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Commit | Line | Data |
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c906108c | 1 | /* Find a variable's value in memory, for GDB, the GNU debugger. |
1bac305b AC |
2 | |
3 | Copyright 1986, 1987, 1988, 1989, 1990, 1991, 1992, 1993, 1994, | |
4 | 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2003 Free Software | |
5 | Foundation, Inc. | |
c906108c | 6 | |
c5aa993b | 7 | This file is part of GDB. |
c906108c | 8 | |
c5aa993b JM |
9 | This program is free software; you can redistribute it and/or modify |
10 | it under the terms of the GNU General Public License as published by | |
11 | the Free Software Foundation; either version 2 of the License, or | |
12 | (at your option) any later version. | |
c906108c | 13 | |
c5aa993b JM |
14 | This program is distributed in the hope that it will be useful, |
15 | but WITHOUT ANY WARRANTY; without even the implied warranty of | |
16 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | |
17 | GNU General Public License for more details. | |
c906108c | 18 | |
c5aa993b JM |
19 | You should have received a copy of the GNU General Public License |
20 | along with this program; if not, write to the Free Software | |
21 | Foundation, Inc., 59 Temple Place - Suite 330, | |
22 | Boston, MA 02111-1307, USA. */ | |
c906108c SS |
23 | |
24 | #include "defs.h" | |
25 | #include "symtab.h" | |
26 | #include "gdbtypes.h" | |
27 | #include "frame.h" | |
28 | #include "value.h" | |
29 | #include "gdbcore.h" | |
30 | #include "inferior.h" | |
31 | #include "target.h" | |
32 | #include "gdb_string.h" | |
14e534aa | 33 | #include "gdb_assert.h" |
c906108c | 34 | #include "floatformat.h" |
c5aa993b | 35 | #include "symfile.h" /* for overlay functions */ |
4e052eda | 36 | #include "regcache.h" |
0406ec40 | 37 | #include "builtin-regs.h" |
fe898f56 | 38 | #include "block.h" |
c906108c | 39 | |
c906108c SS |
40 | /* Basic byte-swapping routines. GDB has needed these for a long time... |
41 | All extract a target-format integer at ADDR which is LEN bytes long. */ | |
42 | ||
43 | #if TARGET_CHAR_BIT != 8 || HOST_CHAR_BIT != 8 | |
44 | /* 8 bit characters are a pretty safe assumption these days, so we | |
45 | assume it throughout all these swapping routines. If we had to deal with | |
46 | 9 bit characters, we would need to make len be in bits and would have | |
47 | to re-write these routines... */ | |
c5aa993b | 48 | you lose |
c906108c SS |
49 | #endif |
50 | ||
a9ac8f51 | 51 | LONGEST |
37611a2b | 52 | extract_signed_integer (const void *addr, int len) |
c906108c SS |
53 | { |
54 | LONGEST retval; | |
37611a2b AC |
55 | const unsigned char *p; |
56 | const unsigned char *startaddr = addr; | |
57 | const unsigned char *endaddr = startaddr + len; | |
c906108c SS |
58 | |
59 | if (len > (int) sizeof (LONGEST)) | |
60 | error ("\ | |
61 | That operation is not available on integers of more than %d bytes.", | |
baa6f10b | 62 | (int) sizeof (LONGEST)); |
c906108c SS |
63 | |
64 | /* Start at the most significant end of the integer, and work towards | |
65 | the least significant. */ | |
d7449b42 | 66 | if (TARGET_BYTE_ORDER == BFD_ENDIAN_BIG) |
c906108c SS |
67 | { |
68 | p = startaddr; | |
69 | /* Do the sign extension once at the start. */ | |
c5aa993b | 70 | retval = ((LONGEST) * p ^ 0x80) - 0x80; |
c906108c SS |
71 | for (++p; p < endaddr; ++p) |
72 | retval = (retval << 8) | *p; | |
73 | } | |
74 | else | |
75 | { | |
76 | p = endaddr - 1; | |
77 | /* Do the sign extension once at the start. */ | |
c5aa993b | 78 | retval = ((LONGEST) * p ^ 0x80) - 0x80; |
c906108c SS |
79 | for (--p; p >= startaddr; --p) |
80 | retval = (retval << 8) | *p; | |
81 | } | |
82 | return retval; | |
83 | } | |
84 | ||
85 | ULONGEST | |
37611a2b | 86 | extract_unsigned_integer (const void *addr, int len) |
c906108c SS |
87 | { |
88 | ULONGEST retval; | |
37611a2b AC |
89 | const unsigned char *p; |
90 | const unsigned char *startaddr = addr; | |
91 | const unsigned char *endaddr = startaddr + len; | |
c906108c SS |
92 | |
93 | if (len > (int) sizeof (ULONGEST)) | |
94 | error ("\ | |
95 | That operation is not available on integers of more than %d bytes.", | |
baa6f10b | 96 | (int) sizeof (ULONGEST)); |
c906108c SS |
97 | |
98 | /* Start at the most significant end of the integer, and work towards | |
99 | the least significant. */ | |
100 | retval = 0; | |
d7449b42 | 101 | if (TARGET_BYTE_ORDER == BFD_ENDIAN_BIG) |
