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#ifdef cl_khr_fp16 |
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#pragma OPENCL EXTENSION cl_khr_fp16 : enable |
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#elif defined(cl_amd_fp16) |
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#pragma OPENCL EXTENSION cl_amd_fp16 : enable |
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#else |
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#error "Half precision floating point not supportedby OpenCL implementation on your device." |
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#endif |
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#ifdef cl_khr_subgroups |
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#pragma OPENCL EXTENSION cl_khr_subgroups : enable |
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#elif defined(cl_intel_subgroups) |
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#pragma OPENCL EXTENSION cl_intel_subgroups : enable |
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#else |
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#error "Subgroup not supported on your device." |
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#endif |
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#ifdef cl_intel_required_subgroup_size |
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#pragma OPENCL EXTENSION cl_intel_required_subgroup_size : enable |
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#define INTEL_GPU 1 |
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#define REQD_SUBGROUP_SIZE_16 __attribute__((intel_reqd_sub_group_size(16))) |
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#define REQD_SUBGROUP_SIZE_32 __attribute__((intel_reqd_sub_group_size(32))) |
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#elif defined(cl_qcom_reqd_sub_group_size) |
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#pragma OPENCL EXTENSION cl_qcom_reqd_sub_group_size : enable |
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#define ADRENO_GPU 1 |
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#define REQD_SUBGROUP_SIZE_64 __attribute__((qcom_reqd_sub_group_size("half"))) |
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#define REQD_SUBGROUP_SIZE_128 __attribute__((qcom_reqd_sub_group_size("full"))) |
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#else |
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#error "Selecting subgroup size is not supported on your device." |
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#endif |
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#define QK4_0 32 |
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#define QR4_0 2 |
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#define QK4_1 32 |
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#define QR4_1 2 |
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#define QK5_0 32 |
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#define QR5_0 2 |
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#define QK5_1 32 |
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#define QR5_1 2 |
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#define QK8_0 32 |
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#define QR8_0 1 |
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#define QK_K 256 |
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#define K_QUANTS_PER_ITERATION 2 |
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typedef char int8_t; |
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typedef uchar uint8_t; |
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typedef short int16_t; |
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typedef ushort uint16_t; |
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typedef int int32_t; |
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typedef uint uint32_t; |
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struct block_q4_0 |
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{ |
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half d; |
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uint8_t qs[QK4_0 / 2]; |
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}; |
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typedef struct { |
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uint8_t ql[QK_K/2]; |
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uint8_t qh[QK_K/4]; |
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int8_t scales[QK_K/16]; |
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half d; |
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} block_q6_K; |
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inline float mm_block_q_4_0_dot_y_flat( |
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global uchar * x, |
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global half * dh, |
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float sumy, |
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float16 yl, |
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int il |
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) { |
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float d = *dh; |
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global ushort * qs = ((global ushort *)x + il/2); |
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float acc = 0.f; |
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acc += yl.s0 * (qs[0] & 0x000F); |
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acc += yl.s1 * (qs[0] & 0x0F00); |
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acc += yl.s8 * (qs[0] & 0x00F0); |
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acc += yl.s9 * (qs[0] & 0xF000); |
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acc += yl.s2 * (qs[1] & 0x000F); |
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acc += yl.s3 * (qs[1] & 0x0F00); |
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acc += yl.sa * (qs[1] & 0x00F0); |
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acc += yl.sb * (qs[1] & 0xF000); |
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acc += yl.s4 * (qs[2] & 0x000F); |
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acc += yl.s5 * (qs[2] & 0x0F00); |
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acc += yl.sc * (qs[2] & 0x00F0); |
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acc += yl.sd * (qs[2] & 0xF000); |
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acc += yl.s6 * (qs[3] & 0x000F); |
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acc += yl.s7 * (qs[3] & 0x0F00); |
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acc += yl.se * (qs[3] & 0x00F0); |
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acc += yl.sf * (qs[3] & 0xF000); |
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return d * (sumy * -8.f + acc); |
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} |
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#undef N_DST |
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#undef N_SIMDGROUP |
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#undef N_SIMDWIDTH |
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#ifdef INTEL_GPU |
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#define N_DST 8 |
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#define N_SIMDGROUP 1 |
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#define N_SIMDWIDTH 16 |
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#elif defined (ADRENO_GPU) |
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#define N_DST 8 |
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#define N_SIMDGROUP 1 |
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#define N_SIMDWIDTH 64 |
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#endif |
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inline void mul_mat_q_n_f32_1d_8x_flat( |
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global uchar * src0_q, |
