xref: /qemu/linux-user/elfload.c (revision 2a53535af471f4bee9d6cb5b363746b8d5ed21dd)
131e31b8aSbellard /* This is the Linux kernel elf-loading code, ported into user space */
2d39594e9SPeter Maydell #include "qemu/osdep.h"
3edf8e2afSMika Westerberg #include <sys/param.h>
431e31b8aSbellard 
5edf8e2afSMika Westerberg #include <sys/resource.h>
631e31b8aSbellard 
73ef693a0Sbellard #include "qemu.h"
876cad711SPaolo Bonzini #include "disas/disas.h"
9f348b6d1SVeronia Bahaa #include "qemu/path.h"
1031e31b8aSbellard 
11e58ffeb3Smalc #ifdef _ARCH_PPC64
12a6cc84f4Smalc #undef ARCH_DLINFO
13a6cc84f4Smalc #undef ELF_PLATFORM
14a6cc84f4Smalc #undef ELF_HWCAP
15ad6919dcSPeter Maydell #undef ELF_HWCAP2
16a6cc84f4Smalc #undef ELF_CLASS
17a6cc84f4Smalc #undef ELF_DATA
18a6cc84f4Smalc #undef ELF_ARCH
19a6cc84f4Smalc #endif
20a6cc84f4Smalc 
21edf8e2afSMika Westerberg #define ELF_OSABI   ELFOSABI_SYSV
22edf8e2afSMika Westerberg 
23cb33da57Sblueswir1 /* from personality.h */
24cb33da57Sblueswir1 
25cb33da57Sblueswir1 /*
26cb33da57Sblueswir1  * Flags for bug emulation.
27cb33da57Sblueswir1  *
28cb33da57Sblueswir1  * These occupy the top three bytes.
29cb33da57Sblueswir1  */
30cb33da57Sblueswir1 enum {
31cb33da57Sblueswir1     ADDR_NO_RANDOMIZE = 0x0040000,      /* disable randomization of VA space */
32d97ef72eSRichard Henderson     FDPIC_FUNCPTRS =    0x0080000,      /* userspace function ptrs point to
33d97ef72eSRichard Henderson                                            descriptors (signal handling) */
34cb33da57Sblueswir1     MMAP_PAGE_ZERO =    0x0100000,
35cb33da57Sblueswir1     ADDR_COMPAT_LAYOUT = 0x0200000,
36cb33da57Sblueswir1     READ_IMPLIES_EXEC = 0x0400000,
37cb33da57Sblueswir1     ADDR_LIMIT_32BIT =  0x0800000,
38cb33da57Sblueswir1     SHORT_INODE =       0x1000000,
39cb33da57Sblueswir1     WHOLE_SECONDS =     0x2000000,
40cb33da57Sblueswir1     STICKY_TIMEOUTS =   0x4000000,
41cb33da57Sblueswir1     ADDR_LIMIT_3GB =    0x8000000,
42cb33da57Sblueswir1 };
43cb33da57Sblueswir1 
44cb33da57Sblueswir1 /*
45cb33da57Sblueswir1  * Personality types.
46cb33da57Sblueswir1  *
47cb33da57Sblueswir1  * These go in the low byte.  Avoid using the top bit, it will
48cb33da57Sblueswir1  * conflict with error returns.
49cb33da57Sblueswir1  */
50cb33da57Sblueswir1 enum {
51cb33da57Sblueswir1     PER_LINUX =         0x0000,
52cb33da57Sblueswir1     PER_LINUX_32BIT =   0x0000 | ADDR_LIMIT_32BIT,
53cb33da57Sblueswir1     PER_LINUX_FDPIC =   0x0000 | FDPIC_FUNCPTRS,
54cb33da57Sblueswir1     PER_SVR4 =          0x0001 | STICKY_TIMEOUTS | MMAP_PAGE_ZERO,
55cb33da57Sblueswir1     PER_SVR3 =          0x0002 | STICKY_TIMEOUTS | SHORT_INODE,
56d97ef72eSRichard Henderson     PER_SCOSVR3 =       0x0003 | STICKY_TIMEOUTS | WHOLE_SECONDS | SHORT_INODE,
57cb33da57Sblueswir1     PER_OSR5 =          0x0003 | STICKY_TIMEOUTS | WHOLE_SECONDS,
58cb33da57Sblueswir1     PER_WYSEV386 =      0x0004 | STICKY_TIMEOUTS | SHORT_INODE,
59cb33da57Sblueswir1     PER_ISCR4 =         0x0005 | STICKY_TIMEOUTS,
60cb33da57Sblueswir1     PER_BSD =           0x0006,
61cb33da57Sblueswir1     PER_SUNOS =         0x0006 | STICKY_TIMEOUTS,
62cb33da57Sblueswir1     PER_XENIX =         0x0007 | STICKY_TIMEOUTS | SHORT_INODE,
63cb33da57Sblueswir1     PER_LINUX32 =       0x0008,
64cb33da57Sblueswir1     PER_LINUX32_3GB =   0x0008 | ADDR_LIMIT_3GB,
65cb33da57Sblueswir1     PER_IRIX32 =        0x0009 | STICKY_TIMEOUTS,/* IRIX5 32-bit */
66cb33da57Sblueswir1     PER_IRIXN32 =       0x000a | STICKY_TIMEOUTS,/* IRIX6 new 32-bit */
67cb33da57Sblueswir1     PER_IRIX64 =        0x000b | STICKY_TIMEOUTS,/* IRIX6 64-bit */
68cb33da57Sblueswir1     PER_RISCOS =        0x000c,
69cb33da57Sblueswir1     PER_SOLARIS =       0x000d | STICKY_TIMEOUTS,
70cb33da57Sblueswir1     PER_UW7 =           0x000e | STICKY_TIMEOUTS | MMAP_PAGE_ZERO,
71cb33da57Sblueswir1     PER_OSF4 =          0x000f,                  /* OSF/1 v4 */
72cb33da57Sblueswir1     PER_HPUX =          0x0010,
73cb33da57Sblueswir1     PER_MASK =          0x00ff,
74cb33da57Sblueswir1 };
75cb33da57Sblueswir1 
76cb33da57Sblueswir1 /*
77cb33da57Sblueswir1  * Return the base personality without flags.
78cb33da57Sblueswir1  */
79cb33da57Sblueswir1 #define personality(pers)       (pers & PER_MASK)
80cb33da57Sblueswir1 
8183fb7adfSbellard /* this flag is uneffective under linux too, should be deleted */
8283fb7adfSbellard #ifndef MAP_DENYWRITE
8383fb7adfSbellard #define MAP_DENYWRITE 0
8483fb7adfSbellard #endif
8583fb7adfSbellard 
8683fb7adfSbellard /* should probably go in elf.h */
8783fb7adfSbellard #ifndef ELIBBAD
8883fb7adfSbellard #define ELIBBAD 80
8983fb7adfSbellard #endif
9083fb7adfSbellard 
9128490231SRichard Henderson #ifdef TARGET_WORDS_BIGENDIAN
9228490231SRichard Henderson #define ELF_DATA        ELFDATA2MSB
9328490231SRichard Henderson #else
9428490231SRichard Henderson #define ELF_DATA        ELFDATA2LSB
9528490231SRichard Henderson #endif
9628490231SRichard Henderson 
97a29f998dSPaolo Bonzini #ifdef TARGET_ABI_MIPSN32
98918fc54cSPaolo Bonzini typedef abi_ullong      target_elf_greg_t;
99918fc54cSPaolo Bonzini #define tswapreg(ptr)   tswap64(ptr)
100a29f998dSPaolo Bonzini #else
101a29f998dSPaolo Bonzini typedef abi_ulong       target_elf_greg_t;
102a29f998dSPaolo Bonzini #define tswapreg(ptr)   tswapal(ptr)
103a29f998dSPaolo Bonzini #endif
104a29f998dSPaolo Bonzini 
10521e807faSNathan Froyd #ifdef USE_UID16
1061ddd592fSPaolo Bonzini typedef abi_ushort      target_uid_t;
1071ddd592fSPaolo Bonzini typedef abi_ushort      target_gid_t;
10821e807faSNathan Froyd #else
109f8fd4fc4SPaolo Bonzini typedef abi_uint        target_uid_t;
110f8fd4fc4SPaolo Bonzini typedef abi_uint        target_gid_t;
11121e807faSNathan Froyd #endif
112f8fd4fc4SPaolo Bonzini typedef abi_int         target_pid_t;
11321e807faSNathan Froyd 
11430ac07d4Sbellard #ifdef TARGET_I386
11530ac07d4Sbellard 
11615338fd7Sbellard #define ELF_PLATFORM get_elf_platform()
11715338fd7Sbellard 
11815338fd7Sbellard static const char *get_elf_platform(void)
11915338fd7Sbellard {
12015338fd7Sbellard     static char elf_platform[] = "i386";
121a2247f8eSAndreas Färber     int family = object_property_get_int(OBJECT(thread_cpu), "family", NULL);
12215338fd7Sbellard     if (family > 6)
12315338fd7Sbellard         family = 6;
12415338fd7Sbellard     if (family >= 3)
12515338fd7Sbellard         elf_platform[1] = '0' + family;
12615338fd7Sbellard     return elf_platform;
12715338fd7Sbellard }
12815338fd7Sbellard 
12915338fd7Sbellard #define ELF_HWCAP get_elf_hwcap()
13015338fd7Sbellard 
13115338fd7Sbellard static uint32_t get_elf_hwcap(void)
13215338fd7Sbellard {
133a2247f8eSAndreas Färber     X86CPU *cpu = X86_CPU(thread_cpu);
134a2247f8eSAndreas Färber 
135a2247f8eSAndreas Färber     return cpu->env.features[FEAT_1_EDX];
13615338fd7Sbellard }
13715338fd7Sbellard 
13884409ddbSj_mayer #ifdef TARGET_X86_64
13984409ddbSj_mayer #define ELF_START_MMAP 0x2aaaaab000ULL
14084409ddbSj_mayer 
14184409ddbSj_mayer #define ELF_CLASS      ELFCLASS64
14284409ddbSj_mayer #define ELF_ARCH       EM_X86_64
14384409ddbSj_mayer 
14484409ddbSj_mayer static inline void init_thread(struct target_pt_regs *regs, struct image_info *infop)
14584409ddbSj_mayer {
14684409ddbSj_mayer     regs->rax = 0;
14784409ddbSj_mayer     regs->rsp = infop->start_stack;
14884409ddbSj_mayer     regs->rip = infop->entry;
14984409ddbSj_mayer }
15084409ddbSj_mayer 
1519edc5d79SMika Westerberg #define ELF_NREG    27
152c227f099SAnthony Liguori typedef target_elf_greg_t  target_elf_gregset_t[ELF_NREG];
1539edc5d79SMika Westerberg 
1549edc5d79SMika Westerberg /*
1559edc5d79SMika Westerberg  * Note that ELF_NREG should be 29 as there should be place for
1569edc5d79SMika Westerberg  * TRAPNO and ERR "registers" as well but linux doesn't dump
1579edc5d79SMika Westerberg  * those.
1589edc5d79SMika Westerberg  *
1599edc5d79SMika Westerberg  * See linux kernel: arch/x86/include/asm/elf.h
1609edc5d79SMika Westerberg  */
16105390248SAndreas Färber static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUX86State *env)
1629edc5d79SMika Westerberg {
1639edc5d79SMika Westerberg     (*regs)[0] = env->regs[15];
1649edc5d79SMika Westerberg     (*regs)[1] = env->regs[14];
1659edc5d79SMika Westerberg     (*regs)[2] = env->regs[13];
1669edc5d79SMika Westerberg     (*regs)[3] = env->regs[12];
1679edc5d79SMika Westerberg     (*regs)[4] = env->regs[R_EBP];
1689edc5d79SMika Westerberg     (*regs)[5] = env->regs[R_EBX];
1699edc5d79SMika Westerberg     (*regs)[6] = env->regs[11];
1709edc5d79SMika Westerberg     (*regs)[7] = env->regs[10];
1719edc5d79SMika Westerberg     (*regs)[8] = env->regs[9];
1729edc5d79SMika Westerberg     (*regs)[9] = env->regs[8];
1739edc5d79SMika Westerberg     (*regs)[10] = env->regs[R_EAX];
1749edc5d79SMika Westerberg     (*regs)[11] = env->regs[R_ECX];
1759edc5d79SMika Westerberg     (*regs)[12] = env->regs[R_EDX];
1769edc5d79SMika Westerberg     (*regs)[13] = env->regs[R_ESI];
1779edc5d79SMika Westerberg     (*regs)[14] = env->regs[R_EDI];
1789edc5d79SMika Westerberg     (*regs)[15] = env->regs[R_EAX]; /* XXX */
1799edc5d79SMika Westerberg     (*regs)[16] = env->eip;
1809edc5d79SMika Westerberg     (*regs)[17] = env->segs[R_CS].selector & 0xffff;
1819edc5d79SMika Westerberg     (*regs)[18] = env->eflags;
1829edc5d79SMika Westerberg     (*regs)[19] = env->regs[R_ESP];
1839edc5d79SMika Westerberg     (*regs)[20] = env->segs[R_SS].selector & 0xffff;
1849edc5d79SMika Westerberg     (*regs)[21] = env->segs[R_FS].selector & 0xffff;
1859edc5d79SMika Westerberg     (*regs)[22] = env->segs[R_GS].selector & 0xffff;
1869edc5d79SMika Westerberg     (*regs)[23] = env->segs[R_DS].selector & 0xffff;
1879edc5d79SMika Westerberg     (*regs)[24] = env->segs[R_ES].selector & 0xffff;
1889edc5d79SMika Westerberg     (*regs)[25] = env->segs[R_FS].selector & 0xffff;
1899edc5d79SMika Westerberg     (*regs)[26] = env->segs[R_GS].selector & 0xffff;
1909edc5d79SMika Westerberg }
1919edc5d79SMika Westerberg 
19284409ddbSj_mayer #else
19384409ddbSj_mayer 
19430ac07d4Sbellard #define ELF_START_MMAP 0x80000000
19530ac07d4Sbellard 
19630ac07d4Sbellard /*
19730ac07d4Sbellard  * This is used to ensure we don't load something for the wrong architecture.
19830ac07d4Sbellard  */
19930ac07d4Sbellard #define elf_check_arch(x) ( ((x) == EM_386) || ((x) == EM_486) )
20030ac07d4Sbellard 
20130ac07d4Sbellard /*
20230ac07d4Sbellard  * These are used to set parameters in the core dumps.
20330ac07d4Sbellard  */
20430ac07d4Sbellard #define ELF_CLASS       ELFCLASS32
20530ac07d4Sbellard #define ELF_ARCH        EM_386
20630ac07d4Sbellard 
207d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
208d97ef72eSRichard Henderson                                struct image_info *infop)
209e5fe0c52Spbrook {
210e5fe0c52Spbrook     regs->esp = infop->start_stack;
211e5fe0c52Spbrook     regs->eip = infop->entry;
212e5fe0c52Spbrook 
21330ac07d4Sbellard     /* SVR4/i386 ABI (pages 3-31, 3-32) says that when the program
21430ac07d4Sbellard        starts %edx contains a pointer to a function which might be
21530ac07d4Sbellard        registered using `atexit'.  This provides a mean for the
21630ac07d4Sbellard        dynamic linker to call DT_FINI functions for shared libraries
21730ac07d4Sbellard        that have been loaded before the code runs.
21830ac07d4Sbellard 
21930ac07d4Sbellard        A value of 0 tells we have no such handler.  */
220e5fe0c52Spbrook     regs->edx = 0;
221b346ff46Sbellard }
2229edc5d79SMika Westerberg 
2239edc5d79SMika Westerberg #define ELF_NREG    17
224c227f099SAnthony Liguori typedef target_elf_greg_t  target_elf_gregset_t[ELF_NREG];
2259edc5d79SMika Westerberg 
2269edc5d79SMika Westerberg /*
2279edc5d79SMika Westerberg  * Note that ELF_NREG should be 19 as there should be place for
2289edc5d79SMika Westerberg  * TRAPNO and ERR "registers" as well but linux doesn't dump
2299edc5d79SMika Westerberg  * those.
2309edc5d79SMika Westerberg  *
2319edc5d79SMika Westerberg  * See linux kernel: arch/x86/include/asm/elf.h
2329edc5d79SMika Westerberg  */
23305390248SAndreas Färber static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUX86State *env)
2349edc5d79SMika Westerberg {
2359edc5d79SMika Westerberg     (*regs)[0] = env->regs[R_EBX];
2369edc5d79SMika Westerberg     (*regs)[1] = env->regs[R_ECX];
2379edc5d79SMika Westerberg     (*regs)[2] = env->regs[R_EDX];
2389edc5d79SMika Westerberg     (*regs)[3] = env->regs[R_ESI];
2399edc5d79SMika Westerberg     (*regs)[4] = env->regs[R_EDI];
2409edc5d79SMika Westerberg     (*regs)[5] = env->regs[R_EBP];
2419edc5d79SMika Westerberg     (*regs)[6] = env->regs[R_EAX];
2429edc5d79SMika Westerberg     (*regs)[7] = env->segs[R_DS].selector & 0xffff;
2439edc5d79SMika Westerberg     (*regs)[8] = env->segs[R_ES].selector & 0xffff;
2449edc5d79SMika Westerberg     (*regs)[9] = env->segs[R_FS].selector & 0xffff;
2459edc5d79SMika Westerberg     (*regs)[10] = env->segs[R_GS].selector & 0xffff;
2469edc5d79SMika Westerberg     (*regs)[11] = env->regs[R_EAX]; /* XXX */
2479edc5d79SMika Westerberg     (*regs)[12] = env->eip;
2489edc5d79SMika Westerberg     (*regs)[13] = env->segs[R_CS].selector & 0xffff;
2499edc5d79SMika Westerberg     (*regs)[14] = env->eflags;
2509edc5d79SMika Westerberg     (*regs)[15] = env->regs[R_ESP];
2519edc5d79SMika Westerberg     (*regs)[16] = env->segs[R_SS].selector & 0xffff;
2529edc5d79SMika Westerberg }
25384409ddbSj_mayer #endif
254b346ff46Sbellard 
2559edc5d79SMika Westerberg #define USE_ELF_CORE_DUMP
256b346ff46Sbellard #define ELF_EXEC_PAGESIZE       4096
257b346ff46Sbellard 
258b346ff46Sbellard #endif
259b346ff46Sbellard 
260b346ff46Sbellard #ifdef TARGET_ARM
261b346ff46Sbellard 
26224e76ff0SPeter Maydell #ifndef TARGET_AARCH64
26324e76ff0SPeter Maydell /* 32 bit ARM definitions */
26424e76ff0SPeter Maydell 
265b346ff46Sbellard #define ELF_START_MMAP 0x80000000
266b346ff46Sbellard 
267b597c3f7SPeter Crosthwaite #define ELF_ARCH        EM_ARM
268b346ff46Sbellard #define ELF_CLASS       ELFCLASS32
269b346ff46Sbellard 
270d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
271d97ef72eSRichard Henderson                                struct image_info *infop)
272b346ff46Sbellard {
273992f48a0Sblueswir1     abi_long stack = infop->start_stack;
274b346ff46Sbellard     memset(regs, 0, sizeof(*regs));
27599033caeSAlexander Graf 
276167e4cdcSPeter Maydell     regs->uregs[16] = ARM_CPU_MODE_USR;
277167e4cdcSPeter Maydell     if (infop->entry & 1) {
278167e4cdcSPeter Maydell         regs->uregs[16] |= CPSR_T;
279167e4cdcSPeter Maydell     }
280167e4cdcSPeter Maydell     regs->uregs[15] = infop->entry & 0xfffffffe;
281167e4cdcSPeter Maydell     regs->uregs[13] = infop->start_stack;
2822f619698Sbellard     /* FIXME - what to for failure of get_user()? */
283167e4cdcSPeter Maydell     get_user_ual(regs->uregs[2], stack + 8); /* envp */
284167e4cdcSPeter Maydell     get_user_ual(regs->uregs[1], stack + 4); /* envp */
285a1516e92Sbellard     /* XXX: it seems that r0 is zeroed after ! */
286167e4cdcSPeter Maydell     regs->uregs[0] = 0;
287e5fe0c52Spbrook     /* For uClinux PIC binaries.  */
288863cf0b7Sj_mayer     /* XXX: Linux does this only on ARM with no MMU (do we care ?) */
289167e4cdcSPeter Maydell     regs->uregs[10] = infop->start_data;
290b346ff46Sbellard }
291b346ff46Sbellard 
292edf8e2afSMika Westerberg #define ELF_NREG    18
293c227f099SAnthony Liguori typedef target_elf_greg_t  target_elf_gregset_t[ELF_NREG];
294edf8e2afSMika Westerberg 
29505390248SAndreas Färber static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUARMState *env)
296edf8e2afSMika Westerberg {
29786cd7b2dSPaolo Bonzini     (*regs)[0] = tswapreg(env->regs[0]);
29886cd7b2dSPaolo Bonzini     (*regs)[1] = tswapreg(env->regs[1]);
29986cd7b2dSPaolo Bonzini     (*regs)[2] = tswapreg(env->regs[2]);
30086cd7b2dSPaolo Bonzini     (*regs)[3] = tswapreg(env->regs[3]);
30186cd7b2dSPaolo Bonzini     (*regs)[4] = tswapreg(env->regs[4]);
30286cd7b2dSPaolo Bonzini     (*regs)[5] = tswapreg(env->regs[5]);
30386cd7b2dSPaolo Bonzini     (*regs)[6] = tswapreg(env->regs[6]);
30486cd7b2dSPaolo Bonzini     (*regs)[7] = tswapreg(env->regs[7]);
30586cd7b2dSPaolo Bonzini     (*regs)[8] = tswapreg(env->regs[8]);
30686cd7b2dSPaolo Bonzini     (*regs)[9] = tswapreg(env->regs[9]);
30786cd7b2dSPaolo Bonzini     (*regs)[10] = tswapreg(env->regs[10]);
30886cd7b2dSPaolo Bonzini     (*regs)[11] = tswapreg(env->regs[11]);
30986cd7b2dSPaolo Bonzini     (*regs)[12] = tswapreg(env->regs[12]);
31086cd7b2dSPaolo Bonzini     (*regs)[13] = tswapreg(env->regs[13]);
31186cd7b2dSPaolo Bonzini     (*regs)[14] = tswapreg(env->regs[14]);
31286cd7b2dSPaolo Bonzini     (*regs)[15] = tswapreg(env->regs[15]);
313edf8e2afSMika Westerberg 
31486cd7b2dSPaolo Bonzini     (*regs)[16] = tswapreg(cpsr_read((CPUARMState *)env));
31586cd7b2dSPaolo Bonzini     (*regs)[17] = tswapreg(env->regs[0]); /* XXX */
316edf8e2afSMika Westerberg }
317edf8e2afSMika Westerberg 
31830ac07d4Sbellard #define USE_ELF_CORE_DUMP
31930ac07d4Sbellard #define ELF_EXEC_PAGESIZE       4096
32030ac07d4Sbellard 
321afce2927Sbellard enum
322afce2927Sbellard {
323afce2927Sbellard     ARM_HWCAP_ARM_SWP       = 1 << 0,
324afce2927Sbellard     ARM_HWCAP_ARM_HALF      = 1 << 1,
325afce2927Sbellard     ARM_HWCAP_ARM_THUMB     = 1 << 2,
326afce2927Sbellard     ARM_HWCAP_ARM_26BIT     = 1 << 3,
327afce2927Sbellard     ARM_HWCAP_ARM_FAST_MULT = 1 << 4,
328afce2927Sbellard     ARM_HWCAP_ARM_FPA       = 1 << 5,
329afce2927Sbellard     ARM_HWCAP_ARM_VFP       = 1 << 6,
330afce2927Sbellard     ARM_HWCAP_ARM_EDSP      = 1 << 7,
331cf6de34aSRiku Voipio     ARM_HWCAP_ARM_JAVA      = 1 << 8,
332cf6de34aSRiku Voipio     ARM_HWCAP_ARM_IWMMXT    = 1 << 9,
33343ce393eSPeter Maydell     ARM_HWCAP_ARM_CRUNCH    = 1 << 10,
33443ce393eSPeter Maydell     ARM_HWCAP_ARM_THUMBEE   = 1 << 11,
33543ce393eSPeter Maydell     ARM_HWCAP_ARM_NEON      = 1 << 12,
33643ce393eSPeter Maydell     ARM_HWCAP_ARM_VFPv3     = 1 << 13,
33743ce393eSPeter Maydell     ARM_HWCAP_ARM_VFPv3D16  = 1 << 14,
33824682654SPeter Maydell     ARM_HWCAP_ARM_TLS       = 1 << 15,
33924682654SPeter Maydell     ARM_HWCAP_ARM_VFPv4     = 1 << 16,
34024682654SPeter Maydell     ARM_HWCAP_ARM_IDIVA     = 1 << 17,
34124682654SPeter Maydell     ARM_HWCAP_ARM_IDIVT     = 1 << 18,
34224682654SPeter Maydell     ARM_HWCAP_ARM_VFPD32    = 1 << 19,
34324682654SPeter Maydell     ARM_HWCAP_ARM_LPAE      = 1 << 20,
34424682654SPeter Maydell     ARM_HWCAP_ARM_EVTSTRM   = 1 << 21,
345afce2927Sbellard };
346afce2927Sbellard 
347ad6919dcSPeter Maydell enum {
348ad6919dcSPeter Maydell     ARM_HWCAP2_ARM_AES      = 1 << 0,
349ad6919dcSPeter Maydell     ARM_HWCAP2_ARM_PMULL    = 1 << 1,
350ad6919dcSPeter Maydell     ARM_HWCAP2_ARM_SHA1     = 1 << 2,
351ad6919dcSPeter Maydell     ARM_HWCAP2_ARM_SHA2     = 1 << 3,
352ad6919dcSPeter Maydell     ARM_HWCAP2_ARM_CRC32    = 1 << 4,
353ad6919dcSPeter Maydell };
354ad6919dcSPeter Maydell 
3556b1275ffSPeter Maydell /* The commpage only exists for 32 bit kernels */
3566b1275ffSPeter Maydell 
357806d1021SMeador Inge /* Return 1 if the proposed guest space is suitable for the guest.
358806d1021SMeador Inge  * Return 0 if the proposed guest space isn't suitable, but another
359806d1021SMeador Inge  * address space should be tried.
360806d1021SMeador Inge  * Return -1 if there is no way the proposed guest space can be
361806d1021SMeador Inge  * valid regardless of the base.
362806d1021SMeador Inge  * The guest code may leave a page mapped and populate it if the
363806d1021SMeador Inge  * address is suitable.
364806d1021SMeador Inge  */
365c3637eafSLuke Shumaker static int init_guest_commpage(unsigned long guest_base,
366806d1021SMeador Inge                                unsigned long guest_size)
36797cc7560SDr. David Alan Gilbert {
36897cc7560SDr. David Alan Gilbert     unsigned long real_start, test_page_addr;
36997cc7560SDr. David Alan Gilbert 
37097cc7560SDr. David Alan Gilbert     /* We need to check that we can force a fault on access to the
37197cc7560SDr. David Alan Gilbert      * commpage at 0xffff0fxx
37297cc7560SDr. David Alan Gilbert      */
37397cc7560SDr. David Alan Gilbert     test_page_addr = guest_base + (0xffff0f00 & qemu_host_page_mask);
374806d1021SMeador Inge 
375806d1021SMeador Inge     /* If the commpage lies within the already allocated guest space,
376806d1021SMeador Inge      * then there is no way we can allocate it.
377955e304fSLuke Shumaker      *
378955e304fSLuke Shumaker      * You may be thinking that that this check is redundant because
379955e304fSLuke Shumaker      * we already validated the guest size against MAX_RESERVED_VA;
380955e304fSLuke Shumaker      * but if qemu_host_page_mask is unusually large, then
381955e304fSLuke Shumaker      * test_page_addr may be lower.
382806d1021SMeador Inge      */
383806d1021SMeador Inge     if (test_page_addr >= guest_base
384e568f9dfSPeter Maydell         && test_page_addr < (guest_base + guest_size)) {
385806d1021SMeador Inge         return -1;
386806d1021SMeador Inge     }
387806d1021SMeador Inge 
38897cc7560SDr. David Alan Gilbert     /* Note it needs to be writeable to let us initialise it */
38997cc7560SDr. David Alan Gilbert     real_start = (unsigned long)
39097cc7560SDr. David Alan Gilbert                  mmap((void *)test_page_addr, qemu_host_page_size,
39197cc7560SDr. David Alan Gilbert                      PROT_READ | PROT_WRITE,
39297cc7560SDr. David Alan Gilbert                      MAP_ANONYMOUS | MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
39397cc7560SDr. David Alan Gilbert 
39497cc7560SDr. David Alan Gilbert     /* If we can't map it then try another address */
39597cc7560SDr. David Alan Gilbert     if (real_start == -1ul) {
39697cc7560SDr. David Alan Gilbert         return 0;
39797cc7560SDr. David Alan Gilbert     }
39897cc7560SDr. David Alan Gilbert 
39997cc7560SDr. David Alan Gilbert     if (real_start != test_page_addr) {
40097cc7560SDr. David Alan Gilbert         /* OS didn't put the page where we asked - unmap and reject */
40197cc7560SDr. David Alan Gilbert         munmap((void *)real_start, qemu_host_page_size);
40297cc7560SDr. David Alan Gilbert         return 0;
40397cc7560SDr. David Alan Gilbert     }
40497cc7560SDr. David Alan Gilbert 
40597cc7560SDr. David Alan Gilbert     /* Leave the page mapped
40697cc7560SDr. David Alan Gilbert      * Populate it (mmap should have left it all 0'd)
40797cc7560SDr. David Alan Gilbert      */
40897cc7560SDr. David Alan Gilbert 
40997cc7560SDr. David Alan Gilbert     /* Kernel helper versions */
41097cc7560SDr. David Alan Gilbert     __put_user(5, (uint32_t *)g2h(0xffff0ffcul));
41197cc7560SDr. David Alan Gilbert 
41297cc7560SDr. David Alan Gilbert     /* Now it's populated make it RO */
41397cc7560SDr. David Alan Gilbert     if (mprotect((void *)test_page_addr, qemu_host_page_size, PROT_READ)) {
41497cc7560SDr. David Alan Gilbert         perror("Protecting guest commpage");
41597cc7560SDr. David Alan Gilbert         exit(-1);
41697cc7560SDr. David Alan Gilbert     }
41797cc7560SDr. David Alan Gilbert 
41897cc7560SDr. David Alan Gilbert     return 1; /* All good */
41997cc7560SDr. David Alan Gilbert }
420adf050b1SBenoit Canet 
421adf050b1SBenoit Canet #define ELF_HWCAP get_elf_hwcap()
422ad6919dcSPeter Maydell #define ELF_HWCAP2 get_elf_hwcap2()
423adf050b1SBenoit Canet 
424adf050b1SBenoit Canet static uint32_t get_elf_hwcap(void)
425adf050b1SBenoit Canet {
426a2247f8eSAndreas Färber     ARMCPU *cpu = ARM_CPU(thread_cpu);
427adf050b1SBenoit Canet     uint32_t hwcaps = 0;
428adf050b1SBenoit Canet 
429adf050b1SBenoit Canet     hwcaps |= ARM_HWCAP_ARM_SWP;
430adf050b1SBenoit Canet     hwcaps |= ARM_HWCAP_ARM_HALF;
431adf050b1SBenoit Canet     hwcaps |= ARM_HWCAP_ARM_THUMB;
432adf050b1SBenoit Canet     hwcaps |= ARM_HWCAP_ARM_FAST_MULT;
433adf050b1SBenoit Canet 
434adf050b1SBenoit Canet     /* probe for the extra features */
435adf050b1SBenoit Canet #define GET_FEATURE(feat, hwcap) \
436a2247f8eSAndreas Färber     do { if (arm_feature(&cpu->env, feat)) { hwcaps |= hwcap; } } while (0)
43724682654SPeter Maydell     /* EDSP is in v5TE and above, but all our v5 CPUs are v5TE */
43824682654SPeter Maydell     GET_FEATURE(ARM_FEATURE_V5, ARM_HWCAP_ARM_EDSP);
439adf050b1SBenoit Canet     GET_FEATURE(ARM_FEATURE_VFP, ARM_HWCAP_ARM_VFP);
440adf050b1SBenoit Canet     GET_FEATURE(ARM_FEATURE_IWMMXT, ARM_HWCAP_ARM_IWMMXT);
441adf050b1SBenoit Canet     GET_FEATURE(ARM_FEATURE_THUMB2EE, ARM_HWCAP_ARM_THUMBEE);
442adf050b1SBenoit Canet     GET_FEATURE(ARM_FEATURE_NEON, ARM_HWCAP_ARM_NEON);
443adf050b1SBenoit Canet     GET_FEATURE(ARM_FEATURE_VFP3, ARM_HWCAP_ARM_VFPv3);
44424682654SPeter Maydell     GET_FEATURE(ARM_FEATURE_V6K, ARM_HWCAP_ARM_TLS);
44524682654SPeter Maydell     GET_FEATURE(ARM_FEATURE_VFP4, ARM_HWCAP_ARM_VFPv4);
44624682654SPeter Maydell     GET_FEATURE(ARM_FEATURE_ARM_DIV, ARM_HWCAP_ARM_IDIVA);
44724682654SPeter Maydell     GET_FEATURE(ARM_FEATURE_THUMB_DIV, ARM_HWCAP_ARM_IDIVT);
44824682654SPeter Maydell     /* All QEMU's VFPv3 CPUs have 32 registers, see VFP_DREG in translate.c.