c906108c SS |
102 | { |
103 | for (p = startaddr; p < endaddr; ++p) | |
104 | retval = (retval << 8) | *p; | |
105 | } | |
106 | else | |
107 | { | |
108 | for (p = endaddr - 1; p >= startaddr; --p) | |
109 | retval = (retval << 8) | *p; | |
110 | } | |
111 | return retval; | |
112 | } | |
113 | ||
114 | /* Sometimes a long long unsigned integer can be extracted as a | |
115 | LONGEST value. This is done so that we can print these values | |
116 | better. If this integer can be converted to a LONGEST, this | |
117 | function returns 1 and sets *PVAL. Otherwise it returns 0. */ | |
118 | ||
119 | int | |
66140c26 | 120 | extract_long_unsigned_integer (const void *addr, int orig_len, LONGEST *pval) |
c906108c SS |
121 | { |
122 | char *p, *first_addr; | |
123 | int len; | |
124 | ||
125 | len = orig_len; | |
d7449b42 | 126 | if (TARGET_BYTE_ORDER == BFD_ENDIAN_BIG) |
c906108c SS |
127 | { |
128 | for (p = (char *) addr; | |
129 | len > (int) sizeof (LONGEST) && p < (char *) addr + orig_len; | |
130 | p++) | |
131 | { | |
132 | if (*p == 0) | |
133 | len--; | |
134 | else | |
135 | break; | |
136 | } | |
137 | first_addr = p; | |
138 | } | |
139 | else | |
140 | { | |
141 | first_addr = (char *) addr; | |
142 | for (p = (char *) addr + orig_len - 1; | |
143 | len > (int) sizeof (LONGEST) && p >= (char *) addr; | |
144 | p--) | |
145 | { | |
146 | if (*p == 0) | |
147 | len--; | |
148 | else | |
149 | break; | |
150 | } | |
151 | } | |
152 | ||
153 | if (len <= (int) sizeof (LONGEST)) | |
154 | { | |
155 | *pval = (LONGEST) extract_unsigned_integer (first_addr, | |
156 | sizeof (LONGEST)); | |
157 | return 1; | |
158 | } | |
159 | ||
160 | return 0; | |
161 | } | |
162 | ||
4478b372 JB |
163 | |
164 | /* Treat the LEN bytes at ADDR as a target-format address, and return | |
165 | that address. ADDR is a buffer in the GDB process, not in the | |
166 | inferior. | |
167 | ||
168 | This function should only be used by target-specific code. It | |
169 | assumes that a pointer has the same representation as that thing's | |
170 | address represented as an integer. Some machines use word | |
171 | addresses, or similarly munged things, for certain types of | |
172 | pointers, so that assumption doesn't hold everywhere. | |
173 | ||
174 | Common code should use extract_typed_address instead, or something | |
175 | else based on POINTER_TO_ADDRESS. */ | |
176 | ||
c906108c | 177 | CORE_ADDR |
66140c26 | 178 | extract_address (const void *addr, int len) |
c906108c SS |
179 | { |
180 | /* Assume a CORE_ADDR can fit in a LONGEST (for now). Not sure | |
181 | whether we want this to be true eventually. */ | |
c5aa993b | 182 | return (CORE_ADDR) extract_unsigned_integer (addr, len); |
c906108c SS |
183 | } |
184 | ||
4478b372 | 185 | |
4478b372 JB |
186 | /* Treat the bytes at BUF as a pointer of type TYPE, and return the |
187 | address it represents. */ | |
188 | CORE_ADDR | |
66140c26 | 189 | extract_typed_address (const void *buf, struct type *type) |
4478b372 JB |
190 | { |
191 | if (TYPE_CODE (type) != TYPE_CODE_PTR | |
192 | && TYPE_CODE (type) != TYPE_CODE_REF) | |
8e65ff28 AC |
193 | internal_error (__FILE__, __LINE__, |
194 | "extract_typed_address: " | |
4478b372 JB |
195 | "type is not a pointer or reference"); |
196 | ||
197 | return POINTER_TO_ADDRESS (type, buf); | |
198 | } | |
199 | ||
200 | ||
c906108c | 201 | void |
a9ac8f51 | 202 | store_signed_integer (void *addr, int len, LONGEST val) |
c906108c SS |
203 | { |
204 | unsigned char *p; | |
c5aa993b | 205 | unsigned char *startaddr = (unsigned char *) addr; |
c906108c SS |
206 | unsigned char *endaddr = startaddr + len; |
207 | ||
208 | /* Start at the least significant end of the integer, and work towards | |
209 | the most significant. */ | |
d7449b42 | 210 | if (TARGET_BYTE_ORDER == BFD_ENDIAN_BIG) |
c906108c SS |
211 | { |
212 | for (p = endaddr - 1; p >= startaddr; --p) | |
213 | { | |
214 | *p = val & 0xff; | |
215 | val >>= 8; | |
216 | } | |
217 | } | |
218 | else | |
219 | { | |
220 | for (p = startaddr; p < endaddr; ++p) | |
221 | { | |
222 | *p = val & 0xff; | |
223 | val >>= 8; | |
224 | } | |
225 | } | |
226 | } | |
227 | ||
228 | void | |
a9ac8f51 | 229 | store_unsigned_integer (void *addr, int len, ULONGEST val) |
c906108c SS |
230 | { |
231 | unsigned char *p; | |
c5aa993b | 232 | unsigned char *startaddr = (unsigned char *) addr; |
c906108c SS |
