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bellard31e31b82003-02-18 22:55:36 +00001/* This is the Linux kernel elf-loading code, ported into user space */
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002#include <sys/time.h>
3#include <sys/param.h>
bellard31e31b82003-02-18 22:55:36 +00004
5#include <stdio.h>
6#include <sys/types.h>
7#include <fcntl.h>
bellard31e31b82003-02-18 22:55:36 +00008#include <errno.h>
9#include <unistd.h>
10#include <sys/mman.h>
Mika Westerbergedf8e2a2009-04-07 09:57:11 +030011#include <sys/resource.h>
bellard31e31b82003-02-18 22:55:36 +000012#include <stdlib.h>
13#include <string.h>
Mika Westerbergedf8e2a2009-04-07 09:57:11 +030014#include <time.h>
bellard31e31b82003-02-18 22:55:36 +000015
bellard3ef693a2003-03-23 20:17:16 +000016#include "qemu.h"
bellard689f9362003-04-29 20:40:07 +000017#include "disas.h"
bellard31e31b82003-02-18 22:55:36 +000018
malce58ffeb2009-01-14 18:39:49 +000019#ifdef _ARCH_PPC64
malca6cc84f2008-08-20 22:39:28 +000020#undef ARCH_DLINFO
21#undef ELF_PLATFORM
22#undef ELF_HWCAP
23#undef ELF_CLASS
24#undef ELF_DATA
25#undef ELF_ARCH
26#endif
27
Mika Westerbergedf8e2a2009-04-07 09:57:11 +030028#define ELF_OSABI ELFOSABI_SYSV
29
blueswir1cb33da52007-10-09 16:34:29 +000030/* from personality.h */
31
32/*
33 * Flags for bug emulation.
34 *
35 * These occupy the top three bytes.
36 */
37enum {
38 ADDR_NO_RANDOMIZE = 0x0040000, /* disable randomization of VA space */
39 FDPIC_FUNCPTRS = 0x0080000, /* userspace function ptrs point to descriptors
40 * (signal handling)
41 */
42 MMAP_PAGE_ZERO = 0x0100000,
43 ADDR_COMPAT_LAYOUT = 0x0200000,
44 READ_IMPLIES_EXEC = 0x0400000,
45 ADDR_LIMIT_32BIT = 0x0800000,
46 SHORT_INODE = 0x1000000,
47 WHOLE_SECONDS = 0x2000000,
48 STICKY_TIMEOUTS = 0x4000000,
49 ADDR_LIMIT_3GB = 0x8000000,
50};
51
52/*
53 * Personality types.
54 *
55 * These go in the low byte. Avoid using the top bit, it will
56 * conflict with error returns.
57 */
58enum {
59 PER_LINUX = 0x0000,
60 PER_LINUX_32BIT = 0x0000 | ADDR_LIMIT_32BIT,
61 PER_LINUX_FDPIC = 0x0000 | FDPIC_FUNCPTRS,
62 PER_SVR4 = 0x0001 | STICKY_TIMEOUTS | MMAP_PAGE_ZERO,
63 PER_SVR3 = 0x0002 | STICKY_TIMEOUTS | SHORT_INODE,
64 PER_SCOSVR3 = 0x0003 | STICKY_TIMEOUTS |
65 WHOLE_SECONDS | SHORT_INODE,
66 PER_OSR5 = 0x0003 | STICKY_TIMEOUTS | WHOLE_SECONDS,
67 PER_WYSEV386 = 0x0004 | STICKY_TIMEOUTS | SHORT_INODE,
68 PER_ISCR4 = 0x0005 | STICKY_TIMEOUTS,
69 PER_BSD = 0x0006,
70 PER_SUNOS = 0x0006 | STICKY_TIMEOUTS,
71 PER_XENIX = 0x0007 | STICKY_TIMEOUTS | SHORT_INODE,
72 PER_LINUX32 = 0x0008,
73 PER_LINUX32_3GB = 0x0008 | ADDR_LIMIT_3GB,
74 PER_IRIX32 = 0x0009 | STICKY_TIMEOUTS,/* IRIX5 32-bit */
75 PER_IRIXN32 = 0x000a | STICKY_TIMEOUTS,/* IRIX6 new 32-bit */
76 PER_IRIX64 = 0x000b | STICKY_TIMEOUTS,/* IRIX6 64-bit */
77 PER_RISCOS = 0x000c,
78 PER_SOLARIS = 0x000d | STICKY_TIMEOUTS,
79 PER_UW7 = 0x000e | STICKY_TIMEOUTS | MMAP_PAGE_ZERO,
80 PER_OSF4 = 0x000f, /* OSF/1 v4 */
81 PER_HPUX = 0x0010,
82 PER_MASK = 0x00ff,
83};
84
85/*
86 * Return the base personality without flags.
87 */
88#define personality(pers) (pers & PER_MASK)
89
bellard83fb7ad2004-07-05 21:25:26 +000090/* this flag is uneffective under linux too, should be deleted */
91#ifndef MAP_DENYWRITE
92#define MAP_DENYWRITE 0
93#endif
94
95/* should probably go in elf.h */
96#ifndef ELIBBAD
97#define ELIBBAD 80
98#endif
99
bellard30ac07d2003-04-07 21:33:03 +0000100#ifdef TARGET_I386
101
bellard15338fd2005-11-26 11:41:16 +0000102#define ELF_PLATFORM get_elf_platform()
103
104static const char *get_elf_platform(void)
105{
106 static char elf_platform[] = "i386";
pbrookd5975362008-06-07 20:50:51 +0000107 int family = (thread_env->cpuid_version >> 8) & 0xff;
bellard15338fd2005-11-26 11:41:16 +0000108 if (family > 6)
109 family = 6;
110 if (family >= 3)
111 elf_platform[1] = '0' + family;
112 return elf_platform;
113}
114
115#define ELF_HWCAP get_elf_hwcap()
116
117static uint32_t get_elf_hwcap(void)
118{
pbrookd5975362008-06-07 20:50:51 +0000119 return thread_env->cpuid_features;
bellard15338fd2005-11-26 11:41:16 +0000120}
121
j_mayer84409dd2007-04-06 08:56:50 +0000122#ifdef TARGET_X86_64
123#define ELF_START_MMAP 0x2aaaaab000ULL
124#define elf_check_arch(x) ( ((x) == ELF_ARCH) )
125
126#define ELF_CLASS ELFCLASS64
127#define ELF_DATA ELFDATA2LSB
128#define ELF_ARCH EM_X86_64
129
130static inline void init_thread(struct target_pt_regs *regs, struct image_info *infop)
131{
132 regs->rax = 0;
133 regs->rsp = infop->start_stack;
134 regs->rip = infop->entry;
135}
136
Anthony Liguoric227f092009-10-01 16:12:16 -0500137typedef target_ulong target_elf_greg_t;
138typedef uint32_t target_uid_t;
139typedef uint32_t target_gid_t;
140typedef int32_t target_pid_t;
Mika Westerberg9edc5d72009-04-07 09:57:59 +0300141
142#define ELF_NREG 27
Anthony Liguoric227f092009-10-01 16:12:16 -0500143typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
Mika Westerberg9edc5d72009-04-07 09:57:59 +0300144
145/*
146 * Note that ELF_NREG should be 29 as there should be place for
147 * TRAPNO and ERR "registers" as well but linux doesn't dump
148 * those.
149 *
150 * See linux kernel: arch/x86/include/asm/elf.h
151 */
Anthony Liguoric227f092009-10-01 16:12:16 -0500152static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUState *env)
Mika Westerberg9edc5d72009-04-07 09:57:59 +0300153{
154 (*regs)[0] = env->regs[15];
155 (*regs)[1] = env->regs[14];
156 (*regs)[2] = env->regs[13];
157 (*regs)[3] = env->regs[12];
158 (*regs)[4] = env->regs[R_EBP];
159 (*regs)[5] = env->regs[R_EBX];
160 (*regs)[6] = env->regs[11];
161 (*regs)[7] = env->regs[10];
162 (*regs)[8] = env->regs[9];
163 (*regs)[9] = env->regs[8];
164 (*regs)[10] = env->regs[R_EAX];
165 (*regs)[11] = env->regs[R_ECX];
166 (*regs)[12] = env->regs[R_EDX];
167 (*regs)[13] = env->regs[R_ESI];
168 (*regs)[14] = env->regs[R_EDI];
169 (*regs)[15] = env->regs[R_EAX]; /* XXX */
170 (*regs)[16] = env->eip;
171 (*regs)[17] = env->segs[R_CS].selector & 0xffff;
172 (*regs)[18] = env->eflags;
173 (*regs)[19] = env->regs[R_ESP];
174 (*regs)[20] = env->segs[R_SS].selector & 0xffff;
175 (*regs)[21] = env->segs[R_FS].selector & 0xffff;
176 (*regs)[22] = env->segs[R_GS].selector & 0xffff;
177 (*regs)[23] = env->segs[R_DS].selector & 0xffff;
178 (*regs)[24] = env->segs[R_ES].selector & 0xffff;
179 (*regs)[25] = env->segs[R_FS].selector & 0xffff;
180 (*regs)[26] = env->segs[R_GS].selector & 0xffff;
181}
182
j_mayer84409dd2007-04-06 08:56:50 +0000183#else
184
bellard30ac07d2003-04-07 21:33:03 +0000185#define ELF_START_MMAP 0x80000000
186
bellard30ac07d2003-04-07 21:33:03 +0000187/*
188 * This is used to ensure we don't load something for the wrong architecture.
189 */
190#define elf_check_arch(x) ( ((x) == EM_386) || ((x) == EM_486) )
191
192/*
193 * These are used to set parameters in the core dumps.
194 */
195#define ELF_CLASS ELFCLASS32
196#define ELF_DATA ELFDATA2LSB
197#define ELF_ARCH EM_386
198
bellardb346ff42003-06-15 20:05:50 +0000199static inline void init_thread(struct target_pt_regs *regs, struct image_info *infop)
200{
201 regs->esp = infop->start_stack;
202 regs->eip = infop->entry;
pbrooke5fe0c52006-06-11 13:32:59 +0000203
204 /* SVR4/i386 ABI (pages 3-31, 3-32) says that when the program
205 starts %edx contains a pointer to a function which might be
206 registered using `atexit'. This provides a mean for the
207 dynamic linker to call DT_FINI functions for shared libraries
208 that have been loaded before the code runs.
209
210 A value of 0 tells we have no such handler. */
211 regs->edx = 0;
bellardb346ff42003-06-15 20:05:50 +0000212}
Mika Westerberg9edc5d72009-04-07 09:57:59 +0300213
Anthony Liguoric227f092009-10-01 16:12:16 -0500214typedef target_ulong target_elf_greg_t;
215typedef uint16_t target_uid_t;
216typedef uint16_t target_gid_t;
217typedef int32_t target_pid_t;
Mika Westerberg9edc5d72009-04-07 09:57:59 +0300218
219#define ELF_NREG 17
Anthony Liguoric227f092009-10-01 16:12:16 -0500220typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
Mika Westerberg9edc5d72009-04-07 09:57:59 +0300221
222/*
223 * Note that ELF_NREG should be 19 as there should be place for
224 * TRAPNO and ERR "registers" as well but linux doesn't dump
225 * those.
226 *
227 * See linux kernel: arch/x86/include/asm/elf.h
228 */
Anthony Liguoric227f092009-10-01 16:12:16 -0500229static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUState *env)
Mika Westerberg9edc5d72009-04-07 09:57:59 +0300230{
231 (*regs)[0] = env->regs[R_EBX];
232 (*regs)[1] = env->regs[R_ECX];
233 (*regs)[2] = env->regs[R_EDX];
234 (*regs)[3] = env->regs[R_ESI];
235 (*regs)[4] = env->regs[R_EDI];
236 (*regs)[5] = env->regs[R_EBP];
237 (*regs)[6] = env->regs[R_EAX];
238 (*regs)[7] = env->segs[R_DS].selector & 0xffff;
239 (*regs)[8] = env->segs[R_ES].selector & 0xffff;
240 (*regs)[9] = env->segs[R_FS].selector & 0xffff;
241 (*regs)[10] = env->segs[R_GS].selector & 0xffff;
242 (*regs)[11] = env->regs[R_EAX]; /* XXX */
243 (*regs)[12] = env->eip;
244 (*regs)[13] = env->segs[R_CS].selector & 0xffff;
245 (*regs)[14] = env->eflags;
246 (*regs)[15] = env->regs[R_ESP];
247 (*regs)[16] = env->segs[R_SS].selector & 0xffff;
248}
j_mayer84409dd2007-04-06 08:56:50 +0000249#endif
bellardb346ff42003-06-15 20:05:50 +0000250
Mika Westerberg9edc5d72009-04-07 09:57:59 +0300251#define USE_ELF_CORE_DUMP
bellardb346ff42003-06-15 20:05:50 +0000252#define ELF_EXEC_PAGESIZE 4096
253
254#endif
255
256#ifdef TARGET_ARM
257
258#define ELF_START_MMAP 0x80000000
259
260#define elf_check_arch(x) ( (x) == EM_ARM )
261
262#define ELF_CLASS ELFCLASS32
263#ifdef TARGET_WORDS_BIGENDIAN
264#define ELF_DATA ELFDATA2MSB
265#else
266#define ELF_DATA ELFDATA2LSB
267#endif
268#define ELF_ARCH EM_ARM
269
bellardb346ff42003-06-15 20:05:50 +0000270static inline void init_thread(struct target_pt_regs *regs, struct image_info *infop)
271{
blueswir1992f48a2007-10-14 16:27:31 +0000272 abi_long stack = infop->start_stack;
bellardb346ff42003-06-15 20:05:50 +0000273 memset(regs, 0, sizeof(*regs));
274 regs->ARM_cpsr = 0x10;
pbrook0240ded2006-02-04 19:30:51 +0000275 if (infop->entry & 1)
276 regs->ARM_cpsr |= CPSR_T;
277 regs->ARM_pc = infop->entry & 0xfffffffe;
bellardb346ff42003-06-15 20:05:50 +0000278 regs->ARM_sp = infop->start_stack;
bellard2f619692007-11-16 10:46:05 +0000279 /* FIXME - what to for failure of get_user()? */
280 get_user_ual(regs->ARM_r2, stack + 8); /* envp */
281 get_user_ual(regs->ARM_r1, stack + 4); /* envp */
bellarda1516e92003-07-09 17:13:37 +0000282 /* XXX: it seems that r0 is zeroed after ! */
pbrooke5fe0c52006-06-11 13:32:59 +0000283 regs->ARM_r0 = 0;
284 /* For uClinux PIC binaries. */
j_mayer863cf0b2007-10-07 15:59:45 +0000285 /* XXX: Linux does this only on ARM with no MMU (do we care ?) */
pbrooke5fe0c52006-06-11 13:32:59 +0000286 regs->ARM_r10 = infop->start_data;
bellardb346ff42003-06-15 20:05:50 +0000287}
288
Anthony Liguoric227f092009-10-01 16:12:16 -0500289typedef uint32_t target_elf_greg_t;
290typedef uint16_t target_uid_t;
291typedef uint16_t target_gid_t;
292typedef int32_t target_pid_t;
Mika Westerbergedf8e2a2009-04-07 09:57:11 +0300293
294#define ELF_NREG 18
Anthony Liguoric227f092009-10-01 16:12:16 -0500295typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
Mika Westerbergedf8e2a2009-04-07 09:57:11 +0300296
Anthony Liguoric227f092009-10-01 16:12:16 -0500297static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUState *env)
Mika Westerbergedf8e2a2009-04-07 09:57:11 +0300298{
299 (*regs)[0] = env->regs[0];
300 (*regs)[1] = env->regs[1];
301 (*regs)[2] = env->regs[2];
302 (*regs)[3] = env->regs[3];
303 (*regs)[4] = env->regs[4];
304 (*regs)[5] = env->regs[5];
305 (*regs)[6] = env->regs[6];
306 (*regs)[7] = env->regs[7];
307 (*regs)[8] = env->regs[8];
308 (*regs)[9] = env->regs[9];
309 (*regs)[10] = env->regs[10];
310 (*regs)[11] = env->regs[11];
311 (*regs)[12] = env->regs[12];
312 (*regs)[13] = env->regs[13];
313 (*regs)[14] = env->regs[14];
314 (*regs)[15] = env->regs[15];
315
316 (*regs)[16] = cpsr_read((CPUState *)env);
317 (*regs)[17] = env->regs[0]; /* XXX */
318}
319
bellard30ac07d2003-04-07 21:33:03 +0000320#define USE_ELF_CORE_DUMP
321#define ELF_EXEC_PAGESIZE 4096
322
bellardafce2922005-10-30 20:58:30 +0000323enum
324{
325 ARM_HWCAP_ARM_SWP = 1 << 0,
326 ARM_HWCAP_ARM_HALF = 1 << 1,
327 ARM_HWCAP_ARM_THUMB = 1 << 2,
328 ARM_HWCAP_ARM_26BIT = 1 << 3,
329 ARM_HWCAP_ARM_FAST_MULT = 1 << 4,
330 ARM_HWCAP_ARM_FPA = 1 << 5,
331 ARM_HWCAP_ARM_VFP = 1 << 6,
332 ARM_HWCAP_ARM_EDSP = 1 << 7,
