Changes in modelling_RW.py to be able to handle past_key_values for faster model generations
#85
by
puru22
- opened
- modelling_RW.py +69 -30
modelling_RW.py
CHANGED
@@ -87,10 +87,18 @@ class RotaryEmbedding(torch.nn.Module):
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return self.cos_cached, self.sin_cached
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def forward(self, q, k):
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cos, sin = self.cos_sin(seq_len, q.device, q.dtype)
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def _make_causal_mask(
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@@ -100,10 +108,10 @@ def _make_causal_mask(
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mask = torch.empty((target_length, target_length + past_key_values_length), dtype=torch.bool, device=device)
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# ONNX doesn't support `torch.Tensor.triu` properly, thus we use this workaround
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seq_ids = torch.arange(target_length, device=device)
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-
mask[:, past_key_values_length:] = seq_ids[:, None]
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if past_key_values_length > 0:
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-
mask[:, :past_key_values_length] =
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expanded_mask = mask[None, None, :, :].expand(batch_size, 1, target_length, target_length + past_key_values_length)
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return expanded_mask
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@@ -248,6 +256,7 @@ class Attention(nn.Module):
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head_mask: Optional[torch.Tensor] = None,
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use_cache: bool = False,
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output_attentions: bool = False,
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):
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fused_qkv = self.query_key_value(hidden_states) # [batch_size, seq_length, 3 x hidden_size]
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@@ -264,31 +273,43 @@ class Attention(nn.Module):
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)
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value_layer = value_layer.transpose(1, 2).reshape(batch_size * self.num_heads, q_length, self.head_dim)
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-
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if layer_past is not None:
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past_key, past_value = layer_past
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# concatenate along seq_length dimension:
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# - key: [batch_size * self.num_heads, head_dim, kv_length]
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# - value: [batch_size * self.num_heads, kv_length, head_dim]
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key_layer = torch.cat((past_key, key_layer), dim=1)
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value_layer = torch.cat((past_value, value_layer), dim=1)
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_, kv_length, _ = key_layer.shape
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if use_cache is True:
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-
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else:
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present = None
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-
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if alibi is None:
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query_layer_ = query_layer.reshape(batch_size, self.num_heads, -1, self.head_dim)
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key_layer_ = key_layer.reshape(batch_size, self.num_heads, -1, self.head_dim)
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value_layer_ = value_layer.reshape(batch_size, self.num_heads, -1, self.head_dim)
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-
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x = attn_output.view(batch_size, self.num_heads, q_length, self.head_dim)
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x = x.permute(0, 2, 1, 3)
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@@ -385,6 +406,7 @@ class DecoderLayer(nn.Module):
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head_mask: Optional[torch.Tensor] = None,
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use_cache: bool = False,
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output_attentions: bool = False,
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):
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ln_attn = self.ln_attn(hidden_states)
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@@ -401,6 +423,7 @@ class DecoderLayer(nn.Module):
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head_mask=head_mask,
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use_cache=use_cache,
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output_attentions=output_attentions,
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)
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attention_output = attn_outputs[0]
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@@ -528,10 +551,10 @@ class RWModel(RWPreTrainedModel):
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device = attention_mask.device
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_, src_length = input_shape
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if src_length > 1:
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-
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-
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-
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# [batch_size, seq_length] -> [batch_size, 1, tgt_length, src_length]
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expanded_attn_mask = _expand_mask(attention_mask, tgt_length=src_length)
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@@ -651,15 +674,28 @@ class RWModel(RWPreTrainedModel):
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head_mask[i],
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)
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else:
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hidden_states = outputs[0]
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if use_cache is True:
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@@ -710,16 +746,19 @@ class RWForCausalLM(RWPreTrainedModel):
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**kwargs,
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) -> dict:
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# only last token for input_ids if past is not None
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if
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input_ids = input_ids[:, -1].unsqueeze(-1)
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-
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# the cache may be in the stardard format (e.g. in contrastive search), convert to our's format if needed
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if
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-
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return {
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"input_ids": input_ids,
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-
"past_key_values":
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"use_cache": kwargs.get("use_cache"),
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"attention_mask": attention_mask,
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}
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return self.cos_cached, self.sin_cached
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+
def forward(self, q, k, past_seq_length=None):
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if past_seq_length == None :
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batch, seq_len, head_dim = q.shape
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else :
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# print("past_seq_length", past_seq_length)
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batch, input_seq_len, head_dim = q.shape
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seq_len = past_seq_length + input_seq_len
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cos, sin = self.cos_sin(seq_len, q.device, q.dtype)
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if past_seq_length != None :
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return (q * cos[:, past_seq_length:, :]) + (rotate_half(q) * sin[:, past_seq_length:, :]), (k * cos[:, past_seq_length:, :]) + (rotate_half(k) * sin[:, past_seq_length:, :])
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else :
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return (q * cos) + (rotate_half(q) * sin), (k * cos) + (rotate_half(k) * sin)
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def _make_causal_mask(
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mask = torch.empty((target_length, target_length + past_key_values_length), dtype=torch.bool, device=device)
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# ONNX doesn't support `torch.Tensor.triu` properly, thus we use this workaround
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seq_ids = torch.arange(target_length, device=device)
