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Annotation of OpenXM_contrib/gmp/tests/devel/lshift.c, Revision 1.1.1.1

1.1       ohara       1: /*
                      2: Copyright 1996, 1998, 1999, 2000, 2001 Free Software Foundation, Inc.
                      3:
                      4: This file is part of the GNU MP Library.
                      5:
                      6: The GNU MP Library is free software; you can redistribute it and/or modify
                      7: it under the terms of the GNU Lesser General Public License as published by
                      8: the Free Software Foundation; either version 2.1 of the License, or (at your
                      9: option) any later version.
                     10:
                     11: The GNU MP Library is distributed in the hope that it will be useful, but
                     12: WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
                     13: or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU Lesser General Public
                     14: License for more details.
                     15:
                     16: You should have received a copy of the GNU Lesser General Public License
                     17: along with the GNU MP Library; see the file COPYING.LIB.  If not, write to
                     18: the Free Software Foundation, Inc., 59 Temple Place - Suite 330, Boston,
                     19: MA 02111-1307, USA.
                     20: */
                     21:
                     22: #include <stdio.h>
                     23: #include "gmp.h"
                     24: #include "gmp-impl.h"
                     25:
                     26: #if defined (USG) || defined (__SVR4) || defined (_UNICOS) || defined (__hpux)
                     27: #include <time.h>
                     28:
                     29: int
                     30: cputime ()
                     31: {
                     32:   if (CLOCKS_PER_SEC < 100000)
                     33:     return clock () * 1000 / CLOCKS_PER_SEC;
                     34:   return clock () / (CLOCKS_PER_SEC / 1000);
                     35: }
                     36: #else
                     37: #include <sys/types.h>
                     38: #include <sys/time.h>
                     39: #include <sys/resource.h>
                     40:
                     41: int
                     42: cputime ()
                     43: {
                     44:   struct rusage rus;
                     45:
                     46:   getrusage (0, &rus);
                     47:   return rus.ru_utime.tv_sec * 1000 + rus.ru_utime.tv_usec / 1000;
                     48: }
                     49: #endif
                     50:
                     51: #define M * 1000000
                     52:
                     53: #ifndef CLOCK
                     54: #error "Don't know CLOCK of your machine"
                     55: #endif
                     56:
                     57: #ifndef OPS
                     58: #define OPS (CLOCK/5)
                     59: #endif
                     60: #ifndef SIZE
                     61: #define SIZE 496
                     62: #endif
                     63: #ifndef TIMES
                     64: #define TIMES OPS/SIZE
                     65: #else
                     66: #undef OPS
                     67: #define OPS (SIZE*TIMES)
                     68: #endif
                     69:
                     70: mp_limb_t
                     71: refmpn_lshift (wp, up, usize, cnt)
                     72:      register mp_ptr wp;
                     73:      register mp_srcptr up;
                     74:      mp_size_t usize;
                     75:      register unsigned int cnt;
                     76: {
                     77:   register mp_limb_t high_limb, low_limb;
                     78:   register unsigned sh_1, sh_2;
                     79:   register mp_size_t i;
                     80:   mp_limb_t retval;
                     81:
                     82: #ifdef DEBUG
                     83:   if (usize == 0 || cnt == 0)
                     84:     abort ();
                     85: #endif
                     86:
                     87:   sh_1 = cnt;
                     88: #if 0
                     89:   if (sh_1 == 0)
                     90:     {
                     91:       if (wp != up)
                     92:        {
                     93:          /* Copy from high end to low end, to allow specified input/output
                     94:             overlapping.  */
                     95:          for (i = usize - 1; i >= 0; i--)
                     96:            wp[i] = up[i];
                     97:        }
                     98:       return 0;
                     99:     }
                    100: #endif
                    101:
                    102:   wp += 1;
                    103:   sh_2 = BITS_PER_MP_LIMB - sh_1;
                    104:   i = usize - 1;
                    105:   low_limb = up[i];
                    106:   retval = low_limb >> sh_2;
                    107:   high_limb = low_limb;
                    108:   while (--i >= 0)
                    109:     {
                    110:       low_limb = up[i];
                    111:       wp[i] = (high_limb << sh_1) | (low_limb >> sh_2);
                    112:       high_limb = low_limb;
                    113:     }
                    114:   wp[i] = high_limb << sh_1;
                    115:
                    116:   return retval;
                    117: }
                    118:
                    119: #ifndef CNT
                    120: #define CNT 4
                    121: #endif
                    122:
                    123: main (argc, argv)
                    124:      int argc;
                    125:      char **argv;
                    126: {
