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giuseppeClaude
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vulkan: implement SSM scan operation
Add State Space Model scan operation to the Vulkan backend. Signed-off-by: Giuseppe Scrivano <[email protected]>
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3 files changed

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ggml/src/ggml-vulkan/ggml-vulkan.cpp

Lines changed: 195 additions & 6 deletions
Original file line numberDiff line numberDiff line change
@@ -582,6 +582,9 @@ struct vk_device_struct {
582582
vk_pipeline pipeline_pool2d_f32;
583583
vk_pipeline pipeline_rwkv_wkv6_f32;
584584
vk_pipeline pipeline_rwkv_wkv7_f32;
585+
vk_pipeline pipeline_ssm_scan_f32_d16;
586+
vk_pipeline pipeline_ssm_scan_f32_d128;
587+
vk_pipeline pipeline_ssm_scan_f32_d256;
585588
vk_pipeline pipeline_opt_step_adamw_f32;
586589
vk_pipeline pipeline_opt_step_sgd_f32;
587590
vk_pipeline pipeline_conv2d_f32[CONV_SHAPE_COUNT];
@@ -1087,6 +1090,13 @@ struct vk_op_rwkv_wkv7_push_constants {
10871090
uint32_t C;
10881091
uint32_t H;
10891092
};
1093+
struct vk_op_ssm_scan_push_constants {
1094+
uint32_t src0_nb2, src0_nb3, src1_nb2, src1_nb3;
1095+
uint32_t src2_nb1, src2_nb2, src3_nb1;
1096+
uint32_t src4_nb2, src4_nb3, src5_nb2, src5_nb3;
1097+
uint32_t s_off;
1098+
uint32_t n_head, d_head, n_group, n_tok;
1099+
};
10901100

10911101
struct vk_op_conv2d_push_constants {
10921102
uint32_t Cout;
@@ -3588,6 +3598,10 @@ static void ggml_vk_load_shaders(vk_device& device) {
35883598

35893599
ggml_vk_create_pipeline(device, device->pipeline_rwkv_wkv7_f32, "rwkv_wkv7_f32", rwkv_wkv7_f32_len, rwkv_wkv7_f32_data, "main", 8, sizeof(vk_op_rwkv_wkv7_push_constants), {1, 1, 1}, {device->subgroup_size}, 1);
35903600

3601+
ggml_vk_create_pipeline(device, device->pipeline_ssm_scan_f32_d16, "ssm_scan_f32", ssm_scan_f32_len, ssm_scan_f32_data, "main", 8, sizeof(vk_op_ssm_scan_push_constants), {1, 1, 1}, {16, device->subgroup_size, 16}, 1);
3602+
ggml_vk_create_pipeline(device, device->pipeline_ssm_scan_f32_d128, "ssm_scan_f32", ssm_scan_f32_len, ssm_scan_f32_data, "main", 8, sizeof(vk_op_ssm_scan_push_constants), {1, 1, 1}, {128, device->subgroup_size, 16}, 1);
3603+
ggml_vk_create_pipeline(device, device->pipeline_ssm_scan_f32_d256, "ssm_scan_f32", ssm_scan_f32_len, ssm_scan_f32_data, "main", 8, sizeof(vk_op_ssm_scan_push_constants), {1, 1, 1}, {256, device->subgroup_size, 16}, 1);
3604+
35913605
ggml_vk_create_pipeline(device, device->pipeline_opt_step_adamw_f32, "opt_step_adamw_f32", opt_step_adamw_f32_len, opt_step_adamw_f32_data, "main", 5, sizeof(vk_op_push_constants), {512, 1, 1}, {}, 1);
35923606

