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Fix use of wrong struct i387_xsave field in i387_cache_to_xsave
[thirdparty/binutils-gdb.git] / gdb / gdbserver / i387-fp.c
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58caa3dc 1/* i387-specific utility functions, for the remote server for GDB.
32d0add0 2 Copyright (C) 2000-2015 Free Software Foundation, Inc.
58caa3dc
DJ
3
4 This file is part of GDB.
5
6 This program is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
a9762ec7 8 the Free Software Foundation; either version 3 of the License, or
58caa3dc
DJ
9 (at your option) any later version.
10
11 This program is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
15
16 You should have received a copy of the GNU General Public License
a9762ec7 17 along with this program. If not, see <http://www.gnu.org/licenses/>. */
58caa3dc
DJ
18
19#include "server.h"
0d62e5e8 20#include "i387-fp.h"
df7e5265 21#include "x86-xstate.h"
58caa3dc 22
a196ebeb
WT
23static const int num_mpx_bnd_registers = 4;
24static const int num_mpx_cfg_registers = 2;
01f9f808
MS
25static const int num_avx512_k_registers = 8;
26static const int num_avx512_zmmh_low_registers = 16;
27static const int num_avx512_zmmh_high_registers = 16;
28static const int num_avx512_ymmh_registers = 16;
29static const int num_avx512_xmm_registers = 16;
a196ebeb 30
58caa3dc
DJ
31/* Note: These functions preserve the reserved bits in control registers.
32 However, gdbserver promptly throws away that information. */
33
34/* These structs should have the proper sizes and alignment on both
35 i386 and x86-64 machines. */
36
37struct i387_fsave {
38 /* All these are only sixteen bits, plus padding, except for fop (which
39 is only eleven bits), and fooff / fioff (which are 32 bits each). */
0c2ead7e
DJ
40 unsigned short fctrl;
41 unsigned short pad1;
42 unsigned short fstat;
43 unsigned short pad2;
44 unsigned short ftag;
45 unsigned short pad3;
58caa3dc
DJ
46 unsigned int fioff;
47 unsigned short fiseg;
48 unsigned short fop;
49 unsigned int fooff;
0c2ead7e
DJ
50 unsigned short foseg;
51 unsigned short pad4;
58caa3dc
DJ
52
53 /* Space for eight 80-bit FP values. */
f450004a 54 unsigned char st_space[80];
58caa3dc
DJ
55};
56
57struct i387_fxsave {
58 /* All these are only sixteen bits, plus padding, except for fop (which
59 is only eleven bits), and fooff / fioff (which are 32 bits each). */
60 unsigned short fctrl;
61 unsigned short fstat;
62 unsigned short ftag;
63 unsigned short fop;
64 unsigned int fioff;
0c2ead7e
DJ
65 unsigned short fiseg;
66 unsigned short pad1;
58caa3dc 67 unsigned int fooff;
0c2ead7e
DJ
68 unsigned short foseg;
69 unsigned short pad12;
58caa3dc
DJ
70
71 unsigned int mxcsr;
0c2ead7e 72 unsigned int pad3;
58caa3dc
DJ
73
74 /* Space for eight 80-bit FP values in 128-bit spaces. */
f450004a 75 unsigned char st_space[128];
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DJ
76
77 /* Space for eight 128-bit XMM values, or 16 on x86-64. */
f450004a 78 unsigned char xmm_space[256];
58caa3dc
DJ
79};
80
1570b33e
L
81struct i387_xsave {
82 /* All these are only sixteen bits, plus padding, except for fop (which
83 is only eleven bits), and fooff / fioff (which are 32 bits each). */
84 unsigned short fctrl;
85 unsigned short fstat;
86 unsigned short ftag;
87 unsigned short fop;
88 unsigned int fioff;
89 unsigned short fiseg;
90 unsigned short pad1;
91 unsigned int fooff;
92 unsigned short foseg;
