xref: /qemu/linux-user/elfload.c (revision b89d9c988a988d5547c73e2bc43f59b0c07420a5)
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 
813cb10cfaSChristophe Lyon int info_is_fdpic(struct image_info *info)
823cb10cfaSChristophe Lyon {
833cb10cfaSChristophe Lyon     return info->personality == PER_LINUX_FDPIC;
843cb10cfaSChristophe Lyon }
853cb10cfaSChristophe Lyon 
8683fb7adfSbellard /* this flag is uneffective under linux too, should be deleted */
8783fb7adfSbellard #ifndef MAP_DENYWRITE
8883fb7adfSbellard #define MAP_DENYWRITE 0
8983fb7adfSbellard #endif
9083fb7adfSbellard 
9183fb7adfSbellard /* should probably go in elf.h */
9283fb7adfSbellard #ifndef ELIBBAD
9383fb7adfSbellard #define ELIBBAD 80
9483fb7adfSbellard #endif
9583fb7adfSbellard 
9628490231SRichard Henderson #ifdef TARGET_WORDS_BIGENDIAN
9728490231SRichard Henderson #define ELF_DATA        ELFDATA2MSB
9828490231SRichard Henderson #else
9928490231SRichard Henderson #define ELF_DATA        ELFDATA2LSB
10028490231SRichard Henderson #endif
10128490231SRichard Henderson 
102a29f998dSPaolo Bonzini #ifdef TARGET_ABI_MIPSN32
103918fc54cSPaolo Bonzini typedef abi_ullong      target_elf_greg_t;
104918fc54cSPaolo Bonzini #define tswapreg(ptr)   tswap64(ptr)
105a29f998dSPaolo Bonzini #else
106a29f998dSPaolo Bonzini typedef abi_ulong       target_elf_greg_t;
107a29f998dSPaolo Bonzini #define tswapreg(ptr)   tswapal(ptr)
108a29f998dSPaolo Bonzini #endif
109a29f998dSPaolo Bonzini 
11021e807faSNathan Froyd #ifdef USE_UID16
1111ddd592fSPaolo Bonzini typedef abi_ushort      target_uid_t;
1121ddd592fSPaolo Bonzini typedef abi_ushort      target_gid_t;
11321e807faSNathan Froyd #else
114f8fd4fc4SPaolo Bonzini typedef abi_uint        target_uid_t;
115f8fd4fc4SPaolo Bonzini typedef abi_uint        target_gid_t;
11621e807faSNathan Froyd #endif
117f8fd4fc4SPaolo Bonzini typedef abi_int         target_pid_t;
11821e807faSNathan Froyd 
11930ac07d4Sbellard #ifdef TARGET_I386
12030ac07d4Sbellard 
12115338fd7Sbellard #define ELF_PLATFORM get_elf_platform()
12215338fd7Sbellard 
12315338fd7Sbellard static const char *get_elf_platform(void)
12415338fd7Sbellard {
12515338fd7Sbellard     static char elf_platform[] = "i386";
126a2247f8eSAndreas Färber     int family = object_property_get_int(OBJECT(thread_cpu), "family", NULL);
12715338fd7Sbellard     if (family > 6)
12815338fd7Sbellard         family = 6;
12915338fd7Sbellard     if (family >= 3)
13015338fd7Sbellard         elf_platform[1] = '0' + family;
13115338fd7Sbellard     return elf_platform;
13215338fd7Sbellard }
13315338fd7Sbellard 
13415338fd7Sbellard #define ELF_HWCAP get_elf_hwcap()
13515338fd7Sbellard 
13615338fd7Sbellard static uint32_t get_elf_hwcap(void)
13715338fd7Sbellard {
138a2247f8eSAndreas Färber     X86CPU *cpu = X86_CPU(thread_cpu);
139a2247f8eSAndreas Färber 
140a2247f8eSAndreas Färber     return cpu->env.features[FEAT_1_EDX];
14115338fd7Sbellard }
14215338fd7Sbellard 
14384409ddbSj_mayer #ifdef TARGET_X86_64
14484409ddbSj_mayer #define ELF_START_MMAP 0x2aaaaab000ULL
14584409ddbSj_mayer 
14684409ddbSj_mayer #define ELF_CLASS      ELFCLASS64
14784409ddbSj_mayer #define ELF_ARCH       EM_X86_64
14884409ddbSj_mayer 
14984409ddbSj_mayer static inline void init_thread(struct target_pt_regs *regs, struct image_info *infop)
15084409ddbSj_mayer {
15184409ddbSj_mayer     regs->rax = 0;
15284409ddbSj_mayer     regs->rsp = infop->start_stack;
15384409ddbSj_mayer     regs->rip = infop->entry;
15484409ddbSj_mayer }
15584409ddbSj_mayer 
1569edc5d79SMika Westerberg #define ELF_NREG    27
157c227f099SAnthony Liguori typedef target_elf_greg_t  target_elf_gregset_t[ELF_NREG];
1589edc5d79SMika Westerberg 
1599edc5d79SMika Westerberg /*
1609edc5d79SMika Westerberg  * Note that ELF_NREG should be 29 as there should be place for
1619edc5d79SMika Westerberg  * TRAPNO and ERR "registers" as well but linux doesn't dump
1629edc5d79SMika Westerberg  * those.
1639edc5d79SMika Westerberg  *
1649edc5d79SMika Westerberg  * See linux kernel: arch/x86/include/asm/elf.h
1659edc5d79SMika Westerberg  */
16605390248SAndreas Färber static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUX86State *env)
1679edc5d79SMika Westerberg {
1689edc5d79SMika Westerberg     (*regs)[0] = env->regs[15];
1699edc5d79SMika Westerberg     (*regs)[1] = env->regs[14];
1709edc5d79SMika Westerberg     (*regs)[2] = env->regs[13];
1719edc5d79SMika Westerberg     (*regs)[3] = env->regs[12];
1729edc5d79SMika Westerberg     (*regs)[4] = env->regs[R_EBP];
1739edc5d79SMika Westerberg     (*regs)[5] = env->regs[R_EBX];
1749edc5d79SMika Westerberg     (*regs)[6] = env->regs[11];
1759edc5d79SMika Westerberg     (*regs)[7] = env->regs[10];
1769edc5d79SMika Westerberg     (*regs)[8] = env->regs[9];
1779edc5d79SMika Westerberg     (*regs)[9] = env->regs[8];
1789edc5d79SMika Westerberg     (*regs)[10] = env->regs[R_EAX];
1799edc5d79SMika Westerberg     (*regs)[11] = env->regs[R_ECX];
1809edc5d79SMika Westerberg     (*regs)[12] = env->regs[R_EDX];
1819edc5d79SMika Westerberg     (*regs)[13] = env->regs[R_ESI];
1829edc5d79SMika Westerberg     (*regs)[14] = env->regs[R_EDI];
1839edc5d79SMika Westerberg     (*regs)[15] = env->regs[R_EAX]; /* XXX */
1849edc5d79SMika Westerberg     (*regs)[16] = env->eip;
1859edc5d79SMika Westerberg     (*regs)[17] = env->segs[R_CS].selector & 0xffff;
1869edc5d79SMika Westerberg     (*regs)[18] = env->eflags;
1879edc5d79SMika Westerberg     (*regs)[19] = env->regs[R_ESP];
1889edc5d79SMika Westerberg     (*regs)[20] = env->segs[R_SS].selector & 0xffff;
1899edc5d79SMika Westerberg     (*regs)[21] = env->segs[R_FS].selector & 0xffff;
1909edc5d79SMika Westerberg     (*regs)[22] = env->segs[R_GS].selector & 0xffff;
1919edc5d79SMika Westerberg     (*regs)[23] = env->segs[R_DS].selector & 0xffff;
1929edc5d79SMika Westerberg     (*regs)[24] = env->segs[R_ES].selector & 0xffff;
1939edc5d79SMika Westerberg     (*regs)[25] = env->segs[R_FS].selector & 0xffff;
1949edc5d79SMika Westerberg     (*regs)[26] = env->segs[R_GS].selector & 0xffff;
1959edc5d79SMika Westerberg }
1969edc5d79SMika Westerberg 
19784409ddbSj_mayer #else
19884409ddbSj_mayer 
19930ac07d4Sbellard #define ELF_START_MMAP 0x80000000
20030ac07d4Sbellard 
20130ac07d4Sbellard /*
20230ac07d4Sbellard  * This is used to ensure we don't load something for the wrong architecture.
20330ac07d4Sbellard  */
20430ac07d4Sbellard #define elf_check_arch(x) ( ((x) == EM_386) || ((x) == EM_486) )
20530ac07d4Sbellard 
20630ac07d4Sbellard /*
20730ac07d4Sbellard  * These are used to set parameters in the core dumps.
20830ac07d4Sbellard  */
20930ac07d4Sbellard #define ELF_CLASS       ELFCLASS32
21030ac07d4Sbellard #define ELF_ARCH        EM_386
21130ac07d4Sbellard 
212d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
213d97ef72eSRichard Henderson                                struct image_info *infop)
214e5fe0c52Spbrook {
215e5fe0c52Spbrook     regs->esp = infop->start_stack;
216e5fe0c52Spbrook     regs->eip = infop->entry;
217e5fe0c52Spbrook 
21830ac07d4Sbellard     /* SVR4/i386 ABI (pages 3-31, 3-32) says that when the program
21930ac07d4Sbellard        starts %edx contains a pointer to a function which might be
22030ac07d4Sbellard        registered using `atexit'.  This provides a mean for the
22130ac07d4Sbellard        dynamic linker to call DT_FINI functions for shared libraries
22230ac07d4Sbellard        that have been loaded before the code runs.
22330ac07d4Sbellard 
22430ac07d4Sbellard        A value of 0 tells we have no such handler.  */
225e5fe0c52Spbrook     regs->edx = 0;
226b346ff46Sbellard }
2279edc5d79SMika Westerberg 
2289edc5d79SMika Westerberg #define ELF_NREG    17
229c227f099SAnthony Liguori typedef target_elf_greg_t  target_elf_gregset_t[ELF_NREG];
2309edc5d79SMika Westerberg 
2319edc5d79SMika Westerberg /*
2329edc5d79SMika Westerberg  * Note that ELF_NREG should be 19 as there should be place for
2339edc5d79SMika Westerberg  * TRAPNO and ERR "registers" as well but linux doesn't dump
2349edc5d79SMika Westerberg  * those.
2359edc5d79SMika Westerberg  *
2369edc5d79SMika Westerberg  * See linux kernel: arch/x86/include/asm/elf.h
2379edc5d79SMika Westerberg  */
23805390248SAndreas Färber static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUX86State *env)
2399edc5d79SMika Westerberg {
2409edc5d79SMika Westerberg     (*regs)[0] = env->regs[R_EBX];
2419edc5d79SMika Westerberg     (*regs)[1] = env->regs[R_ECX];
2429edc5d79SMika Westerberg     (*regs)[2] = env->regs[R_EDX];
2439edc5d79SMika Westerberg     (*regs)[3] = env->regs[R_ESI];
2449edc5d79SMika Westerberg     (*regs)[4] = env->regs[R_EDI];
2459edc5d79SMika Westerberg     (*regs)[5] = env->regs[R_EBP];
2469edc5d79SMika Westerberg     (*regs)[6] = env->regs[R_EAX];
2479edc5d79SMika Westerberg     (*regs)[7] = env->segs[R_DS].selector & 0xffff;
2489edc5d79SMika Westerberg     (*regs)[8] = env->segs[R_ES].selector & 0xffff;
2499edc5d79SMika Westerberg     (*regs)[9] = env->segs[R_FS].selector & 0xffff;
2509edc5d79SMika Westerberg     (*regs)[10] = env->segs[R_GS].selector & 0xffff;
2519edc5d79SMika Westerberg     (*regs)[11] = env->regs[R_EAX]; /* XXX */
2529edc5d79SMika Westerberg     (*regs)[12] = env->eip;
2539edc5d79SMika Westerberg     (*regs)[13] = env->segs[R_CS].selector & 0xffff;
2549edc5d79SMika Westerberg     (*regs)[14] = env->eflags;
2559edc5d79SMika Westerberg     (*regs)[15] = env->regs[R_ESP];
2569edc5d79SMika Westerberg     (*regs)[16] = env->segs[R_SS].selector & 0xffff;
2579edc5d79SMika Westerberg }
25884409ddbSj_mayer #endif
259b346ff46Sbellard 
2609edc5d79SMika Westerberg #define USE_ELF_CORE_DUMP
261b346ff46Sbellard #define ELF_EXEC_PAGESIZE       4096
262b346ff46Sbellard 
263b346ff46Sbellard #endif
264b346ff46Sbellard 
265b346ff46Sbellard #ifdef TARGET_ARM
266b346ff46Sbellard 
26724e76ff0SPeter Maydell #ifndef TARGET_AARCH64
26824e76ff0SPeter Maydell /* 32 bit ARM definitions */
26924e76ff0SPeter Maydell 
270b346ff46Sbellard #define ELF_START_MMAP 0x80000000
271b346ff46Sbellard 
272b597c3f7SPeter Crosthwaite #define ELF_ARCH        EM_ARM
273b346ff46Sbellard #define ELF_CLASS       ELFCLASS32
274b346ff46Sbellard 
275d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
276d97ef72eSRichard Henderson                                struct image_info *infop)
277b346ff46Sbellard {
278992f48a0Sblueswir1     abi_long stack = infop->start_stack;
279b346ff46Sbellard     memset(regs, 0, sizeof(*regs));
28099033caeSAlexander Graf 
281167e4cdcSPeter Maydell     regs->uregs[16] = ARM_CPU_MODE_USR;
282167e4cdcSPeter Maydell     if (infop->entry & 1) {
283167e4cdcSPeter Maydell         regs->uregs[16] |= CPSR_T;
284167e4cdcSPeter Maydell     }
285167e4cdcSPeter Maydell     regs->uregs[15] = infop->entry & 0xfffffffe;
286167e4cdcSPeter Maydell     regs->uregs[13] = infop->start_stack;
2872f619698Sbellard     /* FIXME - what to for failure of get_user()? */
288167e4cdcSPeter Maydell     get_user_ual(regs->uregs[2], stack + 8); /* envp */
289167e4cdcSPeter Maydell     get_user_ual(regs->uregs[1], stack + 4); /* envp */
290a1516e92Sbellard     /* XXX: it seems that r0 is zeroed after ! */
291167e4cdcSPeter Maydell     regs->uregs[0] = 0;
292e5fe0c52Spbrook     /* For uClinux PIC binaries.  */
293863cf0b7Sj_mayer     /* XXX: Linux does this only on ARM with no MMU (do we care ?) */
294167e4cdcSPeter Maydell     regs->uregs[10] = infop->start_data;
2953cb10cfaSChristophe Lyon 
2963cb10cfaSChristophe Lyon     /* Support ARM FDPIC.  */
2973cb10cfaSChristophe Lyon     if (info_is_fdpic(infop)) {
2983cb10cfaSChristophe Lyon         /* As described in the ABI document, r7 points to the loadmap info
2993cb10cfaSChristophe Lyon          * prepared by the kernel. If an interpreter is needed, r8 points
3003cb10cfaSChristophe Lyon          * to the interpreter loadmap and r9 points to the interpreter
3013cb10cfaSChristophe Lyon          * PT_DYNAMIC info. If no interpreter is needed, r8 is zero, and
3023cb10cfaSChristophe Lyon          * r9 points to the main program PT_DYNAMIC info.
3033cb10cfaSChristophe Lyon          */
3043cb10cfaSChristophe Lyon         regs->uregs[7] = infop->loadmap_addr;
3053cb10cfaSChristophe Lyon         if (infop->interpreter_loadmap_addr) {
3063cb10cfaSChristophe Lyon             /* Executable is dynamically loaded.  */
3073cb10cfaSChristophe Lyon             regs->uregs[8] = infop->interpreter_loadmap_addr;
3083cb10cfaSChristophe Lyon             regs->uregs[9] = infop->interpreter_pt_dynamic_addr;
3093cb10cfaSChristophe Lyon         } else {
3103cb10cfaSChristophe Lyon             regs->uregs[8] = 0;
3113cb10cfaSChristophe Lyon             regs->uregs[9] = infop->pt_dynamic_addr;
3123cb10cfaSChristophe Lyon         }
3133cb10cfaSChristophe Lyon     }
314b346ff46Sbellard }
315b346ff46Sbellard 
316edf8e2afSMika Westerberg #define ELF_NREG    18
317c227f099SAnthony Liguori typedef target_elf_greg_t  target_elf_gregset_t[ELF_NREG];
318edf8e2afSMika Westerberg 
31905390248SAndreas Färber static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUARMState *env)
320edf8e2afSMika Westerberg {
32186cd7b2dSPaolo Bonzini     (*regs)[0] = tswapreg(env->regs[0]);
32286cd7b2dSPaolo Bonzini     (*regs)[1] = tswapreg(env->regs[1]);
32386cd7b2dSPaolo Bonzini     (*regs)[2] = tswapreg(env->regs[2]);
32486cd7b2dSPaolo Bonzini     (*regs)[3] = tswapreg(env->regs[3]);
32586cd7b2dSPaolo Bonzini     (*regs)[4] = tswapreg(env->regs[4]);
32686cd7b2dSPaolo Bonzini     (*regs)[5] = tswapreg(env->regs[5]);
32786cd7b2dSPaolo Bonzini     (*regs)[6] = tswapreg(env->regs[6]);
32886cd7b2dSPaolo Bonzini     (*regs)[7] = tswapreg(env->regs[7]);
32986cd7b2dSPaolo Bonzini     (*regs)[8] = tswapreg(env->regs[8]);
33086cd7b2dSPaolo Bonzini     (*regs)[9] = tswapreg(env->regs[9]);
33186cd7b2dSPaolo Bonzini     (*regs)[10] = tswapreg(env->regs[10]);
33286cd7b2dSPaolo Bonzini     (*regs)[11] = tswapreg(env->regs[11]);
33386cd7b2dSPaolo Bonzini     (*regs)[12] = tswapreg(env->regs[12]);
33486cd7b2dSPaolo Bonzini     (*regs)[13] = tswapreg(env->regs[13]);
33586cd7b2dSPaolo Bonzini     (*regs)[14] = tswapreg(env->regs[14]);
33686cd7b2dSPaolo Bonzini     (*regs)[15] = tswapreg(env->regs[15]);
337edf8e2afSMika Westerberg 
33886cd7b2dSPaolo Bonzini     (*regs)[16] = tswapreg(cpsr_read((CPUARMState *)env));
33986cd7b2dSPaolo Bonzini     (*regs)[17] = tswapreg(env->regs[0]); /* XXX */
340edf8e2afSMika Westerberg }
341edf8e2afSMika Westerberg 
34230ac07d4Sbellard #define USE_ELF_CORE_DUMP
34330ac07d4Sbellard #define ELF_EXEC_PAGESIZE       4096
34430ac07d4Sbellard 
345afce2927Sbellard enum
346afce2927Sbellard {
347afce2927Sbellard     ARM_HWCAP_ARM_SWP       = 1 << 0,
348afce2927Sbellard     ARM_HWCAP_ARM_HALF      = 1 << 1,
349afce2927Sbellard     ARM_HWCAP_ARM_THUMB     = 1 << 2,
350afce2927Sbellard     ARM_HWCAP_ARM_26BIT     = 1 << 3,
351afce2927Sbellard     ARM_HWCAP_ARM_FAST_MULT = 1 << 4,
352afce2927Sbellard     ARM_HWCAP_ARM_FPA       = 1 << 5,
353afce2927Sbellard     ARM_HWCAP_ARM_VFP       = 1 << 6,
354afce2927Sbellard     ARM_HWCAP_ARM_EDSP      = 1 << 7,
355cf6de34aSRiku Voipio     ARM_HWCAP_ARM_JAVA      = 1 << 8,
356cf6de34aSRiku Voipio     ARM_HWCAP_ARM_IWMMXT    = 1 << 9,
35743ce393eSPeter Maydell     ARM_HWCAP_ARM_CRUNCH    = 1 << 10,
35843ce393eSPeter Maydell     ARM_HWCAP_ARM_THUMBEE   = 1 << 11,
35943ce393eSPeter Maydell     ARM_HWCAP_ARM_NEON      = 1 << 12,
36043ce393eSPeter Maydell     ARM_HWCAP_ARM_VFPv3     = 1 << 13,
36143ce393eSPeter Maydell     ARM_HWCAP_ARM_VFPv3D16  = 1 << 14,
36224682654SPeter Maydell     ARM_HWCAP_ARM_TLS       = 1 << 15,
36324682654SPeter Maydell     ARM_HWCAP_ARM_VFPv4     = 1 << 16,
36424682654SPeter Maydell     ARM_HWCAP_ARM_IDIVA     = 1 << 17,
36524682654SPeter Maydell     ARM_HWCAP_ARM_IDIVT     = 1 << 18,
36624682654SPeter Maydell     ARM_HWCAP_ARM_VFPD32    = 1 << 19,
36724682654SPeter Maydell     ARM_HWCAP_ARM_LPAE      = 1 << 20,
36824682654SPeter Maydell     ARM_HWCAP_ARM_EVTSTRM   = 1 << 21,
369afce2927Sbellard };
370afce2927Sbellard 
371ad6919dcSPeter Maydell enum {
372ad6919dcSPeter Maydell     ARM_HWCAP2_ARM_AES      = 1 << 0,
373ad6919dcSPeter Maydell     ARM_HWCAP2_ARM_PMULL    = 1 << 1,
374ad6919dcSPeter Maydell     ARM_HWCAP2_ARM_SHA1     = 1 << 2,
375ad6919dcSPeter Maydell     ARM_HWCAP2_ARM_SHA2     = 1 << 3,
376ad6919dcSPeter Maydell     ARM_HWCAP2_ARM_CRC32    = 1 << 4,
377ad6919dcSPeter Maydell };
378ad6919dcSPeter Maydell 
3796b1275ffSPeter Maydell /* The commpage only exists for 32 bit kernels */
3806b1275ffSPeter Maydell 
381806d1021SMeador Inge /* Return 1 if the proposed guest space is suitable for the guest.
382806d1021SMeador Inge  * Return 0 if the proposed guest space isn't suitable, but another
383806d1021SMeador Inge  * address space should be tried.
384806d1021SMeador Inge  * Return -1 if there is no way the proposed guest space can be
385806d1021SMeador Inge  * valid regardless of the base.
386806d1021SMeador Inge  * The guest code may leave a page mapped and populate it if the
387806d1021SMeador Inge  * address is suitable.
388806d1021SMeador Inge  */
389c3637eafSLuke Shumaker static int init_guest_commpage(unsigned long guest_base,
390806d1021SMeador Inge                                unsigned long guest_size)
39197cc7560SDr. David Alan Gilbert {
39297cc7560SDr. David Alan Gilbert     unsigned long real_start, test_page_addr;
39397cc7560SDr. David Alan Gilbert 
39497cc7560SDr. David Alan Gilbert     /* We need to check that we can force a fault on access to the
39597cc7560SDr. David Alan Gilbert      * commpage at 0xffff0fxx
39697cc7560SDr. David Alan Gilbert      */
39797cc7560SDr. David Alan Gilbert     test_page_addr = guest_base + (0xffff0f00 & qemu_host_page_mask);
398806d1021SMeador Inge 
399806d1021SMeador Inge     /* If the commpage lies within the already allocated guest space,
400806d1021SMeador Inge      * then there is no way we can allocate it.
401955e304fSLuke Shumaker      *
402955e304fSLuke Shumaker      * You may be thinking that that this check is redundant because
403955e304fSLuke Shumaker      * we already validated the guest size against MAX_RESERVED_VA;
404955e304fSLuke Shumaker      * but if qemu_host_page_mask is unusually large, then
405955e304fSLuke Shumaker      * test_page_addr may be lower.
406806d1021SMeador Inge      */
407806d1021SMeador Inge     if (test_page_addr >= guest_base
408e568f9dfSPeter Maydell         && test_page_addr < (guest_base + guest_size)) {
409806d1021SMeador Inge         return -1;
410806d1021SMeador Inge     }
411806d1021SMeador Inge 
41297cc7560SDr. David Alan Gilbert     /* Note it needs to be writeable to let us initialise it */
41397cc7560SDr. David Alan Gilbert     real_start = (unsigned long)
41497cc7560SDr. David Alan Gilbert                  mmap((void *)test_page_addr, qemu_host_page_size,
41597cc7560SDr. David Alan Gilbert                      PROT_READ | PROT_WRITE,
41697cc7560SDr. David Alan Gilbert                      MAP_ANONYMOUS | MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
41797cc7560SDr. David Alan Gilbert 
41897cc7560SDr. David Alan Gilbert     /* If we can't map it then try another address */
41997cc7560SDr. David Alan Gilbert     if (real_start == -1ul) {
42097cc7560SDr. David Alan Gilbert         return 0;
42197cc7560SDr. David Alan Gilbert     }
42297cc7560SDr. David Alan Gilbert 
42397cc7560SDr. David Alan Gilbert     if (real_start != test_page_addr) {
42497cc7560SDr. David Alan Gilbert         /* OS didn't put the page where we asked - unmap and reject */
42597cc7560SDr. David Alan Gilbert         munmap((void *)real_start, qemu_host_page_size);
42697cc7560SDr. David Alan Gilbert         return 0;
42797cc7560SDr. David Alan Gilbert     }
42897cc7560SDr. David Alan Gilbert 
42997cc7560SDr. David Alan Gilbert     /* Leave the page mapped
43097cc7560SDr. David Alan Gilbert      * Populate it (mmap should have left it all 0'd)
43197cc7560SDr. David Alan Gilbert      */
43297cc7560SDr. David Alan Gilbert 
43397cc7560SDr. David Alan Gilbert     /* Kernel helper versions */
43497cc7560SDr. David Alan Gilbert     __put_user(5, (uint32_t *)g2h(0xffff0ffcul));
43597cc7560SDr. David Alan Gilbert 
43697cc7560SDr. David Alan Gilbert     /* Now it's populated make it RO */
43797cc7560SDr. David Alan Gilbert     if (mprotect((void *)test_page_addr, qemu_host_page_size, PROT_READ)) {
43897cc7560SDr. David Alan Gilbert         perror("Protecting guest commpage");
43997cc7560SDr. David Alan Gilbert         exit(-1);
44097cc7560SDr. David Alan Gilbert     }
44197cc7560SDr. David Alan Gilbert 
44297cc7560SDr. David Alan Gilbert     return 1; /* All good */
44397cc7560SDr. David Alan Gilbert }
444adf050b1SBenoit Canet 
445adf050b1SBenoit Canet #define ELF_HWCAP get_elf_hwcap()
446ad6919dcSPeter Maydell #define ELF_HWCAP2 get_elf_hwcap2()
447adf050b1SBenoit Canet 
448adf050b1SBenoit Canet static uint32_t get_elf_hwcap(void)
449adf050b1SBenoit Canet {
450a2247f8eSAndreas Färber     ARMCPU *cpu = ARM_CPU(thread_cpu);
451adf050b1SBenoit Canet     uint32_t hwcaps = 0;
452adf050b1SBenoit Canet 
453adf050b1SBenoit Canet     hwcaps |= ARM_HWCAP_ARM_SWP;
454adf050b1SBenoit Canet     hwcaps |= ARM_HWCAP_ARM_HALF;
455adf050b1SBenoit Canet     hwcaps |= ARM_HWCAP_ARM_THUMB;
456adf050b1SBenoit Canet     hwcaps |= ARM_HWCAP_ARM_FAST_MULT;
457adf050b1SBenoit Canet 
458adf050b1SBenoit Canet     /* probe for the extra features */
459adf050b1SBenoit Canet #define GET_FEATURE(feat, hwcap) \
460a2247f8eSAndreas Färber     do { if (arm_feature(&cpu->env, feat)) { hwcaps |= hwcap; } } while (0)
461962fcbf2SRichard Henderson 
462962fcbf2SRichard Henderson #define GET_FEATURE_ID(feat, hwcap) \
463962fcbf2SRichard Henderson     do { if (cpu_isar_feature(feat, cpu)) { hwcaps |= hwcap; } } while (0)
464962fcbf2SRichard Henderson 
46524682654SPeter Maydell     /* EDSP is in v5TE and above, but all our v5 CPUs are v5TE */
46624682654SPeter Maydell     GET_FEATURE(ARM_FEATURE_V5, ARM_HWCAP_ARM_EDSP);
467adf050b1SBenoit Canet     GET_FEATURE(ARM_FEATURE_VFP, ARM_HWCAP_ARM_VFP);
468adf050b1SBenoit Canet     GET_FEATURE(ARM_FEATURE_IWMMXT, ARM_HWCAP_ARM_IWMMXT);
469adf050b1SBenoit Canet     GET_FEATURE(ARM_FEATURE_THUMB2EE, ARM_HWCAP_ARM_THUMBEE);
470adf050b1SBenoit Canet     GET_FEATURE(ARM_FEATURE_NEON, ARM_HWCAP_ARM_NEON);
471adf050b1SBenoit Canet     GET_FEATURE(ARM_FEATURE_VFP3, ARM_HWCAP_ARM_VFPv3);
47224682654SPeter Maydell     GET_FEATURE(ARM_FEATURE_V6K, ARM_HWCAP_ARM_TLS);
47324682654SPeter Maydell     GET_FEATURE(ARM_FEATURE_VFP4, ARM_HWCAP_ARM_VFPv4);
4747e0cf8b4SRichard Henderson     GET_FEATURE_ID(arm_div, ARM_HWCAP_ARM_IDIVA);
4757e0cf8b4SRichard Henderson     GET_FEATURE_ID(thumb_div, ARM_HWCAP_ARM_IDIVT);
47624682654SPeter Maydell     /* All QEMU's VFPv3 CPUs have 32 registers, see VFP_DREG in translate.c.
47724682654SPeter Maydell      * Note that the ARM_HWCAP_ARM_VFPv3D16 bit is always the inverse of
47824682654SPeter Maydell      * ARM_HWCAP_ARM_VFPD32 (and so always clear for QEMU); it is unrelated
47924682654SPeter Maydell      * to our VFP_FP16 feature bit.
