrl }) {
self.connectToRelay(relayUrl) self.connectToRelay(relayUrl)
@@ -719,8 +481,6 @@ final class NostrRelayManager: ObservableObject {
/// Reset all relay connections /// Reset all relay connections
func resetAllConnections() { func resetAllConnections() {
disconnect() disconnect()
// New generation begins now
connectionGeneration &+= 1
// Reset all relay states // Reset all relay states
for index in relays.indices { for index in relays.indices {
@@ -732,81 +492,6 @@ final class NostrRelayManager: ObservableObject {
// Reconnect // Reconnect
connect() connect()
} }
// MARK: - Failure classification
private func isPermanentlyFailed(_ url: String) -> Bool {
guard let r = relays.first(where: { $0.url == url }) else { return false }
if r.reconnectAttempts >= maxReconnectAttempts { return true }
if let ns = r.lastError as NSError?, ns.domain == NSURLErrorDomain {
if ns.code == NSURLErrorBadServerResponse || ns.code == NSURLErrorCannotFindHost {
return true
}
}
return false
}
}
// MARK: - Off-main inbound parsing helpers (file scope, non-isolated)
private enum ParsedInbound {
case event(subId: String, event: NostrEvent)
case ok(eventId: String, success: Bool, reason: String)
case eose(subscriptionId: String)
case notice(String)
init?(_ message: URLSessionWebSocketTask.Message) {
guard let data = message.data,
let array = try? JSONSerialization.jsonObject(with: data) as? [Any],
array.count >= 2,
let type = array[0] as? String else {
return nil
}
switch type {
case "EVENT":
if array.count >= 3,
let subId = array[1] as? String,
let eventDict = array[2] as? [String: Any],
let event = try? NostrEvent(from: eventDict) {
self = .event(subId: subId, event: event)
return
}
return nil
case "EOSE":
if let subId = array[1] as? String {
self = .eose(subscriptionId: subId)
return
}
return nil
case "OK":
if array.count >= 3,
let eventId = array[1] as? String,
let success = array[2] as? Bool {
let reason = array.count >= 4 ? (array[3] as? String ?? "no reason given") : "no reason given"
self = .ok(eventId: eventId, success: success, reason: reason)
return
}
return nil
case "NOTICE":
if array.count >= 2, let msg = array[1] as? String {
self = .notice(msg)
return
}
return nil
default:
return nil
}
}
}
private extension URLSessionWebSocketTask.Message {
var data: Data? {
switch self {
case .string(let text): text.data(using: .utf8)
case .data(let data): data
@unknown default: nil
}
}
} }
// MARK: - Nostr Protocol Types // MARK: - Nostr Protocol Types
@@ -896,26 +581,6 @@ struct NostrFilter: Encodable {
filter.limit = limit filter.limit = limit
return filter return filter
} }
// For location notes: persistent text notes (kind 1) tagged with geohash
static func geohashNotes(_ geohash: String, since: Date? = nil, limit: Int = 200) -> NostrFilter {
var filter = NostrFilter()
filter.kinds = [1]
filter.since = since?.timeIntervalSince1970.toInt()
filter.tagFilters = ["g": [geohash]]
filter.limit = limit
return filter
}
// For location notes with neighbors: subscribe to multiple geohashes (center + neighbors)
static func geohashNotes(_ geohashes: [String], since: Date? = nil, limit: Int = 200) -> NostrFilter {
var filter = NostrFilter()
filter.kinds = [1]
filter.since = since?.timeIntervalSince1970.toInt()
filter.tagFilters = ["g": geohashes]
filter.limit = limit
return filter
}
} }
// Dynamic coding key for tag filters // Dynamic coding key for tag filters
+19 -14
View File
@@ -18,11 +18,6 @@ extension Data {
return self.map { String(format: "%02x", $0) }.joined() return self.map { String(format: "%02x", $0) }.joined()
} }
func sha256Hex() -> String {
let digest = SHA256.hash(data: self)
return digest.map { String(format: "%02x", $0) }.joined()
}
init?(hexString: String) { init?(hexString: String) {
let len = hexString.count / 2 let len = hexString.count / 2
var data = Data(capacity: len) var data = Data(capacity: len)
@@ -41,28 +36,38 @@ extension Data {
} }
} }
// MARK: - Fingerprint Helpers
extension Data {
/// SHA-256 over data, hex-encoded (lowercase)
func sha256Fingerprint() -> String {
let hash = SHA256.hash(data: self)
return hash.map { String(format: "%02x", $0) }.joined()
}
}
// MARK: - Binary Encoding Utilities // MARK: - Binary Encoding Utilities
extension Data { extension Data {
// MARK: Writing // MARK: Writing
@inlinable mutating func appendUInt8(_ value: UInt8) { mutating func appendUInt8(_ value: UInt8) {
self.append(value) self.append(value)
} }
@inlinable mutating func appendUInt16(_ value: UInt16) { mutating func appendUInt16(_ value: UInt16) {
self.append(UInt8((value >> 8) & 0xFF)) self.append(UInt8((value >> 8) & 0xFF))
self.append(UInt8(value & 0xFF)) self.append(UInt8(value & 0xFF))
} }
@inlinable mutating func appendUInt32(_ value: UInt32) { mutating func appendUInt32(_ value: UInt32) {
self.append(UInt8((value >> 24) & 0xFF)) self.append(UInt8((value >> 24) & 0xFF))
self.append(UInt8((value >> 16) & 0xFF)) self.append(UInt8((value >> 16) & 0xFF))
self.append(UInt8((value >> 8) & 0xFF)) self.append(UInt8((value >> 8) & 0xFF))
self.append(UInt8(value & 0xFF)) self.append(UInt8(value & 0xFF))
} }
@inlinable mutating func appendUInt64(_ value: UInt64) { mutating func appendUInt64(_ value: UInt64) {
for i in (0..<8).reversed() { for i in (0..<8).reversed() {
self.append(UInt8((value >> (i * 8)) & 0xFF)) self.append(UInt8((value >> (i * 8)) & 0xFF))
} }
@@ -119,21 +124,21 @@ extension Data {
// MARK: Reading // MARK: Reading
@inlinable func readUInt8(at offset: inout Int) -> UInt8? { func readUInt8(at offset: inout Int) -> UInt8? {
guard offset >= 0 && offset < self.count else { return nil } guard offset >= 0 && offset < self.count else { return nil }
let value = self[offset] let value = self[offset]
offset += 1 offset += 1
return value return value
} }
@inlinable func readUInt16(at offset: inout Int) -> UInt16? { func readUInt16(at offset: inout Int) -> UInt16? {
guard offset + 2 <= self.count else { return nil } guard offset + 2 <= self.count else { return nil }
let value = UInt16(self[offset]) << 8 | UInt16(self[offset + 1]) let value = UInt16(self[offset]) << 8 | UInt16(self[offset + 1])
offset += 2 offset += 2
return value return value
} }
@inlinable func readUInt32(at offset: inout Int) -> UInt32? { func readUInt32(at offset: inout Int) -> UInt32? {
guard offset + 4 <= self.count else { return nil } guard offset + 4 <= self.count else { return nil }
let value = UInt32(self[offset]) << 24 | let value = UInt32(self[offset]) << 24 |
UInt32(self[offset + 1]) << 16 | UInt32(self[offset + 1]) << 16 |
@@ -143,7 +148,7 @@ extension Data {
return value return value
} }
@inlinable func readUInt64(at offset: inout Int) -> UInt64? { func readUInt64(at offset: inout Int) -> UInt64? {
guard offset + 8 <= self.count else { return nil } guard offset + 8 <= self.count else { return nil }
var value: UInt64 = 0 var value: UInt64 = 0
for i in 0..<8 { for i in 0..<8 {
@@ -203,7 +208,7 @@ extension Data {
offset += 16 offset += 16
// Convert 16 bytes to UUID string format // Convert 16 bytes to UUID string format
let uuid = uuidData.hexEncodedString() let uuid = uuidData.map { String(format: "%02x", $0) }.joined()
// Insert hyphens at proper positions: 8-4-4-4-12 // Insert hyphens at proper positions: 8-4-4-4-12
var result = "" var result = ""
+415 -206
View File
@@ -22,11 +22,11 @@
/// ///
/// ## Wire Format /// ## Wire Format
/// ``` /// ```
/// Header (Fixed 14 bytes for v1, 16 bytes for v2): /// Header (Fixed 13 bytes):
/// +--------+------+-----+-----------+-------+------------------+ /// +--------+------+-----+-----------+-------+----------------+
/// |Version | Type | TTL | Timestamp | Flags | PayloadLength | /// |Version | Type | TTL | Timestamp | Flags | PayloadLength |
/// |1 byte |1 byte|1byte| 8 bytes | 1 byte| 2 or 4 bytes | /// |1 byte |1 byte|1byte| 8 bytes | 1 byte| 2 bytes |
/// +--------+------+-----+-----------+-------+------------------+ /// +--------+------+-----+-----------+-------+----------------+
/// ///
/// Variable sections: /// Variable sections:
/// +----------+-------------+---------+------------+ /// +----------+-------------+---------+------------+
@@ -52,7 +52,7 @@
/// ## Flag Bits /// ## Flag Bits
/// - Bit 0: Has recipient ID (directed message) /// - Bit 0: Has recipient ID (directed message)
/// - Bit 1: Has signature (authenticated message) /// - Bit 1: Has signature (authenticated message)
/// - Bit 2: Is compressed (zlib compression applied) /// - Bit 2: Is compressed (LZ4 compression applied)
/// - Bits 3-7: Reserved for future use /// - Bits 3-7: Reserved for future use
/// ///
/// ## Size Constraints /// ## Size Constraints
@@ -89,7 +89,6 @@
/// ///
import Foundation import Foundation
import BitLogger
extension Data { extension Data {
func trimmingNullBytes() -> Data { func trimmingNullBytes() -> Data {
@@ -106,33 +105,11 @@ extension Data {
/// their binary wire format representation. /// their binary wire format representation.
/// - Note: All multi-byte values use network byte order (big-endian) /// - Note: All multi-byte values use network byte order (big-endian)
struct BinaryProtocol { struct BinaryProtocol {
static let v1HeaderSize = 14 static let headerSize = 13
static let v2HeaderSize = 16
static let senderIDSize = 8 static let senderIDSize = 8
static let recipientIDSize = 8 static let recipientIDSize = 8
static let signatureSize = 64 static let signatureSize = 64
// Field offsets within packet header
struct Offsets {
static let version = 0
static let type = 1
static let ttl = 2
static let timestamp = 3
static let flags = 11 // After version(1) + type(1) + ttl(1) + timestamp(8)
}
static func headerSize(for version: UInt8) -> Int? {
switch version {
case 1: return v1HeaderSize
case 2: return v2HeaderSize
default: return nil
}
}
private static func lengthFieldSize(for version: UInt8) -> Int {
return version == 2 ? 4 : 2
}
struct Flags { struct Flags {
static let hasRecipient: UInt8 = 0x01 static let hasRecipient: UInt8 = 0x01
static let hasSignature: UInt8 = 0x02 static let hasSignature: UInt8 = 0x02
@@ -141,69 +118,65 @@ struct BinaryProtocol {
// Encode BitchatPacket to binary format // Encode BitchatPacket to binary format
static func encode(_ packet: BitchatPacket, padding: Bool = true) -> Data? { static func encode(_ packet: BitchatPacket, padding: Bool = true) -> Data? {
let version = packet.version var data = Data()
guard version == 1 || version == 2 else { return nil }
// Try to compress payload when beneficial, keeping original size for later decoding
// Try to compress payload if beneficial
var payload = packet.payload var payload = packet.payload
var originalPayloadSize: UInt16? = nil
var isCompressed = false var isCompressed = false
var originalPayloadSize: Int?
if CompressionUtil.shouldCompress(payload) { if CompressionUtil.shouldCompress(payload) {
// Only compress when we can represent the original length in the outbound frame if let compressedPayload = CompressionUtil.compress(payload) {
let maxRepresentable = version == 2 ? Int(UInt32.max) : Int(UInt16.max) // Store original size for decompression (2 bytes after payload)
if payload.count <= maxRepresentable, originalPayloadSize = UInt16(payload.count)
let compressedPayload = CompressionUtil.compress(payload) {
originalPayloadSize = payload.count
payload = compressedPayload payload = compressedPayload
isCompressed = true isCompressed = true
} else {
} }
} else {
} }
let lengthFieldBytes = lengthFieldSize(for: version) // Header
let originalSizeFieldBytes = isCompressed ? lengthFieldBytes : 0 data.append(packet.version)
let payloadDataSize = payload.count + originalSizeFieldBytes
if version == 1 && payloadDataSize > Int(UInt16.max) { return nil }
if version == 2 && payloadDataSize > Int(UInt32.max) { return nil }
guard let headerSize = headerSize(for: version) else { return nil }
let estimatedHeader = headerSize + senderIDSize + (packet.recipientID == nil ? 0 : recipientIDSize)
let estimatedPayload = payloadDataSize
let estimatedSignature = (packet.signature == nil ? 0 : signatureSize)
var data = Data()
data.reserveCapacity(estimatedHeader + estimatedPayload + estimatedSignature + 255)
data.append(version)
data.append(packet.type) data.append(packet.type)
data.append(packet.ttl) data.append(packet.ttl)
for shift in stride(from: 56, through: 0, by: -8) { // Timestamp (8 bytes, big-endian)
data.append(UInt8((packet.timestamp >> UInt64(shift)) & 0xFF)) for i in (0..<8).reversed() {
data.append(UInt8((packet.timestamp >> (i * 8)) & 0xFF))
} }
// Flags
var flags: UInt8 = 0 var flags: UInt8 = 0
if packet.recipientID != nil { flags |= Flags.hasRecipient } if packet.recipientID != nil {
if packet.signature != nil { flags |= Flags.hasSignature } flags |= Flags.hasRecipient
if isCompressed { flags |= Flags.isCompressed } }
if packet.signature != nil {
flags |= Flags.hasSignature
}
if isCompressed {
flags |= Flags.isCompressed
}
data.append(flags) data.append(flags)
if version == 2 { // Payload length (2 bytes, big-endian) - includes original size if compressed
let length = UInt32(payloadDataSize) let payloadDataSize = payload.count + (isCompressed ? 2 : 0)
for shift in stride(from: 24, through: 0, by: -8) { let payloadLength = UInt16(payloadDataSize)
data.append(UInt8((length >> UInt32(shift)) & 0xFF))
}
} else {
let length = UInt16(payloadDataSize)
data.append(UInt8((length >> 8) & 0xFF))
data.append(UInt8(length & 0xFF))
}
data.append(UInt8((payloadLength >> 8) & 0xFF))
data.append(UInt8(payloadLength & 0xFF))
// SenderID (exactly 8 bytes)
let senderBytes = packet.senderID.prefix(senderIDSize) let senderBytes = packet.senderID.prefix(senderIDSize)
data.append(senderBytes) data.append(senderBytes)
if senderBytes.count < senderIDSize { if senderBytes.count < senderIDSize {
data.append(Data(repeating: 0, count: senderIDSize - senderBytes.count)) data.append(Data(repeating: 0, count: senderIDSize - senderBytes.count))
} }
// RecipientID (if present)
if let recipientID = packet.recipientID { if let recipientID = packet.recipientID {
let recipientBytes = recipientID.prefix(recipientIDSize) let recipientBytes = recipientID.prefix(recipientIDSize)
data.append(recipientBytes) data.append(recipientBytes)
@@ -212,29 +185,29 @@ struct BinaryProtocol {
} }
} }
// Payload (with original size prepended if compressed)
if isCompressed, let originalSize = originalPayloadSize { if isCompressed, let originalSize = originalPayloadSize {
if version == 2 { // Prepend original size (2 bytes, big-endian)
let value = UInt32(originalSize) data.append(UInt8((originalSize >> 8) & 0xFF))
for shift in stride(from: 24, through: 0, by: -8) { data.append(UInt8(originalSize & 0xFF))
data.append(UInt8((value >> UInt32(shift)) & 0xFF))
}
} else {
let value = UInt16(originalSize)
data.append(UInt8((value >> 8) & 0xFF))
data.append(UInt8(value & 0xFF))
}
} }
data.append(payload) data.append(payload)
// Signature (if present)
if let signature = packet.signature { if let signature = packet.signature {
data.append(signature.prefix(signatureSize)) data.append(signature.prefix(signatureSize))
} }
// Apply padding to standard block sizes for traffic analysis resistance
if padding { if padding {
let optimalSize = MessagePadding.optimalBlockSize(for: data.count) let optimalSize = MessagePadding.optimalBlockSize(for: data.count)
return MessagePadding.pad(data, toSize: optimalSize) let paddedData = MessagePadding.pad(data, toSize: optimalSize)
return paddedData
} else {
// Caller explicitly requested no padding (e.g., BLE write path)
return data
} }
return data
} }
// Decode binary data to BitchatPacket // Decode binary data to BitchatPacket
@@ -249,131 +222,367 @@ struct BinaryProtocol {
// Core decoding implementation used by decode(_:) with and without padding removal // Core decoding implementation used by decode(_:) with and without padding removal
private static func decodeCore(_ raw: Data) -> BitchatPacket? { private static func decodeCore(_ raw: Data) -> BitchatPacket? {
guard raw.count >= v1HeaderSize + senderIDSize else { return nil } // Minimum size check: header + senderID
guard raw.count >= headerSize + senderIDSize else {
return raw.withUnsafeBytes { (buf: UnsafeRawBufferPointer) -> BitchatPacket? in return nil
guard let base = buf.baseAddress else { return nil }
var offset = 0
func require(_ n: Int) -> Bool { offset + n <= buf.count }
func read8() -> UInt8? {
guard require(1) else { return nil }
let value = base.advanced(by: offset).assumingMemoryBound(to: UInt8.self).pointee
offset += 1
return value
}
func read16() -> UInt16? {
guard require(2) else { return nil }
let ptr = base.advanced(by: offset).assumingMemoryBound(to: UInt8.self)
let value = (UInt16(ptr[0]) << 8) | UInt16(ptr[1])
offset += 2
return value
}
func read32() -> UInt32? {
guard require(4) else { return nil }
let ptr = base.advanced(by: offset).assumingMemoryBound(to: UInt8.self)
let value = (UInt32(ptr[0]) << 24) | (UInt32(ptr[1]) << 16) | (UInt32(ptr[2]) << 8) | UInt32(ptr[3])
offset += 4
return value
}
func readData(_ n: Int) -> Data? {
guard require(n) else { return nil }
let ptr = base.advanced(by: offset)
let data = Data(bytes: ptr, count: n)
offset += n
return data
}
guard let version = read8(), version == 1 || version == 2 else { return nil }
let lengthFieldBytes = lengthFieldSize(for: version)
guard let headerSize = headerSize(for: version) else { return nil }
let minimumRequired = headerSize + senderIDSize
guard raw.count >= minimumRequired else { return nil }
guard let type = read8(), let ttl = read8() else { return nil }
var timestamp: UInt64 = 0
for _ in 0..<8 {
guard let byte = read8() else { return nil }
timestamp = (timestamp << 8) | UInt64(byte)
}
guard let flags = read8() else { return nil }
let hasRecipient = (flags & Flags.hasRecipient) != 0
let hasSignature = (flags & Flags.hasSignature) != 0
let isCompressed = (flags & Flags.isCompressed) != 0
let payloadLength: Int
if version == 2 {
guard let len = read32() else { return nil }
payloadLength = Int(len)
} else {
guard let len = read16() else { return nil }
payloadLength = Int(len)
}
guard payloadLength >= 0 else { return nil }
guard let senderID = readData(senderIDSize) else { return nil }
var recipientID: Data? = nil
if hasRecipient {
recipientID = readData(recipientIDSize)
if recipientID == nil { return nil }
}
let payload: Data
if isCompressed {
guard payloadLength >= lengthFieldBytes else { return nil }
let originalSize: Int
if version == 2 {
guard let rawSize = read32() else { return nil }
originalSize = Int(rawSize)
} else {
guard let rawSize = read16() else { return nil }
originalSize = Int(rawSize)
}
// Guard to keep decompression bounded to sane BLE payload limits
// Use maxFramedFileBytes to account for TLV overhead in file transfer payloads
guard originalSize >= 0 && originalSize <= FileTransferLimits.maxFramedFileBytes else { return nil }
let compressedSize = payloadLength - lengthFieldBytes
guard compressedSize >= 0, let compressed = readData(compressedSize) else { return nil }
// Validate compression ratio to prevent zip bomb attacks
// Primary protection: originalSize capped at 1MB (line 336)
// Defense-in-depth: reject extreme ratios (prevents DoS via memory allocation)
guard compressedSize > 0 else { return nil }
let compressionRatio = Double(originalSize) / Double(compressedSize)
guard compressionRatio <= 50_000.0 else {
SecureLogger.warning("🚫 Suspicious compression ratio: \(String(format: "%.0f", compressionRatio)):1", category: .security)
return nil
}
guard let decompressed = CompressionUtil.decompress(compressed, originalSize: originalSize),
decompressed.count == originalSize else { return nil }
payload = decompressed
} else {
guard let rawPayload = readData(payloadLength) else { return nil }
payload = rawPayload
}
var signature: Data? = nil
if hasSignature {
signature = readData(signatureSize)
if signature == nil { return nil }
}
guard offset <= buf.count else { return nil }
return BitchatPacket(
type: type,
senderID: senderID,
recipientID: recipientID,
timestamp: timestamp,
payload: payload,
signature: signature,
ttl: ttl,
version: version
)
} }
// Convert to array for safer indexed access
let dataArray = Array(raw)
var offset = 0
// Header parsing with bounds checks
guard offset < dataArray.count else { return nil }
let version = dataArray[offset]; offset += 1
// Check if version is 1 (only supported version)
guard version == 1 else {
return nil
}
guard offset < dataArray.count else { return nil }
let type = dataArray[offset]; offset += 1
guard offset < dataArray.count else { return nil }
let ttl = dataArray[offset]; offset += 1
// Timestamp - need 8 bytes
guard offset + 8 <= dataArray.count else { return nil }
let timestampData = Data(dataArray[offset..<offset+8])
let timestamp = timestampData.reduce(0) { result, byte in
(result << 8) | UInt64(byte)
}
offset += 8
// Flags
guard offset < dataArray.count else { return nil }
let flags = dataArray[offset]; offset += 1
let hasRecipient = (flags & Flags.hasRecipient) != 0
let hasSignature = (flags & Flags.hasSignature) != 0
let isCompressed = (flags & Flags.isCompressed) != 0
// Payload length - need 2 bytes
guard offset + 2 <= dataArray.count else { return nil }
let payloadLengthData = Data(dataArray[offset..<offset+2])
let payloadLength = payloadLengthData.reduce(0) { result, byte in
(result << 8) | UInt16(byte)
}
offset += 2
// Validate payloadLength is reasonable (prevent integer overflow)
guard payloadLength <= 65535 else { return nil }
// SenderID - need 8 bytes
guard offset + senderIDSize <= dataArray.count else { return nil }
let senderID = Data(dataArray[offset..<offset+senderIDSize])
offset += senderIDSize
// RecipientID if present
var recipientID: Data?
if hasRecipient {
guard offset + recipientIDSize <= dataArray.count else { return nil }
recipientID = Data(dataArray[offset..<offset+recipientIDSize])
offset += recipientIDSize
}
// Payload handling with comprehensive bounds checking
let payload: Data
if isCompressed {
// Compressed payload needs at least 2 bytes for original size
guard Int(payloadLength) >= 2 else { return nil }
// Check we have enough data for the original size prefix
guard offset + 2 <= dataArray.count else { return nil }
let originalSizeData = Data(dataArray[offset..<offset+2])
let originalSize = Int(originalSizeData.reduce(0) { result, byte in
(result << 8) | UInt16(byte)
})
offset += 2
// Validate original size is reasonable
guard originalSize >= 0 && originalSize <= 1048576 else { return nil } // Max 1MB
// Check we have enough data for the compressed payload
let compressedPayloadSize = Int(payloadLength) - 2
guard compressedPayloadSize >= 0 && offset + compressedPayloadSize <= dataArray.count else {
return nil
}
let compressedPayload = Data(dataArray[offset..<offset+compressedPayloadSize])
offset += compressedPayloadSize
// Decompress with error handling
guard let decompressedPayload = CompressionUtil.decompress(compressedPayload, originalSize: originalSize) else {
return nil
}
// Verify decompressed size matches expected
guard decompressedPayload.count == originalSize else {
return nil
}
payload = decompressedPayload
} else {
// Uncompressed payload
guard Int(payloadLength) >= 0 && offset + Int(payloadLength) <= dataArray.count else {
return nil
}
payload = Data(dataArray[offset..<offset+Int(payloadLength)])
offset += Int(payloadLength)
}
// Signature if present
var signature: Data?
if hasSignature {
guard offset + signatureSize <= dataArray.count else { return nil }
signature = Data(dataArray[offset..<offset+signatureSize])
offset += signatureSize
}
// Final validation: ensure we haven't gone past the end
guard offset <= dataArray.count else { return nil }
return BitchatPacket(
type: type,
senderID: senderID,
recipientID: recipientID,
timestamp: timestamp,
payload: payload,
signature: signature,
ttl: ttl
)
}
}
// Binary encoding for BitchatMessage
extension BitchatMessage {
func toBinaryPayload() -> Data? {
var data = Data()
// Message format:
// - Flags: 1 byte (bit 0: isRelay, bit 1: isPrivate, bit 2: hasOriginalSender, bit 3: hasRecipientNickname, bit 4: hasSenderPeerID, bit 5: hasMentions)
// - Timestamp: 8 bytes (seconds since epoch)
// - ID length: 1 byte
// - ID: variable
// - Sender length: 1 byte
// - Sender: variable
// - Content length: 2 bytes
// - Content: variable
// Optional fields based on flags:
// - Original sender length + data
// - Recipient nickname length + data
// - Sender peer ID length + data
// - Mentions array
var flags: UInt8 = 0
if isRelay { flags |= 0x01 }
if isPrivate { flags |= 0x02 }
if originalSender != nil { flags |= 0x04 }
if recipientNickname != nil { flags |= 0x08 }
if senderPeerID != nil { flags |= 0x10 }
if mentions != nil && !mentions!.isEmpty { flags |= 0x20 }
data.append(flags)
// Timestamp (in milliseconds)
let timestampMillis = UInt64(timestamp.timeIntervalSince1970 * 1000)
// Encode as 8 bytes, big-endian
for i in (0..<8).reversed() {
data.append(UInt8((timestampMillis >> (i * 8)) & 0xFF))
}
// ID
if let idData = id.data(using: .utf8) {
data.append(UInt8(min(idData.count, 255)))
data.append(idData.prefix(255))
} else {
data.append(0)
}
// Sender
if let senderData = sender.data(using: .utf8) {
data.append(UInt8(min(senderData.count, 255)))
data.append(senderData.prefix(255))
} else {
data.append(0)
}
// Content
if let contentData = content.data(using: .utf8) {
let length = UInt16(min(contentData.count, 65535))
// Encode length as 2 bytes, big-endian
data.append(UInt8((length >> 8) & 0xFF))
data.append(UInt8(length & 0xFF))
data.append(contentData.prefix(Int(length)))
} else {
data.append(contentsOf: [0, 0])
}
// Optional fields
if let originalSender = originalSender, let origData = originalSender.data(using: .utf8) {
data.append(UInt8(min(origData.count, 255)))
data.append(origData.prefix(255))
}
if let recipientNickname = recipientNickname, let recipData = recipientNickname.data(using: .utf8) {
data.append(UInt8(min(recipData.count, 255)))
data.append(recipData.prefix(255))
}
if let senderPeerID = senderPeerID, let peerData = senderPeerID.data(using: .utf8) {
data.append(UInt8(min(peerData.count, 255)))
data.append(peerData.prefix(255))
}
// Mentions array
if let mentions = mentions {
data.append(UInt8(min(mentions.count, 255))) // Number of mentions
for mention in mentions.prefix(255) {
if let mentionData = mention.data(using: .utf8) {
data.append(UInt8(min(mentionData.count, 255)))
data.append(mentionData.prefix(255))
} else {
data.append(0)
}
}
}
return data
}
static func fromBinaryPayload(_ data: Data) -> BitchatMessage? {
// Create an immutable copy to prevent threading issues
let dataCopy = Data(data)
guard dataCopy.count >= 13 else {
return nil
}
var offset = 0
// Flags
guard offset < dataCopy.count else {
return nil
}
let flags = dataCopy[offset]; offset += 1
let isRelay = (flags & 0x01) != 0
let isPrivate = (flags & 0x02) != 0
let hasOriginalSender = (flags & 0x04) != 0
let hasRecipientNickname = (flags & 0x08) != 0
let hasSenderPeerID = (flags & 0x10) != 0
let hasMentions = (flags & 0x20) != 0
// Timestamp
guard offset + 8 <= dataCopy.count else {
return nil
}
let timestampData = dataCopy[offset..<offset+8]
let timestampMillis = timestampData.reduce(0) { result, byte in
(result << 8) | UInt64(byte)
}
offset += 8
let timestamp = Date(timeIntervalSince1970: TimeInterval(timestampMillis) / 1000.0)
// ID
guard offset < dataCopy.count else {
return nil
}
let idLength = Int(dataCopy[offset]); offset += 1
guard offset + idLength <= dataCopy.count else {
return nil
}
let id = String(data: dataCopy[offset..<offset+idLength], encoding: .utf8) ?? UUID().uuidString
offset += idLength
// Sender
guard offset < dataCopy.count else {
return nil
}
let senderLength = Int(dataCopy[offset]); offset += 1
guard offset + senderLength <= dataCopy.count else {
return nil
}
let sender = String(data: dataCopy[offset..<offset+senderLength], encoding: .utf8) ?? "unknown"
offset += senderLength
// Content
guard offset + 2 <= dataCopy.count else {
return nil
}
let contentLengthData = dataCopy[offset..<offset+2]
let contentLength = Int(contentLengthData.reduce(0) { result, byte in
(result << 8) | UInt16(byte)
})
offset += 2
guard offset + contentLength <= dataCopy.count else {
return nil
}
let content = String(data: dataCopy[offset..<offset+contentLength], encoding: .utf8) ?? ""
offset += contentLength
// Optional fields
var originalSender: String?
if hasOriginalSender && offset < dataCopy.count {
let length = Int(dataCopy[offset]); offset += 1
if offset + length <= dataCopy.count {
originalSender = String(data: dataCopy[offset..<offset+length], encoding: .utf8)
offset += length
}
}
var recipientNickname: String?
if hasRecipientNickname && offset < dataCopy.count {
let length = Int(dataCopy[offset]); offset += 1
if offset + length <= dataCopy.count {
recipientNickname = String(data: dataCopy[offset..<offset+length], encoding: .utf8)
offset += length
}
}
var senderPeerID: String?
if hasSenderPeerID && offset < dataCopy.count {
let length = Int(dataCopy[offset]); offset += 1
if offset + length <= dataCopy.count {
senderPeerID = String(data: dataCopy[offset..<offset+length], encoding: .utf8)
offset += length
}
}
// Mentions array
var mentions: [String]?
if hasMentions && offset < dataCopy.count {
let mentionCount = Int(dataCopy[offset]); offset += 1
if mentionCount > 0 {
mentions = []
for _ in 0..<mentionCount {
if offset < dataCopy.count {
let length = Int(dataCopy[offset]); offset += 1
if offset + length <= dataCopy.count {
if let mention = String(data: dataCopy[offset..<offset+length], encoding: .utf8) {
mentions?.append(mention)
}
offset += length
}
}
}
}
}
let message = BitchatMessage(
id: id,
sender: sender,
content: content,
timestamp: timestamp,
isRelay: isRelay,
originalSender: originalSender,
isPrivate: isPrivate,
recipientNickname: recipientNickname,
senderPeerID: senderPeerID,
mentions: mentions
)
return message
} }
} }
-155
View File
@@ -1,155 +0,0 @@
//
// BitchatFilePacket.swift
// bitchat
//
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import Foundation
import BitLogger
/// TLV payload for Bluetooth mesh file transfers (voice notes, images, generic files).