35933607
ggml_vk_create_pipeline(device, device->pipeline_opt_step_sgd_f32, "opt_step_sgd_f32", opt_step_sgd_f32_len, opt_step_sgd_f32_data, "main", 3, sizeof(vk_op_push_constants), {512, 1, 1}, {}, 1);
@@ -8087,6 +8101,18 @@ static vk_pipeline ggml_vk_op_get_pipeline(ggml_backend_vk_context * ctx, const
80878101
return ctx->device->pipeline_rwkv_wkv7_f32;
80888102
}
80898103
return nullptr;
8104+
case GGML_OP_SSM_SCAN:
8105+
if (src0->type == GGML_TYPE_F32 && dst->type == GGML_TYPE_F32) {
8106+
const uint32_t d_state = src0->ne[0];
8107+
if (d_state == 16) {
8108+
return ctx->device->pipeline_ssm_scan_f32_d16;
8109+
} else if (d_state == 128) {
8110+
return ctx->device->pipeline_ssm_scan_f32_d128;
8111+
} else if (d_state == 256) {
8112+
return ctx->device->pipeline_ssm_scan_f32_d256;
8113+
}
8114+
}
8115+
return nullptr;
80908116
case GGML_OP_OPT_STEP_ADAMW:
80918117
if (src0->type == GGML_TYPE_F32 && dst->type == GGML_TYPE_F32) {
80928118
return ctx->device->pipeline_opt_step_adamw_f32;
@@ -9027,6 +9053,106 @@ static void ggml_vk_rwkv_wkv7(ggml_backend_vk_context * ctx, vk_context& subctx,
90279053
);
90289054
}
90299055

