1use hermes_simd_core::{
13 align::Unaligned,
14 arch::SimdArch,
15 execution::Unmasked,
16 kernel::SimdKernel,
17 scalar::Scalar,
18 view::{SimdError, SimdView},
19};
20use hermes_simd_macros::runtime_dispatch;
21
22#[runtime_dispatch(avx512f, avx2, neon, scalar)]
23pub(super) fn dispatch_gemv_strided_kernel<T, A>(
24 a: &[T],
25 x: &[T],
26 y: &mut [T],
27 nrows: usize,
28 ncols: usize,
29 lda: usize,
30) -> Result<(), SimdError>
31where
32 T: Scalar,
33 A: SimdArch + SimdKernel<T>,
34{
35 match (
36 SimdView::<T, A, Unaligned, Unmasked, &[T]>::new(a),
37 SimdView::<T, A, Unaligned, Unmasked, &[T]>::new(x),
38 ) {
39 (Some(va), Some(vx)) => {
40 use hermes_simd_core::tiling::{TilingPolicy, TilingStrategy};
41 if A::LANE_COUNT > 8 {
42 <TilingPolicy<8, 1> as TilingStrategy<T, A, Unaligned>>::gemv_strided(
43 &va, &vx, y, nrows, ncols, lda,
44 )
45 } else if A::LANE_COUNT > 1 {
46 <TilingPolicy<4, 1> as TilingStrategy<T, A, Unaligned>>::gemv_strided(
47 &va, &vx, y, nrows, ncols, lda,
48 )
49 } else {
50 <TilingPolicy<1, 1> as TilingStrategy<T, A, Unaligned>>::gemv_strided(
51 &va, &vx, y, nrows, ncols, lda,
52 )
53 }
54 }
55 _ => unsafe { core::hint::unreachable_unchecked() },
58 }
59}
60
61#[cfg(test)]
62mod tests {
63 use crate::dispatch::{gemv, gemv_strided};
64
65 fn reference(a: &[f64], x: &[f64], nrows: usize, ncols: usize, lda: usize) -> Vec<f64> {
67 (0..nrows)
68 .map(|r| (0..ncols).map(|c| a[r * lda + c] * x[c]).sum())
69 .collect()
70 }
71
72 #[test]
73 fn gemv_strided_matches_reference_over_submatrix() {
74 let lda = 10usize;
76 let (nrows, ncols) = (4usize, 6usize);
77 let a: Vec<f64> = (0..nrows * lda)
78 .map(|i| ((i % 9) as f64 - 4.0) * 0.25)
79 .collect();
80 let x: Vec<f64> = (0..ncols).map(|i| ((i % 5) as f64 - 2.0) * 0.5).collect();
81 let mut y = vec![0.0f64; nrows];
82 gemv_strided::dispatch_gemv_strided::<f64>(&a, &x, &mut y, nrows, ncols, lda).unwrap();
83 assert_eq!(y, reference(&a, &x, nrows, ncols, lda));
84 }
85
86 #[test]
87 fn gemv_strided_packed_equals_gemv() {
88 let (nrows, ncols) = (9usize, 13usize);
90 let a: Vec<f64> = (0..nrows * ncols)
91 .map(|i| ((i % 7) as f64 - 3.0) * 0.5)
92 .collect();
93 let x: Vec<f64> = (0..ncols).map(|i| ((i % 4) as f64 - 1.0) * 0.25).collect();
94 let mut y_strided = vec![0.0f64; nrows];
95 let mut y_packed = vec![0.0f64; nrows];
96 gemv_strided::dispatch_gemv_strided::<f64>(&a, &x, &mut y_strided, nrows, ncols, ncols)
97 .unwrap();
98 gemv::dispatch_gemv::<f64>(&a, &x, &mut y_packed, nrows, ncols).unwrap();
99 assert_eq!(y_strided, y_packed);
100 }
101
102 #[test]
103 fn gemv_strided_rejects_lda_below_ncols_and_short_spans() {
104 let a = vec![1.0f64; 40];
105 let x = vec![1.0f64; 6];
106 let mut y = vec![0.0f64; 4];
107 assert!(gemv_strided::dispatch_gemv_strided::<f64>(&a, &x, &mut y, 4, 6, 5).is_err());
109 let short = vec![1.0f64; 10];
111 assert!(gemv_strided::dispatch_gemv_strided::<f64>(&short, &x, &mut y, 4, 6, 10).is_err());
112 }
113
114 #[test]
115 fn gemv_strided_rejects_dimension_overflow() {
116 use hermes_simd_core::view::SimdError;
117 let a = vec![1.0f64; 40];
123 let x = vec![1.0f64; 6];
124 let mut y = vec![0.0f64; 2];
125 let r = gemv_strided::dispatch_gemv_strided::<f64>(&a, &x, &mut y, 2, 6, usize::MAX);
126 assert_eq!(r, Err(SimdError::LengthMismatch));
127 }
128}