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@@ -2706,7 +2706,7 @@ static void ggml_vk_load_shaders(vk_device& device) {
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ggml_vk_create_pipeline(device, device->pipeline_get_rows_f32[GGML_TYPE_IQ4_NL], "get_rows_iq4_nl_f32", get_rows_iq4_nl_f32_len, get_rows_iq4_nl_f32_data, "main", 3, sizeof(vk_op_binary_push_constants), {1024, 1, 1}, {}, 1);
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ggml_vk_create_pipeline(device, device->pipeline_matmul_split_k_reduce, "split_k_reduce", split_k_reduce_len, split_k_reduce_data, "main", 2, 2 * sizeof(uint32_t), {256 * 4, 1, 1}, {}, 1);
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- ggml_vk_create_pipeline(device, device->pipeline_flash_attn_split_k_reduce, "fa_split_k_reduce", fa_split_k_reduce_len, fa_split_k_reduce_data, "main", 2, 3 * sizeof(uint32_t), {1, 1, 1}, {}, 1, true);
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+ ggml_vk_create_pipeline(device, device->pipeline_flash_attn_split_k_reduce, "fa_split_k_reduce", fa_split_k_reduce_len, fa_split_k_reduce_data, "main", 2, 4 * sizeof(uint32_t), {1, device->subgroup_size, 1}, {device->subgroup_size}, 1, true);
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ggml_vk_create_pipeline(device, device->pipeline_quantize_q8_1, "quantize_q8_1", quantize_q8_1_len, quantize_q8_1_data, "main", 2, 1 * sizeof(uint32_t), {32 * device->subgroup_size / 8, 1, 1}, { device->subgroup_size }, 1);
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for (uint32_t i = 0; i < p021_max_gqa_ratio; ++i) {
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@@ -6252,13 +6252,13 @@ static void ggml_vk_flash_attn(ggml_backend_vk_context * ctx, vk_context& subctx
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const uint32_t shader_core_count = ctx->device->shader_core_count ? ctx->device->shader_core_count : 16;
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// Try to use split_k when KV is large enough to be worth the overhead
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- if (workgroups_x == 1 && shader_core_count > 0 && KV >= 512) {
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+ if (workgroups_x == 1 && shader_core_count > 0) {
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// Try to run two workgroups per SM.
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split_k = shader_core_count * 2 / (workgroups_y * workgroups_z);
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if (split_k > 1) {
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// Try to evenly split KV into split_k chunks, but it needs to be a multiple
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// of "align", so recompute split_k based on that.
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- split_kv = ROUNDUP_POW2(KV / split_k, pipelines[1]->align);
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+ split_kv = ROUNDUP_POW2(std::max(1u, KV / split_k), pipelines[1]->align);
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split_k = CEIL_DIV(KV, split_kv);
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workgroups_x = split_k;
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}
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@@ -6392,7 +6392,7 @@ static void ggml_vk_flash_attn(ggml_backend_vk_context * ctx, vk_context& subctx
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vk_subbuffer{ctx->prealloc_split_k, 0, VK_WHOLE_SIZE},
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vk_subbuffer{d_D, d_buf_offset, VK_WHOLE_SIZE},
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},
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- pc2, { (uint32_t)ne1, 1, (uint32_t)ne3 });
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+ pc2, { (uint32_t)ne1, HSV, (uint32_t)ne3 });
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} else {
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ggml_vk_dispatch_pipeline(ctx, subctx, pipeline,
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{
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