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global half * src0_d, |
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global float * src1, |
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global float * dst, |
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int ne00, |
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int ne01, |
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int ne02, |
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int ne10, |
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int ne12, |
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int ne0, |
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int ne1, |
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int r2, |
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int r3 |
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) { |
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const int nb = ne00/QK4_0; |
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int r0 = get_group_id(0); |
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int r1 = get_group_id(1); |
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int im = get_group_id(2); |
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int first_row = (r0 * N_SIMDGROUP + get_sub_group_id()) * N_DST; |
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int i12 = im%ne12; |
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int i13 = im/ne12; |
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ulong offset0_d = first_row * nb + (i12/r2)*(nb*ne01) + (i13/r3)*(nb*ne01*ne02); |
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ulong offset0_q = (first_row * nb + (i12/r2)*(nb*ne01) + (i13/r3)*(nb*ne01*ne02)) * QK4_0/2; |
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global uchar * x = (global uchar *) src0_q + offset0_q; |
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global half * d = (global half *) src0_d + offset0_d; |
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global float * y = (global float *) src1 + r1*ne10 + im*ne00*ne1; |
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float16 yl; |
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float8 sumf = (float8)(0.f, 0.f, 0.f, 0.f, 0.f, 0.f, 0.f, 0.f); |
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int ix = get_sub_group_local_id()/2; |
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int il = 8*(get_sub_group_local_id()%2); |
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global float * yb = y + ix*QK4_0 + il; |
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for (int ib = ix; ib < nb; ib += N_SIMDWIDTH/2) { |
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float sumy = 0.f; |
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sumy += yb[0]; |
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sumy += yb[1]; |
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sumy += yb[2]; |
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sumy += yb[3]; |
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sumy += yb[4]; |
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sumy += yb[5]; |
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sumy += yb[6]; |
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sumy += yb[7]; |
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sumy += yb[16]; |
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sumy += yb[17]; |
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sumy += yb[18]; |
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sumy += yb[19]; |
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sumy += yb[20]; |
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sumy += yb[21]; |
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sumy += yb[22]; |
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sumy += yb[23]; |
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yl.s0 = yb[0]; |
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yl.s1 = yb[1]/256.f; |
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yl.s2 = yb[2]; |
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yl.s3 = yb[3]/256.f; |
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yl.s4 = yb[4]; |
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yl.s5 = yb[5]/256.f; |
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yl.s6 = yb[6]; |
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yl.s7 = yb[7]/256.f; |
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yl.s8 = yb[16]/16.f; |
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yl.s9 = yb[17]/4096.f; |
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yl.sa = yb[18]/16.f; |
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yl.sb = yb[19]/4096.f; |
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yl.sc = yb[20]/16.f; |
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yl.sd = yb[21]/4096.f; |
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yl.se = yb[22]/16.f; |
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yl.sf = yb[23]/4096.f; |
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sumf.s0 += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 0*nb*QK4_0/2, d + ib + 0*nb, sumy, yl, il); |
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sumf.s1 += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 1*nb*QK4_0/2, d + ib + 1*nb, sumy, yl, il); |
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sumf.s2 += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 2*nb*QK4_0/2, d + ib + 2*nb, sumy, yl, il); |
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sumf.s3 += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 3*nb*QK4_0/2, d + ib + 3*nb, sumy, yl, il); |
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sumf.s4 += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 4*nb*QK4_0/2, d + ib + 4*nb, sumy, yl, il); |
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sumf.s5 += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 5*nb*QK4_0/2, d + ib + 5*nb, sumy, yl, il); |
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sumf.s6 += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 6*nb*QK4_0/2, d + ib + 6*nb, sumy, yl, il); |
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sumf.s7 += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 7*nb*QK4_0/2, d + ib + 7*nb, sumy, yl, il); |
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yb += QK4_0 * (N_SIMDWIDTH/2); |
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} |
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|
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float8 tot = (float8)( |
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sub_group_reduce_add(sumf.s0), sub_group_reduce_add(sumf.s1), |
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sub_group_reduce_add(sumf.s2), sub_group_reduce_add(sumf.s3), |
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sub_group_reduce_add(sumf.s4), sub_group_reduce_add(sumf.s5), |
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sub_group_reduce_add(sumf.s6), sub_group_reduce_add(sumf.s7) |
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); |
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if (get_sub_group_local_id() == 0) { |
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if (first_row + 0 < ne01) { |
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dst[r1*ne0 + im*ne0*ne1 + first_row + 0] = tot.s0; |
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} |
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if (first_row + 1 < ne01) { |
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dst[r1*ne0 + im*ne0*ne1 + first_row + 1] = tot.s1; |
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} |
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if (first_row + 2 < ne01) { |
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dst[r1*ne0 + im*ne0*ne1 + first_row + 2] = tot.s2; |
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} |
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if (first_row + 3 < ne01) { |
