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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 {
Richard Hendersond97ef722010-07-27 10:25:29 -070038 ADDR_NO_RANDOMIZE = 0x0040000, /* disable randomization of VA space */
39 FDPIC_FUNCPTRS = 0x0080000, /* userspace function ptrs point to
40 descriptors (signal handling) */
41 MMAP_PAGE_ZERO = 0x0100000,
42 ADDR_COMPAT_LAYOUT = 0x0200000,
43 READ_IMPLIES_EXEC = 0x0400000,
44 ADDR_LIMIT_32BIT = 0x0800000,
45 SHORT_INODE = 0x1000000,
46 WHOLE_SECONDS = 0x2000000,
47 STICKY_TIMEOUTS = 0x4000000,
48 ADDR_LIMIT_3GB = 0x8000000,
blueswir1cb33da52007-10-09 16:34:29 +000049};
50
51/*
52 * Personality types.
53 *
54 * These go in the low byte. Avoid using the top bit, it will
55 * conflict with error returns.
56 */
57enum {
Richard Hendersond97ef722010-07-27 10:25:29 -070058 PER_LINUX = 0x0000,
59 PER_LINUX_32BIT = 0x0000 | ADDR_LIMIT_32BIT,
60 PER_LINUX_FDPIC = 0x0000 | FDPIC_FUNCPTRS,
61 PER_SVR4 = 0x0001 | STICKY_TIMEOUTS | MMAP_PAGE_ZERO,
62 PER_SVR3 = 0x0002 | STICKY_TIMEOUTS | SHORT_INODE,
63 PER_SCOSVR3 = 0x0003 | STICKY_TIMEOUTS | WHOLE_SECONDS | SHORT_INODE,
64 PER_OSR5 = 0x0003 | STICKY_TIMEOUTS | WHOLE_SECONDS,
65 PER_WYSEV386 = 0x0004 | STICKY_TIMEOUTS | SHORT_INODE,
66 PER_ISCR4 = 0x0005 | STICKY_TIMEOUTS,
67 PER_BSD = 0x0006,
68 PER_SUNOS = 0x0006 | STICKY_TIMEOUTS,
69 PER_XENIX = 0x0007 | STICKY_TIMEOUTS | SHORT_INODE,
70 PER_LINUX32 = 0x0008,
71 PER_LINUX32_3GB = 0x0008 | ADDR_LIMIT_3GB,
72 PER_IRIX32 = 0x0009 | STICKY_TIMEOUTS,/* IRIX5 32-bit */
73 PER_IRIXN32 = 0x000a | STICKY_TIMEOUTS,/* IRIX6 new 32-bit */
74 PER_IRIX64 = 0x000b | STICKY_TIMEOUTS,/* IRIX6 64-bit */
75 PER_RISCOS = 0x000c,
76 PER_SOLARIS = 0x000d | STICKY_TIMEOUTS,
77 PER_UW7 = 0x000e | STICKY_TIMEOUTS | MMAP_PAGE_ZERO,
78 PER_OSF4 = 0x000f, /* OSF/1 v4 */
79 PER_HPUX = 0x0010,
80 PER_MASK = 0x00ff,
blueswir1cb33da52007-10-09 16:34:29 +000081};
82
83/*
84 * Return the base personality without flags.
85 */
Richard Hendersond97ef722010-07-27 10:25:29 -070086#define personality(pers) (pers & PER_MASK)
blueswir1cb33da52007-10-09 16:34:29 +000087
bellard83fb7ad2004-07-05 21:25:26 +000088/* this flag is uneffective under linux too, should be deleted */
89#ifndef MAP_DENYWRITE
90#define MAP_DENYWRITE 0
91#endif
92
93/* should probably go in elf.h */
94#ifndef ELIBBAD
95#define ELIBBAD 80
96#endif
97
Richard Henderson28490232010-07-27 10:25:31 -070098#ifdef TARGET_WORDS_BIGENDIAN
99#define ELF_DATA ELFDATA2MSB
100#else
101#define ELF_DATA ELFDATA2LSB
102#endif
103
Richard Hendersond97ef722010-07-27 10:25:29 -0700104typedef target_ulong target_elf_greg_t;
Nathan Froyd21e807f2009-12-11 09:04:46 -0800105#ifdef USE_UID16
Richard Hendersond97ef722010-07-27 10:25:29 -0700106typedef uint16_t target_uid_t;
107typedef uint16_t target_gid_t;
Nathan Froyd21e807f2009-12-11 09:04:46 -0800108#else
Richard Hendersond97ef722010-07-27 10:25:29 -0700109typedef uint32_t target_uid_t;
110typedef uint32_t target_gid_t;
Nathan Froyd21e807f2009-12-11 09:04:46 -0800111#endif
Richard Hendersond97ef722010-07-27 10:25:29 -0700112typedef int32_t target_pid_t;
Nathan Froyd21e807f2009-12-11 09:04:46 -0800113
bellard30ac07d2003-04-07 21:33:03 +0000114#ifdef TARGET_I386
115
bellard15338fd2005-11-26 11:41:16 +0000116#define ELF_PLATFORM get_elf_platform()
117
118static const char *get_elf_platform(void)
119{
120 static char elf_platform[] = "i386";
pbrookd5975362008-06-07 20:50:51 +0000121 int family = (thread_env->cpuid_version >> 8) & 0xff;
bellard15338fd2005-11-26 11:41:16 +0000122 if (family > 6)
123 family = 6;
124 if (family >= 3)
125 elf_platform[1] = '0' + family;
126 return elf_platform;
127}
128
129#define ELF_HWCAP get_elf_hwcap()
130
131static uint32_t get_elf_hwcap(void)
132{
Richard Hendersond97ef722010-07-27 10:25:29 -0700133 return thread_env->cpuid_features;
bellard15338fd2005-11-26 11:41:16 +0000134}
135
j_mayer84409dd2007-04-06 08:56:50 +0000136#ifdef TARGET_X86_64
137#define ELF_START_MMAP 0x2aaaaab000ULL
138#define elf_check_arch(x) ( ((x) == ELF_ARCH) )
139
140#define ELF_CLASS ELFCLASS64
j_mayer84409dd2007-04-06 08:56:50 +0000141#define ELF_ARCH EM_X86_64
142
143static inline void init_thread(struct target_pt_regs *regs, struct image_info *infop)
144{
145 regs->rax = 0;
146 regs->rsp = infop->start_stack;
147 regs->rip = infop->entry;
148}
149
Mika Westerberg9edc5d72009-04-07 09:57:59 +0300150#define ELF_NREG 27
Anthony Liguoric227f092009-10-01 16:12:16 -0500151typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
Mika Westerberg9edc5d72009-04-07 09:57:59 +0300152
153/*
154 * Note that ELF_NREG should be 29 as there should be place for
155 * TRAPNO and ERR "registers" as well but linux doesn't dump
156 * those.
157 *
158 * See linux kernel: arch/x86/include/asm/elf.h
159 */
Anthony Liguoric227f092009-10-01 16:12:16 -0500160static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUState *env)
Mika Westerberg9edc5d72009-04-07 09:57:59 +0300161{
162 (*regs)[0] = env->regs[15];
163 (*regs)[1] = env->regs[14];
164 (*regs)[2] = env->regs[13];
165 (*regs)[3] = env->regs[12];
166 (*regs)[4] = env->regs[R_EBP];
167 (*regs)[5] = env->regs[R_EBX];
168 (*regs)[6] = env->regs[11];
169 (*regs)[7] = env->regs[10];
170 (*regs)[8] = env->regs[9];
171 (*regs)[9] = env->regs[8];
172 (*regs)[10] = env->regs[R_EAX];
173 (*regs)[11] = env->regs[R_ECX];
174 (*regs)[12] = env->regs[R_EDX];
175 (*regs)[13] = env->regs[R_ESI];
176 (*regs)[14] = env->regs[R_EDI];
177 (*regs)[15] = env->regs[R_EAX]; /* XXX */
178 (*regs)[16] = env->eip;
179 (*regs)[17] = env->segs[R_CS].selector & 0xffff;
180 (*regs)[18] = env->eflags;
181 (*regs)[19] = env->regs[R_ESP];
182 (*regs)[20] = env->segs[R_SS].selector & 0xffff;
183 (*regs)[21] = env->segs[R_FS].selector & 0xffff;
184 (*regs)[22] = env->segs[R_GS].selector & 0xffff;
185 (*regs)[23] = env->segs[R_DS].selector & 0xffff;
186 (*regs)[24] = env->segs[R_ES].selector & 0xffff;
187 (*regs)[25] = env->segs[R_FS].selector & 0xffff;
188 (*regs)[26] = env->segs[R_GS].selector & 0xffff;
189}
190
j_mayer84409dd2007-04-06 08:56:50 +0000191#else
192
bellard30ac07d2003-04-07 21:33:03 +0000193#define ELF_START_MMAP 0x80000000
194
bellard30ac07d2003-04-07 21:33:03 +0000195/*
196 * This is used to ensure we don't load something for the wrong architecture.
197 */
198#define elf_check_arch(x) ( ((x) == EM_386) || ((x) == EM_486) )
199
200/*
201 * These are used to set parameters in the core dumps.
202 */
Richard Hendersond97ef722010-07-27 10:25:29 -0700203#define ELF_CLASS ELFCLASS32
Richard Hendersond97ef722010-07-27 10:25:29 -0700204#define ELF_ARCH EM_386
bellard30ac07d2003-04-07 21:33:03 +0000205
Richard Hendersond97ef722010-07-27 10:25:29 -0700206static inline void init_thread(struct target_pt_regs *regs,
207 struct image_info *infop)
bellardb346ff42003-06-15 20:05:50 +0000208{
209 regs->esp = infop->start_stack;
210 regs->eip = infop->entry;
pbrooke5fe0c52006-06-11 13:32:59 +0000211
212 /* SVR4/i386 ABI (pages 3-31, 3-32) says that when the program
213 starts %edx contains a pointer to a function which might be
214 registered using `atexit'. This provides a mean for the
215 dynamic linker to call DT_FINI functions for shared libraries
216 that have been loaded before the code runs.
217
218 A value of 0 tells we have no such handler. */
219 regs->edx = 0;
bellardb346ff42003-06-15 20:05:50 +0000220}
Mika Westerberg9edc5d72009-04-07 09:57:59 +0300221
Mika Westerberg9edc5d72009-04-07 09:57:59 +0300222#define ELF_NREG 17
Anthony Liguoric227f092009-10-01 16:12:16 -0500223typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
Mika Westerberg9edc5d72009-04-07 09:57:59 +0300224
225/*
226 * Note that ELF_NREG should be 19 as there should be place for
227 * TRAPNO and ERR "registers" as well but linux doesn't dump
228 * those.
229 *
230 * See linux kernel: arch/x86/include/asm/elf.h
231 */
Anthony Liguoric227f092009-10-01 16:12:16 -0500232static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUState *env)
Mika Westerberg9edc5d72009-04-07 09:57:59 +0300233{
234 (*regs)[0] = env->regs[R_EBX];
235 (*regs)[1] = env->regs[R_ECX];
236 (*regs)[2] = env->regs[R_EDX];
237 (*regs)[3] = env->regs[R_ESI];
238 (*regs)[4] = env->regs[R_EDI];
239 (*regs)[5] = env->regs[R_EBP];
240 (*regs)[6] = env->regs[R_EAX];
241 (*regs)[7] = env->segs[R_DS].selector & 0xffff;
242 (*regs)[8] = env->segs[R_ES].selector & 0xffff;
243 (*regs)[9] = env->segs[R_FS].selector & 0xffff;
244 (*regs)[10] = env->segs[R_GS].selector & 0xffff;
245 (*regs)[11] = env->regs[R_EAX]; /* XXX */
246 (*regs)[12] = env->eip;
247 (*regs)[13] = env->segs[R_CS].selector & 0xffff;
248 (*regs)[14] = env->eflags;
249 (*regs)[15] = env->regs[R_ESP];
250 (*regs)[16] = env->segs[R_SS].selector & 0xffff;
251}
j_mayer84409dd2007-04-06 08:56:50 +0000252#endif
bellardb346ff42003-06-15 20:05:50 +0000253
Mika Westerberg9edc5d72009-04-07 09:57:59 +0300254#define USE_ELF_CORE_DUMP
Richard Hendersond97ef722010-07-27 10:25:29 -0700255#define ELF_EXEC_PAGESIZE 4096
bellardb346ff42003-06-15 20:05:50 +0000256
257#endif
258
259#ifdef TARGET_ARM
260
261#define ELF_START_MMAP 0x80000000
262
263#define elf_check_arch(x) ( (x) == EM_ARM )
264
Richard Hendersond97ef722010-07-27 10:25:29 -0700265#define ELF_CLASS ELFCLASS32
Richard Hendersond97ef722010-07-27 10:25:29 -0700266#define ELF_ARCH EM_ARM
bellardb346ff42003-06-15 20:05:50 +0000267
Richard Hendersond97ef722010-07-27 10:25:29 -0700268static inline void init_thread(struct target_pt_regs *regs,
269 struct image_info *infop)
bellardb346ff42003-06-15 20:05:50 +0000270{
blueswir1992f48a2007-10-14 16:27:31 +0000271 abi_long stack = infop->start_stack;
bellardb346ff42003-06-15 20:05:50 +0000272 memset(regs, 0, sizeof(*regs));
273 regs->ARM_cpsr = 0x10;
pbrook0240ded2006-02-04 19:30:51 +0000274 if (infop->entry & 1)
Richard Hendersond97ef722010-07-27 10:25:29 -0700275 regs->ARM_cpsr |= CPSR_T;
pbrook0240ded2006-02-04 19:30:51 +0000276 regs->ARM_pc = infop->entry & 0xfffffffe;
bellardb346ff42003-06-15 20:05:50 +0000277 regs->ARM_sp = infop->start_stack;
bellard2f619692007-11-16 10:46:05 +0000278 /* FIXME - what to for failure of get_user()? */
279 get_user_ual(regs->ARM_r2, stack + 8); /* envp */
280 get_user_ual(regs->ARM_r1, stack + 4); /* envp */
bellarda1516e92003-07-09 17:13:37 +0000281 /* XXX: it seems that r0 is zeroed after ! */
pbrooke5fe0c52006-06-11 13:32:59 +0000282 regs->ARM_r0 = 0;
283 /* For uClinux PIC binaries. */
j_mayer863cf0b2007-10-07 15:59:45 +0000284 /* XXX: Linux does this only on ARM with no MMU (do we care ?) */
pbrooke5fe0c52006-06-11 13:32:59 +0000285 regs->ARM_r10 = infop->start_data;
bellardb346ff42003-06-15 20:05:50 +0000286}
287
Mika Westerbergedf8e2a2009-04-07 09:57:11 +0300288#define ELF_NREG 18
Anthony Liguoric227f092009-10-01 16:12:16 -0500289typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
Mika Westerbergedf8e2a2009-04-07 09:57:11 +0300290
Anthony Liguoric227f092009-10-01 16:12:16 -0500291static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUState *env)
Mika Westerbergedf8e2a2009-04-07 09:57:11 +0300292{
Nathan Froydd049e622009-12-11 09:04:47 -0800293 (*regs)[0] = tswapl(env->regs[0]);
294 (*regs)[1] = tswapl(env->regs[1]);
295 (*regs)[2] = tswapl(env->regs[2]);
296 (*regs)[3] = tswapl(env->regs[3]);
297 (*regs)[4] = tswapl(env->regs[4]);
298 (*regs)[5] = tswapl(env->regs[5]);
299 (*regs)[6] = tswapl(env->regs[6]);
300 (*regs)[7] = tswapl(env->regs[7]);
301 (*regs)[8] = tswapl(env->regs[8]);
302 (*regs)[9] = tswapl(env->regs[9]);
303 (*regs)[10] = tswapl(env->regs[10]);
304 (*regs)[11] = tswapl(env->regs[11]);
305 (*regs)[12] = tswapl(env->regs[12]);
306 (*regs)[13] = tswapl(env->regs[13]);
307 (*regs)[14] = tswapl(env->regs[14]);
308 (*regs)[15] = tswapl(env->regs[15]);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +0300309
Nathan Froydd049e622009-12-11 09:04:47 -0800310 (*regs)[16] = tswapl(cpsr_read((CPUState *)env));
311 (*regs)[17] = tswapl(env->regs[0]); /* XXX */
Mika Westerbergedf8e2a2009-04-07 09:57:11 +0300312}
313
bellard30ac07d2003-04-07 21:33:03 +0000314#define USE_ELF_CORE_DUMP
Richard Hendersond97ef722010-07-27 10:25:29 -0700315#define ELF_EXEC_PAGESIZE 4096
bellard30ac07d2003-04-07 21:33:03 +0000316
bellardafce2922005-10-30 20:58:30 +0000317enum
318{
Richard Hendersond97ef722010-07-27 10:25:29 -0700319 ARM_HWCAP_ARM_SWP = 1 << 0,
320 ARM_HWCAP_ARM_HALF = 1 << 1,
321 ARM_HWCAP_ARM_THUMB = 1 << 2,
322 ARM_HWCAP_ARM_26BIT = 1 << 3,
323 ARM_HWCAP_ARM_FAST_MULT = 1 << 4,
324 ARM_HWCAP_ARM_FPA = 1 << 5,
325 ARM_HWCAP_ARM_VFP = 1 << 6,
326 ARM_HWCAP_ARM_EDSP = 1 << 7,
327 ARM_HWCAP_ARM_JAVA = 1 << 8,
328 ARM_HWCAP_ARM_IWMMXT = 1 << 9,
329 ARM_HWCAP_ARM_THUMBEE = 1 << 10,
330 ARM_HWCAP_ARM_NEON = 1 << 11,
331 ARM_HWCAP_ARM_VFPv3 = 1 << 12,
332 ARM_HWCAP_ARM_VFPv3D16 = 1 << 13,
bellardafce2922005-10-30 20:58:30 +0000333};
334
Richard Hendersond97ef722010-07-27 10:25:29 -0700335#define ELF_HWCAP (ARM_HWCAP_ARM_SWP | ARM_HWCAP_ARM_HALF \
336 | ARM_HWCAP_ARM_THUMB | ARM_HWCAP_ARM_FAST_MULT \
337 | ARM_HWCAP_ARM_FPA | ARM_HWCAP_ARM_VFP \
338 | ARM_HWCAP_ARM_NEON | ARM_HWCAP_ARM_VFPv3 )
bellardafce2922005-10-30 20:58:30 +0000339
bellard30ac07d2003-04-07 21:33:03 +0000340#endif
341
bellard853d6f72003-09-30 20:58:32 +0000342#ifdef TARGET_SPARC
bellarda315a142005-01-30 22:59:18 +0000343#ifdef TARGET_SPARC64
bellard853d6f72003-09-30 20:58:32 +0000344
345#define ELF_START_MMAP 0x80000000
346
blueswir1992f48a2007-10-14 16:27:31 +0000347#ifndef TARGET_ABI32
blueswir1cb33da52007-10-09 16:34:29 +0000348#define elf_check_arch(x) ( (x) == EM_SPARCV9 || (x) == EM_SPARC32PLUS )
blueswir1992f48a2007-10-14 16:27:31 +0000349#else
350#define elf_check_arch(x) ( (x) == EM_SPARC32PLUS || (x) == EM_SPARC )
351#endif
bellard853d6f72003-09-30 20:58:32 +0000352
bellarda315a142005-01-30 22:59:18 +0000353#define ELF_CLASS ELFCLASS64
bellard5ef54112006-07-18 21:14:09 +0000354#define ELF_ARCH EM_SPARCV9
355
Richard Hendersond97ef722010-07-27 10:25:29 -0700356#define STACK_BIAS 2047
bellarda315a142005-01-30 22:59:18 +0000357
Richard Hendersond97ef722010-07-27 10:25:29 -0700358static inline void init_thread(struct target_pt_regs *regs,
359 struct image_info *infop)
bellarda315a142005-01-30 22:59:18 +0000360{
blueswir1992f48a2007-10-14 16:27:31 +0000361#ifndef TARGET_ABI32
bellarda315a142005-01-30 22:59:18 +0000362 regs->tstate = 0;
blueswir1992f48a2007-10-14 16:27:31 +0000363#endif
bellarda315a142005-01-30 22:59:18 +0000364 regs->pc = infop->entry;
365 regs->npc = regs->pc + 4;
366 regs->y = 0;
blueswir1992f48a2007-10-14 16:27:31 +0000367#ifdef TARGET_ABI32
368 regs->u_regs[14] = infop->start_stack - 16 * 4;
369#else
blueswir1cb33da52007-10-09 16:34:29 +0000370 if (personality(infop->personality) == PER_LINUX32)
371 regs->u_regs[14] = infop->start_stack - 16 * 4;
372 else
373 regs->u_regs[14] = infop->start_stack - 16 * 8 - STACK_BIAS;
blueswir1992f48a2007-10-14 16:27:31 +0000374#endif
bellarda315a142005-01-30 22:59:18 +0000375}
376
377#else
378#define ELF_START_MMAP 0x80000000
379
380#define elf_check_arch(x) ( (x) == EM_SPARC )
381
bellard853d6f72003-09-30 20:58:32 +0000382#define ELF_CLASS ELFCLASS32
bellard853d6f72003-09-30 20:58:32 +0000383#define ELF_ARCH EM_SPARC
384
Richard Hendersond97ef722010-07-27 10:25:29 -0700385static inline void init_thread(struct target_pt_regs *regs,
386 struct image_info *infop)
bellard853d6f72003-09-30 20:58:32 +0000387{
bellardf5155282004-01-04 15:46:50 +0000388 regs->psr = 0;
389 regs->pc = infop->entry;
390 regs->npc = regs->pc + 4;
391 regs->y = 0;
392 regs->u_regs[14] = infop->start_stack - 16 * 4;
bellard853d6f72003-09-30 20:58:32 +0000393}
394
395#endif
bellarda315a142005-01-30 22:59:18 +0000396#endif
bellard853d6f72003-09-30 20:58:32 +0000397
bellard67867302003-11-23 17:05:30 +0000398#ifdef TARGET_PPC
399
400#define ELF_START_MMAP 0x80000000
401
j_mayere85e7c62007-10-18 19:59:49 +0000402#if defined(TARGET_PPC64) && !defined(TARGET_ABI32)
j_mayer84409dd2007-04-06 08:56:50 +0000403
404#define elf_check_arch(x) ( (x) == EM_PPC64 )
405
Richard Hendersond97ef722010-07-27 10:25:29 -0700406#define ELF_CLASS ELFCLASS64
j_mayer84409dd2007-04-06 08:56:50 +0000407
408#else
409
bellard67867302003-11-23 17:05:30 +0000410#define elf_check_arch(x) ( (x) == EM_PPC )
411
Richard Hendersond97ef722010-07-27 10:25:29 -0700412#define ELF_CLASS ELFCLASS32
j_mayer84409dd2007-04-06 08:56:50 +0000413
414#endif
415
Richard Hendersond97ef722010-07-27 10:25:29 -0700416#define ELF_ARCH EM_PPC
bellard67867302003-11-23 17:05:30 +0000417
Nathan Froyddf84e4f2009-05-12 12:26:59 -0700418/* Feature masks for the Aux Vector Hardware Capabilities (AT_HWCAP).