48024682654SPeter Maydell      */
48124682654SPeter Maydell     GET_FEATURE(ARM_FEATURE_VFP3, ARM_HWCAP_ARM_VFPD32);
48224682654SPeter Maydell     GET_FEATURE(ARM_FEATURE_LPAE, ARM_HWCAP_ARM_LPAE);
483adf050b1SBenoit Canet 
484adf050b1SBenoit Canet     return hwcaps;
485adf050b1SBenoit Canet }
486afce2927Sbellard 
487ad6919dcSPeter Maydell static uint32_t get_elf_hwcap2(void)
488ad6919dcSPeter Maydell {
489ad6919dcSPeter Maydell     ARMCPU *cpu = ARM_CPU(thread_cpu);
490ad6919dcSPeter Maydell     uint32_t hwcaps = 0;
491ad6919dcSPeter Maydell 
492962fcbf2SRichard Henderson     GET_FEATURE_ID(aa32_aes, ARM_HWCAP2_ARM_AES);
493962fcbf2SRichard Henderson     GET_FEATURE_ID(aa32_pmull, ARM_HWCAP2_ARM_PMULL);
494962fcbf2SRichard Henderson     GET_FEATURE_ID(aa32_sha1, ARM_HWCAP2_ARM_SHA1);
495962fcbf2SRichard Henderson     GET_FEATURE_ID(aa32_sha2, ARM_HWCAP2_ARM_SHA2);
496962fcbf2SRichard Henderson     GET_FEATURE_ID(aa32_crc32, ARM_HWCAP2_ARM_CRC32);
497ad6919dcSPeter Maydell     return hwcaps;
498ad6919dcSPeter Maydell }
499ad6919dcSPeter Maydell 
500ad6919dcSPeter Maydell #undef GET_FEATURE
501962fcbf2SRichard Henderson #undef GET_FEATURE_ID
502ad6919dcSPeter Maydell 
50324e76ff0SPeter Maydell #else
50424e76ff0SPeter Maydell /* 64 bit ARM definitions */
50524e76ff0SPeter Maydell #define ELF_START_MMAP 0x80000000
50624e76ff0SPeter Maydell 
507b597c3f7SPeter Crosthwaite #define ELF_ARCH        EM_AARCH64
50824e76ff0SPeter Maydell #define ELF_CLASS       ELFCLASS64
50924e76ff0SPeter Maydell #define ELF_PLATFORM    "aarch64"
51024e76ff0SPeter Maydell 
51124e76ff0SPeter Maydell static inline void init_thread(struct target_pt_regs *regs,
51224e76ff0SPeter Maydell                                struct image_info *infop)
51324e76ff0SPeter Maydell {
51424e76ff0SPeter Maydell     abi_long stack = infop->start_stack;
51524e76ff0SPeter Maydell     memset(regs, 0, sizeof(*regs));
51624e76ff0SPeter Maydell 
51724e76ff0SPeter Maydell     regs->pc = infop->entry & ~0x3ULL;
51824e76ff0SPeter Maydell     regs->sp = stack;
51924e76ff0SPeter Maydell }
52024e76ff0SPeter Maydell 
52124e76ff0SPeter Maydell #define ELF_NREG    34
52224e76ff0SPeter Maydell typedef target_elf_greg_t  target_elf_gregset_t[ELF_NREG];
52324e76ff0SPeter Maydell 
52424e76ff0SPeter Maydell static void elf_core_copy_regs(target_elf_gregset_t *regs,
52524e76ff0SPeter Maydell                                const CPUARMState *env)
52624e76ff0SPeter Maydell {
52724e76ff0SPeter Maydell     int i;
52824e76ff0SPeter Maydell 
52924e76ff0SPeter Maydell     for (i = 0; i < 32; i++) {
53024e76ff0SPeter Maydell         (*regs)[i] = tswapreg(env->xregs[i]);
53124e76ff0SPeter Maydell     }
53224e76ff0SPeter Maydell     (*regs)[32] = tswapreg(env->pc);
53324e76ff0SPeter Maydell     (*regs)[33] = tswapreg(pstate_read((CPUARMState *)env));
53424e76ff0SPeter Maydell }
53524e76ff0SPeter Maydell 
53624e76ff0SPeter Maydell #define USE_ELF_CORE_DUMP
53724e76ff0SPeter Maydell #define ELF_EXEC_PAGESIZE       4096
53824e76ff0SPeter Maydell 
53924e76ff0SPeter Maydell enum {
54024e76ff0SPeter Maydell     ARM_HWCAP_A64_FP            = 1 << 0,
54124e76ff0SPeter Maydell     ARM_HWCAP_A64_ASIMD         = 1 << 1,
54224e76ff0SPeter Maydell     ARM_HWCAP_A64_EVTSTRM       = 1 << 2,
54324e76ff0SPeter Maydell     ARM_HWCAP_A64_AES           = 1 << 3,
54424e76ff0SPeter Maydell     ARM_HWCAP_A64_PMULL         = 1 << 4,
54524e76ff0SPeter Maydell     ARM_HWCAP_A64_SHA1          = 1 << 5,
54624e76ff0SPeter Maydell     ARM_HWCAP_A64_SHA2          = 1 << 6,
54724e76ff0SPeter Maydell     ARM_HWCAP_A64_CRC32         = 1 << 7,
548955f56d4SArd Biesheuvel     ARM_HWCAP_A64_ATOMICS       = 1 << 8,
549955f56d4SArd Biesheuvel     ARM_HWCAP_A64_FPHP          = 1 << 9,
550955f56d4SArd Biesheuvel     ARM_HWCAP_A64_ASIMDHP       = 1 << 10,
551955f56d4SArd Biesheuvel     ARM_HWCAP_A64_CPUID         = 1 << 11,
552955f56d4SArd Biesheuvel     ARM_HWCAP_A64_ASIMDRDM      = 1 << 12,
553955f56d4SArd Biesheuvel     ARM_HWCAP_A64_JSCVT         = 1 << 13,
554955f56d4SArd Biesheuvel     ARM_HWCAP_A64_FCMA          = 1 << 14,
555955f56d4SArd Biesheuvel     ARM_HWCAP_A64_LRCPC         = 1 << 15,
556955f56d4SArd Biesheuvel     ARM_HWCAP_A64_DCPOP         = 1 << 16,
557955f56d4SArd Biesheuvel     ARM_HWCAP_A64_SHA3          = 1 << 17,
558955f56d4SArd Biesheuvel     ARM_HWCAP_A64_SM3           = 1 << 18,
559955f56d4SArd Biesheuvel     ARM_HWCAP_A64_SM4           = 1 << 19,
560955f56d4SArd Biesheuvel     ARM_HWCAP_A64_ASIMDDP       = 1 << 20,
561955f56d4SArd Biesheuvel     ARM_HWCAP_A64_SHA512        = 1 << 21,
562955f56d4SArd Biesheuvel     ARM_HWCAP_A64_SVE           = 1 << 22,
5630083a1faSRichard Henderson     ARM_HWCAP_A64_ASIMDFHM      = 1 << 23,
5640083a1faSRichard Henderson     ARM_HWCAP_A64_DIT           = 1 << 24,
5650083a1faSRichard Henderson     ARM_HWCAP_A64_USCAT         = 1 << 25,
5660083a1faSRichard Henderson     ARM_HWCAP_A64_ILRCPC        = 1 << 26,
5670083a1faSRichard Henderson     ARM_HWCAP_A64_FLAGM         = 1 << 27,
5680083a1faSRichard Henderson     ARM_HWCAP_A64_SSBS          = 1 << 28,
5690083a1faSRichard Henderson     ARM_HWCAP_A64_SB            = 1 << 29,
5700083a1faSRichard Henderson     ARM_HWCAP_A64_PACA          = 1 << 30,
5710083a1faSRichard Henderson     ARM_HWCAP_A64_PACG          = 1UL << 31,
57224e76ff0SPeter Maydell };
57324e76ff0SPeter Maydell 
57424e76ff0SPeter Maydell #define ELF_HWCAP get_elf_hwcap()
57524e76ff0SPeter Maydell 
57624e76ff0SPeter Maydell static uint32_t get_elf_hwcap(void)
57724e76ff0SPeter Maydell {
57824e76ff0SPeter Maydell     ARMCPU *cpu = ARM_CPU(thread_cpu);
57924e76ff0SPeter Maydell     uint32_t hwcaps = 0;
58024e76ff0SPeter Maydell 
58124e76ff0SPeter Maydell     hwcaps |= ARM_HWCAP_A64_FP;
58224e76ff0SPeter Maydell     hwcaps |= ARM_HWCAP_A64_ASIMD;
58337020ff1SAlex Bennée     hwcaps |= ARM_HWCAP_A64_CPUID;
58424e76ff0SPeter Maydell 
58524e76ff0SPeter Maydell     /* probe for the extra features */
586962fcbf2SRichard Henderson #define GET_FEATURE_ID(feat, hwcap) \
587962fcbf2SRichard Henderson     do { if (cpu_isar_feature(feat, cpu)) { hwcaps |= hwcap; } } while (0)
588962fcbf2SRichard Henderson 
589962fcbf2SRichard Henderson     GET_FEATURE_ID(aa64_aes, ARM_HWCAP_A64_AES);
590962fcbf2SRichard Henderson     GET_FEATURE_ID(aa64_pmull, ARM_HWCAP_A64_PMULL);
591962fcbf2SRichard Henderson     GET_FEATURE_ID(aa64_sha1, ARM_HWCAP_A64_SHA1);
592962fcbf2SRichard Henderson     GET_FEATURE_ID(aa64_sha256, ARM_HWCAP_A64_SHA2);
593962fcbf2SRichard Henderson     GET_FEATURE_ID(aa64_sha512, ARM_HWCAP_A64_SHA512);
594962fcbf2SRichard Henderson     GET_FEATURE_ID(aa64_crc32, ARM_HWCAP_A64_CRC32);
595962fcbf2SRichard Henderson     GET_FEATURE_ID(aa64_sha3, ARM_HWCAP_A64_SHA3);
596962fcbf2SRichard Henderson     GET_FEATURE_ID(aa64_sm3, ARM_HWCAP_A64_SM3);
597962fcbf2SRichard Henderson     GET_FEATURE_ID(aa64_sm4, ARM_HWCAP_A64_SM4);
5985763190fSRichard Henderson     GET_FEATURE_ID(aa64_fp16, ARM_HWCAP_A64_FPHP | ARM_HWCAP_A64_ASIMDHP);
599962fcbf2SRichard Henderson     GET_FEATURE_ID(aa64_atomics, ARM_HWCAP_A64_ATOMICS);
600962fcbf2SRichard Henderson     GET_FEATURE_ID(aa64_rdm, ARM_HWCAP_A64_ASIMDRDM);
601962fcbf2SRichard Henderson     GET_FEATURE_ID(aa64_dp, ARM_HWCAP_A64_ASIMDDP);
602962fcbf2SRichard Henderson     GET_FEATURE_ID(aa64_fcma, ARM_HWCAP_A64_FCMA);
603cd208a1cSRichard Henderson     GET_FEATURE_ID(aa64_sve, ARM_HWCAP_A64_SVE);
60429d26ab2SRichard Henderson     GET_FEATURE_ID(aa64_pauth, ARM_HWCAP_A64_PACA | ARM_HWCAP_A64_PACG);
6051c9af3a9SRichard Henderson     GET_FEATURE_ID(aa64_fhm, ARM_HWCAP_A64_ASIMDFHM);
6061c9af3a9SRichard Henderson     GET_FEATURE_ID(aa64_jscvt, ARM_HWCAP_A64_JSCVT);
6079888bd1eSRichard Henderson     GET_FEATURE_ID(aa64_sb, ARM_HWCAP_A64_SB);
608*b89d9c98SRichard Henderson     GET_FEATURE_ID(aa64_condm_4, ARM_HWCAP_A64_FLAGM);
609962fcbf2SRichard Henderson 
610962fcbf2SRichard Henderson #undef GET_FEATURE_ID
61124e76ff0SPeter Maydell 
61224e76ff0SPeter Maydell     return hwcaps;
61324e76ff0SPeter Maydell }
61424e76ff0SPeter Maydell 
61524e76ff0SPeter Maydell #endif /* not TARGET_AARCH64 */
61624e76ff0SPeter Maydell #endif /* TARGET_ARM */
61730ac07d4Sbellard 
618853d6f7aSbellard #ifdef TARGET_SPARC
619a315a145Sbellard #ifdef TARGET_SPARC64
620853d6f7aSbellard 
621853d6f7aSbellard #define ELF_START_MMAP 0x80000000
622cf973e46SArtyom Tarasenko #define ELF_HWCAP  (HWCAP_SPARC_FLUSH | HWCAP_SPARC_STBAR | HWCAP_SPARC_SWAP \
623cf973e46SArtyom Tarasenko                     | HWCAP_SPARC_MULDIV | HWCAP_SPARC_V9)
624992f48a0Sblueswir1 #ifndef TARGET_ABI32
625cb33da57Sblueswir1 #define elf_check_arch(x) ( (x) == EM_SPARCV9 || (x) == EM_SPARC32PLUS )
626992f48a0Sblueswir1 #else
627992f48a0Sblueswir1 #define elf_check_arch(x) ( (x) == EM_SPARC32PLUS || (x) == EM_SPARC )
628992f48a0Sblueswir1 #endif
629853d6f7aSbellard 
630a315a145Sbellard #define ELF_CLASS   ELFCLASS64
6315ef54116Sbellard #define ELF_ARCH    EM_SPARCV9
6325ef54116Sbellard 
6335ef54116Sbellard #define STACK_BIAS              2047
634a315a145Sbellard 
635d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
636d97ef72eSRichard Henderson                                struct image_info *infop)
637a315a145Sbellard {
638992f48a0Sblueswir1 #ifndef TARGET_ABI32
639a315a145Sbellard     regs->tstate = 0;
640992f48a0Sblueswir1 #endif
641a315a145Sbellard     regs->pc = infop->entry;
642a315a145Sbellard     regs->npc = regs->pc + 4;
643a315a145Sbellard     regs->y = 0;
644992f48a0Sblueswir1 #ifdef TARGET_ABI32
645992f48a0Sblueswir1     regs->u_regs[14] = infop->start_stack - 16 * 4;
646992f48a0Sblueswir1 #else
647cb33da57Sblueswir1     if (personality(infop->personality) == PER_LINUX32)
648cb33da57Sblueswir1         regs->u_regs[14] = infop->start_stack - 16 * 4;
649cb33da57Sblueswir1     else
6505ef54116Sbellard         regs->u_regs[14] = infop->start_stack - 16 * 8 - STACK_BIAS;
651992f48a0Sblueswir1 #endif
652a315a145Sbellard }
653a315a145Sbellard 
654a315a145Sbellard #else
655a315a145Sbellard #define ELF_START_MMAP 0x80000000
656cf973e46SArtyom Tarasenko #define ELF_HWCAP  (HWCAP_SPARC_FLUSH | HWCAP_SPARC_STBAR | HWCAP_SPARC_SWAP \
657cf973e46SArtyom Tarasenko                     | HWCAP_SPARC_MULDIV)
658a315a145Sbellard 
659853d6f7aSbellard #define ELF_CLASS   ELFCLASS32
660853d6f7aSbellard #define ELF_ARCH    EM_SPARC
661853d6f7aSbellard 
662d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
663d97ef72eSRichard Henderson                                struct image_info *infop)
664853d6f7aSbellard {
665f5155289Sbellard     regs->psr = 0;
666f5155289Sbellard     regs->pc = infop->entry;
667f5155289Sbellard     regs->npc = regs->pc + 4;
668f5155289Sbellard     regs->y = 0;
669f5155289Sbellard     regs->u_regs[14] = infop->start_stack - 16 * 4;
670853d6f7aSbellard }
671853d6f7aSbellard 
672853d6f7aSbellard #endif
673a315a145Sbellard #endif
674853d6f7aSbellard 
67567867308Sbellard #ifdef TARGET_PPC
67667867308Sbellard 
6774ecd4d16SPeter Crosthwaite #define ELF_MACHINE    PPC_ELF_MACHINE
67867867308Sbellard #define ELF_START_MMAP 0x80000000
67967867308Sbellard 
680e85e7c6eSj_mayer #if defined(TARGET_PPC64) && !defined(TARGET_ABI32)
68184409ddbSj_mayer 
68284409ddbSj_mayer #define elf_check_arch(x) ( (x) == EM_PPC64 )
68384409ddbSj_mayer 
68484409ddbSj_mayer #define ELF_CLASS       ELFCLASS64
68584409ddbSj_mayer 
68684409ddbSj_mayer #else
68784409ddbSj_mayer 
68867867308Sbellard #define ELF_CLASS       ELFCLASS32
68984409ddbSj_mayer 
69084409ddbSj_mayer #endif
69184409ddbSj_mayer 
69267867308Sbellard #define ELF_ARCH        EM_PPC
69367867308Sbellard 
694df84e4f3SNathan Froyd /* Feature masks for the Aux Vector Hardware Capabilities (AT_HWCAP).
695df84e4f3SNathan Froyd    See arch/powerpc/include/asm/cputable.h.  */
696df84e4f3SNathan Froyd enum {
6973efa9a67Smalc     QEMU_PPC_FEATURE_32 = 0x80000000,
6983efa9a67Smalc     QEMU_PPC_FEATURE_64 = 0x40000000,
6993efa9a67Smalc     QEMU_PPC_FEATURE_601_INSTR = 0x20000000,
7003efa9a67Smalc     QEMU_PPC_FEATURE_HAS_ALTIVEC = 0x10000000,
7013efa9a67Smalc     QEMU_PPC_FEATURE_HAS_FPU = 0x08000000,
7023efa9a67Smalc     QEMU_PPC_FEATURE_HAS_MMU = 0x04000000,
7033efa9a67Smalc     QEMU_PPC_FEATURE_HAS_4xxMAC = 0x02000000,
7043efa9a67Smalc     QEMU_PPC_FEATURE_UNIFIED_CACHE = 0x01000000,
7053efa9a67Smalc     QEMU_PPC_FEATURE_HAS_SPE = 0x00800000,
7063efa9a67Smalc     QEMU_PPC_FEATURE_HAS_EFP_SINGLE = 0x00400000,
7073efa9a67Smalc     QEMU_PPC_FEATURE_HAS_EFP_DOUBLE = 0x00200000,
7083efa9a67Smalc     QEMU_PPC_FEATURE_NO_TB = 0x00100000,
7093efa9a67Smalc     QEMU_PPC_FEATURE_POWER4 = 0x00080000,
7103efa9a67Smalc     QEMU_PPC_FEATURE_POWER5 = 0x00040000,
7113efa9a67Smalc     QEMU_PPC_FEATURE_POWER5_PLUS = 0x00020000,
7123efa9a67Smalc     QEMU_PPC_FEATURE_CELL = 0x00010000,
7133efa9a67Smalc     QEMU_PPC_FEATURE_BOOKE = 0x00008000,
7143efa9a67Smalc     QEMU_PPC_FEATURE_SMT = 0x00004000,
7153efa9a67Smalc     QEMU_PPC_FEATURE_ICACHE_SNOOP = 0x00002000,
7163efa9a67Smalc     QEMU_PPC_FEATURE_ARCH_2_05 = 0x00001000,
7173efa9a67Smalc     QEMU_PPC_FEATURE_PA6T = 0x00000800,
7183efa9a67Smalc     QEMU_PPC_FEATURE_HAS_DFP = 0x00000400,
7193efa9a67Smalc     QEMU_PPC_FEATURE_POWER6_EXT = 0x00000200,
7203efa9a67Smalc     QEMU_PPC_FEATURE_ARCH_2_06 = 0x00000100,
7213efa9a67Smalc     QEMU_PPC_FEATURE_HAS_VSX = 0x00000080,
7223efa9a67Smalc     QEMU_PPC_FEATURE_PSERIES_PERFMON_COMPAT = 0x00000040,
723df84e4f3SNathan Froyd 
7243efa9a67Smalc     QEMU_PPC_FEATURE_TRUE_LE = 0x00000002,
7253efa9a67Smalc     QEMU_PPC_FEATURE_PPC_LE = 0x00000001,
726a60438ddSTom Musta 
727a60438ddSTom Musta     /* Feature definitions in AT_HWCAP2.  */
728a60438ddSTom Musta     QEMU_PPC_FEATURE2_ARCH_2_07 = 0x80000000, /* ISA 2.07 */
729a60438ddSTom Musta     QEMU_PPC_FEATURE2_HAS_HTM = 0x40000000, /* Hardware Transactional Memory */
730a60438ddSTom Musta     QEMU_PPC_FEATURE2_HAS_DSCR = 0x20000000, /* Data Stream Control Register */
731a60438ddSTom Musta     QEMU_PPC_FEATURE2_HAS_EBB = 0x10000000, /* Event Base Branching */
732a60438ddSTom Musta     QEMU_PPC_FEATURE2_HAS_ISEL = 0x08000000, /* Integer Select */
733a60438ddSTom Musta     QEMU_PPC_FEATURE2_HAS_TAR = 0x04000000, /* Target Address Register */
734be0c46d4SSandipan Das     QEMU_PPC_FEATURE2_ARCH_3_00 = 0x00800000, /* ISA 3.00 */
735df84e4f3SNathan Froyd };
736df84e4f3SNathan Froyd 
737df84e4f3SNathan Froyd #define ELF_HWCAP get_elf_hwcap()
738df84e4f3SNathan Froyd 
739df84e4f3SNathan Froyd static uint32_t get_elf_hwcap(void)
740df84e4f3SNathan Froyd {
741a2247f8eSAndreas Färber     PowerPCCPU *cpu = POWERPC_CPU(thread_cpu);
742df84e4f3SNathan Froyd     uint32_t features = 0;
743df84e4f3SNathan Froyd 
744df84e4f3SNathan Froyd     /* We don't have to be terribly complete here; the high points are
745df84e4f3SNathan Froyd        Altivec/FP/SPE support.  Anything else is just a bonus.  */
746df84e4f3SNathan Froyd #define GET_FEATURE(flag, feature)                                      \
747a2247f8eSAndreas Färber     do { if (cpu->env.insns_flags & flag) { features |= feature; } } while (0)
74858eb5308SMichael Walle #define GET_FEATURE2(flags, feature) \
74958eb5308SMichael Walle     do { \
75058eb5308SMichael Walle         if ((cpu->env.insns_flags2 & flags) == flags) { \
75158eb5308SMichael Walle             features |= feature; \
75258eb5308SMichael Walle         } \
75358eb5308SMichael Walle     } while (0)
7543efa9a67Smalc     GET_FEATURE(PPC_64B, QEMU_PPC_FEATURE_64);
7553efa9a67Smalc     GET_FEATURE(PPC_FLOAT, QEMU_PPC_FEATURE_HAS_FPU);
7563efa9a67Smalc     GET_FEATURE(PPC_ALTIVEC, QEMU_PPC_FEATURE_HAS_ALTIVEC);
7573efa9a67Smalc     GET_FEATURE(PPC_SPE, QEMU_PPC_FEATURE_HAS_SPE);
7583efa9a67Smalc     GET_FEATURE(PPC_SPE_SINGLE, QEMU_PPC_FEATURE_HAS_EFP_SINGLE);
7593efa9a67Smalc     GET_FEATURE(PPC_SPE_DOUBLE, QEMU_PPC_FEATURE_HAS_EFP_DOUBLE);
7603efa9a67Smalc     GET_FEATURE(PPC_BOOKE, QEMU_PPC_FEATURE_BOOKE);
7613efa9a67Smalc     GET_FEATURE(PPC_405_MAC, QEMU_PPC_FEATURE_HAS_4xxMAC);
7620e019746STom Musta     GET_FEATURE2(PPC2_DFP, QEMU_PPC_FEATURE_HAS_DFP);
7630e019746STom Musta     GET_FEATURE2(PPC2_VSX, QEMU_PPC_FEATURE_HAS_VSX);
7640e019746STom Musta     GET_FEATURE2((PPC2_PERM_ISA206 | PPC2_DIVE_ISA206 | PPC2_ATOMIC_ISA206 |
7650e019746STom Musta                   PPC2_FP_CVT_ISA206 | PPC2_FP_TST_ISA206),
7660e019746STom Musta                   QEMU_PPC_FEATURE_ARCH_2_06);
767df84e4f3SNathan Froyd #undef GET_FEATURE
7680e019746STom Musta #undef GET_FEATURE2
769df84e4f3SNathan Froyd 
770df84e4f3SNathan Froyd     return features;
771df84e4f3SNathan Froyd }
772df84e4f3SNathan Froyd 
773a60438ddSTom Musta #define ELF_HWCAP2 get_elf_hwcap2()
774a60438ddSTom Musta 
775a60438ddSTom Musta static uint32_t get_elf_hwcap2(void)
776a60438ddSTom Musta {
777a60438ddSTom Musta     PowerPCCPU *cpu = POWERPC_CPU(thread_cpu);
778a60438ddSTom Musta     uint32_t features = 0;
779a60438ddSTom Musta 
780a60438ddSTom Musta #define GET_FEATURE(flag, feature)                                      \
781a60438ddSTom Musta     do { if (cpu->env.insns_flags & flag) { features |= feature; } } while (0)
782a60438ddSTom Musta #define GET_FEATURE2(flag, feature)                                      \
783a60438ddSTom Musta     do { if (cpu->env.insns_flags2 & flag) { features |= feature; } } while (0)
784a60438ddSTom Musta 
785a60438ddSTom Musta     GET_FEATURE(PPC_ISEL, QEMU_PPC_FEATURE2_HAS_ISEL);
786a60438ddSTom Musta     GET_FEATURE2(PPC2_BCTAR_ISA207, QEMU_PPC_FEATURE2_HAS_TAR);
787a60438ddSTom Musta     GET_FEATURE2((PPC2_BCTAR_ISA207 | PPC2_LSQ_ISA207 | PPC2_ALTIVEC_207 |
788a60438ddSTom Musta                   PPC2_ISA207S), QEMU_PPC_FEATURE2_ARCH_2_07);
789be0c46d4SSandipan Das     GET_FEATURE2(PPC2_ISA300, QEMU_PPC_FEATURE2_ARCH_3_00);
790a60438ddSTom Musta 
791a60438ddSTom Musta #undef GET_FEATURE
792a60438ddSTom Musta #undef GET_FEATURE2
793a60438ddSTom Musta 
794a60438ddSTom Musta     return features;
795a60438ddSTom Musta }
796a60438ddSTom Musta 
797f5155289Sbellard /*
798f5155289Sbellard  * The requirements here are:
799f5155289Sbellard  * - keep the final alignment of sp (sp & 0xf)
800f5155289Sbellard  * - make sure the 32-bit value at the first 16 byte aligned position of
801f5155289Sbellard  *   AUXV is greater than 16 for glibc compatibility.
802f5155289Sbellard  *   AT_IGNOREPPC is used for that.
803f5155289Sbellard  * - for compatibility with glibc ARCH_DLINFO must always be defined on PPC,
804f5155289Sbellard  *   even if DLINFO_ARCH_ITEMS goes to zero or is undefined.
