internode_ll.cu 38.7 KB
Newer Older
Chenggang Zhao's avatar
Chenggang Zhao committed
1
2
3
#include "configs.cuh"
#include "exception.cuh"
#include "launch.cuh"
4
5
6
7
#include "buffer.cuh"
#include "utils.cuh"
// #include <cooperative_groups.h>
#include <iostream>
lishen's avatar
lishen committed
8
9
10

#include "hip/hip_runtime.h"

11
12
13
// low latency+RocSHMEM has issue with CTX.
#define ROCM_DISABLE_CTX

14
#include "shmem_wrapper.cuh"
Chenggang Zhao's avatar
Chenggang Zhao committed
15
16
17
18
19

namespace deep_ep {

namespace internode_ll {

lishen's avatar
lishen committed
20
21
22
23
24
25
26
template <typename dtype_a_t, typename dtype_b_t>
__device__ __forceinline__ dtype_b_t pack2(const dtype_a_t& x, const dtype_a_t& y) {
    EP_STATIC_ASSERT(sizeof(dtype_a_t) * 2 == sizeof(dtype_b_t), "Invalid dtypes");
    dtype_b_t packed;
    auto unpacked_ptr = reinterpret_cast<dtype_a_t*>(&packed);
    unpacked_ptr[0] = x, unpacked_ptr[1] = y;
    return packed;
27
28
29
30
31
}

__device__ void grid_barrier(int* global_counter, int num_blocks) {
    volatile int ret;
    __syncthreads();
lishen's avatar
lishen committed
32
    __threadfence();
33
    if (threadIdx.x == 0 ) {
lishen's avatar
lishen committed
34
        ret = __hip_atomic_fetch_add(&global_counter[0], 1, __ATOMIC_RELAXED, __HIP_MEMORY_SCOPE_AGENT);
35
36
37
    }
    __syncthreads();
    if (threadIdx.x == 0) {
lishen's avatar
lishen committed
38
        while (__hip_atomic_load(global_counter, __ATOMIC_RELAXED,__HIP_MEMORY_SCOPE_AGENT) != num_blocks);
39
40
41
    }
    __syncthreads();
}
lishen's avatar
lishen committed
42
43
44
45
46
47
48
49
50
51
52
template <typename dtype_t>
__host__ __device__ dtype_t ceil_div(dtype_t a, dtype_t b) {
    return (a + b - 1) / b;
}

template <typename dtype_a_t, typename dtype_b_t>
__device__ __forceinline__ void unpack2(const dtype_b_t& packed, dtype_a_t& x, dtype_a_t& y) {
    EP_STATIC_ASSERT(sizeof(dtype_a_t) * 2 == sizeof(dtype_b_t), "Invalid dtypes");
    auto unpacked_ptr = reinterpret_cast<const dtype_a_t*>(&packed);
    x = unpacked_ptr[0], y = unpacked_ptr[1];
}
53
54


Chenggang Zhao's avatar
Chenggang Zhao committed
55
template <int kNumThreads> __launch_bounds__(kNumThreads, 1)
56
__global__ void clean_low_latency_buffer(int64_t* clean_0, int num_clean_int_0,
lishen's avatar
lishen committed
57
                                         int64_t* clean_1, int num_clean_int_1) {
Chenggang Zhao's avatar
Chenggang Zhao committed
58
    // Barrier before cleaning (in case of unfinished chunked EP)
lishen's avatar
lishen committed
59
    if (threadIdx.x == 0)
60
        internode::shmem_device_barrier_all();
61
62

    // Clean
lishen's avatar
lishen committed
63
    auto thread_id = static_cast<int>(threadIdx.x);
64
65
66
67
68
69
70
    #pragma unroll
    for (int i = thread_id; i < num_clean_int_0; i += kNumThreads)
        clean_0[i] = 0;
    #pragma unroll
    for (int i = thread_id; i < num_clean_int_1; i += kNumThreads)
        clean_1[i] = 0;

lishen's avatar
lishen committed
71
    // Barrier after cleaning (make sure low-latency mode work
lishen's avatar
lishen committed
72
    if (threadIdx.x == 0)
73
        internode::shmem_device_barrier_all();
Chenggang Zhao's avatar
Chenggang Zhao committed
74
75
}

76
77
78
79
80
81
void clean_low_latency_buffer(int64_t* clean_0, int num_clean_int_0,
                              int64_t* clean_1, int num_clean_int_1,
                              hipStream_t stream) {
    constexpr int kNumThreads = 256;

    SETUP_LAUNCH_CONFIG(1, kNumThreads, stream);
lishen's avatar
lishen committed
82
83
    LAUNCH_KERNEL_NON_COOPERATIVE(&cfg, clean_low_latency_buffer<kNumThreads>,
                  clean_0, num_clean_int_0, clean_1, num_clean_int_1);
Chenggang Zhao's avatar
Chenggang Zhao committed
84
85
}

lishen's avatar
lishen committed
86
template <bool kUseFP8, bool kUseUE8M0, bool kUseInt8, int kHidden>
lishen's avatar
lishen committed
87
__global__ __launch_bounds__(16 * kWarpSize, 1) void
lishen's avatar
lishen committed
88
dispatch(void* packed_recv_x, void* packed_recv_x_scales,
lishen's avatar
lishen committed
89
90
91
92
93
94
95
96
97
         int* packed_recv_src_info, int64_t* packed_recv_layout_range,
         int* packed_recv_count,
         int* global_atomic_counter,
         void* rdma_recv_x, int64_t* rdma_recv_count, void* rdma_x,
         const void* x, const int64_t* topk_idx,
         int* atomic_counter_per_expert, int* atomic_finish_counter_per_expert,
         int64_t* next_clean, int num_next_clean_int,
         int num_tokens, int num_max_dispatch_tokens_per_rank,
         int num_topk, int num_experts, int rank, int num_ranks,
lishen's avatar
lishen committed
98
         int num_warp_groups, int num_warps_per_group,
lishen's avatar
lishen committed
99
         bool round_scale, int phases) {
100
101
102
103
104
105
106
107
108
109
    const auto sm_id = static_cast<int>(blockIdx.x);
    const auto thread_id = static_cast<int>(threadIdx.x);
    const auto warp_id = thread_id / kWarpSize, lane_id = get_lane_id();
    const auto num_sms = static_cast<int>(gridDim.x);
    const auto num_warps = num_warp_groups * num_warps_per_group;
    const auto num_local_experts = num_experts / num_ranks;
    const auto warp_group_id = warp_id / num_warps_per_group;
    const auto sub_warp_id = warp_id % num_warps_per_group;
    const auto responsible_expert_idx = sm_id * num_warp_groups + warp_group_id;

lishen's avatar
lishen committed
110
111
112
113
114
    // May extract UE8M0 from the scales
    using scale_t = std::conditional_t<kUseUE8M0, uint8_t, float>;
    using packed_t = std::conditional_t<kUseUE8M0, uint32_t, float>;
    EP_STATIC_ASSERT(sizeof(packed_t) % sizeof(scale_t) == 0, "Invalid vector length");