93 unsigned short pad12;
94
95 unsigned int mxcsr;
96 unsigned int mxcsr_mask;
97
98 /* Space for eight 80-bit FP values in 128-bit spaces. */
99 unsigned char st_space[128];
100
101 /* Space for eight 128-bit XMM values, or 16 on x86-64. */
102 unsigned char xmm_space[256];
103
104 unsigned char reserved1[48];
105
106 /* The extended control register 0 (the XFEATURE_ENABLED_MASK
107 register). */
108 unsigned long long xcr0;
109
110 unsigned char reserved2[40];
111
112 /* The XSTATE_BV bit vector. */
113 unsigned long long xstate_bv;
114
115 unsigned char reserved3[56];
116
117 /* Space for eight upper 128-bit YMM values, or 16 on x86-64. */
118 unsigned char ymmh_space[256];
a196ebeb
WT
119
120 unsigned char reserved4[128];
121
122 /* Space for 4 bound registers values of 128 bits. */
123 unsigned char mpx_bnd_space[64];
124
125 /* Space for 2 MPX configuration registers of 64 bits
126 plus reserved space. */
127 unsigned char mpx_cfg_space[16];
01f9f808
MS
128
129 unsigned char reserved5[48];
130
131 /* Space for 8 OpMask register values of 64 bits. */
132 unsigned char k_space[64];
133
134 /* Space for 16 256-bit zmm0-15. */
135 unsigned char zmmh_low_space[512];
136
137 /* Space for 16 512-bit zmm16-31 values. */
138 unsigned char zmmh_high_space[1024];
1570b33e
L
139};
140
58caa3dc 141void
442ea881 142i387_cache_to_fsave (struct regcache *regcache, void *buf)
58caa3dc
DJ
143{
144 struct i387_fsave *fp = (struct i387_fsave *) buf;
145 int i;
3aee8918 146 int st0_regnum = find_regno (regcache->tdesc, "st0");
58caa3dc
DJ
147 unsigned long val, val2;
148
149 for (i = 0; i < 8; i++)
442ea881
PA
150 collect_register (regcache, i + st0_regnum,
151 ((char *) &fp->st_space[0]) + i * 10);
58caa3dc 152
442ea881
PA
153 collect_register_by_name (regcache, "fioff", &fp->fioff);
154 collect_register_by_name (regcache, "fooff", &fp->fooff);
58caa3dc
DJ
155
156 /* This one's 11 bits... */
442ea881 157 collect_register_by_name (regcache, "fop", &val2);
58caa3dc
DJ
158 fp->fop = (val2 & 0x7FF) | (fp->fop & 0xF800);
159
160 /* Some registers are 16-bit. */
442ea881 161 collect_register_by_name (regcache, "fctrl", &val);
0c2ead7e 162 fp->fctrl = val;
58caa3dc 163
442ea881 164 collect_register_by_name (regcache, "fstat", &val);
58caa3dc 165 val &= 0xFFFF;
0c2ead7e 166 fp->fstat = val;
58caa3dc 167
442ea881 168 collect_register_by_name (regcache, "ftag", &val);
58caa3dc 169 val &= 0xFFFF;
0c2ead7e 170 fp->ftag = val;
58caa3dc 171
442ea881 172 collect_register_by_name (regcache, "fiseg", &val);
58caa3dc 173 val &= 0xFFFF;
0c2ead7e 174 fp->fiseg = val;
58caa3dc 175
442ea881 176 collect_register_by_name (regcache, "foseg", &val);
58caa3dc 177 val &= 0xFFFF;
0c2ead7e 178 fp->foseg = val;
58caa3dc
DJ
179}
180
181void
442ea881 182i387_fsave_to_cache (struct regcache *regcache, const void *buf)
58caa3dc
DJ
183{
184 struct i387_fsave *fp = (struct i387_fsave *) buf;
185 int i;
3aee8918 186 int st0_regnum = find_regno (regcache->tdesc, "st0");
58caa3dc
DJ
187 unsigned long val;
188
189 for (i = 0; i < 8; i++)
442ea881
PA
190 supply_register (regcache, i + st0_regnum,
191 ((char *) &fp->st_space[0]) + i * 10);
58caa3dc 192
442ea881
PA
193 supply_register_by_name (regcache, "fioff", &fp->fioff);
194 supply_register_by_name (regcache, "fooff", &fp->fooff);
1b3f6016 195
58caa3dc
DJ
196 /* Some registers are 16-bit. */
197 val = fp->fctrl & 0xFFFF;
442ea881 198 supply_register_by_name (regcache, "fctrl", &val);