Riku Voipiocf6de342009-09-30 11:44:34 +0300333 ARM_HWCAP_ARM_JAVA = 1 << 8,
334 ARM_HWCAP_ARM_IWMMXT = 1 << 9,
335 ARM_HWCAP_ARM_THUMBEE = 1 << 10,
336 ARM_HWCAP_ARM_NEON = 1 << 11,
337 ARM_HWCAP_ARM_VFPv3 = 1 << 12,
338 ARM_HWCAP_ARM_VFPv3D16 = 1 << 13,
bellardafce2922005-10-30 20:58:30 +0000339};
340
bellard15338fd2005-11-26 11:41:16 +0000341#define ELF_HWCAP (ARM_HWCAP_ARM_SWP | ARM_HWCAP_ARM_HALF \
bellardafce2922005-10-30 20:58:30 +0000342 | ARM_HWCAP_ARM_THUMB | ARM_HWCAP_ARM_FAST_MULT \
Riku Voipiocf6de342009-09-30 11:44:34 +0300343 | ARM_HWCAP_ARM_FPA | ARM_HWCAP_ARM_VFP \
344 | ARM_HWCAP_ARM_NEON | ARM_HWCAP_ARM_VFPv3 )
bellardafce2922005-10-30 20:58:30 +0000345
bellard30ac07d2003-04-07 21:33:03 +0000346#endif
347
bellard853d6f72003-09-30 20:58:32 +0000348#ifdef TARGET_SPARC
bellarda315a142005-01-30 22:59:18 +0000349#ifdef TARGET_SPARC64
bellard853d6f72003-09-30 20:58:32 +0000350
351#define ELF_START_MMAP 0x80000000
352
blueswir1992f48a2007-10-14 16:27:31 +0000353#ifndef TARGET_ABI32
blueswir1cb33da52007-10-09 16:34:29 +0000354#define elf_check_arch(x) ( (x) == EM_SPARCV9 || (x) == EM_SPARC32PLUS )
blueswir1992f48a2007-10-14 16:27:31 +0000355#else
356#define elf_check_arch(x) ( (x) == EM_SPARC32PLUS || (x) == EM_SPARC )
357#endif
bellard853d6f72003-09-30 20:58:32 +0000358
bellarda315a142005-01-30 22:59:18 +0000359#define ELF_CLASS ELFCLASS64
360#define ELF_DATA ELFDATA2MSB
bellard5ef54112006-07-18 21:14:09 +0000361#define ELF_ARCH EM_SPARCV9
362
363#define STACK_BIAS 2047
bellarda315a142005-01-30 22:59:18 +0000364
bellarda315a142005-01-30 22:59:18 +0000365static inline void init_thread(struct target_pt_regs *regs, struct image_info *infop)
366{
blueswir1992f48a2007-10-14 16:27:31 +0000367#ifndef TARGET_ABI32
bellarda315a142005-01-30 22:59:18 +0000368 regs->tstate = 0;
blueswir1992f48a2007-10-14 16:27:31 +0000369#endif
bellarda315a142005-01-30 22:59:18 +0000370 regs->pc = infop->entry;
371 regs->npc = regs->pc + 4;
372 regs->y = 0;
blueswir1992f48a2007-10-14 16:27:31 +0000373#ifdef TARGET_ABI32
374 regs->u_regs[14] = infop->start_stack - 16 * 4;
375#else
blueswir1cb33da52007-10-09 16:34:29 +0000376 if (personality(infop->personality) == PER_LINUX32)
377 regs->u_regs[14] = infop->start_stack - 16 * 4;
378 else
379 regs->u_regs[14] = infop->start_stack - 16 * 8 - STACK_BIAS;
blueswir1992f48a2007-10-14 16:27:31 +0000380#endif
bellarda315a142005-01-30 22:59:18 +0000381}
382
383#else
384#define ELF_START_MMAP 0x80000000
385
386#define elf_check_arch(x) ( (x) == EM_SPARC )
387
bellard853d6f72003-09-30 20:58:32 +0000388#define ELF_CLASS ELFCLASS32
389#define ELF_DATA ELFDATA2MSB
390#define ELF_ARCH EM_SPARC
391
bellard853d6f72003-09-30 20:58:32 +0000392static inline void init_thread(struct target_pt_regs *regs, struct image_info *infop)
393{
bellardf5155282004-01-04 15:46:50 +0000394 regs->psr = 0;
395 regs->pc = infop->entry;
396 regs->npc = regs->pc + 4;
397 regs->y = 0;
398 regs->u_regs[14] = infop->start_stack - 16 * 4;
bellard853d6f72003-09-30 20:58:32 +0000399}
400
401#endif
bellarda315a142005-01-30 22:59:18 +0000402#endif
bellard853d6f72003-09-30 20:58:32 +0000403
bellard67867302003-11-23 17:05:30 +0000404#ifdef TARGET_PPC
405
406#define ELF_START_MMAP 0x80000000
407
j_mayere85e7c62007-10-18 19:59:49 +0000408#if defined(TARGET_PPC64) && !defined(TARGET_ABI32)
j_mayer84409dd2007-04-06 08:56:50 +0000409
410#define elf_check_arch(x) ( (x) == EM_PPC64 )
411
412#define ELF_CLASS ELFCLASS64
413
414#else
415
bellard67867302003-11-23 17:05:30 +0000416#define elf_check_arch(x) ( (x) == EM_PPC )
417
418#define ELF_CLASS ELFCLASS32
j_mayer84409dd2007-04-06 08:56:50 +0000419
420#endif
421
bellard67867302003-11-23 17:05:30 +0000422#ifdef TARGET_WORDS_BIGENDIAN
423#define ELF_DATA ELFDATA2MSB
424#else
425#define ELF_DATA ELFDATA2LSB
426#endif
427#define ELF_ARCH EM_PPC
428
Nathan Froyddf84e4f2009-05-12 12:26:59 -0700429/* Feature masks for the Aux Vector Hardware Capabilities (AT_HWCAP).
430 See arch/powerpc/include/asm/cputable.h. */
431enum {
malc3efa9a62009-07-18 13:10:12 +0400432 QEMU_PPC_FEATURE_32 = 0x80000000,
433 QEMU_PPC_FEATURE_64 = 0x40000000,
434 QEMU_PPC_FEATURE_601_INSTR = 0x20000000,
435 QEMU_PPC_FEATURE_HAS_ALTIVEC = 0x10000000,
436 QEMU_PPC_FEATURE_HAS_FPU = 0x08000000,
437 QEMU_PPC_FEATURE_HAS_MMU = 0x04000000,
438 QEMU_PPC_FEATURE_HAS_4xxMAC = 0x02000000,
439 QEMU_PPC_FEATURE_UNIFIED_CACHE = 0x01000000,
440 QEMU_PPC_FEATURE_HAS_SPE = 0x00800000,
441 QEMU_PPC_FEATURE_HAS_EFP_SINGLE = 0x00400000,
442 QEMU_PPC_FEATURE_HAS_EFP_DOUBLE = 0x00200000,
443 QEMU_PPC_FEATURE_NO_TB = 0x00100000,
444 QEMU_PPC_FEATURE_POWER4 = 0x00080000,
445 QEMU_PPC_FEATURE_POWER5 = 0x00040000,
446 QEMU_PPC_FEATURE_POWER5_PLUS = 0x00020000,
447 QEMU_PPC_FEATURE_CELL = 0x00010000,
448 QEMU_PPC_FEATURE_BOOKE = 0x00008000,
449 QEMU_PPC_FEATURE_SMT = 0x00004000,
450 QEMU_PPC_FEATURE_ICACHE_SNOOP = 0x00002000,
451 QEMU_PPC_FEATURE_ARCH_2_05 = 0x00001000,
452 QEMU_PPC_FEATURE_PA6T = 0x00000800,
453 QEMU_PPC_FEATURE_HAS_DFP = 0x00000400,
454 QEMU_PPC_FEATURE_POWER6_EXT = 0x00000200,
455 QEMU_PPC_FEATURE_ARCH_2_06 = 0x00000100,
456 QEMU_PPC_FEATURE_HAS_VSX = 0x00000080,
457 QEMU_PPC_FEATURE_PSERIES_PERFMON_COMPAT = 0x00000040,
Nathan Froyddf84e4f2009-05-12 12:26:59 -0700458
malc3efa9a62009-07-18 13:10:12 +0400459 QEMU_PPC_FEATURE_TRUE_LE = 0x00000002,
460 QEMU_PPC_FEATURE_PPC_LE = 0x00000001,
Nathan Froyddf84e4f2009-05-12 12:26:59 -0700461};
462
463#define ELF_HWCAP get_elf_hwcap()
464
465static uint32_t get_elf_hwcap(void)
466{
467 CPUState *e = thread_env;
468 uint32_t features = 0;
469
470 /* We don't have to be terribly complete here; the high points are
471 Altivec/FP/SPE support. Anything else is just a bonus. */
472#define GET_FEATURE(flag, feature) \
473 do {if (e->insns_flags & flag) features |= feature; } while(0)
malc3efa9a62009-07-18 13:10:12 +0400474 GET_FEATURE(PPC_64B, QEMU_PPC_FEATURE_64);
475 GET_FEATURE(PPC_FLOAT, QEMU_PPC_FEATURE_HAS_FPU);
476 GET_FEATURE(PPC_ALTIVEC, QEMU_PPC_FEATURE_HAS_ALTIVEC);
477 GET_FEATURE(PPC_SPE, QEMU_PPC_FEATURE_HAS_SPE);
478 GET_FEATURE(PPC_SPE_SINGLE, QEMU_PPC_FEATURE_HAS_EFP_SINGLE);
479 GET_FEATURE(PPC_SPE_DOUBLE, QEMU_PPC_FEATURE_HAS_EFP_DOUBLE);
480 GET_FEATURE(PPC_BOOKE, QEMU_PPC_FEATURE_BOOKE);
481 GET_FEATURE(PPC_405_MAC, QEMU_PPC_FEATURE_HAS_4xxMAC);
Nathan Froyddf84e4f2009-05-12 12:26:59 -0700482#undef GET_FEATURE
483
484 return features;
485}
486
bellardf5155282004-01-04 15:46:50 +0000487/*
488 * We need to put in some extra aux table entries to tell glibc what
489 * the cache block size is, so it can use the dcbz instruction safely.
490 */
491#define AT_DCACHEBSIZE 19
492#define AT_ICACHEBSIZE 20
493#define AT_UCACHEBSIZE 21
494/* A special ignored type value for PPC, for glibc compatibility. */
495#define AT_IGNOREPPC 22
496/*
497 * The requirements here are:
498 * - keep the final alignment of sp (sp & 0xf)
499 * - make sure the 32-bit value at the first 16 byte aligned position of
500 * AUXV is greater than 16 for glibc compatibility.
501 * AT_IGNOREPPC is used for that.
502 * - for compatibility with glibc ARCH_DLINFO must always be defined on PPC,
503 * even if DLINFO_ARCH_ITEMS goes to zero or is undefined.
504 */
bellard0bccf032005-08-21 10:12:28 +0000505#define DLINFO_ARCH_ITEMS 5
bellardf5155282004-01-04 15:46:50 +0000506#define ARCH_DLINFO \
507do { \
bellard0bccf032005-08-21 10:12:28 +0000508 NEW_AUX_ENT(AT_DCACHEBSIZE, 0x20); \
509 NEW_AUX_ENT(AT_ICACHEBSIZE, 0x20); \
510 NEW_AUX_ENT(AT_UCACHEBSIZE, 0); \
bellardf5155282004-01-04 15:46:50 +0000511 /* \
512 * Now handle glibc compatibility. \
513 */ \
bellard0bccf032005-08-21 10:12:28 +0000514 NEW_AUX_ENT(AT_IGNOREPPC, AT_IGNOREPPC); \
515 NEW_AUX_ENT(AT_IGNOREPPC, AT_IGNOREPPC); \
bellardf5155282004-01-04 15:46:50 +0000516 } while (0)
517
bellard67867302003-11-23 17:05:30 +0000518static inline void init_thread(struct target_pt_regs *_regs, struct image_info *infop)
519{
blueswir1992f48a2007-10-14 16:27:31 +0000520 abi_ulong pos = infop->start_stack;
521 abi_ulong tmp;
j_mayere85e7c62007-10-18 19:59:49 +0000522#if defined(TARGET_PPC64) && !defined(TARGET_ABI32)
blueswir1992f48a2007-10-14 16:27:31 +0000523 abi_ulong entry, toc;
j_mayer84409dd2007-04-06 08:56:50 +0000524#endif
pbrooke5fe0c52006-06-11 13:32:59 +0000525
bellard67867302003-11-23 17:05:30 +0000526 _regs->gpr[1] = infop->start_stack;
j_mayere85e7c62007-10-18 19:59:49 +0000527#if defined(TARGET_PPC64) && !defined(TARGET_ABI32)
j_mayer84409dd2007-04-06 08:56:50 +0000528 entry = ldq_raw(infop->entry) + infop->load_addr;
529 toc = ldq_raw(infop->entry + 8) + infop->load_addr;
530 _regs->gpr[2] = toc;
531 infop->entry = entry;
532#endif
bellard67867302003-11-23 17:05:30 +0000533 _regs->nip = infop->entry;
pbrooke5fe0c52006-06-11 13:32:59 +0000534 /* Note that isn't exactly what regular kernel does
535 * but this is what the ABI wants and is needed to allow
536 * execution of PPC BSD programs.
537 */
bellard2f619692007-11-16 10:46:05 +0000538 /* FIXME - what to for failure of get_user()? */
539 get_user_ual(_regs->gpr[3], pos);
blueswir1992f48a2007-10-14 16:27:31 +0000540 pos += sizeof(abi_ulong);
pbrooke5fe0c52006-06-11 13:32:59 +0000541 _regs->gpr[4] = pos;
blueswir1992f48a2007-10-14 16:27:31 +0000542 for (tmp = 1; tmp != 0; pos += sizeof(abi_ulong))
pbrooke5fe0c52006-06-11 13:32:59 +0000543 tmp = ldl(pos);
544 _regs->gpr[5] = pos;
bellard67867302003-11-23 17:05:30 +0000545}
546
bellard67867302003-11-23 17:05:30 +0000547#define ELF_EXEC_PAGESIZE 4096
548
549#endif
550
bellard048f6b42005-11-26 18:47:20 +0000551#ifdef TARGET_MIPS
552
553#define ELF_START_MMAP 0x80000000
554
555#define elf_check_arch(x) ( (x) == EM_MIPS )
556
ths388bb212007-05-13 13:58:00 +0000557#ifdef TARGET_MIPS64
558#define ELF_CLASS ELFCLASS64
559#else
bellard048f6b42005-11-26 18:47:20 +0000560#define ELF_CLASS ELFCLASS32
ths388bb212007-05-13 13:58:00 +0000561#endif
bellard048f6b42005-11-26 18:47:20 +0000562#ifdef TARGET_WORDS_BIGENDIAN
563#define ELF_DATA ELFDATA2MSB
564#else
565#define ELF_DATA ELFDATA2LSB
566#endif
567#define ELF_ARCH EM_MIPS
568
bellard048f6b42005-11-26 18:47:20 +0000569static inline void init_thread(struct target_pt_regs *regs, struct image_info *infop)
570{
ths623a9302007-10-28 19:45:05 +0000571 regs->cp0_status = 2 << CP0St_KSU;
bellard048f6b42005-11-26 18:47:20 +0000572 regs->cp0_epc = infop->entry;
573 regs->regs[29] = infop->start_stack;
574}
575
ths388bb212007-05-13 13:58:00 +0000576#define ELF_EXEC_PAGESIZE 4096
577
bellard048f6b42005-11-26 18:47:20 +0000578#endif /* TARGET_MIPS */
579
Edgar E. Iglesiasb779e292009-05-20 21:31:33 +0200580#ifdef TARGET_MICROBLAZE
581
582#define ELF_START_MMAP 0x80000000
583
584#define elf_check_arch(x) ( (x) == EM_XILINX_MICROBLAZE )
585
586#define ELF_CLASS ELFCLASS32
587#define ELF_DATA ELFDATA2MSB
588#define ELF_ARCH EM_MIPS
589
590static inline void init_thread(struct target_pt_regs *regs, struct image_info *infop)
591{
592 regs->pc = infop->entry;
593 regs->r1 = infop->start_stack;
594
595}
596
Edgar E. Iglesiasb779e292009-05-20 21:31:33 +0200597#define ELF_EXEC_PAGESIZE 4096
598
599#endif /* TARGET_MICROBLAZE */
600
bellardfdf9b3e2006-04-27 21:07:38 +0000601#ifdef TARGET_SH4
602
603#define ELF_START_MMAP 0x80000000
604
605#define elf_check_arch(x) ( (x) == EM_SH )
606
607#define ELF_CLASS ELFCLASS32
608#define ELF_DATA ELFDATA2LSB
609#define ELF_ARCH EM_SH
610
bellardfdf9b3e2006-04-27 21:07:38 +0000611static inline void init_thread(struct target_pt_regs *regs, struct image_info *infop)
612{
613 /* Check other registers XXXXX */
614 regs->pc = infop->entry;
ths072ae842007-06-22 10:13:51 +0000615 regs->regs[15] = infop->start_stack;
bellardfdf9b3e2006-04-27 21:07:38 +0000616}
617
bellardfdf9b3e2006-04-27 21:07:38 +0000618#define ELF_EXEC_PAGESIZE 4096
619
620#endif
621
ths48733d12007-10-08 13:36:46 +0000622#ifdef TARGET_CRIS
623
624#define ELF_START_MMAP 0x80000000
625
626#define elf_check_arch(x) ( (x) == EM_CRIS )
627
628#define ELF_CLASS ELFCLASS32
629#define ELF_DATA ELFDATA2LSB
630#define ELF_ARCH EM_CRIS
631
632static inline void init_thread(struct target_pt_regs *regs, struct image_info *infop)
633{
634 regs->erp = infop->entry;
635}
636
ths48733d12007-10-08 13:36:46 +0000637#define ELF_EXEC_PAGESIZE 8192
638
639#endif
640
pbrooke6e59062006-10-22 00:18:54 +0000641#ifdef TARGET_M68K
642
643#define ELF_START_MMAP 0x80000000
644
645#define elf_check_arch(x) ( (x) == EM_68K )
646
647#define ELF_CLASS ELFCLASS32
648#define ELF_DATA ELFDATA2MSB
649#define ELF_ARCH EM_68K
650
651/* ??? Does this need to do anything?
