Files
bitchat/bitchat/Sync/GCSFilter.swift
T
3a94b57341 Fix BLE stream crashes and gossip sync races (#663)
* Handle long BLE packets safely

* Keep BLE stream aligned after partial drops

---------

Co-authored-by: jack <jackjackbits@users.noreply.github.com>
2025-09-23 14:06:13 +02:00

238 lines
7.8 KiB
Swift

import Foundation
import CryptoKit
// Golomb-Coded Set (GCS) filter utilities for sync.
// Hashing:
// - Packet ID is 16 bytes (see PacketIdUtil). For GCS mapping, use h64 = first 8 bytes of SHA-256 over the 16-byte ID.
// - Map to [1, M) by computing (h64 % M) and remapping 0 -> 1 to avoid zero-length deltas.
// Encoding (v1):
// - Sort mapped values ascending; encode deltas (first is v0, then vi - v{i-1}) as positive integers x >= 1.
// - Golomb-Rice with parameter P: q = (x - 1) >> P encoded as unary (q ones then a zero), then write P-bit remainder r = (x - 1) & ((1<<P)-1).
// - Bitstream is MSB-first within each byte.
enum GCSFilter {
struct Params { let p: Int; let m: UInt32; let data: Data }
// Derive P from FPR (~ 1 / 2^P)
static func deriveP(targetFpr: Double) -> Int {
let f = max(0.000001, min(0.25, targetFpr))
// ceil(log2(1/f))
let p = Int(ceil(log2(1.0 / f)))
return max(1, p)
}
// Estimate max elements that fit in size bytes: bits per element ~= P + 2 (approx)
static func estimateMaxElements(sizeBytes: Int, p: Int) -> Int {
let bits = max(8, sizeBytes * 8)
let per = max(3, p + 2)
return max(1, bits / per)
}
static func buildFilter(ids: [Data], maxBytes: Int, targetFpr: Double) -> Params {
let p = deriveP(targetFpr: targetFpr)
guard !ids.isEmpty else {
return Params(p: p, m: 1, data: Data())
}
let cap = estimateMaxElements(sizeBytes: maxBytes, p: p)
let selected = Array(ids.prefix(cap))
let range = max(1, hashRange(count: selected.count, p: p))
let modulo = UInt64(range)
var mapped = selected
.map { h64($0) }
.map { mapHash($0, modulo: modulo) }
.sorted()
mapped = normalizeMappedValues(mapped, modulo: modulo)
if mapped.isEmpty {
return Params(p: p, m: range, data: Data())
}
var encoded = encode(sorted: mapped, p: p)
var trimmedCount = mapped.count
while encoded.count > maxBytes && trimmedCount > 0 {
if trimmedCount == 1 {
mapped.removeAll()
encoded = Data()
break
}
trimmedCount = max(1, (trimmedCount * 9) / 10)
mapped = Array(mapped.prefix(trimmedCount))
encoded = encode(sorted: mapped, p: p)
}
return Params(p: p, m: range, data: encoded)
}
static func decodeToSortedSet(p: Int, m: UInt32, data: Data) -> [UInt64] {
var values: [UInt64] = []
let reader = BitReader(data)
var acc: UInt64 = 0
while true {
guard let q = reader.readUnary() else { break }
guard let r = reader.readBits(count: p) else { break }
let x = (UInt64(q) << UInt64(p)) + UInt64(r) + 1
acc &+= x
if acc >= UInt64(m) { break }
values.append(acc)
}
return values
}
static func contains(sortedValues: [UInt64], candidate: UInt64) -> Bool {
var lo = 0
var hi = sortedValues.count - 1
while lo <= hi {
let mid = (lo + hi) >> 1
let v = sortedValues[mid]
if v == candidate { return true }
if v < candidate { lo = mid + 1 } else { hi = mid - 1 }
}
return false
}
static func bucket(for id: Data, modulus m: UInt32) -> UInt64 {
let modulo = UInt64(max(1, m))