419 See arch/powerpc/include/asm/cputable.h. */
420enum {
malc3efa9a62009-07-18 13:10:12 +0400421 QEMU_PPC_FEATURE_32 = 0x80000000,
422 QEMU_PPC_FEATURE_64 = 0x40000000,
423 QEMU_PPC_FEATURE_601_INSTR = 0x20000000,
424 QEMU_PPC_FEATURE_HAS_ALTIVEC = 0x10000000,
425 QEMU_PPC_FEATURE_HAS_FPU = 0x08000000,
426 QEMU_PPC_FEATURE_HAS_MMU = 0x04000000,
427 QEMU_PPC_FEATURE_HAS_4xxMAC = 0x02000000,
428 QEMU_PPC_FEATURE_UNIFIED_CACHE = 0x01000000,
429 QEMU_PPC_FEATURE_HAS_SPE = 0x00800000,
430 QEMU_PPC_FEATURE_HAS_EFP_SINGLE = 0x00400000,
431 QEMU_PPC_FEATURE_HAS_EFP_DOUBLE = 0x00200000,
432 QEMU_PPC_FEATURE_NO_TB = 0x00100000,
433 QEMU_PPC_FEATURE_POWER4 = 0x00080000,
434 QEMU_PPC_FEATURE_POWER5 = 0x00040000,
435 QEMU_PPC_FEATURE_POWER5_PLUS = 0x00020000,
436 QEMU_PPC_FEATURE_CELL = 0x00010000,
437 QEMU_PPC_FEATURE_BOOKE = 0x00008000,
438 QEMU_PPC_FEATURE_SMT = 0x00004000,
439 QEMU_PPC_FEATURE_ICACHE_SNOOP = 0x00002000,
440 QEMU_PPC_FEATURE_ARCH_2_05 = 0x00001000,
441 QEMU_PPC_FEATURE_PA6T = 0x00000800,
442 QEMU_PPC_FEATURE_HAS_DFP = 0x00000400,
443 QEMU_PPC_FEATURE_POWER6_EXT = 0x00000200,
444 QEMU_PPC_FEATURE_ARCH_2_06 = 0x00000100,
445 QEMU_PPC_FEATURE_HAS_VSX = 0x00000080,
446 QEMU_PPC_FEATURE_PSERIES_PERFMON_COMPAT = 0x00000040,
Nathan Froyddf84e4f2009-05-12 12:26:59 -0700447
malc3efa9a62009-07-18 13:10:12 +0400448 QEMU_PPC_FEATURE_TRUE_LE = 0x00000002,
449 QEMU_PPC_FEATURE_PPC_LE = 0x00000001,
Nathan Froyddf84e4f2009-05-12 12:26:59 -0700450};
451
452#define ELF_HWCAP get_elf_hwcap()
453
454static uint32_t get_elf_hwcap(void)
455{
456 CPUState *e = thread_env;
457 uint32_t features = 0;
458
459 /* We don't have to be terribly complete here; the high points are
460 Altivec/FP/SPE support. Anything else is just a bonus. */
Richard Hendersond97ef722010-07-27 10:25:29 -0700461#define GET_FEATURE(flag, feature) \
Nathan Froyddf84e4f2009-05-12 12:26:59 -0700462 do {if (e->insns_flags & flag) features |= feature; } while(0)
malc3efa9a62009-07-18 13:10:12 +0400463 GET_FEATURE(PPC_64B, QEMU_PPC_FEATURE_64);
464 GET_FEATURE(PPC_FLOAT, QEMU_PPC_FEATURE_HAS_FPU);
465 GET_FEATURE(PPC_ALTIVEC, QEMU_PPC_FEATURE_HAS_ALTIVEC);
466 GET_FEATURE(PPC_SPE, QEMU_PPC_FEATURE_HAS_SPE);
467 GET_FEATURE(PPC_SPE_SINGLE, QEMU_PPC_FEATURE_HAS_EFP_SINGLE);
468 GET_FEATURE(PPC_SPE_DOUBLE, QEMU_PPC_FEATURE_HAS_EFP_DOUBLE);
469 GET_FEATURE(PPC_BOOKE, QEMU_PPC_FEATURE_BOOKE);
470 GET_FEATURE(PPC_405_MAC, QEMU_PPC_FEATURE_HAS_4xxMAC);
Nathan Froyddf84e4f2009-05-12 12:26:59 -0700471#undef GET_FEATURE
472
473 return features;
474}
475
bellardf5155282004-01-04 15:46:50 +0000476/*
bellardf5155282004-01-04 15:46:50 +0000477 * The requirements here are:
478 * - keep the final alignment of sp (sp & 0xf)
479 * - make sure the 32-bit value at the first 16 byte aligned position of
480 * AUXV is greater than 16 for glibc compatibility.
481 * AT_IGNOREPPC is used for that.
482 * - for compatibility with glibc ARCH_DLINFO must always be defined on PPC,
483 * even if DLINFO_ARCH_ITEMS goes to zero or is undefined.
484 */
bellard0bccf032005-08-21 10:12:28 +0000485#define DLINFO_ARCH_ITEMS 5
Richard Hendersond97ef722010-07-27 10:25:29 -0700486#define ARCH_DLINFO \
487 do { \
488 NEW_AUX_ENT(AT_DCACHEBSIZE, 0x20); \
489 NEW_AUX_ENT(AT_ICACHEBSIZE, 0x20); \
490 NEW_AUX_ENT(AT_UCACHEBSIZE, 0); \
491 /* \
492 * Now handle glibc compatibility. \
493 */ \
494 NEW_AUX_ENT(AT_IGNOREPPC, AT_IGNOREPPC); \
495 NEW_AUX_ENT(AT_IGNOREPPC, AT_IGNOREPPC); \
496 } while (0)
bellardf5155282004-01-04 15:46:50 +0000497
bellard67867302003-11-23 17:05:30 +0000498static inline void init_thread(struct target_pt_regs *_regs, struct image_info *infop)
499{
bellard67867302003-11-23 17:05:30 +0000500 _regs->gpr[1] = infop->start_stack;
j_mayere85e7c62007-10-18 19:59:49 +0000501#if defined(TARGET_PPC64) && !defined(TARGET_ABI32)
Rob Landley7983f432010-03-28 16:51:43 +0200502 _regs->gpr[2] = ldq_raw(infop->entry + 8) + infop->load_addr;
503 infop->entry = ldq_raw(infop->entry) + infop->load_addr;
j_mayer84409dd2007-04-06 08:56:50 +0000504#endif
bellard67867302003-11-23 17:05:30 +0000505 _regs->nip = infop->entry;
506}
507
Nathan Froyde2f3e742009-12-11 09:04:48 -0800508/* See linux kernel: arch/powerpc/include/asm/elf.h. */
509#define ELF_NREG 48
510typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
511
512static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUState *env)
513{
514 int i;
515 target_ulong ccr = 0;
516
517 for (i = 0; i < ARRAY_SIZE(env->gpr); i++) {
518 (*regs)[i] = tswapl(env->gpr[i]);
519 }
520
521 (*regs)[32] = tswapl(env->nip);
522 (*regs)[33] = tswapl(env->msr);
523 (*regs)[35] = tswapl(env->ctr);
524 (*regs)[36] = tswapl(env->lr);
525 (*regs)[37] = tswapl(env->xer);
526
527 for (i = 0; i < ARRAY_SIZE(env->crf); i++) {
528 ccr |= env->crf[i] << (32 - ((i + 1) * 4));
529 }
530 (*regs)[38] = tswapl(ccr);
531}
532
533#define USE_ELF_CORE_DUMP
Richard Hendersond97ef722010-07-27 10:25:29 -0700534#define ELF_EXEC_PAGESIZE 4096
bellard67867302003-11-23 17:05:30 +0000535
536#endif
537
bellard048f6b42005-11-26 18:47:20 +0000538#ifdef TARGET_MIPS
539
540#define ELF_START_MMAP 0x80000000
541
542#define elf_check_arch(x) ( (x) == EM_MIPS )
543
ths388bb212007-05-13 13:58:00 +0000544#ifdef TARGET_MIPS64
545#define ELF_CLASS ELFCLASS64
546#else
bellard048f6b42005-11-26 18:47:20 +0000547#define ELF_CLASS ELFCLASS32
ths388bb212007-05-13 13:58:00 +0000548#endif
bellard048f6b42005-11-26 18:47:20 +0000549#define ELF_ARCH EM_MIPS
550
Richard Hendersond97ef722010-07-27 10:25:29 -0700551static inline void init_thread(struct target_pt_regs *regs,
552 struct image_info *infop)
bellard048f6b42005-11-26 18:47:20 +0000553{
ths623a9302007-10-28 19:45:05 +0000554 regs->cp0_status = 2 << CP0St_KSU;
bellard048f6b42005-11-26 18:47:20 +0000555 regs->cp0_epc = infop->entry;
556 regs->regs[29] = infop->start_stack;
557}
558
Nathan Froyd51e52602009-12-11 09:04:49 -0800559/* See linux kernel: arch/mips/include/asm/elf.h. */
560#define ELF_NREG 45
561typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
562
563/* See linux kernel: arch/mips/include/asm/reg.h. */
564enum {
565#ifdef TARGET_MIPS64
566 TARGET_EF_R0 = 0,
567#else
568 TARGET_EF_R0 = 6,
569#endif
570 TARGET_EF_R26 = TARGET_EF_R0 + 26,
571 TARGET_EF_R27 = TARGET_EF_R0 + 27,
572 TARGET_EF_LO = TARGET_EF_R0 + 32,
573 TARGET_EF_HI = TARGET_EF_R0 + 33,
574 TARGET_EF_CP0_EPC = TARGET_EF_R0 + 34,
575 TARGET_EF_CP0_BADVADDR = TARGET_EF_R0 + 35,
576 TARGET_EF_CP0_STATUS = TARGET_EF_R0 + 36,
577 TARGET_EF_CP0_CAUSE = TARGET_EF_R0 + 37
578};
579
580/* See linux kernel: arch/mips/kernel/process.c:elf_dump_regs. */
581static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUState *env)
582{
583 int i;
584
585 for (i = 0; i < TARGET_EF_R0; i++) {
586 (*regs)[i] = 0;
587 }
588 (*regs)[TARGET_EF_R0] = 0;
589
590 for (i = 1; i < ARRAY_SIZE(env->active_tc.gpr); i++) {
591 (*regs)[TARGET_EF_R0 + i] = tswapl(env->active_tc.gpr[i]);
592 }
593
594 (*regs)[TARGET_EF_R26] = 0;
595 (*regs)[TARGET_EF_R27] = 0;
596 (*regs)[TARGET_EF_LO] = tswapl(env->active_tc.LO[0]);
597 (*regs)[TARGET_EF_HI] = tswapl(env->active_tc.HI[0]);
598 (*regs)[TARGET_EF_CP0_EPC] = tswapl(env->active_tc.PC);
599 (*regs)[TARGET_EF_CP0_BADVADDR] = tswapl(env->CP0_BadVAddr);
600 (*regs)[TARGET_EF_CP0_STATUS] = tswapl(env->CP0_Status);
601 (*regs)[TARGET_EF_CP0_CAUSE] = tswapl(env->CP0_Cause);
602}
603
604#define USE_ELF_CORE_DUMP
ths388bb212007-05-13 13:58:00 +0000605#define ELF_EXEC_PAGESIZE 4096
606
bellard048f6b42005-11-26 18:47:20 +0000607#endif /* TARGET_MIPS */
608
Edgar E. Iglesiasb779e292009-05-20 21:31:33 +0200609#ifdef TARGET_MICROBLAZE
610
611#define ELF_START_MMAP 0x80000000
612
Edgar E. Iglesias0d5d4692010-05-19 15:24:17 +0200613#define elf_check_arch(x) ( (x) == EM_MICROBLAZE || (x) == EM_MICROBLAZE_OLD)
Edgar E. Iglesiasb779e292009-05-20 21:31:33 +0200614
615#define ELF_CLASS ELFCLASS32
Edgar E. Iglesias0d5d4692010-05-19 15:24:17 +0200616#define ELF_ARCH EM_MICROBLAZE
Edgar E. Iglesiasb779e292009-05-20 21:31:33 +0200617
Richard Hendersond97ef722010-07-27 10:25:29 -0700618static inline void init_thread(struct target_pt_regs *regs,
619 struct image_info *infop)
Edgar E. Iglesiasb779e292009-05-20 21:31:33 +0200620{
621 regs->pc = infop->entry;
622 regs->r1 = infop->start_stack;
623
624}
625
Edgar E. Iglesiasb779e292009-05-20 21:31:33 +0200626#define ELF_EXEC_PAGESIZE 4096
627
Edgar E. Iglesiase4cbd442010-05-19 15:09:28 +0200628#define USE_ELF_CORE_DUMP
629#define ELF_NREG 38
630typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
631
632/* See linux kernel: arch/mips/kernel/process.c:elf_dump_regs. */
633static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUState *env)
634{
635 int i, pos = 0;
636
637 for (i = 0; i < 32; i++) {
638 (*regs)[pos++] = tswapl(env->regs[i]);
639 }
640
641 for (i = 0; i < 6; i++) {
642 (*regs)[pos++] = tswapl(env->sregs[i]);
643 }
644}
645
Edgar E. Iglesiasb779e292009-05-20 21:31:33 +0200646#endif /* TARGET_MICROBLAZE */
647
bellardfdf9b3e2006-04-27 21:07:38 +0000648#ifdef TARGET_SH4
649
650#define ELF_START_MMAP 0x80000000
651
652#define elf_check_arch(x) ( (x) == EM_SH )
653
654#define ELF_CLASS ELFCLASS32
bellardfdf9b3e2006-04-27 21:07:38 +0000655#define ELF_ARCH EM_SH
656
Richard Hendersond97ef722010-07-27 10:25:29 -0700657static inline void init_thread(struct target_pt_regs *regs,
658 struct image_info *infop)
bellardfdf9b3e2006-04-27 21:07:38 +0000659{
Richard Hendersond97ef722010-07-27 10:25:29 -0700660 /* Check other registers XXXXX */
661 regs->pc = infop->entry;
662 regs->regs[15] = infop->start_stack;
bellardfdf9b3e2006-04-27 21:07:38 +0000663}
664
Nathan Froyd7631c972009-12-11 09:04:51 -0800665/* See linux kernel: arch/sh/include/asm/elf.h. */
666#define ELF_NREG 23
667typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
668
669/* See linux kernel: arch/sh/include/asm/ptrace.h. */
670enum {
671 TARGET_REG_PC = 16,
672 TARGET_REG_PR = 17,
673 TARGET_REG_SR = 18,
674 TARGET_REG_GBR = 19,
675 TARGET_REG_MACH = 20,
676 TARGET_REG_MACL = 21,
677 TARGET_REG_SYSCALL = 22
678};
679
Richard Hendersond97ef722010-07-27 10:25:29 -0700680static inline void elf_core_copy_regs(target_elf_gregset_t *regs,
681 const CPUState *env)
Nathan Froyd7631c972009-12-11 09:04:51 -0800682{
683 int i;
684
685 for (i = 0; i < 16; i++) {
686 (*regs[i]) = tswapl(env->gregs[i]);
687 }
688
689 (*regs)[TARGET_REG_PC] = tswapl(env->pc);
690 (*regs)[TARGET_REG_PR] = tswapl(env->pr);
691 (*regs)[TARGET_REG_SR] = tswapl(env->sr);
692 (*regs)[TARGET_REG_GBR] = tswapl(env->gbr);
693 (*regs)[TARGET_REG_MACH] = tswapl(env->mach);
694 (*regs)[TARGET_REG_MACL] = tswapl(env->macl);
695 (*regs)[TARGET_REG_SYSCALL] = 0; /* FIXME */
696}
697
698#define USE_ELF_CORE_DUMP
bellardfdf9b3e2006-04-27 21:07:38 +0000699#define ELF_EXEC_PAGESIZE 4096
700
701#endif
702
ths48733d12007-10-08 13:36:46 +0000703#ifdef TARGET_CRIS
704
705#define ELF_START_MMAP 0x80000000
706
707#define elf_check_arch(x) ( (x) == EM_CRIS )
708
709#define ELF_CLASS ELFCLASS32
ths48733d12007-10-08 13:36:46 +0000710#define ELF_ARCH EM_CRIS
711
Richard Hendersond97ef722010-07-27 10:25:29 -0700712static inline void init_thread(struct target_pt_regs *regs,
713 struct image_info *infop)
ths48733d12007-10-08 13:36:46 +0000714{
Richard Hendersond97ef722010-07-27 10:25:29 -0700715 regs->erp = infop->entry;
ths48733d12007-10-08 13:36:46 +0000716}
717
ths48733d12007-10-08 13:36:46 +0000718#define ELF_EXEC_PAGESIZE 8192
719
720#endif
721
pbrooke6e59062006-10-22 00:18:54 +0000722#ifdef TARGET_M68K
723
724#define ELF_START_MMAP 0x80000000
725
726#define elf_check_arch(x) ( (x) == EM_68K )
727
Richard Hendersond97ef722010-07-27 10:25:29 -0700728#define ELF_CLASS ELFCLASS32
Richard Hendersond97ef722010-07-27 10:25:29 -0700729#define ELF_ARCH EM_68K
pbrooke6e59062006-10-22 00:18:54 +0000730
731/* ??? Does this need to do anything?