/// Mirrors the Android client specification to ensure cross-platform interoperability.
struct BitchatFilePacket {
var fileName: String?
var fileSize: UInt64?
var mimeType: String?
var content: Data
/// Canonical TLV tags defined by the Android implementation.
private enum TLVType: UInt8 {
case fileName = 0x01
case fileSize = 0x02
case mimeType = 0x03
case content = 0x04
}
/// Encodes the packet using v2 canonical TLVs (4-byte FILE_SIZE, 4-byte CONTENT length).
/// Returns `nil` when fields exceed protocol limits (e.g., content > UInt32.max).
func encode() -> Data? {
let resolvedSize = fileSize ?? UInt64(content.count)
guard resolvedSize <= UInt64(UInt32.max) else { return nil }
guard resolvedSize <= UInt64(FileTransferLimits.maxPayloadBytes) else { return nil }
guard content.count <= Int(UInt32.max) else { return nil }
guard FileTransferLimits.isValidPayload(content.count) else { return nil }
func appendBE<T: FixedWidthInteger>(_ value: T, into data: inout Data) {
var big = value.bigEndian
withUnsafeBytes(of: &big) { data.append(contentsOf: $0) }
}
var encoded = Data()
if let name = fileName, let nameData = name.data(using: .utf8), nameData.count <= Int(UInt16.max) {
encoded.append(TLVType.fileName.rawValue)
appendBE(UInt16(nameData.count), into: &encoded)
encoded.append(nameData)
}
encoded.append(TLVType.fileSize.rawValue)
appendBE(UInt16(4), into: &encoded)
appendBE(UInt32(resolvedSize), into: &encoded)
if let mime = mimeType, let mimeData = mime.data(using: .utf8), mimeData.count <= Int(UInt16.max) {
encoded.append(TLVType.mimeType.rawValue)
appendBE(UInt16(mimeData.count), into: &encoded)
encoded.append(mimeData)
}
encoded.append(TLVType.content.rawValue)
appendBE(UInt32(content.count), into: &encoded)
encoded.append(content)
return encoded
}
/// Decodes TLV payloads, tolerating legacy encodings (FILE_SIZE len=8, CONTENT len=2) when possible.
static func decode(_ data: Data) -> BitchatFilePacket? {
var cursor = data.startIndex
let end = data.endIndex
var fileName: String?
var fileSize: UInt64?
var mimeType: String?
var content = Data()
while cursor < end {
let typeRaw = data[cursor]
cursor = data.index(after: cursor)
guard cursor <= end else { return nil }
let tlvType = TLVType(rawValue: typeRaw)
func readBigEndianLength(bytes: Int) -> Int? {
guard data.distance(from: cursor, to: end) >= bytes else { return nil }
// Use UInt64 to prevent integer overflow during shift operations
var result: UInt64 = 0
for _ in 0..<bytes {
result = (result << 8) | UInt64(data[cursor])
cursor = data.index(after: cursor)
}
// Safely convert to Int with overflow check
guard result <= Int.max else { return nil }
return Int(result)
}
let length: Int?
if tlvType == .content {
let snapshot = cursor
let canonical = readBigEndianLength(bytes: 4)
if let canonical = canonical,
canonical <= data.distance(from: cursor, to: end) {
length = canonical
} else {
cursor = snapshot
length = readBigEndianLength(bytes: 2)
}
} else {
length = readBigEndianLength(bytes: 2)
}
guard let tlvLength = length, tlvLength >= 0 else { return nil }
guard data.distance(from: cursor, to: end) >= tlvLength else { return nil }
let valueStart = cursor
cursor = data.index(cursor, offsetBy: tlvLength)
let value = data[valueStart..<cursor]
switch tlvType {
case .fileName:
fileName = String(data: Data(value), encoding: .utf8)
case .fileSize:
if tlvLength == 4 || tlvLength == 8 {
var size: UInt64 = 0
for byte in value {
size = (size << 8) | UInt64(byte)
}
if size > UInt64(FileTransferLimits.maxPayloadBytes) {
return nil
}
fileSize = size
}
case .mimeType:
mimeType = String(data: Data(value), encoding: .utf8)
case .content:
let proposedSize = content.count + value.count
if proposedSize > FileTransferLimits.maxPayloadBytes {
return nil
}
content.append(contentsOf: value)
case nil:
continue
}
}
guard !content.isEmpty else { return nil }
guard FileTransferLimits.isValidPayload(content.count) else { return nil }
return BitchatFilePacket(
fileName: fileName,
fileSize: fileSize ?? UInt64(content.count),
mimeType: mimeType,
content: content
)
}
}
+346 -16
View File
@@ -59,7 +59,61 @@
/// ///
import Foundation import Foundation
import CoreBluetooth import CryptoKit
// MARK: - Message Padding
/// Provides privacy-preserving message padding to obscure actual content length.
/// Uses PKCS#7-style padding with random bytes to prevent traffic analysis.
struct MessagePadding {
// Standard block sizes for padding
static let blockSizes = [256, 512, 1024, 2048]
// Add PKCS#7-style padding to reach target size
static func pad(_ data: Data, toSize targetSize: Int) -> Data {
guard data.count < targetSize else { return data }
let paddingNeeded = targetSize - data.count
// Constrain to 255 to fit a single-byte pad length marker
guard paddingNeeded > 0 && paddingNeeded <= 255 else { return data }
var padded = data
// PKCS#7: All pad bytes are equal to the pad length
padded.append(contentsOf: Array(repeating: UInt8(paddingNeeded), count: paddingNeeded))
return padded
}
// Remove padding from data
static func unpad(_ data: Data) -> Data {
guard !data.isEmpty else { return data }
let last = data.last!
let paddingLength = Int(last)
// Must have at least 1 pad byte and not exceed data length
guard paddingLength > 0 && paddingLength <= data.count else { return data }
// Verify PKCS#7: all last N bytes equal to pad length
let start = data.count - paddingLength
let tail = data[start...]
for b in tail { if b != last { return data } }
return Data(data[..<start])
}
// Find optimal block size for data
static func optimalBlockSize(for dataSize: Int) -> Int {
// Account for encryption overhead (~16 bytes for AES-GCM tag)
let totalSize = dataSize + 16
// Find smallest block that fits
for blockSize in blockSizes {
if totalSize <= blockSize {
return blockSize
}
}
// For very large messages, just use the original size
// (will be fragmented anyway)
return dataSize
}
}
// MARK: - Message Types // MARK: - Message Types
@@ -71,7 +125,6 @@ enum MessageType: UInt8 {
case announce = 0x01 // "I'm here" with nickname case announce = 0x01 // "I'm here" with nickname
case message = 0x02 // Public chat message case message = 0x02 // Public chat message
case leave = 0x03 // "I'm leaving" case leave = 0x03 // "I'm leaving"
case requestSync = 0x21 // GCS filter-based sync request (local-only)
// Noise encryption // Noise encryption
case noiseHandshake = 0x10 // Handshake (init or response determined by payload) case noiseHandshake = 0x10 // Handshake (init or response determined by payload)
@@ -79,18 +132,15 @@ enum MessageType: UInt8 {
// Fragmentation (simplified) // Fragmentation (simplified)
case fragment = 0x20 // Single fragment type for large messages case fragment = 0x20 // Single fragment type for large messages
case fileTransfer = 0x22 // Binary file/audio/image payloads
var description: String { var description: String {
switch self { switch self {
case .announce: return "announce" case .announce: return "announce"
case .message: return "message" case .message: return "message"
case .leave: return "leave" case .leave: return "leave"
case .requestSync: return "requestSync"
case .noiseHandshake: return "noiseHandshake" case .noiseHandshake: return "noiseHandshake"
case .noiseEncrypted: return "noiseEncrypted" case .noiseEncrypted: return "noiseEncrypted"
case .fragment: return "fragment" case .fragment: return "fragment"
case .fileTransfer: return "fileTransfer"
} }
} }
} }
@@ -131,10 +181,191 @@ enum LazyHandshakeState {
case failed(Error) // Handshake failed case failed(Error) // Handshake failed
} }
//
// MARK: - Core Protocol Structures
/// The core packet structure for all BitChat protocol messages.
/// Encapsulates all data needed for routing through the mesh network,
/// including TTL for hop limiting and optional encryption.
/// - Note: Packets larger than BLE MTU (512 bytes) are automatically fragmented
struct BitchatPacket: Codable {
let version: UInt8
let type: UInt8
let senderID: Data
let recipientID: Data?
let timestamp: UInt64
let payload: Data
var signature: Data?
var ttl: UInt8
init(type: UInt8, senderID: Data, recipientID: Data?, timestamp: UInt64, payload: Data, signature: Data?, ttl: UInt8) {
self.version = 1
self.type = type
self.senderID = senderID
self.recipientID = recipientID
self.timestamp = timestamp
self.payload = payload
self.signature = signature
self.ttl = ttl
}
// Convenience initializer for new binary format
init(type: UInt8, ttl: UInt8, senderID: String, payload: Data) {
self.version = 1
self.type = type
// Convert hex string peer ID to binary data (8 bytes)
var senderData = Data()
var tempID = senderID
while tempID.count >= 2 {
let hexByte = String(tempID.prefix(2))
if let byte = UInt8(hexByte, radix: 16) {
senderData.append(byte)
}
tempID = String(tempID.dropFirst(2))
}
self.senderID = senderData
self.recipientID = nil
self.timestamp = UInt64(Date().timeIntervalSince1970 * 1000) // milliseconds
self.payload = payload
self.signature = nil
self.ttl = ttl
}
var data: Data? {
BinaryProtocol.encode(self)
}
func toBinaryData(padding: Bool = true) -> Data? {
BinaryProtocol.encode(self, padding: padding)
}
// Backward-compatible helper (defaults to padded encoding)
func toBinaryData() -> Data? {
toBinaryData(padding: true)
}
/// Create binary representation for signing (without signature and TTL fields)
/// TTL is excluded because it changes during packet relay operations
func toBinaryDataForSigning() -> Data? {
// Create a copy without signature and with fixed TTL for signing
// TTL must be excluded because it changes during relay
let unsignedPacket = BitchatPacket(
type: type,
senderID: senderID,
recipientID: recipientID,
timestamp: timestamp,
payload: payload,
signature: nil, // Remove signature for signing
ttl: 0 // Use fixed TTL=0 for signing to ensure relay compatibility
)
return BinaryProtocol.encode(unsignedPacket)
}
static func from(_ data: Data) -> BitchatPacket? {
BinaryProtocol.decode(data)
}
}
//
// MARK: - Read Receipts
// Read receipt structure
struct ReadReceipt: Codable {
let originalMessageID: String
let receiptID: String
var readerID: String // Who read it
let readerNickname: String
let timestamp: Date
init(originalMessageID: String, readerID: String, readerNickname: String) {
self.originalMessageID = originalMessageID
self.receiptID = UUID().uuidString
self.readerID = readerID
self.readerNickname = readerNickname
self.timestamp = Date()
}
// For binary decoding
private init(originalMessageID: String, receiptID: String, readerID: String, readerNickname: String, timestamp: Date) {
self.originalMessageID = originalMessageID
self.receiptID = receiptID
self.readerID = readerID
self.readerNickname = readerNickname
self.timestamp = timestamp
}
func encode() -> Data? {
try? JSONEncoder().encode(self)
}
static func decode(from data: Data) -> ReadReceipt? {
try? JSONDecoder().decode(ReadReceipt.self, from: data)
}
// MARK: - Binary Encoding
func toBinaryData() -> Data {
var data = Data()
data.appendUUID(originalMessageID)
data.appendUUID(receiptID)
// ReaderID as 8-byte hex string
var readerData = Data()
var tempID = readerID
while tempID.count >= 2 && readerData.count < 8 {
let hexByte = String(tempID.prefix(2))
if let byte = UInt8(hexByte, radix: 16) {
readerData.append(byte)
}
tempID = String(tempID.dropFirst(2))
}
while readerData.count < 8 {
readerData.append(0)
}
data.append(readerData)
data.appendDate(timestamp)
data.appendString(readerNickname)
return data
}
static func fromBinaryData(_ data: Data) -> ReadReceipt? {
// Create defensive copy
let dataCopy = Data(data)
// Minimum size: 2 UUIDs (32) + readerID (8) + timestamp (8) + min nickname
guard dataCopy.count >= 49 else { return nil }
var offset = 0
guard let originalMessageID = dataCopy.readUUID(at: &offset),
let receiptID = dataCopy.readUUID(at: &offset) else { return nil }
guard let readerIDData = dataCopy.readFixedBytes(at: &offset, count: 8) else { return nil }
let readerID = readerIDData.hexEncodedString()
guard InputValidator.validatePeerID(readerID) else { return nil }
guard let timestamp = dataCopy.readDate(at: &offset),
InputValidator.validateTimestamp(timestamp),
let readerNicknameRaw = dataCopy.readString(at: &offset),
let readerNickname = InputValidator.validateNickname(readerNicknameRaw) else { return nil }
return ReadReceipt(originalMessageID: originalMessageID,
receiptID: receiptID,
readerID: readerID,
readerNickname: readerNickname,
timestamp: timestamp)
}
}
//
// MARK: - Delivery Status // MARK: - Delivery Status
// Delivery status for messages // Delivery status for messages
enum DeliveryStatus: Codable, Equatable, Hashable { enum DeliveryStatus: Codable, Equatable {
case sending case sending
case sent // Left our device case sent // Left our device
case delivered(to: String, at: Date) // Confirmed by recipient case delivered(to: String, at: Date) // Confirmed by recipient
@@ -160,13 +391,81 @@ enum DeliveryStatus: Codable, Equatable, Hashable {
} }
} }
// MARK: - Message Model
/// Represents a user-visible message in the BitChat system.
/// Handles both broadcast messages and private encrypted messages,
/// with support for mentions, replies, and delivery tracking.
/// - Note: This is the primary data model for chat messages
class BitchatMessage: Codable {
let id: String
let sender: String
let content: String
let timestamp: Date
let isRelay: Bool
let originalSender: String?
let isPrivate: Bool
let recipientNickname: String?
let senderPeerID: String?
let mentions: [String]? // Array of mentioned nicknames
var deliveryStatus: DeliveryStatus? // Delivery tracking
// Cached formatted text (not included in Codable)
private var _cachedFormattedText: [String: AttributedString] = [:]
func getCachedFormattedText(isDark: Bool, isSelf: Bool) -> AttributedString? {
return _cachedFormattedText["\(isDark)-\(isSelf)"]
}
func setCachedFormattedText(_ text: AttributedString, isDark: Bool, isSelf: Bool) {
_cachedFormattedText["\(isDark)-\(isSelf)"] = text
}
// Codable implementation
enum CodingKeys: String, CodingKey {
case id, sender, content, timestamp, isRelay, originalSender
case isPrivate, recipientNickname, senderPeerID, mentions, deliveryStatus
}
init(id: String? = nil, sender: String, content: String, timestamp: Date, isRelay: Bool, originalSender: String? = nil, isPrivate: Bool = false, recipientNickname: String? = nil, senderPeerID: String? = nil, mentions: [String]? = nil, deliveryStatus: DeliveryStatus? = nil) {
self.id = id ?? UUID().uuidString
self.sender = sender
self.content = content
self.timestamp = timestamp
self.isRelay = isRelay
self.originalSender = originalSender
self.isPrivate = isPrivate
self.recipientNickname = recipientNickname
self.senderPeerID = senderPeerID
self.mentions = mentions
self.deliveryStatus = deliveryStatus ?? (isPrivate ? .sending : nil)
}
}
// Equatable conformance for BitchatMessage
extension BitchatMessage: Equatable {
static func == (lhs: BitchatMessage, rhs: BitchatMessage) -> Bool {
return lhs.id == rhs.id &&
lhs.sender == rhs.sender &&
lhs.content == rhs.content &&
lhs.timestamp == rhs.timestamp &&
lhs.isRelay == rhs.isRelay &&
lhs.originalSender == rhs.originalSender &&
lhs.isPrivate == rhs.isPrivate &&
lhs.recipientNickname == rhs.recipientNickname &&
lhs.senderPeerID == rhs.senderPeerID &&
lhs.mentions == rhs.mentions &&
lhs.deliveryStatus == rhs.deliveryStatus
}
}
// MARK: - Delegate Protocol // MARK: - Delegate Protocol
protocol BitchatDelegate: AnyObject { protocol BitchatDelegate: AnyObject {
func didReceiveMessage(_ message: BitchatMessage) func didReceiveMessage(_ message: BitchatMessage)
func didConnectToPeer(_ peerID: PeerID) func didConnectToPeer(_ peerID: String)
func didDisconnectFromPeer(_ peerID: PeerID) func didDisconnectFromPeer(_ peerID: String)
func didUpdatePeerList(_ peers: [PeerID]) func didUpdatePeerList(_ peers: [String])
// Optional method to check if a fingerprint belongs to a favorite peer // Optional method to check if a fingerprint belongs to a favorite peer
func isFavorite(fingerprint: String) -> Bool func isFavorite(fingerprint: String) -> Bool
@@ -174,11 +473,8 @@ protocol BitchatDelegate: AnyObject {
func didUpdateMessageDeliveryStatus(_ messageID: String, status: DeliveryStatus) func didUpdateMessageDeliveryStatus(_ messageID: String, status: DeliveryStatus)
// Low-level events for better separation of concerns // Low-level events for better separation of concerns
func didReceiveNoisePayload(from peerID: PeerID, type: NoisePayloadType, payload: Data, timestamp: Date) func didReceiveNoisePayload(from peerID: String, type: NoisePayloadType, payload: Data, timestamp: Date)
func didReceivePublicMessage(from peerID: String, nickname: String, content: String, timestamp: Date)
// Bluetooth state updates for user notifications
func didUpdateBluetoothState(_ state: CBManagerState)
func didReceivePublicMessage(from peerID: PeerID, nickname: String, content: String, timestamp: Date)
} }
// Provide default implementation to make it effectively optional // Provide default implementation to make it effectively optional
@@ -191,11 +487,45 @@ extension BitchatDelegate {
// Default empty implementation // Default empty implementation
} }
func didReceiveNoisePayload(from peerID: PeerID, type: NoisePayloadType, payload: Data, timestamp: Date) { func didReceiveNoisePayload(from peerID: String, type: NoisePayloadType, payload: Data, timestamp: Date) {
// Default empty implementation // Default empty implementation
} }
func didReceivePublicMessage(from peerID: PeerID, nickname: String, content: String, timestamp: Date) { func didReceivePublicMessage(from peerID: String, nickname: String, content: String, timestamp: Date) {
// Default empty implementation // Default empty implementation
} }
} }
// MARK: - Noise Payload Helpers
/// Helper to create typed Noise payloads
struct NoisePayload {
let type: NoisePayloadType
let data: Data
/// Encode payload with type prefix
func encode() -> Data {
var encoded = Data()
encoded.append(type.rawValue)
encoded.append(data)
return encoded
}
/// Decode payload from data
static func decode(_ data: Data) -> NoisePayload? {
// Ensure we have at least 1 byte for the type
guard !data.isEmpty else {
return nil
}
// Safely get the first byte
let firstByte = data[data.startIndex]
guard let type = NoisePayloadType(rawValue: firstByte) else {
return nil
}
// Create a proper Data copy (not a subsequence) for thread safety
let payloadData = data.count > 1 ? Data(data.dropFirst()) : Data()
return NoisePayload(type: type, data: payloadData)
}
}
-85
View File
@@ -10,14 +10,6 @@ enum Geohash {
return map return map
}() }()
/// Validates a geohash string for building-level precision (8 characters).
/// - Parameter geohash: The geohash string to validate
/// - Returns: true if valid 8-character base32 geohash, false otherwise
static func isValidBuildingGeohash(_ geohash: String) -> Bool {
guard geohash.count == 8 else { return false }
return geohash.lowercased().allSatisfy { base32Map[$0] != nil }
}
/// Encodes the provided coordinates into a geohash string. /// Encodes the provided coordinates into a geohash string.
/// - Parameters: /// - Parameters:
/// - latitude: Latitude in degrees (-90...90) /// - latitude: Latitude in degrees (-90...90)
@@ -95,81 +87,4 @@ enum Geohash {
let lon = (lonInterval.0 + lonInterval.1) / 2 let lon = (lonInterval.0 + lonInterval.1) / 2
return (lat, lon) return (lat, lon)
} }
/// Decodes a geohash into its latitude and longitude bounds.
/// - Parameter geohash: Base32 geohash string.
/// - Returns: (latMin, latMax, lonMin, lonMax)
static func decodeBounds(_ geohash: String) -> (latMin: Double, latMax: Double, lonMin: Double, lonMax: Double) {
var latInterval: (Double, Double) = (-90.0, 90.0)
var lonInterval: (Double, Double) = (-180.0, 180.0)
var isEven = true
for ch in geohash.lowercased() {
guard let cd = base32Map[ch] else { continue }
for mask in [16, 8, 4, 2, 1] {
if isEven {
let mid = (lonInterval.0 + lonInterval.1) / 2
if (cd & mask) != 0 { lonInterval.0 = mid } else { lonInterval.1 = mid }
} else {
let mid = (latInterval.0 + latInterval.1) / 2
if (cd & mask) != 0 { latInterval.0 = mid } else { latInterval.1 = mid }
}
isEven.toggle()
}
}
return (latInterval.0, latInterval.1, lonInterval.0, lonInterval.1)
}
/// Returns all 8 neighboring geohash cells at the same precision.
/// - Parameter geohash: Base32 geohash string.
