Coverage Report

Created: 2025-11-05 08:08

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/rust/registry/src/index.crates.io-1949cf8c6b5b557f/simd-adler32-0.3.7/src/imp/avx2.rs
Line
Count
Source
1
use super::Adler32Imp;
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3
/// Resolves update implementation if CPU supports avx2 instructions.
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48.6k
pub fn get_imp() -> Option<Adler32Imp> {
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48.6k
  get_imp_inner()
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48.6k
}
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8
#[inline]
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#[cfg(all(feature = "std", any(target_arch = "x86", target_arch = "x86_64")))]
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48.6k
fn get_imp_inner() -> Option<Adler32Imp> {
11
48.6k
  if std::is_x86_feature_detected!("avx2") {
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48.6k
    Some(imp::update)
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  } else {
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0
    None
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  }
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48.6k
}
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18
#[inline]
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#[cfg(all(
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  target_feature = "avx2",
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  not(all(feature = "std", any(target_arch = "x86", target_arch = "x86_64")))
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))]
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fn get_imp_inner() -> Option<Adler32Imp> {
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  Some(imp::update)
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}
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#[inline]
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#[cfg(all(
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  not(target_feature = "avx2"),
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  not(all(feature = "std", any(target_arch = "x86", target_arch = "x86_64")))
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))]
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fn get_imp_inner() -> Option<Adler32Imp> {
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  None
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}
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#[cfg(all(
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  any(target_arch = "x86", target_arch = "x86_64"),
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  any(feature = "std", target_feature = "avx2")
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))]
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mod imp {
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  const MOD: u32 = 65521;
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  const NMAX: usize = 5552;
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  const BLOCK_SIZE: usize = 32;
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  const CHUNK_SIZE: usize = NMAX / BLOCK_SIZE * BLOCK_SIZE;
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  #[cfg(target_arch = "x86")]
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  use core::arch::x86::*;
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  #[cfg(target_arch = "x86_64")]
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  use core::arch::x86_64::*;
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107k
  pub fn update(a: u16, b: u16, data: &[u8]) -> (u16, u16) {
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107k
    unsafe { update_imp(a, b, data) }
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107k
  }
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  #[inline]
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  #[target_feature(enable = "avx2")]
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107k
  unsafe fn update_imp(a: u16, b: u16, data: &[u8]) -> (u16, u16) {
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107k
    let mut a = a as u32;
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107k
    let mut b = b as u32;
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107k
    let chunks = data.chunks_exact(CHUNK_SIZE);
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107k
    let remainder = chunks.remainder();
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618k
    for chunk in chunks {
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510k
      update_chunk_block(&mut a, &mut b, chunk);
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510k
    }
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107k
    update_block(&mut a, &mut b, remainder);
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107k
    (a as u16, b as u16)
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107k
  }
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  #[inline]
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510k
  unsafe fn update_chunk_block(a: &mut u32, b: &mut u32, chunk: &[u8]) {
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510k
    debug_assert_eq!(
75
0
      chunk.len(),
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      CHUNK_SIZE,
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0
      "Unexpected chunk size (expected {}, got {})",
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      CHUNK_SIZE,
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0
      chunk.len()
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    );
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510k
    reduce_add_blocks(a, b, chunk);
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510k
    *a %= MOD;
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510k
    *b %= MOD;
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510k
  }
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  #[inline]
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107k
  unsafe fn update_block(a: &mut u32, b: &mut u32, chunk: &[u8]) {
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107k
    debug_assert!(
91
0
      chunk.len() <= CHUNK_SIZE,
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0
