2 * a.out loader for x86-64
4 * Copyright (C) 1991, 1992, 1996 Linus Torvalds
5 * Hacked together by Andi Kleen
8 #include <linux/module.h>
10 #include <linux/time.h>
11 #include <linux/kernel.h>
13 #include <linux/mman.h>
14 #include <linux/a.out.h>
15 #include <linux/errno.h>
16 #include <linux/signal.h>
17 #include <linux/string.h>
19 #include <linux/file.h>
20 #include <linux/stat.h>
21 #include <linux/fcntl.h>
22 #include <linux/ptrace.h>
23 #include <linux/user.h>
24 #include <linux/slab.h>
25 #include <linux/binfmts.h>
26 #include <linux/personality.h>
27 #include <linux/init.h>
29 #include <asm/system.h>
30 #include <asm/uaccess.h>
31 #include <asm/pgalloc.h>
32 #include <asm/cacheflush.h>
33 #include <asm/user32.h>
37 #undef CORE_DUMP /* probably broken */
39 static int load_aout_binary(struct linux_binprm
*, struct pt_regs
* regs
);
40 static int load_aout_library(struct file
*);
43 static int aout_core_dump(long signr
, struct pt_regs
* regs
, struct file
*file
);
46 * fill in the user structure for a core dump..
48 static void dump_thread32(struct pt_regs
* regs
, struct user32
* dump
)
52 /* changed the size calculations - should hopefully work better. lbt */
55 dump
->start_stack
= regs
->rsp
& ~(PAGE_SIZE
- 1);
56 dump
->u_tsize
= ((unsigned long) current
->mm
->end_code
) >> PAGE_SHIFT
;
57 dump
->u_dsize
= ((unsigned long) (current
->mm
->brk
+ (PAGE_SIZE
-1))) >> PAGE_SHIFT
;
58 dump
->u_dsize
-= dump
->u_tsize
;
60 dump
->u_debugreg
[0] = current
->thread
.debugreg0
;
61 dump
->u_debugreg
[1] = current
->thread
.debugreg1
;
62 dump
->u_debugreg
[2] = current
->thread
.debugreg2
;
63 dump
->u_debugreg
[3] = current
->thread
.debugreg3
;
64 dump
->u_debugreg
[4] = 0;
65 dump
->u_debugreg
[5] = 0;
66 dump
->u_debugreg
[6] = current
->thread
.debugreg6
;
67 dump
->u_debugreg
[7] = current
->thread
.debugreg7
;
69 if (dump
->start_stack
< 0xc0000000)
70 dump
->u_ssize
= ((unsigned long) (0xc0000000 - dump
->start_stack
)) >> PAGE_SHIFT
;
72 dump
->regs
.ebx
= regs
->rbx
;
73 dump
->regs
.ecx
= regs
->rcx
;
74 dump
->regs
.edx
= regs
->rdx
;
75 dump
->regs
.esi
= regs
->rsi
;
76 dump
->regs
.edi
= regs
->rdi
;
77 dump
->regs
.ebp
= regs
->rbp
;
78 dump
->regs
.eax
= regs
->rax
;
79 dump
->regs
.ds
= current
->thread
.ds
;
80 dump
->regs
.es
= current
->thread
.es
;
81 asm("movl %%fs,%0" : "=r" (fs
)); dump
->regs
.fs
= fs
;
82 asm("movl %%gs,%0" : "=r" (gs
)); dump
->regs
.gs
= gs
;
83 dump
->regs
.orig_eax
= regs
->orig_rax
;
84 dump
->regs
.eip
= regs
->rip
;
85 dump
->regs
.cs
= regs
->cs
;
86 dump
->regs
.eflags
= regs
->eflags
;
87 dump
->regs
.esp
= regs
->rsp
;
88 dump
->regs
.ss
= regs
->ss
;
93 dump
->u_fpvalid
= dump_fpu (regs
, &dump
->i387
);
99 static struct linux_binfmt aout_format
= {
100 .module
= THIS_MODULE
,
101 .load_binary
= load_aout_binary
,
102 .load_shlib
= load_aout_library
,
104 .core_dump
= aout_core_dump
,
106 .min_coredump
= PAGE_SIZE
109 static void set_brk(unsigned long start
, unsigned long end
)
111 start
= PAGE_ALIGN(start
);
112 end
= PAGE_ALIGN(end
);
115 down_write(¤t
->mm
->mmap_sem
);
116 do_brk(start
, end
- start
);
117 up_write(¤t
->mm
->mmap_sem
);
122 * These are the only things you should do on a core-file: use only these
123 * macros to write out all the necessary info.
