@@ -0,0 +1,269 @@ | |||||
/*************************************************************************** | |||||
Copyright (c) 2014, The OpenBLAS Project | |||||
All rights reserved. | |||||
Redistribution and use in source and binary forms, with or without | |||||
modification, are permitted provided that the following conditions are | |||||
met: | |||||
1. Redistributions of source code must retain the above copyright | |||||
notice, this list of conditions and the following disclaimer. | |||||
2. Redistributions in binary form must reproduce the above copyright | |||||
notice, this list of conditions and the following disclaimer in | |||||
the documentation and/or other materials provided with the | |||||
distribution. | |||||
3. Neither the name of the OpenBLAS project nor the names of | |||||
its contributors may be used to endorse or promote products | |||||
derived from this software without specific prior written permission. | |||||
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" | |||||
AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE | |||||
IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE | |||||
ARE DISCLAIMED. IN NO EVENT SHALL THE OPENBLAS PROJECT OR CONTRIBUTORS BE | |||||
LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL | |||||
DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR | |||||
SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER | |||||
CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, | |||||
OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE | |||||
USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. | |||||
*****************************************************************************/ | |||||
#include "common.h" | |||||
/* | |||||
#if defined(BULLDOZER) | |||||
#include "zgemv_t_microk_bulldozer-2.c" | |||||
#elif defined(HASWELL) | |||||
#include "zgemv_t_microk_haswell-2.c" | |||||
#endif | |||||
*/ | |||||
#define NBMAX 2048 | |||||
#ifndef HAVE_KERNEL_16x4 | |||||
static void zgemv_kernel_16x4(BLASLONG n, FLOAT **ap, FLOAT *x, FLOAT *y) | |||||
{ | |||||
BLASLONG i; | |||||
FLOAT *a0,*a1,*a2,*a3; | |||||
a0 = ap[0]; | |||||
a1 = ap[1]; | |||||
a2 = ap[2]; | |||||
a3 = ap[3]; | |||||
FLOAT temp_r0 = 0.0; | |||||
FLOAT temp_r1 = 0.0; | |||||
FLOAT temp_r2 = 0.0; | |||||
FLOAT temp_r3 = 0.0; | |||||
FLOAT temp_i0 = 0.0; | |||||
FLOAT temp_i1 = 0.0; | |||||
FLOAT temp_i2 = 0.0; | |||||
FLOAT temp_i3 = 0.0; | |||||
for ( i=0; i< 2*n; i+=2 ) | |||||
{ | |||||
#if ( !defined(CONJ) && !defined(XCONJ) ) || ( defined(CONJ) && defined(XCONJ) ) | |||||
temp_r0 += a0[i]*x[i] - a0[i+1]*x[i+1]; | |||||
temp_i0 += a0[i]*x[i+1] + a0[i+1]*x[i]; | |||||
temp_r1 += a1[i]*x[i] - a1[i+1]*x[i+1]; | |||||
temp_i1 += a1[i]*x[i+1] + a1[i+1]*x[i]; | |||||
temp_r2 += a2[i]*x[i] - a2[i+1]*x[i+1]; | |||||
temp_i2 += a2[i]*x[i+1] + a2[i+1]*x[i]; | |||||
temp_r3 += a3[i]*x[i] - a3[i+1]*x[i+1]; | |||||
temp_i3 += a3[i]*x[i+1] + a3[i+1]*x[i]; | |||||
#else | |||||
temp_r0 += a0[i]*x[i] + a0[i+1]*x[i+1]; | |||||
