Merge bbdab67a85 into d612901116
This commit is contained in:
commit
b25014f712
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@ -484,7 +484,7 @@ struct ggml_backend_opencl_context {
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cl_kernel kernel_scale_f32, kernel_scale_f32_4;
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cl_kernel kernel_sqr_cont_f32, kernel_sqr_cont_f32_4, kernel_sqr_cont_f16, kernel_sqr_cont_f16_4;
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cl_kernel kernel_sqrt_cont_f32, kernel_sqrt_cont_f32_4, kernel_sqrt_cont_f16, kernel_sqrt_cont_f16_4;
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cl_kernel kernel_mean_f32;
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cl_kernel kernel_mean_f32, kernel_mean_f32_4;
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cl_kernel kernel_silu, kernel_silu_4;
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cl_kernel kernel_gelu, kernel_gelu_4;
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cl_kernel kernel_gelu_erf, kernel_gelu_erf_4;
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@ -543,7 +543,7 @@ struct ggml_backend_opencl_context {
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cl_kernel kernel_solve_tri_f32;
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cl_kernel kernel_im2col_f32, kernel_im2col_f16;
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cl_kernel kernel_argsort_f32_i32;
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cl_kernel kernel_sum_rows_f32;
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cl_kernel kernel_sum_rows_f32, kernel_sum_rows_f32_4;
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cl_kernel kernel_repeat_f32;
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cl_kernel kernel_pad;
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cl_kernel kernel_tanh_f32, kernel_tanh_f32_4, kernel_tanh_f32_nc;
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@ -1837,6 +1837,7 @@ static void load_cl_kernels(ggml_backend_opencl_context *backend_ctx, ggml_cl_ve
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build_program_from_source(backend_ctx->context, backend_ctx->device, kernel_src.c_str(), compile_opts);
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CL_CHECK((backend_ctx->kernel_mean_f32 = clCreateKernel(prog, "kernel_mean_f32", &err), err));
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CL_CHECK((backend_ctx->kernel_mean_f32_4 = clCreateKernel(prog, "kernel_mean_f32_4", &err), err));
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CL_CHECK(clReleaseProgram(prog));
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GGML_LOG_CONT(".");
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@ -1874,6 +1875,7 @@ static void load_cl_kernels(ggml_backend_opencl_context *backend_ctx, ggml_cl_ve
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build_program_from_source(backend_ctx->context, backend_ctx->device, kernel_src.c_str(), compile_opts);
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CL_CHECK((backend_ctx->kernel_sum_rows_f32 = clCreateKernel(backend_ctx->program_sum_rows_f32, "kernel_sum_rows_f32", &err), err));
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CL_CHECK((backend_ctx->kernel_sum_rows_f32_4 = clCreateKernel(backend_ctx->program_sum_rows_f32, "kernel_sum_rows_f32_4", &err), err));
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GGML_LOG_CONT(".");
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}
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@ -3587,7 +3589,7 @@ static bool ggml_opencl_supports_op(ggml_backend_dev_t dev, const struct ggml_te
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}
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case GGML_OP_SUM_ROWS:
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case GGML_OP_MEAN:
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return op->src[0]->type == GGML_TYPE_F32 && ggml_is_contiguous(op->src[0]);
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return op->src[0]->type == GGML_TYPE_F32;
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case GGML_OP_FLASH_ATTN_EXT:
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{
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const ggml_tensor * q = op->src[0];
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@ -6400,7 +6402,6 @@ static void ggml_cl_mean(ggml_backend_t backend, const ggml_tensor * src0, const
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GGML_UNUSED(src1);
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GGML_ASSERT(src0->nb[0] == ggml_type_size(src0->type));
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GGML_ASSERT(ggml_is_contiguous(src0));
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ggml_backend_opencl_context *backend_ctx = (ggml_backend_opencl_context *)backend->context;
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@ -6423,7 +6424,14 @@ static void ggml_cl_mean(ggml_backend_t backend, const ggml_tensor * src0, const
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const cl_ulong nb2 = dst->nb[2];
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const cl_ulong nb3 = dst->nb[3];
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cl_kernel kernel = backend_ctx->kernel_mean_f32;
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cl_kernel kernel;
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const bool is_c4 = ne00 % 4 == 0;
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if (is_c4) {
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kernel = backend_ctx->kernel_mean_f32_4;
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} else {
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kernel = backend_ctx->kernel_mean_f32;
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}
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CL_CHECK(clSetKernelArg(kernel, 0, sizeof(cl_mem), &extra0->data_device));
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CL_CHECK(clSetKernelArg(kernel, 1, sizeof(cl_ulong), &offset0));
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@ -6440,7 +6448,7 @@ static void ggml_cl_mean(ggml_backend_t backend, const ggml_tensor * src0, const
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CL_CHECK(clSetKernelArg(kernel, 12, sizeof(cl_ulong), &nb2));
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CL_CHECK(clSetKernelArg(kernel, 13, sizeof(cl_ulong), &nb3));
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size_t global_work_size[] = {(size_t)ne01, (size_t)ne02, (size_t)ne03};
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size_t global_work_size[] = {64 * (size_t)ne01, (size_t)ne02, (size_t)ne03};
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size_t local_work_size[] = {(size_t)64, 1, 1};
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backend_ctx->enqueue_ndrange_kernel(kernel, 3, global_work_size, local_work_size, dst);