58caa3dc
DJ
199
200 val = fp->fstat & 0xFFFF;
442ea881 201 supply_register_by_name (regcache, "fstat", &val);
58caa3dc
DJ
202
203 val = fp->ftag & 0xFFFF;
442ea881 204 supply_register_by_name (regcache, "ftag", &val);
58caa3dc
DJ
205
206 val = fp->fiseg & 0xFFFF;
442ea881 207 supply_register_by_name (regcache, "fiseg", &val);
58caa3dc
DJ
208
209 val = fp->foseg & 0xFFFF;
442ea881 210 supply_register_by_name (regcache, "foseg", &val);
58caa3dc 211
0c2ead7e 212 /* fop has only 11 valid bits. */
58caa3dc 213 val = (fp->fop) & 0x7FF;
442ea881 214 supply_register_by_name (regcache, "fop", &val);
58caa3dc
DJ
215}
216
217void
442ea881 218i387_cache_to_fxsave (struct regcache *regcache, void *buf)
58caa3dc
DJ
219{
220 struct i387_fxsave *fp = (struct i387_fxsave *) buf;
221 int i;
3aee8918
PA
222 int st0_regnum = find_regno (regcache->tdesc, "st0");
223 int xmm0_regnum = find_regno (regcache->tdesc, "xmm0");
58caa3dc 224 unsigned long val, val2;
3aee8918
PA
225 /* Amd64 has 16 xmm regs; I386 has 8 xmm regs. */
226 int num_xmm_registers = register_size (regcache->tdesc, 0) == 8 ? 16 : 8;
58caa3dc
DJ
227
228 for (i = 0; i < 8; i++)
442ea881
PA
229 collect_register (regcache, i + st0_regnum,
230 ((char *) &fp->st_space[0]) + i * 16);
58caa3dc 231 for (i = 0; i < num_xmm_registers; i++)
442ea881
PA
232 collect_register (regcache, i + xmm0_regnum,
233 ((char *) &fp->xmm_space[0]) + i * 16);
58caa3dc 234
442ea881
PA
235 collect_register_by_name (regcache, "fioff", &fp->fioff);
236 collect_register_by_name (regcache, "fooff", &fp->fooff);
237 collect_register_by_name (regcache, "mxcsr", &fp->mxcsr);
1b3f6016 238
58caa3dc 239 /* This one's 11 bits... */
442ea881 240 collect_register_by_name (regcache, "fop", &val2);
58caa3dc
DJ
241 fp->fop = (val2 & 0x7FF) | (fp->fop & 0xF800);
242
243 /* Some registers are 16-bit. */
442ea881 244 collect_register_by_name (regcache, "fctrl", &val);
0c2ead7e 245 fp->fctrl = val;
58caa3dc 246
442ea881 247 collect_register_by_name (regcache, "fstat", &val);
0c2ead7e 248 fp->fstat = val;
58caa3dc
DJ
249
250 /* Convert to the simplifed tag form stored in fxsave data. */
442ea881 251 collect_register_by_name (regcache, "ftag", &val);
58caa3dc 252 val &= 0xFFFF;
73725ff3 253 val2 = 0;
58caa3dc
DJ
254 for (i = 7; i >= 0; i--)
255 {
256 int tag = (val >> (i * 2)) & 3;
257
258 if (tag != 3)
259 val2 |= (1 << i);
260 }
0c2ead7e 261 fp->ftag = val2;
58caa3dc 262
442ea881 263 collect_register_by_name (regcache, "fiseg", &val);
0c2ead7e 264 fp->fiseg = val;
58caa3dc 265
442ea881 266 collect_register_by_name (regcache, "foseg", &val);
0c2ead7e 267 fp->foseg = val;
58caa3dc
DJ
268}
269
1570b33e
L
270void
271i387_cache_to_xsave (struct regcache *regcache, void *buf)
272{
273 struct i387_xsave *fp = (struct i387_xsave *) buf;
274 int i;
275 unsigned long val, val2;
276 unsigned int clear_bv;
277 unsigned long long xstate_bv = 0;
01f9f808 278 char raw[64];
1570b33e 279 char *p;
3aee8918
PA
280 /* Amd64 has 16 xmm regs; I386 has 8 xmm regs. */
281 int num_xmm_registers = register_size (regcache->tdesc, 0) == 8 ? 16 : 8;
1570b33e
L
282
283 /* The supported bits in `xstat_bv' are 1 byte. Clear part in
284 vector registers if its bit in xstat_bv is zero. */
285 clear_bv = (~fp->xstate_bv) & x86_xcr0;
286
287 /* Clear part in x87 and vector registers if its bit in xstat_bv is
288 zero. */
289 if (clear_bv)
290 {
df7e5265 291 if ((clear_bv & X86_XSTATE_X87))
1570b33e
L
292 for (i = 0; i < 8; i++)