652#define ELF_PLAT_INIT(_r) */
653
654static inline void init_thread(struct target_pt_regs *regs, struct image_info *infop)
655{
656 regs->usp = infop->start_stack;
657 regs->sr = 0;
658 regs->pc = infop->entry;
659}
660
pbrooke6e59062006-10-22 00:18:54 +0000661#define ELF_EXEC_PAGESIZE 8192
662
663#endif
664
j_mayer7a3148a2007-04-05 07:13:51 +0000665#ifdef TARGET_ALPHA
666
667#define ELF_START_MMAP (0x30000000000ULL)
668
669#define elf_check_arch(x) ( (x) == ELF_ARCH )
670
671#define ELF_CLASS ELFCLASS64
672#define ELF_DATA ELFDATA2MSB
673#define ELF_ARCH EM_ALPHA
674
675static inline void init_thread(struct target_pt_regs *regs, struct image_info *infop)
676{
677 regs->pc = infop->entry;
678 regs->ps = 8;
679 regs->usp = infop->start_stack;
j_mayer7a3148a2007-04-05 07:13:51 +0000680}
681
j_mayer7a3148a2007-04-05 07:13:51 +0000682#define ELF_EXEC_PAGESIZE 8192
683
684#endif /* TARGET_ALPHA */
685
bellard15338fd2005-11-26 11:41:16 +0000686#ifndef ELF_PLATFORM
687#define ELF_PLATFORM (NULL)
688#endif
689
690#ifndef ELF_HWCAP
691#define ELF_HWCAP 0
692#endif
693
blueswir1992f48a2007-10-14 16:27:31 +0000694#ifdef TARGET_ABI32
blueswir1cb33da52007-10-09 16:34:29 +0000695#undef ELF_CLASS
blueswir1992f48a2007-10-14 16:27:31 +0000696#define ELF_CLASS ELFCLASS32
blueswir1cb33da52007-10-09 16:34:29 +0000697#undef bswaptls
698#define bswaptls(ptr) bswap32s(ptr)
699#endif
700
bellard31e31b82003-02-18 22:55:36 +0000701#include "elf.h"
bellard09bfb052003-04-10 00:03:40 +0000702
bellard09bfb052003-04-10 00:03:40 +0000703struct exec
704{
705 unsigned int a_info; /* Use macros N_MAGIC, etc for access */
706 unsigned int a_text; /* length of text, in bytes */
707 unsigned int a_data; /* length of data, in bytes */
708 unsigned int a_bss; /* length of uninitialized data area, in bytes */
709 unsigned int a_syms; /* length of symbol table data in file, in bytes */
710 unsigned int a_entry; /* start address */
711 unsigned int a_trsize; /* length of relocation info for text, in bytes */
712 unsigned int a_drsize; /* length of relocation info for data, in bytes */
713};
714
715
716#define N_MAGIC(exec) ((exec).a_info & 0xffff)
717#define OMAGIC 0407
718#define NMAGIC 0410
719#define ZMAGIC 0413
720#define QMAGIC 0314
721
bellard09bfb052003-04-10 00:03:40 +0000722/* max code+data+bss space allocated to elf interpreter */
723#define INTERP_MAP_SIZE (32 * 1024 * 1024)
724
725/* max code+data+bss+brk space allocated to ET_DYN executables */
726#define ET_DYN_MAP_SIZE (128 * 1024 * 1024)
727
bellard31e31b82003-02-18 22:55:36 +0000728/* Necessary parameters */
bellard54936002003-05-13 00:25:15 +0000729#define TARGET_ELF_EXEC_PAGESIZE TARGET_PAGE_SIZE
730#define TARGET_ELF_PAGESTART(_v) ((_v) & ~(unsigned long)(TARGET_ELF_EXEC_PAGESIZE-1))
731#define TARGET_ELF_PAGEOFFSET(_v) ((_v) & (TARGET_ELF_EXEC_PAGESIZE-1))
bellard31e31b82003-02-18 22:55:36 +0000732
733#define INTERPRETER_NONE 0
734#define INTERPRETER_AOUT 1
735#define INTERPRETER_ELF 2
736
bellard15338fd2005-11-26 11:41:16 +0000737#define DLINFO_ITEMS 12
bellard31e31b82003-02-18 22:55:36 +0000738
bellard09bfb052003-04-10 00:03:40 +0000739static inline void memcpy_fromfs(void * to, const void * from, unsigned long n)
740{
741 memcpy(to, from, n);
742}
743
bellard31e31b82003-02-18 22:55:36 +0000744static int load_aout_interp(void * exptr, int interp_fd);
745
746#ifdef BSWAP_NEEDED
bellard92a31b12005-02-10 22:00:52 +0000747static void bswap_ehdr(struct elfhdr *ehdr)
bellard31e31b82003-02-18 22:55:36 +0000748{
749 bswap16s(&ehdr->e_type); /* Object file type */
750 bswap16s(&ehdr->e_machine); /* Architecture */
751 bswap32s(&ehdr->e_version); /* Object file version */
bellard92a31b12005-02-10 22:00:52 +0000752 bswaptls(&ehdr->e_entry); /* Entry point virtual address */
753 bswaptls(&ehdr->e_phoff); /* Program header table file offset */
754 bswaptls(&ehdr->e_shoff); /* Section header table file offset */
bellard31e31b82003-02-18 22:55:36 +0000755 bswap32s(&ehdr->e_flags); /* Processor-specific flags */
756 bswap16s(&ehdr->e_ehsize); /* ELF header size in bytes */
757 bswap16s(&ehdr->e_phentsize); /* Program header table entry size */
758 bswap16s(&ehdr->e_phnum); /* Program header table entry count */
759 bswap16s(&ehdr->e_shentsize); /* Section header table entry size */
760 bswap16s(&ehdr->e_shnum); /* Section header table entry count */
761 bswap16s(&ehdr->e_shstrndx); /* Section header string table index */
762}
763
bellard92a31b12005-02-10 22:00:52 +0000764static void bswap_phdr(struct elf_phdr *phdr)
bellard31e31b82003-02-18 22:55:36 +0000765{
766 bswap32s(&phdr->p_type); /* Segment type */
bellard92a31b12005-02-10 22:00:52 +0000767 bswaptls(&phdr->p_offset); /* Segment file offset */
768 bswaptls(&phdr->p_vaddr); /* Segment virtual address */
769 bswaptls(&phdr->p_paddr); /* Segment physical address */
770 bswaptls(&phdr->p_filesz); /* Segment size in file */
771 bswaptls(&phdr->p_memsz); /* Segment size in memory */
bellard31e31b82003-02-18 22:55:36 +0000772 bswap32s(&phdr->p_flags); /* Segment flags */
bellard92a31b12005-02-10 22:00:52 +0000773 bswaptls(&phdr->p_align); /* Segment alignment */
bellard31e31b82003-02-18 22:55:36 +0000774}
bellard689f9362003-04-29 20:40:07 +0000775
bellard92a31b12005-02-10 22:00:52 +0000776static void bswap_shdr(struct elf_shdr *shdr)
bellard689f9362003-04-29 20:40:07 +0000777{
778 bswap32s(&shdr->sh_name);
779 bswap32s(&shdr->sh_type);
bellard92a31b12005-02-10 22:00:52 +0000780 bswaptls(&shdr->sh_flags);
781 bswaptls(&shdr->sh_addr);
782 bswaptls(&shdr->sh_offset);
783 bswaptls(&shdr->sh_size);
bellard689f9362003-04-29 20:40:07 +0000784 bswap32s(&shdr->sh_link);
785 bswap32s(&shdr->sh_info);
bellard92a31b12005-02-10 22:00:52 +0000786 bswaptls(&shdr->sh_addralign);
787 bswaptls(&shdr->sh_entsize);
bellard689f9362003-04-29 20:40:07 +0000788}
789
j_mayer7a3148a2007-04-05 07:13:51 +0000790static void bswap_sym(struct elf_sym *sym)
bellard689f9362003-04-29 20:40:07 +0000791{
792 bswap32s(&sym->st_name);
j_mayer7a3148a2007-04-05 07:13:51 +0000793 bswaptls(&sym->st_value);
794 bswaptls(&sym->st_size);
bellard689f9362003-04-29 20:40:07 +0000795 bswap16s(&sym->st_shndx);
796}
bellard31e31b82003-02-18 22:55:36 +0000797#endif
798
Mika Westerbergedf8e2a2009-04-07 09:57:11 +0300799#ifdef USE_ELF_CORE_DUMP
800static int elf_core_dump(int, const CPUState *);
801
802#ifdef BSWAP_NEEDED
803static void bswap_note(struct elf_note *en)
804{
malc9fdca5a2009-07-18 13:12:20 +0400805 bswap32s(&en->n_namesz);
806 bswap32s(&en->n_descsz);
807 bswap32s(&en->n_type);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +0300808}
809#endif /* BSWAP_NEEDED */
810
811#endif /* USE_ELF_CORE_DUMP */
812
bellard31e31b82003-02-18 22:55:36 +0000813/*
pbrooke5fe0c52006-06-11 13:32:59 +0000814 * 'copy_elf_strings()' copies argument/envelope strings from user
bellard31e31b82003-02-18 22:55:36 +0000815 * memory to free pages in kernel mem. These are in a format ready
816 * to be put directly into the top of new user memory.
817 *
818 */
blueswir1992f48a2007-10-14 16:27:31 +0000819static abi_ulong copy_elf_strings(int argc,char ** argv, void **page,
820 abi_ulong p)
bellard31e31b82003-02-18 22:55:36 +0000821{
822 char *tmp, *tmp1, *pag = NULL;
823 int len, offset = 0;
824
825 if (!p) {
826 return 0; /* bullet-proofing */
827 }
828 while (argc-- > 0) {
bellardedf779f2004-02-22 13:40:13 +0000829 tmp = argv[argc];
830 if (!tmp) {
bellard31e31b82003-02-18 22:55:36 +0000831 fprintf(stderr, "VFS: argc is wrong");
832 exit(-1);
833 }
bellardedf779f2004-02-22 13:40:13 +0000834 tmp1 = tmp;
835 while (*tmp++);
bellard31e31b82003-02-18 22:55:36 +0000836 len = tmp - tmp1;
837 if (p < len) { /* this shouldn't happen - 128kB */
838 return 0;
839 }
840 while (len) {
841 --p; --tmp; --len;
842 if (--offset < 0) {
bellard54936002003-05-13 00:25:15 +0000843 offset = p % TARGET_PAGE_SIZE;
pbrook53a59602006-03-25 19:31:22 +0000844 pag = (char *)page[p/TARGET_PAGE_SIZE];
bellard44a91ca2004-01-18 22:05:44 +0000845 if (!pag) {
pbrook53a59602006-03-25 19:31:22 +0000846 pag = (char *)malloc(TARGET_PAGE_SIZE);
j_mayer4118a972007-09-27 04:10:43 +0000847 memset(pag, 0, TARGET_PAGE_SIZE);
pbrook53a59602006-03-25 19:31:22 +0000848 page[p/TARGET_PAGE_SIZE] = pag;
bellard44a91ca2004-01-18 22:05:44 +0000849 if (!pag)
850 return 0;
bellard31e31b82003-02-18 22:55:36 +0000851 }
852 }
853 if (len == 0 || offset == 0) {
bellardedf779f2004-02-22 13:40:13 +0000854 *(pag + offset) = *tmp;
bellard31e31b82003-02-18 22:55:36 +0000855 }
856 else {
857 int bytes_to_copy = (len > offset) ? offset : len;
858 tmp -= bytes_to_copy;
859 p -= bytes_to_copy;
860 offset -= bytes_to_copy;
861 len -= bytes_to_copy;
862 memcpy_fromfs(pag + offset, tmp, bytes_to_copy + 1);
863 }
864 }
865 }
866 return p;
867}
868
blueswir1992f48a2007-10-14 16:27:31 +0000869static abi_ulong setup_arg_pages(abi_ulong p, struct linux_binprm *bprm,
870 struct image_info *info)
pbrook53a59602006-03-25 19:31:22 +0000871{
blueswir1992f48a2007-10-14 16:27:31 +0000872 abi_ulong stack_base, size, error;
bellard31e31b82003-02-18 22:55:36 +0000873 int i;
bellard31e31b82003-02-18 22:55:36 +0000874
875 /* Create enough stack to hold everything. If we don't use
876 * it for args, we'll use it for something else...