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@ -11088,7 +11096,6 @@ static void ggml_cl_sum_rows(ggml_backend_t backend, const ggml_tensor * src0, c
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GGML_UNUSED(src1);
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GGML_ASSERT(src0->nb[0] == ggml_type_size(src0->type));
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GGML_ASSERT(ggml_is_contiguous(src0));
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ggml_backend_opencl_context *backend_ctx = (ggml_backend_opencl_context *)backend->context;
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@ -11111,7 +11118,14 @@ static void ggml_cl_sum_rows(ggml_backend_t backend, const ggml_tensor * src0, c
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const cl_ulong nb2 = dst->nb[2];
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const cl_ulong nb3 = dst->nb[3];
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cl_kernel kernel = backend_ctx->kernel_sum_rows_f32;
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cl_kernel kernel;
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const bool is_c4 = ne00 % 4 == 0;
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if (is_c4) {
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kernel = backend_ctx->kernel_sum_rows_f32_4;
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} else {
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kernel = backend_ctx->kernel_sum_rows_f32;
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}
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CL_CHECK(clSetKernelArg(kernel, 0, sizeof(cl_mem), &extra0->data_device));
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CL_CHECK(clSetKernelArg(kernel, 1, sizeof(cl_ulong), &offset0));
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@ -11128,7 +11142,7 @@ static void ggml_cl_sum_rows(ggml_backend_t backend, const ggml_tensor * src0, c
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CL_CHECK(clSetKernelArg(kernel, 12, sizeof(cl_ulong), &nb2));
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CL_CHECK(clSetKernelArg(kernel, 13, sizeof(cl_ulong), &nb3));
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size_t global_work_size[] = {(size_t)ne01, (size_t)ne02, (size_t)ne03};
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size_t global_work_size[] = {64 * (size_t)ne01, (size_t)ne02, (size_t)ne03};
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size_t local_work_size[] = {(size_t)64, 1, 1};
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backend_ctx->enqueue_ndrange_kernel(kernel, 3, global_work_size, local_work_size, dst);
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@ -1,8 +1,11 @@
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#pragma OPENCL EXTENSION cl_khr_fp16 : enable
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#pragma OPENCL EXTENSION cl_khr_subgroups : enable
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#define MAX_SUBGROUPS 64
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kernel void kernel_mean_f32(
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global float * src0,
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global char * src0,
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ulong offset0,
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global float * dst,
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global char * dst,
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ulong offsetd,
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int ne00,
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int ne01,
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@ -15,25 +18,121 @@ kernel void kernel_mean_f32(
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ulong nb2,
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ulong nb3
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) {
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src0 = (global float *)((global char *)src0 + offset0);
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dst = (global float *)((global char *)dst + offsetd);
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src0 = src0 + offset0;
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dst = dst + offsetd;
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int i3 = get_global_id(2);
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int i2 = get_global_id(1);
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int i1 = get_global_id(0);
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const int i3 = get_group_id(2);
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const int i2 = get_group_id(1);
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const int i1 = get_group_id(0);
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const int lid = get_local_id(0);
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const int lsize = get_local_size(0);
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const uint sg_size = get_sub_group_size();
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const uint sg_id = get_sub_group_id();
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const uint sg_lid = get_sub_group_local_id();
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__local float lmem[MAX_SUBGROUPS];
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if (i3 >= ne03 || i2 >= ne02 || i1 >= ne01) {
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return;
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}
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global float * src_row = (global float *) ((global char *) src0 + i1*nb01 + i2*nb02 + i3*nb03);
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global float * dst_row = (global float *) ((global char *) dst + i1*nb1 + i2*nb2 + i3*nb3);
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float row_sum = 0;
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for (int i0 = 0; i0 < ne00; i0++) {
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row_sum += src_row[i0];
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if(sg_id == 0){
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lmem[sg_lid] = 0.0f;
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}
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dst_row[0] = row_sum / ne00;
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global float * src_row = (global float *) (src0 + i1*nb01 + i2*nb02 + i3*nb03);
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global float * dst_row = (global float *) (dst + i1*nb1 + i2*nb2 + i3*nb3);
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float sumf = 0.0f;
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for (int i0 = lid; i0 < ne00; i0 += lsize) {
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sumf += src_row[i0];
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}
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sumf = sub_group_reduce_add(sumf);