293 memset (((char *) &fp->st_space[0]) + i * 16, 0, 10);
294
df7e5265 295 if ((clear_bv & X86_XSTATE_SSE))
1570b33e
L
296 for (i = 0; i < num_xmm_registers; i++)
297 memset (((char *) &fp->xmm_space[0]) + i * 16, 0, 16);
298
df7e5265 299 if ((clear_bv & X86_XSTATE_AVX))
1570b33e
L
300 for (i = 0; i < num_xmm_registers; i++)
301 memset (((char *) &fp->ymmh_space[0]) + i * 16, 0, 16);
a196ebeb 302
df7e5265 303 if ((clear_bv & X86_XSTATE_BNDREGS))
a196ebeb
WT
304 for (i = 0; i < num_mpx_bnd_registers; i++)
305 memset (((char *) &fp->mpx_bnd_space[0]) + i * 16, 0, 16);
306
df7e5265 307 if ((clear_bv & X86_XSTATE_BNDCFG))
a196ebeb
WT
308 for (i = 0; i < num_mpx_cfg_registers; i++)
309 memset (((char *) &fp->mpx_cfg_space[0]) + i * 8, 0, 8);
01f9f808 310
df7e5265 311 if ((clear_bv & X86_XSTATE_K))
01f9f808
MS
312 for (i = 0; i < num_avx512_k_registers; i++)
313 memset (((char *) &fp->k_space[0]) + i * 8, 0, 8);
314
df7e5265 315 if ((clear_bv & X86_XSTATE_ZMM_H))
01f9f808
MS
316 for (i = 0; i < num_avx512_zmmh_low_registers; i++)
317 memset (((char *) &fp->zmmh_low_space[0]) + i * 32, 0, 32);
318
df7e5265 319 if ((clear_bv & X86_XSTATE_ZMM))
01f9f808
MS
320 {
321 for (i = 0; i < num_avx512_zmmh_high_registers; i++)
322 memset (((char *) &fp->zmmh_low_space[0]) + 32 + i * 64, 0, 32);
323 for (i = 0; i < num_avx512_xmm_registers; i++)
324 memset (((char *) &fp->zmmh_high_space[0]) + i * 64, 0, 16);
325 for (i = 0; i < num_avx512_ymmh_registers; i++)
326 memset (((char *) &fp->zmmh_high_space[0]) + 16 + i * 64, 0, 16);
327 }
1570b33e
L
328 }
329
330 /* Check if any x87 registers are changed. */
df7e5265 331 if ((x86_xcr0 & X86_XSTATE_X87))
1570b33e 332 {
3aee8918 333 int st0_regnum = find_regno (regcache->tdesc, "st0");
1570b33e
L
334
335 for (i = 0; i < 8; i++)
336 {
337 collect_register (regcache, i + st0_regnum, raw);
338 p = ((char *) &fp->st_space[0]) + i * 16;
339 if (memcmp (raw, p, 10))
340 {
df7e5265 341 xstate_bv |= X86_XSTATE_X87;
1570b33e
L
342 memcpy (p, raw, 10);
343 }
344 }
345 }
346
347 /* Check if any SSE registers are changed. */
df7e5265 348 if ((x86_xcr0 & X86_XSTATE_SSE))
1570b33e 349 {
3aee8918 350 int xmm0_regnum = find_regno (regcache->tdesc, "xmm0");
1570b33e
L
351
352 for (i = 0; i < num_xmm_registers; i++)
353 {
354 collect_register (regcache, i + xmm0_regnum, raw);
355 p = ((char *) &fp->xmm_space[0]) + i * 16;
356 if (memcmp (raw, p, 16))
357 {
df7e5265 358 xstate_bv |= X86_XSTATE_SSE;
1570b33e
L
359 memcpy (p, raw, 16);
360 }
361 }
362 }
363
364 /* Check if any AVX registers are changed. */
df7e5265 365 if ((x86_xcr0 & X86_XSTATE_AVX))
1570b33e 366 {
3aee8918 367 int ymm0h_regnum = find_regno (regcache->tdesc, "ymm0h");
1570b33e
L
368
369 for (i = 0; i < num_xmm_registers; i++)
370 {
371 collect_register (regcache, i + ymm0h_regnum, raw);
372 p = ((char *) &fp->ymmh_space[0]) + i * 16;
373 if (memcmp (raw, p, 16))
374 {
df7e5265 375 xstate_bv |= X86_XSTATE_AVX;
1570b33e
L
376 memcpy (p, raw, 16);
377 }
378 }
379 }
380
a196ebeb 381 /* Check if any bound register has changed. */
df7e5265 382 if ((x86_xcr0 & X86_XSTATE_BNDREGS))
a196ebeb
WT
383 {
384 int bnd0r_regnum = find_regno (regcache->tdesc, "bnd0raw");
385
386 for (i = 0; i < num_mpx_bnd_registers; i++)
387 {
388 collect_register (regcache, i + bnd0r_regnum, raw);
389 p = ((char *) &fp->mpx_bnd_space[0]) + i * 16;
390 if (memcmp (raw, p, 16))
391 {
df7e5265 392 xstate_bv |= X86_XSTATE_BNDREGS;