                    127:   mp_limb_t s1[SIZE];
                    128:   mp_limb_t dx[SIZE+2];
                    129:   mp_limb_t dy[SIZE+2];
                    130:   mp_limb_t cyx, cyy;
                    131:   int i;
                    132:   long t0, t;
                    133:   int test;
                    134:   int cnt = CNT;
                    135:   mp_size_t size;
                    136:
                    137:   for (test = 0; ; test++)
                    138:     {
                    139: #if TIMES == 1 && ! defined (PRINT)
                    140:       if (test % (SIZE > 10000 ? 1 : 10000 / SIZE) == 0)
                    141:        {
                    142:          printf ("\r%d", test);
                    143:          fflush (stdout);
                    144:        }
                    145: #endif
                    146:
                    147: #if TIMES == 1
                    148:       cnt = random () % (BITS_PER_MP_LIMB - 1) + 1;
                    149: #endif
                    150:
                    151: #ifdef RANDOM
                    152:       size = random () % SIZE + 1;
                    153: #else
                    154:       size = SIZE;
                    155: #endif
                    156:       mpn_random2 (s1, size);
                    157:
                    158:       dx[size+1] = 0x12345678;
                    159:       dy[size+1] = 0x12345678;
                    160:       dx[0] = 0x87654321;
                    161:       dy[0] = 0x87654321;
                    162:
                    163: #if TIMES != 1
                    164:       mpn_random (s1, size);
                    165:
                    166: #ifndef NOCHECK
                    167:       t0 = cputime();
                    168:       for (i = 0; i < TIMES; i++)
                    169:        refmpn_lshift (dx+1, s1, size, cnt);
                    170:       t = cputime() - t0;
                    171:       printf ("refmpn_lshift: %5ldms (%.2f cycles/limb)\n",
                    172:              t, ((double) t * CLOCK) / (OPS * 1000.0));
                    173: #endif
                    174:
                    175:       t0 = cputime();
                    176:       for (i = 0; i < TIMES; i++)
                    177:        mpn_lshift (dx+1, s1, size, cnt);
                    178:       t = cputime() - t0;
                    179:       printf ("mpn_lshift:    %5ldms (%.2f cycles/limb)\n",
                    180:              t, ((double) t * CLOCK) / (OPS * 1000.0));
                    181: #endif
                    182:
                    183: #ifndef NOCHECK
                    184:       mpn_random2 (s1, size);
                    185:
                    186: #ifdef PRINT
                    187:       printf ("%-*d ", (int) (2 * sizeof(mp_limb_t)), cnt); mpn_print (s1, size);
                    188: #endif
                    189:
                    190:       /* Put garbage in the destination.  */
                    191:       for (i = 0; i < size; i++)
                    192:        {
                    193:          dx[i+1] = 0xdead;
                    194:          dy[i+1] = 0xbeef;
                    195:        }
                    196:
                    197:       cyx = refmpn_lshift (dx+1, s1, size, cnt);
                    198:       cyy = mpn_lshift (dy+1, s1, size, cnt);
                    199: #ifdef PRINT
                    200:       printf ("%*lX ", (int) (2 * sizeof(mp_limb_t)), cyx);
                    201:       mpn_print (dx+1, size);
                    202:       printf ("%*lX ", (int) (2 * sizeof(mp_limb_t)), cyy);
                    203:       mpn_print (dy+1, size);
                    204: #endif
                    205:       if (cyx != cyy || mpn_cmp (dx, dy, size+2) != 0
                    206:          || dx[0] != 0x87654321 || dx[size+1] != 0x12345678)
                    207:        {
                    208: #ifndef PRINT
                    209:          printf ("%*lX ", (int) (2 * sizeof(mp_limb_t)), cyx);
                    210:          mpn_print (dx+1, size);
                    211:          printf ("%*lX ", (int) (2 * sizeof(mp_limb_t)), cyy);
                    212:          mpn_print (dy+1, size);
                    213: #endif
                    214:          printf ("\n");
                    215:          if (dy[0] != 0x87654321)
                    216:            printf ("clobbered at low end\n");
                    217:          if (dy[size+1] != 0x12345678)
                    218:            printf ("clobbered at high end\n");
                    219:          printf ("TEST NUMBER %u\n", test);
                    220:          abort();
                    221:        }
                    222: #endif
                    223:     }
                    224: }
                    225:
                    226: mpn_print (mp_ptr p, mp_size_t size)
                    227: {
                    228:   mp_size_t i;
                    229:
                    230:   for (i = size - 1; i >= 0; i--)
                    231:     {
                    232: #ifdef _LONG_LONG_LIMB
                    233:       printf ("%0*lX%0*lX", (int) (sizeof(mp_limb_t)),
                    234:              (unsigned long) (p[i] >> (BITS_PER_MP_LIMB/2)),
                    235:               (int) (sizeof(mp_limb_t)), (unsigned long) (p[i]));
                    236: #else
                    237:       printf ("%0*lX", (int) (2 * sizeof(mp_limb_t)), p[i]);
                    238: #endif
                    239: #ifdef SPACE
                    240:       if (i != 0)
                    241:        printf (" ");
                    242: #endif
                    243:     }
                    244:   puts ("");
                    245: }

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