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barrier(CLK_LOCAL_MEM_FENCE);
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if(sg_lid == 0){
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lmem[sg_id] = sumf;
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}
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barrier(CLK_LOCAL_MEM_FENCE);
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sumf = lmem[sg_lid];
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sumf = sub_group_reduce_add(sumf);
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if (lid == 0) {
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dst_row[0] = sumf / ne00;
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}
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}
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kernel void kernel_mean_f32_4(
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global char * src0,
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ulong offset0,
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global char * dst,
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ulong offsetd,
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int ne00,
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int ne01,
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int ne02,
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int ne03,
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ulong nb01,
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ulong nb02,
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ulong nb03,
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ulong nb1,
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ulong nb2,
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ulong nb3
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) {
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src0 = src0 + offset0;
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dst = dst + offsetd;
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const int i3 = get_group_id(2);
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const int i2 = get_group_id(1);
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const int i1 = get_group_id(0);
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const int lid = get_local_id(0);
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const int lsize = get_local_size(0);
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const uint sg_size = get_sub_group_size();
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const uint sg_id = get_sub_group_id();
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const uint sg_lid = get_sub_group_local_id();
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__local float lmem[MAX_SUBGROUPS];
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if (i3 >= ne03 || i2 >= ne02 || i1 >= ne01) {
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return;
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}
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if(sg_id == 0){
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lmem[sg_lid] = 0.0f;
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}
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global float4 * src_row = (global float4 *) (src0 + i1*nb01 + i2*nb02 + i3*nb03);
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global float * dst_row = (global float *) (dst + i1*nb1 + i2*nb2 + i3*nb3);
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float4 sum_vec = (float4)0.0f;
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for (int i0 = lid; i0 < ne00 / 4; i0 += lsize) {
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sum_vec += src_row[i0];
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}
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float sumf = dot(sum_vec, (float4)(1.0f));
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sumf = sub_group_reduce_add(sumf);
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barrier(CLK_LOCAL_MEM_FENCE);
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if(sg_lid == 0){
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lmem[sg_id] = sumf;
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}
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barrier(CLK_LOCAL_MEM_FENCE);
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sumf = lmem[sg_lid];
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sumf = sub_group_reduce_add(sumf);
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if (lid == 0) {
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dst_row[0] = sumf / ne00;
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}
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}
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@ -1,8 +1,11 @@
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#pragma OPENCL EXTENSION cl_khr_fp16 : enable
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#pragma OPENCL EXTENSION cl_khr_subgroups : enable
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#define MAX_SUBGROUPS 64
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kernel void kernel_sum_rows_f32(
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global float * src0,
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global char * src0,
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ulong offset0,
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global float * dst,
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global char * dst,
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ulong offsetd,
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int ne00,
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int ne01,
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@ -15,25 +18,121 @@ kernel void kernel_sum_rows_f32(
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ulong nb2,
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ulong nb3
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) {
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src0 = (global float *)((global char *)src0 + offset0);
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dst = (global float *)((global char *)dst + offsetd);
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src0 = src0 + offset0;
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dst = dst + offsetd;
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int i3 = get_global_id(2);
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int i2 = get_global_id(1);
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int i1 = get_global_id(0);
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const int i3 = get_group_id(2);
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const int i2 = get_group_id(1);
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const int i1 = get_group_id(0);
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const int lid = get_local_id(0);
