/src/binutils-gdb/bfd/pei-x86_64.c
Line | Count | Source (jump to first uncovered line) |
1 | | /* BFD back-end for Intel 386 PE IMAGE COFF files. |
2 | | Copyright (C) 2006-2023 Free Software Foundation, Inc. |
3 | | |
4 | | This file is part of BFD, the Binary File Descriptor library. |
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 |
8 | | the Free Software Foundation; either version 3 of the License, or |
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 |
17 | | along with this program; if not, write to the Free Software |
18 | | Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston, |
19 | | MA 02110-1301, USA. |
20 | | |
21 | | Written by Kai Tietz, OneVision Software GmbH&CoKg. */ |
22 | | |
23 | | #include "sysdep.h" |
24 | | #include "bfd.h" |
25 | | |
26 | | #define TARGET_SYM x86_64_pei_vec |
27 | | #define TARGET_NAME "pei-x86-64" |
28 | | #define COFF_IMAGE_WITH_PE |
29 | | #define COFF_WITH_PE |
30 | | #define COFF_WITH_pex64 |
31 | | #define PCRELOFFSET true |
32 | | #if defined (USE_MINGW64_LEADING_UNDERSCORES) |
33 | | #define TARGET_UNDERSCORE '_' |
34 | | #else |
35 | 0 | #define TARGET_UNDERSCORE 0 |
36 | | #endif |
37 | | /* Long section names not allowed in executable images, only object files. */ |
38 | | #define COFF_LONG_SECTION_NAMES 0 |
39 | | #define COFF_SUPPORT_GNU_LINKONCE |
40 | | #define COFF_LONG_FILENAMES |
41 | 0 | #define PDATA_ROW_SIZE (3 * 4) |
42 | | |
43 | | #define COFF_SECTION_ALIGNMENT_ENTRIES \ |
44 | | { COFF_SECTION_NAME_EXACT_MATCH (".bss"), \ |
45 | | COFF_ALIGNMENT_FIELD_EMPTY, COFF_ALIGNMENT_FIELD_EMPTY, 4 }, \ |
46 | | { COFF_SECTION_NAME_PARTIAL_MATCH (".data"), \ |
47 | | COFF_ALIGNMENT_FIELD_EMPTY, COFF_ALIGNMENT_FIELD_EMPTY, 4 }, \ |
48 | | { COFF_SECTION_NAME_PARTIAL_MATCH (".rdata"), \ |
49 | | COFF_ALIGNMENT_FIELD_EMPTY, COFF_ALIGNMENT_FIELD_EMPTY, 4 }, \ |
50 | | { COFF_SECTION_NAME_PARTIAL_MATCH (".text"), \ |
51 | | COFF_ALIGNMENT_FIELD_EMPTY, COFF_ALIGNMENT_FIELD_EMPTY, 4 }, \ |
52 | | { COFF_SECTION_NAME_PARTIAL_MATCH (".idata"), \ |
53 | | COFF_ALIGNMENT_FIELD_EMPTY, COFF_ALIGNMENT_FIELD_EMPTY, 2 }, \ |
54 | | { COFF_SECTION_NAME_EXACT_MATCH (".pdata"), \ |
55 | | COFF_ALIGNMENT_FIELD_EMPTY, COFF_ALIGNMENT_FIELD_EMPTY, 2 }, \ |
56 | | { COFF_SECTION_NAME_PARTIAL_MATCH (".debug"), \ |
57 | | COFF_ALIGNMENT_FIELD_EMPTY, COFF_ALIGNMENT_FIELD_EMPTY, 0 }, \ |
58 | | { COFF_SECTION_NAME_PARTIAL_MATCH (".gnu.linkonce.wi."), \ |
59 | | COFF_ALIGNMENT_FIELD_EMPTY, COFF_ALIGNMENT_FIELD_EMPTY, 0 } |
60 | | |
61 | | #include "sysdep.h" |
62 | | #include "bfd.h" |
63 | | #include "libbfd.h" |
64 | | #include "coff/x86_64.h" |
65 | | #include "coff/internal.h" |
66 | | #include "coff/pe.h" |
67 | | #include "libcoff.h" |
68 | | #include "libpei.h" |
69 | | #include "libiberty.h" |
70 | | |
71 | | #undef AOUTSZ |
72 | | #define AOUTSZ PEPAOUTSZ |
73 | | #define PEAOUTHDR PEPAOUTHDR |
74 | | |
75 | | /* Name of registers according to SEH conventions. */ |
76 | | |
77 | | static const char * const pex_regs[16] = { |
78 | | "rax", "rcx", "rdx", "rbx", "rsp", "rbp", "rsi", "rdi", |
79 | | "r8", "r9", "r10", "r11", "r12", "r13", "r14", "r15" |
80 | | }; |
81 | | |
82 | | /* Swap in a runtime function. */ |
83 | | |
84 | | static void |
85 | | pex64_get_runtime_function (bfd *abfd, struct pex64_runtime_function *rf, |
86 | | const void *data) |
87 | 0 | { |
88 | 0 | const struct external_pex64_runtime_function *ex_rf = |
89 | 0 | (const struct external_pex64_runtime_function *) data; |
90 | 0 | rf->rva_BeginAddress = bfd_get_32 (abfd, ex_rf->rva_BeginAddress); |
91 | 0 | rf->rva_EndAddress = bfd_get_32 (abfd, ex_rf->rva_EndAddress); |
92 | 0 | rf->rva_UnwindData = bfd_get_32 (abfd, ex_rf->rva_UnwindData); |
93 | 0 | } |
94 | | |
95 | | /* Swap in unwind info header. */ |
96 | | |
97 | | static bool |
98 | | pex64_get_unwind_info (bfd *abfd, struct pex64_unwind_info *ui, |