805f5155289Sbellard  */
8060bccf03dSbellard #define DLINFO_ARCH_ITEMS       5
807f5155289Sbellard #define ARCH_DLINFO                                     \
808f5155289Sbellard     do {                                                \
809623e250aSTom Musta         PowerPCCPU *cpu = POWERPC_CPU(thread_cpu);              \
810f5155289Sbellard         /*                                              \
81182991bedSPeter Maydell          * Handle glibc compatibility: these magic entries must \
81282991bedSPeter Maydell          * be at the lowest addresses in the final auxv.        \
813f5155289Sbellard          */                                             \
8140bccf03dSbellard         NEW_AUX_ENT(AT_IGNOREPPC, AT_IGNOREPPC);        \
8150bccf03dSbellard         NEW_AUX_ENT(AT_IGNOREPPC, AT_IGNOREPPC);        \
81682991bedSPeter Maydell         NEW_AUX_ENT(AT_DCACHEBSIZE, cpu->env.dcache_line_size); \
81782991bedSPeter Maydell         NEW_AUX_ENT(AT_ICACHEBSIZE, cpu->env.icache_line_size); \
81882991bedSPeter Maydell         NEW_AUX_ENT(AT_UCACHEBSIZE, 0);                 \
819f5155289Sbellard     } while (0)
820f5155289Sbellard 
82167867308Sbellard static inline void init_thread(struct target_pt_regs *_regs, struct image_info *infop)
82267867308Sbellard {
82367867308Sbellard     _regs->gpr[1] = infop->start_stack;
824e85e7c6eSj_mayer #if defined(TARGET_PPC64) && !defined(TARGET_ABI32)
825d90b94cdSDoug Kwan     if (get_ppc64_abi(infop) < 2) {
8262ccf97ecSPeter Maydell         uint64_t val;
8272ccf97ecSPeter Maydell         get_user_u64(val, infop->entry + 8);
8282ccf97ecSPeter Maydell         _regs->gpr[2] = val + infop->load_bias;
8292ccf97ecSPeter Maydell         get_user_u64(val, infop->entry);
8302ccf97ecSPeter Maydell         infop->entry = val + infop->load_bias;
831d90b94cdSDoug Kwan     } else {
832d90b94cdSDoug Kwan         _regs->gpr[12] = infop->entry;  /* r12 set to global entry address */
833d90b94cdSDoug Kwan     }
83484409ddbSj_mayer #endif
83567867308Sbellard     _regs->nip = infop->entry;
83667867308Sbellard }
83767867308Sbellard 
838e2f3e741SNathan Froyd /* See linux kernel: arch/powerpc/include/asm/elf.h.  */
839e2f3e741SNathan Froyd #define ELF_NREG 48
840e2f3e741SNathan Froyd typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
841e2f3e741SNathan Froyd 
84205390248SAndreas Färber static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUPPCState *env)
843e2f3e741SNathan Froyd {
844e2f3e741SNathan Froyd     int i;
845e2f3e741SNathan Froyd     target_ulong ccr = 0;
846e2f3e741SNathan Froyd 
847e2f3e741SNathan Froyd     for (i = 0; i < ARRAY_SIZE(env->gpr); i++) {
84886cd7b2dSPaolo Bonzini         (*regs)[i] = tswapreg(env->gpr[i]);
849e2f3e741SNathan Froyd     }
850e2f3e741SNathan Froyd 
85186cd7b2dSPaolo Bonzini     (*regs)[32] = tswapreg(env->nip);
85286cd7b2dSPaolo Bonzini     (*regs)[33] = tswapreg(env->msr);
85386cd7b2dSPaolo Bonzini     (*regs)[35] = tswapreg(env->ctr);
85486cd7b2dSPaolo Bonzini     (*regs)[36] = tswapreg(env->lr);
85586cd7b2dSPaolo Bonzini     (*regs)[37] = tswapreg(env->xer);
856e2f3e741SNathan Froyd 
857e2f3e741SNathan Froyd     for (i = 0; i < ARRAY_SIZE(env->crf); i++) {
858e2f3e741SNathan Froyd         ccr |= env->crf[i] << (32 - ((i + 1) * 4));
859e2f3e741SNathan Froyd     }
86086cd7b2dSPaolo Bonzini     (*regs)[38] = tswapreg(ccr);
861e2f3e741SNathan Froyd }
862e2f3e741SNathan Froyd 
863e2f3e741SNathan Froyd #define USE_ELF_CORE_DUMP
86467867308Sbellard #define ELF_EXEC_PAGESIZE       4096
86567867308Sbellard 
86667867308Sbellard #endif
86767867308Sbellard 
868048f6b4dSbellard #ifdef TARGET_MIPS
869048f6b4dSbellard 
870048f6b4dSbellard #define ELF_START_MMAP 0x80000000
871048f6b4dSbellard 
872388bb21aSths #ifdef TARGET_MIPS64
873388bb21aSths #define ELF_CLASS   ELFCLASS64
874388bb21aSths #else
875048f6b4dSbellard #define ELF_CLASS   ELFCLASS32
876388bb21aSths #endif
877048f6b4dSbellard #define ELF_ARCH    EM_MIPS
878048f6b4dSbellard 
879f72541f3SAleksandar Markovic #define elf_check_arch(x) ((x) == EM_MIPS || (x) == EM_NANOMIPS)
880f72541f3SAleksandar Markovic 
881d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
882d97ef72eSRichard Henderson                                struct image_info *infop)
883048f6b4dSbellard {
884623a930eSths     regs->cp0_status = 2 << CP0St_KSU;
885048f6b4dSbellard     regs->cp0_epc = infop->entry;
886048f6b4dSbellard     regs->regs[29] = infop->start_stack;
887048f6b4dSbellard }
888048f6b4dSbellard 
88951e52606SNathan Froyd /* See linux kernel: arch/mips/include/asm/elf.h.  */
89051e52606SNathan Froyd #define ELF_NREG 45
89151e52606SNathan Froyd typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
89251e52606SNathan Froyd 
89351e52606SNathan Froyd /* See linux kernel: arch/mips/include/asm/reg.h.  */
89451e52606SNathan Froyd enum {
89551e52606SNathan Froyd #ifdef TARGET_MIPS64
89651e52606SNathan Froyd     TARGET_EF_R0 = 0,
89751e52606SNathan Froyd #else
89851e52606SNathan Froyd     TARGET_EF_R0 = 6,
89951e52606SNathan Froyd #endif
90051e52606SNathan Froyd     TARGET_EF_R26 = TARGET_EF_R0 + 26,
90151e52606SNathan Froyd     TARGET_EF_R27 = TARGET_EF_R0 + 27,
90251e52606SNathan Froyd     TARGET_EF_LO = TARGET_EF_R0 + 32,
90351e52606SNathan Froyd     TARGET_EF_HI = TARGET_EF_R0 + 33,
90451e52606SNathan Froyd     TARGET_EF_CP0_EPC = TARGET_EF_R0 + 34,
90551e52606SNathan Froyd     TARGET_EF_CP0_BADVADDR = TARGET_EF_R0 + 35,
90651e52606SNathan Froyd     TARGET_EF_CP0_STATUS = TARGET_EF_R0 + 36,
90751e52606SNathan Froyd     TARGET_EF_CP0_CAUSE = TARGET_EF_R0 + 37
90851e52606SNathan Froyd };
90951e52606SNathan Froyd 
91051e52606SNathan Froyd /* 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 CPUMIPSState *env)
91251e52606SNathan Froyd {
91351e52606SNathan Froyd     int i;
91451e52606SNathan Froyd 
91551e52606SNathan Froyd     for (i = 0; i < TARGET_EF_R0; i++) {
91651e52606SNathan Froyd         (*regs)[i] = 0;
91751e52606SNathan Froyd     }
91851e52606SNathan Froyd     (*regs)[TARGET_EF_R0] = 0;
91951e52606SNathan Froyd 
92051e52606SNathan Froyd     for (i = 1; i < ARRAY_SIZE(env->active_tc.gpr); i++) {
921a29f998dSPaolo Bonzini         (*regs)[TARGET_EF_R0 + i] = tswapreg(env->active_tc.gpr[i]);
92251e52606SNathan Froyd     }
92351e52606SNathan Froyd 
92451e52606SNathan Froyd     (*regs)[TARGET_EF_R26] = 0;
92551e52606SNathan Froyd     (*regs)[TARGET_EF_R27] = 0;
926a29f998dSPaolo Bonzini     (*regs)[TARGET_EF_LO] = tswapreg(env->active_tc.LO[0]);
927a29f998dSPaolo Bonzini     (*regs)[TARGET_EF_HI] = tswapreg(env->active_tc.HI[0]);
928a29f998dSPaolo Bonzini     (*regs)[TARGET_EF_CP0_EPC] = tswapreg(env->active_tc.PC);
929a29f998dSPaolo Bonzini     (*regs)[TARGET_EF_CP0_BADVADDR] = tswapreg(env->CP0_BadVAddr);
930a29f998dSPaolo Bonzini     (*regs)[TARGET_EF_CP0_STATUS] = tswapreg(env->CP0_Status);
931a29f998dSPaolo Bonzini     (*regs)[TARGET_EF_CP0_CAUSE] = tswapreg(env->CP0_Cause);
93251e52606SNathan Froyd }
93351e52606SNathan Froyd 
93451e52606SNathan Froyd #define USE_ELF_CORE_DUMP
935388bb21aSths #define ELF_EXEC_PAGESIZE        4096
936388bb21aSths 
93746a1ee4fSJames Cowgill /* See arch/mips/include/uapi/asm/hwcap.h.  */
93846a1ee4fSJames Cowgill enum {
93946a1ee4fSJames Cowgill     HWCAP_MIPS_R6           = (1 << 0),
94046a1ee4fSJames Cowgill     HWCAP_MIPS_MSA          = (1 << 1),
94146a1ee4fSJames Cowgill };
94246a1ee4fSJames Cowgill 
94346a1ee4fSJames Cowgill #define ELF_HWCAP get_elf_hwcap()
94446a1ee4fSJames Cowgill 
94546a1ee4fSJames Cowgill static uint32_t get_elf_hwcap(void)
94646a1ee4fSJames Cowgill {
94746a1ee4fSJames Cowgill     MIPSCPU *cpu = MIPS_CPU(thread_cpu);
94846a1ee4fSJames Cowgill     uint32_t hwcaps = 0;
94946a1ee4fSJames Cowgill 
95046a1ee4fSJames Cowgill #define GET_FEATURE(flag, hwcap) \
95146a1ee4fSJames Cowgill     do { if (cpu->env.insn_flags & (flag)) { hwcaps |= hwcap; } } while (0)
95246a1ee4fSJames Cowgill 
95346a1ee4fSJames Cowgill     GET_FEATURE(ISA_MIPS32R6 | ISA_MIPS64R6, HWCAP_MIPS_R6);
95446a1ee4fSJames Cowgill     GET_FEATURE(ASE_MSA, HWCAP_MIPS_MSA);
95546a1ee4fSJames Cowgill 
95646a1ee4fSJames Cowgill #undef GET_FEATURE
95746a1ee4fSJames Cowgill 
95846a1ee4fSJames Cowgill     return hwcaps;
95946a1ee4fSJames Cowgill }
96046a1ee4fSJames Cowgill 
961048f6b4dSbellard #endif /* TARGET_MIPS */
962048f6b4dSbellard 
963b779e29eSEdgar E. Iglesias #ifdef TARGET_MICROBLAZE
964b779e29eSEdgar E. Iglesias 
965b779e29eSEdgar E. Iglesias #define ELF_START_MMAP 0x80000000
966b779e29eSEdgar E. Iglesias 
9670d5d4699SEdgar E. Iglesias #define elf_check_arch(x) ( (x) == EM_MICROBLAZE || (x) == EM_MICROBLAZE_OLD)
968b779e29eSEdgar E. Iglesias 
969b779e29eSEdgar E. Iglesias #define ELF_CLASS   ELFCLASS32
9700d5d4699SEdgar E. Iglesias #define ELF_ARCH    EM_MICROBLAZE
971b779e29eSEdgar E. Iglesias 
972d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
973d97ef72eSRichard Henderson                                struct image_info *infop)
974b779e29eSEdgar E. Iglesias {
975b779e29eSEdgar E. Iglesias     regs->pc = infop->entry;
976b779e29eSEdgar E. Iglesias     regs->r1 = infop->start_stack;
977b779e29eSEdgar E. Iglesias 
978b779e29eSEdgar E. Iglesias }
979b779e29eSEdgar E. Iglesias 
980b779e29eSEdgar E. Iglesias #define ELF_EXEC_PAGESIZE        4096
981b779e29eSEdgar E. Iglesias 
982e4cbd44dSEdgar E. Iglesias #define USE_ELF_CORE_DUMP
983e4cbd44dSEdgar E. Iglesias #define ELF_NREG 38
984e4cbd44dSEdgar E. Iglesias typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
985e4cbd44dSEdgar E. Iglesias 
986e4cbd44dSEdgar E. Iglesias /* See linux kernel: arch/mips/kernel/process.c:elf_dump_regs.  */
98705390248SAndreas Färber static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUMBState *env)
988e4cbd44dSEdgar E. Iglesias {
989e4cbd44dSEdgar E. Iglesias     int i, pos = 0;
990e4cbd44dSEdgar E. Iglesias 
991e4cbd44dSEdgar E. Iglesias     for (i = 0; i < 32; i++) {
99286cd7b2dSPaolo Bonzini         (*regs)[pos++] = tswapreg(env->regs[i]);
993e4cbd44dSEdgar E. Iglesias     }
994e4cbd44dSEdgar E. Iglesias 
995e4cbd44dSEdgar E. Iglesias     for (i = 0; i < 6; i++) {
99686cd7b2dSPaolo Bonzini         (*regs)[pos++] = tswapreg(env->sregs[i]);
997e4cbd44dSEdgar E. Iglesias     }
998e4cbd44dSEdgar E. Iglesias }
999e4cbd44dSEdgar E. Iglesias 
1000b779e29eSEdgar E. Iglesias #endif /* TARGET_MICROBLAZE */
1001b779e29eSEdgar E. Iglesias 
1002a0a839b6SMarek Vasut #ifdef TARGET_NIOS2
1003a0a839b6SMarek Vasut 
1004a0a839b6SMarek Vasut #define ELF_START_MMAP 0x80000000
1005a0a839b6SMarek Vasut 
1006a0a839b6SMarek Vasut #define elf_check_arch(x) ((x) == EM_ALTERA_NIOS2)
1007a0a839b6SMarek Vasut 
1008a0a839b6SMarek Vasut #define ELF_CLASS   ELFCLASS32
1009a0a839b6SMarek Vasut #define ELF_ARCH    EM_ALTERA_NIOS2
1010a0a839b6SMarek Vasut 
1011a0a839b6SMarek Vasut static void init_thread(struct target_pt_regs *regs, struct image_info *infop)
1012a0a839b6SMarek Vasut {
1013a0a839b6SMarek Vasut     regs->ea = infop->entry;
1014a0a839b6SMarek Vasut     regs->sp = infop->start_stack;
1015a0a839b6SMarek Vasut     regs->estatus = 0x3;
1016a0a839b6SMarek Vasut }
1017a0a839b6SMarek Vasut 
1018a0a839b6SMarek Vasut #define ELF_EXEC_PAGESIZE        4096
1019a0a839b6SMarek Vasut 
1020a0a839b6SMarek Vasut #define USE_ELF_CORE_DUMP
1021a0a839b6SMarek Vasut #define ELF_NREG 49
1022a0a839b6SMarek Vasut typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
1023a0a839b6SMarek Vasut 
1024a0a839b6SMarek Vasut /* See linux kernel: arch/mips/kernel/process.c:elf_dump_regs.  */
1025a0a839b6SMarek Vasut static void elf_core_copy_regs(target_elf_gregset_t *regs,
1026a0a839b6SMarek Vasut                                const CPUNios2State *env)
1027a0a839b6SMarek Vasut {
1028a0a839b6SMarek Vasut     int i;
1029a0a839b6SMarek Vasut 
1030a0a839b6SMarek Vasut     (*regs)[0] = -1;
1031a0a839b6SMarek Vasut     for (i = 1; i < 8; i++)    /* r0-r7 */
1032a0a839b6SMarek Vasut         (*regs)[i] = tswapreg(env->regs[i + 7]);
1033a0a839b6SMarek Vasut 
1034a0a839b6SMarek Vasut     for (i = 8; i < 16; i++)   /* r8-r15 */
1035a0a839b6SMarek Vasut         (*regs)[i] = tswapreg(env->regs[i - 8]);
1036a0a839b6SMarek Vasut 
1037a0a839b6SMarek Vasut     for (i = 16; i < 24; i++)  /* r16-r23 */
1038a0a839b6SMarek Vasut         (*regs)[i] = tswapreg(env->regs[i + 7]);
1039a0a839b6SMarek Vasut     (*regs)[24] = -1;    /* R_ET */
1040a0a839b6SMarek Vasut     (*regs)[25] = -1;    /* R_BT */
1041a0a839b6SMarek Vasut     (*regs)[26] = tswapreg(env->regs[R_GP]);
1042a0a839b6SMarek Vasut     (*regs)[27] = tswapreg(env->regs[R_SP]);
1043a0a839b6SMarek Vasut     (*regs)[28] = tswapreg(env->regs[R_FP]);
1044a0a839b6SMarek Vasut     (*regs)[29] = tswapreg(env->regs[R_EA]);
1045a0a839b6SMarek Vasut     (*regs)[30] = -1;    /* R_SSTATUS */
1046a0a839b6SMarek Vasut     (*regs)[31] = tswapreg(env->regs[R_RA]);
1047a0a839b6SMarek Vasut 
1048a0a839b6SMarek Vasut     (*regs)[32] = tswapreg(env->regs[R_PC]);
1049a0a839b6SMarek Vasut 
1050a0a839b6SMarek Vasut     (*regs)[33] = -1; /* R_STATUS */
1051a0a839b6SMarek Vasut     (*regs)[34] = tswapreg(env->regs[CR_ESTATUS]);
1052a0a839b6SMarek Vasut 
1053a0a839b6SMarek Vasut     for (i = 35; i < 49; i++)    /* ... */
1054a0a839b6SMarek Vasut         (*regs)[i] = -1;
1055a0a839b6SMarek Vasut }
1056a0a839b6SMarek Vasut 
1057a0a839b6SMarek Vasut #endif /* TARGET_NIOS2 */
1058a0a839b6SMarek Vasut 
1059d962783eSJia Liu #ifdef TARGET_OPENRISC
1060d962783eSJia Liu 
1061d962783eSJia Liu #define ELF_START_MMAP 0x08000000
1062d962783eSJia Liu 
1063d962783eSJia Liu #define ELF_ARCH EM_OPENRISC
1064d962783eSJia Liu #define ELF_CLASS ELFCLASS32
1065d962783eSJia Liu #define ELF_DATA  ELFDATA2MSB
1066d962783eSJia Liu 
1067d962783eSJia Liu static inline void init_thread(struct target_pt_regs *regs,
1068d962783eSJia Liu                                struct image_info *infop)
1069d962783eSJia Liu {
1070d962783eSJia Liu     regs->pc = infop->entry;
1071d962783eSJia Liu     regs->gpr[1] = infop->start_stack;
1072d962783eSJia Liu }
1073d962783eSJia Liu 
1074d962783eSJia Liu #define USE_ELF_CORE_DUMP
1075d962783eSJia Liu #define ELF_EXEC_PAGESIZE 8192
1076d962783eSJia Liu 
1077d962783eSJia Liu /* See linux kernel arch/openrisc/include/asm/elf.h.  */
1078d962783eSJia Liu #define ELF_NREG 34 /* gprs and pc, sr */
1079d962783eSJia Liu typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
1080d962783eSJia Liu 
1081d962783eSJia Liu static void elf_core_copy_regs(target_elf_gregset_t *regs,
1082d962783eSJia Liu                                const CPUOpenRISCState *env)
1083d962783eSJia Liu {
1084d962783eSJia Liu     int i;
1085d962783eSJia Liu 
1086d962783eSJia Liu     for (i = 0; i < 32; i++) {
1087d89e71e8SStafford Horne         (*regs)[i] = tswapreg(cpu_get_gpr(env, i));
1088d962783eSJia Liu     }
108986cd7b2dSPaolo Bonzini     (*regs)[32] = tswapreg(env->pc);
109084775c43SRichard Henderson     (*regs)[33] = tswapreg(cpu_get_sr(env));
1091d962783eSJia Liu }
1092d962783eSJia Liu #define ELF_HWCAP 0
1093d962783eSJia Liu #define ELF_PLATFORM NULL
1094d962783eSJia Liu 
1095d962783eSJia Liu #endif /* TARGET_OPENRISC */
1096d962783eSJia Liu 
1097fdf9b3e8Sbellard #ifdef TARGET_SH4
1098fdf9b3e8Sbellard 
1099fdf9b3e8Sbellard #define ELF_START_MMAP 0x80000000
1100fdf9b3e8Sbellard 
1101fdf9b3e8Sbellard #define ELF_CLASS ELFCLASS32
1102fdf9b3e8Sbellard #define ELF_ARCH  EM_SH
1103fdf9b3e8Sbellard 
1104d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
1105d97ef72eSRichard Henderson                                struct image_info *infop)
1106fdf9b3e8Sbellard {
1107fdf9b3e8Sbellard     /* Check other registers XXXXX */
1108fdf9b3e8Sbellard     regs->pc = infop->entry;
1109072ae847Sths     regs->regs[15] = infop->start_stack;
1110fdf9b3e8Sbellard }
1111fdf9b3e8Sbellard 
11127631c97eSNathan Froyd /* See linux kernel: arch/sh/include/asm/elf.h.  */
11137631c97eSNathan Froyd #define ELF_NREG 23
11147631c97eSNathan Froyd typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
11157631c97eSNathan Froyd 
11167631c97eSNathan Froyd /* See linux kernel: arch/sh/include/asm/ptrace.h.  */
11177631c97eSNathan Froyd enum {
11187631c97eSNathan Froyd     TARGET_REG_PC = 16,
11197631c97eSNathan Froyd     TARGET_REG_PR = 17,
11207631c97eSNathan Froyd     TARGET_REG_SR = 18,
11217631c97eSNathan Froyd     TARGET_REG_GBR = 19,
11227631c97eSNathan Froyd     TARGET_REG_MACH = 20,
11237631c97eSNathan Froyd     TARGET_REG_MACL = 21,
11247631c97eSNathan Froyd     TARGET_REG_SYSCALL = 22
11257631c97eSNathan Froyd };
11267631c97eSNathan Froyd 
1127d97ef72eSRichard Henderson static inline void elf_core_copy_regs(target_elf_gregset_t *regs,
112805390248SAndreas Färber                                       const CPUSH4State *env)
11297631c97eSNathan Froyd {
11307631c97eSNathan Froyd     int i;
11317631c97eSNathan Froyd 
11327631c97eSNathan Froyd     for (i = 0; i < 16; i++) {
113372cd500bSPhilippe Mathieu-Daudé         (*regs)[i] = tswapreg(env->gregs[i]);
11347631c97eSNathan Froyd     }
11357631c97eSNathan Froyd 
113686cd7b2dSPaolo Bonzini     (*regs)[TARGET_REG_PC] = tswapreg(env->pc);
113786cd7b2dSPaolo Bonzini     (*regs)[TARGET_REG_PR] = tswapreg(env->pr);
113886cd7b2dSPaolo Bonzini     (*regs)[TARGET_REG_SR] = tswapreg(env->sr);
113986cd7b2dSPaolo Bonzini     (*regs)[TARGET_REG_GBR] = tswapreg(env->gbr);
114086cd7b2dSPaolo Bonzini     (*regs)[TARGET_REG_MACH] = tswapreg(env->mach);
114186cd7b2dSPaolo Bonzini     (*regs)[TARGET_REG_MACL] = tswapreg(env->macl);
11427631c97eSNathan Froyd     (*regs)[TARGET_REG_SYSCALL] = 0; /* FIXME */
11437631c97eSNathan Froyd }
11447631c97eSNathan Froyd 
11457631c97eSNathan Froyd #define USE_ELF_CORE_DUMP
1146fdf9b3e8Sbellard #define ELF_EXEC_PAGESIZE        4096
1147fdf9b3e8Sbellard 
1148e42fd944SRichard Henderson enum {
1149e42fd944SRichard Henderson     SH_CPU_HAS_FPU            = 0x0001, /* Hardware FPU support */
1150e42fd944SRichard Henderson     SH_CPU_HAS_P2_FLUSH_BUG   = 0x0002, /* Need to flush the cache in P2 area */
1151e42fd944SRichard Henderson     SH_CPU_HAS_MMU_PAGE_ASSOC = 0x0004, /* SH3: TLB way selection bit support */
1152e42fd944SRichard Henderson     SH_CPU_HAS_DSP            = 0x0008, /* SH-DSP: DSP support */
1153e42fd944SRichard Henderson     SH_CPU_HAS_PERF_COUNTER   = 0x0010, /* Hardware performance counters */
1154e42fd944SRichard Henderson     SH_CPU_HAS_PTEA           = 0x0020, /* PTEA register */
1155e42fd944SRichard Henderson     SH_CPU_HAS_LLSC           = 0x0040, /* movli.l/movco.l */
1156e42fd944SRichard Henderson     SH_CPU_HAS_L2_CACHE       = 0x0080, /* Secondary cache / URAM */
1157e42fd944SRichard Henderson     SH_CPU_HAS_OP32           = 0x0100, /* 32-bit instruction support */
1158e42fd944SRichard Henderson     SH_CPU_HAS_PTEAEX         = 0x0200, /* PTE ASID Extension support */
1159e42fd944SRichard Henderson };
1160e42fd944SRichard Henderson 
1161e42fd944SRichard Henderson #define ELF_HWCAP get_elf_hwcap()
1162e42fd944SRichard Henderson 
1163e42fd944SRichard Henderson static uint32_t get_elf_hwcap(void)
1164e42fd944SRichard Henderson {
1165e42fd944SRichard Henderson     SuperHCPU *cpu = SUPERH_CPU(thread_cpu);
1166e42fd944SRichard Henderson     uint32_t hwcap = 0;
1167e42fd944SRichard Henderson 
1168e42fd944SRichard Henderson     hwcap |= SH_CPU_HAS_FPU;
1169e42fd944SRichard Henderson 
1170e42fd944SRichard Henderson     if (cpu->env.features & SH_FEATURE_SH4A) {
1171e42fd944SRichard Henderson         hwcap |= SH_CPU_HAS_LLSC;
1172e42fd944SRichard Henderson     }
1173e42fd944SRichard Henderson 
1174e42fd944SRichard Henderson     return hwcap;
1175e42fd944SRichard Henderson }
1176e42fd944SRichard Henderson 
1177fdf9b3e8Sbellard #endif
1178fdf9b3e8Sbellard 
117948733d19Sths #ifdef TARGET_CRIS
118048733d19Sths 
118148733d19Sths #define ELF_START_MMAP 0x80000000
118248733d19Sths 
118348733d19Sths #define ELF_CLASS ELFCLASS32
118448733d19Sths #define ELF_ARCH  EM_CRIS
118548733d19Sths 
1186d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
1187d97ef72eSRichard Henderson                                struct image_info *infop)
118848733d19Sths {
118948733d19Sths     regs->erp = infop->entry;
119048733d19Sths }
119148733d19Sths 
119248733d19Sths #define ELF_EXEC_PAGESIZE        8192
119348733d19Sths 
119448733d19Sths #endif
119548733d19Sths 
1196e6e5906bSpbrook #ifdef TARGET_M68K
1197e6e5906bSpbrook 
1198e6e5906bSpbrook #define ELF_START_MMAP 0x80000000
1199e6e5906bSpbrook 
1200e6e5906bSpbrook #define ELF_CLASS       ELFCLASS32
1201e6e5906bSpbrook #define ELF_ARCH        EM_68K
1202e6e5906bSpbrook 
1203e6e5906bSpbrook /* ??? Does this need to do anything?
1204e6e5906bSpbrook    #define ELF_PLAT_INIT(_r) */
1205e6e5906bSpbrook 
1206d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
1207d97ef72eSRichard Henderson                                struct image_info *infop)
1208e6e5906bSpbrook {
1209e6e5906bSpbrook     regs->usp = infop->start_stack;
1210e6e5906bSpbrook     regs->sr = 0;
1211e6e5906bSpbrook     regs->pc = infop->entry;
1212e6e5906bSpbrook }
1213e6e5906bSpbrook 
12147a93cc55SNathan Froyd /* See linux kernel: arch/m68k/include/asm/elf.h.  */
12157a93cc55SNathan Froyd #define ELF_NREG 20
12167a93cc55SNathan Froyd typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
12177a93cc55SNathan Froyd 
121805390248SAndreas Färber static void elf_core_copy_regs(target_elf_gregset_t *regs, const CPUM68KState *env)
12197a93cc55SNathan Froyd {
122086cd7b2dSPaolo Bonzini     (*regs)[0] = tswapreg(env->dregs[1]);
122186cd7b2dSPaolo Bonzini     (*regs)[1] = tswapreg(env->dregs[2]);
122286cd7b2dSPaolo Bonzini     (*regs)[2] = tswapreg(env->dregs[3]);
122386cd7b2dSPaolo Bonzini     (*regs)[3] = tswapreg(env->dregs[4]);
122486cd7b2dSPaolo Bonzini     (*regs)[4] = tswapreg(env->dregs[5]);
122586cd7b2dSPaolo Bonzini     (*regs)[5] = tswapreg(env->dregs[6]);
122686cd7b2dSPaolo Bonzini     (*regs)[6] = tswapreg(env->dregs[7]);
122786cd7b2dSPaolo Bonzini     (*regs)[7] = tswapreg(env->aregs[0]);
122886cd7b2dSPaolo Bonzini     (*regs)[8] = tswapreg(env->aregs[1]);
122986cd7b2dSPaolo Bonzini     (*regs)[9] = tswapreg(env->aregs[2]);
123086cd7b2dSPaolo Bonzini     (*regs)[10] = tswapreg(env->aregs[3]);
123186cd7b2dSPaolo Bonzini     (*regs)[11] = tswapreg(env->aregs[4]);
123286cd7b2dSPaolo Bonzini     (*regs)[12] = tswapreg(env->aregs[5]);
123386cd7b2dSPaolo Bonzini     (*regs)[13] = tswapreg(env->aregs[6]);
123486cd7b2dSPaolo Bonzini     (*regs)[14] = tswapreg(env->dregs[0]);
123586cd7b2dSPaolo Bonzini     (*regs)[15] = tswapreg(env->aregs[7]);
123686cd7b2dSPaolo Bonzini     (*regs)[16] = tswapreg(env->dregs[0]); /* FIXME: orig_d0 */
123786cd7b2dSPaolo Bonzini     (*regs)[17] = tswapreg(env->sr);
123886cd7b2dSPaolo Bonzini     (*regs)[18] = tswapreg(env->pc);
12397a93cc55SNathan Froyd     (*regs)[19] = 0;  /* FIXME: regs->format | regs->vector */
12407a93cc55SNathan Froyd }
12417a93cc55SNathan Froyd 
12427a93cc55SNathan Froyd #define USE_ELF_CORE_DUMP
1243e6e5906bSpbrook #define ELF_EXEC_PAGESIZE       8192
1244e6e5906bSpbrook 
1245e6e5906bSpbrook #endif
1246e6e5906bSpbrook 
12477a3148a9Sj_mayer #ifdef TARGET_ALPHA
12487a3148a9Sj_mayer 
12497a3148a9Sj_mayer #define ELF_START_MMAP (0x30000000000ULL)
12507a3148a9Sj_mayer 
12517a3148a9Sj_mayer #define ELF_CLASS      ELFCLASS64
12527a3148a9Sj_mayer #define ELF_ARCH       EM_ALPHA
12537a3148a9Sj_mayer 
1254d97ef72eSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
1255d97ef72eSRichard Henderson                                struct image_info *infop)
12567a3148a9Sj_mayer {
12577a3148a9Sj_mayer     regs->pc = infop->entry;
12587a3148a9Sj_mayer     regs->ps = 8;
12597a3148a9Sj_mayer     regs->usp = infop->start_stack;
12607a3148a9Sj_mayer }
12617a3148a9Sj_mayer 
12627a3148a9Sj_mayer #define ELF_EXEC_PAGESIZE        8192
12637a3148a9Sj_mayer 
12647a3148a9Sj_mayer #endif /* TARGET_ALPHA */
12657a3148a9Sj_mayer 
1266a4c075f1SUlrich Hecht #ifdef TARGET_S390X
1267a4c075f1SUlrich Hecht 
1268a4c075f1SUlrich Hecht #define ELF_START_MMAP (0x20000000000ULL)
1269a4c075f1SUlrich Hecht 
1270a4c075f1SUlrich Hecht #define ELF_CLASS	ELFCLASS64
1271a4c075f1SUlrich Hecht #define ELF_DATA	ELFDATA2MSB
1272a4c075f1SUlrich Hecht #define ELF_ARCH	EM_S390
1273a4c075f1SUlrich Hecht 
1274a4c075f1SUlrich Hecht static inline void init_thread(struct target_pt_regs *regs, struct image_info *infop)
1275a4c075f1SUlrich Hecht {
1276a4c075f1SUlrich Hecht     regs->psw.addr = infop->entry;
1277a4c075f1SUlrich Hecht     regs->psw.mask = PSW_MASK_64 | PSW_MASK_32;
1278a4c075f1SUlrich Hecht     regs->gprs[15] = infop->start_stack;
1279a4c075f1SUlrich Hecht }
1280a4c075f1SUlrich Hecht 
1281a4c075f1SUlrich Hecht #endif /* TARGET_S390X */
1282a4c075f1SUlrich Hecht 
1283b16189b2SChen Gang #ifdef TARGET_TILEGX
1284b16189b2SChen Gang 
1285b16189b2SChen Gang /* 42 bits real used address, a half for user mode */
1286b16189b2SChen Gang #define ELF_START_MMAP (0x00000020000000000ULL)
1287b16189b2SChen Gang 
1288b16189b2SChen Gang #define elf_check_arch(x) ((x) == EM_TILEGX)
1289b16189b2SChen Gang 
1290b16189b2SChen Gang #define ELF_CLASS   ELFCLASS64
1291b16189b2SChen Gang #define ELF_DATA    ELFDATA2LSB
1292b16189b2SChen Gang #define ELF_ARCH    EM_TILEGX
1293b16189b2SChen Gang 
1294b16189b2SChen Gang static inline void init_thread(struct target_pt_regs *regs,
1295b16189b2SChen Gang                                struct image_info *infop)
1296b16189b2SChen Gang {
1297b16189b2SChen Gang     regs->pc = infop->entry;
1298b16189b2SChen Gang     regs->sp = infop->start_stack;
1299b16189b2SChen Gang 
1300b16189b2SChen Gang }
1301b16189b2SChen Gang 
1302b16189b2SChen Gang #define ELF_EXEC_PAGESIZE        65536 /* TILE-Gx page size is 64KB */
1303b16189b2SChen Gang 
1304b16189b2SChen Gang #endif /* TARGET_TILEGX */
1305b16189b2SChen Gang 
130647ae93cdSMichael Clark #ifdef TARGET_RISCV
130747ae93cdSMichael Clark 
130847ae93cdSMichael Clark #define ELF_START_MMAP 0x80000000
130947ae93cdSMichael Clark #define ELF_ARCH  EM_RISCV
131047ae93cdSMichael Clark 
131147ae93cdSMichael Clark #ifdef TARGET_RISCV32
131247ae93cdSMichael Clark #define ELF_CLASS ELFCLASS32
131347ae93cdSMichael Clark #else
131447ae93cdSMichael Clark #define ELF_CLASS ELFCLASS64
131547ae93cdSMichael Clark #endif
131647ae93cdSMichael Clark 
131747ae93cdSMichael Clark static inline void init_thread(struct target_pt_regs *regs,
131847ae93cdSMichael Clark                                struct image_info *infop)
131947ae93cdSMichael Clark {
132047ae93cdSMichael Clark     regs->sepc = infop->entry;
132147ae93cdSMichael Clark     regs->sp = infop->start_stack;
132247ae93cdSMichael Clark }
132347ae93cdSMichael Clark 
132447ae93cdSMichael Clark #define ELF_EXEC_PAGESIZE 4096
132547ae93cdSMichael Clark 
132647ae93cdSMichael Clark #endif /* TARGET_RISCV */
132747ae93cdSMichael Clark 
13287c248bcdSRichard Henderson #ifdef TARGET_HPPA
13297c248bcdSRichard Henderson 
13307c248bcdSRichard Henderson #define ELF_START_MMAP  0x80000000
13317c248bcdSRichard Henderson #define ELF_CLASS       ELFCLASS32
13327c248bcdSRichard Henderson #define ELF_ARCH        EM_PARISC
13337c248bcdSRichard Henderson #define ELF_PLATFORM    "PARISC"
13347c248bcdSRichard Henderson #define STACK_GROWS_DOWN 0
13357c248bcdSRichard Henderson #define STACK_ALIGNMENT  64
13367c248bcdSRichard Henderson 
13377c248bcdSRichard Henderson static inline void init_thread(struct target_pt_regs *regs,
13387c248bcdSRichard Henderson                                struct image_info *infop)
13397c248bcdSRichard Henderson {
13407c248bcdSRichard Henderson     regs->iaoq[0] = infop->entry;
13417c248bcdSRichard Henderson     regs->iaoq[1] = infop->entry + 4;
13427c248bcdSRichard Henderson     regs->gr[23] = 0;
13437c248bcdSRichard Henderson     regs->gr[24] = infop->arg_start;
13447c248bcdSRichard Henderson     regs->gr[25] = (infop->arg_end - infop->arg_start) / sizeof(abi_ulong);
13457c248bcdSRichard Henderson     /* The top-of-stack contains a linkage buffer.  */
13467c248bcdSRichard Henderson     regs->gr[30] = infop->start_stack + 64;
13477c248bcdSRichard Henderson     regs->gr[31] = infop->entry;
13487c248bcdSRichard Henderson }
13497c248bcdSRichard Henderson 
13507c248bcdSRichard Henderson #endif /* TARGET_HPPA */
13517c248bcdSRichard Henderson 
1352ba7651fbSMax Filippov #ifdef TARGET_XTENSA
1353ba7651fbSMax Filippov 
1354ba7651fbSMax Filippov #define ELF_START_MMAP 0x20000000
1355ba7651fbSMax Filippov 
1356ba7651fbSMax Filippov #define ELF_CLASS       ELFCLASS32
1357ba7651fbSMax Filippov #define ELF_ARCH        EM_XTENSA