115
116
    // FP8 staffs
    constexpr int kNumPerChannels = FP8_QUANTIZATION_NUM_PER_CHANNEL;
lishen's avatar
lishen committed
117
    constexpr int kNumScales = kHidden / kNumPerChannels;
118
119
120
    const size_t hidden_bytes = kHidden * (kUseFP8 ? sizeof(__hip_fp8_storage_t) : sizeof(hip_bfloat16));
    const size_t hidden_int4 = hidden_bytes / sizeof(int4);

lishen's avatar
lishen committed
121
    // Message package: hidden data, FP8 scales, index at source
122
    // NOTES: currently we have 3 reserved int fields for future use
lishen's avatar
lishen committed
123
    using vec_t = typename std::conditional<kUseFP8, int2, int4>::type;
lishen's avatar
lishen committed
124
    const size_t num_bytes_per_msg = sizeof(int4) + (kUseFP8 ? (kHidden + kNumScales * sizeof(float)) : (kHidden * sizeof(hip_bfloat16)));
125
126
127
    const size_t num_int4_per_msg = num_bytes_per_msg / sizeof(int4);
    EP_DEVICE_ASSERT(num_bytes_per_msg % sizeof(int4) == 0);

lishen's avatar
lishen committed
128
129
130
131
132
    // Expert counts
    constexpr int kNumMaxWarpGroups = 1024 / kWarpSize;
    __shared__ int shared_num_tokens_sent_per_expert[kNumMaxWarpGroups];

    // Sending phase
133
134
135
    if ((phases & LOW_LATENCY_SEND_PHASE) == 0)
        goto LOW_LATENCY_DISPATCH_RECV;

lishen's avatar
lishen committed
136
137
138
139
140
#if !defined(ROCM_DISABLE_CTX)
    __shared__ internode::shmem_ctx_t ctx;
    internode::shmem_wg_ctx_create(&ctx);
#endif

141
142
143
    // There are 2 kinds of warps in this part:
    // 1. The first-kind warps for FP8 cast and sending top-k tokens
    // 2. The last warp for reading `topk_idx` and count for per-expert information
lishen's avatar
lishen committed
144
145
146
    if (warp_id < num_warps) {
        constexpr int kNumElemsPerRead = sizeof(int4) / sizeof(hip_bfloat16);
        EP_DEVICE_ASSERT(kHidden % kNumElemsPerRead == 0);
147
148
        EP_STATIC_ASSERT(kNumElemsPerRead * kWarpSize % kNumPerChannels == 0, "Invalid vectorization");
        const auto num_threads = (num_warps - 1) * kWarpSize;
lishen's avatar
lishen committed
149
        constexpr int hidden_bf16_int4 = kHidden / kNumElemsPerRead;
150
151

        for (int token_idx = sm_id; token_idx < num_tokens; token_idx += num_sms) {
lishen's avatar
lishen committed
152
153
            const auto x_int4 = reinterpret_cast<const int4*>(x) + token_idx * hidden_bf16_int4;
            const auto rdma_x_src_idx = reinterpret_cast<int*>(reinterpret_cast<uint8_t*>(rdma_x) + token_idx * num_bytes_per_msg);
154
155
156
            const auto rdma_x_vec = reinterpret_cast<vec_t*>(reinterpret_cast<uint8_t*>(rdma_x_src_idx) + sizeof(int4));
            const auto rdma_x_scales = reinterpret_cast<float*>(reinterpret_cast<uint8_t*>(rdma_x_vec) + hidden_bytes);

lishen's avatar
lishen committed
157
            // Overlap top-k index read and source token index write
158
159
160
            auto dst_expert_idx = warp_id < num_topk ? static_cast<int>(__ldg(topk_idx + token_idx * num_topk + warp_id)) : -1;
            thread_id == 0 ? (*rdma_x_src_idx = token_idx) : 0;

lishen's avatar
lishen committed
161
162
163
164
165
166
167
168
            __shared__ float int8_amaxf[kNumScales];
            if constexpr(kUseInt8) {
                if (thread_id < kNumScales) {
                    int8_amaxf[thread_id] = kFP8Margin;
                }
                __syncthreads();
            }

169
170
171
172
173
174
            // FP8 cast
            #pragma unroll
            for (int i = thread_id; i < hidden_bf16_int4; i += num_threads) {
                // Read
                auto int4_value = __ldg(x_int4 + i);

lishen's avatar
lishen committed
175
                if constexpr(kUseFP8) {
176
177
178
179
180
                    // Calculate local amax
                    auto bf16_values = reinterpret_cast<hip_bfloat16*>(&int4_value);
                    float fp32_values[kNumElemsPerRead];
                    float amax = kFP8Margin, scale, scale_inv;
                    #pragma unroll
lishen's avatar
lishen committed
181
                    for (int j = 0; j < kNumElemsPerRead; ++ j) {
182
183
184
185
186
187
                        fp32_values[j] = static_cast<float>(bf16_values[j]);
                        amax = fmaxf(amax, fabsf(fp32_values[j]));
                    }
                    // Reduce amax and scale
                    EP_STATIC_ASSERT(kNumElemsPerRead * kWarpSize / kNumPerChannels == 4, "Invalid vectorization");
                    amax = warp_reduce_max<16>(amax);
lishen's avatar
lishen committed
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
                    const int scale_offset = i * kNumElemsPerRead / FP8_QUANTIZATION_NUM_PER_CHANNEL;

                    if constexpr(kUseInt8) {
                        // 记录每128个数的最大值
                        int8_amaxf[scale_offset] = fmaxf(amax, int8_amaxf[scale_offset]);
                    } else {
                        calculate_fp8_scales(amax, scale, scale_inv, round_scale);
                        if (lane_id % 16 == 0)
                            rdma_x_scales[scale_offset] = scale_inv;