Richard Hendersond97ef722010-07-27 10:25:29 -0700732 #define ELF_PLAT_INIT(_r) */
pbrooke6e59062006-10-22 00:18:54 +0000733
Richard Hendersond97ef722010-07-27 10:25:29 -0700734static inline void init_thread(struct target_pt_regs *regs,
735 struct image_info *infop)
pbrooke6e59062006-10-22 00:18:54 +0000736{
737 regs->usp = infop->start_stack;
738 regs->sr = 0;
739 regs->pc = infop->entry;
740}
741
Nathan Froyd7a93cc52009-12-11 09:04:50 -0800742/* See linux kernel: arch/m68k/include/asm/elf.h. */
743#define ELF_NREG 20
744typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
745
746static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUState *env)
747{
748 (*regs)[0] = tswapl(env->dregs[1]);
749 (*regs)[1] = tswapl(env->dregs[2]);
750 (*regs)[2] = tswapl(env->dregs[3]);
751 (*regs)[3] = tswapl(env->dregs[4]);
752 (*regs)[4] = tswapl(env->dregs[5]);
753 (*regs)[5] = tswapl(env->dregs[6]);
754 (*regs)[6] = tswapl(env->dregs[7]);
755 (*regs)[7] = tswapl(env->aregs[0]);
756 (*regs)[8] = tswapl(env->aregs[1]);
757 (*regs)[9] = tswapl(env->aregs[2]);
758 (*regs)[10] = tswapl(env->aregs[3]);
759 (*regs)[11] = tswapl(env->aregs[4]);
760 (*regs)[12] = tswapl(env->aregs[5]);
761 (*regs)[13] = tswapl(env->aregs[6]);
762 (*regs)[14] = tswapl(env->dregs[0]);
763 (*regs)[15] = tswapl(env->aregs[7]);
764 (*regs)[16] = tswapl(env->dregs[0]); /* FIXME: orig_d0 */
765 (*regs)[17] = tswapl(env->sr);
766 (*regs)[18] = tswapl(env->pc);
767 (*regs)[19] = 0; /* FIXME: regs->format | regs->vector */
768}
769
770#define USE_ELF_CORE_DUMP
Richard Hendersond97ef722010-07-27 10:25:29 -0700771#define ELF_EXEC_PAGESIZE 8192
pbrooke6e59062006-10-22 00:18:54 +0000772
773#endif
774
j_mayer7a3148a2007-04-05 07:13:51 +0000775#ifdef TARGET_ALPHA
776
777#define ELF_START_MMAP (0x30000000000ULL)
778
779#define elf_check_arch(x) ( (x) == ELF_ARCH )
780
781#define ELF_CLASS ELFCLASS64
j_mayer7a3148a2007-04-05 07:13:51 +0000782#define ELF_ARCH EM_ALPHA
783
Richard Hendersond97ef722010-07-27 10:25:29 -0700784static inline void init_thread(struct target_pt_regs *regs,
785 struct image_info *infop)
j_mayer7a3148a2007-04-05 07:13:51 +0000786{
787 regs->pc = infop->entry;
788 regs->ps = 8;
789 regs->usp = infop->start_stack;
j_mayer7a3148a2007-04-05 07:13:51 +0000790}
791
j_mayer7a3148a2007-04-05 07:13:51 +0000792#define ELF_EXEC_PAGESIZE 8192
793
794#endif /* TARGET_ALPHA */
795
bellard15338fd2005-11-26 11:41:16 +0000796#ifndef ELF_PLATFORM
797#define ELF_PLATFORM (NULL)
798#endif
799
800#ifndef ELF_HWCAP
801#define ELF_HWCAP 0
802#endif
803
blueswir1992f48a2007-10-14 16:27:31 +0000804#ifdef TARGET_ABI32
blueswir1cb33da52007-10-09 16:34:29 +0000805#undef ELF_CLASS
blueswir1992f48a2007-10-14 16:27:31 +0000806#define ELF_CLASS ELFCLASS32
blueswir1cb33da52007-10-09 16:34:29 +0000807#undef bswaptls
808#define bswaptls(ptr) bswap32s(ptr)
809#endif
810
bellard31e31b82003-02-18 22:55:36 +0000811#include "elf.h"
bellard09bfb052003-04-10 00:03:40 +0000812
bellard09bfb052003-04-10 00:03:40 +0000813struct exec
814{
Richard Hendersond97ef722010-07-27 10:25:29 -0700815 unsigned int a_info; /* Use macros N_MAGIC, etc for access */
816 unsigned int a_text; /* length of text, in bytes */
817 unsigned int a_data; /* length of data, in bytes */
818 unsigned int a_bss; /* length of uninitialized data area, in bytes */
819 unsigned int a_syms; /* length of symbol table data in file, in bytes */
820 unsigned int a_entry; /* start address */
821 unsigned int a_trsize; /* length of relocation info for text, in bytes */
822 unsigned int a_drsize; /* length of relocation info for data, in bytes */
bellard09bfb052003-04-10 00:03:40 +0000823};
824
825
826#define N_MAGIC(exec) ((exec).a_info & 0xffff)
827#define OMAGIC 0407
828#define NMAGIC 0410
829#define ZMAGIC 0413
830#define QMAGIC 0314
831
bellard09bfb052003-04-10 00:03:40 +0000832/* max code+data+bss+brk space allocated to ET_DYN executables */
833#define ET_DYN_MAP_SIZE (128 * 1024 * 1024)
834
bellard31e31b82003-02-18 22:55:36 +0000835/* Necessary parameters */
bellard54936002003-05-13 00:25:15 +0000836#define TARGET_ELF_EXEC_PAGESIZE TARGET_PAGE_SIZE
837#define TARGET_ELF_PAGESTART(_v) ((_v) & ~(unsigned long)(TARGET_ELF_EXEC_PAGESIZE-1))
838#define TARGET_ELF_PAGEOFFSET(_v) ((_v) & (TARGET_ELF_EXEC_PAGESIZE-1))
bellard31e31b82003-02-18 22:55:36 +0000839
840#define INTERPRETER_NONE 0
841#define INTERPRETER_AOUT 1
842#define INTERPRETER_ELF 2
843
bellard15338fd2005-11-26 11:41:16 +0000844#define DLINFO_ITEMS 12
bellard31e31b82003-02-18 22:55:36 +0000845
bellard09bfb052003-04-10 00:03:40 +0000846static inline void memcpy_fromfs(void * to, const void * from, unsigned long n)
847{
Richard Hendersond97ef722010-07-27 10:25:29 -0700848 memcpy(to, from, n);
bellard09bfb052003-04-10 00:03:40 +0000849}
850
bellard31e31b82003-02-18 22:55:36 +0000851static int load_aout_interp(void * exptr, int interp_fd);
852
853#ifdef BSWAP_NEEDED
bellard92a31b12005-02-10 22:00:52 +0000854static void bswap_ehdr(struct elfhdr *ehdr)
bellard31e31b82003-02-18 22:55:36 +0000855{
Richard Hendersond97ef722010-07-27 10:25:29 -0700856 bswap16s(&ehdr->e_type); /* Object file type */
857 bswap16s(&ehdr->e_machine); /* Architecture */
858 bswap32s(&ehdr->e_version); /* Object file version */
859 bswaptls(&ehdr->e_entry); /* Entry point virtual address */
860 bswaptls(&ehdr->e_phoff); /* Program header table file offset */
861 bswaptls(&ehdr->e_shoff); /* Section header table file offset */
862 bswap32s(&ehdr->e_flags); /* Processor-specific flags */
863 bswap16s(&ehdr->e_ehsize); /* ELF header size in bytes */
864 bswap16s(&ehdr->e_phentsize); /* Program header table entry size */
865 bswap16s(&ehdr->e_phnum); /* Program header table entry count */
866 bswap16s(&ehdr->e_shentsize); /* Section header table entry size */
867 bswap16s(&ehdr->e_shnum); /* Section header table entry count */
868 bswap16s(&ehdr->e_shstrndx); /* Section header string table index */
bellard31e31b82003-02-18 22:55:36 +0000869}
870
Richard Henderson991f8f02010-07-27 10:25:32 -0700871static void bswap_phdr(struct elf_phdr *phdr, int phnum)
bellard31e31b82003-02-18 22:55:36 +0000872{
Richard Henderson991f8f02010-07-27 10:25:32 -0700873 int i;
874 for (i = 0; i < phnum; ++i, ++phdr) {
875 bswap32s(&phdr->p_type); /* Segment type */
876 bswap32s(&phdr->p_flags); /* Segment flags */
877 bswaptls(&phdr->p_offset); /* Segment file offset */
878 bswaptls(&phdr->p_vaddr); /* Segment virtual address */
879 bswaptls(&phdr->p_paddr); /* Segment physical address */
880 bswaptls(&phdr->p_filesz); /* Segment size in file */
881 bswaptls(&phdr->p_memsz); /* Segment size in memory */
882 bswaptls(&phdr->p_align); /* Segment alignment */
883 }
bellard31e31b82003-02-18 22:55:36 +0000884}
bellard689f9362003-04-29 20:40:07 +0000885
Richard Henderson991f8f02010-07-27 10:25:32 -0700886static void bswap_shdr(struct elf_shdr *shdr, int shnum)
bellard689f9362003-04-29 20:40:07 +0000887{
Richard Henderson991f8f02010-07-27 10:25:32 -0700888 int i;
889 for (i = 0; i < shnum; ++i, ++shdr) {
890 bswap32s(&shdr->sh_name);
891 bswap32s(&shdr->sh_type);
892 bswaptls(&shdr->sh_flags);
893 bswaptls(&shdr->sh_addr);
894 bswaptls(&shdr->sh_offset);
895 bswaptls(&shdr->sh_size);
896 bswap32s(&shdr->sh_link);
897 bswap32s(&shdr->sh_info);
898 bswaptls(&shdr->sh_addralign);
899 bswaptls(&shdr->sh_entsize);
900 }
bellard689f9362003-04-29 20:40:07 +0000901}
902
j_mayer7a3148a2007-04-05 07:13:51 +0000903static void bswap_sym(struct elf_sym *sym)
bellard689f9362003-04-29 20:40:07 +0000904{
905 bswap32s(&sym->st_name);
j_mayer7a3148a2007-04-05 07:13:51 +0000906 bswaptls(&sym->st_value);
907 bswaptls(&sym->st_size);
bellard689f9362003-04-29 20:40:07 +0000908 bswap16s(&sym->st_shndx);
909}
Richard Henderson991f8f02010-07-27 10:25:32 -0700910#else
911static inline void bswap_ehdr(struct elfhdr *ehdr) { }
912static inline void bswap_phdr(struct elf_phdr *phdr, int phnum) { }
913static inline void bswap_shdr(struct elf_shdr *shdr, int shnum) { }
914static inline void bswap_sym(struct elf_sym *sym) { }
bellard31e31b82003-02-18 22:55:36 +0000915#endif
916
Mika Westerbergedf8e2a2009-04-07 09:57:11 +0300917#ifdef USE_ELF_CORE_DUMP
918static int elf_core_dump(int, const CPUState *);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +0300919#endif /* USE_ELF_CORE_DUMP */
Richard Henderson682674b2010-07-27 10:25:33 -0700920static void load_symbols(struct elfhdr *hdr, int fd, abi_ulong load_bias);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +0300921
Richard Henderson9058abd2010-07-27 10:25:34 -0700922/* Verify the portions of EHDR within E_IDENT for the target.
923 This can be performed before bswapping the entire header. */
924static bool elf_check_ident(struct elfhdr *ehdr)
925{
926 return (ehdr->e_ident[EI_MAG0] == ELFMAG0
927 && ehdr->e_ident[EI_MAG1] == ELFMAG1
928 && ehdr->e_ident[EI_MAG2] == ELFMAG2
929 && ehdr->e_ident[EI_MAG3] == ELFMAG3
930 && ehdr->e_ident[EI_CLASS] == ELF_CLASS
931 && ehdr->e_ident[EI_DATA] == ELF_DATA
932 && ehdr->e_ident[EI_VERSION] == EV_CURRENT);
933}
934
935/* Verify the portions of EHDR outside of E_IDENT for the target.
936 This has to wait until after bswapping the header. */
937static bool elf_check_ehdr(struct elfhdr *ehdr)
938{
939 return (elf_check_arch(ehdr->e_machine)
940 && ehdr->e_ehsize == sizeof(struct elfhdr)
941 && ehdr->e_phentsize == sizeof(struct elf_phdr)
942 && ehdr->e_shentsize == sizeof(struct elf_shdr)
943 && (ehdr->e_type == ET_EXEC || ehdr->e_type == ET_DYN));
944}
945
bellard31e31b82003-02-18 22:55:36 +0000946/*
pbrooke5fe0c52006-06-11 13:32:59 +0000947 * 'copy_elf_strings()' copies argument/envelope strings from user
bellard31e31b82003-02-18 22:55:36 +0000948 * memory to free pages in kernel mem. These are in a format ready
949 * to be put directly into the top of new user memory.
