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Georgios Pinitascfa2bba2019-06-27 17:00:52 +01001/*
2 * Copyright (c) 2019 Arm Limited.
3 *
4 * SPDX-License-Identifier: MIT
5 *
6 * Permission is hereby granted, free of charge, to any person obtaining a copy
7 * of this software and associated documentation files (the "Software"), to
8 * deal in the Software without restriction, including without limitation the
9 * rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
10 * sell copies of the Software, and to permit persons to whom the Software is
11 * furnished to do so, subject to the following conditions:
12 *
13 * The above copyright notice and this permission notice shall be included in all
14 * copies or substantial portions of the Software.
15 *
16 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
19 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
22 * SOFTWARE.
23 */
Georgios Pinitasf33484f2019-07-29 12:40:59 +010024#ifdef __aarch64__
25
Georgios Pinitascfa2bba2019-06-27 17:00:52 +010026#include "arm_gemm.hpp"
27
28#include "kernels/a64_hybrid_u8u32_dot_16x4.hpp"
29#include "kernels/a64_smallK_hybrid_u8u32_dot_4x6.hpp"
30#include "kernels/a64_smallK_hybrid_u8u32_dot_4x8.hpp"
31#include "kernels/sve_hybrid_u8u32_dot_4VLx4.hpp"
32#include "kernels/sve_smallK_hybrid_u8u32_dot_1VLx8.hpp"
33
34#include "gemm_hybrid_quantized.hpp"
35#include "quantize_wrapper.hpp"
36
37namespace arm_gemm {
38
39static const GemmImplementation<uint8_t, uint8_t, ARequantizeLayer32> gemm_quint8_methods[] =
40{
41#ifdef __ARM_FEATURE_SVE
42{
43 GemmMethod::GEMM_HYBRID_QUANTIZED,
44 "smallK_hybrid_u8u32_dot_1VLx8",
45 [](const GemmArgs<uint8_t> &args, const ARequantizeLayer32 &) { return args._Ksize<=64 && args._alpha==1 && args._beta==0 && !args._trA && args._pretransposed_hint; },
46 nullptr,
47 [](const GemmArgs<uint8_t> &args, const ARequantizeLayer32 &qp) { return new GemmHybridQuantized<smallK_hybrid_u8u32_dot_1VLx8, uint8_t, uint8_t>(args, qp); }
48},
49{
50 GemmMethod::GEMM_HYBRID_QUANTIZED,
51 "hybrid_u8u32_dot_4VLx4",
52 [](const GemmArgs<uint8_t> &args, const ARequantizeLayer32 &) { return args._Ksize>=16 && args._alpha==1 && !args._trA && !args._trB && args._pretransposed_hint; },
53 [](const GemmArgs<uint8_t> &args, const ARequantizeLayer32 &) { return ((args._Ksize <= 128) && (args._Nsize <= 128)) || ((args._nmulti > 1) && ((args._Msize / args._maxthreads) < 8)); },
54 [](const GemmArgs<uint8_t> &args, const ARequantizeLayer32 &qp) { return new GemmHybridQuantized<hybrid_u8u32_dot_4VLx4, uint8_t, uint8_t>(args, qp); }
55},
56#endif
57{
58 GemmMethod::GEMM_HYBRID_QUANTIZED,
59 "smallK_hybrid_u8u32_dot_4x8",
60 [](const GemmArgs<uint8_t> &args, const ARequantizeLayer32 &) { return args._ci->has_dotprod() && (args._Nsize % 4 == 0) && (args._Ksize<=32) && args._alpha==1 && args._beta==0 && !args._trA && args._pretransposed_hint; },
61 nullptr,
62 [](const GemmArgs<uint8_t> &args, const ARequantizeLayer32 &qp) { return new GemmHybridQuantized<smallK_hybrid_u8u32_dot_4x8, uint8_t, uint8_t>(args, qp); }
63},
64{
65 GemmMethod::GEMM_HYBRID_QUANTIZED,
66 "smallK_hybrid_u8u32_dot_4x6",
67 [](const GemmArgs<uint8_t> &args, const ARequantizeLayer32 &) { return args._ci->has_dotprod() && (args._Nsize % 4 == 0) && (args._Ksize>32) && (args._Ksize<=64) && args._alpha==1 && args._beta==0 && !args._trA && args._pretransposed_hint; },
68 nullptr,
69 [](const GemmArgs<uint8_t> &args, const ARequantizeLayer32 &qp) { return new GemmHybridQuantized<smallK_hybrid_u8u32_dot_4x6, uint8_t, uint8_t>(args, qp); }
70},
71{
72 GemmMethod::GEMM_HYBRID_QUANTIZED,
73 "hybrid_u8u32_dot_16x4",
74 [](const GemmArgs<uint8_t> &args, const ARequantizeLayer32 &) { return args._ci->has_dotprod() && args._Ksize>=16 && !args._trA && !args._trB && args._pretransposed_hint; },
75 [](const GemmArgs<uint8_t> &args, const ARequantizeLayer32 &) { return args._Nsize<=256 && args._Ksize>128; },
76 [](const GemmArgs<uint8_t> &args, const ARequantizeLayer32 &qp) { return new GemmHybridQuantized<hybrid_u8u32_dot_16x4, uint8_t, uint8_t>(args, qp); }
77},
78{
79 GemmMethod::QUANTIZE_WRAPPER,
80 "quantized_wrapper",
81 nullptr,
82 nullptr,
83 [](const GemmArgs<uint8_t> &args, const ARequantizeLayer32 &qp) { return new QuantizeWrapper<uint8_t, uint8_t, uint32_t>(args, qp); }
84},
85{
86 GemmMethod::DEFAULT,
87 "",
88 nullptr,
89 nullptr,
90 nullptr
91}
92};
93
94template<>
95const GemmImplementation<uint8_t, uint8_t, ARequantizeLayer32> *gemm_implementation_list<uint8_t, uint8_t, ARequantizeLayer32>() {
96 return gemm_quint8_methods;
97}
98
99template UniqueGemmCommon<uint8_t, uint8_t> gemm<uint8_t, uint8_t, ARequantizeLayer32>(const GemmArgs<uint8_t> &args, const ARequantizeLayer32 &os);
100template KernelDescription get_gemm_method<uint8_t, uint8_t, ARequantizeLayer32>(const GemmArgs<uint8_t> &args, const ARequantizeLayer32 &os);
101template std::vector<KernelDescription> get_compatible_kernels<uint8_t, uint8_t, ARequantizeLayer32>(const GemmArgs<uint8_t> &args, const ARequantizeLayer32 &os);
102
103} // namespace arm_gemm
Georgios Pinitasf33484f2019-07-29 12:40:59 +0100104
105#endif // __aarch64__