99 | | void *data, void *data_end) |
100 | 0 | { |
101 | 0 | struct external_pex64_unwind_info *ex_ui = |
102 | 0 | (struct external_pex64_unwind_info *) data; |
103 | 0 | bfd_byte *ex_dta = (bfd_byte *) data; |
104 | 0 | bfd_byte *ex_dta_end = (bfd_byte *) data_end; |
105 | |
|
106 | 0 | memset (ui, 0, sizeof (struct pex64_unwind_info)); |
107 | |
|
108 | 0 | if (ex_dta_end - ex_dta < 4) |
109 | 0 | return false; |
110 | | |
111 | 0 | ui->Version = PEX64_UWI_VERSION (ex_ui->Version_Flags); |
112 | 0 | ui->Flags = PEX64_UWI_FLAGS (ex_ui->Version_Flags); |
113 | 0 | ui->SizeOfPrologue = (bfd_vma) ex_ui->SizeOfPrologue; |
114 | 0 | ui->CountOfCodes = (bfd_vma) ex_ui->CountOfCodes; |
115 | 0 | ui->FrameRegister = PEX64_UWI_FRAMEREG (ex_ui->FrameRegisterOffset); |
116 | 0 | ui->FrameOffset = PEX64_UWI_FRAMEOFF (ex_ui->FrameRegisterOffset); |
117 | 0 | ui->sizeofUnwindCodes = PEX64_UWI_SIZEOF_UWCODE_ARRAY (ui->CountOfCodes); |
118 | 0 | ui->SizeOfBlock = ui->sizeofUnwindCodes + 4; |
119 | 0 | ui->rawUnwindCodes = ex_dta + 4; |
120 | 0 | ui->rawUnwindCodesEnd = ex_dta_end; |
121 | |
|
122 | 0 | if ((size_t) (ex_dta_end - ex_dta) < ui->SizeOfBlock) |
123 | 0 | return false; |
124 | 0 | ex_dta += ui->SizeOfBlock; |
125 | |
|
126 | 0 | switch (ui->Flags) |
127 | 0 | { |
128 | 0 | case UNW_FLAG_CHAININFO: |
129 | 0 | if (ex_dta_end - ex_dta < 12) |
130 | 0 | return false; |
131 | 0 | ui->rva_BeginAddress = bfd_get_32 (abfd, ex_dta + 0); |
132 | 0 | ui->rva_EndAddress = bfd_get_32 (abfd, ex_dta + 4); |
133 | 0 | ui->rva_UnwindData = bfd_get_32 (abfd, ex_dta + 8); |
134 | 0 | ui->SizeOfBlock += 12; |
135 | 0 | return true; |
136 | 0 | case UNW_FLAG_EHANDLER: |
137 | 0 | case UNW_FLAG_UHANDLER: |
138 | 0 | case UNW_FLAG_FHANDLER: |
139 | 0 | if (ex_dta_end - ex_dta < 4) |
140 | 0 | return false; |
141 | 0 | ui->rva_ExceptionHandler = bfd_get_32 (abfd, ex_dta); |
142 | 0 | ui->SizeOfBlock += 4; |
143 | 0 | return true; |
144 | 0 | default: |
145 | 0 | return true; |
146 | 0 | } |
147 | 0 | } |
148 | | |
149 | | /* Display unwind codes. */ |
150 | | |
151 | | static void |
152 | | pex64_xdata_print_uwd_codes (FILE *file, bfd *abfd, |
153 | | struct pex64_unwind_info *ui, |
154 | | struct pex64_runtime_function *rf) |
155 | 0 | { |
156 | 0 | unsigned int i; |
157 | 0 | unsigned int tmp; /* At least 32 bits. */ |
158 | 0 | int save_allowed; |
159 | |
|
160 | 0 | if (ui->CountOfCodes == 0 || ui->rawUnwindCodes == NULL) |
161 | 0 | return; |
162 | | |
163 | | /* According to UNWIND_CODE documentation: |
164 | | If an FP reg is used, the any unwind code taking an offset must only be |
165 | | used after the FP reg is established in the prolog. |
166 | | But there are counter examples of that in system dlls... */ |
167 | 0 | save_allowed = true; |
168 | |
|
169 | 0 | i = 0; |
170 | |
|
171 | 0 | if ((size_t) (ui->rawUnwindCodesEnd - ui->rawUnwindCodes) |
172 | 0 | < ui->CountOfCodes * 2) |
173 | 0 | { |
174 | 0 | fprintf (file, _("warning: corrupt unwind data\n")); |
175 | 0 | return; |
176 | 0 | } |
177 | | |
178 | 0 | if (ui->Version == 2 |
179 | 0 | && PEX64_UNWCODE_CODE (ui->rawUnwindCodes[1]) == UWOP_EPILOG) |
180 | 0 | { |
181 | | /* Display epilog opcode (whose docoding is not fully documented). |
182 | | Looks to be designed to speed-up unwinding, as there is no need |
183 | | to decode instruction flow if outside an epilog. */ |
184 | 0 | unsigned int func_size = rf->rva_EndAddress - rf->rva_BeginAddress; |
185 | |
|
186 | 0 | fprintf (file, "\tv2 epilog (length: %02x) at pc+:", |
187 | 0 | ui->rawUnwindCodes[0]); |
188 | |
|
189 | 0 | if (PEX64_UNWCODE_INFO (ui->rawUnwindCodes[1])) |
190 | 0 | fprintf (file, " 0x%x", func_size - ui->rawUnwindCodes[0]); |
191 | |
|
192 | 0 | i++; |
193 | 0 | for (; i < ui->CountOfCodes; i++) |
194 | 0 | { |
195 | 0 | const bfd_byte *dta = ui->rawUnwindCodes + 2 * i; |