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dst[r1*ne0 + im*ne0*ne1 + first_row + 3] = tot.s3; |
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} |
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if (first_row + 4 < ne01) { |
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dst[r1*ne0 + im*ne0*ne1 + first_row + 4] = tot.s4; |
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} |
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if (first_row + 5 < ne01) { |
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dst[r1*ne0 + im*ne0*ne1 + first_row + 5] = tot.s5; |
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} |
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if (first_row + 6 < ne01) { |
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dst[r1*ne0 + im*ne0*ne1 + first_row + 6] = tot.s6; |
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} |
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if (first_row + 7 < ne01) { |
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dst[r1*ne0 + im*ne0*ne1 + first_row + 7] = tot.s7; |
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} |
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} |
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} |
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#ifdef INTEL_GPU |
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REQD_SUBGROUP_SIZE_16 |
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#elif defined (ADRENO_GPU) |
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REQD_SUBGROUP_SIZE_64 |
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#endif |
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kernel void kernel_mul_mat_q4_0_f32_1d_8x_flat( |
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global uchar * src0_q, |
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global half * src0_d, |
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global float * src1, |
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ulong offset1, |
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global float * dst, |
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ulong offsetd, |
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int ne00, |
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int ne01, |
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int ne02, |
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int ne10, |
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int ne12, |
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int ne0, |
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int ne1, |
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int r2, |
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int r3 |
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) { |
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src1 = (global float*)((global char*)src1 + offset1); |
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dst = (global float*)((global char*)dst + offsetd); |
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mul_mat_q_n_f32_1d_8x_flat(src0_q, src0_d, src1, dst, ne00, ne01, ne02, ne10, ne12, ne0, ne1, r2, r3); |
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} |
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#undef N_DST |
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#undef N_SIMDGROUP |
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#undef N_SIMDWIDTH |
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|
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#ifdef INTEL_GPU |
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#define N_DST 16 |
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#define N_SIMDGROUP 1 |
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#define N_SIMDWIDTH 16 |
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#elif defined (ADRENO_GPU) |
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#define N_DST 16 |
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#define N_SIMDGROUP 1 |
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#define N_SIMDWIDTH 64 |
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#endif |
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inline void mul_mat_q_n_f32_1d_16x_flat( |
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global uchar * src0_q, |
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global half * src0_d, |
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global float * src1, |
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global float * dst, |
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int ne00, |
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int ne01, |
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int ne02, |
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int ne10, |
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int ne12, |
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int ne0, |
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int ne1, |
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int r2, |
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int r3 |
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) { |
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const int nb = ne00/QK4_0; |
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int r0 = get_group_id(0); |
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int r1 = get_group_id(1); |
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int im = get_group_id(2); |
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int first_row = (r0 * N_SIMDGROUP + get_sub_group_id()) * N_DST; |
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int i12 = im%ne12; |
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int i13 = im/ne12; |
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ulong offset0_d = first_row * nb + (i12/r2)*(nb*ne01) + (i13/r3)*(nb*ne01*ne02); |
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ulong offset0_q = (first_row * nb + (i12/r2)*(nb*ne01) + (i13/r3)*(nb*ne01*ne02)) * QK4_0/2; |
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global uchar * x = (global uchar *) src0_q + offset0_q; |
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global half * d = (global half *) src0_d + offset0_d; |
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global float * y = (global float *) src1 + r1*ne10 + im*ne00*ne1; |
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float16 yl; |
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float16 sumf = (float16)(0.f, 0.f, 0.f, 0.f, 0.f, 0.f, 0.f, 0.f, |
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0.f, 0.f, 0.f, 0.f, 0.f, 0.f, 0.f, 0.f); |
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int ix = get_sub_group_local_id()/2; |
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int il = 8*(get_sub_group_local_id()%2); |
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global float * yb = y + ix*QK4_0 + il; |
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for (int ib = ix; ib < nb; ib += N_SIMDWIDTH/2) { |
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float sumy = 0.f; |
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sumy += yb[0]; |
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sumy += yb[1]; |
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sumy += yb[2]; |
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sumy += yb[3]; |
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sumy += yb[4]; |
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sumy += yb[5]; |
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sumy += yb[6]; |
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sumy += yb[7]; |
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sumy += yb[16]; |
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sumy += yb[17]; |
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sumy += yb[18]; |
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sumy += yb[19]; |