                        // Cast into send buffer
                        vec_t int2_value;
                        auto fp8x2_values = reinterpret_cast<__hip_fp8x2_storage_t*>(&int2_value);
                        #pragma unroll
                        for (int j = 0; j < kNumElemsPerRead; j += 2) {
                            float2 fp32x2 = {fp32_values[j] * scale, fp32_values[j + 1] * scale};
                            fp8x2_values[j / 2] = __hip_cvt_float2_to_fp8x2(fp32x2, __HIP_SATFINITE, __HIP_E4M3_FNUZ);
                        }
                        rdma_x_vec[i] = int2_value;
207
208
209
210
211
212
213
                    }
                } else {
                    // Reinterpret-cast is for C++14 compatibility
                    rdma_x_vec[i] = *reinterpret_cast<vec_t*>(&int4_value);
                }
            }
            __syncthreads();
lishen's avatar
lishen committed
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
255

            if constexpr(kUseInt8) {
                float amax_per_token = kFP8Margin;
                // 并行规约,计算每个token的amax
                for (int s = 0; s < kNumScales; s+=kWarpSize) {
                    int src_idx = s + lane_id;
                    float tmp_amaxf = 0;
                    if(src_idx < kNumScales) {
                        tmp_amaxf = int8_amaxf[src_idx];
                    }
                    tmp_amaxf = warp_reduce_max<kWarpSize>(tmp_amaxf);
                    int8_amaxf[0] = fmaxf(tmp_amaxf, int8_amaxf[0]);
                    __syncthreads();
                }
                amax_per_token = int8_amaxf[0];

                // 根据最大值计算scale
                float scale, scale_inv;
                calculate_int8_scales(amax_per_token, scale, scale_inv);
                if (thread_id == 0) {
                    rdma_x_scales[0] = scale_inv;
                }

                for (int i = thread_id; i < hidden_bf16_int4; i += num_threads) {
                    // Read
                    auto int4_value = __ldg(x_int4 + i);
                    auto bf16_values = reinterpret_cast<hip_bfloat16*>(&int4_value);

                    // Cast into send buffer
                    vec_t int2_value;
                    auto int8_values = reinterpret_cast<int8_t*>(&int2_value);
#pragma unroll
                    for (int j = 0; j < kNumElemsPerRead; ++ j) {
                        auto fp32_value = static_cast<float>(bf16_values[j]);
                        auto fp32_value_scaled = fp32_value * scale;
                        int8_values[j] = static_cast<int8_t>(nearbyintf(fp32_value_scaled));
                    }
                    rdma_x_vec[i] = int2_value;
                }
                __syncthreads();
            }

256
257
258
259
            // Issue IBGDA sends
            if (dst_expert_idx >= 0) {
                int slot_idx = lane_id == 0 ? atomicAdd(atomic_counter_per_expert + dst_expert_idx, 1) : 0;
                slot_idx = shfl_sync(slot_idx, 0);
lishen's avatar
lishen committed
260
261
                const auto dst_rank = dst_expert_idx / num_local_experts;
                const auto dst_expert_local_idx = dst_expert_idx % num_local_experts;
262
263
264
                const auto src_ptr = reinterpret_cast<uint64_t>(rdma_x_src_idx);
                const auto dst_ptr = reinterpret_cast<uint64_t>(rdma_recv_x) +
                                     dst_expert_local_idx * num_ranks * num_max_dispatch_tokens_per_rank * num_bytes_per_msg +
lishen's avatar
lishen committed
265
266
                                     rank * num_max_dispatch_tokens_per_rank * num_bytes_per_msg +
                                     slot_idx * num_bytes_per_msg;
267
                if (dst_rank != rank) {
lijian6's avatar
lijian6 committed
268
269
270
271
272
273
274
275
276
                    #if defined(FORCE_NVSHMEM_API)
                    void *peer_base_addr = (void *)__ldg((const long long unsigned *)nvshmemi_device_state_d.peer_heap_base_p2p + dst_rank);
                    if (peer_base_addr) {
                        char *req_rptr_actual = (char *)(peer_base_addr) + ((char *)dst_ptr - (char *)(nvshmemi_device_state_d.heap_base));
                        const auto* src_int4_ptr = reinterpret_cast<const int4*>(src_ptr);
                        const auto* dst_int4_ptr = reinterpret_cast<int4*>(req_rptr_actual);
                        UNROLLED_WARP_COPY(8, lane_id, num_int4_per_msg, dst_int4_ptr, src_int4_ptr, ld_nc_global, st_na_global);
                    } else {
                    #endif
lishen's avatar
lishen committed
277
278
279
280
281
282
283
#if !defined(ROCM_DISABLE_CTX)
                    internode::shmem_ctx_schar_put_nbi_warp(ctx,
#else
                    internode::shmemx_int8_put_nbi_warp(
#endif
                        reinterpret_cast<signed char*>(dst_ptr), reinterpret_cast<signed char*>(src_ptr),
                        num_bytes_per_msg, dst_rank);
lijian6's avatar
lijian6 committed
284
285
286
                    #if defined(FORCE_NVSHMEM_API)
                    }
                    #endif
287
288
289
290
                } else {
                    // NOTES: only 2 load iterations for 7K hidden with 8 unrolls
                    const auto* src_int4_ptr = reinterpret_cast<const int4*>(src_ptr);
                    const auto* dst_int4_ptr = reinterpret_cast<int4*>(dst_ptr);
lishen's avatar
lishen committed
291
                    UNROLLED_WARP_COPY_LL(8, lane_id, num_int4_per_msg, dst_int4_ptr, src_int4_ptr, ld_nc_global, st_na_global);
292
                }
lishen's avatar
lishen committed
293

294
295
296
297
298
                // Increase counter after finishing
                syncwarp();
                lane_id == 0 ? atomic_add_release_global(atomic_finish_counter_per_expert + dst_expert_idx, 1) : 0;
            }
        }
lishen's avatar
lishen committed
299
300
    }
    if (warp_id == num_warps - 1) {
301
302
        EP_DEVICE_ASSERT(num_sms > 1);
        if (sm_id == 0) {
lishen's avatar
lishen committed
303
            // The first SM is also responsible for checking QPs
304
305
306
307
308
309
310
311
312
313
314
315
316
317
318
319
320
321
322
323
324
            // The first SM is also responsible for cleaning the next buffer
            #pragma unroll
            for (int i = lane_id; i < num_next_clean_int; i += kWarpSize)
                next_clean[i] = 0;

            // Notify before executing `int_p`
            syncwarp();
            #pragma unroll
            for (int i = lane_id; i < num_experts; i += kWarpSize)
                atomic_add_release_global(atomic_finish_counter_per_expert + i, FINISHED_SUM_TAG);
        }
        // This SM should be responsible for some destination experts, read `topk_idx` for them
        int expert_count[kNumMaxWarpGroups] = {0};
        const auto expert_begin_idx = sm_id * num_warp_groups;
        const auto expert_end_idx = min(expert_begin_idx + num_warp_groups, num_experts);

        // Per lane count
        #pragma unroll 8
        for (int i = lane_id; i < num_tokens * num_topk; i += kWarpSize) {
            auto idx = static_cast<int>(__ldg(topk_idx + i));
            if (idx >= expert_begin_idx and idx < expert_end_idx)
lishen's avatar
lishen committed
325
                expert_count[idx - expert_begin_idx] ++;
326
327
328
329
        }