temp_i0 += a0[i]*x[i+1] - a0[i+1]*x[i]; | |||||
temp_r1 += a1[i]*x[i] + a1[i+1]*x[i+1]; | |||||
temp_i1 += a1[i]*x[i+1] - a1[i+1]*x[i]; | |||||
temp_r2 += a2[i]*x[i] + a2[i+1]*x[i+1]; | |||||
temp_i2 += a2[i]*x[i+1] - a2[i+1]*x[i]; | |||||
temp_r3 += a3[i]*x[i] + a3[i+1]*x[i+1]; | |||||
temp_i3 += a3[i]*x[i+1] - a3[i+1]*x[i]; | |||||
#endif | |||||
} | |||||
y[0] = temp_r0; | |||||
y[1] = temp_i0; | |||||
y[2] = temp_r1; | |||||
y[3] = temp_i1; | |||||
y[4] = temp_r2; | |||||
y[5] = temp_i2; | |||||
y[6] = temp_r3; | |||||
y[7] = temp_i3; | |||||
} | |||||
#endif | |||||
static void zgemv_kernel_16x1(BLASLONG n, FLOAT *ap, FLOAT *x, FLOAT *y) | |||||
{ | |||||
BLASLONG i; | |||||
FLOAT *a0; | |||||
a0 = ap; | |||||
FLOAT temp_r = 0.0; | |||||
FLOAT temp_i = 0.0; | |||||
for ( i=0; i< 2*n; i+=2 ) | |||||
{ | |||||
#if ( !defined(CONJ) && !defined(XCONJ) ) || ( defined(CONJ) && defined(XCONJ) ) | |||||
temp_r += a0[i]*x[i] - a0[i+1]*x[i+1]; | |||||
temp_i += a0[i]*x[i+1] + a0[i+1]*x[i]; | |||||
#else | |||||
temp_r += a0[i]*x[i] + a0[i+1]*x[i+1]; | |||||
temp_i += a0[i]*x[i+1] - a0[i+1]*x[i]; | |||||
#endif | |||||
} | |||||
*y = temp_r; | |||||
*(y+1) = temp_i; | |||||
} | |||||
static void copy_x(BLASLONG n, FLOAT *src, FLOAT *dest, BLASLONG inc_src) | |||||
{ | |||||
BLASLONG i; | |||||
for ( i=0; i<n; i++ ) | |||||
{ | |||||
*dest = *src; | |||||
*(dest+1) = *(src+1); | |||||
dest+=2; | |||||
src += inc_src; | |||||
} | |||||
} | |||||
int CNAME(BLASLONG m, BLASLONG n, BLASLONG dummy1, FLOAT alpha_r, FLOAT alpha_i, FLOAT *a, BLASLONG lda, FLOAT *x, BLASLONG inc_x, FLOAT *y, BLASLONG inc_y, FLOAT *buffer) | |||||
{ | |||||
BLASLONG i; | |||||
BLASLONG j; | |||||
FLOAT *a_ptr; | |||||
FLOAT *x_ptr; | |||||
FLOAT *y_ptr; | |||||
FLOAT *ap[8]; | |||||
BLASLONG n1; | |||||
BLASLONG m1; | |||||
BLASLONG m2; | |||||
BLASLONG n2; | |||||
FLOAT ybuffer[8],*xbuffer; | |||||
inc_x *= 2; | |||||
inc_y *= 2; | |||||
lda *= 2; | |||||
xbuffer = buffer; | |||||
n1 = n / 4 ; | |||||
n2 = n % 4 ; | |||||
m1 = m - ( m % 16 ); | |||||
m2 = (m % NBMAX) - (m % 16) ; | |||||
BLASLONG NB = NBMAX; | |||||
while ( NB == NBMAX ) | |||||
{ | |||||
m1 -= NB; | |||||
if ( m1 < 0) | |||||
{ | |||||
if ( m2 == 0 ) break; | |||||
NB = m2; | |||||
} | |||||
y_ptr = y; | |||||
a_ptr = a; | |||||
x_ptr = x; | |||||
copy_x(NB,x_ptr,xbuffer,inc_x); | |||||
for( i = 0; i < n1 ; i++) | |||||
{ | |||||
ap[0] = a_ptr; | |||||
ap[1] = a_ptr + lda; | |||||
ap[2] = ap[1] + lda; | |||||
ap[3] = ap[2] + lda; | |||||
zgemv_kernel_16x4(NB,ap,xbuffer,ybuffer); | |||||
a_ptr += 4 * lda; | |||||
#if !defined(XCONJ) | |||||
y_ptr[0] += alpha_r * ybuffer[0] - alpha_i * ybuffer[1]; | |||||
y_ptr[1] += alpha_r * ybuffer[1] + alpha_i * ybuffer[0]; | |||||
y_ptr += inc_y; | |||||
y_ptr[0] += alpha_r * ybuffer[2] - alpha_i * ybuffer[3]; | |||||
y_ptr[1] += alpha_r * ybuffer[3] + alpha_i * ybuffer[2]; | |||||
y_ptr += inc_y; | |||||
y_ptr[0] += alpha_r * ybuffer[4] - alpha_i * ybuffer[5]; | |||||
