Brunobkr/llama.cpp_AlgMor24_github
ΩFFFΣLLIa • llama.cpp • AlgMor24 ██████╗ ███████╗███████╗███████╗██╗ ██╗ ██╗ █████╗ ██╔═══██╗██╔════╝██╔════╝██╔════╝██║ ██║ ██║██╔══██╗ ██║ ██║█████╗ █████╗ █████╗ ██║ ██║ ██║███████║ ██║ ██║██╔══╝ ██╔══╝ ██╔══╝ ██║ ██║ ██║██╔══██║ ╚██████╔╝██║ ██║ ███████╗███████╗███████╗██║██║ ██║ ╚═════╝ ╚═╝ ╚═╝ ╚══════╝╚══════╝╚══════╝╚═╝╚═╝ ╚═╝ High-Performance LLM / VLM Inference & Autonomous Agentic Ecosystem… See the full description on the dataset page: https://huggingface.co/datasets/Brunobkr/llama.cpp_AlgMor24_github.
03.1k
1#version 4502 3#include "dequant_head.glsl"4 5layout(local_size_x = 64, local_size_y = 1, local_size_z = 1) in;6 7layout (binding = 0) readonly buffer A {A_TYPE data_a[];};8layout (binding = 1) writeonly buffer D {D_TYPE data_b[];};9 10void main() {11 [[unroll]] for (uint wgy = 0; wgy < 256; wgy++) {12 const uint ib = gl_WorkGroupID.x * 256 + wgy;13 if (ib >= p.nel / QUANT_K) {14 return;15 }16 17 const uint tid = gl_LocalInvocationID.x;18 const uint il = tid / 16;19 const uint ir = tid % 16;20 const uint is = 2 * il;21 22 const FLOAT_TYPE dall = FLOAT_TYPE(data_a[ib].dm.x);23 const FLOAT_TYPE dmin = FLOAT_TYPE(data_a[ib].dm.y);24 25 const uint y_idx = ib * QUANT_K + 64 * il + 2 * ir;26 const uint qs_idx = 32*il + 2 * ir;27 const uint qh_idx = 2 * ir;28 29 uint scidx0 = (is < 4) ? is : (is + 4);30 uint scidx1 = (is < 4) ? is : (is - 4);31 uint scidxmask1 = (is < 4) ? 0x30 : 0xC0;32 uint scidxshift1 = (is < 4) ? 0 : 2;33 uint mbidx0 = is + 4;34 uint mbidx1 = (is < 4) ? is + 4 : is;35 uint mbidxmask0 = (is < 4) ? 0xF : 0xF0;36 uint mbidxshift0 = (is < 4) ? 0 : 4;37 uint mbidxmask1 = (is < 4) ? 0x30 : 0xC0;38 uint mbidxshift1 = (is < 4) ? 0 : 2;39 40 uint8_t sc = uint8_t((data_a[ib].scales[scidx0] & 0xF) | ((data_a[ib].scales[scidx1] & scidxmask1) >> scidxshift1));41 uint8_t mbyte = uint8_t((data_a[ib].scales[mbidx0] & mbidxmask0) >> mbidxshift0 | ((data_a[ib].scales[mbidx1] & mbidxmask1) >> mbidxshift1));42 43 const FLOAT_TYPE d1 = dall * sc;44 const FLOAT_TYPE m1 = dmin * mbyte;45 46 scidx0 = (is < 4) ? is + 1 : (is + 5);47 scidx1 = (is < 4) ? is + 1 : (is - 3);48 scidxmask1 = (is < 4) ? 0x30 : 0xC0;49 scidxshift1 = (is < 4) ? 0 : 2;50 mbidx0 = is + 5;51 mbidx1 = (is < 4) ? is + 5 : is + 1;52 mbidxmask0 = (is < 4) ? 0xF : 0xF0;53 mbidxshift0 = (is < 4) ? 0 : 4;54 mbidxmask1 = (is < 4) ? 0x30 : 0xC0;55 mbidxshift1 = (is < 4) ? 0 : 2;56 57 sc = uint8_t((data_a[ib].scales[scidx0] & 0xF) | ((data_a[ib].scales[scidx1] & scidxmask1) >> scidxshift1));58 mbyte = uint8_t((data_a[ib].scales[mbidx0] & mbidxmask0) >> mbidxshift0 | ((data_a[ib].scales[mbidx1] & mbidxmask1) >> mbidxshift1));59 60 const FLOAT_TYPE d2 = dall * sc;61 const FLOAT_TYPE m2 = dmin * mbyte;62 63 const uint8_t hm1 = uint8_t(1 << (2 * il ));64 const uint8_t hm2 = uint8_t(1 << (2 * il + 1));65 data_b[y_idx ] = D_TYPE(d1 * FLOAT_TYPE((data_a[ib].qs[qs_idx ] & 0xF) + (((data_a[ib].qh[qh_idx ] & hm1) != 0) ? 16 : 0)) - m1);66 data_b[y_idx + 1] = D_TYPE(d1 * FLOAT_TYPE((data_a[ib].qs[qs_idx + 1] & 0xF) + (((data_a[ib].qh[qh_idx + 1] & hm1) != 0) ? 16 : 0)) - m1);67 data_b[y_idx + 32] = D_TYPE(d2 * FLOAT_TYPE((data_a[ib].qs[qs_idx ] >> 4) + (((data_a[ib].qh[qh_idx ] & hm2) != 0) ? 16 : 0)) - m2);68 data_b[y_idx + 33] = D_TYPE(d2 * FLOAT_TYPE((data_a[ib].qs[qs_idx + 1] >> 4) + (((data_a[ib].qh[qh_idx + 1] & hm2) != 0) ? 16 : 0)) - m2);69 }70}71 