/// - Returns: Array of 8 neighboring geohashes (N, NE, E, SE, S, SW, W, NW order).
static func neighbors(of geohash: String) -> [String] {
guard !geohash.isEmpty else { return [] }
let precision = geohash.count
let bounds = decodeBounds(geohash)
let center = decodeCenter(geohash)
// Calculate cell dimensions
let latHeight = bounds.latMax - bounds.latMin
let lonWidth = bounds.lonMax - bounds.lonMin
// Helper to wrap longitude around ±180
func wrapLongitude(_ lon: Double) -> Double {
var wrapped = lon
while wrapped > 180.0 { wrapped -= 360.0 }
while wrapped < -180.0 { wrapped += 360.0 }
return wrapped
}
// Helper to clamp latitude to ±90
func clampLatitude(_ lat: Double) -> Double {
return max(-90.0, min(90.0, lat))
}
// Calculate 8 neighbor centers
let neighbors: [(lat: Double, lon: Double)] = [
(center.lat + latHeight, center.lon), // N
(center.lat + latHeight, center.lon + lonWidth), // NE
(center.lat, center.lon + lonWidth), // E
(center.lat - latHeight, center.lon + lonWidth), // SE
(center.lat - latHeight, center.lon), // S
(center.lat - latHeight, center.lon - lonWidth), // SW
(center.lat, center.lon - lonWidth), // W
(center.lat + latHeight, center.lon - lonWidth) // NW
]
// Encode each neighbor, handling boundary conditions
return neighbors.compactMap { neighbor in
let lat = clampLatitude(neighbor.lat)
let lon = wrapLongitude(neighbor.lon)
// Skip if we've crossed a pole (latitude clamped to boundary)
if (neighbor.lat > 90.0 || neighbor.lat < -90.0) {
return nil
}
return encode(latitude: lat, longitude: lon, precision: precision)
}
}
} }
+6 -18
View File
@@ -2,7 +2,6 @@ import Foundation
/// Levels of location channels mapped to geohash precisions. /// Levels of location channels mapped to geohash precisions.
enum GeohashChannelLevel: CaseIterable, Codable, Equatable { enum GeohashChannelLevel: CaseIterable, Codable, Equatable {
case building
case block case block
case neighborhood case neighborhood
case city case city
@@ -12,7 +11,6 @@ enum GeohashChannelLevel: CaseIterable, Codable, Equatable {
/// Geohash length used for this level. /// Geohash length used for this level.
var precision: Int { var precision: Int {
switch self { switch self {
case .building: return 8
case .block: return 7 case .block: return 7
case .neighborhood: return 6 case .neighborhood: return 6
case .city: return 5 case .city: return 5
@@ -23,28 +21,20 @@ enum GeohashChannelLevel: CaseIterable, Codable, Equatable {
var displayName: String { var displayName: String {
switch self { switch self {
case .building: case .block: return "Block"
return String(localized: "location_levels.building", comment: "Name for building-level location channel") case .neighborhood: return "Neighborhood"
case .block: case .city: return "City"
return String(localized: "location_levels.block", comment: "Name for block-level location channel") case .province: return "Province"
case .neighborhood: case .region: return "Region"
return String(localized: "location_levels.neighborhood", comment: "Name for neighborhood-level location channel")
case .city:
return String(localized: "location_levels.city", comment: "Name for city-level location channel")
case .province:
return String(localized: "location_levels.province", comment: "Name for province-level location channel")
case .region:
return String(localized: "location_levels.region", comment: "Name for region-level location channel")
}
} }
} }
}
// Backward-compatible Codable for renamed cases // Backward-compatible Codable for renamed cases
extension GeohashChannelLevel { extension GeohashChannelLevel {
init(from decoder: Decoder) throws { init(from decoder: Decoder) throws {
let container = try decoder.singleValueContainer() let container = try decoder.singleValueContainer()
if let raw = try? container.decode(String.self) { if let raw = try? container.decode(String.self) {
switch raw { switch raw {
case "building": self = .building
case "block": self = .block case "block": self = .block
case "neighborhood": self = .neighborhood case "neighborhood": self = .neighborhood
case "city": self = .city case "city": self = .city
@@ -56,7 +46,6 @@ extension GeohashChannelLevel {
} }
} else if let precision = try? container.decode(Int.self) { } else if let precision = try? container.decode(Int.self) {
switch precision { switch precision {
case 8: self = .building
case 7: self = .block case 7: self = .block
case 6: self = .neighborhood case 6: self = .neighborhood
case 5: self = .city case 5: self = .city
@@ -72,7 +61,6 @@ extension GeohashChannelLevel {
func encode(to encoder: Encoder) throws { func encode(to encoder: Encoder) throws {
var container = encoder.singleValueContainer() var container = encoder.singleValueContainer()
switch self { switch self {
case .building: try container.encode("building")
case .block: try container.encode("block") case .block: try container.encode("block")
case .neighborhood: try container.encode("neighborhood") case .neighborhood: try container.encode("neighborhood")
case .city: try container.encode("city") case .city: try container.encode("city")
-3
View File
@@ -15,8 +15,6 @@ struct AnnouncementPacket {
func encode() -> Data? { func encode() -> Data? {
var data = Data() var data = Data()
// Reserve: TLVs for nickname (2 + n), noise key (2 + 32), signing key (2 + 32)
data.reserveCapacity(2 + min(nickname.count, 255) + 2 + noisePublicKey.count + 2 + signingPublicKey.count)
// TLV for nickname // TLV for nickname
guard let nicknameData = nickname.data(using: .utf8), nicknameData.count <= 255 else { return nil } guard let nicknameData = nickname.data(using: .utf8), nicknameData.count <= 255 else { return nil }
@@ -90,7 +88,6 @@ struct PrivateMessagePacket {
func encode() -> Data? { func encode() -> Data? {
var data = Data() var data = Data()
data.reserveCapacity(2 + min(messageID.count, 255) + 2 + min(content.count, 255))
// TLV for messageID // TLV for messageID
guard let messageIDData = messageID.data(using: .utf8), messageIDData.count <= 255 else { return nil } guard let messageIDData = messageID.data(using: .utf8), messageIDData.count <= 255 else { return nil }
+14
View File
@@ -0,0 +1,14 @@
import Foundation
import CryptoKit
// MARK: - Peer ID Utilities
struct PeerIDUtils {
/// Derive the stable 16-hex peer ID from a Noise static public key
static func derivePeerID(fromPublicKey publicKey: Data) -> String {
let digest = SHA256.hash(data: publicKey)
let hex = digest.map { String(format: "%02x", $0) }.joined()
return String(hex.prefix(16))
}
}
+1 -1
View File
@@ -9,7 +9,7 @@
import Foundation import Foundation
/// Manages autocomplete functionality for chat /// Manages autocomplete functionality for chat
final class AutocompleteService { class AutocompleteService {
private let mentionRegex = try? NSRegularExpression(pattern: "@([\\p{L}0-9_]*)$", options: []) private let mentionRegex = try? NSRegularExpression(pattern: "@([\\p{L}0-9_]*)$", options: [])
private let commandRegex = try? NSRegularExpression(pattern: "^/([a-z]*)$", options: []) private let commandRegex = try? NSRegularExpression(pattern: "^/([a-z]*)$", options: [])
File diff suppressed because it is too large Load Diff
+39 -23
View File
@@ -17,15 +17,13 @@ enum CommandResult {
/// Processes chat commands in a focused, efficient way /// Processes chat commands in a focused, efficient way
@MainActor @MainActor
final class CommandProcessor { class CommandProcessor {
weak var chatViewModel: ChatViewModel? weak var chatViewModel: ChatViewModel?
weak var meshService: Transport? weak var meshService: Transport?
private let identityManager: SecureIdentityStateManagerProtocol
init(chatViewModel: ChatViewModel? = nil, meshService: Transport? = nil, identityManager: SecureIdentityStateManagerProtocol) { init(chatViewModel: ChatViewModel? = nil, meshService: Transport? = nil) {
self.chatViewModel = chatViewModel self.chatViewModel = chatViewModel
self.meshService = meshService self.meshService = meshService
self.identityManager = identityManager
} }
/// Process a command string /// Process a command string
@@ -42,7 +40,7 @@ final class CommandProcessor {
case .location: return true case .location: return true
} }
}() }()
let inGeoDM = chatViewModel?.selectedPrivateChatPeer?.isGeoDM == true let inGeoDM = (chatViewModel?.selectedPrivateChatPeer?.hasPrefix("nostr_") == true)
switch cmd { switch cmd {
case "/m", "/msg": case "/m", "/msg":
@@ -52,9 +50,9 @@ final class CommandProcessor {
case "/clear": case "/clear":
return handleClear() return handleClear()
case "/hug": case "/hug":
return handleEmote(args, command: "hug", action: "hugs", emoji: "🫂") return handleEmote(args, action: "hugs", emoji: "🫂")
case "/slap": case "/slap":
return handleEmote(args, command: "slap", action: "slaps", emoji: "🐟", suffix: " around a bit with a large trout") return handleEmote(args, action: "slaps", emoji: "🐟", suffix: " around a bit with a large trout")
case "/block": case "/block":
return handleBlock(args) return handleBlock(args)
case "/unblock": case "/unblock":
@@ -65,6 +63,9 @@ final class CommandProcessor {
case "/unfav": case "/unfav":
if inGeoPublic || inGeoDM { return .error(message: "favorites are only for mesh peers in #mesh") } if inGeoPublic || inGeoDM { return .error(message: "favorites are only for mesh peers in #mesh") }
return handleFavorite(args, add: false) return handleFavorite(args, add: false)
//
case "/help", "/h":
return .error(message: "unknown command: \(cmd)")
default: default:
return .error(message: "unknown command: \(cmd)") return .error(message: "unknown command: \(cmd)")
} }
@@ -101,7 +102,7 @@ final class CommandProcessor {
case .location(let ch): case .location(let ch):
// Geohash context: show visible geohash participants (exclude self) // Geohash context: show visible geohash participants (exclude self)
guard let vm = chatViewModel else { return .success(message: "nobody around") } guard let vm = chatViewModel else { return .success(message: "nobody around") }
let myHex = (try? chatViewModel?.idBridge.deriveIdentity(forGeohash: ch.geohash))?.publicKeyHex.lowercased() let myHex = (try? NostrIdentityBridge.deriveIdentity(forGeohash: ch.geohash))?.publicKeyHex.lowercased()
let people = vm.visibleGeohashPeople().filter { person in let people = vm.visibleGeohashPeople().filter { person in
if let me = myHex { return person.id.lowercased() != me } if let me = myHex { return person.id.lowercased() != me }
return true return true
@@ -128,17 +129,17 @@ final class CommandProcessor {
return .handled return .handled
} }
private func handleEmote(_ args: String, command: String, action: String, emoji: String, suffix: String = "") -> CommandResult { private func handleEmote(_ args: String, action: String, emoji: String, suffix: String = "") -> CommandResult {
let targetName = args.trimmingCharacters(in: .whitespaces) let targetName = args.trimmingCharacters(in: .whitespaces)
guard !targetName.isEmpty else { guard !targetName.isEmpty else {
return .error(message: "usage: /\(command) <nickname>") return .error(message: "usage: /\(action) <nickname>")
} }
let nickname = targetName.hasPrefix("@") ? String(targetName.dropFirst()) : targetName let nickname = targetName.hasPrefix("@") ? String(targetName.dropFirst()) : targetName
guard let targetPeerID = chatViewModel?.getPeerIDForNickname(nickname), guard let targetPeerID = chatViewModel?.getPeerIDForNickname(nickname),
let myNickname = chatViewModel?.nickname else { let myNickname = chatViewModel?.nickname else {
return .error(message: "cannot \(command) \(nickname): not found") return .error(message: "cannot \(action) \(nickname): not found")
} }
let emoteContent = "* \(emoji) \(myNickname) \(action) \(nickname)\(suffix) *" let emoteContent = "* \(emoji) \(myNickname) \(action) \(nickname)\(suffix) *"
@@ -188,7 +189,7 @@ final class CommandProcessor {
} }
// Geohash blocked names (prefer visible display names; fallback to #suffix) // Geohash blocked names (prefer visible display names; fallback to #suffix)
let geoBlocked = Array(identityManager.getBlockedNostrPubkeys()) let geoBlocked = Array(SecureIdentityStateManager.shared.getBlockedNostrPubkeys())
var geoNames: [String] = [] var geoNames: [String] = []
if let vm = chatViewModel { if let vm = chatViewModel {
let visible = vm.visibleGeohashPeople() let visible = vm.visibleGeohashPeople()
@@ -212,14 +213,14 @@ final class CommandProcessor {
if let peerID = chatViewModel?.getPeerIDForNickname(nickname), if let peerID = chatViewModel?.getPeerIDForNickname(nickname),
let fingerprint = meshService?.getFingerprint(for: peerID) { let fingerprint = meshService?.getFingerprint(for: peerID) {
if identityManager.isBlocked(fingerprint: fingerprint) { if SecureIdentityStateManager.shared.isBlocked(fingerprint: fingerprint) {
return .success(message: "\(nickname) is already blocked") return .success(message: "\(nickname) is already blocked")
} }
// Block the user (mesh/noise identity) // Block the user (mesh/noise identity)
if var identity = identityManager.getSocialIdentity(for: fingerprint) { if var identity = SecureIdentityStateManager.shared.getSocialIdentity(for: fingerprint) {
identity.isBlocked = true identity.isBlocked = true
identity.isFavorite = false identity.isFavorite = false
identityManager.updateSocialIdentity(identity) SecureIdentityStateManager.shared.updateSocialIdentity(identity)
} else { } else {
let blockedIdentity = SocialIdentity( let blockedIdentity = SocialIdentity(
fingerprint: fingerprint, fingerprint: fingerprint,
@@ -230,16 +231,16 @@ final class CommandProcessor {
isBlocked: true, isBlocked: true,
notes: nil notes: nil
) )
identityManager.updateSocialIdentity(blockedIdentity) SecureIdentityStateManager.shared.updateSocialIdentity(blockedIdentity)
} }
return .success(message: "blocked \(nickname). you will no longer receive messages from them") return .success(message: "blocked \(nickname). you will no longer receive messages from them")
} }
// Mesh lookup failed; try geohash (Nostr) participant by display name // Mesh lookup failed; try geohash (Nostr) participant by display name
if let pub = chatViewModel?.nostrPubkeyForDisplayName(nickname) { if let pub = chatViewModel?.nostrPubkeyForDisplayName(nickname) {
if identityManager.isNostrBlocked(pubkeyHexLowercased: pub) { if SecureIdentityStateManager.shared.isNostrBlocked(pubkeyHexLowercased: pub) {
return .success(message: "\(nickname) is already blocked") return .success(message: "\(nickname) is already blocked")
} }
identityManager.setNostrBlocked(pub, isBlocked: true) SecureIdentityStateManager.shared.setNostrBlocked(pub, isBlocked: true)
return .success(message: "blocked \(nickname) in geohash chats") return .success(message: "blocked \(nickname) in geohash chats")
} }
@@ -256,18 +257,18 @@ final class CommandProcessor {
if let peerID = chatViewModel?.getPeerIDForNickname(nickname), if let peerID = chatViewModel?.getPeerIDForNickname(nickname),
let fingerprint = meshService?.getFingerprint(for: peerID) { let fingerprint = meshService?.getFingerprint(for: peerID) {
if !identityManager.isBlocked(fingerprint: fingerprint) { if !SecureIdentityStateManager.shared.isBlocked(fingerprint: fingerprint) {
return .success(message: "\(nickname) is not blocked") return .success(message: "\(nickname) is not blocked")
} }
identityManager.setBlocked(fingerprint, isBlocked: false) SecureIdentityStateManager.shared.setBlocked(fingerprint, isBlocked: false)
return .success(message: "unblocked \(nickname)") return .success(message: "unblocked \(nickname)")
} }
// Try geohash unblock // Try geohash unblock
if let pub = chatViewModel?.nostrPubkeyForDisplayName(nickname) { if let pub = chatViewModel?.nostrPubkeyForDisplayName(nickname) {
if !identityManager.isNostrBlocked(pubkeyHexLowercased: pub) { if !SecureIdentityStateManager.shared.isNostrBlocked(pubkeyHexLowercased: pub) {
return .success(message: "\(nickname) is not blocked") return .success(message: "\(nickname) is not blocked")
} }
identityManager.setNostrBlocked(pub, isBlocked: false) SecureIdentityStateManager.shared.setNostrBlocked(pub, isBlocked: false)
return .success(message: "unblocked \(nickname) in geohash chats") return .success(message: "unblocked \(nickname) in geohash chats")
} }
return .error(message: "cannot unblock \(nickname): not found") return .error(message: "cannot unblock \(nickname): not found")
@@ -282,7 +283,7 @@ final class CommandProcessor {
let nickname = targetName.hasPrefix("@") ? String(targetName.dropFirst()) : targetName let nickname = targetName.hasPrefix("@") ? String(targetName.dropFirst()) : targetName
guard let peerID = chatViewModel?.getPeerIDForNickname(nickname), guard let peerID = chatViewModel?.getPeerIDForNickname(nickname),
let noisePublicKey = Data(hexString: peerID.id) else { let noisePublicKey = Data(hexString: peerID) else {
return .error(message: "can't find peer: \(nickname)") return .error(message: "can't find peer: \(nickname)")
} }
@@ -308,4 +309,19 @@ final class CommandProcessor {
} }
} }
private func handleHelp() -> CommandResult {
let helpText = """
commands:
/msg @name - start private chat
/who - list who's online
/clear - clear messages
/hug @name - send a hug
/slap @name - slap with a trout
/fav @name - add to favorites
/unfav @name - remove from favorites
/block @name - block
/unblock @name - unblock
"""
return .success(message: helpText)
}
} }
@@ -1,10 +1,9 @@
import BitLogger
import Foundation import Foundation
import Combine import Combine
/// Manages persistent favorite relationships between peers /// Manages persistent favorite relationships between peers
@MainActor @MainActor
final class FavoritesPersistenceService: ObservableObject { class FavoritesPersistenceService: ObservableObject {
struct FavoriteRelationship: Codable { struct FavoriteRelationship: Codable {
let peerNoisePublicKey: Data let peerNoisePublicKey: Data
@@ -14,19 +13,14 @@ final class FavoritesPersistenceService: ObservableObject {
let theyFavoritedUs: Bool let theyFavoritedUs: Bool
let favoritedAt: Date let favoritedAt: Date
let lastUpdated: Date let lastUpdated: Date
// Track what we last sent as OUR npub to this peer, to avoid resending unless it changes
// Note: we do not track which npub we last sent to them; sending happens only on favorite toggle
var isMutual: Bool { var isMutual: Bool {
isFavorite && theyFavoritedUs isFavorite && theyFavoritedUs
} }
} }
// We intentionally do not track when we last sent our npub; sending happens only on favorite toggle.
private static let storageKey = "chat.bitchat.favorites" private static let storageKey = "chat.bitchat.favorites"
private static let keychainService = "chat.bitchat.favorites" private static let keychainService = "chat.bitchat.favorites"
private let keychain: KeychainHelperProtocol
@Published private(set) var favorites: [Data: FavoriteRelationship] = [:] // Noise pubkey -> relationship @Published private(set) var favorites: [Data: FavoriteRelationship] = [:] // Noise pubkey -> relationship
@Published private(set) var mutualFavorites: Set<Data> = [] @Published private(set) var mutualFavorites: Set<Data> = []
@@ -36,8 +30,7 @@ final class FavoritesPersistenceService: ObservableObject {
static let shared = FavoritesPersistenceService() static let shared = FavoritesPersistenceService()
init(keychain: KeychainHelperProtocol = KeychainHelper()) { private init() {
self.keychain = keychain
loadFavorites() loadFavorites()
// Update mutual favorites when favorites change // Update mutual favorites when favorites change
@@ -54,7 +47,8 @@ final class FavoritesPersistenceService: ObservableObject {
peerNostrPublicKey: String? = nil, peerNostrPublicKey: String? = nil,
peerNickname: String peerNickname: String
) { ) {
SecureLogger.info("⭐️ Adding favorite: \(peerNickname) (\(peerNoisePublicKey.hexEncodedString()))", category: .session) SecureLogger.log("⭐️ Adding favorite: \(peerNickname) (\(peerNoisePublicKey.hexEncodedString()))",
category: SecureLogger.session, level: .info)
let existing = favorites[peerNoisePublicKey] let existing = favorites[peerNoisePublicKey]
@@ -70,7 +64,8 @@ final class FavoritesPersistenceService: ObservableObject {
// Log if this creates a mutual favorite // Log if this creates a mutual favorite
if relationship.isMutual { if relationship.isMutual {
SecureLogger.info("💕 Mutual favorite relationship established with \(peerNickname)!", category: .session) SecureLogger.log("💕 Mutual favorite relationship established with \(peerNickname)!",
category: SecureLogger.session, level: .info)
} }
favorites[peerNoisePublicKey] = relationship favorites[peerNoisePublicKey] = relationship
@@ -88,7 +83,8 @@ final class FavoritesPersistenceService: ObservableObject {
func removeFavorite(peerNoisePublicKey: Data) { func removeFavorite(peerNoisePublicKey: Data) {
guard let existing = favorites[peerNoisePublicKey] else { return } guard let existing = favorites[peerNoisePublicKey] else { return }
SecureLogger.info("⭐️ Removing favorite: \(existing.peerNickname) (\(peerNoisePublicKey.hexEncodedString()))", category: .session) SecureLogger.log("⭐️ Removing favorite: \(existing.peerNickname) (\(peerNoisePublicKey.hexEncodedString()))",
category: SecureLogger.session, level: .info)
// If they still favorite us, keep the record but mark us as not favoriting // If they still favorite us, keep the record but mark us as not favoriting
if existing.theyFavoritedUs { if existing.theyFavoritedUs {
@@ -129,7 +125,8 @@ final class FavoritesPersistenceService: ObservableObject {
let existing = favorites[peerNoisePublicKey] let existing = favorites[peerNoisePublicKey]
let displayName = peerNickname ?? existing?.peerNickname ?? "Unknown" let displayName = peerNickname ?? existing?.peerNickname ?? "Unknown"
SecureLogger.info("📨 Received favorite notification: \(displayName) \(favorited ? "favorited" : "unfavorited") us", category: .session) SecureLogger.log("📨 Received favorite notification: \(displayName) \(favorited ? "favorited" : "unfavorited") us",
category: SecureLogger.session, level: .info)
let relationship = FavoriteRelationship( let relationship = FavoriteRelationship(
peerNoisePublicKey: peerNoisePublicKey, peerNoisePublicKey: peerNoisePublicKey,
@@ -150,7 +147,8 @@ final class FavoritesPersistenceService: ObservableObject {
// Check if this creates a mutual favorite // Check if this creates a mutual favorite
if relationship.isMutual { if relationship.isMutual {
SecureLogger.info("💕 Mutual favorite relationship established with \(displayName)!", category: .session) SecureLogger.log("💕 Mutual favorite relationship established with \(displayName)!",
category: SecureLogger.session, level: .info)
} }
} }
@@ -181,24 +179,136 @@ final class FavoritesPersistenceService: ObservableObject {
/// Resolve favorite status by short peer ID (16-hex derived from Noise pubkey) /// Resolve favorite status by short peer ID (16-hex derived from Noise pubkey)
/// Falls back to scanning favorites and matching on derived peer ID. /// Falls back to scanning favorites and matching on derived peer ID.
func getFavoriteStatus(forPeerID peerID: PeerID) -> FavoriteRelationship? { func getFavoriteStatus(forPeerID peerID: String) -> FavoriteRelationship? {
// Quick sanity: peerID should be 16 hex chars (8 bytes) // Quick sanity: peerID should be 16 hex chars (8 bytes)
guard peerID.isShort else { return nil } guard PeerIDResolver.isShortID(peerID) else { return nil }
for (pubkey, rel) in favorites where PeerID(publicKey: pubkey) == peerID { for (pubkey, rel) in favorites {
return rel let derived = PeerIDUtils.derivePeerID(fromPublicKey: pubkey)
if derived == peerID { return rel }
} }
return nil return nil
} }
/// Update Nostr public key for a peer
func updateNostrPublicKey(for peerNoisePublicKey: Data, nostrPubkey: String) {
guard let existing = favorites[peerNoisePublicKey] else { return }
let updated = FavoriteRelationship(
peerNoisePublicKey: existing.peerNoisePublicKey,
peerNostrPublicKey: nostrPubkey,
peerNickname: existing.peerNickname,
isFavorite: existing.isFavorite,
theyFavoritedUs: existing.theyFavoritedUs,
favoritedAt: existing.favoritedAt,
lastUpdated: Date()
)
favorites[peerNoisePublicKey] = updated
saveFavorites()
}
/// Update nickname for an existing favorite
func updateNickname(for peerNoisePublicKey: Data, newNickname: String) {
guard let existing = favorites[peerNoisePublicKey] else { return }
// Skip if nickname hasn't changed
if existing.peerNickname == newNickname { return }
// Updating nickname for favorite
let updated = FavoriteRelationship(
peerNoisePublicKey: existing.peerNoisePublicKey,
peerNostrPublicKey: existing.peerNostrPublicKey,
peerNickname: newNickname,
isFavorite: existing.isFavorite,
theyFavoritedUs: existing.theyFavoritedUs,
favoritedAt: existing.favoritedAt,
lastUpdated: Date()
)
favorites[peerNoisePublicKey] = updated
saveFavorites()
// Notify observers
NotificationCenter.default.post(
name: .favoriteStatusChanged,
object: nil,
userInfo: ["peerPublicKey": peerNoisePublicKey]
)
}
/// Update noise public key when peer reconnects with new ID
func updateNoisePublicKey(from oldKey: Data, to newKey: Data, peerNickname: String) {
guard let existing = favorites[oldKey] else {
SecureLogger.log("⚠️ Cannot update noise key - no favorite found for \(oldKey.hexEncodedString())",
category: SecureLogger.session, level: .warning)
return
}
// Check if we already have a favorite with the new key
if favorites[newKey] != nil {
SecureLogger.log("⚠️ Favorite already exists with new key \(newKey.hexEncodedString()), removing old entry",
category: SecureLogger.session, level: .warning)
favorites.removeValue(forKey: oldKey)
saveFavorites()
return
}
// Updating noise public key
// Remove old entry
favorites.removeValue(forKey: oldKey)
// Add with new key
let updated = FavoriteRelationship(
peerNoisePublicKey: newKey,
peerNostrPublicKey: existing.peerNostrPublicKey,
peerNickname: peerNickname,
isFavorite: existing.isFavorite,
theyFavoritedUs: existing.theyFavoritedUs,
favoritedAt: existing.favoritedAt,
lastUpdated: Date()
)
favorites[newKey] = updated
saveFavorites()
// Notify observers with both old and new keys
NotificationCenter.default.post(
name: .favoriteStatusChanged,
object: nil,
userInfo: [
"peerPublicKey": newKey,
"oldPeerPublicKey": oldKey,
"isKeyUpdate": true
]
)
}
/// Get all favorites (including non-mutual)
func getAllFavorites() -> [FavoriteRelationship] {
favorites.values.filter { $0.isFavorite }
}
/// Get only mutual favorites
func getMutualFavorites() -> [FavoriteRelationship] {
favorites.values.filter { $0.isMutual }
}
/// Get all favorite relationships (including where they favorited us)
func getAllRelationships() -> [FavoriteRelationship] {
Array(favorites.values)
}
/// Clear all favorites - used for panic mode /// Clear all favorites - used for panic mode
func clearAllFavorites() { func clearAllFavorites() {
SecureLogger.warning("🧹 Clearing all favorites (panic mode)", category: .session) SecureLogger.log("🧹 Clearing all favorites (panic mode)", category: SecureLogger.session, level: .warning)
favorites.removeAll() favorites.removeAll()
saveFavorites() saveFavorites()
// Delete from keychain directly // Delete from keychain directly
keychain.delete( KeychainHelper.delete(
key: Self.storageKey, key: Self.storageKey,
service: Self.keychainService service: Self.keychainService
) )
@@ -218,23 +328,22 @@ final class FavoritesPersistenceService: ObservableObject {
let data = try encoder.encode(relationships) let data = try encoder.encode(relationships)
// Store in keychain for security // Store in keychain for security
keychain.save( KeychainHelper.save(
key: Self.storageKey, key: Self.storageKey,
data: data, data: data,
service: Self.keychainService, service: Self.keychainService
accessible: nil
) )
// Successfully saved favorites // Successfully saved favorites
} catch { } catch {
SecureLogger.error("Failed to save favorites: \(error)", category: .session) SecureLogger.log("Failed to save favorites: \(error)", category: SecureLogger.session, level: .error)
} }
} }
private func loadFavorites() { private func loadFavorites() {
// Loading favorites from keychain // Loading favorites from keychain
guard let data = keychain.load( guard let data = KeychainHelper.load(
key: Self.storageKey, key: Self.storageKey,
service: Self.keychainService service: Self.keychainService
) else { ) else {
@@ -245,12 +354,14 @@ final class FavoritesPersistenceService: ObservableObject {
let decoder = JSONDecoder() let decoder = JSONDecoder()
let relationships = try decoder.decode([FavoriteRelationship].self, from: data) let relationships = try decoder.decode([FavoriteRelationship].self, from: data)
SecureLogger.info("✅ Loaded \(relationships.count) favorite relationships", category: .session) SecureLogger.log("✅ Loaded \(relationships.count) favorite relationships",
category: SecureLogger.session, level: .info)
// Log Nostr public key info // Log Nostr public key info
for relationship in relationships { for relationship in relationships {
if relationship.peerNostrPublicKey == nil { if relationship.peerNostrPublicKey == nil {
SecureLogger.warning("⚠️ No Nostr public key stored for '\(relationship.peerNickname)'", category: .session) SecureLogger.log("⚠️ No Nostr public key stored for '\(relationship.peerNickname)'",
category: SecureLogger.session, level: .warning)
} }
} }
@@ -261,7 +372,8 @@ final class FavoritesPersistenceService: ObservableObject {
for relationship in relationships { for relationship in relationships {
// Check for duplicates by public key (the actual unique identifier) // Check for duplicates by public key (the actual unique identifier)
if let existing = seenPublicKeys[relationship.peerNoisePublicKey] { if let existing = seenPublicKeys[relationship.peerNoisePublicKey] {
SecureLogger.warning("⚠️ Duplicate favorite found for public key \(relationship.peerNoisePublicKey.hexEncodedString()) - nicknames: '\(existing.peerNickname)' vs '\(relationship.peerNickname)'", category: .session) SecureLogger.log("⚠️ Duplicate favorite found for public key \(relationship.peerNoisePublicKey.hexEncodedString()) - nicknames: '\(existing.peerNickname)' vs '\(relationship.peerNickname)'",
category: SecureLogger.session, level: .warning)
// Keep the most recent or most complete relationship // Keep the most recent or most complete relationship
if relationship.lastUpdated > existing.lastUpdated || if relationship.lastUpdated > existing.lastUpdated ||
@@ -302,7 +414,7 @@ final class FavoritesPersistenceService: ObservableObject {
// Log loaded relationships // Log loaded relationships
// Loaded relationships successfully // Loaded relationships successfully
} catch { } catch {
SecureLogger.error("Failed to load favorites: \(error)", category: .session) SecureLogger.log("Failed to load favorites: \(error)", category: SecureLogger.session, level: .error)
} }
} }
} }
@@ -1,219 +0,0 @@
import Foundation
import Combine
#if os(iOS) || os(macOS)
import CoreLocation
#endif
/// Stores a user-maintained list of bookmarked geohash channels.