y_ptr[1] += alpha_r * ybuffer[5] + alpha_i * ybuffer[4]; | |||||
y_ptr += inc_y; | |||||
y_ptr[0] += alpha_r * ybuffer[6] - alpha_i * ybuffer[7]; | |||||
y_ptr[1] += alpha_r * ybuffer[7] + alpha_i * ybuffer[6]; | |||||
y_ptr += inc_y; | |||||
#else | |||||
y_ptr[0] += alpha_r * ybuffer[0] + alpha_i * ybuffer[1]; | |||||
y_ptr[1] -= alpha_r * ybuffer[1] - alpha_i * ybuffer[0]; | |||||
y_ptr += inc_y; | |||||
y_ptr[0] += alpha_r * ybuffer[2] + alpha_i * ybuffer[3]; | |||||
y_ptr[1] -= alpha_r * ybuffer[3] - alpha_i * ybuffer[2]; | |||||
y_ptr += inc_y; | |||||
y_ptr[0] += alpha_r * ybuffer[4] + alpha_i * ybuffer[5]; | |||||
y_ptr[1] -= alpha_r * ybuffer[5] - alpha_i * ybuffer[4]; | |||||
y_ptr += inc_y; | |||||
y_ptr[0] += alpha_r * ybuffer[6] + alpha_i * ybuffer[7]; | |||||
y_ptr[1] -= alpha_r * ybuffer[7] - alpha_i * ybuffer[6]; | |||||
y_ptr += inc_y; | |||||
#endif | |||||
} | |||||
for( i = 0; i < n2 ; i++) | |||||
{ | |||||
zgemv_kernel_16x1(NB,a_ptr,xbuffer,ybuffer); | |||||
a_ptr += 1 * lda; | |||||
#if !defined(XCONJ) | |||||
y_ptr[0] += alpha_r * ybuffer[0] - alpha_i * ybuffer[1]; | |||||
y_ptr[1] += alpha_r * ybuffer[1] + alpha_i * ybuffer[0]; | |||||
y_ptr += inc_y; | |||||
#else | |||||
y_ptr[0] += alpha_r * ybuffer[0] + alpha_i * ybuffer[1]; | |||||
y_ptr[1] -= alpha_r * ybuffer[1] - alpha_i * ybuffer[0]; | |||||
y_ptr += inc_y; | |||||
#endif | |||||
} | |||||
a += 2* NB; | |||||
x += NB * inc_x; | |||||
} | |||||
BLASLONG m3 = m % 16; | |||||
if ( m3 == 0 ) return(0); | |||||
x_ptr = x; | |||||
copy_x(m3,x_ptr,xbuffer,inc_x); | |||||
j=0; | |||||
a_ptr = a; | |||||
y_ptr = y; | |||||
while ( j < n) | |||||
{ | |||||
FLOAT temp_r = 0.0; | |||||
FLOAT temp_i = 0.0; | |||||
for( i = 0; i < m3*2; i+=2 ) | |||||
{ | |||||
#if ( !defined(CONJ) && !defined(XCONJ) ) || ( defined(CONJ) && defined(XCONJ) ) | |||||
temp_r += a_ptr[i] * xbuffer[i] - a_ptr[i+1] * xbuffer[i+1]; | |||||
temp_i += a_ptr[i] * xbuffer[i+1] + a_ptr[i+1] * xbuffer[i]; | |||||
#else | |||||
temp_r += a_ptr[i] * xbuffer[i] + a_ptr[i+1] * xbuffer[i+1]; | |||||
temp_i += a_ptr[i] * xbuffer[i+1] - a_ptr[i+1] * xbuffer[i]; | |||||
#endif | |||||
} | |||||
a_ptr += lda; | |||||
#if !defined(XCONJ) | |||||
y_ptr[0] += alpha_r * temp_r - alpha_i * temp_i; | |||||
y_ptr[1] += alpha_r * temp_i + alpha_i * temp_r; | |||||
#else | |||||
y_ptr[0] += alpha_r * temp_r + alpha_i * temp_i; | |||||
y_ptr[1] -= alpha_r * temp_i - alpha_i * temp_r; | |||||
#endif | |||||
y_ptr += inc_y; | |||||
j++; | |||||
} | |||||
return(0); | |||||
} | |||||
@@ -0,0 +1,161 @@ | |||||
/*************************************************************************** | |||||
Copyright (c) 2014, The OpenBLAS Project | |||||
All rights reserved. | |||||
Redistribution and use in source and binary forms, with or without | |||||
modification, are permitted provided that the following conditions are | |||||
met: | |||||
1. Redistributions of source code must retain the above copyright | |||||
notice, this list of conditions and the following disclaimer. | |||||