a196ebeb
WT
393 memcpy (p, raw, 16);
394 }
395 }
396 }
397
398 /* Check if any status register has changed. */
df7e5265 399 if ((x86_xcr0 & X86_XSTATE_BNDCFG))
a196ebeb
WT
400 {
401 int bndcfg_regnum = find_regno (regcache->tdesc, "bndcfgu");
402
403 for (i = 0; i < num_mpx_cfg_registers; i++)
404 {
405 collect_register (regcache, i + bndcfg_regnum, raw);
406 p = ((char *) &fp->mpx_cfg_space[0]) + i * 8;
407 if (memcmp (raw, p, 8))
408 {
df7e5265 409 xstate_bv |= X86_XSTATE_BNDCFG;
a196ebeb
WT
410 memcpy (p, raw, 8);
411 }
412 }
413 }
414
01f9f808 415 /* Check if any K registers are changed. */
df7e5265 416 if ((x86_xcr0 & X86_XSTATE_K))
01f9f808
MS
417 {
418 int k0_regnum = find_regno (regcache->tdesc, "k0");
419
420 for (i = 0; i < num_avx512_k_registers; i++)
421 {
422 collect_register (regcache, i + k0_regnum, raw);
423 p = ((char *) &fp->k_space[0]) + i * 8;
424 if (memcmp (raw, p, 8) != 0)
425 {
df7e5265 426 xstate_bv |= X86_XSTATE_K;
01f9f808
MS
427 memcpy (p, raw, 8);
428 }
429 }
430 }
431
432 /* Check if any of ZMM0H-ZMM15H registers are changed. */
df7e5265 433 if ((x86_xcr0 & X86_XSTATE_ZMM_H))
01f9f808
MS
434 {
435 int zmm0h_regnum = find_regno (regcache->tdesc, "zmm0h");
436
437 for (i = 0; i < num_avx512_zmmh_low_registers; i++)
438 {
439 collect_register (regcache, i + zmm0h_regnum, raw);
440 p = ((char *) &fp->zmmh_low_space[0]) + i * 32;
441 if (memcmp (raw, p, 32) != 0)
442 {
df7e5265 443 xstate_bv |= X86_XSTATE_ZMM_H;
01f9f808
MS
444 memcpy (p, raw, 32);
445 }
446 }
447 }
448
449 /* Check if any of ZMM16H-ZMM31H registers are changed. */
df7e5265 450 if ((x86_xcr0 & X86_XSTATE_ZMM))
01f9f808
MS
451 {
452 int zmm16h_regnum = find_regno (regcache->tdesc, "zmm16h");
453
454 for (i = 0; i < num_avx512_zmmh_high_registers; i++)
455 {
456 collect_register (regcache, i + zmm16h_regnum, raw);
3368c1e5 457 p = ((char *) &fp->zmmh_high_space[0]) + 32 + i * 64;
01f9f808
MS
458 if (memcmp (raw, p, 32) != 0)
459 {
df7e5265 460 xstate_bv |= X86_XSTATE_ZMM;
01f9f808
MS
461 memcpy (p, raw, 32);
462 }
463 }
464 }
465
466 /* Check if any XMM_AVX512 registers are changed. */
df7e5265 467 if ((x86_xcr0 & X86_XSTATE_ZMM))
01f9f808
MS
468 {
469 int xmm_avx512_regnum = find_regno (regcache->tdesc, "xmm16");
470
471 for (i = 0; i < num_avx512_xmm_registers; i++)
472 {
473 collect_register (regcache, i + xmm_avx512_regnum, raw);
474 p = ((char *) &fp->zmmh_high_space[0]) + i * 64;
475 if (memcmp (raw, p, 16) != 0)
476 {
df7e5265 477 xstate_bv |= X86_XSTATE_ZMM;
01f9f808
MS
478 memcpy (p, raw, 16);
479 }
480 }
481 }
482
483 /* Check if any YMMH_AVX512 registers are changed. */
df7e5265 484 if ((x86_xcr0 & X86_XSTATE_ZMM))
01f9f808
MS
485 {
486 int ymmh_avx512_regnum = find_regno (regcache->tdesc, "ymm16h");
487
488 for (i = 0; i < num_avx512_ymmh_registers; i++)
489 {
490 collect_register (regcache, i + ymmh_avx512_regnum, raw);
491 p = ((char *) &fp->zmmh_high_space[0]) + 16 + i * 64;
492 if (memcmp (raw, p, 16) != 0)
493 {
df7e5265 494 xstate_bv |= X86_XSTATE_ZMM;
01f9f808
MS
495 memcpy (p, raw, 16);
496 }
497 }
498 }
499
1570b33e
L
500 /* Update the corresponding bits in xstate_bv if any SSE/AVX
501 registers are changed. */
502 fp->xstate_bv |= xstate_bv;
503
504 collect_register_by_name (regcache, "fioff", &fp->fioff);
505 collect_register_by_name (regcache, "fooff", &fp->fooff);
506 collect_register_by_name (regcache, "mxcsr", &fp->mxcsr);
507
508 /* This one's 11 bits... */