9056+
static void ggml_vk_ssm_scan(ggml_backend_vk_context * ctx, vk_context& subctx, ggml_tensor * dst, bool dryrun = false) {
9057+
const ggml_tensor * src0 = dst->src[0];
9058+
const ggml_tensor * src1 = dst->src[1];
9059+
const ggml_tensor * src2 = dst->src[2];
9060+
const ggml_tensor * src3 = dst->src[3];
9061+
const ggml_tensor * src4 = dst->src[4];
9062+
const ggml_tensor * src5 = dst->src[5];
9063+
9064+
GGML_ASSERT(dst->buffer != nullptr);
9065+
9066+
const uint32_t head_dim = src0->ne[1];
9067+
const uint32_t n_head = src1->ne[1];
9068+
const uint32_t n_group = src4->ne[1];
9069+
const uint32_t n_tok = src1->ne[2];
9070+
const uint32_t n_seq = src1->ne[3];
9071+
9072+
bool is_mamba2 = (src3->nb[1] == sizeof(float));
9073+
9074+
vk_pipeline pipeline = ggml_vk_op_get_pipeline(ctx, src0, src1, src2, dst, dst->op);
9075+
GGML_ASSERT(pipeline != nullptr);
9076+
9077+
if (dryrun) {
9078+
ggml_pipeline_request_descriptor_sets(ctx, pipeline, 1);
9079+
return;
9080+
}
9081+
9082+
const int64_t s_off = ggml_nelements(src1) * sizeof(float);
9083+
9084+
const vk_op_ssm_scan_push_constants pc = {
9085+
(uint32_t)src0->nb[2], (uint32_t)src0->nb[3],
9086+
(uint32_t)src1->nb[2], (uint32_t)src1->nb[3],
9087+
(uint32_t)src2->nb[1], (uint32_t)src2->nb[2],
9088+
(uint32_t)src3->nb[1],
9089+
(uint32_t)src4->nb[2], (uint32_t)src4->nb[3],
9090+
(uint32_t)src5->nb[2], (uint32_t)src5->nb[3],
9091+
(uint32_t)s_off,
9092+
n_head, head_dim, n_group, n_tok
9093+
};
9094+
9095+
ggml_backend_vk_buffer_context * dst_buf_ctx = (ggml_backend_vk_buffer_context *)dst->buffer->context;
9096+
ggml_backend_vk_buffer_context * src_buf_ctxs[GGML_MAX_SRC];
9097+
for (int i = 0; i < GGML_MAX_SRC && dst->src[i] != nullptr; i++) {
9098+
src_buf_ctxs[i] = (ggml_backend_vk_buffer_context *)dst->src[i]->buffer->context;
9099+
}
9100+
9101+
vk_buffer d_D = nullptr, d_srcs[GGML_MAX_SRC] = { nullptr };
9102+
size_t dst_offset = 0, src_offsets[GGML_MAX_SRC] = { 0 };
9103+
bool dst_uma = false, srcs_uma[GGML_MAX_SRC] = { false };
9104+
9105+
if (ctx->device->uma) {
9106+
for (int i = 0; i < GGML_MAX_SRC && dst->src[i] != nullptr; i++) {
9107+
ggml_vk_host_get(ctx->device, dst->src[i]->data, d_srcs[i], src_offsets[i]);
9108+
srcs_uma[i] = d_srcs[i] != nullptr;
9109+
}
9110+
ggml_vk_host_get(ctx->device, dst->data, d_D, dst_offset);
9111+
dst_uma = d_D != nullptr;
9112+
}
9113+
9114+
if (!dst_uma) {
9115+
d_D = dst_buf_ctx->dev_buffer;
9116+
dst_offset = vk_tensor_offset(dst) + dst->view_offs;
9117+
}
9118+
for (int i = 0; i < GGML_MAX_SRC && dst->src[i] != nullptr; i++) {
9119+
if (!srcs_uma[i]) {
9120+
d_srcs[i] = src_buf_ctxs[i]->dev_buffer;
9121+
src_offsets[i] = vk_tensor_offset(dst->src[i]) + dst->src[i]->view_offs;
9122+
}
9123+
}
9124+
9125+
size_t dst_size = ggml_nbytes(dst);
9126+
size_t src_sizes[GGML_MAX_SRC];
9127+
for (int i = 0; i < GGML_MAX_SRC && dst->src[i] != nullptr; i++) {
9128+
src_sizes[i] = ggml_nbytes(dst->src[i]);
9129+
}
9130+
9131+
std::array<uint32_t, 3> elements;
9132+
9133+
if (is_mamba2) {
9134+
const int splitH = 16;
9135+
const uint32_t num_workgroups_x = CEIL_DIV(n_head * head_dim, splitH);
9136+
const uint32_t num_workgroups_y = n_seq;
9137+
elements = { num_workgroups_x, num_workgroups_y, 1 };
9138+
} else {
9139+
const uint32_t num_workgroups_x = n_seq;
9140+
const uint32_t num_workgroups_y = CEIL_DIV(n_head, 128);
9141+
elements = { num_workgroups_x, num_workgroups_y, 1 };
9142+
}
9143+
9144+
ggml_vk_dispatch_pipeline(ctx, subctx, pipeline, {
9145+
vk_subbuffer{ d_srcs[0], src_offsets[0], src_sizes[0] },
9146+
vk_subbuffer{ d_srcs[1], src_offsets[1], src_sizes[1] },
9147+
vk_subbuffer{ d_srcs[2], src_offsets[2], src_sizes[2] },
9148+
vk_subbuffer{ d_srcs[3], src_offsets[3], src_sizes[3] },
9149+
vk_subbuffer{ d_srcs[4], src_offsets[4], src_sizes[4] },
9150+
vk_subbuffer{ d_srcs[5], src_offsets[5], src_sizes[5] },
9151+
vk_subbuffer{ d_srcs[6], src_offsets[6], src_sizes[6] },
9152+
vk_subbuffer{ d_D, dst_offset, dst_size }
9153+
}, pc, elements);
9154+
}
9155+
90309156
static void ggml_vk_op_f32_opt_step_adamw(ggml_backend_vk_context * ctx, vk_context& subctx, ggml_tensor * dst, const vk_op_push_constants&& pc, bool dryrun = false) {
90319157
const ggml_tensor * x = dst->src[0];
90329158
const ggml_tensor * g = dst->src[1];
@@ -10859,6 +10985,7 @@ static bool ggml_vk_build_graph(ggml_backend_vk_context * ctx, ggml_cgraph * cgr
1085910985
case GGML_OP_CONV_2D_DW:
1086010986
case GGML_OP_RWKV_WKV6:
1086110987
case GGML_OP_RWKV_WKV7:
10988+
case GGML_OP_SSM_SCAN:
1086210989
case GGML_OP_LEAKY_RELU:
1086310990
case GGML_OP_FLASH_ATTN_EXT:
1086410991
case GGML_OP_OPT_STEP_ADAMW:
@@ -11276,6 +11403,11 @@ static bool ggml_vk_build_graph(ggml_backend_vk_context * ctx, ggml_cgraph * cgr
1127611403