/// - Persistence: UserDefaults (JSON string array)
/// - Semantics: geohashes are normalized to lowercase base32 and de-duplicated
final class GeohashBookmarksStore: ObservableObject {
static let shared = GeohashBookmarksStore()
@Published private(set) var bookmarks: [String] = []
@Published private(set) var bookmarkNames: [String: String] = [:] // geohash -> friendly name
private let storeKey = "locationChannel.bookmarks"
private let namesStoreKey = "locationChannel.bookmarkNames"
private var membership: Set<String> = []
#if os(iOS) || os(macOS)
private let geocoder = CLGeocoder()
private var resolving: Set<String> = []
#endif
private let storage: UserDefaults
init(storage: UserDefaults = .standard) {
self.storage = storage
load()
}
// MARK: - Public API
func isBookmarked(_ geohash: String) -> Bool {
return membership.contains(Self.normalize(geohash))
}
func toggle(_ geohash: String) {
let gh = Self.normalize(geohash)
if membership.contains(gh) {
remove(gh)
} else {
add(gh)
}
}
func add(_ geohash: String) {
let gh = Self.normalize(geohash)
guard !gh.isEmpty else { return }
guard !membership.contains(gh) else { return }
bookmarks.insert(gh, at: 0)
membership.insert(gh)
persist()
// Resolve and persist a friendly name once when added
resolveNameIfNeeded(for: gh)
}
func remove(_ geohash: String) {
let gh = Self.normalize(geohash)
guard membership.contains(gh) else { return }
if let idx = bookmarks.firstIndex(of: gh) { bookmarks.remove(at: idx) }
membership.remove(gh)
// Clean up stored name to avoid stale cache growth
if bookmarkNames.removeValue(forKey: gh) != nil {
persistNames()
}
persist()
}
// MARK: - Persistence
private func load() {
guard let data = storage.data(forKey: storeKey) else { return }
if let arr = try? JSONDecoder().decode([String].self, from: data) {
// Sanitize, normalize, dedupe while preserving order (first occurrence wins)
var seen = Set<String>()
var list: [String] = []
for raw in arr {
let gh = Self.normalize(raw)
guard !gh.isEmpty else { continue }
if !seen.contains(gh) {
seen.insert(gh)
list.append(gh)
}
}
bookmarks = list
membership = seen
}
// Load any saved names
if let namesData = storage.data(forKey: namesStoreKey),
let dict = try? JSONDecoder().decode([String: String].self, from: namesData) {
bookmarkNames = dict
}
}
private func persist() {
if let data = try? JSONEncoder().encode(bookmarks) {
storage.set(data, forKey: storeKey)
}
}
private func persistNames() {
if let data = try? JSONEncoder().encode(bookmarkNames) {
storage.set(data, forKey: namesStoreKey)
}
}
// MARK: - Helpers
private static func normalize(_ s: String) -> String {
let allowed = Set("0123456789bcdefghjkmnpqrstuvwxyz")
return s
.trimmingCharacters(in: .whitespacesAndNewlines)
.lowercased()
.replacingOccurrences(of: "#", with: "")
.filter { allowed.contains($0) }
}
// MARK: - Name Resolution
/// Attempt to resolve and persist a friendly place name for a bookmarked geohash.
func resolveNameIfNeeded(for geohash: String) {
let gh = Self.normalize(geohash)
guard !gh.isEmpty else { return }
if bookmarkNames[gh] != nil { return }
#if os(iOS) || os(macOS)
if resolving.contains(gh) { return }
resolving.insert(gh)
// For very coarse geohashes, sample multiple points to capture multiple admin areas
if gh.count <= 2 {
let b = Geohash.decodeBounds(gh)
let pts: [CLLocation] = [
CLLocation(latitude: (b.latMin + b.latMax) / 2, longitude: (b.lonMin + b.lonMax) / 2), // center
CLLocation(latitude: b.latMin, longitude: b.lonMin),
CLLocation(latitude: b.latMin, longitude: b.lonMax),
CLLocation(latitude: b.latMax, longitude: b.lonMin),
CLLocation(latitude: b.latMax, longitude: b.lonMax)
]
resolveCompositeAdminName(geohash: gh, points: pts)
} else {
let center = Geohash.decodeCenter(gh)
let loc = CLLocation(latitude: center.lat, longitude: center.lon)
geocoder.reverseGeocodeLocation(loc) { [weak self] placemarks, _ in
guard let self = self else { return }
defer { self.resolving.remove(gh) }
if let pm = placemarks?.first {
let name = Self.nameForGeohashLength(gh.count, from: pm)
if let name = name, !name.isEmpty {
DispatchQueue.main.async {
self.bookmarkNames[gh] = name
self.persistNames()
}
}
}
}
}
#endif
}
#if os(iOS) || os(macOS)
private func resolveCompositeAdminName(geohash gh: String, points: [CLLocation]) {
var uniqueAdmins = OrderedSet<String>()
var idx = 0
func step() {
if idx >= points.count {
// Compose up to 2 names joined by ' and '
let finalName: String? = {
let names = uniqueAdmins.array
if names.count >= 2 { return names[0] + " and " + names[1] }
return names.first
}()
if let finalName = finalName, !finalName.isEmpty {
DispatchQueue.main.async {
self.bookmarkNames[gh] = finalName
self.persistNames()
}
}
self.resolving.remove(gh)
return
}
let loc = points[idx]
idx += 1
geocoder.reverseGeocodeLocation(loc) { [weak self] placemarks, _ in
guard self != nil else { return }
if let pm = placemarks?.first {
if let admin = pm.administrativeArea, !admin.isEmpty {
uniqueAdmins.insert(admin)
} else if let country = pm.country, !country.isEmpty {
uniqueAdmins.insert(country)
}
}
// Proceed to next point
step()
}
}
step()
}
// Minimal ordered-set for stable joining
private struct OrderedSet<Element: Hashable> {
private var set: Set<Element> = []
private(set) var array: [Element] = []
mutating func insert(_ element: Element) {
if set.insert(element).inserted { array.append(element) }
}
}
private static func nameForGeohashLength(_ len: Int, from pm: CLPlacemark) -> String? {
switch len {
case 0...2:
// Prefer administrative area if available at this coarse level
return pm.administrativeArea ?? pm.country
case 3...4:
return pm.administrativeArea ?? pm.subAdministrativeArea ?? pm.country
case 5:
return pm.locality ?? pm.subAdministrativeArea ?? pm.administrativeArea
case 6...7:
return pm.subLocality ?? pm.locality ?? pm.administrativeArea
default:
return pm.subLocality ?? pm.locality ?? pm.administrativeArea ?? pm.country
}
}
#endif
}
+46 -26
View File
@@ -6,33 +6,54 @@
// For more information, see <https://unlicense.org> // For more information, see <https://unlicense.org>
// //
import BitLogger
import Foundation import Foundation
import Security import Security
import os.log
protocol KeychainManagerProtocol { class KeychainManager {
func saveIdentityKey(_ keyData: Data, forKey key: String) -> Bool static let shared = KeychainManager()
func getIdentityKey(forKey key: String) -> Data?
func deleteIdentityKey(forKey key: String) -> Bool
func deleteAllKeychainData() -> Bool
func secureClear(_ data: inout Data)
func secureClear(_ string: inout String)
func verifyIdentityKeyExists() -> Bool
}
final class KeychainManager: KeychainManagerProtocol {
// Use consistent service name for all keychain items // Use consistent service name for all keychain items
private let service = BitchatApp.bundleID private let service = "chat.bitchat"
private let appGroup = "group.\(BitchatApp.bundleID)" private let appGroup = "group.chat.bitchat"
private init() {}
private func isSandboxed() -> Bool {
#if os(macOS)
// More robust sandbox detection using multiple methods
// Method 1: Check environment variable (can be spoofed)
let environment = ProcessInfo.processInfo.environment
let hasEnvVar = environment["APP_SANDBOX_CONTAINER_ID"] != nil
// Method 2: Check if we can access a path outside sandbox
let homeDir = FileManager.default.homeDirectoryForCurrentUser
let testPath = homeDir.appendingPathComponent("../../../tmp/bitchat_sandbox_test_\(UUID().uuidString)")
let canWriteOutsideSandbox = FileManager.default.createFile(atPath: testPath.path, contents: nil, attributes: nil)
if canWriteOutsideSandbox {
try? FileManager.default.removeItem(at: testPath)
}
// Method 3: Check container path
let containerPath = FileManager.default.urls(for: .libraryDirectory, in: .userDomainMask).first?.path ?? ""
let hasContainerPath = containerPath.contains("/Containers/")
// If any method indicates sandbox, we consider it sandboxed
return hasEnvVar || !canWriteOutsideSandbox || hasContainerPath
#else
// iOS is always sandboxed
return true
#endif
}
// MARK: - Identity Keys // MARK: - Identity Keys
func saveIdentityKey(_ keyData: Data, forKey key: String) -> Bool { func saveIdentityKey(_ keyData: Data, forKey key: String) -> Bool {
let fullKey = "identity_\(key)" let fullKey = "identity_\(key)"
let result = saveData(keyData, forKey: fullKey) let result = saveData(keyData, forKey: fullKey)
SecureLogger.logKeyOperation(.save, keyType: key, success: result) SecureLogger.logKeyOperation("save", keyType: key, success: result)
return result return result
} }
@@ -43,7 +64,7 @@ final class KeychainManager: KeychainManagerProtocol {
func deleteIdentityKey(forKey key: String) -> Bool { func deleteIdentityKey(forKey key: String) -> Bool {
let result = delete(forKey: "identity_\(key)") let result = delete(forKey: "identity_\(key)")
SecureLogger.logKeyOperation(.delete, keyType: key, success: result) SecureLogger.logKeyOperation("delete", keyType: key, success: result)
return result return result
} }
@@ -92,9 +113,9 @@ final class KeychainManager: KeychainManagerProtocol {
if status == errSecSuccess { return true } if status == errSecSuccess { return true }
if status == -34018 && !triedWithoutGroup { if status == -34018 && !triedWithoutGroup {
SecureLogger.error(NSError(domain: "Keychain", code: -34018), context: "Missing keychain entitlement", category: .keychain) SecureLogger.logError(NSError(domain: "Keychain", code: -34018), context: "Missing keychain entitlement", category: SecureLogger.keychain)
} else if status != errSecDuplicateItem { } else if status != errSecDuplicateItem {
SecureLogger.error(NSError(domain: "Keychain", code: Int(status)), context: "Error saving to keychain", category: .keychain) SecureLogger.logError(NSError(domain: "Keychain", code: Int(status)), context: "Error saving to keychain", category: SecureLogger.keychain)
} }
return false return false
} }
@@ -130,7 +151,7 @@ final class KeychainManager: KeychainManagerProtocol {
if status == errSecSuccess { return result as? Data } if status == errSecSuccess { return result as? Data }
if status == -34018 { if status == -34018 {
SecureLogger.error(NSError(domain: "Keychain", code: -34018), context: "Missing keychain entitlement", category: .keychain) SecureLogger.logError(NSError(domain: "Keychain", code: -34018), context: "Missing keychain entitlement", category: SecureLogger.keychain)
} }
return nil return nil
} }
@@ -177,7 +198,7 @@ final class KeychainManager: KeychainManagerProtocol {
// Delete ALL keychain data for panic mode // Delete ALL keychain data for panic mode
func deleteAllKeychainData() -> Bool { func deleteAllKeychainData() -> Bool {
SecureLogger.warning("Panic mode - deleting all keychain data", category: .security) SecureLogger.log("Panic mode - deleting all keychain data", category: SecureLogger.security, level: .warning)
var totalDeleted = 0 var totalDeleted = 0
@@ -240,7 +261,7 @@ final class KeychainManager: KeychainManagerProtocol {
let deleteStatus = SecItemDelete(deleteQuery as CFDictionary) let deleteStatus = SecItemDelete(deleteQuery as CFDictionary)
if deleteStatus == errSecSuccess { if deleteStatus == errSecSuccess {
totalDeleted += 1 totalDeleted += 1
SecureLogger.info("Deleted keychain item: \(account) from \(service)", category: .keychain) SecureLogger.log("Deleted keychain item: \(account) from \(service)", category: SecureLogger.keychain, level: .info)
} }
} }
} }
@@ -254,7 +275,6 @@ final class KeychainManager: KeychainManagerProtocol {
"com.bitchat.deviceidentity", "com.bitchat.deviceidentity",
"com.bitchat.noise.identity", "com.bitchat.noise.identity",
"chat.bitchat.passwords", "chat.bitchat.passwords",
"chat.bitchat.nostr",
"bitchat.keychain", "bitchat.keychain",
"bitchat", "bitchat",
"com.bitchat" "com.bitchat"
@@ -283,7 +303,7 @@ final class KeychainManager: KeychainManagerProtocol {
totalDeleted += 1 totalDeleted += 1
} }
SecureLogger.warning("Panic mode cleanup completed. Total items deleted: \(totalDeleted)", category: .keychain) SecureLogger.log("Panic mode cleanup completed. Total items deleted: \(totalDeleted)", category: SecureLogger.keychain, level: .warning)
return totalDeleted > 0 return totalDeleted > 0
} }
@@ -291,7 +311,7 @@ final class KeychainManager: KeychainManagerProtocol {
// MARK: - Security Utilities // MARK: - Security Utilities
/// Securely clear sensitive data from memory /// Securely clear sensitive data from memory
func secureClear(_ data: inout Data) { static func secureClear(_ data: inout Data) {
_ = data.withUnsafeMutableBytes { bytes in _ = data.withUnsafeMutableBytes { bytes in
// Use volatile memset to prevent compiler optimization // Use volatile memset to prevent compiler optimization
memset_s(bytes.baseAddress, bytes.count, 0, bytes.count) memset_s(bytes.baseAddress, bytes.count, 0, bytes.count)
@@ -300,7 +320,7 @@ final class KeychainManager: KeychainManagerProtocol {
} }
/// Securely clear sensitive string from memory /// Securely clear sensitive string from memory
func secureClear(_ string: inout String) { static func secureClear(_ string: inout String) {
// Convert to mutable data and clear // Convert to mutable data and clear
if var data = string.data(using: .utf8) { if var data = string.data(using: .utf8) {
secureClear(&data) secureClear(&data)
+12 -52
View File
@@ -1,4 +1,3 @@
import BitLogger
import Foundation import Foundation
import Combine import Combine
@@ -51,8 +50,10 @@ final class LocationChannelManager: NSObject, CLLocationManagerDelegate, Observa
let arr = try? JSONDecoder().decode([String].self, from: data) { let arr = try? JSONDecoder().decode([String].self, from: data) {
teleportedSet = Set(arr) teleportedSet = Set(arr)
} }
// Do not eagerly mark teleported on startup; wait for location to compute regional set. // Initialize teleported flag from persisted state if a location channel is selected
// This avoids showing teleported for in-region channels during cold start. if case .location(let ch) = selectedChannel {
teleported = teleportedSet.contains(ch.geohash)
}
let status: CLAuthorizationStatus let status: CLAuthorizationStatus
if #available(iOS 14.0, macOS 11.0, *) { if #available(iOS 14.0, macOS 11.0, *) {
status = cl.authorizationStatus status = cl.authorizationStatus
@@ -60,17 +61,6 @@ final class LocationChannelManager: NSObject, CLLocationManagerDelegate, Observa
status = CLLocationManager.authorizationStatus() status = CLLocationManager.authorizationStatus()
} }
updatePermissionState(from: status) updatePermissionState(from: status)
// If we don't have location authorization at startup, fall back to persisted teleport state
switch status {
case .authorizedAlways, .authorizedWhenInUse, .authorized:
break // will compute from location
case .notDetermined, .restricted, .denied:
fallthrough
@unknown default:
if case .location(let ch) = selectedChannel {
teleported = teleportedSet.contains(ch.geohash)
}
}
} }
// MARK: - Public API // MARK: - Public API
@@ -139,21 +129,7 @@ final class LocationChannelManager: NSObject, CLLocationManagerDelegate, Observa
case .mesh: case .mesh:
self.teleported = false self.teleported = false
case .location(let ch): case .location(let ch):
// If this geohash is in our current regional set, do NOT mark teleported. self.teleported = self.teleportedSet.contains(ch.geohash)
let inRegional = self.availableChannels.contains { $0.geohash == ch.geohash }
if inRegional {
self.teleported = false
// Clear persisted teleport for this geohash to keep future selections clean
if self.teleportedSet.contains(ch.geohash) {
self.teleportedSet.remove(ch.geohash)
if let data = try? JSONEncoder().encode(Array(self.teleportedSet)) {
UserDefaults.standard.set(data, forKey: self.teleportedStoreKey)
}
}
} else {
// Fall back to persisted mark (set by deep link or manual teleport)
self.teleported = self.teleportedSet.contains(ch.geohash)
}
} }
} }
} }
@@ -200,7 +176,8 @@ final class LocationChannelManager: NSObject, CLLocationManagerDelegate, Observa
func locationManager(_ manager: CLLocationManager, didFailWithError error: Error) { func locationManager(_ manager: CLLocationManager, didFailWithError error: Error) {
// Surface as denied/restricted if relevant; otherwise keep previous state // Surface as denied/restricted if relevant; otherwise keep previous state
SecureLogger.error("LocationChannelManager: location error: \(error.localizedDescription)", category: .session) SecureLogger.log("LocationChannelManager: location error: \(error.localizedDescription)",
category: SecureLogger.session, level: .error)
} }
// MARK: - Helpers // MARK: - Helpers
@@ -225,25 +202,14 @@ final class LocationChannelManager: NSObject, CLLocationManagerDelegate, Observa
} }
Task { @MainActor in Task { @MainActor in
self.availableChannels = result self.availableChannels = result
// Recompute teleported status based on whether the selected geohash is in our regional set // Recompute teleported status based on persisted state OR current location vs selected channel
switch self.selectedChannel { switch self.selectedChannel {
case .mesh: case .mesh:
self.teleported = false self.teleported = false
case .location(let ch): case .location(let ch):
// Membership check using freshly computed regional channels; avoids precision/rename drift let persisted = self.teleportedSet.contains(ch.geohash)
let inRegional = result.contains { $0.geohash == ch.geohash } let currentGH = Geohash.encode(latitude: coord.latitude, longitude: coord.longitude, precision: ch.level.precision)
if inRegional { self.teleported = persisted || (currentGH != ch.geohash)
self.teleported = false
// Clear persisted teleport flag if present
if self.teleportedSet.contains(ch.geohash) {
self.teleportedSet.remove(ch.geohash)
if let data = try? JSONEncoder().encode(Array(self.teleportedSet)) {
UserDefaults.standard.set(data, forKey: self.teleportedStoreKey)
}
}
} else {
self.teleported = true
}
} }
} }
} }
@@ -288,18 +254,12 @@ final class LocationChannelManager: NSObject, CLLocationManagerDelegate, Observa
} else if let locality = pm.locality, !locality.isEmpty { } else if let locality = pm.locality, !locality.isEmpty {
dict[.neighborhood] = locality dict[.neighborhood] = locality
} }
// Block: reuse neighborhood/locality granularity // Block: reuse neighborhood/locality granularity without exposing street level
if let subLocality = pm.subLocality, !subLocality.isEmpty { if let subLocality = pm.subLocality, !subLocality.isEmpty {
dict[.block] = subLocality dict[.block] = subLocality
} else if let locality = pm.locality, !locality.isEmpty { } else if let locality = pm.locality, !locality.isEmpty {
dict[.block] = locality dict[.block] = locality
} }
// Building: prefer place name/street/venue when available
if let name = pm.name, !name.isEmpty {
dict[.building] = name
} else if let thoroughfare = pm.thoroughfare, !thoroughfare.isEmpty {
dict[.building] = thoroughfare
}
return dict return dict
} }
} }
-257
View File
@@ -1,257 +0,0 @@
import BitLogger
import Foundation
/// Dependencies for location notes, allowing tests to stub relay/identity behavior.
struct LocationNotesDependencies {
typealias RelayLookup = @MainActor (_ geohash: String, _ count: Int) -> [String]
typealias Subscribe = @MainActor (_ filter: NostrFilter, _ id: String, _ relays: [String], _ handler: @escaping (NostrEvent) -> Void, _ onEOSE: (() -> Void)?) -> Void
typealias Unsubscribe = @MainActor (_ id: String) -> Void
typealias SendEvent = @MainActor (_ event: NostrEvent, _ relayUrls: [String]) -> Void
var relayLookup: RelayLookup
var subscribe: Subscribe
var unsubscribe: Unsubscribe
var sendEvent: SendEvent
var deriveIdentity: (_ geohash: String) throws -> NostrIdentity
var now: () -> Date
private static let idBridge = NostrIdentityBridge()
static let live = LocationNotesDependencies(
relayLookup: { geohash, count in
GeoRelayDirectory.shared.closestRelays(toGeohash: geohash, count: count)
},
subscribe: { filter, id, relays, handler, onEOSE in
NostrRelayManager.shared.subscribe(
filter: filter,
id: id,
relayUrls: relays,
handler: handler,
onEOSE: onEOSE
)
},
unsubscribe: { id in
NostrRelayManager.shared.unsubscribe(id: id)
},
sendEvent: { event, relays in
NostrRelayManager.shared.sendEvent(event, to: relays)
},
deriveIdentity: { geohash in
try idBridge.deriveIdentity(forGeohash: geohash)
},
now: { Date() }
)
}
/// Persistent location notes (Nostr kind 1) scoped to a building-level geohash (precision 8).
/// Subscribes to and publishes notes for a given geohash and provides a send API.
@MainActor
final class LocationNotesManager: ObservableObject {
enum State: Equatable {
case idle
case loading
case ready
case noRelays
}
struct Note: Identifiable, Equatable {
let id: String
let pubkey: String
let content: String
let createdAt: Date
let nickname: String?
var displayName: String {
let suffix = String(pubkey.suffix(4))
if let nick = nickname, !nick.trimmingCharacters(in: .whitespacesAndNewlines).isEmpty {
return "\(nick)#\(suffix)"
}
return "anon#\(suffix)"
}
}
@Published private(set) var notes: [Note] = [] // reverse-chron sorted
@Published private(set) var geohash: String
@Published private(set) var initialLoadComplete: Bool = false
@Published private(set) var state: State = .loading
@Published private(set) var errorMessage: String?
private var subscriptionID: String?
private var noteIDs = Set<String>() // O(1) duplicate detection
private let dependencies: LocationNotesDependencies
private let maxNotesInMemory = 500 // Defensive cap (relay limit is 200)
private enum Strings {
static let noRelays = String(localized: "location_notes.error.no_relays", comment: "Shown when no geo relays are available near the selected location")
static func failedToSend(_ detail: String) -> String {
String(
format: String(localized: "location_notes.error.failed_to_send", comment: "Shown when a location note fails to send"),
locale: .current,
detail
)
}
}
init(geohash: String, dependencies: LocationNotesDependencies = .live) {
let norm = geohash.lowercased()
self.geohash = norm
self.dependencies = dependencies
// Validate geohash (building-level precision: 8 chars)
if !Geohash.isValidBuildingGeohash(norm) {
SecureLogger.warning("LocationNotesManager: invalid geohash '\(norm)' (expected 8 valid base32 chars)", category: .session)
}
subscribe()
}
func setGeohash(_ newGeohash: String) {
let norm = newGeohash.lowercased()
guard norm != geohash else { return }
// Validate geohash (building-level precision: 8 chars)
guard Geohash.isValidBuildingGeohash(norm) else {
SecureLogger.warning("LocationNotesManager: rejecting invalid geohash '\(norm)' (expected 8 valid base32 chars)", category: .session)
return
}
if let sub = subscriptionID {
dependencies.unsubscribe(sub)
subscriptionID = nil
}
// Set loading state before clearing to prevent empty state flicker
state = .loading
initialLoadComplete = false
errorMessage = nil
geohash = norm
notes.removeAll()
noteIDs.removeAll()
subscribe()
}
func refresh() {
if let sub = subscriptionID {
dependencies.unsubscribe(sub)
subscriptionID = nil
}
// Set loading state before clearing to prevent empty state flicker
state = .loading
initialLoadComplete = false
errorMessage = nil
notes.removeAll()
noteIDs.removeAll()
subscribe()
}
func clearError() {
errorMessage = nil
}
private func subscribe() {
state = .loading
errorMessage = nil
if let sub = subscriptionID {
dependencies.unsubscribe(sub)
subscriptionID = nil
}
let subID = "locnotes-\(geohash)-\(UUID().uuidString.prefix(8))"
let relays = dependencies.relayLookup(geohash, TransportConfig.nostrGeoRelayCount)
guard !relays.isEmpty else {
subscriptionID = nil
initialLoadComplete = true
state = .noRelays
errorMessage = Strings.noRelays
SecureLogger.warning("LocationNotesManager: no geo relays for geohash=\(geohash)", category: .session)
return
}
subscriptionID = subID
initialLoadComplete = false
// Subscribe to center + 8 neighbors (± 1 grid)
let neighbors = Geohash.neighbors(of: geohash)
let allGeohashes = [geohash] + neighbors
let filter = NostrFilter.geohashNotes(allGeohashes, since: nil, limit: 200)
// Build a set of valid geohashes for tag matching (includes all 9 cells)
let validGeohashes = Set(allGeohashes.map { $0.lowercased() })
dependencies.subscribe(filter, subID, relays, { [weak self] event in
guard let self = self else { return }
guard event.kind == NostrProtocol.EventKind.textNote.rawValue else { return }
// Ensure matching tag - accept any of our 9 geohashes
guard event.tags.contains(where: { tag in
tag.count >= 2 && tag[0].lowercased() == "g" && validGeohashes.contains(tag[1].lowercased())
}) else { return }
guard !self.noteIDs.contains(event.id) else { return }
self.noteIDs.insert(event.id)
let nick = event.tags.first(where: { $0.first?.lowercased() == "n" && $0.count >= 2 })?.dropFirst().first
let ts = Date(timeIntervalSince1970: TimeInterval(event.created_at))
let note = Note(id: event.id, pubkey: event.pubkey, content: event.content, createdAt: ts, nickname: nick)
self.notes.append(note)
self.notes.sort { $0.createdAt > $1.createdAt }
self.enforceMemoryCap()
self.state = .ready
}, { [weak self] in
guard let self = self else { return }
self.initialLoadComplete = true
if self.state != .noRelays {
self.state = .ready
}
})
}
/// Send a location note for the current geohash using the per-geohash identity.
func send(content: String, nickname: String) {
let trimmed = content.trimmingCharacters(in: .whitespacesAndNewlines)
guard !trimmed.isEmpty else { return }
let relays = dependencies.relayLookup(geohash, TransportConfig.nostrGeoRelayCount)
guard !relays.isEmpty else {
state = .noRelays
errorMessage = Strings.noRelays
SecureLogger.warning("LocationNotesManager: send blocked, no geo relays for geohash=\(geohash)", category: .session)
return
}
do {
let id = try dependencies.deriveIdentity(geohash)
let event = try NostrProtocol.createGeohashTextNote(
content: trimmed,
geohash: geohash,
senderIdentity: id,
nickname: nickname
)
dependencies.sendEvent(event, relays)
// Optimistic local-echo
let echo = Note(
id: event.id,
pubkey: id.publicKeyHex,
content: trimmed,
createdAt: Date(timeIntervalSince1970: TimeInterval(event.created_at)),
nickname: nickname
)
self.noteIDs.insert(event.id)
self.notes.insert(echo, at: 0)
self.enforceMemoryCap()
self.state = .ready
self.errorMessage = nil
} catch {
SecureLogger.error("LocationNotesManager: failed to send note: \(error)", category: .session)
errorMessage = Strings.failedToSend(error.localizedDescription)
}
}
/// Enforces defensive memory cap on notes array (keeps newest).