509 collect_register_by_name (regcache, "fop", &val2);
510 fp->fop = (val2 & 0x7FF) | (fp->fop & 0xF800);
511
512 /* Some registers are 16-bit. */
513 collect_register_by_name (regcache, "fctrl", &val);
514 fp->fctrl = val;
515
516 collect_register_by_name (regcache, "fstat", &val);
517 fp->fstat = val;
518
519 /* Convert to the simplifed tag form stored in fxsave data. */
520 collect_register_by_name (regcache, "ftag", &val);
521 val &= 0xFFFF;
522 val2 = 0;
523 for (i = 7; i >= 0; i--)
524 {
525 int tag = (val >> (i * 2)) & 3;
526
527 if (tag != 3)
528 val2 |= (1 << i);
529 }
530 fp->ftag = val2;
531
532 collect_register_by_name (regcache, "fiseg", &val);
533 fp->fiseg = val;
534
535 collect_register_by_name (regcache, "foseg", &val);
536 fp->foseg = val;
537}
538
58caa3dc
DJ
539static int
540i387_ftag (struct i387_fxsave *fp, int regno)
541{
542 unsigned char *raw = &fp->st_space[regno * 16];
543 unsigned int exponent;
544 unsigned long fraction[2];
545 int integer;
546
547 integer = raw[7] & 0x80;
548 exponent = (((raw[9] & 0x7f) << 8) | raw[8]);
549 fraction[0] = ((raw[3] << 24) | (raw[2] << 16) | (raw[1] << 8) | raw[0]);
550 fraction[1] = (((raw[7] & 0x7f) << 24) | (raw[6] << 16)
1b3f6016 551 | (raw[5] << 8) | raw[4]);
58caa3dc
DJ
552
553 if (exponent == 0x7fff)
554 {
555 /* Special. */
556 return (2);
557 }
558 else if (exponent == 0x0000)
559 {
560 if (fraction[0] == 0x0000 && fraction[1] == 0x0000 && !integer)
1b3f6016
PA
561 {
562 /* Zero. */
563 return (1);
564 }
58caa3dc 565 else
1b3f6016
PA
566 {
567 /* Special. */
568 return (2);
569 }
58caa3dc
DJ
570 }
571 else
572 {
573 if (integer)
1b3f6016
PA
574 {
575 /* Valid. */
576 return (0);
577 }
58caa3dc 578 else
1b3f6016
PA
579 {
580 /* Special. */
581 return (2);
582 }
58caa3dc
DJ
583 }
584}
585
586void
442ea881 587i387_fxsave_to_cache (struct regcache *regcache, const void *buf)
58caa3dc
DJ
588{
589 struct i387_fxsave *fp = (struct i387_fxsave *) buf;
590 int i, top;
3aee8918
PA
591 int st0_regnum = find_regno (regcache->tdesc, "st0");
592 int xmm0_regnum = find_regno (regcache->tdesc, "xmm0");
58caa3dc 593 unsigned long val;
3aee8918
PA
594 /* Amd64 has 16 xmm regs; I386 has 8 xmm regs. */
595 int num_xmm_registers = register_size (regcache->tdesc, 0) == 8 ? 16 : 8;
58caa3dc
DJ
596
597 for (i = 0; i < 8; i++)
442ea881
PA
598 supply_register (regcache, i + st0_regnum,
599 ((char *) &fp->st_space[0]) + i * 16);
58caa3dc 600 for (i = 0; i < num_xmm_registers; i++)
442ea881
PA
601 supply_register (regcache, i + xmm0_regnum,
602 ((char *) &fp->xmm_space[0]) + i * 16);
58caa3dc 603
442ea881
PA
604 supply_register_by_name (regcache, "fioff", &fp->fioff);
605 supply_register_by_name (regcache, "fooff", &fp->fooff);
606 supply_register_by_name (regcache, "mxcsr", &fp->mxcsr);
1b3f6016 607
58caa3dc
DJ
608 /* Some registers are 16-bit. */
609 val = fp->fctrl & 0xFFFF;
442ea881 610 supply_register_by_name (regcache, "fctrl", &val);
58caa3dc
DJ
611
612 val = fp->fstat & 0xFFFF;
442ea881 613 supply_register_by_name (regcache, "fstat", &val);
58caa3dc
DJ
614
615 /* Generate the form of ftag data that GDB expects. */
616 top = (fp->fstat >> 11) & 0x7;
617 val = 0;
618 for (i = 7; i >= 0; i--)
619 {
620 int tag;
73725ff3 621 if (fp->ftag & (1 << i))
58caa3dc
DJ
622 tag = i387_ftag (fp, (i + 8 - top) % 8);
623 else
624 tag = 3;
625 val |= tag << (2 * i);
626 }
442ea881 627 supply_register_by_name (regcache, "ftag", &val);
58caa3dc
DJ