1358ba7651fbSMax Filippov 
1359ba7651fbSMax Filippov static inline void init_thread(struct target_pt_regs *regs,
1360ba7651fbSMax Filippov                                struct image_info *infop)
1361ba7651fbSMax Filippov {
1362ba7651fbSMax Filippov     regs->windowbase = 0;
1363ba7651fbSMax Filippov     regs->windowstart = 1;
1364ba7651fbSMax Filippov     regs->areg[1] = infop->start_stack;
1365ba7651fbSMax Filippov     regs->pc = infop->entry;
1366ba7651fbSMax Filippov }
1367ba7651fbSMax Filippov 
1368ba7651fbSMax Filippov /* See linux kernel: arch/xtensa/include/asm/elf.h.  */
1369ba7651fbSMax Filippov #define ELF_NREG 128
1370ba7651fbSMax Filippov typedef target_elf_greg_t target_elf_gregset_t[ELF_NREG];
1371ba7651fbSMax Filippov 
1372ba7651fbSMax Filippov enum {
1373ba7651fbSMax Filippov     TARGET_REG_PC,
1374ba7651fbSMax Filippov     TARGET_REG_PS,
1375ba7651fbSMax Filippov     TARGET_REG_LBEG,
1376ba7651fbSMax Filippov     TARGET_REG_LEND,
1377ba7651fbSMax Filippov     TARGET_REG_LCOUNT,
1378ba7651fbSMax Filippov     TARGET_REG_SAR,
1379ba7651fbSMax Filippov     TARGET_REG_WINDOWSTART,
1380ba7651fbSMax Filippov     TARGET_REG_WINDOWBASE,
1381ba7651fbSMax Filippov     TARGET_REG_THREADPTR,
1382ba7651fbSMax Filippov     TARGET_REG_AR0 = 64,
1383ba7651fbSMax Filippov };
1384ba7651fbSMax Filippov 
1385ba7651fbSMax Filippov static void elf_core_copy_regs(target_elf_gregset_t *regs,
1386ba7651fbSMax Filippov                                const CPUXtensaState *env)
1387ba7651fbSMax Filippov {
1388ba7651fbSMax Filippov     unsigned i;
1389ba7651fbSMax Filippov 
1390ba7651fbSMax Filippov     (*regs)[TARGET_REG_PC] = tswapreg(env->pc);
1391ba7651fbSMax Filippov     (*regs)[TARGET_REG_PS] = tswapreg(env->sregs[PS] & ~PS_EXCM);
1392ba7651fbSMax Filippov     (*regs)[TARGET_REG_LBEG] = tswapreg(env->sregs[LBEG]);
1393ba7651fbSMax Filippov     (*regs)[TARGET_REG_LEND] = tswapreg(env->sregs[LEND]);
1394ba7651fbSMax Filippov     (*regs)[TARGET_REG_LCOUNT] = tswapreg(env->sregs[LCOUNT]);
1395ba7651fbSMax Filippov     (*regs)[TARGET_REG_SAR] = tswapreg(env->sregs[SAR]);
1396ba7651fbSMax Filippov     (*regs)[TARGET_REG_WINDOWSTART] = tswapreg(env->sregs[WINDOW_START]);
1397ba7651fbSMax Filippov     (*regs)[TARGET_REG_WINDOWBASE] = tswapreg(env->sregs[WINDOW_BASE]);
1398ba7651fbSMax Filippov     (*regs)[TARGET_REG_THREADPTR] = tswapreg(env->uregs[THREADPTR]);
1399ba7651fbSMax Filippov     xtensa_sync_phys_from_window((CPUXtensaState *)env);
1400ba7651fbSMax Filippov     for (i = 0; i < env->config->nareg; ++i) {
1401ba7651fbSMax Filippov         (*regs)[TARGET_REG_AR0 + i] = tswapreg(env->phys_regs[i]);
1402ba7651fbSMax Filippov     }
1403ba7651fbSMax Filippov }
1404ba7651fbSMax Filippov 
1405ba7651fbSMax Filippov #define USE_ELF_CORE_DUMP
1406ba7651fbSMax Filippov #define ELF_EXEC_PAGESIZE       4096
1407ba7651fbSMax Filippov 
1408ba7651fbSMax Filippov #endif /* TARGET_XTENSA */
1409ba7651fbSMax Filippov 
141015338fd7Sbellard #ifndef ELF_PLATFORM
141115338fd7Sbellard #define ELF_PLATFORM (NULL)
141215338fd7Sbellard #endif
141315338fd7Sbellard 
141475be901cSPeter Crosthwaite #ifndef ELF_MACHINE
141575be901cSPeter Crosthwaite #define ELF_MACHINE ELF_ARCH
141675be901cSPeter Crosthwaite #endif
141775be901cSPeter Crosthwaite 
1418d276a604SPeter Crosthwaite #ifndef elf_check_arch
1419d276a604SPeter Crosthwaite #define elf_check_arch(x) ((x) == ELF_ARCH)
1420d276a604SPeter Crosthwaite #endif
1421d276a604SPeter Crosthwaite 
142215338fd7Sbellard #ifndef ELF_HWCAP
142315338fd7Sbellard #define ELF_HWCAP 0
142415338fd7Sbellard #endif
142515338fd7Sbellard 
14267c4ee5bcSRichard Henderson #ifndef STACK_GROWS_DOWN
14277c4ee5bcSRichard Henderson #define STACK_GROWS_DOWN 1
14287c4ee5bcSRichard Henderson #endif
14297c4ee5bcSRichard Henderson 
14307c4ee5bcSRichard Henderson #ifndef STACK_ALIGNMENT
14317c4ee5bcSRichard Henderson #define STACK_ALIGNMENT 16
14327c4ee5bcSRichard Henderson #endif
14337c4ee5bcSRichard Henderson 
1434992f48a0Sblueswir1 #ifdef TARGET_ABI32
1435cb33da57Sblueswir1 #undef ELF_CLASS
1436992f48a0Sblueswir1 #define ELF_CLASS ELFCLASS32
1437cb33da57Sblueswir1 #undef bswaptls
1438cb33da57Sblueswir1 #define bswaptls(ptr) bswap32s(ptr)
1439cb33da57Sblueswir1 #endif
1440cb33da57Sblueswir1 
144131e31b8aSbellard #include "elf.h"
144209bfb054Sbellard 
144309bfb054Sbellard struct exec
144409bfb054Sbellard {
144509bfb054Sbellard     unsigned int a_info;   /* Use macros N_MAGIC, etc for access */
144609bfb054Sbellard     unsigned int a_text;   /* length of text, in bytes */
144709bfb054Sbellard     unsigned int a_data;   /* length of data, in bytes */
144809bfb054Sbellard     unsigned int a_bss;    /* length of uninitialized data area, in bytes */
144909bfb054Sbellard     unsigned int a_syms;   /* length of symbol table data in file, in bytes */
145009bfb054Sbellard     unsigned int a_entry;  /* start address */
145109bfb054Sbellard     unsigned int a_trsize; /* length of relocation info for text, in bytes */
145209bfb054Sbellard     unsigned int a_drsize; /* length of relocation info for data, in bytes */
145309bfb054Sbellard };
145409bfb054Sbellard 
145509bfb054Sbellard 
145609bfb054Sbellard #define N_MAGIC(exec) ((exec).a_info & 0xffff)
145709bfb054Sbellard #define OMAGIC 0407
145809bfb054Sbellard #define NMAGIC 0410
145909bfb054Sbellard #define ZMAGIC 0413
146009bfb054Sbellard #define QMAGIC 0314
146109bfb054Sbellard 
146231e31b8aSbellard /* Necessary parameters */
146394894ff2SShivaprasad G Bhat #define TARGET_ELF_EXEC_PAGESIZE \
146494894ff2SShivaprasad G Bhat         (((eppnt->p_align & ~qemu_host_page_mask) != 0) ? \
146594894ff2SShivaprasad G Bhat          TARGET_PAGE_SIZE : MAX(qemu_host_page_size, TARGET_PAGE_SIZE))
146694894ff2SShivaprasad G Bhat #define TARGET_ELF_PAGELENGTH(_v) ROUND_UP((_v), TARGET_ELF_EXEC_PAGESIZE)
146779cb1f1dSYongbok Kim #define TARGET_ELF_PAGESTART(_v) ((_v) & \
146879cb1f1dSYongbok Kim                                  ~(abi_ulong)(TARGET_ELF_EXEC_PAGESIZE-1))
146954936004Sbellard #define TARGET_ELF_PAGEOFFSET(_v) ((_v) & (TARGET_ELF_EXEC_PAGESIZE-1))
147031e31b8aSbellard 
1471444cd5c3SMarco A L Barbosa #define DLINFO_ITEMS 15
147231e31b8aSbellard 
147309bfb054Sbellard static inline void memcpy_fromfs(void * to, const void * from, unsigned long n)
147409bfb054Sbellard {
147509bfb054Sbellard     memcpy(to, from, n);
147609bfb054Sbellard }
147709bfb054Sbellard 
147831e31b8aSbellard #ifdef BSWAP_NEEDED
147992a31b1fSbellard static void bswap_ehdr(struct elfhdr *ehdr)
148031e31b8aSbellard {
148131e31b8aSbellard     bswap16s(&ehdr->e_type);            /* Object file type */
148231e31b8aSbellard     bswap16s(&ehdr->e_machine);         /* Architecture */
148331e31b8aSbellard     bswap32s(&ehdr->e_version);         /* Object file version */
148492a31b1fSbellard     bswaptls(&ehdr->e_entry);           /* Entry point virtual address */
148592a31b1fSbellard     bswaptls(&ehdr->e_phoff);           /* Program header table file offset */
148692a31b1fSbellard     bswaptls(&ehdr->e_shoff);           /* Section header table file offset */
148731e31b8aSbellard     bswap32s(&ehdr->e_flags);           /* Processor-specific flags */
148831e31b8aSbellard     bswap16s(&ehdr->e_ehsize);          /* ELF header size in bytes */
148931e31b8aSbellard     bswap16s(&ehdr->e_phentsize);       /* Program header table entry size */
149031e31b8aSbellard     bswap16s(&ehdr->e_phnum);           /* Program header table entry count */
149131e31b8aSbellard     bswap16s(&ehdr->e_shentsize);       /* Section header table entry size */
149231e31b8aSbellard     bswap16s(&ehdr->e_shnum);           /* Section header table entry count */
149331e31b8aSbellard     bswap16s(&ehdr->e_shstrndx);        /* Section header string table index */
149431e31b8aSbellard }
149531e31b8aSbellard 
1496991f8f0cSRichard Henderson static void bswap_phdr(struct elf_phdr *phdr, int phnum)
149731e31b8aSbellard {
1498991f8f0cSRichard Henderson     int i;
1499991f8f0cSRichard Henderson     for (i = 0; i < phnum; ++i, ++phdr) {
150031e31b8aSbellard         bswap32s(&phdr->p_type);        /* Segment type */
1501991f8f0cSRichard Henderson         bswap32s(&phdr->p_flags);       /* Segment flags */
150292a31b1fSbellard         bswaptls(&phdr->p_offset);      /* Segment file offset */
150392a31b1fSbellard         bswaptls(&phdr->p_vaddr);       /* Segment virtual address */
150492a31b1fSbellard         bswaptls(&phdr->p_paddr);       /* Segment physical address */
150592a31b1fSbellard         bswaptls(&phdr->p_filesz);      /* Segment size in file */
150692a31b1fSbellard         bswaptls(&phdr->p_memsz);       /* Segment size in memory */
150792a31b1fSbellard         bswaptls(&phdr->p_align);       /* Segment alignment */
150831e31b8aSbellard     }
1509991f8f0cSRichard Henderson }
1510689f936fSbellard 
1511991f8f0cSRichard Henderson static void bswap_shdr(struct elf_shdr *shdr, int shnum)
1512689f936fSbellard {
1513991f8f0cSRichard Henderson     int i;
1514991f8f0cSRichard Henderson     for (i = 0; i < shnum; ++i, ++shdr) {
1515689f936fSbellard         bswap32s(&shdr->sh_name);
1516689f936fSbellard         bswap32s(&shdr->sh_type);
151792a31b1fSbellard         bswaptls(&shdr->sh_flags);
151892a31b1fSbellard         bswaptls(&shdr->sh_addr);
151992a31b1fSbellard         bswaptls(&shdr->sh_offset);
152092a31b1fSbellard         bswaptls(&shdr->sh_size);
1521689f936fSbellard         bswap32s(&shdr->sh_link);
1522689f936fSbellard         bswap32s(&shdr->sh_info);
152392a31b1fSbellard         bswaptls(&shdr->sh_addralign);
152492a31b1fSbellard         bswaptls(&shdr->sh_entsize);
1525689f936fSbellard     }
1526991f8f0cSRichard Henderson }
1527689f936fSbellard 
15287a3148a9Sj_mayer static void bswap_sym(struct elf_sym *sym)
1529689f936fSbellard {
1530689f936fSbellard     bswap32s(&sym->st_name);
15317a3148a9Sj_mayer     bswaptls(&sym->st_value);
15327a3148a9Sj_mayer     bswaptls(&sym->st_size);
1533689f936fSbellard     bswap16s(&sym->st_shndx);
1534689f936fSbellard }
15355dd0db52SStefan Markovic 
15365dd0db52SStefan Markovic #ifdef TARGET_MIPS
15375dd0db52SStefan Markovic static void bswap_mips_abiflags(Mips_elf_abiflags_v0 *abiflags)
15385dd0db52SStefan Markovic {
15395dd0db52SStefan Markovic     bswap16s(&abiflags->version);
15405dd0db52SStefan Markovic     bswap32s(&abiflags->ases);
15415dd0db52SStefan Markovic     bswap32s(&abiflags->isa_ext);
15425dd0db52SStefan Markovic     bswap32s(&abiflags->flags1);
15435dd0db52SStefan Markovic     bswap32s(&abiflags->flags2);
15445dd0db52SStefan Markovic }
15455dd0db52SStefan Markovic #endif
1546991f8f0cSRichard Henderson #else
1547991f8f0cSRichard Henderson static inline void bswap_ehdr(struct elfhdr *ehdr) { }
1548991f8f0cSRichard Henderson static inline void bswap_phdr(struct elf_phdr *phdr, int phnum) { }
1549991f8f0cSRichard Henderson static inline void bswap_shdr(struct elf_shdr *shdr, int shnum) { }
1550991f8f0cSRichard Henderson static inline void bswap_sym(struct elf_sym *sym) { }
15515dd0db52SStefan Markovic #ifdef TARGET_MIPS
15525dd0db52SStefan Markovic static inline void bswap_mips_abiflags(Mips_elf_abiflags_v0 *abiflags) { }
15535dd0db52SStefan Markovic #endif
155431e31b8aSbellard #endif
155531e31b8aSbellard 
1556edf8e2afSMika Westerberg #ifdef USE_ELF_CORE_DUMP
15579349b4f9SAndreas Färber static int elf_core_dump(int, const CPUArchState *);
1558edf8e2afSMika Westerberg #endif /* USE_ELF_CORE_DUMP */
1559682674b8SRichard Henderson static void load_symbols(struct elfhdr *hdr, int fd, abi_ulong load_bias);
1560edf8e2afSMika Westerberg 
15619058abddSRichard Henderson /* Verify the portions of EHDR within E_IDENT for the target.
15629058abddSRichard Henderson    This can be performed before bswapping the entire header.  */
15639058abddSRichard Henderson static bool elf_check_ident(struct elfhdr *ehdr)
15649058abddSRichard Henderson {
15659058abddSRichard Henderson     return (ehdr->e_ident[EI_MAG0] == ELFMAG0
15669058abddSRichard Henderson             && ehdr->e_ident[EI_MAG1] == ELFMAG1
15679058abddSRichard Henderson             && ehdr->e_ident[EI_MAG2] == ELFMAG2
15689058abddSRichard Henderson             && ehdr->e_ident[EI_MAG3] == ELFMAG3
15699058abddSRichard Henderson             && ehdr->e_ident[EI_CLASS] == ELF_CLASS
15709058abddSRichard Henderson             && ehdr->e_ident[EI_DATA] == ELF_DATA
15719058abddSRichard Henderson             && ehdr->e_ident[EI_VERSION] == EV_CURRENT);
15729058abddSRichard Henderson }
15739058abddSRichard Henderson 
15749058abddSRichard Henderson /* Verify the portions of EHDR outside of E_IDENT for the target.
15759058abddSRichard Henderson    This has to wait until after bswapping the header.  */
15769058abddSRichard Henderson static bool elf_check_ehdr(struct elfhdr *ehdr)
15779058abddSRichard Henderson {
15789058abddSRichard Henderson     return (elf_check_arch(ehdr->e_machine)
15799058abddSRichard Henderson             && ehdr->e_ehsize == sizeof(struct elfhdr)
15809058abddSRichard Henderson             && ehdr->e_phentsize == sizeof(struct elf_phdr)
15819058abddSRichard Henderson             && (ehdr->e_type == ET_EXEC || ehdr->e_type == ET_DYN));
15829058abddSRichard Henderson }
15839058abddSRichard Henderson 
158431e31b8aSbellard /*
1585e5fe0c52Spbrook  * 'copy_elf_strings()' copies argument/envelope strings from user
158631e31b8aSbellard  * memory to free pages in kernel mem. These are in a format ready
158731e31b8aSbellard  * to be put directly into the top of new user memory.
158831e31b8aSbellard  *
158931e31b8aSbellard  */
159059baae9aSStefan Brüns static abi_ulong copy_elf_strings(int argc, char **argv, char *scratch,
159159baae9aSStefan Brüns                                   abi_ulong p, abi_ulong stack_limit)
159231e31b8aSbellard {
159359baae9aSStefan Brüns     char *tmp;
15947c4ee5bcSRichard Henderson     int len, i;
159559baae9aSStefan Brüns     abi_ulong top = p;
159631e31b8aSbellard 
159731e31b8aSbellard     if (!p) {
159831e31b8aSbellard         return 0;       /* bullet-proofing */
159931e31b8aSbellard     }
160059baae9aSStefan Brüns 
16017c4ee5bcSRichard Henderson     if (STACK_GROWS_DOWN) {
16027c4ee5bcSRichard Henderson         int offset = ((p - 1) % TARGET_PAGE_SIZE) + 1;
16037c4ee5bcSRichard Henderson         for (i = argc - 1; i >= 0; --i) {
16047c4ee5bcSRichard Henderson             tmp = argv[i];
1605edf779ffSbellard             if (!tmp) {
160631e31b8aSbellard                 fprintf(stderr, "VFS: argc is wrong");
160731e31b8aSbellard                 exit(-1);
160831e31b8aSbellard             }
160959baae9aSStefan Brüns             len = strlen(tmp) + 1;
161059baae9aSStefan Brüns             tmp += len;
161159baae9aSStefan Brüns 
161259baae9aSStefan Brüns             if (len > (p - stack_limit)) {
161331e31b8aSbellard                 return 0;
161431e31b8aSbellard             }
161531e31b8aSbellard             while (len) {
161631e31b8aSbellard                 int bytes_to_copy = (len > offset) ? offset : len;
161731e31b8aSbellard                 tmp -= bytes_to_copy;
161831e31b8aSbellard                 p -= bytes_to_copy;
161931e31b8aSbellard                 offset -= bytes_to_copy;
162031e31b8aSbellard                 len -= bytes_to_copy;
162159baae9aSStefan Brüns 
162259baae9aSStefan Brüns                 memcpy_fromfs(scratch + offset, tmp, bytes_to_copy);
162359baae9aSStefan Brüns 
162459baae9aSStefan Brüns                 if (offset == 0) {
162559baae9aSStefan Brüns                     memcpy_to_target(p, scratch, top - p);
162659baae9aSStefan Brüns                     top = p;
162759baae9aSStefan Brüns                     offset = TARGET_PAGE_SIZE;
162831e31b8aSbellard                 }
162931e31b8aSbellard             }
163031e31b8aSbellard         }
16317c4ee5bcSRichard Henderson         if (p != top) {
163259baae9aSStefan Brüns             memcpy_to_target(p, scratch + offset, top - p);
163359baae9aSStefan Brüns         }
16347c4ee5bcSRichard Henderson     } else {
16357c4ee5bcSRichard Henderson         int remaining = TARGET_PAGE_SIZE - (p % TARGET_PAGE_SIZE);
16367c4ee5bcSRichard Henderson         for (i = 0; i < argc; ++i) {
16377c4ee5bcSRichard Henderson             tmp = argv[i];
16387c4ee5bcSRichard Henderson             if (!tmp) {
16397c4ee5bcSRichard Henderson                 fprintf(stderr, "VFS: argc is wrong");
16407c4ee5bcSRichard Henderson                 exit(-1);
16417c4ee5bcSRichard Henderson             }
16427c4ee5bcSRichard Henderson             len = strlen(tmp) + 1;
16437c4ee5bcSRichard Henderson             if (len > (stack_limit - p)) {
16447c4ee5bcSRichard Henderson                 return 0;
16457c4ee5bcSRichard Henderson             }
16467c4ee5bcSRichard Henderson             while (len) {
16477c4ee5bcSRichard Henderson                 int bytes_to_copy = (len > remaining) ? remaining : len;
16487c4ee5bcSRichard Henderson 
16497c4ee5bcSRichard Henderson                 memcpy_fromfs(scratch + (p - top), tmp, bytes_to_copy);
16507c4ee5bcSRichard Henderson 
16517c4ee5bcSRichard Henderson                 tmp += bytes_to_copy;
16527c4ee5bcSRichard Henderson                 remaining -= bytes_to_copy;
16537c4ee5bcSRichard Henderson                 p += bytes_to_copy;
16547c4ee5bcSRichard Henderson                 len -= bytes_to_copy;
16557c4ee5bcSRichard Henderson 
16567c4ee5bcSRichard Henderson                 if (remaining == 0) {
16577c4ee5bcSRichard Henderson                     memcpy_to_target(top, scratch, p - top);
16587c4ee5bcSRichard Henderson                     top = p;
16597c4ee5bcSRichard Henderson                     remaining = TARGET_PAGE_SIZE;
16607c4ee5bcSRichard Henderson                 }
16617c4ee5bcSRichard Henderson             }
16627c4ee5bcSRichard Henderson         }
16637c4ee5bcSRichard Henderson         if (p != top) {
16647c4ee5bcSRichard Henderson             memcpy_to_target(top, scratch, p - top);
16657c4ee5bcSRichard Henderson         }
16667c4ee5bcSRichard Henderson     }
166759baae9aSStefan Brüns 
166831e31b8aSbellard     return p;
166931e31b8aSbellard }
167031e31b8aSbellard 
167159baae9aSStefan Brüns /* Older linux kernels provide up to MAX_ARG_PAGES (default: 32) of
167259baae9aSStefan Brüns  * argument/environment space. Newer kernels (>2.6.33) allow more,
167359baae9aSStefan Brüns  * dependent on stack size, but guarantee at least 32 pages for
167459baae9aSStefan Brüns  * backwards compatibility.
167559baae9aSStefan Brüns  */
167659baae9aSStefan Brüns #define STACK_LOWER_LIMIT (32 * TARGET_PAGE_SIZE)
167759baae9aSStefan Brüns 
167859baae9aSStefan Brüns static abi_ulong setup_arg_pages(struct linux_binprm *bprm,
167931e31b8aSbellard                                  struct image_info *info)
168031e31b8aSbellard {
168159baae9aSStefan Brüns     abi_ulong size, error, guard;
168231e31b8aSbellard 
1683703e0e89SRichard Henderson     size = guest_stack_size;
168459baae9aSStefan Brüns     if (size < STACK_LOWER_LIMIT) {
168559baae9aSStefan Brüns         size = STACK_LOWER_LIMIT;
168660dcbcb5SRichard Henderson     }
168760dcbcb5SRichard Henderson     guard = TARGET_PAGE_SIZE;
168860dcbcb5SRichard Henderson     if (guard < qemu_real_host_page_size) {
168960dcbcb5SRichard Henderson         guard = qemu_real_host_page_size;
169060dcbcb5SRichard Henderson     }
169160dcbcb5SRichard Henderson 
169260dcbcb5SRichard Henderson     error = target_mmap(0, size + guard, PROT_READ | PROT_WRITE,
169360dcbcb5SRichard Henderson                         MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
169409bfb054Sbellard     if (error == -1) {
169560dcbcb5SRichard Henderson         perror("mmap stack");
169631e31b8aSbellard         exit(-1);
169731e31b8aSbellard     }
169831e31b8aSbellard 
169960dcbcb5SRichard Henderson     /* We reserve one extra page at the top of the stack as guard.  */
17007c4ee5bcSRichard Henderson     if (STACK_GROWS_DOWN) {
170160dcbcb5SRichard Henderson         target_mprotect(error, guard, PROT_NONE);
170260dcbcb5SRichard Henderson         info->stack_limit = error + guard;
170359baae9aSStefan Brüns         return info->stack_limit + size - sizeof(void *);
17047c4ee5bcSRichard Henderson     } else {
17057c4ee5bcSRichard Henderson         target_mprotect(error + size, guard, PROT_NONE);
17067c4ee5bcSRichard Henderson         info->stack_limit = error + size;
17077c4ee5bcSRichard Henderson         return error;
17087c4ee5bcSRichard Henderson     }
170931e31b8aSbellard }
171031e31b8aSbellard 
1711cf129f3aSRichard Henderson /* Map and zero the bss.  We need to explicitly zero any fractional pages
1712cf129f3aSRichard Henderson    after the data section (i.e. bss).  */
1713cf129f3aSRichard Henderson static void zero_bss(abi_ulong elf_bss, abi_ulong last_bss, int prot)
171431e31b8aSbellard {
1715cf129f3aSRichard Henderson     uintptr_t host_start, host_map_start, host_end;
1716cf129f3aSRichard Henderson 
1717cf129f3aSRichard Henderson     last_bss = TARGET_PAGE_ALIGN(last_bss);
1718cf129f3aSRichard Henderson 
1719cf129f3aSRichard Henderson     /* ??? There is confusion between qemu_real_host_page_size and
1720cf129f3aSRichard Henderson        qemu_host_page_size here and elsewhere in target_mmap, which
1721cf129f3aSRichard Henderson        may lead to the end of the data section mapping from the file
1722cf129f3aSRichard Henderson        not being mapped.  At least there was an explicit test and
1723cf129f3aSRichard Henderson        comment for that here, suggesting that "the file size must
1724cf129f3aSRichard Henderson        be known".  The comment probably pre-dates the introduction
1725cf129f3aSRichard Henderson        of the fstat system call in target_mmap which does in fact
1726cf129f3aSRichard Henderson        find out the size.  What isn't clear is if the workaround
1727cf129f3aSRichard Henderson        here is still actually needed.  For now, continue with it,
1728cf129f3aSRichard Henderson        but merge it with the "normal" mmap that would allocate the bss.  */
1729cf129f3aSRichard Henderson 
1730cf129f3aSRichard Henderson     host_start = (uintptr_t) g2h(elf_bss);
1731cf129f3aSRichard Henderson     host_end = (uintptr_t) g2h(last_bss);
17320c2d70c4SPaolo Bonzini     host_map_start = REAL_HOST_PAGE_ALIGN(host_start);
1733cf129f3aSRichard Henderson 
1734cf129f3aSRichard Henderson     if (host_map_start < host_end) {
1735cf129f3aSRichard Henderson         void *p = mmap((void *)host_map_start, host_end - host_map_start,
1736cf129f3aSRichard Henderson                        prot, MAP_FIXED | MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
1737cf129f3aSRichard Henderson         if (p == MAP_FAILED) {
173831e31b8aSbellard             perror("cannot mmap brk");
173931e31b8aSbellard             exit(-1);
174031e31b8aSbellard         }
1741f46e9a0bSTom Musta     }
1742cf129f3aSRichard Henderson 
1743f46e9a0bSTom Musta     /* Ensure that the bss page(s) are valid */
1744f46e9a0bSTom Musta     if ((page_get_flags(last_bss-1) & prot) != prot) {
1745cf129f3aSRichard Henderson         page_set_flags(elf_bss & TARGET_PAGE_MASK, last_bss, prot | PAGE_VALID);
174631e31b8aSbellard     }
174731e31b8aSbellard 
1748cf129f3aSRichard Henderson     if (host_start < host_map_start) {
1749cf129f3aSRichard Henderson         memset((void *)host_start, 0, host_map_start - host_start);
1750853d6f7aSbellard     }
1751853d6f7aSbellard }
1752853d6f7aSbellard 
1753cf58affeSChristophe Lyon #ifdef TARGET_ARM
1754cf58affeSChristophe Lyon static int elf_is_fdpic(struct elfhdr *exec)
1755cf58affeSChristophe Lyon {
1756cf58affeSChristophe Lyon     return exec->e_ident[EI_OSABI] == ELFOSABI_ARM_FDPIC;
1757cf58affeSChristophe Lyon }
1758cf58affeSChristophe Lyon #else
1759a99856cdSChristophe Lyon /* Default implementation, always false.  */
1760a99856cdSChristophe Lyon static int elf_is_fdpic(struct elfhdr *exec)
1761a99856cdSChristophe Lyon {
1762a99856cdSChristophe Lyon     return 0;
1763a99856cdSChristophe Lyon }
1764cf58affeSChristophe Lyon #endif
1765a99856cdSChristophe Lyon 
17661af02e83SMike Frysinger static abi_ulong loader_build_fdpic_loadmap(struct image_info *info, abi_ulong sp)
17671af02e83SMike Frysinger {
17681af02e83SMike Frysinger     uint16_t n;
17691af02e83SMike Frysinger     struct elf32_fdpic_loadseg *loadsegs = info->loadsegs;
17701af02e83SMike Frysinger 
17711af02e83SMike Frysinger     /* elf32_fdpic_loadseg */
17721af02e83SMike Frysinger     n = info->nsegs;
17731af02e83SMike Frysinger     while (n--) {
17741af02e83SMike Frysinger         sp -= 12;
17751af02e83SMike Frysinger         put_user_u32(loadsegs[n].addr, sp+0);
17761af02e83SMike Frysinger         put_user_u32(loadsegs[n].p_vaddr, sp+4);
17771af02e83SMike Frysinger         put_user_u32(loadsegs[n].p_memsz, sp+8);
17781af02e83SMike Frysinger     }
17791af02e83SMike Frysinger 
17801af02e83SMike Frysinger     /* elf32_fdpic_loadmap */
17811af02e83SMike Frysinger     sp -= 4;
17821af02e83SMike Frysinger     put_user_u16(0, sp+0); /* version */
17831af02e83SMike Frysinger     put_user_u16(info->nsegs, sp+2); /* nsegs */
17841af02e83SMike Frysinger 
17851af02e83SMike Frysinger     info->personality = PER_LINUX_FDPIC;
17861af02e83SMike Frysinger     info->loadmap_addr = sp;
17871af02e83SMike Frysinger 
17881af02e83SMike Frysinger     return sp;
17891af02e83SMike Frysinger }
17901af02e83SMike Frysinger 
1791992f48a0Sblueswir1 static abi_ulong create_elf_tables(abi_ulong p, int argc, int envc,
179231e31b8aSbellard                                    struct elfhdr *exec,
17938e62a717SRichard Henderson                                    struct image_info *info,
17948e62a717SRichard Henderson                                    struct image_info *interp_info)
179531e31b8aSbellard {
1796992f48a0Sblueswir1     abi_ulong sp;
17977c4ee5bcSRichard Henderson     abi_ulong u_argc, u_argv, u_envp, u_auxv;
179853a5960aSpbrook     int size;
179914322badSLaurent ALFONSI     int i;
180014322badSLaurent ALFONSI     abi_ulong u_rand_bytes;
180114322badSLaurent ALFONSI     uint8_t k_rand_bytes[16];
1802992f48a0Sblueswir1     abi_ulong u_platform;
180315338fd7Sbellard     const char *k_platform;
1804863cf0b7Sj_mayer     const int n = sizeof(elf_addr_t);
180531e31b8aSbellard 
180653a5960aSpbrook     sp = p;
18071af02e83SMike Frysinger 
18081af02e83SMike Frysinger     /* Needs to be before we load the env/argc/... */
18091af02e83SMike Frysinger     if (elf_is_fdpic(exec)) {
18101af02e83SMike Frysinger         /* Need 4 byte alignment for these structs */
18111af02e83SMike Frysinger         sp &= ~3;
18121af02e83SMike Frysinger         sp = loader_build_fdpic_loadmap(info, sp);
18131af02e83SMike Frysinger         info->other_info = interp_info;
18141af02e83SMike Frysinger         if (interp_info) {
18151af02e83SMike Frysinger             interp_info->other_info = info;
18161af02e83SMike Frysinger             sp = loader_build_fdpic_loadmap(interp_info, sp);
18173cb10cfaSChristophe Lyon             info->interpreter_loadmap_addr = interp_info->loadmap_addr;
18183cb10cfaSChristophe Lyon             info->interpreter_pt_dynamic_addr = interp_info->pt_dynamic_addr;
18193cb10cfaSChristophe Lyon         } else {
18203cb10cfaSChristophe Lyon             info->interpreter_loadmap_addr = 0;
18213cb10cfaSChristophe Lyon             info->interpreter_pt_dynamic_addr = 0;
18221af02e83SMike Frysinger         }
18231af02e83SMike Frysinger     }
18241af02e83SMike Frysinger 
182553a5960aSpbrook     u_platform = 0;
182615338fd7Sbellard     k_platform = ELF_PLATFORM;
182715338fd7Sbellard     if (k_platform) {
182815338fd7Sbellard         size_t len = strlen(k_platform) + 1;
18297c4ee5bcSRichard Henderson         if (STACK_GROWS_DOWN) {
183053a5960aSpbrook             sp -= (len + n - 1) & ~(n - 1);
183153a5960aSpbrook             u_platform = sp;
1832579a97f7Sbellard             /* FIXME - check return value of memcpy_to_target() for failure */
183353a5960aSpbrook             memcpy_to_target(sp, k_platform, len);
18347c4ee5bcSRichard Henderson         } else {
18357c4ee5bcSRichard Henderson             memcpy_to_target(sp, k_platform, len);
18367c4ee5bcSRichard Henderson             u_platform = sp;
18377c4ee5bcSRichard Henderson             sp += len + 1;
18387c4ee5bcSRichard Henderson         }
18397c4ee5bcSRichard Henderson     }
18407c4ee5bcSRichard Henderson 
18417c4ee5bcSRichard Henderson     /* Provide 16 byte alignment for the PRNG, and basic alignment for
18427c4ee5bcSRichard Henderson      * the argv and envp pointers.