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sumy += yb[20]; |
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sumy += yb[21]; |
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sumy += yb[22]; |
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sumy += yb[23]; |
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yl.s0 = yb[0]; |
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yl.s1 = yb[1]/256.f; |
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yl.s2 = yb[2]; |
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yl.s3 = yb[3]/256.f; |
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yl.s4 = yb[4]; |
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yl.s5 = yb[5]/256.f; |
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yl.s6 = yb[6]; |
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yl.s7 = yb[7]/256.f; |
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yl.s8 = yb[16]/16.f; |
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yl.s9 = yb[17]/4096.f; |
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yl.sa = yb[18]/16.f; |
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yl.sb = yb[19]/4096.f; |
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yl.sc = yb[20]/16.f; |
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yl.sd = yb[21]/4096.f; |
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yl.se = yb[22]/16.f; |
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yl.sf = yb[23]/4096.f; |
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sumf.s0 += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 0*nb*QK4_0/2, d + ib + 0*nb, sumy, yl, il); |
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sumf.s1 += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 1*nb*QK4_0/2, d + ib + 1*nb, sumy, yl, il); |
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sumf.s2 += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 2*nb*QK4_0/2, d + ib + 2*nb, sumy, yl, il); |
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sumf.s3 += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 3*nb*QK4_0/2, d + ib + 3*nb, sumy, yl, il); |
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|
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sumf.s4 += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 4*nb*QK4_0/2, d + ib + 4*nb, sumy, yl, il); |
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sumf.s5 += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 5*nb*QK4_0/2, d + ib + 5*nb, sumy, yl, il); |
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sumf.s6 += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 6*nb*QK4_0/2, d + ib + 6*nb, sumy, yl, il); |
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sumf.s7 += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 7*nb*QK4_0/2, d + ib + 7*nb, sumy, yl, il); |
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sumf.s8 += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 8*nb*QK4_0/2, d + ib + 8*nb, sumy, yl, il); |
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sumf.s9 += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 9*nb*QK4_0/2, d + ib + 9*nb, sumy, yl, il); |
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sumf.sa += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 10*nb*QK4_0/2, d + ib + 10*nb, sumy, yl, il); |
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sumf.sb += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 11*nb*QK4_0/2, d + ib + 11*nb, sumy, yl, il); |
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|
sumf.sc += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 12*nb*QK4_0/2, d + ib + 12*nb, sumy, yl, il); |
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sumf.sd += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 13*nb*QK4_0/2, d + ib + 13*nb, sumy, yl, il); |
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sumf.se += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 14*nb*QK4_0/2, d + ib + 14*nb, sumy, yl, il); |
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sumf.sf += mm_block_q_4_0_dot_y_flat(x + ib*QK4_0/2 + 15*nb*QK4_0/2, d + ib + 15*nb, sumy, yl, il); |
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|
|
yb += QK4_0 * (N_SIMDWIDTH/2); |
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} |
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|
|
float16 tot = (float16)( |
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sub_group_reduce_add(sumf.s0), sub_group_reduce_add(sumf.s1), |
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sub_group_reduce_add(sumf.s2), sub_group_reduce_add(sumf.s3), |
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sub_group_reduce_add(sumf.s4), sub_group_reduce_add(sumf.s5), |
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sub_group_reduce_add(sumf.s6), sub_group_reduce_add(sumf.s7), |
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|
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sub_group_reduce_add(sumf.s8), sub_group_reduce_add(sumf.s9), |
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sub_group_reduce_add(sumf.sa), sub_group_reduce_add(sumf.sb), |
|
sub_group_reduce_add(sumf.sc), sub_group_reduce_add(sumf.sd), |
|
sub_group_reduce_add(sumf.se), sub_group_reduce_add(sumf.sf) |
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); |
|
|
|
if (get_sub_group_local_id() == 0) { |
|
if (first_row + 0 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 0] = tot.s0; |
|
} |
|
if (first_row + 1 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 1] = tot.s1; |
|
} |
|
if (first_row + 2 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 2] = tot.s2; |
|
} |
|
if (first_row + 3 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 3] = tot.s3; |
|
} |
|
|
|
if (first_row + 4 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 4] = tot.s4; |
|
} |
|
if (first_row + 5 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 5] = tot.s5; |
|
} |
|
if (first_row + 6 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 6] = tot.s6; |
|
} |
|
if (first_row + 7 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 7] = tot.s7; |
|
} |
|
|
|
if (first_row + 8 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 8] = tot.s8; |
|
} |
|
if (first_row + 9 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 9] = tot.s9; |
|
} |
|
if (first_row + 10 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 10] = tot.sa; |
|
} |
|
if (first_row + 11 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 11] = tot.sb; |
|
} |
|
|
|
if (first_row + 12 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 12] = tot.sc; |
|
} |
|
if (first_row + 13 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 13] = tot.sd; |
|
} |
|
if (first_row + 14 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 14] = tot.se; |
|
} |
|
if (first_row + 15 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 15] = tot.sf; |
|
} |
|
} |
|
} |
|
|
|
#ifdef INTEL_GPU |
|
REQD_SUBGROUP_SIZE_16 |
|
#elif defined (ADRENO_GPU) |
|
REQD_SUBGROUP_SIZE_64 |
|
#endif |
|
kernel void kernel_mul_mat_q4_0_f32_1d_16x_flat( |
|
global uchar * src0_q, |
|
global half * src0_d, |
|
global float * src1, |
|
ulong offset1, |
|
global float * dst, |
|
ulong offsetd, |
|
int ne00, |
|
int ne01, |
|
int ne02, |
|
int ne10, |
|
int ne12, |
|
int ne0, |
|
int ne1, |
|
int r2, |
|
int r3 |
|
) { |
|
src1 = (global float*)((global char*)src1 + offset1); |
|
dst = (global float*)((global char*)dst + offsetd); |
|
|
|
mul_mat_q_n_f32_1d_16x_flat(src0_q, src0_d, src1, dst, ne00, ne01, ne02, ne10, ne12, ne0, ne1, r2, r3); |
|
} |
|
|
|
|
|
|
|
|
|
inline float block_q_4_0_dot_y_flat_v2( |
|
half x, |
|
half d, |
|
float sumy, |
|
float4 yl |
|
) { |
|
uchar2 q = as_uchar2(x); |
|
float acc = 0.0f; |
|
|
|
acc += (q.s0 & 0x0F) * yl.s0; |
|
acc += (q.s1 & 0x0F) * yl.s1; |
|
|
|
acc += (q.s0 & 0xF0) * yl.s2; |
|
acc += (q.s1 & 0xF0) * yl.s3; |
|
|
|
return d * (sumy * -8.f + acc);; |
|
} |
|
|
|
inline float block_q_4_0_dot_y_flat_v4( |
|
float x, |
|
half d, |
|
float sumy, |
|
float8 yl |
|
) { |
|