44924682654SPeter Maydell      * Note that the ARM_HWCAP_ARM_VFPv3D16 bit is always the inverse of
45024682654SPeter Maydell      * ARM_HWCAP_ARM_VFPD32 (and so always clear for QEMU); it is unrelated
45124682654SPeter Maydell      * to our VFP_FP16 feature bit.
45224682654SPeter Maydell      */
45324682654SPeter Maydell     GET_FEATURE(ARM_FEATURE_VFP3, ARM_HWCAP_ARM_VFPD32);
45424682654SPeter Maydell     GET_FEATURE(ARM_FEATURE_LPAE, ARM_HWCAP_ARM_LPAE);
455adf050b1SBenoit Canet 
456adf050b1SBenoit Canet     return hwcaps;
457adf050b1SBenoit Canet }
458afce2927Sbellard 
459ad6919dcSPeter Maydell static uint32_t get_elf_hwcap2(void)
460ad6919dcSPeter Maydell {
461ad6919dcSPeter Maydell     ARMCPU *cpu = ARM_CPU(thread_cpu);
462ad6919dcSPeter Maydell     uint32_t hwcaps = 0;
463ad6919dcSPeter Maydell 
464ad6919dcSPeter Maydell     GET_FEATURE(ARM_FEATURE_V8_AES, ARM_HWCAP2_ARM_AES);
4654e624edaSPeter Maydell     GET_FEATURE(ARM_FEATURE_V8_PMULL, ARM_HWCAP2_ARM_PMULL);
466f1ecb913SArd Biesheuvel     GET_FEATURE(ARM_FEATURE_V8_SHA1, ARM_HWCAP2_ARM_SHA1);
467f1ecb913SArd Biesheuvel     GET_FEATURE(ARM_FEATURE_V8_SHA256, ARM_HWCAP2_ARM_SHA2);
468ad6919dcSPeter Maydell     GET_FEATURE(ARM_FEATURE_CRC, ARM_HWCAP2_ARM_CRC32);
469ad6919dcSPeter Maydell     return hwcaps;
470ad6919dcSPeter Maydell }
471ad6919dcSPeter Maydell 
472ad6919dcSPeter Maydell #undef GET_FEATURE
473ad6919dcSPeter Maydell 
47424e76ff0SPeter Maydell #else
47524e76ff0SPeter Maydell /* 64 bit ARM definitions */
47624e76ff0SPeter Maydell #define ELF_START_MMAP 0x80000000
47724e76ff0SPeter Maydell 
478b597c3f7SPeter Crosthwaite #define ELF_ARCH        EM_AARCH64
47924e76ff0SPeter Maydell #define ELF_CLASS       ELFCLASS64
48024e76ff0SPeter Maydell #define ELF_PLATFORM    "aarch64"
48124e76ff0SPeter Maydell 
48224e76ff0SPeter Maydell static inline void init_thread(struct target_pt_regs *regs,
48324e76ff0SPeter Maydell                                struct image_info *infop)
48424e76ff0SPeter Maydell {
48524e76ff0SPeter Maydell     abi_long stack = infop->start_stack;
48624e76ff0SPeter Maydell     memset(regs, 0, sizeof(*regs));
48724e76ff0SPeter Maydell 
48824e76ff0SPeter Maydell     regs->pc = infop->entry & ~0x3ULL;
48924e76ff0SPeter Maydell     regs->sp = stack;
49024e76ff0SPeter Maydell }
49124e76ff0SPeter Maydell 
49224e76ff0SPeter Maydell #define ELF_NREG    34
49324e76ff0SPeter Maydell typedef target_elf_greg_t  target_elf_gregset_t[ELF_NREG];
49424e76ff0SPeter Maydell 
49524e76ff0SPeter Maydell static void elf_core_copy_regs(target_elf_gregset_t *regs,
49624e76ff0SPeter Maydell                                const CPUARMState *env)
49724e76ff0SPeter Maydell {
49824e76ff0SPeter Maydell     int i;
49924e76ff0SPeter Maydell 
50024e76ff0SPeter Maydell     for (i = 0; i < 32; i++) {
50124e76ff0SPeter Maydell         (*regs)[i] = tswapreg(env->xregs[i]);
50224e76ff0SPeter Maydell     }
50324e76ff0SPeter Maydell     (*regs)[32] = tswapreg(env->pc);
50424e76ff0SPeter Maydell     (*regs)[33] = tswapreg(pstate_read((CPUARMState *)env));
50524e76ff0SPeter Maydell }
50624e76ff0SPeter Maydell 
50724e76ff0SPeter Maydell #define USE_ELF_CORE_DUMP
50824e76ff0SPeter Maydell #define ELF_EXEC_PAGESIZE       4096
50924e76ff0SPeter Maydell 
51024e76ff0SPeter Maydell enum {
51124e76ff0SPeter Maydell     ARM_HWCAP_A64_FP            = 1 << 0,
51224e76ff0SPeter Maydell     ARM_HWCAP_A64_ASIMD         = 1 << 1,
51324e76ff0SPeter Maydell     ARM_HWCAP_A64_EVTSTRM       = 1 << 2,
51424e76ff0SPeter Maydell     ARM_HWCAP_A64_AES           = 1 << 3,
51524e76ff0SPeter Maydell     ARM_HWCAP_A64_PMULL         = 1 << 4,
51624e76ff0SPeter Maydell     ARM_HWCAP_A64_SHA1          = 1 << 5,
51724e76ff0SPeter Maydell     ARM_HWCAP_A64_SHA2          = 1 << 6,
51824e76ff0SPeter Maydell     ARM_HWCAP_A64_CRC32         = 1 << 7,
519955f56d4SArd Biesheuvel     ARM_HWCAP_A64_ATOMICS       = 1 << 8,
520955f56d4SArd Biesheuvel     ARM_HWCAP_A64_FPHP          = 1 << 9,
521955f56d4SArd Biesheuvel     ARM_HWCAP_A64_ASIMDHP       = 1 << 10,
522955f56d4SArd Biesheuvel     ARM_HWCAP_A64_CPUID         = 1 << 11,
523955f56d4SArd Biesheuvel     ARM_HWCAP_A64_ASIMDRDM      = 1 << 12,
524955f56d4SArd Biesheuvel     ARM_HWCAP_A64_JSCVT         = 1 << 13,
525955f56d4SArd Biesheuvel     ARM_HWCAP_A64_FCMA          = 1 << 14,
526955f56d4SArd Biesheuvel     ARM_HWCAP_A64_LRCPC         = 1 << 15,
527955f56d4SArd Biesheuvel     ARM_HWCAP_A64_DCPOP         = 1 << 16,
528955f56d4SArd Biesheuvel     ARM_HWCAP_A64_SHA3          = 1 << 17,
529955f56d4SArd Biesheuvel     ARM_HWCAP_A64_SM3           = 1 << 18,
530955f56d4SArd Biesheuvel     ARM_HWCAP_A64_SM4           = 1 << 19,
531955f56d4SArd Biesheuvel     ARM_HWCAP_A64_ASIMDDP       = 1 << 20,
532955f56d4SArd Biesheuvel     ARM_HWCAP_A64_SHA512        = 1 << 21,
533955f56d4SArd Biesheuvel     ARM_HWCAP_A64_SVE           = 1 << 22,
53424e76ff0SPeter Maydell };
53524e76ff0SPeter Maydell 
53624e76ff0SPeter Maydell #define ELF_HWCAP get_elf_hwcap()
53724e76ff0SPeter Maydell 
53824e76ff0SPeter Maydell static uint32_t get_elf_hwcap(void)
53924e76ff0SPeter Maydell {
54024e76ff0SPeter Maydell     ARMCPU *cpu = ARM_CPU(thread_cpu);
54124e76ff0SPeter Maydell     uint32_t hwcaps = 0;
54224e76ff0SPeter Maydell 
54324e76ff0SPeter Maydell     hwcaps |= ARM_HWCAP_A64_FP;
54424e76ff0SPeter Maydell     hwcaps |= ARM_HWCAP_A64_ASIMD;
54524e76ff0SPeter Maydell 
54624e76ff0SPeter Maydell     /* probe for the extra features */
54724e76ff0SPeter Maydell #define GET_FEATURE(feat, hwcap) \
54824e76ff0SPeter Maydell     do { if (arm_feature(&cpu->env, feat)) { hwcaps |= hwcap; } } while (0)
5495acc765cSPeter Maydell     GET_FEATURE(ARM_FEATURE_V8_AES, ARM_HWCAP_A64_AES);
550411bdc78SPeter Maydell     GET_FEATURE(ARM_FEATURE_V8_PMULL, ARM_HWCAP_A64_PMULL);
551f6fe04d5SPeter Maydell     GET_FEATURE(ARM_FEATURE_V8_SHA1, ARM_HWCAP_A64_SHA1);
552f6fe04d5SPeter Maydell     GET_FEATURE(ARM_FEATURE_V8_SHA256, ARM_HWCAP_A64_SHA2);
553130f2e7dSPeter Maydell     GET_FEATURE(ARM_FEATURE_CRC, ARM_HWCAP_A64_CRC32);
554955f56d4SArd Biesheuvel     GET_FEATURE(ARM_FEATURE_V8_SHA3, ARM_HWCAP_A64_SHA3);
555955f56d4SArd Biesheuvel     GET_FEATURE(ARM_FEATURE_V8_SM3, ARM_HWCAP_A64_SM3);
556955f56d4SArd Biesheuvel     GET_FEATURE(ARM_FEATURE_V8_SM4, ARM_HWCAP_A64_SM4);
557955f56d4SArd Biesheuvel     GET_FEATURE(ARM_FEATURE_V8_SHA512, ARM_HWCAP_A64_SHA512);
558201b19d5SPeter Maydell     GET_FEATURE(ARM_FEATURE_V8_FP16,
559201b19d5SPeter Maydell                 ARM_HWCAP_A64_FPHP | ARM_HWCAP_A64_ASIMDHP);
5601dc81c15SRichard Henderson     GET_FEATURE(ARM_FEATURE_V8_RDM, ARM_HWCAP_A64_ASIMDRDM);
5610438f037SRichard Henderson     GET_FEATURE(ARM_FEATURE_V8_FCMA, ARM_HWCAP_A64_FCMA);
56224e76ff0SPeter Maydell #undef GET_FEATURE
56324e76ff0SPeter Maydell 
56424e76ff0SPeter Maydell     return hwcaps;
56524e76ff0SPeter Maydell }
56624e76ff0SPeter Maydell 
56724e76ff0SPeter Maydell #endif /* not TARGET_AARCH64 */
56824e76ff0SPeter Maydell #endif /* TARGET_ARM */
56930ac07d4Sbellard 
570853d6f7aSbellard #ifdef TARGET_SPARC
571a315a145Sbellard #ifdef TARGET_SPARC64
572853d6f7aSbellard 
573853d6f7aSbellard #define ELF_START_MMAP 0x80000000
574cf973e46SArtyom Tarasenko #define ELF_HWCAP  (HWCAP_SPARC_FLUSH | HWCAP_SPARC_STBAR | HWCAP_SPARC_SWAP \
575cf973e46SArtyom Tarasenko                     | HWCAP_SPARC_MULDIV | HWCAP_SPARC_V9)
576992f48a0Sblueswir1 #ifndef TARGET_ABI32
577cb33da57Sblueswir1 #define elf_check_arch(x) ( (x) == EM_SPARCV9 || (x) == EM_SPARC32PLUS )
578992f48a0Sblueswir1 #else
579992f48a0Sblueswir1 #define elf_check_arch(x) ( (x) == EM_SPARC32PLUS || (x) == EM_SPARC )
580992f48a0Sblueswir1 #endif
581853d6f7aSbellard 
582a315a145Sbellard #define ELF_CLASS   ELFCLASS64
5835ef54116Sbellard #define ELF_ARCH    EM_SPARCV9
5845ef54116Sbellard 
5855ef54116Sbellard #define STACK_BIAS              2047
586a315a145Sbellard 
587d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
588d97ef72eSRichard Henderson                                struct image_info *infop)
589a315a145Sbellard {
590992f48a0Sblueswir1 #ifndef TARGET_ABI32
591a315a145Sbellard     regs->tstate = 0;
592992f48a0Sblueswir1 #endif
593a315a145Sbellard     regs->pc = infop->entry;
594a315a145Sbellard     regs->npc = regs->pc + 4;
595a315a145Sbellard     regs->y = 0;
596992f48a0Sblueswir1 #ifdef TARGET_ABI32
597992f48a0Sblueswir1     regs->u_regs[14] = infop->start_stack - 16 * 4;
598992f48a0Sblueswir1 #else
599cb33da57Sblueswir1     if (personality(infop->personality) == PER_LINUX32)
600cb33da57Sblueswir1         regs->u_regs[14] = infop->start_stack - 16 * 4;
601cb33da57Sblueswir1     else
6025ef54116Sbellard         regs->u_regs[14] = infop->start_stack - 16 * 8 - STACK_BIAS;
603992f48a0Sblueswir1 #endif
604a315a145Sbellard }
605a315a145Sbellard 
606a315a145Sbellard #else
607a315a145Sbellard #define ELF_START_MMAP 0x80000000
608cf973e46SArtyom Tarasenko #define ELF_HWCAP  (HWCAP_SPARC_FLUSH | HWCAP_SPARC_STBAR | HWCAP_SPARC_SWAP \
609cf973e46SArtyom Tarasenko                     | HWCAP_SPARC_MULDIV)
610a315a145Sbellard 
611853d6f7aSbellard #define ELF_CLASS   ELFCLASS32
612853d6f7aSbellard #define ELF_ARCH    EM_SPARC
613853d6f7aSbellard 
614d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
615d97ef72eSRichard Henderson                                struct image_info *infop)
616853d6f7aSbellard {
617f5155289Sbellard     regs->psr = 0;
618f5155289Sbellard     regs->pc = infop->entry;
619f5155289Sbellard     regs->npc = regs->pc + 4;
620f5155289Sbellard     regs->y = 0;
621f5155289Sbellard     regs->u_regs[14] = infop->start_stack - 16 * 4;
622853d6f7aSbellard }
623853d6f7aSbellard 
624853d6f7aSbellard #endif
625a315a145Sbellard #endif
626853d6f7aSbellard 
62767867308Sbellard #ifdef TARGET_PPC
62867867308Sbellard 
6294ecd4d16SPeter Crosthwaite #define ELF_MACHINE    PPC_ELF_MACHINE
63067867308Sbellard #define ELF_START_MMAP 0x80000000
63167867308Sbellard 
632e85e7c6eSj_mayer #if defined(TARGET_PPC64) && !defined(TARGET_ABI32)
63384409ddbSj_mayer 
63484409ddbSj_mayer #define elf_check_arch(x) ( (x) == EM_PPC64 )
63584409ddbSj_mayer 
63684409ddbSj_mayer #define ELF_CLASS       ELFCLASS64
63784409ddbSj_mayer 
63884409ddbSj_mayer #else
63984409ddbSj_mayer 
64067867308Sbellard #define ELF_CLASS       ELFCLASS32
64184409ddbSj_mayer 
64284409ddbSj_mayer #endif
64384409ddbSj_mayer 
64467867308Sbellard #define ELF_ARCH        EM_PPC
64567867308Sbellard 
646df84e4f3SNathan Froyd /* Feature masks for the Aux Vector Hardware Capabilities (AT_HWCAP).
647df84e4f3SNathan Froyd    See arch/powerpc/include/asm/cputable.h.  */
648df84e4f3SNathan Froyd enum {
6493efa9a67Smalc     QEMU_PPC_FEATURE_32 = 0x80000000,
6503efa9a67Smalc     QEMU_PPC_FEATURE_64 = 0x40000000,
6513efa9a67Smalc     QEMU_PPC_FEATURE_601_INSTR = 0x20000000,
6523efa9a67Smalc     QEMU_PPC_FEATURE_HAS_ALTIVEC = 0x10000000,
6533efa9a67Smalc     QEMU_PPC_FEATURE_HAS_FPU = 0x08000000,
6543efa9a67Smalc     QEMU_PPC_FEATURE_HAS_MMU = 0x04000000,
6553efa9a67Smalc     QEMU_PPC_FEATURE_HAS_4xxMAC = 0x02000000,
6563efa9a67Smalc     QEMU_PPC_FEATURE_UNIFIED_CACHE = 0x01000000,
6573efa9a67Smalc     QEMU_PPC_FEATURE_HAS_SPE = 0x00800000,
6583efa9a67Smalc     QEMU_PPC_FEATURE_HAS_EFP_SINGLE = 0x00400000,
6593efa9a67Smalc     QEMU_PPC_FEATURE_HAS_EFP_DOUBLE = 0x00200000,
6603efa9a67Smalc     QEMU_PPC_FEATURE_NO_TB = 0x00100000,
6613efa9a67Smalc     QEMU_PPC_FEATURE_POWER4 = 0x00080000,
6623efa9a67Smalc     QEMU_PPC_FEATURE_POWER5 = 0x00040000,
6633efa9a67Smalc     QEMU_PPC_FEATURE_POWER5_PLUS = 0x00020000,
6643efa9a67Smalc     QEMU_PPC_FEATURE_CELL = 0x00010000,
6653efa9a67Smalc     QEMU_PPC_FEATURE_BOOKE = 0x00008000,
6663efa9a67Smalc     QEMU_PPC_FEATURE_SMT = 0x00004000,
6673efa9a67Smalc     QEMU_PPC_FEATURE_ICACHE_SNOOP = 0x00002000,
6683efa9a67Smalc     QEMU_PPC_FEATURE_ARCH_2_05 = 0x00001000,
6693efa9a67Smalc     QEMU_PPC_FEATURE_PA6T = 0x00000800,
6703efa9a67Smalc     QEMU_PPC_FEATURE_HAS_DFP = 0x00000400,
6713efa9a67Smalc     QEMU_PPC_FEATURE_POWER6_EXT = 0x00000200,
6723efa9a67Smalc     QEMU_PPC_FEATURE_ARCH_2_06 = 0x00000100,
6733efa9a67Smalc     QEMU_PPC_FEATURE_HAS_VSX = 0x00000080,
6743efa9a67Smalc     QEMU_PPC_FEATURE_PSERIES_PERFMON_COMPAT = 0x00000040,
675df84e4f3SNathan Froyd 
6763efa9a67Smalc     QEMU_PPC_FEATURE_TRUE_LE = 0x00000002,
6773efa9a67Smalc     QEMU_PPC_FEATURE_PPC_LE = 0x00000001,
678a60438ddSTom Musta 
679a60438ddSTom Musta     /* Feature definitions in AT_HWCAP2.  */
680a60438ddSTom Musta     QEMU_PPC_FEATURE2_ARCH_2_07 = 0x80000000, /* ISA 2.07 */
681a60438ddSTom Musta     QEMU_PPC_FEATURE2_HAS_HTM = 0x40000000, /* Hardware Transactional Memory */
682a60438ddSTom Musta     QEMU_PPC_FEATURE2_HAS_DSCR = 0x20000000, /* Data Stream Control Register */
683a60438ddSTom Musta     QEMU_PPC_FEATURE2_HAS_EBB = 0x10000000, /* Event Base Branching */
684a60438ddSTom Musta     QEMU_PPC_FEATURE2_HAS_ISEL = 0x08000000, /* Integer Select */
685a60438ddSTom Musta     QEMU_PPC_FEATURE2_HAS_TAR = 0x04000000, /* Target Address Register */
686df84e4f3SNathan Froyd };
687df84e4f3SNathan Froyd 
688df84e4f3SNathan Froyd #define ELF_HWCAP get_elf_hwcap()
689df84e4f3SNathan Froyd 
690df84e4f3SNathan Froyd static uint32_t get_elf_hwcap(void)
691df84e4f3SNathan Froyd {
692a2247f8eSAndreas Färber     PowerPCCPU *cpu = POWERPC_CPU(thread_cpu);
693df84e4f3SNathan Froyd     uint32_t features = 0;
694df84e4f3SNathan Froyd 
695df84e4f3SNathan Froyd     /* We don't have to be terribly complete here; the high points are
696df84e4f3SNathan Froyd        Altivec/FP/SPE support.  Anything else is just a bonus.  */
697df84e4f3SNathan Froyd #define GET_FEATURE(flag, feature)                                      \
698a2247f8eSAndreas Färber     do { if (cpu->env.insns_flags & flag) { features |= feature; } } while (0)
69958eb5308SMichael Walle #define GET_FEATURE2(flags, feature) \
70058eb5308SMichael Walle     do { \
70158eb5308SMichael Walle         if ((cpu->env.insns_flags2 & flags) == flags) { \
70258eb5308SMichael Walle             features |= feature; \
70358eb5308SMichael Walle         } \
70458eb5308SMichael Walle     } while (0)
7053efa9a67Smalc     GET_FEATURE(PPC_64B, QEMU_PPC_FEATURE_64);
7063efa9a67Smalc     GET_FEATURE(PPC_FLOAT, QEMU_PPC_FEATURE_HAS_FPU);
7073efa9a67Smalc     GET_FEATURE(PPC_ALTIVEC, QEMU_PPC_FEATURE_HAS_ALTIVEC);
7083efa9a67Smalc     GET_FEATURE(PPC_SPE, QEMU_PPC_FEATURE_HAS_SPE);
7093efa9a67Smalc     GET_FEATURE(PPC_SPE_SINGLE, QEMU_PPC_FEATURE_HAS_EFP_SINGLE);
7103efa9a67Smalc     GET_FEATURE(PPC_SPE_DOUBLE, QEMU_PPC_FEATURE_HAS_EFP_DOUBLE);
7113efa9a67Smalc     GET_FEATURE(PPC_BOOKE, QEMU_PPC_FEATURE_BOOKE);
7123efa9a67Smalc     GET_FEATURE(PPC_405_MAC, QEMU_PPC_FEATURE_HAS_4xxMAC);
7130e019746STom Musta     GET_FEATURE2(PPC2_DFP, QEMU_PPC_FEATURE_HAS_DFP);
7140e019746STom Musta     GET_FEATURE2(PPC2_VSX, QEMU_PPC_FEATURE_HAS_VSX);
7150e019746STom Musta     GET_FEATURE2((PPC2_PERM_ISA206 | PPC2_DIVE_ISA206 | PPC2_ATOMIC_ISA206 |
7160e019746STom Musta                   PPC2_FP_CVT_ISA206 | PPC2_FP_TST_ISA206),
7170e019746STom Musta                   QEMU_PPC_FEATURE_ARCH_2_06);
718df84e4f3SNathan Froyd #undef GET_FEATURE
7190e019746STom Musta #undef GET_FEATURE2
720df84e4f3SNathan Froyd 
721df84e4f3SNathan Froyd     return features;
722df84e4f3SNathan Froyd }
723df84e4f3SNathan Froyd 
724a60438ddSTom Musta #define ELF_HWCAP2 get_elf_hwcap2()
725a60438ddSTom Musta 
726a60438ddSTom Musta static uint32_t get_elf_hwcap2(void)
727a60438ddSTom Musta {
728a60438ddSTom Musta     PowerPCCPU *cpu = POWERPC_CPU(thread_cpu);
729a60438ddSTom Musta     uint32_t features = 0;
730a60438ddSTom Musta 
731a60438ddSTom Musta #define GET_FEATURE(flag, feature)                                      \
732a60438ddSTom Musta     do { if (cpu->env.insns_flags & flag) { features |= feature; } } while (0)
733a60438ddSTom Musta #define GET_FEATURE2(flag, feature)                                      \
734a60438ddSTom Musta     do { if (cpu->env.insns_flags2 & flag) { features |= feature; } } while (0)
735a60438ddSTom Musta 
736a60438ddSTom Musta     GET_FEATURE(PPC_ISEL, QEMU_PPC_FEATURE2_HAS_ISEL);
737a60438ddSTom Musta     GET_FEATURE2(PPC2_BCTAR_ISA207, QEMU_PPC_FEATURE2_HAS_TAR);
738a60438ddSTom Musta     GET_FEATURE2((PPC2_BCTAR_ISA207 | PPC2_LSQ_ISA207 | PPC2_ALTIVEC_207 |
739a60438ddSTom Musta                   PPC2_ISA207S), QEMU_PPC_FEATURE2_ARCH_2_07);
740a60438ddSTom Musta 
741a60438ddSTom Musta #undef GET_FEATURE
742a60438ddSTom Musta #undef GET_FEATURE2
743a60438ddSTom Musta 
744a60438ddSTom Musta     return features;
745a60438ddSTom Musta }
746a60438ddSTom Musta 
747f5155289Sbellard /*
748f5155289Sbellard  * The requirements here are:
749f5155289Sbellard  * - keep the final alignment of sp (sp & 0xf)
750f5155289Sbellard  * - make sure the 32-bit value at the first 16 byte aligned position of
751f5155289Sbellard  *   AUXV is greater than 16 for glibc compatibility.
752f5155289Sbellard  *   AT_IGNOREPPC is used for that.
753f5155289Sbellard  * - for compatibility with glibc ARCH_DLINFO must always be defined on PPC,
754f5155289Sbellard  *   even if DLINFO_ARCH_ITEMS goes to zero or is undefined.