private func enforceMemoryCap() {
if notes.count > maxNotesInMemory {
let removed = notes.count - maxNotesInMemory
notes = Array(notes.prefix(maxNotesInMemory))
SecureLogger.debug("LocationNotesManager: trimmed \(removed) old notes (cap: \(maxNotesInMemory))", category: .session)
}
}
/// Explicitly cancel subscription and release resources.
func cancel() {
if let sub = subscriptionID {
dependencies.unsubscribe(sub)
subscriptionID = nil
}
state = .idle
errorMessage = nil
}
}
+38 -47
View File
@@ -1,17 +1,15 @@
import BitLogger
import Foundation import Foundation
/// Routes messages between BLE and Nostr transports /// Routes messages between BLE and Nostr transports
@MainActor @MainActor
final class MessageRouter { final class MessageRouter {
private let mesh: Transport private let mesh: Transport
private let nostr: NostrTransport private let nostr: NostrOutboxService
private var outbox: [PeerID: [(content: String, nickname: String, messageID: String)]] = [:] // peerID -> queued messages private var outbox: [String: [(content: String, nickname: String, messageID: String)]] = [:] // peerID -> queued messages
init(mesh: Transport, nostr: NostrTransport) { init(mesh: Transport, nostr: NostrOutboxService) {
self.mesh = mesh self.mesh = mesh
self.nostr = nostr self.nostr = nostr
self.nostr.senderPeerID = mesh.myPeerID
// Observe favorites changes to learn Nostr mapping and flush queued messages // Observe favorites changes to learn Nostr mapping and flush queued messages
NotificationCenter.default.addObserver( NotificationCenter.default.addObserver(
@@ -21,7 +19,7 @@ final class MessageRouter {
) { [weak self] note in ) { [weak self] note in
guard let self = self else { return } guard let self = self else { return }
if let data = note.userInfo?["peerPublicKey"] as? Data { if let data = note.userInfo?["peerPublicKey"] as? Data {
let peerID = PeerID(publicKey: data) let peerID = PeerIDUtils.derivePeerID(fromPublicKey: data)
Task { @MainActor in Task { @MainActor in
self.flushOutbox(for: peerID) self.flushOutbox(for: peerID)
} }
@@ -29,7 +27,7 @@ final class MessageRouter {
// Handle key updates // Handle key updates
if let newKey = note.userInfo?["peerPublicKey"] as? Data, if let newKey = note.userInfo?["peerPublicKey"] as? Data,
let _ = note.userInfo?["isKeyUpdate"] as? Bool { let _ = note.userInfo?["isKeyUpdate"] as? Bool {
let peerID = PeerID(publicKey: newKey) let peerID = PeerIDUtils.derivePeerID(fromPublicKey: newKey)
Task { @MainActor in Task { @MainActor in
self.flushOutbox(for: peerID) self.flushOutbox(for: peerID)
} }
@@ -37,45 +35,50 @@ final class MessageRouter {
} }
} }
func sendPrivate(_ content: String, to peerID: PeerID, recipientNickname: String, messageID: String) { func sendPrivate(_ content: String, to peerID: String, recipientNickname: String, messageID: String) {
let reachableMesh = mesh.isPeerReachable(peerID) let reachableMesh = mesh.isPeerReachable(peerID)
if reachableMesh { if reachableMesh {
SecureLogger.debug("Routing PM via mesh (reachable) to \(peerID.id.prefix(8))… id=\(messageID.prefix(8))", category: .session) SecureLogger.log("Routing PM via mesh (reachable) to \(peerID.prefix(8))… id=\(messageID.prefix(8))",
category: SecureLogger.session, level: .debug)
// BLEService will initiate a handshake if needed and queue the message // BLEService will initiate a handshake if needed and queue the message
mesh.sendPrivateMessage(content, to: peerID, recipientNickname: recipientNickname, messageID: messageID) mesh.sendPrivateMessage(content, to: peerID, recipientNickname: recipientNickname, messageID: messageID)
} else if canSendViaNostr(peerID: peerID) { } else if canSendViaNostr(peerID: peerID) {
SecureLogger.debug("Routing PM via Nostr to \(peerID.id.prefix(8))… id=\(messageID.prefix(8))", category: .session) SecureLogger.log("Routing PM via Nostr to \(peerID.prefix(8))… id=\(messageID.prefix(8))",
nostr.sendPrivateMessage(content, to: peerID, recipientNickname: recipientNickname, messageID: messageID) category: SecureLogger.session, level: .debug)
nostr.sendPrivate(content, to: peerID, recipientNickname: recipientNickname, messageID: messageID)
} else { } else {
// Queue for later (when mesh connects or Nostr mapping appears) // Queue for later (when mesh connects or Nostr mapping appears)
if outbox[peerID] == nil { outbox[peerID] = [] } if outbox[peerID] == nil { outbox[peerID] = [] }
outbox[peerID]?.append((content, recipientNickname, messageID)) outbox[peerID]?.append((content, recipientNickname, messageID))
SecureLogger.debug("Queued PM for \(peerID.id.prefix(8))… (no mesh, no Nostr mapping) id=\(messageID.prefix(8))", category: .session) SecureLogger.log("Queued PM for \(peerID.prefix(8))… (no mesh, no Nostr mapping) id=\(messageID.prefix(8))",
category: SecureLogger.session, level: .debug)
} }
} }
func sendReadReceipt(_ receipt: ReadReceipt, to peerID: PeerID) { func sendReadReceipt(_ receipt: ReadReceipt, to peerID: String) {
// Prefer mesh for reachable peers; BLE will queue if handshake is needed // Prefer mesh for reachable peers; BLE will queue if handshake is needed
if mesh.isPeerReachable(peerID) { if mesh.isPeerReachable(peerID) {
SecureLogger.debug("Routing READ ack via mesh (reachable) to \(peerID.id.prefix(8))… id=\(receipt.originalMessageID.prefix(8))", category: .session) SecureLogger.log("Routing READ ack via mesh (reachable) to \(peerID.prefix(8))… id=\(receipt.originalMessageID.prefix(8))",
category: SecureLogger.session, level: .debug)
mesh.sendReadReceipt(receipt, to: peerID) mesh.sendReadReceipt(receipt, to: peerID)
} else { } else {
SecureLogger.debug("Routing READ ack via Nostr to \(peerID.id.prefix(8))… id=\(receipt.originalMessageID.prefix(8))", category: .session) SecureLogger.log("Routing READ ack via Nostr to \(peerID.prefix(8))… id=\(receipt.originalMessageID.prefix(8))",
category: SecureLogger.session, level: .debug)
nostr.sendReadReceipt(receipt, to: peerID) nostr.sendReadReceipt(receipt, to: peerID)
} }
} }
func sendDeliveryAck(_ messageID: String, to peerID: PeerID) { func sendDeliveryAck(_ messageID: String, to peerID: String) {
if mesh.isPeerReachable(peerID) { if mesh.isPeerReachable(peerID) {
SecureLogger.debug("Routing DELIVERED ack via mesh (reachable) to \(peerID.id.prefix(8))… id=\(messageID.prefix(8))", category: .session) SecureLogger.log("Routing DELIVERED ack via mesh (reachable) to \(peerID.prefix(8))… id=\(messageID.prefix(8))",
category: SecureLogger.session, level: .debug)
mesh.sendDeliveryAck(for: messageID, to: peerID) mesh.sendDeliveryAck(for: messageID, to: peerID)
} else { } else {
nostr.sendDeliveryAck(for: messageID, to: peerID) nostr.sendDeliveryAck(for: messageID, to: peerID)
} }
} }
func sendFavoriteNotification(to peerID: PeerID, isFavorite: Bool) { func sendFavoriteNotification(to peerID: String, isFavorite: Bool) {
// Route via mesh when connected; else use Nostr
if mesh.isPeerConnected(peerID) { if mesh.isPeerConnected(peerID) {
mesh.sendFavoriteNotification(to: peerID, isFavorite: isFavorite) mesh.sendFavoriteNotification(to: peerID, isFavorite: isFavorite)
} else { } else {
@@ -84,50 +87,38 @@ final class MessageRouter {
} }
// MARK: - Outbox Management // MARK: - Outbox Management
private func canSendViaNostr(peerID: PeerID) -> Bool { private func canSendViaNostr(peerID: String) -> Bool {
// Two forms are supported: guard let noiseKey = Data(hexString: peerID) else { return false }
// - 64-hex Noise public key (32 bytes) if let fav = FavoritesPersistenceService.shared.getFavoriteStatus(for: noiseKey),
// - 16-hex short peer ID (derived from Noise pubkey) fav.peerNostrPublicKey != nil {
if let noiseKey = peerID.noiseKey { return true
if let fav = FavoritesPersistenceService.shared.getFavoriteStatus(for: noiseKey),
fav.peerNostrPublicKey != nil {
return true
}
} else if peerID.isShort {
if let fav = FavoritesPersistenceService.shared.getFavoriteStatus(forPeerID: peerID),
fav.peerNostrPublicKey != nil {
return true
}
} }
return false return false
} }
func flushOutbox(for peerID: PeerID) { func flushOutbox(for peerID: String) {
guard let queued = outbox[peerID], !queued.isEmpty else { return } guard let queued = outbox[peerID], !queued.isEmpty else { return }
SecureLogger.debug("Flushing outbox for \(peerID.id.prefix(8))… count=\(queued.count)", category: .session) SecureLogger.log("Flushing outbox for \(peerID.prefix(8))… count=\(queued.count)",
var remaining: [(content: String, nickname: String, messageID: String)] = [] category: SecureLogger.session, level: .debug)
// Prefer mesh if connected; else try Nostr if mapping exists // Prefer mesh if connected; else try Nostr if mapping exists
for (content, nickname, messageID) in queued { for (content, nickname, messageID) in queued {
if mesh.isPeerReachable(peerID) { if mesh.isPeerReachable(peerID) {
SecureLogger.debug("Outbox -> mesh for \(peerID.id.prefix(8))… id=\(messageID.prefix(8))", category: .session) SecureLogger.log("Outbox -> mesh for \(peerID.prefix(8))… id=\(messageID.prefix(8))",
category: SecureLogger.session, level: .debug)
mesh.sendPrivateMessage(content, to: peerID, recipientNickname: nickname, messageID: messageID) mesh.sendPrivateMessage(content, to: peerID, recipientNickname: nickname, messageID: messageID)
} else if canSendViaNostr(peerID: peerID) { } else if canSendViaNostr(peerID: peerID) {
SecureLogger.debug("Outbox -> Nostr for \(peerID.id.prefix(8))… id=\(messageID.prefix(8))", category: .session) SecureLogger.log("Outbox -> Nostr for \(peerID.prefix(8))… id=\(messageID.prefix(8))",
category: SecureLogger.session, level: .debug)
nostr.sendPrivateMessage(content, to: peerID, recipientNickname: nickname, messageID: messageID) nostr.sendPrivateMessage(content, to: peerID, recipientNickname: nickname, messageID: messageID)
} else { } else {
// Keep unsent items queued continue
remaining.append((content, nickname, messageID))
} }
} }
// Persist only items we could not send // Remove all flushed items (remaining ones, if any, will be re-queued on next call)
if remaining.isEmpty { outbox[peerID]?.removeAll()
outbox.removeValue(forKey: peerID)
} else {
outbox[peerID] = remaining
}
} }
func flushAllOutbox() { func flushAllOutbox() {
for key in Array(outbox.keys) { flushOutbox(for: key) } for key in outbox.keys { flushOutbox(for: key) }
} }
} }
@@ -1,114 +0,0 @@
import Foundation
import BitLogger
import Combine
import Tor
/// Coordinates when the app is allowed to start Tor and connect to Nostr relays.
/// Policy: permit start when either location permissions are authorized OR
/// there exists at least one mutual favorite. Otherwise, do not start.
@MainActor
final class NetworkActivationService: ObservableObject {
static let shared = NetworkActivationService()
@Published private(set) var activationAllowed: Bool = false
@Published private(set) var userTorEnabled: Bool = true
private var cancellables = Set<AnyCancellable>()
private var started = false
private let torPreferenceKey = "networkActivationService.userTorEnabled"
private var torAutoStartDesired: Bool = false
private init() {}
func start() {
guard !started else { return }
started = true
if let stored = UserDefaults.standard.object(forKey: torPreferenceKey) as? Bool {
userTorEnabled = stored
} else {
userTorEnabled = true
}
// Initial compute
let allowed = basePolicyAllowed()
activationAllowed = allowed
torAutoStartDesired = allowed && userTorEnabled
TorManager.shared.setAutoStartAllowed(torAutoStartDesired)
applyTorState(torDesired: torAutoStartDesired)
if allowed {
NostrRelayManager.shared.connect()
} else {
NostrRelayManager.shared.disconnect()
}
// React to location permission changes
LocationChannelManager.shared.$permissionState
.receive(on: DispatchQueue.main)
.sink { [weak self] _ in
self?.reevaluate()
}
.store(in: &cancellables)
// React to mutual favorites changes
FavoritesPersistenceService.shared.$mutualFavorites
.receive(on: DispatchQueue.main)
.sink { [weak self] _ in
self?.reevaluate()
}
.store(in: &cancellables)
}
func setUserTorEnabled(_ enabled: Bool) {
guard enabled != userTorEnabled else { return }
userTorEnabled = enabled
UserDefaults.standard.set(enabled, forKey: torPreferenceKey)
NotificationCenter.default.post(
name: .TorUserPreferenceChanged,
object: nil,
userInfo: ["enabled": enabled]
)
reevaluate()
}
private func reevaluate() {
let allowed = basePolicyAllowed()
let torDesired = allowed && userTorEnabled
let statusChanged = allowed != activationAllowed
let torChanged = torDesired != torAutoStartDesired
if statusChanged {
SecureLogger.info("NetworkActivationService: activationAllowed -> \(allowed)", category: .session)
activationAllowed = allowed
}
if statusChanged || torChanged {
torAutoStartDesired = torDesired
TorManager.shared.setAutoStartAllowed(torDesired)
applyTorState(torDesired: torDesired)
}
if allowed {
if torChanged {
// Reset relay sockets when switching transport path (Tor direct)
NostrRelayManager.shared.disconnect()
}
NostrRelayManager.shared.connect()
} else if statusChanged {
NostrRelayManager.shared.disconnect()
}
}
private func basePolicyAllowed() -> Bool {
let permOK = LocationChannelManager.shared.permissionState == .authorized
let hasMutual = !FavoritesPersistenceService.shared.mutualFavorites.isEmpty
return permOK || hasMutual
}
private func applyTorState(torDesired: Bool) {
TorURLSession.shared.setProxyMode(useTor: torDesired)
if torDesired {
TorManager.shared.startIfNeeded()
} else {
TorManager.shared.shutdownCompletely()
}
}
}
+73 -73
View File
@@ -62,6 +62,7 @@
/// ## Integration Points /// ## Integration Points
/// - **BLEService**: Calls this service for all private messages /// - **BLEService**: Calls this service for all private messages
/// - **ChatViewModel**: Monitors encryption status for UI indicators /// - **ChatViewModel**: Monitors encryption status for UI indicators
/// - **NoiseHandshakeCoordinator**: Prevents handshake race conditions
/// - **KeychainManager**: Secure storage for identity keys /// - **KeychainManager**: Secure storage for identity keys
/// ///
/// ## Thread Safety /// ## Thread Safety
@@ -82,9 +83,9 @@
/// - Background queue for CPU-intensive operations /// - Background queue for CPU-intensive operations
/// ///
import BitLogger
import Foundation import Foundation
import CryptoKit import CryptoKit
import os.log
// MARK: - Encryption Status // MARK: - Encryption Status
@@ -115,30 +116,15 @@ enum EncryptionStatus: Equatable {
var description: String { var description: String {
switch self { switch self {
case .none: case .none:
return String(localized: "encryption.status.failed", comment: "Status text when encryption failed") return "Encryption failed"
case .noHandshake: case .noHandshake:
return String(localized: "encryption.status.not_encrypted", comment: "Status text when no encryption handshake happened") return "Not encrypted"
case .noiseHandshaking: case .noiseHandshaking:
return String(localized: "encryption.status.establishing", comment: "Status text when encryption is being established") return "Establishing encryption..."
case .noiseSecured: case .noiseSecured:
return String(localized: "encryption.status.secured", comment: "Status text when encryption is secured but not verified") return "Encrypted"
case .noiseVerified: case .noiseVerified:
return String(localized: "encryption.status.verified", comment: "Status text when encryption is verified") return "Encrypted & Verified"
}
}
var accessibilityDescription: String {
switch self {
case .none:
return String(localized: "encryption.accessibility.failed", comment: "Accessibility text when encryption failed")
case .noHandshake:
return String(localized: "encryption.accessibility.not_encrypted", comment: "Accessibility text when encryption is not established")
case .noiseHandshaking:
return String(localized: "encryption.accessibility.establishing", comment: "Accessibility text when encryption is being established")
case .noiseSecured:
return String(localized: "encryption.accessibility.secured", comment: "Accessibility text when encryption is secured")
case .noiseVerified:
return String(localized: "encryption.accessibility.verified", comment: "Accessibility text when encryption is verified")
} }
} }
} }
@@ -149,7 +135,7 @@ enum EncryptionStatus: Equatable {
/// Provides a high-level API for establishing secure channels between peers, /// Provides a high-level API for establishing secure channels between peers,
/// handling all cryptographic operations transparently. /// handling all cryptographic operations transparently.
/// - Important: This service maintains the device's cryptographic identity /// - Important: This service maintains the device's cryptographic identity
final class NoiseEncryptionService { class NoiseEncryptionService {
// Static identity key (persistent across sessions) // Static identity key (persistent across sessions)
private let staticIdentityKey: Curve25519.KeyAgreement.PrivateKey private let staticIdentityKey: Curve25519.KeyAgreement.PrivateKey
public let staticIdentityPublicKey: Curve25519.KeyAgreement.PublicKey public let staticIdentityPublicKey: Curve25519.KeyAgreement.PublicKey
@@ -162,15 +148,14 @@ final class NoiseEncryptionService {
private let sessionManager: NoiseSessionManager private let sessionManager: NoiseSessionManager
// Peer fingerprints (SHA256 hash of static public key) // Peer fingerprints (SHA256 hash of static public key)
private var peerFingerprints: [PeerID: String] = [:] private var peerFingerprints: [String: String] = [:] // peerID -> fingerprint
private var fingerprintToPeerID: [String: PeerID] = [:] private var fingerprintToPeerID: [String: String] = [:] // fingerprint -> peerID
// Thread safety // Thread safety
private let serviceQueue = DispatchQueue(label: "chat.bitchat.noise.service", attributes: .concurrent) private let serviceQueue = DispatchQueue(label: "chat.bitchat.noise.service", attributes: .concurrent)
// Security components // Security components
private let rateLimiter = NoiseRateLimiter() private let rateLimiter = NoiseRateLimiter()
private let keychain: KeychainManagerProtocol
// Session maintenance // Session maintenance
private var rekeyTimer: Timer? private var rekeyTimer: Timer?
@@ -178,7 +163,7 @@ final class NoiseEncryptionService {
// Callbacks // Callbacks
private var onPeerAuthenticatedHandlers: [((String, String) -> Void)] = [] // Array of handlers for peer authentication private var onPeerAuthenticatedHandlers: [((String, String) -> Void)] = [] // Array of handlers for peer authentication
var onHandshakeRequired: ((PeerID) -> Void)? // peerID needs handshake var onHandshakeRequired: ((String) -> Void)? // peerID needs handshake
// Add a handler for peer authentication // Add a handler for peer authentication
func addOnPeerAuthenticatedHandler(_ handler: @escaping (String, String) -> Void) { func addOnPeerAuthenticatedHandler(_ handler: @escaping (String, String) -> Void) {
@@ -197,17 +182,15 @@ final class NoiseEncryptionService {
} }
} }
init(keychain: KeychainManagerProtocol) { init() {
self.keychain = keychain
// Load or create static identity key (ONLY from keychain) // Load or create static identity key (ONLY from keychain)
let loadedKey: Curve25519.KeyAgreement.PrivateKey let loadedKey: Curve25519.KeyAgreement.PrivateKey
// Try to load from keychain // Try to load from keychain
if let identityData = keychain.getIdentityKey(forKey: "noiseStaticKey"), if let identityData = KeychainManager.shared.getIdentityKey(forKey: "noiseStaticKey"),
let key = try? Curve25519.KeyAgreement.PrivateKey(rawRepresentation: identityData) { let key = try? Curve25519.KeyAgreement.PrivateKey(rawRepresentation: identityData) {
loadedKey = key loadedKey = key
SecureLogger.logKeyOperation(.load, keyType: "noiseStaticKey", success: true) SecureLogger.logKeyOperation("load", keyType: "noiseStaticKey", success: true)
} }
// If no identity exists, create new one // If no identity exists, create new one
else { else {
@@ -215,8 +198,8 @@ final class NoiseEncryptionService {
let keyData = loadedKey.rawRepresentation let keyData = loadedKey.rawRepresentation
// Save to keychain // Save to keychain
let saved = keychain.saveIdentityKey(keyData, forKey: "noiseStaticKey") let saved = KeychainManager.shared.saveIdentityKey(keyData, forKey: "noiseStaticKey")
SecureLogger.logKeyOperation(.create, keyType: "noiseStaticKey", success: saved) SecureLogger.logKeyOperation("create", keyType: "noiseStaticKey", success: saved)
} }
// Now assign the final value // Now assign the final value
@@ -227,10 +210,10 @@ final class NoiseEncryptionService {
let loadedSigningKey: Curve25519.Signing.PrivateKey let loadedSigningKey: Curve25519.Signing.PrivateKey
// Try to load from keychain // Try to load from keychain
if let signingData = keychain.getIdentityKey(forKey: "ed25519SigningKey"), if let signingData = KeychainManager.shared.getIdentityKey(forKey: "ed25519SigningKey"),
let key = try? Curve25519.Signing.PrivateKey(rawRepresentation: signingData) { let key = try? Curve25519.Signing.PrivateKey(rawRepresentation: signingData) {
loadedSigningKey = key loadedSigningKey = key
SecureLogger.logKeyOperation(.load, keyType: "ed25519SigningKey", success: true) SecureLogger.logKeyOperation("load", keyType: "ed25519SigningKey", success: true)
} }
// If no signing key exists, create new one // If no signing key exists, create new one
else { else {
@@ -238,8 +221,8 @@ final class NoiseEncryptionService {
let keyData = loadedSigningKey.rawRepresentation let keyData = loadedSigningKey.rawRepresentation
// Save to keychain // Save to keychain
let saved = keychain.saveIdentityKey(keyData, forKey: "ed25519SigningKey") let saved = KeychainManager.shared.saveIdentityKey(keyData, forKey: "ed25519SigningKey")
SecureLogger.logKeyOperation(.create, keyType: "ed25519SigningKey", success: saved) SecureLogger.logKeyOperation("create", keyType: "ed25519SigningKey", success: saved)
} }
// Now assign the signing keys // Now assign the signing keys
@@ -247,7 +230,7 @@ final class NoiseEncryptionService {
self.signingPublicKey = signingKey.publicKey self.signingPublicKey = signingKey.publicKey
// Initialize session manager // Initialize session manager
self.sessionManager = NoiseSessionManager(localStaticKey: staticIdentityKey, keychain: keychain) self.sessionManager = NoiseSessionManager(localStaticKey: staticIdentityKey)
// Set up session callbacks // Set up session callbacks
sessionManager.onSessionEstablished = { [weak self] peerID, remoteStaticKey in sessionManager.onSessionEstablished = { [weak self] peerID, remoteStaticKey in
@@ -272,21 +255,22 @@ final class NoiseEncryptionService {
/// Get our identity fingerprint /// Get our identity fingerprint
func getIdentityFingerprint() -> String { func getIdentityFingerprint() -> String {
staticIdentityPublicKey.rawRepresentation.sha256Fingerprint() let hash = SHA256.hash(data: staticIdentityPublicKey.rawRepresentation)
return hash.map { String(format: "%02x", $0) }.joined()
} }
/// Get peer's public key data /// Get peer's public key data
func getPeerPublicKeyData(_ peerID: PeerID) -> Data? { func getPeerPublicKeyData(_ peerID: String) -> Data? {
return sessionManager.getRemoteStaticKey(for: peerID)?.rawRepresentation return sessionManager.getRemoteStaticKey(for: peerID)?.rawRepresentation
} }
/// Clear persistent identity (for panic mode) /// Clear persistent identity (for panic mode)
func clearPersistentIdentity() { func clearPersistentIdentity() {
// Clear from keychain // Clear from keychain
let deletedStatic = keychain.deleteIdentityKey(forKey: "noiseStaticKey") let deletedStatic = KeychainManager.shared.deleteIdentityKey(forKey: "noiseStaticKey")
let deletedSigning = keychain.deleteIdentityKey(forKey: "ed25519SigningKey") let deletedSigning = KeychainManager.shared.deleteIdentityKey(forKey: "ed25519SigningKey")
SecureLogger.logKeyOperation(.delete, keyType: "identity keys", success: deletedStatic && deletedSigning) SecureLogger.logKeyOperation("delete", keyType: "identity keys", success: deletedStatic && deletedSigning)
SecureLogger.warning("Panic mode activated - identity cleared", category: .security) SecureLogger.log("Panic mode activated - identity cleared", category: SecureLogger.security, level: .warning)
// Stop rekey timer // Stop rekey timer
stopRekeyTimer() stopRekeyTimer()
} }
@@ -297,7 +281,7 @@ final class NoiseEncryptionService {
let signature = try signingKey.signature(for: data) let signature = try signingKey.signature(for: data)
return signature return signature
} catch { } catch {
SecureLogger.error(error, context: "Failed to sign data") SecureLogger.logError(error, context: "Failed to sign data", category: SecureLogger.noise)
return nil return nil
} }
} }
@@ -308,7 +292,7 @@ final class NoiseEncryptionService {
let signingPublicKey = try Curve25519.Signing.PublicKey(rawRepresentation: publicKey) let signingPublicKey = try Curve25519.Signing.PublicKey(rawRepresentation: publicKey)
return signingPublicKey.isValidSignature(signature, for: data) return signingPublicKey.isValidSignature(signature, for: data)
} catch { } catch {
SecureLogger.error(error, context: "Failed to verify signature") SecureLogger.logError(error, context: "Failed to verify signature", category: SecureLogger.noise)
return false return false
} }
} }
@@ -404,21 +388,21 @@ final class NoiseEncryptionService {
// MARK: - Handshake Management // MARK: - Handshake Management
/// Initiate a Noise handshake with a peer /// Initiate a Noise handshake with a peer
func initiateHandshake(with peerID: PeerID) throws -> Data { func initiateHandshake(with peerID: String) throws -> Data {
// Validate peer ID // Validate peer ID
guard peerID.isValid else { guard NoiseSecurityValidator.validatePeerID(peerID) else {
SecureLogger.warning(.authenticationFailed(peerID: peerID.id)) SecureLogger.logSecurityEvent(.authenticationFailed(peerID: peerID), level: .warning)
throw NoiseSecurityError.invalidPeerID throw NoiseSecurityError.invalidPeerID
} }
// Check rate limit // Check rate limit
guard rateLimiter.allowHandshake(from: peerID) else { guard rateLimiter.allowHandshake(from: peerID) else {
SecureLogger.warning(.authenticationFailed(peerID: "Rate limited: \(peerID)")) SecureLogger.logSecurityEvent(.authenticationFailed(peerID: "Rate limited: \(peerID)"), level: .warning)
throw NoiseSecurityError.rateLimitExceeded throw NoiseSecurityError.rateLimitExceeded
} }
SecureLogger.info(.handshakeStarted(peerID: peerID.id)) SecureLogger.logSecurityEvent(.handshakeStarted(peerID: peerID))
// Return raw handshake data without wrapper // Return raw handshake data without wrapper
// The Noise protocol handles its own message format // The Noise protocol handles its own message format
@@ -427,23 +411,23 @@ final class NoiseEncryptionService {
} }
/// Process an incoming handshake message /// Process an incoming handshake message
func processHandshakeMessage(from peerID: PeerID, message: Data) throws -> Data? { func processHandshakeMessage(from peerID: String, message: Data) throws -> Data? {
// Validate peer ID // Validate peer ID
guard peerID.isValid else { guard NoiseSecurityValidator.validatePeerID(peerID) else {
SecureLogger.warning(.authenticationFailed(peerID: peerID.id)) SecureLogger.logSecurityEvent(.authenticationFailed(peerID: peerID), level: .warning)
throw NoiseSecurityError.invalidPeerID throw NoiseSecurityError.invalidPeerID
} }
// Validate message size // Validate message size
guard NoiseSecurityValidator.validateHandshakeMessageSize(message) else { guard NoiseSecurityValidator.validateHandshakeMessageSize(message) else {
SecureLogger.warning(.handshakeFailed(peerID: peerID.id, error: "Message too large")) SecureLogger.logSecurityEvent(.handshakeFailed(peerID: peerID, error: "Message too large"), level: .warning)
throw NoiseSecurityError.messageTooLarge throw NoiseSecurityError.messageTooLarge
} }
// Check rate limit // Check rate limit
guard rateLimiter.allowHandshake(from: peerID) else { guard rateLimiter.allowHandshake(from: peerID) else {
SecureLogger.warning(.authenticationFailed(peerID: "Rate limited: \(peerID)")) SecureLogger.logSecurityEvent(.authenticationFailed(peerID: "Rate limited: \(peerID)"), level: .warning)
throw NoiseSecurityError.rateLimitExceeded throw NoiseSecurityError.rateLimitExceeded
} }
@@ -457,19 +441,19 @@ final class NoiseEncryptionService {
} }
/// Check if we have an established session with a peer /// Check if we have an established session with a peer
func hasEstablishedSession(with peerID: PeerID) -> Bool { func hasEstablishedSession(with peerID: String) -> Bool {
return sessionManager.getSession(for: peerID)?.isEstablished() ?? false return sessionManager.getSession(for: peerID)?.isEstablished() ?? false
} }
/// Check if we have a session (established or handshaking) with a peer /// Check if we have a session (established or handshaking) with a peer
func hasSession(with peerID: PeerID) -> Bool { func hasSession(with peerID: String) -> Bool {
return sessionManager.getSession(for: peerID) != nil return sessionManager.getSession(for: peerID) != nil
} }
// MARK: - Encryption/Decryption // MARK: - Encryption/Decryption
/// Encrypt data for a specific peer /// Encrypt data for a specific peer
func encrypt(_ data: Data, for peerID: PeerID) throws -> Data { func encrypt(_ data: Data, for peerID: String) throws -> Data {
// Validate message size // Validate message size
guard NoiseSecurityValidator.validateMessageSize(data) else { guard NoiseSecurityValidator.validateMessageSize(data) else {
throw NoiseSecurityError.messageTooLarge throw NoiseSecurityError.messageTooLarge
@@ -491,7 +475,7 @@ final class NoiseEncryptionService {
} }
/// Decrypt data from a specific peer /// Decrypt data from a specific peer
func decrypt(_ data: Data, from peerID: PeerID) throws -> Data { func decrypt(_ data: Data, from peerID: String) throws -> Data {
// Validate message size // Validate message size
guard NoiseSecurityValidator.validateMessageSize(data) else { guard NoiseSecurityValidator.validateMessageSize(data) else {
throw NoiseSecurityError.messageTooLarge throw NoiseSecurityError.messageTooLarge
@@ -513,26 +497,38 @@ final class NoiseEncryptionService {
// MARK: - Peer Management // MARK: - Peer Management
/// Get fingerprint for a peer /// Get fingerprint for a peer
func getPeerFingerprint(_ peerID: PeerID) -> String? { func getPeerFingerprint(_ peerID: String) -> String? {
return serviceQueue.sync { return serviceQueue.sync {
return peerFingerprints[peerID] return peerFingerprints[peerID]
} }
} }
func clearEphemeralStateForPanic() { /// Get peer ID for a fingerprint
sessionManager.removeAllSessions() func getPeerID(for fingerprint: String) -> String? {
serviceQueue.sync(flags: .barrier) { return serviceQueue.sync {
peerFingerprints.removeAll() return fingerprintToPeerID[fingerprint]
fingerprintToPeerID.removeAll()
} }
rateLimiter.resetAll() }
/// Remove a peer session
func removePeer(_ peerID: String) {
sessionManager.removeSession(for: peerID)
serviceQueue.sync(flags: .barrier) {
if let fingerprint = peerFingerprints[peerID] {
fingerprintToPeerID.removeValue(forKey: fingerprint)
}
peerFingerprints.removeValue(forKey: peerID)
}
SecureLogger.logSecurityEvent(.sessionExpired(peerID: peerID))
} }
// MARK: - Private Helpers // MARK: - Private Helpers
private func handleSessionEstablished(peerID: PeerID, remoteStaticKey: Curve25519.KeyAgreement.PublicKey) { private func handleSessionEstablished(peerID: String, remoteStaticKey: Curve25519.KeyAgreement.PublicKey) {
// Calculate fingerprint // Calculate fingerprint
let fingerprint = remoteStaticKey.rawRepresentation.sha256Fingerprint() let fingerprint = calculateFingerprint(for: remoteStaticKey)
// Store fingerprint mapping // Store fingerprint mapping
serviceQueue.sync(flags: .barrier) { serviceQueue.sync(flags: .barrier) {
@@ -541,16 +537,20 @@ final class NoiseEncryptionService {
} }
// Log security event // Log security event
SecureLogger.info(.handshakeCompleted(peerID: peerID.id)) SecureLogger.logSecurityEvent(.handshakeCompleted(peerID: peerID))
// Notify all handlers about authentication // Notify all handlers about authentication
serviceQueue.async { [weak self] in serviceQueue.async { [weak self] in
self?.onPeerAuthenticatedHandlers.forEach { handler in self?.onPeerAuthenticatedHandlers.forEach { handler in
handler(peerID.id, fingerprint) handler(peerID, fingerprint)
} }
} }
} }
private func calculateFingerprint(for publicKey: Curve25519.KeyAgreement.PublicKey) -> String {
return publicKey.rawRepresentation.sha256Fingerprint()
}
// MARK: - Session Maintenance // MARK: - Session Maintenance
private func startRekeyTimer() { private func startRekeyTimer() {
@@ -572,12 +572,12 @@ final class NoiseEncryptionService {
// Attempt to rekey the session // Attempt to rekey the session
do { do {
try sessionManager.initiateRekey(for: peerID) try sessionManager.initiateRekey(for: peerID)
SecureLogger.debug("Key rotation initiated for peer: \(peerID)", category: .security) SecureLogger.log("Key rotation initiated for peer: \(peerID)", category: SecureLogger.security, level: .debug)
// Signal that handshake is needed // Signal that handshake is needed
onHandshakeRequired?(peerID) onHandshakeRequired?(peerID)
} catch { } catch {
SecureLogger.error(error, context: "Failed to initiate rekey for peer: \(peerID)", category: .session) SecureLogger.logError(error, context: "Failed to initiate rekey for peer: \(peerID)", category: SecureLogger.session)
} }
} }
} }
+90
View File
@@ -0,0 +1,90 @@
//
// NostrInboxService.swift
// bitchat
//
// Centralizes Nostr subscribe/unsubscribe and event de-duplication for inbox flows.
