test / src /configs /prelu-config.c
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// Copyright 2023 Google LLC
//
// This source code is licensed under the BSD-style license found in the
// LICENSE file in the root directory of this source tree.
#include <assert.h>
#include <stddef.h>
#ifdef _WIN32
#include <windows.h>
#else
#include <pthread.h>
#endif
#include <xnnpack/common.h>
#include <xnnpack/config.h>
#include <xnnpack/microparams-init.h>
#include <xnnpack/prelu.h>
static struct xnn_prelu_config f16_prelu_config = {0};
static struct xnn_prelu_config f32_prelu_config = {0};
#if XNN_PLATFORM_WINDOWS
static INIT_ONCE init_guard_f16_prelu = INIT_ONCE_STATIC_INIT;
static INIT_ONCE init_guard_f32_prelu = INIT_ONCE_STATIC_INIT;
#else
static pthread_once_t init_guard_f16_prelu = PTHREAD_ONCE_INIT;
static pthread_once_t init_guard_f32_prelu = PTHREAD_ONCE_INIT;
#endif
static void init_f16_prelu_config(void) {
#if XNN_ARCH_ARM && XNN_ENABLE_ARM_FP16_VECTOR && XNN_ENABLE_ARM_FP16_SCALAR
const struct xnn_hardware_config* hardware_config = xnn_init_hardware_config();
assert(hardware_config != NULL);
if (hardware_config->use_arm_neon_fp16_arith) {
f16_prelu_config.ukernel = (xnn_prelu_ukernel_fn) xnn_f16_prelu_ukernel__neonfp16arith_2x16;
f16_prelu_config.row_tile = 2;
f16_prelu_config.channel_tile = 16;
}
#elif XNN_ARCH_ARM64 && XNN_ENABLE_ARM_FP16_VECTOR
const struct xnn_hardware_config* hardware_config = xnn_init_hardware_config();
assert(hardware_config != NULL);
if (hardware_config->use_arm_neon_fp16_arith) {
f16_prelu_config.ukernel = (xnn_prelu_ukernel_fn) xnn_f16_prelu_ukernel__neonfp16arith_2x16;
f16_prelu_config.row_tile = 2;
f16_prelu_config.channel_tile = 16;
}
#elif (XNN_ARCH_X86 || XNN_ARCH_X86_64) && !XNN_PLATFORM_MOBILE
const struct xnn_hardware_config* hardware_config = xnn_init_hardware_config();
assert(hardware_config != NULL);
if (hardware_config->use_x86_avx2) {
f16_prelu_config.ukernel = (xnn_prelu_ukernel_fn) xnn_f16_prelu_ukernel__f16c_2x16;
f16_prelu_config.row_tile = 2;
f16_prelu_config.channel_tile = 16;
}
#endif
}
static void init_f32_prelu_config(void) {
#if XNN_ARCH_ARM
const struct xnn_hardware_config* hardware_config = xnn_init_hardware_config();
assert(hardware_config != NULL);
if (hardware_config->use_arm_neon) {
f32_prelu_config.ukernel = (xnn_prelu_ukernel_fn) xnn_f32_prelu_ukernel__neon_2x8;
f32_prelu_config.row_tile = 2;
f32_prelu_config.channel_tile = 8;
} else if (!XNN_PLATFORM_MOBILE) {
f32_prelu_config.ukernel = (xnn_prelu_ukernel_fn) xnn_f32_prelu_ukernel__scalar_2x4;
f32_prelu_config.row_tile = 4;
f32_prelu_config.channel_tile = 4;
}
#elif XNN_ARCH_ARM64
f32_prelu_config.ukernel = (xnn_prelu_ukernel_fn) xnn_f32_prelu_ukernel__neon_2x8;
f32_prelu_config.row_tile = 2;
f32_prelu_config.channel_tile = 8;
#elif XNN_ARCH_X86 || XNN_ARCH_X86_64
const struct xnn_hardware_config* hardware_config = xnn_init_hardware_config();
assert(hardware_config != NULL);
if (!XNN_PLATFORM_MOBILE && hardware_config->use_x86_avx512f) {
f32_prelu_config.ukernel = (xnn_prelu_ukernel_fn) xnn_f32_prelu_ukernel__avx512f_2x16;
f32_prelu_config.row_tile = 2;
f32_prelu_config.channel_tile = 16;
} else if (hardware_config->use_x86_avx) {
f32_prelu_config.ukernel = (xnn_prelu_ukernel_fn) xnn_f32_prelu_ukernel__avx_2x16;