2. Redistributions in binary form must reproduce the above copyright | |||||
notice, this list of conditions and the following disclaimer in | |||||
the documentation and/or other materials provided with the | |||||
distribution. | |||||
3. Neither the name of the OpenBLAS project nor the names of | |||||
its contributors may be used to endorse or promote products | |||||
derived from this software without specific prior written permission. | |||||
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" | |||||
AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE | |||||
IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE | |||||
ARE DISCLAIMED. IN NO EVENT SHALL THE OPENBLAS PROJECT OR CONTRIBUTORS BE | |||||
LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL | |||||
DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR | |||||
SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER | |||||
CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, | |||||
OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE | |||||
USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. | |||||
*****************************************************************************/ | |||||
#define HAVE_KERNEL_16x4 1 | |||||
static void zgemv_kernel_16x4( BLASLONG n, FLOAT **ap, FLOAT *x, FLOAT *y) __attribute__ ((noinline)); | |||||
static void zgemv_kernel_16x4( BLASLONG n, FLOAT **ap, FLOAT *x, FLOAT *y) | |||||
{ | |||||
BLASLONG register i = 0; | |||||
__asm__ __volatile__ | |||||
( | |||||
"vzeroupper \n\t" | |||||
"vbroadcastsd (%2), %%ymm0 \n\t" // real part x0 | |||||
"vbroadcastsd 8(%2), %%ymm1 \n\t" // imag part x0 | |||||
"vbroadcastsd 16(%2), %%ymm2 \n\t" // real part x1 | |||||
"vbroadcastsd 24(%2), %%ymm3 \n\t" // imag part x1 | |||||
"vbroadcastsd 32(%2), %%ymm4 \n\t" // real part x2 | |||||
"vbroadcastsd 40(%2), %%ymm5 \n\t" // imag part x2 | |||||
"vbroadcastsd 48(%2), %%ymm6 \n\t" // real part x3 | |||||
"vbroadcastsd 56(%2), %%ymm7 \n\t" // imag part x3 | |||||
".align 16 \n\t" | |||||
".L01LOOP%=: \n\t" | |||||
"vxorpd %%ymm12, %%ymm12, %%ymm12 \n\t" | |||||
"vxorpd %%ymm13, %%ymm13, %%ymm13 \n\t" | |||||
"vxorpd %%ymm14, %%ymm14, %%ymm14 \n\t" | |||||
"vxorpd %%ymm15, %%ymm15, %%ymm15 \n\t" | |||||
"vmovups (%4,%0,8), %%ymm8 \n\t" // 2 complex values form a0 | |||||
"vmovups 32(%4,%0,8), %%ymm9 \n\t" // 2 complex values form a0 | |||||
"vmulpd %%ymm8 , %%ymm0 , %%ymm10 \n\t" | |||||
"vaddpd %%ymm12, %%ymm10, %%ymm12 \n\t" | |||||
"vmulpd %%ymm8 , %%ymm1 , %%ymm11 \n\t" | |||||
"vaddpd %%ymm13, %%ymm11, %%ymm13 \n\t" | |||||
"vmulpd %%ymm9 , %%ymm0 , %%ymm10 \n\t" | |||||
"vaddpd %%ymm14, %%ymm10, %%ymm14 \n\t" | |||||
"vmulpd %%ymm9 , %%ymm1 , %%ymm11 \n\t" | |||||
"vaddpd %%ymm15, %%ymm11, %%ymm15 \n\t" | |||||
"vmovups (%5,%0,8), %%ymm8 \n\t" // 2 complex values form a0 | |||||
"vmovups 32(%5,%0,8), %%ymm9 \n\t" // 2 complex values form a0 | |||||
"vmulpd %%ymm8 , %%ymm2 , %%ymm10 \n\t" | |||||
"vaddpd %%ymm12, %%ymm10, %%ymm12 \n\t" | |||||