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import Foundation
@MainActor
final class NostrInboxService {
private var processedIDs: Set<String> = []
private var order: [String] = []
private let cap: Int
init(capacity: Int = TransportConfig.uiProcessedNostrEventsCap) {
self.cap = capacity
}
private func track(_ id: String) -> Bool {
if processedIDs.contains(id) { return false }
processedIDs.insert(id)
order.append(id)
if order.count > cap {
let overflow = order.count - cap
for _ in 0..<overflow {
if let oldest = order.first {
order.removeFirst()
processedIDs.remove(oldest)
}
}
}
return true
}
func reset() {
processedIDs.removeAll()
order.removeAll()
}
// Subscribe to public geohash ephemeral events (kind 20000)
@discardableResult
func subscribeGeohashEphemeral(
geohash: String,
lookbackSeconds: TimeInterval,
limit: Int,
relayCount: Int,
subID: String? = nil,
handler: @escaping (NostrEvent) -> Void
) -> String {
let id = subID ?? "geo-\(geohash)"
let filter = NostrFilter.geohashEphemeral(
geohash,
since: Date().addingTimeInterval(-lookbackSeconds),
limit: limit
)
let relays = GeoRelayDirectory.shared.closestRelays(toGeohash: geohash, count: relayCount)
NostrRelayManager.shared.subscribe(filter: filter, id: id, relayUrls: relays) { [weak self] event in
guard let self = self else { return }
guard event.kind == NostrProtocol.EventKind.ephemeralEvent.rawValue else { return }
guard self.track(event.id) else { return }
handler(event)
}
return id
}
// Subscribe to gift wraps (DMs) for a given pubkey
@discardableResult
func subscribeGiftWrapsFor(
pubkeyHex: String,
lookbackSeconds: TimeInterval,
subID: String? = nil,
handler: @escaping (NostrEvent) -> Void
) -> String {
let id = subID ?? "dm-\(pubkeyHex.prefix(8))"
let filter = NostrFilter.giftWrapsFor(pubkey: pubkeyHex, since: Date().addingTimeInterval(-lookbackSeconds))
NostrRelayManager.shared.subscribe(filter: filter, id: id) { [weak self] event in
guard let self = self else { return }
guard self.track(event.id) else { return }
handler(event)
}
return id
}
func unsubscribe(id: String) {
NostrRelayManager.shared.unsubscribe(id: id)
}
}
+50
View File
@@ -0,0 +1,50 @@
//
// NostrOutboxService.swift
// bitchat
//
// Centralized Nostr outbox for sending PMs and ACKs.
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import Foundation
@MainActor
final class NostrOutboxService {
private let transport: NostrTransport
init(meshService: Transport) {
let t = NostrTransport()
t.senderPeerID = meshService.myPeerID
self.transport = t
}
func sendGeohashPM(content: String, toRecipientHex recipientHex: String, from identity: NostrIdentity, messageID: String) {
transport.sendPrivateMessageGeohash(content: content, toRecipientHex: recipientHex, from: identity, messageID: messageID)
}
func sendGeohashDeliveredAck(messageID: String, toRecipientHex recipientHex: String, from identity: NostrIdentity) {
transport.sendDeliveryAckGeohash(for: messageID, toRecipientHex: recipientHex, from: identity)
}
func sendGeohashReadAck(messageID: String, toRecipientHex recipientHex: String, from identity: NostrIdentity) {
transport.sendReadReceiptGeohash(messageID, toRecipientHex: recipientHex, from: identity)
}
// MARK: - Generic outbox via favorites mapping
func sendPrivate(_ content: String, to peerID: String, recipientNickname: String, messageID: String) {
transport.sendPrivateMessage(content, to: peerID, recipientNickname: recipientNickname, messageID: messageID)
}
func sendReadReceipt(_ receipt: ReadReceipt, to peerID: String) {
transport.sendReadReceipt(receipt, to: peerID)
}
func sendDeliveryAck(for messageID: String, to peerID: String) {
transport.sendDeliveryAck(for: messageID, to: peerID)
}
func sendFavoriteNotification(to peerID: String, isFavorite: Bool) {
transport.sendFavoriteNotification(to: peerID, isFavorite: isFavorite)
}
}
+148 -161
View File
@@ -1,39 +1,28 @@
import BitLogger
import Foundation import Foundation
import Combine import Combine
// Minimal Nostr transport conforming to Transport for offline sending // Minimal Nostr transport conforming to Transport for offline sending
final class NostrTransport: Transport { final class NostrTransport: Transport {
// Provide BLE short peer ID for BitChat embedding
var senderPeerID = PeerID(str: "")
// Throttle READ receipts to avoid relay rate limits
private struct QueuedRead {
let receipt: ReadReceipt
let peerID: PeerID
}
private var readQueue: [QueuedRead] = []
private var isSendingReadAcks = false
private let readAckInterval: TimeInterval = TransportConfig.nostrReadAckInterval
private let keychain: KeychainManagerProtocol
private let idBridge: NostrIdentityBridge
init(keychain: KeychainManagerProtocol, idBridge: NostrIdentityBridge) {
self.keychain = keychain
self.idBridge = idBridge
}
// MARK: - Transport Protocol Conformance
weak var delegate: BitchatDelegate? weak var delegate: BitchatDelegate?
weak var peerEventsDelegate: TransportPeerEventsDelegate? weak var peerEventsDelegate: TransportPeerEventsDelegate?
var peerSnapshotPublisher: AnyPublisher<[TransportPeerSnapshot], Never> { var peerSnapshotPublisher: AnyPublisher<[TransportPeerSnapshot], Never> {
Just([]).eraseToAnyPublisher() Just([]).eraseToAnyPublisher()
} }
func currentPeerSnapshots() -> [TransportPeerSnapshot] { [] } func currentPeerSnapshots() -> [TransportPeerSnapshot] { [] }
var myPeerID: PeerID { senderPeerID } // Provide BLE short peer ID for BitChat embedding
var senderPeerID: String = ""
// Throttle READ receipts to avoid relay rate limits
private struct QueuedRead {
let receipt: ReadReceipt
let peerID: String
}
private var readQueue: [QueuedRead] = []
private var isSendingReadAcks = false
private let readAckInterval: TimeInterval = TransportConfig.nostrReadAckInterval
var myPeerID: String { senderPeerID }
var myNickname: String { "" } var myNickname: String { "" }
func setNickname(_ nickname: String) { /* not used for Nostr */ } func setNickname(_ nickname: String) { /* not used for Nostr */ }
@@ -41,167 +30,62 @@ final class NostrTransport: Transport {
func stopServices() { /* no-op */ } func stopServices() { /* no-op */ }
func emergencyDisconnectAll() { /* no-op */ } func emergencyDisconnectAll() { /* no-op */ }
func isPeerConnected(_ peerID: PeerID) -> Bool { false } func isPeerConnected(_ peerID: String) -> Bool { false }
func isPeerReachable(_ peerID: PeerID) -> Bool { false } func isPeerReachable(_ peerID: String) -> Bool { false }
func peerNickname(peerID: PeerID) -> String? { nil } func peerNickname(peerID: String) -> String? { nil }
func getPeerNicknames() -> [PeerID : String] { [:] } func getPeerNicknames() -> [String : String] { [:] }
func getFingerprint(for peerID: PeerID) -> String? { nil }
func getNoiseSessionState(for peerID: PeerID) -> LazyHandshakeState { .none }
func triggerHandshake(with peerID: PeerID) { /* no-op */ }
func getFingerprint(for peerID: String) -> String? { nil }
func getNoiseSessionState(for peerID: String) -> LazyHandshakeState { .none }
func triggerHandshake(with peerID: String) { /* no-op */ }
// Nostr does not use Noise sessions here; return a cached placeholder to avoid reallocation // Nostr does not use Noise sessions here; return a cached placeholder to avoid reallocation
private static var cachedNoiseService: NoiseEncryptionService? private static var cachedNoiseService: NoiseEncryptionService = {
func getNoiseService() -> NoiseEncryptionService { NoiseEncryptionService()
if let noiseService = Self.cachedNoiseService { }()
return noiseService func getNoiseService() -> NoiseEncryptionService { Self.cachedNoiseService }
}
let noiseService = NoiseEncryptionService(keychain: keychain)
Self.cachedNoiseService = noiseService
return noiseService
}
// Public broadcast not supported over Nostr here // Public broadcast not supported over Nostr here
func sendMessage(_ content: String, mentions: [String]) { /* no-op */ } func sendMessage(_ content: String, mentions: [String]) { /* no-op */ }
func sendPrivateMessage(_ content: String, to peerID: PeerID, recipientNickname: String, messageID: String) { func sendPrivateMessage(_ content: String, to peerID: String, recipientNickname: String, messageID: String) {
Task { @MainActor in Task { @MainActor in
guard let recipientNpub = resolveRecipientNpub(for: peerID) else { return } guard let recipientNpub = resolveRecipientNpub(for: peerID) else { return }
guard let senderIdentity = try? idBridge.getCurrentNostrIdentity() else { return } guard let senderIdentity = try? NostrIdentityBridge.getCurrentNostrIdentity() else { return }
SecureLogger.debug("NostrTransport: preparing PM to \(recipientNpub.prefix(16))… for peerID \(peerID.id.prefix(8))… id=\(messageID.prefix(8))", category: .session) SecureLogger.log("NostrTransport: preparing PM to \(recipientNpub.prefix(16))… for peerID \(peerID.prefix(8))… id=\(messageID.prefix(8))",
category: SecureLogger.session, level: .debug)
// Convert recipient npub -> hex (x-only) // Convert recipient npub -> hex (x-only)
let recipientHex: String let recipientHex: String
do { do {
let (hrp, data) = try Bech32.decode(recipientNpub) let (hrp, data) = try Bech32.decode(recipientNpub)
guard hrp == "npub" else { guard hrp == "npub" else {
SecureLogger.error("NostrTransport: recipient key not npub (hrp=\(hrp))", category: .session) SecureLogger.log("NostrTransport: recipient key not npub (hrp=\(hrp))", category: SecureLogger.session, level: .error)
return return
} }
recipientHex = data.hexEncodedString() recipientHex = data.hexEncodedString()
} catch { } catch {
SecureLogger.error("NostrTransport: failed to decode npub -> hex: \(error)", category: .session) SecureLogger.log("NostrTransport: failed to decode npub -> hex: \(error)", category: SecureLogger.session, level: .error)
return return
} }
guard let embedded = NostrEmbeddedBitChat.encodePMForNostr(content: content, messageID: messageID, recipientPeerID: peerID.id, senderPeerID: senderPeerID.id) else { guard let embedded = NostrEmbeddedBitChat.encodePMForNostr(content: content, messageID: messageID, recipientPeerID: peerID, senderPeerID: senderPeerID) else {
SecureLogger.error("NostrTransport: failed to embed PM packet", category: .session) SecureLogger.log("NostrTransport: failed to embed PM packet", category: SecureLogger.session, level: .error)
return return
} }
guard let event = try? NostrProtocol.createPrivateMessage(content: embedded, recipientPubkey: recipientHex, senderIdentity: senderIdentity) else { guard let event = try? NostrProtocol.createPrivateMessage(content: embedded, recipientPubkey: recipientHex, senderIdentity: senderIdentity) else {
SecureLogger.error("NostrTransport: failed to build Nostr event for PM", category: .session) SecureLogger.log("NostrTransport: failed to build Nostr event for PM", category: SecureLogger.session, level: .error)
return return
} }
SecureLogger.debug("NostrTransport: sending PM giftWrap id=\(event.id.prefix(16))", category: .session) SecureLogger.log("NostrTransport: sending PM giftWrap id=\(event.id.prefix(16))",
category: SecureLogger.session, level: .debug)
NostrRelayManager.shared.sendEvent(event) NostrRelayManager.shared.sendEvent(event)
} }
} }
func sendReadReceipt(_ receipt: ReadReceipt, to peerID: PeerID) { func sendReadReceipt(_ receipt: ReadReceipt, to peerID: String) {
// Enqueue and process with throttling to avoid relay rate limits // Enqueue and process with throttling to avoid relay rate limits
readQueue.append(QueuedRead(receipt: receipt, peerID: peerID)) readQueue.append(QueuedRead(receipt: receipt, peerID: peerID))
processReadQueueIfNeeded() processReadQueueIfNeeded()
} }
func sendFavoriteNotification(to peerID: PeerID, isFavorite: Bool) {
Task { @MainActor in
guard let recipientNpub = resolveRecipientNpub(for: peerID) else { return }
guard let senderIdentity = try? idBridge.getCurrentNostrIdentity() else { return }
let content = isFavorite ? "[FAVORITED]:\(senderIdentity.npub)" : "[UNFAVORITED]:\(senderIdentity.npub)"
SecureLogger.debug("NostrTransport: preparing FAVORITE(\(isFavorite)) to \(recipientNpub.prefix(16))", category: .session)
// Convert recipient npub -> hex
let recipientHex: String
do {
let (hrp, data) = try Bech32.decode(recipientNpub)
guard hrp == "npub" else { return }
recipientHex = data.hexEncodedString()
} catch { return }
guard let embedded = NostrEmbeddedBitChat.encodePMForNostr(content: content, messageID: UUID().uuidString, recipientPeerID: peerID.id, senderPeerID: senderPeerID.id) else {
SecureLogger.error("NostrTransport: failed to embed favorite notification", category: .session)
return
}
guard let event = try? NostrProtocol.createPrivateMessage(content: embedded, recipientPubkey: recipientHex, senderIdentity: senderIdentity) else {
SecureLogger.error("NostrTransport: failed to build Nostr event for favorite notification", category: .session)
return
}
SecureLogger.debug("NostrTransport: sending favorite giftWrap id=\(event.id.prefix(16))", category: .session)
NostrRelayManager.shared.sendEvent(event)
}
}
func sendBroadcastAnnounce() { /* no-op for Nostr */ }
func sendDeliveryAck(for messageID: String, to peerID: PeerID) {
Task { @MainActor in
guard let recipientNpub = resolveRecipientNpub(for: peerID) else { return }
guard let senderIdentity = try? idBridge.getCurrentNostrIdentity() else { return }
SecureLogger.debug("NostrTransport: preparing DELIVERED ack for id=\(messageID.prefix(8))… to \(recipientNpub.prefix(16))", category: .session)
let recipientHex: String
do {
let (hrp, data) = try Bech32.decode(recipientNpub)
guard hrp == "npub" else { return }
recipientHex = data.hexEncodedString()
} catch { return }
guard let ack = NostrEmbeddedBitChat.encodeAckForNostr(type: .delivered, messageID: messageID, recipientPeerID: peerID.id, senderPeerID: senderPeerID.id) else {
SecureLogger.error("NostrTransport: failed to embed DELIVERED ack", category: .session)
return
}
guard let event = try? NostrProtocol.createPrivateMessage(content: ack, recipientPubkey: recipientHex, senderIdentity: senderIdentity) else {
SecureLogger.error("NostrTransport: failed to build Nostr event for DELIVERED ack", category: .session)
return
}
SecureLogger.debug("NostrTransport: sending DELIVERED ack giftWrap id=\(event.id.prefix(16))", category: .session)
NostrRelayManager.shared.sendEvent(event)
}
}
}
// MARK: - Geohash Helpers
extension NostrTransport {
// MARK: Geohash ACK helpers
func sendDeliveryAckGeohash(for messageID: String, toRecipientHex recipientHex: String, from identity: NostrIdentity) {
Task { @MainActor in
SecureLogger.debug("GeoDM: send DELIVERED -> recip=\(recipientHex.prefix(8))… mid=\(messageID.prefix(8))… from=\(identity.publicKeyHex.prefix(8))", category: .session)
guard let embedded = NostrEmbeddedBitChat.encodeAckForNostrNoRecipient(type: .delivered, messageID: messageID, senderPeerID: senderPeerID.id) else { return }
guard let event = try? NostrProtocol.createPrivateMessage(content: embedded, recipientPubkey: recipientHex, senderIdentity: identity) else { return }
NostrRelayManager.registerPendingGiftWrap(id: event.id)
NostrRelayManager.shared.sendEvent(event)
}
}
func sendReadReceiptGeohash(_ messageID: String, toRecipientHex recipientHex: String, from identity: NostrIdentity) {
Task { @MainActor in
SecureLogger.debug("GeoDM: send READ -> recip=\(recipientHex.prefix(8))… mid=\(messageID.prefix(8))… from=\(identity.publicKeyHex.prefix(8))", category: .session)
guard let embedded = NostrEmbeddedBitChat.encodeAckForNostrNoRecipient(type: .readReceipt, messageID: messageID, senderPeerID: senderPeerID.id) else { return }
guard let event = try? NostrProtocol.createPrivateMessage(content: embedded, recipientPubkey: recipientHex, senderIdentity: identity) else { return }
NostrRelayManager.registerPendingGiftWrap(id: event.id)
NostrRelayManager.shared.sendEvent(event)
}
}
// MARK: Geohash DMs (per-geohash identity)
func sendPrivateMessageGeohash(content: String, toRecipientHex recipientHex: String, from identity: NostrIdentity, messageID: String) {
Task { @MainActor in
guard !recipientHex.isEmpty else { return }
SecureLogger.debug("GeoDM: send PM -> recip=\(recipientHex.prefix(8))… mid=\(messageID.prefix(8))… from=\(identity.publicKeyHex.prefix(8))", category: .session)
// Build embedded BitChat packet without recipient peer ID
guard let embedded = NostrEmbeddedBitChat.encodePMForNostrNoRecipient(content: content, messageID: messageID, senderPeerID: senderPeerID.id) else {
SecureLogger.error("NostrTransport: failed to embed geohash PM packet", category: .session)
return
}
guard let event = try? NostrProtocol.createPrivateMessage(content: embedded, recipientPubkey: recipientHex, senderIdentity: identity) else {
SecureLogger.error("NostrTransport: failed to build Nostr event for geohash PM", category: .session)
return
}
SecureLogger.debug("NostrTransport: sending geohash PM giftWrap id=\(event.id.prefix(16))", category: .session)
NostrRelayManager.registerPendingGiftWrap(id: event.id)
NostrRelayManager.shared.sendEvent(event)
}
}
}
// MARK: - Private Helpers
extension NostrTransport {
private func processReadQueueIfNeeded() { private func processReadQueueIfNeeded() {
guard !isSendingReadAcks else { return } guard !isSendingReadAcks else { return }
guard !readQueue.isEmpty else { return } guard !readQueue.isEmpty else { return }
@@ -214,8 +98,9 @@ extension NostrTransport {
let item = readQueue.removeFirst() let item = readQueue.removeFirst()
Task { @MainActor in Task { @MainActor in
guard let recipientNpub = resolveRecipientNpub(for: item.peerID) else { scheduleNextReadAck(); return } guard let recipientNpub = resolveRecipientNpub(for: item.peerID) else { scheduleNextReadAck(); return }
guard let senderIdentity = try? idBridge.getCurrentNostrIdentity() else { scheduleNextReadAck(); return } guard let senderIdentity = try? NostrIdentityBridge.getCurrentNostrIdentity() else { scheduleNextReadAck(); return }
SecureLogger.debug("NostrTransport: preparing READ ack for id=\(item.receipt.originalMessageID.prefix(8))… to \(recipientNpub.prefix(16))", category: .session) SecureLogger.log("NostrTransport: preparing READ ack for id=\(item.receipt.originalMessageID.prefix(8))… to \(recipientNpub.prefix(16))",
category: SecureLogger.session, level: .debug)
// Convert recipient npub -> hex // Convert recipient npub -> hex
let recipientHex: String let recipientHex: String
do { do {
@@ -223,15 +108,16 @@ extension NostrTransport {
guard hrp == "npub" else { scheduleNextReadAck(); return } guard hrp == "npub" else { scheduleNextReadAck(); return }
recipientHex = data.hexEncodedString() recipientHex = data.hexEncodedString()
} catch { scheduleNextReadAck(); return } } catch { scheduleNextReadAck(); return }
guard let ack = NostrEmbeddedBitChat.encodeAckForNostr(type: .readReceipt, messageID: item.receipt.originalMessageID, recipientPeerID: item.peerID.id, senderPeerID: senderPeerID.id) else { guard let ack = NostrEmbeddedBitChat.encodeAckForNostr(type: .readReceipt, messageID: item.receipt.originalMessageID, recipientPeerID: item.peerID, senderPeerID: senderPeerID) else {
SecureLogger.error("NostrTransport: failed to embed READ ack", category: .session) SecureLogger.log("NostrTransport: failed to embed READ ack", category: SecureLogger.session, level: .error)
scheduleNextReadAck(); return scheduleNextReadAck(); return
} }
guard let event = try? NostrProtocol.createPrivateMessage(content: ack, recipientPubkey: recipientHex, senderIdentity: senderIdentity) else { guard let event = try? NostrProtocol.createPrivateMessage(content: ack, recipientPubkey: recipientHex, senderIdentity: senderIdentity) else {
SecureLogger.error("NostrTransport: failed to build Nostr event for READ ack", category: .session) SecureLogger.log("NostrTransport: failed to build Nostr event for READ ack", category: SecureLogger.session, level: .error)
scheduleNextReadAck(); return scheduleNextReadAck(); return
} }
SecureLogger.debug("NostrTransport: sending READ ack giftWrap id=\(event.id.prefix(16))", category: .session) SecureLogger.log("NostrTransport: sending READ ack giftWrap id=\(event.id.prefix(16))",
category: SecureLogger.session, level: .debug)
NostrRelayManager.shared.sendEvent(event) NostrRelayManager.shared.sendEvent(event)
scheduleNextReadAck() scheduleNextReadAck()
} }
@@ -245,18 +131,119 @@ extension NostrTransport {
} }
} }
func sendFavoriteNotification(to peerID: String, isFavorite: Bool) {
Task { @MainActor in
guard let recipientNpub = resolveRecipientNpub(for: peerID) else { return }
guard let senderIdentity = try? NostrIdentityBridge.getCurrentNostrIdentity() else { return }
let content = isFavorite ? "[FAVORITED]:\(senderIdentity.npub)" : "[UNFAVORITED]:\(senderIdentity.npub)"
SecureLogger.log("NostrTransport: preparing FAVORITE(\(isFavorite)) to \(recipientNpub.prefix(16))",
category: SecureLogger.session, level: .debug)
// Convert recipient npub -> hex
let recipientHex: String
do {
let (hrp, data) = try Bech32.decode(recipientNpub)
guard hrp == "npub" else { return }
recipientHex = data.hexEncodedString()
} catch { return }
guard let embedded = NostrEmbeddedBitChat.encodePMForNostr(content: content, messageID: UUID().uuidString, recipientPeerID: peerID, senderPeerID: senderPeerID) else {
SecureLogger.log("NostrTransport: failed to embed favorite notification", category: SecureLogger.session, level: .error)
return
}
guard let event = try? NostrProtocol.createPrivateMessage(content: embedded, recipientPubkey: recipientHex, senderIdentity: senderIdentity) else {
SecureLogger.log("NostrTransport: failed to build Nostr event for favorite notification", category: SecureLogger.session, level: .error)
return
}
SecureLogger.log("NostrTransport: sending favorite giftWrap id=\(event.id.prefix(16))",
category: SecureLogger.session, level: .debug)
NostrRelayManager.shared.sendEvent(event)
}
}
// MARK: - Helpers
@MainActor @MainActor
private func resolveRecipientNpub(for peerID: PeerID) -> String? { private func resolveRecipientNpub(for peerID: String) -> String? {
if let noiseKey = Data(hexString: peerID.id), if let noiseKey = Data(hexString: peerID),
let fav = FavoritesPersistenceService.shared.getFavoriteStatus(for: noiseKey), let fav = FavoritesPersistenceService.shared.getFavoriteStatus(for: noiseKey),
let npub = fav.peerNostrPublicKey { let npub = fav.peerNostrPublicKey {
return npub return npub
} }
if peerID.id.count == 16, if PeerIDResolver.isShortID(peerID),
let fav = FavoritesPersistenceService.shared.getFavoriteStatus(forPeerID: peerID), let fav = FavoritesPersistenceService.shared.getFavoriteStatus(forPeerID: peerID),
let npub = fav.peerNostrPublicKey { let npub = fav.peerNostrPublicKey {
return npub return npub
} }
return nil return nil
} }
func sendBroadcastAnnounce() { /* no-op for Nostr */ }
func sendDeliveryAck(for messageID: String, to peerID: String) {
Task { @MainActor in
guard let recipientNpub = resolveRecipientNpub(for: peerID) else { return }
guard let senderIdentity = try? NostrIdentityBridge.getCurrentNostrIdentity() else { return }
SecureLogger.log("NostrTransport: preparing DELIVERED ack for id=\(messageID.prefix(8))… to \(recipientNpub.prefix(16))",
category: SecureLogger.session, level: .debug)
let recipientHex: String
do {
let (hrp, data) = try Bech32.decode(recipientNpub)
guard hrp == "npub" else { return }
recipientHex = data.hexEncodedString()
} catch { return }
guard let ack = NostrEmbeddedBitChat.encodeAckForNostr(type: .delivered, messageID: messageID, recipientPeerID: peerID, senderPeerID: senderPeerID) else {
SecureLogger.log("NostrTransport: failed to embed DELIVERED ack", category: SecureLogger.session, level: .error)
return
}
guard let event = try? NostrProtocol.createPrivateMessage(content: ack, recipientPubkey: recipientHex, senderIdentity: senderIdentity) else {
