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| | #pragma once |
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| | #include <vector> |
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| | inline bool should_pack_gqa(bool varlen_q, int seqlen_q, int qhead_per_khead, int blockM) { |
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| | if (varlen_q) return true; |
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| | auto round_up = [](int a, int b) { return (a + b - 1) / b * b; }; |
| | float nopack_gqa_efficiency = float(seqlen_q) / float(round_up(seqlen_q, blockM)); |
| | float pack_gqa_efficiency = float(seqlen_q * qhead_per_khead) / float(round_up(seqlen_q * qhead_per_khead, blockM)); |
| | return nopack_gqa_efficiency < 0.9 * pack_gqa_efficiency; |
| | }; |
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| | inline int num_splits_heuristic(int total_mblocks, int num_SMs, int num_n_blocks, int num_m_blocks, int size_one_kv_head, bool is_causal_or_local, int max_splits) { |
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| | if (total_mblocks >= 0.8f * num_SMs) { |
| | int const size_l2 = 50 * 1024 * 1024; |
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| | if (size_one_kv_head > size_l2 && num_m_blocks >= num_SMs * 2 && !is_causal_or_local) { |
| | return std::min((size_one_kv_head + size_l2 - 1) / size_l2, max_splits); |
| | } else { |
| | return 1; |
| | } |
| | } |
| | |
| | if (num_n_blocks <= 4) { return 1; } |
| | max_splits = std::min({max_splits, num_SMs, num_n_blocks}); |
| | float max_efficiency = 0.f; |
| | std::vector<float> efficiency; |
| | efficiency.reserve(max_splits); |
| | for (int num_splits = 1; num_splits <= max_splits; num_splits++) { |
| | float n_waves = float(total_mblocks * num_splits) / num_SMs; |
| | float eff = n_waves / ceil(n_waves); |
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| | if (eff > max_efficiency) { max_efficiency = eff; } |
| | efficiency.push_back(eff); |
| | } |
| | for (int num_splits = 1; num_splits <= max_splits; num_splits++) { |
| | if (efficiency[num_splits - 1] >= 0.85 * max_efficiency) { |
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| | return num_splits; |
| | } |
| | } |
| | return 1; |
| | } |
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