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pybind.cpp 3.5 KB

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  1. #include "cache.h"
  2. #include "cuda_utils.h"
  3. #include "ops.h"
  4. #include <torch/extension.h>
  5. PYBIND11_MODULE(TORCH_EXTENSION_NAME, m) {
  6. // Aphrodite custom ops
  7. pybind11::module ops = m.def_submodule("ops", "Aphrodite custom operators");
  8. // Attention ops
  9. ops.def(
  10. "paged_attention_v1",
  11. &paged_attention_v1,
  12. "Compute the attention between an input query and the cached keys/values using PagedAttention.");
  13. ops.def(
  14. "paged_attention_v2",
  15. &paged_attention_v2,
  16. "PagedAttention V2.");
  17. // Activation ops
  18. ops.def(
  19. "silu_and_mul",
  20. &silu_and_mul,
  21. "Activation function used in SwiGLU.");
  22. ops.def(
  23. "gelu_and_mul",
  24. &gelu_and_mul,
  25. "Activation function used in GeGLU with `none` approximation.");
  26. ops.def(
  27. "gelu_tanh_and_mul",
  28. &gelu_tanh_and_mul,
  29. "Activation function used in GeGLU with `tanh` approximation.");
  30. ops.def(
  31. "gelu_new",
  32. &gelu_new,
  33. "GELU implementation used in GPT-2.");
  34. ops.def(
  35. "gelu_fast",
  36. &gelu_fast,
  37. "Approximate GELU implementation.");
  38. // Layernorm
  39. ops.def(
  40. "rms_norm",
  41. &rms_norm,
  42. "Apply Root Mean Square (RMS) Normalization to the input tensor.");
  43. ops.def(
  44. "fused_add_rms_norm",
  45. &fused_add_rms_norm,
  46. "In-place fused Add and RMS Normalization");
  47. // Rotary embedding
  48. ops.def(
  49. "rotary_embedding",
  50. &rotary_embedding,
  51. "Apply GPT-NeoX or GPT-J style rotary embedding to query and key");
  52. ops.def(
  53. "batched_rotary_embedding",
  54. &batched_rotary_embedding,
  55. "Apply batched GPT-NeoX or GPT-J style rotary embedding to query and key");
  56. ops.def("moe_align_block_size",
  57. &moe_align_block_size,
  58. "Aligning the number of tokens to be processed by each expert such that it is divisible by the block size.");
  59. // Cache ops
  60. pybind11::module cache_ops = m.def_submodule("cache_ops", "Aphrodite cache ops");
  61. cache_ops.def(
  62. "swap_blocks",
  63. &swap_blocks,
  64. "Swap in (out) the cache blocks from src to dst");
  65. cache_ops.def(
  66. "copy_blocks",
  67. &copy_blocks,
  68. "Copy the cache blocks from src to dst");
  69. cache_ops.def(
  70. "reshape_and_cache",
  71. &reshape_and_cache,
  72. "Reshape the key and value tensors and cache them");
  73. cache_ops.def(
  74. "convert_fp8",
  75. &convert_fp8,
  76. "Convert the key and value cache to fp8 data type");
  77. // Cuda utils
  78. pybind11::module cuda_utils = m.def_submodule("cuda_utils", "Aphrodite cuda utils");
  79. cuda_utils.def(
  80. "get_device_attribute",
  81. &get_device_attribute,
  82. "Gets the specified device attribute.");
  83. cuda_utils.def(
  84. "get_max_shared_memory_per_block_device_attribute",
  85. &get_max_shared_memory_per_block_device_attribute,
  86. "Gets the maximum shared memory per block device attribute.");
  87. #ifndef USE_ROCM
  88. // Custom all-reduce kernels
  89. pybind11::module custom_ar = m.def_submodule("custom_ar", "custom allreduce");
  90. custom_ar.def("init_custom_ar", &init_custom_ar, "init_custom_ar");
  91. custom_ar.def("should_custom_ar", &should_custom_ar, "should_custom_ar");
  92. custom_ar.def("all_reduce_reg", &all_reduce_reg, "all_reduce_reg");
  93. custom_ar.def("all_reduce_unreg", &all_reduce_unreg, "all_reduce_unreg");
  94. custom_ar.def("dispose", &dispose, "dispose");
  95. custom_ar.def("meta_size", &meta_size, "meta_size");
  96. custom_ar.def("register_buffer", &register_buffer, "register_buffer");
  97. custom_ar.def("get_graph_buffer_ipc_meta", &get_graph_buffer_ipc_meta,
  98. "get_graph_buffer_ipc_meta");
  99. custom_ar.def("register_graph_buffers", &register_graph_buffers,
  100. "register_graph_buffers");
  101. #endif
  102. }