755f5155289Sbellard  */
7560bccf03dSbellard #define DLINFO_ARCH_ITEMS       5
757f5155289Sbellard #define ARCH_DLINFO                                     \
758f5155289Sbellard     do {                                                \
759623e250aSTom Musta         PowerPCCPU *cpu = POWERPC_CPU(thread_cpu);              \
760f5155289Sbellard         /*                                              \
76182991bedSPeter Maydell          * Handle glibc compatibility: these magic entries must \
76282991bedSPeter Maydell          * be at the lowest addresses in the final auxv.        \
763f5155289Sbellard          */                                             \
7640bccf03dSbellard         NEW_AUX_ENT(AT_IGNOREPPC, AT_IGNOREPPC);        \
7650bccf03dSbellard         NEW_AUX_ENT(AT_IGNOREPPC, AT_IGNOREPPC);        \
76682991bedSPeter Maydell         NEW_AUX_ENT(AT_DCACHEBSIZE, cpu->env.dcache_line_size); \
76782991bedSPeter Maydell         NEW_AUX_ENT(AT_ICACHEBSIZE, cpu->env.icache_line_size); \
76882991bedSPeter Maydell         NEW_AUX_ENT(AT_UCACHEBSIZE, 0);                 \
769f5155289Sbellard     } while (0)
770f5155289Sbellard 
77167867308Sbellard static inline void init_thread(struct target_pt_regs *_regs, struct image_info *infop)
77267867308Sbellard {
77367867308Sbellard     _regs->gpr[1] = infop->start_stack;
774e85e7c6eSj_mayer #if defined(TARGET_PPC64) && !defined(TARGET_ABI32)
775d90b94cdSDoug Kwan     if (get_ppc64_abi(infop) < 2) {
7762ccf97ecSPeter Maydell         uint64_t val;
7772ccf97ecSPeter Maydell         get_user_u64(val, infop->entry + 8);
7782ccf97ecSPeter Maydell         _regs->gpr[2] = val + infop->load_bias;
7792ccf97ecSPeter Maydell         get_user_u64(val, infop->entry);
7802ccf97ecSPeter Maydell         infop->entry = val + infop->load_bias;
781d90b94cdSDoug Kwan     } else {
782d90b94cdSDoug Kwan         _regs->gpr[12] = infop->entry;  /* r12 set to global entry address */
783d90b94cdSDoug Kwan     }
78484409ddbSj_mayer #endif
78567867308Sbellard     _regs->nip = infop->entry;
78667867308Sbellard }
78767867308Sbellard 
788e2f3e741SNathan Froyd /* See linux kernel: arch/powerpc/include/asm/elf.h.  */
789e2f3e741SNathan Froyd #define ELF_NREG 48
790e2f3e741SNathan Froyd typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
791e2f3e741SNathan Froyd 
79205390248SAndreas Färber static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUPPCState *env)
793e2f3e741SNathan Froyd {
794e2f3e741SNathan Froyd     int i;
795e2f3e741SNathan Froyd     target_ulong ccr = 0;
796e2f3e741SNathan Froyd 
797e2f3e741SNathan Froyd     for (i = 0; i < ARRAY_SIZE(env->gpr); i++) {
79886cd7b2dSPaolo Bonzini         (*regs)[i] = tswapreg(env->gpr[i]);
799e2f3e741SNathan Froyd     }
800e2f3e741SNathan Froyd 
80186cd7b2dSPaolo Bonzini     (*regs)[32] = tswapreg(env->nip);
80286cd7b2dSPaolo Bonzini     (*regs)[33] = tswapreg(env->msr);
80386cd7b2dSPaolo Bonzini     (*regs)[35] = tswapreg(env->ctr);
80486cd7b2dSPaolo Bonzini     (*regs)[36] = tswapreg(env->lr);
80586cd7b2dSPaolo Bonzini     (*regs)[37] = tswapreg(env->xer);
806e2f3e741SNathan Froyd 
807e2f3e741SNathan Froyd     for (i = 0; i < ARRAY_SIZE(env->crf); i++) {
808e2f3e741SNathan Froyd         ccr |= env->crf[i] << (32 - ((i + 1) * 4));
809e2f3e741SNathan Froyd     }
81086cd7b2dSPaolo Bonzini     (*regs)[38] = tswapreg(ccr);
811e2f3e741SNathan Froyd }
812e2f3e741SNathan Froyd 
813e2f3e741SNathan Froyd #define USE_ELF_CORE_DUMP
81467867308Sbellard #define ELF_EXEC_PAGESIZE       4096
81567867308Sbellard 
81667867308Sbellard #endif
81767867308Sbellard 
818048f6b4dSbellard #ifdef TARGET_MIPS
819048f6b4dSbellard 
820048f6b4dSbellard #define ELF_START_MMAP 0x80000000
821048f6b4dSbellard 
822388bb21aSths #ifdef TARGET_MIPS64
823388bb21aSths #define ELF_CLASS   ELFCLASS64
824388bb21aSths #else
825048f6b4dSbellard #define ELF_CLASS   ELFCLASS32
826388bb21aSths #endif
827048f6b4dSbellard #define ELF_ARCH    EM_MIPS
828048f6b4dSbellard 
829d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
830d97ef72eSRichard Henderson                                struct image_info *infop)
831048f6b4dSbellard {
832623a930eSths     regs->cp0_status = 2 << CP0St_KSU;
833048f6b4dSbellard     regs->cp0_epc = infop->entry;
834048f6b4dSbellard     regs->regs[29] = infop->start_stack;
835048f6b4dSbellard }
836048f6b4dSbellard 
83751e52606SNathan Froyd /* See linux kernel: arch/mips/include/asm/elf.h.  */
83851e52606SNathan Froyd #define ELF_NREG 45
83951e52606SNathan Froyd typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
84051e52606SNathan Froyd 
84151e52606SNathan Froyd /* See linux kernel: arch/mips/include/asm/reg.h.  */
84251e52606SNathan Froyd enum {
84351e52606SNathan Froyd #ifdef TARGET_MIPS64
84451e52606SNathan Froyd     TARGET_EF_R0 = 0,
84551e52606SNathan Froyd #else
84651e52606SNathan Froyd     TARGET_EF_R0 = 6,
84751e52606SNathan Froyd #endif
84851e52606SNathan Froyd     TARGET_EF_R26 = TARGET_EF_R0 + 26,
84951e52606SNathan Froyd     TARGET_EF_R27 = TARGET_EF_R0 + 27,
85051e52606SNathan Froyd     TARGET_EF_LO = TARGET_EF_R0 + 32,
85151e52606SNathan Froyd     TARGET_EF_HI = TARGET_EF_R0 + 33,
85251e52606SNathan Froyd     TARGET_EF_CP0_EPC = TARGET_EF_R0 + 34,
85351e52606SNathan Froyd     TARGET_EF_CP0_BADVADDR = TARGET_EF_R0 + 35,
85451e52606SNathan Froyd     TARGET_EF_CP0_STATUS = TARGET_EF_R0 + 36,
85551e52606SNathan Froyd     TARGET_EF_CP0_CAUSE = TARGET_EF_R0 + 37
85651e52606SNathan Froyd };
85751e52606SNathan Froyd 
85851e52606SNathan Froyd /* See linux kernel: arch/mips/kernel/process.c:elf_dump_regs.  */
85905390248SAndreas Färber static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUMIPSState *env)
86051e52606SNathan Froyd {
86151e52606SNathan Froyd     int i;
86251e52606SNathan Froyd 
86351e52606SNathan Froyd     for (i = 0; i < TARGET_EF_R0; i++) {
86451e52606SNathan Froyd         (*regs)[i] = 0;
86551e52606SNathan Froyd     }
86651e52606SNathan Froyd     (*regs)[TARGET_EF_R0] = 0;
86751e52606SNathan Froyd 
86851e52606SNathan Froyd     for (i = 1; i < ARRAY_SIZE(env->active_tc.gpr); i++) {
869a29f998dSPaolo Bonzini         (*regs)[TARGET_EF_R0 + i] = tswapreg(env->active_tc.gpr[i]);
87051e52606SNathan Froyd     }
87151e52606SNathan Froyd 
87251e52606SNathan Froyd     (*regs)[TARGET_EF_R26] = 0;
87351e52606SNathan Froyd     (*regs)[TARGET_EF_R27] = 0;
874a29f998dSPaolo Bonzini     (*regs)[TARGET_EF_LO] = tswapreg(env->active_tc.LO[0]);
875a29f998dSPaolo Bonzini     (*regs)[TARGET_EF_HI] = tswapreg(env->active_tc.HI[0]);
876a29f998dSPaolo Bonzini     (*regs)[TARGET_EF_CP0_EPC] = tswapreg(env->active_tc.PC);
877a29f998dSPaolo Bonzini     (*regs)[TARGET_EF_CP0_BADVADDR] = tswapreg(env->CP0_BadVAddr);
878a29f998dSPaolo Bonzini     (*regs)[TARGET_EF_CP0_STATUS] = tswapreg(env->CP0_Status);
879a29f998dSPaolo Bonzini     (*regs)[TARGET_EF_CP0_CAUSE] = tswapreg(env->CP0_Cause);
88051e52606SNathan Froyd }
88151e52606SNathan Froyd 
88251e52606SNathan Froyd #define USE_ELF_CORE_DUMP
883388bb21aSths #define ELF_EXEC_PAGESIZE        4096
884388bb21aSths 
885048f6b4dSbellard #endif /* TARGET_MIPS */
886048f6b4dSbellard 
887b779e29eSEdgar E. Iglesias #ifdef TARGET_MICROBLAZE
888b779e29eSEdgar E. Iglesias 
889b779e29eSEdgar E. Iglesias #define ELF_START_MMAP 0x80000000
890b779e29eSEdgar E. Iglesias 
8910d5d4699SEdgar E. Iglesias #define elf_check_arch(x) ( (x) == EM_MICROBLAZE || (x) == EM_MICROBLAZE_OLD)
892b779e29eSEdgar E. Iglesias 
893b779e29eSEdgar E. Iglesias #define ELF_CLASS   ELFCLASS32
8940d5d4699SEdgar E. Iglesias #define ELF_ARCH    EM_MICROBLAZE
895b779e29eSEdgar E. Iglesias 
896d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
897d97ef72eSRichard Henderson                                struct image_info *infop)
898b779e29eSEdgar E. Iglesias {
899b779e29eSEdgar E. Iglesias     regs->pc = infop->entry;
900b779e29eSEdgar E. Iglesias     regs->r1 = infop->start_stack;
901b779e29eSEdgar E. Iglesias 
902b779e29eSEdgar E. Iglesias }
903b779e29eSEdgar E. Iglesias 
904b779e29eSEdgar E. Iglesias #define ELF_EXEC_PAGESIZE        4096
905b779e29eSEdgar E. Iglesias 
906e4cbd44dSEdgar E. Iglesias #define USE_ELF_CORE_DUMP
907e4cbd44dSEdgar E. Iglesias #define ELF_NREG 38
908e4cbd44dSEdgar E. Iglesias typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
909e4cbd44dSEdgar E. Iglesias 
910e4cbd44dSEdgar E. Iglesias /* See linux kernel: arch/mips/kernel/process.c:elf_dump_regs.  */
91105390248SAndreas Färber static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUMBState *env)
912e4cbd44dSEdgar E. Iglesias {
913e4cbd44dSEdgar E. Iglesias     int i, pos = 0;
914e4cbd44dSEdgar E. Iglesias 
915e4cbd44dSEdgar E. Iglesias     for (i = 0; i < 32; i++) {
91686cd7b2dSPaolo Bonzini         (*regs)[pos++] = tswapreg(env->regs[i]);
917e4cbd44dSEdgar E. Iglesias     }
918e4cbd44dSEdgar E. Iglesias 
919e4cbd44dSEdgar E. Iglesias     for (i = 0; i < 6; i++) {
92086cd7b2dSPaolo Bonzini         (*regs)[pos++] = tswapreg(env->sregs[i]);
921e4cbd44dSEdgar E. Iglesias     }
922e4cbd44dSEdgar E. Iglesias }
923e4cbd44dSEdgar E. Iglesias 
924b779e29eSEdgar E. Iglesias #endif /* TARGET_MICROBLAZE */
925b779e29eSEdgar E. Iglesias 
926a0a839b6SMarek Vasut #ifdef TARGET_NIOS2
927a0a839b6SMarek Vasut 
928a0a839b6SMarek Vasut #define ELF_START_MMAP 0x80000000
929a0a839b6SMarek Vasut 
930a0a839b6SMarek Vasut #define elf_check_arch(x) ((x) == EM_ALTERA_NIOS2)
931a0a839b6SMarek Vasut 
932a0a839b6SMarek Vasut #define ELF_CLASS   ELFCLASS32
933a0a839b6SMarek Vasut #define ELF_ARCH    EM_ALTERA_NIOS2
934a0a839b6SMarek Vasut 
935a0a839b6SMarek Vasut static void init_thread(struct target_pt_regs *regs, struct image_info *infop)
936a0a839b6SMarek Vasut {
937a0a839b6SMarek Vasut     regs->ea = infop->entry;
938a0a839b6SMarek Vasut     regs->sp = infop->start_stack;
939a0a839b6SMarek Vasut     regs->estatus = 0x3;
940a0a839b6SMarek Vasut }
941a0a839b6SMarek Vasut 
942a0a839b6SMarek Vasut #define ELF_EXEC_PAGESIZE        4096
943a0a839b6SMarek Vasut 
944a0a839b6SMarek Vasut #define USE_ELF_CORE_DUMP
945a0a839b6SMarek Vasut #define ELF_NREG 49
946a0a839b6SMarek Vasut typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
947a0a839b6SMarek Vasut 
948a0a839b6SMarek Vasut /* See linux kernel: arch/mips/kernel/process.c:elf_dump_regs.  */
949a0a839b6SMarek Vasut static void elf_core_copy_regs(target_elf_gregset_t *regs,
950a0a839b6SMarek Vasut                                const CPUNios2State *env)
951a0a839b6SMarek Vasut {
952a0a839b6SMarek Vasut     int i;
953a0a839b6SMarek Vasut 
954a0a839b6SMarek Vasut     (*regs)[0] = -1;
955a0a839b6SMarek Vasut     for (i = 1; i < 8; i++)    /* r0-r7 */
956a0a839b6SMarek Vasut         (*regs)[i] = tswapreg(env->regs[i + 7]);
957a0a839b6SMarek Vasut 
958a0a839b6SMarek Vasut     for (i = 8; i < 16; i++)   /* r8-r15 */
959a0a839b6SMarek Vasut         (*regs)[i] = tswapreg(env->regs[i - 8]);
960a0a839b6SMarek Vasut 
961a0a839b6SMarek Vasut     for (i = 16; i < 24; i++)  /* r16-r23 */
962a0a839b6SMarek Vasut         (*regs)[i] = tswapreg(env->regs[i + 7]);
963a0a839b6SMarek Vasut     (*regs)[24] = -1;    /* R_ET */
964a0a839b6SMarek Vasut     (*regs)[25] = -1;    /* R_BT */
965a0a839b6SMarek Vasut     (*regs)[26] = tswapreg(env->regs[R_GP]);
966a0a839b6SMarek Vasut     (*regs)[27] = tswapreg(env->regs[R_SP]);
967a0a839b6SMarek Vasut     (*regs)[28] = tswapreg(env->regs[R_FP]);
968a0a839b6SMarek Vasut     (*regs)[29] = tswapreg(env->regs[R_EA]);
969a0a839b6SMarek Vasut     (*regs)[30] = -1;    /* R_SSTATUS */
970a0a839b6SMarek Vasut     (*regs)[31] = tswapreg(env->regs[R_RA]);
971a0a839b6SMarek Vasut 
972a0a839b6SMarek Vasut     (*regs)[32] = tswapreg(env->regs[R_PC]);
973a0a839b6SMarek Vasut 
974a0a839b6SMarek Vasut     (*regs)[33] = -1; /* R_STATUS */
975a0a839b6SMarek Vasut     (*regs)[34] = tswapreg(env->regs[CR_ESTATUS]);
976a0a839b6SMarek Vasut 
977a0a839b6SMarek Vasut     for (i = 35; i < 49; i++)    /* ... */
978a0a839b6SMarek Vasut         (*regs)[i] = -1;
979a0a839b6SMarek Vasut }
980a0a839b6SMarek Vasut 
981a0a839b6SMarek Vasut #endif /* TARGET_NIOS2 */
982a0a839b6SMarek Vasut 
983d962783eSJia Liu #ifdef TARGET_OPENRISC
984d962783eSJia Liu 
985d962783eSJia Liu #define ELF_START_MMAP 0x08000000
986d962783eSJia Liu 
987d962783eSJia Liu #define ELF_ARCH EM_OPENRISC
988d962783eSJia Liu #define ELF_CLASS ELFCLASS32
989d962783eSJia Liu #define ELF_DATA  ELFDATA2MSB
990d962783eSJia Liu 
991d962783eSJia Liu static inline void init_thread(struct target_pt_regs *regs,
992d962783eSJia Liu                                struct image_info *infop)
993d962783eSJia Liu {
994d962783eSJia Liu     regs->pc = infop->entry;
995d962783eSJia Liu     regs->gpr[1] = infop->start_stack;
996d962783eSJia Liu }
997d962783eSJia Liu 
998d962783eSJia Liu #define USE_ELF_CORE_DUMP
999d962783eSJia Liu #define ELF_EXEC_PAGESIZE 8192
1000d962783eSJia Liu 
1001d962783eSJia Liu /* See linux kernel arch/openrisc/include/asm/elf.h.  */
1002d962783eSJia Liu #define ELF_NREG 34 /* gprs and pc, sr */
1003d962783eSJia Liu typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
1004d962783eSJia Liu 
1005d962783eSJia Liu static void elf_core_copy_regs(target_elf_gregset_t *regs,
1006d962783eSJia Liu                                const CPUOpenRISCState *env)
1007d962783eSJia Liu {
1008d962783eSJia Liu     int i;
1009d962783eSJia Liu 
1010d962783eSJia Liu     for (i = 0; i < 32; i++) {
1011d89e71e8SStafford Horne         (*regs)[i] = tswapreg(cpu_get_gpr(env, i));
1012d962783eSJia Liu     }
101386cd7b2dSPaolo Bonzini     (*regs)[32] = tswapreg(env->pc);
101484775c43SRichard Henderson     (*regs)[33] = tswapreg(cpu_get_sr(env));
1015d962783eSJia Liu }
1016d962783eSJia Liu #define ELF_HWCAP 0
1017d962783eSJia Liu #define ELF_PLATFORM NULL
1018d962783eSJia Liu 
1019d962783eSJia Liu #endif /* TARGET_OPENRISC */
1020d962783eSJia Liu 
1021fdf9b3e8Sbellard #ifdef TARGET_SH4
1022fdf9b3e8Sbellard 
1023fdf9b3e8Sbellard #define ELF_START_MMAP 0x80000000
1024fdf9b3e8Sbellard 
1025fdf9b3e8Sbellard #define ELF_CLASS ELFCLASS32
1026fdf9b3e8Sbellard #define ELF_ARCH  EM_SH
1027fdf9b3e8Sbellard 
1028d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
1029d97ef72eSRichard Henderson                                struct image_info *infop)
1030fdf9b3e8Sbellard {
1031fdf9b3e8Sbellard     /* Check other registers XXXXX */
1032fdf9b3e8Sbellard     regs->pc = infop->entry;
1033072ae847Sths     regs->regs[15] = infop->start_stack;
1034fdf9b3e8Sbellard }
1035fdf9b3e8Sbellard 
10367631c97eSNathan Froyd /* See linux kernel: arch/sh/include/asm/elf.h.  */
10377631c97eSNathan Froyd #define ELF_NREG 23
10387631c97eSNathan Froyd typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
10397631c97eSNathan Froyd 
10407631c97eSNathan Froyd /* See linux kernel: arch/sh/include/asm/ptrace.h.  */
10417631c97eSNathan Froyd enum {
10427631c97eSNathan Froyd     TARGET_REG_PC = 16,
10437631c97eSNathan Froyd     TARGET_REG_PR = 17,
10447631c97eSNathan Froyd     TARGET_REG_SR = 18,
10457631c97eSNathan Froyd     TARGET_REG_GBR = 19,
10467631c97eSNathan Froyd     TARGET_REG_MACH = 20,
10477631c97eSNathan Froyd     TARGET_REG_MACL = 21,
10487631c97eSNathan Froyd     TARGET_REG_SYSCALL = 22
10497631c97eSNathan Froyd };
10507631c97eSNathan Froyd 
1051d97ef72eSRichard Henderson static inline void elf_core_copy_regs(target_elf_gregset_t *regs,
105205390248SAndreas Färber                                       const CPUSH4State *env)
10537631c97eSNathan Froyd {
10547631c97eSNathan Froyd     int i;
10557631c97eSNathan Froyd 
10567631c97eSNathan Froyd     for (i = 0; i < 16; i++) {
105772cd500bSPhilippe Mathieu-Daudé         (*regs)[i] = tswapreg(env->gregs[i]);
10587631c97eSNathan Froyd     }
10597631c97eSNathan Froyd 
106086cd7b2dSPaolo Bonzini     (*regs)[TARGET_REG_PC] = tswapreg(env->pc);
106186cd7b2dSPaolo Bonzini     (*regs)[TARGET_REG_PR] = tswapreg(env->pr);
106286cd7b2dSPaolo Bonzini     (*regs)[TARGET_REG_SR] = tswapreg(env->sr);
106386cd7b2dSPaolo Bonzini     (*regs)[TARGET_REG_GBR] = tswapreg(env->gbr);
106486cd7b2dSPaolo Bonzini     (*regs)[TARGET_REG_MACH] = tswapreg(env->mach);
106586cd7b2dSPaolo Bonzini     (*regs)[TARGET_REG_MACL] = tswapreg(env->macl);
10667631c97eSNathan Froyd     (*regs)[TARGET_REG_SYSCALL] = 0; /* FIXME */
10677631c97eSNathan Froyd }
10687631c97eSNathan Froyd 
10697631c97eSNathan Froyd #define USE_ELF_CORE_DUMP
1070fdf9b3e8Sbellard #define ELF_EXEC_PAGESIZE        4096
1071fdf9b3e8Sbellard 
1072e42fd944SRichard Henderson enum {
1073e42fd944SRichard Henderson     SH_CPU_HAS_FPU            = 0x0001, /* Hardware FPU support */
1074e42fd944SRichard Henderson     SH_CPU_HAS_P2_FLUSH_BUG   = 0x0002, /* Need to flush the cache in P2 area */
1075e42fd944SRichard Henderson     SH_CPU_HAS_MMU_PAGE_ASSOC = 0x0004, /* SH3: TLB way selection bit support */
1076e42fd944SRichard Henderson     SH_CPU_HAS_DSP            = 0x0008, /* SH-DSP: DSP support */
1077e42fd944SRichard Henderson     SH_CPU_HAS_PERF_COUNTER   = 0x0010, /* Hardware performance counters */
1078e42fd944SRichard Henderson     SH_CPU_HAS_PTEA           = 0x0020, /* PTEA register */
1079e42fd944SRichard Henderson     SH_CPU_HAS_LLSC           = 0x0040, /* movli.l/movco.l */
1080e42fd944SRichard Henderson     SH_CPU_HAS_L2_CACHE       = 0x0080, /* Secondary cache / URAM */
1081e42fd944SRichard Henderson     SH_CPU_HAS_OP32           = 0x0100, /* 32-bit instruction support */
1082e42fd944SRichard Henderson     SH_CPU_HAS_PTEAEX         = 0x0200, /* PTE ASID Extension support */
1083e42fd944SRichard Henderson };
1084e42fd944SRichard Henderson 
1085e42fd944SRichard Henderson #define ELF_HWCAP get_elf_hwcap()
1086e42fd944SRichard Henderson 
1087e42fd944SRichard Henderson static uint32_t get_elf_hwcap(void)
1088e42fd944SRichard Henderson {
1089e42fd944SRichard Henderson     SuperHCPU *cpu = SUPERH_CPU(thread_cpu);
1090e42fd944SRichard Henderson     uint32_t hwcap = 0;
1091e42fd944SRichard Henderson 
1092e42fd944SRichard Henderson     hwcap |= SH_CPU_HAS_FPU;
1093e42fd944SRichard Henderson 
1094e42fd944SRichard Henderson     if (cpu->env.features & SH_FEATURE_SH4A) {
1095e42fd944SRichard Henderson         hwcap |= SH_CPU_HAS_LLSC;
1096e42fd944SRichard Henderson     }
1097e42fd944SRichard Henderson 
1098e42fd944SRichard Henderson     return hwcap;
1099e42fd944SRichard Henderson }
1100e42fd944SRichard Henderson 
1101fdf9b3e8Sbellard #endif
1102fdf9b3e8Sbellard 
110348733d19Sths #ifdef TARGET_CRIS
110448733d19Sths 
110548733d19Sths #define ELF_START_MMAP 0x80000000
110648733d19Sths 
110748733d19Sths #define ELF_CLASS ELFCLASS32
110848733d19Sths #define ELF_ARCH  EM_CRIS
110948733d19Sths 
1110d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
1111d97ef72eSRichard Henderson                                struct image_info *infop)
111248733d19Sths {
111348733d19Sths     regs->erp = infop->entry;
111448733d19Sths }
111548733d19Sths 
111648733d19Sths #define ELF_EXEC_PAGESIZE        8192
111748733d19Sths 
111848733d19Sths #endif
111948733d19Sths 
1120e6e5906bSpbrook #ifdef TARGET_M68K
1121e6e5906bSpbrook 
1122e6e5906bSpbrook #define ELF_START_MMAP 0x80000000
1123e6e5906bSpbrook 
1124e6e5906bSpbrook #define ELF_CLASS       ELFCLASS32
1125e6e5906bSpbrook #define ELF_ARCH        EM_68K
1126e6e5906bSpbrook 
1127e6e5906bSpbrook /* ??? Does this need to do anything?