SecureLogger.log("NostrTransport: failed to build Nostr event for DELIVERED ack", category: SecureLogger.session, level: .error)
return
}
SecureLogger.log("NostrTransport: sending DELIVERED ack giftWrap id=\(event.id.prefix(16))",
category: SecureLogger.session, level: .debug)
NostrRelayManager.shared.sendEvent(event)
}
}
// MARK: - Geohash ACK helpers
func sendDeliveryAckGeohash(for messageID: String, toRecipientHex recipientHex: String, from identity: NostrIdentity) {
Task { @MainActor in
SecureLogger.log("GeoDM: send DELIVERED -> recip=\(recipientHex.prefix(8))… mid=\(messageID.prefix(8))… from=\(identity.publicKeyHex.prefix(8))",
category: SecureLogger.session, level: .debug)
guard let embedded = NostrEmbeddedBitChat.encodeAckForNostrNoRecipient(type: .delivered, messageID: messageID, senderPeerID: senderPeerID) else { return }
guard let event = try? NostrProtocol.createPrivateMessage(content: embedded, recipientPubkey: recipientHex, senderIdentity: identity) else { return }
NostrRelayManager.registerPendingGiftWrap(id: event.id)
NostrRelayManager.shared.sendEvent(event)
}
}
func sendReadReceiptGeohash(_ messageID: String, toRecipientHex recipientHex: String, from identity: NostrIdentity) {
Task { @MainActor in
SecureLogger.log("GeoDM: send READ -> recip=\(recipientHex.prefix(8))… mid=\(messageID.prefix(8))… from=\(identity.publicKeyHex.prefix(8))",
category: SecureLogger.session, level: .debug)
guard let embedded = NostrEmbeddedBitChat.encodeAckForNostrNoRecipient(type: .readReceipt, messageID: messageID, senderPeerID: senderPeerID) else { return }
guard let event = try? NostrProtocol.createPrivateMessage(content: embedded, recipientPubkey: recipientHex, senderIdentity: identity) else { return }
NostrRelayManager.registerPendingGiftWrap(id: event.id)
NostrRelayManager.shared.sendEvent(event)
}
}
// MARK: - Geohash DMs (per-geohash identity)
func sendPrivateMessageGeohash(content: String, toRecipientHex recipientHex: String, from identity: NostrIdentity, messageID: String) {
Task { @MainActor in
guard !recipientHex.isEmpty else { return }
SecureLogger.log("GeoDM: send PM -> recip=\(recipientHex.prefix(8))… mid=\(messageID.prefix(8))… from=\(identity.publicKeyHex.prefix(8))",
category: SecureLogger.session, level: .debug)
// Build embedded BitChat packet without recipient peer ID
guard let embedded = NostrEmbeddedBitChat.encodePMForNostrNoRecipient(content: content, messageID: messageID, senderPeerID: senderPeerID) else {
SecureLogger.log("NostrTransport: failed to embed geohash PM packet", category: SecureLogger.session, level: .error)
return
}
guard let event = try? NostrProtocol.createPrivateMessage(content: embedded, recipientPubkey: recipientHex, senderIdentity: identity) else {
SecureLogger.log("NostrTransport: failed to build Nostr event for geohash PM", category: SecureLogger.session, level: .error)
return
}
SecureLogger.log("NostrTransport: sending geohash PM giftWrap id=\(event.id.prefix(16))",
category: SecureLogger.session, level: .debug)
NostrRelayManager.registerPendingGiftWrap(id: event.id)
NostrRelayManager.shared.sendEvent(event)
}
}
} }
+22 -2
View File
@@ -14,7 +14,7 @@ import UIKit
import AppKit import AppKit
#endif #endif
final class NotificationService { class NotificationService {
static let shared = NotificationService() static let shared = NotificationService()
private init() {} private init() {}
@@ -62,7 +62,7 @@ final class NotificationService {
} }
func sendPrivateMessageNotification(from sender: String, message: String, peerID: String) { func sendPrivateMessageNotification(from sender: String, message: String, peerID: String) {
let title = "🔒 DM from \(sender)" let title = "🔒 private message from \(sender)"
let body = message let body = message
let identifier = "private-\(UUID().uuidString)" let identifier = "private-\(UUID().uuidString)"
let userInfo = ["peerID": peerID, "senderName": sender] let userInfo = ["peerID": peerID, "senderName": sender]
@@ -70,6 +70,26 @@ final class NotificationService {
sendLocalNotification(title: title, body: body, identifier: identifier, userInfo: userInfo) sendLocalNotification(title: title, body: body, identifier: identifier, userInfo: userInfo)
} }
func sendFavoriteOnlineNotification(nickname: String) {
// Send directly without checking app state for favorites
DispatchQueue.main.async {
let content = UNMutableNotificationContent()
content.title = "\(nickname) is online!"
content.body = "wanna get in there?"
content.sound = .default
let request = UNNotificationRequest(
identifier: "favorite-online-\(UUID().uuidString)",
content: content,
trigger: nil
)
UNUserNotificationCenter.current().add(request) { _ in
// Notification added
}
}
}
// Geohash public chat notification with deep link to a specific geohash // Geohash public chat notification with deep link to a specific geohash
func sendGeohashActivityNotification(geohash: String, titlePrefix: String = "#", bodyPreview: String) { func sendGeohashActivityNotification(geohash: String, titlePrefix: String = "#", bodyPreview: String) {
let title = "\(titlePrefix)\(geohash)" let title = "\(titlePrefix)\(geohash)"
@@ -1,133 +0,0 @@
//
// NotificationStreamAssembler.swift
// bitchat
//
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import BitLogger
import Foundation
struct NotificationStreamAssembler {
private var buffer = Data()
private var pendingFrameStartedAt: DispatchTime?
private var pendingFrameExpectedLength: Int = 0
private mutating func resetState() {
buffer.removeAll(keepingCapacity: false)
pendingFrameStartedAt = nil
pendingFrameExpectedLength = 0
}
mutating func append(_ chunk: Data) -> (frames: [Data], droppedPrefixes: [UInt8], reset: Bool) {
guard !chunk.isEmpty else { return ([], [], false) }
buffer.append(chunk)
var frames: [Data] = []
var dropped: [UInt8] = []
var didReset = false
let now = DispatchTime.now()
let maxFrameLength = TransportConfig.bleNotificationAssemblerHardCapBytes
let minimumFramePrefix = BinaryProtocol.v1HeaderSize + BinaryProtocol.senderIDSize
if buffer.count > TransportConfig.bleNotificationAssemblerHardCapBytes {
SecureLogger.error("❌ Notification assembler overflow (\(buffer.count) bytes); dropping partial frame", category: .session)
resetState()
return ([], [], true)
}
while buffer.count >= minimumFramePrefix {
guard let version = buffer.first else { break }
guard version == 1 || version == 2 else {
dropped.append(buffer.removeFirst())
pendingFrameStartedAt = nil
pendingFrameExpectedLength = 0
continue
}
guard let headerSize = BinaryProtocol.headerSize(for: version) else {
dropped.append(buffer.removeFirst())
pendingFrameStartedAt = nil
pendingFrameExpectedLength = 0
continue
}
let framePrefix = headerSize + BinaryProtocol.senderIDSize
guard buffer.count >= framePrefix else { break }
let flagsIndex = buffer.startIndex + BinaryProtocol.Offsets.flags
guard flagsIndex < buffer.endIndex else { break }
let flags = buffer[flagsIndex]
let hasRecipient = (flags & BinaryProtocol.Flags.hasRecipient) != 0
let hasSignature = (flags & BinaryProtocol.Flags.hasSignature) != 0
let isCompressed = (flags & BinaryProtocol.Flags.isCompressed) != 0
let lengthOffset = 12
let payloadLength: Int
if version == 2 {
let lengthIndex = buffer.startIndex + lengthOffset
payloadLength =
(Int(buffer[lengthIndex]) << 24) |
(Int(buffer[lengthIndex + 1]) << 16) |
(Int(buffer[lengthIndex + 2]) << 8) |
Int(buffer[lengthIndex + 3])
} else {
let lengthIndex = buffer.startIndex + lengthOffset
payloadLength = (Int(buffer[lengthIndex]) << 8) | Int(buffer[lengthIndex + 1])
}
var frameLength = framePrefix + payloadLength
if hasRecipient { frameLength += BinaryProtocol.recipientIDSize }
if hasSignature { frameLength += BinaryProtocol.signatureSize }
if isCompressed {
let rawLengthFieldBytes = (version == 2) ? 4 : 2
if payloadLength < rawLengthFieldBytes {
SecureLogger.error("❌ Invalid compressed payload length (\(payloadLength))", category: .session)
resetState()
didReset = true
break
}
}
guard frameLength > 0, frameLength <= maxFrameLength else {
SecureLogger.error("❌ Notification frame length \(frameLength) invalid (cap=\(maxFrameLength)); resetting stream", category: .session)
resetState()
didReset = true
break
}
if buffer.count < frameLength {
let remaining = frameLength - buffer.count
if pendingFrameStartedAt == nil || frameLength != pendingFrameExpectedLength {
pendingFrameStartedAt = now
pendingFrameExpectedLength = frameLength
} else if let started = pendingFrameStartedAt {
let elapsed = now.uptimeNanoseconds - started.uptimeNanoseconds
let threshold = UInt64(TransportConfig.bleAssemblerStallResetMs) * 1_000_000
if elapsed >= threshold {
SecureLogger.debug("📉 Resetting notification assembler after waiting \(remaining)B for \(TransportConfig.bleAssemblerStallResetMs)ms", category: .session)
resetState()
didReset = true
} else {
SecureLogger.debug("⌛ Waiting for remaining \(remaining)B to complete BLE frame", category: .session)
}
}
break
}
pendingFrameStartedAt = nil
pendingFrameExpectedLength = 0
let frame = Data(buffer.prefix(frameLength))
frames.append(frame)
buffer.removeFirst(frameLength)
}
if !buffer.isEmpty, buffer.allSatisfy({ $0 == 0 }) {
resetState()
}
return (frames, dropped, didReset)
}
}
+148 -29
View File
@@ -6,32 +6,32 @@
// This is free and unencumbered software released into the public domain. // This is free and unencumbered software released into the public domain.
// //
import BitLogger
import Foundation import Foundation
import SwiftUI import SwiftUI
/// Manages all private chat functionality /// Manages all private chat functionality
final class PrivateChatManager: ObservableObject { class PrivateChatManager: ObservableObject {
@Published var privateChats: [PeerID: [BitchatMessage]] = [:] @Published var privateChats: [String: [BitchatMessage]] = [:]
@Published var selectedPeer: PeerID? = nil @Published var selectedPeer: String? = nil
@Published var unreadMessages: Set<PeerID> = [] @Published var unreadMessages: Set<String> = []
private var selectedPeerFingerprint: String? = nil private var selectedPeerFingerprint: String? = nil
var sentReadReceipts: Set<String> = [] // Made accessible for ChatViewModel private var readReceiptTracker: ReadReceiptTracker?
weak var meshService: Transport? weak var meshService: Transport?
// Route acks/receipts via MessageRouter (chooses mesh or Nostr) // Route acks/receipts via MessageRouter (chooses mesh or Nostr)
weak var messageRouter: MessageRouter? weak var messageRouter: MessageRouter?
init(meshService: Transport? = nil) { init(meshService: Transport? = nil, readReceiptTracker: ReadReceiptTracker? = nil) {
self.meshService = meshService self.meshService = meshService
self.readReceiptTracker = readReceiptTracker
} }
// Cap for messages stored per private chat // Cap for messages stored per private chat
private let privateChatCap = TransportConfig.privateChatCap private let privateChatCap = TransportConfig.privateChatCap
/// Start a private chat with a peer /// Start a private chat with a peer
func startChat(with peerID: PeerID) { func startChat(with peerID: String) {
selectedPeer = peerID selectedPeer = peerID
// Store fingerprint for persistence across reconnections // Store fingerprint for persistence across reconnections
@@ -54,64 +54,183 @@ final class PrivateChatManager: ObservableObject {
selectedPeerFingerprint = nil selectedPeerFingerprint = nil
} }
/// Remove duplicate messages by ID and keep chronological order /// Send a private message
func sanitizeChat(for peerID: PeerID) { func sendMessage(_ content: String, to peerID: String) {
guard let arr = privateChats[peerID] else { return } guard let meshService = meshService,
if arr.count <= 1 { let peerNickname = meshService.peerNickname(peerID: peerID) else {
return return
} }
var indexByID: [String: Int] = [:] let messageID = UUID().uuidString
indexByID.reserveCapacity(arr.count)
var deduped: [BitchatMessage] = []
deduped.reserveCapacity(arr.count)
for msg in arr.sorted(by: { $0.timestamp < $1.timestamp }) { // Create local message
if let existing = indexByID[msg.id] { let message = BitchatMessage(
deduped[existing] = msg id: messageID,
} else { sender: meshService.myNickname,
indexByID[msg.id] = deduped.count content: content,
deduped.append(msg) timestamp: Date(),
} isRelay: false,
originalSender: nil,
isPrivate: true,
recipientNickname: peerNickname,
senderPeerID: meshService.myPeerID,
mentions: nil,
deliveryStatus: .sending
)
// Add to chat
if privateChats[peerID] == nil { privateChats[peerID] = [] }
privateChats[peerID]?.append(message)
// Enforce per-chat cap on local append
if var arr = privateChats[peerID], arr.count > privateChatCap {
let remove = arr.count - privateChatCap
arr.removeFirst(remove)
privateChats[peerID] = arr
} }
// Send via mesh service
meshService.sendPrivateMessage(content, to: peerID, recipientNickname: peerNickname, messageID: messageID)
}
/// Handle incoming private message
func handleIncomingMessage(_ message: BitchatMessage) {
guard let senderPeerID = message.senderPeerID else { return }
// Initialize chat if needed
if privateChats[senderPeerID] == nil {
privateChats[senderPeerID] = []
}
// Deduplicate by ID: replace existing message if present, else append
if let idx = privateChats[senderPeerID]?.firstIndex(where: { $0.id == message.id }) {
privateChats[senderPeerID]?[idx] = message
} else {
privateChats[senderPeerID]?.append(message)
}
// Sanitize chat to avoid duplicate IDs and sort by timestamp
sanitizeChat(for: senderPeerID)
// Enforce cap after sanitize
if var arr = privateChats[senderPeerID], arr.count > privateChatCap {
let remove = arr.count - privateChatCap
arr.removeFirst(remove)
privateChats[senderPeerID] = arr
}
// Mark as unread if not in this chat
if selectedPeer != senderPeerID {
unreadMessages.insert(senderPeerID)
// Avoid notifying for messages already marked as read (dup/resubscribe cases)
if !(readReceiptTracker?.contains(message.id) ?? false) {
NotificationService.shared.sendPrivateMessageNotification(
from: message.sender,
message: message.content,
peerID: senderPeerID
)
}
} else {
// Send read receipt if viewing this chat
sendReadReceipt(for: message)
}
}
/// Remove duplicate messages by ID and keep chronological order
func sanitizeChat(for peerID: String) {
guard let arr = privateChats[peerID] else { return }
var seen = Set<String>()
var deduped: [BitchatMessage] = []
for msg in arr.sorted(by: { $0.timestamp < $1.timestamp }) {
if !seen.contains(msg.id) {
seen.insert(msg.id)
deduped.append(msg)
} else {
// Replace previous with the latest occurrence (which is later in sort)
if let index = deduped.firstIndex(where: { $0.id == msg.id }) {
deduped[index] = msg
}
}
}
privateChats[peerID] = deduped privateChats[peerID] = deduped
} }
/// Mark messages from a peer as read /// Mark messages from a peer as read
func markAsRead(from peerID: PeerID) { func markAsRead(from peerID: String) {
unreadMessages.remove(peerID) unreadMessages.remove(peerID)
// Send read receipts for unread messages that haven't been sent yet // Send read receipts for unread messages that haven't been sent yet
if let messages = privateChats[peerID] { if let messages = privateChats[peerID] {
for message in messages { for message in messages {
if message.senderPeerID == peerID && !message.isRelay && !sentReadReceipts.contains(message.id) { if message.senderPeerID == peerID && !message.isRelay && !(readReceiptTracker?.contains(message.id) ?? false) {
sendReadReceipt(for: message) sendReadReceipt(for: message)
} }
} }
} }
} }
/// Update the selected peer if fingerprint matches (for reconnections)
func updateSelectedPeer(peers: [String: String]) {
guard let fingerprint = selectedPeerFingerprint else { return }
// Find peer with matching fingerprint
for (peerID, _) in peers {
if meshService?.getFingerprint(for: peerID) == fingerprint {
selectedPeer = peerID
break
}
}
}
/// Get chat messages for current context
func getCurrentMessages() -> [BitchatMessage] {
guard let peer = selectedPeer else { return [] }
return privateChats[peer] ?? []
}
/// Clear a private chat
func clearChat(with peerID: String) {
privateChats[peerID]?.removeAll()
}
/// Handle delivery acknowledgment
func handleDeliveryAck(messageID: String, from peerID: String) {
guard privateChats[peerID] != nil else { return }
if let index = privateChats[peerID]?.firstIndex(where: { $0.id == messageID }) {
privateChats[peerID]?[index].deliveryStatus = .delivered(to: "recipient", at: Date())
}
}
/// Handle read receipt
func handleReadReceipt(messageID: String, from peerID: String) {
guard privateChats[peerID] != nil else { return }
if let index = privateChats[peerID]?.firstIndex(where: { $0.id == messageID }) {
privateChats[peerID]?[index].deliveryStatus = .read(by: "recipient", at: Date())
}
}
// MARK: - Private Methods // MARK: - Private Methods
private func sendReadReceipt(for message: BitchatMessage) { private func sendReadReceipt(for message: BitchatMessage) {
guard !sentReadReceipts.contains(message.id), guard !(readReceiptTracker?.contains(message.id) ?? false),
let senderPeerID = message.senderPeerID else { let senderPeerID = message.senderPeerID else {
return return
} }
sentReadReceipts.insert(message.id) readReceiptTracker?.insert(message.id)
// Create read receipt using the simplified method // Create read receipt using the simplified method
let receipt = ReadReceipt( let receipt = ReadReceipt(
originalMessageID: message.id, originalMessageID: message.id,
readerID: meshService?.myPeerID.id ?? "", readerID: meshService?.myPeerID ?? "",
readerNickname: meshService?.myNickname ?? "" readerNickname: meshService?.myNickname ?? ""
) )
// Route via MessageRouter to avoid handshakeRequired spam when session isn't established // Route via MessageRouter to avoid handshakeRequired spam when session isn't established
if let router = messageRouter { if let router = messageRouter {
SecureLogger.debug("PrivateChatManager: sending READ ack for \(message.id.prefix(8))… to \(senderPeerID.id.prefix(8))… via router", category: .session) SecureLogger.log("PrivateChatManager: sending READ ack for \(message.id.prefix(8))… to \(senderPeerID.prefix(8))… via router",
category: SecureLogger.session, level: .debug)
Task { @MainActor in Task { @MainActor in
router.sendReadReceipt(receipt, to: senderPeerID) router.sendReadReceipt(receipt, to: senderPeerID)
} }
+77
View File
@@ -0,0 +1,77 @@
//
// ReadReceiptTracker.swift
// bitchat
//
// Centralized tracker for sent read receipts with simple persistence.
// This is free and unencumbered software released into the public domain.
// For more information, see <https://unlicense.org>
//
import Foundation
final class ReadReceiptTracker {
private let defaults: UserDefaults
private let key = "sentReadReceipts"
private let queue = DispatchQueue(label: "chat.bitchat.readreceipts", attributes: .concurrent)
private var set: Set<String> = []
init(defaults: UserDefaults = .standard) {
self.defaults = defaults
if let data = defaults.data(forKey: key),
let arr = try? JSONDecoder().decode([String].self, from: data) {
self.set = Set(arr)
}
}
func contains(_ id: String) -> Bool {
queue.sync { set.contains(id) }
}
func insert(_ id: String) {
queue.async(flags: .barrier) {
if self.set.insert(id).inserted { self.persist() }
}
}
func insert<S: Sequence>(_ ids: S) where S.Element == String {
queue.async(flags: .barrier) {
var changed = false
for id in ids { changed = self.set.insert(id).inserted || changed }
if changed { self.persist() }
}
}
func remove(_ id: String) {
queue.async(flags: .barrier) {
if self.set.remove(id) != nil { self.persist() }
}
}
func removeAll() {
queue.async(flags: .barrier) {
if !self.set.isEmpty { self.set.removeAll(); self.persist() }
}
}
/// Keep only IDs present in the allow-list; useful for pruning stale entries.
func prune(toAllowedIDs allowed: Set<String>) {
queue.async(flags: .barrier) {
let newSet = self.set.intersection(allowed)
if newSet.count != self.set.count { self.set = newSet; self.persist() }
}
}
/// Snapshot current set for read-only operations (avoid long-lived copies in hot paths)
func snapshot() -> Set<String> { queue.sync { set } }
private func persist() {
let arr = Array(set)
if let data = try? JSONEncoder().encode(arr) {
defaults.set(data, forKey: key)
} else {
SecureLogger.log("❌ Failed to encode read receipts for persistence",
category: SecureLogger.session, level: .error)
}
}
}
+23 -16
View File
@@ -18,17 +18,13 @@ struct RelayController {
isAnnounce: Bool, isAnnounce: Bool,
degree: Int, degree: Int,
highDegreeThreshold: Int) -> RelayDecision { highDegreeThreshold: Int) -> RelayDecision {
let ttlCap = min(ttl, TransportConfig.messageTTLDefault)
// Suppress obvious non-relays // Suppress obvious non-relays
if ttlCap <= 1 || senderIsSelf { if ttl <= 1 || senderIsSelf { return RelayDecision(shouldRelay: false, newTTL: ttl, delayMs: 0) }
return RelayDecision(shouldRelay: false, newTTL: ttlCap, delayMs: 0)
}
// For session-critical or directed traffic, be deterministic and reliable // For session-critical or directed traffic, be deterministic and reliable
if isHandshake || isDirectedFragment || isDirectedEncrypted { if isHandshake || isDirectedFragment || isDirectedEncrypted {
// Always relay with no TTL cap for these types // Always relay with no TTL cap for these types
let newTTL = ttlCap &- 1 let newTTL = (ttl &- 1)
// Slight jitter to desynchronize without adding too much latency // Slight jitter to desynchronize without adding too much latency
// Tighter for faster multi-hop handshakes and directed DMs // Tighter for faster multi-hop handshakes and directed DMs
let delayRange: ClosedRange<Int> = isHandshake ? 10...35 : 20...60 let delayRange: ClosedRange<Int> = isHandshake ? 10...35 : 20...60
@@ -36,17 +32,28 @@ struct RelayController {
return RelayDecision(shouldRelay: true, newTTL: newTTL, delayMs: delayMs) return RelayDecision(shouldRelay: true, newTTL: newTTL, delayMs: delayMs)
} }
// Degree-aware probability to reduce floods in dense graphs (broadcast/public)
let baseProb: Double
switch degree {
case 0...2: baseProb = 1.0
case 3...4: baseProb = 0.9
case 5...6: baseProb = 0.7
case 7...9: baseProb = 0.55
default: baseProb = 0.45
}
let prob = baseProb
let shouldRelay = Double.random(in: 0...1) <= prob
// TTL clamping for broadcast // TTL clamping for broadcast
// - Dense graphs: keep lower but still allow multi-hop bridging // - Dense graphs: keep very low to avoid floods
// - Announces get a bit more headroom // - Sparse graphs: allow slightly longer reach for multi-hop discovery
let ttlLimit: UInt8 = { // - Announces in sparse graphs get a bit more headroom
if degree >= highDegreeThreshold { let ttlCap: UInt8 = {
return max(UInt8(2), min(ttlCap, UInt8(5))) if degree >= highDegreeThreshold { return 3 }
} return isAnnounce ? 7 : 6
let preferred = UInt8(isAnnounce ? 7 : 6)
return max(UInt8(2), min(ttlCap, preferred))
}() }()
let newTTL = ttlLimit &- 1 let clamped = max(1, min(ttl, ttlCap))
let newTTL = clamped &- 1
// Wider jitter window to allow duplicate suppression to win more often // Wider jitter window to allow duplicate suppression to win more often
// For sparse graphs (<=2), relay quickly to avoid cancellation races // For sparse graphs (<=2), relay quickly to avoid cancellation races
@@ -57,6 +64,6 @@ struct RelayController {
case 6...9: delayMs = Int.random(in: 80...180) case 6...9: delayMs = Int.random(in: 80...180)
default: delayMs = Int.random(in: 100...220) default: delayMs = Int.random(in: 100...220)
} }
return RelayDecision(shouldRelay: true, newTTL: newTTL, delayMs: delayMs) return RelayDecision(shouldRelay: shouldRelay, newTTL: newTTL, delayMs: delayMs)
} }
} }
@@ -1,65 +0,0 @@
import Foundation
import Combine
/// Centralized progress bus for Bluetooth file transfers.