"vmulpd %%ymm8 , %%ymm3 , %%ymm11 \n\t" | |||||
"vaddpd %%ymm13, %%ymm11, %%ymm13 \n\t" | |||||
"vmulpd %%ymm9 , %%ymm2 , %%ymm10 \n\t" | |||||
"vaddpd %%ymm14, %%ymm10, %%ymm14 \n\t" | |||||
"vmulpd %%ymm9 , %%ymm3 , %%ymm11 \n\t" | |||||
"vaddpd %%ymm15, %%ymm11, %%ymm15 \n\t" | |||||
"vmovups (%6,%0,8), %%ymm8 \n\t" // 2 complex values form a0 | |||||
"vmovups 32(%6,%0,8), %%ymm9 \n\t" // 2 complex values form a0 | |||||
"vmulpd %%ymm8 , %%ymm4 , %%ymm10 \n\t" | |||||
"vaddpd %%ymm12, %%ymm10, %%ymm12 \n\t" | |||||
"vmulpd %%ymm8 , %%ymm5 , %%ymm11 \n\t" | |||||
"vaddpd %%ymm13, %%ymm11, %%ymm13 \n\t" | |||||
"vmulpd %%ymm9 , %%ymm4 , %%ymm10 \n\t" | |||||
"vaddpd %%ymm14, %%ymm10, %%ymm14 \n\t" | |||||
"vmulpd %%ymm9 , %%ymm5 , %%ymm11 \n\t" | |||||
"vaddpd %%ymm15, %%ymm11, %%ymm15 \n\t" | |||||
"vmovups (%7,%0,8), %%ymm8 \n\t" // 2 complex values form a0 | |||||
"vmovups 32(%7,%0,8), %%ymm9 \n\t" // 2 complex values form a0 | |||||
"vmulpd %%ymm8 , %%ymm6 , %%ymm10 \n\t" | |||||
"vaddpd %%ymm12, %%ymm10, %%ymm12 \n\t" | |||||
"vmulpd %%ymm8 , %%ymm7 , %%ymm11 \n\t" | |||||
"vaddpd %%ymm13, %%ymm11, %%ymm13 \n\t" | |||||
"vmulpd %%ymm9 , %%ymm6 , %%ymm10 \n\t" | |||||
"vaddpd %%ymm14, %%ymm10, %%ymm14 \n\t" | |||||
"vmulpd %%ymm9 , %%ymm7 , %%ymm11 \n\t" | |||||
"vaddpd %%ymm15, %%ymm11, %%ymm15 \n\t" | |||||
#if ( !defined(CONJ) && !defined(XCONJ) ) || ( defined(CONJ) && defined(XCONJ) ) | |||||
"vpermilpd $0x5 , %%ymm13, %%ymm13 \n\t" | |||||
"vpermilpd $0x5 , %%ymm15, %%ymm15 \n\t" | |||||
"vaddsubpd %%ymm13, %%ymm12, %%ymm8 \n\t" | |||||
"vaddsubpd %%ymm15, %%ymm14, %%ymm9 \n\t" | |||||
#else | |||||
"vpermilpd $0x5 , %%ymm12, %%ymm12 \n\t" | |||||
"vpermilpd $0x5 , %%ymm14, %%ymm14 \n\t" | |||||
"vaddsubpd %%ymm12, %%ymm13, %%ymm8 \n\t" | |||||
"vaddsubpd %%ymm14, %%ymm15, %%ymm9 \n\t" | |||||
"vpermilpd $0x5 , %%ymm8 , %%ymm8 \n\t" | |||||
"vpermilpd $0x5 , %%ymm9 , %%ymm9 \n\t" | |||||
#endif | |||||
"prefetcht0 192(%3,%0,8) \n\t" | |||||
"vmovups (%3,%0,8), %%ymm12 \n\t" | |||||
"vmovups 32(%3,%0,8), %%ymm13 \n\t" | |||||
#if !defined(XCONJ) | |||||
"vaddpd %%ymm8, %%ymm12, %%ymm12 \n\t" | |||||
"vaddpd %%ymm9, %%ymm13, %%ymm13 \n\t" | |||||
#else | |||||
"vaddsubpd %%ymm12, %%ymm8, %%ymm12 \n\t" | |||||
"vaddsubpd %%ymm13, %%ymm9, %%ymm13 \n\t" | |||||
#endif | |||||
"vmovups %%ymm12, (%3,%0,8) \n\t" // 2 complex values to y | |||||
"vmovups %%ymm13, 32(%3,%0,8) \n\t" | |||||
"addq $8 , %0 \n\t" | |||||
"subq $4 , %1 \n\t" | |||||
"jnz .L01LOOP%= \n\t" | |||||
"vzeroupper \n\t" | |||||
: | |||||
: | |||||
"r" (i), // 0 | |||||
"r" (n), // 1 | |||||
"r" (x), // 2 | |||||
"r" (y), // 3 | |||||
"r" (ap[0]), // 4 | |||||
"r" (ap[1]), // 5 | |||||
"r" (ap[2]), // 6 | |||||
"r" (ap[3]) // 7 | |||||
: "cc", | |||||
"%xmm0", "%xmm1", "%xmm2", "%xmm3", | |||||
"%xmm4", "%xmm5", "%xmm6", "%xmm7", | |||||
"%xmm8", "%xmm9", "%xmm10", "%xmm11", | |||||
"%xmm12", "%xmm13", "%xmm14", "%xmm15", | |||||
"memory" | |||||
); | |||||
} | |||||