233 | unsigned char *endaddr = startaddr + len; |
234 | ||
235 | /* Start at the least significant end of the integer, and work towards | |
236 | the most significant. */ | |
d7449b42 | 237 | if (TARGET_BYTE_ORDER == BFD_ENDIAN_BIG) |
c906108c SS |
238 | { |
239 | for (p = endaddr - 1; p >= startaddr; --p) | |
240 | { | |
241 | *p = val & 0xff; | |
242 | val >>= 8; | |
243 | } | |
244 | } | |
245 | else | |
246 | { | |
247 | for (p = startaddr; p < endaddr; ++p) | |
248 | { | |
249 | *p = val & 0xff; | |
250 | val >>= 8; | |
251 | } | |
252 | } | |
253 | } | |
254 | ||
4478b372 JB |
255 | /* Store the address VAL as a LEN-byte value in target byte order at |
256 | ADDR. ADDR is a buffer in the GDB process, not in the inferior. | |
257 | ||
258 | This function should only be used by target-specific code. It | |
259 | assumes that a pointer has the same representation as that thing's | |
260 | address represented as an integer. Some machines use word | |
261 | addresses, or similarly munged things, for certain types of | |
262 | pointers, so that assumption doesn't hold everywhere. | |
263 | ||
264 | Common code should use store_typed_address instead, or something else | |
265 | based on ADDRESS_TO_POINTER. */ | |
c906108c | 266 | void |
a9ac8f51 | 267 | store_address (void *addr, int len, LONGEST val) |
c906108c | 268 | { |
c906108c SS |
269 | store_unsigned_integer (addr, len, val); |
270 | } | |
4478b372 JB |
271 | |
272 | ||
4478b372 JB |
273 | /* Store the address ADDR as a pointer of type TYPE at BUF, in target |
274 | form. */ | |
275 | void | |
276 | store_typed_address (void *buf, struct type *type, CORE_ADDR addr) | |
277 | { | |
278 | if (TYPE_CODE (type) != TYPE_CODE_PTR | |
279 | && TYPE_CODE (type) != TYPE_CODE_REF) | |
8e65ff28 AC |
280 | internal_error (__FILE__, __LINE__, |
281 | "store_typed_address: " | |
4478b372 JB |
282 | "type is not a pointer or reference"); |
283 | ||
284 | ADDRESS_TO_POINTER (type, buf, addr); | |
285 | } | |
286 | ||
287 | ||
288 | ||
376c9600 AC |
289 | /* Return a `value' with the contents of (virtual or cooked) register |
290 | REGNUM as found in the specified FRAME. The register's type is | |
7b83296f | 291 | determined by register_type(). |
c906108c | 292 | |
376c9600 AC |
293 | NOTE: returns NULL if register value is not available. Caller will |
294 | check return value or die! */ | |
c906108c | 295 | |
3d6d86c6 | 296 | struct value * |
376c9600 | 297 | value_of_register (int regnum, struct frame_info *frame) |
c906108c SS |
298 | { |
299 | CORE_ADDR addr; | |
300 | int optim; | |
3d6d86c6 | 301 | struct value *reg_val; |
e6cbd02a | 302 | char *raw_buffer = (char*) alloca (MAX_REGISTER_RAW_SIZE); |
c906108c SS |
303 | enum lval_type lval; |
304 | ||
0406ec40 AC |
305 | /* Builtin registers lie completly outside of the range of normal |
306 | registers. Catch them early so that the target never sees them. */ | |
307 | if (regnum >= NUM_REGS + NUM_PSEUDO_REGS) | |
6e7f8b9c | 308 | return value_of_builtin_reg (regnum, deprecated_selected_frame); |
0406ec40 | 309 | |
c906108c | 310 | get_saved_register (raw_buffer, &optim, &addr, |
376c9600 | 311 | frame, regnum, &lval); |
c906108c | 312 | |
c97dcfc7 AC |
313 | /* FIXME: cagney/2002-05-15: This test is just bogus. |
314 | ||
315 | It indicates that the target failed to supply a value for a | |
316 | register because it was "not available" at this time. Problem | |
317 | is, the target still has the register and so get saved_register() | |
318 | may be returning a value saved on the stack. */ | |
319 | ||
32178cab | 320 | if (register_cached (regnum) < 0) |
c5aa993b | 321 | return NULL; /* register value not available */ |
c906108c | 322 | |
7b83296f | 323 | reg_val = allocate_value (register_type (current_gdbarch, regnum)); |
c906108c SS |
324 | |
325 | /* Convert raw data to virtual format if necessary. */ | |
326 | ||
c906108c SS |
327 | if (REGISTER_CONVERTIBLE (regnum)) |
328 | { | |
7b83296f | 329 | REGISTER_CONVERT_TO_VIRTUAL (regnum, register_type (current_gdbarch, regnum), |
c906108c SS |
330 | raw_buffer, VALUE_CONTENTS_RAW (reg_val)); |
331 | } | |
392a587b JM |
332 | else if (REGISTER_RAW_SIZE (regnum) == REGISTER_VIRTUAL_SIZE (regnum)) |
333 | memcpy (VALUE_CONTENTS_RAW (reg_val), raw_buffer, | |
334 | REGISTER_RAW_SIZE (regnum)); | |
c906108c | 335 | else |
8e65ff28 AC |
336 | internal_error (__FILE__, __LINE__, |
337 | "Register \"%s\" (%d) has conflicting raw (%d) and virtual (%d) size", | |
