@@ -192,7 +192,7 @@ static void ggml_check_sycl() try {
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if (!initialized) {
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g_ggml_sycl_debug = get_sycl_env (" GGML_SYCL_DEBUG" , 0 );
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- g_ggml_sycl_disable_optimize= get_sycl_env (" GGML_SYCL_DISABLE_OPT" , 1 );
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+ g_ggml_sycl_disable_optimize= get_sycl_env (" GGML_SYCL_DISABLE_OPT" , 0 );
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g_ggml_sycl_disable_graph = get_sycl_env (" GGML_SYCL_DISABLE_GRAPH" , 1 );
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GGML_SYCL_DEBUG (" [SYCL] call ggml_check_sycl\n " );
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GGML_LOG_INFO (" Running with Environment Variables:\n " );
@@ -2852,6 +2852,64 @@ static bool ggml_sycl_supports_dmmv(enum ggml_type type) {
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}
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}
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+ static void reorder_qw (char *data_device, const int ncols, const int nrows,
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+ size_t size, size_t offset, dpct::queue_ptr stream) {
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+ auto tmp_buf = sycl::malloc_shared<char >(size, *stream);
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+ SYCL_CHECK (
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+ CHECK_TRY_ERROR ((*stream).memcpy (tmp_buf, data_device, size)
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+ .wait ()));
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+ GGML_ASSERT ((size % sizeof (block_q4_0) == 0 ));
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+ GGML_ASSERT ((offset % sizeof (block_q4_0) == 0 ));
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+ int offset_blks = offset / sizeof (block_q4_0);
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+ auto qs_ptr = (uint8_t *)data_device + offset_blks * QK4_0 / 2 ;;
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+ auto d_ptr = (sycl::half*)(qs_ptr + ncols * nrows / 2 ) + offset_blks;
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+
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+ stream->parallel_for (
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+ size / sizeof (block_q4_0),
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+ [=](auto i) [[sycl::reqd_sub_group_size (WARP_SIZE)]] {
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+ const block_q4_0* x = (const block_q4_0*)tmp_buf;
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+ const int ib = i;
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+
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+ for (int j = 0 ; j < QK4_0/2 ; j ++)
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+ {
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+ *(qs_ptr + ib * QK4_0 / 2 + j) = x[ib].qs [j];
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+ }
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+ *(d_ptr + ib) = x[ib].d ;
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+ });
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+
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+ sycl::free (tmp_buf, *stream);
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+ }
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+
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+ static void reorder_qw (const ggml_tensor * src0, dpct::queue_ptr stream) {
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+ char *data_device = (char *)src0->data ;
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+ size_t ncols = src0->ne [0 ];
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+ size_t nrows = src0->ne [1 ];
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+ size_t size = ggml_nbytes (src0);
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+
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+ reorder_qw (data_device, ncols, nrows, size, 0 , stream);
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+ }
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+
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+ /*
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+ * This function could be called when the OP (mul_mat) function support reorder optimizition.
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+ */
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+ static void opt_for_reorder (ggml_backend_sycl_context * ctx, const ggml_tensor * src0, const ggml_tensor * src1,
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+ ggml_tensor * dst) {
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+ if (!g_ggml_sycl_disable_optimize && // allow optimize, controlled by $GGML_SYCL_DISABLE_OPT
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+ ctx->opt_feature .reorder && // allow this device due to good perf, skip the devices with bad perf.
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+ dst->op == GGML_OP_MUL_MAT && // limit to some supported cases of Q4_0, to do for more cases.
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+ src0->type == GGML_TYPE_Q4_0 &&
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+ src1->ne [2 ]==1 && src1->ne [3 ]==1 ) {
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+
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+ ggml_tensor_extra_gpu* extra = (ggml_tensor_extra_gpu*)src0->extra ;
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+ if (!extra) return ; // only happen in CI/UT permute case.
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+
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+ if (extra->optimized_feature .reorder ) return ; // skip the tensor which is handled for reorder.
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+
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+ reorder_qw (src0, ctx->stream ());
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+ extra->optimized_feature .reorder = true ; // used to decode/dequan in next steps.
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+ }
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+ }
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+
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static void ggml_sycl_mul_mat (ggml_backend_sycl_context & ctx, const ggml_tensor * src0, const ggml_tensor * src1, ggml_tensor * dst) {
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const bool split = ggml_backend_buffer_is_sycl_split (src0->buffer );
@@ -2914,13 +2972,15 @@ static void ggml_sycl_mul_mat(ggml_backend_sycl_context & ctx, const ggml_tensor
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// KQ + KQV multi-batch
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ggml_sycl_mul_mat_batched_sycl (ctx, src0, src1, dst);
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} else if (use_dequantize_mul_mat_vec) {
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+ opt_for_reorder (&ctx, src0, src1, dst); // the OP function in this branch support reorder.
