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	* llama : reuse compute graphs ggml-ci * llama-bench : add graph reuse parameter ggml-ci * cont : remove the parameter and the sched resets ggml-ci * graph : rename update() to can_reuse() ggml-ci * params : remove is_same() ggml-ci * graph : set res->params in llm_graph_context constructor ggml-ci * graph : avoid set_max_nodes in llm_graph_result ggml-ci * kv-cache : reuse llama_context's graph result instance ggml-ci * context : reset the previous graph result upon memory updates ggml-ci * batch : llama_ubatch now carries its data instead of pointing to balloc ggml-ci * merge : fix build ggml-ci * graph : fix can_reuse() checks when flash-attention is disabled * graph : move llm_graph_result impl in source file + debug env ggml-ci
		
			
				
	
	
		
			161 lines
		
	
	
		
			5.8 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			161 lines
		
	
	
		
			5.8 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
#pragma once
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#include "llama.h"
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#include "llama-cparams.h"
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#include <array>
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#include <vector>
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#include <set>
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#include <bitset>
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#include <memory>
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#include <unordered_map>
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// keep this struct lightweight
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struct llama_ubatch {
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    bool equal_seqs() const {
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        return b_equal_seqs != 0;
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    }
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    uint32_t b_equal_seqs; // note: this is a boolean, but we use an int32_t for alignment
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                           //       otherwise address sanitizer complains
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    // TODO: whole_seqs for embeddings?
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    uint32_t n_tokens;     // total tokens (n_seq_tokens * n_seqs)
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    uint32_t n_seq_tokens; // tokens per sequence set
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    uint32_t n_seqs;       // sequence sets in the ubatch
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    uint32_t n_seqs_unq;   // unique sequence ids in the ubatch
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    // seq_id_unq: unique sequence ids in the ubatch
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    // seq_idx:    indices of the unique sequence ids in the ubatch in [0, n_seqs_unq)
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    //             used for extracting sequence pooled embeddings
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    //                          // size               | idx | val
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    llama_token  *  token;      // [n_tokens]         | i   | id, token
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    float        *  embd;       // [n_embd, n_tokens] | i   | embd
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    llama_pos    *  pos;        // [n_tokens]         | i   | pos
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    int32_t      *  n_seq_id;   // [n_tokens]         | i   | -
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    llama_seq_id ** seq_id;     // [n_tokens]         | s   | s0, s1, seq_id
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    llama_seq_id *  seq_id_unq; // [n_seqs_unq]       | s   | seq_id
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    int32_t      *  seq_idx;    // [LLAMA_MAX_SEQ]    | -   | seq_idx
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    int8_t       *  output;     // [n_tokens]         | i   | -
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    struct data_t {
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        std::vector<llama_token>    token;
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        std::vector<float>          embd;
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        std::vector<llama_pos>      pos;
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        std::vector<int32_t>        n_seq_id;
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        std::vector<llama_seq_id *> seq_id;
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        std::vector<llama_seq_id>   seq_id_unq;
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        std::vector<int32_t>        seq_idx;
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        std::vector<int8_t>         output;
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    };
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    // the llama_ubatch pointers above point to this data if set. otherwise - points to non-owning data
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    std::shared_ptr<data_t> data;
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};
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// a helper for sanitizing, fulfilling and splitting a batch
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class llama_batch_allocr {
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public:
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    llama_batch_allocr(uint32_t n_pos_per_embd);
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    // sanitize and auto-gen missing data in the input batch
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    // memory is optional. if provided will be used to check for sequence continuity and to determine the positions
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    bool init(
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            const llama_batch & batch_inp,
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            const llama_vocab & vocab,
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            const llama_memory_i * memory,
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            uint32_t n_embd,
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            uint32_t n_seq_max,
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            bool output_all);
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    const llama_batch & get_batch() const;
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    uint32_t get_n_tokens()  const;
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    uint32_t get_n_outputs() const;
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    uint32_t get_n_used()    const;
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    // the array of output indices in the order they were encountered during the ubatch splitting
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    std::vector<int32_t> & get_out_ids();
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    // min/max positions of each sequence in the current ubatch
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    llama_pos seq_pos_min(llama_seq_id seq_id) const;
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    llama_pos seq_pos_max(llama_seq_id seq_id) const;
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    // call once before splitting the batch to reset the internal state
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    void split_reset();
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    // simple split, unknown number of sequence sets of unequal lengths
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    llama_ubatch split_simple(uint32_t n_ubatch);
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    // make ubatches of equal-length sequences sets
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    // if sequential == true, the tokens in the ubatch will have increasing sequential sequence ids
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    llama_ubatch split_equal(uint32_t n_ubatch, bool sequential);
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    // sequence-set-wise split - each ubatch contains a single sequence-set
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    llama_ubatch split_seq(uint32_t n_ubatch);
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    // a helper method for creating a well-defined ubatch of tokens
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    // TODO: support embeddings if needed in the future
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    llama_ubatch ubatch_reserve(uint32_t n_seq_tokens, uint32_t n_seqs);
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private:
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    void clear();
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    // create the next ubatch based on the provided batch indices (idxs) and the number of sequence sets (n_seqs)
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    // return llama_ubatch.n_tokens == 0 if the entire batch was consumed
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    llama_ubatch ubatch_add(const std::vector<int32_t> & idxs, uint32_t n_seqs, bool equal_seqs);
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    // for debugging, start with LLAMA_BATCH_DEBUG=2
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    void ubatch_print(const llama_ubatch & ubatch, int debug);
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    llama_batch batch;
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    // only for debugging purposes
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    const llama_vocab * vocab;
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    // TODO: this is more of a temporary solution until we have a better way to handle multiple positions per token/embd
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    //       ref: https://github.com/ggml-org/llama.cpp/issues/13694#issuecomment-2983871762
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    const uint32_t n_pos_per_embd;
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    uint32_t n_embd;
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    uint32_t n_seq_max;
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    uint32_t n_outputs;
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    std::array<llama_seq_id, 1> seq_id_0 = { 0 }; // default sequence id
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    std::vector<llama_pos>      pos;
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    std::vector<int32_t>        n_seq_id;
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    std::vector<llama_seq_id *> seq_id;
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    std::vector<llama_seq_id>   seq_id_unq;
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    std::vector<int32_t>        seq_idx;
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    std::vector<int8_t>         output;
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    using pos_set_t = std::set<llama_pos>;
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    using seq_cpl_t = std::vector<bool>;
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    // helper flag to quickly determine if there are any coupled sequences in the batch
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    bool has_cpl = false;
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    std::vector<pos_set_t> seq_pos; // seq_pos[s]: the set of positions in sequence s
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    std::vector<seq_cpl_t> seq_cpl; // seq_cpl[s0][s1]: if sequence s0 is coupled to sequence s1
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    using idx_vec_t = std::vector<int32_t>;
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    using seq_set_t = std::bitset<LLAMA_MAX_SEQ>;
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    std::vector<seq_set_t> seq_set; // seq_set[i]: the sequence set of token i
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    std::unordered_map<seq_set_t, idx_vec_t> seq_set_map; // the indices at which the sequence set appears
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    // batch indices of the output
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    std::vector<int32_t> out_ids;
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    uint32_t n_used;
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    // used[i] indicates if token i has already been used in a previous ubatch
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    std::vector<bool> used;
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    int debug;
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};
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