96baa820 JM |
338 | REGISTER_NAME (regnum), |
339 | regnum, | |
340 | REGISTER_RAW_SIZE (regnum), | |
341 | REGISTER_VIRTUAL_SIZE (regnum)); | |
c906108c SS |
342 | VALUE_LVAL (reg_val) = lval; |
343 | VALUE_ADDRESS (reg_val) = addr; | |
344 | VALUE_REGNO (reg_val) = regnum; | |
345 | VALUE_OPTIMIZED_OUT (reg_val) = optim; | |
346 | return reg_val; | |
347 | } | |
4478b372 JB |
348 | |
349 | /* Given a pointer of type TYPE in target form in BUF, return the | |
350 | address it represents. */ | |
351 | CORE_ADDR | |
66140c26 | 352 | unsigned_pointer_to_address (struct type *type, const void *buf) |
4478b372 JB |
353 | { |
354 | return extract_address (buf, TYPE_LENGTH (type)); | |
355 | } | |
356 | ||
ac2e2ef7 | 357 | CORE_ADDR |
66140c26 | 358 | signed_pointer_to_address (struct type *type, const void *buf) |
ac2e2ef7 AC |
359 | { |
360 | return extract_signed_integer (buf, TYPE_LENGTH (type)); | |
361 | } | |
4478b372 JB |
362 | |
363 | /* Given an address, store it as a pointer of type TYPE in target | |
364 | format in BUF. */ | |
365 | void | |
ac2e2ef7 | 366 | unsigned_address_to_pointer (struct type *type, void *buf, CORE_ADDR addr) |
4478b372 JB |
367 | { |
368 | store_address (buf, TYPE_LENGTH (type), addr); | |
369 | } | |
370 | ||
ac2e2ef7 AC |
371 | void |
372 | address_to_signed_pointer (struct type *type, void *buf, CORE_ADDR addr) | |
373 | { | |
374 | store_signed_integer (buf, TYPE_LENGTH (type), addr); | |
375 | } | |
c906108c SS |
376 | \f |
377 | /* Will calling read_var_value or locate_var_value on SYM end | |
378 | up caring what frame it is being evaluated relative to? SYM must | |
379 | be non-NULL. */ | |
380 | int | |
fba45db2 | 381 | symbol_read_needs_frame (struct symbol *sym) |
c906108c SS |
382 | { |
383 | switch (SYMBOL_CLASS (sym)) | |
384 | { | |
385 | /* All cases listed explicitly so that gcc -Wall will detect it if | |
c5aa993b | 386 | we failed to consider one. */ |
4c2df51b DJ |
387 | case LOC_COMPUTED: |
388 | case LOC_COMPUTED_ARG: | |
389 | { | |
390 | struct location_funcs *symfuncs = SYMBOL_LOCATION_FUNCS (sym); | |
391 | return (symfuncs->read_needs_frame) (sym); | |
392 | } | |
393 | break; | |
394 | ||
c906108c SS |
395 | case LOC_REGISTER: |
396 | case LOC_ARG: | |
397 | case LOC_REF_ARG: | |
398 | case LOC_REGPARM: | |
399 | case LOC_REGPARM_ADDR: | |
400 | case LOC_LOCAL: | |
401 | case LOC_LOCAL_ARG: | |
402 | case LOC_BASEREG: | |
403 | case LOC_BASEREG_ARG: | |
407caf07 | 404 | case LOC_HP_THREAD_LOCAL_STATIC: |
c906108c SS |
405 | return 1; |
406 | ||
407 | case LOC_UNDEF: | |
408 | case LOC_CONST: | |
409 | case LOC_STATIC: | |
410 | case LOC_INDIRECT: | |
411 | case LOC_TYPEDEF: | |
412 | ||
413 | case LOC_LABEL: | |
414 | /* Getting the address of a label can be done independently of the block, | |
c5aa993b JM |
415 | even if some *uses* of that address wouldn't work so well without |
416 | the right frame. */ | |
c906108c SS |
417 | |
418 | case LOC_BLOCK: | |
419 | case LOC_CONST_BYTES: | |
420 | case LOC_UNRESOLVED: | |
421 | case LOC_OPTIMIZED_OUT: | |
422 | return 0; | |
423 | } | |
424 | return 1; | |
425 | } | |
426 | ||
427 | /* Given a struct symbol for a variable, | |
428 | and a stack frame id, read the value of the variable | |
429 | and return a (pointer to a) struct value containing the value. | |
430 | If the variable cannot be found, return a zero pointer. | |
6e7f8b9c | 431 | If FRAME is NULL, use the deprecated_selected_frame. */ |
c906108c | 432 | |
3d6d86c6 | 433 | struct value * |
fba45db2 | 434 | read_var_value (register struct symbol *var, struct frame_info *frame) |
c906108c | 435 | { |
3d6d86c6 | 436 | register struct value *v; |
c906108c SS |
437 | struct type *type = SYMBOL_TYPE (var); |
438 | CORE_ADDR addr; | |
439 | register int len; | |
440 | ||
441 | v = allocate_value (type); | |
442 | VALUE_LVAL (v) = lval_memory; /* The most likely possibility. */ | |
443 | VALUE_BFD_SECTION (v) = SYMBOL_BFD_SECTION (var); | |
444 | ||
445 | len = TYPE_LENGTH (type); | |
446 | ||
c5aa993b | 447 | if (frame == NULL) |
6e7f8b9c | 448 | frame = deprecated_selected_frame; |
c906108c SS |
449 | |
450 | switch (SYMBOL_CLASS (var)) | |
451 | { | |
452 | case LOC_CONST: | |
453 | /* Put the constant back in target format. */ | |
454 | store_signed_integer (VALUE_CONTENTS_RAW (v), len, | |
455 | (LONGEST) SYMBOL_VALUE (var)); | |
456 | VALUE_LVAL (v) = not_lval; | |
