Line | Branch | Exec | Source |
---|---|---|---|
1 | // | ||
2 | // SPDX-FileCopyrightText: Copyright 2024-2025 Arm Limited and/or its affiliates <open-source-office@arm.com> | ||
3 | // | ||
4 | // SPDX-License-Identifier: Apache-2.0 | ||
5 | // | ||
6 | #if !defined(__aarch64__) && !defined(__ARM_FEATURE_MATMUL_INT8) && !defined(_M_ARM64) | ||
7 | #error "I8mm extension required to compile this micro-kernel" | ||
8 | #else // Architectural features check. | ||
9 | |||
10 | #include "kai_matmul_clamp_f32_qai8dxp4x8_qsi4c32p4x8_8x4x32_neon_i8mm.h" | ||
11 | |||
12 | #include <stddef.h> | ||
13 | #include <stdint.h> | ||
14 | |||
15 | #include "kai/kai_common.h" | ||
16 | |||
17 | typedef struct { | ||
18 | float* dst; | ||
19 | const void* lhs_packed; | ||
20 | const void* rhs_packed; | ||
21 | const float* clamp_vals; | ||
22 | size_t dst_stride_row; | ||
23 | size_t m; | ||
24 | size_t n; | ||
25 | size_t num_blocks; | ||
26 | size_t num_subblocks; | ||
27 | } KernelArgs; | ||
28 | |||
29 | void kai_kernel_matmul_clamp_f32_qai8dxp4x8_qsi4c32p4x8_8x4x32_neon_i8mm(KernelArgs* args_ptr); | ||
30 | |||
31 | // Compute args | ||
32 | static const size_t kai_m_step = 8; | ||
33 | static const size_t kai_n_step = 4; | ||
34 | // Packing args | ||
35 | static const size_t kai_mr = 4; | ||
36 | static const size_t kai_nr = 4; | ||
37 | static const size_t kai_kr = 16; | ||
38 | static const size_t kai_sr = 2; | ||
39 | // LHS format args (num. bytes per value, multiplier, zero_point (if asymmetric)) | ||
40 | static const size_t kai_num_bytes_qvalue_lhs = 1; | ||
41 | static const size_t kai_num_bytes_multiplier_lhs = 4; | ||
42 | static const size_t kai_num_bytes_zp_lhs = 4; | ||
43 | // RHS format args (num. bytes per value, multiplier, zero_point (if asymmetric), and reduction sum (if LHS is | ||
44 | // asymmetric)) | ||
45 | static const size_t kai_num_bytes_recip_qvalue_rhs = 2; | ||
46 | static const size_t kai_num_bytes_multiplier_rhs = 2; | ||
47 | static const size_t kai_num_bytes_rsum_rhs = 4; | ||
48 | // DST format args | ||
49 | static const size_t kai_num_bytes_dst_value = 4; | ||
50 | // Extra args | ||
51 | static const size_t kai_num_bytes_bias = 4; | ||
52 | static const size_t kai_k_multiple_of = 32; | ||
53 | static const size_t kai_bl = 32; | ||
54 | |||
55 | 108 | inline static size_t kai_get_k_roundedup(size_t k) { | |
56 | 108 | return kai_roundup(k, kai_k_multiple_of); | |
57 | } | ||
58 | |||
59 | 108 | inline static size_t kai_get_num_bytes_per_block_rhs(size_t bl) { | |
60 | − | KAI_ASSUME((bl % kai_bl) == 0); | |
61 | 108 | size_t num_bytes_per_block_rhs = (bl / kai_num_bytes_recip_qvalue_rhs) + kai_num_bytes_multiplier_rhs; | |
62 | 216 | return num_bytes_per_block_rhs; | |
63 | 108 | } | |
64 | |||
65 | 271 | inline static size_t kai_get_num_blocks_per_row(size_t k, size_t bl) { | |
66 | − | KAI_ASSUME((bl % kai_bl) == 0); | |
67 | |||
68 | 271 | return kai_roundup(k, bl) / bl; | |
69 | } | ||
70 | |||
71 | 108 | inline static size_t kai_get_lhs_packed_stride(size_t k) { | |
72 | 108 | const size_t k_internal = kai_get_k_roundedup(k); | |
73 | 108 | size_t lhs_packed_stride = kai_mr * ((k_internal * kai_num_bytes_qvalue_lhs) + kai_num_bytes_multiplier_lhs); | |
74 | // Since the LHS matrix is asymmetric with per-row quantization, we must include the | ||
75 | // the number of bytes to hold the zero point value | ||
76 | 108 | lhs_packed_stride += kai_mr * kai_num_bytes_zp_lhs; | |
77 | |||
78 | 216 | return lhs_packed_stride; | |
79 | 108 | } | |
80 | |||
81 | 108 | inline static size_t kai_get_rhs_packed_stride(size_t k, size_t bl) { | |
82 | − | KAI_ASSUME((bl % kai_bl) == 0); | |
83 | |||
84 | 108 | const size_t num_blocks_per_row = kai_get_num_blocks_per_row(k, bl); | |
85 | 108 | const size_t num_bytes_per_block = kai_get_num_bytes_per_block_rhs(bl); | |
86 | |||
87 | 108 | size_t rhs_packed_stride = kai_nr * (num_bytes_per_block * num_blocks_per_row); | |
88 | // Since the LHS matrix is quantized asymmetric with per-row quantization, we also include | ||
89 | // the number of bytes for the reduction sum | ||