        // Warp reduce
        #pragma unroll
lishen's avatar
lishen committed
330
        for (int i = expert_begin_idx; i < expert_end_idx; ++ i) {
331
332
333
334
335
336
337
338
339
340
341
342
343
344
345
346
347
            auto sum = warp_reduce_sum(expert_count[i - expert_begin_idx]);
            if (lane_id == 0) {
                shared_num_tokens_sent_per_expert[i - expert_begin_idx] = sum;
                atomic_add_release_global(atomic_finish_counter_per_expert + i, FINISHED_SUM_TAG - sum);
            }
        }
    }
    __syncthreads();

    // Issue count sends
    if (responsible_expert_idx < num_experts and sub_warp_id == 0 and lane_id == 0) {
        const auto dst_rank = responsible_expert_idx / num_local_experts;
        const auto dst_expert_local_idx = responsible_expert_idx % num_local_experts;
        const auto num_tokens_sent = shared_num_tokens_sent_per_expert[responsible_expert_idx - sm_id * num_warp_groups];

        // Wait local sends issued and send expert counts
        while (ld_acquire_global(atomic_finish_counter_per_expert + responsible_expert_idx) != FINISHED_SUM_TAG * 2);
lishen's avatar
lishen committed
348
        if (dst_rank != rank) {
lijian6's avatar
lijian6 committed
349
350
351
352
353
354
355
            #if defined(FORCE_NVSHMEM_API)
            void *peer_base_addr = (void *)__ldg((const long long unsigned *)nvshmemi_device_state_d.peer_heap_base_p2p + dst_rank);
            if (peer_base_addr) {   // P2P enabled
                int *rptr_actual = (int *)((char *)(peer_base_addr) + ((char *)(rdma_recv_count + dst_expert_local_idx * num_ranks + rank) - (char *)(nvshmemi_device_state_d.heap_base)));
                st_na_release(rptr_actual, -num_tokens_sent - 1);
            } else {
            #endif
lishen's avatar
lishen committed
356
357
358
359
360
361
#if !defined(ROCM_DISABLE_CTX)
            internode::shmem_ctx_long_atomic_add(ctx,
#else
            internode::shmem_long_atomic_add(
#endif
                rdma_recv_count + dst_expert_local_idx * num_ranks + rank, -num_tokens_sent - 1, dst_rank);
lijian6's avatar
lijian6 committed
362
363
364
            #if defined(FORCE_NVSHMEM_API)
            }
            #endif
lishen's avatar
lishen committed
365
366
        } else {
            st_na_release(reinterpret_cast<int *>(rdma_recv_count + dst_expert_local_idx * num_ranks + rank), -num_tokens_sent - 1);
367
368
369
370
371
372
373
374
375
376
377
378
        }

        // Clean workspace for next use
        atomic_counter_per_expert[responsible_expert_idx] = 0;
        atomic_finish_counter_per_expert[responsible_expert_idx] = 0;

        // Clean `packed_recv_count`
        if (dst_rank == 0)
            packed_recv_count[dst_expert_local_idx] = 0;
    }
    syncwarp();

lishen's avatar
lishen committed
379
380
381
382
#if !defined(ROCM_DISABLE_CTX)
    internode::shmem_wg_ctx_destroy(&ctx);
#endif

lishen's avatar
lishen committed
383
384
    // Receiving phase
LOW_LATENCY_DISPATCH_RECV:
385
386
387
388
389
390
391
392
    if ((phases & LOW_LATENCY_RECV_PHASE) == 0)
        return;

    // For send-and-recv kernels, we need a grid sync for making `packed_recv_count` visible
    if (phases & LOW_LATENCY_SEND_PHASE){
        grid_barrier(global_atomic_counter, num_sms);
    }

lishen's avatar
lishen committed
393
394
395
396
397
398
399
400
401
402
403
    // 16 is the max possible number of warps in AMD GPUs
    constexpr int kMaxNumWarps = 1024 / kWarpSize;
    constexpr int num_sync_large_iteration = kMaxNumWarps ;
    __shared__ volatile int sync_large_warp_counters[num_sync_large_iteration];

#pragma unroll
    for (int i = thread_id; i < num_sync_large_iteration; i += blockDim.x) {
        sync_large_warp_counters[i] = 0;
    }
    __syncthreads();

404
405
406
407
    // Receiving and packing
    if (responsible_expert_idx < num_experts) {
        const auto src_rank = responsible_expert_idx / num_local_experts;
        const auto local_expert_idx = responsible_expert_idx % num_local_experts;
lishen's avatar
lishen committed
408
        const auto rdma_recv_x_uint8 = reinterpret_cast<uint8_t*>(rdma_recv_x) +
lishen's avatar
lishen committed
409
410
                                       local_expert_idx * num_ranks * num_max_dispatch_tokens_per_rank * num_bytes_per_msg +
                                       src_rank * num_max_dispatch_tokens_per_rank * num_bytes_per_msg;
lishen's avatar
lishen committed
411
        const auto recv_x_int4 = reinterpret_cast<int4*>(packed_recv_x) +
lishen's avatar
lishen committed
412
                                 local_expert_idx * num_ranks * num_max_dispatch_tokens_per_rank * hidden_int4;
413
414
        const auto recv_src_info = packed_recv_src_info + local_expert_idx * num_ranks * num_max_dispatch_tokens_per_rank;
        const auto recv_range = packed_recv_layout_range + local_expert_idx * num_ranks;
lishen's avatar
lishen committed
415
        const auto num_aligned_scales = ALIGN<int>(kNumScales, sizeof(float) / sizeof(scale_t));
lishen's avatar
lishen committed
416
        const auto recv_x_scales = static_cast<scale_t*>(packed_recv_x_scales) +
lishen's avatar
lishen committed
417
418
                                   local_expert_idx * num_ranks * num_max_dispatch_tokens_per_rank *
                                       (kUseInt8 ? 1 : num_aligned_scales);
419
420
421
422
423
424

        // Shared between sub-warps in warp groups
        __shared__ int shared_num_recv_tokens[kNumMaxWarpGroups], shared_recv_token_begin_idx[kNumMaxWarpGroups];