/// Emits Combine events consumed by ChatViewModel to update UI progress indicators.
final class TransferProgressManager {
static let shared = TransferProgressManager()
enum Event {
case started(id: String, totalFragments: Int)
case updated(id: String, sentFragments: Int, totalFragments: Int)
case completed(id: String, totalFragments: Int)
case cancelled(id: String, sentFragments: Int, totalFragments: Int)
}
private let subject = PassthroughSubject<Event, Never>()
private let queue = DispatchQueue(label: "com.bitchat.transfer-progress", attributes: .concurrent)
private var states: [String: (sent: Int, total: Int)] = [:]
var publisher: AnyPublisher<Event, Never> {
subject.eraseToAnyPublisher()
}
func start(id: String, totalFragments: Int) {
queue.async(flags: .barrier) { [weak self] in
guard let self = self else { return }
self.states[id] = (sent: 0, total: totalFragments)
self.subject.send(.started(id: id, totalFragments: totalFragments))
}
}
func recordFragmentSent(id: String) {
queue.async(flags: .barrier) { [weak self] in
guard let self = self, var state = self.states[id] else { return }
state.sent = min(state.sent + 1, state.total)
self.states[id] = state
self.subject.send(.updated(id: id, sentFragments: state.sent, totalFragments: state.total))
if state.sent >= state.total {
self.states.removeValue(forKey: id)
self.subject.send(.completed(id: id, totalFragments: state.total))
}
}
}
func cancel(id: String) {
queue.async(flags: .barrier) { [weak self] in
guard let self = self, let state = self.states.removeValue(forKey: id) else { return }
self.subject.send(.cancelled(id: id, sentFragments: state.sent, totalFragments: state.total))
}
}
func reset(id: String) {
queue.async(flags: .barrier) { [weak self] in
self?.states.removeValue(forKey: id)
}
}
func snapshot(id: String) -> (sent: Int, total: Int)? {
var result: (sent: Int, total: Int)?
queue.sync {
result = states[id]
}
return result
}
}
+23 -29
View File
@@ -4,7 +4,7 @@ import Combine
/// Abstract transport interface used by ChatViewModel and services. /// Abstract transport interface used by ChatViewModel and services.
/// BLEService implements this protocol; a future Nostr transport can too. /// BLEService implements this protocol; a future Nostr transport can too.
struct TransportPeerSnapshot: Equatable, Hashable { struct TransportPeerSnapshot: Equatable, Hashable {
let peerID: PeerID let id: String
let nickname: String let nickname: String
let isConnected: Bool let isConnected: Bool
let noisePublicKey: Data? let noisePublicKey: Data?
@@ -12,17 +12,13 @@ struct TransportPeerSnapshot: Equatable, Hashable {
} }
protocol Transport: AnyObject { protocol Transport: AnyObject {
// Event sink
var delegate: BitchatDelegate? { get set }
// Peer events (preferred over publishers for UI) // Peer events (preferred over publishers for UI)
var peerEventsDelegate: TransportPeerEventsDelegate? { get set } var peerEventsDelegate: TransportPeerEventsDelegate? { get set }
// Event sink
// Peer snapshots (for non-UI services) var delegate: BitchatDelegate? { get set }
var peerSnapshotPublisher: AnyPublisher<[TransportPeerSnapshot], Never> { get }
func currentPeerSnapshots() -> [TransportPeerSnapshot]
// Identity // Identity
var myPeerID: PeerID { get } var myPeerID: String { get }
var myNickname: String { get } var myNickname: String { get }
func setNickname(_ nickname: String) func setNickname(_ nickname: String)
@@ -32,39 +28,37 @@ protocol Transport: AnyObject {
func emergencyDisconnectAll() func emergencyDisconnectAll()
// Connectivity and peers // Connectivity and peers
func isPeerConnected(_ peerID: PeerID) -> Bool func isPeerConnected(_ peerID: String) -> Bool
func isPeerReachable(_ peerID: PeerID) -> Bool func isPeerReachable(_ peerID: String) -> Bool
func peerNickname(peerID: PeerID) -> String? func peerNickname(peerID: String) -> String?
func getPeerNicknames() -> [PeerID: String] func getPeerNicknames() -> [String: String]
// Protocol utilities // Protocol utilities
func getFingerprint(for peerID: PeerID) -> String? func getFingerprint(for peerID: String) -> String?
func getNoiseSessionState(for peerID: PeerID) -> LazyHandshakeState func getNoiseSessionState(for peerID: String) -> LazyHandshakeState
func triggerHandshake(with peerID: PeerID) func triggerHandshake(with peerID: String)
func getNoiseService() -> NoiseEncryptionService func getNoiseService() -> NoiseEncryptionService
// Messaging // Messaging
func sendMessage(_ content: String, mentions: [String]) func sendMessage(_ content: String, mentions: [String])
func sendPrivateMessage(_ content: String, to peerID: PeerID, recipientNickname: String, messageID: String) func sendPrivateMessage(_ content: String, to peerID: String, recipientNickname: String, messageID: String)
func sendReadReceipt(_ receipt: ReadReceipt, to peerID: PeerID) func sendReadReceipt(_ receipt: ReadReceipt, to peerID: String)
func sendFavoriteNotification(to peerID: PeerID, isFavorite: Bool) func sendFavoriteNotification(to peerID: String, isFavorite: Bool)
func sendBroadcastAnnounce() func sendBroadcastAnnounce()
func sendDeliveryAck(for messageID: String, to peerID: PeerID) func sendDeliveryAck(for messageID: String, to peerID: String)
func sendFileBroadcast(_ packet: BitchatFilePacket, transferId: String)
func sendFilePrivate(_ packet: BitchatFilePacket, to peerID: PeerID, transferId: String)
func cancelTransfer(_ transferId: String)
// QR verification (optional for transports) // QR verification (optional for transports)
func sendVerifyChallenge(to peerID: PeerID, noiseKeyHex: String, nonceA: Data) func sendVerifyChallenge(to peerID: String, noiseKeyHex: String, nonceA: Data)
func sendVerifyResponse(to peerID: PeerID, noiseKeyHex: String, nonceA: Data) func sendVerifyResponse(to peerID: String, noiseKeyHex: String, nonceA: Data)
// Peer snapshots (for non-UI services)
var peerSnapshotPublisher: AnyPublisher<[TransportPeerSnapshot], Never> { get }
func currentPeerSnapshots() -> [TransportPeerSnapshot]
} }
extension Transport { extension Transport {
func sendVerifyChallenge(to peerID: PeerID, noiseKeyHex: String, nonceA: Data) {} func sendVerifyChallenge(to peerID: String, noiseKeyHex: String, nonceA: Data) {}
func sendVerifyResponse(to peerID: PeerID, noiseKeyHex: String, nonceA: Data) {} func sendVerifyResponse(to peerID: String, noiseKeyHex: String, nonceA: Data) {}
func sendFileBroadcast(_ packet: BitchatFilePacket, transferId: String) {}
func sendFilePrivate(_ packet: BitchatFilePacket, to peerID: PeerID, transferId: String) {}
func cancelTransfer(_ transferId: String) {}
} }
protocol TransportPeerEventsDelegate: AnyObject { protocol TransportPeerEventsDelegate: AnyObject {
+3 -9
View File
@@ -30,19 +30,13 @@ enum TransportConfig {
static let bleDynamicRSSIThresholdDefault: Int = -90 static let bleDynamicRSSIThresholdDefault: Int = -90
static let bleConnectionCandidatesMax: Int = 100 static let bleConnectionCandidatesMax: Int = 100
static let blePendingWriteBufferCapBytes: Int = 1_000_000 static let blePendingWriteBufferCapBytes: Int = 1_000_000
static let bleNotificationAssemblerHardCapBytes: Int = 8 * 1024 * 1024 static let blePendingNotificationsCapCount: Int = 20
static let bleAssemblerStallResetMs: Int = 250
static let blePendingNotificationsCapCount: Int = 128
static let bleNotificationRetryDelayMs: Int = 25
static let bleNotificationRetryMaxAttempts: Int = 80
// Nostr // Nostr
static let nostrReadAckInterval: TimeInterval = 0.35 // ~3 per second static let nostrReadAckInterval: TimeInterval = 0.35 // ~3 per second
// UI thresholds // UI thresholds
static let uiLateInsertThreshold: TimeInterval = 15.0 static let uiLateInsertThreshold: TimeInterval = 15.0
// Geohash public chats are more sensitive to ordering; use a tighter threshold
static let uiLateInsertThresholdGeo: TimeInterval = 0.0
static let uiProcessedNostrEventsCap: Int = 2000 static let uiProcessedNostrEventsCap: Int = 2000
static let uiChannelInactivityThresholdSeconds: TimeInterval = 9 * 60 static let uiChannelInactivityThresholdSeconds: TimeInterval = 9 * 60
@@ -107,7 +101,7 @@ enum TransportConfig {
// Location // Location
static let locationDistanceFilterMeters: Double = 1000 static let locationDistanceFilterMeters: Double = 1000
// Live (channel sheet open) distance threshold for meaningful updates // Live (channel sheet open) distance threshold for meaningful updates
static let locationDistanceFilterLiveMeters: Double = 10.0 static let locationDistanceFilterLiveMeters: Double = 21.0
static let locationLiveRefreshInterval: TimeInterval = 5.0 static let locationLiveRefreshInterval: TimeInterval = 5.0
// Notifications (geohash) // Notifications (geohash)
@@ -192,7 +186,7 @@ enum TransportConfig {
static let uiWindowStepCount: Int = 200 static let uiWindowStepCount: Int = 200
// Share extension // Share extension
static let uiShareExtensionDismissDelaySeconds: TimeInterval = 2.0 static let uiShareExtensionDismissDelaySeconds: TimeInterval = 0.3
static let uiShareAcceptWindowSeconds: TimeInterval = 30.0 static let uiShareAcceptWindowSeconds: TimeInterval = 30.0
static let uiMigrationCutoffSeconds: TimeInterval = 24 * 60 * 60 static let uiMigrationCutoffSeconds: TimeInterval = 24 * 60 * 60
} }
+104 -48
View File
@@ -6,43 +6,34 @@
// This is free and unencumbered software released into the public domain. // This is free and unencumbered software released into the public domain.
// //
import BitLogger
import Foundation import Foundation
import Combine import Combine
import SwiftUI import SwiftUI
import CryptoKit
/// Single source of truth for peer state, combining mesh connectivity and favorites /// Single source of truth for peer state, combining mesh connectivity and favorites
@MainActor @MainActor
final class UnifiedPeerService: ObservableObject, TransportPeerEventsDelegate { class UnifiedPeerService: ObservableObject, TransportPeerEventsDelegate {
// MARK: - Published Properties // MARK: - Published Properties
@Published private(set) var peers: [BitchatPeer] = [] @Published private(set) var peers: [BitchatPeer] = []
@Published private(set) var connectedPeerIDs: Set<PeerID> = [] @Published private(set) var connectedPeerIDs: Set<String> = []
@Published private(set) var favorites: [BitchatPeer] = [] @Published private(set) var favorites: [BitchatPeer] = []
@Published private(set) var mutualFavorites: [BitchatPeer] = [] @Published private(set) var mutualFavorites: [BitchatPeer] = []
// MARK: - Private Properties // MARK: - Private Properties
private var peerIndex: [PeerID: BitchatPeer] = [:] private var peerIndex: [String: BitchatPeer] = [:]
private var fingerprintCache: [PeerID: String] = [:] private var fingerprintCache: [String: String] = [:] // peerID -> fingerprint
private let meshService: Transport private let meshService: Transport
private let idBridge: NostrIdentityBridge
private let identityManager: SecureIdentityStateManagerProtocol
weak var messageRouter: MessageRouter?
private let favoritesService = FavoritesPersistenceService.shared private let favoritesService = FavoritesPersistenceService.shared
private var cancellables = Set<AnyCancellable>() private var cancellables = Set<AnyCancellable>()
// MARK: - Initialization // MARK: - Initialization
init( init(meshService: Transport) {
meshService: Transport,
idBridge: NostrIdentityBridge,
identityManager: SecureIdentityStateManagerProtocol
) {
self.meshService = meshService self.meshService = meshService
self.idBridge = idBridge
self.identityManager = identityManager
// Subscribe to changes from both services // Subscribe to changes from both services
setupSubscriptions() setupSubscriptions()
@@ -83,12 +74,12 @@ final class UnifiedPeerService: ObservableObject, TransportPeerEventsDelegate {
let favorites = favoritesService.favorites let favorites = favoritesService.favorites
var enrichedPeers: [BitchatPeer] = [] var enrichedPeers: [BitchatPeer] = []
var connected: Set<PeerID> = [] var connected: Set<String> = []
var addedPeerIDs: Set<PeerID> = [] var addedPeerIDs: Set<String> = []
// Phase 1: Add all mesh peers (connected and reachable) // Phase 1: Add all mesh peers (connected and reachable)
for peerInfo in meshPeers { for peerInfo in meshPeers {
let peerID = peerInfo.peerID let peerID = peerInfo.id
guard peerID != meshService.myPeerID else { continue } // Never add self guard peerID != meshService.myPeerID else { continue } // Never add self
let peer = buildPeerFromMesh( let peer = buildPeerFromMesh(
@@ -109,7 +100,7 @@ final class UnifiedPeerService: ObservableObject, TransportPeerEventsDelegate {
// Phase 2: Add offline favorites that we actively favorite // Phase 2: Add offline favorites that we actively favorite
for (favoriteKey, favorite) in favorites where favorite.isFavorite { for (favoriteKey, favorite) in favorites where favorite.isFavorite {
let peerID = PeerID(hexData: favoriteKey) let peerID = favoriteKey.hexEncodedString()
// Skip if already added (connected peer) // Skip if already added (connected peer)
if addedPeerIDs.contains(peerID) { continue } if addedPeerIDs.contains(peerID) { continue }
@@ -143,10 +134,10 @@ final class UnifiedPeerService: ObservableObject, TransportPeerEventsDelegate {
// Phase 4: Build subsets and indices // Phase 4: Build subsets and indices
var favoritesList: [BitchatPeer] = [] var favoritesList: [BitchatPeer] = []
var mutualsList: [BitchatPeer] = [] var mutualsList: [BitchatPeer] = []
var newIndex: [PeerID: BitchatPeer] = [:] var newIndex: [String: BitchatPeer] = [:]
for peer in enrichedPeers { for peer in enrichedPeers {
newIndex[peer.peerID] = peer newIndex[peer.id] = peer
if peer.isFavorite { if peer.isFavorite {
favoritesList.append(peer) favoritesList.append(peer)
@@ -182,7 +173,7 @@ final class UnifiedPeerService: ObservableObject, TransportPeerEventsDelegate {
// Determine reachability based on lastSeen and identity trust // Determine reachability based on lastSeen and identity trust
let now = Date() let now = Date()
let fingerprint = peerInfo.noisePublicKey?.sha256Fingerprint() let fingerprint = peerInfo.noisePublicKey?.sha256Fingerprint()
let isVerified = fingerprint.map { identityManager.isVerified(fingerprint: $0) } ?? false let isVerified = fingerprint.map { SecureIdentityStateManager.shared.isVerified(fingerprint: $0) } ?? false
let isFav = peerInfo.noisePublicKey.flatMap { favorites[$0]?.isFavorite } ?? false let isFav = peerInfo.noisePublicKey.flatMap { favorites[$0]?.isFavorite } ?? false
let retention: TimeInterval = (isVerified || isFav) ? TransportConfig.bleReachabilityRetentionVerifiedSeconds : TransportConfig.bleReachabilityRetentionUnverifiedSeconds let retention: TimeInterval = (isVerified || isFav) ? TransportConfig.bleReachabilityRetentionVerifiedSeconds : TransportConfig.bleReachabilityRetentionUnverifiedSeconds
// A peer is reachable if we recently saw them AND we are attached to the mesh // A peer is reachable if we recently saw them AND we are attached to the mesh
@@ -190,7 +181,7 @@ final class UnifiedPeerService: ObservableObject, TransportPeerEventsDelegate {
let isReachable = peerInfo.isConnected ? true : (withinRetention && meshAttached) let isReachable = peerInfo.isConnected ? true : (withinRetention && meshAttached)
var peer = BitchatPeer( var peer = BitchatPeer(
peerID: peerInfo.peerID, id: peerInfo.id,
noisePublicKey: peerInfo.noisePublicKey ?? Data(), noisePublicKey: peerInfo.noisePublicKey ?? Data(),
nickname: peerInfo.nickname, nickname: peerInfo.nickname,
lastSeen: peerInfo.lastSeen, lastSeen: peerInfo.lastSeen,
@@ -203,6 +194,31 @@ final class UnifiedPeerService: ObservableObject, TransportPeerEventsDelegate {
let favoriteStatus = favorites[noiseKey] { let favoriteStatus = favorites[noiseKey] {
peer.favoriteStatus = favoriteStatus peer.favoriteStatus = favoriteStatus
peer.nostrPublicKey = favoriteStatus.peerNostrPublicKey peer.nostrPublicKey = favoriteStatus.peerNostrPublicKey
} else {
// Check by nickname for reconnected peers
let favoriteByNickname = favorites.values.first {
$0.peerNickname == peerInfo.nickname
}
if let favorite = favoriteByNickname,
let noiseKey = peerInfo.noisePublicKey {
SecureLogger.log(
"🔄 Found favorite for '\(peerInfo.nickname)' by nickname, updating noise key",
category: SecureLogger.session,
level: .debug
)
// Update the favorite's key in persistence
favoritesService.updateNoisePublicKey(
from: favorite.peerNoisePublicKey,
to: noiseKey,
peerNickname: peerInfo.nickname
)
// Get updated favorite
peer.favoriteStatus = favoritesService.getFavoriteStatus(for: noiseKey)
peer.nostrPublicKey = peer.favoriteStatus?.peerNostrPublicKey ?? favorite.peerNostrPublicKey
}
} }
return peer return peer
@@ -210,10 +226,10 @@ final class UnifiedPeerService: ObservableObject, TransportPeerEventsDelegate {
private func buildPeerFromFavorite( private func buildPeerFromFavorite(
favorite: FavoritesPersistenceService.FavoriteRelationship, favorite: FavoritesPersistenceService.FavoriteRelationship,
peerID: PeerID peerID: String
) -> BitchatPeer { ) -> BitchatPeer {
var peer = BitchatPeer( var peer = BitchatPeer(
peerID: peerID, id: peerID,
noisePublicKey: favorite.peerNoisePublicKey, noisePublicKey: favorite.peerNoisePublicKey,
nickname: favorite.peerNickname, nickname: favorite.peerNickname,
lastSeen: favorite.lastUpdated, lastSeen: favorite.lastUpdated,
@@ -230,27 +246,32 @@ final class UnifiedPeerService: ObservableObject, TransportPeerEventsDelegate {
// MARK: - Public Methods // MARK: - Public Methods
/// Get peer by ID /// Get peer by ID
func getPeer(by peerID: PeerID) -> BitchatPeer? { func getPeer(by id: String) -> BitchatPeer? {
return peerIndex[peerID] return peerIndex[id]
} }
/// Get peer ID for nickname /// Get peer ID for nickname
func getPeerID(for nickname: String) -> PeerID? { func getPeerID(for nickname: String) -> String? {
for peer in peers { for peer in peers {
if peer.displayName == nickname || peer.nickname == nickname { if peer.displayName == nickname || peer.nickname == nickname {
return peer.peerID return peer.id
} }
} }
return nil return nil
} }
/// Check if peer is online
func isOnline(_ peerID: String) -> Bool {
return connectedPeerIDs.contains(peerID)
}
/// Check if peer is blocked /// Check if peer is blocked
func isBlocked(_ peerID: PeerID) -> Bool { func isBlocked(_ peerID: String) -> Bool {
// Get fingerprint // Get fingerprint
guard let fingerprint = getFingerprint(for: peerID) else { return false } guard let fingerprint = getFingerprint(for: peerID) else { return false }
// Check SecureIdentityStateManager for block status // Check SecureIdentityStateManager for block status
if let identity = identityManager.getSocialIdentity(for: fingerprint) { if let identity = SecureIdentityStateManager.shared.getSocialIdentity(for: fingerprint) {
return identity.isBlocked return identity.isBlocked
} }
@@ -258,9 +279,10 @@ final class UnifiedPeerService: ObservableObject, TransportPeerEventsDelegate {
} }
/// Toggle favorite status /// Toggle favorite status
func toggleFavorite(_ peerID: PeerID) { func toggleFavorite(_ peerID: String) {
guard let peer = getPeer(by: peerID) else { guard let peer = getPeer(by: peerID) else {
SecureLogger.warning("⚠️ Cannot toggle favorite - peer not found: \(peerID)", category: .session) SecureLogger.log("⚠️ Cannot toggle favorite - peer not found: \(peerID)",
category: SecureLogger.session, level: .warning)
return return
} }
@@ -270,13 +292,15 @@ final class UnifiedPeerService: ObservableObject, TransportPeerEventsDelegate {
var actualNickname = peer.nickname var actualNickname = peer.nickname
// Debug logging to understand the issue // Debug logging to understand the issue
SecureLogger.debug("🔍 Toggle favorite - peer.nickname: '\(peer.nickname)', peer.displayName: '\(peer.displayName)', peerID: \(peerID)", category: .session) SecureLogger.log("🔍 Toggle favorite - peer.nickname: '\(peer.nickname)', peer.displayName: '\(peer.displayName)', peerID: \(peerID)",
category: SecureLogger.session, level: .debug)
if actualNickname.isEmpty { if actualNickname.isEmpty {
// Try to get from mesh service's current peer list // Try to get from mesh service's current peer list
if let meshPeerNickname = meshService.peerNickname(peerID: peerID) { if let meshPeerNickname = meshService.peerNickname(peerID: peerID) {
actualNickname = meshPeerNickname actualNickname = meshPeerNickname
SecureLogger.debug("🔍 Got nickname from mesh service: '\(actualNickname)'", category: .session) SecureLogger.log("🔍 Got nickname from mesh service: '\(actualNickname)'",
category: SecureLogger.session, level: .debug)
} }
} }
@@ -291,7 +315,7 @@ final class UnifiedPeerService: ObservableObject, TransportPeerEventsDelegate {
var peerNostrKey = peer.nostrPublicKey var peerNostrKey = peer.nostrPublicKey
if peerNostrKey == nil { if peerNostrKey == nil {
// Try to get from NostrIdentityBridge association // Try to get from NostrIdentityBridge association
peerNostrKey = idBridge.getNostrPublicKey(for: peer.noisePublicKey) peerNostrKey = NostrIdentityBridge.getNostrPublicKey(for: peer.noisePublicKey)
} }
// Add favorite // Add favorite
@@ -303,15 +327,11 @@ final class UnifiedPeerService: ObservableObject, TransportPeerEventsDelegate {
} }
// Log the final nickname being saved // Log the final nickname being saved
SecureLogger.debug("⭐️ Toggled favorite for '\(finalNickname)' (peerID: \(peerID), was: \(wasFavorite), now: \(!wasFavorite))", category: .session) SecureLogger.log("⭐️ Toggled favorite for '\(finalNickname)' (peerID: \(peerID), was: \(wasFavorite), now: \(!wasFavorite))",
category: SecureLogger.session, level: .debug)
// Send favorite notification to the peer via router (mesh or Nostr) // Send favorite notification to the peer
if let router = messageRouter { meshService.sendFavoriteNotification(to: peerID, isFavorite: !wasFavorite)
router.sendFavoriteNotification(to: peerID, isFavorite: !wasFavorite)
} else {
// Fallback to mesh-only if router not yet wired
meshService.sendFavoriteNotification(to: peerID, isFavorite: !wasFavorite)
}
// Force update of peers to reflect the change // Force update of peers to reflect the change
updatePeers() updatePeers()
@@ -322,7 +342,39 @@ final class UnifiedPeerService: ObservableObject, TransportPeerEventsDelegate {
} }
} }
func getFingerprint(for peerID: PeerID) -> String? { /// Toggle blocked status
func toggleBlocked(_ peerID: String) {
guard let fingerprint = getFingerprint(for: peerID) else { return }
// Get or create social identity
var identity = SecureIdentityStateManager.shared.getSocialIdentity(for: fingerprint)
?? SocialIdentity(
fingerprint: fingerprint,
localPetname: nil,
claimedNickname: getPeer(by: peerID)?.displayName ?? "Unknown",
trustLevel: .unknown,
isFavorite: false,
isBlocked: false,
notes: nil
)
// Toggle blocked status
identity.isBlocked = !identity.isBlocked
// Can't be both favorite and blocked
if identity.isBlocked {
identity.isFavorite = false
// Also remove from favorites service
if let peer = getPeer(by: peerID) {
favoritesService.removeFavorite(peerNoisePublicKey: peer.noisePublicKey)
}
}
SecureIdentityStateManager.shared.updateSocialIdentity(identity)
}
/// Get fingerprint for peer ID
func getFingerprint(for peerID: String) -> String? {
// Check cache first // Check cache first
if let cached = fingerprintCache[peerID] { if let cached = fingerprintCache[peerID] {
return cached return cached
@@ -347,13 +399,17 @@ final class UnifiedPeerService: ObservableObject, TransportPeerEventsDelegate {
// MARK: - Compatibility Methods (for easy migration) // MARK: - Compatibility Methods (for easy migration)
var allPeers: [BitchatPeer] { peers } var allPeers: [BitchatPeer] { peers }
var connectedPeers: Set<PeerID> { connectedPeerIDs } var connectedPeers: [String] { Array(connectedPeerIDs) }
var favoritePeers: Set<String> { var favoritePeers: Set<String> {
Set(favorites.compactMap { getFingerprint(for: $0.peerID) }) Set(favorites.compactMap { getFingerprint(for: $0.id) })
} }
var blockedUsers: Set<String> { var blockedUsers: Set<String> {
Set(peers.compactMap { peer in Set(peers.compactMap { peer in
isBlocked(peer.peerID) ? getFingerprint(for: peer.peerID) : nil isBlocked(peer.id) ? getFingerprint(for: peer.id) : nil
}) })
} }
} }
// MARK: - Helper Extensions
// Moved sha256Fingerprint() to BinaryEncodingUtils for reuse

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