uchar4 q = as_uchar4(x); |
|
float acc = 0.0f; |
|
|
|
acc += (q.s0 & 0x0F) * yl.s0; |
|
acc += (q.s1 & 0x0F) * yl.s1; |
|
acc += (q.s2 & 0x0F) * yl.s2; |
|
acc += (q.s3 & 0x0F) * yl.s3; |
|
|
|
acc += (q.s0 & 0xF0) * yl.s4; |
|
acc += (q.s1 & 0xF0) * yl.s5; |
|
acc += (q.s2 & 0xF0) * yl.s6; |
|
acc += (q.s3 & 0xF0) * yl.s7; |
|
|
|
return d * (sumy * -8.f + acc);; |
|
} |
|
|
|
inline float block_q_4_0_dot_y_flat_v8( |
|
float2 x, |
|
half d, |
|
float sumy, |
|
float16 yl |
|
) { |
|
uchar8 q = as_uchar8(x); |
|
float acc = 0.0f; |
|
|
|
acc += (q.s0 & 0x0F) * yl.s0; |
|
acc += (q.s1 & 0x0F) * yl.s1; |
|
acc += (q.s2 & 0x0F) * yl.s2; |
|
acc += (q.s3 & 0x0F) * yl.s3; |
|
acc += (q.s4 & 0x0F) * yl.s4; |
|
acc += (q.s5 & 0x0F) * yl.s5; |
|
acc += (q.s6 & 0x0F) * yl.s6; |
|
acc += (q.s7 & 0x0F) * yl.s7; |
|
|
|
acc += (q.s0 & 0xF0) * yl.s8; |
|
acc += (q.s1 & 0xF0) * yl.s9; |
|
acc += (q.s2 & 0xF0) * yl.sa; |
|
acc += (q.s3 & 0xF0) * yl.sb; |
|
acc += (q.s4 & 0xF0) * yl.sc; |
|
acc += (q.s5 & 0xF0) * yl.sd; |
|
acc += (q.s6 & 0xF0) * yl.se; |
|
acc += (q.s7 & 0xF0) * yl.sf; |
|
|
|
return d * (sumy * -8.f + acc);; |
|
} |
|
|
|
#undef N_DST |
|
#undef N_SIMDGROUP |
|
#undef N_SIMDWIDTH |
|
|
|
#ifdef INTEL_GPU |
|
#define THREADS_PER_BLK 4 |
|
#define N_DST 4 |
|
#define N_SIMDGROUP 1 |
|
#define N_SIMDWIDTH 16 |
|
#elif defined (ADRENO_GPU) |
|
#define THREADS_PER_BLK 4 |
|
#define N_DST 4 |
|
#define N_SIMDGROUP 1 |
|
#define N_SIMDWIDTH 64 |
|
#endif |
|
|
|
#if THREADS_PER_BLK == 2 |
|
# define ACT_TY float16 |
|
# define Q_BLK_LD_TY float2 |
|
# define block_q_4_0_dot_y_flat block_q_4_0_dot_y_flat_v8 |
|
#elif THREADS_PER_BLK == 4 |
|
# define ACT_TY float8 |
|
# define Q_BLK_LD_TY float |
|
# define block_q_4_0_dot_y_flat block_q_4_0_dot_y_flat_v4 |
|
#elif THREADS_PER_BLK == 8 |
|
# define ACT_TY float4 |
|
# define Q_BLK_LD_TY half |
|
# define block_q_4_0_dot_y_flat block_q_4_0_dot_y_flat_v2 |
|
#endif |
|
|
|
#define BTYES_PER_THREAD_IN_BLK (QK4_0/2/THREADS_PER_BLK) |
|
|
|
#if N_DST == 2 |
|
# define SUM_TY float2 |
|
#elif N_DST == 4 |
|
# define SUM_TY float4 |
|
#elif N_DST == 8 |
|
# define SUM_TY float8 |
|
#elif N_DST == 16 |
|
# define SUM_TY float16 |
|
#endif |
|
|
|
#ifdef INTEL_GPU |
|
REQD_SUBGROUP_SIZE_16 |
|
#elif defined (ADRENO_GPU) |
|
REQD_SUBGROUP_SIZE_64 |
|
#endif |
|
kernel void kernel_mul_mat_q4_0_f32_flat_v0( |
|
global uchar * src0_q, |
|
global half * src0_d, |
|
global float * src1, |
|
ulong offset1, |
|
global float * dst, |
|
ulong offsetd, |
|
int ne00, |
|
int ne01, |
|
int ne02, |
|
int ne10, |
|
int ne12, |
|
int ne0, |
|
int ne1, |
|
int r2, |
|
int r3 |
|
) { |
|
src1 = (global float*)((global char*)src1 + offset1); |
|
dst = (global float*)((global char*)dst + offsetd); |
|
|
|
const int nb = ne00/QK4_0; |
|
|
|
int r0 = get_group_id(0); |
|
int r1 = get_group_id(1); |
|
int im = get_group_id(2); |
|
|
|
int first_row = (r0 * N_SIMDGROUP + get_sub_group_id()) * N_DST; |
|
|
|
int i12 = im%ne12; |
|
int i13 = im/ne12; |
|
|
|
|
|
ulong offset0_d = first_row * nb + (i12/r2)*(nb*ne01) + (i13/r3)*(nb*ne01*ne02); |
|
|
|
ulong offset0_q = (first_row * nb + (i12/r2)*(nb*ne01) + (i13/r3)*(nb*ne01*ne02)) * QK4_0/2; |
|
|
|
global uchar * x = (global uchar *) src0_q + offset0_q; |
|
global half * d = (global half *) src0_d + offset0_d; |
|
global float * y = (global float *) src1 + r1*ne10 + im*ne00*ne1; |
|
|
|
int ix = get_sub_group_local_id()/THREADS_PER_BLK; |
|
int il = get_sub_group_local_id()%THREADS_PER_BLK; |
|
|
|
global float * yb = y + ix*QK4_0 + BTYES_PER_THREAD_IN_BLK*il; |
|
|
|
|
|
ACT_TY yl = 0.f; |
|
|
|
|
|
Q_BLK_LD_TY q_blk_0 = 0, q_blk_1 = 0; |
|
#if N_DST == 4 || N_DST == 8 || N_DST == 16 |
|
Q_BLK_LD_TY q_blk_2 = 0, q_blk_3 = 0; |
|
#endif |
|
#if N_DST == 8 || N_DST == 16 |
|
Q_BLK_LD_TY q_blk_4 = 0, q_blk_5 = 0, q_blk_6 = 0, q_blk_7 = 0; |
|
#endif |
|
|
|
|
|
SUM_TY sumf = 0.f; |
|
|
|
for (int ib = ix; ib < nb; ib += N_SIMDWIDTH/THREADS_PER_BLK) { |
|
float sumy = 0.f; |
|
|
|
q_blk_0 = *(global Q_BLK_LD_TY*)(x + ib*QK4_0/2 + BTYES_PER_THREAD_IN_BLK*il + 0*nb*QK4_0/2); |
|
q_blk_1 = *(global Q_BLK_LD_TY*)(x + ib*QK4_0/2 + BTYES_PER_THREAD_IN_BLK*il + 1*nb*QK4_0/2); |
|
#if N_DST == 4 || N_DST == 8 || N_DST == 16 |
|
q_blk_2 = *(global Q_BLK_LD_TY*)(x + ib*QK4_0/2 + BTYES_PER_THREAD_IN_BLK*il + 2*nb*QK4_0/2); |
|
q_blk_3 = *(global Q_BLK_LD_TY*)(x + ib*QK4_0/2 + BTYES_PER_THREAD_IN_BLK*il + 3*nb*QK4_0/2); |
|
#endif |
|
#if N_DST == 8 || N_DST == 16 |
|
q_blk_4 = (*(global Q_BLK_LD_TY*)(x + ib*QK4_0/2 + BTYES_PER_THREAD_IN_BLK*il + 4*nb*QK4_0/2)); |
|
q_blk_5 = (*(global Q_BLK_LD_TY*)(x + ib*QK4_0/2 + BTYES_PER_THREAD_IN_BLK*il + 5*nb*QK4_0/2)); |
|
q_blk_6 = (*(global Q_BLK_LD_TY*)(x + ib*QK4_0/2 + BTYES_PER_THREAD_IN_BLK*il + 6*nb*QK4_0/2)); |
|
q_blk_7 = (*(global Q_BLK_LD_TY*)(x + ib*QK4_0/2 + BTYES_PER_THREAD_IN_BLK*il + 7*nb*QK4_0/2)); |
|
#endif |
|
|
|
|
|
#if THREADS_PER_BLK == 2 |
|
yl.s01234567 = *(global float8 *)(yb); |
|
yl.s89abcdef = *(global float8 *)(yb + 16); |
|
|
|
sumy += yl.s0; |
|
sumy += yl.s1; |
|
sumy += yl.s2; |
|
sumy += yl.s3; |
|
sumy += yl.s4; |
|
sumy += yl.s5; |
|
sumy += yl.s6; |
|
sumy += yl.s7; |
|
sumy += yl.s8; yl.s8 /= 16.f; |
|
sumy += yl.s9; yl.s9 /= 16.f; |
|
sumy += yl.sa; yl.sa /= 16.f; |
|
sumy += yl.sb; yl.sb /= 16.f; |
|
sumy += yl.sc; yl.sc /= 16.f; |
|
sumy += yl.sd; yl.sd /= 16.f; |
|
sumy += yl.se; yl.se /= 16.f; |
|
sumy += yl.sf; yl.sf /= 16.f; |
|
#elif THREADS_PER_BLK == 4 |
|
yl.s0123 = *(global float4 *)(yb); |
|
yl.s4567 = *(global float4 *)(yb + 16); |
|
|
|
sumy += yl.s0; |
|
sumy += yl.s1; |
|
sumy += yl.s2; |
|
sumy += yl.s3; |
|
sumy += yl.s4; yl.s4 /= 16.f; |
|
sumy += yl.s5; yl.s5 /= 16.f; |
|
sumy += yl.s6; yl.s6 /= 16.f; |
|
sumy += yl.s7; yl.s7 /= 16.f; |
|
#elif THREADS_PER_BLK == 8 |
|
yl.s01 = *(global float2 *)(yb); |
|
yl.s23 = *(global float2 *)(yb + 16); |
|
|
|
sumy += yl.s0; |
|
sumy += yl.s1; |
|
sumy += yl.s2; yl.s2 /= 16.f; |
|
sumy += yl.s3; yl.s3 /= 16.f; |
|
#endif |
|
|
|
sumf.s0 += block_q_4_0_dot_y_flat(q_blk_0, *(d + ib + 0*nb), sumy, yl); |
|
sumf.s1 += block_q_4_0_dot_y_flat(q_blk_1, *(d + ib + 1*nb), sumy, yl); |
|
#if N_DST == 4 || N_DST == 8 || N_DST == 16 |
|
sumf.s2 += block_q_4_0_dot_y_flat(q_blk_2, *(d + ib + 2*nb), sumy, yl); |
|
sumf.s3 += block_q_4_0_dot_y_flat(q_blk_3, *(d + ib + 3*nb), sumy, yl); |
|
#endif |
|
#if N_DST == 8 || N_DST == 16 |
|
sumf.s4 += block_q_4_0_dot_y_flat(q_blk_4, *(d + ib + 4*nb), sumy, yl); |
|
sumf.s5 += block_q_4_0_dot_y_flat(q_blk_5, *(d + ib + 5*nb), sumy, yl); |
|
sumf.s6 += block_q_4_0_dot_y_flat(q_blk_6, *(d + ib + 6*nb), sumy, yl); |
|
sumf.s7 += block_q_4_0_dot_y_flat(q_blk_7, *(d + ib + 7*nb), sumy, yl); |
|
#endif |
|
|
|
yb += QK4_0 * (N_SIMDWIDTH/THREADS_PER_BLK); |
|
} |
|
|
|
SUM_TY tot = (SUM_TY)( |
|
sub_group_reduce_add(sumf.s0), sub_group_reduce_add(sumf.s1) |
|
#if N_DST == 4 || N_DST == 8 || N_DST == 16 |
|
, sub_group_reduce_add(sumf.s2), sub_group_reduce_add(sumf.s3) |
|
#endif |
|
#if N_DST == 8 || N_DST == 16 |
|
, sub_group_reduce_add(sumf.s4), sub_group_reduce_add(sumf.s5) |
|
, sub_group_reduce_add(sumf.s6), sub_group_reduce_add(sumf.s7) |
|
#endif |
|
); |
|
|
|
if (get_sub_group_local_id() == 0) { |
|
if (first_row + 0 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 0] = tot.s0; |
|
} |
|
if (first_row + 1 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 1] = tot.s1; |
|
} |
|
#if N_DST == 4 || N_DST == 8 || N_DST == 16 |
|
if (first_row + 2 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 2] = tot.s2; |
|
} |
|
if (first_row + 3 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 3] = tot.s3; |
|
} |
|
#endif |
|
#if N_DST == 8 || N_DST == 16 |
|
if (first_row + 4 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 4] = tot.s4; |
|
} |
|
if (first_row + 5 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 5] = tot.s5; |
|
} |
|
if (first_row + 6 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 6] = tot.s6; |
|
} |
|
if (first_row + 7 < ne01) { |
|