457 | return v; | |
458 | ||
459 | case LOC_LABEL: | |
460 | /* Put the constant back in target format. */ | |
461 | if (overlay_debugging) | |
4478b372 JB |
462 | { |
463 | CORE_ADDR addr | |
464 | = symbol_overlayed_address (SYMBOL_VALUE_ADDRESS (var), | |
465 | SYMBOL_BFD_SECTION (var)); | |
466 | store_typed_address (VALUE_CONTENTS_RAW (v), type, addr); | |
467 | } | |
c906108c | 468 | else |
4478b372 JB |
469 | store_typed_address (VALUE_CONTENTS_RAW (v), type, |
470 | SYMBOL_VALUE_ADDRESS (var)); | |
c906108c SS |
471 | VALUE_LVAL (v) = not_lval; |
472 | return v; | |
473 | ||
474 | case LOC_CONST_BYTES: | |
475 | { | |
476 | char *bytes_addr; | |
477 | bytes_addr = SYMBOL_VALUE_BYTES (var); | |
478 | memcpy (VALUE_CONTENTS_RAW (v), bytes_addr, len); | |
479 | VALUE_LVAL (v) = not_lval; | |
480 | return v; | |
481 | } | |
482 | ||
483 | case LOC_STATIC: | |
484 | if (overlay_debugging) | |
485 | addr = symbol_overlayed_address (SYMBOL_VALUE_ADDRESS (var), | |
486 | SYMBOL_BFD_SECTION (var)); | |
487 | else | |
488 | addr = SYMBOL_VALUE_ADDRESS (var); | |
489 | break; | |
490 | ||
491 | case LOC_INDIRECT: | |
f76febae AC |
492 | { |
493 | /* The import slot does not have a real address in it from the | |
494 | dynamic loader (dld.sl on HP-UX), if the target hasn't | |
495 | begun execution yet, so check for that. */ | |
496 | CORE_ADDR locaddr; | |
497 | struct value *loc; | |
498 | if (!target_has_execution) | |
499 | error ("\ | |
c906108c SS |
500 | Attempt to access variable defined in different shared object or load module when\n\ |
501 | addresses have not been bound by the dynamic loader. Try again when executable is running."); | |
c5aa993b | 502 | |
f76febae AC |
503 | locaddr = SYMBOL_VALUE_ADDRESS (var); |
504 | loc = value_at (lookup_pointer_type (type), locaddr, NULL); | |
1aa20aa8 | 505 | addr = value_as_address (loc); |
f76febae | 506 | } |
c906108c SS |
507 | |
508 | case LOC_ARG: | |
509 | if (frame == NULL) | |
510 | return 0; | |
511 | addr = FRAME_ARGS_ADDRESS (frame); | |
512 | if (!addr) | |
513 | return 0; | |
514 | addr += SYMBOL_VALUE (var); | |
515 | break; | |
516 | ||
517 | case LOC_REF_ARG: | |
f76febae AC |
518 | { |
519 | struct value *ref; | |
520 | CORE_ADDR argref; | |
521 | if (frame == NULL) | |
522 | return 0; | |
523 | argref = FRAME_ARGS_ADDRESS (frame); | |
524 | if (!argref) | |
525 | return 0; | |
526 | argref += SYMBOL_VALUE (var); | |
527 | ref = value_at (lookup_pointer_type (type), argref, NULL); | |
1aa20aa8 | 528 | addr = value_as_address (ref); |
f76febae AC |
529 | break; |
530 | } | |
c906108c SS |
531 | |
532 | case LOC_LOCAL: | |
533 | case LOC_LOCAL_ARG: | |
534 | if (frame == NULL) | |
535 | return 0; | |
536 | addr = FRAME_LOCALS_ADDRESS (frame); | |
537 | addr += SYMBOL_VALUE (var); | |
538 | break; | |
539 | ||
540 | case LOC_BASEREG: | |
541 | case LOC_BASEREG_ARG: | |
407caf07 | 542 | case LOC_HP_THREAD_LOCAL_STATIC: |
c906108c | 543 | { |
3d6d86c6 | 544 | struct value *regval; |
c5aa993b | 545 | |
9ed10b08 ND |
546 | regval = value_from_register (lookup_pointer_type (type), |
547 | SYMBOL_BASEREG (var), frame); | |
548 | if (regval == NULL) | |
549 | error ("Value of base register not available."); | |
1aa20aa8 | 550 | addr = value_as_address (regval); |
c5aa993b JM |
551 | addr += SYMBOL_VALUE (var); |
552 | break; | |
c906108c | 553 | } |
c5aa993b | 554 | |
9d774e44 EZ |
555 | case LOC_THREAD_LOCAL_STATIC: |
556 | { | |
9d774e44 EZ |
557 | if (target_get_thread_local_address_p ()) |
558 | addr = target_get_thread_local_address (inferior_ptid, | |
559 | SYMBOL_OBJFILE (var), | |
560 | SYMBOL_VALUE_ADDRESS (var)); | |
561 | /* It wouldn't be wrong here to try a gdbarch method, too; | |
562 | finding TLS is an ABI-specific thing. But we don't do that | |
563 | yet. */ | |
564 | else | |
565 | error ("Cannot find thread-local variables on this target"); | |
566 | break; | |
567 | } | |
568 | ||
c906108c SS |
569 | case LOC_TYPEDEF: |
570 | error ("Cannot look up value of a typedef"); | |
571 | break; | |
572 | ||
573 | case LOC_BLOCK: | |
574 | if (overlay_debugging) | |
c5aa993b | 575 | VALUE_ADDRESS (v) = symbol_overlayed_address |
c906108c SS |
576 | (BLOCK_START (SYMBOL_BLOCK_VALUE (var)), SYMBOL_BFD_SECTION (var)); |
577 | else | |
578 | VALUE_ADDRESS (v) = BLOCK_START (SYMBOL_BLOCK_VALUE (var)); | |
579 | return v; | |
580 | ||
581 | case LOC_REGISTER: | |
582 | case LOC_REGPARM: | |