877 */
bellard09bfb052003-04-10 00:03:40 +0000878 size = x86_stack_size;
bellard54936002003-05-13 00:25:15 +0000879 if (size < MAX_ARG_PAGES*TARGET_PAGE_SIZE)
880 size = MAX_ARG_PAGES*TARGET_PAGE_SIZE;
ths5fafdf22007-09-16 21:08:06 +0000881 error = target_mmap(0,
bellard83fb7ad2004-07-05 21:25:26 +0000882 size + qemu_host_page_size,
bellard54936002003-05-13 00:25:15 +0000883 PROT_READ | PROT_WRITE,
884 MAP_PRIVATE | MAP_ANONYMOUS,
885 -1, 0);
bellard09bfb052003-04-10 00:03:40 +0000886 if (error == -1) {
887 perror("stk mmap");
888 exit(-1);
bellard31e31b82003-02-18 22:55:36 +0000889 }
bellard09bfb052003-04-10 00:03:40 +0000890 /* we reserve one extra page at the top of the stack as guard */
bellard83fb7ad2004-07-05 21:25:26 +0000891 target_mprotect(error + size, qemu_host_page_size, PROT_NONE);
bellard09bfb052003-04-10 00:03:40 +0000892
bellard54936002003-05-13 00:25:15 +0000893 stack_base = error + size - MAX_ARG_PAGES*TARGET_PAGE_SIZE;
bellard09bfb052003-04-10 00:03:40 +0000894 p += stack_base;
895
bellard31e31b82003-02-18 22:55:36 +0000896 for (i = 0 ; i < MAX_ARG_PAGES ; i++) {
897 if (bprm->page[i]) {
898 info->rss++;
bellard579a97f2007-11-11 14:26:47 +0000899 /* FIXME - check return value of memcpy_to_target() for failure */
pbrook53a59602006-03-25 19:31:22 +0000900 memcpy_to_target(stack_base, bprm->page[i], TARGET_PAGE_SIZE);
901 free(bprm->page[i]);
bellard31e31b82003-02-18 22:55:36 +0000902 }
pbrook53a59602006-03-25 19:31:22 +0000903 stack_base += TARGET_PAGE_SIZE;
bellard31e31b82003-02-18 22:55:36 +0000904 }
905 return p;
906}
907
blueswir1992f48a2007-10-14 16:27:31 +0000908static void set_brk(abi_ulong start, abi_ulong end)
bellard31e31b82003-02-18 22:55:36 +0000909{
910 /* page-align the start and end addresses... */
bellard54936002003-05-13 00:25:15 +0000911 start = HOST_PAGE_ALIGN(start);
912 end = HOST_PAGE_ALIGN(end);
bellard31e31b82003-02-18 22:55:36 +0000913 if (end <= start)
914 return;
bellard54936002003-05-13 00:25:15 +0000915 if(target_mmap(start, end - start,
916 PROT_READ | PROT_WRITE | PROT_EXEC,
917 MAP_FIXED | MAP_PRIVATE | MAP_ANONYMOUS, -1, 0) == -1) {
bellard31e31b82003-02-18 22:55:36 +0000918 perror("cannot mmap brk");
919 exit(-1);
920 }
921}
922
923
bellard853d6f72003-09-30 20:58:32 +0000924/* We need to explicitly zero any fractional pages after the data
925 section (i.e. bss). This would contain the junk from the file that
926 should not be in memory. */
blueswir1992f48a2007-10-14 16:27:31 +0000927static void padzero(abi_ulong elf_bss, abi_ulong last_bss)
bellard31e31b82003-02-18 22:55:36 +0000928{
blueswir1992f48a2007-10-14 16:27:31 +0000929 abi_ulong nbyte;
bellard31e31b82003-02-18 22:55:36 +0000930
ths768a4a32006-12-14 13:32:11 +0000931 if (elf_bss >= last_bss)
932 return;
933
bellard853d6f72003-09-30 20:58:32 +0000934 /* XXX: this is really a hack : if the real host page size is
935 smaller than the target page size, some pages after the end
936 of the file may not be mapped. A better fix would be to
937 patch target_mmap(), but it is more complicated as the file
938 size must be known */
bellard83fb7ad2004-07-05 21:25:26 +0000939 if (qemu_real_host_page_size < qemu_host_page_size) {
blueswir1992f48a2007-10-14 16:27:31 +0000940 abi_ulong end_addr, end_addr1;
ths5fafdf22007-09-16 21:08:06 +0000941 end_addr1 = (elf_bss + qemu_real_host_page_size - 1) &
bellard83fb7ad2004-07-05 21:25:26 +0000942 ~(qemu_real_host_page_size - 1);
bellard853d6f72003-09-30 20:58:32 +0000943 end_addr = HOST_PAGE_ALIGN(elf_bss);
944 if (end_addr1 < end_addr) {
j_mayer863cf0b2007-10-07 15:59:45 +0000945 mmap((void *)g2h(end_addr1), end_addr - end_addr1,
bellard853d6f72003-09-30 20:58:32 +0000946 PROT_READ|PROT_WRITE|PROT_EXEC,
947 MAP_FIXED|MAP_PRIVATE|MAP_ANONYMOUS, -1, 0);
948 }
949 }
950
bellard83fb7ad2004-07-05 21:25:26 +0000951 nbyte = elf_bss & (qemu_host_page_size-1);
bellard31e31b82003-02-18 22:55:36 +0000952 if (nbyte) {
bellard83fb7ad2004-07-05 21:25:26 +0000953 nbyte = qemu_host_page_size - nbyte;
bellard31e31b82003-02-18 22:55:36 +0000954 do {
bellard2f619692007-11-16 10:46:05 +0000955 /* FIXME - what to do if put_user() fails? */
956 put_user_u8(0, elf_bss);
pbrook53a59602006-03-25 19:31:22 +0000957 elf_bss++;
bellard31e31b82003-02-18 22:55:36 +0000958 } while (--nbyte);
959 }
960}
961
bellardedf779f2004-02-22 13:40:13 +0000962
blueswir1992f48a2007-10-14 16:27:31 +0000963static abi_ulong create_elf_tables(abi_ulong p, int argc, int envc,
964 struct elfhdr * exec,
965 abi_ulong load_addr,
966 abi_ulong load_bias,
967 abi_ulong interp_load_addr, int ibcs,
968 struct image_info *info)
pbrook53a59602006-03-25 19:31:22 +0000969{
blueswir1992f48a2007-10-14 16:27:31 +0000970 abi_ulong sp;
pbrook53a59602006-03-25 19:31:22 +0000971 int size;
blueswir1992f48a2007-10-14 16:27:31 +0000972 abi_ulong u_platform;
pbrook53a59602006-03-25 19:31:22 +0000973 const char *k_platform;
j_mayer863cf0b2007-10-07 15:59:45 +0000974 const int n = sizeof(elf_addr_t);
pbrook53a59602006-03-25 19:31:22 +0000975
976 sp = p;
977 u_platform = 0;
bellard15338fd2005-11-26 11:41:16 +0000978 k_platform = ELF_PLATFORM;
979 if (k_platform) {
980 size_t len = strlen(k_platform) + 1;
pbrook53a59602006-03-25 19:31:22 +0000981 sp -= (len + n - 1) & ~(n - 1);
982 u_platform = sp;
bellard579a97f2007-11-11 14:26:47 +0000983 /* FIXME - check return value of memcpy_to_target() for failure */
pbrook53a59602006-03-25 19:31:22 +0000984 memcpy_to_target(sp, k_platform, len);
bellard15338fd2005-11-26 11:41:16 +0000985 }
pbrook53a59602006-03-25 19:31:22 +0000986 /*
987 * Force 16 byte _final_ alignment here for generality.
988 */
blueswir1992f48a2007-10-14 16:27:31 +0000989 sp = sp &~ (abi_ulong)15;
pbrook53a59602006-03-25 19:31:22 +0000990 size = (DLINFO_ITEMS + 1) * 2;
bellard15338fd2005-11-26 11:41:16 +0000991 if (k_platform)
pbrook53a59602006-03-25 19:31:22 +0000992 size += 2;
bellardf5155282004-01-04 15:46:50 +0000993#ifdef DLINFO_ARCH_ITEMS
pbrook53a59602006-03-25 19:31:22 +0000994 size += DLINFO_ARCH_ITEMS * 2;
bellardf5155282004-01-04 15:46:50 +0000995#endif
pbrook53a59602006-03-25 19:31:22 +0000996 size += envc + argc + 2;
997 size += (!ibcs ? 3 : 1); /* argc itself */
998 size *= n;
999 if (size & 15)
1000 sp -= 16 - (size & 15);
ths3b46e622007-09-17 08:09:54 +00001001
j_mayer863cf0b2007-10-07 15:59:45 +00001002 /* This is correct because Linux defines
1003 * elf_addr_t as Elf32_Off / Elf64_Off
1004 */
bellard2f619692007-11-16 10:46:05 +00001005#define NEW_AUX_ENT(id, val) do { \
1006 sp -= n; put_user_ual(val, sp); \
1007 sp -= n; put_user_ual(id, sp); \
pbrook53a59602006-03-25 19:31:22 +00001008 } while(0)
bellard2f619692007-11-16 10:46:05 +00001009
bellard0bccf032005-08-21 10:12:28 +00001010 NEW_AUX_ENT (AT_NULL, 0);
bellardf5155282004-01-04 15:46:50 +00001011
bellard0bccf032005-08-21 10:12:28 +00001012 /* There must be exactly DLINFO_ITEMS entries here. */
blueswir1992f48a2007-10-14 16:27:31 +00001013 NEW_AUX_ENT(AT_PHDR, (abi_ulong)(load_addr + exec->e_phoff));
1014 NEW_AUX_ENT(AT_PHENT, (abi_ulong)(sizeof (struct elf_phdr)));
1015 NEW_AUX_ENT(AT_PHNUM, (abi_ulong)(exec->e_phnum));
1016 NEW_AUX_ENT(AT_PAGESZ, (abi_ulong)(TARGET_PAGE_SIZE));
1017 NEW_AUX_ENT(AT_BASE, (abi_ulong)(interp_load_addr));
1018 NEW_AUX_ENT(AT_FLAGS, (abi_ulong)0);
bellard0bccf032005-08-21 10:12:28 +00001019 NEW_AUX_ENT(AT_ENTRY, load_bias + exec->e_entry);
blueswir1992f48a2007-10-14 16:27:31 +00001020 NEW_AUX_ENT(AT_UID, (abi_ulong) getuid());
1021 NEW_AUX_ENT(AT_EUID, (abi_ulong) geteuid());
1022 NEW_AUX_ENT(AT_GID, (abi_ulong) getgid());
1023 NEW_AUX_ENT(AT_EGID, (abi_ulong) getegid());
1024 NEW_AUX_ENT(AT_HWCAP, (abi_ulong) ELF_HWCAP);
pbrooka07c67d2008-03-26 23:31:55 +00001025 NEW_AUX_ENT(AT_CLKTCK, (abi_ulong) sysconf(_SC_CLK_TCK));
bellard15338fd2005-11-26 11:41:16 +00001026 if (k_platform)
pbrook53a59602006-03-25 19:31:22 +00001027 NEW_AUX_ENT(AT_PLATFORM, u_platform);
bellardf5155282004-01-04 15:46:50 +00001028#ifdef ARCH_DLINFO
ths5fafdf22007-09-16 21:08:06 +00001029 /*
bellardf5155282004-01-04 15:46:50 +00001030 * ARCH_DLINFO must come last so platform specific code can enforce
1031 * special alignment requirements on the AUXV if necessary (eg. PPC).
1032 */
1033 ARCH_DLINFO;
1034#endif
1035#undef NEW_AUX_ENT
1036
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001037 info->saved_auxv = sp;
1038
pbrooke5fe0c52006-06-11 13:32:59 +00001039 sp = loader_build_argptr(envc, argc, sp, p, !ibcs);
bellard31e31b82003-02-18 22:55:36 +00001040 return sp;
1041}
1042
1043
blueswir1992f48a2007-10-14 16:27:31 +00001044static abi_ulong load_elf_interp(struct elfhdr * interp_elf_ex,
1045 int interpreter_fd,
1046 abi_ulong *interp_load_addr)
bellard31e31b82003-02-18 22:55:36 +00001047{
1048 struct elf_phdr *elf_phdata = NULL;
1049 struct elf_phdr *eppnt;
blueswir1992f48a2007-10-14 16:27:31 +00001050 abi_ulong load_addr = 0;
bellard31e31b82003-02-18 22:55:36 +00001051 int load_addr_set = 0;
1052 int retval;
blueswir1992f48a2007-10-14 16:27:31 +00001053 abi_ulong last_bss, elf_bss;
1054 abi_ulong error;
bellard31e31b82003-02-18 22:55:36 +00001055 int i;
ths5fafdf22007-09-16 21:08:06 +00001056
bellard31e31b82003-02-18 22:55:36 +00001057 elf_bss = 0;
1058 last_bss = 0;
1059 error = 0;
1060
bellard644c4332003-03-24 23:00:36 +00001061#ifdef BSWAP_NEEDED
1062 bswap_ehdr(interp_elf_ex);
1063#endif
bellard31e31b82003-02-18 22:55:36 +00001064 /* First of all, some simple consistency checks */
ths5fafdf22007-09-16 21:08:06 +00001065 if ((interp_elf_ex->e_type != ET_EXEC &&
1066 interp_elf_ex->e_type != ET_DYN) ||
bellard31e31b82003-02-18 22:55:36 +00001067 !elf_check_arch(interp_elf_ex->e_machine)) {
blueswir1992f48a2007-10-14 16:27:31 +00001068 return ~((abi_ulong)0UL);
bellard31e31b82003-02-18 22:55:36 +00001069 }
ths5fafdf22007-09-16 21:08:06 +00001070
bellard644c4332003-03-24 23:00:36 +00001071
bellard31e31b82003-02-18 22:55:36 +00001072 /* Now read in all of the header information */
ths5fafdf22007-09-16 21:08:06 +00001073
bellard54936002003-05-13 00:25:15 +00001074 if (sizeof(struct elf_phdr) * interp_elf_ex->e_phnum > TARGET_PAGE_SIZE)
blueswir1992f48a2007-10-14 16:27:31 +00001075 return ~(abi_ulong)0UL;
ths5fafdf22007-09-16 21:08:06 +00001076
1077 elf_phdata = (struct elf_phdr *)
bellard31e31b82003-02-18 22:55:36 +00001078 malloc(sizeof(struct elf_phdr) * interp_elf_ex->e_phnum);
1079
1080 if (!elf_phdata)
blueswir1992f48a2007-10-14 16:27:31 +00001081 return ~((abi_ulong)0UL);
ths5fafdf22007-09-16 21:08:06 +00001082
bellard31e31b82003-02-18 22:55:36 +00001083 /*
1084 * If the size of this structure has changed, then punt, since
1085 * we will be doing the wrong thing.
1086 */
bellard09bfb052003-04-10 00:03:40 +00001087 if (interp_elf_ex->e_phentsize != sizeof(struct elf_phdr)) {
bellard31e31b82003-02-18 22:55:36 +00001088 free(elf_phdata);
blueswir1992f48a2007-10-14 16:27:31 +00001089 return ~((abi_ulong)0UL);
bellard09bfb052003-04-10 00:03:40 +00001090 }
bellard31e31b82003-02-18 22:55:36 +00001091
1092 retval = lseek(interpreter_fd, interp_elf_ex->e_phoff, SEEK_SET);
1093 if(retval >= 0) {
1094 retval = read(interpreter_fd,
1095 (char *) elf_phdata,
1096 sizeof(struct elf_phdr) * interp_elf_ex->e_phnum);
1097 }
bellard31e31b82003-02-18 22:55:36 +00001098 if (retval < 0) {
1099 perror("load_elf_interp");
1100 exit(-1);
1101 free (elf_phdata);
1102 return retval;
1103 }
1104#ifdef BSWAP_NEEDED
1105 eppnt = elf_phdata;
1106 for (i=0; i<interp_elf_ex->e_phnum; i++, eppnt++) {
1107 bswap_phdr(eppnt);
1108 }
1109#endif
bellard09bfb052003-04-10 00:03:40 +00001110
1111 if (interp_elf_ex->e_type == ET_DYN) {
thse91c8a72007-06-03 13:35:16 +00001112 /* in order to avoid hardcoding the interpreter load
bellard09bfb052003-04-10 00:03:40 +00001113 address in qemu, we allocate a big enough memory zone */
bellard54936002003-05-13 00:25:15 +00001114 error = target_mmap(0, INTERP_MAP_SIZE,
ths5fafdf22007-09-16 21:08:06 +00001115 PROT_NONE, MAP_PRIVATE | MAP_ANON,
bellard54936002003-05-13 00:25:15 +00001116 -1, 0);
bellard09bfb052003-04-10 00:03:40 +00001117 if (error == -1) {
1118 perror("mmap");
1119 exit(-1);
1120 }
1121 load_addr = error;
1122 load_addr_set = 1;
1123 }
1124
bellard31e31b82003-02-18 22:55:36 +00001125 eppnt = elf_phdata;
1126 for(i=0; i<interp_elf_ex->e_phnum; i++, eppnt++)
1127 if (eppnt->p_type == PT_LOAD) {
1128 int elf_type = MAP_PRIVATE | MAP_DENYWRITE;
1129 int elf_prot = 0;
blueswir1992f48a2007-10-14 16:27:31 +00001130 abi_ulong vaddr = 0;
1131 abi_ulong k;
bellard31e31b82003-02-18 22:55:36 +00001132
1133 if (eppnt->p_flags & PF_R) elf_prot = PROT_READ;
1134 if (eppnt->p_flags & PF_W) elf_prot |= PROT_WRITE;
1135 if (eppnt->p_flags & PF_X) elf_prot |= PROT_EXEC;
1136 if (interp_elf_ex->e_type == ET_EXEC || load_addr_set) {
1137 elf_type |= MAP_FIXED;
1138 vaddr = eppnt->p_vaddr;
1139 }
bellard54936002003-05-13 00:25:15 +00001140 error = target_mmap(load_addr+TARGET_ELF_PAGESTART(vaddr),
1141 eppnt->p_filesz + TARGET_ELF_PAGEOFFSET(eppnt->p_vaddr),
bellard31e31b82003-02-18 22:55:36 +00001142 elf_prot,
1143 elf_type,
1144 interpreter_fd,
bellard54936002003-05-13 00:25:15 +00001145 eppnt->p_offset - TARGET_ELF_PAGEOFFSET(eppnt->p_vaddr));
ths3b46e622007-09-17 08:09:54 +00001146
pbrooke89f07d2006-02-04 20:46:24 +00001147 if (error == -1) {
bellard31e31b82003-02-18 22:55:36 +00001148 /* Real error */
1149 close(interpreter_fd);
1150 free(elf_phdata);
blueswir1992f48a2007-10-14 16:27:31 +00001151 return ~((abi_ulong)0UL);
bellard31e31b82003-02-18 22:55:36 +00001152 }
1153
1154 if (!load_addr_set && interp_elf_ex->e_type == ET_DYN) {
1155 load_addr = error;
1156 load_addr_set = 1;
1157 }
1158
1159 /*
1160 * Find the end of the file mapping for this phdr, and keep
1161 * track of the largest address we see for this.
1162 */
1163 k = load_addr + eppnt->p_vaddr + eppnt->p_filesz;
1164 if (k > elf_bss) elf_bss = k;
1165
1166 /*
1167 * Do the same thing for the memory mapping - between
1168 * elf_bss and last_bss is the bss section.
