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stablelm : simplify + speedup generation (#4153)
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0b871f1a04
commit
8e672efe63
86
llama.cpp
86
llama.cpp
@ -4814,92 +4814,34 @@ struct llm_build_context {
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// self-attention
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{
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// compute Q and K and RoPE them
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struct ggml_tensor * tmpq = ggml_mul_mat(ctx0, model.layers[il].wq, cur);
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cb(tmpq, "tmpq", il);
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struct ggml_tensor * Qcur = ggml_mul_mat(ctx0, model.layers[il].wq, cur);
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cb(Qcur, "Qcur", il);
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struct ggml_tensor * tmpk = ggml_mul_mat(ctx0, model.layers[il].wk, cur);
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cb(tmpk, "tmpk", il);
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struct ggml_tensor * Kcur = ggml_mul_mat(ctx0, model.layers[il].wk, cur);
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cb(Kcur, "Kcur", il);
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struct ggml_tensor * Vcur = ggml_mul_mat(ctx0, model.layers[il].wv, cur);
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cb(Vcur, "Vcur", il);
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// RoPE the first n_rot of q/k, pass the other half, and concat.
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struct ggml_tensor * qrot = ggml_cont(ctx0, ggml_view_3d(
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ctx0, tmpq, hparams.n_rot, n_head, n_tokens,
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ggml_element_size(tmpq) * n_embd_head,
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ggml_element_size(tmpq) * n_embd_head * n_head,
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0
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));
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cb(qrot, "qrot", il);
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struct ggml_tensor * krot = ggml_cont(ctx0, ggml_view_3d(
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ctx0, tmpk, hparams.n_rot, n_head, n_tokens,
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ggml_element_size(tmpk) * n_embd_head,
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ggml_element_size(tmpk) * n_embd_head * n_head_kv,
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0
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));
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cb(krot, "krot", il);
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// get the second half of tmpq, e.g tmpq[n_rot:, :, :]
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struct ggml_tensor * qpass = ggml_view_3d(
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ctx0, tmpq, (n_embd_head - hparams.n_rot), n_head, n_tokens,
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ggml_element_size(tmpq) * n_embd_head,
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ggml_element_size(tmpq) * n_embd_head * n_head,
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ggml_element_size(tmpq) * hparams.n_rot
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);
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cb(qpass, "qpass", il);
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struct ggml_tensor * kpass = ggml_view_3d(
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ctx0, tmpk, (n_embd_head - hparams.n_rot), n_head_kv, n_tokens,
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ggml_element_size(tmpk) * (n_embd_head),
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ggml_element_size(tmpk) * (n_embd_head) * n_head_kv,
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ggml_element_size(tmpk) * hparams.n_rot
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);
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cb(kpass, "kpass", il);
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struct ggml_tensor * qrotated = ggml_rope_custom(
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ctx0, qrot, inp_pos, hparams.n_rot, 2, 0, n_orig_ctx,
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freq_base, freq_scale, ext_factor, attn_factor, beta_fast, beta_slow
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Qcur = ggml_rope_custom(
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ctx0, ggml_reshape_3d(ctx0, Qcur, n_embd_head, n_head, n_tokens), inp_pos,
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hparams.n_rot, 2, 0, n_orig_ctx, freq_base, freq_scale,
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ext_factor, attn_factor, beta_fast, beta_slow
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);
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cb(qrotated, "qrotated", il);
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struct ggml_tensor * krotated = ggml_rope_custom(
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ctx0, krot, inp_pos, hparams.n_rot, 2, 0, n_orig_ctx,
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freq_base, freq_scale, ext_factor, attn_factor, beta_fast, beta_slow
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);
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cb(krotated, "krotated", il);
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// ggml currently only supports concatenation on dim=2
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// so we need to permute qrot, qpass, concat, then permute back.
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qrotated = ggml_cont(ctx0, ggml_permute(ctx0, qrotated, 2, 1, 0, 3));
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cb(qrotated, "qrotated", il);
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krotated = ggml_cont(ctx0, ggml_permute(ctx0, krotated, 2, 1, 0, 3));
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cb(krotated, "krotated", il);
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qpass = ggml_cont(ctx0, ggml_permute(ctx0, qpass, 2, 1, 0, 3));
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cb(qpass, "qpass", il);
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kpass = ggml_cont(ctx0, ggml_permute(ctx0, kpass, 2, 1, 0, 3));
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cb(kpass, "kpass", il);
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struct ggml_tensor * Qcur = ggml_concat(ctx0, qrotated, qpass);
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cb(Qcur, "Qcur", il);
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struct ggml_tensor * Kcur = ggml_concat(ctx0, krotated, kpass);
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cb(Kcur, "Kcur", il);
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struct ggml_tensor * Q = ggml_cont(ctx0, ggml_permute(ctx0, Qcur, 2, 1, 0, 3));
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cb(Q, "Q", il);
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Kcur = ggml_cont(ctx0, ggml_permute(ctx0, Kcur, 2, 1, 0, 3));
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Kcur = ggml_rope_custom(
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ctx0, ggml_reshape_3d(ctx0, Kcur, n_embd_head, n_head_kv, n_tokens), inp_pos,
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hparams.n_rot, 2, 0, n_orig_ctx, freq_base, freq_scale,
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ext_factor, attn_factor, beta_fast, beta_slow
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);
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cb(Kcur, "Kcur", il);
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llm_build_kv_store(ctx0, hparams, kv_self, gf, Kcur, Vcur, n_ctx, n_tokens, kv_head, cb, il);
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cur = llm_build_kqv(ctx0, hparams, kv_self,
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model.layers[il].wo, NULL,
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Q, KQ_scale, KQ_mask, n_ctx, n_tokens, n_kv, -1.0f, cb, il);
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Qcur, KQ_scale, KQ_mask, n_ctx, n_tokens, n_kv, -1.0f, cb, il);
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cb(cur, "kqv_out", il);
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}
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