dst[r1*ne0 + im*ne0*ne1 + first_row + 7] = tot.s7; |
|
} |
|
#endif |
|
} |
|
} |
|
|
|
|
|
|
|
|
|
#if defined(cl_qcom_subgroup_shuffle) |
|
#pragma OPENCL EXTENSION cl_qcom_subgroup_shuffle : enable |
|
float qcom_sub_group_reduce_add(float sum) { |
|
sum += qcom_sub_group_shuffle_down(sum, 32, CLK_SUB_GROUP_SHUFFLE_WIDTH_WAVE_SIZE_QCOM, 0.f); |
|
sum += qcom_sub_group_shuffle_down(sum, 16, CLK_SUB_GROUP_SHUFFLE_WIDTH_WAVE_SIZE_QCOM, 0.f); |
|
sum += qcom_sub_group_shuffle_down(sum, 8, CLK_SUB_GROUP_SHUFFLE_WIDTH_WAVE_SIZE_QCOM, 0.f); |
|
sum += qcom_sub_group_shuffle_down(sum, 4, CLK_SUB_GROUP_SHUFFLE_WIDTH_WAVE_SIZE_QCOM, 0.f); |
|
sum += qcom_sub_group_shuffle_down(sum, 2, CLK_SUB_GROUP_SHUFFLE_WIDTH_WAVE_SIZE_QCOM, 0.f); |
|
sum += qcom_sub_group_shuffle_down(sum, 1, CLK_SUB_GROUP_SHUFFLE_WIDTH_WAVE_SIZE_QCOM, 0.f); |
|
return sum; |
|
} |
|
#define sub_group_reduce_add qcom_sub_group_reduce_add |
|
#else |
|
#define sub_group_reduce_add sub_group_reduce_add |
|
#endif |
|
|
|
#undef THREADS_PER_BLK |
|
#undef N_DST |
|
#undef N_SIMDGROUP |
|
#undef N_SIMDWIDTH |
|
|
|
#ifdef INTEL_GPU |
|
#define THREADS_PER_BLK 4 |
|
#define N_DST 4 |
|
#define N_SIMDGROUP 1 |
|
#define N_SIMDWIDTH 16 |
|
#elif defined (ADRENO_GPU) |
|
#define THREADS_PER_BLK 4 |
|
#define N_DST 4 |
|
#define N_SIMDGROUP 1 |
|
#define N_SIMDWIDTH 64 |
|
#endif |
|
|
|
#if THREADS_PER_BLK == 2 |
|
# define ACT_TY float16 |
|
# define Q_BLK_LD_TY float2 |
|
# define EXTRACT_BLK_DATA(tmp, part) *((float2*)&tmp + part) |
|
# define block_q_4_0_dot_y_flat block_q_4_0_dot_y_flat_v8 |
|
#elif THREADS_PER_BLK == 4 |
|
# define ACT_TY float8 |
|
# define Q_BLK_LD_TY float |
|
# define EXTRACT_BLK_DATA(tmp, part) *((float*)&tmp + part) |
|
# define block_q_4_0_dot_y_flat block_q_4_0_dot_y_flat_v4 |
|
#elif THREADS_PER_BLK == 8 |
|
# define ACT_TY float4 |
|
# define Q_BLK_LD_TY half |
|
# define EXTRACT_BLK_DATA(tmp, part) *((half*)&tmp + part) |
|
# define block_q_4_0_dot_y_flat block_q_4_0_dot_y_flat_v2 |
|
#endif |
|
|
|
#define BTYES_PER_THREAD_IN_BLK (QK4_0/2/THREADS_PER_BLK) |
|
|
|
#if N_DST == 2 |
|
# define SUM_TY float2 |
|
#elif N_DST == 4 |
|
# define SUM_TY float4 |
|
#elif N_DST == 8 |
|
# define SUM_TY float8 |
|
#elif N_DST == 16 |
|
# define SUM_TY float16 |
|
#endif |
|
|
|
#ifdef INTEL_GPU |
|
REQD_SUBGROUP_SIZE_16 |
|
#elif defined (ADRENO_GPU) |
|
REQD_SUBGROUP_SIZE_64 |
|
#endif |
|
kernel void kernel_mul_mat_q4_0_f32_flat_img_v0( |
|
read_only image1d_buffer_t src0_q, |
|
read_only image1d_buffer_t src0_d, |
|
global float * src1, |
|
ulong offset1, |
|
global float * dst, |
|
ulong offsetd, |
|
int ne00, |
|
int ne01, |
|
int ne02, |
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int ne10, |
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int ne12, |
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int ne0, |
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int ne1, |
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int r2, |
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int r3 |
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) { |
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src1 = (global float*)((global char*)src1 + offset1); |
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dst = (global float*)((global char*)dst + offsetd); |
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const int nb = ne00/QK4_0; |
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int r0 = get_group_id(0); |
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int r1 = get_group_id(1); |
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int im = get_group_id(2); |
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int first_row = (r0 * N_SIMDGROUP + get_sub_group_id()) * N_DST; |
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int i12 = im%ne12; |
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int i13 = im/ne12; |
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ulong offset0_d = first_row * nb + (i12/r2)*(nb*ne01) + (i13/r3)*(nb*ne01*ne02); |
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ulong offset0_q = first_row * nb + (i12/r2)*(nb*ne01) + (i13/r3)*(nb*ne01*ne02); |
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global float * y = (global float *) src1 + r1*ne10 + im*ne00*ne1; |
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int ix = get_sub_group_local_id()/THREADS_PER_BLK; |
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int il = get_sub_group_local_id()%THREADS_PER_BLK; |
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global float * yb = y + ix*QK4_0 + BTYES_PER_THREAD_IN_BLK*il; |
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ACT_TY yl = 0.f; |
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Q_BLK_LD_TY q_blk_0 = 0, q_blk_1 = 0; |
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#if N_DST == 4 || N_DST == 8 || N_DST == 16 |
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Q_BLK_LD_TY q_blk_2 = 0, q_blk_3 = 0; |
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#endif |
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#if N_DST == 8 || N_DST == 16 |
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Q_BLK_LD_TY q_blk_4 = 0, q_blk_5 = 0, q_blk_6 = 0, q_blk_7 = 0; |
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#endif |
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SUM_TY sumf = 0.f; |
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for (int ib = ix; ib < nb; ib += N_SIMDWIDTH/THREADS_PER_BLK) { |
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float sumy = 0.f;; |
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float4 tmp; |
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tmp = read_imagef(src0_q, offset0_q + ib + 0*nb); |
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q_blk_0 = EXTRACT_BLK_DATA(tmp, il); |
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tmp = read_imagef(src0_q, offset0_q + ib + 1*nb); |
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q_blk_1 = EXTRACT_BLK_DATA(tmp, il); |
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#if N_DST == 4 || N_DST == 8 || N_DST == 16 |
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tmp = read_imagef(src0_q, offset0_q + ib + 2*nb); |
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q_blk_2 = EXTRACT_BLK_DATA(tmp, il); |
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tmp = read_imagef(src0_q, offset0_q + ib + 3*nb); |
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q_blk_3 = EXTRACT_BLK_DATA(tmp, il); |
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#endif |
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#if N_DST == 8 || N_DST == 16 |
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tmp = read_imagef(src0_q, offset0_q + ib + 4*nb); |
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q_blk_4 = EXTRACT_BLK_DATA(tmp, il); |
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tmp = read_imagef(src0_q, offset0_q + ib + 5*nb); |
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q_blk_5 = EXTRACT_BLK_DATA(tmp, il); |
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tmp = read_imagef(src0_q, offset0_q + ib + 6*nb); |
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q_blk_6 = EXTRACT_BLK_DATA(tmp, il); |
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tmp = read_imagef(src0_q, offset0_q + ib + 7*nb); |
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q_blk_7 = EXTRACT_BLK_DATA(tmp, il); |
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#endif |
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#if THREADS_PER_BLK == 2 |
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yl.s01234567 = *(global float8 *)(yb); |
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yl.s89abcdef = *(global float8 *)(yb + 16); |
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sumy += yl.s0; |
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sumy += yl.s1; |
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sumy += yl.s2; |
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sumy += yl.s3; |