1128e6e5906bSpbrook    #define ELF_PLAT_INIT(_r) */
1129e6e5906bSpbrook 
1130d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
1131d97ef72eSRichard Henderson                                struct image_info *infop)
1132e6e5906bSpbrook {
1133e6e5906bSpbrook     regs->usp = infop->start_stack;
1134e6e5906bSpbrook     regs->sr = 0;
1135e6e5906bSpbrook     regs->pc = infop->entry;
1136e6e5906bSpbrook }
1137e6e5906bSpbrook 
11387a93cc55SNathan Froyd /* See linux kernel: arch/m68k/include/asm/elf.h.  */
11397a93cc55SNathan Froyd #define ELF_NREG 20
11407a93cc55SNathan Froyd typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
11417a93cc55SNathan Froyd 
114205390248SAndreas Färber static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUM68KState *env)
11437a93cc55SNathan Froyd {
114486cd7b2dSPaolo Bonzini     (*regs)[0] = tswapreg(env->dregs[1]);
114586cd7b2dSPaolo Bonzini     (*regs)[1] = tswapreg(env->dregs[2]);
114686cd7b2dSPaolo Bonzini     (*regs)[2] = tswapreg(env->dregs[3]);
114786cd7b2dSPaolo Bonzini     (*regs)[3] = tswapreg(env->dregs[4]);
114886cd7b2dSPaolo Bonzini     (*regs)[4] = tswapreg(env->dregs[5]);
114986cd7b2dSPaolo Bonzini     (*regs)[5] = tswapreg(env->dregs[6]);
115086cd7b2dSPaolo Bonzini     (*regs)[6] = tswapreg(env->dregs[7]);
115186cd7b2dSPaolo Bonzini     (*regs)[7] = tswapreg(env->aregs[0]);
115286cd7b2dSPaolo Bonzini     (*regs)[8] = tswapreg(env->aregs[1]);
115386cd7b2dSPaolo Bonzini     (*regs)[9] = tswapreg(env->aregs[2]);
115486cd7b2dSPaolo Bonzini     (*regs)[10] = tswapreg(env->aregs[3]);
115586cd7b2dSPaolo Bonzini     (*regs)[11] = tswapreg(env->aregs[4]);
115686cd7b2dSPaolo Bonzini     (*regs)[12] = tswapreg(env->aregs[5]);
115786cd7b2dSPaolo Bonzini     (*regs)[13] = tswapreg(env->aregs[6]);
115886cd7b2dSPaolo Bonzini     (*regs)[14] = tswapreg(env->dregs[0]);
115986cd7b2dSPaolo Bonzini     (*regs)[15] = tswapreg(env->aregs[7]);
116086cd7b2dSPaolo Bonzini     (*regs)[16] = tswapreg(env->dregs[0]); /* FIXME: orig_d0 */
116186cd7b2dSPaolo Bonzini     (*regs)[17] = tswapreg(env->sr);
116286cd7b2dSPaolo Bonzini     (*regs)[18] = tswapreg(env->pc);
11637a93cc55SNathan Froyd     (*regs)[19] = 0;  /* FIXME: regs->format | regs->vector */
11647a93cc55SNathan Froyd }
11657a93cc55SNathan Froyd 
11667a93cc55SNathan Froyd #define USE_ELF_CORE_DUMP
1167e6e5906bSpbrook #define ELF_EXEC_PAGESIZE       8192
1168e6e5906bSpbrook 
1169e6e5906bSpbrook #endif
1170e6e5906bSpbrook 
11717a3148a9Sj_mayer #ifdef TARGET_ALPHA
11727a3148a9Sj_mayer 
11737a3148a9Sj_mayer #define ELF_START_MMAP (0x30000000000ULL)
11747a3148a9Sj_mayer 
11757a3148a9Sj_mayer #define ELF_CLASS      ELFCLASS64
11767a3148a9Sj_mayer #define ELF_ARCH       EM_ALPHA
11777a3148a9Sj_mayer 
1178d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
1179d97ef72eSRichard Henderson                                struct image_info *infop)
11807a3148a9Sj_mayer {
11817a3148a9Sj_mayer     regs->pc = infop->entry;
11827a3148a9Sj_mayer     regs->ps = 8;
11837a3148a9Sj_mayer     regs->usp = infop->start_stack;
11847a3148a9Sj_mayer }
11857a3148a9Sj_mayer 
11867a3148a9Sj_mayer #define ELF_EXEC_PAGESIZE        8192
11877a3148a9Sj_mayer 
11887a3148a9Sj_mayer #endif /* TARGET_ALPHA */
11897a3148a9Sj_mayer 
1190a4c075f1SUlrich Hecht #ifdef TARGET_S390X
1191a4c075f1SUlrich Hecht 
1192a4c075f1SUlrich Hecht #define ELF_START_MMAP (0x20000000000ULL)
1193a4c075f1SUlrich Hecht 
1194a4c075f1SUlrich Hecht #define ELF_CLASS	ELFCLASS64
1195a4c075f1SUlrich Hecht #define ELF_DATA	ELFDATA2MSB
1196a4c075f1SUlrich Hecht #define ELF_ARCH	EM_S390
1197a4c075f1SUlrich Hecht 
1198a4c075f1SUlrich Hecht static inline void init_thread(struct target_pt_regs *regs, struct image_info *infop)
1199a4c075f1SUlrich Hecht {
1200a4c075f1SUlrich Hecht     regs->psw.addr = infop->entry;
1201a4c075f1SUlrich Hecht     regs->psw.mask = PSW_MASK_64 | PSW_MASK_32;
1202a4c075f1SUlrich Hecht     regs->gprs[15] = infop->start_stack;
1203a4c075f1SUlrich Hecht }
1204a4c075f1SUlrich Hecht 
1205a4c075f1SUlrich Hecht #endif /* TARGET_S390X */
1206a4c075f1SUlrich Hecht 
1207b16189b2SChen Gang #ifdef TARGET_TILEGX
1208b16189b2SChen Gang 
1209b16189b2SChen Gang /* 42 bits real used address, a half for user mode */
1210b16189b2SChen Gang #define ELF_START_MMAP (0x00000020000000000ULL)
1211b16189b2SChen Gang 
1212b16189b2SChen Gang #define elf_check_arch(x) ((x) == EM_TILEGX)
1213b16189b2SChen Gang 
1214b16189b2SChen Gang #define ELF_CLASS   ELFCLASS64
1215b16189b2SChen Gang #define ELF_DATA    ELFDATA2LSB
1216b16189b2SChen Gang #define ELF_ARCH    EM_TILEGX
1217b16189b2SChen Gang 
1218b16189b2SChen Gang static inline void init_thread(struct target_pt_regs *regs,
1219b16189b2SChen Gang                                struct image_info *infop)
1220b16189b2SChen Gang {
1221b16189b2SChen Gang     regs->pc = infop->entry;
1222b16189b2SChen Gang     regs->sp = infop->start_stack;
1223b16189b2SChen Gang 
1224b16189b2SChen Gang }
1225b16189b2SChen Gang 
1226b16189b2SChen Gang #define ELF_EXEC_PAGESIZE        65536 /* TILE-Gx page size is 64KB */
1227b16189b2SChen Gang 
1228b16189b2SChen Gang #endif /* TARGET_TILEGX */
1229b16189b2SChen Gang 
123047ae93cdSMichael Clark #ifdef TARGET_RISCV
123147ae93cdSMichael Clark 
123247ae93cdSMichael Clark #define ELF_START_MMAP 0x80000000
123347ae93cdSMichael Clark #define ELF_ARCH  EM_RISCV
123447ae93cdSMichael Clark 
123547ae93cdSMichael Clark #ifdef TARGET_RISCV32
123647ae93cdSMichael Clark #define ELF_CLASS ELFCLASS32
123747ae93cdSMichael Clark #else
123847ae93cdSMichael Clark #define ELF_CLASS ELFCLASS64
123947ae93cdSMichael Clark #endif
124047ae93cdSMichael Clark 
124147ae93cdSMichael Clark static inline void init_thread(struct target_pt_regs *regs,
124247ae93cdSMichael Clark                                struct image_info *infop)
124347ae93cdSMichael Clark {
124447ae93cdSMichael Clark     regs->sepc = infop->entry;
124547ae93cdSMichael Clark     regs->sp = infop->start_stack;
124647ae93cdSMichael Clark }
124747ae93cdSMichael Clark 
124847ae93cdSMichael Clark #define ELF_EXEC_PAGESIZE 4096
124947ae93cdSMichael Clark 
125047ae93cdSMichael Clark #endif /* TARGET_RISCV */
125147ae93cdSMichael Clark 
12527c248bcdSRichard Henderson #ifdef TARGET_HPPA
12537c248bcdSRichard Henderson 
12547c248bcdSRichard Henderson #define ELF_START_MMAP  0x80000000
12557c248bcdSRichard Henderson #define ELF_CLASS       ELFCLASS32
12567c248bcdSRichard Henderson #define ELF_ARCH        EM_PARISC
12577c248bcdSRichard Henderson #define ELF_PLATFORM    "PARISC"
12587c248bcdSRichard Henderson #define STACK_GROWS_DOWN 0
12597c248bcdSRichard Henderson #define STACK_ALIGNMENT  64
12607c248bcdSRichard Henderson 
12617c248bcdSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
12627c248bcdSRichard Henderson                                struct image_info *infop)
12637c248bcdSRichard Henderson {
12647c248bcdSRichard Henderson     regs->iaoq[0] = infop->entry;
12657c248bcdSRichard Henderson     regs->iaoq[1] = infop->entry + 4;
12667c248bcdSRichard Henderson     regs->gr[23] = 0;
12677c248bcdSRichard Henderson     regs->gr[24] = infop->arg_start;
12687c248bcdSRichard Henderson     regs->gr[25] = (infop->arg_end - infop->arg_start) / sizeof(abi_ulong);
12697c248bcdSRichard Henderson     /* The top-of-stack contains a linkage buffer.  */
12707c248bcdSRichard Henderson     regs->gr[30] = infop->start_stack + 64;
12717c248bcdSRichard Henderson     regs->gr[31] = infop->entry;
12727c248bcdSRichard Henderson }
12737c248bcdSRichard Henderson 
12747c248bcdSRichard Henderson #endif /* TARGET_HPPA */
12757c248bcdSRichard Henderson 
1276ba7651fbSMax Filippov #ifdef TARGET_XTENSA
1277ba7651fbSMax Filippov 
1278ba7651fbSMax Filippov #define ELF_START_MMAP 0x20000000
1279ba7651fbSMax Filippov 
1280ba7651fbSMax Filippov #define ELF_CLASS       ELFCLASS32
1281ba7651fbSMax Filippov #define ELF_ARCH        EM_XTENSA
1282ba7651fbSMax Filippov 
1283ba7651fbSMax Filippov static inline void init_thread(struct target_pt_regs *regs,
1284ba7651fbSMax Filippov                                struct image_info *infop)
1285ba7651fbSMax Filippov {
1286ba7651fbSMax Filippov     regs->windowbase = 0;
1287ba7651fbSMax Filippov     regs->windowstart = 1;
1288ba7651fbSMax Filippov     regs->areg[1] = infop->start_stack;
1289ba7651fbSMax Filippov     regs->pc = infop->entry;
1290ba7651fbSMax Filippov }
1291ba7651fbSMax Filippov 
1292ba7651fbSMax Filippov /* See linux kernel: arch/xtensa/include/asm/elf.h.  */
1293ba7651fbSMax Filippov #define ELF_NREG 128
1294ba7651fbSMax Filippov typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
1295ba7651fbSMax Filippov 
1296ba7651fbSMax Filippov enum {
1297ba7651fbSMax Filippov     TARGET_REG_PC,
1298ba7651fbSMax Filippov     TARGET_REG_PS,
1299ba7651fbSMax Filippov     TARGET_REG_LBEG,
1300ba7651fbSMax Filippov     TARGET_REG_LEND,
1301ba7651fbSMax Filippov     TARGET_REG_LCOUNT,
1302ba7651fbSMax Filippov     TARGET_REG_SAR,
1303ba7651fbSMax Filippov     TARGET_REG_WINDOWSTART,
1304ba7651fbSMax Filippov     TARGET_REG_WINDOWBASE,
1305ba7651fbSMax Filippov     TARGET_REG_THREADPTR,
1306ba7651fbSMax Filippov     TARGET_REG_AR0 = 64,
1307ba7651fbSMax Filippov };
1308ba7651fbSMax Filippov 
1309ba7651fbSMax Filippov static void elf_core_copy_regs(target_elf_gregset_t *regs,
1310ba7651fbSMax Filippov                                const CPUXtensaState *env)
1311ba7651fbSMax Filippov {
1312ba7651fbSMax Filippov     unsigned i;
1313ba7651fbSMax Filippov 
1314ba7651fbSMax Filippov     (*regs)[TARGET_REG_PC] = tswapreg(env->pc);
1315ba7651fbSMax Filippov     (*regs)[TARGET_REG_PS] = tswapreg(env->sregs[PS] & ~PS_EXCM);
1316ba7651fbSMax Filippov     (*regs)[TARGET_REG_LBEG] = tswapreg(env->sregs[LBEG]);
1317ba7651fbSMax Filippov     (*regs)[TARGET_REG_LEND] = tswapreg(env->sregs[LEND]);
1318ba7651fbSMax Filippov     (*regs)[TARGET_REG_LCOUNT] = tswapreg(env->sregs[LCOUNT]);
1319ba7651fbSMax Filippov     (*regs)[TARGET_REG_SAR] = tswapreg(env->sregs[SAR]);
1320ba7651fbSMax Filippov     (*regs)[TARGET_REG_WINDOWSTART] = tswapreg(env->sregs[WINDOW_START]);
1321ba7651fbSMax Filippov     (*regs)[TARGET_REG_WINDOWBASE] = tswapreg(env->sregs[WINDOW_BASE]);
1322ba7651fbSMax Filippov     (*regs)[TARGET_REG_THREADPTR] = tswapreg(env->uregs[THREADPTR]);
1323ba7651fbSMax Filippov     xtensa_sync_phys_from_window((CPUXtensaState *)env);
1324ba7651fbSMax Filippov     for (i = 0; i < env->config->nareg; ++i) {
1325ba7651fbSMax Filippov         (*regs)[TARGET_REG_AR0 + i] = tswapreg(env->phys_regs[i]);
1326ba7651fbSMax Filippov     }
1327ba7651fbSMax Filippov }
1328ba7651fbSMax Filippov 
1329ba7651fbSMax Filippov #define USE_ELF_CORE_DUMP
1330ba7651fbSMax Filippov #define ELF_EXEC_PAGESIZE       4096
1331ba7651fbSMax Filippov 
1332ba7651fbSMax Filippov #endif /* TARGET_XTENSA */
1333ba7651fbSMax Filippov 
133415338fd7Sbellard #ifndef ELF_PLATFORM
133515338fd7Sbellard #define ELF_PLATFORM (NULL)
133615338fd7Sbellard #endif
133715338fd7Sbellard 
133875be901cSPeter Crosthwaite #ifndef ELF_MACHINE
133975be901cSPeter Crosthwaite #define ELF_MACHINE ELF_ARCH
134075be901cSPeter Crosthwaite #endif
134175be901cSPeter Crosthwaite 
1342d276a604SPeter Crosthwaite #ifndef elf_check_arch
1343d276a604SPeter Crosthwaite #define elf_check_arch(x) ((x) == ELF_ARCH)
1344d276a604SPeter Crosthwaite #endif
1345d276a604SPeter Crosthwaite 
134615338fd7Sbellard #ifndef ELF_HWCAP
134715338fd7Sbellard #define ELF_HWCAP 0
134815338fd7Sbellard #endif
134915338fd7Sbellard 
13507c4ee5bcSRichard Henderson #ifndef STACK_GROWS_DOWN
13517c4ee5bcSRichard Henderson #define STACK_GROWS_DOWN 1
13527c4ee5bcSRichard Henderson #endif
13537c4ee5bcSRichard Henderson 
13547c4ee5bcSRichard Henderson #ifndef STACK_ALIGNMENT
13557c4ee5bcSRichard Henderson #define STACK_ALIGNMENT 16
13567c4ee5bcSRichard Henderson #endif
13577c4ee5bcSRichard Henderson 
1358992f48a0Sblueswir1 #ifdef TARGET_ABI32
1359cb33da57Sblueswir1 #undef ELF_CLASS
1360992f48a0Sblueswir1 #define ELF_CLASS ELFCLASS32
1361cb33da57Sblueswir1 #undef bswaptls
1362cb33da57Sblueswir1 #define bswaptls(ptr) bswap32s(ptr)
1363cb33da57Sblueswir1 #endif
1364cb33da57Sblueswir1 
136531e31b8aSbellard #include "elf.h"
136609bfb054Sbellard 
136709bfb054Sbellard struct exec
136809bfb054Sbellard {
136909bfb054Sbellard     unsigned int a_info;   /* Use macros N_MAGIC, etc for access */
137009bfb054Sbellard     unsigned int a_text;   /* length of text, in bytes */
137109bfb054Sbellard     unsigned int a_data;   /* length of data, in bytes */
137209bfb054Sbellard     unsigned int a_bss;    /* length of uninitialized data area, in bytes */
137309bfb054Sbellard     unsigned int a_syms;   /* length of symbol table data in file, in bytes */
137409bfb054Sbellard     unsigned int a_entry;  /* start address */
137509bfb054Sbellard     unsigned int a_trsize; /* length of relocation info for text, in bytes */
137609bfb054Sbellard     unsigned int a_drsize; /* length of relocation info for data, in bytes */
137709bfb054Sbellard };
137809bfb054Sbellard 
137909bfb054Sbellard 
138009bfb054Sbellard #define N_MAGIC(exec) ((exec).a_info & 0xffff)
138109bfb054Sbellard #define OMAGIC 0407
138209bfb054Sbellard #define NMAGIC 0410
138309bfb054Sbellard #define ZMAGIC 0413
138409bfb054Sbellard #define QMAGIC 0314
138509bfb054Sbellard 
138631e31b8aSbellard /* Necessary parameters */
138754936004Sbellard #define TARGET_ELF_EXEC_PAGESIZE TARGET_PAGE_SIZE
138879cb1f1dSYongbok Kim #define TARGET_ELF_PAGESTART(_v) ((_v) & \
138979cb1f1dSYongbok Kim                                  ~(abi_ulong)(TARGET_ELF_EXEC_PAGESIZE-1))
139054936004Sbellard #define TARGET_ELF_PAGEOFFSET(_v) ((_v) & (TARGET_ELF_EXEC_PAGESIZE-1))
139131e31b8aSbellard 
1392444cd5c3SMarco A L Barbosa #define DLINFO_ITEMS 15
139331e31b8aSbellard 
139409bfb054Sbellard static inline void memcpy_fromfs(void * to, const void * from, unsigned long n)
139509bfb054Sbellard {
139609bfb054Sbellard     memcpy(to, from, n);
139709bfb054Sbellard }
139809bfb054Sbellard 
139931e31b8aSbellard #ifdef BSWAP_NEEDED
140092a31b1fSbellard static void bswap_ehdr(struct elfhdr *ehdr)
140131e31b8aSbellard {
140231e31b8aSbellard     bswap16s(&ehdr->e_type);            /* Object file type */
140331e31b8aSbellard     bswap16s(&ehdr->e_machine);         /* Architecture */
140431e31b8aSbellard     bswap32s(&ehdr->e_version);         /* Object file version */
140592a31b1fSbellard     bswaptls(&ehdr->e_entry);           /* Entry point virtual address */
140692a31b1fSbellard     bswaptls(&ehdr->e_phoff);           /* Program header table file offset */
140792a31b1fSbellard     bswaptls(&ehdr->e_shoff);           /* Section header table file offset */
140831e31b8aSbellard     bswap32s(&ehdr->e_flags);           /* Processor-specific flags */
140931e31b8aSbellard     bswap16s(&ehdr->e_ehsize);          /* ELF header size in bytes */
141031e31b8aSbellard     bswap16s(&ehdr->e_phentsize);       /* Program header table entry size */
141131e31b8aSbellard     bswap16s(&ehdr->e_phnum);           /* Program header table entry count */
141231e31b8aSbellard     bswap16s(&ehdr->e_shentsize);       /* Section header table entry size */
141331e31b8aSbellard     bswap16s(&ehdr->e_shnum);           /* Section header table entry count */
141431e31b8aSbellard     bswap16s(&ehdr->e_shstrndx);        /* Section header string table index */
141531e31b8aSbellard }
141631e31b8aSbellard 
1417991f8f0cSRichard Henderson static void bswap_phdr(struct elf_phdr *phdr, int phnum)
141831e31b8aSbellard {
1419991f8f0cSRichard Henderson     int i;
1420991f8f0cSRichard Henderson     for (i = 0; i < phnum; ++i, ++phdr) {
142131e31b8aSbellard         bswap32s(&phdr->p_type);        /* Segment type */
1422991f8f0cSRichard Henderson         bswap32s(&phdr->p_flags);       /* Segment flags */
142392a31b1fSbellard         bswaptls(&phdr->p_offset);      /* Segment file offset */
142492a31b1fSbellard         bswaptls(&phdr->p_vaddr);       /* Segment virtual address */
142592a31b1fSbellard         bswaptls(&phdr->p_paddr);       /* Segment physical address */
142692a31b1fSbellard         bswaptls(&phdr->p_filesz);      /* Segment size in file */
142792a31b1fSbellard         bswaptls(&phdr->p_memsz);       /* Segment size in memory */
142892a31b1fSbellard         bswaptls(&phdr->p_align);       /* Segment alignment */
142931e31b8aSbellard     }
1430991f8f0cSRichard Henderson }
1431689f936fSbellard 
1432991f8f0cSRichard Henderson static void bswap_shdr(struct elf_shdr *shdr, int shnum)
1433689f936fSbellard {
1434991f8f0cSRichard Henderson     int i;
1435991f8f0cSRichard Henderson     for (i = 0; i < shnum; ++i, ++shdr) {
1436689f936fSbellard         bswap32s(&shdr->sh_name);
1437689f936fSbellard         bswap32s(&shdr->sh_type);
143892a31b1fSbellard         bswaptls(&shdr->sh_flags);
143992a31b1fSbellard         bswaptls(&shdr->sh_addr);
144092a31b1fSbellard         bswaptls(&shdr->sh_offset);
144192a31b1fSbellard         bswaptls(&shdr->sh_size);
1442689f936fSbellard         bswap32s(&shdr->sh_link);
1443689f936fSbellard         bswap32s(&shdr->sh_info);
144492a31b1fSbellard         bswaptls(&shdr->sh_addralign);
144592a31b1fSbellard         bswaptls(&shdr->sh_entsize);
1446689f936fSbellard     }
1447991f8f0cSRichard Henderson }
1448689f936fSbellard 
14497a3148a9Sj_mayer static void bswap_sym(struct elf_sym *sym)
1450689f936fSbellard {
1451689f936fSbellard     bswap32s(&sym->st_name);
14527a3148a9Sj_mayer     bswaptls(&sym->st_value);
14537a3148a9Sj_mayer     bswaptls(&sym->st_size);
1454689f936fSbellard     bswap16s(&sym->st_shndx);
1455689f936fSbellard }
1456991f8f0cSRichard Henderson #else
1457991f8f0cSRichard Henderson static inline void bswap_ehdr(struct elfhdr *ehdr) { }
1458991f8f0cSRichard Henderson static inline void bswap_phdr(struct elf_phdr *phdr, int phnum) { }
1459991f8f0cSRichard Henderson static inline void bswap_shdr(struct elf_shdr *shdr, int shnum) { }
1460991f8f0cSRichard Henderson static inline void bswap_sym(struct elf_sym *sym) { }
146131e31b8aSbellard #endif
146231e31b8aSbellard 
1463edf8e2afSMika Westerberg #ifdef USE_ELF_CORE_DUMP
14649349b4f9SAndreas Färber static int elf_core_dump(int, const CPUArchState *);
1465edf8e2afSMika Westerberg #endif /* USE_ELF_CORE_DUMP */
1466682674b8SRichard Henderson static void load_symbols(struct elfhdr *hdr, int fd, abi_ulong load_bias);
1467edf8e2afSMika Westerberg 
14689058abddSRichard Henderson /* Verify the portions of EHDR within E_IDENT for the target.
14699058abddSRichard Henderson    This can be performed before bswapping the entire header.  */
14709058abddSRichard Henderson static bool elf_check_ident(struct elfhdr *ehdr)
14719058abddSRichard Henderson {
14729058abddSRichard Henderson     return (ehdr->e_ident[EI_MAG0] == ELFMAG0
14739058abddSRichard Henderson             && ehdr->e_ident[EI_MAG1] == ELFMAG1
14749058abddSRichard Henderson             && ehdr->e_ident[EI_MAG2] == ELFMAG2
14759058abddSRichard Henderson             && ehdr->e_ident[EI_MAG3] == ELFMAG3
14769058abddSRichard Henderson             && ehdr->e_ident[EI_CLASS] == ELF_CLASS
14779058abddSRichard Henderson             && ehdr->e_ident[EI_DATA] == ELF_DATA
14789058abddSRichard Henderson             && ehdr->e_ident[EI_VERSION] == EV_CURRENT);
14799058abddSRichard Henderson }
14809058abddSRichard Henderson 
14819058abddSRichard Henderson /* Verify the portions of EHDR outside of E_IDENT for the target.
14829058abddSRichard Henderson    This has to wait until after bswapping the header.  */
14839058abddSRichard Henderson static bool elf_check_ehdr(struct elfhdr *ehdr)
14849058abddSRichard Henderson {
14859058abddSRichard Henderson     return (elf_check_arch(ehdr->e_machine)
14869058abddSRichard Henderson             && ehdr->e_ehsize == sizeof(struct elfhdr)
14879058abddSRichard Henderson             && ehdr->e_phentsize == sizeof(struct elf_phdr)
14889058abddSRichard Henderson             && (ehdr->e_type == ET_EXEC || ehdr->e_type == ET_DYN));
14899058abddSRichard Henderson }
14909058abddSRichard Henderson 
149131e31b8aSbellard /*
1492e5fe0c52Spbrook  * 'copy_elf_strings()' copies argument/envelope strings from user
149331e31b8aSbellard  * memory to free pages in kernel mem. These are in a format ready
149431e31b8aSbellard  * to be put directly into the top of new user memory.
149531e31b8aSbellard  *
149631e31b8aSbellard  */
149759baae9aSStefan Brüns static abi_ulong copy_elf_strings(int argc, char **argv, char *scratch,
149859baae9aSStefan Brüns                                   abi_ulong p, abi_ulong stack_limit)
149931e31b8aSbellard {
150059baae9aSStefan Brüns     char *tmp;
15017c4ee5bcSRichard Henderson     int len, i;
150259baae9aSStefan Brüns     abi_ulong top = p;
150331e31b8aSbellard 
150431e31b8aSbellard     if (!p) {
150531e31b8aSbellard         return 0;       /* bullet-proofing */
150631e31b8aSbellard     }
150759baae9aSStefan Brüns 
15087c4ee5bcSRichard Henderson     if (STACK_GROWS_DOWN) {
15097c4ee5bcSRichard Henderson         int offset = ((p - 1) % TARGET_PAGE_SIZE) + 1;
15107c4ee5bcSRichard Henderson         for (i = argc - 1; i >= 0; --i) {
15117c4ee5bcSRichard Henderson             tmp = argv[i];
1512edf779ffSbellard             if (!tmp) {
151331e31b8aSbellard                 fprintf(stderr, "VFS: argc is wrong");
151431e31b8aSbellard                 exit(-1);
151531e31b8aSbellard             }
151659baae9aSStefan Brüns             len = strlen(tmp) + 1;
151759baae9aSStefan Brüns             tmp += len;
151859baae9aSStefan Brüns 
151959baae9aSStefan Brüns             if (len > (p - stack_limit)) {
152031e31b8aSbellard                 return 0;
152131e31b8aSbellard             }
152231e31b8aSbellard             while (len) {
152331e31b8aSbellard                 int bytes_to_copy = (len > offset) ? offset : len;
152431e31b8aSbellard                 tmp -= bytes_to_copy;
152531e31b8aSbellard                 p -= bytes_to_copy;
152631e31b8aSbellard                 offset -= bytes_to_copy;
152731e31b8aSbellard                 len -= bytes_to_copy;
152859baae9aSStefan Brüns 
152959baae9aSStefan Brüns                 memcpy_fromfs(scratch + offset, tmp, bytes_to_copy);
153059baae9aSStefan Brüns 
153159baae9aSStefan Brüns                 if (offset == 0) {
153259baae9aSStefan Brüns                     memcpy_to_target(p, scratch, top - p);
153359baae9aSStefan Brüns                     top = p;
153459baae9aSStefan Brüns                     offset = TARGET_PAGE_SIZE;
153531e31b8aSbellard                 }
153631e31b8aSbellard             }
153731e31b8aSbellard         }
15387c4ee5bcSRichard Henderson         if (p != top) {
153959baae9aSStefan Brüns             memcpy_to_target(p, scratch + offset, top - p);
154059baae9aSStefan Brüns         }
15417c4ee5bcSRichard Henderson     } else {
15427c4ee5bcSRichard Henderson         int remaining = TARGET_PAGE_SIZE - (p % TARGET_PAGE_SIZE);
15437c4ee5bcSRichard Henderson         for (i = 0; i < argc; ++i) {
15447c4ee5bcSRichard Henderson             tmp = argv[i];
15457c4ee5bcSRichard Henderson             if (!tmp) {
15467c4ee5bcSRichard Henderson                 fprintf(stderr, "VFS: argc is wrong");
15477c4ee5bcSRichard Henderson                 exit(-1);
15487c4ee5bcSRichard Henderson             }
15497c4ee5bcSRichard Henderson             len = strlen(tmp) + 1;
15507c4ee5bcSRichard Henderson             if (len > (stack_limit - p)) {
15517c4ee5bcSRichard Henderson                 return 0;
15527c4ee5bcSRichard Henderson             }
15537c4ee5bcSRichard Henderson             while (len) {
15547c4ee5bcSRichard Henderson                 int bytes_to_copy = (len > remaining) ? remaining : len;
15557c4ee5bcSRichard Henderson 
15567c4ee5bcSRichard Henderson                 memcpy_fromfs(scratch + (p - top), tmp, bytes_to_copy);
15577c4ee5bcSRichard Henderson 
15587c4ee5bcSRichard Henderson                 tmp += bytes_to_copy;
15597c4ee5bcSRichard Henderson                 remaining -= bytes_to_copy;
15607c4ee5bcSRichard Henderson                 p += bytes_to_copy;
15617c4ee5bcSRichard Henderson                 len -= bytes_to_copy;
15627c4ee5bcSRichard Henderson 
15637c4ee5bcSRichard Henderson                 if (remaining == 0) {
15647c4ee5bcSRichard Henderson                     memcpy_to_target(top, scratch, p - top);
15657c4ee5bcSRichard Henderson                     top = p;
15667c4ee5bcSRichard Henderson                     remaining = TARGET_PAGE_SIZE;
15677c4ee5bcSRichard Henderson                 }
15687c4ee5bcSRichard Henderson             }
15697c4ee5bcSRichard Henderson         }
15707c4ee5bcSRichard Henderson         if (p != top) {
15717c4ee5bcSRichard Henderson             memcpy_to_target(top, scratch, p - top);
15727c4ee5bcSRichard Henderson         }
15737c4ee5bcSRichard Henderson     }
157459baae9aSStefan Brüns 
157531e31b8aSbellard     return p;
157631e31b8aSbellard }
157731e31b8aSbellard 
157859baae9aSStefan Brüns /* Older linux kernels provide up to MAX_ARG_PAGES (default: 32) of
157959baae9aSStefan Brüns  * argument/environment space. Newer kernels (>2.6.33) allow more,
158059baae9aSStefan Brüns  * dependent on stack size, but guarantee at least 32 pages for
158159baae9aSStefan Brüns  * backwards compatibility.
158259baae9aSStefan Brüns  */
158359baae9aSStefan Brüns #define STACK_LOWER_LIMIT (32 * TARGET_PAGE_SIZE)
158459baae9aSStefan Brüns 
158559baae9aSStefan Brüns static abi_ulong setup_arg_pages(struct linux_binprm *bprm,
158631e31b8aSbellard                                  struct image_info *info)
158731e31b8aSbellard {
158859baae9aSStefan Brüns     abi_ulong size, error, guard;
158931e31b8aSbellard 
1590703e0e89SRichard Henderson     size = guest_stack_size;
159159baae9aSStefan Brüns     if (size < STACK_LOWER_LIMIT) {
159259baae9aSStefan Brüns         size = STACK_LOWER_LIMIT;
159360dcbcb5SRichard Henderson     }
159460dcbcb5SRichard Henderson     guard = TARGET_PAGE_SIZE;
159560dcbcb5SRichard Henderson     if (guard < qemu_real_host_page_size) {
159660dcbcb5SRichard Henderson         guard = qemu_real_host_page_size;
159760dcbcb5SRichard Henderson     }
159860dcbcb5SRichard Henderson 
159960dcbcb5SRichard Henderson     error = target_mmap(0, size + guard, PROT_READ | PROT_WRITE,
160060dcbcb5SRichard Henderson                         MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
160109bfb054Sbellard     if (error == -1) {
160260dcbcb5SRichard Henderson         perror("mmap stack");
160331e31b8aSbellard         exit(-1);
160431e31b8aSbellard     }
160531e31b8aSbellard 
160660dcbcb5SRichard Henderson     /* We reserve one extra page at the top of the stack as guard.  */
16077c4ee5bcSRichard Henderson     if (STACK_GROWS_DOWN) {
160860dcbcb5SRichard Henderson         target_mprotect(error, guard, PROT_NONE);
160960dcbcb5SRichard Henderson         info->stack_limit = error + guard;
161059baae9aSStefan Brüns         return info->stack_limit + size - sizeof(void *);
16117c4ee5bcSRichard Henderson     } else {
16127c4ee5bcSRichard Henderson         target_mprotect(error + size, guard, PROT_NONE);
16137c4ee5bcSRichard Henderson         info->stack_limit = error + size;
16147c4ee5bcSRichard Henderson         return error;
16157c4ee5bcSRichard Henderson     }
161631e31b8aSbellard }
161731e31b8aSbellard 
1618cf129f3aSRichard Henderson /* Map and zero the bss.  We need to explicitly zero any fractional pages
1619cf129f3aSRichard Henderson    after the data section (i.e. bss).  */
1620cf129f3aSRichard Henderson static void zero_bss(abi_ulong elf_bss, abi_ulong last_bss, int prot)
162131e31b8aSbellard {
1622cf129f3aSRichard Henderson     uintptr_t host_start, host_map_start, host_end;
1623cf129f3aSRichard Henderson 
1624cf129f3aSRichard Henderson     last_bss = TARGET_PAGE_ALIGN(last_bss);
1625cf129f3aSRichard Henderson 
1626cf129f3aSRichard Henderson     /* ??? There is confusion between qemu_real_host_page_size and
1627cf129f3aSRichard Henderson        qemu_host_page_size here and elsewhere in target_mmap, which
1628cf129f3aSRichard Henderson        may lead to the end of the data section mapping from the file
1629cf129f3aSRichard Henderson        not being mapped.  At least there was an explicit test and
1630cf129f3aSRichard Henderson        comment for that here, suggesting that "the file size must
1631cf129f3aSRichard Henderson        be known".  The comment probably pre-dates the introduction
1632cf129f3aSRichard Henderson        of the fstat system call in target_mmap which does in fact
1633cf129f3aSRichard Henderson        find out the size.  What isn't clear is if the workaround
1634cf129f3aSRichard Henderson        here is still actually needed.  For now, continue with it,
1635cf129f3aSRichard Henderson        but merge it with the "normal" mmap that would allocate the bss.  */
1636cf129f3aSRichard Henderson 
1637cf129f3aSRichard Henderson     host_start = (uintptr_t) g2h(elf_bss);
1638cf129f3aSRichard Henderson     host_end = (uintptr_t) g2h(last_bss);
16390c2d70c4SPaolo Bonzini     host_map_start = REAL_HOST_PAGE_ALIGN(host_start);
1640cf129f3aSRichard Henderson 
1641cf129f3aSRichard Henderson     if (host_map_start < host_end) {
1642cf129f3aSRichard Henderson         void *p = mmap((void *)host_map_start, host_end - host_map_start,
1643cf129f3aSRichard Henderson                        prot, MAP_FIXED | MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
1644cf129f3aSRichard Henderson         if (p == MAP_FAILED) {
164531e31b8aSbellard             perror("cannot mmap brk");
164631e31b8aSbellard             exit(-1);
164731e31b8aSbellard         }
1648f46e9a0bSTom Musta     }
1649cf129f3aSRichard Henderson 
1650f46e9a0bSTom Musta     /* Ensure that the bss page(s) are valid */
1651f46e9a0bSTom Musta     if ((page_get_flags(last_bss-1) & prot) != prot) {
1652cf129f3aSRichard Henderson         page_set_flags(elf_bss & TARGET_PAGE_MASK, last_bss, prot | PAGE_VALID);
165331e31b8aSbellard     }
165431e31b8aSbellard 
1655cf129f3aSRichard Henderson     if (host_start < host_map_start) {
1656cf129f3aSRichard Henderson         memset((void *)host_start, 0, host_map_start - host_start);
1657853d6f7aSbellard     }
1658853d6f7aSbellard }
1659853d6f7aSbellard 
16601af02e83SMike Frysinger #ifdef CONFIG_USE_FDPIC
16611af02e83SMike Frysinger static abi_ulong loader_build_fdpic_loadmap(struct image_info *info, abi_ulong sp)
16621af02e83SMike Frysinger {
16631af02e83SMike Frysinger     uint16_t n;
16641af02e83SMike Frysinger     struct elf32_fdpic_loadseg *loadsegs = info->loadsegs;
16651af02e83SMike Frysinger 
16661af02e83SMike Frysinger     /* elf32_fdpic_loadseg */
16671af02e83SMike Frysinger     n = info->nsegs;
16681af02e83SMike Frysinger     while (n--) {
16691af02e83SMike Frysinger         sp -= 12;
16701af02e83SMike Frysinger         put_user_u32(loadsegs[n].addr, sp+0);
16711af02e83SMike Frysinger         put_user_u32(loadsegs[n].p_vaddr, sp+4);
16721af02e83SMike Frysinger         put_user_u32(loadsegs[n].p_memsz, sp+8);
16731af02e83SMike Frysinger     }
16741af02e83SMike Frysinger 
16751af02e83SMike Frysinger     /* elf32_fdpic_loadmap */
16761af02e83SMike Frysinger     sp -= 4;
16771af02e83SMike Frysinger     put_user_u16(0, sp+0); /* version */
16781af02e83SMike Frysinger     put_user_u16(info->nsegs, sp+2); /* nsegs */
16791af02e83SMike Frysinger 
16801af02e83SMike Frysinger     info->personality = PER_LINUX_FDPIC;
16811af02e83SMike Frysinger     info->loadmap_addr = sp;
16821af02e83SMike Frysinger 
16831af02e83SMike Frysinger     return sp;
16841af02e83SMike Frysinger }
16851af02e83SMike Frysinger #endif
16861af02e83SMike Frysinger 
1687992f48a0Sblueswir1 static abi_ulong create_elf_tables(abi_ulong p, int argc, int envc,
168831e31b8aSbellard                                    struct elfhdr *exec,
16898e62a717SRichard Henderson                                    struct image_info *info,
16908e62a717SRichard Henderson                                    struct image_info *interp_info)
169131e31b8aSbellard {
1692992f48a0Sblueswir1     abi_ulong sp;
16937c4ee5bcSRichard Henderson     abi_ulong u_argc, u_argv, u_envp, u_auxv;
169453a5960aSpbrook     int size;
169514322badSLaurent ALFONSI     int i;
169614322badSLaurent ALFONSI     abi_ulong u_rand_bytes;
169714322badSLaurent ALFONSI     uint8_t k_rand_bytes[16];
1698992f48a0Sblueswir1     abi_ulong u_platform;
169915338fd7Sbellard     const char *k_platform;
1700863cf0b7Sj_mayer     const int n = sizeof(elf_addr_t);
170131e31b8aSbellard 
170253a5960aSpbrook     sp = p;
17031af02e83SMike Frysinger 
17041af02e83SMike Frysinger #ifdef CONFIG_USE_FDPIC
17051af02e83SMike Frysinger     /* Needs to be before we load the env/argc/... */
17061af02e83SMike Frysinger     if (elf_is_fdpic(exec)) {
17071af02e83SMike Frysinger         /* Need 4 byte alignment for these structs */
17081af02e83SMike Frysinger         sp &= ~3;
17091af02e83SMike Frysinger         sp = loader_build_fdpic_loadmap(info, sp);
17101af02e83SMike Frysinger         info->other_info = interp_info;
17111af02e83SMike Frysinger         if (interp_info) {
17121af02e83SMike Frysinger             interp_info->other_info = info;
17131af02e83SMike Frysinger             sp = loader_build_fdpic_loadmap(interp_info, sp);
17141af02e83SMike Frysinger         }
17151af02e83SMike Frysinger     }
17161af02e83SMike Frysinger #endif
17171af02e83SMike Frysinger 
171853a5960aSpbrook     u_platform = 0;
171915338fd7Sbellard     k_platform = ELF_PLATFORM;
172015338fd7Sbellard     if (k_platform) {
172115338fd7Sbellard         size_t len = strlen(k_platform) + 1;
17227c4ee5bcSRichard Henderson         if (STACK_GROWS_DOWN) {
172353a5960aSpbrook             sp -= (len + n - 1) & ~(n - 1);
172453a5960aSpbrook             u_platform = sp;
1725579a97f7Sbellard             /* FIXME - check return value of memcpy_to_target() for failure */
172653a5960aSpbrook             memcpy_to_target(sp, k_platform, len);
17277c4ee5bcSRichard Henderson         } else {
17287c4ee5bcSRichard Henderson             memcpy_to_target(sp, k_platform, len);
17297c4ee5bcSRichard Henderson             u_platform = sp;
17307c4ee5bcSRichard Henderson             sp += len + 1;
17317c4ee5bcSRichard Henderson         }
17327c4ee5bcSRichard Henderson     }
17337c4ee5bcSRichard Henderson 
17347c4ee5bcSRichard Henderson     /* Provide 16 byte alignment for the PRNG, and basic alignment for
17357c4ee5bcSRichard Henderson      * the argv and envp pointers.