18437c4ee5bcSRichard Henderson      */
18447c4ee5bcSRichard Henderson     if (STACK_GROWS_DOWN) {
18457c4ee5bcSRichard Henderson         sp = QEMU_ALIGN_DOWN(sp, 16);
18467c4ee5bcSRichard Henderson     } else {
18477c4ee5bcSRichard Henderson         sp = QEMU_ALIGN_UP(sp, 16);
184815338fd7Sbellard     }
184914322badSLaurent ALFONSI 
185014322badSLaurent ALFONSI     /*
185114322badSLaurent ALFONSI      * Generate 16 random bytes for userspace PRNG seeding (not
185214322badSLaurent ALFONSI      * cryptically secure but it's not the aim of QEMU).
185314322badSLaurent ALFONSI      */
185414322badSLaurent ALFONSI     for (i = 0; i < 16; i++) {
185514322badSLaurent ALFONSI         k_rand_bytes[i] = rand();
185614322badSLaurent ALFONSI     }
18577c4ee5bcSRichard Henderson     if (STACK_GROWS_DOWN) {
185814322badSLaurent ALFONSI         sp -= 16;
185914322badSLaurent ALFONSI         u_rand_bytes = sp;
186014322badSLaurent ALFONSI         /* FIXME - check return value of memcpy_to_target() for failure */
186114322badSLaurent ALFONSI         memcpy_to_target(sp, k_rand_bytes, 16);
18627c4ee5bcSRichard Henderson     } else {
18637c4ee5bcSRichard Henderson         memcpy_to_target(sp, k_rand_bytes, 16);
18647c4ee5bcSRichard Henderson         u_rand_bytes = sp;
18657c4ee5bcSRichard Henderson         sp += 16;
18667c4ee5bcSRichard Henderson     }
186714322badSLaurent ALFONSI 
186853a5960aSpbrook     size = (DLINFO_ITEMS + 1) * 2;
186915338fd7Sbellard     if (k_platform)
187053a5960aSpbrook         size += 2;
1871f5155289Sbellard #ifdef DLINFO_ARCH_ITEMS
187253a5960aSpbrook     size += DLINFO_ARCH_ITEMS * 2;
1873f5155289Sbellard #endif
1874ad6919dcSPeter Maydell #ifdef ELF_HWCAP2
1875ad6919dcSPeter Maydell     size += 2;
1876ad6919dcSPeter Maydell #endif
1877f516511eSPeter Maydell     info->auxv_len = size * n;
1878f516511eSPeter Maydell 
187953a5960aSpbrook     size += envc + argc + 2;
1880b9329d4bSRichard Henderson     size += 1;  /* argc itself */
188153a5960aSpbrook     size *= n;
18827c4ee5bcSRichard Henderson 
18837c4ee5bcSRichard Henderson     /* Allocate space and finalize stack alignment for entry now.  */
18847c4ee5bcSRichard Henderson     if (STACK_GROWS_DOWN) {
18857c4ee5bcSRichard Henderson         u_argc = QEMU_ALIGN_DOWN(sp - size, STACK_ALIGNMENT);
18867c4ee5bcSRichard Henderson         sp = u_argc;
18877c4ee5bcSRichard Henderson     } else {
18887c4ee5bcSRichard Henderson         u_argc = sp;
18897c4ee5bcSRichard Henderson         sp = QEMU_ALIGN_UP(sp + size, STACK_ALIGNMENT);
18907c4ee5bcSRichard Henderson     }
18917c4ee5bcSRichard Henderson 
18927c4ee5bcSRichard Henderson     u_argv = u_argc + n;
18937c4ee5bcSRichard Henderson     u_envp = u_argv + (argc + 1) * n;
18947c4ee5bcSRichard Henderson     u_auxv = u_envp + (envc + 1) * n;
18957c4ee5bcSRichard Henderson     info->saved_auxv = u_auxv;
18967c4ee5bcSRichard Henderson     info->arg_start = u_argv;
18977c4ee5bcSRichard Henderson     info->arg_end = u_argv + argc * n;
1898f5155289Sbellard 
1899863cf0b7Sj_mayer     /* This is correct because Linux defines
1900863cf0b7Sj_mayer      * elf_addr_t as Elf32_Off / Elf64_Off
1901863cf0b7Sj_mayer      */
190253a5960aSpbrook #define NEW_AUX_ENT(id, val) do {               \
19037c4ee5bcSRichard Henderson         put_user_ual(id, u_auxv);  u_auxv += n; \
19047c4ee5bcSRichard Henderson         put_user_ual(val, u_auxv); u_auxv += n; \
190553a5960aSpbrook     } while(0)
19062f619698Sbellard 
190782991bedSPeter Maydell #ifdef ARCH_DLINFO
190882991bedSPeter Maydell     /*
190982991bedSPeter Maydell      * ARCH_DLINFO must come first so platform specific code can enforce
191082991bedSPeter Maydell      * special alignment requirements on the AUXV if necessary (eg. PPC).
191182991bedSPeter Maydell      */
191282991bedSPeter Maydell     ARCH_DLINFO;
191382991bedSPeter Maydell #endif
1914f516511eSPeter Maydell     /* There must be exactly DLINFO_ITEMS entries here, or the assert
1915f516511eSPeter Maydell      * on info->auxv_len will trigger.
1916f516511eSPeter Maydell      */
19178e62a717SRichard Henderson     NEW_AUX_ENT(AT_PHDR, (abi_ulong)(info->load_addr + exec->e_phoff));
1918992f48a0Sblueswir1     NEW_AUX_ENT(AT_PHENT, (abi_ulong)(sizeof (struct elf_phdr)));
1919992f48a0Sblueswir1     NEW_AUX_ENT(AT_PHNUM, (abi_ulong)(exec->e_phnum));
192033143c44SLaurent Vivier     if ((info->alignment & ~qemu_host_page_mask) != 0) {
192133143c44SLaurent Vivier         /* Target doesn't support host page size alignment */
192233143c44SLaurent Vivier         NEW_AUX_ENT(AT_PAGESZ, (abi_ulong)(TARGET_PAGE_SIZE));
192333143c44SLaurent Vivier     } else {
192433143c44SLaurent Vivier         NEW_AUX_ENT(AT_PAGESZ, (abi_ulong)(MAX(TARGET_PAGE_SIZE,
192533143c44SLaurent Vivier                                                qemu_host_page_size)));
192633143c44SLaurent Vivier     }
19278e62a717SRichard Henderson     NEW_AUX_ENT(AT_BASE, (abi_ulong)(interp_info ? interp_info->load_addr : 0));
1928992f48a0Sblueswir1     NEW_AUX_ENT(AT_FLAGS, (abi_ulong)0);
19298e62a717SRichard Henderson     NEW_AUX_ENT(AT_ENTRY, info->entry);
1930992f48a0Sblueswir1     NEW_AUX_ENT(AT_UID, (abi_ulong) getuid());
1931992f48a0Sblueswir1     NEW_AUX_ENT(AT_EUID, (abi_ulong) geteuid());
1932992f48a0Sblueswir1     NEW_AUX_ENT(AT_GID, (abi_ulong) getgid());
1933992f48a0Sblueswir1     NEW_AUX_ENT(AT_EGID, (abi_ulong) getegid());
1934992f48a0Sblueswir1     NEW_AUX_ENT(AT_HWCAP, (abi_ulong) ELF_HWCAP);
1935a07c67dfSpbrook     NEW_AUX_ENT(AT_CLKTCK, (abi_ulong) sysconf(_SC_CLK_TCK));
193614322badSLaurent ALFONSI     NEW_AUX_ENT(AT_RANDOM, (abi_ulong) u_rand_bytes);
1937444cd5c3SMarco A L Barbosa     NEW_AUX_ENT(AT_SECURE, (abi_ulong) qemu_getauxval(AT_SECURE));
193814322badSLaurent ALFONSI 
1939ad6919dcSPeter Maydell #ifdef ELF_HWCAP2
1940ad6919dcSPeter Maydell     NEW_AUX_ENT(AT_HWCAP2, (abi_ulong) ELF_HWCAP2);
1941ad6919dcSPeter Maydell #endif
1942ad6919dcSPeter Maydell 
19437c4ee5bcSRichard Henderson     if (u_platform) {
194453a5960aSpbrook         NEW_AUX_ENT(AT_PLATFORM, u_platform);
19457c4ee5bcSRichard Henderson     }
19467c4ee5bcSRichard Henderson     NEW_AUX_ENT (AT_NULL, 0);
1947f5155289Sbellard #undef NEW_AUX_ENT
1948f5155289Sbellard 
1949f516511eSPeter Maydell     /* Check that our initial calculation of the auxv length matches how much
1950f516511eSPeter Maydell      * we actually put into it.
1951f516511eSPeter Maydell      */
1952f516511eSPeter Maydell     assert(info->auxv_len == u_auxv - info->saved_auxv);
1953edf8e2afSMika Westerberg 
19547c4ee5bcSRichard Henderson     put_user_ual(argc, u_argc);
19557c4ee5bcSRichard Henderson 
19567c4ee5bcSRichard Henderson     p = info->arg_strings;
19577c4ee5bcSRichard Henderson     for (i = 0; i < argc; ++i) {
19587c4ee5bcSRichard Henderson         put_user_ual(p, u_argv);
19597c4ee5bcSRichard Henderson         u_argv += n;
19607c4ee5bcSRichard Henderson         p += target_strlen(p) + 1;
19617c4ee5bcSRichard Henderson     }
19627c4ee5bcSRichard Henderson     put_user_ual(0, u_argv);
19637c4ee5bcSRichard Henderson 
19647c4ee5bcSRichard Henderson     p = info->env_strings;
19657c4ee5bcSRichard Henderson     for (i = 0; i < envc; ++i) {
19667c4ee5bcSRichard Henderson         put_user_ual(p, u_envp);
19677c4ee5bcSRichard Henderson         u_envp += n;
19687c4ee5bcSRichard Henderson         p += target_strlen(p) + 1;
19697c4ee5bcSRichard Henderson     }
19707c4ee5bcSRichard Henderson     put_user_ual(0, u_envp);
19717c4ee5bcSRichard Henderson 
197231e31b8aSbellard     return sp;
197331e31b8aSbellard }
197431e31b8aSbellard 
1975dce10401SMeador Inge unsigned long init_guest_space(unsigned long host_start,
1976dce10401SMeador Inge                                unsigned long host_size,
1977dce10401SMeador Inge                                unsigned long guest_start,
1978dce10401SMeador Inge                                bool fixed)
1979dce10401SMeador Inge {
1980293f2060SLuke Shumaker     unsigned long current_start, aligned_start;
1981dce10401SMeador Inge     int flags;
1982dce10401SMeador Inge 
1983dce10401SMeador Inge     assert(host_start || host_size);
1984dce10401SMeador Inge 
1985dce10401SMeador Inge     /* If just a starting address is given, then just verify that
1986dce10401SMeador Inge      * address.  */
1987dce10401SMeador Inge     if (host_start && !host_size) {
19888756e136SLuke Shumaker #if defined(TARGET_ARM) && !defined(TARGET_AARCH64)
1989c3637eafSLuke Shumaker         if (init_guest_commpage(host_start, host_size) != 1) {
1990dce10401SMeador Inge             return (unsigned long)-1;
1991dce10401SMeador Inge         }
19928756e136SLuke Shumaker #endif
19938756e136SLuke Shumaker         return host_start;
1994dce10401SMeador Inge     }
1995dce10401SMeador Inge 
1996dce10401SMeador Inge     /* Setup the initial flags and start address.  */
1997dce10401SMeador Inge     current_start = host_start & qemu_host_page_mask;
1998dce10401SMeador Inge     flags = MAP_ANONYMOUS | MAP_PRIVATE | MAP_NORESERVE;
1999dce10401SMeador Inge     if (fixed) {
2000dce10401SMeador Inge         flags |= MAP_FIXED;
2001dce10401SMeador Inge     }
2002dce10401SMeador Inge 
2003dce10401SMeador Inge     /* Otherwise, a non-zero size region of memory needs to be mapped
2004dce10401SMeador Inge      * and validated.  */
20052a53535aSLuke Shumaker 
20062a53535aSLuke Shumaker #if defined(TARGET_ARM) && !defined(TARGET_AARCH64)
20072a53535aSLuke Shumaker     /* On 32-bit ARM, we need to map not just the usable memory, but
20082a53535aSLuke Shumaker      * also the commpage.  Try to find a suitable place by allocating
20092a53535aSLuke Shumaker      * a big chunk for all of it.  If host_start, then the naive
20102a53535aSLuke Shumaker      * strategy probably does good enough.
20112a53535aSLuke Shumaker      */
20122a53535aSLuke Shumaker     if (!host_start) {
20132a53535aSLuke Shumaker         unsigned long guest_full_size, host_full_size, real_start;
20142a53535aSLuke Shumaker 
20152a53535aSLuke Shumaker         guest_full_size =
20162a53535aSLuke Shumaker             (0xffff0f00 & qemu_host_page_mask) + qemu_host_page_size;
20172a53535aSLuke Shumaker         host_full_size = guest_full_size - guest_start;
20182a53535aSLuke Shumaker         real_start = (unsigned long)
20192a53535aSLuke Shumaker             mmap(NULL, host_full_size, PROT_NONE, flags, -1, 0);
20202a53535aSLuke Shumaker         if (real_start == (unsigned long)-1) {
20212a53535aSLuke Shumaker             if (host_size < host_full_size - qemu_host_page_size) {
20222a53535aSLuke Shumaker                 /* We failed to map a continous segment, but we're
20232a53535aSLuke Shumaker                  * allowed to have a gap between the usable memory and
20242a53535aSLuke Shumaker                  * the commpage where other things can be mapped.
20252a53535aSLuke Shumaker                  * This sparseness gives us more flexibility to find
20262a53535aSLuke Shumaker                  * an address range.
20272a53535aSLuke Shumaker                  */
20282a53535aSLuke Shumaker                 goto naive;
20292a53535aSLuke Shumaker             }
20302a53535aSLuke Shumaker             return (unsigned long)-1;
20312a53535aSLuke Shumaker         }
20322a53535aSLuke Shumaker         munmap((void *)real_start, host_full_size);
20332a53535aSLuke Shumaker         if (real_start & ~qemu_host_page_mask) {
20342a53535aSLuke Shumaker             /* The same thing again, but with an extra qemu_host_page_size
20352a53535aSLuke Shumaker              * so that we can shift around alignment.
20362a53535aSLuke Shumaker              */
20372a53535aSLuke Shumaker             unsigned long real_size = host_full_size + qemu_host_page_size;
20382a53535aSLuke Shumaker             real_start = (unsigned long)
20392a53535aSLuke Shumaker                 mmap(NULL, real_size, PROT_NONE, flags, -1, 0);
20402a53535aSLuke Shumaker             if (real_start == (unsigned long)-1) {
20412a53535aSLuke Shumaker                 if (host_size < host_full_size - qemu_host_page_size) {
20422a53535aSLuke Shumaker                     goto naive;
20432a53535aSLuke Shumaker                 }
20442a53535aSLuke Shumaker                 return (unsigned long)-1;
20452a53535aSLuke Shumaker             }
20462a53535aSLuke Shumaker             munmap((void *)real_start, real_size);
20472a53535aSLuke Shumaker             real_start = HOST_PAGE_ALIGN(real_start);
20482a53535aSLuke Shumaker         }
20492a53535aSLuke Shumaker         current_start = real_start;
20502a53535aSLuke Shumaker     }
20512a53535aSLuke Shumaker  naive:
20522a53535aSLuke Shumaker #endif
20532a53535aSLuke Shumaker 
2054dce10401SMeador Inge     while (1) {
2055293f2060SLuke Shumaker         unsigned long real_start, real_size, aligned_size;
2056293f2060SLuke Shumaker         aligned_size = real_size = host_size;
2057806d1021SMeador Inge 
2058dce10401SMeador Inge         /* Do not use mmap_find_vma here because that is limited to the
2059dce10401SMeador Inge          * guest address space.  We are going to make the
2060dce10401SMeador Inge          * guest address space fit whatever we're given.
2061dce10401SMeador Inge          */
2062dce10401SMeador Inge         real_start = (unsigned long)
2063dce10401SMeador Inge             mmap((void *)current_start, host_size, PROT_NONE, flags, -1, 0);
2064dce10401SMeador Inge         if (real_start == (unsigned long)-1) {
2065dce10401SMeador Inge             return (unsigned long)-1;
2066dce10401SMeador Inge         }
2067dce10401SMeador Inge 
2068aac362e4SLuke Shumaker         /* Check to see if the address is valid.  */
2069aac362e4SLuke Shumaker         if (host_start && real_start != current_start) {
2070aac362e4SLuke Shumaker             goto try_again;
2071aac362e4SLuke Shumaker         }
2072aac362e4SLuke Shumaker 
2073806d1021SMeador Inge         /* Ensure the address is properly aligned.  */
2074806d1021SMeador Inge         if (real_start & ~qemu_host_page_mask) {
2075293f2060SLuke Shumaker             /* Ideally, we adjust like
2076293f2060SLuke Shumaker              *
2077293f2060SLuke Shumaker              *    pages: [  ][  ][  ][  ][  ]
2078293f2060SLuke Shumaker              *      old:   [   real   ]
2079293f2060SLuke Shumaker              *             [ aligned  ]
2080293f2060SLuke Shumaker              *      new:   [     real     ]
2081293f2060SLuke Shumaker              *               [ aligned  ]
2082293f2060SLuke Shumaker              *
2083293f2060SLuke Shumaker              * But if there is something else mapped right after it,
2084293f2060SLuke Shumaker              * then obviously it won't have room to grow, and the
2085293f2060SLuke Shumaker              * kernel will put the new larger real someplace else with
2086293f2060SLuke Shumaker              * unknown alignment (if we made it to here, then
2087293f2060SLuke Shumaker              * fixed=false).  Which is why we grow real by a full page
2088293f2060SLuke Shumaker              * size, instead of by part of one; so that even if we get
2089293f2060SLuke Shumaker              * moved, we can still guarantee alignment.  But this does
2090293f2060SLuke Shumaker              * mean that there is a padding of < 1 page both before
2091293f2060SLuke Shumaker              * and after the aligned range; the "after" could could
2092293f2060SLuke Shumaker              * cause problems for ARM emulation where it could butt in
2093293f2060SLuke Shumaker              * to where we need to put the commpage.
2094293f2060SLuke Shumaker              */
2095806d1021SMeador Inge             munmap((void *)real_start, host_size);
2096293f2060SLuke Shumaker             real_size = aligned_size + qemu_host_page_size;
2097806d1021SMeador Inge             real_start = (unsigned long)
2098806d1021SMeador Inge                 mmap((void *)real_start, real_size, PROT_NONE, flags, -1, 0);
2099806d1021SMeador Inge             if (real_start == (unsigned long)-1) {
2100806d1021SMeador Inge                 return (unsigned long)-1;
2101806d1021SMeador Inge             }
2102293f2060SLuke Shumaker             aligned_start = HOST_PAGE_ALIGN(real_start);
2103293f2060SLuke Shumaker         } else {
2104293f2060SLuke Shumaker             aligned_start = real_start;
2105806d1021SMeador Inge         }
2106806d1021SMeador Inge 
21078756e136SLuke Shumaker #if defined(TARGET_ARM) && !defined(TARGET_AARCH64)
21088756e136SLuke Shumaker         /* On 32-bit ARM, we need to also be able to map the commpage.  */
2109293f2060SLuke Shumaker         int valid = init_guest_commpage(aligned_start - guest_start,
2110293f2060SLuke Shumaker                                         aligned_size + guest_start);
21117ad75eeaSLuke Shumaker         if (valid == -1) {
2112293f2060SLuke Shumaker             munmap((void *)real_start, real_size);
2113806d1021SMeador Inge             return (unsigned long)-1;
21147ad75eeaSLuke Shumaker         } else if (valid == 0) {
21157ad75eeaSLuke Shumaker             goto try_again;
2116806d1021SMeador Inge         }
21178756e136SLuke Shumaker #endif
2118dce10401SMeador Inge 
21197ad75eeaSLuke Shumaker         /* If nothing has said `return -1` or `goto try_again` yet,
21207ad75eeaSLuke Shumaker          * then the address we have is good.
21217ad75eeaSLuke Shumaker          */
21227ad75eeaSLuke Shumaker         break;
21237ad75eeaSLuke Shumaker 
21247ad75eeaSLuke Shumaker     try_again:
2125dce10401SMeador Inge         /* That address didn't work.  Unmap and try a different one.
2126dce10401SMeador Inge          * The address the host picked because is typically right at
2127dce10401SMeador Inge          * the top of the host address space and leaves the guest with
2128dce10401SMeador Inge          * no usable address space.  Resort to a linear search.  We
2129dce10401SMeador Inge          * already compensated for mmap_min_addr, so this should not
2130dce10401SMeador Inge          * happen often.  Probably means we got unlucky and host
2131dce10401SMeador Inge          * address space randomization put a shared library somewhere
2132dce10401SMeador Inge          * inconvenient.
21338c17d862SLuke Shumaker          *
21348c17d862SLuke Shumaker          * This is probably a good strategy if host_start, but is
21358c17d862SLuke Shumaker          * probably a bad strategy if not, which means we got here
21368c17d862SLuke Shumaker          * because of trouble with ARM commpage setup.
2137dce10401SMeador Inge          */
2138293f2060SLuke Shumaker         munmap((void *)real_start, real_size);
2139dce10401SMeador Inge         current_start += qemu_host_page_size;
2140dce10401SMeador Inge         if (host_start == current_start) {
2141dce10401SMeador Inge             /* Theoretically possible if host doesn't have any suitably
2142dce10401SMeador Inge              * aligned areas.  Normally the first mmap will fail.
2143dce10401SMeador Inge              */
2144dce10401SMeador Inge             return (unsigned long)-1;
2145dce10401SMeador Inge         }
2146dce10401SMeador Inge     }
2147dce10401SMeador Inge 
214813829020SPaolo Bonzini     qemu_log_mask(CPU_LOG_PAGE, "Reserved 0x%lx bytes of guest address space\n", host_size);
2149806d1021SMeador Inge 
2150293f2060SLuke Shumaker     return aligned_start;
2151dce10401SMeador Inge }
2152dce10401SMeador Inge 
2153f3ed1f5dSPeter Maydell static void probe_guest_base(const char *image_name,
2154f3ed1f5dSPeter Maydell                              abi_ulong loaddr, abi_ulong hiaddr)
2155f3ed1f5dSPeter Maydell {
2156f3ed1f5dSPeter Maydell     /* Probe for a suitable guest base address, if the user has not set
2157f3ed1f5dSPeter Maydell      * it explicitly, and set guest_base appropriately.
2158f3ed1f5dSPeter Maydell      * In case of error we will print a suitable message and exit.
2159f3ed1f5dSPeter Maydell      */
2160f3ed1f5dSPeter Maydell     const char *errmsg;
2161f3ed1f5dSPeter Maydell     if (!have_guest_base && !reserved_va) {
2162f3ed1f5dSPeter Maydell         unsigned long host_start, real_start, host_size;
2163f3ed1f5dSPeter Maydell 
2164f3ed1f5dSPeter Maydell         /* Round addresses to page boundaries.  */
2165f3ed1f5dSPeter Maydell         loaddr &= qemu_host_page_mask;
2166f3ed1f5dSPeter Maydell         hiaddr = HOST_PAGE_ALIGN(hiaddr);
2167f3ed1f5dSPeter Maydell 
2168f3ed1f5dSPeter Maydell         if (loaddr < mmap_min_addr) {
2169f3ed1f5dSPeter Maydell             host_start = HOST_PAGE_ALIGN(mmap_min_addr);
2170f3ed1f5dSPeter Maydell         } else {
2171f3ed1f5dSPeter Maydell             host_start = loaddr;
2172f3ed1f5dSPeter Maydell             if (host_start != loaddr) {
2173f3ed1f5dSPeter Maydell                 errmsg = "Address overflow loading ELF binary";
2174f3ed1f5dSPeter Maydell                 goto exit_errmsg;
2175f3ed1f5dSPeter Maydell             }
2176f3ed1f5dSPeter Maydell         }
2177f3ed1f5dSPeter Maydell         host_size = hiaddr - loaddr;
2178dce10401SMeador Inge 
2179dce10401SMeador Inge         /* Setup the initial guest memory space with ranges gleaned from
2180dce10401SMeador Inge          * the ELF image that is being loaded.
2181dce10401SMeador Inge          */
2182dce10401SMeador Inge         real_start = init_guest_space(host_start, host_size, loaddr, false);
2183f3ed1f5dSPeter Maydell         if (real_start == (unsigned long)-1) {
2184f3ed1f5dSPeter Maydell             errmsg = "Unable to find space for application";
2185f3ed1f5dSPeter Maydell             goto exit_errmsg;
2186f3ed1f5dSPeter Maydell         }
2187dce10401SMeador Inge         guest_base = real_start - loaddr;
2188dce10401SMeador Inge 
218913829020SPaolo Bonzini         qemu_log_mask(CPU_LOG_PAGE, "Relocating guest address space from 0x"
2190f3ed1f5dSPeter Maydell                       TARGET_ABI_FMT_lx " to 0x%lx\n",
2191f3ed1f5dSPeter Maydell                       loaddr, real_start);
2192f3ed1f5dSPeter Maydell     }
2193f3ed1f5dSPeter Maydell     return;
2194f3ed1f5dSPeter Maydell 
2195f3ed1f5dSPeter Maydell exit_errmsg:
2196f3ed1f5dSPeter Maydell     fprintf(stderr, "%s: %s\n", image_name, errmsg);
2197f3ed1f5dSPeter Maydell     exit(-1);
2198f3ed1f5dSPeter Maydell }
2199f3ed1f5dSPeter Maydell 
2200f3ed1f5dSPeter Maydell 
22018e62a717SRichard Henderson /* Load an ELF image into the address space.
220231e31b8aSbellard 
22038e62a717SRichard Henderson    IMAGE_NAME is the filename of the image, to use in error messages.
22048e62a717SRichard Henderson    IMAGE_FD is the open file descriptor for the image.
22058e62a717SRichard Henderson 
22068e62a717SRichard Henderson    BPRM_BUF is a copy of the beginning of the file; this of course
22078e62a717SRichard Henderson    contains the elf file header at offset 0.  It is assumed that this
22088e62a717SRichard Henderson    buffer is sufficiently aligned to present no problems to the host
22098e62a717SRichard Henderson    in accessing data at aligned offsets within the buffer.
