metal : implement q5_0 and q5_1 kernels (#3648)
* metal : implement dequantize_q5_0 * metal : block_q_n_dot_y for block_q5_0 (broken) * metal : revert unnecessary change * metal : implement dequantize_q5_1 * metal : block_q_n_dot_y for q5_1 (broken) * metal : fix block_q_n_dot_y * minor : spaces / formatting --------- Co-authored-by: Georgi Gerganov <ggerganov@gmail.com>
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2 changed files with 206 additions and 4 deletions
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ggml-metal.metal
163
ggml-metal.metal
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@ -18,6 +18,21 @@ typedef struct {
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uint8_t qs[QK4_1 / 2]; // nibbles / quants
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} block_q4_1;
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#define QK5_0 32
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typedef struct {
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half d; // delta
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uint8_t qh[4]; // 5-th bit of quants
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uint8_t qs[QK5_0 / 2]; // nibbles / quants
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} block_q5_0;
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#define QK5_1 32
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typedef struct {
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half d; // delta
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half m; // min
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uint8_t qh[4]; // 5-th bit of quants
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uint8_t qs[QK5_1 / 2]; // nibbles / quants
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} block_q5_1;
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#define QK8_0 32
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typedef struct {
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half d; // delta
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@ -399,8 +414,11 @@ kernel void kernel_rms_norm(
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// that corresponds to the missing bit shifts (1, 1/16, 1/256, 1/4096)
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inline float block_q_n_dot_y(device const block_q4_0 * qb_curr, float sumy, thread float * yl, int il) {
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float d = qb_curr->d;
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float2 acc = 0.f;
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device const uint16_t * qs = ((device const uint16_t *)qb_curr + 1 + il/2);
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for (int i = 0; i < 8; i+=2) {
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acc[0] += yl[i + 0] * (qs[i / 2] & 0x000F)
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+ yl[i + 1] * (qs[i / 2] & 0x0F00);
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@ -417,8 +435,11 @@ inline float block_q_n_dot_y(device const block_q4_0 * qb_curr, float sumy, thre
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inline float block_q_n_dot_y(device const block_q4_1 * qb_curr, float sumy, thread float * yl, int il) {
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float d = qb_curr->d;
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float m = qb_curr->m;
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device const uint16_t * qs = ((device const uint16_t *)qb_curr + 2 + il/2);
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float2 acc = 0.f;
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device const uint16_t * qs = ((device const uint16_t *)qb_curr + 2 + il/2);
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for (int i = 0; i < 8; i+=2) {
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acc[0] += yl[i + 0] * (qs[i / 2] & 0x000F)
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+ yl[i + 1] * (qs[i / 2] & 0x0F00);
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@ -428,6 +449,49 @@ inline float block_q_n_dot_y(device const block_q4_1 * qb_curr, float sumy, thre
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return d * (acc[0] + acc[1]) + sumy * m;
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}
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// function for calculate inner product between half a q5_0 block and 16 floats (yl), sumy is SUM(yl[i])
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// il indicates where the q5 quants begin (0 or QK5_0/4)
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// we assume that the yl's have been multiplied with the appropriate scale factor
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// that corresponds to the missing bit shifts (1, 1/16, 1/256, 1/4096)
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inline float block_q_n_dot_y(device const block_q5_0 * qb_curr, float sumy, thread float * yl, int il) {
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float d = qb_curr->d;
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float2 acc = 0.f;
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device const uint16_t * qs = ((device const uint16_t *)qb_curr + 3 + il/2);
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const uint32_t qh = *((device const uint32_t *)qb_curr->qh);
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for (int i = 0; i < 8; i+=2) {
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acc[0] += yl[i + 0] * ((qs[i / 2] & 0x000F) | ((qh >> (i+0+il ) << 4 ) & 0x00010))
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+ yl[i + 1] * ((qs[i / 2] & 0x0F00) | ((qh >> (i+1+il ) << 12) & 0x01000));
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acc[1] += yl[i + 8] * ((qs[i / 2] & 0x00F0) | ((qh >> (i+0+il+QK5_0/2) << 8 ) & 0x00100))
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+ yl[i + 9] * ((qs[i / 2] & 0xF000) | ((qh >> (i+1+il+QK5_0/2) << 16) & 0x10000));
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}
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return d * (sumy * -16.f + acc[0] + acc[1]);
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}
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// function for calculate inner product between half a q5_1 block and 16 floats (yl), sumy is SUM(yl[i])
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// il indicates where the q5 quants begin (0 or QK5_1/4)
