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ggml : do not sched_yield when calling BLAS (#4761)
* ggml : do not sched_yield when calling BLAS ggml-ci * ggml : fix do_yield logic ggml-ci * ggml : simplify do_yield logic ggml-ci
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41
ggml.c
41
ggml.c
@ -9704,10 +9704,10 @@ static void ggml_compute_forward_group_norm(
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#if defined(GGML_USE_ACCELERATE) || defined(GGML_USE_OPENBLAS)
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// helper function to determine if it is better to use BLAS or not
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// for large matrices, BLAS is faster
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static bool ggml_compute_forward_mul_mat_use_blas(
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const struct ggml_tensor * src0,
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const struct ggml_tensor * src1,
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struct ggml_tensor * dst) {
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static bool ggml_compute_forward_mul_mat_use_blas(struct ggml_tensor * dst) {
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const struct ggml_tensor * src0 = dst->src[0];
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const struct ggml_tensor * src1 = dst->src[1];
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//const int64_t ne00 = src0->ne[0];
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//const int64_t ne01 = src0->ne[1];
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@ -9787,7 +9787,7 @@ static void ggml_compute_forward_mul_mat(
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#endif
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#if defined(GGML_USE_ACCELERATE) || defined(GGML_USE_OPENBLAS)
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if (ggml_compute_forward_mul_mat_use_blas(src0, src1, dst)) {
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if (ggml_compute_forward_mul_mat_use_blas(dst)) {
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if (params->ith != 0) {
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return;
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}
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@ -16301,24 +16301,6 @@ static int ggml_get_n_tasks(struct ggml_tensor * node, int n_threads) {
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//n_tasks = MIN(n_threads, MAX(1, nr0/128));
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//printf("nr0 = %8d, nr1 = %8d, nr0*nr1 = %8d, n_tasks%d\n", nr0, nr1, nr0*nr1, n_tasks);
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#if defined(GGML_USE_CUBLAS)
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if (ggml_cuda_can_mul_mat(node->src[0], node->src[1], node)) {
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n_tasks = 1; // TODO: this actually is doing nothing
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// the threads are still spinning
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}
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#elif defined(GGML_USE_CLBLAST)
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if (ggml_cl_can_mul_mat(node->src[0], node->src[1], node)) {
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n_tasks = 1; // TODO: this actually is doing nothing
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// the threads are still spinning
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}
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#endif
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#if defined(GGML_USE_ACCELERATE) || defined(GGML_USE_OPENBLAS)
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if (ggml_compute_forward_mul_mat_use_blas(node->src[0], node->src[1], node)) {
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n_tasks = 1; // TODO: this actually is doing nothing
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// the threads are still spinning
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}
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#endif
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} break;
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case GGML_OP_MUL_MAT_ID:
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{
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@ -16491,6 +16473,7 @@ static thread_ret_t ggml_graph_compute_thread(void * data) {
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state->shared->node_n += 1;
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return (thread_ret_t) GGML_EXIT_ABORTED;
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}
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if (atomic_fetch_sub(&state->shared->n_active, 1) == 1) {
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// all other threads are finished and spinning
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// do finalize and init here so we don't have synchronize again
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@ -16556,14 +16539,18 @@ static thread_ret_t ggml_graph_compute_thread(void * data) {
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} else {
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// wait for other threads to finish
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const int last = node_n;
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const bool do_yield = last < 0 || cgraph->nodes[last]->op == GGML_OP_MUL_MAT;
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while (true) {
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// TODO: this sched_yield can have significant impact on the performance - either positive or negative
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// depending on the workload and the operating system.
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// since it is not clear what is the best approach, it should potentially become user-configurable
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// ref: https://github.com/ggerganov/ggml/issues/291
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#if defined(GGML_USE_ACCELERATE) || defined(GGML_USE_OPENBLAS)
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sched_yield();
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#endif
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// UPD: adding the do_yield flag seems to resolve the issue universally
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if (do_yield) {
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sched_yield();
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}
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node_n = atomic_load(&state->shared->node_n);
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if (node_n != last) break;
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@ -16642,7 +16629,7 @@ struct ggml_cplan ggml_graph_plan(struct ggml_cgraph * cgraph, int n_threads) {
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} else
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#endif
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#if defined(GGML_USE_ACCELERATE) || defined(GGML_USE_OPENBLAS)
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if (ggml_compute_forward_mul_mat_use_blas(node->src[0], node->src[1], node)) {
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if (ggml_compute_forward_mul_mat_use_blas(node)) {
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if (node->src[0]->type != GGML_TYPE_F32) {
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// here we need memory just for single 2D matrix from src0
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cur = ggml_type_size(GGML_TYPE_F32)*(node->src[0]->ne[0]*node->src[0]->ne[1]);
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