17367c4ee5bcSRichard Henderson      */
17377c4ee5bcSRichard Henderson     if (STACK_GROWS_DOWN) {
17387c4ee5bcSRichard Henderson         sp = QEMU_ALIGN_DOWN(sp, 16);
17397c4ee5bcSRichard Henderson     } else {
17407c4ee5bcSRichard Henderson         sp = QEMU_ALIGN_UP(sp, 16);
174115338fd7Sbellard     }
174214322badSLaurent ALFONSI 
174314322badSLaurent ALFONSI     /*
174414322badSLaurent ALFONSI      * Generate 16 random bytes for userspace PRNG seeding (not
174514322badSLaurent ALFONSI      * cryptically secure but it's not the aim of QEMU).
174614322badSLaurent ALFONSI      */
174714322badSLaurent ALFONSI     for (i = 0; i < 16; i++) {
174814322badSLaurent ALFONSI         k_rand_bytes[i] = rand();
174914322badSLaurent ALFONSI     }
17507c4ee5bcSRichard Henderson     if (STACK_GROWS_DOWN) {
175114322badSLaurent ALFONSI         sp -= 16;
175214322badSLaurent ALFONSI         u_rand_bytes = sp;
175314322badSLaurent ALFONSI         /* FIXME - check return value of memcpy_to_target() for failure */
175414322badSLaurent ALFONSI         memcpy_to_target(sp, k_rand_bytes, 16);
17557c4ee5bcSRichard Henderson     } else {
17567c4ee5bcSRichard Henderson         memcpy_to_target(sp, k_rand_bytes, 16);
17577c4ee5bcSRichard Henderson         u_rand_bytes = sp;
17587c4ee5bcSRichard Henderson         sp += 16;
17597c4ee5bcSRichard Henderson     }
176014322badSLaurent ALFONSI 
176153a5960aSpbrook     size = (DLINFO_ITEMS + 1) * 2;
176215338fd7Sbellard     if (k_platform)
176353a5960aSpbrook         size += 2;
1764f5155289Sbellard #ifdef DLINFO_ARCH_ITEMS
176553a5960aSpbrook     size += DLINFO_ARCH_ITEMS * 2;
1766f5155289Sbellard #endif
1767ad6919dcSPeter Maydell #ifdef ELF_HWCAP2
1768ad6919dcSPeter Maydell     size += 2;
1769ad6919dcSPeter Maydell #endif
1770f516511eSPeter Maydell     info->auxv_len = size * n;
1771f516511eSPeter Maydell 
177253a5960aSpbrook     size += envc + argc + 2;
1773b9329d4bSRichard Henderson     size += 1;  /* argc itself */
177453a5960aSpbrook     size *= n;
17757c4ee5bcSRichard Henderson 
17767c4ee5bcSRichard Henderson     /* Allocate space and finalize stack alignment for entry now.  */
17777c4ee5bcSRichard Henderson     if (STACK_GROWS_DOWN) {
17787c4ee5bcSRichard Henderson         u_argc = QEMU_ALIGN_DOWN(sp - size, STACK_ALIGNMENT);
17797c4ee5bcSRichard Henderson         sp = u_argc;
17807c4ee5bcSRichard Henderson     } else {
17817c4ee5bcSRichard Henderson         u_argc = sp;
17827c4ee5bcSRichard Henderson         sp = QEMU_ALIGN_UP(sp + size, STACK_ALIGNMENT);
17837c4ee5bcSRichard Henderson     }
17847c4ee5bcSRichard Henderson 
17857c4ee5bcSRichard Henderson     u_argv = u_argc + n;
17867c4ee5bcSRichard Henderson     u_envp = u_argv + (argc + 1) * n;
17877c4ee5bcSRichard Henderson     u_auxv = u_envp + (envc + 1) * n;
17887c4ee5bcSRichard Henderson     info->saved_auxv = u_auxv;
17897c4ee5bcSRichard Henderson     info->arg_start = u_argv;
17907c4ee5bcSRichard Henderson     info->arg_end = u_argv + argc * n;
1791f5155289Sbellard 
1792863cf0b7Sj_mayer     /* This is correct because Linux defines
1793863cf0b7Sj_mayer      * elf_addr_t as Elf32_Off / Elf64_Off
1794863cf0b7Sj_mayer      */
179553a5960aSpbrook #define NEW_AUX_ENT(id, val) do {               \
17967c4ee5bcSRichard Henderson         put_user_ual(id, u_auxv);  u_auxv += n; \
17977c4ee5bcSRichard Henderson         put_user_ual(val, u_auxv); u_auxv += n; \
179853a5960aSpbrook     } while(0)
17992f619698Sbellard 
180082991bedSPeter Maydell #ifdef ARCH_DLINFO
180182991bedSPeter Maydell     /*
180282991bedSPeter Maydell      * ARCH_DLINFO must come first so platform specific code can enforce
180382991bedSPeter Maydell      * special alignment requirements on the AUXV if necessary (eg. PPC).
180482991bedSPeter Maydell      */
180582991bedSPeter Maydell     ARCH_DLINFO;
180682991bedSPeter Maydell #endif
1807f516511eSPeter Maydell     /* There must be exactly DLINFO_ITEMS entries here, or the assert
1808f516511eSPeter Maydell      * on info->auxv_len will trigger.
1809f516511eSPeter Maydell      */
18108e62a717SRichard Henderson     NEW_AUX_ENT(AT_PHDR, (abi_ulong)(info->load_addr + exec->e_phoff));
1811992f48a0Sblueswir1     NEW_AUX_ENT(AT_PHENT, (abi_ulong)(sizeof (struct elf_phdr)));
1812992f48a0Sblueswir1     NEW_AUX_ENT(AT_PHNUM, (abi_ulong)(exec->e_phnum));
1813a70daba3SAlexander Graf     NEW_AUX_ENT(AT_PAGESZ, (abi_ulong)(MAX(TARGET_PAGE_SIZE, getpagesize())));
18148e62a717SRichard Henderson     NEW_AUX_ENT(AT_BASE, (abi_ulong)(interp_info ? interp_info->load_addr : 0));
1815992f48a0Sblueswir1     NEW_AUX_ENT(AT_FLAGS, (abi_ulong)0);
18168e62a717SRichard Henderson     NEW_AUX_ENT(AT_ENTRY, info->entry);
1817992f48a0Sblueswir1     NEW_AUX_ENT(AT_UID, (abi_ulong) getuid());
1818992f48a0Sblueswir1     NEW_AUX_ENT(AT_EUID, (abi_ulong) geteuid());
1819992f48a0Sblueswir1     NEW_AUX_ENT(AT_GID, (abi_ulong) getgid());
1820992f48a0Sblueswir1     NEW_AUX_ENT(AT_EGID, (abi_ulong) getegid());
1821992f48a0Sblueswir1     NEW_AUX_ENT(AT_HWCAP, (abi_ulong) ELF_HWCAP);
1822a07c67dfSpbrook     NEW_AUX_ENT(AT_CLKTCK, (abi_ulong) sysconf(_SC_CLK_TCK));
182314322badSLaurent ALFONSI     NEW_AUX_ENT(AT_RANDOM, (abi_ulong) u_rand_bytes);
1824444cd5c3SMarco A L Barbosa     NEW_AUX_ENT(AT_SECURE, (abi_ulong) qemu_getauxval(AT_SECURE));
182514322badSLaurent ALFONSI 
1826ad6919dcSPeter Maydell #ifdef ELF_HWCAP2
1827ad6919dcSPeter Maydell     NEW_AUX_ENT(AT_HWCAP2, (abi_ulong) ELF_HWCAP2);
1828ad6919dcSPeter Maydell #endif
1829ad6919dcSPeter Maydell 
18307c4ee5bcSRichard Henderson     if (u_platform) {
183153a5960aSpbrook         NEW_AUX_ENT(AT_PLATFORM, u_platform);
18327c4ee5bcSRichard Henderson     }
18337c4ee5bcSRichard Henderson     NEW_AUX_ENT (AT_NULL, 0);
1834f5155289Sbellard #undef NEW_AUX_ENT
1835f5155289Sbellard 
1836f516511eSPeter Maydell     /* Check that our initial calculation of the auxv length matches how much
1837f516511eSPeter Maydell      * we actually put into it.
1838f516511eSPeter Maydell      */
1839f516511eSPeter Maydell     assert(info->auxv_len == u_auxv - info->saved_auxv);
1840edf8e2afSMika Westerberg 
18417c4ee5bcSRichard Henderson     put_user_ual(argc, u_argc);
18427c4ee5bcSRichard Henderson 
18437c4ee5bcSRichard Henderson     p = info->arg_strings;
18447c4ee5bcSRichard Henderson     for (i = 0; i < argc; ++i) {
18457c4ee5bcSRichard Henderson         put_user_ual(p, u_argv);
18467c4ee5bcSRichard Henderson         u_argv += n;
18477c4ee5bcSRichard Henderson         p += target_strlen(p) + 1;
18487c4ee5bcSRichard Henderson     }
18497c4ee5bcSRichard Henderson     put_user_ual(0, u_argv);
18507c4ee5bcSRichard Henderson 
18517c4ee5bcSRichard Henderson     p = info->env_strings;
18527c4ee5bcSRichard Henderson     for (i = 0; i < envc; ++i) {
18537c4ee5bcSRichard Henderson         put_user_ual(p, u_envp);
18547c4ee5bcSRichard Henderson         u_envp += n;
18557c4ee5bcSRichard Henderson         p += target_strlen(p) + 1;
18567c4ee5bcSRichard Henderson     }
18577c4ee5bcSRichard Henderson     put_user_ual(0, u_envp);
18587c4ee5bcSRichard Henderson 
185931e31b8aSbellard     return sp;
186031e31b8aSbellard }
186131e31b8aSbellard 
1862dce10401SMeador Inge unsigned long init_guest_space(unsigned long host_start,
1863dce10401SMeador Inge                                unsigned long host_size,
1864dce10401SMeador Inge                                unsigned long guest_start,
1865dce10401SMeador Inge                                bool fixed)
1866dce10401SMeador Inge {
1867293f2060SLuke Shumaker     unsigned long current_start, aligned_start;
1868dce10401SMeador Inge     int flags;
1869dce10401SMeador Inge 
1870dce10401SMeador Inge     assert(host_start || host_size);
1871dce10401SMeador Inge 
1872dce10401SMeador Inge     /* If just a starting address is given, then just verify that
1873dce10401SMeador Inge      * address.  */
1874dce10401SMeador Inge     if (host_start && !host_size) {
18758756e136SLuke Shumaker #if defined(TARGET_ARM) && !defined(TARGET_AARCH64)
1876c3637eafSLuke Shumaker         if (init_guest_commpage(host_start, host_size) != 1) {
1877dce10401SMeador Inge             return (unsigned long)-1;
1878dce10401SMeador Inge         }
18798756e136SLuke Shumaker #endif
18808756e136SLuke Shumaker         return host_start;
1881dce10401SMeador Inge     }
1882dce10401SMeador Inge 
1883dce10401SMeador Inge     /* Setup the initial flags and start address.  */
1884dce10401SMeador Inge     current_start = host_start & qemu_host_page_mask;
1885dce10401SMeador Inge     flags = MAP_ANONYMOUS | MAP_PRIVATE | MAP_NORESERVE;
1886dce10401SMeador Inge     if (fixed) {
1887dce10401SMeador Inge         flags |= MAP_FIXED;
1888dce10401SMeador Inge     }
1889dce10401SMeador Inge 
1890dce10401SMeador Inge     /* Otherwise, a non-zero size region of memory needs to be mapped
1891dce10401SMeador Inge      * and validated.  */
1892*2a53535aSLuke Shumaker 
1893*2a53535aSLuke Shumaker #if defined(TARGET_ARM) && !defined(TARGET_AARCH64)
1894*2a53535aSLuke Shumaker     /* On 32-bit ARM, we need to map not just the usable memory, but
1895*2a53535aSLuke Shumaker      * also the commpage.  Try to find a suitable place by allocating
1896*2a53535aSLuke Shumaker      * a big chunk for all of it.  If host_start, then the naive
1897*2a53535aSLuke Shumaker      * strategy probably does good enough.
1898*2a53535aSLuke Shumaker      */
1899*2a53535aSLuke Shumaker     if (!host_start) {
1900*2a53535aSLuke Shumaker         unsigned long guest_full_size, host_full_size, real_start;
1901*2a53535aSLuke Shumaker 
1902*2a53535aSLuke Shumaker         guest_full_size =
1903*2a53535aSLuke Shumaker             (0xffff0f00 & qemu_host_page_mask) + qemu_host_page_size;
1904*2a53535aSLuke Shumaker         host_full_size = guest_full_size - guest_start;
1905*2a53535aSLuke Shumaker         real_start = (unsigned long)
1906*2a53535aSLuke Shumaker             mmap(NULL, host_full_size, PROT_NONE, flags, -1, 0);
1907*2a53535aSLuke Shumaker         if (real_start == (unsigned long)-1) {
1908*2a53535aSLuke Shumaker             if (host_size < host_full_size - qemu_host_page_size) {
1909*2a53535aSLuke Shumaker                 /* We failed to map a continous segment, but we're
1910*2a53535aSLuke Shumaker                  * allowed to have a gap between the usable memory and
1911*2a53535aSLuke Shumaker                  * the commpage where other things can be mapped.
1912*2a53535aSLuke Shumaker                  * This sparseness gives us more flexibility to find
1913*2a53535aSLuke Shumaker                  * an address range.
1914*2a53535aSLuke Shumaker                  */
1915*2a53535aSLuke Shumaker                 goto naive;
1916*2a53535aSLuke Shumaker             }
1917*2a53535aSLuke Shumaker             return (unsigned long)-1;
1918*2a53535aSLuke Shumaker         }
1919*2a53535aSLuke Shumaker         munmap((void *)real_start, host_full_size);
1920*2a53535aSLuke Shumaker         if (real_start & ~qemu_host_page_mask) {
1921*2a53535aSLuke Shumaker             /* The same thing again, but with an extra qemu_host_page_size
1922*2a53535aSLuke Shumaker              * so that we can shift around alignment.
1923*2a53535aSLuke Shumaker              */
1924*2a53535aSLuke Shumaker             unsigned long real_size = host_full_size + qemu_host_page_size;
1925*2a53535aSLuke Shumaker             real_start = (unsigned long)
1926*2a53535aSLuke Shumaker                 mmap(NULL, real_size, PROT_NONE, flags, -1, 0);
1927*2a53535aSLuke Shumaker             if (real_start == (unsigned long)-1) {
1928*2a53535aSLuke Shumaker                 if (host_size < host_full_size - qemu_host_page_size) {
1929*2a53535aSLuke Shumaker                     goto naive;
1930*2a53535aSLuke Shumaker                 }
1931*2a53535aSLuke Shumaker                 return (unsigned long)-1;
1932*2a53535aSLuke Shumaker             }
1933*2a53535aSLuke Shumaker             munmap((void *)real_start, real_size);
1934*2a53535aSLuke Shumaker             real_start = HOST_PAGE_ALIGN(real_start);
1935*2a53535aSLuke Shumaker         }
1936*2a53535aSLuke Shumaker         current_start = real_start;
1937*2a53535aSLuke Shumaker     }
1938*2a53535aSLuke Shumaker  naive:
1939*2a53535aSLuke Shumaker #endif
1940*2a53535aSLuke Shumaker 
1941dce10401SMeador Inge     while (1) {
1942293f2060SLuke Shumaker         unsigned long real_start, real_size, aligned_size;
1943293f2060SLuke Shumaker         aligned_size = real_size = host_size;
1944806d1021SMeador Inge 
1945dce10401SMeador Inge         /* Do not use mmap_find_vma here because that is limited to the
1946dce10401SMeador Inge          * guest address space.  We are going to make the
1947dce10401SMeador Inge          * guest address space fit whatever we're given.
1948dce10401SMeador Inge          */
1949dce10401SMeador Inge         real_start = (unsigned long)
1950dce10401SMeador Inge             mmap((void *)current_start, host_size, PROT_NONE, flags, -1, 0);
1951dce10401SMeador Inge         if (real_start == (unsigned long)-1) {
1952dce10401SMeador Inge             return (unsigned long)-1;
1953dce10401SMeador Inge         }
1954dce10401SMeador Inge 
1955aac362e4SLuke Shumaker         /* Check to see if the address is valid.  */
1956aac362e4SLuke Shumaker         if (host_start && real_start != current_start) {
1957aac362e4SLuke Shumaker             goto try_again;
1958aac362e4SLuke Shumaker         }
1959aac362e4SLuke Shumaker 
1960806d1021SMeador Inge         /* Ensure the address is properly aligned.  */
1961806d1021SMeador Inge         if (real_start & ~qemu_host_page_mask) {
1962293f2060SLuke Shumaker             /* Ideally, we adjust like
1963293f2060SLuke Shumaker              *
1964293f2060SLuke Shumaker              *    pages: [  ][  ][  ][  ][  ]
1965293f2060SLuke Shumaker              *      old:   [   real   ]
1966293f2060SLuke Shumaker              *             [ aligned  ]
1967293f2060SLuke Shumaker              *      new:   [     real     ]
1968293f2060SLuke Shumaker              *               [ aligned  ]
1969293f2060SLuke Shumaker              *
1970293f2060SLuke Shumaker              * But if there is something else mapped right after it,
1971293f2060SLuke Shumaker              * then obviously it won't have room to grow, and the
1972293f2060SLuke Shumaker              * kernel will put the new larger real someplace else with
1973293f2060SLuke Shumaker              * unknown alignment (if we made it to here, then
1974293f2060SLuke Shumaker              * fixed=false).  Which is why we grow real by a full page
1975293f2060SLuke Shumaker              * size, instead of by part of one; so that even if we get
1976293f2060SLuke Shumaker              * moved, we can still guarantee alignment.  But this does
1977293f2060SLuke Shumaker              * mean that there is a padding of < 1 page both before
1978293f2060SLuke Shumaker              * and after the aligned range; the "after" could could
1979293f2060SLuke Shumaker              * cause problems for ARM emulation where it could butt in
1980293f2060SLuke Shumaker              * to where we need to put the commpage.
1981293f2060SLuke Shumaker              */
1982806d1021SMeador Inge             munmap((void *)real_start, host_size);
1983293f2060SLuke Shumaker             real_size = aligned_size + qemu_host_page_size;
1984806d1021SMeador Inge             real_start = (unsigned long)
1985806d1021SMeador Inge                 mmap((void *)real_start, real_size, PROT_NONE, flags, -1, 0);
1986806d1021SMeador Inge             if (real_start == (unsigned long)-1) {
1987806d1021SMeador Inge                 return (unsigned long)-1;
1988806d1021SMeador Inge             }
1989293f2060SLuke Shumaker             aligned_start = HOST_PAGE_ALIGN(real_start);
1990293f2060SLuke Shumaker         } else {
1991293f2060SLuke Shumaker             aligned_start = real_start;
1992806d1021SMeador Inge         }
1993806d1021SMeador Inge 
19948756e136SLuke Shumaker #if defined(TARGET_ARM) && !defined(TARGET_AARCH64)
19958756e136SLuke Shumaker         /* On 32-bit ARM, we need to also be able to map the commpage.  */
1996293f2060SLuke Shumaker         int valid = init_guest_commpage(aligned_start - guest_start,
1997293f2060SLuke Shumaker                                         aligned_size + guest_start);
19987ad75eeaSLuke Shumaker         if (valid == -1) {
1999293f2060SLuke Shumaker             munmap((void *)real_start, real_size);
2000806d1021SMeador Inge             return (unsigned long)-1;
20017ad75eeaSLuke Shumaker         } else if (valid == 0) {
20027ad75eeaSLuke Shumaker             goto try_again;
2003806d1021SMeador Inge         }
20048756e136SLuke Shumaker #endif
2005dce10401SMeador Inge 
20067ad75eeaSLuke Shumaker         /* If nothing has said `return -1` or `goto try_again` yet,
20077ad75eeaSLuke Shumaker          * then the address we have is good.
20087ad75eeaSLuke Shumaker          */
20097ad75eeaSLuke Shumaker         break;
20107ad75eeaSLuke Shumaker 
20117ad75eeaSLuke Shumaker     try_again:
2012dce10401SMeador Inge         /* That address didn't work.  Unmap and try a different one.
2013dce10401SMeador Inge          * The address the host picked because is typically right at
2014dce10401SMeador Inge          * the top of the host address space and leaves the guest with
2015dce10401SMeador Inge          * no usable address space.  Resort to a linear search.  We
2016dce10401SMeador Inge          * already compensated for mmap_min_addr, so this should not
2017dce10401SMeador Inge          * happen often.  Probably means we got unlucky and host
2018dce10401SMeador Inge          * address space randomization put a shared library somewhere
2019dce10401SMeador Inge          * inconvenient.
20208c17d862SLuke Shumaker          *
20218c17d862SLuke Shumaker          * This is probably a good strategy if host_start, but is
20228c17d862SLuke Shumaker          * probably a bad strategy if not, which means we got here
20238c17d862SLuke Shumaker          * because of trouble with ARM commpage setup.
2024dce10401SMeador Inge          */
2025293f2060SLuke Shumaker         munmap((void *)real_start, real_size);
2026dce10401SMeador Inge         current_start += qemu_host_page_size;
2027dce10401SMeador Inge         if (host_start == current_start) {
2028dce10401SMeador Inge             /* Theoretically possible if host doesn't have any suitably
2029dce10401SMeador Inge              * aligned areas.  Normally the first mmap will fail.
2030dce10401SMeador Inge              */
2031dce10401SMeador Inge             return (unsigned long)-1;
2032dce10401SMeador Inge         }
2033dce10401SMeador Inge     }
2034dce10401SMeador Inge 
203513829020SPaolo Bonzini     qemu_log_mask(CPU_LOG_PAGE, "Reserved 0x%lx bytes of guest address space\n", host_size);
2036806d1021SMeador Inge 
2037293f2060SLuke Shumaker     return aligned_start;
2038dce10401SMeador Inge }
2039dce10401SMeador Inge 
2040f3ed1f5dSPeter Maydell static void probe_guest_base(const char *image_name,
2041f3ed1f5dSPeter Maydell                              abi_ulong loaddr, abi_ulong hiaddr)
2042f3ed1f5dSPeter Maydell {
2043f3ed1f5dSPeter Maydell     /* Probe for a suitable guest base address, if the user has not set
2044f3ed1f5dSPeter Maydell      * it explicitly, and set guest_base appropriately.
2045f3ed1f5dSPeter Maydell      * In case of error we will print a suitable message and exit.
2046f3ed1f5dSPeter Maydell      */
2047f3ed1f5dSPeter Maydell     const char *errmsg;
2048f3ed1f5dSPeter Maydell     if (!have_guest_base && !reserved_va) {
2049f3ed1f5dSPeter Maydell         unsigned long host_start, real_start, host_size;
2050f3ed1f5dSPeter Maydell 
2051f3ed1f5dSPeter Maydell         /* Round addresses to page boundaries.  */
2052f3ed1f5dSPeter Maydell         loaddr &= qemu_host_page_mask;
2053f3ed1f5dSPeter Maydell         hiaddr = HOST_PAGE_ALIGN(hiaddr);
2054f3ed1f5dSPeter Maydell 
2055f3ed1f5dSPeter Maydell         if (loaddr < mmap_min_addr) {
2056f3ed1f5dSPeter Maydell             host_start = HOST_PAGE_ALIGN(mmap_min_addr);
2057f3ed1f5dSPeter Maydell         } else {
2058f3ed1f5dSPeter Maydell             host_start = loaddr;
2059f3ed1f5dSPeter Maydell             if (host_start != loaddr) {
2060f3ed1f5dSPeter Maydell                 errmsg = "Address overflow loading ELF binary";
2061f3ed1f5dSPeter Maydell                 goto exit_errmsg;
2062f3ed1f5dSPeter Maydell             }
2063f3ed1f5dSPeter Maydell         }
2064f3ed1f5dSPeter Maydell         host_size = hiaddr - loaddr;
2065dce10401SMeador Inge 
2066dce10401SMeador Inge         /* Setup the initial guest memory space with ranges gleaned from
2067dce10401SMeador Inge          * the ELF image that is being loaded.
2068dce10401SMeador Inge          */
2069dce10401SMeador Inge         real_start = init_guest_space(host_start, host_size, loaddr, false);
2070f3ed1f5dSPeter Maydell         if (real_start == (unsigned long)-1) {
2071f3ed1f5dSPeter Maydell             errmsg = "Unable to find space for application";
2072f3ed1f5dSPeter Maydell             goto exit_errmsg;
2073f3ed1f5dSPeter Maydell         }
2074dce10401SMeador Inge         guest_base = real_start - loaddr;
2075dce10401SMeador Inge 
207613829020SPaolo Bonzini         qemu_log_mask(CPU_LOG_PAGE, "Relocating guest address space from 0x"
2077f3ed1f5dSPeter Maydell                       TARGET_ABI_FMT_lx " to 0x%lx\n",
2078f3ed1f5dSPeter Maydell                       loaddr, real_start);
2079f3ed1f5dSPeter Maydell     }
2080f3ed1f5dSPeter Maydell     return;
2081f3ed1f5dSPeter Maydell 
2082f3ed1f5dSPeter Maydell exit_errmsg:
2083f3ed1f5dSPeter Maydell     fprintf(stderr, "%s: %s\n", image_name, errmsg);
2084f3ed1f5dSPeter Maydell     exit(-1);
2085f3ed1f5dSPeter Maydell }
2086f3ed1f5dSPeter Maydell 
2087f3ed1f5dSPeter Maydell 
20888e62a717SRichard Henderson /* Load an ELF image into the address space.
208931e31b8aSbellard 
20908e62a717SRichard Henderson    IMAGE_NAME is the filename of the image, to use in error messages.
20918e62a717SRichard Henderson    IMAGE_FD is the open file descriptor for the image.
20928e62a717SRichard Henderson 
20938e62a717SRichard Henderson    BPRM_BUF is a copy of the beginning of the file; this of course
20948e62a717SRichard Henderson    contains the elf file header at offset 0.  It is assumed that this
20958e62a717SRichard Henderson    buffer is sufficiently aligned to present no problems to the host
20968e62a717SRichard Henderson    in accessing data at aligned offsets within the buffer.