22108e62a717SRichard Henderson 
22118e62a717SRichard Henderson    On return: INFO values will be filled in, as necessary or available.  */
22128e62a717SRichard Henderson 
22138e62a717SRichard Henderson static void load_elf_image(const char *image_name, int image_fd,
2214bf858897SRichard Henderson                            struct image_info *info, char **pinterp_name,
22159955ffacSRichard Henderson                            char bprm_buf[BPRM_BUF_SIZE])
221631e31b8aSbellard {
22178e62a717SRichard Henderson     struct elfhdr *ehdr = (struct elfhdr *)bprm_buf;
22188e62a717SRichard Henderson     struct elf_phdr *phdr;
22198e62a717SRichard Henderson     abi_ulong load_addr, load_bias, loaddr, hiaddr, error;
22208e62a717SRichard Henderson     int i, retval;
22218e62a717SRichard Henderson     const char *errmsg;
222231e31b8aSbellard 
22238e62a717SRichard Henderson     /* First of all, some simple consistency checks */
22248e62a717SRichard Henderson     errmsg = "Invalid ELF image for this architecture";
22258e62a717SRichard Henderson     if (!elf_check_ident(ehdr)) {
22268e62a717SRichard Henderson         goto exit_errmsg;
22278e62a717SRichard Henderson     }
22288e62a717SRichard Henderson     bswap_ehdr(ehdr);
22298e62a717SRichard Henderson     if (!elf_check_ehdr(ehdr)) {
22308e62a717SRichard Henderson         goto exit_errmsg;
223131e31b8aSbellard     }
223231e31b8aSbellard 
22338e62a717SRichard Henderson     i = ehdr->e_phnum * sizeof(struct elf_phdr);
22348e62a717SRichard Henderson     if (ehdr->e_phoff + i <= BPRM_BUF_SIZE) {
22358e62a717SRichard Henderson         phdr = (struct elf_phdr *)(bprm_buf + ehdr->e_phoff);
22369955ffacSRichard Henderson     } else {
22378e62a717SRichard Henderson         phdr = (struct elf_phdr *) alloca(i);
22388e62a717SRichard Henderson         retval = pread(image_fd, phdr, i, ehdr->e_phoff);
22399955ffacSRichard Henderson         if (retval != i) {
22408e62a717SRichard Henderson             goto exit_read;
22419955ffacSRichard Henderson         }
224231e31b8aSbellard     }
22438e62a717SRichard Henderson     bswap_phdr(phdr, ehdr->e_phnum);
224409bfb054Sbellard 
22451af02e83SMike Frysinger     info->nsegs = 0;
22461af02e83SMike Frysinger     info->pt_dynamic_addr = 0;
22471af02e83SMike Frysinger 
224898c1076cSAlex Bennée     mmap_lock();
224998c1076cSAlex Bennée 
2250682674b8SRichard Henderson     /* Find the maximum size of the image and allocate an appropriate
2251682674b8SRichard Henderson        amount of memory to handle that.  */
2252682674b8SRichard Henderson     loaddr = -1, hiaddr = 0;
225333143c44SLaurent Vivier     info->alignment = 0;
22548e62a717SRichard Henderson     for (i = 0; i < ehdr->e_phnum; ++i) {
22558e62a717SRichard Henderson         if (phdr[i].p_type == PT_LOAD) {
2256a93934feSJonas Maebe             abi_ulong a = phdr[i].p_vaddr - phdr[i].p_offset;
2257682674b8SRichard Henderson             if (a < loaddr) {
2258682674b8SRichard Henderson                 loaddr = a;
2259682674b8SRichard Henderson             }
2260ccf661f8STom Musta             a = phdr[i].p_vaddr + phdr[i].p_memsz;
2261682674b8SRichard Henderson             if (a > hiaddr) {
2262682674b8SRichard Henderson                 hiaddr = a;
2263682674b8SRichard Henderson             }
22641af02e83SMike Frysinger             ++info->nsegs;
226533143c44SLaurent Vivier             info->alignment |= phdr[i].p_align;
2266682674b8SRichard Henderson         }
2267682674b8SRichard Henderson     }
2268682674b8SRichard Henderson 
2269682674b8SRichard Henderson     load_addr = loaddr;
22708e62a717SRichard Henderson     if (ehdr->e_type == ET_DYN) {
2271682674b8SRichard Henderson         /* The image indicates that it can be loaded anywhere.  Find a
2272682674b8SRichard Henderson            location that can hold the memory space required.  If the
2273682674b8SRichard Henderson            image is pre-linked, LOADDR will be non-zero.  Since we do
2274682674b8SRichard Henderson            not supply MAP_FIXED here we'll use that address if and
2275682674b8SRichard Henderson            only if it remains available.  */
2276682674b8SRichard Henderson         load_addr = target_mmap(loaddr, hiaddr - loaddr, PROT_NONE,
2277682674b8SRichard Henderson                                 MAP_PRIVATE | MAP_ANON | MAP_NORESERVE,
227809bfb054Sbellard                                 -1, 0);
2279682674b8SRichard Henderson         if (load_addr == -1) {
22808e62a717SRichard Henderson             goto exit_perror;
228109bfb054Sbellard         }
2282bf858897SRichard Henderson     } else if (pinterp_name != NULL) {
2283bf858897SRichard Henderson         /* This is the main executable.  Make sure that the low
2284bf858897SRichard Henderson            address does not conflict with MMAP_MIN_ADDR or the
2285bf858897SRichard Henderson            QEMU application itself.  */
2286f3ed1f5dSPeter Maydell         probe_guest_base(image_name, loaddr, hiaddr);
228709bfb054Sbellard     }
2288682674b8SRichard Henderson     load_bias = load_addr - loaddr;
228909bfb054Sbellard 
2290a99856cdSChristophe Lyon     if (elf_is_fdpic(ehdr)) {
22911af02e83SMike Frysinger         struct elf32_fdpic_loadseg *loadsegs = info->loadsegs =
22927267c094SAnthony Liguori             g_malloc(sizeof(*loadsegs) * info->nsegs);
22931af02e83SMike Frysinger 
22941af02e83SMike Frysinger         for (i = 0; i < ehdr->e_phnum; ++i) {
22951af02e83SMike Frysinger             switch (phdr[i].p_type) {
22961af02e83SMike Frysinger             case PT_DYNAMIC:
22971af02e83SMike Frysinger                 info->pt_dynamic_addr = phdr[i].p_vaddr + load_bias;
22981af02e83SMike Frysinger                 break;
22991af02e83SMike Frysinger             case PT_LOAD:
23001af02e83SMike Frysinger                 loadsegs->addr = phdr[i].p_vaddr + load_bias;
23011af02e83SMike Frysinger                 loadsegs->p_vaddr = phdr[i].p_vaddr;
23021af02e83SMike Frysinger                 loadsegs->p_memsz = phdr[i].p_memsz;
23031af02e83SMike Frysinger                 ++loadsegs;
23041af02e83SMike Frysinger                 break;
23051af02e83SMike Frysinger             }
23061af02e83SMike Frysinger         }
23071af02e83SMike Frysinger     }
23081af02e83SMike Frysinger 
23098e62a717SRichard Henderson     info->load_bias = load_bias;
23108e62a717SRichard Henderson     info->load_addr = load_addr;
23118e62a717SRichard Henderson     info->entry = ehdr->e_entry + load_bias;
23128e62a717SRichard Henderson     info->start_code = -1;
23138e62a717SRichard Henderson     info->end_code = 0;
23148e62a717SRichard Henderson     info->start_data = -1;
23158e62a717SRichard Henderson     info->end_data = 0;
23168e62a717SRichard Henderson     info->brk = 0;
2317d8fd2954SPaul Brook     info->elf_flags = ehdr->e_flags;
23188e62a717SRichard Henderson 
23198e62a717SRichard Henderson     for (i = 0; i < ehdr->e_phnum; i++) {
23208e62a717SRichard Henderson         struct elf_phdr *eppnt = phdr + i;
232131e31b8aSbellard         if (eppnt->p_type == PT_LOAD) {
232294894ff2SShivaprasad G Bhat             abi_ulong vaddr, vaddr_po, vaddr_ps, vaddr_ef, vaddr_em, vaddr_len;
232331e31b8aSbellard             int elf_prot = 0;
232431e31b8aSbellard 
232531e31b8aSbellard             if (eppnt->p_flags & PF_R) elf_prot =  PROT_READ;
232631e31b8aSbellard             if (eppnt->p_flags & PF_W) elf_prot |= PROT_WRITE;
232731e31b8aSbellard             if (eppnt->p_flags & PF_X) elf_prot |= PROT_EXEC;
232831e31b8aSbellard 
2329682674b8SRichard Henderson             vaddr = load_bias + eppnt->p_vaddr;
2330682674b8SRichard Henderson             vaddr_po = TARGET_ELF_PAGEOFFSET(vaddr);
2331682674b8SRichard Henderson             vaddr_ps = TARGET_ELF_PAGESTART(vaddr);
233294894ff2SShivaprasad G Bhat             vaddr_len = TARGET_ELF_PAGELENGTH(eppnt->p_filesz + vaddr_po);
2333682674b8SRichard Henderson 
233494894ff2SShivaprasad G Bhat             error = target_mmap(vaddr_ps, vaddr_len,
2335682674b8SRichard Henderson                                 elf_prot, MAP_PRIVATE | MAP_FIXED,
23368e62a717SRichard Henderson                                 image_fd, eppnt->p_offset - vaddr_po);
2337e89f07d3Spbrook             if (error == -1) {
23388e62a717SRichard Henderson                 goto exit_perror;
233931e31b8aSbellard             }
234031e31b8aSbellard 
2341682674b8SRichard Henderson             vaddr_ef = vaddr + eppnt->p_filesz;
2342682674b8SRichard Henderson             vaddr_em = vaddr + eppnt->p_memsz;
234331e31b8aSbellard 
2344cf129f3aSRichard Henderson             /* If the load segment requests extra zeros (e.g. bss), map it.  */
2345682674b8SRichard Henderson             if (vaddr_ef < vaddr_em) {
2346682674b8SRichard Henderson                 zero_bss(vaddr_ef, vaddr_em, elf_prot);
2347682674b8SRichard Henderson             }
23488e62a717SRichard Henderson 
23498e62a717SRichard Henderson             /* Find the full program boundaries.  */
23508e62a717SRichard Henderson             if (elf_prot & PROT_EXEC) {
23518e62a717SRichard Henderson                 if (vaddr < info->start_code) {
23528e62a717SRichard Henderson                     info->start_code = vaddr;
2353cf129f3aSRichard Henderson                 }
23548e62a717SRichard Henderson                 if (vaddr_ef > info->end_code) {
23558e62a717SRichard Henderson                     info->end_code = vaddr_ef;
23568e62a717SRichard Henderson                 }
23578e62a717SRichard Henderson             }
23588e62a717SRichard Henderson             if (elf_prot & PROT_WRITE) {
23598e62a717SRichard Henderson                 if (vaddr < info->start_data) {
23608e62a717SRichard Henderson                     info->start_data = vaddr;
23618e62a717SRichard Henderson                 }
23628e62a717SRichard Henderson                 if (vaddr_ef > info->end_data) {
23638e62a717SRichard Henderson                     info->end_data = vaddr_ef;
23648e62a717SRichard Henderson                 }
23658e62a717SRichard Henderson                 if (vaddr_em > info->brk) {
23668e62a717SRichard Henderson                     info->brk = vaddr_em;
23678e62a717SRichard Henderson                 }
23688e62a717SRichard Henderson             }
2369bf858897SRichard Henderson         } else if (eppnt->p_type == PT_INTERP && pinterp_name) {
2370bf858897SRichard Henderson             char *interp_name;
2371bf858897SRichard Henderson 
2372bf858897SRichard Henderson             if (*pinterp_name) {
2373bf858897SRichard Henderson                 errmsg = "Multiple PT_INTERP entries";
2374bf858897SRichard Henderson                 goto exit_errmsg;
2375bf858897SRichard Henderson             }
2376bf858897SRichard Henderson             interp_name = malloc(eppnt->p_filesz);
2377bf858897SRichard Henderson             if (!interp_name) {
2378bf858897SRichard Henderson                 goto exit_perror;
2379bf858897SRichard Henderson             }
2380bf858897SRichard Henderson 
2381bf858897SRichard Henderson             if (eppnt->p_offset + eppnt->p_filesz <= BPRM_BUF_SIZE) {
2382bf858897SRichard Henderson                 memcpy(interp_name, bprm_buf + eppnt->p_offset,
2383bf858897SRichard Henderson                        eppnt->p_filesz);
2384bf858897SRichard Henderson             } else {
2385bf858897SRichard Henderson                 retval = pread(image_fd, interp_name, eppnt->p_filesz,
2386bf858897SRichard Henderson                                eppnt->p_offset);
2387bf858897SRichard Henderson                 if (retval != eppnt->p_filesz) {
2388bf858897SRichard Henderson                     goto exit_perror;
2389bf858897SRichard Henderson                 }
2390bf858897SRichard Henderson             }
2391bf858897SRichard Henderson             if (interp_name[eppnt->p_filesz - 1] != 0) {
2392bf858897SRichard Henderson                 errmsg = "Invalid PT_INTERP entry";
2393bf858897SRichard Henderson                 goto exit_errmsg;
2394bf858897SRichard Henderson             }
2395bf858897SRichard Henderson             *pinterp_name = interp_name;
23965dd0db52SStefan Markovic #ifdef TARGET_MIPS
23975dd0db52SStefan Markovic         } else if (eppnt->p_type == PT_MIPS_ABIFLAGS) {
23985dd0db52SStefan Markovic             Mips_elf_abiflags_v0 abiflags;
23995dd0db52SStefan Markovic             if (eppnt->p_filesz < sizeof(Mips_elf_abiflags_v0)) {
24005dd0db52SStefan Markovic                 errmsg = "Invalid PT_MIPS_ABIFLAGS entry";
24015dd0db52SStefan Markovic                 goto exit_errmsg;
24025dd0db52SStefan Markovic             }
24035dd0db52SStefan Markovic             if (eppnt->p_offset + eppnt->p_filesz <= BPRM_BUF_SIZE) {
24045dd0db52SStefan Markovic                 memcpy(&abiflags, bprm_buf + eppnt->p_offset,
24055dd0db52SStefan Markovic                        sizeof(Mips_elf_abiflags_v0));
24065dd0db52SStefan Markovic             } else {
24075dd0db52SStefan Markovic                 retval = pread(image_fd, &abiflags, sizeof(Mips_elf_abiflags_v0),
24085dd0db52SStefan Markovic                                eppnt->p_offset);
24095dd0db52SStefan Markovic                 if (retval != sizeof(Mips_elf_abiflags_v0)) {
24105dd0db52SStefan Markovic                     goto exit_perror;
24115dd0db52SStefan Markovic                 }
24125dd0db52SStefan Markovic             }
24135dd0db52SStefan Markovic             bswap_mips_abiflags(&abiflags);
2414c94cb6c9SStefan Markovic             info->fp_abi = abiflags.fp_abi;
24155dd0db52SStefan Markovic #endif
24168e62a717SRichard Henderson         }
24178e62a717SRichard Henderson     }
24188e62a717SRichard Henderson 
24198e62a717SRichard Henderson     if (info->end_data == 0) {
24208e62a717SRichard Henderson         info->start_data = info->end_code;
24218e62a717SRichard Henderson         info->end_data = info->end_code;
24228e62a717SRichard Henderson         info->brk = info->end_code;
242331e31b8aSbellard     }
242431e31b8aSbellard 
2425682674b8SRichard Henderson     if (qemu_log_enabled()) {
24268e62a717SRichard Henderson         load_symbols(ehdr, image_fd, load_bias);
2427682674b8SRichard Henderson     }
242831e31b8aSbellard 
242998c1076cSAlex Bennée     mmap_unlock();
243098c1076cSAlex Bennée 
24318e62a717SRichard Henderson     close(image_fd);
24328e62a717SRichard Henderson     return;
243331e31b8aSbellard 
24348e62a717SRichard Henderson  exit_read:
24358e62a717SRichard Henderson     if (retval >= 0) {
24368e62a717SRichard Henderson         errmsg = "Incomplete read of file header";
24378e62a717SRichard Henderson         goto exit_errmsg;
24388e62a717SRichard Henderson     }
24398e62a717SRichard Henderson  exit_perror:
24408e62a717SRichard Henderson     errmsg = strerror(errno);
24418e62a717SRichard Henderson  exit_errmsg:
24428e62a717SRichard Henderson     fprintf(stderr, "%s: %s\n", image_name, errmsg);
24438e62a717SRichard Henderson     exit(-1);
24448e62a717SRichard Henderson }
24458e62a717SRichard Henderson 
24468e62a717SRichard Henderson static void load_elf_interp(const char *filename, struct image_info *info,
24478e62a717SRichard Henderson                             char bprm_buf[BPRM_BUF_SIZE])
24488e62a717SRichard Henderson {
24498e62a717SRichard Henderson     int fd, retval;
24508e62a717SRichard Henderson 
24518e62a717SRichard Henderson     fd = open(path(filename), O_RDONLY);
24528e62a717SRichard Henderson     if (fd < 0) {
24538e62a717SRichard Henderson         goto exit_perror;
24548e62a717SRichard Henderson     }
24558e62a717SRichard Henderson 
24568e62a717SRichard Henderson     retval = read(fd, bprm_buf, BPRM_BUF_SIZE);
24578e62a717SRichard Henderson     if (retval < 0) {
24588e62a717SRichard Henderson         goto exit_perror;
24598e62a717SRichard Henderson     }
24608e62a717SRichard Henderson     if (retval < BPRM_BUF_SIZE) {
24618e62a717SRichard Henderson         memset(bprm_buf + retval, 0, BPRM_BUF_SIZE - retval);
24628e62a717SRichard Henderson     }
24638e62a717SRichard Henderson 
2464bf858897SRichard Henderson     load_elf_image(filename, fd, info, NULL, bprm_buf);
24658e62a717SRichard Henderson     return;
24668e62a717SRichard Henderson 
24678e62a717SRichard Henderson  exit_perror:
24688e62a717SRichard Henderson     fprintf(stderr, "%s: %s\n", filename, strerror(errno));
24698e62a717SRichard Henderson     exit(-1);
247031e31b8aSbellard }
247131e31b8aSbellard 
247249918a75Spbrook static int symfind(const void *s0, const void *s1)
247349918a75Spbrook {
2474c7c530cdSStefan Weil     target_ulong addr = *(target_ulong *)s0;
247549918a75Spbrook     struct elf_sym *sym = (struct elf_sym *)s1;
247649918a75Spbrook     int result = 0;
2477c7c530cdSStefan Weil     if (addr < sym->st_value) {
247849918a75Spbrook         result = -1;
2479c7c530cdSStefan Weil     } else if (addr >= sym->st_value + sym->st_size) {
248049918a75Spbrook         result = 1;
248149918a75Spbrook     }
248249918a75Spbrook     return result;
248349918a75Spbrook }
248449918a75Spbrook 
248549918a75Spbrook static const char *lookup_symbolxx(struct syminfo *s, target_ulong orig_addr)
248649918a75Spbrook {
248749918a75Spbrook #if ELF_CLASS == ELFCLASS32
248849918a75Spbrook     struct elf_sym *syms = s->disas_symtab.elf32;
248949918a75Spbrook #else
249049918a75Spbrook     struct elf_sym *syms = s->disas_symtab.elf64;
249149918a75Spbrook #endif
249249918a75Spbrook 
249349918a75Spbrook     // binary search
249449918a75Spbrook     struct elf_sym *sym;
249549918a75Spbrook 
2496c7c530cdSStefan Weil     sym = bsearch(&orig_addr, syms, s->disas_num_syms, sizeof(*syms), symfind);
24977cba04f6SBlue Swirl     if (sym != NULL) {
249849918a75Spbrook         return s->disas_strtab + sym->st_name;
249949918a75Spbrook     }
250049918a75Spbrook 
250149918a75Spbrook     return "";
250249918a75Spbrook }
250349918a75Spbrook 
250449918a75Spbrook /* FIXME: This should use elf_ops.h  */
250549918a75Spbrook static int symcmp(const void *s0, const void *s1)
250649918a75Spbrook {
250749918a75Spbrook     struct elf_sym *sym0 = (struct elf_sym *)s0;
250849918a75Spbrook     struct elf_sym *sym1 = (struct elf_sym *)s1;
250949918a75Spbrook     return (sym0->st_value < sym1->st_value)
251049918a75Spbrook         ? -1
251149918a75Spbrook         : ((sym0->st_value > sym1->st_value) ? 1 : 0);
251249918a75Spbrook }
251349918a75Spbrook 
2514689f936fSbellard /* Best attempt to load symbols from this ELF object. */
2515682674b8SRichard Henderson static void load_symbols(struct elfhdr *hdr, int fd, abi_ulong load_bias)
2516689f936fSbellard {
2517682674b8SRichard Henderson     int i, shnum, nsyms, sym_idx = 0, str_idx = 0;
25181e06262dSPeter Maydell     uint64_t segsz;
2519682674b8SRichard Henderson     struct elf_shdr *shdr;
2520b9475279SCédric VINCENT     char *strings = NULL;
2521b9475279SCédric VINCENT     struct syminfo *s = NULL;
2522b9475279SCédric VINCENT     struct elf_sym *new_syms, *syms = NULL;
252331e31b8aSbellard 
2524682674b8SRichard Henderson     shnum = hdr->e_shnum;
2525682674b8SRichard Henderson     i = shnum * sizeof(struct elf_shdr);
2526682674b8SRichard Henderson     shdr = (struct elf_shdr *)alloca(i);
2527682674b8SRichard Henderson     if (pread(fd, shdr, i, hdr->e_shoff) != i) {
2528689f936fSbellard         return;
2529682674b8SRichard Henderson     }
2530682674b8SRichard Henderson 
2531682674b8SRichard Henderson     bswap_shdr(shdr, shnum);
2532682674b8SRichard Henderson     for (i = 0; i < shnum; ++i) {
2533682674b8SRichard Henderson         if (shdr[i].sh_type == SHT_SYMTAB) {
2534682674b8SRichard Henderson             sym_idx = i;
2535682674b8SRichard Henderson             str_idx = shdr[i].sh_link;
2536689f936fSbellard             goto found;
2537689f936fSbellard         }
2538689f936fSbellard     }
2539682674b8SRichard Henderson 
2540682674b8SRichard Henderson     /* There will be no symbol table if the file was stripped.  */
2541682674b8SRichard Henderson     return;
2542689f936fSbellard 
2543689f936fSbellard  found:
2544689f936fSbellard     /* Now know where the strtab and symtab are.  Snarf them.  */
25450ef9ea29SPeter Maydell     s = g_try_new(struct syminfo, 1);
2546682674b8SRichard Henderson     if (!s) {
2547b9475279SCédric VINCENT         goto give_up;
2548682674b8SRichard Henderson     }
2549682674b8SRichard Henderson 
25501e06262dSPeter Maydell     segsz = shdr[str_idx].sh_size;
25511e06262dSPeter Maydell     s->disas_strtab = strings = g_try_malloc(segsz);
25521e06262dSPeter Maydell     if (!strings ||
25531e06262dSPeter Maydell         pread(fd, strings, segsz, shdr[str_idx].sh_offset) != segsz) {
2554b9475279SCédric VINCENT         goto give_up;
2555682674b8SRichard Henderson     }
2556689f936fSbellard 
25571e06262dSPeter Maydell     segsz = shdr[sym_idx].sh_size;
25581e06262dSPeter Maydell     syms = g_try_malloc(segsz);
25591e06262dSPeter Maydell     if (!syms || pread(fd, syms, segsz, shdr[sym_idx].sh_offset) != segsz) {
2560b9475279SCédric VINCENT         goto give_up;
2561682674b8SRichard Henderson     }
2562689f936fSbellard 
25631e06262dSPeter Maydell     if (segsz / sizeof(struct elf_sym) > INT_MAX) {
25641e06262dSPeter Maydell         /* Implausibly large symbol table: give up rather than ploughing
25651e06262dSPeter Maydell          * on with the number of symbols calculation overflowing
25661e06262dSPeter Maydell          */
25671e06262dSPeter Maydell         goto give_up;
25681e06262dSPeter Maydell     }
25691e06262dSPeter Maydell     nsyms = segsz / sizeof(struct elf_sym);
2570682674b8SRichard Henderson     for (i = 0; i < nsyms; ) {
257149918a75Spbrook         bswap_sym(syms + i);
2572682674b8SRichard Henderson         /* Throw away entries which we do not need.  */
2573682674b8SRichard Henderson         if (syms[i].st_shndx == SHN_UNDEF
2574682674b8SRichard Henderson             || syms[i].st_shndx >= SHN_LORESERVE
2575682674b8SRichard Henderson             || ELF_ST_TYPE(syms[i].st_info) != STT_FUNC) {
2576682674b8SRichard Henderson             if (i < --nsyms) {
257749918a75Spbrook                 syms[i] = syms[nsyms];
257849918a75Spbrook             }
2579682674b8SRichard Henderson         } else {
258049918a75Spbrook #if defined(TARGET_ARM) || defined (TARGET_MIPS)
258149918a75Spbrook             /* The bottom address bit marks a Thumb or MIPS16 symbol.  */
258249918a75Spbrook             syms[i].st_value &= ~(target_ulong)1;
258349918a75Spbrook #endif
2584682674b8SRichard Henderson             syms[i].st_value += load_bias;
258549918a75Spbrook             i++;
258649918a75Spbrook         }
2587682674b8SRichard Henderson     }
258849918a75Spbrook 
2589b9475279SCédric VINCENT     /* No "useful" symbol.  */
2590b9475279SCédric VINCENT     if (nsyms == 0) {
2591b9475279SCédric VINCENT         goto give_up;
2592b9475279SCédric VINCENT     }
2593b9475279SCédric VINCENT 
25945d5c9930SRichard Henderson     /* Attempt to free the storage associated with the local symbols
25955d5c9930SRichard Henderson        that we threw away.  Whether or not this has any effect on the
25965d5c9930SRichard Henderson        memory allocation depends on the malloc implementation and how
25975d5c9930SRichard Henderson        many symbols we managed to discard.  */
25980ef9ea29SPeter Maydell     new_syms = g_try_renew(struct elf_sym, syms, nsyms);
25998d79de6eSStefan Weil     if (new_syms == NULL) {
2600b9475279SCédric VINCENT         goto give_up;
26015d5c9930SRichard Henderson     }
26028d79de6eSStefan Weil     syms = new_syms;
26035d5c9930SRichard Henderson 
260449918a75Spbrook     qsort(syms, nsyms, sizeof(*syms), symcmp);
260549918a75Spbrook 
260649918a75Spbrook     s->disas_num_syms = nsyms;
260749918a75Spbrook #if ELF_CLASS == ELFCLASS32
260849918a75Spbrook     s->disas_symtab.elf32 = syms;
260949918a75Spbrook #else
261049918a75Spbrook     s->disas_symtab.elf64 = syms;
261149918a75Spbrook #endif
2612682674b8SRichard Henderson     s->lookup_symbol = lookup_symbolxx;
2613e80cfcfcSbellard     s->next = syminfos;
2614e80cfcfcSbellard     syminfos = s;
2615b9475279SCédric VINCENT 
2616b9475279SCédric VINCENT     return;
2617b9475279SCédric VINCENT 
2618b9475279SCédric VINCENT give_up:
26190ef9ea29SPeter Maydell     g_free(s);
26200ef9ea29SPeter Maydell     g_free(strings);
26210ef9ea29SPeter Maydell     g_free(syms);
2622689f936fSbellard }
262331e31b8aSbellard 
2624768fe76eSYunQiang Su uint32_t get_elf_eflags(int fd)
2625768fe76eSYunQiang Su {
2626768fe76eSYunQiang Su     struct elfhdr ehdr;
2627768fe76eSYunQiang Su     off_t offset;
2628768fe76eSYunQiang Su     int ret;
2629768fe76eSYunQiang Su 
2630768fe76eSYunQiang Su     /* Read ELF header */
2631768fe76eSYunQiang Su     offset = lseek(fd, 0, SEEK_SET);
2632768fe76eSYunQiang Su     if (offset == (off_t) -1) {
2633768fe76eSYunQiang Su         return 0;
2634768fe76eSYunQiang Su     }
2635768fe76eSYunQiang Su     ret = read(fd, &ehdr, sizeof(ehdr));
2636768fe76eSYunQiang Su     if (ret < sizeof(ehdr)) {
2637768fe76eSYunQiang Su         return 0;
2638768fe76eSYunQiang Su     }
2639768fe76eSYunQiang Su     offset = lseek(fd, offset, SEEK_SET);
2640768fe76eSYunQiang Su     if (offset == (off_t) -1) {
2641768fe76eSYunQiang Su         return 0;
2642768fe76eSYunQiang Su     }
2643768fe76eSYunQiang Su 
2644768fe76eSYunQiang Su     /* Check ELF signature */
2645768fe76eSYunQiang Su     if (!elf_check_ident(&ehdr)) {
2646768fe76eSYunQiang Su         return 0;
2647768fe76eSYunQiang Su     }
2648768fe76eSYunQiang Su 
2649768fe76eSYunQiang Su     /* check header */
2650768fe76eSYunQiang Su     bswap_ehdr(&ehdr);
2651768fe76eSYunQiang Su     if (!elf_check_ehdr(&ehdr)) {
2652768fe76eSYunQiang Su         return 0;
2653768fe76eSYunQiang Su     }
2654768fe76eSYunQiang Su 
2655768fe76eSYunQiang Su     /* return architecture id */
2656768fe76eSYunQiang Su     return ehdr.e_flags;
2657768fe76eSYunQiang Su }
2658768fe76eSYunQiang Su 
2659f0116c54SWill Newton int load_elf_binary(struct linux_binprm *bprm, struct image_info *info)
266031e31b8aSbellard {
26618e62a717SRichard Henderson     struct image_info interp_info;
266231e31b8aSbellard     struct elfhdr elf_ex;
26638e62a717SRichard Henderson     char *elf_interpreter = NULL;
266459baae9aSStefan Brüns     char *scratch;
266531e31b8aSbellard 
2666bf858897SRichard Henderson     info->start_mmap = (abi_ulong)ELF_START_MMAP;
266731e31b8aSbellard 
2668bf858897SRichard Henderson     load_elf_image(bprm->filename, bprm->fd, info,
2669bf858897SRichard Henderson                    &elf_interpreter, bprm->buf);
2670bf858897SRichard Henderson 
2671bf858897SRichard Henderson     /* ??? We need a copy of the elf header for passing to create_elf_tables.
2672bf858897SRichard Henderson        If we do nothing, we'll have overwritten this when we re-use bprm->buf
2673bf858897SRichard Henderson        when we load the interpreter.  */
2674bf858897SRichard Henderson     elf_ex = *(struct elfhdr *)bprm->buf;
267531e31b8aSbellard 
267659baae9aSStefan Brüns     /* Do this so that we can load the interpreter, if need be.  We will
267759baae9aSStefan Brüns        change some of these later */
267859baae9aSStefan Brüns     bprm->p = setup_arg_pages(bprm, info);
267959baae9aSStefan Brüns 
268059baae9aSStefan Brüns     scratch = g_new0(char, TARGET_PAGE_SIZE);
26817c4ee5bcSRichard Henderson     if (STACK_GROWS_DOWN) {
268259baae9aSStefan Brüns         bprm->p = copy_elf_strings(1, &bprm->filename, scratch,
268359baae9aSStefan Brüns                                    bprm->p, info->stack_limit);
26847c4ee5bcSRichard Henderson         info->file_string = bprm->p;
268559baae9aSStefan Brüns         bprm->p = copy_elf_strings(bprm->envc, bprm->envp, scratch,
268659baae9aSStefan Brüns                                    bprm->p, info->stack_limit);
26877c4ee5bcSRichard Henderson         info->env_strings = bprm->p;
268859baae9aSStefan Brüns         bprm->p = copy_elf_strings(bprm->argc, bprm->argv, scratch,
268959baae9aSStefan Brüns                                    bprm->p, info->stack_limit);
26907c4ee5bcSRichard Henderson         info->arg_strings = bprm->p;
26917c4ee5bcSRichard Henderson     } else {
26927c4ee5bcSRichard Henderson         info->arg_strings = bprm->p;
26937c4ee5bcSRichard Henderson         bprm->p = copy_elf_strings(bprm->argc, bprm->argv, scratch,
26947c4ee5bcSRichard Henderson                                    bprm->p, info->stack_limit);
26957c4ee5bcSRichard Henderson         info->env_strings = bprm->p;
26967c4ee5bcSRichard Henderson         bprm->p = copy_elf_strings(bprm->envc, bprm->envp, scratch,
26977c4ee5bcSRichard Henderson                                    bprm->p, info->stack_limit);
26987c4ee5bcSRichard Henderson         info->file_string = bprm->p;
26997c4ee5bcSRichard Henderson         bprm->p = copy_elf_strings(1, &bprm->filename, scratch,
27007c4ee5bcSRichard Henderson                                    bprm->p, info->stack_limit);
27017c4ee5bcSRichard Henderson     }
27027c4ee5bcSRichard Henderson 
270359baae9aSStefan Brüns     g_free(scratch);
270459baae9aSStefan Brüns 
2705e5fe0c52Spbrook     if (!bprm->p) {
2706bf858897SRichard Henderson         fprintf(stderr, "%s: %s\n", bprm->filename, strerror(E2BIG));
270731e31b8aSbellard         exit(-1);
27089955ffacSRichard Henderson     }
2709379f6698SPaul Brook 
27108e62a717SRichard Henderson     if (elf_interpreter) {
27118e62a717SRichard Henderson         load_elf_interp(elf_interpreter, &interp_info, bprm->buf);
271231e31b8aSbellard 
27138e62a717SRichard Henderson         /* If the program interpreter is one of these two, then assume
27148e62a717SRichard Henderson            an iBCS2 image.  Otherwise assume a native linux image.  */
271531e31b8aSbellard 
27168e62a717SRichard Henderson         if (strcmp(elf_interpreter, "/usr/lib/libc.so.1") == 0
27178e62a717SRichard Henderson             || strcmp(elf_interpreter, "/usr/lib/ld.so.1") == 0) {
27188e62a717SRichard Henderson             info->personality = PER_SVR4;
27198e62a717SRichard Henderson 
272031e31b8aSbellard             /* Why this, you ask???  Well SVr4 maps page 0 as read-only,
27218e62a717SRichard Henderson                and some applications "depend" upon this behavior.  Since
27228e62a717SRichard Henderson                we do not have the power to recompile these, we emulate
27238e62a717SRichard Henderson                the SVr4 behavior.  Sigh.  */
27248e62a717SRichard Henderson             target_mmap(0, qemu_host_page_size, PROT_READ | PROT_EXEC,
272568754b44SPeter Maydell                         MAP_FIXED | MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
272631e31b8aSbellard         }
2727c94cb6c9SStefan Markovic #ifdef TARGET_MIPS
2728c94cb6c9SStefan Markovic         info->interp_fp_abi = interp_info.fp_abi;
2729c94cb6c9SStefan Markovic #endif
27308e62a717SRichard Henderson     }
273131e31b8aSbellard 
27328e62a717SRichard Henderson     bprm->p = create_elf_tables(bprm->p, bprm->argc, bprm->envc, &elf_ex,
27338e62a717SRichard Henderson                                 info, (elf_interpreter ? &interp_info : NULL));
27348e62a717SRichard Henderson     info->start_stack = bprm->p;
27358e62a717SRichard Henderson 
27368e62a717SRichard Henderson     /* If we have an interpreter, set that as the program's entry point.