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ggml_sycl_op_mul_mat (ctx, src0, src1, dst, ggml_sycl_op_dequantize_mul_mat_vec, false );
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// save_tensor_txt("1/dst_1.txt", (float*) dst->data, src0->ne[1], sizeof(float), ctx.stream());
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} else if (use_mul_mat_vec_q) {
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ggml_sycl_op_mul_mat (ctx, src0, src1, dst, ggml_sycl_op_mul_mat_vec_q, true );
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} else if (use_mul_mat_q) {
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ggml_sycl_op_mul_mat (ctx, src0, src1, dst, ggml_sycl_op_mul_mat_q, true );
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} else {
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+ opt_for_reorder (&ctx, src0, src1, dst); // the OP function in this branch support reorder.
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ggml_sycl_op_mul_mat (ctx, src0, src1, dst, ggml_sycl_op_mul_mat_sycl, false );
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}
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}
@@ -3545,71 +3605,8 @@ catch (sycl::exception const &exc) {
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std::exit (1 );
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}
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- static void reorder_qw (char *data_device, const int ncols, const int nrows,
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- size_t size, size_t offset, dpct::queue_ptr stream) {
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- auto tmp_buf = sycl::malloc_shared<char >(size, *stream);
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- SYCL_CHECK (
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- CHECK_TRY_ERROR ((*stream).memcpy (tmp_buf, data_device, size)
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- .wait ()));
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- GGML_ASSERT ((size % sizeof (block_q4_0) == 0 ));
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- GGML_ASSERT ((offset % sizeof (block_q4_0) == 0 ));
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- int offset_blks = offset / sizeof (block_q4_0);
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- auto qs_ptr = (uint8_t *)data_device + offset_blks * QK4_0 / 2 ;;
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- auto d_ptr = (sycl::half*)(qs_ptr + ncols * nrows / 2 ) + offset_blks;
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-
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- stream->parallel_for (
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- size / sizeof (block_q4_0),
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- [=](auto i) [[sycl::reqd_sub_group_size (WARP_SIZE)]] {
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- const block_q4_0* x = (const block_q4_0*)tmp_buf;
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- const int ib = i;
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-
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- for (int j = 0 ; j < QK4_0/2 ; j ++)
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- {
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- *(qs_ptr + ib * QK4_0 / 2 + j) = x[ib].qs [j];
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- }
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- *(d_ptr + ib) = x[ib].d ;
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- });
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-
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- sycl::free (tmp_buf, *stream);
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- }
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-
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- static void reorder_qw (ggml_tensor * src0, dpct::queue_ptr stream) {
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- char *data_device = (char *)src0->data ;
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- size_t ncols = src0->ne [0 ];
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- size_t nrows = src0->ne [1 ];
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- size_t size = ggml_nbytes (src0);
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-
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- reorder_qw (data_device, ncols, nrows, size, 0 , stream);
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- }
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-
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- static void opt_for_reorder (ggml_tensor * dst, dpct::queue_ptr stream) {
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- ggml_tensor *src0 = dst->src [0 ];
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- ggml_tensor *src1 = dst->src [1 ];
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-
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- if (dst->op == GGML_OP_MUL_MAT && src0->type == GGML_TYPE_Q4_0 &&
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- src1->ne [2 ]==1 && src1->ne [3 ]==1 ) {
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- reorder_qw (src0, stream);
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- ggml_tensor_extra_gpu* extra = (ggml_tensor_extra_gpu*)src0->extra ;
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- GGML_ASSERT (extra);
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- extra->optimized_feature .reorder = true ; // used to decode/dequan in next steps.
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- }
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- }
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-
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- static void optimize_graph_once (ggml_cgraph * cgraph, ggml_backend_sycl_context * ctx) {
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- dpct::queue_ptr stream = ctx->stream ();
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- if (ctx->optimized_graph ) {
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- return ;
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- }
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- ctx->optimized_graph = true ;
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-
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- for (int i = 0 ; i < cgraph->n_nodes ; i++) {
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- if (ctx->opt_feature .reorder ) opt_for_reorder (cgraph->nodes [i], stream);
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- }
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- }
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-
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static void ggml_backend_sycl_graph_compute_impl (ggml_backend_sycl_context * sycl_ctx, ggml_cgraph * cgraph) {
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ggml_sycl_set_main_device (sycl_ctx->device );
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- if (!g_ggml_sycl_disable_optimize) optimize_graph_once (cgraph, sycl_ctx);
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for (int i = 0 ; i < cgraph->n_nodes ; i++) {
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ggml_tensor * node = cgraph->nodes [i];
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