196 | 0 | unsigned int off; |
197 | |
|
198 | 0 | if (PEX64_UNWCODE_CODE (dta[1]) != UWOP_EPILOG) |
199 | 0 | break; |
200 | 0 | off = dta[0] | (PEX64_UNWCODE_INFO (dta[1]) << 8); |
201 | 0 | if (off == 0) |
202 | 0 | fprintf (file, " [pad]"); |
203 | 0 | else |
204 | 0 | fprintf (file, " 0x%x", func_size - off); |
205 | 0 | } |
206 | 0 | fputc ('\n', file); |
207 | 0 | } |
208 | |
|
209 | 0 | for (; i < ui->CountOfCodes; i++) |
210 | 0 | { |
211 | 0 | const bfd_byte *dta = ui->rawUnwindCodes + 2 * i; |
212 | 0 | unsigned int info = PEX64_UNWCODE_INFO (dta[1]); |
213 | 0 | int unexpected = false; |
214 | |
|
215 | 0 | fprintf (file, "\t pc+0x%02x: ", (unsigned int) dta[0]); |
216 | |
|
217 | 0 | switch (PEX64_UNWCODE_CODE (dta[1])) |
218 | 0 | { |
219 | 0 | case UWOP_PUSH_NONVOL: |
220 | 0 | fprintf (file, "push %s", pex_regs[info]); |
221 | 0 | break; |
222 | | |
223 | 0 | case UWOP_ALLOC_LARGE: |
224 | 0 | if (info == 0) |
225 | 0 | { |
226 | 0 | if (ui->rawUnwindCodesEnd - dta < 4) |
227 | 0 | { |
228 | 0 | fprintf (file, _("warning: corrupt unwind data\n")); |
229 | 0 | return; |
230 | 0 | } |
231 | 0 | tmp = bfd_get_16 (abfd, dta + 2) * 8; |
232 | 0 | i++; |
233 | 0 | } |
234 | 0 | else |
235 | 0 | { |
236 | 0 | if (ui->rawUnwindCodesEnd - dta < 6) |
237 | 0 | { |
238 | 0 | fprintf (file, _("warning: corrupt unwind data\n")); |
239 | 0 | return; |
240 | 0 | } |
241 | 0 | tmp = bfd_get_32 (abfd, dta + 2); |
242 | 0 | i += 2; |
243 | 0 | } |
244 | 0 | fprintf (file, "alloc large area: rsp = rsp - 0x%x", tmp); |
245 | 0 | break; |
246 | | |
247 | 0 | case UWOP_ALLOC_SMALL: |
248 | 0 | fprintf (file, "alloc small area: rsp = rsp - 0x%x", (info + 1) * 8); |
249 | 0 | break; |
250 | | |
251 | 0 | case UWOP_SET_FPREG: |
252 | | /* According to the documentation, info field is unused. */ |
253 | 0 | fprintf (file, "FPReg: %s = rsp + 0x%x (info = 0x%x)", |
254 | 0 | pex_regs[ui->FrameRegister], |
255 | 0 | (unsigned int) ui->FrameOffset * 16, info); |
256 | 0 | unexpected = ui->FrameRegister == 0; |
257 | 0 | save_allowed = false; |
258 | 0 | break; |
259 | | |
260 | 0 | case UWOP_SAVE_NONVOL: |
261 | 0 | if (ui->rawUnwindCodesEnd - dta < 4) |
262 | 0 | { |
263 | 0 | fprintf (file, _("warning: corrupt unwind data\n")); |
264 | 0 | return; |
265 | 0 | } |
266 | 0 | tmp = bfd_get_16 (abfd, dta + 2) * 8; |
267 | 0 | i++; |
268 | 0 | fprintf (file, "save %s at rsp + 0x%x", pex_regs[info], tmp); |
269 | 0 | unexpected = !save_allowed; |
270 | 0 | break; |
271 | | |
272 | 0 | case UWOP_SAVE_NONVOL_FAR: |
273 | 0 | if (ui->rawUnwindCodesEnd - dta < 6) |
274 | 0 | { |
275 | 0 | fprintf (file, _("warning: corrupt unwind data\n")); |
276 | 0 | return; |
277 | 0 | } |
278 | 0 | tmp = bfd_get_32 (abfd, dta + 2); |
279 | 0 | i += 2; |
280 | 0 | fprintf (file, "save %s at rsp + 0x%x", pex_regs[info], tmp); |
281 | 0 | unexpected = !save_allowed; |
282 | 0 | break; |
283 | | |
284 | 0 | case UWOP_SAVE_XMM: |
285 | 0 | if (ui->Version == 1) |
286 | 0 | { |
287 | 0 | if (ui->rawUnwindCodesEnd - dta < 4) |
288 | 0 | { |
289 | 0 | fprintf (file, _("warning: corrupt unwind data\n")); |
290 | 0 | return; |
291 | 0 | } |
292 | 0 | tmp = bfd_get_16 (abfd, dta + 2) * 8; |
293 | 0 | i++; |
294 | 0 | fprintf (file, "save mm%u at rsp + 0x%x", info, tmp); |
295 | 0 | unexpected = !save_allowed; |
296 | 0 | } |
297 | 0 | else if (ui->Version == 2) |
298 | 0 | { |
299 | 0 | fprintf (file, "epilog %02x %01x", dta[0], info); |
300 | 0 | unexpected = true; |
301 | 0 | } |
302 | 0 | break; |
303 | | |
304 | 0 | case UWOP_SAVE_XMM_FAR: |
305 | 0 | if (ui->rawUnwindCodesEnd - dta < 6) |
306 | 0 | { |
307 | 0 | fprintf (file, _("warning: corrupt unwind data\n")); |
308 | 0 | return; |
309 | 0 | } |
310 | 0 | tmp = bfd_get_32 (abfd, dta + 2) * 8; |
311 | 0 | i += 2; |
312 | 0 | fprintf (file, "save mm%u at rsp + 0x%x", info, tmp); |