27378e78064eSRichard Henderson        Copy the load_bias as well, to help PPC64 interpret the entry
27388e62a717SRichard Henderson        point as a function descriptor.  Do this after creating elf tables
27398e62a717SRichard Henderson        so that we copy the original program entry point into the AUXV.  */
27408e62a717SRichard Henderson     if (elf_interpreter) {
27418e78064eSRichard Henderson         info->load_bias = interp_info.load_bias;
27428e62a717SRichard Henderson         info->entry = interp_info.entry;
2743bf858897SRichard Henderson         free(elf_interpreter);
27448e62a717SRichard Henderson     }
274531e31b8aSbellard 
2746edf8e2afSMika Westerberg #ifdef USE_ELF_CORE_DUMP
2747edf8e2afSMika Westerberg     bprm->core_dump = &elf_core_dump;
2748edf8e2afSMika Westerberg #endif
2749edf8e2afSMika Westerberg 
275031e31b8aSbellard     return 0;
275131e31b8aSbellard }
275231e31b8aSbellard 
2753edf8e2afSMika Westerberg #ifdef USE_ELF_CORE_DUMP
2754edf8e2afSMika Westerberg /*
2755edf8e2afSMika Westerberg  * Definitions to generate Intel SVR4-like core files.
2756a2547a13SLaurent Desnogues  * These mostly have the same names as the SVR4 types with "target_elf_"
2757edf8e2afSMika Westerberg  * tacked on the front to prevent clashes with linux definitions,
2758edf8e2afSMika Westerberg  * and the typedef forms have been avoided.  This is mostly like
2759edf8e2afSMika Westerberg  * the SVR4 structure, but more Linuxy, with things that Linux does
2760edf8e2afSMika Westerberg  * not support and which gdb doesn't really use excluded.
2761edf8e2afSMika Westerberg  *
2762edf8e2afSMika Westerberg  * Fields we don't dump (their contents is zero) in linux-user qemu
2763edf8e2afSMika Westerberg  * are marked with XXX.
2764edf8e2afSMika Westerberg  *
2765edf8e2afSMika Westerberg  * Core dump code is copied from linux kernel (fs/binfmt_elf.c).
2766edf8e2afSMika Westerberg  *
2767edf8e2afSMika Westerberg  * Porting ELF coredump for target is (quite) simple process.  First you
2768dd0a3651SNathan Froyd  * define USE_ELF_CORE_DUMP in target ELF code (where init_thread() for
2769edf8e2afSMika Westerberg  * the target resides):
2770edf8e2afSMika Westerberg  *
2771edf8e2afSMika Westerberg  * #define USE_ELF_CORE_DUMP
2772edf8e2afSMika Westerberg  *
2773edf8e2afSMika Westerberg  * Next you define type of register set used for dumping.  ELF specification
2774edf8e2afSMika Westerberg  * says that it needs to be array of elf_greg_t that has size of ELF_NREG.
2775edf8e2afSMika Westerberg  *
2776c227f099SAnthony Liguori  * typedef <target_regtype> target_elf_greg_t;
2777edf8e2afSMika Westerberg  * #define ELF_NREG <number of registers>
2778c227f099SAnthony Liguori  * typedef taret_elf_greg_t target_elf_gregset_t[ELF_NREG];
2779edf8e2afSMika Westerberg  *
2780edf8e2afSMika Westerberg  * Last step is to implement target specific function that copies registers
2781edf8e2afSMika Westerberg  * from given cpu into just specified register set.  Prototype is:
2782edf8e2afSMika Westerberg  *
2783c227f099SAnthony Liguori  * static void elf_core_copy_regs(taret_elf_gregset_t *regs,
27849349b4f9SAndreas Färber  *                                const CPUArchState *env);
2785edf8e2afSMika Westerberg  *
2786edf8e2afSMika Westerberg  * Parameters:
2787edf8e2afSMika Westerberg  *     regs - copy register values into here (allocated and zeroed by caller)
2788edf8e2afSMika Westerberg  *     env - copy registers from here
2789edf8e2afSMika Westerberg  *
2790edf8e2afSMika Westerberg  * Example for ARM target is provided in this file.
2791edf8e2afSMika Westerberg  */
2792edf8e2afSMika Westerberg 
2793edf8e2afSMika Westerberg /* An ELF note in memory */
2794edf8e2afSMika Westerberg struct memelfnote {
2795edf8e2afSMika Westerberg     const char *name;
2796edf8e2afSMika Westerberg     size_t     namesz;
2797edf8e2afSMika Westerberg     size_t     namesz_rounded;
2798edf8e2afSMika Westerberg     int        type;
2799edf8e2afSMika Westerberg     size_t     datasz;
280080f5ce75SLaurent Vivier     size_t     datasz_rounded;
2801edf8e2afSMika Westerberg     void       *data;
2802edf8e2afSMika Westerberg     size_t     notesz;
2803edf8e2afSMika Westerberg };
2804edf8e2afSMika Westerberg 
2805a2547a13SLaurent Desnogues struct target_elf_siginfo {
2806f8fd4fc4SPaolo Bonzini     abi_int    si_signo; /* signal number */
2807f8fd4fc4SPaolo Bonzini     abi_int    si_code;  /* extra code */
2808f8fd4fc4SPaolo Bonzini     abi_int    si_errno; /* errno */
2809edf8e2afSMika Westerberg };
2810edf8e2afSMika Westerberg 
2811a2547a13SLaurent Desnogues struct target_elf_prstatus {
2812a2547a13SLaurent Desnogues     struct target_elf_siginfo pr_info;      /* Info associated with signal */
28131ddd592fSPaolo Bonzini     abi_short          pr_cursig;    /* Current signal */
2814ca98ac83SPaolo Bonzini     abi_ulong          pr_sigpend;   /* XXX */
2815ca98ac83SPaolo Bonzini     abi_ulong          pr_sighold;   /* XXX */
2816c227f099SAnthony Liguori     target_pid_t       pr_pid;
2817c227f099SAnthony Liguori     target_pid_t       pr_ppid;
2818c227f099SAnthony Liguori     target_pid_t       pr_pgrp;
2819c227f099SAnthony Liguori     target_pid_t       pr_sid;
2820edf8e2afSMika Westerberg     struct target_timeval pr_utime;  /* XXX User time */
2821edf8e2afSMika Westerberg     struct target_timeval pr_stime;  /* XXX System time */
2822edf8e2afSMika Westerberg     struct target_timeval pr_cutime; /* XXX Cumulative user time */
2823edf8e2afSMika Westerberg     struct target_timeval pr_cstime; /* XXX Cumulative system time */
2824c227f099SAnthony Liguori     target_elf_gregset_t      pr_reg;       /* GP registers */
2825f8fd4fc4SPaolo Bonzini     abi_int            pr_fpvalid;   /* XXX */
2826edf8e2afSMika Westerberg };
2827edf8e2afSMika Westerberg 
2828edf8e2afSMika Westerberg #define ELF_PRARGSZ     (80) /* Number of chars for args */
2829edf8e2afSMika Westerberg 
2830a2547a13SLaurent Desnogues struct target_elf_prpsinfo {
2831edf8e2afSMika Westerberg     char         pr_state;       /* numeric process state */
2832edf8e2afSMika Westerberg     char         pr_sname;       /* char for pr_state */
2833edf8e2afSMika Westerberg     char         pr_zomb;        /* zombie */
2834edf8e2afSMika Westerberg     char         pr_nice;        /* nice val */
2835ca98ac83SPaolo Bonzini     abi_ulong    pr_flag;        /* flags */
2836c227f099SAnthony Liguori     target_uid_t pr_uid;
2837c227f099SAnthony Liguori     target_gid_t pr_gid;
2838c227f099SAnthony Liguori     target_pid_t pr_pid, pr_ppid, pr_pgrp, pr_sid;
2839edf8e2afSMika Westerberg     /* Lots missing */
2840edf8e2afSMika Westerberg     char    pr_fname[16];           /* filename of executable */
2841edf8e2afSMika Westerberg     char    pr_psargs[ELF_PRARGSZ]; /* initial part of arg list */
2842edf8e2afSMika Westerberg };
2843edf8e2afSMika Westerberg 
2844edf8e2afSMika Westerberg /* Here is the structure in which status of each thread is captured. */
2845edf8e2afSMika Westerberg struct elf_thread_status {
284672cf2d4fSBlue Swirl     QTAILQ_ENTRY(elf_thread_status)  ets_link;
2847a2547a13SLaurent Desnogues     struct target_elf_prstatus prstatus;   /* NT_PRSTATUS */
2848edf8e2afSMika Westerberg #if 0
2849edf8e2afSMika Westerberg     elf_fpregset_t fpu;             /* NT_PRFPREG */
2850edf8e2afSMika Westerberg     struct task_struct *thread;
2851edf8e2afSMika Westerberg     elf_fpxregset_t xfpu;           /* ELF_CORE_XFPREG_TYPE */
2852edf8e2afSMika Westerberg #endif
2853edf8e2afSMika Westerberg     struct memelfnote notes[1];
2854edf8e2afSMika Westerberg     int num_notes;
2855edf8e2afSMika Westerberg };
2856edf8e2afSMika Westerberg 
2857edf8e2afSMika Westerberg struct elf_note_info {
2858edf8e2afSMika Westerberg     struct memelfnote   *notes;
2859a2547a13SLaurent Desnogues     struct target_elf_prstatus *prstatus;  /* NT_PRSTATUS */
2860a2547a13SLaurent Desnogues     struct target_elf_prpsinfo *psinfo;    /* NT_PRPSINFO */
2861edf8e2afSMika Westerberg 
2862b58deb34SPaolo Bonzini     QTAILQ_HEAD(, elf_thread_status) thread_list;
2863edf8e2afSMika Westerberg #if 0
2864edf8e2afSMika Westerberg     /*
2865edf8e2afSMika Westerberg      * Current version of ELF coredump doesn't support
2866edf8e2afSMika Westerberg      * dumping fp regs etc.
2867edf8e2afSMika Westerberg      */
2868edf8e2afSMika Westerberg     elf_fpregset_t *fpu;
2869edf8e2afSMika Westerberg     elf_fpxregset_t *xfpu;
2870edf8e2afSMika Westerberg     int thread_status_size;
2871edf8e2afSMika Westerberg #endif
2872edf8e2afSMika Westerberg     int notes_size;
2873edf8e2afSMika Westerberg     int numnote;
2874edf8e2afSMika Westerberg };
2875edf8e2afSMika Westerberg 
2876edf8e2afSMika Westerberg struct vm_area_struct {
28771a1c4db9SMikhail Ilyin     target_ulong   vma_start;  /* start vaddr of memory region */
28781a1c4db9SMikhail Ilyin     target_ulong   vma_end;    /* end vaddr of memory region */
2879edf8e2afSMika Westerberg     abi_ulong      vma_flags;  /* protection etc. flags for the region */
288072cf2d4fSBlue Swirl     QTAILQ_ENTRY(vm_area_struct) vma_link;
2881edf8e2afSMika Westerberg };
2882edf8e2afSMika Westerberg 
2883edf8e2afSMika Westerberg struct mm_struct {
288472cf2d4fSBlue Swirl     QTAILQ_HEAD(, vm_area_struct) mm_mmap;
2885edf8e2afSMika Westerberg     int mm_count;           /* number of mappings */
2886edf8e2afSMika Westerberg };
2887edf8e2afSMika Westerberg 
2888edf8e2afSMika Westerberg static struct mm_struct *vma_init(void);
2889edf8e2afSMika Westerberg static void vma_delete(struct mm_struct *);
28901a1c4db9SMikhail Ilyin static int vma_add_mapping(struct mm_struct *, target_ulong,
28911a1c4db9SMikhail Ilyin                            target_ulong, abi_ulong);
2892edf8e2afSMika Westerberg static int vma_get_mapping_count(const struct mm_struct *);
2893edf8e2afSMika Westerberg static struct vm_area_struct *vma_first(const struct mm_struct *);
2894edf8e2afSMika Westerberg static struct vm_area_struct *vma_next(struct vm_area_struct *);
2895edf8e2afSMika Westerberg static abi_ulong vma_dump_size(const struct vm_area_struct *);
28961a1c4db9SMikhail Ilyin static int vma_walker(void *priv, target_ulong start, target_ulong end,
2897edf8e2afSMika Westerberg                       unsigned long flags);
2898edf8e2afSMika Westerberg 
2899edf8e2afSMika Westerberg static void fill_elf_header(struct elfhdr *, int, uint16_t, uint32_t);
2900edf8e2afSMika Westerberg static void fill_note(struct memelfnote *, const char *, int,
2901edf8e2afSMika Westerberg                       unsigned int, void *);
2902a2547a13SLaurent Desnogues static void fill_prstatus(struct target_elf_prstatus *, const TaskState *, int);
2903a2547a13SLaurent Desnogues static int fill_psinfo(struct target_elf_prpsinfo *, const TaskState *);
2904edf8e2afSMika Westerberg static void fill_auxv_note(struct memelfnote *, const TaskState *);
2905edf8e2afSMika Westerberg static void fill_elf_note_phdr(struct elf_phdr *, int, off_t);
2906edf8e2afSMika Westerberg static size_t note_size(const struct memelfnote *);
2907edf8e2afSMika Westerberg static void free_note_info(struct elf_note_info *);
29089349b4f9SAndreas Färber static int fill_note_info(struct elf_note_info *, long, const CPUArchState *);
29099349b4f9SAndreas Färber static void fill_thread_info(struct elf_note_info *, const CPUArchState *);
2910edf8e2afSMika Westerberg static int core_dump_filename(const TaskState *, char *, size_t);
2911edf8e2afSMika Westerberg 
2912edf8e2afSMika Westerberg static int dump_write(int, const void *, size_t);
2913edf8e2afSMika Westerberg static int write_note(struct memelfnote *, int);
2914edf8e2afSMika Westerberg static int write_note_info(struct elf_note_info *, int);
2915edf8e2afSMika Westerberg 
2916edf8e2afSMika Westerberg #ifdef BSWAP_NEEDED
2917a2547a13SLaurent Desnogues static void bswap_prstatus(struct target_elf_prstatus *prstatus)
2918edf8e2afSMika Westerberg {
2919ca98ac83SPaolo Bonzini     prstatus->pr_info.si_signo = tswap32(prstatus->pr_info.si_signo);
2920ca98ac83SPaolo Bonzini     prstatus->pr_info.si_code = tswap32(prstatus->pr_info.si_code);
2921ca98ac83SPaolo Bonzini     prstatus->pr_info.si_errno = tswap32(prstatus->pr_info.si_errno);
2922edf8e2afSMika Westerberg     prstatus->pr_cursig = tswap16(prstatus->pr_cursig);
2923ca98ac83SPaolo Bonzini     prstatus->pr_sigpend = tswapal(prstatus->pr_sigpend);
2924ca98ac83SPaolo Bonzini     prstatus->pr_sighold = tswapal(prstatus->pr_sighold);
2925edf8e2afSMika Westerberg     prstatus->pr_pid = tswap32(prstatus->pr_pid);
2926edf8e2afSMika Westerberg     prstatus->pr_ppid = tswap32(prstatus->pr_ppid);
2927edf8e2afSMika Westerberg     prstatus->pr_pgrp = tswap32(prstatus->pr_pgrp);
2928edf8e2afSMika Westerberg     prstatus->pr_sid = tswap32(prstatus->pr_sid);
2929edf8e2afSMika Westerberg     /* cpu times are not filled, so we skip them */
2930edf8e2afSMika Westerberg     /* regs should be in correct format already */
2931edf8e2afSMika Westerberg     prstatus->pr_fpvalid = tswap32(prstatus->pr_fpvalid);
2932edf8e2afSMika Westerberg }
2933edf8e2afSMika Westerberg 
2934a2547a13SLaurent Desnogues static void bswap_psinfo(struct target_elf_prpsinfo *psinfo)
2935edf8e2afSMika Westerberg {
2936ca98ac83SPaolo Bonzini     psinfo->pr_flag = tswapal(psinfo->pr_flag);
2937edf8e2afSMika Westerberg     psinfo->pr_uid = tswap16(psinfo->pr_uid);
2938edf8e2afSMika Westerberg     psinfo->pr_gid = tswap16(psinfo->pr_gid);
2939edf8e2afSMika Westerberg     psinfo->pr_pid = tswap32(psinfo->pr_pid);
2940edf8e2afSMika Westerberg     psinfo->pr_ppid = tswap32(psinfo->pr_ppid);
2941edf8e2afSMika Westerberg     psinfo->pr_pgrp = tswap32(psinfo->pr_pgrp);
2942edf8e2afSMika Westerberg     psinfo->pr_sid = tswap32(psinfo->pr_sid);
2943edf8e2afSMika Westerberg }
2944991f8f0cSRichard Henderson 
2945991f8f0cSRichard Henderson static void bswap_note(struct elf_note *en)
2946991f8f0cSRichard Henderson {
2947991f8f0cSRichard Henderson     bswap32s(&en->n_namesz);
2948991f8f0cSRichard Henderson     bswap32s(&en->n_descsz);
2949991f8f0cSRichard Henderson     bswap32s(&en->n_type);
2950991f8f0cSRichard Henderson }
2951991f8f0cSRichard Henderson #else
2952991f8f0cSRichard Henderson static inline void bswap_prstatus(struct target_elf_prstatus *p) { }
2953991f8f0cSRichard Henderson static inline void bswap_psinfo(struct target_elf_prpsinfo *p) {}
2954991f8f0cSRichard Henderson static inline void bswap_note(struct elf_note *en) { }
2955edf8e2afSMika Westerberg #endif /* BSWAP_NEEDED */
2956edf8e2afSMika Westerberg 
2957edf8e2afSMika Westerberg /*
2958edf8e2afSMika Westerberg  * Minimal support for linux memory regions.  These are needed
2959edf8e2afSMika Westerberg  * when we are finding out what memory exactly belongs to
2960edf8e2afSMika Westerberg  * emulated process.  No locks needed here, as long as
2961edf8e2afSMika Westerberg  * thread that received the signal is stopped.
2962edf8e2afSMika Westerberg  */
2963edf8e2afSMika Westerberg 
2964edf8e2afSMika Westerberg static struct mm_struct *vma_init(void)
2965edf8e2afSMika Westerberg {
2966edf8e2afSMika Westerberg     struct mm_struct *mm;
2967edf8e2afSMika Westerberg 
29687267c094SAnthony Liguori     if ((mm = g_malloc(sizeof (*mm))) == NULL)
2969edf8e2afSMika Westerberg         return (NULL);
2970edf8e2afSMika Westerberg 
2971edf8e2afSMika Westerberg     mm->mm_count = 0;
297272cf2d4fSBlue Swirl     QTAILQ_INIT(&mm->mm_mmap);
2973edf8e2afSMika Westerberg 
2974edf8e2afSMika Westerberg     return (mm);
2975edf8e2afSMika Westerberg }
2976edf8e2afSMika Westerberg 
2977edf8e2afSMika Westerberg static void vma_delete(struct mm_struct *mm)
2978edf8e2afSMika Westerberg {
2979edf8e2afSMika Westerberg     struct vm_area_struct *vma;
2980edf8e2afSMika Westerberg 
2981edf8e2afSMika Westerberg     while ((vma = vma_first(mm)) != NULL) {
298272cf2d4fSBlue Swirl         QTAILQ_REMOVE(&mm->mm_mmap, vma, vma_link);
29837267c094SAnthony Liguori         g_free(vma);
2984edf8e2afSMika Westerberg     }
29857267c094SAnthony Liguori     g_free(mm);
2986edf8e2afSMika Westerberg }
2987edf8e2afSMika Westerberg 
29881a1c4db9SMikhail Ilyin static int vma_add_mapping(struct mm_struct *mm, target_ulong start,
29891a1c4db9SMikhail Ilyin                            target_ulong end, abi_ulong flags)
2990edf8e2afSMika Westerberg {
2991edf8e2afSMika Westerberg     struct vm_area_struct *vma;
2992edf8e2afSMika Westerberg 
29937267c094SAnthony Liguori     if ((vma = g_malloc0(sizeof (*vma))) == NULL)
2994edf8e2afSMika Westerberg         return (-1);
2995edf8e2afSMika Westerberg 
2996edf8e2afSMika Westerberg     vma->vma_start = start;
2997edf8e2afSMika Westerberg     vma->vma_end = end;
2998edf8e2afSMika Westerberg     vma->vma_flags = flags;
2999edf8e2afSMika Westerberg 
300072cf2d4fSBlue Swirl     QTAILQ_INSERT_TAIL(&mm->mm_mmap, vma, vma_link);
3001edf8e2afSMika Westerberg     mm->mm_count++;
3002edf8e2afSMika Westerberg 
3003edf8e2afSMika Westerberg     return (0);
3004edf8e2afSMika Westerberg }
3005edf8e2afSMika Westerberg 
3006edf8e2afSMika Westerberg static struct vm_area_struct *vma_first(const struct mm_struct *mm)
3007edf8e2afSMika Westerberg {
300872cf2d4fSBlue Swirl     return (QTAILQ_FIRST(&mm->mm_mmap));
3009edf8e2afSMika Westerberg }
3010edf8e2afSMika Westerberg 
3011edf8e2afSMika Westerberg static struct vm_area_struct *vma_next(struct vm_area_struct *vma)
3012edf8e2afSMika Westerberg {
301372cf2d4fSBlue Swirl     return (QTAILQ_NEXT(vma, vma_link));
3014edf8e2afSMika Westerberg }
3015edf8e2afSMika Westerberg 
3016edf8e2afSMika Westerberg static int vma_get_mapping_count(const struct mm_struct *mm)
3017edf8e2afSMika Westerberg {
3018edf8e2afSMika Westerberg     return (mm->mm_count);
3019edf8e2afSMika Westerberg }
3020edf8e2afSMika Westerberg 
3021edf8e2afSMika Westerberg /*
3022edf8e2afSMika Westerberg  * Calculate file (dump) size of given memory region.
3023edf8e2afSMika Westerberg  */
3024edf8e2afSMika Westerberg static abi_ulong vma_dump_size(const struct vm_area_struct *vma)
3025edf8e2afSMika Westerberg {
3026edf8e2afSMika Westerberg     /* if we cannot even read the first page, skip it */
3027edf8e2afSMika Westerberg     if (!access_ok(VERIFY_READ, vma->vma_start, TARGET_PAGE_SIZE))
3028edf8e2afSMika Westerberg         return (0);
3029edf8e2afSMika Westerberg 
3030edf8e2afSMika Westerberg     /*
3031edf8e2afSMika Westerberg      * Usually we don't dump executable pages as they contain
3032edf8e2afSMika Westerberg      * non-writable code that debugger can read directly from
3033edf8e2afSMika Westerberg      * target library etc.  However, thread stacks are marked
3034edf8e2afSMika Westerberg      * also executable so we read in first page of given region
3035edf8e2afSMika Westerberg      * and check whether it contains elf header.  If there is
3036edf8e2afSMika Westerberg      * no elf header, we dump it.
3037edf8e2afSMika Westerberg      */
3038edf8e2afSMika Westerberg     if (vma->vma_flags & PROT_EXEC) {
3039edf8e2afSMika Westerberg         char page[TARGET_PAGE_SIZE];
3040edf8e2afSMika Westerberg 
3041edf8e2afSMika Westerberg         copy_from_user(page, vma->vma_start, sizeof (page));
3042edf8e2afSMika Westerberg         if ((page[EI_MAG0] == ELFMAG0) &&
3043edf8e2afSMika Westerberg             (page[EI_MAG1] == ELFMAG1) &&
3044edf8e2afSMika Westerberg             (page[EI_MAG2] == ELFMAG2) &&
3045edf8e2afSMika Westerberg             (page[EI_MAG3] == ELFMAG3)) {
3046edf8e2afSMika Westerberg             /*
3047edf8e2afSMika Westerberg              * Mappings are possibly from ELF binary.  Don't dump
3048edf8e2afSMika Westerberg              * them.
3049edf8e2afSMika Westerberg              */
3050edf8e2afSMika Westerberg             return (0);
3051edf8e2afSMika Westerberg         }
3052edf8e2afSMika Westerberg     }
3053edf8e2afSMika Westerberg 
3054edf8e2afSMika Westerberg     return (vma->vma_end - vma->vma_start);
3055edf8e2afSMika Westerberg }
3056edf8e2afSMika Westerberg 
30571a1c4db9SMikhail Ilyin static int vma_walker(void *priv, target_ulong start, target_ulong end,
3058edf8e2afSMika Westerberg                       unsigned long flags)
3059edf8e2afSMika Westerberg {
3060edf8e2afSMika Westerberg     struct mm_struct *mm = (struct mm_struct *)priv;
3061edf8e2afSMika Westerberg 
3062edf8e2afSMika Westerberg     vma_add_mapping(mm, start, end, flags);
3063edf8e2afSMika Westerberg     return (0);
3064edf8e2afSMika Westerberg }
3065edf8e2afSMika Westerberg 
3066edf8e2afSMika Westerberg static void fill_note(struct memelfnote *note, const char *name, int type,
3067edf8e2afSMika Westerberg                       unsigned int sz, void *data)
3068edf8e2afSMika Westerberg {
3069edf8e2afSMika Westerberg     unsigned int namesz;
3070edf8e2afSMika Westerberg 
3071edf8e2afSMika Westerberg     namesz = strlen(name) + 1;
3072edf8e2afSMika Westerberg     note->name = name;
3073edf8e2afSMika Westerberg     note->namesz = namesz;
3074edf8e2afSMika Westerberg     note->namesz_rounded = roundup(namesz, sizeof (int32_t));
3075edf8e2afSMika Westerberg     note->type = type;
307680f5ce75SLaurent Vivier     note->datasz = sz;
307780f5ce75SLaurent Vivier     note->datasz_rounded = roundup(sz, sizeof (int32_t));
307880f5ce75SLaurent Vivier 
3079edf8e2afSMika Westerberg     note->data = data;
3080edf8e2afSMika Westerberg 
3081edf8e2afSMika Westerberg     /*
3082edf8e2afSMika Westerberg      * We calculate rounded up note size here as specified by
3083edf8e2afSMika Westerberg      * ELF document.
3084edf8e2afSMika Westerberg      */
3085edf8e2afSMika Westerberg     note->notesz = sizeof (struct elf_note) +
308680f5ce75SLaurent Vivier         note->namesz_rounded + note->datasz_rounded;
3087edf8e2afSMika Westerberg }
3088edf8e2afSMika Westerberg 
3089edf8e2afSMika Westerberg static void fill_elf_header(struct elfhdr *elf, int segs, uint16_t machine,
3090edf8e2afSMika Westerberg                             uint32_t flags)
3091edf8e2afSMika Westerberg {
3092edf8e2afSMika Westerberg     (void) memset(elf, 0, sizeof(*elf));
3093edf8e2afSMika Westerberg 
3094edf8e2afSMika Westerberg     (void) memcpy(elf->e_ident, ELFMAG, SELFMAG);
3095edf8e2afSMika Westerberg     elf->e_ident[EI_CLASS] = ELF_CLASS;
3096edf8e2afSMika Westerberg     elf->e_ident[EI_DATA] = ELF_DATA;
3097edf8e2afSMika Westerberg     elf->e_ident[EI_VERSION] = EV_CURRENT;
3098edf8e2afSMika Westerberg     elf->e_ident[EI_OSABI] = ELF_OSABI;
3099edf8e2afSMika Westerberg 
3100edf8e2afSMika Westerberg     elf->e_type = ET_CORE;
3101edf8e2afSMika Westerberg     elf->e_machine = machine;
3102edf8e2afSMika Westerberg     elf->e_version = EV_CURRENT;
3103edf8e2afSMika Westerberg     elf->e_phoff = sizeof(struct elfhdr);
3104edf8e2afSMika Westerberg     elf->e_flags = flags;
3105edf8e2afSMika Westerberg     elf->e_ehsize = sizeof(struct elfhdr);
3106edf8e2afSMika Westerberg     elf->e_phentsize = sizeof(struct elf_phdr);
3107edf8e2afSMika Westerberg     elf->e_phnum = segs;
3108edf8e2afSMika Westerberg 
3109edf8e2afSMika Westerberg     bswap_ehdr(elf);
3110edf8e2afSMika Westerberg }
3111edf8e2afSMika Westerberg 
3112edf8e2afSMika Westerberg static void fill_elf_note_phdr(struct elf_phdr *phdr, int sz, off_t offset)
3113edf8e2afSMika Westerberg {
3114edf8e2afSMika Westerberg     phdr->p_type = PT_NOTE;
3115edf8e2afSMika Westerberg     phdr->p_offset = offset;
3116edf8e2afSMika Westerberg     phdr->p_vaddr = 0;
3117edf8e2afSMika Westerberg     phdr->p_paddr = 0;
3118edf8e2afSMika Westerberg     phdr->p_filesz = sz;
3119edf8e2afSMika Westerberg     phdr->p_memsz = 0;
3120edf8e2afSMika Westerberg     phdr->p_flags = 0;
3121edf8e2afSMika Westerberg     phdr->p_align = 0;
3122edf8e2afSMika Westerberg 
3123991f8f0cSRichard Henderson     bswap_phdr(phdr, 1);
3124edf8e2afSMika Westerberg }
3125edf8e2afSMika Westerberg 
3126edf8e2afSMika Westerberg static size_t note_size(const struct memelfnote *note)
3127edf8e2afSMika Westerberg {
3128edf8e2afSMika Westerberg     return (note->notesz);
3129edf8e2afSMika Westerberg }
3130edf8e2afSMika Westerberg 
3131a2547a13SLaurent Desnogues static void fill_prstatus(struct target_elf_prstatus *prstatus,
3132edf8e2afSMika Westerberg                           const TaskState *ts, int signr)
3133edf8e2afSMika Westerberg {
3134edf8e2afSMika Westerberg     (void) memset(prstatus, 0, sizeof (*prstatus));
3135edf8e2afSMika Westerberg     prstatus->pr_info.si_signo = prstatus->pr_cursig = signr;
3136edf8e2afSMika Westerberg     prstatus->pr_pid = ts->ts_tid;
3137edf8e2afSMika Westerberg     prstatus->pr_ppid = getppid();
3138edf8e2afSMika Westerberg     prstatus->pr_pgrp = getpgrp();
3139edf8e2afSMika Westerberg     prstatus->pr_sid = getsid(0);
3140edf8e2afSMika Westerberg 
3141edf8e2afSMika Westerberg     bswap_prstatus(prstatus);
3142edf8e2afSMika Westerberg }
3143edf8e2afSMika Westerberg 
3144a2547a13SLaurent Desnogues static int fill_psinfo(struct target_elf_prpsinfo *psinfo, const TaskState *ts)
3145edf8e2afSMika Westerberg {
3146900cfbcaSJim Meyering     char *base_filename;
3147edf8e2afSMika Westerberg     unsigned int i, len;
3148edf8e2afSMika Westerberg 
3149edf8e2afSMika Westerberg     (void) memset(psinfo, 0, sizeof (*psinfo));
3150edf8e2afSMika Westerberg 
3151edf8e2afSMika Westerberg     len = ts->info->arg_end - ts->info->arg_start;
3152edf8e2afSMika Westerberg     if (len >= ELF_PRARGSZ)
3153edf8e2afSMika Westerberg         len = ELF_PRARGSZ - 1;
3154edf8e2afSMika Westerberg     if (copy_from_user(&psinfo->pr_psargs, ts->info->arg_start, len))
3155edf8e2afSMika Westerberg         return -EFAULT;
3156edf8e2afSMika Westerberg     for (i = 0; i < len; i++)
3157edf8e2afSMika Westerberg         if (psinfo->pr_psargs[i] == 0)
3158edf8e2afSMika Westerberg             psinfo->pr_psargs[i] = ' ';
3159edf8e2afSMika Westerberg     psinfo->pr_psargs[len] = 0;
3160edf8e2afSMika Westerberg 
3161edf8e2afSMika Westerberg     psinfo->pr_pid = getpid();
3162edf8e2afSMika Westerberg     psinfo->pr_ppid = getppid();
3163edf8e2afSMika Westerberg     psinfo->pr_pgrp = getpgrp();
3164edf8e2afSMika Westerberg     psinfo->pr_sid = getsid(0);
3165edf8e2afSMika Westerberg     psinfo->pr_uid = getuid();
3166edf8e2afSMika Westerberg     psinfo->pr_gid = getgid();
3167edf8e2afSMika Westerberg 
3168900cfbcaSJim Meyering     base_filename = g_path_get_basename(ts->bprm->filename);
3169900cfbcaSJim Meyering     /*
3170900cfbcaSJim Meyering      * Using strncpy here is fine: at max-length,
3171900cfbcaSJim Meyering      * this field is not NUL-terminated.