20978e62a717SRichard Henderson 
20988e62a717SRichard Henderson    On return: INFO values will be filled in, as necessary or available.  */
20998e62a717SRichard Henderson 
21008e62a717SRichard Henderson static void load_elf_image(const char *image_name, int image_fd,
2101bf858897SRichard Henderson                            struct image_info *info, char **pinterp_name,
21029955ffacSRichard Henderson                            char bprm_buf[BPRM_BUF_SIZE])
210331e31b8aSbellard {
21048e62a717SRichard Henderson     struct elfhdr *ehdr = (struct elfhdr *)bprm_buf;
21058e62a717SRichard Henderson     struct elf_phdr *phdr;
21068e62a717SRichard Henderson     abi_ulong load_addr, load_bias, loaddr, hiaddr, error;
21078e62a717SRichard Henderson     int i, retval;
21088e62a717SRichard Henderson     const char *errmsg;
210931e31b8aSbellard 
21108e62a717SRichard Henderson     /* First of all, some simple consistency checks */
21118e62a717SRichard Henderson     errmsg = "Invalid ELF image for this architecture";
21128e62a717SRichard Henderson     if (!elf_check_ident(ehdr)) {
21138e62a717SRichard Henderson         goto exit_errmsg;
21148e62a717SRichard Henderson     }
21158e62a717SRichard Henderson     bswap_ehdr(ehdr);
21168e62a717SRichard Henderson     if (!elf_check_ehdr(ehdr)) {
21178e62a717SRichard Henderson         goto exit_errmsg;
211831e31b8aSbellard     }
211931e31b8aSbellard 
21208e62a717SRichard Henderson     i = ehdr->e_phnum * sizeof(struct elf_phdr);
21218e62a717SRichard Henderson     if (ehdr->e_phoff + i <= BPRM_BUF_SIZE) {
21228e62a717SRichard Henderson         phdr = (struct elf_phdr *)(bprm_buf + ehdr->e_phoff);
21239955ffacSRichard Henderson     } else {
21248e62a717SRichard Henderson         phdr = (struct elf_phdr *) alloca(i);
21258e62a717SRichard Henderson         retval = pread(image_fd, phdr, i, ehdr->e_phoff);
21269955ffacSRichard Henderson         if (retval != i) {
21278e62a717SRichard Henderson             goto exit_read;
21289955ffacSRichard Henderson         }
212931e31b8aSbellard     }
21308e62a717SRichard Henderson     bswap_phdr(phdr, ehdr->e_phnum);
213109bfb054Sbellard 
21321af02e83SMike Frysinger #ifdef CONFIG_USE_FDPIC
21331af02e83SMike Frysinger     info->nsegs = 0;
21341af02e83SMike Frysinger     info->pt_dynamic_addr = 0;
21351af02e83SMike Frysinger #endif
21361af02e83SMike Frysinger 
213798c1076cSAlex Bennée     mmap_lock();
213898c1076cSAlex Bennée 
2139682674b8SRichard Henderson     /* Find the maximum size of the image and allocate an appropriate
2140682674b8SRichard Henderson        amount of memory to handle that.  */
2141682674b8SRichard Henderson     loaddr = -1, hiaddr = 0;
21428e62a717SRichard Henderson     for (i = 0; i < ehdr->e_phnum; ++i) {
21438e62a717SRichard Henderson         if (phdr[i].p_type == PT_LOAD) {
2144a93934feSJonas Maebe             abi_ulong a = phdr[i].p_vaddr - phdr[i].p_offset;
2145682674b8SRichard Henderson             if (a < loaddr) {
2146682674b8SRichard Henderson                 loaddr = a;
2147682674b8SRichard Henderson             }
2148ccf661f8STom Musta             a = phdr[i].p_vaddr + phdr[i].p_memsz;
2149682674b8SRichard Henderson             if (a > hiaddr) {
2150682674b8SRichard Henderson                 hiaddr = a;
2151682674b8SRichard Henderson             }
21521af02e83SMike Frysinger #ifdef CONFIG_USE_FDPIC
21531af02e83SMike Frysinger             ++info->nsegs;
21541af02e83SMike Frysinger #endif
2155682674b8SRichard Henderson         }
2156682674b8SRichard Henderson     }
2157682674b8SRichard Henderson 
2158682674b8SRichard Henderson     load_addr = loaddr;
21598e62a717SRichard Henderson     if (ehdr->e_type == ET_DYN) {
2160682674b8SRichard Henderson         /* The image indicates that it can be loaded anywhere.  Find a
2161682674b8SRichard Henderson            location that can hold the memory space required.  If the
2162682674b8SRichard Henderson            image is pre-linked, LOADDR will be non-zero.  Since we do
2163682674b8SRichard Henderson            not supply MAP_FIXED here we'll use that address if and
2164682674b8SRichard Henderson            only if it remains available.  */
2165682674b8SRichard Henderson         load_addr = target_mmap(loaddr, hiaddr - loaddr, PROT_NONE,
2166682674b8SRichard Henderson                                 MAP_PRIVATE | MAP_ANON | MAP_NORESERVE,
216709bfb054Sbellard                                 -1, 0);
2168682674b8SRichard Henderson         if (load_addr == -1) {
21698e62a717SRichard Henderson             goto exit_perror;
217009bfb054Sbellard         }
2171bf858897SRichard Henderson     } else if (pinterp_name != NULL) {
2172bf858897SRichard Henderson         /* This is the main executable.  Make sure that the low
2173bf858897SRichard Henderson            address does not conflict with MMAP_MIN_ADDR or the
2174bf858897SRichard Henderson            QEMU application itself.  */
2175f3ed1f5dSPeter Maydell         probe_guest_base(image_name, loaddr, hiaddr);
217609bfb054Sbellard     }
2177682674b8SRichard Henderson     load_bias = load_addr - loaddr;
217809bfb054Sbellard 
21791af02e83SMike Frysinger #ifdef CONFIG_USE_FDPIC
21801af02e83SMike Frysinger     {
21811af02e83SMike Frysinger         struct elf32_fdpic_loadseg *loadsegs = info->loadsegs =
21827267c094SAnthony Liguori             g_malloc(sizeof(*loadsegs) * info->nsegs);
21831af02e83SMike Frysinger 
21841af02e83SMike Frysinger         for (i = 0; i < ehdr->e_phnum; ++i) {
21851af02e83SMike Frysinger             switch (phdr[i].p_type) {
21861af02e83SMike Frysinger             case PT_DYNAMIC:
21871af02e83SMike Frysinger                 info->pt_dynamic_addr = phdr[i].p_vaddr + load_bias;
21881af02e83SMike Frysinger                 break;
21891af02e83SMike Frysinger             case PT_LOAD:
21901af02e83SMike Frysinger                 loadsegs->addr = phdr[i].p_vaddr + load_bias;
21911af02e83SMike Frysinger                 loadsegs->p_vaddr = phdr[i].p_vaddr;
21921af02e83SMike Frysinger                 loadsegs->p_memsz = phdr[i].p_memsz;
21931af02e83SMike Frysinger                 ++loadsegs;
21941af02e83SMike Frysinger                 break;
21951af02e83SMike Frysinger             }
21961af02e83SMike Frysinger         }
21971af02e83SMike Frysinger     }
21981af02e83SMike Frysinger #endif
21991af02e83SMike Frysinger 
22008e62a717SRichard Henderson     info->load_bias = load_bias;
22018e62a717SRichard Henderson     info->load_addr = load_addr;
22028e62a717SRichard Henderson     info->entry = ehdr->e_entry + load_bias;
22038e62a717SRichard Henderson     info->start_code = -1;
22048e62a717SRichard Henderson     info->end_code = 0;
22058e62a717SRichard Henderson     info->start_data = -1;
22068e62a717SRichard Henderson     info->end_data = 0;
22078e62a717SRichard Henderson     info->brk = 0;
2208d8fd2954SPaul Brook     info->elf_flags = ehdr->e_flags;
22098e62a717SRichard Henderson 
22108e62a717SRichard Henderson     for (i = 0; i < ehdr->e_phnum; i++) {
22118e62a717SRichard Henderson         struct elf_phdr *eppnt = phdr + i;
221231e31b8aSbellard         if (eppnt->p_type == PT_LOAD) {
2213682674b8SRichard Henderson             abi_ulong vaddr, vaddr_po, vaddr_ps, vaddr_ef, vaddr_em;
221431e31b8aSbellard             int elf_prot = 0;
221531e31b8aSbellard 
221631e31b8aSbellard             if (eppnt->p_flags & PF_R) elf_prot =  PROT_READ;
221731e31b8aSbellard             if (eppnt->p_flags & PF_W) elf_prot |= PROT_WRITE;
221831e31b8aSbellard             if (eppnt->p_flags & PF_X) elf_prot |= PROT_EXEC;
221931e31b8aSbellard 
2220682674b8SRichard Henderson             vaddr = load_bias + eppnt->p_vaddr;
2221682674b8SRichard Henderson             vaddr_po = TARGET_ELF_PAGEOFFSET(vaddr);
2222682674b8SRichard Henderson             vaddr_ps = TARGET_ELF_PAGESTART(vaddr);
2223682674b8SRichard Henderson 
2224682674b8SRichard Henderson             error = target_mmap(vaddr_ps, eppnt->p_filesz + vaddr_po,
2225682674b8SRichard Henderson                                 elf_prot, MAP_PRIVATE | MAP_FIXED,
22268e62a717SRichard Henderson                                 image_fd, eppnt->p_offset - vaddr_po);
2227e89f07d3Spbrook             if (error == -1) {
22288e62a717SRichard Henderson                 goto exit_perror;
222931e31b8aSbellard             }
223031e31b8aSbellard 
2231682674b8SRichard Henderson             vaddr_ef = vaddr + eppnt->p_filesz;
2232682674b8SRichard Henderson             vaddr_em = vaddr + eppnt->p_memsz;
223331e31b8aSbellard 
2234cf129f3aSRichard Henderson             /* If the load segment requests extra zeros (e.g. bss), map it.  */
2235682674b8SRichard Henderson             if (vaddr_ef < vaddr_em) {
2236682674b8SRichard Henderson                 zero_bss(vaddr_ef, vaddr_em, elf_prot);
2237682674b8SRichard Henderson             }
22388e62a717SRichard Henderson 
22398e62a717SRichard Henderson             /* Find the full program boundaries.  */
22408e62a717SRichard Henderson             if (elf_prot & PROT_EXEC) {
22418e62a717SRichard Henderson                 if (vaddr < info->start_code) {
22428e62a717SRichard Henderson                     info->start_code = vaddr;
2243cf129f3aSRichard Henderson                 }
22448e62a717SRichard Henderson                 if (vaddr_ef > info->end_code) {
22458e62a717SRichard Henderson                     info->end_code = vaddr_ef;
22468e62a717SRichard Henderson                 }
22478e62a717SRichard Henderson             }
22488e62a717SRichard Henderson             if (elf_prot & PROT_WRITE) {
22498e62a717SRichard Henderson                 if (vaddr < info->start_data) {
22508e62a717SRichard Henderson                     info->start_data = vaddr;
22518e62a717SRichard Henderson                 }
22528e62a717SRichard Henderson                 if (vaddr_ef > info->end_data) {
22538e62a717SRichard Henderson                     info->end_data = vaddr_ef;
22548e62a717SRichard Henderson                 }
22558e62a717SRichard Henderson                 if (vaddr_em > info->brk) {
22568e62a717SRichard Henderson                     info->brk = vaddr_em;
22578e62a717SRichard Henderson                 }
22588e62a717SRichard Henderson             }
2259bf858897SRichard Henderson         } else if (eppnt->p_type == PT_INTERP && pinterp_name) {
2260bf858897SRichard Henderson             char *interp_name;
2261bf858897SRichard Henderson 
2262bf858897SRichard Henderson             if (*pinterp_name) {
2263bf858897SRichard Henderson                 errmsg = "Multiple PT_INTERP entries";
2264bf858897SRichard Henderson                 goto exit_errmsg;
2265bf858897SRichard Henderson             }
2266bf858897SRichard Henderson             interp_name = malloc(eppnt->p_filesz);
2267bf858897SRichard Henderson             if (!interp_name) {
2268bf858897SRichard Henderson                 goto exit_perror;
2269bf858897SRichard Henderson             }
2270bf858897SRichard Henderson 
2271bf858897SRichard Henderson             if (eppnt->p_offset + eppnt->p_filesz <= BPRM_BUF_SIZE) {
2272bf858897SRichard Henderson                 memcpy(interp_name, bprm_buf + eppnt->p_offset,
2273bf858897SRichard Henderson                        eppnt->p_filesz);
2274bf858897SRichard Henderson             } else {
2275bf858897SRichard Henderson                 retval = pread(image_fd, interp_name, eppnt->p_filesz,
2276bf858897SRichard Henderson                                eppnt->p_offset);
2277bf858897SRichard Henderson                 if (retval != eppnt->p_filesz) {
2278bf858897SRichard Henderson                     goto exit_perror;
2279bf858897SRichard Henderson                 }
2280bf858897SRichard Henderson             }
2281bf858897SRichard Henderson             if (interp_name[eppnt->p_filesz - 1] != 0) {
2282bf858897SRichard Henderson                 errmsg = "Invalid PT_INTERP entry";
2283bf858897SRichard Henderson                 goto exit_errmsg;
2284bf858897SRichard Henderson             }
2285bf858897SRichard Henderson             *pinterp_name = interp_name;
22868e62a717SRichard Henderson         }
22878e62a717SRichard Henderson     }
22888e62a717SRichard Henderson 
22898e62a717SRichard Henderson     if (info->end_data == 0) {
22908e62a717SRichard Henderson         info->start_data = info->end_code;
22918e62a717SRichard Henderson         info->end_data = info->end_code;
22928e62a717SRichard Henderson         info->brk = info->end_code;
229331e31b8aSbellard     }
229431e31b8aSbellard 
2295682674b8SRichard Henderson     if (qemu_log_enabled()) {
22968e62a717SRichard Henderson         load_symbols(ehdr, image_fd, load_bias);
2297682674b8SRichard Henderson     }
229831e31b8aSbellard 
229998c1076cSAlex Bennée     mmap_unlock();
230098c1076cSAlex Bennée 
23018e62a717SRichard Henderson     close(image_fd);
23028e62a717SRichard Henderson     return;
230331e31b8aSbellard 
23048e62a717SRichard Henderson  exit_read:
23058e62a717SRichard Henderson     if (retval >= 0) {
23068e62a717SRichard Henderson         errmsg = "Incomplete read of file header";
23078e62a717SRichard Henderson         goto exit_errmsg;
23088e62a717SRichard Henderson     }
23098e62a717SRichard Henderson  exit_perror:
23108e62a717SRichard Henderson     errmsg = strerror(errno);
23118e62a717SRichard Henderson  exit_errmsg:
23128e62a717SRichard Henderson     fprintf(stderr, "%s: %s\n", image_name, errmsg);
23138e62a717SRichard Henderson     exit(-1);
23148e62a717SRichard Henderson }
23158e62a717SRichard Henderson 
23168e62a717SRichard Henderson static void load_elf_interp(const char *filename, struct image_info *info,
23178e62a717SRichard Henderson                             char bprm_buf[BPRM_BUF_SIZE])
23188e62a717SRichard Henderson {
23198e62a717SRichard Henderson     int fd, retval;
23208e62a717SRichard Henderson 
23218e62a717SRichard Henderson     fd = open(path(filename), O_RDONLY);
23228e62a717SRichard Henderson     if (fd < 0) {
23238e62a717SRichard Henderson         goto exit_perror;
23248e62a717SRichard Henderson     }
23258e62a717SRichard Henderson 
23268e62a717SRichard Henderson     retval = read(fd, bprm_buf, BPRM_BUF_SIZE);
23278e62a717SRichard Henderson     if (retval < 0) {
23288e62a717SRichard Henderson         goto exit_perror;
23298e62a717SRichard Henderson     }
23308e62a717SRichard Henderson     if (retval < BPRM_BUF_SIZE) {
23318e62a717SRichard Henderson         memset(bprm_buf + retval, 0, BPRM_BUF_SIZE - retval);
23328e62a717SRichard Henderson     }
23338e62a717SRichard Henderson 
2334bf858897SRichard Henderson     load_elf_image(filename, fd, info, NULL, bprm_buf);
23358e62a717SRichard Henderson     return;
23368e62a717SRichard Henderson 
23378e62a717SRichard Henderson  exit_perror:
23388e62a717SRichard Henderson     fprintf(stderr, "%s: %s\n", filename, strerror(errno));
23398e62a717SRichard Henderson     exit(-1);
234031e31b8aSbellard }
234131e31b8aSbellard 
234249918a75Spbrook static int symfind(const void *s0, const void *s1)
234349918a75Spbrook {
2344c7c530cdSStefan Weil     target_ulong addr = *(target_ulong *)s0;
234549918a75Spbrook     struct elf_sym *sym = (struct elf_sym *)s1;
234649918a75Spbrook     int result = 0;
2347c7c530cdSStefan Weil     if (addr < sym->st_value) {
234849918a75Spbrook         result = -1;
2349c7c530cdSStefan Weil     } else if (addr >= sym->st_value + sym->st_size) {
235049918a75Spbrook         result = 1;
235149918a75Spbrook     }
235249918a75Spbrook     return result;
235349918a75Spbrook }
235449918a75Spbrook 
235549918a75Spbrook static const char *lookup_symbolxx(struct syminfo *s, target_ulong orig_addr)
235649918a75Spbrook {
235749918a75Spbrook #if ELF_CLASS == ELFCLASS32
235849918a75Spbrook     struct elf_sym *syms = s->disas_symtab.elf32;
235949918a75Spbrook #else
236049918a75Spbrook     struct elf_sym *syms = s->disas_symtab.elf64;
236149918a75Spbrook #endif
236249918a75Spbrook 
236349918a75Spbrook     // binary search
236449918a75Spbrook     struct elf_sym *sym;
236549918a75Spbrook 
2366c7c530cdSStefan Weil     sym = bsearch(&orig_addr, syms, s->disas_num_syms, sizeof(*syms), symfind);
23677cba04f6SBlue Swirl     if (sym != NULL) {
236849918a75Spbrook         return s->disas_strtab + sym->st_name;
236949918a75Spbrook     }
237049918a75Spbrook 
237149918a75Spbrook     return "";
237249918a75Spbrook }
237349918a75Spbrook 
237449918a75Spbrook /* FIXME: This should use elf_ops.h  */
237549918a75Spbrook static int symcmp(const void *s0, const void *s1)
237649918a75Spbrook {
237749918a75Spbrook     struct elf_sym *sym0 = (struct elf_sym *)s0;
237849918a75Spbrook     struct elf_sym *sym1 = (struct elf_sym *)s1;
237949918a75Spbrook     return (sym0->st_value < sym1->st_value)
238049918a75Spbrook         ? -1
238149918a75Spbrook         : ((sym0->st_value > sym1->st_value) ? 1 : 0);
238249918a75Spbrook }
238349918a75Spbrook 
2384689f936fSbellard /* Best attempt to load symbols from this ELF object. */
2385682674b8SRichard Henderson static void load_symbols(struct elfhdr *hdr, int fd, abi_ulong load_bias)
2386689f936fSbellard {
2387682674b8SRichard Henderson     int i, shnum, nsyms, sym_idx = 0, str_idx = 0;
23881e06262dSPeter Maydell     uint64_t segsz;
2389682674b8SRichard Henderson     struct elf_shdr *shdr;
2390b9475279SCédric VINCENT     char *strings = NULL;
2391b9475279SCédric VINCENT     struct syminfo *s = NULL;
2392b9475279SCédric VINCENT     struct elf_sym *new_syms, *syms = NULL;
239331e31b8aSbellard 
2394682674b8SRichard Henderson     shnum = hdr->e_shnum;
2395682674b8SRichard Henderson     i = shnum * sizeof(struct elf_shdr);
2396682674b8SRichard Henderson     shdr = (struct elf_shdr *)alloca(i);
2397682674b8SRichard Henderson     if (pread(fd, shdr, i, hdr->e_shoff) != i) {
2398689f936fSbellard         return;
2399682674b8SRichard Henderson     }
2400682674b8SRichard Henderson 
2401682674b8SRichard Henderson     bswap_shdr(shdr, shnum);
2402682674b8SRichard Henderson     for (i = 0; i < shnum; ++i) {
2403682674b8SRichard Henderson         if (shdr[i].sh_type == SHT_SYMTAB) {
2404682674b8SRichard Henderson             sym_idx = i;
2405682674b8SRichard Henderson             str_idx = shdr[i].sh_link;
2406689f936fSbellard             goto found;
2407689f936fSbellard         }
2408689f936fSbellard     }
2409682674b8SRichard Henderson 
2410682674b8SRichard Henderson     /* There will be no symbol table if the file was stripped.  */
2411682674b8SRichard Henderson     return;
2412689f936fSbellard 
2413689f936fSbellard  found:
2414689f936fSbellard     /* Now know where the strtab and symtab are.  Snarf them.  */
24150ef9ea29SPeter Maydell     s = g_try_new(struct syminfo, 1);
2416682674b8SRichard Henderson     if (!s) {
2417b9475279SCédric VINCENT         goto give_up;
2418682674b8SRichard Henderson     }
2419682674b8SRichard Henderson 
24201e06262dSPeter Maydell     segsz = shdr[str_idx].sh_size;
24211e06262dSPeter Maydell     s->disas_strtab = strings = g_try_malloc(segsz);
24221e06262dSPeter Maydell     if (!strings ||
24231e06262dSPeter Maydell         pread(fd, strings, segsz, shdr[str_idx].sh_offset) != segsz) {
2424b9475279SCédric VINCENT         goto give_up;
2425682674b8SRichard Henderson     }
2426689f936fSbellard 
24271e06262dSPeter Maydell     segsz = shdr[sym_idx].sh_size;
24281e06262dSPeter Maydell     syms = g_try_malloc(segsz);
24291e06262dSPeter Maydell     if (!syms || pread(fd, syms, segsz, shdr[sym_idx].sh_offset) != segsz) {
2430b9475279SCédric VINCENT         goto give_up;
2431682674b8SRichard Henderson     }
2432689f936fSbellard 
24331e06262dSPeter Maydell     if (segsz / sizeof(struct elf_sym) > INT_MAX) {
24341e06262dSPeter Maydell         /* Implausibly large symbol table: give up rather than ploughing
24351e06262dSPeter Maydell          * on with the number of symbols calculation overflowing
24361e06262dSPeter Maydell          */
24371e06262dSPeter Maydell         goto give_up;
24381e06262dSPeter Maydell     }
24391e06262dSPeter Maydell     nsyms = segsz / sizeof(struct elf_sym);
2440682674b8SRichard Henderson     for (i = 0; i < nsyms; ) {
244149918a75Spbrook         bswap_sym(syms + i);
2442682674b8SRichard Henderson         /* Throw away entries which we do not need.  */
2443682674b8SRichard Henderson         if (syms[i].st_shndx == SHN_UNDEF
2444682674b8SRichard Henderson             || syms[i].st_shndx >= SHN_LORESERVE
2445682674b8SRichard Henderson             || ELF_ST_TYPE(syms[i].st_info) != STT_FUNC) {
2446682674b8SRichard Henderson             if (i < --nsyms) {
244749918a75Spbrook                 syms[i] = syms[nsyms];
244849918a75Spbrook             }
2449682674b8SRichard Henderson         } else {
245049918a75Spbrook #if defined(TARGET_ARM) || defined (TARGET_MIPS)
245149918a75Spbrook             /* The bottom address bit marks a Thumb or MIPS16 symbol.  */
245249918a75Spbrook             syms[i].st_value &= ~(target_ulong)1;
245349918a75Spbrook #endif
2454682674b8SRichard Henderson             syms[i].st_value += load_bias;
245549918a75Spbrook             i++;
245649918a75Spbrook         }
2457682674b8SRichard Henderson     }
245849918a75Spbrook 
2459b9475279SCédric VINCENT     /* No "useful" symbol.  */
2460b9475279SCédric VINCENT     if (nsyms == 0) {
2461b9475279SCédric VINCENT         goto give_up;
2462b9475279SCédric VINCENT     }
2463b9475279SCédric VINCENT 
24645d5c9930SRichard Henderson     /* Attempt to free the storage associated with the local symbols
24655d5c9930SRichard Henderson        that we threw away.  Whether or not this has any effect on the
24665d5c9930SRichard Henderson        memory allocation depends on the malloc implementation and how
24675d5c9930SRichard Henderson        many symbols we managed to discard.  */
24680ef9ea29SPeter Maydell     new_syms = g_try_renew(struct elf_sym, syms, nsyms);
24698d79de6eSStefan Weil     if (new_syms == NULL) {
2470b9475279SCédric VINCENT         goto give_up;
24715d5c9930SRichard Henderson     }
24728d79de6eSStefan Weil     syms = new_syms;
24735d5c9930SRichard Henderson 
247449918a75Spbrook     qsort(syms, nsyms, sizeof(*syms), symcmp);
247549918a75Spbrook 
247649918a75Spbrook     s->disas_num_syms = nsyms;
247749918a75Spbrook #if ELF_CLASS == ELFCLASS32
247849918a75Spbrook     s->disas_symtab.elf32 = syms;
247949918a75Spbrook #else
248049918a75Spbrook     s->disas_symtab.elf64 = syms;
248149918a75Spbrook #endif
2482682674b8SRichard Henderson     s->lookup_symbol = lookup_symbolxx;
2483e80cfcfcSbellard     s->next = syminfos;
2484e80cfcfcSbellard     syminfos = s;
2485b9475279SCédric VINCENT 
2486b9475279SCédric VINCENT     return;
2487b9475279SCédric VINCENT 
2488b9475279SCédric VINCENT give_up:
24890ef9ea29SPeter Maydell     g_free(s);
24900ef9ea29SPeter Maydell     g_free(strings);
24910ef9ea29SPeter Maydell     g_free(syms);
2492689f936fSbellard }
249331e31b8aSbellard 
2494768fe76eSYunQiang Su uint32_t get_elf_eflags(int fd)
2495768fe76eSYunQiang Su {
2496768fe76eSYunQiang Su     struct elfhdr ehdr;
2497768fe76eSYunQiang Su     off_t offset;
2498768fe76eSYunQiang Su     int ret;
2499768fe76eSYunQiang Su 
2500768fe76eSYunQiang Su     /* Read ELF header */
2501768fe76eSYunQiang Su     offset = lseek(fd, 0, SEEK_SET);
2502768fe76eSYunQiang Su     if (offset == (off_t) -1) {
2503768fe76eSYunQiang Su         return 0;
2504768fe76eSYunQiang Su     }
2505768fe76eSYunQiang Su     ret = read(fd, &ehdr, sizeof(ehdr));
2506768fe76eSYunQiang Su     if (ret < sizeof(ehdr)) {
2507768fe76eSYunQiang Su         return 0;
2508768fe76eSYunQiang Su     }
2509768fe76eSYunQiang Su     offset = lseek(fd, offset, SEEK_SET);
2510768fe76eSYunQiang Su     if (offset == (off_t) -1) {
2511768fe76eSYunQiang Su         return 0;
2512768fe76eSYunQiang Su     }
2513768fe76eSYunQiang Su 
2514768fe76eSYunQiang Su     /* Check ELF signature */
2515768fe76eSYunQiang Su     if (!elf_check_ident(&ehdr)) {
2516768fe76eSYunQiang Su         return 0;
2517768fe76eSYunQiang Su     }
2518768fe76eSYunQiang Su 
2519768fe76eSYunQiang Su     /* check header */
2520768fe76eSYunQiang Su     bswap_ehdr(&ehdr);
2521768fe76eSYunQiang Su     if (!elf_check_ehdr(&ehdr)) {
2522768fe76eSYunQiang Su         return 0;
2523768fe76eSYunQiang Su     }
2524768fe76eSYunQiang Su 
2525768fe76eSYunQiang Su     /* return architecture id */
2526768fe76eSYunQiang Su     return ehdr.e_flags;
2527768fe76eSYunQiang Su }
2528768fe76eSYunQiang Su 
2529f0116c54SWill Newton int load_elf_binary(struct linux_binprm *bprm, struct image_info *info)
253031e31b8aSbellard {
25318e62a717SRichard Henderson     struct image_info interp_info;
253231e31b8aSbellard     struct elfhdr elf_ex;
25338e62a717SRichard Henderson     char *elf_interpreter = NULL;
253459baae9aSStefan Brüns     char *scratch;
253531e31b8aSbellard 
2536bf858897SRichard Henderson     info->start_mmap = (abi_ulong)ELF_START_MMAP;
253731e31b8aSbellard 
2538bf858897SRichard Henderson     load_elf_image(bprm->filename, bprm->fd, info,
2539bf858897SRichard Henderson                    &elf_interpreter, bprm->buf);
2540bf858897SRichard Henderson 
2541bf858897SRichard Henderson     /* ??? We need a copy of the elf header for passing to create_elf_tables.
2542bf858897SRichard Henderson        If we do nothing, we'll have overwritten this when we re-use bprm->buf
2543bf858897SRichard Henderson        when we load the interpreter.  */
2544bf858897SRichard Henderson     elf_ex = *(struct elfhdr *)bprm->buf;
254531e31b8aSbellard 
254659baae9aSStefan Brüns     /* Do this so that we can load the interpreter, if need be.  We will
254759baae9aSStefan Brüns        change some of these later */
254859baae9aSStefan Brüns     bprm->p = setup_arg_pages(bprm, info);
254959baae9aSStefan Brüns 
255059baae9aSStefan Brüns     scratch = g_new0(char, TARGET_PAGE_SIZE);
25517c4ee5bcSRichard Henderson     if (STACK_GROWS_DOWN) {
255259baae9aSStefan Brüns         bprm->p = copy_elf_strings(1, &bprm->filename, scratch,
255359baae9aSStefan Brüns                                    bprm->p, info->stack_limit);
25547c4ee5bcSRichard Henderson         info->file_string = bprm->p;
255559baae9aSStefan Brüns         bprm->p = copy_elf_strings(bprm->envc, bprm->envp, scratch,
255659baae9aSStefan Brüns                                    bprm->p, info->stack_limit);
25577c4ee5bcSRichard Henderson         info->env_strings = bprm->p;
255859baae9aSStefan Brüns         bprm->p = copy_elf_strings(bprm->argc, bprm->argv, scratch,
255959baae9aSStefan Brüns                                    bprm->p, info->stack_limit);
25607c4ee5bcSRichard Henderson         info->arg_strings = bprm->p;
25617c4ee5bcSRichard Henderson     } else {
25627c4ee5bcSRichard Henderson         info->arg_strings = bprm->p;
25637c4ee5bcSRichard Henderson         bprm->p = copy_elf_strings(bprm->argc, bprm->argv, scratch,
25647c4ee5bcSRichard Henderson                                    bprm->p, info->stack_limit);
25657c4ee5bcSRichard Henderson         info->env_strings = bprm->p;
25667c4ee5bcSRichard Henderson         bprm->p = copy_elf_strings(bprm->envc, bprm->envp, scratch,
25677c4ee5bcSRichard Henderson                                    bprm->p, info->stack_limit);
25687c4ee5bcSRichard Henderson         info->file_string = bprm->p;
25697c4ee5bcSRichard Henderson         bprm->p = copy_elf_strings(1, &bprm->filename, scratch,
25707c4ee5bcSRichard Henderson                                    bprm->p, info->stack_limit);
25717c4ee5bcSRichard Henderson     }
25727c4ee5bcSRichard Henderson 
257359baae9aSStefan Brüns     g_free(scratch);
257459baae9aSStefan Brüns 
2575e5fe0c52Spbrook     if (!bprm->p) {
2576bf858897SRichard Henderson         fprintf(stderr, "%s: %s\n", bprm->filename, strerror(E2BIG));
257731e31b8aSbellard         exit(-1);
25789955ffacSRichard Henderson     }
2579379f6698SPaul Brook 
25808e62a717SRichard Henderson     if (elf_interpreter) {
25818e62a717SRichard Henderson         load_elf_interp(elf_interpreter, &interp_info, bprm->buf);
258231e31b8aSbellard 
25838e62a717SRichard Henderson         /* If the program interpreter is one of these two, then assume
25848e62a717SRichard Henderson            an iBCS2 image.  Otherwise assume a native linux image.  */
258531e31b8aSbellard 
25868e62a717SRichard Henderson         if (strcmp(elf_interpreter, "/usr/lib/libc.so.1") == 0
25878e62a717SRichard Henderson             || strcmp(elf_interpreter, "/usr/lib/ld.so.1") == 0) {
25888e62a717SRichard Henderson             info->personality = PER_SVR4;
25898e62a717SRichard Henderson 
259031e31b8aSbellard             /* Why this, you ask???  Well SVr4 maps page 0 as read-only,
25918e62a717SRichard Henderson                and some applications "depend" upon this behavior.  Since
25928e62a717SRichard Henderson                we do not have the power to recompile these, we emulate
25938e62a717SRichard Henderson                the SVr4 behavior.  Sigh.  */
25948e62a717SRichard Henderson             target_mmap(0, qemu_host_page_size, PROT_READ | PROT_EXEC,
259568754b44SPeter Maydell                         MAP_FIXED | MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
259631e31b8aSbellard         }
25978e62a717SRichard Henderson     }
259831e31b8aSbellard 
25998e62a717SRichard Henderson     bprm->p = create_elf_tables(bprm->p, bprm->argc, bprm->envc, &elf_ex,
26008e62a717SRichard Henderson                                 info, (elf_interpreter ? &interp_info : NULL));
26018e62a717SRichard Henderson     info->start_stack = bprm->p;
26028e62a717SRichard Henderson 
26038e62a717SRichard Henderson     /* If we have an interpreter, set that as the program's entry point.
26048e78064eSRichard Henderson        Copy the load_bias as well, to help PPC64 interpret the entry
26058e62a717SRichard Henderson        point as a function descriptor.  Do this after creating elf tables
26068e62a717SRichard Henderson        so that we copy the original program entry point into the AUXV.  */
26078e62a717SRichard Henderson     if (elf_interpreter) {
26088e78064eSRichard Henderson         info->load_bias = interp_info.load_bias;
26098e62a717SRichard Henderson         info->entry = interp_info.entry;
2610bf858897SRichard Henderson         free(elf_interpreter);
26118e62a717SRichard Henderson     }
261231e31b8aSbellard 
2613edf8e2afSMika Westerberg #ifdef USE_ELF_CORE_DUMP
2614edf8e2afSMika Westerberg     bprm->core_dump = &elf_core_dump;
2615edf8e2afSMika Westerberg #endif
2616edf8e2afSMika Westerberg 
261731e31b8aSbellard     return 0;
261831e31b8aSbellard }
261931e31b8aSbellard 
2620edf8e2afSMika Westerberg #ifdef USE_ELF_CORE_DUMP
2621edf8e2afSMika Westerberg /*
2622edf8e2afSMika Westerberg  * Definitions to generate Intel SVR4-like core files.