1169 */
1170 k = load_addr + eppnt->p_memsz + eppnt->p_vaddr;
1171 if (k > last_bss) last_bss = k;
1172 }
ths5fafdf22007-09-16 21:08:06 +00001173
bellard31e31b82003-02-18 22:55:36 +00001174 /* Now use mmap to map the library into memory. */
1175
1176 close(interpreter_fd);
1177
1178 /*
1179 * Now fill out the bss section. First pad the last page up
1180 * to the page boundary, and then perform a mmap to make sure
1181 * that there are zeromapped pages up to and including the last
1182 * bss page.
1183 */
ths768a4a32006-12-14 13:32:11 +00001184 padzero(elf_bss, last_bss);
bellard83fb7ad2004-07-05 21:25:26 +00001185 elf_bss = TARGET_ELF_PAGESTART(elf_bss + qemu_host_page_size - 1); /* What we have mapped so far */
bellard31e31b82003-02-18 22:55:36 +00001186
1187 /* Map the last of the bss segment */
1188 if (last_bss > elf_bss) {
bellard54936002003-05-13 00:25:15 +00001189 target_mmap(elf_bss, last_bss-elf_bss,
1190 PROT_READ|PROT_WRITE|PROT_EXEC,
1191 MAP_FIXED|MAP_PRIVATE|MAP_ANONYMOUS, -1, 0);
bellard31e31b82003-02-18 22:55:36 +00001192 }
1193 free(elf_phdata);
1194
1195 *interp_load_addr = load_addr;
blueswir1992f48a2007-10-14 16:27:31 +00001196 return ((abi_ulong) interp_elf_ex->e_entry) + load_addr;
bellard31e31b82003-02-18 22:55:36 +00001197}
1198
pbrook49918a72008-10-22 15:11:31 +00001199static int symfind(const void *s0, const void *s1)
1200{
1201 struct elf_sym *key = (struct elf_sym *)s0;
1202 struct elf_sym *sym = (struct elf_sym *)s1;
1203 int result = 0;
1204 if (key->st_value < sym->st_value) {
1205 result = -1;
Laurent Desnoguesec822002009-07-30 19:23:49 +02001206 } else if (key->st_value >= sym->st_value + sym->st_size) {
pbrook49918a72008-10-22 15:11:31 +00001207 result = 1;
1208 }
1209 return result;
1210}
1211
1212static const char *lookup_symbolxx(struct syminfo *s, target_ulong orig_addr)
1213{
1214#if ELF_CLASS == ELFCLASS32
1215 struct elf_sym *syms = s->disas_symtab.elf32;
1216#else
1217 struct elf_sym *syms = s->disas_symtab.elf64;
1218#endif
1219
1220 // binary search
1221 struct elf_sym key;
1222 struct elf_sym *sym;
1223
1224 key.st_value = orig_addr;
1225
1226 sym = bsearch(&key, syms, s->disas_num_syms, sizeof(*syms), symfind);
Blue Swirl7cba04f2009-08-01 10:13:20 +00001227 if (sym != NULL) {
pbrook49918a72008-10-22 15:11:31 +00001228 return s->disas_strtab + sym->st_name;
1229 }
1230
1231 return "";
1232}
1233
1234/* FIXME: This should use elf_ops.h */
1235static int symcmp(const void *s0, const void *s1)
1236{
1237 struct elf_sym *sym0 = (struct elf_sym *)s0;
1238 struct elf_sym *sym1 = (struct elf_sym *)s1;
1239 return (sym0->st_value < sym1->st_value)
1240 ? -1
1241 : ((sym0->st_value > sym1->st_value) ? 1 : 0);
1242}
1243
bellard689f9362003-04-29 20:40:07 +00001244/* Best attempt to load symbols from this ELF object. */
1245static void load_symbols(struct elfhdr *hdr, int fd)
1246{
pbrook49918a72008-10-22 15:11:31 +00001247 unsigned int i, nsyms;
bellard689f9362003-04-29 20:40:07 +00001248 struct elf_shdr sechdr, symtab, strtab;
1249 char *strings;
bellarde80cfcf2004-12-19 23:18:01 +00001250 struct syminfo *s;
pbrook49918a72008-10-22 15:11:31 +00001251 struct elf_sym *syms;
bellard31e31b82003-02-18 22:55:36 +00001252
bellard689f9362003-04-29 20:40:07 +00001253 lseek(fd, hdr->e_shoff, SEEK_SET);
1254 for (i = 0; i < hdr->e_shnum; i++) {
pbrook49918a72008-10-22 15:11:31 +00001255 if (read(fd, &sechdr, sizeof(sechdr)) != sizeof(sechdr))
1256 return;
bellard689f9362003-04-29 20:40:07 +00001257#ifdef BSWAP_NEEDED
pbrook49918a72008-10-22 15:11:31 +00001258 bswap_shdr(&sechdr);
bellard689f9362003-04-29 20:40:07 +00001259#endif
pbrook49918a72008-10-22 15:11:31 +00001260 if (sechdr.sh_type == SHT_SYMTAB) {
1261 symtab = sechdr;
1262 lseek(fd, hdr->e_shoff
1263 + sizeof(sechdr) * sechdr.sh_link, SEEK_SET);
1264 if (read(fd, &strtab, sizeof(strtab))
1265 != sizeof(strtab))
1266 return;
bellard689f9362003-04-29 20:40:07 +00001267#ifdef BSWAP_NEEDED
pbrook49918a72008-10-22 15:11:31 +00001268 bswap_shdr(&strtab);
bellard689f9362003-04-29 20:40:07 +00001269#endif
pbrook49918a72008-10-22 15:11:31 +00001270 goto found;
1271 }
bellard689f9362003-04-29 20:40:07 +00001272 }
1273 return; /* Shouldn't happen... */
1274
1275 found:
1276 /* Now know where the strtab and symtab are. Snarf them. */
bellarde80cfcf2004-12-19 23:18:01 +00001277 s = malloc(sizeof(*s));
pbrook49918a72008-10-22 15:11:31 +00001278 syms = malloc(symtab.sh_size);
1279 if (!syms)
1280 return;
bellarde80cfcf2004-12-19 23:18:01 +00001281 s->disas_strtab = strings = malloc(strtab.sh_size);
pbrook49918a72008-10-22 15:11:31 +00001282 if (!s->disas_strtab)
1283 return;
ths5fafdf22007-09-16 21:08:06 +00001284
bellard689f9362003-04-29 20:40:07 +00001285 lseek(fd, symtab.sh_offset, SEEK_SET);
pbrook49918a72008-10-22 15:11:31 +00001286 if (read(fd, syms, symtab.sh_size) != symtab.sh_size)
1287 return;
bellard689f9362003-04-29 20:40:07 +00001288
pbrook49918a72008-10-22 15:11:31 +00001289 nsyms = symtab.sh_size / sizeof(struct elf_sym);
1290
1291 i = 0;
1292 while (i < nsyms) {
bellard689f9362003-04-29 20:40:07 +00001293#ifdef BSWAP_NEEDED
pbrook49918a72008-10-22 15:11:31 +00001294 bswap_sym(syms + i);
bellard689f9362003-04-29 20:40:07 +00001295#endif
pbrook49918a72008-10-22 15:11:31 +00001296 // Throw away entries which we do not need.
1297 if (syms[i].st_shndx == SHN_UNDEF ||
1298 syms[i].st_shndx >= SHN_LORESERVE ||
1299 ELF_ST_TYPE(syms[i].st_info) != STT_FUNC) {
1300 nsyms--;
1301 if (i < nsyms) {
1302 syms[i] = syms[nsyms];
1303 }
1304 continue;
1305 }
1306#if defined(TARGET_ARM) || defined (TARGET_MIPS)
1307 /* The bottom address bit marks a Thumb or MIPS16 symbol. */
1308 syms[i].st_value &= ~(target_ulong)1;
blueswir10774bed2007-07-05 13:23:29 +00001309#endif
pbrook49918a72008-10-22 15:11:31 +00001310 i++;
blueswir10774bed2007-07-05 13:23:29 +00001311 }
pbrook49918a72008-10-22 15:11:31 +00001312 syms = realloc(syms, nsyms * sizeof(*syms));
bellard689f9362003-04-29 20:40:07 +00001313
pbrook49918a72008-10-22 15:11:31 +00001314 qsort(syms, nsyms, sizeof(*syms), symcmp);
1315
bellard689f9362003-04-29 20:40:07 +00001316 lseek(fd, strtab.sh_offset, SEEK_SET);
1317 if (read(fd, strings, strtab.sh_size) != strtab.sh_size)
pbrook49918a72008-10-22 15:11:31 +00001318 return;
1319 s->disas_num_syms = nsyms;
1320#if ELF_CLASS == ELFCLASS32
1321 s->disas_symtab.elf32 = syms;
Blue Swirlca20cf32009-09-20 14:58:02 +00001322 s->lookup_symbol = (lookup_symbol_t)lookup_symbolxx;
pbrook49918a72008-10-22 15:11:31 +00001323#else
1324 s->disas_symtab.elf64 = syms;
Blue Swirlca20cf32009-09-20 14:58:02 +00001325 s->lookup_symbol = (lookup_symbol_t)lookup_symbolxx;
pbrook49918a72008-10-22 15:11:31 +00001326#endif
bellarde80cfcf2004-12-19 23:18:01 +00001327 s->next = syminfos;
1328 syminfos = s;
bellard689f9362003-04-29 20:40:07 +00001329}
bellard31e31b82003-02-18 22:55:36 +00001330
pbrooke5fe0c52006-06-11 13:32:59 +00001331int load_elf_binary(struct linux_binprm * bprm, struct target_pt_regs * regs,
1332 struct image_info * info)
bellard31e31b82003-02-18 22:55:36 +00001333{
1334 struct elfhdr elf_ex;
1335 struct elfhdr interp_elf_ex;
1336 struct exec interp_ex;
1337 int interpreter_fd = -1; /* avoid warning */
blueswir1992f48a2007-10-14 16:27:31 +00001338 abi_ulong load_addr, load_bias;
bellard31e31b82003-02-18 22:55:36 +00001339 int load_addr_set = 0;
1340 unsigned int interpreter_type = INTERPRETER_NONE;
1341 unsigned char ibcs2_interpreter;
1342 int i;
blueswir1992f48a2007-10-14 16:27:31 +00001343 abi_ulong mapped_addr;
bellard31e31b82003-02-18 22:55:36 +00001344 struct elf_phdr * elf_ppnt;
1345 struct elf_phdr *elf_phdata;
blueswir1992f48a2007-10-14 16:27:31 +00001346 abi_ulong elf_bss, k, elf_brk;
bellard31e31b82003-02-18 22:55:36 +00001347 int retval;
1348 char * elf_interpreter;
blueswir1992f48a2007-10-14 16:27:31 +00001349 abi_ulong elf_entry, interp_load_addr = 0;
bellard31e31b82003-02-18 22:55:36 +00001350 int status;
blueswir1992f48a2007-10-14 16:27:31 +00001351 abi_ulong start_code, end_code, start_data, end_data;
1352 abi_ulong reloc_func_desc = 0;
1353 abi_ulong elf_stack;
bellard31e31b82003-02-18 22:55:36 +00001354 char passed_fileno[6];
1355
1356 ibcs2_interpreter = 0;
1357 status = 0;
1358 load_addr = 0;
bellard09bfb052003-04-10 00:03:40 +00001359 load_bias = 0;
bellard31e31b82003-02-18 22:55:36 +00001360 elf_ex = *((struct elfhdr *) bprm->buf); /* exec-header */
1361#ifdef BSWAP_NEEDED
1362 bswap_ehdr(&elf_ex);
1363#endif
1364
bellard31e31b82003-02-18 22:55:36 +00001365 /* First of all, some simple consistency checks */
1366 if ((elf_ex.e_type != ET_EXEC && elf_ex.e_type != ET_DYN) ||
1367 (! elf_check_arch(elf_ex.e_machine))) {
1368 return -ENOEXEC;
1369 }
1370
pbrooke5fe0c52006-06-11 13:32:59 +00001371 bprm->p = copy_elf_strings(1, &bprm->filename, bprm->page, bprm->p);
1372 bprm->p = copy_elf_strings(bprm->envc,bprm->envp,bprm->page,bprm->p);
1373 bprm->p = copy_elf_strings(bprm->argc,bprm->argv,bprm->page,bprm->p);
1374 if (!bprm->p) {
1375 retval = -E2BIG;
1376 }
1377
bellard31e31b82003-02-18 22:55:36 +00001378 /* Now read in all of the header information */
bellard31e31b82003-02-18 22:55:36 +00001379 elf_phdata = (struct elf_phdr *)malloc(elf_ex.e_phentsize*elf_ex.e_phnum);
1380 if (elf_phdata == NULL) {
1381 return -ENOMEM;
1382 }
1383
1384 retval = lseek(bprm->fd, elf_ex.e_phoff, SEEK_SET);
1385 if(retval > 0) {
ths5fafdf22007-09-16 21:08:06 +00001386 retval = read(bprm->fd, (char *) elf_phdata,
bellard31e31b82003-02-18 22:55:36 +00001387 elf_ex.e_phentsize * elf_ex.e_phnum);
1388 }
1389
1390 if (retval < 0) {
1391 perror("load_elf_binary");
1392 exit(-1);
1393 free (elf_phdata);
1394 return -errno;
1395 }
1396
bellardb17780d2003-02-18 23:32:15 +00001397#ifdef BSWAP_NEEDED
1398 elf_ppnt = elf_phdata;
1399 for (i=0; i<elf_ex.e_phnum; i++, elf_ppnt++) {
1400 bswap_phdr(elf_ppnt);
1401 }
1402#endif
bellard31e31b82003-02-18 22:55:36 +00001403 elf_ppnt = elf_phdata;
1404
1405 elf_bss = 0;
1406 elf_brk = 0;
1407
1408
blueswir1992f48a2007-10-14 16:27:31 +00001409 elf_stack = ~((abi_ulong)0UL);
bellard31e31b82003-02-18 22:55:36 +00001410 elf_interpreter = NULL;
blueswir1992f48a2007-10-14 16:27:31 +00001411 start_code = ~((abi_ulong)0UL);
bellard31e31b82003-02-18 22:55:36 +00001412 end_code = 0;
j_mayer863cf0b2007-10-07 15:59:45 +00001413 start_data = 0;
bellard31e31b82003-02-18 22:55:36 +00001414 end_data = 0;
blueswir198448f52008-09-30 18:16:09 +00001415 interp_ex.a_info = 0;
bellard31e31b82003-02-18 22:55:36 +00001416
1417 for(i=0;i < elf_ex.e_phnum; i++) {
1418 if (elf_ppnt->p_type == PT_INTERP) {
1419 if ( elf_interpreter != NULL )
1420 {
1421 free (elf_phdata);
1422 free(elf_interpreter);
1423 close(bprm->fd);
1424 return -EINVAL;
1425 }
1426
1427 /* This is the program interpreter used for
1428 * shared libraries - for now assume that this
1429 * is an a.out format binary
1430 */
1431
bellard32ce6332003-04-11 00:16:16 +00001432 elf_interpreter = (char *)malloc(elf_ppnt->p_filesz);
bellard31e31b82003-02-18 22:55:36 +00001433
1434 if (elf_interpreter == NULL) {
1435 free (elf_phdata);
1436 close(bprm->fd);
1437 return -ENOMEM;
1438 }
1439
bellard31e31b82003-02-18 22:55:36 +00001440 retval = lseek(bprm->fd, elf_ppnt->p_offset, SEEK_SET);
1441 if(retval >= 0) {
bellard32ce6332003-04-11 00:16:16 +00001442 retval = read(bprm->fd, elf_interpreter, elf_ppnt->p_filesz);
bellard31e31b82003-02-18 22:55:36 +00001443 }
1444 if(retval < 0) {
1445 perror("load_elf_binary2");
1446 exit(-1);
ths5fafdf22007-09-16 21:08:06 +00001447 }
bellard31e31b82003-02-18 22:55:36 +00001448
1449 /* If the program interpreter is one of these two,
1450 then assume an iBCS2 image. Otherwise assume
1451 a native linux image. */
1452
1453 /* JRP - Need to add X86 lib dir stuff here... */
1454
1455 if (strcmp(elf_interpreter,"/usr/lib/libc.so.1") == 0 ||
1456 strcmp(elf_interpreter,"/usr/lib/ld.so.1") == 0) {
1457 ibcs2_interpreter = 1;
1458 }
1459
1460#if 0
Paul Bolle3bc0bdc2009-10-02 14:06:47 +02001461 printf("Using ELF interpreter %s\n", path(elf_interpreter));
bellard31e31b82003-02-18 22:55:36 +00001462#endif
1463 if (retval >= 0) {
bellard32ce6332003-04-11 00:16:16 +00001464 retval = open(path(elf_interpreter), O_RDONLY);
bellard31e31b82003-02-18 22:55:36 +00001465 if(retval >= 0) {
1466 interpreter_fd = retval;
1467 }
1468 else {
1469 perror(elf_interpreter);
1470 exit(-1);
1471 /* retval = -errno; */
1472 }
1473 }
1474
1475 if (retval >= 0) {
1476 retval = lseek(interpreter_fd, 0, SEEK_SET);
1477 if(retval >= 0) {
1478 retval = read(interpreter_fd,bprm->buf,128);
1479 }
1480 }
1481 if (retval >= 0) {
1482 interp_ex = *((struct exec *) bprm->buf); /* aout exec-header */
Michael S. Tsirkin6ece4df2009-09-30 19:43:38 +02001483 interp_elf_ex = *((struct elfhdr *) bprm->buf); /* elf exec-header */
bellard31e31b82003-02-18 22:55:36 +00001484 }
1485 if (retval < 0) {
1486 perror("load_elf_binary3");
1487 exit(-1);
1488 free (elf_phdata);
1489 free(elf_interpreter);
1490 close(bprm->fd);
1491 return retval;
1492 }
1493 }
1494 elf_ppnt++;
1495 }
1496
1497 /* Some simple consistency checks for the interpreter */
1498 if (elf_interpreter){
1499 interpreter_type = INTERPRETER_ELF | INTERPRETER_AOUT;
1500
1501 /* Now figure out which format our binary is */
1502 if ((N_MAGIC(interp_ex) != OMAGIC) && (N_MAGIC(interp_ex) != ZMAGIC) &&
1503 (N_MAGIC(interp_ex) != QMAGIC)) {
1504 interpreter_type = INTERPRETER_ELF;
1505 }
1506
1507 if (interp_elf_ex.e_ident[0] != 0x7f ||
blueswir1b55266b2008-09-20 08:07:15 +00001508 strncmp((char *)&interp_elf_ex.e_ident[1], "ELF",3) != 0) {
bellard31e31b82003-02-18 22:55:36 +00001509 interpreter_type &= ~INTERPRETER_ELF;
1510 }
1511
1512 if (!interpreter_type) {
1513 free(elf_interpreter);
1514 free(elf_phdata);
1515 close(bprm->fd);
1516 return -ELIBBAD;
1517 }
1518 }
1519
1520 /* OK, we are done with that, now set up the arg stuff,
1521 and then start this sucker up */
1522
pbrooke5fe0c52006-06-11 13:32:59 +00001523 {
bellard31e31b82003-02-18 22:55:36 +00001524 char * passed_p;
1525
1526 if (interpreter_type == INTERPRETER_AOUT) {
bellardeba2af62004-06-19 17:23:39 +00001527 snprintf(passed_fileno, sizeof(passed_fileno), "%d", bprm->fd);
bellard31e31b82003-02-18 22:55:36 +00001528 passed_p = passed_fileno;
1529
1530 if (elf_interpreter) {
pbrooke5fe0c52006-06-11 13:32:59 +00001531 bprm->p = copy_elf_strings(1,&passed_p,bprm->page,bprm->p);
bellard31e31b82003-02-18 22:55:36 +00001532 bprm->argc++;
1533 }
1534 }
1535 if (!bprm->p) {
1536 if (elf_interpreter) {
1537 free(elf_interpreter);
1538 }
1539 free (elf_phdata);
1540 close(bprm->fd);
1541 return -E2BIG;
1542 }
1543 }
1544
1545 /* OK, This is the point of no return */
1546 info->end_data = 0;
1547 info->end_code = 0;
blueswir1992f48a2007-10-14 16:27:31 +00001548 info->start_mmap = (abi_ulong)ELF_START_MMAP;
bellard31e31b82003-02-18 22:55:36 +00001549 info->mmap = 0;
blueswir1992f48a2007-10-14 16:27:31 +00001550 elf_entry = (abi_ulong) elf_ex.e_entry;
bellard31e31b82003-02-18 22:55:36 +00001551
Paul Brook379f6692009-07-17 12:48:08 +01001552#if defined(CONFIG_USE_GUEST_BASE)
1553 /*
1554 * In case where user has not explicitly set the guest_base, we
1555 * probe here that should we set it automatically.