950 *
951 */
blueswir1992f48a2007-10-14 16:27:31 +0000952static abi_ulong copy_elf_strings(int argc,char ** argv, void **page,
953 abi_ulong p)
bellard31e31b82003-02-18 22:55:36 +0000954{
955 char *tmp, *tmp1, *pag = NULL;
956 int len, offset = 0;
957
958 if (!p) {
Richard Hendersond97ef722010-07-27 10:25:29 -0700959 return 0; /* bullet-proofing */
bellard31e31b82003-02-18 22:55:36 +0000960 }
961 while (argc-- > 0) {
bellardedf779f2004-02-22 13:40:13 +0000962 tmp = argv[argc];
963 if (!tmp) {
Richard Hendersond97ef722010-07-27 10:25:29 -0700964 fprintf(stderr, "VFS: argc is wrong");
965 exit(-1);
966 }
bellardedf779f2004-02-22 13:40:13 +0000967 tmp1 = tmp;
Richard Hendersond97ef722010-07-27 10:25:29 -0700968 while (*tmp++);
969 len = tmp - tmp1;
970 if (p < len) { /* this shouldn't happen - 128kB */
971 return 0;
972 }
973 while (len) {
974 --p; --tmp; --len;
975 if (--offset < 0) {
976 offset = p % TARGET_PAGE_SIZE;
pbrook53a59602006-03-25 19:31:22 +0000977 pag = (char *)page[p/TARGET_PAGE_SIZE];
bellard44a91ca2004-01-18 22:05:44 +0000978 if (!pag) {
pbrook53a59602006-03-25 19:31:22 +0000979 pag = (char *)malloc(TARGET_PAGE_SIZE);
j_mayer4118a972007-09-27 04:10:43 +0000980 memset(pag, 0, TARGET_PAGE_SIZE);
pbrook53a59602006-03-25 19:31:22 +0000981 page[p/TARGET_PAGE_SIZE] = pag;
bellard44a91ca2004-01-18 22:05:44 +0000982 if (!pag)
983 return 0;
Richard Hendersond97ef722010-07-27 10:25:29 -0700984 }
985 }
986 if (len == 0 || offset == 0) {
987 *(pag + offset) = *tmp;
988 }
989 else {
990 int bytes_to_copy = (len > offset) ? offset : len;
991 tmp -= bytes_to_copy;
992 p -= bytes_to_copy;
993 offset -= bytes_to_copy;
994 len -= bytes_to_copy;
995 memcpy_fromfs(pag + offset, tmp, bytes_to_copy + 1);
996 }
997 }
bellard31e31b82003-02-18 22:55:36 +0000998 }
999 return p;
1000}
1001
blueswir1992f48a2007-10-14 16:27:31 +00001002static abi_ulong setup_arg_pages(abi_ulong p, struct linux_binprm *bprm,
1003 struct image_info *info)
pbrook53a59602006-03-25 19:31:22 +00001004{
Richard Henderson60dcbcb2010-07-27 10:25:35 -07001005 abi_ulong stack_base, size, error, guard;
bellard31e31b82003-02-18 22:55:36 +00001006 int i;
bellard31e31b82003-02-18 22:55:36 +00001007
1008 /* Create enough stack to hold everything. If we don't use
Richard Henderson60dcbcb2010-07-27 10:25:35 -07001009 it for args, we'll use it for something else. */
Richard Henderson703e0e82010-03-19 14:21:13 -07001010 size = guest_stack_size;
Richard Henderson60dcbcb2010-07-27 10:25:35 -07001011 if (size < MAX_ARG_PAGES*TARGET_PAGE_SIZE) {
bellard54936002003-05-13 00:25:15 +00001012 size = MAX_ARG_PAGES*TARGET_PAGE_SIZE;
Richard Henderson60dcbcb2010-07-27 10:25:35 -07001013 }
1014 guard = TARGET_PAGE_SIZE;
1015 if (guard < qemu_real_host_page_size) {
1016 guard = qemu_real_host_page_size;
1017 }
1018
1019 error = target_mmap(0, size + guard, PROT_READ | PROT_WRITE,
1020 MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
bellard09bfb052003-04-10 00:03:40 +00001021 if (error == -1) {
Richard Henderson60dcbcb2010-07-27 10:25:35 -07001022 perror("mmap stack");
bellard09bfb052003-04-10 00:03:40 +00001023 exit(-1);
bellard31e31b82003-02-18 22:55:36 +00001024 }
bellard09bfb052003-04-10 00:03:40 +00001025
Richard Henderson60dcbcb2010-07-27 10:25:35 -07001026 /* We reserve one extra page at the top of the stack as guard. */
1027 target_mprotect(error, guard, PROT_NONE);
1028
1029 info->stack_limit = error + guard;
1030 stack_base = info->stack_limit + size - MAX_ARG_PAGES*TARGET_PAGE_SIZE;
bellard09bfb052003-04-10 00:03:40 +00001031 p += stack_base;
1032
bellard31e31b82003-02-18 22:55:36 +00001033 for (i = 0 ; i < MAX_ARG_PAGES ; i++) {
Richard Hendersond97ef722010-07-27 10:25:29 -07001034 if (bprm->page[i]) {
1035 info->rss++;
bellard579a97f2007-11-11 14:26:47 +00001036 /* FIXME - check return value of memcpy_to_target() for failure */
Richard Hendersond97ef722010-07-27 10:25:29 -07001037 memcpy_to_target(stack_base, bprm->page[i], TARGET_PAGE_SIZE);
1038 free(bprm->page[i]);
1039 }
pbrook53a59602006-03-25 19:31:22 +00001040 stack_base += TARGET_PAGE_SIZE;
bellard31e31b82003-02-18 22:55:36 +00001041 }
1042 return p;
1043}
1044
Richard Hendersoncf129f32010-07-27 10:25:27 -07001045/* Map and zero the bss. We need to explicitly zero any fractional pages
1046 after the data section (i.e. bss). */
1047static void zero_bss(abi_ulong elf_bss, abi_ulong last_bss, int prot)
bellard31e31b82003-02-18 22:55:36 +00001048{
Richard Hendersoncf129f32010-07-27 10:25:27 -07001049 uintptr_t host_start, host_map_start, host_end;
bellard31e31b82003-02-18 22:55:36 +00001050
Richard Hendersoncf129f32010-07-27 10:25:27 -07001051 last_bss = TARGET_PAGE_ALIGN(last_bss);
bellard31e31b82003-02-18 22:55:36 +00001052
Richard Hendersoncf129f32010-07-27 10:25:27 -07001053 /* ??? There is confusion between qemu_real_host_page_size and
1054 qemu_host_page_size here and elsewhere in target_mmap, which
1055 may lead to the end of the data section mapping from the file
1056 not being mapped. At least there was an explicit test and
1057 comment for that here, suggesting that "the file size must
1058 be known". The comment probably pre-dates the introduction
1059 of the fstat system call in target_mmap which does in fact
1060 find out the size. What isn't clear is if the workaround
1061 here is still actually needed. For now, continue with it,
1062 but merge it with the "normal" mmap that would allocate the bss. */
bellard31e31b82003-02-18 22:55:36 +00001063
Richard Hendersoncf129f32010-07-27 10:25:27 -07001064 host_start = (uintptr_t) g2h(elf_bss);
1065 host_end = (uintptr_t) g2h(last_bss);
1066 host_map_start = (host_start + qemu_real_host_page_size - 1);
1067 host_map_start &= -qemu_real_host_page_size;
ths768a4a32006-12-14 13:32:11 +00001068
Richard Hendersoncf129f32010-07-27 10:25:27 -07001069 if (host_map_start < host_end) {
1070 void *p = mmap((void *)host_map_start, host_end - host_map_start,
1071 prot, MAP_FIXED | MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
1072 if (p == MAP_FAILED) {
1073 perror("cannot mmap brk");
1074 exit(-1);
bellard853d6f72003-09-30 20:58:32 +00001075 }
1076
Richard Hendersoncf129f32010-07-27 10:25:27 -07001077 /* Since we didn't use target_mmap, make sure to record
1078 the validity of the pages with qemu. */
1079 page_set_flags(elf_bss & TARGET_PAGE_MASK, last_bss, prot|PAGE_VALID);
1080 }
bellard31e31b82003-02-18 22:55:36 +00001081
Richard Hendersoncf129f32010-07-27 10:25:27 -07001082 if (host_start < host_map_start) {
1083 memset((void *)host_start, 0, host_map_start - host_start);
1084 }
1085}
bellardedf779f2004-02-22 13:40:13 +00001086
blueswir1992f48a2007-10-14 16:27:31 +00001087static abi_ulong create_elf_tables(abi_ulong p, int argc, int envc,
1088 struct elfhdr * exec,
1089 abi_ulong load_addr,
1090 abi_ulong load_bias,
1091 abi_ulong interp_load_addr, int ibcs,
1092 struct image_info *info)
pbrook53a59602006-03-25 19:31:22 +00001093{
Richard Hendersond97ef722010-07-27 10:25:29 -07001094 abi_ulong sp;
1095 int size;
1096 abi_ulong u_platform;
1097 const char *k_platform;
1098 const int n = sizeof(elf_addr_t);
pbrook53a59602006-03-25 19:31:22 +00001099
Richard Hendersond97ef722010-07-27 10:25:29 -07001100 sp = p;
1101 u_platform = 0;
1102 k_platform = ELF_PLATFORM;
1103 if (k_platform) {
1104 size_t len = strlen(k_platform) + 1;
1105 sp -= (len + n - 1) & ~(n - 1);
1106 u_platform = sp;
1107 /* FIXME - check return value of memcpy_to_target() for failure */
1108 memcpy_to_target(sp, k_platform, len);
1109 }
1110 /*
1111 * Force 16 byte _final_ alignment here for generality.
1112 */
1113 sp = sp &~ (abi_ulong)15;
1114 size = (DLINFO_ITEMS + 1) * 2;
1115 if (k_platform)
1116 size += 2;
bellardf5155282004-01-04 15:46:50 +00001117#ifdef DLINFO_ARCH_ITEMS
Richard Hendersond97ef722010-07-27 10:25:29 -07001118 size += DLINFO_ARCH_ITEMS * 2;
bellardf5155282004-01-04 15:46:50 +00001119#endif
Richard Hendersond97ef722010-07-27 10:25:29 -07001120 size += envc + argc + 2;
1121 size += (!ibcs ? 3 : 1); /* argc itself */
1122 size *= n;
1123 if (size & 15)
1124 sp -= 16 - (size & 15);
ths3b46e622007-09-17 08:09:54 +00001125
Richard Hendersond97ef722010-07-27 10:25:29 -07001126 /* This is correct because Linux defines
1127 * elf_addr_t as Elf32_Off / Elf64_Off
1128 */
1129#define NEW_AUX_ENT(id, val) do { \
1130 sp -= n; put_user_ual(val, sp); \
1131 sp -= n; put_user_ual(id, sp); \
1132 } while(0)
bellard2f619692007-11-16 10:46:05 +00001133
Richard Hendersond97ef722010-07-27 10:25:29 -07001134 NEW_AUX_ENT (AT_NULL, 0);
bellardf5155282004-01-04 15:46:50 +00001135
Richard Hendersond97ef722010-07-27 10:25:29 -07001136 /* There must be exactly DLINFO_ITEMS entries here. */
1137 NEW_AUX_ENT(AT_PHDR, (abi_ulong)(load_addr + exec->e_phoff));
1138 NEW_AUX_ENT(AT_PHENT, (abi_ulong)(sizeof (struct elf_phdr)));
1139 NEW_AUX_ENT(AT_PHNUM, (abi_ulong)(exec->e_phnum));
1140 NEW_AUX_ENT(AT_PAGESZ, (abi_ulong)(TARGET_PAGE_SIZE));
1141 NEW_AUX_ENT(AT_BASE, (abi_ulong)(interp_load_addr));
1142 NEW_AUX_ENT(AT_FLAGS, (abi_ulong)0);
1143 NEW_AUX_ENT(AT_ENTRY, load_bias + exec->e_entry);
1144 NEW_AUX_ENT(AT_UID, (abi_ulong) getuid());
1145 NEW_AUX_ENT(AT_EUID, (abi_ulong) geteuid());
1146 NEW_AUX_ENT(AT_GID, (abi_ulong) getgid());
1147 NEW_AUX_ENT(AT_EGID, (abi_ulong) getegid());
1148 NEW_AUX_ENT(AT_HWCAP, (abi_ulong) ELF_HWCAP);
1149 NEW_AUX_ENT(AT_CLKTCK, (abi_ulong) sysconf(_SC_CLK_TCK));
1150 if (k_platform)
1151 NEW_AUX_ENT(AT_PLATFORM, u_platform);
bellardf5155282004-01-04 15:46:50 +00001152#ifdef ARCH_DLINFO
Richard Hendersond97ef722010-07-27 10:25:29 -07001153 /*
1154 * ARCH_DLINFO must come last so platform specific code can enforce
1155 * special alignment requirements on the AUXV if necessary (eg. PPC).
1156 */
1157 ARCH_DLINFO;
bellardf5155282004-01-04 15:46:50 +00001158#endif
1159#undef NEW_AUX_ENT
1160
Richard Hendersond97ef722010-07-27 10:25:29 -07001161 info->saved_auxv = sp;
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001162
Richard Hendersond97ef722010-07-27 10:25:29 -07001163 sp = loader_build_argptr(envc, argc, sp, p, !ibcs);
1164 return sp;
bellard31e31b82003-02-18 22:55:36 +00001165}
1166
1167
blueswir1992f48a2007-10-14 16:27:31 +00001168static abi_ulong load_elf_interp(struct elfhdr * interp_elf_ex,
1169 int interpreter_fd,
Richard Henderson9955ffa2010-07-27 10:25:30 -07001170 abi_ulong *interp_load_addr,
1171 char bprm_buf[BPRM_BUF_SIZE])
bellard31e31b82003-02-18 22:55:36 +00001172{
Richard Hendersond97ef722010-07-27 10:25:29 -07001173 struct elf_phdr *elf_phdata = NULL;
Richard Henderson682674b2010-07-27 10:25:33 -07001174 abi_ulong load_addr, load_bias, loaddr, hiaddr;
Richard Hendersond97ef722010-07-27 10:25:29 -07001175 int retval;
1176 abi_ulong error;
1177 int i;
ths5fafdf22007-09-16 21:08:06 +00001178
Richard Hendersond97ef722010-07-27 10:25:29 -07001179 bswap_ehdr(interp_elf_ex);
Richard Henderson9058abd2010-07-27 10:25:34 -07001180 if (!elf_check_ehdr(interp_elf_ex)) {
Richard Hendersond97ef722010-07-27 10:25:29 -07001181 return ~((abi_ulong)0UL);
1182 }
ths5fafdf22007-09-16 21:08:06 +00001183
Richard Hendersond97ef722010-07-27 10:25:29 -07001184 /* Now read in all of the header information */
Richard Hendersond97ef722010-07-27 10:25:29 -07001185 elf_phdata = (struct elf_phdr *)
1186 malloc(sizeof(struct elf_phdr) * interp_elf_ex->e_phnum);
Richard Hendersond97ef722010-07-27 10:25:29 -07001187 if (!elf_phdata)
1188 return ~((abi_ulong)0UL);
ths5fafdf22007-09-16 21:08:06 +00001189
Richard Henderson9955ffa2010-07-27 10:25:30 -07001190 i = interp_elf_ex->e_phnum * sizeof(struct elf_phdr);
1191 if (interp_elf_ex->e_phoff + i <= BPRM_BUF_SIZE) {
1192 memcpy(elf_phdata, bprm_buf + interp_elf_ex->e_phoff, i);
1193 } else {
1194 retval = pread(interpreter_fd, elf_phdata, i, interp_elf_ex->e_phoff);
1195 if (retval != i) {
1196 perror("load_elf_interp");
1197 exit(-1);
1198 }
Richard Hendersond97ef722010-07-27 10:25:29 -07001199 }
Richard Henderson991f8f02010-07-27 10:25:32 -07001200 bswap_phdr(elf_phdata, interp_elf_ex->e_phnum);
bellard09bfb052003-04-10 00:03:40 +00001201
Richard Henderson682674b2010-07-27 10:25:33 -07001202 /* Find the maximum size of the image and allocate an appropriate
1203 amount of memory to handle that. */
1204 loaddr = -1, hiaddr = 0;
1205 for (i = 0; i < interp_elf_ex->e_phnum; ++i) {
1206 if (elf_phdata[i].p_type == PT_LOAD) {
1207 abi_ulong a = elf_phdata[i].p_vaddr;
1208 if (a < loaddr) {
1209 loaddr = a;
1210 }
1211 a += elf_phdata[i].p_memsz;
1212 if (a > hiaddr) {
1213 hiaddr = a;
1214 }
1215 }
1216 }
1217
1218 load_addr = loaddr;
Richard Hendersond97ef722010-07-27 10:25:29 -07001219 if (interp_elf_ex->e_type == ET_DYN) {
Richard Henderson682674b2010-07-27 10:25:33 -07001220 /* The image indicates that it can be loaded anywhere. Find a
1221 location that can hold the memory space required. If the
1222 image is pre-linked, LOADDR will be non-zero. Since we do
1223 not supply MAP_FIXED here we'll use that address if and
1224 only if it remains available. */
1225 load_addr = target_mmap(loaddr, hiaddr - loaddr, PROT_NONE,
1226 MAP_PRIVATE | MAP_ANON | MAP_NORESERVE,
1227 -1, 0);
1228 if (load_addr == -1) {
Richard Hendersond97ef722010-07-27 10:25:29 -07001229 perror("mmap");
1230 exit(-1);
1231 }
Richard Hendersond97ef722010-07-27 10:25:29 -07001232 }
Richard Henderson682674b2010-07-27 10:25:33 -07001233 load_bias = load_addr - loaddr;
Richard Hendersond97ef722010-07-27 10:25:29 -07001234
Richard Henderson682674b2010-07-27 10:25:33 -07001235 for (i = 0; i < interp_elf_ex->e_phnum; i++) {
1236 struct elf_phdr *eppnt = elf_phdata + i;
Richard Hendersond97ef722010-07-27 10:25:29 -07001237 if (eppnt->p_type == PT_LOAD) {
Richard Henderson682674b2010-07-27 10:25:33 -07001238 abi_ulong vaddr, vaddr_po, vaddr_ps, vaddr_ef, vaddr_em;
Richard Hendersond97ef722010-07-27 10:25:29 -07001239 int elf_prot = 0;
Richard Hendersond97ef722010-07-27 10:25:29 -07001240
1241 if (eppnt->p_flags & PF_R) elf_prot = PROT_READ;
1242 if (eppnt->p_flags & PF_W) elf_prot |= PROT_WRITE;
1243 if (eppnt->p_flags & PF_X) elf_prot |= PROT_EXEC;
bellard09bfb052003-04-10 00:03:40 +00001244
Richard Henderson682674b2010-07-27 10:25:33 -07001245 vaddr = load_bias + eppnt->p_vaddr;
1246 vaddr_po = TARGET_ELF_PAGEOFFSET(vaddr);
1247 vaddr_ps = TARGET_ELF_PAGESTART(vaddr);
1248
1249 error = target_mmap(vaddr_ps, eppnt->p_filesz + vaddr_po,
1250 elf_prot, MAP_PRIVATE | MAP_FIXED,
1251 interpreter_fd, eppnt->p_offset - vaddr_po);
Richard Hendersond97ef722010-07-27 10:25:29 -07001252 if (error == -1) {
1253 /* Real error */
1254 close(interpreter_fd);
1255 free(elf_phdata);
1256 return ~((abi_ulong)0UL);
1257 }
bellard31e31b82003-02-18 22:55:36 +00001258
Richard Henderson682674b2010-07-27 10:25:33 -07001259 vaddr_ef = vaddr + eppnt->p_filesz;
1260 vaddr_em = vaddr + eppnt->p_memsz;
bellard31e31b82003-02-18 22:55:36 +00001261
Richard Hendersoncf129f32010-07-27 10:25:27 -07001262 /* If the load segment requests extra zeros (e.g. bss), map it. */
Richard Henderson682674b2010-07-27 10:25:33 -07001263 if (vaddr_ef < vaddr_em) {
1264 zero_bss(vaddr_ef, vaddr_em, elf_prot);
Richard Hendersoncf129f32010-07-27 10:25:27 -07001265 }
Richard Hendersond97ef722010-07-27 10:25:29 -07001266 }
Richard Henderson682674b2010-07-27 10:25:33 -07001267 }
ths5fafdf22007-09-16 21:08:06 +00001268
Richard Henderson682674b2010-07-27 10:25:33 -07001269 if (qemu_log_enabled()) {
1270 load_symbols(interp_elf_ex, interpreter_fd, load_bias);
1271 }
bellard31e31b82003-02-18 22:55:36 +00001272
