| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184 | #include "ggml/ggml.h"#include "common.h"#include "common-ggml.h"#include <cassert>#include <cmath>#include <cstdio>#include <cstring>#include <fstream>#include <map>#include <string>#include <vector>#include <regex>// default hparams (GPT-2 117M)struct starcoder_hparams {    int32_t n_vocab = 49280;    int32_t n_ctx   = 2048;    int32_t n_embd  = 2048;    int32_t n_head  = 16;    int32_t n_layer = 24;    int32_t ftype   = 1;};// quantize a modelbool starcoder_model_quantize(const std::string & fname_inp, const std::string & fname_out, ggml_ftype ftype) {    gpt_vocab vocab;    printf("%s: loading model from '%s'\n", __func__, fname_inp.c_str());    auto finp = std::ifstream(fname_inp, std::ios::binary);    if (!finp) {        fprintf(stderr, "%s: failed to open '%s' for reading\n", __func__, fname_inp.c_str());        return false;    }    auto fout = std::ofstream(fname_out, std::ios::binary);    if (!fout) {        fprintf(stderr, "%s: failed to open '%s' for writing\n", __func__, fname_out.c_str());        return false;    }    // verify magic    {        uint32_t magic;        finp.read((char *) &magic, sizeof(magic));        if (magic != GGML_FILE_MAGIC) {            fprintf(stderr, "%s: invalid model file '%s' (bad magic)\n", __func__, fname_inp.c_str());            return false;        }        fout.write((char *) &magic, sizeof(magic));    }    starcoder_hparams hparams;    // load hparams    {        finp.read((char *) &hparams.n_vocab, sizeof(hparams.n_vocab));        finp.read((char *) &hparams.n_ctx,   sizeof(hparams.n_ctx));        finp.read((char *) &hparams.n_embd,  sizeof(hparams.n_embd));        finp.read((char *) &hparams.n_head,  sizeof(hparams.n_head));        finp.read((char *) &hparams.n_layer, sizeof(hparams.n_layer));        finp.read((char *) &hparams.ftype,   sizeof(hparams.ftype));        const int32_t qntvr_src =    hparams.ftype / GGML_QNT_VERSION_FACTOR;        const int32_t ftype_dst = GGML_QNT_VERSION * GGML_QNT_VERSION_FACTOR + ftype;        printf("%s: n_vocab     = %d\n", __func__, hparams.n_vocab);        printf("%s: n_ctx       = %d\n", __func__, hparams.n_ctx);        printf("%s: n_embd      = %d\n", __func__, hparams.n_embd);        printf("%s: n_head      = %d\n", __func__, hparams.n_head);        printf("%s: n_layer     = %d\n", __func__, hparams.n_layer);        printf("%s: ftype (src) = %d\n", __func__, hparams.ftype);        printf("%s: qntvr (src) = %d\n", __func__, qntvr_src);        printf("%s: ftype (dst) = %d\n", __func__, ftype_dst);        printf("%s: qntvr (dst) = %d\n", __func__, GGML_QNT_VERSION);        fout.write((char *) &hparams.n_vocab, sizeof(hparams.n_vocab));        fout.write((char *) &hparams.n_ctx,   sizeof(hparams.n_ctx));        fout.write((char *) &hparams.n_embd,  sizeof(hparams.n_embd));        fout.write((char *) &hparams.n_head,  sizeof(hparams.n_head));        fout.write((char *) &hparams.n_layer, sizeof(hparams.n_layer));        fout.write((char *) &ftype_dst,       sizeof(ftype_dst));    }    // load vocab    {        int32_t n_vocab = 0;        finp.read ((char *) &n_vocab, sizeof(n_vocab));        fout.write((char *) &n_vocab, sizeof(n_vocab));        if (n_vocab != hparams.n_vocab) {            fprintf(stderr, "%s: invalid model file '%s' (bad vocab size %d != %d)\n",                    __func__, fname_inp.c_str(), n_vocab, hparams.n_vocab);            return false;        }        std::string word;        for (int i = 0; i < n_vocab; i++) {            uint32_t len;            finp.read ((char *) &len, sizeof(len));            fout.write((char *) &len, sizeof(len));            word.resize(len);            finp.read ((char *) word.data(), len);            fout.write((char *) word.data(), len);            vocab.token_to_id[word] = i;            vocab.id_to_token[i] = word;        }    }    // regexes of tensor names to be quantized    const std::vector<std::string> to_quant = {        "model/wte",        "model/lm_head",        "model/h.*/attn/c_attn/w",        "model/h.*/attn/c_proj/w",        "model/h.*/mlp/c_fc/w",        "model/h.*/mlp/c_proj/w",    };    if (!ggml_common_quantize_0(finp, fout, ftype, to_quant, {})) {        fprintf(stderr, "%s: failed to quantize model '%s'\n", __func__, fname_inp.c_str());        return false;    }    finp.close();    fout.close();    return true;}// usage://  ./gpt-2-quantize models/gpt-2-117M/ggml-model.bin models/gpt-2-117M/ggml-model-quant.bin type//int main(int argc, char ** argv) {    if (argc != 4) {        fprintf(stderr, "usage: %s model-f32.bin model-quant.bin type\n", argv[0]);        ggml_print_ftypes(stderr);        return 1;    }    // needed to initialize f16 tables    {        struct ggml_init_params params = { 0, NULL, false };        struct ggml_context * ctx = ggml_init(params);        ggml_free(ctx);    }    const std::string fname_inp = argv[1];    const std::string fname_out = argv[2];    const ggml_ftype ftype = ggml_parse_ftype(argv[3]);    const int64_t t_main_start_us = ggml_time_us();    int64_t t_quantize_us = 0;    // load the model    {        const int64_t t_start_us = ggml_time_us();        if (!starcoder_model_quantize(fname_inp, fname_out, ggml_ftype(ftype))) {            fprintf(stderr, "%s: failed to quantize model from '%s'\n", __func__, fname_inp.c_str());            return 1;        }        t_quantize_us = ggml_time_us() - t_start_us;    }    // report timing    {        const int64_t t_main_end_us = ggml_time_us();        printf("\n");        printf("%s: quantize time = %8.2f ms\n", __func__, t_quantize_us/1000.0f);        printf("%s:    total time = %8.2f ms\n", __func__, (t_main_end_us - t_main_start_us)/1000.0f);    }    return 0;}
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