313 | 0 | unexpected = !save_allowed; |
314 | 0 | break; |
315 | | |
316 | 0 | case UWOP_SAVE_XMM128: |
317 | 0 | if (ui->rawUnwindCodesEnd - dta < 4) |
318 | 0 | { |
319 | 0 | fprintf (file, _("warning: corrupt unwind data\n")); |
320 | 0 | return; |
321 | 0 | } |
322 | 0 | tmp = bfd_get_16 (abfd, dta + 2) * 16; |
323 | 0 | i++; |
324 | 0 | fprintf (file, "save xmm%u at rsp + 0x%x", info, tmp); |
325 | 0 | unexpected = !save_allowed; |
326 | 0 | break; |
327 | | |
328 | 0 | case UWOP_SAVE_XMM128_FAR: |
329 | 0 | if (ui->rawUnwindCodesEnd - dta < 6) |
330 | 0 | { |
331 | 0 | fprintf (file, _("warning: corrupt unwind data\n")); |
332 | 0 | return; |
333 | 0 | } |
334 | 0 | tmp = bfd_get_32 (abfd, dta + 2) * 16; |
335 | 0 | i += 2; |
336 | 0 | fprintf (file, "save xmm%u at rsp + 0x%x", info, tmp); |
337 | 0 | unexpected = !save_allowed; |
338 | 0 | break; |
339 | | |
340 | 0 | case UWOP_PUSH_MACHFRAME: |
341 | 0 | fprintf (file, "interrupt entry (SS, old RSP, EFLAGS, CS, RIP"); |
342 | 0 | if (info == 0) |
343 | 0 | fprintf (file, ")"); |
344 | 0 | else if (info == 1) |
345 | 0 | fprintf (file, ",ErrorCode)"); |
346 | 0 | else |
347 | 0 | fprintf (file, ", unknown(%u))", info); |
348 | 0 | break; |
349 | | |
350 | 0 | default: |
351 | | /* PR 17512: file: 2245-7442-0.004. */ |
352 | 0 | fprintf (file, _("Unknown: %x"), PEX64_UNWCODE_CODE (dta[1])); |
353 | 0 | break; |
354 | 0 | } |
355 | | |
356 | 0 | if (unexpected) |
357 | 0 | fprintf (file, " [Unexpected!]"); |
358 | 0 | fputc ('\n', file); |
359 | 0 | } |
360 | 0 | } |
361 | | |
362 | | /* Check wether section SEC_NAME contains the xdata at address ADDR. */ |
363 | | |
364 | | static asection * |
365 | | pex64_get_section_by_rva (bfd *abfd, bfd_vma addr, const char *sec_name) |
366 | 0 | { |
367 | 0 | asection *section = bfd_get_section_by_name (abfd, sec_name); |
368 | 0 | bfd_vma vsize; |
369 | 0 | bfd_size_type datasize = 0; |
370 | |
|
371 | 0 | if (section == NULL |
372 | 0 | || coff_section_data (abfd, section) == NULL |
373 | 0 | || pei_section_data (abfd, section) == NULL) |
374 | 0 | return NULL; |
375 | 0 | vsize = section->vma - pe_data (abfd)->pe_opthdr.ImageBase; |
376 | 0 | datasize = section->size; |
377 | 0 | if (!datasize || vsize > addr || (vsize + datasize) < addr) |
378 | 0 | return NULL; |
379 | 0 | return section; |
380 | 0 | } |
381 | | |
382 | | /* Dump xdata at for function RF to FILE. The argument XDATA_SECTION |
383 | | designate the bfd section containing the xdata, XDATA is its content, |
384 | | and ENDX the size if known (or NULL). */ |
385 | | |
386 | | static void |
387 | | pex64_dump_xdata (FILE *file, bfd *abfd, |
388 | | asection *xdata_section, bfd_byte *xdata, bfd_vma *endx, |
389 | | struct pex64_runtime_function *rf) |
390 | 0 | { |
391 | 0 | bfd_vma vaddr; |
392 | 0 | bfd_vma end_addr; |
393 | 0 | bfd_vma addr = rf->rva_UnwindData; |
394 | 0 | bfd_size_type sec_size = xdata_section->rawsize > 0 ? xdata_section->rawsize : xdata_section->size; |
395 | 0 | struct pex64_unwind_info ui; |
396 | |
|
397 | 0 | vaddr = xdata_section->vma - pe_data (abfd)->pe_opthdr.ImageBase; |
398 | 0 | addr -= vaddr; |
399 | | |
400 | | /* PR 17512: file: 2245-7442-0.004. */ |
401 | 0 | if (addr >= sec_size) |
402 | 0 | { |
403 | 0 | fprintf (file, _("warning: xdata section corrupt\n")); |
404 | 0 | return; |
405 | 0 | } |
406 | | |
407 | 0 | if (endx) |
408 | 0 | { |
409 | 0 | end_addr = endx[0] - vaddr; |
410 | | /* PR 17512: file: 2245-7442-0.004. */ |
411 | 0 | if (end_addr > sec_size) |
412 | 0 | { |
413 | 0 | fprintf (file, _("warning: xdata section corrupt\n")); |
414 | 0 | end_addr = sec_size; |
415 | 0 | } |
416 | 0 | } |
417 | 0 | else |
418 | 0 | end_addr = sec_size; |
419 | |
|
420 | 0 | if (! pex64_get_unwind_info (abfd, &ui, xdata + addr, xdata + end_addr)) |
421 | 0 | { |
422 | 0 | fprintf (file, _("warning: xdata section corrupt\n")); |