        // Wait tokens to arrive
        // NOTES: using sub-warp 1 to overlap with sub-warp 0
lishen's avatar
lishen committed
425
426
        int num_recv_tokens, recv_token_begin_idx;
        EP_DEVICE_ASSERT(num_warps_per_group > 1);
427
428

        if (sub_warp_id == 1 and lane_id == 0) {
lishen's avatar
lishen committed
429
            while ((num_recv_tokens = ld_acquire_global(reinterpret_cast<int*>(rdma_recv_count + local_expert_idx * num_ranks + src_rank))) == 0);
430
            num_recv_tokens = -num_recv_tokens - 1;
lishen's avatar
lishen committed
431
432
            recv_token_begin_idx = atomicAdd(packed_recv_count + local_expert_idx, num_recv_tokens);
            shared_num_recv_tokens[warp_group_id] = num_recv_tokens;
433
            shared_recv_token_begin_idx[warp_group_id] = recv_token_begin_idx;
lishen's avatar
lishen committed
434
            recv_range[src_rank] = pack2<int, int64_t>(num_recv_tokens, recv_token_begin_idx);
435
436
437
438
        }

        // no needs to reset because there is no iteration
        if (lane_id == 0){
lishen's avatar
lishen committed
439
            volatile int ret = __hip_atomic_fetch_add(&sync_large_warp_counters[warp_group_id], 1, __ATOMIC_RELAXED, __HIP_MEMORY_SCOPE_WORKGROUP);
440
441
442
        }
        syncwarp();

lishen's avatar
lishen committed
443
        while (sync_large_warp_counters[warp_group_id] < num_warps_per_group);
444
445
446
447
        num_recv_tokens = shared_num_recv_tokens[warp_group_id];
        recv_token_begin_idx = shared_recv_token_begin_idx[warp_group_id];

        // Copy tokens
lishen's avatar
lishen committed
448
        EP_DEVICE_ASSERT(kNumScales <= 64);
449
450
451
452
453
454
455
456
457
458
459
        for (int i = sub_warp_id; i < num_recv_tokens; i += num_warps_per_group) {
            // Copy source info
            const auto src_src_idx = reinterpret_cast<int*>(rdma_recv_x_uint8 + i * num_bytes_per_msg);
            if (lane_id == 0)
                recv_src_info[recv_token_begin_idx + i] = ld_nc_global(src_src_idx);
            syncwarp();

            // Copy data
            // NOTES: only 2 load iterations for 7K hidden with 7 unrolls
            const auto src_data = reinterpret_cast<int4*>(reinterpret_cast<uint8_t*>(src_src_idx) + sizeof(int4));
            const auto dst_data = recv_x_int4 + (recv_token_begin_idx + i) * hidden_int4;
lishen's avatar
lishen committed
460
            UNROLLED_WARP_COPY_LL(7, lane_id, hidden_int4, dst_data, src_data, ld_nc_global, st_na_global);
461
462

            // Copy scales
lishen's avatar
lishen committed
463
            if constexpr(kUseFP8) {
464
                const auto src_scales = reinterpret_cast<float*>(reinterpret_cast<uint8_t*>(src_data) + hidden_bytes);
lishen's avatar
lishen committed
465
466
467
468
469
                const auto num_elems_per_pack = static_cast<int>(sizeof(packed_t) / sizeof(scale_t));
                const auto token_idx = recv_token_begin_idx + i;
                const auto token_stride = num_elems_per_pack;
                const auto pack_stride = num_ranks * num_max_dispatch_tokens_per_rank * num_elems_per_pack;

lishen's avatar
lishen committed
470
471
472
473
474
475
476
477
478
479
480
481
482
483
484
485
486
                if constexpr(kUseInt8) {
                    if (lane_id == 0) {
                        recv_x_scales[token_idx] = ld_nc_global(src_scales);
                    }
                } else {
                    if (lane_id < kNumScales) {
                        const auto pack_idx = lane_id / num_elems_per_pack;
                        const auto elem_idx = lane_id % num_elems_per_pack;
                        auto scale = extract_required_scale_format<kUseUE8M0>(ld_nc_global(src_scales + lane_id));
                        recv_x_scales[token_idx * token_stride + pack_idx * pack_stride + elem_idx] = scale;
                    }
                    if (lane_id + kWarpSize < kNumScales) {
                        const auto pack_idx = (lane_id + kWarpSize) / num_elems_per_pack;
                        const auto elem_idx = (lane_id + kWarpSize) % num_elems_per_pack;
                        auto scale = extract_required_scale_format<kUseUE8M0>(ld_nc_global(src_scales + lane_id + kWarpSize));
                        recv_x_scales[token_idx * token_stride + pack_idx * pack_stride + elem_idx] = scale;
                    }
lishen's avatar
lishen committed
487
                }
488
489
490
            }
        }
    }
Chenggang Zhao's avatar
Chenggang Zhao committed
491
492
}

lishen's avatar
lishen committed
493
void dispatch(void* packed_recv_x, void* packed_recv_x_scales,
lishen's avatar
lishen committed
494
              int* packed_recv_src_info, int64_t* packed_recv_layout_range,
495
              int* packed_recv_count,
496
              int* global_atomic_counter,
lishen's avatar
lishen committed
497
498
499
500
              void* rdma_recv_x, int64_t* rdma_recv_count, void* rdma_x,
              const void* x, const int64_t* topk_idx,
              int64_t* next_clean, int num_next_clean_int,
              int num_tokens, int hidden, int num_max_dispatch_tokens_per_rank,
lishen's avatar
lishen committed
501
              int num_topk, int num_experts, int rank, int num_ranks,
lishen's avatar
lishen committed
502
              bool use_fp8, bool round_scale, bool use_ue8m0, bool use_int8,
lishen's avatar
lishen committed
503
              void* workspace, int num_device_sms,
lishen's avatar
lishen committed
504
              hipStream_t stream, int phases) {
505
    constexpr int kNumMaxTopK = 11;
lishen's avatar
lishen committed
506
    const int num_warp_groups = ceil_div(num_experts, num_device_sms);
lishen's avatar
lishen committed
507
    const int num_warps_per_group = 16 / num_warp_groups;
508
509
510
511
    EP_HOST_ASSERT(num_warp_groups > 0 and num_warps_per_group > 0);
    EP_HOST_ASSERT(kNumMaxTopK + 1 <= num_warp_groups * num_warps_per_group);

    const auto num_warps = num_warp_groups * num_warps_per_group;
lishen's avatar
lishen committed
512
    const auto num_sms = ceil_div(num_experts, num_warp_groups);
513
514
515
    EP_HOST_ASSERT(num_topk <= kNumMaxTopK);