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sumy += yl.s4; |
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sumy += yl.s5; |
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sumy += yl.s6; |
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sumy += yl.s7; |
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sumy += yl.s8; yl.s8 /= 16.f; |
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sumy += yl.s9; yl.s9 /= 16.f; |
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sumy += yl.sa; yl.sa /= 16.f; |
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sumy += yl.sb; yl.sb /= 16.f; |
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sumy += yl.sc; yl.sc /= 16.f; |
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sumy += yl.sd; yl.sd /= 16.f; |
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sumy += yl.se; yl.se /= 16.f; |
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sumy += yl.sf; yl.sf /= 16.f; |
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#elif THREADS_PER_BLK == 4 |
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yl.s0123 = *(global float4 *)(yb); |
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yl.s4567 = *(global float4 *)(yb + 16); |
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sumy += yl.s0; |
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sumy += yl.s1; |
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sumy += yl.s2; |
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sumy += yl.s3; |
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sumy += yl.s4; yl.s4 /= 16.f; |
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sumy += yl.s5; yl.s5 /= 16.f; |
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sumy += yl.s6; yl.s6 /= 16.f; |
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sumy += yl.s7; yl.s7 /= 16.f; |
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#elif THREADS_PER_BLK == 8 |
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yl.s01 = *(global float2 *)(yb); |
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yl.s23 = *(global float2 *)(yb + 16); |
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sumy += yl.s0; |
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sumy += yl.s1; |
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sumy += yl.s2; yl.s2 /= 16.f; |
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sumy += yl.s3; yl.s3 /= 16.f; |
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#endif |
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sumf.s0 += block_q_4_0_dot_y_flat(q_blk_0, read_imageh(src0_d, offset0_d + ib + 0*nb).s0, sumy, yl); |
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sumf.s1 += block_q_4_0_dot_y_flat(q_blk_1, read_imageh(src0_d, offset0_d + ib + 1*nb).s0, sumy, yl); |
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#if N_DST == 4 || N_DST == 8 || N_DST == 16 |
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sumf.s2 += block_q_4_0_dot_y_flat(q_blk_2, read_imageh(src0_d, offset0_d + ib + 2*nb).s0, sumy, yl); |
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sumf.s3 += block_q_4_0_dot_y_flat(q_blk_3, read_imageh(src0_d, offset0_d + ib + 3*nb).s0, sumy, yl); |
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#endif |
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#if N_DST == 8 || N_DST == 16 |
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sumf.s4 += block_q_4_0_dot_y_flat(q_blk_4, read_imageh(src0_d, offset0_d + ib + 4*nb).s0, sumy, yl); |
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sumf.s5 += block_q_4_0_dot_y_flat(q_blk_5, read_imageh(src0_d, offset0_d + ib + 5*nb).s0, sumy, yl); |
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sumf.s6 += block_q_4_0_dot_y_flat(q_blk_6, read_imageh(src0_d, offset0_d + ib + 6*nb).s0, sumy, yl); |
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sumf.s7 += block_q_4_0_dot_y_flat(q_blk_7, read_imageh(src0_d, offset0_d + ib + 7*nb).s0, sumy, yl); |
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#endif |
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yb += QK4_0 * (N_SIMDWIDTH/THREADS_PER_BLK); |
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} |
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SUM_TY tot = (SUM_TY)( |
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sub_group_reduce_add(sumf.s0), sub_group_reduce_add(sumf.s1) |
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#if N_DST == 4 || N_DST == 8 || N_DST == 16 |
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, sub_group_reduce_add(sumf.s2), sub_group_reduce_add(sumf.s3) |
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#endif |
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#if N_DST == 8 || N_DST == 16 |
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, sub_group_reduce_add(sumf.s4), sub_group_reduce_add(sumf.s5) |
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, sub_group_reduce_add(sumf.s6), sub_group_reduce_add(sumf.s7) |
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#endif |
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); |
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if (get_sub_group_local_id() == 0) { |
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if (first_row + 0 < ne01) { |
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dst[r1*ne0 + im*ne0*ne1 + first_row + 0] = tot.s0; |
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} |
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if (first_row + 1 < ne01) { |
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dst[r1*ne0 + im*ne0*ne1 + first_row + 1] = tot.s1; |
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} |
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#if N_DST == 4 || N_DST == 8 || N_DST == 16 |
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if (first_row + 2 < ne01) { |
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dst[r1*ne0 + im*ne0*ne1 + first_row + 2] = tot.s2; |
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} |
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if (first_row + 3 < ne01) { |
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dst[r1*ne0 + im*ne0*ne1 + first_row + 3] = tot.s3; |
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} |
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#endif |
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#if N_DST == 8 || N_DST == 16 |
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if (first_row + 4 < ne01) { |
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dst[r1*ne0 + im*ne0*ne1 + first_row + 4] = tot.s4; |
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} |
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if (first_row + 5 < ne01) { |
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dst[r1*ne0 + im*ne0*ne1 + first_row + 5] = tot.s5; |
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} |
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if (first_row + 6 < ne01) { |
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dst[r1*ne0 + im*ne0*ne1 + first_row + 6] = tot.s6; |
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} |
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if (first_row + 7 < ne01) { |
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dst[r1*ne0 + im*ne0*ne1 + first_row + 7] = tot.s7; |
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} |
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#endif |
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} |
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} |
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#undef N_DST |
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#undef N_SIMDGROUP |
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#undef N_SIMDWIDTH |
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#ifdef INTEL_GPU |
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#define N_DST 1 |
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#define N_SIMDGROUP 2 |