Richard Hendersond97ef722010-07-27 10:25:29 -07001273 close(interpreter_fd);
1274 free(elf_phdata);
bellard31e31b82003-02-18 22:55:36 +00001275
Richard Hendersond97ef722010-07-27 10:25:29 -07001276 *interp_load_addr = load_addr;
Richard Henderson682674b2010-07-27 10:25:33 -07001277 return ((abi_ulong) interp_elf_ex->e_entry) + load_bias;
bellard31e31b82003-02-18 22:55:36 +00001278}
1279
pbrook49918a72008-10-22 15:11:31 +00001280static int symfind(const void *s0, const void *s1)
1281{
1282 struct elf_sym *key = (struct elf_sym *)s0;
1283 struct elf_sym *sym = (struct elf_sym *)s1;
1284 int result = 0;
1285 if (key->st_value < sym->st_value) {
1286 result = -1;
Laurent Desnoguesec822002009-07-30 19:23:49 +02001287 } else if (key->st_value >= sym->st_value + sym->st_size) {
pbrook49918a72008-10-22 15:11:31 +00001288 result = 1;
1289 }
1290 return result;
1291}
1292
1293static const char *lookup_symbolxx(struct syminfo *s, target_ulong orig_addr)
1294{
1295#if ELF_CLASS == ELFCLASS32
1296 struct elf_sym *syms = s->disas_symtab.elf32;
1297#else
1298 struct elf_sym *syms = s->disas_symtab.elf64;
1299#endif
1300
1301 // binary search
1302 struct elf_sym key;
1303 struct elf_sym *sym;
1304
1305 key.st_value = orig_addr;
1306
1307 sym = bsearch(&key, syms, s->disas_num_syms, sizeof(*syms), symfind);
Blue Swirl7cba04f2009-08-01 10:13:20 +00001308 if (sym != NULL) {
pbrook49918a72008-10-22 15:11:31 +00001309 return s->disas_strtab + sym->st_name;
1310 }
1311
1312 return "";
1313}
1314
1315/* FIXME: This should use elf_ops.h */
1316static int symcmp(const void *s0, const void *s1)
1317{
1318 struct elf_sym *sym0 = (struct elf_sym *)s0;
1319 struct elf_sym *sym1 = (struct elf_sym *)s1;
1320 return (sym0->st_value < sym1->st_value)
1321 ? -1
1322 : ((sym0->st_value > sym1->st_value) ? 1 : 0);
1323}
1324
bellard689f9362003-04-29 20:40:07 +00001325/* Best attempt to load symbols from this ELF object. */
Richard Henderson682674b2010-07-27 10:25:33 -07001326static void load_symbols(struct elfhdr *hdr, int fd, abi_ulong load_bias)
bellard689f9362003-04-29 20:40:07 +00001327{
Richard Henderson682674b2010-07-27 10:25:33 -07001328 int i, shnum, nsyms, sym_idx = 0, str_idx = 0;
1329 struct elf_shdr *shdr;
bellard689f9362003-04-29 20:40:07 +00001330 char *strings;
bellarde80cfcf2004-12-19 23:18:01 +00001331 struct syminfo *s;
pbrook49918a72008-10-22 15:11:31 +00001332 struct elf_sym *syms;
bellard31e31b82003-02-18 22:55:36 +00001333
Richard Henderson682674b2010-07-27 10:25:33 -07001334 shnum = hdr->e_shnum;
1335 i = shnum * sizeof(struct elf_shdr);
1336 shdr = (struct elf_shdr *)alloca(i);
1337 if (pread(fd, shdr, i, hdr->e_shoff) != i) {
1338 return;
1339 }
1340
1341 bswap_shdr(shdr, shnum);
1342 for (i = 0; i < shnum; ++i) {
1343 if (shdr[i].sh_type == SHT_SYMTAB) {
1344 sym_idx = i;
1345 str_idx = shdr[i].sh_link;
pbrook49918a72008-10-22 15:11:31 +00001346 goto found;
1347 }
bellard689f9362003-04-29 20:40:07 +00001348 }
Richard Henderson682674b2010-07-27 10:25:33 -07001349
1350 /* There will be no symbol table if the file was stripped. */
1351 return;
bellard689f9362003-04-29 20:40:07 +00001352
1353 found:
Richard Henderson682674b2010-07-27 10:25:33 -07001354 /* Now know where the strtab and symtab are. Snarf them. */
bellarde80cfcf2004-12-19 23:18:01 +00001355 s = malloc(sizeof(*s));
Richard Henderson682674b2010-07-27 10:25:33 -07001356 if (!s) {
pbrook49918a72008-10-22 15:11:31 +00001357 return;
Richard Henderson682674b2010-07-27 10:25:33 -07001358 }
1359
1360 i = shdr[str_idx].sh_size;
1361 s->disas_strtab = strings = malloc(i);
1362 if (!strings || pread(fd, strings, i, shdr[str_idx].sh_offset) != i) {
1363 free(s);
1364 free(strings);
pbrook49918a72008-10-22 15:11:31 +00001365 return;
Richard Henderson682674b2010-07-27 10:25:33 -07001366 }
ths5fafdf22007-09-16 21:08:06 +00001367
Richard Henderson682674b2010-07-27 10:25:33 -07001368 i = shdr[sym_idx].sh_size;
1369 syms = malloc(i);
1370 if (!syms || pread(fd, syms, i, shdr[sym_idx].sh_offset) != i) {
1371 free(s);
1372 free(strings);
1373 free(syms);
pbrook49918a72008-10-22 15:11:31 +00001374 return;
Richard Henderson682674b2010-07-27 10:25:33 -07001375 }
bellard689f9362003-04-29 20:40:07 +00001376
Richard Henderson682674b2010-07-27 10:25:33 -07001377 nsyms = i / sizeof(struct elf_sym);
1378 for (i = 0; i < nsyms; ) {
pbrook49918a72008-10-22 15:11:31 +00001379 bswap_sym(syms + i);
Richard Henderson682674b2010-07-27 10:25:33 -07001380 /* Throw away entries which we do not need. */
1381 if (syms[i].st_shndx == SHN_UNDEF
1382 || syms[i].st_shndx >= SHN_LORESERVE
1383 || ELF_ST_TYPE(syms[i].st_info) != STT_FUNC) {
1384 if (i < --nsyms) {
pbrook49918a72008-10-22 15:11:31 +00001385 syms[i] = syms[nsyms];
1386 }
Richard Henderson682674b2010-07-27 10:25:33 -07001387 } else {
pbrook49918a72008-10-22 15:11:31 +00001388#if defined(TARGET_ARM) || defined (TARGET_MIPS)
Richard Henderson682674b2010-07-27 10:25:33 -07001389 /* The bottom address bit marks a Thumb or MIPS16 symbol. */
1390 syms[i].st_value &= ~(target_ulong)1;
blueswir10774bed2007-07-05 13:23:29 +00001391#endif
Richard Henderson682674b2010-07-27 10:25:33 -07001392 syms[i].st_value += load_bias;
1393 i++;
1394 }
blueswir10774bed2007-07-05 13:23:29 +00001395 }
bellard689f9362003-04-29 20:40:07 +00001396
Richard Henderson682674b2010-07-27 10:25:33 -07001397 syms = realloc(syms, nsyms * sizeof(*syms));
pbrook49918a72008-10-22 15:11:31 +00001398 qsort(syms, nsyms, sizeof(*syms), symcmp);
1399
pbrook49918a72008-10-22 15:11:31 +00001400 s->disas_num_syms = nsyms;
1401#if ELF_CLASS == ELFCLASS32
1402 s->disas_symtab.elf32 = syms;
pbrook49918a72008-10-22 15:11:31 +00001403#else
1404 s->disas_symtab.elf64 = syms;
pbrook49918a72008-10-22 15:11:31 +00001405#endif
Richard Henderson682674b2010-07-27 10:25:33 -07001406 s->lookup_symbol = lookup_symbolxx;
bellarde80cfcf2004-12-19 23:18:01 +00001407 s->next = syminfos;
1408 syminfos = s;
bellard689f9362003-04-29 20:40:07 +00001409}
bellard31e31b82003-02-18 22:55:36 +00001410
pbrooke5fe0c52006-06-11 13:32:59 +00001411int load_elf_binary(struct linux_binprm * bprm, struct target_pt_regs * regs,
1412 struct image_info * info)
bellard31e31b82003-02-18 22:55:36 +00001413{
1414 struct elfhdr elf_ex;
1415 struct elfhdr interp_elf_ex;
1416 struct exec interp_ex;
1417 int interpreter_fd = -1; /* avoid warning */
blueswir1992f48a2007-10-14 16:27:31 +00001418 abi_ulong load_addr, load_bias;
bellard31e31b82003-02-18 22:55:36 +00001419 int load_addr_set = 0;
1420 unsigned int interpreter_type = INTERPRETER_NONE;
1421 unsigned char ibcs2_interpreter;
1422 int i;
blueswir1992f48a2007-10-14 16:27:31 +00001423 abi_ulong mapped_addr;
bellard31e31b82003-02-18 22:55:36 +00001424 struct elf_phdr * elf_ppnt;
1425 struct elf_phdr *elf_phdata;
Richard Hendersoncf129f32010-07-27 10:25:27 -07001426 abi_ulong k, elf_brk;
bellard31e31b82003-02-18 22:55:36 +00001427 int retval;
1428 char * elf_interpreter;
blueswir1992f48a2007-10-14 16:27:31 +00001429 abi_ulong elf_entry, interp_load_addr = 0;
bellard31e31b82003-02-18 22:55:36 +00001430 int status;
blueswir1992f48a2007-10-14 16:27:31 +00001431 abi_ulong start_code, end_code, start_data, end_data;
1432 abi_ulong reloc_func_desc = 0;
1433 abi_ulong elf_stack;
bellard31e31b82003-02-18 22:55:36 +00001434 char passed_fileno[6];
1435
1436 ibcs2_interpreter = 0;
1437 status = 0;
1438 load_addr = 0;
bellard09bfb052003-04-10 00:03:40 +00001439 load_bias = 0;
bellard31e31b82003-02-18 22:55:36 +00001440 elf_ex = *((struct elfhdr *) bprm->buf); /* exec-header */
bellard31e31b82003-02-18 22:55:36 +00001441
bellard31e31b82003-02-18 22:55:36 +00001442 /* First of all, some simple consistency checks */
Richard Henderson9058abd2010-07-27 10:25:34 -07001443 if (!elf_check_ident(&elf_ex)) {
1444 return -ENOEXEC;
1445 }
1446 bswap_ehdr(&elf_ex);
1447 if (!elf_check_ehdr(&elf_ex)) {
Richard Hendersond97ef722010-07-27 10:25:29 -07001448 return -ENOEXEC;
bellard31e31b82003-02-18 22:55:36 +00001449 }
1450
pbrooke5fe0c52006-06-11 13:32:59 +00001451 bprm->p = copy_elf_strings(1, &bprm->filename, bprm->page, bprm->p);
1452 bprm->p = copy_elf_strings(bprm->envc,bprm->envp,bprm->page,bprm->p);
1453 bprm->p = copy_elf_strings(bprm->argc,bprm->argv,bprm->page,bprm->p);
1454 if (!bprm->p) {
1455 retval = -E2BIG;
1456 }
1457
bellard31e31b82003-02-18 22:55:36 +00001458 /* Now read in all of the header information */
Richard Henderson9058abd2010-07-27 10:25:34 -07001459 elf_phdata = (struct elf_phdr *)
1460 malloc(elf_ex.e_phnum * sizeof(struct elf_phdr));
bellard31e31b82003-02-18 22:55:36 +00001461 if (elf_phdata == NULL) {
Richard Hendersond97ef722010-07-27 10:25:29 -07001462 return -ENOMEM;
bellard31e31b82003-02-18 22:55:36 +00001463 }
1464
Richard Henderson9955ffa2010-07-27 10:25:30 -07001465 i = elf_ex.e_phnum * sizeof(struct elf_phdr);
1466 if (elf_ex.e_phoff + i <= BPRM_BUF_SIZE) {
1467 memcpy(elf_phdata, bprm->buf + elf_ex.e_phoff, i);
1468 } else {
1469 retval = pread(bprm->fd, (char *) elf_phdata, i, elf_ex.e_phoff);
1470 if (retval != i) {
1471 perror("load_elf_binary");
1472 exit(-1);
1473 }
bellard31e31b82003-02-18 22:55:36 +00001474 }
Richard Henderson991f8f02010-07-27 10:25:32 -07001475 bswap_phdr(elf_phdata, elf_ex.e_phnum);
bellard31e31b82003-02-18 22:55:36 +00001476
bellard31e31b82003-02-18 22:55:36 +00001477 elf_brk = 0;
blueswir1992f48a2007-10-14 16:27:31 +00001478 elf_stack = ~((abi_ulong)0UL);
bellard31e31b82003-02-18 22:55:36 +00001479 elf_interpreter = NULL;
blueswir1992f48a2007-10-14 16:27:31 +00001480 start_code = ~((abi_ulong)0UL);
bellard31e31b82003-02-18 22:55:36 +00001481 end_code = 0;
j_mayer863cf0b2007-10-07 15:59:45 +00001482 start_data = 0;
bellard31e31b82003-02-18 22:55:36 +00001483 end_data = 0;
blueswir198448f52008-09-30 18:16:09 +00001484 interp_ex.a_info = 0;
bellard31e31b82003-02-18 22:55:36 +00001485
Richard Henderson991f8f02010-07-27 10:25:32 -07001486 elf_ppnt = elf_phdata;
bellard31e31b82003-02-18 22:55:36 +00001487 for(i=0;i < elf_ex.e_phnum; i++) {
Richard Hendersond97ef722010-07-27 10:25:29 -07001488 if (elf_ppnt->p_type == PT_INTERP) {
1489 if ( elf_interpreter != NULL )
1490 {
1491 free (elf_phdata);
1492 free(elf_interpreter);
1493 close(bprm->fd);
1494 return -EINVAL;
1495 }
bellard31e31b82003-02-18 22:55:36 +00001496
Richard Hendersond97ef722010-07-27 10:25:29 -07001497 /* This is the program interpreter used for
1498 * shared libraries - for now assume that this
1499 * is an a.out format binary
1500 */
bellard31e31b82003-02-18 22:55:36 +00001501
Richard Hendersond97ef722010-07-27 10:25:29 -07001502 elf_interpreter = (char *)malloc(elf_ppnt->p_filesz);
bellard31e31b82003-02-18 22:55:36 +00001503
Richard Hendersond97ef722010-07-27 10:25:29 -07001504 if (elf_interpreter == NULL) {
1505 free (elf_phdata);
1506 close(bprm->fd);
1507 return -ENOMEM;
1508 }
bellard31e31b82003-02-18 22:55:36 +00001509
Richard Henderson9955ffa2010-07-27 10:25:30 -07001510 if (elf_ppnt->p_offset + elf_ppnt->p_filesz <= BPRM_BUF_SIZE) {
1511 memcpy(elf_interpreter, bprm->buf + elf_ppnt->p_offset,
1512 elf_ppnt->p_filesz);
1513 } else {
1514 retval = pread(bprm->fd, elf_interpreter, elf_ppnt->p_filesz,
1515 elf_ppnt->p_offset);
1516 if (retval != elf_ppnt->p_filesz) {
1517 perror("load_elf_binary2");
1518 exit(-1);
1519 }
Richard Hendersond97ef722010-07-27 10:25:29 -07001520 }
bellard31e31b82003-02-18 22:55:36 +00001521
Richard Hendersond97ef722010-07-27 10:25:29 -07001522 /* If the program interpreter is one of these two,
1523 then assume an iBCS2 image. Otherwise assume
1524 a native linux image. */
bellard31e31b82003-02-18 22:55:36 +00001525
Richard Hendersond97ef722010-07-27 10:25:29 -07001526 /* JRP - Need to add X86 lib dir stuff here... */
bellard31e31b82003-02-18 22:55:36 +00001527
Richard Hendersond97ef722010-07-27 10:25:29 -07001528 if (strcmp(elf_interpreter,"/usr/lib/libc.so.1") == 0 ||
1529 strcmp(elf_interpreter,"/usr/lib/ld.so.1") == 0) {
1530 ibcs2_interpreter = 1;
1531 }
bellard31e31b82003-02-18 22:55:36 +00001532
Richard Henderson9955ffa2010-07-27 10:25:30 -07001533 retval = open(path(elf_interpreter), O_RDONLY);
1534 if (retval < 0) {
1535 perror(elf_interpreter);
1536 exit(-1);
Richard Hendersond97ef722010-07-27 10:25:29 -07001537 }
Richard Henderson9955ffa2010-07-27 10:25:30 -07001538 interpreter_fd = retval;
bellard31e31b82003-02-18 22:55:36 +00001539
Richard Henderson9955ffa2010-07-27 10:25:30 -07001540 retval = read(interpreter_fd, bprm->buf, BPRM_BUF_SIZE);
Richard Hendersond97ef722010-07-27 10:25:29 -07001541 if (retval < 0) {
1542 perror("load_elf_binary3");
1543 exit(-1);
Richard Hendersond97ef722010-07-27 10:25:29 -07001544 }
Richard Henderson9955ffa2010-07-27 10:25:30 -07001545 if (retval < BPRM_BUF_SIZE) {
1546 memset(bprm->buf, 0, BPRM_BUF_SIZE - retval);
1547 }
1548
1549 interp_ex = *((struct exec *) bprm->buf); /* aout exec-header */
1550 interp_elf_ex = *((struct elfhdr *) bprm->buf); /* elf exec-header */
Richard Hendersond97ef722010-07-27 10:25:29 -07001551 }
1552 elf_ppnt++;
bellard31e31b82003-02-18 22:55:36 +00001553 }
1554
1555 /* Some simple consistency checks for the interpreter */
1556 if (elf_interpreter){
Richard Hendersond97ef722010-07-27 10:25:29 -07001557 interpreter_type = INTERPRETER_ELF | INTERPRETER_AOUT;
bellard31e31b82003-02-18 22:55:36 +00001558
Richard Hendersond97ef722010-07-27 10:25:29 -07001559 /* Now figure out which format our binary is */
1560 if ((N_MAGIC(interp_ex) != OMAGIC) && (N_MAGIC(interp_ex) != ZMAGIC) &&
1561 (N_MAGIC(interp_ex) != QMAGIC)) {
1562 interpreter_type = INTERPRETER_ELF;
1563 }
bellard31e31b82003-02-18 22:55:36 +00001564
Richard Henderson9058abd2010-07-27 10:25:34 -07001565 if (!elf_check_ident(&interp_elf_ex)) {
Richard Hendersond97ef722010-07-27 10:25:29 -07001566 interpreter_type &= ~INTERPRETER_ELF;
1567 }
bellard31e31b82003-02-18 22:55:36 +00001568
Richard Hendersond97ef722010-07-27 10:25:29 -07001569 if (!interpreter_type) {
1570 free(elf_interpreter);
1571 free(elf_phdata);
1572 close(bprm->fd);
1573 return -ELIBBAD;
1574 }
bellard31e31b82003-02-18 22:55:36 +00001575 }
1576
1577 /* OK, we are done with that, now set up the arg stuff,
1578 and then start this sucker up */
1579
pbrooke5fe0c52006-06-11 13:32:59 +00001580 {
Richard Hendersond97ef722010-07-27 10:25:29 -07001581 char * passed_p;
bellard31e31b82003-02-18 22:55:36 +00001582
Richard Hendersond97ef722010-07-27 10:25:29 -07001583 if (interpreter_type == INTERPRETER_AOUT) {
1584 snprintf(passed_fileno, sizeof(passed_fileno), "%d", bprm->fd);
1585 passed_p = passed_fileno;
bellard31e31b82003-02-18 22:55:36 +00001586
Richard Hendersond97ef722010-07-27 10:25:29 -07001587 if (elf_interpreter) {
1588 bprm->p = copy_elf_strings(1,&passed_p,bprm->page,bprm->p);
1589 bprm->argc++;
1590 }
1591 }
1592 if (!bprm->p) {
1593 if (elf_interpreter) {
1594 free(elf_interpreter);
1595 }
1596 free (elf_phdata);
1597 close(bprm->fd);
1598 return -E2BIG;
1599 }
bellard31e31b82003-02-18 22:55:36 +00001600 }
1601
1602 /* OK, This is the point of no return */
1603 info->end_data = 0;
1604 info->end_code = 0;
blueswir1992f48a2007-10-14 16:27:31 +00001605 info->start_mmap = (abi_ulong)ELF_START_MMAP;
bellard31e31b82003-02-18 22:55:36 +00001606 info->mmap = 0;
blueswir1992f48a2007-10-14 16:27:31 +00001607 elf_entry = (abi_ulong) elf_ex.e_entry;
bellard31e31b82003-02-18 22:55:36 +00001608
Paul Brook379f6692009-07-17 12:48:08 +01001609#if defined(CONFIG_USE_GUEST_BASE)
1610 /*
1611 * In case where user has not explicitly set the guest_base, we
1612 * probe here that should we set it automatically.