423 | 0 | return; |
424 | 0 | } |
425 | | |
426 | 0 | if (ui.Version != 1 && ui.Version != 2) |
427 | 0 | { |
428 | 0 | unsigned int i; |
429 | 0 | fprintf (file, "\tVersion %u (unknown).\n", |
430 | 0 | (unsigned int) ui.Version); |
431 | 0 | for (i = 0; addr < end_addr; addr += 1, i++) |
432 | 0 | { |
433 | 0 | if ((i & 15) == 0) |
434 | 0 | fprintf (file, "\t %03x:", i); |
435 | 0 | fprintf (file, " %02x", xdata[addr]); |
436 | 0 | if ((i & 15) == 15) |
437 | 0 | fprintf (file, "\n"); |
438 | 0 | } |
439 | 0 | if ((i & 15) != 0) |
440 | 0 | fprintf (file, "\n"); |
441 | 0 | return; |
442 | 0 | } |
443 | | |
444 | 0 | fprintf (file, "\tVersion: %d, Flags: ", ui.Version); |
445 | 0 | switch (ui.Flags) |
446 | 0 | { |
447 | 0 | case UNW_FLAG_NHANDLER: |
448 | 0 | fprintf (file, "none"); |
449 | 0 | break; |
450 | 0 | case UNW_FLAG_EHANDLER: |
451 | 0 | fprintf (file, "UNW_FLAG_EHANDLER"); |
452 | 0 | break; |
453 | 0 | case UNW_FLAG_UHANDLER: |
454 | 0 | fprintf (file, "UNW_FLAG_UHANDLER"); |
455 | 0 | break; |
456 | 0 | case UNW_FLAG_FHANDLER: |
457 | 0 | fprintf |
458 | 0 | (file, "UNW_FLAG_EHANDLER | UNW_FLAG_UHANDLER"); |
459 | 0 | break; |
460 | 0 | case UNW_FLAG_CHAININFO: |
461 | 0 | fprintf (file, "UNW_FLAG_CHAININFO"); |
462 | 0 | break; |
463 | 0 | default: |
464 | 0 | fprintf (file, "unknown flags value 0x%x", (unsigned int) ui.Flags); |
465 | 0 | break; |
466 | 0 | } |
467 | 0 | fputc ('\n', file); |
468 | 0 | fprintf (file, "\tNbr codes: %u, ", (unsigned int) ui.CountOfCodes); |
469 | 0 | fprintf (file, "Prologue size: 0x%02x, Frame offset: 0x%x, ", |
470 | 0 | (unsigned int) ui.SizeOfPrologue, (unsigned int) ui.FrameOffset); |
471 | 0 | fprintf (file, "Frame reg: %s\n", |
472 | 0 | ui.FrameRegister == 0 ? "none" |
473 | 0 | : pex_regs[(unsigned int) ui.FrameRegister]); |
474 | | |
475 | | /* PR 17512: file: 2245-7442-0.004. */ |
476 | 0 | if (ui.CountOfCodes * 2 + ui.rawUnwindCodes > xdata + xdata_section->size) |
477 | 0 | fprintf (file, _("Too many unwind codes (%ld)\n"), (long) ui.CountOfCodes); |
478 | 0 | else |
479 | 0 | pex64_xdata_print_uwd_codes (file, abfd, &ui, rf); |
480 | |
|
481 | 0 | switch (ui.Flags) |
482 | 0 | { |
483 | 0 | case UNW_FLAG_EHANDLER: |
484 | 0 | case UNW_FLAG_UHANDLER: |
485 | 0 | case UNW_FLAG_FHANDLER: |
486 | 0 | fprintf (file, "\tHandler: %016" PRIx64 ".\n", |
487 | 0 | ui.rva_ExceptionHandler + pe_data (abfd)->pe_opthdr.ImageBase); |
488 | 0 | break; |
489 | 0 | case UNW_FLAG_CHAININFO: |
490 | 0 | fprintf (file, "\tChain: start: %016" PRIx64 ", end: %016" PRIx64, |
491 | 0 | ui.rva_BeginAddress, ui.rva_EndAddress); |
492 | 0 | fprintf (file, "\n\t unwind data: %016" PRIx64 ".\n", |
493 | 0 | ui.rva_UnwindData); |
494 | 0 | break; |
495 | 0 | } |
496 | | |
497 | | /* Now we need end of this xdata block. */ |
498 | 0 | addr += ui.SizeOfBlock; |
499 | 0 | if (addr < end_addr) |
500 | 0 | { |
501 | 0 | unsigned int i; |
502 | 0 | fprintf (file,"\tUser data:\n"); |
503 | 0 | for (i = 0; addr < end_addr; addr += 1, i++) |
504 | 0 | { |
505 | 0 | if ((i & 15) == 0) |
506 | 0 | fprintf (file, "\t %03x:", i); |
507 | 0 | fprintf (file, " %02x", xdata[addr]); |
508 | 0 | if ((i & 15) == 15) |
509 | 0 | fprintf (file, "\n"); |
510 | 0 | } |
511 | 0 | if ((i & 15) != 0) |
512 | 0 | fprintf (file, "\n"); |
513 | 0 | } |
514 | 0 | } |
515 | | |
516 | | /* Helper function to sort xdata. The entries of xdata are sorted to know |
517 | | the size of each entry. */ |
518 | | |
519 | | static int |
520 | | sort_xdata_arr (const void *l, const void *r) |
521 | 0 | { |
522 | 0 | const bfd_vma *lp = (const bfd_vma *) l; |
523 | 0 | const bfd_vma *rp = (const bfd_vma *) r; |
524 | |
|
525 | 0 | if (*lp == *rp) |
526 | 0 | return 0; |
527 | 0 | return (*lp < *rp ? -1 : 1); |
528 | 0 | } |
529 | | |
530 | | /* Display unwind tables for x86-64. */ |
531 | | |
532 | | static bool |