guard modulo > 1 else { return 0 }
return mapHash(h64(id), modulo: modulo)
}
private static func h64(_ id16: Data) -> UInt64 {
var hasher = SHA256()
hasher.update(data: id16)
let d = hasher.finalize()
let db = Data(d)
var x: UInt64 = 0
let take = min(8, db.count)
for i in 0..<take { x = (x << 8) | UInt64(db[i]) }
return x & 0x7fff_ffff_ffff_ffff
}
private static func hashRange(count: Int, p: Int) -> UInt32 {
guard count > 0 else { return 1 }
if p >= 64 { return UInt32.max }
let multiplier = UInt64(1) << UInt64(p)
let (product, overflow) = UInt64(count).multipliedReportingOverflow(by: multiplier)
if overflow { return UInt32.max }
if product == 0 { return 1 }
return product > UInt64(UInt32.max) ? UInt32.max : UInt32(product)
}
private static func mapHash(_ hash: UInt64, modulo: UInt64) -> UInt64 {
guard modulo > 1 else { return 0 }
let value = hash % modulo
if value == 0 { return 1 }
return value
}
private static func normalizeMappedValues(_ values: [UInt64], modulo: UInt64) -> [UInt64] {
guard modulo > 1 else { return [] }
guard !values.isEmpty else { return [] }
var result: [UInt64] = []
result.reserveCapacity(values.count)
var last: UInt64 = 0
for value in values {
let normalized = min(value, modulo - 1)
if normalized > last {
result.append(normalized)
last = normalized
}
}
return result
}
private static func encode(sorted: [UInt64], p: Int) -> Data {
let writer = BitWriter()
var prev: UInt64 = 0
let mask: UInt64 = (p >= 64) ? ~0 : ((1 << UInt64(p)) - 1)
for v in sorted {
let delta = v &- prev
prev = v
let x = delta
let q = (x &- 1) >> UInt64(p)
let r = (x &- 1) & mask
// unary q ones then zero
if q > 0 { writer.writeOnes(count: Int(q)) }
writer.writeBit(0)
writer.writeBits(value: r, count: p)
}
return writer.toData()
}
// MARK: - Bit helpers (MSB-first)
private final class BitWriter {
private var buf = Data()
private var cur: UInt8 = 0
private var nbits: Int = 0
func writeBit(_ bit: Int) { // 0 or 1
cur = UInt8((Int(cur) << 1) | (bit & 1))
nbits += 1
if nbits == 8 {
buf.append(cur)
cur = 0; nbits = 0
}
}
func writeOnes(count: Int) {
guard count > 0 else { return }
for _ in 0..<count { writeBit(1) }
}
func writeBits(value: UInt64, count: Int) {
guard count > 0 else { return }
for i in stride(from: count - 1, through: 0, by: -1) {
let bit = Int((value >> UInt64(i)) & 1)
writeBit(bit)
}
}
func toData() -> Data {
if nbits > 0 {
let rem = UInt8(Int(cur) << (8 - nbits))
buf.append(rem)
cur = 0; nbits = 0
}
return buf
}
}
private final class BitReader {
private let data: Data
private var idx: Int = 0
private var cur: UInt8 = 0
private var left: Int = 0
init(_ data: Data) {
self.data = data
if !data.isEmpty {
cur = data[0]
left = 8
}
}
func readBit() -> Int? {
if idx >= data.count { return nil }
let bit = (Int(cur) >> 7) & 1
cur = UInt8((Int(cur) << 1) & 0xFF)
left -= 1
if left == 0 {
idx += 1
if idx < data.count { cur = data[idx]; left = 8 }
}
return bit
}
func readUnary() -> Int? {
var q = 0
while true {
guard let b = readBit() else { return nil }
if b == 1 { q += 1 } else { break }
}
return q
}
func readBits(count: Int) -> UInt64? {
var v: UInt64 = 0
for _ in 0..<count {
guard let b = readBit() else { return nil }
v = (v << 1) | UInt64(b)
}
return v
}
}
}