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// we assume that the yl's have been multiplied with the appropriate scale factor
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// that corresponds to the missing bit shifts (1, 1/16, 1/256, 1/4096)
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inline float block_q_n_dot_y(device const block_q5_1 * qb_curr, float sumy, thread float * yl, int il) {
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float d = qb_curr->d;
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float m = qb_curr->m;
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float2 acc = 0.f;
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device const uint16_t * qs = ((device const uint16_t *)qb_curr + 4 + il/2);
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const uint32_t qh = *((device const uint32_t *)qb_curr->qh);
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for (int i = 0; i < 8; i+=2) {
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acc[0] += yl[i + 0] * ((qs[i / 2] & 0x000F) | ((qh >> (i+0+il ) << 4 ) & 0x00010))
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+ yl[i + 1] * ((qs[i / 2] & 0x0F00) | ((qh >> (i+1+il ) << 12) & 0x01000));
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acc[1] += yl[i + 8] * ((qs[i / 2] & 0x00F0) | ((qh >> (i+0+il+QK5_0/2) << 8 ) & 0x00100))
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+ yl[i + 9] * ((qs[i / 2] & 0xF000) | ((qh >> (i+1+il+QK5_0/2) << 16) & 0x10000));
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}
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return d * (acc[0] + acc[1]) + sumy * m;
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}
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// putting them in the kernel cause a significant performance penalty
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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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@ -525,6 +589,43 @@ kernel void kernel_mul_mv_q4_1_f32(
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mul_vec_q_n_f32<block_q4_1, N_DST, N_SIMDGROUP, N_SIMDWIDTH>(src0,src1,dst,ne00,ne01,ne02,ne10,ne12,ne0,ne1,gqa,tgpig,tiisg,sgitg);
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}
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kernel void kernel_mul_mv_q5_0_f32(
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device const void * src0,
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device const float * src1,
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device float * dst,
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constant int64_t & ne00,
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constant int64_t & ne01[[buffer(4)]],
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constant int64_t & ne02[[buffer(5)]],
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constant int64_t & ne10[[buffer(9)]],
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constant int64_t & ne12[[buffer(11)]],
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constant int64_t & ne0[[buffer(15)]],
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constant int64_t & ne1[[buffer(16)]],
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constant uint & gqa[[buffer(17)]],
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uint3 tgpig[[threadgroup_position_in_grid]],
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uint tiisg[[thread_index_in_simdgroup]],
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uint sgitg[[simdgroup_index_in_threadgroup]]) {
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mul_vec_q_n_f32<block_q5_0, N_DST, N_SIMDGROUP, N_SIMDWIDTH>(src0,src1,dst,ne00,ne01,ne02,ne10,ne12,ne0,ne1,gqa,tgpig,tiisg,sgitg);
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}
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kernel void kernel_mul_mv_q5_1_f32(
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device const void * src0,
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device const float * src1,
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device float * dst,
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constant int64_t & ne00,
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constant int64_t & ne01[[buffer(4)]],
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constant int64_t & ne02[[buffer(5)]],
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constant int64_t & ne10[[buffer(9)]],
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constant int64_t & ne12[[buffer(11)]],
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constant int64_t & ne0[[buffer(15)]],
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constant int64_t & ne1[[buffer(16)]],
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constant uint & gqa[[buffer(17)]],
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uint3 tgpig[[threadgroup_position_in_grid]],
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uint tiisg[[thread_index_in_simdgroup]],
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uint sgitg[[simdgroup_index_in_threadgroup]]) {
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mul_vec_q_n_f32<block_q5_1, N_DST, N_SIMDGROUP, N_SIMDWIDTH>(src0,src1,dst,ne00,ne01,ne02,ne10,ne12,ne0,ne1,gqa,tgpig,tiisg,sgitg);
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}
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#define NB_Q8_0 8
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kernel void kernel_mul_mv_q8_0_f32(
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@ -2149,6 +2250,62 @@ void dequantize_q4_1(device const block_q4_1 *xb, short il, thread type4x4 & reg
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}
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}
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template <typename type4x4>
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void dequantize_q5_0(device const block_q5_0 *xb, short il, thread type4x4 & reg) {
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device const uint16_t * qs = ((device const uint16_t *)xb + 3);
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const float d = xb->d;
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const float md = -16.h * xb->d;
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const ushort mask = il ? 0x00F0 : 0x000F;
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const uint32_t qh = *((device const uint32_t *)xb->qh);