      "Unexpected chunk size (expected <= {}, got {})",
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      CHUNK_SIZE,
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0
      chunk.len()
95
    );
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97
107k
    for byte in reduce_add_blocks(a, b, chunk) {
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80.0k
      *a += *byte as u32;
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80.0k
      *b += *a;
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80.0k
    }
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102
107k
    *a %= MOD;
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107k
    *b %= MOD;
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107k
  }
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  #[inline(always)]
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618k
  unsafe fn reduce_add_blocks<'a>(a: &mut u32, b: &mut u32, chunk: &'a [u8]) -> &'a [u8] {
108
618k
    if chunk.len() < BLOCK_SIZE {
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521
      return chunk;
110
617k
    }
111
112
617k
    let blocks = chunk.chunks_exact(BLOCK_SIZE);
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617k
    let blocks_remainder = blocks.remainder();
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115
617k
    let one_v = _mm256_set1_epi16(1);
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617k
    let zero_v = _mm256_setzero_si256();
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617k
    let weights = get_weights();
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119
617k
    let mut p_v = _mm256_set_epi32(0, 0, 0, 0, 0, 0, 0, (*a * blocks.len() as u32) as _);
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617k
    let mut a_v = _mm256_setzero_si256();
121
617k
    let mut b_v = _mm256_set_epi32(0, 0, 0, 0, 0, 0, 0, *b as _);
122
123
105M
    for block in blocks {
124
104M
      let block_ptr = block.as_ptr() as *const _;
125
104M
      let block = _mm256_loadu_si256(block_ptr);
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104M
127
104M
      p_v = _mm256_add_epi32(p_v, a_v);
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104M
129
104M
      a_v = _mm256_add_epi32(a_v, _mm256_sad_epu8(block, zero_v));
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104M
      let mad = _mm256_maddubs_epi16(block, weights);
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104M
      b_v = _mm256_add_epi32(b_v, _mm256_madd_epi16(mad, one_v));
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104M
    }
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617k
    b_v = _mm256_add_epi32(b_v, _mm256_slli_epi32(p_v, 5));
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136
617k
    *a += reduce_add(a_v);
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617k
    *b = reduce_add(b_v);
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617k
    blocks_remainder
140
618k
  }
141
142
  #[inline(always)]
143
1.23M
  unsafe fn reduce_add(v: __m256i) -> u32 {
144
1.23M
    let sum = _mm_add_epi32(_mm256_castsi256_si128(v), _mm256_extracti128_si256(v, 1));
145
1.23M
    let hi = _mm_unpackhi_epi64(sum, sum);
146
147
1.23M
    let sum = _mm_add_epi32(hi, sum);
148
1.23M
    let hi = _mm_shuffle_epi32(sum, crate::imp::_MM_SHUFFLE(2, 3, 0, 1));
149
150
1.23M
    let sum = _mm_add_epi32(sum, hi);
151
152
1.23M
    _mm_cvtsi128_si32(sum) as _
153
1.23M
  }
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155
  #[inline(always)]
156
617k
  unsafe fn get_weights() -> __m256i {
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617k
    _mm256_set_epi8(
158
      1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23,
159
      24, 25, 26, 27, 28, 29, 30, 31, 32,
160
    )
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617k
  }
162
}
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164
#[cfg(test)]
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mod tests {
166
  use rand::Rng;
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168
  #[test]
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  fn zeroes() {
170
    assert_sum_eq(&[]);
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    assert_sum_eq(&[0]);
172
    assert_sum_eq(&[0, 0]);
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    assert_sum_eq(&[0; 100]);
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    assert_sum_eq(&[0; 1024]);
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    assert_sum_eq(&[0; 1024 * 1024]);
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  }
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178
  #[test]
179
  fn ones() {
180
    assert_sum_eq(&[]);
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    assert_sum_eq(&[1]);
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    assert_sum_eq(&[1, 1]);
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    assert_sum_eq(&[1; 100]);
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    assert_sum_eq(&[1; 1024]);
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    assert_sum_eq(&[1; 1024 * 1024]);
186
  }
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188
  #[test]
189
  fn random() {
190
    let mut random = [0; 1024 * 1024];
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    rand::thread_rng().fill(&mut random[..]);
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193
    assert_sum_eq(&random[..1]);
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    assert_sum_eq(&random[..100]);
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    assert_sum_eq(&random[..1024]);
196
    assert_sum_eq(&random[..1024 * 1024]);
197
  }
198
199
  /// Example calculation from https://en.wikipedia.org/wiki/Adler-32.
200
  #[test]
201
  fn wiki() {
202
    assert_sum_eq(b"Wikipedia");
203
  }
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205
  fn assert_sum_eq(data: &[u8]) {
206
    if let Some(update) = super::get_imp() {
207
      let (a, b) = update(1, 0, data);
208
      let left = u32::from(b) << 16 | u32::from(a);
209
      let right = adler::adler32_slice(data);
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211
      assert_eq!(left, right, "len({})", data.len());
212
    }
213
  }
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}