126 static int dump_write(struct file
*file
, const void *addr
, int nr
)
128 return file
->f_op
->write(file
, addr
, nr
, &file
->f_pos
) == nr
;
131 #define DUMP_WRITE(addr, nr) \
132 if (!dump_write(file, (void *)(addr), (nr))) \
135 #define DUMP_SEEK(offset) \
136 if (file->f_op->llseek) { \
137 if (file->f_op->llseek(file,(offset),0) != (offset)) \
139 } else file->f_pos = (offset)
142 * Routine writes a core dump image in the current directory.
143 * Currently only a stub-function.
145 * Note that setuid/setgid files won't make a core-dump if the uid/gid
146 * changed due to the set[u|g]id. It's enforced by the "current->mm->dumpable"
147 * field, which also makes sure the core-dumps won't be recursive if the
148 * dumping of the process results in another error..
151 static int aout_core_dump(long signr
, struct pt_regs
* regs
, struct file
*file
)
155 unsigned long dump_start
, dump_size
;
157 # define START_DATA(u) (u.u_tsize << PAGE_SHIFT)
158 # define START_STACK(u) (u.start_stack)
163 current
->flags
|= PF_DUMPCORE
;
164 strncpy(dump
.u_comm
, current
->comm
, sizeof(current
->comm
));
165 dump
.u_ar0
= (u32
)(((unsigned long)(&dump
.regs
)) - ((unsigned long)(&dump
)));
167 dump_thread32(regs
, &dump
);
169 /* If the size of the dump file exceeds the rlimit, then see what would happen
170 if we wrote the stack, but not the data area. */
171 if ((dump
.u_dsize
+dump
.u_ssize
+1) * PAGE_SIZE
>
172 current
->signal
->rlim
[RLIMIT_CORE
].rlim_cur
)
175 /* Make sure we have enough room to write the stack and data areas. */
176 if ((dump
.u_ssize
+1) * PAGE_SIZE
>
177 current
->signal
->rlim
[RLIMIT_CORE
].rlim_cur
)
180 /* make sure we actually have a data and stack area to dump */
182 if (!access_ok(VERIFY_READ
, (void *) (unsigned long)START_DATA(dump
), dump
.u_dsize
<< PAGE_SHIFT
))
184 if (!access_ok(VERIFY_READ
, (void *) (unsigned long)START_STACK(dump
), dump
.u_ssize
<< PAGE_SHIFT
))
189 DUMP_WRITE(&dump
,sizeof(dump
));
190 /* Now dump all of the user data. Include malloced stuff as well */
191 DUMP_SEEK(PAGE_SIZE
);
192 /* now we start writing out the user space info */
194 /* Dump the data area */
195 if (dump
.u_dsize
!= 0) {
196 dump_start
= START_DATA(dump
);
197 dump_size
= dump
.u_dsize
<< PAGE_SHIFT
;
198 DUMP_WRITE(dump_start
,dump_size
);
200 /* Now prepare to dump the stack area */
201 if (dump
.u_ssize
!= 0) {
202 dump_start
= START_STACK(dump
);
203 dump_size
= dump
.u_ssize
<< PAGE_SHIFT
;
204 DUMP_WRITE(dump_start
,dump_size
);
206 /* Finally dump the task struct. Not be used by gdb, but could be useful */
208 DUMP_WRITE(current
,sizeof(*current
));
216 * create_aout_tables() parses the env- and arg-strings in new user
217 * memory and creates the pointer tables from them, and puts their
218 * addresses on the "stack", returning the new stack pointer value.
220 static u32 __user
*create_aout_tables(char __user
*p
, struct linux_binprm
*bprm
)
225 int argc
= bprm
->argc
;
226 int envc
= bprm
->envc
;
228 sp
= (u32 __user
*) ((-(unsigned long)sizeof(u32
)) & (unsigned long) p
);
233 put_user((unsigned long) envp
,--sp
);
234 put_user((unsigned long) argv
,--sp
);
236 current
->mm
->arg_start
= (unsigned long) p
;
239 put_user((u32
)(unsigned long)p
,argv
++);
245 current
->mm
->arg_end
= current
->mm
->env_start
= (unsigned long) p
;
248 put_user((u32
)(unsigned long)p
,envp
++);
254 current
->mm
->env_end
= (unsigned long) p
;
259 * These are the functions used to load a.out style executables and shared
260 * libraries. There is no binary dependent code anywhere else.