628
629 val = fp->fiseg & 0xFFFF;
442ea881 630 supply_register_by_name (regcache, "fiseg", &val);
58caa3dc
DJ
631
632 val = fp->foseg & 0xFFFF;
442ea881 633 supply_register_by_name (regcache, "foseg", &val);
58caa3dc
DJ
634
635 val = (fp->fop) & 0x7FF;
442ea881 636 supply_register_by_name (regcache, "fop", &val);
58caa3dc 637}
1570b33e
L
638
639void
640i387_xsave_to_cache (struct regcache *regcache, const void *buf)
641{
642 struct i387_xsave *fp = (struct i387_xsave *) buf;
643 struct i387_fxsave *fxp = (struct i387_fxsave *) buf;
644 int i, top;
645 unsigned long val;
646 unsigned int clear_bv;
85724a0e 647 gdb_byte *p;
3aee8918
PA
648 /* Amd64 has 16 xmm regs; I386 has 8 xmm regs. */
649 int num_xmm_registers = register_size (regcache->tdesc, 0) == 8 ? 16 : 8;
1570b33e
L
650
651 /* The supported bits in `xstat_bv' are 1 byte. Clear part in
652 vector registers if its bit in xstat_bv is zero. */
653 clear_bv = (~fp->xstate_bv) & x86_xcr0;
654
655 /* Check if any x87 registers are changed. */
df7e5265 656 if ((x86_xcr0 & X86_XSTATE_X87) != 0)
1570b33e 657 {
3aee8918 658 int st0_regnum = find_regno (regcache->tdesc, "st0");
1570b33e 659
df7e5265 660 if ((clear_bv & X86_XSTATE_X87) != 0)
85724a0e
PA
661 {
662 for (i = 0; i < 8; i++)
1c79eb8a 663 supply_register_zeroed (regcache, i + st0_regnum);
85724a0e 664 }
1570b33e 665 else
1570b33e 666 {
85724a0e
PA
667 p = (gdb_byte *) &fp->st_space[0];
668 for (i = 0; i < 8; i++)
669 supply_register (regcache, i + st0_regnum, p + i * 16);
1570b33e
L
670 }
671 }
672
df7e5265 673 if ((x86_xcr0 & X86_XSTATE_SSE) != 0)
1570b33e 674 {
3aee8918 675 int xmm0_regnum = find_regno (regcache->tdesc, "xmm0");
1570b33e 676
df7e5265 677 if ((clear_bv & X86_XSTATE_SSE))
85724a0e
PA
678 {
679 for (i = 0; i < num_xmm_registers; i++)
1c79eb8a 680 supply_register_zeroed (regcache, i + xmm0_regnum);
85724a0e 681 }
1570b33e 682 else
1570b33e 683 {
85724a0e
PA
684 p = (gdb_byte *) &fp->xmm_space[0];
685 for (i = 0; i < num_xmm_registers; i++)
686 supply_register (regcache, i + xmm0_regnum, p + i * 16);
1570b33e
L
687 }
688 }
689
df7e5265 690 if ((x86_xcr0 & X86_XSTATE_AVX) != 0)
1570b33e 691 {
3aee8918 692 int ymm0h_regnum = find_regno (regcache->tdesc, "ymm0h");
1570b33e 693
df7e5265 694 if ((clear_bv & X86_XSTATE_AVX) != 0)
85724a0e
PA
695 {
696 for (i = 0; i < num_xmm_registers; i++)
1c79eb8a 697 supply_register_zeroed (regcache, i + ymm0h_regnum);
85724a0e 698 }
1570b33e 699 else
1570b33e 700 {
85724a0e
PA
701 p = (gdb_byte *) &fp->ymmh_space[0];
702 for (i = 0; i < num_xmm_registers; i++)
703 supply_register (regcache, i + ymm0h_regnum, p + i * 16);
1570b33e
L
704 }
705 }
706
df7e5265 707 if ((x86_xcr0 & X86_XSTATE_BNDREGS))
a196ebeb
WT
708 {
709 int bnd0r_regnum = find_regno (regcache->tdesc, "bnd0raw");
710
711
df7e5265 712 if ((clear_bv & X86_XSTATE_BNDREGS) != 0)
a196ebeb
WT
713 {
714 for (i = 0; i < num_mpx_bnd_registers; i++)
715 supply_register_zeroed (regcache, i + bnd0r_regnum);
716 }
717 else
718 {
719 p = (gdb_byte *) &fp->mpx_bnd_space[0];
720 for (i = 0; i < num_mpx_bnd_registers; i++)
721 supply_register (regcache, i + bnd0r_regnum, p + i * 16);
722 }
723
724 }
725
df7e5265 726 if ((x86_xcr0 & X86_XSTATE_BNDCFG))
a196ebeb
WT
727 {
728 int bndcfg_regnum = find_regno (regcache->tdesc, "bndcfgu");
729
df7e5265 730 if ((clear_bv & X86_XSTATE_BNDCFG) != 0)
a196ebeb
WT
731 {
732 for (i = 0; i < num_mpx_cfg_registers; i++)