1556 */
1557 if (!have_guest_base) {
1558 /*
1559 * Go through ELF program header table and find out whether
1560 * any of the segments drop below our current mmap_min_addr and
1561 * in that case set guest_base to corresponding address.
1562 */
1563 for (i = 0, elf_ppnt = elf_phdata; i < elf_ex.e_phnum;
1564 i++, elf_ppnt++) {
1565 if (elf_ppnt->p_type != PT_LOAD)
1566 continue;
1567 if (HOST_PAGE_ALIGN(elf_ppnt->p_vaddr) < mmap_min_addr) {
1568 guest_base = HOST_PAGE_ALIGN(mmap_min_addr);
1569 break;
1570 }
1571 }
1572 }
1573#endif /* CONFIG_USE_GUEST_BASE */
1574
bellard31e31b82003-02-18 22:55:36 +00001575 /* Do this so that we can load the interpreter, if need be. We will
1576 change some of these later */
1577 info->rss = 0;
1578 bprm->p = setup_arg_pages(bprm->p, bprm, info);
1579 info->start_stack = bprm->p;
1580
1581 /* Now we do a little grungy work by mmaping the ELF image into
1582 * the correct location in memory. At this point, we assume that
1583 * the image should be loaded at fixed address, not at a variable
1584 * address.
1585 */
1586
bellard31e31b82003-02-18 22:55:36 +00001587 for(i = 0, elf_ppnt = elf_phdata; i < elf_ex.e_phnum; i++, elf_ppnt++) {
bellard09bfb052003-04-10 00:03:40 +00001588 int elf_prot = 0;
1589 int elf_flags = 0;
blueswir1992f48a2007-10-14 16:27:31 +00001590 abi_ulong error;
ths3b46e622007-09-17 08:09:54 +00001591
bellard09bfb052003-04-10 00:03:40 +00001592 if (elf_ppnt->p_type != PT_LOAD)
1593 continue;
ths3b46e622007-09-17 08:09:54 +00001594
bellard09bfb052003-04-10 00:03:40 +00001595 if (elf_ppnt->p_flags & PF_R) elf_prot |= PROT_READ;
1596 if (elf_ppnt->p_flags & PF_W) elf_prot |= PROT_WRITE;
1597 if (elf_ppnt->p_flags & PF_X) elf_prot |= PROT_EXEC;
1598 elf_flags = MAP_PRIVATE | MAP_DENYWRITE;
1599 if (elf_ex.e_type == ET_EXEC || load_addr_set) {
1600 elf_flags |= MAP_FIXED;
1601 } else if (elf_ex.e_type == ET_DYN) {
1602 /* Try and get dynamic programs out of the way of the default mmap
1603 base, as well as whatever program they might try to exec. This
1604 is because the brk will follow the loader, and is not movable. */
1605 /* NOTE: for qemu, we do a big mmap to get enough space
thse91c8a72007-06-03 13:35:16 +00001606 without hardcoding any address */
bellard54936002003-05-13 00:25:15 +00001607 error = target_mmap(0, ET_DYN_MAP_SIZE,
ths5fafdf22007-09-16 21:08:06 +00001608 PROT_NONE, MAP_PRIVATE | MAP_ANON,
bellard54936002003-05-13 00:25:15 +00001609 -1, 0);
bellard09bfb052003-04-10 00:03:40 +00001610 if (error == -1) {
1611 perror("mmap");
1612 exit(-1);
1613 }
bellard54936002003-05-13 00:25:15 +00001614 load_bias = TARGET_ELF_PAGESTART(error - elf_ppnt->p_vaddr);
bellard09bfb052003-04-10 00:03:40 +00001615 }
ths3b46e622007-09-17 08:09:54 +00001616
bellard54936002003-05-13 00:25:15 +00001617 error = target_mmap(TARGET_ELF_PAGESTART(load_bias + elf_ppnt->p_vaddr),
1618 (elf_ppnt->p_filesz +
1619 TARGET_ELF_PAGEOFFSET(elf_ppnt->p_vaddr)),
1620 elf_prot,
1621 (MAP_FIXED | MAP_PRIVATE | MAP_DENYWRITE),
1622 bprm->fd,
ths5fafdf22007-09-16 21:08:06 +00001623 (elf_ppnt->p_offset -
bellard54936002003-05-13 00:25:15 +00001624 TARGET_ELF_PAGEOFFSET(elf_ppnt->p_vaddr)));
bellard09bfb052003-04-10 00:03:40 +00001625 if (error == -1) {
1626 perror("mmap");
1627 exit(-1);
1628 }
bellard31e31b82003-02-18 22:55:36 +00001629
1630#ifdef LOW_ELF_STACK
bellard54936002003-05-13 00:25:15 +00001631 if (TARGET_ELF_PAGESTART(elf_ppnt->p_vaddr) < elf_stack)
1632 elf_stack = TARGET_ELF_PAGESTART(elf_ppnt->p_vaddr);
bellard31e31b82003-02-18 22:55:36 +00001633#endif
ths3b46e622007-09-17 08:09:54 +00001634
bellard09bfb052003-04-10 00:03:40 +00001635 if (!load_addr_set) {
1636 load_addr_set = 1;
1637 load_addr = elf_ppnt->p_vaddr - elf_ppnt->p_offset;
1638 if (elf_ex.e_type == ET_DYN) {
1639 load_bias += error -
bellard54936002003-05-13 00:25:15 +00001640 TARGET_ELF_PAGESTART(load_bias + elf_ppnt->p_vaddr);
bellard09bfb052003-04-10 00:03:40 +00001641 load_addr += load_bias;
j_mayer84409dd2007-04-06 08:56:50 +00001642 reloc_func_desc = load_bias;
bellard09bfb052003-04-10 00:03:40 +00001643 }
1644 }
1645 k = elf_ppnt->p_vaddr;
ths5fafdf22007-09-16 21:08:06 +00001646 if (k < start_code)
bellard09bfb052003-04-10 00:03:40 +00001647 start_code = k;
j_mayer863cf0b2007-10-07 15:59:45 +00001648 if (start_data < k)
1649 start_data = k;
bellard09bfb052003-04-10 00:03:40 +00001650 k = elf_ppnt->p_vaddr + elf_ppnt->p_filesz;
ths5fafdf22007-09-16 21:08:06 +00001651 if (k > elf_bss)
bellard09bfb052003-04-10 00:03:40 +00001652 elf_bss = k;
1653 if ((elf_ppnt->p_flags & PF_X) && end_code < k)
1654 end_code = k;
ths5fafdf22007-09-16 21:08:06 +00001655 if (end_data < k)
bellard09bfb052003-04-10 00:03:40 +00001656 end_data = k;
1657 k = elf_ppnt->p_vaddr + elf_ppnt->p_memsz;
1658 if (k > elf_brk) elf_brk = k;
bellard31e31b82003-02-18 22:55:36 +00001659 }
1660
bellard09bfb052003-04-10 00:03:40 +00001661 elf_entry += load_bias;
1662 elf_bss += load_bias;
1663 elf_brk += load_bias;
1664 start_code += load_bias;
1665 end_code += load_bias;
j_mayer863cf0b2007-10-07 15:59:45 +00001666 start_data += load_bias;
bellard09bfb052003-04-10 00:03:40 +00001667 end_data += load_bias;
1668
bellard31e31b82003-02-18 22:55:36 +00001669 if (elf_interpreter) {
1670 if (interpreter_type & 1) {
1671 elf_entry = load_aout_interp(&interp_ex, interpreter_fd);
1672 }
1673 else if (interpreter_type & 2) {
1674 elf_entry = load_elf_interp(&interp_elf_ex, interpreter_fd,
1675 &interp_load_addr);
1676 }
j_mayer84409dd2007-04-06 08:56:50 +00001677 reloc_func_desc = interp_load_addr;
bellard31e31b82003-02-18 22:55:36 +00001678
1679 close(interpreter_fd);
1680 free(elf_interpreter);
1681
blueswir1992f48a2007-10-14 16:27:31 +00001682 if (elf_entry == ~((abi_ulong)0UL)) {
bellard31e31b82003-02-18 22:55:36 +00001683 printf("Unable to load interpreter\n");
1684 free(elf_phdata);
1685 exit(-1);
1686 return 0;
1687 }
1688 }
1689
1690 free(elf_phdata);
1691
aliguori93fcfe32009-01-15 22:34:14 +00001692 if (qemu_log_enabled())
bellard689f9362003-04-29 20:40:07 +00001693 load_symbols(&elf_ex, bprm->fd);
1694
bellard31e31b82003-02-18 22:55:36 +00001695 if (interpreter_type != INTERPRETER_AOUT) close(bprm->fd);
1696 info->personality = (ibcs2_interpreter ? PER_SVR4 : PER_LINUX);
1697
1698#ifdef LOW_ELF_STACK
1699 info->start_stack = bprm->p = elf_stack - 4;
1700#endif
pbrook53a59602006-03-25 19:31:22 +00001701 bprm->p = create_elf_tables(bprm->p,
bellard31e31b82003-02-18 22:55:36 +00001702 bprm->argc,
1703 bprm->envc,
bellarda1516e92003-07-09 17:13:37 +00001704 &elf_ex,
bellard09bfb052003-04-10 00:03:40 +00001705 load_addr, load_bias,
bellard31e31b82003-02-18 22:55:36 +00001706 interp_load_addr,
1707 (interpreter_type == INTERPRETER_AOUT ? 0 : 1),
1708 info);
j_mayer92a343d2007-09-27 01:14:15 +00001709 info->load_addr = reloc_func_desc;
bellard31e31b82003-02-18 22:55:36 +00001710 info->start_brk = info->brk = elf_brk;
1711 info->end_code = end_code;
1712 info->start_code = start_code;
j_mayer863cf0b2007-10-07 15:59:45 +00001713 info->start_data = start_data;
bellard31e31b82003-02-18 22:55:36 +00001714 info->end_data = end_data;
1715 info->start_stack = bprm->p;
1716
1717 /* Calling set_brk effectively mmaps the pages that we need for the bss and break
1718 sections */
1719 set_brk(elf_bss, elf_brk);
1720
ths768a4a32006-12-14 13:32:11 +00001721 padzero(elf_bss, elf_brk);
bellard31e31b82003-02-18 22:55:36 +00001722
1723#if 0
1724 printf("(start_brk) %x\n" , info->start_brk);
1725 printf("(end_code) %x\n" , info->end_code);
1726 printf("(start_code) %x\n" , info->start_code);
1727 printf("(end_data) %x\n" , info->end_data);
1728 printf("(start_stack) %x\n" , info->start_stack);
1729 printf("(brk) %x\n" , info->brk);
1730#endif
1731
1732 if ( info->personality == PER_SVR4 )
1733 {
1734 /* Why this, you ask??? Well SVr4 maps page 0 as read-only,
1735 and some applications "depend" upon this behavior.
1736 Since we do not have the power to recompile these, we
1737 emulate the SVr4 behavior. Sigh. */
bellard83fb7ad2004-07-05 21:25:26 +00001738 mapped_addr = target_mmap(0, qemu_host_page_size, PROT_READ | PROT_EXEC,
bellard54936002003-05-13 00:25:15 +00001739 MAP_FIXED | MAP_PRIVATE, -1, 0);
bellard31e31b82003-02-18 22:55:36 +00001740 }
1741
bellard31e31b82003-02-18 22:55:36 +00001742 info->entry = elf_entry;
1743
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001744#ifdef USE_ELF_CORE_DUMP
1745 bprm->core_dump = &elf_core_dump;
1746#endif
1747
bellard31e31b82003-02-18 22:55:36 +00001748 return 0;
1749}
1750
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001751#ifdef USE_ELF_CORE_DUMP
1752
1753/*
1754 * Definitions to generate Intel SVR4-like core files.
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01001755 * These mostly have the same names as the SVR4 types with "target_elf_"
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001756 * tacked on the front to prevent clashes with linux definitions,
1757 * and the typedef forms have been avoided. This is mostly like
1758 * the SVR4 structure, but more Linuxy, with things that Linux does
1759 * not support and which gdb doesn't really use excluded.
1760 *
1761 * Fields we don't dump (their contents is zero) in linux-user qemu
1762 * are marked with XXX.
1763 *
1764 * Core dump code is copied from linux kernel (fs/binfmt_elf.c).
1765 *
1766 * Porting ELF coredump for target is (quite) simple process. First you
Nathan Froyddd0a3652009-12-11 09:04:45 -08001767 * define USE_ELF_CORE_DUMP in target ELF code (where init_thread() for
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001768 * the target resides):
1769 *
1770 * #define USE_ELF_CORE_DUMP
1771 *
1772 * Next you define type of register set used for dumping. ELF specification
1773 * says that it needs to be array of elf_greg_t that has size of ELF_NREG.
