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| /* | |
| * IMPORTANT: The mtmd module does NOT accept pull requests that are fully or predominantly AI-generated. | |
| * We encourage human contributors to ensure the quality and reliability of the codebase. | |
| */ | |
| struct clip_graph_siglip : clip_graph { | |
| clip_graph_siglip(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_gemma4v : clip_graph { | |
| clip_graph_gemma4v(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| ggml_tensor * build_mm(ggml_tensor * w, ggml_tensor * x) const override; | |
| bool support_batch() const override { return true; } | |
| }; | |
| struct clip_graph_gemma4uv : clip_graph { | |
| clip_graph_gemma4uv(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_pixtral : clip_graph { | |
| clip_graph_pixtral(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_qwen2vl : clip_graph { | |
| clip_graph_qwen2vl(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| ggml_tensor * build_inp_with_temporal_merge(); | |
| }; | |
| struct clip_graph_qwen3vl : clip_graph_qwen2vl { | |
| clip_graph_qwen3vl(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph_qwen2vl(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_minimax_m3 : clip_graph { | |
| clip_graph_minimax_m3(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| ggml_tensor * apply_rope(ggml_tensor * x, ggml_tensor * pos_h, ggml_tensor * pos_w); | |
| }; | |
| struct clip_graph_mimovl : clip_graph { | |
| clip_graph_mimovl(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| // Force F32 mat-mul accumulation to avoid F16 overflow in the FFN down-proj | |
| // when the mmproj is stored in F16 (the source weights are BF16; downcasting | |
| // to F16 reduces dynamic range below the SwiGLU output magnitude on the last few layers). | |
| ggml_tensor * build_mm(ggml_tensor * w, ggml_tensor * x) const override; | |
| }; | |
| struct clip_graph_step3vl : clip_graph { | |
| clip_graph_step3vl(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_youtuvl : clip_graph { | |
| clip_graph_youtuvl(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_yasa2 : clip_graph { | |
| clip_graph_yasa2(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| ggml_tensor * layer_norm_channels(ggml_tensor * inp, ggml_tensor * w, ggml_tensor * b, float eps = 1e-6f); | |
| ggml_tensor * convnext_grn(ggml_tensor * inp, ggml_tensor * w, ggml_tensor * b); | |
| }; | |
| struct clip_graph_minicpmv : clip_graph { | |
| clip_graph_minicpmv(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_minicpmv4_6 : clip_graph { | |
| clip_graph_minicpmv4_6(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_internvl : clip_graph { | |
| clip_graph_internvl(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| bool support_batch() const override { return true; } | |
| }; | |
| struct clip_graph_nemotron_v2_vl : clip_graph { | |
| clip_graph_nemotron_v2_vl(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_llama4 : clip_graph { | |
| clip_graph_llama4(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_kimivl : clip_graph { | |
| clip_graph_kimivl(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_paddleocr : clip_graph { | |
| clip_graph_paddleocr(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_dotsocr : clip_graph { | |
| clip_graph_dotsocr(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_cogvlm : clip_graph { | |
| clip_graph_cogvlm(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_llava : clip_graph { | |
| clip_graph_llava(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_whisper_enc : clip_graph { | |
| clip_graph_whisper_enc(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_deepseekocr : clip_graph { | |
| clip_graph_deepseekocr(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| ggml_tensor * build_sam(ggml_tensor * inp); // build the SAM model | |
| bool support_batch() const override { return true; } | |
| }; | |
| struct clip_graph_deepseekocr2 : clip_graph_deepseekocr { | |
| clip_graph_deepseekocr2(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph_deepseekocr(ctx, img) {} | |