    // Workspace checks
lishen's avatar
lishen committed
516
    auto atomic_counter_per_expert = reinterpret_cast<int*>(workspace);
517
518
519
    auto atomic_finish_counter_per_expert = atomic_counter_per_expert + num_experts;
    EP_HOST_ASSERT(num_experts * sizeof(int) * 2 <= NUM_WORKSPACE_BYTES);

lishen's avatar
lishen committed
520
#define DISPATCH_LAUNCH_CASE(hidden) { \
lishen's avatar
lishen committed
521
522
523
524
525
526
527
auto dispatch_func = dispatch<false, false, false, hidden>; \
if (use_fp8 and not use_ue8m0)             \
    dispatch_func = dispatch<true, false, false, hidden>;   \
if (use_fp8 and use_ue8m0)             \
    dispatch_func = dispatch<true, true, false, hidden>;    \
if (use_int8)             \
    dispatch_func = dispatch<true, false, true, hidden>;    \
lishen's avatar
lishen committed
528
529
530
531
532
533
534
535
536
537
538
LAUNCH_KERNEL_NON_COOPERATIVE(&cfg, dispatch_func, \
              packed_recv_x, packed_recv_x_scales, \
              packed_recv_src_info, packed_recv_layout_range, \
              packed_recv_count, \
              global_atomic_counter, \
              rdma_recv_x, rdma_recv_count, rdma_x, \
              x, topk_idx, \
              atomic_counter_per_expert, atomic_finish_counter_per_expert, \
              next_clean, num_next_clean_int, \
              num_tokens, num_max_dispatch_tokens_per_rank, \
              num_topk, num_experts, rank, num_ranks, \
lishen's avatar
lishen committed
539
              num_warp_groups, num_warps_per_group, round_scale, phases); } break
540
541
542
543

    SETUP_LAUNCH_CONFIG(num_sms, num_warps * kWarpSize, stream);
    SWITCH_HIDDEN(DISPATCH_LAUNCH_CASE);
#undef DISPATCH_LAUNCH_CASE
544
545
}

lishen's avatar
lishen committed
546
547
template <int kHidden, int kNumMaxTopk>
__global__ __launch_bounds__(16 * kWarpSize, 1) void
lishen's avatar
lishen committed
548
549
550
551
552
553
554
555
556
557
combine(void* combined_x,
        void* rdma_recv_x, int64_t* rdma_recv_flag, void* rdma_send_x,
        const void* x, const int64_t* topk_idx, const float* topk_weights,
        const int* src_info, const int64_t* layout_range,
        int* global_atomic_counter,
        int64_t* next_clean, int num_next_clean_int,
        int* atomic_clean_flag,
        int num_combined_tokens, int hidden, int num_topk,
        int num_max_dispatch_tokens_per_rank,
        int num_experts, int rank, int num_ranks,
lishen's avatar
lishen committed
558
        int num_warp_groups, int num_warps_per_group,
lishen's avatar
lishen committed
559
560
561
562
563
564
565
        int phases, bool zero_copy) {
    const auto sm_id = static_cast<int>(blockIdx.x);
    const auto num_sms = static_cast<int>(gridDim.x);
    const auto thread_id = static_cast<int>(threadIdx.x);
    const auto num_threads = static_cast<int>(blockDim.x);
    const auto warp_id = thread_id / kWarpSize, lane_id = get_lane_id();
    const auto num_local_experts = num_experts / num_ranks;
lishen's avatar
lishen committed
566
567
568
    const auto warp_group_id = warp_id / num_warps_per_group;
    const auto sub_warp_id = warp_id % num_warps_per_group;
    const auto responsible_expert_idx = sm_id * num_warp_groups + warp_group_id;
lishen's avatar
lishen committed
569
570
571
572
573
574

    // Data type staffs
    constexpr int kNumElemsPerInt4 = sizeof(int4) / sizeof(hip_bfloat16);
    const size_t hidden_bf16_int4 = kHidden / kNumElemsPerInt4;

    // Message package
lishen's avatar
lishen committed
575
    EP_STATIC_ASSERT(kHidden % FP8_QUANTIZATION_NUM_PER_CHANNEL == 0, "Invalid hidden");
lijian6's avatar
lijian6 committed
576
    constexpr size_t num_bytes_per_slot = sizeof(int4) + kHidden * sizeof(hip_bfloat16);
lishen's avatar
lishen committed
577
    EP_STATIC_ASSERT(num_bytes_per_slot % sizeof(int4) == 0, "Invalid vectorization");
lishen's avatar
lishen committed
578

lishen's avatar
lishen committed
579
    // 16 is the max possible number of warps in AMD GPUs
lishen's avatar
lishen committed
580
581
582
583
584
585
586
587
588
    constexpr int kMaxNumWarps = 1024 / kWarpSize;
    __shared__ volatile int sync_large_warp_counters[kMaxNumWarps];
    if (threadIdx.x==0){
        #pragma unroll
        for (int i = 0; i < kMaxNumWarps; ++i) {
            sync_large_warp_counters[i] = 0;
        }
    }
    __syncthreads();
589

lishen's avatar
lishen committed
590
591
592
    // Sending phase
    if ((phases & LOW_LATENCY_SEND_PHASE) == 0)
        goto LOW_LATENCY_COMBINE_RECV;
Chenggang Zhao's avatar
Chenggang Zhao committed
593

lishen's avatar
lishen committed
594
595
596
597
598
#if !defined(ROCM_DISABLE_CTX)
    __shared__ internode::shmem_ctx_t ctx;
    internode::shmem_wg_ctx_create(&ctx);
#endif

lishen's avatar
lishen committed
599
600
601
602
603
    // Clean up next buffer
    if (sm_id == 0 and warp_group_id == 0 and sub_warp_id == 0) {
        #pragma unroll
        for (int i = lane_id; i < num_next_clean_int; i += kWarpSize)
            next_clean[i] = 0;
604

lishen's avatar
lishen committed
605
606
607
608
609
        // Notify before executing `int_p`
        syncwarp();
        if (lane_id == 0)
            atomic_add_release_global(atomic_clean_flag, num_experts);
    }
610

lishen's avatar
lishen committed
611
612
613
614
615
616
617
    // Issue IBGDA sends
    if (responsible_expert_idx < num_experts) {
        const auto dst_rank = responsible_expert_idx / num_local_experts;
        const auto local_expert_idx = responsible_expert_idx % num_local_experts;
        const auto global_expert_idx = rank * num_local_experts + local_expert_idx;
        const auto layout = __ldg(layout_range + local_expert_idx * num_ranks + dst_rank);
        const auto local_x = reinterpret_cast<const int4*>(x) +
lishen's avatar
lishen committed
618
                             local_expert_idx * num_ranks * num_max_dispatch_tokens_per_rank * hidden_bf16_int4;
lishen's avatar
lishen committed
619
620
        const auto local_src_info = src_info + local_expert_idx * num_ranks * num_max_dispatch_tokens_per_rank;
        const auto rdma_send_x_vec = reinterpret_cast<uint8_t*>(rdma_send_x) +
lishen's avatar
lishen committed
621
                                     local_expert_idx * num_ranks * num_max_dispatch_tokens_per_rank * num_bytes_per_slot;
lishen's avatar
lishen committed
622
623
624
625
626
627

        // Unpack layout
        int offset, num_tokens_to_send;
        unpack2(layout, num_tokens_to_send, offset);