533 | | pex64_bfd_print_pdata_section (bfd *abfd, void *vfile, asection *pdata_section) |
534 | 0 | { |
535 | 0 | FILE *file = (FILE *) vfile; |
536 | 0 | bfd_byte *pdata = NULL; |
537 | 0 | bfd_byte *xdata = NULL; |
538 | 0 | asection *xdata_section = NULL; |
539 | 0 | bfd_vma xdata_base; |
540 | 0 | bfd_size_type i; |
541 | 0 | bfd_size_type datasize; |
542 | 0 | bfd_size_type stop; |
543 | 0 | bfd_vma prev_beginaddress = (bfd_vma) -1; |
544 | 0 | bfd_vma prev_unwinddata_rva = (bfd_vma) -1; |
545 | 0 | bfd_vma imagebase; |
546 | 0 | int onaline = PDATA_ROW_SIZE; |
547 | 0 | int seen_error = 0; |
548 | 0 | bfd_vma *xdata_arr = NULL; |
549 | 0 | int xdata_arr_cnt; |
550 | 0 | bool virt_size_is_zero = false; |
551 | | |
552 | | /* Sanity checks. */ |
553 | 0 | if (pdata_section == NULL |
554 | 0 | || (pdata_section->flags & SEC_HAS_CONTENTS) == 0 |
555 | 0 | || coff_section_data (abfd, pdata_section) == NULL |
556 | 0 | || pei_section_data (abfd, pdata_section) == NULL) |
557 | 0 | return true; |
558 | | |
559 | 0 | stop = pei_section_data (abfd, pdata_section)->virt_size; |
560 | 0 | if ((stop % onaline) != 0) |
561 | 0 | fprintf (file, |
562 | | /* xgettext:c-format */ |
563 | 0 | _("Warning: %s section size (%ld) is not a multiple of %d\n"), |
564 | 0 | pdata_section->name, (long) stop, onaline); |
565 | |
|
566 | 0 | datasize = pdata_section->size; |
567 | 0 | if (datasize == 0) |
568 | 0 | { |
569 | 0 | if (stop) |
570 | 0 | fprintf (file, _("Warning: %s section size is zero\n"), |
571 | 0 | pdata_section->name); |
572 | 0 | return true; |
573 | 0 | } |
574 | | |
575 | | /* virt_size might be zero for objects. */ |
576 | 0 | if (stop == 0 && strcmp (abfd->xvec->name, "pe-x86-64") == 0) |
577 | 0 | { |
578 | 0 | stop = datasize; |
579 | 0 | virt_size_is_zero = true; |
580 | 0 | } |
581 | 0 | else if (datasize < stop) |
582 | 0 | { |
583 | 0 | fprintf (file, |
584 | | /* xgettext:c-format */ |
585 | 0 | _("Warning: %s section size (%ld) is smaller than virtual size (%ld)\n"), |
586 | 0 | pdata_section->name, (unsigned long) datasize, |
587 | 0 | (unsigned long) stop); |
588 | | /* Be sure not to read past datasize. */ |
589 | 0 | stop = datasize; |
590 | 0 | } |
591 | | |
592 | | /* Display functions table. */ |
593 | 0 | fprintf (file, |
594 | 0 | _("\nThe Function Table (interpreted %s section contents)\n"), |
595 | 0 | pdata_section->name); |
596 | |
|
597 | 0 | fprintf (file, _("vma:\t\t\tBeginAddress\t EndAddress\t UnwindData\n")); |
598 | |
|
599 | 0 | if (!bfd_malloc_and_get_section (abfd, pdata_section, &pdata)) |
600 | 0 | goto done; |
601 | | |
602 | | /* Table of xdata entries. */ |
603 | 0 | xdata_arr = (bfd_vma *) xmalloc (sizeof (bfd_vma) * ((stop / onaline) + 1)); |
604 | 0 | xdata_arr_cnt = 0; |
605 | |
|
606 | 0 | if (strcmp (abfd->xvec->name, "pei-x86-64") == 0) |
607 | 0 | imagebase = pe_data (abfd)->pe_opthdr.ImageBase; |
608 | 0 | else |
609 | 0 | imagebase = 0; |
610 | |
|
611 | 0 | for (i = 0; i < stop; i += onaline) |
612 | 0 | { |
613 | 0 | struct pex64_runtime_function rf; |
614 | |
|
615 | 0 | if (i + PDATA_ROW_SIZE > stop) |
616 | 0 | break; |
617 | | |
618 | 0 | pex64_get_runtime_function (abfd, &rf, &pdata[i]); |
619 | |
|
620 | 0 | if (rf.rva_BeginAddress == 0 && rf.rva_EndAddress == 0 |
621 | 0 | && rf.rva_UnwindData == 0) |
622 | | /* We are probably into the padding of the section now. */ |
623 | 0 | break; |
624 | 0 | fprintf (file, " %016" PRIx64, i + pdata_section->vma); |
625 | 0 | fprintf (file, ":\t%016" PRIx64, imagebase + rf.rva_BeginAddress); |
626 | 0 | fprintf (file, " %016" PRIx64, imagebase + rf.rva_EndAddress); |
627 | 0 | fprintf (file, " %016" PRIx64 "\n", imagebase + rf.rva_UnwindData); |
628 | 0 | if (i != 0 && rf.rva_BeginAddress <= prev_beginaddress) |
629 | 0 | { |
630 | 0 | seen_error = 1; |
631 | 0 | fprintf (file, " has %s begin address as predecessor\n", |