583 | case LOC_REGPARM_ADDR: | |
584 | { | |
585 | struct block *b; | |
586 | int regno = SYMBOL_VALUE (var); | |
3d6d86c6 | 587 | struct value *regval; |
c906108c SS |
588 | |
589 | if (frame == NULL) | |
590 | return 0; | |
ae767bfb | 591 | b = get_frame_block (frame, 0); |
c906108c SS |
592 | |
593 | if (SYMBOL_CLASS (var) == LOC_REGPARM_ADDR) | |
594 | { | |
595 | regval = value_from_register (lookup_pointer_type (type), | |
c5aa993b | 596 | regno, |
c906108c SS |
597 | frame); |
598 | ||
599 | if (regval == NULL) | |
600 | error ("Value of register variable not available."); | |
601 | ||
1aa20aa8 | 602 | addr = value_as_address (regval); |
c906108c SS |
603 | VALUE_LVAL (v) = lval_memory; |
604 | } | |
605 | else | |
606 | { | |
607 | regval = value_from_register (type, regno, frame); | |
608 | ||
609 | if (regval == NULL) | |
610 | error ("Value of register variable not available."); | |
611 | return regval; | |
612 | } | |
613 | } | |
614 | break; | |
615 | ||
4c2df51b DJ |
616 | case LOC_COMPUTED: |
617 | case LOC_COMPUTED_ARG: | |
618 | { | |
619 | struct location_funcs *funcs = SYMBOL_LOCATION_FUNCS (var); | |
620 | ||
621 | if (frame == 0 && (funcs->read_needs_frame) (var)) | |
622 | return 0; | |
623 | return (funcs->read_variable) (var, frame); | |
624 | ||
625 | } | |
626 | break; | |
627 | ||
c906108c SS |
628 | case LOC_UNRESOLVED: |
629 | { | |
630 | struct minimal_symbol *msym; | |
631 | ||
22abf04a | 632 | msym = lookup_minimal_symbol (DEPRECATED_SYMBOL_NAME (var), NULL, NULL); |
c906108c SS |
633 | if (msym == NULL) |
634 | return 0; | |
635 | if (overlay_debugging) | |
636 | addr = symbol_overlayed_address (SYMBOL_VALUE_ADDRESS (msym), | |
637 | SYMBOL_BFD_SECTION (msym)); | |
638 | else | |
639 | addr = SYMBOL_VALUE_ADDRESS (msym); | |
640 | } | |
641 | break; | |
642 | ||
643 | case LOC_OPTIMIZED_OUT: | |
644 | VALUE_LVAL (v) = not_lval; | |
645 | VALUE_OPTIMIZED_OUT (v) = 1; | |
646 | return v; | |
647 | ||
648 | default: | |
649 | error ("Cannot look up value of a botched symbol."); | |
650 | break; | |
651 | } | |
652 | ||
653 | VALUE_ADDRESS (v) = addr; | |
654 | VALUE_LAZY (v) = 1; | |
655 | return v; | |
656 | } | |
657 | ||
658 | /* Return a value of type TYPE, stored in register REGNUM, in frame | |
0f2c5ba5 | 659 | FRAME. |
c906108c SS |
660 | |
661 | NOTE: returns NULL if register value is not available. | |
662 | Caller will check return value or die! */ | |
663 | ||
3d6d86c6 | 664 | struct value * |
fba45db2 | 665 | value_from_register (struct type *type, int regnum, struct frame_info *frame) |
c906108c | 666 | { |
e6cbd02a | 667 | char *raw_buffer = (char*) alloca (MAX_REGISTER_RAW_SIZE); |
c906108c SS |
668 | CORE_ADDR addr; |
669 | int optim; | |
3d6d86c6 | 670 | struct value *v = allocate_value (type); |
c906108c SS |
671 | char *value_bytes = 0; |
672 | int value_bytes_copied = 0; | |
673 | int num_storage_locs; | |
674 | enum lval_type lval; | |
675 | int len; | |
676 | ||
677 | CHECK_TYPEDEF (type); | |
678 | len = TYPE_LENGTH (type); | |
679 | ||
680 | VALUE_REGNO (v) = regnum; | |
681 | ||
682 | num_storage_locs = (len > REGISTER_VIRTUAL_SIZE (regnum) ? | |
683 | ((len - 1) / REGISTER_RAW_SIZE (regnum)) + 1 : | |
684 | 1); | |
685 | ||
686 | if (num_storage_locs > 1 | |
fd2299bd AC |
687 | #if 0 |
688 | // OBSOLETE #ifdef GDB_TARGET_IS_H8500 | |
689 | // OBSOLETE || TYPE_CODE (type) == TYPE_CODE_PTR | |
690 | // OBSOLETE #endif | |
c906108c | 691 | #endif |
c5aa993b | 692 | ) |
c906108c SS |
693 | { |
694 | /* Value spread across multiple storage locations. */ | |
c5aa993b | 695 | |
c906108c SS |
696 | int local_regnum; |
697 | int mem_stor = 0, reg_stor = 0; | |
698 | int mem_tracking = 1; | |
699 | CORE_ADDR last_addr = 0; | |
700 | CORE_ADDR first_addr = 0; | |
701 | ||
702 | value_bytes = (char *) alloca (len + MAX_REGISTER_RAW_SIZE); | |
703 | ||
704 | /* Copy all of the data out, whereever it may be. */ | |
705 | ||
fd2299bd AC |
706 | #if 0 |
707 | // OBSOLETE #ifdef GDB_TARGET_IS_H8500 | |
708 | // OBSOLETE /* This piece of hideosity is required because the H8500 treats registers | |
709 | // OBSOLETE differently depending upon whether they are used as pointers or not. As a | |
710 | // OBSOLETE pointer, a register needs to have a page register tacked onto the front. | |
711 | // OBSOLETE An alternate way to do this would be to have gcc output different register | |
