/******************************************************************************* * Copyright 2018 Intel Corporation * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. *******************************************************************************/ #ifndef JIT_AVX512_CORE_X8S8S32X_1X1_CONV_KERNEL_HPP #define JIT_AVX512_CORE_X8S8S32X_1X1_CONV_KERNEL_HPP #include "c_types_map.hpp" #include "memory_tracking.hpp" #include "jit_generator.hpp" #include "jit_primitive_conf.hpp" #include "jit_uni_eltwise.hpp" namespace mkldnn { namespace impl { namespace cpu { struct jit_avx512_core_x8s8s32x_1x1_conv_kernel: public jit_generator { DECLARE_CPU_JIT_AUX_FUNCTIONS(jit_avx512_core_x8s8s32x_1x1_conv_fwd_ker_t) jit_avx512_core_x8s8s32x_1x1_conv_kernel(jit_1x1_conv_conf_t ajcp, const primitive_attr_t &attr) : jcp(ajcp), attr_(attr), eltwise_injector_(nullptr) { if (jcp.with_eltwise) eltwise_injector_ = new jit_uni_eltwise_injector_f32( this, jcp.eltwise); this->generate(); jit_ker = (void (*)(jit_1x1_conv_call_s *)) this->getCode(); } ~jit_avx512_core_x8s8s32x_1x1_conv_kernel() { delete eltwise_injector_; } static bool post_ops_ok(jit_1x1_conv_conf_t &jcp, const primitive_attr_t &attr); static status_t init_conf(jit_1x1_conv_conf_t &jcp, const convolution_desc_t &cd, const memory_desc_wrapper &src_d, const memory_desc_wrapper &weights_d, const memory_desc_wrapper &dst_d, const memory_desc_wrapper &bias_d, const primitive_attr_t &attr, int nthreads, bool reduce_src); static void init_scratchpad(memory_tracking::registrar_t &scratchpad, const jit_1x1_conv_conf_t &jcp, const primitive_attr_t &attr); bool maybe_eltwise(int position); jit_1x1_conv_conf_t jcp; const primitive_attr_t &attr_; void (*jit_ker)(jit_1x1_conv_call_s *); private: jit_uni_eltwise_injector_f32 *eltwise_injector_; using reg64_t = const Xbyak::Reg64; using zmm_t = const Xbyak::Zmm; using mask_t = const Xbyak::Opmask; reg64_t reg_bcast_data = r8; reg64_t reg_ptr_scales = r8; reg64_t reg_output_data = r9; reg64_t reg_load_data = r10; reg64_t reg_ptr_sum_scale = r10; reg64_t reg_reduce_loop_work = r11; reg64_t reg_bias_data = r12; reg64_t reg_comp_data = r12; reg64_t reg_scratch = r13; reg64_t aux_reg_bcast_data = r14; reg64_t aux_reg_load_data = r15; reg64_t imm_addr64 = r15; reg64_t reg_reduce_pos_flag = rax; reg64_t aux1_reg_bcast_data = rbx; reg64_t reg_bcast_loop_work = rbx; reg64_t bcast_loop_iter = rdx; // Note: Fix me reg64_t reg_load_loop_work = rsi; reg64_t aux_reg_output_data = abi_not_param1; reg64_t reduce_loop_iter = abi_param1; reg64_t reg_last_load = r8; mask_t ktail_mask = k6; mask_t vmask = k7; Xbyak::Zmm zmm_tmp = Xbyak::Zmm(28); Xbyak::Zmm zmm_one = Xbyak::Zmm(29); Xbyak::Zmm zmm_zero = Xbyak::Zmm(30); Xbyak::Zmm zmm_bcast = Xbyak::Zmm(31); Xbyak::Zmm zmm_shift = Xbyak::Zmm(30); Xbyak::Zmm zmm_bias_alpha = Xbyak::Zmm(31); Xbyak::Xmm xmm_bias_alpha = Xbyak::Xmm(31); int bcast_loop_work_off = 0; int reg_bias_data_off = 8; int reg_bcast_data_off = 16; int reg_load_data_off = 24; int reg_ptr_sum_scale_off = 32; int reg_comp_data_off = 40; int stack_space_needed = 48; void bcast_loop(int load_loop_blk); void reduce_loop(int load_loop_blk, int ur, int substep, bool wraparound); void generate(); void cvt2ps(data_type_t type_in, zmm_t zmm_in, const Xbyak::Operand &op, bool mask_flag); }; } } } #endif