1613 */
Paul Brook68a1c812010-05-29 02:27:35 +01001614 if (!(have_guest_base || reserved_va)) {
Paul Brook379f6692009-07-17 12:48:08 +01001615 /*
Paul Brookc581ded2010-05-05 16:32:59 +01001616 * Go through ELF program header table and find the address
1617 * range used by loadable segments. Check that this is available on
1618 * the host, and if not find a suitable value for guest_base. */
1619 abi_ulong app_start = ~0;
1620 abi_ulong app_end = 0;
1621 abi_ulong addr;
1622 unsigned long host_start;
1623 unsigned long real_start;
1624 unsigned long host_size;
Paul Brook379f6692009-07-17 12:48:08 +01001625 for (i = 0, elf_ppnt = elf_phdata; i < elf_ex.e_phnum;
Richard Hendersond97ef722010-07-27 10:25:29 -07001626 i++, elf_ppnt++) {
Paul Brook379f6692009-07-17 12:48:08 +01001627 if (elf_ppnt->p_type != PT_LOAD)
1628 continue;
Paul Brookc581ded2010-05-05 16:32:59 +01001629 addr = elf_ppnt->p_vaddr;
1630 if (addr < app_start) {
1631 app_start = addr;
1632 }
1633 addr += elf_ppnt->p_memsz;
1634 if (addr > app_end) {
1635 app_end = addr;
Paul Brook379f6692009-07-17 12:48:08 +01001636 }
1637 }
Paul Brookc581ded2010-05-05 16:32:59 +01001638
1639 /* If we don't have any loadable segments then something
1640 is very wrong. */
1641 assert(app_start < app_end);
1642
1643 /* Round addresses to page boundaries. */
1644 app_start = app_start & qemu_host_page_mask;
1645 app_end = HOST_PAGE_ALIGN(app_end);
1646 if (app_start < mmap_min_addr) {
1647 host_start = HOST_PAGE_ALIGN(mmap_min_addr);
1648 } else {
1649 host_start = app_start;
1650 if (host_start != app_start) {
1651 fprintf(stderr, "qemu: Address overflow loading ELF binary\n");
1652 abort();
1653 }
1654 }
1655 host_size = app_end - app_start;
1656 while (1) {
1657 /* Do not use mmap_find_vma here because that is limited to the
1658 guest address space. We are going to make the
1659 guest address space fit whatever we're given. */
1660 real_start = (unsigned long)mmap((void *)host_start, host_size,
1661 PROT_NONE, MAP_ANONYMOUS | MAP_PRIVATE | MAP_NORESERVE, -1, 0);
1662 if (real_start == (unsigned long)-1) {
1663 fprintf(stderr, "qemu: Virtual memory exausted\n");
1664 abort();
1665 }
1666 if (real_start == host_start) {
1667 break;
1668 }
1669 /* That address didn't work. Unmap and try a different one.
1670 The address the host picked because is typically
1671 right at the top of the host address space and leaves the
1672 guest with no usable address space. Resort to a linear search.
1673 We already compensated for mmap_min_addr, so this should not
1674 happen often. Probably means we got unlucky and host address
1675 space randomization put a shared library somewhere
1676 inconvenient. */
1677 munmap((void *)real_start, host_size);
1678 host_start += qemu_host_page_size;
1679 if (host_start == app_start) {
1680 /* Theoretically possible if host doesn't have any
1681 suitably aligned areas. Normally the first mmap will
1682 fail. */
1683 fprintf(stderr, "qemu: Unable to find space for application\n");
1684 abort();
1685 }
1686 }
1687 qemu_log("Relocating guest address space from 0x" TARGET_ABI_FMT_lx
1688 " to 0x%lx\n", app_start, real_start);
1689 guest_base = real_start - app_start;
Paul Brook379f6692009-07-17 12:48:08 +01001690 }
1691#endif /* CONFIG_USE_GUEST_BASE */
1692
bellard31e31b82003-02-18 22:55:36 +00001693 /* Do this so that we can load the interpreter, if need be. We will
1694 change some of these later */
1695 info->rss = 0;
1696 bprm->p = setup_arg_pages(bprm->p, bprm, info);
1697 info->start_stack = bprm->p;
1698
1699 /* Now we do a little grungy work by mmaping the ELF image into
1700 * the correct location in memory. At this point, we assume that
1701 * the image should be loaded at fixed address, not at a variable
1702 * address.
1703 */
1704
bellard31e31b82003-02-18 22:55:36 +00001705 for(i = 0, elf_ppnt = elf_phdata; i < elf_ex.e_phnum; i++, elf_ppnt++) {
bellard09bfb052003-04-10 00:03:40 +00001706 int elf_prot = 0;
1707 int elf_flags = 0;
blueswir1992f48a2007-10-14 16:27:31 +00001708 abi_ulong error;
ths3b46e622007-09-17 08:09:54 +00001709
Richard Hendersond97ef722010-07-27 10:25:29 -07001710 if (elf_ppnt->p_type != PT_LOAD)
bellard09bfb052003-04-10 00:03:40 +00001711 continue;
ths3b46e622007-09-17 08:09:54 +00001712
bellard09bfb052003-04-10 00:03:40 +00001713 if (elf_ppnt->p_flags & PF_R) elf_prot |= PROT_READ;
1714 if (elf_ppnt->p_flags & PF_W) elf_prot |= PROT_WRITE;
1715 if (elf_ppnt->p_flags & PF_X) elf_prot |= PROT_EXEC;
1716 elf_flags = MAP_PRIVATE | MAP_DENYWRITE;
1717 if (elf_ex.e_type == ET_EXEC || load_addr_set) {
1718 elf_flags |= MAP_FIXED;
1719 } else if (elf_ex.e_type == ET_DYN) {
1720 /* Try and get dynamic programs out of the way of the default mmap
1721 base, as well as whatever program they might try to exec. This
1722 is because the brk will follow the loader, and is not movable. */
1723 /* NOTE: for qemu, we do a big mmap to get enough space
thse91c8a72007-06-03 13:35:16 +00001724 without hardcoding any address */
bellard54936002003-05-13 00:25:15 +00001725 error = target_mmap(0, ET_DYN_MAP_SIZE,
ths5fafdf22007-09-16 21:08:06 +00001726 PROT_NONE, MAP_PRIVATE | MAP_ANON,
bellard54936002003-05-13 00:25:15 +00001727 -1, 0);
bellard09bfb052003-04-10 00:03:40 +00001728 if (error == -1) {
1729 perror("mmap");
1730 exit(-1);
1731 }
bellard54936002003-05-13 00:25:15 +00001732 load_bias = TARGET_ELF_PAGESTART(error - elf_ppnt->p_vaddr);
bellard09bfb052003-04-10 00:03:40 +00001733 }
ths3b46e622007-09-17 08:09:54 +00001734
bellard54936002003-05-13 00:25:15 +00001735 error = target_mmap(TARGET_ELF_PAGESTART(load_bias + elf_ppnt->p_vaddr),
1736 (elf_ppnt->p_filesz +
1737 TARGET_ELF_PAGEOFFSET(elf_ppnt->p_vaddr)),
1738 elf_prot,
1739 (MAP_FIXED | MAP_PRIVATE | MAP_DENYWRITE),
1740 bprm->fd,
ths5fafdf22007-09-16 21:08:06 +00001741 (elf_ppnt->p_offset -
bellard54936002003-05-13 00:25:15 +00001742 TARGET_ELF_PAGEOFFSET(elf_ppnt->p_vaddr)));
bellard09bfb052003-04-10 00:03:40 +00001743 if (error == -1) {
1744 perror("mmap");
1745 exit(-1);
1746 }
bellard31e31b82003-02-18 22:55:36 +00001747
1748#ifdef LOW_ELF_STACK
bellard54936002003-05-13 00:25:15 +00001749 if (TARGET_ELF_PAGESTART(elf_ppnt->p_vaddr) < elf_stack)
1750 elf_stack = TARGET_ELF_PAGESTART(elf_ppnt->p_vaddr);
bellard31e31b82003-02-18 22:55:36 +00001751#endif
ths3b46e622007-09-17 08:09:54 +00001752
bellard09bfb052003-04-10 00:03:40 +00001753 if (!load_addr_set) {
1754 load_addr_set = 1;
1755 load_addr = elf_ppnt->p_vaddr - elf_ppnt->p_offset;
1756 if (elf_ex.e_type == ET_DYN) {
1757 load_bias += error -
bellard54936002003-05-13 00:25:15 +00001758 TARGET_ELF_PAGESTART(load_bias + elf_ppnt->p_vaddr);
bellard09bfb052003-04-10 00:03:40 +00001759 load_addr += load_bias;
j_mayer84409dd2007-04-06 08:56:50 +00001760 reloc_func_desc = load_bias;
bellard09bfb052003-04-10 00:03:40 +00001761 }
1762 }
1763 k = elf_ppnt->p_vaddr;
ths5fafdf22007-09-16 21:08:06 +00001764 if (k < start_code)
bellard09bfb052003-04-10 00:03:40 +00001765 start_code = k;
j_mayer863cf0b2007-10-07 15:59:45 +00001766 if (start_data < k)
1767 start_data = k;
bellard09bfb052003-04-10 00:03:40 +00001768 k = elf_ppnt->p_vaddr + elf_ppnt->p_filesz;
bellard09bfb052003-04-10 00:03:40 +00001769 if ((elf_ppnt->p_flags & PF_X) && end_code < k)
1770 end_code = k;
ths5fafdf22007-09-16 21:08:06 +00001771 if (end_data < k)
bellard09bfb052003-04-10 00:03:40 +00001772 end_data = k;
1773 k = elf_ppnt->p_vaddr + elf_ppnt->p_memsz;
Richard Hendersoncf129f32010-07-27 10:25:27 -07001774 if (k > elf_brk) {
1775 elf_brk = TARGET_PAGE_ALIGN(k);
1776 }
1777
1778 /* If the load segment requests extra zeros (e.g. bss), map it. */
1779 if (elf_ppnt->p_filesz < elf_ppnt->p_memsz) {
1780 abi_ulong base = load_bias + elf_ppnt->p_vaddr;
1781 zero_bss(base + elf_ppnt->p_filesz,
1782 base + elf_ppnt->p_memsz, elf_prot);
1783 }
bellard31e31b82003-02-18 22:55:36 +00001784 }
1785
bellard09bfb052003-04-10 00:03:40 +00001786 elf_entry += load_bias;
bellard09bfb052003-04-10 00:03:40 +00001787 elf_brk += load_bias;
1788 start_code += load_bias;
1789 end_code += load_bias;
j_mayer863cf0b2007-10-07 15:59:45 +00001790 start_data += load_bias;
bellard09bfb052003-04-10 00:03:40 +00001791 end_data += load_bias;
1792
bellard31e31b82003-02-18 22:55:36 +00001793 if (elf_interpreter) {
Richard Hendersond97ef722010-07-27 10:25:29 -07001794 if (interpreter_type & 1) {
1795 elf_entry = load_aout_interp(&interp_ex, interpreter_fd);
Richard Henderson9955ffa2010-07-27 10:25:30 -07001796 } else if (interpreter_type & 2) {
Richard Hendersond97ef722010-07-27 10:25:29 -07001797 elf_entry = load_elf_interp(&interp_elf_ex, interpreter_fd,
Richard Henderson9955ffa2010-07-27 10:25:30 -07001798 &interp_load_addr, bprm->buf);
Richard Hendersond97ef722010-07-27 10:25:29 -07001799 }
j_mayer84409dd2007-04-06 08:56:50 +00001800 reloc_func_desc = interp_load_addr;
bellard31e31b82003-02-18 22:55:36 +00001801
Richard Hendersond97ef722010-07-27 10:25:29 -07001802 close(interpreter_fd);
1803 free(elf_interpreter);
bellard31e31b82003-02-18 22:55:36 +00001804
Richard Hendersond97ef722010-07-27 10:25:29 -07001805 if (elf_entry == ~((abi_ulong)0UL)) {
1806 printf("Unable to load interpreter\n");
1807 free(elf_phdata);
1808 exit(-1);
1809 return 0;
1810 }
bellard31e31b82003-02-18 22:55:36 +00001811 }
1812
1813 free(elf_phdata);
1814
Richard Henderson682674b2010-07-27 10:25:33 -07001815 if (qemu_log_enabled()) {
1816 load_symbols(&elf_ex, bprm->fd, load_bias);
1817 }
bellard689f9362003-04-29 20:40:07 +00001818
bellard31e31b82003-02-18 22:55:36 +00001819 if (interpreter_type != INTERPRETER_AOUT) close(bprm->fd);
1820 info->personality = (ibcs2_interpreter ? PER_SVR4 : PER_LINUX);
1821
1822#ifdef LOW_ELF_STACK
1823 info->start_stack = bprm->p = elf_stack - 4;
1824#endif
pbrook53a59602006-03-25 19:31:22 +00001825 bprm->p = create_elf_tables(bprm->p,
Richard Hendersond97ef722010-07-27 10:25:29 -07001826 bprm->argc,
1827 bprm->envc,
1828 &elf_ex,
1829 load_addr, load_bias,
1830 interp_load_addr,
1831 (interpreter_type == INTERPRETER_AOUT ? 0 : 1),
1832 info);
j_mayer92a343d2007-09-27 01:14:15 +00001833 info->load_addr = reloc_func_desc;
bellard31e31b82003-02-18 22:55:36 +00001834 info->start_brk = info->brk = elf_brk;
1835 info->end_code = end_code;
1836 info->start_code = start_code;
j_mayer863cf0b2007-10-07 15:59:45 +00001837 info->start_data = start_data;
bellard31e31b82003-02-18 22:55:36 +00001838 info->end_data = end_data;
1839 info->start_stack = bprm->p;
1840
bellard31e31b82003-02-18 22:55:36 +00001841#if 0
1842 printf("(start_brk) %x\n" , info->start_brk);
1843 printf("(end_code) %x\n" , info->end_code);
1844 printf("(start_code) %x\n" , info->start_code);
1845 printf("(end_data) %x\n" , info->end_data);
1846 printf("(start_stack) %x\n" , info->start_stack);
1847 printf("(brk) %x\n" , info->brk);
1848#endif
1849
1850 if ( info->personality == PER_SVR4 )
1851 {
Richard Hendersond97ef722010-07-27 10:25:29 -07001852 /* Why this, you ask??? Well SVr4 maps page 0 as read-only,
1853 and some applications "depend" upon this behavior.
