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llama : support attention bias on LLaMA architecture (#4283)
* Support attention_bias on LLaMA architecture QKVO bias, should fix InternLM (https://github.com/ggerganov/llama.cpp/issues/3133) and works for LLaMAfied Qwen models (https://github.com/ggerganov/llama.cpp/pull/3743#issuecomment-1825923608). * check existence of qkvo bias while loading llama models Tested on LLaMA2, CUDA and CPU. * Update llama.cpp
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llama.cpp
50
llama.cpp
@ -1266,6 +1266,9 @@ struct llama_layer {
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struct ggml_tensor * wqkv;
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// attention bias
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struct ggml_tensor * bq;
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struct ggml_tensor * bk;
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struct ggml_tensor * bv;
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struct ggml_tensor * bo;
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struct ggml_tensor * bqkv;
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@ -2809,6 +2812,30 @@ static void llm_load_tensors(
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layer.wv = ml.create_tensor(ctx, tn(LLM_TENSOR_ATTN_V, "weight", i), {n_embd, n_embd_gqa}, backend_split);
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layer.wo = ml.create_tensor(ctx, tn(LLM_TENSOR_ATTN_OUT, "weight", i), {n_embd, n_embd}, backend_split);
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try {
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layer.bq = ml.create_tensor(ctx, tn(LLM_TENSOR_ATTN_Q, "bias", i), {n_embd}, backend);
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} catch (const std::runtime_error& e) {
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if (std::string(e.what()).find("not found") != std::string::npos) layer.bq = NULL; else throw;
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}
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try {
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layer.bk = ml.create_tensor(ctx, tn(LLM_TENSOR_ATTN_K, "bias", i), {n_embd_gqa}, backend);
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} catch (const std::runtime_error& e) {
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if (std::string(e.what()).find("not found") != std::string::npos) layer.bk = NULL; else throw;
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}
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try {
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layer.bv = ml.create_tensor(ctx, tn(LLM_TENSOR_ATTN_V, "bias", i), {n_embd_gqa}, backend);
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} catch (const std::runtime_error& e) {
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if (std::string(e.what()).find("not found") != std::string::npos) layer.bv = NULL; else throw;
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}
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try {
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layer.bo = ml.create_tensor(ctx, tn(LLM_TENSOR_ATTN_OUT, "bias", i), {n_embd}, backend);
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} catch (const std::runtime_error& e) {
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if (std::string(e.what()).find("not found") != std::string::npos) layer.bo = NULL; else throw;
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}
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layer.ffn_norm = ml.create_tensor(ctx, tn(LLM_TENSOR_FFN_NORM, "weight", i), {n_embd}, backend);
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layer.ffn_gate = ml.create_tensor(ctx, tn(LLM_TENSOR_FFN_GATE, "weight", i), {n_embd, n_ff}, backend_split);
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@ -2818,8 +2845,13 @@ static void llm_load_tensors(
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if (backend == GGML_BACKEND_GPU) {
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vram_weights +=
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ggml_nbytes(layer.attn_norm) + ggml_nbytes(layer.wq) + ggml_nbytes(layer.wk) +
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ggml_nbytes(layer.wv) + ggml_nbytes(layer.wo) + ggml_nbytes(layer.ffn_norm) +
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ggml_nbytes(layer.ffn_gate) + ggml_nbytes(layer.ffn_down) + ggml_nbytes(layer.ffn_up);
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ggml_nbytes(layer.wv) + ggml_nbytes(layer.wo) +
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(layer.bq ? ggml_nbytes(layer.bq) : 0) +
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(layer.bk ? ggml_nbytes(layer.bk) : 0) +
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(layer.bv ? ggml_nbytes(layer.bv) : 0) +
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(layer.bo ? ggml_nbytes(layer.bo) : 0) +
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ggml_nbytes(layer.ffn_norm) + ggml_nbytes(layer.ffn_gate) +
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ggml_nbytes(layer.ffn_down) + ggml_nbytes(layer.ffn_up);
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}
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}
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} break;
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@ -3983,12 +4015,24 @@ struct llm_build_context {
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// compute Q and K and RoPE them
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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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if (model.layers[il].bq) {
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Qcur = ggml_add(ctx0, Qcur, model.layers[il].bq);
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cb(Qcur, "Qcur", il);
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}
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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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if (model.layers[il].bk) {
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Kcur = ggml_add(ctx0, Kcur, model.layers[il].bk);
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cb(Kcur, "Kcur", il);
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}
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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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if (model.layers[il].bv) {
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Vcur = ggml_add(ctx0, Vcur, model.layers[il].bv);
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cb(Vcur, "Vcur", il);
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}
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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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@ -4007,7 +4051,7 @@ struct llm_build_context {
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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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model.layers[il].wo, model.layers[il].bo,
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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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