632 | 0 | (rf.rva_BeginAddress < prev_beginaddress ? "smaller" : "same")); |
633 | 0 | } |
634 | 0 | prev_beginaddress = rf.rva_BeginAddress; |
635 | | /* Now we check for negative addresses. */ |
636 | 0 | if ((prev_beginaddress & 0x80000000) != 0) |
637 | 0 | { |
638 | 0 | seen_error = 1; |
639 | 0 | fprintf (file, " has negative begin address\n"); |
640 | 0 | } |
641 | 0 | if ((rf.rva_EndAddress & 0x80000000) != 0) |
642 | 0 | { |
643 | 0 | seen_error = 1; |
644 | 0 | fprintf (file, " has negative end address\n"); |
645 | 0 | } |
646 | 0 | if ((rf.rva_UnwindData & 0x80000000) != 0) |
647 | 0 | { |
648 | 0 | seen_error = 1; |
649 | 0 | fprintf (file, " has negative unwind address\n"); |
650 | 0 | } |
651 | 0 | else if ((rf.rva_UnwindData && !PEX64_IS_RUNTIME_FUNCTION_CHAINED (&rf)) |
652 | 0 | || virt_size_is_zero) |
653 | 0 | xdata_arr[xdata_arr_cnt++] = rf.rva_UnwindData; |
654 | 0 | } |
655 | |
|
656 | 0 | if (seen_error) |
657 | 0 | goto done; |
658 | | |
659 | | /* Add end of list marker. */ |
660 | 0 | xdata_arr[xdata_arr_cnt++] = ~((bfd_vma) 0); |
661 | | |
662 | | /* Sort start RVAs of xdata. */ |
663 | 0 | if (xdata_arr_cnt > 1) |
664 | 0 | qsort (xdata_arr, (size_t) xdata_arr_cnt, sizeof (bfd_vma), |
665 | 0 | sort_xdata_arr); |
666 | | |
667 | | /* Find the section containing the unwind data (.xdata). */ |
668 | 0 | xdata_base = xdata_arr[0]; |
669 | | /* For sections with long names, first look for the same |
670 | | section name, replacing .pdata by .xdata prefix. */ |
671 | 0 | if (strcmp (pdata_section->name, ".pdata") != 0) |
672 | 0 | { |
673 | 0 | size_t len = strlen (pdata_section->name); |
674 | 0 | char *xdata_name = xmalloc (len + 1); |
675 | |
|
676 | 0 | xdata_name = memcpy (xdata_name, pdata_section->name, len + 1); |
677 | | /* Transform .pdata prefix into .xdata prefix. */ |
678 | 0 | if (len > 1) |
679 | 0 | xdata_name [1] = 'x'; |
680 | 0 | xdata_section = pex64_get_section_by_rva (abfd, xdata_base, |
681 | 0 | xdata_name); |
682 | 0 | free (xdata_name); |
683 | 0 | } |
684 | | /* Second, try the .xdata section itself. */ |
685 | 0 | if (!xdata_section) |
686 | 0 | xdata_section = pex64_get_section_by_rva (abfd, xdata_base, ".xdata"); |
687 | | /* Otherwise, if xdata_base is non zero, search also inside |
688 | | other standard sections. */ |
689 | 0 | if (!xdata_section && xdata_base) |
690 | 0 | xdata_section = pex64_get_section_by_rva (abfd, xdata_base, ".rdata"); |
691 | 0 | if (!xdata_section && xdata_base) |
692 | 0 | xdata_section = pex64_get_section_by_rva (abfd, xdata_base, ".data"); |
693 | 0 | if (!xdata_section && xdata_base) |
694 | 0 | xdata_section = pex64_get_section_by_rva (abfd, xdata_base, ".pdata"); |
695 | 0 | if (!xdata_section && xdata_base) |
696 | 0 | xdata_section = pex64_get_section_by_rva (abfd, xdata_base, ".text"); |
697 | | /* Transfer xdata section into xdata array. */ |
698 | 0 | if (!xdata_section |
699 | 0 | || (xdata_section->flags & SEC_HAS_CONTENTS) == 0 |
700 | 0 | || !bfd_malloc_and_get_section (abfd, xdata_section, &xdata)) |
701 | 0 | goto done; |
702 | | |
703 | | /* Avoid "also used "... ouput for single unwind info |
704 | | in object file. */ |
705 | 0 | prev_unwinddata_rva = (bfd_vma) -1; |
706 | | |
707 | | /* Do dump of pdata related xdata. */ |
708 | 0 | for (i = 0; i < stop; i += onaline) |
709 | 0 | { |
710 | 0 | struct pex64_runtime_function rf; |
711 | |
|
712 | 0 | if (i + PDATA_ROW_SIZE > stop) |
713 | 0 | break; |
714 | | |
715 | 0 | pex64_get_runtime_function (abfd, &rf, &pdata[i]); |
716 | |
|
717 | 0 | if (rf.rva_BeginAddress == 0 && rf.rva_EndAddress == 0 |
718 | 0 | && rf.rva_UnwindData == 0) |
719 | | /* We are probably into the padding of the section now. */ |
720 | 0 | break; |
721 | 0 | if (i == 0) |
722 | 0 | fprintf (file, _("\nDump of %s\n"), xdata_section->name); |
723 | |
|