90 | 108 | rhs_packed_stride += kai_nr * kai_num_bytes_rsum_rhs; | |
91 | // Since the bias is packed with the RHS matrix, the stride is adjusted with the number of bytes of the bias | ||
92 | 108 | rhs_packed_stride += kai_nr * kai_num_bytes_bias; | |
93 | |||
94 | 216 | return rhs_packed_stride; | |
95 | 108 | } | |
96 | |||
97 | 112 | size_t kai_get_m_step_matmul_clamp_f32_qai8dxp4x8_qsi4c32p4x8_8x4x32_neon_i8mm(void) { | |
98 | 112 | return kai_m_step; | |
99 | } | ||
100 | |||
101 | 112 | size_t kai_get_n_step_matmul_clamp_f32_qai8dxp4x8_qsi4c32p4x8_8x4x32_neon_i8mm(void) { | |
102 | 112 | return kai_n_step; | |
103 | } | ||
104 | |||
105 | 112 | size_t kai_get_mr_matmul_clamp_f32_qai8dxp4x8_qsi4c32p4x8_8x4x32_neon_i8mm(void) { | |
106 | 112 | return kai_mr; | |
107 | } | ||
108 | |||
109 | 112 | size_t kai_get_nr_matmul_clamp_f32_qai8dxp4x8_qsi4c32p4x8_8x4x32_neon_i8mm(void) { | |
110 | 112 | return kai_nr; | |
111 | } | ||
112 | |||
113 | 112 | size_t kai_get_kr_matmul_clamp_f32_qai8dxp4x8_qsi4c32p4x8_8x4x32_neon_i8mm(void) { | |
114 | 112 | return kai_kr; | |
115 | } | ||
116 | |||
117 | 112 | size_t kai_get_sr_matmul_clamp_f32_qai8dxp4x8_qsi4c32p4x8_8x4x32_neon_i8mm(void) { | |
118 | 112 | return kai_sr; | |
119 | } | ||
120 | |||
121 | 108 | size_t kai_get_lhs_packed_offset_matmul_clamp_f32_qai8dxp4x8_qsi4c32p4x8_8x4x32_neon_i8mm(size_t m_idx, size_t k) { | |
122 | − | KAI_ASSUME((m_idx % kai_m_step) == 0); | |
123 | |||
124 | 108 | return (m_idx / kai_mr) * kai_get_lhs_packed_stride(k); | |
125 | } | ||
126 | |||
127 | 108 | size_t kai_get_rhs_packed_offset_matmul_clamp_f32_qai8dxp4x8_qsi4c32p4x8_8x4x32_neon_i8mm( | |
128 | size_t n_idx, size_t k, size_t bl) { | ||
129 | − | KAI_ASSUME((k % bl) == 0); | |
130 | − | KAI_ASSUME((n_idx % kai_n_step) == 0); | |
131 | |||
132 | 108 | return (n_idx / kai_nr) * kai_get_rhs_packed_stride(k, bl); | |
133 | } | ||
134 | |||
135 | 108 | size_t kai_get_dst_offset_matmul_clamp_f32_qai8dxp4x8_qsi4c32p4x8_8x4x32_neon_i8mm( | |
136 | size_t m_idx, size_t n_idx, size_t dst_stride) { | ||
137 | − | KAI_ASSUME((m_idx % kai_m_step) == 0); | |
138 | − | KAI_ASSUME((n_idx % kai_n_step) == 0); | |
139 | |||
140 | 108 | return (n_idx * kai_num_bytes_dst_value) + m_idx * dst_stride; | |
141 | } | ||
142 | |||
143 | 108 | size_t kai_get_dst_size_matmul_clamp_f32_qai8dxp4x8_qsi4c32p4x8_8x4x32_neon_i8mm(size_t m, size_t n) { | |
144 | 108 | return m * n * kai_num_bytes_dst_value; | |
145 | } | ||
146 | |||
147 | 163 | void kai_run_matmul_clamp_f32_qai8dxp4x8_qsi4c32p4x8_8x4x32_neon_i8mm( | |
148 | size_t m, // | ||
149 | size_t n, // | ||
150 | size_t k, // | ||
151 | size_t bl, // | ||
152 | const void* restrict lhs_packed, // | ||
153 | const void* restrict rhs_packed, // | ||
154 | float* restrict dst, // NOLINT(readability-non-const-parameter) | ||
155 | size_t dst_stride_row, // | ||
156 | size_t dst_stride_col, // | ||
157 | float scalar_min, // | ||
158 | float scalar_max) { | ||
159 | − | KAI_ASSUME(dst_stride_col == sizeof(float)); | |
160 | − | KAI_ASSUME((k % bl) == 0); | |
161 | − | KAI_ASSUME((bl % kai_bl) == 0); | |
162 | |||
163 |
1/2✓ Branch 0 taken 163 times.
✗ Branch 1 not taken.
|
163 | if (m == 0) { |
164 | ✗ | return; | |
165 | } | ||
166 | 163 | const size_t num_subblocks = bl / kai_bl; | |
167 | 163 | const size_t num_blocks = kai_get_num_blocks_per_row(k, bl); | |
168 | 163 | const float clamp_vals[2] = {scalar_min, scalar_max}; | |
169 | |||
170 | 163 | KernelArgs args; | |
171 | |||
172 | 163 | args.dst = dst; | |
173 | 163 | args.lhs_packed = lhs_packed; | |
174 | 163 | args.rhs_packed = rhs_packed; | |
175 | 163 | args.clamp_vals = clamp_vals; | |
176 | 163 | args.dst_stride_row = dst_stride_row; | |
177 | 163 | args.m = m; | |
178 | 163 | args.n = n; | |
179 | 163 | args.num_blocks = num_blocks; | |
180 | 163 | args.num_subblocks = num_subblocks; | |
181 | |||
182 | 163 | kai_kernel_matmul_clamp_f32_qai8dxp4x8_qsi4c32p4x8_8x4x32_neon_i8mm(&args); | |
183 | 163 | } | |
184 | |||
185 | #endif // Architectural features check. | ||
186 |