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#define N_SIMDWIDTH 16 |
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#elif defined (ADRENO_GPU) |
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#define N_DST 1 |
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#define N_SIMDGROUP 2 |
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#define N_SIMDWIDTH 64 |
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#endif |
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#define BLOCK_STRIDE (N_SIMDWIDTH/16) |
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#ifdef INTEL_GPU |
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REQD_SUBGROUP_SIZE_16 |
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#elif defined (ADRENO_GPU) |
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REQD_SUBGROUP_SIZE_64 |
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#endif |
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kernel void kernel_mul_mv_q6_K_f32( |
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global void * src0, |
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ulong offset0, |
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global float * src1, |
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ulong offset1, |
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global float * dst, |
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ulong offsetd, |
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int ne00, |
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int ne01, |
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int ne02, |
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int ne10, |
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int ne12, |
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int ne0, |
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int ne1, |
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int r2, |
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int r3 |
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) { |
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src0 = (global void*)((global char*)src0 + offset0); |
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src1 = (global float*)((global char*)src1 + offset1); |
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dst = (global float*)((global char*)dst + offsetd); |
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uchar kmask1 = 0x03; |
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uchar kmask2 = 0x0C; |
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uchar kmask3 = 0x30; |
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uchar kmask4 = 0xC0; |
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int nb = ne00/QK_K; |
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int r0 = get_group_id(0); |
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int r1 = get_group_id(1); |
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int im = get_group_id(2); |
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int row = N_SIMDGROUP * r0 + get_sub_group_id(); |
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int i12 = im%ne12; |
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int i13 = im/ne12; |
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ulong offset_src0 = (i12/r2)*(nb*ne01) + (i13/r3)*(nb*ne01*ne02); |
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global block_q6_K * x = (global block_q6_K *) src0 + row*nb + offset_src0; |
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global float * yy = (global float *) src1 + r1*ne10 + im*ne00*ne1; |
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float sumf = 0; |
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int tid = get_sub_group_local_id()/BLOCK_STRIDE; |
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int ix = get_sub_group_local_id()%BLOCK_STRIDE; |
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int ip = tid/8; |
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int il = tid%8; |
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int n = 4; |
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int l0 = n*il; |
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int is = 8*ip + l0/16; |
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int y_offset = 128*ip + l0; |
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int q_offset_l = 64*ip + l0; |
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int q_offset_h = 32*ip + l0; |
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for (int i = ix; i < nb; i += BLOCK_STRIDE) { |
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global uint8_t * q1 = x[i].ql + q_offset_l; |
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global uint8_t * q2 = q1 + QK_K/8; |
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global uint8_t * qh = x[i].qh + q_offset_h; |
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global int8_t * sc = x[i].scales + is; |
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global float * y = yy + i * QK_K + y_offset; |
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float dall = x[i].d; |
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float4 sums = {0.f, 0.f, 0.f, 0.f}; |
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sums.s0 += y[0+ 0] * ((float)((q1[0] & 0xF) | ((qh[0] & kmask1) << 4)) - 32.f); |
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sums.s1 += y[0+32] * ((float)((q2[0] & 0xF) | ((qh[0] & kmask2) << 2)) - 32.f); |
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sums.s2 += y[0+64] * ((float)((q1[0] >> 4) | ((qh[0] & kmask3) << 0)) - 32.f); |
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sums.s3 += y[0+96] * ((float)((q2[0] >> 4) | ((qh[0] & kmask4) >> 2)) - 32.f); |
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sums.s0 += y[1+ 0] * ((float)((q1[1] & 0xF) | ((qh[1] & kmask1) << 4)) - 32.f); |
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sums.s1 += y[1+32] * ((float)((q2[1] & 0xF) | ((qh[1] & kmask2) << 2)) - 32.f); |
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sums.s2 += y[1+64] * ((float)((q1[1] >> 4) | ((qh[1] & kmask3) << 0)) - 32.f); |
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sums.s3 += y[1+96] * ((float)((q2[1] >> 4) | ((qh[1] & kmask4) >> 2)) - 32.f); |
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sums.s0 += y[2+ 0] * ((float)((q1[2] & 0xF) | ((qh[2] & kmask1) << 4)) - 32.f); |
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sums.s1 += y[2+32] * ((float)((q2[2] & 0xF) | ((qh[2] & kmask2) << 2)) - 32.f); |
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sums.s2 += y[2+64] * ((float)((q1[2] >> 4) | ((qh[2] & kmask3) << 0)) - 32.f); |
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sums.s3 += y[2+96] * ((float)((q2[2] >> 4) | ((qh[2] & kmask4) >> 2)) - 32.f); |
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sums.s0 += y[3+ 0] * ((float)((q1[3] & 0xF) | ((qh[3] & kmask1) << 4)) - 32.f); |
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sums.s1 += y[3+32] * ((float)((q2[3] & 0xF) | ((qh[3] & kmask2) << 2)) - 32.f); |
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sums.s2 += y[3+64] * ((float)((q1[3] >> 4) | ((qh[3] & kmask3) << 0)) - 32.f); |
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sums.s3 += y[3+96] * ((float)((q2[3] >> 4) | ((qh[3] & kmask4) >> 2)) - 32.f); |
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sumf += dall * (sums.s0 * sc[0] + sums.s1 * sc[2] + sums.s2 * sc[4] + sums.s3 * sc[6]); |
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} |
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float tot = sub_group_reduce_add(sumf); |
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if (get_sub_group_local_id() == 0) { |
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dst[r1*ne0 + im*ne0*ne1 + row] = tot; |
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} |
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} |
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