724 | 0 | fprintf (file, " %016" PRIx64, rf.rva_UnwindData + imagebase); |
725 | |
|
726 | 0 | if (prev_unwinddata_rva == rf.rva_UnwindData) |
727 | 0 | { |
728 | | /* Do not dump again the xdata for the same entry. */ |
729 | 0 | fprintf (file, " also used for function at %016" PRIx64 "\n", |
730 | 0 | rf.rva_BeginAddress + imagebase); |
731 | 0 | continue; |
732 | 0 | } |
733 | 0 | else |
734 | 0 | prev_unwinddata_rva = rf.rva_UnwindData; |
735 | | |
736 | 0 | fprintf (file, " (rva: %08x): %016" PRIx64 " - %016" PRIx64 "\n", |
737 | 0 | (unsigned int) rf.rva_UnwindData, |
738 | 0 | rf.rva_BeginAddress + imagebase, |
739 | 0 | rf.rva_EndAddress + imagebase); |
740 | |
|
741 | 0 | if (rf.rva_UnwindData != 0 || virt_size_is_zero) |
742 | 0 | { |
743 | 0 | if (PEX64_IS_RUNTIME_FUNCTION_CHAINED (&rf)) |
744 | 0 | { |
745 | 0 | bfd_vma altent = PEX64_GET_UNWINDDATA_UNIFIED_RVA (&rf); |
746 | 0 | bfd_vma pdata_vma = bfd_section_vma (pdata_section); |
747 | 0 | struct pex64_runtime_function arf; |
748 | |
|
749 | 0 | fprintf (file, "\t shares information with "); |
750 | 0 | altent += imagebase; |
751 | |
|
752 | 0 | if (altent >= pdata_vma |
753 | 0 | && altent - pdata_vma + PDATA_ROW_SIZE <= stop) |
754 | 0 | { |
755 | 0 | pex64_get_runtime_function |
756 | 0 | (abfd, &arf, &pdata[altent - pdata_vma]); |
757 | 0 | fprintf (file, "pdata element at 0x%016" PRIx64, |
758 | 0 | arf.rva_UnwindData); |
759 | 0 | } |
760 | 0 | else |
761 | 0 | fprintf (file, "unknown pdata element"); |
762 | 0 | fprintf (file, ".\n"); |
763 | 0 | } |
764 | 0 | else |
765 | 0 | { |
766 | 0 | bfd_vma *p; |
767 | | |
768 | | /* Search for the current entry in the sorted array. */ |
769 | 0 | p = (bfd_vma *) |
770 | 0 | bsearch (&rf.rva_UnwindData, xdata_arr, |
771 | 0 | (size_t) xdata_arr_cnt, sizeof (bfd_vma), |
772 | 0 | sort_xdata_arr); |
773 | | |
774 | | /* Advance to the next pointer into the xdata section. We may |
775 | | have shared xdata entries, which will result in a string of |
776 | | identical pointers in the array; advance past all of them. */ |
777 | 0 | while (p[0] <= rf.rva_UnwindData) |
778 | 0 | ++p; |
779 | |
|
780 | 0 | if (p[0] == ~((bfd_vma) 0)) |
781 | 0 | p = NULL; |
782 | |
|
783 | 0 | pex64_dump_xdata (file, abfd, xdata_section, xdata, p, &rf); |
784 | 0 | } |
785 | 0 | } |
786 | 0 | } |
787 | |
|
788 | 0 | done: |
789 | 0 | free (pdata); |
790 | 0 | free (xdata_arr); |
791 | 0 | free (xdata); |
792 | |
|
793 | 0 | return true; |
794 | 0 | } |
795 | | |
796 | | struct pex64_paps |
797 | | { |
798 | | void *obj; |
799 | | /* Number of found pdata sections. */ |
800 | | unsigned int pdata_count; |
801 | | }; |
802 | | |
803 | | /* Functionn prototype. */ |
804 | | bool pex64_bfd_print_pdata (bfd *, void *); |
805 | | |
806 | | /* Helper function for bfd_map_over_section. */ |
807 | | static void |
808 | | pex64_print_all_pdata_sections (bfd *abfd, asection *pdata, void *arg) |
809 | 0 | { |
810 | 0 | struct pex64_paps *paps = arg; |
811 | 0 | if (startswith (pdata->name, ".pdata")) |
812 | 0 | { |
813 | 0 | if (pex64_bfd_print_pdata_section (abfd, paps->obj, pdata)) |
814 | 0 | paps->pdata_count++; |
815 | 0 | } |
816 | 0 | } |
817 | | |
818 | | bool |
819 | | pex64_bfd_print_pdata (bfd *abfd, void *vfile) |
820 | 0 | { |
821 | 0 | asection *pdata_section = bfd_get_section_by_name (abfd, ".pdata"); |
822 | 0 | struct pex64_paps paps; |
823 | |
|
824 | 0 | if (pdata_section) |
825 | 0 | return pex64_bfd_print_pdata_section (abfd, vfile, pdata_section); |
826 | | |
827 | 0 | paps.obj = vfile; |
828 | 0 | paps.pdata_count = 0; |
829 | 0 | bfd_map_over_sections (abfd, pex64_print_all_pdata_sections, &paps); |
830 | 0 | return paps.pdata_count != 0; |
831 | 0 | } |
832 | | |
833 | | #define bfd_pe_print_pdata pex64_bfd_print_pdata |
834 | | #define bfd_coff_std_swap_table bfd_coff_pei_swap_table |
835 | | |
836 | | #include "coff-x86_64.c" |