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const int x_mv = il ? 4 : 0;
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const int gh_mv = il ? 12 : 0;
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const int gh_bk = il ? 0 : 4;
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for (int i = 0; i < 8; i++) {
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// extract the 5-th bits for x0 and x1
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const uint8_t xh_0 = ((qh >> (gh_mv + 2*i )) << gh_bk) & 0x10;
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const uint8_t xh_1 = ((qh >> (gh_mv + 2*i+1)) << gh_bk) & 0x10;
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// combine the 4-bits from qs with the 5th bit
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const int32_t x0 = ((((qs[i] ) & mask) >> x_mv) | xh_0);
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const int32_t x1 = ((((qs[i] >> 8) & mask) >> x_mv) | xh_1);
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reg[i/2][2*(i%2)+0] = d * x0 + md;
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reg[i/2][2*(i%2)+1] = d * x1 + md;
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}
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}
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template <typename type4x4>
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void dequantize_q5_1(device const block_q5_1 *xb, short il, thread type4x4 & reg) {
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device const uint16_t * qs = ((device const uint16_t *)xb + 4);
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const float d = xb->d;
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const float m = xb->m;
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const ushort mask = il ? 0x00F0 : 0x000F;
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const uint32_t qh = *((device const uint32_t *)xb->qh);
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const int x_mv = il ? 4 : 0;
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const int gh_mv = il ? 12 : 0;
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const int gh_bk = il ? 0 : 4;
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for (int i = 0; i < 8; i++) {
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// extract the 5-th bits for x0 and x1
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const uint8_t xh_0 = ((qh >> (gh_mv + 2*i )) << gh_bk) & 0x10;
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const uint8_t xh_1 = ((qh >> (gh_mv + 2*i+1)) << gh_bk) & 0x10;
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// combine the 4-bits from qs with the 5th bit
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const int32_t x0 = ((((qs[i] ) & mask) >> x_mv) | xh_0);
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const int32_t x1 = ((((qs[i] >> 8) & mask) >> x_mv) | xh_1);
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reg[i/2][2*(i%2)+0] = d * x0 + m;
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reg[i/2][2*(i%2)+1] = d * x1 + m;
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}
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}
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template <typename type4x4>
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void dequantize_q8_0(device const block_q8_0 *xb, short il, thread type4x4 & reg) {
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device const int8_t * qs = ((device const int8_t *)xb->qs);
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@ -2490,6 +2647,8 @@ template [[host_name("kernel_get_rows_f32")]] kernel get_rows_t kernel_get_rows
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template [[host_name("kernel_get_rows_f16")]] kernel get_rows_t kernel_get_rows<half4x4, 1, dequantize_f16>;
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template [[host_name("kernel_get_rows_q4_0")]] kernel get_rows_t kernel_get_rows<block_q4_0, 2, dequantize_q4_0>;
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template [[host_name("kernel_get_rows_q4_1")]] kernel get_rows_t kernel_get_rows<block_q4_1, 2, dequantize_q4_1>;
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template [[host_name("kernel_get_rows_q5_0")]] kernel get_rows_t kernel_get_rows<block_q5_0, 2, dequantize_q5_0>;
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template [[host_name("kernel_get_rows_q5_1")]] kernel get_rows_t kernel_get_rows<block_q5_1, 2, dequantize_q5_1>;
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template [[host_name("kernel_get_rows_q8_0")]] kernel get_rows_t kernel_get_rows<block_q8_0, 2, dequantize_q8_0>;
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template [[host_name("kernel_get_rows_q2_K")]] kernel get_rows_t kernel_get_rows<block_q2_K, QK_NL, dequantize_q2_K>;
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template [[host_name("kernel_get_rows_q3_K")]] kernel get_rows_t kernel_get_rows<block_q3_K, QK_NL, dequantize_q3_K>;
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@ -2518,6 +2677,8 @@ template [[host_name("kernel_mul_mm_f32_f32")]] kernel mat_mm_t kernel_mul_mm<f
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template [[host_name("kernel_mul_mm_f16_f32")]] kernel mat_mm_t kernel_mul_mm<half4x4, 1, dequantize_f16>;
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template [[host_name("kernel_mul_mm_q4_0_f32")]] kernel mat_mm_t kernel_mul_mm<block_q4_0, 2, dequantize_q4_0>;
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template [[host_name("kernel_mul_mm_q4_1_f32")]] kernel mat_mm_t kernel_mul_mm<block_q4_1, 2, dequantize_q4_1>;
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template [[host_name("kernel_mul_mm_q5_0_f32")]] kernel mat_mm_t kernel_mul_mm<block_q5_0, 2, dequantize_q5_0>;
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template [[host_name("kernel_mul_mm_q5_1_f32")]] kernel mat_mm_t kernel_mul_mm<block_q5_1, 2, dequantize_q5_1>;
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template [[host_name("kernel_mul_mm_q8_0_f32")]] kernel mat_mm_t kernel_mul_mm<block_q8_0, 2, dequantize_q8_0>;
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template [[host_name("kernel_mul_mm_q2_K_f32")]] kernel mat_mm_t kernel_mul_mm<block_q2_K, QK_NL, dequantize_q2_K>;
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template [[host_name("kernel_mul_mm_q3_K_f32")]] kernel mat_mm_t kernel_mul_mm<block_q3_K, QK_NL, dequantize_q3_K>;
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