1127711404
break;
1127811405

11406+
case GGML_OP_SSM_SCAN:
11407+
ggml_vk_ssm_scan(ctx, compute_ctx, node, dryrun);
11408+
11409+
break;
11410+
1127911411
case GGML_OP_OPT_STEP_ADAMW:
1128011412
ggml_vk_opt_step_adamw(ctx, compute_ctx, node, dryrun);
1128111413

@@ -11387,6 +11519,7 @@ static bool ggml_vk_compute_forward(ggml_backend_vk_context * ctx, ggml_cgraph *
1138711519
case GGML_OP_CONV_2D_DW:
1138811520
case GGML_OP_RWKV_WKV6:
1138911521
case GGML_OP_RWKV_WKV7:
11522+
case GGML_OP_SSM_SCAN:
1139011523
case GGML_OP_LEAKY_RELU:
1139111524
case GGML_OP_REPEAT:
1139211525
case GGML_OP_REPEAT_BACK:
@@ -12867,6 +13000,59 @@ static bool ggml_backend_vk_device_supports_op(ggml_backend_dev_t dev, const ggm
1286713000
case GGML_OP_RWKV_WKV6:
1286813001
case GGML_OP_RWKV_WKV7:
1286913002
return true;
13003+
case GGML_OP_SSM_SCAN:
13004+
{
13005+
if (ggml_is_quantized(op->src[0]->type) || ggml_is_quantized(op->src[1]->type) || ggml_is_quantized(op->src[2]->type)) {
13006+
return false;
13007+
}
13008+
if (op->src[3] && ggml_is_quantized(op->src[3]->type)) {
13009+
return false;
13010+
}
13011+
if (op->src[4] && ggml_is_quantized(op->src[4]->type)) {
13012+
return false;
13013+
}
13014+
if (op->src[5] && ggml_is_quantized(op->src[5]->type)) {
13015+
return false;
13016+
}
13017+
if (op->src[6] && op->src[6]->type != GGML_TYPE_I32) {
13018+
return false;
13019+
}
13020+
if (op->src[0]->type != GGML_TYPE_F32 || op->type != GGML_TYPE_F32) {
13021+
return false;
13022+
}
13023+
13024+
const uint32_t d_state = op->src[0]->ne[0];
13025+
const uint32_t head_dim = op->src[0]->ne[1];
13026+
const uint32_t n_head = op->src[1]->ne[1];
13027+
const uint32_t n_group = op->src[4] ? op->src[4]->ne[1] : 1;
13028+
13029+
bool is_mamba2 = (op->src[3] && op->src[3]->nb[1] == sizeof(float));
13030+
if (is_mamba2) {
13031+
if ((d_state != 128 && d_state != 256) || head_dim % 16 != 0) {
13032+
return false;
13033+
}
13034+
} else {
13035+
if (n_head % 128 != 0 || head_dim != 1 || n_group != 1 || d_state != 16) {
13036+
return false;
13037+
}
13038+
}
13039+
13040+
ggml_backend_vk_device_context * ctx = (ggml_backend_vk_device_context *)dev->context;
13041+
const vk_device& device = ggml_vk_get_device(ctx->device);
13042+
13043+
const uint32_t splitH = 16;
13044+
13045+
size_t stateC_size = splitH * d_state * sizeof(float);
13046+
size_t subgroup_sdata_size = d_state * sizeof(float);
13047+
size_t total_shared_memory = stateC_size + subgroup_sdata_size;
13048+
13049+
// Check that there is enough memory to hold the stateC buffer when splitH is 16.
13050+
if (total_shared_memory > device->properties.limits.maxComputeSharedMemorySize) {
13051+
return false;
13052+
}
13053+
13054+
return true;
13055+
}
1287013056
case GGML_OP_CONV_TRANSPOSE_1D:
1287113057
return op->src[0]->type == GGML_TYPE_F32 && op->src[1]->type == GGML_TYPE_F32;
1287213058
case GGML_OP_CONV_2D:
@@ -13211,14 +13397,14 @@ static void ggml_vk_check_results_0(ggml_backend_vk_context * ctx, ggml_cgraph *
1321113397

