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dummy-gpt
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cbdd32faaa
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@ -3,11 +3,23 @@ from pathlib import Path
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import torch
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from llmfs.attn import MultiHeadAttention
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from llmfs.datasets.v1 import GPTDataSetV1
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from llmfs.gpt import GPTConfig
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from llmfs.tokenizers import BPETokenizer
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DATA_DIR = Path(__file__).parent.parent / "data"
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GPT_CONFIG_124M = GPTConfig(
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vocab_size=50257,
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context_length=1024,
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embedding_dim=768,
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n_heads=12,
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n_layers=12,
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dropout=0.1,
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qkv_bias=False,
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)
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def process_text(text: str):
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tokenizer = BPETokenizer.build(text)
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vocab_size = tokenizer.max_token_value + 1
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@ -48,7 +60,7 @@ def attn_test():
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batch = torch.stack((inps, inps), dim=0)
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attn = MultiHeadAttention(
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inps.shape[1],
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4,
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8,
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inps.shape[0],
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dropout=True,
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num_heads=2,
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@ -1,4 +1,3 @@
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from typing import final
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import torch
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@ -15,7 +14,7 @@ class SelfAttention(torch.nn.Module):
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self.w_query = torch.nn.Linear(d_in, d_out, bias=bias)
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self.w_key = torch.nn.Linear(d_in, d_out, bias=bias)
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self.w_val = torch.nn.Linear(d_in, d_out, bias=bias)
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self.dropout = torch.nn.Dropout(inplace=True)
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self.dropout = torch.nn.Dropout(dropout, inplace=True)
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self.register_buffer(
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"mask",
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torch.triu(torch.ones(ctx_len, ctx_len), diagonal=1).bool(),
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@ -54,14 +53,14 @@ class MultiHeadAttention(torch.nn.Module):
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self.w_key = torch.nn.Linear(d_in, d_out, bias=bias)
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self.w_val = torch.nn.Linear(d_in, d_out, bias=bias)
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self.out_proj = torch.nn.Linear(d_out, d_out)
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self.dropout = torch.nn.Dropout(inplace=True)
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self.dropout = torch.nn.Dropout(dropout, inplace=True)
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self.register_buffer(
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"mask",
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torch.triu(torch.ones(ctx_len, ctx_len), diagonal=1),
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torch.triu(torch.ones(ctx_len, ctx_len), diagonal=1).bool(),
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)
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def forward(self, data: torch.Tensor) -> torch.Tensor:
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batches, num_tokens, _features = data.shape
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batches, num_tokens, _ = data.shape
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queries = self.w_query(data)
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keys = self.w_key(data)
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values = self.w_val(data)
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@ -71,16 +70,22 @@ class MultiHeadAttention(torch.nn.Module):
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values_v = values.view(
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batches, num_tokens, self.num_heads, self.head_dim
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).transpose(1, 2)
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# 2, 6, 2, 4 -> 2, 2, 6, 4
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# (batches, tokens, heads, out_dim) -> (batches, heads, tokens, out_dim)
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queries_v = queries.view(
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batches, num_tokens, self.num_heads, self.head_dim
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).transpose(1, 2)
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# (2, 2, 6, 4) @ (2, 2, 4, 6) -> (2, 2, 6, 6)
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# (batches, tokens, heads, out_dim) @ (batches', tokens', out_dim', heads') -> (batches, tokens, heads, heads')
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attn_scores = queries_v @ keys_v.transpose(2, 3)
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attn_scores.masked_fill_(
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self.mask.bool()[:num_tokens, :num_tokens],
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self.mask[:num_tokens, :num_tokens],
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-torch.inf,
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)
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attn_weights = (attn_scores / keys.shape[-1] ** 0.5).softmax(dim=-1)
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self.dropout(attn_weights)
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# (2, 2, 6, 6) @ (2, 2, 6, 4) -> (2, 2, 6, 6)
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# (2, 2, 6, 6) -> T(1,2) -> (2, 6, 2, 6)
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context_vec = (attn_weights @ values_v).transpose(1, 2)
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context_vec = context_vec.contiguous().view(batches, num_tokens, self.d_out)
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context_vec = self.out_proj(context_vec)
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27
llmfs/gpt.py
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27
llmfs/gpt.py
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@ -0,0 +1,27 @@
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from dataclasses import dataclass
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import torch
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@dataclass
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class GPTConfig:
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vocab_size: int
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context_length: int
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embedding_dim: int
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n_heads: int
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n_layers: int
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dropout: float
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qkv_bias: bool
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class DummyGPT:
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def __init__(self, config: GPTConfig):
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self.tok_embedding = torch.nn.Embedding(
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config.vocab_size,
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config.embedding_dim,
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)
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self.pos_embedding = torch.nn.Embedding(
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config.context_length,
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config.embedding_dim,
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)
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self.dropout = torch.nn.Dropout(config.dropout)
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