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https://github.com/ggerganov/llama.cpp.git
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fbf1ddec69
Signed-off-by: Jared Van Bortel <jared@nomic.ai> Co-authored-by: niansa <anton-sa@web.de> Co-authored-by: Adam Treat <treat.adam@gmail.com> Co-authored-by: Aaron Miller <apage43@ninjawhale.com> Co-authored-by: ToKiNoBug <tokinobug@163.com> Co-authored-by: Georgi Gerganov <ggerganov@gmail.com> Co-authored-by: slaren <slarengh@gmail.com>
74 lines
2.2 KiB
Plaintext
74 lines
2.2 KiB
Plaintext
#version 450
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#include "common.comp"
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#include "op_mul_mv_q_n_pre.comp"
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#define SIZE_OF_D 2
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#define N_DST 4 // each SIMD group works on 4 rows
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#define N_SIMDGROUP 2 // number of SIMD groups in a thread group
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#define N_SIMDWIDTH 32 // assuming SIMD group size is 32
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#define NB_Q8_0 8
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void main() {
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// NB: hack to make compatible with AMD GPUs that have a subgroup size of 64
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if (gl_SubgroupInvocationID > 31)
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return;
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const int nr = N_DST;
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const int nsg = N_SIMDGROUP;
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const int nw = N_SIMDWIDTH;
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const int nb = pcs.ne00/QK8_0;
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const uint r0 = gl_WorkGroupID.x;
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const uint r1 = gl_WorkGroupID.y;
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const uint im = gl_WorkGroupID.z;
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const uint first_row = (r0 * nsg + gl_SubgroupID) * nr;
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const uint i12 = im%pcs.ne12;
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const uint i13 = im/pcs.ne12;
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const uint offset0 = first_row * nb + (i12/pcs.r2)*(nb*pcs.ne01) + (i13/pcs.r3)*(nb*pcs.ne01*pcs.ne02);
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const uint x = offset0*sizeof_block_q8_0 + pcs.inAOff; // Based from inA
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const uint y = r1*pcs.ne10 + im*pcs.ne00*pcs.ne1 + pcs.inBOff; // based from inB
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float yl[NB_Q8_0];
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float sumf[N_DST]={0.f, 0.f, 0.f, 0.f};
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const uint ix = gl_SubgroupInvocationID.x/4;
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const uint il = gl_SubgroupInvocationID.x%4;
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uint yb = y + ix * QK8_0 + NB_Q8_0*il;
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// each thread in a SIMD group deals with NB_Q8_0 quants at a time
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for (uint ib = ix; ib < nb; ib += nw/4) {
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for (int i = 0; i < NB_Q8_0; ++i) {
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yl[i] = inB[yb + i];
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}
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for (int row = 0; row < nr; row++) {
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const uint block_offset = (ib+row*nb) * sizeof_block_q8_0;
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float sumq = 0.f;
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for (int iq = 0; iq < NB_Q8_0; ++iq) {
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const int8_t qs_iq = int8_t(inA[x + block_offset + SIZE_OF_D + NB_Q8_0*il + iq]);
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sumq += qs_iq * yl[iq];
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}
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const float16_t d = u8BufToFloat16(inA, x + block_offset);
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sumf[row] += sumq*d;
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}
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yb += NB_Q8_0 * nw;
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}
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for (int row = 0; row < nr; ++row) {
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const float tot = subgroupAdd(sumf[row]);
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if (subgroupElect() && first_row + row < pcs.ne01) {
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out_[r1*pcs.ne0 + im*pcs.ne0*pcs.ne1 + first_row + row] = tot;
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}
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}
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}
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