2623a2547a13SLaurent Desnogues  * These mostly have the same names as the SVR4 types with "target_elf_"
2624edf8e2afSMika Westerberg  * tacked on the front to prevent clashes with linux definitions,
2625edf8e2afSMika Westerberg  * and the typedef forms have been avoided.  This is mostly like
2626edf8e2afSMika Westerberg  * the SVR4 structure, but more Linuxy, with things that Linux does
2627edf8e2afSMika Westerberg  * not support and which gdb doesn't really use excluded.
2628edf8e2afSMika Westerberg  *
2629edf8e2afSMika Westerberg  * Fields we don't dump (their contents is zero) in linux-user qemu
2630edf8e2afSMika Westerberg  * are marked with XXX.
2631edf8e2afSMika Westerberg  *
2632edf8e2afSMika Westerberg  * Core dump code is copied from linux kernel (fs/binfmt_elf.c).
2633edf8e2afSMika Westerberg  *
2634edf8e2afSMika Westerberg  * Porting ELF coredump for target is (quite) simple process.  First you
2635dd0a3651SNathan Froyd  * define USE_ELF_CORE_DUMP in target ELF code (where init_thread() for
2636edf8e2afSMika Westerberg  * the target resides):
2637edf8e2afSMika Westerberg  *
2638edf8e2afSMika Westerberg  * #define USE_ELF_CORE_DUMP
2639edf8e2afSMika Westerberg  *
2640edf8e2afSMika Westerberg  * Next you define type of register set used for dumping.  ELF specification
2641edf8e2afSMika Westerberg  * says that it needs to be array of elf_greg_t that has size of ELF_NREG.
2642edf8e2afSMika Westerberg  *
2643c227f099SAnthony Liguori  * typedef <target_regtype> target_elf_greg_t;
2644edf8e2afSMika Westerberg  * #define ELF_NREG <number of registers>
2645c227f099SAnthony Liguori  * typedef taret_elf_greg_t target_elf_gregset_t[ELF_NREG];
2646edf8e2afSMika Westerberg  *
2647edf8e2afSMika Westerberg  * Last step is to implement target specific function that copies registers
2648edf8e2afSMika Westerberg  * from given cpu into just specified register set.  Prototype is:
2649edf8e2afSMika Westerberg  *
2650c227f099SAnthony Liguori  * static void elf_core_copy_regs(taret_elf_gregset_t *regs,
26519349b4f9SAndreas Färber  *                                const CPUArchState *env);
2652edf8e2afSMika Westerberg  *
2653edf8e2afSMika Westerberg  * Parameters:
2654edf8e2afSMika Westerberg  *     regs - copy register values into here (allocated and zeroed by caller)
2655edf8e2afSMika Westerberg  *     env - copy registers from here
2656edf8e2afSMika Westerberg  *
2657edf8e2afSMika Westerberg  * Example for ARM target is provided in this file.
2658edf8e2afSMika Westerberg  */
2659edf8e2afSMika Westerberg 
2660edf8e2afSMika Westerberg /* An ELF note in memory */
2661edf8e2afSMika Westerberg struct memelfnote {
2662edf8e2afSMika Westerberg     const char *name;
2663edf8e2afSMika Westerberg     size_t     namesz;
2664edf8e2afSMika Westerberg     size_t     namesz_rounded;
2665edf8e2afSMika Westerberg     int        type;
2666edf8e2afSMika Westerberg     size_t     datasz;
266780f5ce75SLaurent Vivier     size_t     datasz_rounded;
2668edf8e2afSMika Westerberg     void       *data;
2669edf8e2afSMika Westerberg     size_t     notesz;
2670edf8e2afSMika Westerberg };
2671edf8e2afSMika Westerberg 
2672a2547a13SLaurent Desnogues struct target_elf_siginfo {
2673f8fd4fc4SPaolo Bonzini     abi_int    si_signo; /* signal number */
2674f8fd4fc4SPaolo Bonzini     abi_int    si_code;  /* extra code */
2675f8fd4fc4SPaolo Bonzini     abi_int    si_errno; /* errno */
2676edf8e2afSMika Westerberg };
2677edf8e2afSMika Westerberg 
2678a2547a13SLaurent Desnogues struct target_elf_prstatus {
2679a2547a13SLaurent Desnogues     struct target_elf_siginfo pr_info;      /* Info associated with signal */
26801ddd592fSPaolo Bonzini     abi_short          pr_cursig;    /* Current signal */
2681ca98ac83SPaolo Bonzini     abi_ulong          pr_sigpend;   /* XXX */
2682ca98ac83SPaolo Bonzini     abi_ulong          pr_sighold;   /* XXX */
2683c227f099SAnthony Liguori     target_pid_t       pr_pid;
2684c227f099SAnthony Liguori     target_pid_t       pr_ppid;
2685c227f099SAnthony Liguori     target_pid_t       pr_pgrp;
2686c227f099SAnthony Liguori     target_pid_t       pr_sid;
2687edf8e2afSMika Westerberg     struct target_timeval pr_utime;  /* XXX User time */
2688edf8e2afSMika Westerberg     struct target_timeval pr_stime;  /* XXX System time */
2689edf8e2afSMika Westerberg     struct target_timeval pr_cutime; /* XXX Cumulative user time */
2690edf8e2afSMika Westerberg     struct target_timeval pr_cstime; /* XXX Cumulative system time */
2691c227f099SAnthony Liguori     target_elf_gregset_t      pr_reg;       /* GP registers */
2692f8fd4fc4SPaolo Bonzini     abi_int            pr_fpvalid;   /* XXX */
2693edf8e2afSMika Westerberg };
2694edf8e2afSMika Westerberg 
2695edf8e2afSMika Westerberg #define ELF_PRARGSZ     (80) /* Number of chars for args */
2696edf8e2afSMika Westerberg 
2697a2547a13SLaurent Desnogues struct target_elf_prpsinfo {
2698edf8e2afSMika Westerberg     char         pr_state;       /* numeric process state */
2699edf8e2afSMika Westerberg     char         pr_sname;       /* char for pr_state */
2700edf8e2afSMika Westerberg     char         pr_zomb;        /* zombie */
2701edf8e2afSMika Westerberg     char         pr_nice;        /* nice val */
2702ca98ac83SPaolo Bonzini     abi_ulong    pr_flag;        /* flags */
2703c227f099SAnthony Liguori     target_uid_t pr_uid;
2704c227f099SAnthony Liguori     target_gid_t pr_gid;
2705c227f099SAnthony Liguori     target_pid_t pr_pid, pr_ppid, pr_pgrp, pr_sid;
2706edf8e2afSMika Westerberg     /* Lots missing */
2707edf8e2afSMika Westerberg     char    pr_fname[16];           /* filename of executable */
2708edf8e2afSMika Westerberg     char    pr_psargs[ELF_PRARGSZ]; /* initial part of arg list */
2709edf8e2afSMika Westerberg };
2710edf8e2afSMika Westerberg 
2711edf8e2afSMika Westerberg /* Here is the structure in which status of each thread is captured. */
2712edf8e2afSMika Westerberg struct elf_thread_status {
271372cf2d4fSBlue Swirl     QTAILQ_ENTRY(elf_thread_status)  ets_link;
2714a2547a13SLaurent Desnogues     struct target_elf_prstatus prstatus;   /* NT_PRSTATUS */
2715edf8e2afSMika Westerberg #if 0
2716edf8e2afSMika Westerberg     elf_fpregset_t fpu;             /* NT_PRFPREG */
2717edf8e2afSMika Westerberg     struct task_struct *thread;
2718edf8e2afSMika Westerberg     elf_fpxregset_t xfpu;           /* ELF_CORE_XFPREG_TYPE */
2719edf8e2afSMika Westerberg #endif
2720edf8e2afSMika Westerberg     struct memelfnote notes[1];
2721edf8e2afSMika Westerberg     int num_notes;
2722edf8e2afSMika Westerberg };
2723edf8e2afSMika Westerberg 
2724edf8e2afSMika Westerberg struct elf_note_info {
2725edf8e2afSMika Westerberg     struct memelfnote   *notes;
2726a2547a13SLaurent Desnogues     struct target_elf_prstatus *prstatus;  /* NT_PRSTATUS */
2727a2547a13SLaurent Desnogues     struct target_elf_prpsinfo *psinfo;    /* NT_PRPSINFO */
2728edf8e2afSMika Westerberg 
272972cf2d4fSBlue Swirl     QTAILQ_HEAD(thread_list_head, elf_thread_status) thread_list;
2730edf8e2afSMika Westerberg #if 0
2731edf8e2afSMika Westerberg     /*
2732edf8e2afSMika Westerberg      * Current version of ELF coredump doesn't support
2733edf8e2afSMika Westerberg      * dumping fp regs etc.
2734edf8e2afSMika Westerberg      */
2735edf8e2afSMika Westerberg     elf_fpregset_t *fpu;
2736edf8e2afSMika Westerberg     elf_fpxregset_t *xfpu;
2737edf8e2afSMika Westerberg     int thread_status_size;
2738edf8e2afSMika Westerberg #endif
2739edf8e2afSMika Westerberg     int notes_size;
2740edf8e2afSMika Westerberg     int numnote;
2741edf8e2afSMika Westerberg };
2742edf8e2afSMika Westerberg 
2743edf8e2afSMika Westerberg struct vm_area_struct {
27441a1c4db9SMikhail Ilyin     target_ulong   vma_start;  /* start vaddr of memory region */
27451a1c4db9SMikhail Ilyin     target_ulong   vma_end;    /* end vaddr of memory region */
2746edf8e2afSMika Westerberg     abi_ulong      vma_flags;  /* protection etc. flags for the region */
274772cf2d4fSBlue Swirl     QTAILQ_ENTRY(vm_area_struct) vma_link;
2748edf8e2afSMika Westerberg };
2749edf8e2afSMika Westerberg 
2750edf8e2afSMika Westerberg struct mm_struct {
275172cf2d4fSBlue Swirl     QTAILQ_HEAD(, vm_area_struct) mm_mmap;
2752edf8e2afSMika Westerberg     int mm_count;           /* number of mappings */
2753edf8e2afSMika Westerberg };
2754edf8e2afSMika Westerberg 
2755edf8e2afSMika Westerberg static struct mm_struct *vma_init(void);
2756edf8e2afSMika Westerberg static void vma_delete(struct mm_struct *);
27571a1c4db9SMikhail Ilyin static int vma_add_mapping(struct mm_struct *, target_ulong,
27581a1c4db9SMikhail Ilyin                            target_ulong, abi_ulong);
2759edf8e2afSMika Westerberg static int vma_get_mapping_count(const struct mm_struct *);
2760edf8e2afSMika Westerberg static struct vm_area_struct *vma_first(const struct mm_struct *);
2761edf8e2afSMika Westerberg static struct vm_area_struct *vma_next(struct vm_area_struct *);
2762edf8e2afSMika Westerberg static abi_ulong vma_dump_size(const struct vm_area_struct *);
27631a1c4db9SMikhail Ilyin static int vma_walker(void *priv, target_ulong start, target_ulong end,
2764edf8e2afSMika Westerberg                       unsigned long flags);
2765edf8e2afSMika Westerberg 
2766edf8e2afSMika Westerberg static void fill_elf_header(struct elfhdr *, int, uint16_t, uint32_t);
2767edf8e2afSMika Westerberg static void fill_note(struct memelfnote *, const char *, int,
2768edf8e2afSMika Westerberg                       unsigned int, void *);
2769a2547a13SLaurent Desnogues static void fill_prstatus(struct target_elf_prstatus *, const TaskState *, int);
2770a2547a13SLaurent Desnogues static int fill_psinfo(struct target_elf_prpsinfo *, const TaskState *);
2771edf8e2afSMika Westerberg static void fill_auxv_note(struct memelfnote *, const TaskState *);
2772edf8e2afSMika Westerberg static void fill_elf_note_phdr(struct elf_phdr *, int, off_t);
2773edf8e2afSMika Westerberg static size_t note_size(const struct memelfnote *);
2774edf8e2afSMika Westerberg static void free_note_info(struct elf_note_info *);
27759349b4f9SAndreas Färber static int fill_note_info(struct elf_note_info *, long, const CPUArchState *);
27769349b4f9SAndreas Färber static void fill_thread_info(struct elf_note_info *, const CPUArchState *);
2777edf8e2afSMika Westerberg static int core_dump_filename(const TaskState *, char *, size_t);
2778edf8e2afSMika Westerberg 
2779edf8e2afSMika Westerberg static int dump_write(int, const void *, size_t);
2780edf8e2afSMika Westerberg static int write_note(struct memelfnote *, int);
2781edf8e2afSMika Westerberg static int write_note_info(struct elf_note_info *, int);
2782edf8e2afSMika Westerberg 
2783edf8e2afSMika Westerberg #ifdef BSWAP_NEEDED
2784a2547a13SLaurent Desnogues static void bswap_prstatus(struct target_elf_prstatus *prstatus)
2785edf8e2afSMika Westerberg {
2786ca98ac83SPaolo Bonzini     prstatus->pr_info.si_signo = tswap32(prstatus->pr_info.si_signo);
2787ca98ac83SPaolo Bonzini     prstatus->pr_info.si_code = tswap32(prstatus->pr_info.si_code);
2788ca98ac83SPaolo Bonzini     prstatus->pr_info.si_errno = tswap32(prstatus->pr_info.si_errno);
2789edf8e2afSMika Westerberg     prstatus->pr_cursig = tswap16(prstatus->pr_cursig);
2790ca98ac83SPaolo Bonzini     prstatus->pr_sigpend = tswapal(prstatus->pr_sigpend);
2791ca98ac83SPaolo Bonzini     prstatus->pr_sighold = tswapal(prstatus->pr_sighold);
2792edf8e2afSMika Westerberg     prstatus->pr_pid = tswap32(prstatus->pr_pid);
2793edf8e2afSMika Westerberg     prstatus->pr_ppid = tswap32(prstatus->pr_ppid);
2794edf8e2afSMika Westerberg     prstatus->pr_pgrp = tswap32(prstatus->pr_pgrp);
2795edf8e2afSMika Westerberg     prstatus->pr_sid = tswap32(prstatus->pr_sid);
2796edf8e2afSMika Westerberg     /* cpu times are not filled, so we skip them */
2797edf8e2afSMika Westerberg     /* regs should be in correct format already */
2798edf8e2afSMika Westerberg     prstatus->pr_fpvalid = tswap32(prstatus->pr_fpvalid);
2799edf8e2afSMika Westerberg }
2800edf8e2afSMika Westerberg 
2801a2547a13SLaurent Desnogues static void bswap_psinfo(struct target_elf_prpsinfo *psinfo)
2802edf8e2afSMika Westerberg {
2803ca98ac83SPaolo Bonzini     psinfo->pr_flag = tswapal(psinfo->pr_flag);
2804edf8e2afSMika Westerberg     psinfo->pr_uid = tswap16(psinfo->pr_uid);
2805edf8e2afSMika Westerberg     psinfo->pr_gid = tswap16(psinfo->pr_gid);
2806edf8e2afSMika Westerberg     psinfo->pr_pid = tswap32(psinfo->pr_pid);
2807edf8e2afSMika Westerberg     psinfo->pr_ppid = tswap32(psinfo->pr_ppid);
2808edf8e2afSMika Westerberg     psinfo->pr_pgrp = tswap32(psinfo->pr_pgrp);
2809edf8e2afSMika Westerberg     psinfo->pr_sid = tswap32(psinfo->pr_sid);
2810edf8e2afSMika Westerberg }
2811991f8f0cSRichard Henderson 
2812991f8f0cSRichard Henderson static void bswap_note(struct elf_note *en)
2813991f8f0cSRichard Henderson {
2814991f8f0cSRichard Henderson     bswap32s(&en->n_namesz);
2815991f8f0cSRichard Henderson     bswap32s(&en->n_descsz);
2816991f8f0cSRichard Henderson     bswap32s(&en->n_type);
2817991f8f0cSRichard Henderson }
2818991f8f0cSRichard Henderson #else
2819991f8f0cSRichard Henderson static inline void bswap_prstatus(struct target_elf_prstatus *p) { }
2820991f8f0cSRichard Henderson static inline void bswap_psinfo(struct target_elf_prpsinfo *p) {}
2821991f8f0cSRichard Henderson static inline void bswap_note(struct elf_note *en) { }
2822edf8e2afSMika Westerberg #endif /* BSWAP_NEEDED */
2823edf8e2afSMika Westerberg 
2824edf8e2afSMika Westerberg /*
2825edf8e2afSMika Westerberg  * Minimal support for linux memory regions.  These are needed
2826edf8e2afSMika Westerberg  * when we are finding out what memory exactly belongs to
2827edf8e2afSMika Westerberg  * emulated process.  No locks needed here, as long as
2828edf8e2afSMika Westerberg  * thread that received the signal is stopped.
2829edf8e2afSMika Westerberg  */
2830edf8e2afSMika Westerberg 
2831edf8e2afSMika Westerberg static struct mm_struct *vma_init(void)
2832edf8e2afSMika Westerberg {
2833edf8e2afSMika Westerberg     struct mm_struct *mm;
2834edf8e2afSMika Westerberg 
28357267c094SAnthony Liguori     if ((mm = g_malloc(sizeof (*mm))) == NULL)
2836edf8e2afSMika Westerberg         return (NULL);
2837edf8e2afSMika Westerberg 
2838edf8e2afSMika Westerberg     mm->mm_count = 0;
283972cf2d4fSBlue Swirl     QTAILQ_INIT(&mm->mm_mmap);
2840edf8e2afSMika Westerberg 
2841edf8e2afSMika Westerberg     return (mm);
2842edf8e2afSMika Westerberg }
2843edf8e2afSMika Westerberg 
2844edf8e2afSMika Westerberg static void vma_delete(struct mm_struct *mm)
2845edf8e2afSMika Westerberg {
2846edf8e2afSMika Westerberg     struct vm_area_struct *vma;
2847edf8e2afSMika Westerberg 
2848edf8e2afSMika Westerberg     while ((vma = vma_first(mm)) != NULL) {
284972cf2d4fSBlue Swirl         QTAILQ_REMOVE(&mm->mm_mmap, vma, vma_link);
28507267c094SAnthony Liguori         g_free(vma);
2851edf8e2afSMika Westerberg     }
28527267c094SAnthony Liguori     g_free(mm);
2853edf8e2afSMika Westerberg }
2854edf8e2afSMika Westerberg 
28551a1c4db9SMikhail Ilyin static int vma_add_mapping(struct mm_struct *mm, target_ulong start,
28561a1c4db9SMikhail Ilyin                            target_ulong end, abi_ulong flags)
2857edf8e2afSMika Westerberg {
2858edf8e2afSMika Westerberg     struct vm_area_struct *vma;
2859edf8e2afSMika Westerberg 
28607267c094SAnthony Liguori     if ((vma = g_malloc0(sizeof (*vma))) == NULL)
2861edf8e2afSMika Westerberg         return (-1);
2862edf8e2afSMika Westerberg 
2863edf8e2afSMika Westerberg     vma->vma_start = start;
2864edf8e2afSMika Westerberg     vma->vma_end = end;
2865edf8e2afSMika Westerberg     vma->vma_flags = flags;
2866edf8e2afSMika Westerberg 
286772cf2d4fSBlue Swirl     QTAILQ_INSERT_TAIL(&mm->mm_mmap, vma, vma_link);
2868edf8e2afSMika Westerberg     mm->mm_count++;
2869edf8e2afSMika Westerberg 
2870edf8e2afSMika Westerberg     return (0);
2871edf8e2afSMika Westerberg }
2872edf8e2afSMika Westerberg 
2873edf8e2afSMika Westerberg static struct vm_area_struct *vma_first(const struct mm_struct *mm)
2874edf8e2afSMika Westerberg {
287572cf2d4fSBlue Swirl     return (QTAILQ_FIRST(&mm->mm_mmap));
2876edf8e2afSMika Westerberg }
2877edf8e2afSMika Westerberg 
2878edf8e2afSMika Westerberg static struct vm_area_struct *vma_next(struct vm_area_struct *vma)
2879edf8e2afSMika Westerberg {
288072cf2d4fSBlue Swirl     return (QTAILQ_NEXT(vma, vma_link));
2881edf8e2afSMika Westerberg }
2882edf8e2afSMika Westerberg 
2883edf8e2afSMika Westerberg static int vma_get_mapping_count(const struct mm_struct *mm)
2884edf8e2afSMika Westerberg {
2885edf8e2afSMika Westerberg     return (mm->mm_count);
2886edf8e2afSMika Westerberg }
2887edf8e2afSMika Westerberg 
2888edf8e2afSMika Westerberg /*
2889edf8e2afSMika Westerberg  * Calculate file (dump) size of given memory region.
2890edf8e2afSMika Westerberg  */
2891edf8e2afSMika Westerberg static abi_ulong vma_dump_size(const struct vm_area_struct *vma)
2892edf8e2afSMika Westerberg {
2893edf8e2afSMika Westerberg     /* if we cannot even read the first page, skip it */
2894edf8e2afSMika Westerberg     if (!access_ok(VERIFY_READ, vma->vma_start, TARGET_PAGE_SIZE))
2895edf8e2afSMika Westerberg         return (0);
2896edf8e2afSMika Westerberg 
2897edf8e2afSMika Westerberg     /*
2898edf8e2afSMika Westerberg      * Usually we don't dump executable pages as they contain
2899edf8e2afSMika Westerberg      * non-writable code that debugger can read directly from
2900edf8e2afSMika Westerberg      * target library etc.  However, thread stacks are marked
2901edf8e2afSMika Westerberg      * also executable so we read in first page of given region
2902edf8e2afSMika Westerberg      * and check whether it contains elf header.  If there is
2903edf8e2afSMika Westerberg      * no elf header, we dump it.
2904edf8e2afSMika Westerberg      */
2905edf8e2afSMika Westerberg     if (vma->vma_flags & PROT_EXEC) {
2906edf8e2afSMika Westerberg         char page[TARGET_PAGE_SIZE];
2907edf8e2afSMika Westerberg 
2908edf8e2afSMika Westerberg         copy_from_user(page, vma->vma_start, sizeof (page));
2909edf8e2afSMika Westerberg         if ((page[EI_MAG0] == ELFMAG0) &&
2910edf8e2afSMika Westerberg             (page[EI_MAG1] == ELFMAG1) &&
2911edf8e2afSMika Westerberg             (page[EI_MAG2] == ELFMAG2) &&
2912edf8e2afSMika Westerberg             (page[EI_MAG3] == ELFMAG3)) {
2913edf8e2afSMika Westerberg             /*
2914edf8e2afSMika Westerberg              * Mappings are possibly from ELF binary.  Don't dump
2915edf8e2afSMika Westerberg              * them.
2916edf8e2afSMika Westerberg              */
2917edf8e2afSMika Westerberg             return (0);
2918edf8e2afSMika Westerberg         }
2919edf8e2afSMika Westerberg     }
2920edf8e2afSMika Westerberg 
2921edf8e2afSMika Westerberg     return (vma->vma_end - vma->vma_start);
2922edf8e2afSMika Westerberg }
2923edf8e2afSMika Westerberg 
29241a1c4db9SMikhail Ilyin static int vma_walker(void *priv, target_ulong start, target_ulong end,
2925edf8e2afSMika Westerberg                       unsigned long flags)
2926edf8e2afSMika Westerberg {
2927edf8e2afSMika Westerberg     struct mm_struct *mm = (struct mm_struct *)priv;
2928edf8e2afSMika Westerberg 
2929edf8e2afSMika Westerberg     vma_add_mapping(mm, start, end, flags);
2930edf8e2afSMika Westerberg     return (0);
2931edf8e2afSMika Westerberg }
2932edf8e2afSMika Westerberg 
2933edf8e2afSMika Westerberg static void fill_note(struct memelfnote *note, const char *name, int type,
2934edf8e2afSMika Westerberg                       unsigned int sz, void *data)
2935edf8e2afSMika Westerberg {
2936edf8e2afSMika Westerberg     unsigned int namesz;
2937edf8e2afSMika Westerberg 
2938edf8e2afSMika Westerberg     namesz = strlen(name) + 1;
2939edf8e2afSMika Westerberg     note->name = name;
2940edf8e2afSMika Westerberg     note->namesz = namesz;
2941edf8e2afSMika Westerberg     note->namesz_rounded = roundup(namesz, sizeof (int32_t));
2942edf8e2afSMika Westerberg     note->type = type;
294380f5ce75SLaurent Vivier     note->datasz = sz;
294480f5ce75SLaurent Vivier     note->datasz_rounded = roundup(sz, sizeof (int32_t));
294580f5ce75SLaurent Vivier 
2946edf8e2afSMika Westerberg     note->data = data;
2947edf8e2afSMika Westerberg 
2948edf8e2afSMika Westerberg     /*
2949edf8e2afSMika Westerberg      * We calculate rounded up note size here as specified by
2950edf8e2afSMika Westerberg      * ELF document.
2951edf8e2afSMika Westerberg      */
2952edf8e2afSMika Westerberg     note->notesz = sizeof (struct elf_note) +
295380f5ce75SLaurent Vivier         note->namesz_rounded + note->datasz_rounded;
2954edf8e2afSMika Westerberg }
2955edf8e2afSMika Westerberg 
2956edf8e2afSMika Westerberg static void fill_elf_header(struct elfhdr *elf, int segs, uint16_t machine,
2957edf8e2afSMika Westerberg                             uint32_t flags)
2958edf8e2afSMika Westerberg {
2959edf8e2afSMika Westerberg     (void) memset(elf, 0, sizeof(*elf));
2960edf8e2afSMika Westerberg 
2961edf8e2afSMika Westerberg     (void) memcpy(elf->e_ident, ELFMAG, SELFMAG);
2962edf8e2afSMika Westerberg     elf->e_ident[EI_CLASS] = ELF_CLASS;
2963edf8e2afSMika Westerberg     elf->e_ident[EI_DATA] = ELF_DATA;
2964edf8e2afSMika Westerberg     elf->e_ident[EI_VERSION] = EV_CURRENT;
2965edf8e2afSMika Westerberg     elf->e_ident[EI_OSABI] = ELF_OSABI;
2966edf8e2afSMika Westerberg 
2967edf8e2afSMika Westerberg     elf->e_type = ET_CORE;
2968edf8e2afSMika Westerberg     elf->e_machine = machine;
2969edf8e2afSMika Westerberg     elf->e_version = EV_CURRENT;
2970edf8e2afSMika Westerberg     elf->e_phoff = sizeof(struct elfhdr);
2971edf8e2afSMika Westerberg     elf->e_flags = flags;
2972edf8e2afSMika Westerberg     elf->e_ehsize = sizeof(struct elfhdr);
2973edf8e2afSMika Westerberg     elf->e_phentsize = sizeof(struct elf_phdr);
2974edf8e2afSMika Westerberg     elf->e_phnum = segs;
2975edf8e2afSMika Westerberg 
2976edf8e2afSMika Westerberg     bswap_ehdr(elf);
2977edf8e2afSMika Westerberg }
2978edf8e2afSMika Westerberg 
2979edf8e2afSMika Westerberg static void fill_elf_note_phdr(struct elf_phdr *phdr, int sz, off_t offset)
2980edf8e2afSMika Westerberg {
2981edf8e2afSMika Westerberg     phdr->p_type = PT_NOTE;
2982edf8e2afSMika Westerberg     phdr->p_offset = offset;
2983edf8e2afSMika Westerberg     phdr->p_vaddr = 0;
2984edf8e2afSMika Westerberg     phdr->p_paddr = 0;
2985edf8e2afSMika Westerberg     phdr->p_filesz = sz;
2986edf8e2afSMika Westerberg     phdr->p_memsz = 0;
2987edf8e2afSMika Westerberg     phdr->p_flags = 0;
2988edf8e2afSMika Westerberg     phdr->p_align = 0;
2989edf8e2afSMika Westerberg 
2990991f8f0cSRichard Henderson     bswap_phdr(phdr, 1);
2991edf8e2afSMika Westerberg }
2992edf8e2afSMika Westerberg 
2993edf8e2afSMika Westerberg static size_t note_size(const struct memelfnote *note)
2994edf8e2afSMika Westerberg {
2995edf8e2afSMika Westerberg     return (note->notesz);
2996edf8e2afSMika Westerberg }
2997edf8e2afSMika Westerberg 
2998a2547a13SLaurent Desnogues static void fill_prstatus(struct target_elf_prstatus *prstatus,
2999edf8e2afSMika Westerberg                           const TaskState *ts, int signr)
3000edf8e2afSMika Westerberg {
3001edf8e2afSMika Westerberg     (void) memset(prstatus, 0, sizeof (*prstatus));
3002edf8e2afSMika Westerberg     prstatus->pr_info.si_signo = prstatus->pr_cursig = signr;
3003edf8e2afSMika Westerberg     prstatus->pr_pid = ts->ts_tid;
3004edf8e2afSMika Westerberg     prstatus->pr_ppid = getppid();
3005edf8e2afSMika Westerberg     prstatus->pr_pgrp = getpgrp();
3006edf8e2afSMika Westerberg     prstatus->pr_sid = getsid(0);
3007edf8e2afSMika Westerberg 
3008edf8e2afSMika Westerberg     bswap_prstatus(prstatus);
3009edf8e2afSMika Westerberg }
3010edf8e2afSMika Westerberg 
3011a2547a13SLaurent Desnogues static int fill_psinfo(struct target_elf_prpsinfo *psinfo, const TaskState *ts)
3012edf8e2afSMika Westerberg {
3013900cfbcaSJim Meyering     char *base_filename;
3014edf8e2afSMika Westerberg     unsigned int i, len;
3015edf8e2afSMika Westerberg 
3016edf8e2afSMika Westerberg     (void) memset(psinfo, 0, sizeof (*psinfo));
3017edf8e2afSMika Westerberg 
3018edf8e2afSMika Westerberg     len = ts->info->arg_end - ts->info->arg_start;
3019edf8e2afSMika Westerberg     if (len >= ELF_PRARGSZ)
3020edf8e2afSMika Westerberg         len = ELF_PRARGSZ - 1;
3021edf8e2afSMika Westerberg     if (copy_from_user(&psinfo->pr_psargs, ts->info->arg_start, len))
3022edf8e2afSMika Westerberg         return -EFAULT;
3023edf8e2afSMika Westerberg     for (i = 0; i < len; i++)
3024edf8e2afSMika Westerberg         if (psinfo->pr_psargs[i] == 0)
3025edf8e2afSMika Westerberg             psinfo->pr_psargs[i] = ' ';
3026edf8e2afSMika Westerberg     psinfo->pr_psargs[len] = 0;
3027edf8e2afSMika Westerberg 
3028edf8e2afSMika Westerberg     psinfo->pr_pid = getpid();
3029edf8e2afSMika Westerberg     psinfo->pr_ppid = getppid();
3030edf8e2afSMika Westerberg     psinfo->pr_pgrp = getpgrp();
3031edf8e2afSMika Westerberg     psinfo->pr_sid = getsid(0);
3032edf8e2afSMika Westerberg     psinfo->pr_uid = getuid();
3033edf8e2afSMika Westerberg     psinfo->pr_gid = getgid();
3034edf8e2afSMika Westerberg 
3035900cfbcaSJim Meyering     base_filename = g_path_get_basename(ts->bprm->filename);
3036900cfbcaSJim Meyering     /*
3037900cfbcaSJim Meyering      * Using strncpy here is fine: at max-length,
3038900cfbcaSJim Meyering      * this field is not NUL-terminated.