| ggml_cgraph * build() override; // reuses build_sam() from base | |
| bool support_batch() const override { return true; } | |
| }; | |
| struct clip_graph_conformer : clip_graph { | |
| clip_graph_conformer(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_granite_speech : clip_graph { | |
| clip_graph_granite_speech(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_gemma4a : clip_graph { | |
| clip_graph_gemma4a(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| ggml_tensor * build_mm(ggml_tensor * w, ggml_tensor * x) const override; | |
| }; | |
| struct clip_graph_gemma4ua : clip_graph { | |
| clip_graph_gemma4ua(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_glm4v : clip_graph { | |
| clip_graph_glm4v(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_hunyuanvl : clip_graph { | |
| clip_graph_hunyuanvl(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_mobilenetv5 : clip_graph { | |
| clip_graph_mobilenetv5(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| ggml_tensor * rms_norm_2d( | |
| ggml_tensor * inp, | |
| ggml_tensor * weight, | |
| float eps = 1e-6f); | |
| ggml_tensor* pad_same_2d( | |
| ggml_tensor* inp, | |
| int kernel_h, | |
| int kernel_w, | |
| int stride_h, | |
| int stride_w, | |
| int dilation_h = 1, | |
| int dilation_w = 1); | |
| ggml_tensor * build_edge_residual( | |
| ggml_tensor * inp, | |
| const mobilenetv5_block & block, | |
| int stride); | |
| ggml_tensor * build_inverted_residual( | |
| ggml_tensor * inp, | |
| const mobilenetv5_block & block, | |
| int stride); | |
| ggml_tensor * build_mobilenet_attn( | |
| ggml_tensor * inp, | |
| const mobilenetv5_block & block); | |
| }; | |
| struct clip_graph_qwen3a : clip_graph { | |
| clip_graph_qwen3a(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_mimo_audio : clip_graph { | |
| clip_graph_mimo_audio(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_qwen3tts_spkenc : clip_graph { | |
| clip_graph_qwen3tts_spkenc(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| ggml_tensor * conv1d_same(ggml_tensor * x, ggml_tensor * w, ggml_tensor * b, int dilation) const; | |
| ggml_tensor * res2net(ggml_tensor * x, const clip_layer & layer, int dilation, int scale) const; | |
| ggml_tensor * se_block(ggml_tensor * x, const clip_layer & layer) const; | |
| ggml_tensor * se_res2net_block(ggml_tensor * x, const clip_layer & layer, int dilation, int scale) const; | |
| ggml_tensor * attentive_stats_pool(ggml_tensor * x) const; | |
| }; | |
| struct clip_graph_qwen3tts_gen : clip_graph { | |
| clip_graph_qwen3tts_gen(clip_ctx * ctx, const clip_image_f32 & img, clip_gen_process_type gen_process, int top_k, float top_p) | |
| : clip_graph(ctx, img), gen_process(gen_process), top_k(top_k), top_p(top_p) {} | |
| ggml_cgraph * build() override; | |
| // which sub-graph build() constructs, fixed at graph-build time | |
| clip_gen_process_type gen_process; | |
| // sampling params, fixed at graph-build time (GEN_CODE only) | |
| int top_k; | |
| float top_p; | |
| // | |
| // code_gen: backbone hidden state + sampled code0 -> 16 RVQ codes | |
| // MTP-style code predictor, one token per codebook | |
| // | |
| struct code_gen : clip_graph { | |
| code_gen(const clip_graph & parent, int top_k, float top_p) | |
| : clip_graph(parent), top_k(top_k), top_p(top_p) {} | |
| ggml_cgraph * build() override { GGML_ABORT("call prefill()/step() instead"); } | |
| int top_k; | |
| float top_p; | |
| ggml_tensor * cache_set(ggml_tensor * cache, int row_idx, ggml_tensor * value) const; | |
| ggml_tensor * do_sampling(ggml_tensor * logits, ggml_tensor * inp_rand) const; | |
| ggml_tensor * const_i32(ggml_tensor * anchor, float value) const; | |
| ggml_tensor * causal_mask_row(int64_t n_kv_pad, int pos) const; | |
| ggml_tensor * project_in(ggml_tensor * cur) const; | |
| ggml_tensor * layer_forward( | |
| ggml_tensor * cur, | |
| const clip_layer & layer, | |
| ggml_tensor * inp_pos, | |
| ggml_tensor * kq_mask, | |
| ggml_tensor *& k_cache_layer, | |
| ggml_tensor *& v_cache_layer, | |
| int64_t n_kv_pad, | |
| int pos, | |
| int il) const; | |
| void prefill( | |
| std::vector<ggml_tensor *> & k_cache, | |