712 | // OBSOLETE numbers for the pointer & non-pointer form of the register. But, it | |
713 | // OBSOLETE doesn't, so we're stuck with this. */ | |
714 | // OBSOLETE | |
715 | // OBSOLETE if (TYPE_CODE (type) == TYPE_CODE_PTR | |
716 | // OBSOLETE && len > 2) | |
717 | // OBSOLETE { | |
718 | // OBSOLETE int page_regnum; | |
719 | // OBSOLETE | |
720 | // OBSOLETE switch (regnum) | |
721 | // OBSOLETE { | |
722 | // OBSOLETE case R0_REGNUM: | |
723 | // OBSOLETE case R1_REGNUM: | |
724 | // OBSOLETE case R2_REGNUM: | |
725 | // OBSOLETE case R3_REGNUM: | |
726 | // OBSOLETE page_regnum = SEG_D_REGNUM; | |
727 | // OBSOLETE break; | |
728 | // OBSOLETE case R4_REGNUM: | |
729 | // OBSOLETE case R5_REGNUM: | |
730 | // OBSOLETE page_regnum = SEG_E_REGNUM; | |
731 | // OBSOLETE break; | |
732 | // OBSOLETE case R6_REGNUM: | |
733 | // OBSOLETE case R7_REGNUM: | |
734 | // OBSOLETE page_regnum = SEG_T_REGNUM; | |
735 | // OBSOLETE break; | |
736 | // OBSOLETE } | |
737 | // OBSOLETE | |
738 | // OBSOLETE value_bytes[0] = 0; | |
739 | // OBSOLETE get_saved_register (value_bytes + 1, | |
740 | // OBSOLETE &optim, | |
741 | // OBSOLETE &addr, | |
742 | // OBSOLETE frame, | |
743 | // OBSOLETE page_regnum, | |
744 | // OBSOLETE &lval); | |
745 | // OBSOLETE | |
746 | // OBSOLETE if (register_cached (page_regnum) == -1) | |
747 | // OBSOLETE return NULL; /* register value not available */ | |
748 | // OBSOLETE | |
749 | // OBSOLETE if (lval == lval_register) | |
750 | // OBSOLETE reg_stor++; | |
751 | // OBSOLETE else | |
752 | // OBSOLETE mem_stor++; | |
753 | // OBSOLETE first_addr = addr; | |
754 | // OBSOLETE last_addr = addr; | |
755 | // OBSOLETE | |
756 | // OBSOLETE get_saved_register (value_bytes + 2, | |
757 | // OBSOLETE &optim, | |
758 | // OBSOLETE &addr, | |
759 | // OBSOLETE frame, | |
760 | // OBSOLETE regnum, | |
761 | // OBSOLETE &lval); | |
762 | // OBSOLETE | |
763 | // OBSOLETE if (register_cached (regnum) == -1) | |
764 | // OBSOLETE return NULL; /* register value not available */ | |
765 | // OBSOLETE | |
766 | // OBSOLETE if (lval == lval_register) | |
767 | // OBSOLETE reg_stor++; | |
768 | // OBSOLETE else | |
769 | // OBSOLETE { | |
770 | // OBSOLETE mem_stor++; | |
771 | // OBSOLETE mem_tracking = mem_tracking && (addr == last_addr); | |
772 | // OBSOLETE } | |
773 | // OBSOLETE last_addr = addr; | |
774 | // OBSOLETE } | |
775 | // OBSOLETE else | |
776 | // OBSOLETE #endif /* GDB_TARGET_IS_H8500 */ | |
777 | #endif | |
c906108c SS |
778 | for (local_regnum = regnum; |
779 | value_bytes_copied < len; | |
780 | (value_bytes_copied += REGISTER_RAW_SIZE (local_regnum), | |
781 | ++local_regnum)) | |
782 | { | |
783 | get_saved_register (value_bytes + value_bytes_copied, | |
784 | &optim, | |
785 | &addr, | |
786 | frame, | |
787 | local_regnum, | |
788 | &lval); | |
789 | ||
32178cab | 790 | if (register_cached (local_regnum) == -1) |
c5aa993b | 791 | return NULL; /* register value not available */ |
c906108c SS |
792 | |
793 | if (regnum == local_regnum) | |
794 | first_addr = addr; | |
795 | if (lval == lval_register) | |
796 | reg_stor++; | |
797 | else | |
798 | { | |
799 | mem_stor++; | |
c5aa993b | 800 | |
c906108c SS |
801 | mem_tracking = |
802 | (mem_tracking | |
803 | && (regnum == local_regnum | |
804 | || addr == last_addr)); | |
805 | } | |
806 | last_addr = addr; | |
807 | } | |
808 | ||
809 | if ((reg_stor && mem_stor) | |
810 | || (mem_stor && !mem_tracking)) | |
811 | /* Mixed storage; all of the hassle we just went through was | |
812 | for some good purpose. */ | |
813 | { | |
814 | VALUE_LVAL (v) = lval_reg_frame_relative; | |
c193f6ac | 815 | VALUE_FRAME (v) = get_frame_base (frame); |
c906108c SS |
816 | VALUE_FRAME_REGNUM (v) = regnum; |
817 | } | |
818 | else if (mem_stor) | |
819 | { | |
820 | VALUE_LVAL (v) = lval_memory; | |
821 | VALUE_ADDRESS (v) = first_addr; | |
822 | } | |
823 | else if (reg_stor) | |
824 | { | |
825 | VALUE_LVAL (v) = lval_register; | |
826 | VALUE_ADDRESS (v) = first_addr; | |
827 | } | |
828 | else | |
8e65ff28 AC |
829 | internal_error (__FILE__, __LINE__, |
830 | "value_from_register: Value not stored anywhere!"); | |
c906108c SS |
831 | |
832 | VALUE_OPTIMIZED_OUT (v) = optim; | |
833 | ||
834 | /* Any structure stored in more than one register will always be | |
c5aa993b JM |
835 | an integral number of registers. Otherwise, you'd need to do |
836 | some fiddling with the last register copied here for little | |
