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stash: deduplicate Fnv1aHasher; add derive for u64 wrapper
Signed-off-by: NotAShelf <raf@notashelf.dev> Change-Id: Ic2886815721f6eefc66a8ddacd44fb286a6a6964
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a2a609f07d
commit
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4 changed files with 108 additions and 58 deletions
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@ -1,4 +1,4 @@
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use std::{collections::BinaryHeap, io::Read, time::Duration};
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use std::{collections::BinaryHeap, hash::Hasher, io::Read, time::Duration};
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use smol::Timer;
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use wl_clipboard_rs::{
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@ -15,36 +15,9 @@ use wl_clipboard_rs::{
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use crate::{
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clipboard::{self, ClipboardData, get_serving_pid},
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db::{SqliteClipboardDb, nonblocking::AsyncClipboardDb},
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hash::Fnv1aHasher,
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};
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/// FNV-1a hasher for deterministic hashing across process runs.
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/// Unlike `DefaultHasher` (`SipHash`), this produces stable hashes.
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struct Fnv1aHasher {
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state: u64,
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}
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impl Fnv1aHasher {
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const FNV_OFFSET: u64 = 0xCBF29CE484222325;
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const FNV_PRIME: u64 = 0x100000001B3;
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fn new() -> Self {
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Self {
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state: Self::FNV_OFFSET,
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}
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}
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fn write(&mut self, bytes: &[u8]) {
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for byte in bytes {
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self.state ^= u64::from(*byte);
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self.state = self.state.wrapping_mul(Self::FNV_PRIME);
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}
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}
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fn finish(&self) -> u64 {
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self.state
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}
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}
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/// Wrapper to provide [`Ord`] implementation for `f64` by negating values.
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/// This allows [`BinaryHeap`], which is a max-heap, to function as a min-heap.
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/// Also see:
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@ -11,6 +11,10 @@ use std::{
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pub mod nonblocking;
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use std::hash::Hasher;
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use crate::hash::Fnv1aHasher;
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/// Cache for process scanning results to avoid expensive `/proc` reads on every
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/// store operation. TTL of 5 seconds balances freshness with performance.
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struct ProcessCache {
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@ -66,35 +70,6 @@ impl ProcessCache {
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}
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}
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/// FNV-1a hasher for deterministic hashing across process runs.
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/// Unlike `DefaultHasher` (`SipHash` with random seed), this produces stable
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/// hashes.
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pub struct Fnv1aHasher {
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state: u64,
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}
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impl Fnv1aHasher {
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const FNV_OFFSET: u64 = 0xCBF29CE484222325;
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const FNV_PRIME: u64 = 0x100000001B3;
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pub fn new() -> Self {
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Self {
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state: Self::FNV_OFFSET,
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}
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}
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pub fn write(&mut self, bytes: &[u8]) {
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for byte in bytes {
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self.state ^= u64::from(*byte);
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self.state = self.state.wrapping_mul(Self::FNV_PRIME);
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}
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}
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pub fn finish(&self) -> u64 {
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self.state
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}
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}
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use base64::prelude::*;
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use log::{debug, error, info, warn};
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use mime_sniffer::MimeTypeSniffer;
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101
src/hash.rs
Normal file
101
src/hash.rs
Normal file
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@ -0,0 +1,101 @@
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/// FNV-1a hasher for deterministic hashing across process runs.
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///
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/// Unlike `std::collections::hash_map::DefaultHasher` (which uses SipHash
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/// with a random seed), this produces stable hashes suitable for persistent
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/// storage and cross-process comparison.
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///
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/// # Example
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///
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/// ```
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/// use std::hash::Hasher;
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///
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/// use stash::hash::Fnv1aHasher;
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///
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/// let mut hasher = Fnv1aHasher::new();
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/// hasher.write(b"hello");
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/// let hash = hasher.finish();
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/// ```
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#[derive(Clone, Copy, Debug)]
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pub struct Fnv1aHasher {
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state: u64,
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}
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impl Fnv1aHasher {
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const FNV_OFFSET: u64 = 0xCBF29CE484222325;
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const FNV_PRIME: u64 = 0x100000001B3;
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/// Creates a new hasher initialized with the FNV-1a offset basis.
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#[must_use]
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pub fn new() -> Self {
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Self {
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state: Self::FNV_OFFSET,
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}
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}
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}
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impl Default for Fnv1aHasher {
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fn default() -> Self {
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Self::new()
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}
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}
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impl std::hash::Hasher for Fnv1aHasher {
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fn write(&mut self, bytes: &[u8]) {
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for byte in bytes {
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self.state ^= u64::from(*byte);
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self.state = self.state.wrapping_mul(Self::FNV_PRIME);
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}
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}
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fn finish(&self) -> u64 {
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self.state
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}
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}
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#[cfg(test)]
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mod tests {
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use std::hash::Hasher;
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use super::*;
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#[test]
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fn test_fnv1a_basic() {
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let mut hasher = Fnv1aHasher::new();
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hasher.write(b"hello");
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// FNV-1a hash for "hello" (little-endian u64)
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assert_eq!(hasher.finish(), 0xA430D84680AABD0B);
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}
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#[test]
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fn test_fnv1a_empty() {
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let hasher = Fnv1aHasher::new();
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// Empty input should return offset basis
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assert_eq!(hasher.finish(), Fnv1aHasher::FNV_OFFSET);
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}
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#[test]
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fn test_fnv1a_deterministic() {
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// Same input must produce same hash
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let mut h1 = Fnv1aHasher::new();
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let mut h2 = Fnv1aHasher::new();
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h1.write(b"test data");
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h2.write(b"test data");
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assert_eq!(h1.finish(), h2.finish());
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}
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#[test]
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fn test_default_trait() {
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let h1 = Fnv1aHasher::new();
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let h2 = Fnv1aHasher::default();
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assert_eq!(h1.finish(), h2.finish());
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}
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#[test]
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fn test_copy_trait() {
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let mut hasher = Fnv1aHasher::new();
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hasher.write(b"data");
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let copied = hasher;
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// Both should have same state after copy
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assert_eq!(hasher.finish(), copied.finish());
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}
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}
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@ -1,6 +1,7 @@
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mod clipboard;
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mod commands;
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mod db;
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mod hash;
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mod mime;
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mod multicall;
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