f32_prelu_config.row_tile = 2;
f32_prelu_config.channel_tile = 16;
} else if (hardware_config->use_x86_sse4_1) {
f32_prelu_config.ukernel = (xnn_prelu_ukernel_fn) xnn_f32_prelu_ukernel__sse41_2x8;
f32_prelu_config.row_tile = 2;
f32_prelu_config.channel_tile = 8;
} else {
f32_prelu_config.ukernel = (xnn_prelu_ukernel_fn) xnn_f32_prelu_ukernel__sse2_2x8;
f32_prelu_config.row_tile = 2;
f32_prelu_config.channel_tile = 8;
}
#elif XNN_ARCH_WASMRELAXEDSIMD
const struct xnn_hardware_config* hardware_config = xnn_init_hardware_config();
assert(hardware_config != NULL);
if (hardware_config->is_x86) {
f32_prelu_config.ukernel = (xnn_prelu_ukernel_fn) xnn_f32_prelu_ukernel__wasmrelaxedsimd_iminmax_2x4;
f32_prelu_config.row_tile = 2;
f32_prelu_config.channel_tile = 4;
} else {
f32_prelu_config.ukernel = (xnn_prelu_ukernel_fn) xnn_f32_prelu_ukernel__wasmrelaxedsimd_laneselect_2x4;
f32_prelu_config.row_tile = 2;
f32_prelu_config.channel_tile = 4;
}
#elif XNN_ARCH_WASMSIMD
const struct xnn_hardware_config* hardware_config = xnn_init_hardware_config();
assert(hardware_config != NULL);
if (hardware_config->is_x86) {
f32_prelu_config.ukernel = (xnn_prelu_ukernel_fn) xnn_f32_prelu_ukernel__wasmsimd_iminmax_2x8;
f32_prelu_config.row_tile = 2;
f32_prelu_config.channel_tile = 8;
} else {
f32_prelu_config.ukernel = (xnn_prelu_ukernel_fn) xnn_f32_prelu_ukernel__wasmsimd_laneselect_2x8;
f32_prelu_config.row_tile = 2;
f32_prelu_config.channel_tile = 8;
}
#elif XNN_ARCH_WASM
const struct xnn_hardware_config* hardware_config = xnn_init_hardware_config();
assert(hardware_config != NULL);
if (hardware_config->is_x86) {
f32_prelu_config.ukernel = (xnn_prelu_ukernel_fn) xnn_f32_prelu_ukernel__scalar_2x4;
f32_prelu_config.row_tile = 2;
f32_prelu_config.channel_tile = 4;
} else {
f32_prelu_config.ukernel = (xnn_prelu_ukernel_fn) xnn_f32_prelu_ukernel__wasm_2x4;
f32_prelu_config.row_tile = 2;
f32_prelu_config.channel_tile = 4;
}
#elif XNN_ARCH_RISCV
f32_prelu_config.ukernel = (xnn_prelu_ukernel_fn) xnn_f32_prelu_ukernel__scalar_2x4;
f32_prelu_config.row_tile = 4;
f32_prelu_config.channel_tile = 4;
#endif
}
#if XNN_PLATFORM_WINDOWS
static BOOL CALLBACK init_f16_prelu_config_windows(PINIT_ONCE init_once, PVOID parameter, PVOID* context) {
init_f16_prelu_config();
return TRUE;
}
static BOOL CALLBACK init_f32_prelu_config_windows(PINIT_ONCE init_once, PVOID parameter, PVOID* context) {
init_f32_prelu_config();
return TRUE;
}
#endif
const struct xnn_prelu_config* xnn_init_f16_prelu_config() {
const struct xnn_hardware_config* hardware_config = xnn_init_hardware_config();
if (hardware_config == NULL || !xnn_is_f16_compatible_config(hardware_config)) {
return NULL;
}
#if XNN_PLATFORM_WINDOWS
InitOnceExecuteOnce(&init_guard_f16_prelu, &init_f16_prelu_config_windows, NULL, NULL);
#else
pthread_once(&init_guard_f16_prelu, &init_f16_prelu_config);
#endif
return &f16_prelu_config;
}
const struct xnn_prelu_config* xnn_init_f32_prelu_config() {
const struct xnn_hardware_config* hardware_config = xnn_init_hardware_config();
if (hardware_config == NULL) {
return NULL;
}
#if XNN_PLATFORM_WINDOWS
InitOnceExecuteOnce(&init_guard_f32_prelu, &init_f32_prelu_config_windows, NULL, NULL);
#else
pthread_once(&init_guard_f32_prelu, &init_f32_prelu_config);
#endif
return &f32_prelu_config;
}