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vulkan: further optimize q5_k mul_mat_vec (#10479)
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@ -34,9 +34,6 @@ void main() {
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const uint q_offset = 32*v_im + l0;
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const uint y_offset = 64*v_im + l0;
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const uint8_t hm1 = uint8_t(1 << (2*v_im));
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const uint8_t hm2 = uint8_t(hm1 << 4);
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FLOAT_TYPE temp = FLOAT_TYPE(0.0); // partial sum for thread in warp
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[[unroll]] for (uint i = ix; i < num_blocks_per_row; i += 2) {
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@ -71,6 +68,18 @@ void main() {
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uint32_t qs64_80_u32_lo4 = qs64_80_u32 & 0x0F0F0F0F;
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uint32_t qs64_80_u32_hi4 = (qs64_80_u32 >> 4) & 0x0F0F0F0F;
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uint32_t qh = pack32(u16vec2(data_a_packed16[ib0 + i].qh[l0 / 2], data_a_packed16[ib0 + i].qh[l0 / 2 + 8]));
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uint32_t qs0_16_lo4_offset16 = ((qh >> (2*v_im)) & 0x01010101) << 4;
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uint32_t qs0_16_hi4_offset16 = ((qh >> (2*v_im)) & 0x02020202) << 3;
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uint32_t qs64_80_lo4_offset16 = ((qh >> (2*v_im)) & 0x10101010) << 0;
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uint32_t qs64_80_hi4_offset16 = ((qh >> (2*v_im)) & 0x20202020) >> 1;
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qs0_16_u32_lo4 += qs0_16_lo4_offset16;
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qs0_16_u32_hi4 += qs0_16_hi4_offset16;
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qs64_80_u32_lo4 += qs64_80_lo4_offset16;
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qs64_80_u32_hi4 += qs64_80_hi4_offset16;
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uvec4 qs0_16_lo4 = uvec4(unpack8(qs0_16_u32_lo4));
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uvec4 qs64_80_lo4 = uvec4(unpack8(qs64_80_u32_lo4));
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uvec4 qs0_16_hi4 = uvec4(unpack8(qs0_16_u32_hi4));
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@ -102,31 +111,26 @@ void main() {
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B_TYPE_VEC2 by232 = data_b_v2[(b_offset + y2_idx) / 2 + 16];
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B_TYPE_VEC2 by248 = data_b_v2[(b_offset + y2_idx) / 2 + 24];
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uint32_t qh0 = data_a_packed16[ib0 + i].qh[l0 / 2];
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uint32_t qh1 = qh0 >> 8;
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uint32_t qh16 = data_a_packed16[ib0 + i].qh[l0 / 2 + 8];
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uint32_t qh17 = qh16 >> 8;
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const FLOAT_TYPE sx =
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fma(FLOAT_TYPE(by10.x), (q4_0 + (((qh0 & hm1) != 0) ? 16 : 0)),
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fma(FLOAT_TYPE(by10.y), (q4_1 + (((qh1 & hm1) != 0) ? 16 : 0)),
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fma(FLOAT_TYPE(by116.x), (q4_2 + (((qh16 & hm1) != 0) ? 16 : 0)),
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FLOAT_TYPE(by116.y) * (q4_3 + (((qh17 & hm1) != 0) ? 16 : 0)))));
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fma(FLOAT_TYPE(by10.x), q4_0,
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fma(FLOAT_TYPE(by10.y), q4_1,
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fma(FLOAT_TYPE(by116.x), q4_2,
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FLOAT_TYPE(by116.y) * q4_3)));
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const FLOAT_TYPE sy =
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fma(FLOAT_TYPE(by132.x), (q4_4 + (((qh0 & (hm1 << 1)) != 0) ? 16 : 0)),
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fma(FLOAT_TYPE(by132.y), (q4_5 + (((qh1 & (hm1 << 1)) != 0) ? 16 : 0)),
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fma(FLOAT_TYPE(by148.x), (q4_6 + (((qh16 & (hm1 << 1)) != 0) ? 16 : 0)),
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FLOAT_TYPE(by148.y) * (q4_7 + (((qh17 & (hm1 << 1)) != 0) ? 16 : 0)))));
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fma(FLOAT_TYPE(by132.x), q4_4,
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fma(FLOAT_TYPE(by132.y), q4_5,
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fma(FLOAT_TYPE(by148.x), q4_6,
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FLOAT_TYPE(by148.y) * q4_7)));
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const FLOAT_TYPE sz =
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fma(FLOAT_TYPE(by20.x), (q4_8 + (((qh0 & hm2) != 0) ? 16 : 0)),
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fma(FLOAT_TYPE(by20.y), (q4_9 + (((qh1 & hm2) != 0) ? 16 : 0)),
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fma(FLOAT_TYPE(by216.x), (q4_10 + (((qh16 & hm2) != 0) ? 16 : 0)),
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FLOAT_TYPE(by216.y) * (q4_11 + (((qh17 & hm2) != 0) ? 16 : 0)))));
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fma(FLOAT_TYPE(by20.x), q4_8,
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fma(FLOAT_TYPE(by20.y), q4_9,
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fma(FLOAT_TYPE(by216.x), q4_10,
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FLOAT_TYPE(by216.y) * q4_11)));
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const FLOAT_TYPE sw =
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fma(FLOAT_TYPE(by232.x), (q4_12 + (((qh0 & (hm2 << 1)) != 0) ? 16 : 0)),
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fma(FLOAT_TYPE(by232.y), (q4_13 + (((qh1 & (hm2 << 1)) != 0) ? 16 : 0)),
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fma(FLOAT_TYPE(by248.x), (q4_14 + (((qh16 & (hm2 << 1)) != 0) ? 16 : 0)),
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FLOAT_TYPE(by248.y) * (q4_15 + (((qh17 & (hm2 << 1)) != 0) ? 16 : 0)))));
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fma(FLOAT_TYPE(by232.x), q4_12,
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fma(FLOAT_TYPE(by232.y), q4_13,
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fma(FLOAT_TYPE(by248.x), q4_14,
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FLOAT_TYPE(by248.y) * q4_15)));
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const FLOAT_TYPE smin =
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fma(FLOAT_TYPE(by10.x) + FLOAT_TYPE(by10.y) + FLOAT_TYPE(by116.x) + FLOAT_TYPE(by116.y), sc2,
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fma(FLOAT_TYPE(by132.x) + FLOAT_TYPE(by132.y) + FLOAT_TYPE(by148.x) + FLOAT_TYPE(by148.y), sc3,
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