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mask[:, past_key_values_length:] = seq_ids[:, None] >= seq_ids[None, :]
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if past_key_values_length > 0:
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mask[:, :past_key_values_length] = True
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expanded_mask = mask[None, None, :, :].expand(batch_size, 1, target_length, target_length + past_key_values_length)
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return expanded_mask
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head_mask: Optional[torch.Tensor] = None,
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use_cache: bool = False,
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output_attentions: bool = False,
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layer_number = None
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):
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fused_qkv = self.query_key_value(hidden_states) # [batch_size, seq_length, 3 x hidden_size]
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)
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value_layer = value_layer.transpose(1, 2).reshape(batch_size * self.num_heads, q_length, self.head_dim)
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if layer_past is not None :
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past_key, past_value = layer_past
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past_kv_length = past_key.shape[2]
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query_layer, key_layer = self.maybe_rotary(query_layer, key_layer, past_kv_length)
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else :
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query_layer, key_layer = self.maybe_rotary(query_layer, key_layer)
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if layer_past is not None:
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past_key, past_value = layer_past
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# concatenate along seq_length dimension:
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# - key: [batch_size * self.num_heads, head_dim, kv_length]
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# - value: [batch_size * self.num_heads, kv_length, head_dim]
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past_key = past_key.permute(0, 2, 1)
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key_layer = torch.cat((past_key, key_layer), dim=1)
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value_layer = torch.cat((past_value, value_layer), dim=1)
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_, kv_length, _ = key_layer.shape
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if use_cache is True:
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key_layer_permute = key_layer.permute(0, 2, 1)
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present = (key_layer_permute, value_layer)
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else:
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present = None
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if alibi is None:
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query_layer_ = query_layer.reshape(batch_size, self.num_heads, -1, self.head_dim)
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key_layer_ = key_layer.reshape(batch_size, self.num_heads, -1, self.head_dim)
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value_layer_ = value_layer.reshape(batch_size, self.num_heads, -1, self.head_dim)
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if attention_mask is not None :
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attn_output = F.scaled_dot_product_attention(
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query_layer_, key_layer_, value_layer_, attention_mask, 0.0, is_causal=False
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)
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else :
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attn_output = F.scaled_dot_product_attention(
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query_layer_, key_layer_, value_layer_, None, 0.0, is_causal=True
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)
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x = attn_output.view(batch_size, self.num_heads, q_length, self.head_dim)
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x = x.permute(0, 2, 1, 3)
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head_mask: Optional[torch.Tensor] = None,
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use_cache: bool = False,
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output_attentions: bool = False,
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layer_number = None
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):
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ln_attn = self.ln_attn(hidden_states)
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head_mask=head_mask,
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use_cache=use_cache,
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output_attentions=output_attentions,
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+
layer_number=layer_number
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)
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attention_output = attn_outputs[0]
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device = attention_mask.device
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_, src_length = input_shape
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# if src_length > 1:
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combined_attention_mask = _make_causal_mask(
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input_shape, device=device, past_key_values_length=past_key_values_length
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)
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# [batch_size, seq_length] -> [batch_size, 1, tgt_length, src_length]
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expanded_attn_mask = _expand_mask(attention_mask, tgt_length=src_length)
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head_mask[i],
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)
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else:
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if i==0 :
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outputs = block(
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hidden_states,
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layer_past=layer_past,
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attention_mask=causal_mask,
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head_mask=head_mask[i],
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use_cache=use_cache,
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output_attentions=output_attentions,
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alibi=alibi,
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layer_number=0
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)
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else :
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outputs = block(
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hidden_states,
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layer_past=layer_past,
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attention_mask=causal_mask,
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head_mask=head_mask[i],
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use_cache=use_cache,
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output_attentions=output_attentions,
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alibi=alibi,
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)
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hidden_states = outputs[0]
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if use_cache is True:
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**kwargs,
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) -> dict:
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# only last token for input_ids if past is not None
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if kwargs.get("past_key_values", None) :
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input_ids = input_ids[:, -1].unsqueeze(-1)
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past_key_values = kwargs["past_key_values"]
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# the cache may be in the stardard format (e.g. in contrastive search), convert to our's format if needed
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# if kwargs["past_key_values"][0][0].shape[0] == input_ids.shape[0]:
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# past_key_values = self._convert_to_rw_cache(kwargs["past_key_values"])
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# past_key_values = kwargs["past_key_values"]
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else :
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past_key_values = None
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return {
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"input_ids": input_ids,
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"past_key_values": past_key_values,
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"use_cache": kwargs.get("use_cache"),
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"attention_mask": attention_mask,
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}
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