        // Issue IBGDA send
lishen's avatar
lishen committed
628
        for (int token_idx = offset + sub_warp_id; token_idx < offset + num_tokens_to_send; token_idx += num_warps_per_group) {
lishen's avatar
lishen committed
629
630
631
632
633
            const auto x_int4 = local_x + token_idx * hidden_bf16_int4;
            const auto rdma_send_type_row = reinterpret_cast<int*>(rdma_send_x_vec + token_idx * num_bytes_per_slot);
            const auto rdma_send_x_vec_row = reinterpret_cast<uint8_t*>(rdma_send_type_row + 4);

            // Copy directly to local rank, or copy to buffer and issue RDMA
634
            const auto src_idx = __ldg(local_src_info + token_idx);
lishen's avatar
lishen committed
635
636
637
638
639
640
641
642
643
            const auto buf_ptr = reinterpret_cast<int64_t>(rdma_send_x_vec_row);
            const auto dst_ptr = reinterpret_cast<uint64_t>(rdma_recv_x) + (global_expert_idx * num_max_dispatch_tokens_per_rank + src_idx) * num_bytes_per_slot + sizeof(int4);
            if (dst_rank == rank) {
                const auto dst_int4_ptr = reinterpret_cast<int4*>(dst_ptr);
                UNROLLED_WARP_COPY_LL(7, lane_id, hidden_bf16_int4, dst_int4_ptr, x_int4, ld_nc_global, st_na_global);
            } else {
                const auto buf_int4_ptr = reinterpret_cast<int4*>(buf_ptr);
                if (not zero_copy)
                    UNROLLED_WARP_COPY_LL(7, lane_id, hidden_bf16_int4, buf_int4_ptr, x_int4, ld_nc_global, st_na_global);
644

lijian6's avatar
lijian6 committed
645
646
647
648
649
650
651
652
                #if defined(FORCE_NVSHMEM_API)
                void *peer_base_addr = (void *)__ldg((const long long unsigned *)nvshmemi_device_state_d.peer_heap_base_p2p + dst_rank);
                if (peer_base_addr) {
                    char *req_rptr_actual = (char *)(peer_base_addr) + ((char *)dst_ptr - (char *)(nvshmemi_device_state_d.heap_base));
                    const auto dst_int4_ptr = reinterpret_cast<int4*>(req_rptr_actual);
                    UNROLLED_WARP_COPY(7, lane_id, hidden_bf16_int4, dst_int4_ptr, x_int4, ld_nc_global, st_na_global);
                } else {
                #endif
lishen's avatar
lishen committed
653
654
#if !defined(ROCM_DISABLE_CTX)
                internode::shmem_ctx_schar_put_nbi_warp(ctx,
lishen's avatar
lishen committed
655
#else
lishen's avatar
lishen committed
656
                internode::shmemx_int8_put_nbi_warp(
lishen's avatar
lishen committed
657
#endif
lishen's avatar
lishen committed
658
659
                    reinterpret_cast<signed char*>(dst_ptr), reinterpret_cast<signed char*>(buf_ptr),
                    hidden * sizeof(hip_bfloat16), dst_rank);
lijian6's avatar
lijian6 committed
660
661
662
                #if defined(FORCE_NVSHMEM_API)
                }
                #endif
lishen's avatar
lishen committed
663
            }
lishen's avatar
lishen committed
664
        }
Chenggang Zhao's avatar
Chenggang Zhao committed
665

lishen's avatar
lishen committed
666
        // Put finishing flag
lishen's avatar
lishen committed
667
        EP_DEVICE_ASSERT(num_warps_per_group > 1);
lishen's avatar
lishen committed
668
        if (lane_id == 0){
lishen's avatar
lishen committed
669
            volatile int ret = __hip_atomic_fetch_add(&sync_large_warp_counters[warp_group_id], 1,__ATOMIC_RELAXED, __HIP_MEMORY_SCOPE_WORKGROUP);
lishen's avatar
lishen committed
670
671
        }
        syncwarp();
lishen's avatar
lishen committed
672
        while (sync_large_warp_counters[warp_group_id] < num_warps_per_group);
lishen's avatar
lishen committed
673

lishen's avatar
lishen committed
674
675
676
        if (sub_warp_id == 1 and lane_id == 0) {
            while (ld_acquire_global(atomic_clean_flag) == 0);
            if (dst_rank != rank) {
lijian6's avatar
lijian6 committed
677
678
679
680
681
682
683
                #if defined(FORCE_NVSHMEM_API)
                void *peer_base_addr = (void *)__ldg((const long long unsigned *)nvshmemi_device_state_d.peer_heap_base_p2p + dst_rank);
                if (peer_base_addr) {
                    int *req_rptr_actual = (int *)((char *)(peer_base_addr) + ((char *)(rdma_recv_flag + global_expert_idx) - (char *)(nvshmemi_device_state_d.heap_base)));
                    st_na_release(req_rptr_actual, 1);
                } else {
                #endif
lishen's avatar
lishen committed
684
685
#if !defined(ROCM_DISABLE_CTX)
                internode::shmem_ctx_long_atomic_add(ctx,
lishen's avatar
lishen committed
686
#else
lishen's avatar
lishen committed
687
                internode::shmem_long_atomic_add(
lishen's avatar
lishen committed
688
#endif
lishen's avatar
lishen committed
689
                    rdma_recv_flag + global_expert_idx, 1, dst_rank);
lijian6's avatar
lijian6 committed
690
691
692
                #if defined(FORCE_NVSHMEM_API)
                }
                #endif
lishen's avatar
lishen committed
693
694
695
696
697
698
            } else {
                st_na_release(reinterpret_cast<int*>(rdma_recv_flag + global_expert_idx), 1);
            }
            atomic_add_release_global(atomic_clean_flag, -1);
        }
        syncwarp();
lishen's avatar
lishen committed
699
700
701
702
703
704
705
706

        if (num_ranks > 8){
#if !defined(ROCM_DISABLE_CTX)
            internode::shmem_ctx_quiet(ctx);
#else
            internode::shmem_fence();
#endif
        }
707
708
    }

lishen's avatar
lishen committed
709
710
711
712
#if !defined(ROCM_DISABLE_CTX)
    internode::shmem_wg_ctx_destroy(&ctx);
#endif

lishen's avatar
lishen committed
713
    // Receiving phase
lishen's avatar
lishen committed
714
LOW_LATENCY_COMBINE_RECV:
lishen's avatar
lishen committed
715
716
    if ((phases & LOW_LATENCY_RECV_PHASE) == 0)
        return;
717

lishen's avatar
lishen committed
718
719
720
721
722
723
724
725
    //     if (num_ranks > 8){
    // #if !defined(ROCM_DISABLE_CTX)
    //         internode::shmem_ctx_quiet(ctx);
    // #else
    //         internode::shmem_fence();
    // #endif
    //     }

lishen's avatar
lishen committed
726
727
    // Wait all ranks to arrive and notify PCIe usage
    if (responsible_expert_idx < num_experts) {
lishen's avatar
lishen committed
728
        EP_DEVICE_ASSERT(num_warps_per_group > 1);
lishen's avatar
lishen committed
729
730
731
        if (sub_warp_id == 0 and lane_id == 0){
            while (ld_acquire_global(reinterpret_cast<int*>(rdma_recv_flag + responsible_expert_idx)) == 0);
        }
732
    }
lishen's avatar
lishen committed
733
734
735
736
737
738
739
740
741
742
743
744
745
746
747
    grid_barrier(global_atomic_counter, num_sms);