| std::vector<ggml_tensor *> & v_cache, | |
| ggml_tensor *& out_code_cache, | |
| ggml_tensor * h_state, | |
| ggml_tensor * code0_embd, | |
| ggml_tensor * inp_rand) const; | |
| ggml_tensor * step( | |
| std::vector<ggml_tensor *> & k_cache, | |
| std::vector<ggml_tensor *> & v_cache, | |
| ggml_tensor * out_code_cache, | |
| ggml_tensor * inp_rand, | |
| int step_idx) const; | |
| }; | |
| // | |
| // code2wav: RVQ codes -> raw PCM (quantizer + pre_conv + pre_transformer + upsample + DAC). | |
| // | |
| struct code2wav : clip_graph { | |
| code2wav(const clip_graph & parent) : clip_graph(parent) {} | |
| ggml_cgraph * build() override { GGML_ABORT("call decode() instead"); } | |
| // state_in: previous call's persisted state, by slot name (see list_c2w_state_slots()) | |
| std::map<std::string, ggml_tensor *> state_in; | |
| // state_out: this call's state to persist, added to the graph outputs by build() | |
| mutable std::vector<std::pair<std::string, ggml_tensor *>> state_out; | |
| // stateful conv ops: read/update their state via state_in/state_out[state_name] | |
| ggml_tensor * causal_conv1d(ggml_tensor * x, ggml_tensor * w, ggml_tensor * b, int dilation, const std::string & state_name) const; | |
| ggml_tensor * causal_conv1d_dw(ggml_tensor * x, ggml_tensor * w, ggml_tensor * b, const std::string & state_name) const; | |
| ggml_tensor * causal_conv_transpose1d(ggml_tensor * x, ggml_tensor * w, ggml_tensor * b, int stride, const std::string & state_name) const; | |
| ggml_tensor * snake(ggml_tensor * x, ggml_tensor * alpha, ggml_tensor * beta) const; | |
| ggml_tensor * quant_decode(ggml_tensor * inp_codes) const; | |
| ggml_tensor * tfm_layer_forward(ggml_tensor * cur, const clip_layer & layer, int il) const; | |
| ggml_tensor * convnext_block(ggml_tensor * x, const clip_code2wav::upsample_block & blk, const std::string & state_prefix) const; | |
| ggml_tensor * dac_res_unit(ggml_tensor * x, const clip_code2wav::dac_res & res, int dilation, const std::string & state_name) const; | |
| // inp_codes [1, n_codes] I32 -> this frame's audio samples [n_samples] F32, clamped to [-1, 1] | |
| ggml_tensor * decode(ggml_tensor * inp_codes) const; | |
| }; | |
| }; | |
| // one persisted state buffer used by code2wav, see qwen3tts-gen.cpp | |
| struct c2w_state_slot { | |
| std::string name; | |
| int64_t ne0; | |
| int64_t ne1; | |
| }; | |
| std::vector<c2w_state_slot> list_c2w_state_slots(const clip_hparams & hparams, const clip_model & model); | |
| struct clip_graph_kimik25 : clip_graph { | |
| clip_graph_kimik25(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| ggml_tensor * resize_position_embeddings_3d(uint32_t interpolation_mode); | |
| }; | |
| struct clip_graph_parakeet : clip_graph { | |
| clip_graph_parakeet(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_exaone4_5 : clip_graph { | |
| clip_graph_exaone4_5(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |
| struct clip_graph_granite4_vision : clip_graph { | |
| clip_graph_granite4_vision(clip_ctx * ctx, const clip_image_f32 & img) | |
| : clip_graph(ctx, img), | |
| add_newline(img.add_newline) {} | |
| ggml_cgraph * build() override; | |
| private: | |
| // The graph is per-tile since only batch-size 1 is supported in clip. As | |
| // such, this value is set at construct time based on the tile that will be | |
| // encoded, then used during build to determine how to handle newlines. | |
| const bool add_newline; | |
| ggml_tensor * gather(ggml_tensor * src, const std::string & name, int idx_len); | |
| ggml_tensor * interp_down(ggml_tensor * src, int side, int new_side); | |
| ggml_tensor * build_block(const qf_block & blk, ggml_tensor * h, int bid, | |
| int spatial_offset, int image_side, int window_side, | |
| int query_side, float qformer_eps); | |
| ggml_tensor * build_newline_row(ggml_context * ctx0); | |
| ggml_tensor * append_rowwise_newlines(ggml_context * ctx0, ggml_tensor * tile_output); | |
| }; | |
| struct clip_graph_muse_glimmer : clip_graph { | |
| clip_graph_muse_glimmer(clip_ctx * ctx, const clip_image_f32 & img) : clip_graph(ctx, img) {} | |
| ggml_cgraph * build() override; | |
| }; | |