733 supply_register_zeroed (regcache, i + bndcfg_regnum);
734 }
735 else
736 {
737 p = (gdb_byte *) &fp->mpx_cfg_space[0];
738 for (i = 0; i < num_mpx_cfg_registers; i++)
739 supply_register (regcache, i + bndcfg_regnum, p + i * 8);
740 }
741 }
742
df7e5265 743 if ((x86_xcr0 & X86_XSTATE_K) != 0)
01f9f808
MS
744 {
745 int k0_regnum = find_regno (regcache->tdesc, "k0");
746
df7e5265 747 if ((clear_bv & X86_XSTATE_K) != 0)
01f9f808
MS
748 {
749 for (i = 0; i < num_avx512_k_registers; i++)
750 supply_register_zeroed (regcache, i + k0_regnum);
751 }
752 else
753 {
754 p = (gdb_byte *) &fp->k_space[0];
755 for (i = 0; i < num_avx512_k_registers; i++)
756 supply_register (regcache, i + k0_regnum, p + i * 8);
757 }
758 }
759
df7e5265 760 if ((x86_xcr0 & X86_XSTATE_ZMM_H) != 0)
01f9f808
MS
761 {
762 int zmm0h_regnum = find_regno (regcache->tdesc, "zmm0h");
763
df7e5265 764 if ((clear_bv & X86_XSTATE_ZMM_H) != 0)
01f9f808
MS
765 {
766 for (i = 0; i < num_avx512_zmmh_low_registers; i++)
767 supply_register_zeroed (regcache, i + zmm0h_regnum);
768 }
769 else
770 {
771 p = (gdb_byte *) &fp->zmmh_low_space[0];
772 for (i = 0; i < num_avx512_zmmh_low_registers; i++)
773 supply_register (regcache, i + zmm0h_regnum, p + i * 32);
774 }
775 }
776
df7e5265 777 if ((x86_xcr0 & X86_XSTATE_ZMM) != 0)
01f9f808
MS
778 {
779 int zmm16h_regnum = find_regno (regcache->tdesc, "zmm16h");
780 int ymm16h_regnum = find_regno (regcache->tdesc, "ymm16h");
781 int xmm16_regnum = find_regno (regcache->tdesc, "xmm16");
782
df7e5265 783 if ((clear_bv & X86_XSTATE_ZMM) != 0)
01f9f808
MS
784 {
785 for (i = 0; i < num_avx512_zmmh_high_registers; i++)
786 supply_register_zeroed (regcache, i + zmm16h_regnum);
787 for (i = 0; i < num_avx512_ymmh_registers; i++)
788 supply_register_zeroed (regcache, i + ymm16h_regnum);
789 for (i = 0; i < num_avx512_xmm_registers; i++)
790 supply_register_zeroed (regcache, i + xmm16_regnum);
791 }
792 else
793 {
794 p = (gdb_byte *) &fp->zmmh_high_space[0];
795 for (i = 0; i < num_avx512_zmmh_high_registers; i++)
796 supply_register (regcache, i + zmm16h_regnum, p + 32 + i * 64);
797 for (i = 0; i < num_avx512_ymmh_registers; i++)
798 supply_register (regcache, i + ymm16h_regnum, p + 16 + i * 64);
799 for (i = 0; i < num_avx512_xmm_registers; i++)
800 supply_register (regcache, i + xmm16_regnum, p + i * 64);
801 }
802 }
803
1570b33e
L
804 supply_register_by_name (regcache, "fioff", &fp->fioff);
805 supply_register_by_name (regcache, "fooff", &fp->fooff);
806 supply_register_by_name (regcache, "mxcsr", &fp->mxcsr);
807
808 /* Some registers are 16-bit. */
809 val = fp->fctrl & 0xFFFF;
810 supply_register_by_name (regcache, "fctrl", &val);
811
812 val = fp->fstat & 0xFFFF;
813 supply_register_by_name (regcache, "fstat", &val);
814
815 /* Generate the form of ftag data that GDB expects. */
816 top = (fp->fstat >> 11) & 0x7;
817 val = 0;
818 for (i = 7; i >= 0; i--)
819 {
820 int tag;
821 if (fp->ftag & (1 << i))
822 tag = i387_ftag (fxp, (i + 8 - top) % 8);
823 else
824 tag = 3;
825 val |= tag << (2 * i);
826 }
827 supply_register_by_name (regcache, "ftag", &val);
828
829 val = fp->fiseg & 0xFFFF;
830 supply_register_by_name (regcache, "fiseg", &val);
831
832 val = fp->foseg & 0xFFFF;
833 supply_register_by_name (regcache, "foseg", &val);
834
835 val = (fp->fop) & 0x7FF;
836 supply_register_by_name (regcache, "fop", &val);
837}
838
839/* Default to SSE. */
df7e5265 840unsigned long long x86_xcr0 = X86_XSTATE_SSE_MASK;