2b10b62677
* hexagon: add fp16 support for binary ops: add,sub,mul,div * hexagon: fix test-backend-ops failures for fp16 binary ops on older arches (<v79) * hexagon: decide on n_threads (aka n_jobs) early to avoid overallocating scratchpad * snapdragon: fix readme link --------- Co-authored-by: Max Krasnyansky <maxk@qti.qualcomm.com>
113 lines
3.8 KiB
C
113 lines
3.8 KiB
C
#pragma clang diagnostic ignored "-Wunused-variable"
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#pragma clang diagnostic ignored "-Wunused-function"
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#pragma clang diagnostic ignored "-Wunused-but-set-variable"
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#include <HAP_farf.h>
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#include <HAP_perf.h>
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#include <math.h>
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#include <string.h>
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#define GGML_COMMON_DECL_C
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#include "ggml-common.h"
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#include "htp-ctx.h"
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#include "htp-msg.h"
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#include "htp-ops.h"
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#include "hvx-utils.h"
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struct get_rows_context {
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struct htp_ops_context * octx;
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uint32_t src1_nrows_per_thread;
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struct fastdiv_values get_rows_div_ne10;
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struct fastdiv_values get_rows_div_ne10_ne11;
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};
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#define get_rows_preamble \
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const uint32_t ne00 = octx->src0.ne[0]; \
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const uint32_t ne01 = octx->src0.ne[1]; \
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const uint32_t ne02 = octx->src0.ne[2]; \
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const uint32_t ne03 = octx->src0.ne[3]; \
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\
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const uint32_t ne10 = octx->src1.ne[0]; \
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const uint32_t ne11 = octx->src1.ne[1]; \
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const uint32_t ne12 = octx->src1.ne[2]; \
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\
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const uint32_t nb01 = octx->src0.nb[1]; \
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const uint32_t nb02 = octx->src0.nb[2]; \
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const uint32_t nb03 = octx->src0.nb[3]; \
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\
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const uint32_t nb10 = octx->src1.nb[0]; \
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const uint32_t nb11 = octx->src1.nb[1]; \
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const uint32_t nb12 = octx->src1.nb[2]; \
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\
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const uint32_t nb1 = octx->dst.nb[1]; \
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const uint32_t nb2 = octx->dst.nb[2]; \
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const uint32_t nb3 = octx->dst.nb[3]; \
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\
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const uint32_t nr = ne10 * ne11 * ne12;
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static void get_rows_thread_f32_f32(unsigned int nth, unsigned int ith, void *data) {
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struct get_rows_context * grctx = (struct get_rows_context *)data;
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struct htp_ops_context * octx = grctx->octx;
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get_rows_preamble;
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// parallelize by src1 elements (which correspond to dst rows)
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const uint32_t dr = grctx->src1_nrows_per_thread;
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const uint32_t ir0 = dr * ith;
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const uint32_t ir1 = (ir0 + dr < nr) ? (ir0 + dr) : nr;
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const bool is_i32 = (octx->src1.type == HTP_TYPE_I32);
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for (uint32_t i = ir0; i < ir1; ++i) {
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const uint32_t i12 = fastdiv(i, &grctx->get_rows_div_ne10_ne11);
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const uint32_t rem = i - i12 * ne11 * ne10;
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const uint32_t i11 = fastdiv(rem, &grctx->get_rows_div_ne10);
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const uint32_t i10 = rem - i11 * ne10;
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const uintptr_t src1_addr = octx->src1.data + i10*nb10 + i11*nb11 + i12*nb12;
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uint32_t i01 = is_i32 ? *(int32_t *)src1_addr : *(int64_t *)src1_addr;
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if (i01 >= ne01) {
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// invalid index, skip for now to avoid crash
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continue;
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}
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const uintptr_t src0_ptr = octx->src0.data + i01*nb01 + i11*nb02 + i12*nb03;
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const uintptr_t dst_ptr = octx->dst.data + i10*nb1 + i11*nb2 + i12*nb3;
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hvx_copy_f32_uu((uint8_t *)dst_ptr, (const uint8_t *)src0_ptr, ne00);
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}
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}
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int op_get_rows(struct htp_ops_context * octx) {
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get_rows_preamble;
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const uint32_t n_threads = MIN(nr, octx->n_threads);
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if (octx->src0.type != HTP_TYPE_F32) {
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return HTP_STATUS_NO_SUPPORT;
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}
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if (octx->dst.type != HTP_TYPE_F32) {
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return HTP_STATUS_NO_SUPPORT;
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}
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if (octx->src1.type != HTP_TYPE_I32 && octx->src1.type != HTP_TYPE_I64) {
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return HTP_STATUS_NO_SUPPORT;
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}
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if (octx->flags & HTP_OPFLAGS_SKIP_COMPUTE) {
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return HTP_STATUS_OK;
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}
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struct get_rows_context grctx;
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grctx.octx = octx;
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grctx.get_rows_div_ne10 = init_fastdiv_values(octx->src1.ne[0]);
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grctx.get_rows_div_ne10_ne11 = init_fastdiv_values(octx->src1.ne[0] * octx->src1.ne[1]);
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grctx.src1_nrows_per_thread = (nr + n_threads - 1) / n_threads;
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worker_pool_run_func(octx->ctx->worker_pool, get_rows_thread_f32_f32, &grctx, n_threads);
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return HTP_STATUS_OK;
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}
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