fix slicing dimensions
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@ -46,8 +46,8 @@ class ApplyRotaryEmb(torch.autograd.Function):
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x1, x2 = x[..., :rotary_dim].chunk(2, dim=-1)
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out = torch.empty_like(x) if not inplace else x
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o1, o2 = out[..., :rotary_dim].chunk(2, dim=-1) if not inplace else (x1, x2)
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rotary_emb.apply_rotary(x1, x2, rearrange(cos[:, :seqlen], 's d -> s 1 d'),
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rearrange(sin[:, :seqlen], 's d -> s 1 d'), o1, o2, False)
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rotary_emb.apply_rotary(x1, x2, rearrange(cos[:seqlen], 's d -> s 1 d'),
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rearrange(sin[:seqlen], 's d -> s 1 d'), o1, o2, False)
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if not inplace and rotary_dim < headdim:
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out[..., rotary_dim:].copy_(x[..., rotary_dim:])
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ctx.save_for_backward(cos, sin)
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@ -64,8 +64,8 @@ class ApplyRotaryEmb(torch.autograd.Function):
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do1, do2 = do[..., :rotary_dim].chunk(2, dim=-1)
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dx = torch.empty_like(do) if not inplace else do
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dx1, dx2 = dx[..., :rotary_dim].chunk(2, dim=-1) if not inplace else (do1, do2)
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rotary_emb.apply_rotary(do1, do2, rearrange(cos[:, :seqlen], 's d -> s 1 d'),
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rearrange(sin[:, :seqlen], 's d -> s 1 d'), dx1, dx2, True)
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rotary_emb.apply_rotary(do1, do2, rearrange(cos[:seqlen], 's d -> s 1 d'),
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rearrange(sin[:seqlen], 's d -> s 1 d'), dx1, dx2, True)
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if not inplace and rotary_dim < headdim:
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dx[..., rotary_dim:].copy_(do[..., rotary_dim:])
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return dx, None, None, None
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@ -90,14 +90,12 @@ class ApplyRotaryEmbQKV_(torch.autograd.Function):
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rotary_dim *= 2
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assert rotary_dim <= headdim
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assert seqlen <= rotary_seqlen
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assert cos.shape == (seqlen, rotary_dim // 2)
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assert sin.shape == (seqlen, rotary_dim // 2)
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q1, q2 = qkv[:, :, 0, :, :rotary_dim].chunk(2, dim=-1)
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rotary_emb.apply_rotary(q1, q2, rearrange(cos[:, :seqlen], 's d -> s 1 d'),
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rearrange(sin[:, :seqlen], 's d -> s 1 d'), q1, q2, False)
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rotary_emb.apply_rotary(q1, q2, rearrange(cos[:seqlen], 's d -> s 1 d'),
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rearrange(sin[:seqlen], 's d -> s 1 d'), q1, q2, False)
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k1, k2 = qkv[:, :, 1, :, :rotary_dim].chunk(2, dim=-1)
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rotary_emb.apply_rotary(k1, k2, rearrange(cos[:, :seqlen], 's d -> s 1 d'),
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rearrange(sin[:, :seqlen], 's d -> s 1 d'), k1, k2, False)
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rotary_emb.apply_rotary(k1, k2, rearrange(cos[:seqlen], 's d -> s 1 d'),
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rearrange(sin[:seqlen], 's d -> s 1 d'), k1, k2, False)
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ctx.save_for_backward(cos, sin)
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return qkv
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@ -108,11 +106,11 @@ class ApplyRotaryEmbQKV_(torch.autograd.Function):
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rotary_dim = cos.shape[-1]
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rotary_dim *= 2
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dq1, dq2 = dqkv[:, :, 0, :, :rotary_dim].chunk(2, dim=-1)
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rotary_emb.apply_rotary(dq1, dq2, rearrange(cos[:, :seqlen], 's d -> s 1 d'),
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rearrange(sin[:, :seqlen], 's d -> s 1 d'), dq1, dq2, True)
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rotary_emb.apply_rotary(dq1, dq2, rearrange(cos[:seqlen], 's d -> s 1 d'),
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rearrange(sin[:seqlen], 's d -> s 1 d'), dq1, dq2, True)
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dk1, dk2 = dqkv[:, :, 1, :, :rotary_dim].chunk(2, dim=-1)
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rotary_emb.apply_rotary(dk1, dk2, rearrange(cos[:, :seqlen], 's d -> s 1 d'),
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rearrange(sin[:, :seqlen], 's d -> s 1 d'), dk1, dk2, True)
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rotary_emb.apply_rotary(dk1, dk2, rearrange(cos[:seqlen], 's d -> s 1 d'),
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rearrange(sin[:seqlen], 's d -> s 1 d'), dk1, dk2, True)
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return dqkv, None, None
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