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https://github.com/ROCm/composable_kernel.git
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117 lines
3.7 KiB
C++
117 lines
3.7 KiB
C++
#pragma once
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#include "common.hip.hpp"
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#include "ConstantMatrixDescriptor.hip.hpp"
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template <class Float, class Matrix>
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__device__ void threadwise_matrix_set_zero(Matrix, Float* __restrict__ p_thread)
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{
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for(index_t i = 0; i < Matrix::NRow(); ++i)
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{
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for(index_t j = 0; j < Matrix::NCol(); ++j)
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{
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const index_t id = Matrix::GetOffsetFromMultiIndex(i, j);
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p_thread[id] = Float(0);
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}
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}
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}
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template <class Float,
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class SrcMatrix,
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class DstMatrix,
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index_t NRow,
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index_t NCol,
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index_t DataPerRead>
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__device__ void threadwise_matrix_copy(SrcMatrix,
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const Float* __restrict__ p_src,
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DstMatrix,
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Float* __restrict__ p_dst,
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Sequence<NRow, NCol>,
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Number<DataPerRead>)
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{
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static_assert(NCol % DataPerRead == 0, "wrong! should be NCol % == DataPerRead == 0");
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using vector_t = typename vector_type<Float, DataPerRead>::MemoryType;
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constexpr auto src_mtx = SrcMatrix{};
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constexpr auto dst_mtx = DstMatrix{};
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for(index_t i = 0; i < NRow; ++i)
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{
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for(index_t j = 0; j < NCol; j += DataPerRead)
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{
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const index_t src_index = src_mtx.GetOffsetFromMultiIndex(i, j);
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const index_t dst_index = dst_mtx.GetOffsetFromMultiIndex(i, j);
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*reinterpret_cast<vector_t*>(&p_dst[dst_index]) =
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*reinterpret_cast<const vector_t*>(&p_src[src_index]);
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}
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}
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}
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template <class MatrixA,
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class MatrixB,
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class MatrixC,
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bool TransA,
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bool TransB,
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bool TransC,
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class FloatA,
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class FloatB,
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class FloatC>
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__device__ void threadwise_gemm(MatrixA,
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integral_constant<bool, TransA>,
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const FloatA* __restrict__ p_a_thread,
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MatrixB,
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integral_constant<bool, TransB>,
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const FloatB* __restrict__ p_b_thread,
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MatrixC,
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integral_constant<bool, TransC>,
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FloatC* __restrict__ p_c_thread)
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{
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#if 0
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if(get_thread_local_1d_id() == 0 && get_block_1d_id() == 0)
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{
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printf("p_a_thread: %f %f %f %f\n",
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p_a_thread[0],
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p_a_thread[1],
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p_a_thread[2],
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p_a_thread[3]);
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printf("p_b_thread: %f %f %f %f\n",
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p_b_thread[0],
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p_b_thread[1],
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p_b_thread[2],
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p_b_thread[3]);
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}
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#endif
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if(TransA && (!TransB) && (!TransC))
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{
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constexpr auto a_mtx = MatrixA{};
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constexpr auto b_mtx = MatrixB{};
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constexpr auto c_mtx = MatrixC{};
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constexpr index_t M = c_mtx.NRow();
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constexpr index_t N = c_mtx.NCol();
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constexpr index_t K = a_mtx.NRow(); // A is transposed
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for(index_t k = 0; k < K; ++k)
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{
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for(index_t i = 0; i < M; ++i)
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{
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for(index_t j = 0; j < N; ++j)
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{
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const index_t aindex = a_mtx.GetOffsetFromMultiIndex(k, i); // A is transposed
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const index_t bindex = b_mtx.GetOffsetFromMultiIndex(k, j);
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const index_t cindex = c_mtx.GetOffsetFromMultiIndex(i, j);
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p_c_thread[cindex] += p_a_thread[aindex] * p_b_thread[bindex];
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}
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}
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}
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}
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else
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{
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// not implemented
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assert(false);
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}
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}
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