837 | endian machines. */ | |
c906108c SS |
838 | |
839 | /* Copy into the contents section of the value. */ | |
840 | memcpy (VALUE_CONTENTS_RAW (v), value_bytes, len); | |
841 | ||
842 | /* Finally do any conversion necessary when extracting this | |
843 | type from more than one register. */ | |
844 | #ifdef REGISTER_CONVERT_TO_TYPE | |
c5aa993b | 845 | REGISTER_CONVERT_TO_TYPE (regnum, type, VALUE_CONTENTS_RAW (v)); |
c906108c SS |
846 | #endif |
847 | return v; | |
848 | } | |
849 | ||
850 | /* Data is completely contained within a single register. Locate the | |
851 | register's contents in a real register or in core; | |
852 | read the data in raw format. */ | |
853 | ||
854 | get_saved_register (raw_buffer, &optim, &addr, frame, regnum, &lval); | |
855 | ||
32178cab | 856 | if (register_cached (regnum) == -1) |
c5aa993b | 857 | return NULL; /* register value not available */ |
c906108c SS |
858 | |
859 | VALUE_OPTIMIZED_OUT (v) = optim; | |
860 | VALUE_LVAL (v) = lval; | |
861 | VALUE_ADDRESS (v) = addr; | |
862 | ||
13d01224 AC |
863 | /* Convert the raw register to the corresponding data value's memory |
864 | format, if necessary. */ | |
c5aa993b | 865 | |
13d01224 | 866 | if (CONVERT_REGISTER_P (regnum)) |
c906108c | 867 | { |
13d01224 | 868 | REGISTER_TO_VALUE (regnum, type, raw_buffer, VALUE_CONTENTS_RAW (v)); |
c906108c SS |
869 | } |
870 | else | |
c906108c SS |
871 | { |
872 | /* Raw and virtual formats are the same for this register. */ | |
873 | ||
d7449b42 | 874 | if (TARGET_BYTE_ORDER == BFD_ENDIAN_BIG && len < REGISTER_RAW_SIZE (regnum)) |
c906108c | 875 | { |
c5aa993b | 876 | /* Big-endian, and we want less than full size. */ |
c906108c SS |
877 | VALUE_OFFSET (v) = REGISTER_RAW_SIZE (regnum) - len; |
878 | } | |
879 | ||
880 | memcpy (VALUE_CONTENTS_RAW (v), raw_buffer + VALUE_OFFSET (v), len); | |
881 | } | |
c5aa993b | 882 | |
c906108c SS |
883 | return v; |
884 | } | |
885 | \f | |
886 | /* Given a struct symbol for a variable or function, | |
887 | and a stack frame id, | |
888 | return a (pointer to a) struct value containing the properly typed | |
889 | address. */ | |
890 | ||
3d6d86c6 | 891 | struct value * |
fba45db2 | 892 | locate_var_value (register struct symbol *var, struct frame_info *frame) |
c906108c SS |
893 | { |
894 | CORE_ADDR addr = 0; | |
895 | struct type *type = SYMBOL_TYPE (var); | |
3d6d86c6 | 896 | struct value *lazy_value; |
c906108c SS |
897 | |
898 | /* Evaluate it first; if the result is a memory address, we're fine. | |
899 | Lazy evaluation pays off here. */ | |
900 | ||
901 | lazy_value = read_var_value (var, frame); | |
902 | if (lazy_value == 0) | |
de5ad195 | 903 | error ("Address of \"%s\" is unknown.", SYMBOL_PRINT_NAME (var)); |
c906108c SS |
904 | |
905 | if (VALUE_LAZY (lazy_value) | |
906 | || TYPE_CODE (type) == TYPE_CODE_FUNC) | |
907 | { | |
3d6d86c6 | 908 | struct value *val; |
c906108c SS |
909 | |
910 | addr = VALUE_ADDRESS (lazy_value); | |
4478b372 | 911 | val = value_from_pointer (lookup_pointer_type (type), addr); |
c906108c SS |
912 | VALUE_BFD_SECTION (val) = VALUE_BFD_SECTION (lazy_value); |
913 | return val; | |
914 | } | |
915 | ||
916 | /* Not a memory address; check what the problem was. */ | |
c5aa993b | 917 | switch (VALUE_LVAL (lazy_value)) |
c906108c SS |
918 | { |
919 | case lval_register: | |
14e534aa PM |
920 | gdb_assert (REGISTER_NAME (VALUE_REGNO (lazy_value)) != NULL |
921 | && *REGISTER_NAME (VALUE_REGNO (lazy_value)) != '\0'); | |
922 | error("Address requested for identifier " | |
923 | "\"%s\" which is in register $%s", | |
de5ad195 | 924 | SYMBOL_PRINT_NAME (var), |
14e534aa PM |
925 | REGISTER_NAME (VALUE_REGNO (lazy_value))); |
926 | break; | |
927 | ||
c906108c | 928 | case lval_reg_frame_relative: |
14e534aa PM |
929 | gdb_assert (REGISTER_NAME (VALUE_FRAME_REGNUM (lazy_value)) != NULL |
930 | && *REGISTER_NAME (VALUE_FRAME_REGNUM (lazy_value)) != '\0'); | |
931 | error("Address requested for identifier " | |
932 | "\"%s\" which is in frame register $%s", | |
de5ad195 | 933 | SYMBOL_PRINT_NAME (var), |
14e534aa | 934 | REGISTER_NAME (VALUE_FRAME_REGNUM (lazy_value))); |
c906108c SS |
935 | break; |
936 | ||
937 | default: | |
938 | error ("Can't take address of \"%s\" which isn't an lvalue.", | |
de5ad195 | 939 | SYMBOL_PRINT_NAME (var)); |
c906108c SS |
940 | break; |
941 | } | |
c5aa993b | 942 | return 0; /* For lint -- never reached */ |
c906108c | 943 | } |