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const int lsize = get_local_size(0);
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const uint sg_size = get_sub_group_size();
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const uint sg_id = get_sub_group_id();
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const uint sg_lid = get_sub_group_local_id();
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__local float lmem[MAX_SUBGROUPS];
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if (i3 >= ne03 || i2 >= ne02 || i1 >= ne01) {
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return;
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}
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global float * src_row = (global float *) ((global char *) src0 + i1*nb01 + i2*nb02 + i3*nb03);
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global float * dst_row = (global float *) ((global char *) dst + i1*nb1 + i2*nb2 + i3*nb3);
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float row_sum = 0;
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for (int i0 = 0; i0 < ne00; i0++) {
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row_sum += src_row[i0];
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if(sg_id == 0){
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lmem[sg_lid] = 0.0f;
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}
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dst_row[0] = row_sum;
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global float * src_row = (global float *) (src0 + i1*nb01 + i2*nb02 + i3*nb03);
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global float * dst_row = (global float *) (dst + i1*nb1 + i2*nb2 + i3*nb3);
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float sumf = 0.0f;
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for (int i0 = lid; i0 < ne00; i0 += lsize) {
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sumf += src_row[i0];
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}
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sumf = sub_group_reduce_add(sumf);
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barrier(CLK_LOCAL_MEM_FENCE);
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if(sg_lid == 0){
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lmem[sg_id] = sumf;
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}
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barrier(CLK_LOCAL_MEM_FENCE);
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sumf = lmem[sg_lid];
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sumf = sub_group_reduce_add(sumf);
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if (lid == 0) {
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dst_row[0] = sumf;
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}
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}
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kernel void kernel_sum_rows_f32_4(
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global char * src0,
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ulong offset0,
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global char * dst,
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ulong offsetd,
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int ne00,
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int ne01,
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int ne02,
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int ne03,
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ulong nb01,
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ulong nb02,
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ulong nb03,
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ulong nb1,
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ulong nb2,
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ulong nb3
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) {
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src0 = src0 + offset0;
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dst = dst + offsetd;
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const int i3 = get_group_id(2);
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const int i2 = get_group_id(1);
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const int i1 = get_group_id(0);
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const int lid = get_local_id(0);
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const int lsize = get_local_size(0);
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const uint sg_size = get_sub_group_size();
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const uint sg_id = get_sub_group_id();
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const uint sg_lid = get_sub_group_local_id();
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__local float lmem[MAX_SUBGROUPS];
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if (i3 >= ne03 || i2 >= ne02 || i1 >= ne01) {
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return;
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}
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if(sg_id == 0){
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lmem[sg_lid] = 0.0f;
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}
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global float4 * src_row = (global float4 *) (src0 + i1*nb01 + i2*nb02 + i3*nb03);
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global float * dst_row = (global float *) (dst + i1*nb1 + i2*nb2 + i3*nb3);
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float4 sum_vec = (float4)0.0f;
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for (int i0 = lid; i0 < ne00 / 4; i0 += lsize) {
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sum_vec += src_row[i0];
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}
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float sumf = dot(sum_vec, (float4)(1.0f));
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sumf = sub_group_reduce_add(sumf);
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barrier(CLK_LOCAL_MEM_FENCE);
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if(sg_lid == 0){
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lmem[sg_id] = sumf;
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}
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barrier(CLK_LOCAL_MEM_FENCE);
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sumf = lmem[sg_lid];
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sumf = sub_group_reduce_add(sumf);
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if (lid == 0) {
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dst_row[0] = sumf;
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}
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}
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