3172900cfbcaSJim Meyering      */
3173edf8e2afSMika Westerberg     (void) strncpy(psinfo->pr_fname, base_filename,
3174edf8e2afSMika Westerberg                    sizeof(psinfo->pr_fname));
3175edf8e2afSMika Westerberg 
3176900cfbcaSJim Meyering     g_free(base_filename);
3177edf8e2afSMika Westerberg     bswap_psinfo(psinfo);
3178edf8e2afSMika Westerberg     return (0);
3179edf8e2afSMika Westerberg }
3180edf8e2afSMika Westerberg 
3181edf8e2afSMika Westerberg static void fill_auxv_note(struct memelfnote *note, const TaskState *ts)
3182edf8e2afSMika Westerberg {
3183edf8e2afSMika Westerberg     elf_addr_t auxv = (elf_addr_t)ts->info->saved_auxv;
3184edf8e2afSMika Westerberg     elf_addr_t orig_auxv = auxv;
3185edf8e2afSMika Westerberg     void *ptr;
3186125b0f55SAlexander Graf     int len = ts->info->auxv_len;
3187edf8e2afSMika Westerberg 
3188edf8e2afSMika Westerberg     /*
3189edf8e2afSMika Westerberg      * Auxiliary vector is stored in target process stack.  It contains
3190edf8e2afSMika Westerberg      * {type, value} pairs that we need to dump into note.  This is not
3191edf8e2afSMika Westerberg      * strictly necessary but we do it here for sake of completeness.
3192edf8e2afSMika Westerberg      */
3193edf8e2afSMika Westerberg 
3194edf8e2afSMika Westerberg     /* read in whole auxv vector and copy it to memelfnote */
3195edf8e2afSMika Westerberg     ptr = lock_user(VERIFY_READ, orig_auxv, len, 0);
3196edf8e2afSMika Westerberg     if (ptr != NULL) {
3197edf8e2afSMika Westerberg         fill_note(note, "CORE", NT_AUXV, len, ptr);
3198edf8e2afSMika Westerberg         unlock_user(ptr, auxv, len);
3199edf8e2afSMika Westerberg     }
3200edf8e2afSMika Westerberg }
3201edf8e2afSMika Westerberg 
3202edf8e2afSMika Westerberg /*
3203edf8e2afSMika Westerberg  * Constructs name of coredump file.  We have following convention
3204edf8e2afSMika Westerberg  * for the name:
3205edf8e2afSMika Westerberg  *     qemu_<basename-of-target-binary>_<date>-<time>_<pid>.core
3206edf8e2afSMika Westerberg  *
3207edf8e2afSMika Westerberg  * Returns 0 in case of success, -1 otherwise (errno is set).
3208edf8e2afSMika Westerberg  */
3209edf8e2afSMika Westerberg static int core_dump_filename(const TaskState *ts, char *buf,
3210edf8e2afSMika Westerberg                               size_t bufsize)
3211edf8e2afSMika Westerberg {
3212edf8e2afSMika Westerberg     char timestamp[64];
3213edf8e2afSMika Westerberg     char *base_filename = NULL;
3214edf8e2afSMika Westerberg     struct timeval tv;
3215edf8e2afSMika Westerberg     struct tm tm;
3216edf8e2afSMika Westerberg 
3217edf8e2afSMika Westerberg     assert(bufsize >= PATH_MAX);
3218edf8e2afSMika Westerberg 
3219edf8e2afSMika Westerberg     if (gettimeofday(&tv, NULL) < 0) {
3220edf8e2afSMika Westerberg         (void) fprintf(stderr, "unable to get current timestamp: %s",
3221edf8e2afSMika Westerberg                        strerror(errno));
3222edf8e2afSMika Westerberg         return (-1);
3223edf8e2afSMika Westerberg     }
3224edf8e2afSMika Westerberg 
3225b8da57faSWei Jiangang     base_filename = g_path_get_basename(ts->bprm->filename);
3226edf8e2afSMika Westerberg     (void) strftime(timestamp, sizeof (timestamp), "%Y%m%d-%H%M%S",
3227edf8e2afSMika Westerberg                     localtime_r(&tv.tv_sec, &tm));
3228edf8e2afSMika Westerberg     (void) snprintf(buf, bufsize, "qemu_%s_%s_%d.core",
3229edf8e2afSMika Westerberg                     base_filename, timestamp, (int)getpid());
3230b8da57faSWei Jiangang     g_free(base_filename);
3231edf8e2afSMika Westerberg 
3232edf8e2afSMika Westerberg     return (0);
3233edf8e2afSMika Westerberg }
3234edf8e2afSMika Westerberg 
3235edf8e2afSMika Westerberg static int dump_write(int fd, const void *ptr, size_t size)
3236edf8e2afSMika Westerberg {
3237edf8e2afSMika Westerberg     const char *bufp = (const char *)ptr;
3238edf8e2afSMika Westerberg     ssize_t bytes_written, bytes_left;
3239edf8e2afSMika Westerberg     struct rlimit dumpsize;
3240edf8e2afSMika Westerberg     off_t pos;
3241edf8e2afSMika Westerberg 
3242edf8e2afSMika Westerberg     bytes_written = 0;
3243edf8e2afSMika Westerberg     getrlimit(RLIMIT_CORE, &dumpsize);
3244edf8e2afSMika Westerberg     if ((pos = lseek(fd, 0, SEEK_CUR))==-1) {
3245edf8e2afSMika Westerberg         if (errno == ESPIPE) { /* not a seekable stream */
3246edf8e2afSMika Westerberg             bytes_left = size;
3247edf8e2afSMika Westerberg         } else {
3248edf8e2afSMika Westerberg             return pos;
3249edf8e2afSMika Westerberg         }
3250edf8e2afSMika Westerberg     } else {
3251edf8e2afSMika Westerberg         if (dumpsize.rlim_cur <= pos) {
3252edf8e2afSMika Westerberg             return -1;
3253edf8e2afSMika Westerberg         } else if (dumpsize.rlim_cur == RLIM_INFINITY) {
3254edf8e2afSMika Westerberg             bytes_left = size;
3255edf8e2afSMika Westerberg         } else {
3256edf8e2afSMika Westerberg             size_t limit_left=dumpsize.rlim_cur - pos;
3257edf8e2afSMika Westerberg             bytes_left = limit_left >= size ? size : limit_left ;
3258edf8e2afSMika Westerberg         }
3259edf8e2afSMika Westerberg     }
3260edf8e2afSMika Westerberg 
3261edf8e2afSMika Westerberg     /*
3262edf8e2afSMika Westerberg      * In normal conditions, single write(2) should do but
3263edf8e2afSMika Westerberg      * in case of socket etc. this mechanism is more portable.
3264edf8e2afSMika Westerberg      */
3265edf8e2afSMika Westerberg     do {
3266edf8e2afSMika Westerberg         bytes_written = write(fd, bufp, bytes_left);
3267edf8e2afSMika Westerberg         if (bytes_written < 0) {
3268edf8e2afSMika Westerberg             if (errno == EINTR)
3269edf8e2afSMika Westerberg                 continue;
3270edf8e2afSMika Westerberg             return (-1);
3271edf8e2afSMika Westerberg         } else if (bytes_written == 0) { /* eof */
3272edf8e2afSMika Westerberg             return (-1);
3273edf8e2afSMika Westerberg         }
3274edf8e2afSMika Westerberg         bufp += bytes_written;
3275edf8e2afSMika Westerberg         bytes_left -= bytes_written;
3276edf8e2afSMika Westerberg     } while (bytes_left > 0);
3277edf8e2afSMika Westerberg 
3278edf8e2afSMika Westerberg     return (0);
3279edf8e2afSMika Westerberg }
3280edf8e2afSMika Westerberg 
3281edf8e2afSMika Westerberg static int write_note(struct memelfnote *men, int fd)
3282edf8e2afSMika Westerberg {
3283edf8e2afSMika Westerberg     struct elf_note en;
3284edf8e2afSMika Westerberg 
3285edf8e2afSMika Westerberg     en.n_namesz = men->namesz;
3286edf8e2afSMika Westerberg     en.n_type = men->type;
3287edf8e2afSMika Westerberg     en.n_descsz = men->datasz;
3288edf8e2afSMika Westerberg 
3289edf8e2afSMika Westerberg     bswap_note(&en);
3290edf8e2afSMika Westerberg 
3291edf8e2afSMika Westerberg     if (dump_write(fd, &en, sizeof(en)) != 0)
3292edf8e2afSMika Westerberg         return (-1);
3293edf8e2afSMika Westerberg     if (dump_write(fd, men->name, men->namesz_rounded) != 0)
3294edf8e2afSMika Westerberg         return (-1);
329580f5ce75SLaurent Vivier     if (dump_write(fd, men->data, men->datasz_rounded) != 0)
3296edf8e2afSMika Westerberg         return (-1);
3297edf8e2afSMika Westerberg 
3298edf8e2afSMika Westerberg     return (0);
3299edf8e2afSMika Westerberg }
3300edf8e2afSMika Westerberg 
33019349b4f9SAndreas Färber static void fill_thread_info(struct elf_note_info *info, const CPUArchState *env)
3302edf8e2afSMika Westerberg {
33030429a971SAndreas Färber     CPUState *cpu = ENV_GET_CPU((CPUArchState *)env);
33040429a971SAndreas Färber     TaskState *ts = (TaskState *)cpu->opaque;
3305edf8e2afSMika Westerberg     struct elf_thread_status *ets;
3306edf8e2afSMika Westerberg 
33077267c094SAnthony Liguori     ets = g_malloc0(sizeof (*ets));
3308edf8e2afSMika Westerberg     ets->num_notes = 1; /* only prstatus is dumped */
3309edf8e2afSMika Westerberg     fill_prstatus(&ets->prstatus, ts, 0);
3310edf8e2afSMika Westerberg     elf_core_copy_regs(&ets->prstatus.pr_reg, env);
3311edf8e2afSMika Westerberg     fill_note(&ets->notes[0], "CORE", NT_PRSTATUS, sizeof (ets->prstatus),
3312edf8e2afSMika Westerberg               &ets->prstatus);
3313edf8e2afSMika Westerberg 
331472cf2d4fSBlue Swirl     QTAILQ_INSERT_TAIL(&info->thread_list, ets, ets_link);
3315edf8e2afSMika Westerberg 
3316edf8e2afSMika Westerberg     info->notes_size += note_size(&ets->notes[0]);
3317edf8e2afSMika Westerberg }
3318edf8e2afSMika Westerberg 
33196afafa86SPeter Maydell static void init_note_info(struct elf_note_info *info)
33206afafa86SPeter Maydell {
33216afafa86SPeter Maydell     /* Initialize the elf_note_info structure so that it is at
33226afafa86SPeter Maydell      * least safe to call free_note_info() on it. Must be
33236afafa86SPeter Maydell      * called before calling fill_note_info().
33246afafa86SPeter Maydell      */
33256afafa86SPeter Maydell     memset(info, 0, sizeof (*info));
33266afafa86SPeter Maydell     QTAILQ_INIT(&info->thread_list);
33276afafa86SPeter Maydell }
33286afafa86SPeter Maydell 
3329edf8e2afSMika Westerberg static int fill_note_info(struct elf_note_info *info,
33309349b4f9SAndreas Färber                           long signr, const CPUArchState *env)
3331edf8e2afSMika Westerberg {
3332edf8e2afSMika Westerberg #define NUMNOTES 3
33330429a971SAndreas Färber     CPUState *cpu = ENV_GET_CPU((CPUArchState *)env);
33340429a971SAndreas Färber     TaskState *ts = (TaskState *)cpu->opaque;
3335edf8e2afSMika Westerberg     int i;
3336edf8e2afSMika Westerberg 
3337c78d65e8SMarkus Armbruster     info->notes = g_new0(struct memelfnote, NUMNOTES);
3338edf8e2afSMika Westerberg     if (info->notes == NULL)
3339edf8e2afSMika Westerberg         return (-ENOMEM);
33407267c094SAnthony Liguori     info->prstatus = g_malloc0(sizeof (*info->prstatus));
3341edf8e2afSMika Westerberg     if (info->prstatus == NULL)
3342edf8e2afSMika Westerberg         return (-ENOMEM);
33437267c094SAnthony Liguori     info->psinfo = g_malloc0(sizeof (*info->psinfo));
3344edf8e2afSMika Westerberg     if (info->prstatus == NULL)
3345edf8e2afSMika Westerberg         return (-ENOMEM);
3346edf8e2afSMika Westerberg 
3347edf8e2afSMika Westerberg     /*
3348edf8e2afSMika Westerberg      * First fill in status (and registers) of current thread
3349edf8e2afSMika Westerberg      * including process info & aux vector.
3350edf8e2afSMika Westerberg      */
3351edf8e2afSMika Westerberg     fill_prstatus(info->prstatus, ts, signr);
3352edf8e2afSMika Westerberg     elf_core_copy_regs(&info->prstatus->pr_reg, env);
3353edf8e2afSMika Westerberg     fill_note(&info->notes[0], "CORE", NT_PRSTATUS,
3354edf8e2afSMika Westerberg               sizeof (*info->prstatus), info->prstatus);
3355edf8e2afSMika Westerberg     fill_psinfo(info->psinfo, ts);
3356edf8e2afSMika Westerberg     fill_note(&info->notes[1], "CORE", NT_PRPSINFO,
3357edf8e2afSMika Westerberg               sizeof (*info->psinfo), info->psinfo);
3358edf8e2afSMika Westerberg     fill_auxv_note(&info->notes[2], ts);
3359edf8e2afSMika Westerberg     info->numnote = 3;
3360edf8e2afSMika Westerberg 
3361edf8e2afSMika Westerberg     info->notes_size = 0;
3362edf8e2afSMika Westerberg     for (i = 0; i < info->numnote; i++)
3363edf8e2afSMika Westerberg         info->notes_size += note_size(&info->notes[i]);
3364edf8e2afSMika Westerberg 
3365edf8e2afSMika Westerberg     /* read and fill status of all threads */
3366edf8e2afSMika Westerberg     cpu_list_lock();
3367bdc44640SAndreas Färber     CPU_FOREACH(cpu) {
3368a2247f8eSAndreas Färber         if (cpu == thread_cpu) {
3369edf8e2afSMika Westerberg             continue;
3370182735efSAndreas Färber         }
3371182735efSAndreas Färber         fill_thread_info(info, (CPUArchState *)cpu->env_ptr);
3372edf8e2afSMika Westerberg     }
3373edf8e2afSMika Westerberg     cpu_list_unlock();
3374edf8e2afSMika Westerberg 
3375edf8e2afSMika Westerberg     return (0);
3376edf8e2afSMika Westerberg }
3377edf8e2afSMika Westerberg 
3378edf8e2afSMika Westerberg static void free_note_info(struct elf_note_info *info)
3379edf8e2afSMika Westerberg {
3380edf8e2afSMika Westerberg     struct elf_thread_status *ets;
3381edf8e2afSMika Westerberg 
338272cf2d4fSBlue Swirl     while (!QTAILQ_EMPTY(&info->thread_list)) {
338372cf2d4fSBlue Swirl         ets = QTAILQ_FIRST(&info->thread_list);
338472cf2d4fSBlue Swirl         QTAILQ_REMOVE(&info->thread_list, ets, ets_link);
33857267c094SAnthony Liguori         g_free(ets);
3386edf8e2afSMika Westerberg     }
3387edf8e2afSMika Westerberg 
33887267c094SAnthony Liguori     g_free(info->prstatus);
33897267c094SAnthony Liguori     g_free(info->psinfo);
33907267c094SAnthony Liguori     g_free(info->notes);
3391edf8e2afSMika Westerberg }
3392edf8e2afSMika Westerberg 
3393edf8e2afSMika Westerberg static int write_note_info(struct elf_note_info *info, int fd)
3394edf8e2afSMika Westerberg {
3395edf8e2afSMika Westerberg     struct elf_thread_status *ets;
3396edf8e2afSMika Westerberg     int i, error = 0;
3397edf8e2afSMika Westerberg 
3398edf8e2afSMika Westerberg     /* write prstatus, psinfo and auxv for current thread */
3399edf8e2afSMika Westerberg     for (i = 0; i < info->numnote; i++)
3400edf8e2afSMika Westerberg         if ((error = write_note(&info->notes[i], fd)) != 0)
3401edf8e2afSMika Westerberg             return (error);
3402edf8e2afSMika Westerberg 
3403edf8e2afSMika Westerberg     /* write prstatus for each thread */
340452a53afeSEmilio G. Cota     QTAILQ_FOREACH(ets, &info->thread_list, ets_link) {
3405edf8e2afSMika Westerberg         if ((error = write_note(&ets->notes[0], fd)) != 0)
3406edf8e2afSMika Westerberg             return (error);
3407edf8e2afSMika Westerberg     }
3408edf8e2afSMika Westerberg 
3409edf8e2afSMika Westerberg     return (0);
3410edf8e2afSMika Westerberg }
3411edf8e2afSMika Westerberg 
3412edf8e2afSMika Westerberg /*
3413edf8e2afSMika Westerberg  * Write out ELF coredump.
3414edf8e2afSMika Westerberg  *
3415edf8e2afSMika Westerberg  * See documentation of ELF object file format in:
3416edf8e2afSMika Westerberg  * http://www.caldera.com/developers/devspecs/gabi41.pdf
3417edf8e2afSMika Westerberg  *
3418edf8e2afSMika Westerberg  * Coredump format in linux is following:
3419edf8e2afSMika Westerberg  *
3420edf8e2afSMika Westerberg  * 0   +----------------------+         \
3421edf8e2afSMika Westerberg  *     | ELF header           | ET_CORE  |
3422edf8e2afSMika Westerberg  *     +----------------------+          |
3423edf8e2afSMika Westerberg  *     | ELF program headers  |          |--- headers
3424edf8e2afSMika Westerberg  *     | - NOTE section       |          |
3425edf8e2afSMika Westerberg  *     | - PT_LOAD sections   |          |
3426edf8e2afSMika Westerberg  *     +----------------------+         /
3427edf8e2afSMika Westerberg  *     | NOTEs:               |
3428edf8e2afSMika Westerberg  *     | - NT_PRSTATUS        |
3429edf8e2afSMika Westerberg  *     | - NT_PRSINFO         |
3430edf8e2afSMika Westerberg  *     | - NT_AUXV            |
3431edf8e2afSMika Westerberg  *     +----------------------+ <-- aligned to target page
3432edf8e2afSMika Westerberg  *     | Process memory dump  |
3433edf8e2afSMika Westerberg  *     :                      :
3434edf8e2afSMika Westerberg  *     .                      .
3435edf8e2afSMika Westerberg  *     :                      :
3436edf8e2afSMika Westerberg  *     |                      |
3437edf8e2afSMika Westerberg  *     +----------------------+
3438edf8e2afSMika Westerberg  *
3439edf8e2afSMika Westerberg  * NT_PRSTATUS -> struct elf_prstatus (per thread)
3440edf8e2afSMika Westerberg  * NT_PRSINFO  -> struct elf_prpsinfo
3441edf8e2afSMika Westerberg  * NT_AUXV is array of { type, value } pairs (see fill_auxv_note()).
3442edf8e2afSMika Westerberg  *
3443edf8e2afSMika Westerberg  * Format follows System V format as close as possible.  Current
3444edf8e2afSMika Westerberg  * version limitations are as follows:
3445edf8e2afSMika Westerberg  *     - no floating point registers are dumped
3446edf8e2afSMika Westerberg  *
3447edf8e2afSMika Westerberg  * Function returns 0 in case of success, negative errno otherwise.
3448edf8e2afSMika Westerberg  *
3449edf8e2afSMika Westerberg  * TODO: make this work also during runtime: it should be
3450edf8e2afSMika Westerberg  * possible to force coredump from running process and then
3451edf8e2afSMika Westerberg  * continue processing.  For example qemu could set up SIGUSR2
3452edf8e2afSMika Westerberg  * handler (provided that target process haven't registered
3453edf8e2afSMika Westerberg  * handler for that) that does the dump when signal is received.
3454edf8e2afSMika Westerberg  */
34559349b4f9SAndreas Färber static int elf_core_dump(int signr, const CPUArchState *env)
3456edf8e2afSMika Westerberg {
34570429a971SAndreas Färber     const CPUState *cpu = ENV_GET_CPU((CPUArchState *)env);
34580429a971SAndreas Färber     const TaskState *ts = (const TaskState *)cpu->opaque;
3459edf8e2afSMika Westerberg     struct vm_area_struct *vma = NULL;
3460edf8e2afSMika Westerberg     char corefile[PATH_MAX];
3461edf8e2afSMika Westerberg     struct elf_note_info info;
3462edf8e2afSMika Westerberg     struct elfhdr elf;
3463edf8e2afSMika Westerberg     struct elf_phdr phdr;
3464edf8e2afSMika Westerberg     struct rlimit dumpsize;
3465edf8e2afSMika Westerberg     struct mm_struct *mm = NULL;
3466edf8e2afSMika Westerberg     off_t offset = 0, data_offset = 0;
3467edf8e2afSMika Westerberg     int segs = 0;
3468edf8e2afSMika Westerberg     int fd = -1;
3469edf8e2afSMika Westerberg 
34706afafa86SPeter Maydell     init_note_info(&info);
34716afafa86SPeter Maydell 
3472edf8e2afSMika Westerberg     errno = 0;
3473edf8e2afSMika Westerberg     getrlimit(RLIMIT_CORE, &dumpsize);
3474edf8e2afSMika Westerberg     if (dumpsize.rlim_cur == 0)
3475edf8e2afSMika Westerberg         return 0;
3476edf8e2afSMika Westerberg 
3477edf8e2afSMika Westerberg     if (core_dump_filename(ts, corefile, sizeof (corefile)) < 0)
3478edf8e2afSMika Westerberg         return (-errno);
3479edf8e2afSMika Westerberg 
3480edf8e2afSMika Westerberg     if ((fd = open(corefile, O_WRONLY | O_CREAT,
3481edf8e2afSMika Westerberg                    S_IRUSR|S_IWUSR|S_IRGRP|S_IROTH)) < 0)
3482edf8e2afSMika Westerberg         return (-errno);
3483edf8e2afSMika Westerberg 
3484edf8e2afSMika Westerberg     /*
3485edf8e2afSMika Westerberg      * Walk through target process memory mappings and
3486edf8e2afSMika Westerberg      * set up structure containing this information.  After
3487edf8e2afSMika Westerberg      * this point vma_xxx functions can be used.
3488edf8e2afSMika Westerberg      */
3489edf8e2afSMika Westerberg     if ((mm = vma_init()) == NULL)
3490edf8e2afSMika Westerberg         goto out;
3491edf8e2afSMika Westerberg 
3492edf8e2afSMika Westerberg     walk_memory_regions(mm, vma_walker);
3493edf8e2afSMika Westerberg     segs = vma_get_mapping_count(mm);
3494edf8e2afSMika Westerberg 
3495edf8e2afSMika Westerberg     /*
3496edf8e2afSMika Westerberg      * Construct valid coredump ELF header.  We also
3497edf8e2afSMika Westerberg      * add one more segment for notes.
3498edf8e2afSMika Westerberg      */
3499edf8e2afSMika Westerberg     fill_elf_header(&elf, segs + 1, ELF_MACHINE, 0);
3500edf8e2afSMika Westerberg     if (dump_write(fd, &elf, sizeof (elf)) != 0)
3501edf8e2afSMika Westerberg         goto out;
3502edf8e2afSMika Westerberg 
3503b6af0975SDaniel P. Berrange     /* fill in the in-memory version of notes */
3504edf8e2afSMika Westerberg     if (fill_note_info(&info, signr, env) < 0)
3505edf8e2afSMika Westerberg         goto out;
3506edf8e2afSMika Westerberg 
3507edf8e2afSMika Westerberg     offset += sizeof (elf);                             /* elf header */
3508edf8e2afSMika Westerberg     offset += (segs + 1) * sizeof (struct elf_phdr);    /* program headers */
3509edf8e2afSMika Westerberg 
3510edf8e2afSMika Westerberg     /* write out notes program header */
3511edf8e2afSMika Westerberg     fill_elf_note_phdr(&phdr, info.notes_size, offset);
3512edf8e2afSMika Westerberg 
3513edf8e2afSMika Westerberg     offset += info.notes_size;
3514edf8e2afSMika Westerberg     if (dump_write(fd, &phdr, sizeof (phdr)) != 0)
3515edf8e2afSMika Westerberg         goto out;
3516edf8e2afSMika Westerberg 
3517edf8e2afSMika Westerberg     /*
3518edf8e2afSMika Westerberg      * ELF specification wants data to start at page boundary so
3519edf8e2afSMika Westerberg      * we align it here.
3520edf8e2afSMika Westerberg      */
352180f5ce75SLaurent Vivier     data_offset = offset = roundup(offset, ELF_EXEC_PAGESIZE);
3522edf8e2afSMika Westerberg 
3523edf8e2afSMika Westerberg     /*
3524edf8e2afSMika Westerberg      * Write program headers for memory regions mapped in
3525edf8e2afSMika Westerberg      * the target process.
3526edf8e2afSMika Westerberg      */
3527edf8e2afSMika Westerberg     for (vma = vma_first(mm); vma != NULL; vma = vma_next(vma)) {
3528edf8e2afSMika Westerberg         (void) memset(&phdr, 0, sizeof (phdr));
3529edf8e2afSMika Westerberg 
3530edf8e2afSMika Westerberg         phdr.p_type = PT_LOAD;
3531edf8e2afSMika Westerberg         phdr.p_offset = offset;
3532edf8e2afSMika Westerberg         phdr.p_vaddr = vma->vma_start;
3533edf8e2afSMika Westerberg         phdr.p_paddr = 0;
3534edf8e2afSMika Westerberg         phdr.p_filesz = vma_dump_size(vma);
3535edf8e2afSMika Westerberg         offset += phdr.p_filesz;
3536edf8e2afSMika Westerberg         phdr.p_memsz = vma->vma_end - vma->vma_start;
3537edf8e2afSMika Westerberg         phdr.p_flags = vma->vma_flags & PROT_READ ? PF_R : 0;
3538edf8e2afSMika Westerberg         if (vma->vma_flags & PROT_WRITE)
3539edf8e2afSMika Westerberg             phdr.p_flags |= PF_W;
3540edf8e2afSMika Westerberg         if (vma->vma_flags & PROT_EXEC)
3541edf8e2afSMika Westerberg             phdr.p_flags |= PF_X;
3542edf8e2afSMika Westerberg         phdr.p_align = ELF_EXEC_PAGESIZE;
3543edf8e2afSMika Westerberg 
354480f5ce75SLaurent Vivier         bswap_phdr(&phdr, 1);
3545772034b6SPeter Maydell         if (dump_write(fd, &phdr, sizeof(phdr)) != 0) {
3546772034b6SPeter Maydell             goto out;
3547772034b6SPeter Maydell         }
3548edf8e2afSMika Westerberg     }
3549edf8e2afSMika Westerberg 
3550edf8e2afSMika Westerberg     /*
3551edf8e2afSMika Westerberg      * Next we write notes just after program headers.  No
3552edf8e2afSMika Westerberg      * alignment needed here.
3553edf8e2afSMika Westerberg      */
3554edf8e2afSMika Westerberg     if (write_note_info(&info, fd) < 0)
3555edf8e2afSMika Westerberg         goto out;
3556edf8e2afSMika Westerberg 
3557edf8e2afSMika Westerberg     /* align data to page boundary */
3558edf8e2afSMika Westerberg     if (lseek(fd, data_offset, SEEK_SET) != data_offset)
3559edf8e2afSMika Westerberg         goto out;
3560edf8e2afSMika Westerberg 
3561edf8e2afSMika Westerberg     /*
3562edf8e2afSMika Westerberg      * Finally we can dump process memory into corefile as well.
3563edf8e2afSMika Westerberg      */
3564edf8e2afSMika Westerberg     for (vma = vma_first(mm); vma != NULL; vma = vma_next(vma)) {
3565edf8e2afSMika Westerberg         abi_ulong addr;
3566edf8e2afSMika Westerberg         abi_ulong end;
3567edf8e2afSMika Westerberg 
3568edf8e2afSMika Westerberg         end = vma->vma_start + vma_dump_size(vma);
3569edf8e2afSMika Westerberg 
3570edf8e2afSMika Westerberg         for (addr = vma->vma_start; addr < end;
3571edf8e2afSMika Westerberg              addr += TARGET_PAGE_SIZE) {
3572edf8e2afSMika Westerberg             char page[TARGET_PAGE_SIZE];
3573edf8e2afSMika Westerberg             int error;
3574edf8e2afSMika Westerberg 
3575edf8e2afSMika Westerberg             /*
3576edf8e2afSMika Westerberg              *  Read in page from target process memory and
3577edf8e2afSMika Westerberg              *  write it to coredump file.
3578edf8e2afSMika Westerberg              */
3579edf8e2afSMika Westerberg             error = copy_from_user(page, addr, sizeof (page));
3580edf8e2afSMika Westerberg             if (error != 0) {
358149995e17SAurelien Jarno                 (void) fprintf(stderr, "unable to dump " TARGET_ABI_FMT_lx "\n",
3582edf8e2afSMika Westerberg                                addr);
3583edf8e2afSMika Westerberg                 errno = -error;
3584edf8e2afSMika Westerberg                 goto out;
3585edf8e2afSMika Westerberg             }
3586edf8e2afSMika Westerberg             if (dump_write(fd, page, TARGET_PAGE_SIZE) < 0)
3587edf8e2afSMika Westerberg                 goto out;
3588edf8e2afSMika Westerberg         }
3589edf8e2afSMika Westerberg     }
3590edf8e2afSMika Westerberg 
3591edf8e2afSMika Westerberg  out:
3592edf8e2afSMika Westerberg     free_note_info(&info);
3593edf8e2afSMika Westerberg     if (mm != NULL)
3594edf8e2afSMika Westerberg         vma_delete(mm);
3595edf8e2afSMika Westerberg     (void) close(fd);
3596edf8e2afSMika Westerberg 
3597edf8e2afSMika Westerberg     if (errno != 0)
3598edf8e2afSMika Westerberg         return (-errno);
3599edf8e2afSMika Westerberg     return (0);
3600edf8e2afSMika Westerberg }
3601edf8e2afSMika Westerberg #endif /* USE_ELF_CORE_DUMP */
3602edf8e2afSMika Westerberg 
3603e5fe0c52Spbrook void do_init_thread(struct target_pt_regs *regs, struct image_info *infop)
3604e5fe0c52Spbrook {
3605e5fe0c52Spbrook     init_thread(regs, infop);
3606e5fe0c52Spbrook }
3607