1854 Since we do not have the power to recompile these, we
1855 emulate the SVr4 behavior. Sigh. */
1856 mapped_addr = target_mmap(0, qemu_host_page_size, PROT_READ | PROT_EXEC,
1857 MAP_FIXED | MAP_PRIVATE, -1, 0);
bellard31e31b82003-02-18 22:55:36 +00001858 }
1859
bellard31e31b82003-02-18 22:55:36 +00001860 info->entry = elf_entry;
1861
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001862#ifdef USE_ELF_CORE_DUMP
1863 bprm->core_dump = &elf_core_dump;
1864#endif
1865
bellard31e31b82003-02-18 22:55:36 +00001866 return 0;
1867}
1868
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001869#ifdef USE_ELF_CORE_DUMP
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001870/*
1871 * Definitions to generate Intel SVR4-like core files.
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01001872 * These mostly have the same names as the SVR4 types with "target_elf_"
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001873 * tacked on the front to prevent clashes with linux definitions,
1874 * and the typedef forms have been avoided. This is mostly like
1875 * the SVR4 structure, but more Linuxy, with things that Linux does
1876 * not support and which gdb doesn't really use excluded.
1877 *
1878 * Fields we don't dump (their contents is zero) in linux-user qemu
1879 * are marked with XXX.
1880 *
1881 * Core dump code is copied from linux kernel (fs/binfmt_elf.c).
1882 *
1883 * Porting ELF coredump for target is (quite) simple process. First you
Nathan Froyddd0a3652009-12-11 09:04:45 -08001884 * define USE_ELF_CORE_DUMP in target ELF code (where init_thread() for
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001885 * the target resides):
1886 *
1887 * #define USE_ELF_CORE_DUMP
1888 *
1889 * Next you define type of register set used for dumping. ELF specification
1890 * says that it needs to be array of elf_greg_t that has size of ELF_NREG.
1891 *
Anthony Liguoric227f092009-10-01 16:12:16 -05001892 * typedef <target_regtype> target_elf_greg_t;
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001893 * #define ELF_NREG <number of registers>
Anthony Liguoric227f092009-10-01 16:12:16 -05001894 * typedef taret_elf_greg_t target_elf_gregset_t[ELF_NREG];
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001895 *
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001896 * Last step is to implement target specific function that copies registers
1897 * from given cpu into just specified register set. Prototype is:
1898 *
Anthony Liguoric227f092009-10-01 16:12:16 -05001899 * static void elf_core_copy_regs(taret_elf_gregset_t *regs,
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01001900 * const CPUState *env);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001901 *
1902 * Parameters:
1903 * regs - copy register values into here (allocated and zeroed by caller)
1904 * env - copy registers from here
1905 *
1906 * Example for ARM target is provided in this file.
1907 */
1908
1909/* An ELF note in memory */
1910struct memelfnote {
1911 const char *name;
1912 size_t namesz;
1913 size_t namesz_rounded;
1914 int type;
1915 size_t datasz;
1916 void *data;
1917 size_t notesz;
1918};
1919
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01001920struct target_elf_siginfo {
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001921 int si_signo; /* signal number */
1922 int si_code; /* extra code */
1923 int si_errno; /* errno */
1924};
1925
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01001926struct target_elf_prstatus {
1927 struct target_elf_siginfo pr_info; /* Info associated with signal */
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001928 short pr_cursig; /* Current signal */
1929 target_ulong pr_sigpend; /* XXX */
1930 target_ulong pr_sighold; /* XXX */
Anthony Liguoric227f092009-10-01 16:12:16 -05001931 target_pid_t pr_pid;
1932 target_pid_t pr_ppid;
1933 target_pid_t pr_pgrp;
1934 target_pid_t pr_sid;
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001935 struct target_timeval pr_utime; /* XXX User time */
1936 struct target_timeval pr_stime; /* XXX System time */
1937 struct target_timeval pr_cutime; /* XXX Cumulative user time */
1938 struct target_timeval pr_cstime; /* XXX Cumulative system time */
Anthony Liguoric227f092009-10-01 16:12:16 -05001939 target_elf_gregset_t pr_reg; /* GP registers */
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001940 int pr_fpvalid; /* XXX */
1941};
1942
1943#define ELF_PRARGSZ (80) /* Number of chars for args */
1944
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01001945struct target_elf_prpsinfo {
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001946 char pr_state; /* numeric process state */
1947 char pr_sname; /* char for pr_state */
1948 char pr_zomb; /* zombie */
1949 char pr_nice; /* nice val */
1950 target_ulong pr_flag; /* flags */
Anthony Liguoric227f092009-10-01 16:12:16 -05001951 target_uid_t pr_uid;
1952 target_gid_t pr_gid;
1953 target_pid_t pr_pid, pr_ppid, pr_pgrp, pr_sid;
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001954 /* Lots missing */
1955 char pr_fname[16]; /* filename of executable */
1956 char pr_psargs[ELF_PRARGSZ]; /* initial part of arg list */
1957};
1958
1959/* Here is the structure in which status of each thread is captured. */
1960struct elf_thread_status {
Blue Swirl72cf2d42009-09-12 07:36:22 +00001961 QTAILQ_ENTRY(elf_thread_status) ets_link;
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01001962 struct target_elf_prstatus prstatus; /* NT_PRSTATUS */
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001963#if 0
1964 elf_fpregset_t fpu; /* NT_PRFPREG */
1965 struct task_struct *thread;
1966 elf_fpxregset_t xfpu; /* ELF_CORE_XFPREG_TYPE */
1967#endif
1968 struct memelfnote notes[1];
1969 int num_notes;
1970};
1971
1972struct elf_note_info {
1973 struct memelfnote *notes;
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01001974 struct target_elf_prstatus *prstatus; /* NT_PRSTATUS */
1975 struct target_elf_prpsinfo *psinfo; /* NT_PRPSINFO */
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001976
Blue Swirl72cf2d42009-09-12 07:36:22 +00001977 QTAILQ_HEAD(thread_list_head, elf_thread_status) thread_list;
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001978#if 0
1979 /*
1980 * Current version of ELF coredump doesn't support
1981 * dumping fp regs etc.
1982 */
1983 elf_fpregset_t *fpu;
1984 elf_fpxregset_t *xfpu;
1985 int thread_status_size;
1986#endif
1987 int notes_size;
1988 int numnote;
1989};
1990
1991struct vm_area_struct {
1992 abi_ulong vma_start; /* start vaddr of memory region */
1993 abi_ulong vma_end; /* end vaddr of memory region */
1994 abi_ulong vma_flags; /* protection etc. flags for the region */
Blue Swirl72cf2d42009-09-12 07:36:22 +00001995 QTAILQ_ENTRY(vm_area_struct) vma_link;
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03001996};
1997
1998struct mm_struct {
Blue Swirl72cf2d42009-09-12 07:36:22 +00001999 QTAILQ_HEAD(, vm_area_struct) mm_mmap;
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002000 int mm_count; /* number of mappings */
2001};
2002
2003static struct mm_struct *vma_init(void);
2004static void vma_delete(struct mm_struct *);
2005static int vma_add_mapping(struct mm_struct *, abi_ulong,
Richard Hendersond97ef722010-07-27 10:25:29 -07002006 abi_ulong, abi_ulong);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002007static int vma_get_mapping_count(const struct mm_struct *);
2008static struct vm_area_struct *vma_first(const struct mm_struct *);
2009static struct vm_area_struct *vma_next(struct vm_area_struct *);
2010static abi_ulong vma_dump_size(const struct vm_area_struct *);
Paul Brookb480d9b2010-03-12 23:23:29 +00002011static int vma_walker(void *priv, abi_ulong start, abi_ulong end,
Richard Hendersond97ef722010-07-27 10:25:29 -07002012 unsigned long flags);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002013
2014static void fill_elf_header(struct elfhdr *, int, uint16_t, uint32_t);
2015static void fill_note(struct memelfnote *, const char *, int,
Richard Hendersond97ef722010-07-27 10:25:29 -07002016 unsigned int, void *);
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01002017static void fill_prstatus(struct target_elf_prstatus *, const TaskState *, int);
2018static int fill_psinfo(struct target_elf_prpsinfo *, const TaskState *);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002019static void fill_auxv_note(struct memelfnote *, const TaskState *);
2020static void fill_elf_note_phdr(struct elf_phdr *, int, off_t);
2021static size_t note_size(const struct memelfnote *);
2022static void free_note_info(struct elf_note_info *);
2023static int fill_note_info(struct elf_note_info *, long, const CPUState *);
2024static void fill_thread_info(struct elf_note_info *, const CPUState *);
2025static int core_dump_filename(const TaskState *, char *, size_t);
2026
2027static int dump_write(int, const void *, size_t);
2028static int write_note(struct memelfnote *, int);
2029static int write_note_info(struct elf_note_info *, int);
2030
2031#ifdef BSWAP_NEEDED
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01002032static void bswap_prstatus(struct target_elf_prstatus *prstatus)
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002033{
2034 prstatus->pr_info.si_signo = tswapl(prstatus->pr_info.si_signo);
2035 prstatus->pr_info.si_code = tswapl(prstatus->pr_info.si_code);
2036 prstatus->pr_info.si_errno = tswapl(prstatus->pr_info.si_errno);
2037 prstatus->pr_cursig = tswap16(prstatus->pr_cursig);
2038 prstatus->pr_sigpend = tswapl(prstatus->pr_sigpend);
2039 prstatus->pr_sighold = tswapl(prstatus->pr_sighold);
2040 prstatus->pr_pid = tswap32(prstatus->pr_pid);
2041 prstatus->pr_ppid = tswap32(prstatus->pr_ppid);
2042 prstatus->pr_pgrp = tswap32(prstatus->pr_pgrp);
2043 prstatus->pr_sid = tswap32(prstatus->pr_sid);
2044 /* cpu times are not filled, so we skip them */
2045 /* regs should be in correct format already */
2046 prstatus->pr_fpvalid = tswap32(prstatus->pr_fpvalid);
2047}
2048
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01002049static void bswap_psinfo(struct target_elf_prpsinfo *psinfo)
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002050{
2051 psinfo->pr_flag = tswapl(psinfo->pr_flag);
2052 psinfo->pr_uid = tswap16(psinfo->pr_uid);
2053 psinfo->pr_gid = tswap16(psinfo->pr_gid);
2054 psinfo->pr_pid = tswap32(psinfo->pr_pid);
2055 psinfo->pr_ppid = tswap32(psinfo->pr_ppid);
2056 psinfo->pr_pgrp = tswap32(psinfo->pr_pgrp);
2057 psinfo->pr_sid = tswap32(psinfo->pr_sid);
2058}
Richard Henderson991f8f02010-07-27 10:25:32 -07002059
2060static void bswap_note(struct elf_note *en)
2061{
2062 bswap32s(&en->n_namesz);
2063 bswap32s(&en->n_descsz);
2064 bswap32s(&en->n_type);
2065}
2066#else
2067static inline void bswap_prstatus(struct target_elf_prstatus *p) { }
2068static inline void bswap_psinfo(struct target_elf_prpsinfo *p) {}
2069static inline void bswap_note(struct elf_note *en) { }
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002070#endif /* BSWAP_NEEDED */
2071
2072/*
2073 * Minimal support for linux memory regions. These are needed
2074 * when we are finding out what memory exactly belongs to
2075 * emulated process. No locks needed here, as long as
2076 * thread that received the signal is stopped.
2077 */
2078
2079static struct mm_struct *vma_init(void)
2080{
2081 struct mm_struct *mm;
2082
2083 if ((mm = qemu_malloc(sizeof (*mm))) == NULL)
2084 return (NULL);
2085
2086 mm->mm_count = 0;
Blue Swirl72cf2d42009-09-12 07:36:22 +00002087 QTAILQ_INIT(&mm->mm_mmap);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002088
2089 return (mm);
2090}
2091
2092static void vma_delete(struct mm_struct *mm)
2093{
2094 struct vm_area_struct *vma;
2095
2096 while ((vma = vma_first(mm)) != NULL) {
Blue Swirl72cf2d42009-09-12 07:36:22 +00002097 QTAILQ_REMOVE(&mm->mm_mmap, vma, vma_link);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002098 qemu_free(vma);
2099 }
2100 qemu_free(mm);
2101}
2102
2103static int vma_add_mapping(struct mm_struct *mm, abi_ulong start,
Richard Hendersond97ef722010-07-27 10:25:29 -07002104 abi_ulong end, abi_ulong flags)
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002105{
2106 struct vm_area_struct *vma;
2107
2108 if ((vma = qemu_mallocz(sizeof (*vma))) == NULL)
2109 return (-1);
2110
2111 vma->vma_start = start;
2112 vma->vma_end = end;
2113 vma->vma_flags = flags;
2114
Blue Swirl72cf2d42009-09-12 07:36:22 +00002115 QTAILQ_INSERT_TAIL(&mm->mm_mmap, vma, vma_link);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002116 mm->mm_count++;
2117
2118 return (0);
2119}
2120
2121static struct vm_area_struct *vma_first(const struct mm_struct *mm)
2122{
Blue Swirl72cf2d42009-09-12 07:36:22 +00002123 return (QTAILQ_FIRST(&mm->mm_mmap));
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002124}
2125
2126static struct vm_area_struct *vma_next(struct vm_area_struct *vma)
2127{
Blue Swirl72cf2d42009-09-12 07:36:22 +00002128 return (QTAILQ_NEXT(vma, vma_link));
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002129}
2130
2131static int vma_get_mapping_count(const struct mm_struct *mm)
2132{
2133 return (mm->mm_count);
2134}
2135
2136/*
2137 * Calculate file (dump) size of given memory region.
2138 */
2139static abi_ulong vma_dump_size(const struct vm_area_struct *vma)
2140{
2141 /* if we cannot even read the first page, skip it */
2142 if (!access_ok(VERIFY_READ, vma->vma_start, TARGET_PAGE_SIZE))
2143 return (0);
2144
2145 /*
2146 * Usually we don't dump executable pages as they contain
2147 * non-writable code that debugger can read directly from
2148 * target library etc. However, thread stacks are marked
2149 * also executable so we read in first page of given region
2150 * and check whether it contains elf header. If there is
2151 * no elf header, we dump it.
2152 */
2153 if (vma->vma_flags & PROT_EXEC) {
2154 char page[TARGET_PAGE_SIZE];
2155
2156 copy_from_user(page, vma->vma_start, sizeof (page));
2157 if ((page[EI_MAG0] == ELFMAG0) &&
2158 (page[EI_MAG1] == ELFMAG1) &&
2159 (page[EI_MAG2] == ELFMAG2) &&
2160 (page[EI_MAG3] == ELFMAG3)) {
2161 /*
2162 * Mappings are possibly from ELF binary. Don't dump
2163 * them.
2164 */
2165 return (0);
2166 }
2167 }
2168
2169 return (vma->vma_end - vma->vma_start);
2170}
2171
Paul Brookb480d9b2010-03-12 23:23:29 +00002172static int vma_walker(void *priv, abi_ulong start, abi_ulong end,
Richard Hendersond97ef722010-07-27 10:25:29 -07002173 unsigned long flags)
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002174{
2175 struct mm_struct *mm = (struct mm_struct *)priv;
2176
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002177 vma_add_mapping(mm, start, end, flags);
2178 return (0);
2179}
2180
2181static void fill_note(struct memelfnote *note, const char *name, int type,
Richard Hendersond97ef722010-07-27 10:25:29 -07002182 unsigned int sz, void *data)
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002183{
2184 unsigned int namesz;
2185
2186 namesz = strlen(name) + 1;
2187 note->name = name;
2188 note->namesz = namesz;
2189 note->namesz_rounded = roundup(namesz, sizeof (int32_t));
2190 note->type = type;
2191 note->datasz = roundup(sz, sizeof (int32_t));;
2192 note->data = data;
2193
2194 /*
2195 * We calculate rounded up note size here as specified by
2196 * ELF document.
2197 */
2198 note->notesz = sizeof (struct elf_note) +
2199 note->namesz_rounded + note->datasz;
2200}
2201
2202static void fill_elf_header(struct elfhdr *elf, int segs, uint16_t machine,
Richard Hendersond97ef722010-07-27 10:25:29 -07002203 uint32_t flags)
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002204{
2205 (void) memset(elf, 0, sizeof(*elf));
2206
2207 (void) memcpy(elf->e_ident, ELFMAG, SELFMAG);
2208 elf->e_ident[EI_CLASS] = ELF_CLASS;
2209 elf->e_ident[EI_DATA] = ELF_DATA;
2210 elf->e_ident[EI_VERSION] = EV_CURRENT;
2211 elf->e_ident[EI_OSABI] = ELF_OSABI;
2212
2213 elf->e_type = ET_CORE;
2214 elf->e_machine = machine;
2215 elf->e_version = EV_CURRENT;
2216 elf->e_phoff = sizeof(struct elfhdr);
2217 elf->e_flags = flags;
2218 elf->e_ehsize = sizeof(struct elfhdr);
2219 elf->e_phentsize = sizeof(struct elf_phdr);
2220 elf->e_phnum = segs;
2221
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002222 bswap_ehdr(elf);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002223}
2224
2225static void fill_elf_note_phdr(struct elf_phdr *phdr, int sz, off_t offset)
2226{
2227 phdr->p_type = PT_NOTE;
2228 phdr->p_offset = offset;
2229 phdr->p_vaddr = 0;
2230 phdr->p_paddr = 0;
2231 phdr->p_filesz = sz;
2232 phdr->p_memsz = 0;
2233 phdr->p_flags = 0;
2234 phdr->p_align = 0;
2235
Richard Henderson991f8f02010-07-27 10:25:32 -07002236 bswap_phdr(phdr, 1);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002237}
2238
2239static size_t note_size(const struct memelfnote *note)
2240{
2241 return (note->notesz);
2242}
2243
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01002244static void fill_prstatus(struct target_elf_prstatus *prstatus,
Richard Hendersond97ef722010-07-27 10:25:29 -07002245 const TaskState *ts, int signr)
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002246{
2247 (void) memset(prstatus, 0, sizeof (*prstatus));
2248 prstatus->pr_info.si_signo = prstatus->pr_cursig = signr;
2249 prstatus->pr_pid = ts->ts_tid;
2250 prstatus->pr_ppid = getppid();
2251 prstatus->pr_pgrp = getpgrp();
2252 prstatus->pr_sid = getsid(0);
2253
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002254 bswap_prstatus(prstatus);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002255}
2256
Laurent Desnoguesa2547a12009-07-17 13:33:41 +01002257static int fill_psinfo(struct target_elf_prpsinfo *psinfo, const TaskState *ts)
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002258{
2259 char *filename, *base_filename;
2260 unsigned int i, len;
2261
2262 (void) memset(psinfo, 0, sizeof (*psinfo));
2263
2264 len = ts->info->arg_end - ts->info->arg_start;
2265 if (len >= ELF_PRARGSZ)
2266 len = ELF_PRARGSZ - 1;
2267 if (copy_from_user(&psinfo->pr_psargs, ts->info->arg_start, len))
2268 return -EFAULT;
2269 for (i = 0; i < len; i++)
2270 if (psinfo->pr_psargs[i] == 0)
2271 psinfo->pr_psargs[i] = ' ';
2272 psinfo->pr_psargs[len] = 0;
2273
2274 psinfo->pr_pid = getpid();
2275 psinfo->pr_ppid = getppid();
2276 psinfo->pr_pgrp = getpgrp();
2277 psinfo->pr_sid = getsid(0);
2278 psinfo->pr_uid = getuid();
2279 psinfo->pr_gid = getgid();
2280
2281 filename = strdup(ts->bprm->filename);
2282 base_filename = strdup(basename(filename));
2283 (void) strncpy(psinfo->pr_fname, base_filename,
Richard Hendersond97ef722010-07-27 10:25:29 -07002284 sizeof(psinfo->pr_fname));
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002285 free(base_filename);
2286 free(filename);
2287
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002288 bswap_psinfo(psinfo);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002289 return (0);
2290}
2291
2292static void fill_auxv_note(struct memelfnote *note, const TaskState *ts)
2293{
2294 elf_addr_t auxv = (elf_addr_t)ts->info->saved_auxv;
2295 elf_addr_t orig_auxv = auxv;
2296 abi_ulong val;
2297 void *ptr;
2298 int i, len;
2299
2300 /*
2301 * Auxiliary vector is stored in target process stack. It contains
2302 * {type, value} pairs that we need to dump into note. This is not
2303 * strictly necessary but we do it here for sake of completeness.