    // Reduce tokens with FP8 cast
    EP_DEVICE_ASSERT(num_topk <= kWarpSize and hidden_bf16_int4 <= num_threads);
    EP_STATIC_ASSERT(kHidden % (kWarpSize * kNumElemsPerInt4) == 0, "Invalid vectorization");
    if (thread_id < hidden_bf16_int4) {
        for (int token_idx = sm_id; token_idx < num_combined_tokens; token_idx += num_sms) {
            // Read top-k indices and weights
            int reg_topk_idx[kNumMaxTopk];
            float reg_topk_weights[kNumMaxTopk];
            #pragma unroll
            for (int i = 0; i < num_topk; ++ i) {
                reg_topk_idx[i] = static_cast<int>(__ldg(topk_idx + token_idx * num_topk + i));
                reg_topk_weights[i] = __ldg(topk_weights + token_idx * num_topk + i);
            }
748

lishen's avatar
lishen committed
749
750
751
752
753
754
755
756
757
758
759
760
761
762
            float combined_values[kNumElemsPerInt4] = {0.0f};
            #pragma unroll
            for (int i = 0; i < num_topk; ++ i) if (reg_topk_idx[i] >= 0) {
                // Read from sources
                auto rdma_buffer_type = reinterpret_cast<const int*>(reinterpret_cast<uint8_t*>(rdma_recv_x) + (reg_topk_idx[i] * num_max_dispatch_tokens_per_rank + token_idx) * num_bytes_per_slot);
                auto rdma_buffer_row = reinterpret_cast<const uint8_t*>(rdma_buffer_type + 4);

                // Reduce
                auto x_vec = ld_nc_global(reinterpret_cast<const int4*>(rdma_buffer_row) + thread_id);
                const auto x_bf16 = reinterpret_cast<hip_bfloat16*>(&x_vec);
                #pragma unroll
                for (int j = 0; j < kNumElemsPerInt4; ++ j)
                    combined_values[j] += static_cast<float>(x_bf16[j]) * reg_topk_weights[i];
            }
763

lishen's avatar
lishen committed
764
765
766
767
768
769
770
771
772
            // Write results
            int4& combined_int4 = *reinterpret_cast<int4*>(combined_values);
            auto combined_bf16 = reinterpret_cast<hip_bfloat16*>(&combined_values);
            #pragma unroll
            for (int j = 0; j < kNumElemsPerInt4; ++ j)
                combined_bf16[j] = static_cast<hip_bfloat16>(combined_values[j]);
            (reinterpret_cast<int4*>(combined_x) + token_idx * hidden_bf16_int4)[thread_id] = combined_int4;
        }
    }
773
774
}

lishen's avatar
lishen committed
775
776
777
778
779
780
781
782
void combine(void* combined_x,
             void* rdma_recv_x, int64_t* rdma_recv_flag, void* rdma_send_x,
             const void* x, const int64_t* topk_idx, const float* topk_weights,
             const int* src_info, const int64_t* layout_range,
             int* global_atomic_counter,
             int64_t* next_clean, int num_next_clean_int,
             int num_combined_tokens, int hidden, int num_max_dispatch_tokens_per_rank,
             int num_topk, int num_experts, int rank, int num_ranks,
lishen's avatar
lishen committed
783
             void* workspace, int num_device_sms, hipStream_t stream,
lishen's avatar
lishen committed
784
             int phases, bool zero_copy) {
lishen's avatar
lishen committed
785
786
787
788
789
    constexpr int kNumMaxTopk = 11;
    const int num_warp_groups = ceil_div(num_experts, num_device_sms);
    const int num_warps_per_group = 16 / num_warp_groups; // num_warps_per_group>1, "Requires more than one warp per group"
    const int num_recv_per_sm = ceil_div(num_combined_tokens, num_device_sms);
    EP_HOST_ASSERT(num_warp_groups > 0 and num_warps_per_group > 0 and num_recv_per_sm >= 0);
lishen's avatar
lishen committed
790

lishen's avatar
lishen committed
791
792
793
    const auto num_warps = num_warp_groups * num_warps_per_group;
    const auto num_sms =
        max(ceil_div(num_experts, num_warp_groups), num_recv_per_sm == 0 ? 1 : ceil_div(num_combined_tokens, num_recv_per_sm));
lishen's avatar
lishen committed
794
795
796
797
798
799
800

    // Check workspace
    auto atomic_clean_flag = reinterpret_cast<int*>(workspace);
    EP_HOST_ASSERT(sizeof(int) <= NUM_WORKSPACE_BYTES);
    EP_HOST_ASSERT(num_topk <= kNumMaxTopk);

#define COMBINE_LAUNCH_CASE(hidden) { \
lishen's avatar
lishen committed
801
auto combine_func = combine<hidden, kNumMaxTopk>; \
lishen's avatar
lishen committed
802
803
804
805
806
807
808
809
810
811
LAUNCH_KERNEL_NON_COOPERATIVE(&cfg, combine_func, \
              combined_x, \
              rdma_recv_x, rdma_recv_flag, rdma_send_x, \
              x, topk_idx, topk_weights, src_info, layout_range, \
              global_atomic_counter, \
              next_clean, num_next_clean_int, \
              atomic_clean_flag, \
              num_combined_tokens, hidden, num_topk, \
              num_max_dispatch_tokens_per_rank, \
              num_experts, rank, num_ranks, \
lishen's avatar
lishen committed
812
              num_warp_groups, num_warps_per_group, phases, zero_copy); } break
lishen's avatar
lishen committed
813
814
815
816

    SETUP_LAUNCH_CONFIG(num_sms, num_warps * kWarpSize, stream);
    SWITCH_HIDDEN(COMBINE_LAUNCH_CASE);
#undef COMBINE_LAUNCH_CASE
817
818
}

Chenggang Zhao's avatar
Chenggang Zhao committed
819
820
821
} // namespace internode_ll

} // namespace deep_ep