1774 *
Anthony Liguoric227f092009-10-01 16:12:16 -05001775 * typedef <target_regtype> target_elf_greg_t;
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001776 * #define ELF_NREG <number of registers>
Anthony Liguoric227f092009-10-01 16:12:16 -05001777 * typedef taret_elf_greg_t target_elf_gregset_t[ELF_NREG];
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001778 *
1779 * Then define following types to match target types. Actual types can
1780 * be found from linux kernel (arch/<ARCH>/include/asm/posix_types.h):
1781 *
Anthony Liguoric227f092009-10-01 16:12:16 -05001782 * typedef <target_uid_type> target_uid_t;
1783 * typedef <target_gid_type> target_gid_t;
1784 * typedef <target_pid_type> target_pid_t;
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001785 *
1786 * Last step is to implement target specific function that copies registers
1787 * from given cpu into just specified register set. Prototype is:
1788 *
Anthony Liguoric227f092009-10-01 16:12:16 -05001789 * static void elf_core_copy_regs(taret_elf_gregset_t *regs,
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01001790 * const CPUState *env);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001791 *
1792 * Parameters:
1793 * regs - copy register values into here (allocated and zeroed by caller)
1794 * env - copy registers from here
1795 *
1796 * Example for ARM target is provided in this file.
1797 */
1798
1799/* An ELF note in memory */
1800struct memelfnote {
1801 const char *name;
1802 size_t namesz;
1803 size_t namesz_rounded;
1804 int type;
1805 size_t datasz;
1806 void *data;
1807 size_t notesz;
1808};
1809
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01001810struct target_elf_siginfo {
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001811 int si_signo; /* signal number */
1812 int si_code; /* extra code */
1813 int si_errno; /* errno */
1814};
1815
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01001816struct target_elf_prstatus {
1817 struct target_elf_siginfo pr_info; /* Info associated with signal */
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001818 short pr_cursig; /* Current signal */
1819 target_ulong pr_sigpend; /* XXX */
1820 target_ulong pr_sighold; /* XXX */
Anthony Liguoric227f092009-10-01 16:12:16 -05001821 target_pid_t pr_pid;
1822 target_pid_t pr_ppid;
1823 target_pid_t pr_pgrp;
1824 target_pid_t pr_sid;
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001825 struct target_timeval pr_utime; /* XXX User time */
1826 struct target_timeval pr_stime; /* XXX System time */
1827 struct target_timeval pr_cutime; /* XXX Cumulative user time */
1828 struct target_timeval pr_cstime; /* XXX Cumulative system time */
Anthony Liguoric227f092009-10-01 16:12:16 -05001829 target_elf_gregset_t pr_reg; /* GP registers */
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001830 int pr_fpvalid; /* XXX */
1831};
1832
1833#define ELF_PRARGSZ (80) /* Number of chars for args */
1834
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01001835struct target_elf_prpsinfo {
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001836 char pr_state; /* numeric process state */
1837 char pr_sname; /* char for pr_state */
1838 char pr_zomb; /* zombie */
1839 char pr_nice; /* nice val */
1840 target_ulong pr_flag; /* flags */
Anthony Liguoric227f092009-10-01 16:12:16 -05001841 target_uid_t pr_uid;
1842 target_gid_t pr_gid;
1843 target_pid_t pr_pid, pr_ppid, pr_pgrp, pr_sid;
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001844 /* Lots missing */
1845 char pr_fname[16]; /* filename of executable */
1846 char pr_psargs[ELF_PRARGSZ]; /* initial part of arg list */
1847};
1848
1849/* Here is the structure in which status of each thread is captured. */
1850struct elf_thread_status {
Blue Swirl72cf2d42009-09-12 07:36:22 +00001851 QTAILQ_ENTRY(elf_thread_status) ets_link;
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01001852 struct target_elf_prstatus prstatus; /* NT_PRSTATUS */
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001853#if 0
1854 elf_fpregset_t fpu; /* NT_PRFPREG */
1855 struct task_struct *thread;
1856 elf_fpxregset_t xfpu; /* ELF_CORE_XFPREG_TYPE */
1857#endif
1858 struct memelfnote notes[1];
1859 int num_notes;
1860};
1861
1862struct elf_note_info {
1863 struct memelfnote *notes;
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01001864 struct target_elf_prstatus *prstatus; /* NT_PRSTATUS */
1865 struct target_elf_prpsinfo *psinfo; /* NT_PRPSINFO */
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001866
Blue Swirl72cf2d42009-09-12 07:36:22 +00001867 QTAILQ_HEAD(thread_list_head, elf_thread_status) thread_list;
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001868#if 0
1869 /*
1870 * Current version of ELF coredump doesn't support
1871 * dumping fp regs etc.
1872 */
1873 elf_fpregset_t *fpu;
1874 elf_fpxregset_t *xfpu;
1875 int thread_status_size;
1876#endif
1877 int notes_size;
1878 int numnote;
1879};
1880
1881struct vm_area_struct {
1882 abi_ulong vma_start; /* start vaddr of memory region */
1883 abi_ulong vma_end; /* end vaddr of memory region */
1884 abi_ulong vma_flags; /* protection etc. flags for the region */
Blue Swirl72cf2d42009-09-12 07:36:22 +00001885 QTAILQ_ENTRY(vm_area_struct) vma_link;
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001886};
1887
1888struct mm_struct {
Blue Swirl72cf2d42009-09-12 07:36:22 +00001889 QTAILQ_HEAD(, vm_area_struct) mm_mmap;
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001890 int mm_count; /* number of mappings */
1891};
1892
1893static struct mm_struct *vma_init(void);
1894static void vma_delete(struct mm_struct *);
1895static int vma_add_mapping(struct mm_struct *, abi_ulong,
1896 abi_ulong, abi_ulong);
1897static int vma_get_mapping_count(const struct mm_struct *);
1898static struct vm_area_struct *vma_first(const struct mm_struct *);
1899static struct vm_area_struct *vma_next(struct vm_area_struct *);
1900static abi_ulong vma_dump_size(const struct vm_area_struct *);
1901static int vma_walker(void *priv, unsigned long start, unsigned long end,
1902 unsigned long flags);
1903
1904static void fill_elf_header(struct elfhdr *, int, uint16_t, uint32_t);
1905static void fill_note(struct memelfnote *, const char *, int,
1906 unsigned int, void *);
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01001907static void fill_prstatus(struct target_elf_prstatus *, const TaskState *, int);
1908static int fill_psinfo(struct target_elf_prpsinfo *, const TaskState *);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001909static void fill_auxv_note(struct memelfnote *, const TaskState *);
1910static void fill_elf_note_phdr(struct elf_phdr *, int, off_t);
1911static size_t note_size(const struct memelfnote *);
1912static void free_note_info(struct elf_note_info *);
1913static int fill_note_info(struct elf_note_info *, long, const CPUState *);
1914static void fill_thread_info(struct elf_note_info *, const CPUState *);
1915static int core_dump_filename(const TaskState *, char *, size_t);
1916
1917static int dump_write(int, const void *, size_t);
1918static int write_note(struct memelfnote *, int);
1919static int write_note_info(struct elf_note_info *, int);
1920
1921#ifdef BSWAP_NEEDED
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01001922static void bswap_prstatus(struct target_elf_prstatus *);
1923static void bswap_psinfo(struct target_elf_prpsinfo *);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001924
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01001925static void bswap_prstatus(struct target_elf_prstatus *prstatus)
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001926{
1927 prstatus->pr_info.si_signo = tswapl(prstatus->pr_info.si_signo);
1928 prstatus->pr_info.si_code = tswapl(prstatus->pr_info.si_code);
1929 prstatus->pr_info.si_errno = tswapl(prstatus->pr_info.si_errno);
1930 prstatus->pr_cursig = tswap16(prstatus->pr_cursig);
1931 prstatus->pr_sigpend = tswapl(prstatus->pr_sigpend);
1932 prstatus->pr_sighold = tswapl(prstatus->pr_sighold);
1933 prstatus->pr_pid = tswap32(prstatus->pr_pid);
1934 prstatus->pr_ppid = tswap32(prstatus->pr_ppid);
1935 prstatus->pr_pgrp = tswap32(prstatus->pr_pgrp);
1936 prstatus->pr_sid = tswap32(prstatus->pr_sid);
1937 /* cpu times are not filled, so we skip them */
1938 /* regs should be in correct format already */
1939 prstatus->pr_fpvalid = tswap32(prstatus->pr_fpvalid);
1940}
1941
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01001942static void bswap_psinfo(struct target_elf_prpsinfo *psinfo)
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001943{
1944 psinfo->pr_flag = tswapl(psinfo->pr_flag);
1945 psinfo->pr_uid = tswap16(psinfo->pr_uid);
1946 psinfo->pr_gid = tswap16(psinfo->pr_gid);
1947 psinfo->pr_pid = tswap32(psinfo->pr_pid);
1948 psinfo->pr_ppid = tswap32(psinfo->pr_ppid);
1949 psinfo->pr_pgrp = tswap32(psinfo->pr_pgrp);
1950 psinfo->pr_sid = tswap32(psinfo->pr_sid);
1951}
1952#endif /* BSWAP_NEEDED */
1953
1954/*
1955 * Minimal support for linux memory regions. These are needed
1956 * when we are finding out what memory exactly belongs to
1957 * emulated process. No locks needed here, as long as
1958 * thread that received the signal is stopped.
1959 */
1960
1961static struct mm_struct *vma_init(void)
1962{
1963 struct mm_struct *mm;
1964
1965 if ((mm = qemu_malloc(sizeof (*mm))) == NULL)
1966 return (NULL);
1967
1968 mm->mm_count = 0;
Blue Swirl72cf2d42009-09-12 07:36:22 +00001969 QTAILQ_INIT(&mm->mm_mmap);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001970
1971 return (mm);
1972}
1973
1974static void vma_delete(struct mm_struct *mm)
1975{
1976 struct vm_area_struct *vma;
1977
1978 while ((vma = vma_first(mm)) != NULL) {
Blue Swirl72cf2d42009-09-12 07:36:22 +00001979 QTAILQ_REMOVE(&mm->mm_mmap, vma, vma_link);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001980 qemu_free(vma);
1981 }
1982 qemu_free(mm);
1983}
1984
1985static int vma_add_mapping(struct mm_struct *mm, abi_ulong start,
1986 abi_ulong end, abi_ulong flags)
1987{
1988 struct vm_area_struct *vma;
1989
1990 if ((vma = qemu_mallocz(sizeof (*vma))) == NULL)
1991 return (-1);
1992
1993 vma->vma_start = start;
1994 vma->vma_end = end;
1995 vma->vma_flags = flags;
1996
Blue Swirl72cf2d42009-09-12 07:36:22 +00001997 QTAILQ_INSERT_TAIL(&mm->mm_mmap, vma, vma_link);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001998 mm->mm_count++;
1999
2000 return (0);
2001}
2002
2003static struct vm_area_struct *vma_first(const struct mm_struct *mm)
2004{
Blue Swirl72cf2d42009-09-12 07:36:22 +00002005 return (QTAILQ_FIRST(&mm->mm_mmap));
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002006}
2007
2008static struct vm_area_struct *vma_next(struct vm_area_struct *vma)
2009{
Blue Swirl72cf2d42009-09-12 07:36:22 +00002010 return (QTAILQ_NEXT(vma, vma_link));
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002011}
2012
2013static int vma_get_mapping_count(const struct mm_struct *mm)
2014{
2015 return (mm->mm_count);
2016}
2017
2018/*
2019 * Calculate file (dump) size of given memory region.
2020 */
2021static abi_ulong vma_dump_size(const struct vm_area_struct *vma)
2022{
2023 /* if we cannot even read the first page, skip it */
2024 if (!access_ok(VERIFY_READ, vma->vma_start, TARGET_PAGE_SIZE))
2025 return (0);
2026
2027 /*
2028 * Usually we don't dump executable pages as they contain
2029 * non-writable code that debugger can read directly from
2030 * target library etc. However, thread stacks are marked
2031 * also executable so we read in first page of given region
2032 * and check whether it contains elf header. If there is
2033 * no elf header, we dump it.
2034 */
2035 if (vma->vma_flags & PROT_EXEC) {
2036 char page[TARGET_PAGE_SIZE];
2037
2038 copy_from_user(page, vma->vma_start, sizeof (page));
2039 if ((page[EI_MAG0] == ELFMAG0) &&
2040 (page[EI_MAG1] == ELFMAG1) &&
2041 (page[EI_MAG2] == ELFMAG2) &&
2042 (page[EI_MAG3] == ELFMAG3)) {
2043 /*
2044 * Mappings are possibly from ELF binary. Don't dump
2045 * them.
2046 */
2047 return (0);
2048 }
2049 }
2050
2051 return (vma->vma_end - vma->vma_start);
2052}
2053
2054static int vma_walker(void *priv, unsigned long start, unsigned long end,
2055 unsigned long flags)
2056{
2057 struct mm_struct *mm = (struct mm_struct *)priv;
2058
2059 /*
2060 * Don't dump anything that qemu has reserved for internal use.
2061 */
2062 if (flags & PAGE_RESERVED)
2063 return (0);
2064
2065 vma_add_mapping(mm, start, end, flags);
2066 return (0);
2067}
2068
2069static void fill_note(struct memelfnote *note, const char *name, int type,
2070 unsigned int sz, void *data)
2071{
2072 unsigned int namesz;
2073
2074 namesz = strlen(name) + 1;
2075 note->name = name;
2076 note->namesz = namesz;
2077 note->namesz_rounded = roundup(namesz, sizeof (int32_t));
2078 note->type = type;
2079 note->datasz = roundup(sz, sizeof (int32_t));;
2080 note->data = data;
2081
2082 /*
2083 * We calculate rounded up note size here as specified by
2084 * ELF document.
2085 */
2086 note->notesz = sizeof (struct elf_note) +
2087 note->namesz_rounded + note->datasz;
2088}
2089
2090static void fill_elf_header(struct elfhdr *elf, int segs, uint16_t machine,
2091 uint32_t flags)
2092{
2093 (void) memset(elf, 0, sizeof(*elf));
2094
2095 (void) memcpy(elf->e_ident, ELFMAG, SELFMAG);
2096 elf->e_ident[EI_CLASS] = ELF_CLASS;
2097 elf->e_ident[EI_DATA] = ELF_DATA;
2098 elf->e_ident[EI_VERSION] = EV_CURRENT;
2099 elf->e_ident[EI_OSABI] = ELF_OSABI;
2100
2101 elf->e_type = ET_CORE;
2102 elf->e_machine = machine;
2103 elf->e_version = EV_CURRENT;
2104 elf->e_phoff = sizeof(struct elfhdr);
2105 elf->e_flags = flags;
2106 elf->e_ehsize = sizeof(struct elfhdr);
2107 elf->e_phentsize = sizeof(struct elf_phdr);
2108 elf->e_phnum = segs;
2109
2110#ifdef BSWAP_NEEDED
2111 bswap_ehdr(elf);
2112#endif
2113}
2114
2115static void fill_elf_note_phdr(struct elf_phdr *phdr, int sz, off_t offset)
2116{
2117 phdr->p_type = PT_NOTE;
2118 phdr->p_offset = offset;
2119 phdr->p_vaddr = 0;
2120 phdr->p_paddr = 0;
2121 phdr->p_filesz = sz;
2122 phdr->p_memsz = 0;
2123 phdr->p_flags = 0;
2124 phdr->p_align = 0;
2125
2126#ifdef BSWAP_NEEDED
2127 bswap_phdr(phdr);
2128#endif
2129}
2130
2131static size_t note_size(const struct memelfnote *note)
2132{
2133 return (note->notesz);
2134}
2135
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01002136static void fill_prstatus(struct target_elf_prstatus *prstatus,
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002137 const TaskState *ts, int signr)
2138{
2139 (void) memset(prstatus, 0, sizeof (*prstatus));
2140 prstatus->pr_info.si_signo = prstatus->pr_cursig = signr;
2141 prstatus->pr_pid = ts->ts_tid;
2142 prstatus->pr_ppid = getppid();
2143 prstatus->pr_pgrp = getpgrp();
2144 prstatus->pr_sid = getsid(0);
2145
2146#ifdef BSWAP_NEEDED
2147 bswap_prstatus(prstatus);
2148#endif
2149}
2150
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01002151static int fill_psinfo(struct target_elf_prpsinfo *psinfo, const TaskState *ts)
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002152{
2153 char *filename, *base_filename;
2154 unsigned int i, len;
2155
2156 (void) memset(psinfo, 0, sizeof (*psinfo));
2157
2158 len = ts->info->arg_end - ts->info->arg_start;
2159 if (len >= ELF_PRARGSZ)
2160 len = ELF_PRARGSZ - 1;
2161 if (copy_from_user(&psinfo->pr_psargs, ts->info->arg_start, len))
2162 return -EFAULT;
2163 for (i = 0; i < len; i++)
2164 if (psinfo->pr_psargs[i] == 0)
2165 psinfo->pr_psargs[i] = ' ';
2166 psinfo->pr_psargs[len] = 0;
2167
2168 psinfo->pr_pid = getpid();
2169 psinfo->pr_ppid = getppid();
2170 psinfo->pr_pgrp = getpgrp();
2171 psinfo->pr_sid = getsid(0);
2172 psinfo->pr_uid = getuid();
2173 psinfo->pr_gid = getgid();
2174
2175 filename = strdup(ts->bprm->filename);
2176 base_filename = strdup(basename(filename));
2177 (void) strncpy(psinfo->pr_fname, base_filename,
2178 sizeof(psinfo->pr_fname));
2179 free(base_filename);
2180 free(filename);
2181
2182#ifdef BSWAP_NEEDED
2183 bswap_psinfo(psinfo);
2184#endif
2185 return (0);
2186}
2187
2188static void fill_auxv_note(struct memelfnote *note, const TaskState *ts)
2189{
2190 elf_addr_t auxv = (elf_addr_t)ts->info->saved_auxv;
2191 elf_addr_t orig_auxv = auxv;
2192 abi_ulong val;
2193 void *ptr;
2194 int i, len;
2195
2196 /*
2197 * Auxiliary vector is stored in target process stack. It contains
2198 * {type, value} pairs that we need to dump into note. This is not
2199 * strictly necessary but we do it here for sake of completeness.