3039900cfbcaSJim Meyering      */
3040edf8e2afSMika Westerberg     (void) strncpy(psinfo->pr_fname, base_filename,
3041edf8e2afSMika Westerberg                    sizeof(psinfo->pr_fname));
3042edf8e2afSMika Westerberg 
3043900cfbcaSJim Meyering     g_free(base_filename);
3044edf8e2afSMika Westerberg     bswap_psinfo(psinfo);
3045edf8e2afSMika Westerberg     return (0);
3046edf8e2afSMika Westerberg }
3047edf8e2afSMika Westerberg 
3048edf8e2afSMika Westerberg static void fill_auxv_note(struct memelfnote *note, const TaskState *ts)
3049edf8e2afSMika Westerberg {
3050edf8e2afSMika Westerberg     elf_addr_t auxv = (elf_addr_t)ts->info->saved_auxv;
3051edf8e2afSMika Westerberg     elf_addr_t orig_auxv = auxv;
3052edf8e2afSMika Westerberg     void *ptr;
3053125b0f55SAlexander Graf     int len = ts->info->auxv_len;
3054edf8e2afSMika Westerberg 
3055edf8e2afSMika Westerberg     /*
3056edf8e2afSMika Westerberg      * Auxiliary vector is stored in target process stack.  It contains
3057edf8e2afSMika Westerberg      * {type, value} pairs that we need to dump into note.  This is not
3058edf8e2afSMika Westerberg      * strictly necessary but we do it here for sake of completeness.
3059edf8e2afSMika Westerberg      */
3060edf8e2afSMika Westerberg 
3061edf8e2afSMika Westerberg     /* read in whole auxv vector and copy it to memelfnote */
3062edf8e2afSMika Westerberg     ptr = lock_user(VERIFY_READ, orig_auxv, len, 0);
3063edf8e2afSMika Westerberg     if (ptr != NULL) {
3064edf8e2afSMika Westerberg         fill_note(note, "CORE", NT_AUXV, len, ptr);
3065edf8e2afSMika Westerberg         unlock_user(ptr, auxv, len);
3066edf8e2afSMika Westerberg     }
3067edf8e2afSMika Westerberg }
3068edf8e2afSMika Westerberg 
3069edf8e2afSMika Westerberg /*
3070edf8e2afSMika Westerberg  * Constructs name of coredump file.  We have following convention
3071edf8e2afSMika Westerberg  * for the name:
3072edf8e2afSMika Westerberg  *     qemu_<basename-of-target-binary>_<date>-<time>_<pid>.core
3073edf8e2afSMika Westerberg  *
3074edf8e2afSMika Westerberg  * Returns 0 in case of success, -1 otherwise (errno is set).
3075edf8e2afSMika Westerberg  */
3076edf8e2afSMika Westerberg static int core_dump_filename(const TaskState *ts, char *buf,
3077edf8e2afSMika Westerberg                               size_t bufsize)
3078edf8e2afSMika Westerberg {
3079edf8e2afSMika Westerberg     char timestamp[64];
3080edf8e2afSMika Westerberg     char *base_filename = NULL;
3081edf8e2afSMika Westerberg     struct timeval tv;
3082edf8e2afSMika Westerberg     struct tm tm;
3083edf8e2afSMika Westerberg 
3084edf8e2afSMika Westerberg     assert(bufsize >= PATH_MAX);
3085edf8e2afSMika Westerberg 
3086edf8e2afSMika Westerberg     if (gettimeofday(&tv, NULL) < 0) {
3087edf8e2afSMika Westerberg         (void) fprintf(stderr, "unable to get current timestamp: %s",
3088edf8e2afSMika Westerberg                        strerror(errno));
3089edf8e2afSMika Westerberg         return (-1);
3090edf8e2afSMika Westerberg     }
3091edf8e2afSMika Westerberg 
3092b8da57faSWei Jiangang     base_filename = g_path_get_basename(ts->bprm->filename);
3093edf8e2afSMika Westerberg     (void) strftime(timestamp, sizeof (timestamp), "%Y%m%d-%H%M%S",
3094edf8e2afSMika Westerberg                     localtime_r(&tv.tv_sec, &tm));
3095edf8e2afSMika Westerberg     (void) snprintf(buf, bufsize, "qemu_%s_%s_%d.core",
3096edf8e2afSMika Westerberg                     base_filename, timestamp, (int)getpid());
3097b8da57faSWei Jiangang     g_free(base_filename);
3098edf8e2afSMika Westerberg 
3099edf8e2afSMika Westerberg     return (0);
3100edf8e2afSMika Westerberg }
3101edf8e2afSMika Westerberg 
3102edf8e2afSMika Westerberg static int dump_write(int fd, const void *ptr, size_t size)
3103edf8e2afSMika Westerberg {
3104edf8e2afSMika Westerberg     const char *bufp = (const char *)ptr;
3105edf8e2afSMika Westerberg     ssize_t bytes_written, bytes_left;
3106edf8e2afSMika Westerberg     struct rlimit dumpsize;
3107edf8e2afSMika Westerberg     off_t pos;
3108edf8e2afSMika Westerberg 
3109edf8e2afSMika Westerberg     bytes_written = 0;
3110edf8e2afSMika Westerberg     getrlimit(RLIMIT_CORE, &dumpsize);
3111edf8e2afSMika Westerberg     if ((pos = lseek(fd, 0, SEEK_CUR))==-1) {
3112edf8e2afSMika Westerberg         if (errno == ESPIPE) { /* not a seekable stream */
3113edf8e2afSMika Westerberg             bytes_left = size;
3114edf8e2afSMika Westerberg         } else {
3115edf8e2afSMika Westerberg             return pos;
3116edf8e2afSMika Westerberg         }
3117edf8e2afSMika Westerberg     } else {
3118edf8e2afSMika Westerberg         if (dumpsize.rlim_cur <= pos) {
3119edf8e2afSMika Westerberg             return -1;
3120edf8e2afSMika Westerberg         } else if (dumpsize.rlim_cur == RLIM_INFINITY) {
3121edf8e2afSMika Westerberg             bytes_left = size;
3122edf8e2afSMika Westerberg         } else {
3123edf8e2afSMika Westerberg             size_t limit_left=dumpsize.rlim_cur - pos;
3124edf8e2afSMika Westerberg             bytes_left = limit_left >= size ? size : limit_left ;
3125edf8e2afSMika Westerberg         }
3126edf8e2afSMika Westerberg     }
3127edf8e2afSMika Westerberg 
3128edf8e2afSMika Westerberg     /*
3129edf8e2afSMika Westerberg      * In normal conditions, single write(2) should do but
3130edf8e2afSMika Westerberg      * in case of socket etc. this mechanism is more portable.
3131edf8e2afSMika Westerberg      */
3132edf8e2afSMika Westerberg     do {
3133edf8e2afSMika Westerberg         bytes_written = write(fd, bufp, bytes_left);
3134edf8e2afSMika Westerberg         if (bytes_written < 0) {
3135edf8e2afSMika Westerberg             if (errno == EINTR)
3136edf8e2afSMika Westerberg                 continue;
3137edf8e2afSMika Westerberg             return (-1);
3138edf8e2afSMika Westerberg         } else if (bytes_written == 0) { /* eof */
3139edf8e2afSMika Westerberg             return (-1);
3140edf8e2afSMika Westerberg         }
3141edf8e2afSMika Westerberg         bufp += bytes_written;
3142edf8e2afSMika Westerberg         bytes_left -= bytes_written;
3143edf8e2afSMika Westerberg     } while (bytes_left > 0);
3144edf8e2afSMika Westerberg 
3145edf8e2afSMika Westerberg     return (0);
3146edf8e2afSMika Westerberg }
3147edf8e2afSMika Westerberg 
3148edf8e2afSMika Westerberg static int write_note(struct memelfnote *men, int fd)
3149edf8e2afSMika Westerberg {
3150edf8e2afSMika Westerberg     struct elf_note en;
3151edf8e2afSMika Westerberg 
3152edf8e2afSMika Westerberg     en.n_namesz = men->namesz;
3153edf8e2afSMika Westerberg     en.n_type = men->type;
3154edf8e2afSMika Westerberg     en.n_descsz = men->datasz;
3155edf8e2afSMika Westerberg 
3156edf8e2afSMika Westerberg     bswap_note(&en);
3157edf8e2afSMika Westerberg 
3158edf8e2afSMika Westerberg     if (dump_write(fd, &en, sizeof(en)) != 0)
3159edf8e2afSMika Westerberg         return (-1);
3160edf8e2afSMika Westerberg     if (dump_write(fd, men->name, men->namesz_rounded) != 0)
3161edf8e2afSMika Westerberg         return (-1);
316280f5ce75SLaurent Vivier     if (dump_write(fd, men->data, men->datasz_rounded) != 0)
3163edf8e2afSMika Westerberg         return (-1);
3164edf8e2afSMika Westerberg 
3165edf8e2afSMika Westerberg     return (0);
3166edf8e2afSMika Westerberg }
3167edf8e2afSMika Westerberg 
31689349b4f9SAndreas Färber static void fill_thread_info(struct elf_note_info *info, const CPUArchState *env)
3169edf8e2afSMika Westerberg {
31700429a971SAndreas Färber     CPUState *cpu = ENV_GET_CPU((CPUArchState *)env);
31710429a971SAndreas Färber     TaskState *ts = (TaskState *)cpu->opaque;
3172edf8e2afSMika Westerberg     struct elf_thread_status *ets;
3173edf8e2afSMika Westerberg 
31747267c094SAnthony Liguori     ets = g_malloc0(sizeof (*ets));
3175edf8e2afSMika Westerberg     ets->num_notes = 1; /* only prstatus is dumped */
3176edf8e2afSMika Westerberg     fill_prstatus(&ets->prstatus, ts, 0);
3177edf8e2afSMika Westerberg     elf_core_copy_regs(&ets->prstatus.pr_reg, env);
3178edf8e2afSMika Westerberg     fill_note(&ets->notes[0], "CORE", NT_PRSTATUS, sizeof (ets->prstatus),
3179edf8e2afSMika Westerberg               &ets->prstatus);
3180edf8e2afSMika Westerberg 
318172cf2d4fSBlue Swirl     QTAILQ_INSERT_TAIL(&info->thread_list, ets, ets_link);
3182edf8e2afSMika Westerberg 
3183edf8e2afSMika Westerberg     info->notes_size += note_size(&ets->notes[0]);
3184edf8e2afSMika Westerberg }
3185edf8e2afSMika Westerberg 
31866afafa86SPeter Maydell static void init_note_info(struct elf_note_info *info)
31876afafa86SPeter Maydell {
31886afafa86SPeter Maydell     /* Initialize the elf_note_info structure so that it is at
31896afafa86SPeter Maydell      * least safe to call free_note_info() on it. Must be
31906afafa86SPeter Maydell      * called before calling fill_note_info().
31916afafa86SPeter Maydell      */
31926afafa86SPeter Maydell     memset(info, 0, sizeof (*info));
31936afafa86SPeter Maydell     QTAILQ_INIT(&info->thread_list);
31946afafa86SPeter Maydell }
31956afafa86SPeter Maydell 
3196edf8e2afSMika Westerberg static int fill_note_info(struct elf_note_info *info,
31979349b4f9SAndreas Färber                           long signr, const CPUArchState *env)
3198edf8e2afSMika Westerberg {
3199edf8e2afSMika Westerberg #define NUMNOTES 3
32000429a971SAndreas Färber     CPUState *cpu = ENV_GET_CPU((CPUArchState *)env);
32010429a971SAndreas Färber     TaskState *ts = (TaskState *)cpu->opaque;
3202edf8e2afSMika Westerberg     int i;
3203edf8e2afSMika Westerberg 
3204c78d65e8SMarkus Armbruster     info->notes = g_new0(struct memelfnote, NUMNOTES);
3205edf8e2afSMika Westerberg     if (info->notes == NULL)
3206edf8e2afSMika Westerberg         return (-ENOMEM);
32077267c094SAnthony Liguori     info->prstatus = g_malloc0(sizeof (*info->prstatus));
3208edf8e2afSMika Westerberg     if (info->prstatus == NULL)
3209edf8e2afSMika Westerberg         return (-ENOMEM);
32107267c094SAnthony Liguori     info->psinfo = g_malloc0(sizeof (*info->psinfo));
3211edf8e2afSMika Westerberg     if (info->prstatus == NULL)
3212edf8e2afSMika Westerberg         return (-ENOMEM);
3213edf8e2afSMika Westerberg 
3214edf8e2afSMika Westerberg     /*
3215edf8e2afSMika Westerberg      * First fill in status (and registers) of current thread
3216edf8e2afSMika Westerberg      * including process info & aux vector.
3217edf8e2afSMika Westerberg      */
3218edf8e2afSMika Westerberg     fill_prstatus(info->prstatus, ts, signr);
3219edf8e2afSMika Westerberg     elf_core_copy_regs(&info->prstatus->pr_reg, env);
3220edf8e2afSMika Westerberg     fill_note(&info->notes[0], "CORE", NT_PRSTATUS,
3221edf8e2afSMika Westerberg               sizeof (*info->prstatus), info->prstatus);
3222edf8e2afSMika Westerberg     fill_psinfo(info->psinfo, ts);
3223edf8e2afSMika Westerberg     fill_note(&info->notes[1], "CORE", NT_PRPSINFO,
3224edf8e2afSMika Westerberg               sizeof (*info->psinfo), info->psinfo);
3225edf8e2afSMika Westerberg     fill_auxv_note(&info->notes[2], ts);
3226edf8e2afSMika Westerberg     info->numnote = 3;
3227edf8e2afSMika Westerberg 
3228edf8e2afSMika Westerberg     info->notes_size = 0;
3229edf8e2afSMika Westerberg     for (i = 0; i < info->numnote; i++)
3230edf8e2afSMika Westerberg         info->notes_size += note_size(&info->notes[i]);
3231edf8e2afSMika Westerberg 
3232edf8e2afSMika Westerberg     /* read and fill status of all threads */
3233edf8e2afSMika Westerberg     cpu_list_lock();
3234bdc44640SAndreas Färber     CPU_FOREACH(cpu) {
3235a2247f8eSAndreas Färber         if (cpu == thread_cpu) {
3236edf8e2afSMika Westerberg             continue;
3237182735efSAndreas Färber         }
3238182735efSAndreas Färber         fill_thread_info(info, (CPUArchState *)cpu->env_ptr);
3239edf8e2afSMika Westerberg     }
3240edf8e2afSMika Westerberg     cpu_list_unlock();
3241edf8e2afSMika Westerberg 
3242edf8e2afSMika Westerberg     return (0);
3243edf8e2afSMika Westerberg }
3244edf8e2afSMika Westerberg 
3245edf8e2afSMika Westerberg static void free_note_info(struct elf_note_info *info)
3246edf8e2afSMika Westerberg {
3247edf8e2afSMika Westerberg     struct elf_thread_status *ets;
3248edf8e2afSMika Westerberg 
324972cf2d4fSBlue Swirl     while (!QTAILQ_EMPTY(&info->thread_list)) {
325072cf2d4fSBlue Swirl         ets = QTAILQ_FIRST(&info->thread_list);
325172cf2d4fSBlue Swirl         QTAILQ_REMOVE(&info->thread_list, ets, ets_link);
32527267c094SAnthony Liguori         g_free(ets);
3253edf8e2afSMika Westerberg     }
3254edf8e2afSMika Westerberg 
32557267c094SAnthony Liguori     g_free(info->prstatus);
32567267c094SAnthony Liguori     g_free(info->psinfo);
32577267c094SAnthony Liguori     g_free(info->notes);
3258edf8e2afSMika Westerberg }
3259edf8e2afSMika Westerberg 
3260edf8e2afSMika Westerberg static int write_note_info(struct elf_note_info *info, int fd)
3261edf8e2afSMika Westerberg {
3262edf8e2afSMika Westerberg     struct elf_thread_status *ets;
3263edf8e2afSMika Westerberg     int i, error = 0;
3264edf8e2afSMika Westerberg 
3265edf8e2afSMika Westerberg     /* write prstatus, psinfo and auxv for current thread */
3266edf8e2afSMika Westerberg     for (i = 0; i < info->numnote; i++)
3267edf8e2afSMika Westerberg         if ((error = write_note(&info->notes[i], fd)) != 0)
3268edf8e2afSMika Westerberg             return (error);
3269edf8e2afSMika Westerberg 
3270edf8e2afSMika Westerberg     /* write prstatus for each thread */
327152a53afeSEmilio G. Cota     QTAILQ_FOREACH(ets, &info->thread_list, ets_link) {
3272edf8e2afSMika Westerberg         if ((error = write_note(&ets->notes[0], fd)) != 0)
3273edf8e2afSMika Westerberg             return (error);
3274edf8e2afSMika Westerberg     }
3275edf8e2afSMika Westerberg 
3276edf8e2afSMika Westerberg     return (0);
3277edf8e2afSMika Westerberg }
3278edf8e2afSMika Westerberg 
3279edf8e2afSMika Westerberg /*
3280edf8e2afSMika Westerberg  * Write out ELF coredump.
3281edf8e2afSMika Westerberg  *
3282edf8e2afSMika Westerberg  * See documentation of ELF object file format in:
3283edf8e2afSMika Westerberg  * http://www.caldera.com/developers/devspecs/gabi41.pdf
3284edf8e2afSMika Westerberg  *
3285edf8e2afSMika Westerberg  * Coredump format in linux is following:
3286edf8e2afSMika Westerberg  *
3287edf8e2afSMika Westerberg  * 0   +----------------------+         \
3288edf8e2afSMika Westerberg  *     | ELF header           | ET_CORE  |
3289edf8e2afSMika Westerberg  *     +----------------------+          |
3290edf8e2afSMika Westerberg  *     | ELF program headers  |          |--- headers
3291edf8e2afSMika Westerberg  *     | - NOTE section       |          |
3292edf8e2afSMika Westerberg  *     | - PT_LOAD sections   |          |
3293edf8e2afSMika Westerberg  *     +----------------------+         /
3294edf8e2afSMika Westerberg  *     | NOTEs:               |
3295edf8e2afSMika Westerberg  *     | - NT_PRSTATUS        |
3296edf8e2afSMika Westerberg  *     | - NT_PRSINFO         |
3297edf8e2afSMika Westerberg  *     | - NT_AUXV            |
3298edf8e2afSMika Westerberg  *     +----------------------+ <-- aligned to target page
3299edf8e2afSMika Westerberg  *     | Process memory dump  |
3300edf8e2afSMika Westerberg  *     :                      :
3301edf8e2afSMika Westerberg  *     .                      .
3302edf8e2afSMika Westerberg  *     :                      :
3303edf8e2afSMika Westerberg  *     |                      |
3304edf8e2afSMika Westerberg  *     +----------------------+
3305edf8e2afSMika Westerberg  *
3306edf8e2afSMika Westerberg  * NT_PRSTATUS -> struct elf_prstatus (per thread)
3307edf8e2afSMika Westerberg  * NT_PRSINFO  -> struct elf_prpsinfo
3308edf8e2afSMika Westerberg  * NT_AUXV is array of { type, value } pairs (see fill_auxv_note()).
3309edf8e2afSMika Westerberg  *
3310edf8e2afSMika Westerberg  * Format follows System V format as close as possible.  Current
3311edf8e2afSMika Westerberg  * version limitations are as follows:
3312edf8e2afSMika Westerberg  *     - no floating point registers are dumped
3313edf8e2afSMika Westerberg  *
3314edf8e2afSMika Westerberg  * Function returns 0 in case of success, negative errno otherwise.
3315edf8e2afSMika Westerberg  *
3316edf8e2afSMika Westerberg  * TODO: make this work also during runtime: it should be
3317edf8e2afSMika Westerberg  * possible to force coredump from running process and then
3318edf8e2afSMika Westerberg  * continue processing.  For example qemu could set up SIGUSR2
3319edf8e2afSMika Westerberg  * handler (provided that target process haven't registered
3320edf8e2afSMika Westerberg  * handler for that) that does the dump when signal is received.
3321edf8e2afSMika Westerberg  */
33229349b4f9SAndreas Färber static int elf_core_dump(int signr, const CPUArchState *env)
3323edf8e2afSMika Westerberg {
33240429a971SAndreas Färber     const CPUState *cpu = ENV_GET_CPU((CPUArchState *)env);
33250429a971SAndreas Färber     const TaskState *ts = (const TaskState *)cpu->opaque;
3326edf8e2afSMika Westerberg     struct vm_area_struct *vma = NULL;
3327edf8e2afSMika Westerberg     char corefile[PATH_MAX];
3328edf8e2afSMika Westerberg     struct elf_note_info info;
3329edf8e2afSMika Westerberg     struct elfhdr elf;
3330edf8e2afSMika Westerberg     struct elf_phdr phdr;
3331edf8e2afSMika Westerberg     struct rlimit dumpsize;
3332edf8e2afSMika Westerberg     struct mm_struct *mm = NULL;
3333edf8e2afSMika Westerberg     off_t offset = 0, data_offset = 0;
3334edf8e2afSMika Westerberg     int segs = 0;
3335edf8e2afSMika Westerberg     int fd = -1;
3336edf8e2afSMika Westerberg 
33376afafa86SPeter Maydell     init_note_info(&info);
33386afafa86SPeter Maydell 
3339edf8e2afSMika Westerberg     errno = 0;
3340edf8e2afSMika Westerberg     getrlimit(RLIMIT_CORE, &dumpsize);
3341edf8e2afSMika Westerberg     if (dumpsize.rlim_cur == 0)
3342edf8e2afSMika Westerberg         return 0;
3343edf8e2afSMika Westerberg 
3344edf8e2afSMika Westerberg     if (core_dump_filename(ts, corefile, sizeof (corefile)) < 0)
3345edf8e2afSMika Westerberg         return (-errno);
3346edf8e2afSMika Westerberg 
3347edf8e2afSMika Westerberg     if ((fd = open(corefile, O_WRONLY | O_CREAT,
3348edf8e2afSMika Westerberg                    S_IRUSR|S_IWUSR|S_IRGRP|S_IROTH)) < 0)
3349edf8e2afSMika Westerberg         return (-errno);
3350edf8e2afSMika Westerberg 
3351edf8e2afSMika Westerberg     /*
3352edf8e2afSMika Westerberg      * Walk through target process memory mappings and
3353edf8e2afSMika Westerberg      * set up structure containing this information.  After
3354edf8e2afSMika Westerberg      * this point vma_xxx functions can be used.
3355edf8e2afSMika Westerberg      */
3356edf8e2afSMika Westerberg     if ((mm = vma_init()) == NULL)
3357edf8e2afSMika Westerberg         goto out;
3358edf8e2afSMika Westerberg 
3359edf8e2afSMika Westerberg     walk_memory_regions(mm, vma_walker);
3360edf8e2afSMika Westerberg     segs = vma_get_mapping_count(mm);
3361edf8e2afSMika Westerberg 
3362edf8e2afSMika Westerberg     /*
3363edf8e2afSMika Westerberg      * Construct valid coredump ELF header.  We also
3364edf8e2afSMika Westerberg      * add one more segment for notes.
3365edf8e2afSMika Westerberg      */
3366edf8e2afSMika Westerberg     fill_elf_header(&elf, segs + 1, ELF_MACHINE, 0);
3367edf8e2afSMika Westerberg     if (dump_write(fd, &elf, sizeof (elf)) != 0)
3368edf8e2afSMika Westerberg         goto out;
3369edf8e2afSMika Westerberg 
3370b6af0975SDaniel P. Berrange     /* fill in the in-memory version of notes */
3371edf8e2afSMika Westerberg     if (fill_note_info(&info, signr, env) < 0)
3372edf8e2afSMika Westerberg         goto out;
3373edf8e2afSMika Westerberg 
3374edf8e2afSMika Westerberg     offset += sizeof (elf);                             /* elf header */
3375edf8e2afSMika Westerberg     offset += (segs + 1) * sizeof (struct elf_phdr);    /* program headers */
3376edf8e2afSMika Westerberg 
3377edf8e2afSMika Westerberg     /* write out notes program header */
3378edf8e2afSMika Westerberg     fill_elf_note_phdr(&phdr, info.notes_size, offset);
3379edf8e2afSMika Westerberg 
3380edf8e2afSMika Westerberg     offset += info.notes_size;
3381edf8e2afSMika Westerberg     if (dump_write(fd, &phdr, sizeof (phdr)) != 0)
3382edf8e2afSMika Westerberg         goto out;
3383edf8e2afSMika Westerberg 
3384edf8e2afSMika Westerberg     /*
3385edf8e2afSMika Westerberg      * ELF specification wants data to start at page boundary so
3386edf8e2afSMika Westerberg      * we align it here.
3387edf8e2afSMika Westerberg      */
338880f5ce75SLaurent Vivier     data_offset = offset = roundup(offset, ELF_EXEC_PAGESIZE);
3389edf8e2afSMika Westerberg 
3390edf8e2afSMika Westerberg     /*
3391edf8e2afSMika Westerberg      * Write program headers for memory regions mapped in
3392edf8e2afSMika Westerberg      * the target process.
3393edf8e2afSMika Westerberg      */
3394edf8e2afSMika Westerberg     for (vma = vma_first(mm); vma != NULL; vma = vma_next(vma)) {
3395edf8e2afSMika Westerberg         (void) memset(&phdr, 0, sizeof (phdr));
3396edf8e2afSMika Westerberg 
3397edf8e2afSMika Westerberg         phdr.p_type = PT_LOAD;
3398edf8e2afSMika Westerberg         phdr.p_offset = offset;
3399edf8e2afSMika Westerberg         phdr.p_vaddr = vma->vma_start;
3400edf8e2afSMika Westerberg         phdr.p_paddr = 0;
3401edf8e2afSMika Westerberg         phdr.p_filesz = vma_dump_size(vma);
3402edf8e2afSMika Westerberg         offset += phdr.p_filesz;
3403edf8e2afSMika Westerberg         phdr.p_memsz = vma->vma_end - vma->vma_start;
3404edf8e2afSMika Westerberg         phdr.p_flags = vma->vma_flags & PROT_READ ? PF_R : 0;
3405edf8e2afSMika Westerberg         if (vma->vma_flags & PROT_WRITE)
3406edf8e2afSMika Westerberg             phdr.p_flags |= PF_W;
3407edf8e2afSMika Westerberg         if (vma->vma_flags & PROT_EXEC)
3408edf8e2afSMika Westerberg             phdr.p_flags |= PF_X;
3409edf8e2afSMika Westerberg         phdr.p_align = ELF_EXEC_PAGESIZE;
3410edf8e2afSMika Westerberg 
341180f5ce75SLaurent Vivier         bswap_phdr(&phdr, 1);
3412772034b6SPeter Maydell         if (dump_write(fd, &phdr, sizeof(phdr)) != 0) {
3413772034b6SPeter Maydell             goto out;
3414772034b6SPeter Maydell         }
3415edf8e2afSMika Westerberg     }
3416edf8e2afSMika Westerberg 
3417edf8e2afSMika Westerberg     /*
3418edf8e2afSMika Westerberg      * Next we write notes just after program headers.  No
3419edf8e2afSMika Westerberg      * alignment needed here.
3420edf8e2afSMika Westerberg      */
3421edf8e2afSMika Westerberg     if (write_note_info(&info, fd) < 0)
3422edf8e2afSMika Westerberg         goto out;
3423edf8e2afSMika Westerberg 
3424edf8e2afSMika Westerberg     /* align data to page boundary */
3425edf8e2afSMika Westerberg     if (lseek(fd, data_offset, SEEK_SET) != data_offset)
3426edf8e2afSMika Westerberg         goto out;
3427edf8e2afSMika Westerberg 
3428edf8e2afSMika Westerberg     /*
3429edf8e2afSMika Westerberg      * Finally we can dump process memory into corefile as well.
3430edf8e2afSMika Westerberg      */
3431edf8e2afSMika Westerberg     for (vma = vma_first(mm); vma != NULL; vma = vma_next(vma)) {
3432edf8e2afSMika Westerberg         abi_ulong addr;
3433edf8e2afSMika Westerberg         abi_ulong end;
3434edf8e2afSMika Westerberg 
3435edf8e2afSMika Westerberg         end = vma->vma_start + vma_dump_size(vma);
3436edf8e2afSMika Westerberg 
3437edf8e2afSMika Westerberg         for (addr = vma->vma_start; addr < end;
3438edf8e2afSMika Westerberg              addr += TARGET_PAGE_SIZE) {
3439edf8e2afSMika Westerberg             char page[TARGET_PAGE_SIZE];
3440edf8e2afSMika Westerberg             int error;
3441edf8e2afSMika Westerberg 
3442edf8e2afSMika Westerberg             /*
3443edf8e2afSMika Westerberg              *  Read in page from target process memory and
3444edf8e2afSMika Westerberg              *  write it to coredump file.
3445edf8e2afSMika Westerberg              */
3446edf8e2afSMika Westerberg             error = copy_from_user(page, addr, sizeof (page));
3447edf8e2afSMika Westerberg             if (error != 0) {
344849995e17SAurelien Jarno                 (void) fprintf(stderr, "unable to dump " TARGET_ABI_FMT_lx "\n",
3449edf8e2afSMika Westerberg                                addr);
3450edf8e2afSMika Westerberg                 errno = -error;
3451edf8e2afSMika Westerberg                 goto out;
3452edf8e2afSMika Westerberg             }
3453edf8e2afSMika Westerberg             if (dump_write(fd, page, TARGET_PAGE_SIZE) < 0)
3454edf8e2afSMika Westerberg                 goto out;
3455edf8e2afSMika Westerberg         }
3456edf8e2afSMika Westerberg     }
3457edf8e2afSMika Westerberg 
3458edf8e2afSMika Westerberg  out:
3459edf8e2afSMika Westerberg     free_note_info(&info);
3460edf8e2afSMika Westerberg     if (mm != NULL)
3461edf8e2afSMika Westerberg         vma_delete(mm);
3462edf8e2afSMika Westerberg     (void) close(fd);
3463edf8e2afSMika Westerberg 
3464edf8e2afSMika Westerberg     if (errno != 0)
3465edf8e2afSMika Westerberg         return (-errno);
3466edf8e2afSMika Westerberg     return (0);
3467edf8e2afSMika Westerberg }
3468edf8e2afSMika Westerberg #endif /* USE_ELF_CORE_DUMP */
3469edf8e2afSMika Westerberg 
3470e5fe0c52Spbrook void do_init_thread(struct target_pt_regs *regs, struct image_info *infop)
3471e5fe0c52Spbrook {
3472e5fe0c52Spbrook     init_thread(regs, infop);
3473e5fe0c52Spbrook }
3474