2304 */
2305
2306 /* find out lenght of the vector, AT_NULL is terminator */
2307 i = len = 0;
2308 do {
2309 get_user_ual(val, auxv);
2310 i += 2;
2311 auxv += 2 * sizeof (elf_addr_t);
2312 } while (val != AT_NULL);
2313 len = i * sizeof (elf_addr_t);
2314
2315 /* read in whole auxv vector and copy it to memelfnote */
2316 ptr = lock_user(VERIFY_READ, orig_auxv, len, 0);
2317 if (ptr != NULL) {
2318 fill_note(note, "CORE", NT_AUXV, len, ptr);
2319 unlock_user(ptr, auxv, len);
2320 }
2321}
2322
2323/*
2324 * Constructs name of coredump file. We have following convention
2325 * for the name:
2326 * qemu_<basename-of-target-binary>_<date>-<time>_<pid>.core
2327 *
2328 * Returns 0 in case of success, -1 otherwise (errno is set).
2329 */
2330static int core_dump_filename(const TaskState *ts, char *buf,
Richard Hendersond97ef722010-07-27 10:25:29 -07002331 size_t bufsize)
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002332{
2333 char timestamp[64];
2334 char *filename = NULL;
2335 char *base_filename = NULL;
2336 struct timeval tv;
2337 struct tm tm;
2338
2339 assert(bufsize >= PATH_MAX);
2340
2341 if (gettimeofday(&tv, NULL) < 0) {
2342 (void) fprintf(stderr, "unable to get current timestamp: %s",
Richard Hendersond97ef722010-07-27 10:25:29 -07002343 strerror(errno));
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002344 return (-1);
2345 }
2346
2347 filename = strdup(ts->bprm->filename);
2348 base_filename = strdup(basename(filename));
2349 (void) strftime(timestamp, sizeof (timestamp), "%Y%m%d-%H%M%S",
Richard Hendersond97ef722010-07-27 10:25:29 -07002350 localtime_r(&tv.tv_sec, &tm));
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002351 (void) snprintf(buf, bufsize, "qemu_%s_%s_%d.core",
Richard Hendersond97ef722010-07-27 10:25:29 -07002352 base_filename, timestamp, (int)getpid());
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002353 free(base_filename);
2354 free(filename);
2355
2356 return (0);
2357}
2358
2359static int dump_write(int fd, const void *ptr, size_t size)
2360{
2361 const char *bufp = (const char *)ptr;
2362 ssize_t bytes_written, bytes_left;
2363 struct rlimit dumpsize;
2364 off_t pos;
2365
2366 bytes_written = 0;
2367 getrlimit(RLIMIT_CORE, &dumpsize);
2368 if ((pos = lseek(fd, 0, SEEK_CUR))==-1) {
2369 if (errno == ESPIPE) { /* not a seekable stream */
2370 bytes_left = size;
2371 } else {
2372 return pos;
2373 }
2374 } else {
2375 if (dumpsize.rlim_cur <= pos) {
2376 return -1;
2377 } else if (dumpsize.rlim_cur == RLIM_INFINITY) {
2378 bytes_left = size;
2379 } else {
2380 size_t limit_left=dumpsize.rlim_cur - pos;
2381 bytes_left = limit_left >= size ? size : limit_left ;
2382 }
2383 }
2384
2385 /*
2386 * In normal conditions, single write(2) should do but
2387 * in case of socket etc. this mechanism is more portable.
2388 */
2389 do {
2390 bytes_written = write(fd, bufp, bytes_left);
2391 if (bytes_written < 0) {
2392 if (errno == EINTR)
2393 continue;
2394 return (-1);
2395 } else if (bytes_written == 0) { /* eof */
2396 return (-1);
2397 }
2398 bufp += bytes_written;
2399 bytes_left -= bytes_written;
2400 } while (bytes_left > 0);
2401
2402 return (0);
2403}
2404
2405static int write_note(struct memelfnote *men, int fd)
2406{
2407 struct elf_note en;
2408
2409 en.n_namesz = men->namesz;
2410 en.n_type = men->type;
2411 en.n_descsz = men->datasz;
2412
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002413 bswap_note(&en);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002414
2415 if (dump_write(fd, &en, sizeof(en)) != 0)
2416 return (-1);
2417 if (dump_write(fd, men->name, men->namesz_rounded) != 0)
2418 return (-1);
2419 if (dump_write(fd, men->data, men->datasz) != 0)
2420 return (-1);
2421
2422 return (0);
2423}
2424
2425static void fill_thread_info(struct elf_note_info *info, const CPUState *env)
2426{
2427 TaskState *ts = (TaskState *)env->opaque;
2428 struct elf_thread_status *ets;
2429
2430 ets = qemu_mallocz(sizeof (*ets));
2431 ets->num_notes = 1; /* only prstatus is dumped */
2432 fill_prstatus(&ets->prstatus, ts, 0);
2433 elf_core_copy_regs(&ets->prstatus.pr_reg, env);
2434 fill_note(&ets->notes[0], "CORE", NT_PRSTATUS, sizeof (ets->prstatus),
Richard Hendersond97ef722010-07-27 10:25:29 -07002435 &ets->prstatus);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002436
Blue Swirl72cf2d42009-09-12 07:36:22 +00002437 QTAILQ_INSERT_TAIL(&info->thread_list, ets, ets_link);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002438
2439 info->notes_size += note_size(&ets->notes[0]);
2440}
2441
2442static int fill_note_info(struct elf_note_info *info,
Richard Hendersond97ef722010-07-27 10:25:29 -07002443 long signr, const CPUState *env)
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002444{
2445#define NUMNOTES 3
2446 CPUState *cpu = NULL;
2447 TaskState *ts = (TaskState *)env->opaque;
2448 int i;
2449
2450 (void) memset(info, 0, sizeof (*info));
2451
Blue Swirl72cf2d42009-09-12 07:36:22 +00002452 QTAILQ_INIT(&info->thread_list);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002453
2454 info->notes = qemu_mallocz(NUMNOTES * sizeof (struct memelfnote));
2455 if (info->notes == NULL)
2456 return (-ENOMEM);
2457 info->prstatus = qemu_mallocz(sizeof (*info->prstatus));
2458 if (info->prstatus == NULL)
2459 return (-ENOMEM);
2460 info->psinfo = qemu_mallocz(sizeof (*info->psinfo));
2461 if (info->prstatus == NULL)
2462 return (-ENOMEM);
2463
2464 /*
2465 * First fill in status (and registers) of current thread
2466 * including process info & aux vector.
2467 */
2468 fill_prstatus(info->prstatus, ts, signr);
2469 elf_core_copy_regs(&info->prstatus->pr_reg, env);
2470 fill_note(&info->notes[0], "CORE", NT_PRSTATUS,
Richard Hendersond97ef722010-07-27 10:25:29 -07002471 sizeof (*info->prstatus), info->prstatus);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002472 fill_psinfo(info->psinfo, ts);
2473 fill_note(&info->notes[1], "CORE", NT_PRPSINFO,
Richard Hendersond97ef722010-07-27 10:25:29 -07002474 sizeof (*info->psinfo), info->psinfo);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002475 fill_auxv_note(&info->notes[2], ts);
2476 info->numnote = 3;
2477
2478 info->notes_size = 0;
2479 for (i = 0; i < info->numnote; i++)
2480 info->notes_size += note_size(&info->notes[i]);
2481
2482 /* read and fill status of all threads */
2483 cpu_list_lock();
2484 for (cpu = first_cpu; cpu != NULL; cpu = cpu->next_cpu) {
2485 if (cpu == thread_env)
2486 continue;
2487 fill_thread_info(info, cpu);
2488 }
2489 cpu_list_unlock();
2490
2491 return (0);
2492}
2493
2494static void free_note_info(struct elf_note_info *info)
2495{
2496 struct elf_thread_status *ets;
2497
Blue Swirl72cf2d42009-09-12 07:36:22 +00002498 while (!QTAILQ_EMPTY(&info->thread_list)) {
2499 ets = QTAILQ_FIRST(&info->thread_list);
2500 QTAILQ_REMOVE(&info->thread_list, ets, ets_link);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002501 qemu_free(ets);
2502 }
2503
2504 qemu_free(info->prstatus);
2505 qemu_free(info->psinfo);
2506 qemu_free(info->notes);
2507}
2508
2509static int write_note_info(struct elf_note_info *info, int fd)
2510{
2511 struct elf_thread_status *ets;
2512 int i, error = 0;
2513
2514 /* write prstatus, psinfo and auxv for current thread */
2515 for (i = 0; i < info->numnote; i++)
2516 if ((error = write_note(&info->notes[i], fd)) != 0)
2517 return (error);
2518
2519 /* write prstatus for each thread */
2520 for (ets = info->thread_list.tqh_first; ets != NULL;
Richard Hendersond97ef722010-07-27 10:25:29 -07002521 ets = ets->ets_link.tqe_next) {
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002522 if ((error = write_note(&ets->notes[0], fd)) != 0)
2523 return (error);
2524 }
2525
2526 return (0);
2527}
2528
2529/*
2530 * Write out ELF coredump.
2531 *
2532 * See documentation of ELF object file format in:
2533 * http://www.caldera.com/developers/devspecs/gabi41.pdf
2534 *
2535 * Coredump format in linux is following:
2536 *
2537 * 0 +----------------------+ \
2538 * | ELF header | ET_CORE |
2539 * +----------------------+ |
2540 * | ELF program headers | |--- headers
2541 * | - NOTE section | |
2542 * | - PT_LOAD sections | |
2543 * +----------------------+ /
2544 * | NOTEs: |
2545 * | - NT_PRSTATUS |
2546 * | - NT_PRSINFO |
2547 * | - NT_AUXV |
2548 * +----------------------+ <-- aligned to target page
2549 * | Process memory dump |
2550 * : :
2551 * . .
2552 * : :
2553 * | |
2554 * +----------------------+
2555 *
2556 * NT_PRSTATUS -> struct elf_prstatus (per thread)
2557 * NT_PRSINFO -> struct elf_prpsinfo
2558 * NT_AUXV is array of { type, value } pairs (see fill_auxv_note()).
2559 *
2560 * Format follows System V format as close as possible. Current
2561 * version limitations are as follows:
2562 * - no floating point registers are dumped
2563 *
2564 * Function returns 0 in case of success, negative errno otherwise.
2565 *
2566 * TODO: make this work also during runtime: it should be
2567 * possible to force coredump from running process and then
2568 * continue processing. For example qemu could set up SIGUSR2
2569 * handler (provided that target process haven't registered
2570 * handler for that) that does the dump when signal is received.
2571 */
2572static int elf_core_dump(int signr, const CPUState *env)
2573{
2574 const TaskState *ts = (const TaskState *)env->opaque;
2575 struct vm_area_struct *vma = NULL;
2576 char corefile[PATH_MAX];
2577 struct elf_note_info info;
2578 struct elfhdr elf;
2579 struct elf_phdr phdr;
2580 struct rlimit dumpsize;
2581 struct mm_struct *mm = NULL;
2582 off_t offset = 0, data_offset = 0;
2583 int segs = 0;
2584 int fd = -1;
2585
2586 errno = 0;
2587 getrlimit(RLIMIT_CORE, &dumpsize);
2588 if (dumpsize.rlim_cur == 0)
Richard Hendersond97ef722010-07-27 10:25:29 -07002589 return 0;
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002590
2591 if (core_dump_filename(ts, corefile, sizeof (corefile)) < 0)
2592 return (-errno);
2593
2594 if ((fd = open(corefile, O_WRONLY | O_CREAT,
Richard Hendersond97ef722010-07-27 10:25:29 -07002595 S_IRUSR|S_IWUSR|S_IRGRP|S_IROTH)) < 0)
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002596 return (-errno);
2597
2598 /*
2599 * Walk through target process memory mappings and
2600 * set up structure containing this information. After
2601 * this point vma_xxx functions can be used.
2602 */
2603 if ((mm = vma_init()) == NULL)
2604 goto out;
2605
2606 walk_memory_regions(mm, vma_walker);
2607 segs = vma_get_mapping_count(mm);
2608
2609 /*
2610 * Construct valid coredump ELF header. We also
2611 * add one more segment for notes.
2612 */
2613 fill_elf_header(&elf, segs + 1, ELF_MACHINE, 0);
2614 if (dump_write(fd, &elf, sizeof (elf)) != 0)
2615 goto out;
2616
2617 /* fill in in-memory version of notes */
2618 if (fill_note_info(&info, signr, env) < 0)
2619 goto out;
2620
2621 offset += sizeof (elf); /* elf header */
2622 offset += (segs + 1) * sizeof (struct elf_phdr); /* program headers */
2623
2624 /* write out notes program header */
2625 fill_elf_note_phdr(&phdr, info.notes_size, offset);
2626
2627 offset += info.notes_size;
2628 if (dump_write(fd, &phdr, sizeof (phdr)) != 0)
2629 goto out;
2630
2631 /*
2632 * ELF specification wants data to start at page boundary so
2633 * we align it here.
2634 */
2635 offset = roundup(offset, ELF_EXEC_PAGESIZE);
2636
2637 /*
2638 * Write program headers for memory regions mapped in
2639 * the target process.
2640 */
2641 for (vma = vma_first(mm); vma != NULL; vma = vma_next(vma)) {
2642 (void) memset(&phdr, 0, sizeof (phdr));
2643
2644 phdr.p_type = PT_LOAD;
2645 phdr.p_offset = offset;
2646 phdr.p_vaddr = vma->vma_start;
2647 phdr.p_paddr = 0;
2648 phdr.p_filesz = vma_dump_size(vma);
2649 offset += phdr.p_filesz;
2650 phdr.p_memsz = vma->vma_end - vma->vma_start;
2651 phdr.p_flags = vma->vma_flags & PROT_READ ? PF_R : 0;
2652 if (vma->vma_flags & PROT_WRITE)
2653 phdr.p_flags |= PF_W;
2654 if (vma->vma_flags & PROT_EXEC)
2655 phdr.p_flags |= PF_X;
2656 phdr.p_align = ELF_EXEC_PAGESIZE;
2657
2658 dump_write(fd, &phdr, sizeof (phdr));
2659 }
2660
2661 /*
2662 * Next we write notes just after program headers. No
2663 * alignment needed here.
2664 */
2665 if (write_note_info(&info, fd) < 0)
2666 goto out;
2667
2668 /* align data to page boundary */
2669 data_offset = lseek(fd, 0, SEEK_CUR);
2670 data_offset = TARGET_PAGE_ALIGN(data_offset);
2671 if (lseek(fd, data_offset, SEEK_SET) != data_offset)
2672 goto out;
2673
2674 /*
2675 * Finally we can dump process memory into corefile as well.
2676 */
2677 for (vma = vma_first(mm); vma != NULL; vma = vma_next(vma)) {
2678 abi_ulong addr;
2679 abi_ulong end;
2680
2681 end = vma->vma_start + vma_dump_size(vma);
2682
2683 for (addr = vma->vma_start; addr < end;
Richard Hendersond97ef722010-07-27 10:25:29 -07002684 addr += TARGET_PAGE_SIZE) {
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002685 char page[TARGET_PAGE_SIZE];
2686 int error;
2687
2688 /*
2689 * Read in page from target process memory and
2690 * write it to coredump file.
2691 */
2692 error = copy_from_user(page, addr, sizeof (page));
2693 if (error != 0) {
Aurelien Jarno49995e12009-12-19 20:28:23 +01002694 (void) fprintf(stderr, "unable to dump " TARGET_ABI_FMT_lx "\n",
Richard Hendersond97ef722010-07-27 10:25:29 -07002695 addr);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002696 errno = -error;
2697 goto out;
2698 }
2699 if (dump_write(fd, page, TARGET_PAGE_SIZE) < 0)
2700 goto out;
2701 }
2702 }
2703
Richard Hendersond97ef722010-07-27 10:25:29 -07002704 out:
Mika Westerbergedf8e2a2009-04-07 09:57:11 +03002705 free_note_info(&info);
2706 if (mm != NULL)
2707 vma_delete(mm);
2708 (void) close(fd);
2709
2710 if (errno != 0)
2711 return (-errno);
2712 return (0);
2713}
2714
2715#endif /* USE_ELF_CORE_DUMP */
2716
bellard31e31b82003-02-18 22:55:36 +00002717static int load_aout_interp(void * exptr, int interp_fd)
2718{
2719 printf("a.out interpreter not yet supported\n");
2720 return(0);
2721}
2722
pbrooke5fe0c52006-06-11 13:32:59 +00002723void do_init_thread(struct target_pt_regs *regs, struct image_info *infop)
2724{
2725 init_thread(regs, infop);
2726}