2200 */
2201
2202 /* find out lenght of the vector, AT_NULL is terminator */
2203 i = len = 0;
2204 do {
2205 get_user_ual(val, auxv);
2206 i += 2;
2207 auxv += 2 * sizeof (elf_addr_t);
2208 } while (val != AT_NULL);
2209 len = i * sizeof (elf_addr_t);
2210
2211 /* read in whole auxv vector and copy it to memelfnote */
2212 ptr = lock_user(VERIFY_READ, orig_auxv, len, 0);
2213 if (ptr != NULL) {
2214 fill_note(note, "CORE", NT_AUXV, len, ptr);
2215 unlock_user(ptr, auxv, len);
2216 }
2217}
2218
2219/*
2220 * Constructs name of coredump file. We have following convention
2221 * for the name:
2222 * qemu_<basename-of-target-binary>_<date>-<time>_<pid>.core
2223 *
2224 * Returns 0 in case of success, -1 otherwise (errno is set).
2225 */
2226static int core_dump_filename(const TaskState *ts, char *buf,
2227 size_t bufsize)
2228{
2229 char timestamp[64];
2230 char *filename = NULL;
2231 char *base_filename = NULL;
2232 struct timeval tv;
2233 struct tm tm;
2234
2235 assert(bufsize >= PATH_MAX);
2236
2237 if (gettimeofday(&tv, NULL) < 0) {
2238 (void) fprintf(stderr, "unable to get current timestamp: %s",
2239 strerror(errno));
2240 return (-1);
2241 }
2242
2243 filename = strdup(ts->bprm->filename);
2244 base_filename = strdup(basename(filename));
2245 (void) strftime(timestamp, sizeof (timestamp), "%Y%m%d-%H%M%S",
2246 localtime_r(&tv.tv_sec, &tm));
2247 (void) snprintf(buf, bufsize, "qemu_%s_%s_%d.core",
2248 base_filename, timestamp, (int)getpid());
2249 free(base_filename);
2250 free(filename);
2251
2252 return (0);
2253}
2254
2255static int dump_write(int fd, const void *ptr, size_t size)
2256{
2257 const char *bufp = (const char *)ptr;
2258 ssize_t bytes_written, bytes_left;
2259 struct rlimit dumpsize;
2260 off_t pos;
2261
2262 bytes_written = 0;
2263 getrlimit(RLIMIT_CORE, &dumpsize);
2264 if ((pos = lseek(fd, 0, SEEK_CUR))==-1) {
2265 if (errno == ESPIPE) { /* not a seekable stream */
2266 bytes_left = size;
2267 } else {
2268 return pos;
2269 }
2270 } else {
2271 if (dumpsize.rlim_cur <= pos) {
2272 return -1;
2273 } else if (dumpsize.rlim_cur == RLIM_INFINITY) {
2274 bytes_left = size;
2275 } else {
2276 size_t limit_left=dumpsize.rlim_cur - pos;
2277 bytes_left = limit_left >= size ? size : limit_left ;
2278 }
2279 }
2280
2281 /*
2282 * In normal conditions, single write(2) should do but
2283 * in case of socket etc. this mechanism is more portable.
2284 */
2285 do {
2286 bytes_written = write(fd, bufp, bytes_left);
2287 if (bytes_written < 0) {
2288 if (errno == EINTR)
2289 continue;
2290 return (-1);
2291 } else if (bytes_written == 0) { /* eof */
2292 return (-1);
2293 }
2294 bufp += bytes_written;
2295 bytes_left -= bytes_written;
2296 } while (bytes_left > 0);
2297
2298 return (0);
2299}
2300
2301static int write_note(struct memelfnote *men, int fd)
2302{
2303 struct elf_note en;
2304
2305 en.n_namesz = men->namesz;
2306 en.n_type = men->type;
2307 en.n_descsz = men->datasz;
2308
2309#ifdef BSWAP_NEEDED
2310 bswap_note(&en);
2311#endif
2312
2313 if (dump_write(fd, &en, sizeof(en)) != 0)
2314 return (-1);
2315 if (dump_write(fd, men->name, men->namesz_rounded) != 0)
2316 return (-1);
2317 if (dump_write(fd, men->data, men->datasz) != 0)
2318 return (-1);
2319
2320 return (0);
2321}
2322
2323static void fill_thread_info(struct elf_note_info *info, const CPUState *env)
2324{
2325 TaskState *ts = (TaskState *)env->opaque;
2326 struct elf_thread_status *ets;
2327
2328 ets = qemu_mallocz(sizeof (*ets));
2329 ets->num_notes = 1; /* only prstatus is dumped */
2330 fill_prstatus(&ets->prstatus, ts, 0);
2331 elf_core_copy_regs(&ets->prstatus.pr_reg, env);
2332 fill_note(&ets->notes[0], "CORE", NT_PRSTATUS, sizeof (ets->prstatus),
2333 &ets->prstatus);
2334
Blue Swirl72cf2d42009-09-12 07:36:22 +00002335 QTAILQ_INSERT_TAIL(&info->thread_list, ets, ets_link);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002336
2337 info->notes_size += note_size(&ets->notes[0]);
2338}
2339
2340static int fill_note_info(struct elf_note_info *info,
2341 long signr, const CPUState *env)
2342{
2343#define NUMNOTES 3
2344 CPUState *cpu = NULL;
2345 TaskState *ts = (TaskState *)env->opaque;
2346 int i;
2347
2348 (void) memset(info, 0, sizeof (*info));
2349
Blue Swirl72cf2d42009-09-12 07:36:22 +00002350 QTAILQ_INIT(&info->thread_list);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002351
2352 info->notes = qemu_mallocz(NUMNOTES * sizeof (struct memelfnote));
2353 if (info->notes == NULL)
2354 return (-ENOMEM);
2355 info->prstatus = qemu_mallocz(sizeof (*info->prstatus));
2356 if (info->prstatus == NULL)
2357 return (-ENOMEM);
2358 info->psinfo = qemu_mallocz(sizeof (*info->psinfo));
2359 if (info->prstatus == NULL)
2360 return (-ENOMEM);
2361
2362 /*
2363 * First fill in status (and registers) of current thread
2364 * including process info & aux vector.
2365 */
2366 fill_prstatus(info->prstatus, ts, signr);
2367 elf_core_copy_regs(&info->prstatus->pr_reg, env);
2368 fill_note(&info->notes[0], "CORE", NT_PRSTATUS,
2369 sizeof (*info->prstatus), info->prstatus);
2370 fill_psinfo(info->psinfo, ts);
2371 fill_note(&info->notes[1], "CORE", NT_PRPSINFO,
2372 sizeof (*info->psinfo), info->psinfo);
2373 fill_auxv_note(&info->notes[2], ts);
2374 info->numnote = 3;
2375
2376 info->notes_size = 0;
2377 for (i = 0; i < info->numnote; i++)
2378 info->notes_size += note_size(&info->notes[i]);
2379
2380 /* read and fill status of all threads */
2381 cpu_list_lock();
2382 for (cpu = first_cpu; cpu != NULL; cpu = cpu->next_cpu) {
2383 if (cpu == thread_env)
2384 continue;
2385 fill_thread_info(info, cpu);
2386 }
2387 cpu_list_unlock();
2388
2389 return (0);
2390}
2391
2392static void free_note_info(struct elf_note_info *info)
2393{
2394 struct elf_thread_status *ets;
2395
Blue Swirl72cf2d42009-09-12 07:36:22 +00002396 while (!QTAILQ_EMPTY(&info->thread_list)) {
2397 ets = QTAILQ_FIRST(&info->thread_list);
2398 QTAILQ_REMOVE(&info->thread_list, ets, ets_link);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002399 qemu_free(ets);
2400 }
2401
2402 qemu_free(info->prstatus);
2403 qemu_free(info->psinfo);
2404 qemu_free(info->notes);
2405}
2406
2407static int write_note_info(struct elf_note_info *info, int fd)
2408{
2409 struct elf_thread_status *ets;
2410 int i, error = 0;
2411
2412 /* write prstatus, psinfo and auxv for current thread */
2413 for (i = 0; i < info->numnote; i++)
2414 if ((error = write_note(&info->notes[i], fd)) != 0)
2415 return (error);
2416
2417 /* write prstatus for each thread */
2418 for (ets = info->thread_list.tqh_first; ets != NULL;
2419 ets = ets->ets_link.tqe_next) {
2420 if ((error = write_note(&ets->notes[0], fd)) != 0)
2421 return (error);
2422 }
2423
2424 return (0);
2425}
2426
2427/*
2428 * Write out ELF coredump.
2429 *
2430 * See documentation of ELF object file format in:
2431 * http://www.caldera.com/developers/devspecs/gabi41.pdf
2432 *
2433 * Coredump format in linux is following:
2434 *
2435 * 0 +----------------------+ \
2436 * | ELF header | ET_CORE |
2437 * +----------------------+ |
2438 * | ELF program headers | |--- headers
2439 * | - NOTE section | |
2440 * | - PT_LOAD sections | |
2441 * +----------------------+ /
2442 * | NOTEs: |
2443 * | - NT_PRSTATUS |
2444 * | - NT_PRSINFO |
2445 * | - NT_AUXV |
2446 * +----------------------+ <-- aligned to target page
2447 * | Process memory dump |
2448 * : :
2449 * . .
2450 * : :
2451 * | |
2452 * +----------------------+
2453 *
2454 * NT_PRSTATUS -> struct elf_prstatus (per thread)
2455 * NT_PRSINFO -> struct elf_prpsinfo
2456 * NT_AUXV is array of { type, value } pairs (see fill_auxv_note()).
2457 *
2458 * Format follows System V format as close as possible. Current
2459 * version limitations are as follows:
2460 * - no floating point registers are dumped
2461 *
2462 * Function returns 0 in case of success, negative errno otherwise.
2463 *
2464 * TODO: make this work also during runtime: it should be
2465 * possible to force coredump from running process and then
2466 * continue processing. For example qemu could set up SIGUSR2
2467 * handler (provided that target process haven't registered
2468 * handler for that) that does the dump when signal is received.
2469 */
2470static int elf_core_dump(int signr, const CPUState *env)
2471{
2472 const TaskState *ts = (const TaskState *)env->opaque;
2473 struct vm_area_struct *vma = NULL;
2474 char corefile[PATH_MAX];
2475 struct elf_note_info info;
2476 struct elfhdr elf;
2477 struct elf_phdr phdr;
2478 struct rlimit dumpsize;
2479 struct mm_struct *mm = NULL;
2480 off_t offset = 0, data_offset = 0;
2481 int segs = 0;
2482 int fd = -1;
2483
2484 errno = 0;
2485 getrlimit(RLIMIT_CORE, &dumpsize);
2486 if (dumpsize.rlim_cur == 0)
2487 return 0;
2488
2489 if (core_dump_filename(ts, corefile, sizeof (corefile)) < 0)
2490 return (-errno);
2491
2492 if ((fd = open(corefile, O_WRONLY | O_CREAT,
2493 S_IRUSR|S_IWUSR|S_IRGRP|S_IROTH)) < 0)
2494 return (-errno);
2495
2496 /*
2497 * Walk through target process memory mappings and
2498 * set up structure containing this information. After
2499 * this point vma_xxx functions can be used.
2500 */
2501 if ((mm = vma_init()) == NULL)
2502 goto out;
2503
2504 walk_memory_regions(mm, vma_walker);
2505 segs = vma_get_mapping_count(mm);
2506
2507 /*
2508 * Construct valid coredump ELF header. We also
2509 * add one more segment for notes.
2510 */
2511 fill_elf_header(&elf, segs + 1, ELF_MACHINE, 0);
2512 if (dump_write(fd, &elf, sizeof (elf)) != 0)
2513 goto out;
2514
2515 /* fill in in-memory version of notes */
2516 if (fill_note_info(&info, signr, env) < 0)
2517 goto out;
2518
2519 offset += sizeof (elf); /* elf header */
2520 offset += (segs + 1) * sizeof (struct elf_phdr); /* program headers */
2521
2522 /* write out notes program header */
2523 fill_elf_note_phdr(&phdr, info.notes_size, offset);
2524
2525 offset += info.notes_size;
2526 if (dump_write(fd, &phdr, sizeof (phdr)) != 0)
2527 goto out;
2528
2529 /*
2530 * ELF specification wants data to start at page boundary so
2531 * we align it here.
2532 */
2533 offset = roundup(offset, ELF_EXEC_PAGESIZE);
2534
2535 /*
2536 * Write program headers for memory regions mapped in
2537 * the target process.
2538 */
2539 for (vma = vma_first(mm); vma != NULL; vma = vma_next(vma)) {
2540 (void) memset(&phdr, 0, sizeof (phdr));
2541
2542 phdr.p_type = PT_LOAD;
2543 phdr.p_offset = offset;
2544 phdr.p_vaddr = vma->vma_start;
2545 phdr.p_paddr = 0;
2546 phdr.p_filesz = vma_dump_size(vma);
2547 offset += phdr.p_filesz;
2548 phdr.p_memsz = vma->vma_end - vma->vma_start;
2549 phdr.p_flags = vma->vma_flags & PROT_READ ? PF_R : 0;
2550 if (vma->vma_flags & PROT_WRITE)
2551 phdr.p_flags |= PF_W;
2552 if (vma->vma_flags & PROT_EXEC)
2553 phdr.p_flags |= PF_X;
2554 phdr.p_align = ELF_EXEC_PAGESIZE;
2555
2556 dump_write(fd, &phdr, sizeof (phdr));
2557 }
2558
2559 /*
2560 * Next we write notes just after program headers. No
2561 * alignment needed here.
2562 */
2563 if (write_note_info(&info, fd) < 0)
2564 goto out;
2565
2566 /* align data to page boundary */
2567 data_offset = lseek(fd, 0, SEEK_CUR);
2568 data_offset = TARGET_PAGE_ALIGN(data_offset);
2569 if (lseek(fd, data_offset, SEEK_SET) != data_offset)
2570 goto out;
2571
2572 /*
2573 * Finally we can dump process memory into corefile as well.
2574 */
2575 for (vma = vma_first(mm); vma != NULL; vma = vma_next(vma)) {
2576 abi_ulong addr;
2577 abi_ulong end;
2578
2579 end = vma->vma_start + vma_dump_size(vma);
2580
2581 for (addr = vma->vma_start; addr < end;
2582 addr += TARGET_PAGE_SIZE) {
2583 char page[TARGET_PAGE_SIZE];
2584 int error;
2585
2586 /*
2587 * Read in page from target process memory and
2588 * write it to coredump file.
2589 */
2590 error = copy_from_user(page, addr, sizeof (page));
2591 if (error != 0) {
Aurelien Jarno49995e12009-12-19 20:28:23 +01002592 (void) fprintf(stderr, "unable to dump " TARGET_ABI_FMT_lx "\n",
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002593 addr);
2594 errno = -error;
2595 goto out;
2596 }
2597 if (dump_write(fd, page, TARGET_PAGE_SIZE) < 0)
2598 goto out;
2599 }
2600 }
2601
2602out:
2603 free_note_info(&info);
2604 if (mm != NULL)
2605 vma_delete(mm);
2606 (void) close(fd);
2607
2608 if (errno != 0)
2609 return (-errno);
2610 return (0);
2611}
2612
2613#endif /* USE_ELF_CORE_DUMP */
2614
bellard31e31b82003-02-18 22:55:36 +00002615static int load_aout_interp(void * exptr, int interp_fd)
2616{
2617 printf("a.out interpreter not yet supported\n");
2618 return(0);
2619}
2620
pbrooke5fe0c52006-06-11 13:32:59 +00002621void do_init_thread(struct target_pt_regs *regs, struct image_info *infop)
2622{
2623 init_thread(regs, infop);
2624}