1321213398
struct ggml_context * ggml_ctx = ggml_init(iparams);
1321313399

13214-
std::array<struct ggml_tensor *, 6> src_clone = {nullptr, nullptr, nullptr, nullptr, nullptr, nullptr};
13215-
std::array<size_t, 6> src_size = {0, 0, 0, 0, 0, 0};
13216-
std::array<void *, 6> src_buffer = {nullptr, nullptr, nullptr, nullptr, nullptr, nullptr};
13217-
const char * srci_name[6] = {"src0", "src1", "src2", "src3", "src4", "src5"};
13400+
std::array<struct ggml_tensor *, GGML_MAX_SRC> src_clone = {nullptr, nullptr, nullptr, nullptr, nullptr, nullptr, nullptr, nullptr, nullptr, nullptr};
13401+
std::array<size_t, GGML_MAX_SRC> src_size = {};
13402+
std::array<void *, GGML_MAX_SRC> src_buffer = {};
13403+
const char * srci_name[GGML_MAX_SRC] = {"src0", "src1", "src2", "src3", "src4", "src5", "src6", "src7", "src8", "src9"};
1321813404

1321913405
struct ggml_tensor * tensor_clone = nullptr;
1322013406

13221-
for (int i = 0; i < 6; i++) {
13407+
for (int i = 0; i < GGML_MAX_SRC; i++) {
1322213408
ggml_tensor * srci = tensor->src[i];
1322313409
if (fused_rms_norm_mul) {
1322413410
rms_norm_idx = tensor->src[0]->op == GGML_OP_RMS_NORM ? 0 : 1;
@@ -13525,6 +13711,9 @@ static void ggml_vk_check_results_0(ggml_backend_vk_context * ctx, ggml_cgraph *
1352513711
src_clone[2]);
1352613712
} else if (tensor->op == GGML_OP_ADD_ID) {
1352713713
tensor_clone = ggml_add_id(ggml_ctx, src_clone[0], src_clone[1], src_clone[2]);
13714+
} else if (tensor->op == GGML_OP_SSM_SCAN) {
13715+
tensor_clone = ggml_ssm_scan(ggml_ctx, src_clone[0], src_clone[1], src_clone[2],
13716+
src_clone[3], src_clone[4], src_clone[5], src_clone[6]);
1352813717
}
1352913718
else {
1353013719
std::cerr << "Missing vk_check_results OP: " << ggml_op_name(tensor->op) << std::endl;
@@ -13546,7 +13735,7 @@ static void ggml_vk_check_results_0(ggml_backend_vk_context * ctx, ggml_cgraph *
1354613735
memcpy(comp_result, tensor_clone->data, comp_size);
1354713736
memcpy(comp_nb, tensor_clone->nb, sizeof(size_t) * GGML_MAX_DIMS);
1354813737

13549-
for (int i = 0; i < 6; i++) {
13738+
for (int i = 0; i < GGML_MAX_SRC; i++) {
1355013739
if (src_buffer[i] != nullptr) {
1355113740
free(src_buffer[i]);
1355213741
}

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