263 static int load_aout_binary(struct linux_binprm
* bprm
, struct pt_regs
* regs
)
267 unsigned long fd_offset
;
271 ex
= *((struct exec
*) bprm
->buf
); /* exec-header */
272 if ((N_MAGIC(ex
) != ZMAGIC
&& N_MAGIC(ex
) != OMAGIC
&&
273 N_MAGIC(ex
) != QMAGIC
&& N_MAGIC(ex
) != NMAGIC
) ||
274 N_TRSIZE(ex
) || N_DRSIZE(ex
) ||
275 i_size_read(bprm
->file
->f_dentry
->d_inode
) < ex
.a_text
+ex
.a_data
+N_SYMSIZE(ex
)+N_TXTOFF(ex
)) {
279 fd_offset
= N_TXTOFF(ex
);
281 /* Check initial limits. This avoids letting people circumvent
282 * size limits imposed on them by creating programs with large
283 * arrays in the data or bss.
285 rlim
= current
->signal
->rlim
[RLIMIT_DATA
].rlim_cur
;
286 if (rlim
>= RLIM_INFINITY
)
288 if (ex
.a_data
+ ex
.a_bss
> rlim
)
291 /* Flush all traces of the currently running executable */
292 retval
= flush_old_exec(bprm
);
296 regs
->cs
= __USER32_CS
;
297 regs
->r8
= regs
->r9
= regs
->r10
= regs
->r11
= regs
->r12
=
298 regs
->r13
= regs
->r14
= regs
->r15
= 0;
300 /* OK, This is the point of no return */
301 set_personality(PER_LINUX
);
302 set_thread_flag(TIF_IA32
);
303 clear_thread_flag(TIF_ABI_PENDING
);
305 current
->mm
->end_code
= ex
.a_text
+
306 (current
->mm
->start_code
= N_TXTADDR(ex
));
307 current
->mm
->end_data
= ex
.a_data
+
308 (current
->mm
->start_data
= N_DATADDR(ex
));
309 current
->mm
->brk
= ex
.a_bss
+
310 (current
->mm
->start_brk
= N_BSSADDR(ex
));
311 current
->mm
->free_area_cache
= TASK_UNMAPPED_BASE
;
312 current
->mm
->cached_hole_size
= 0;
314 current
->mm
->mmap
= NULL
;
316 current
->flags
&= ~PF_FORKNOEXEC
;
318 if (N_MAGIC(ex
) == OMAGIC
) {
319 unsigned long text_addr
, map_size
;
322 text_addr
= N_TXTADDR(ex
);
325 map_size
= ex
.a_text
+ex
.a_data
;
327 down_write(¤t
->mm
->mmap_sem
);
328 error
= do_brk(text_addr
& PAGE_MASK
, map_size
);
329 up_write(¤t
->mm
->mmap_sem
);
331 if (error
!= (text_addr
& PAGE_MASK
)) {
332 send_sig(SIGKILL
, current
, 0);
336 error
= bprm
->file
->f_op
->read(bprm
->file
, (char *)text_addr
,
337 ex
.a_text
+ex
.a_data
, &pos
);
338 if ((signed long)error
< 0) {
339 send_sig(SIGKILL
, current
, 0);
343 flush_icache_range(text_addr
, text_addr
+ex
.a_text
+ex
.a_data
);
346 static unsigned long error_time
, error_time2
;
347 if ((ex
.a_text
& 0xfff || ex
.a_data
& 0xfff) &&
348 (N_MAGIC(ex
) != NMAGIC
) && (jiffies
-error_time2
) > 5*HZ
)
350 printk(KERN_NOTICE
"executable not page aligned\n");
351 error_time2
= jiffies
;
354 if ((fd_offset
& ~PAGE_MASK
) != 0 &&
355 (jiffies
-error_time
) > 5*HZ
)
358 "fd_offset is not page aligned. Please convert program: %s\n",
359 bprm
->file
->f_dentry
->d_name
.name
);
360 error_time
= jiffies
;
364 if (!bprm
->file
->f_op
->mmap
||((fd_offset
& ~PAGE_MASK
) != 0)) {
365 loff_t pos
= fd_offset
;
366 down_write(¤t
->mm
->mmap_sem
);
367 do_brk(N_TXTADDR(ex
), ex
.a_text
+ex
.a_data
);
368 up_write(¤t
->mm
->mmap_sem
);
369 bprm
->file
->f_op
->read(bprm
->file
,(char *)N_TXTADDR(ex
),
370 ex
.a_text
+ex
.a_data
, &pos
);
371 flush_icache_range((unsigned long) N_TXTADDR(ex
),
372 (unsigned long) N_TXTADDR(ex
) +
373 ex
.a_text
+ex
.a_data
);
377 down_write(¤t
->mm
->mmap_sem
);
378 error
= do_mmap(bprm
->file
, N_TXTADDR(ex
), ex
.a_text
,
379 PROT_READ
| PROT_EXEC
,
380 MAP_FIXED
| MAP_PRIVATE
| MAP_DENYWRITE
| MAP_EXECUTABLE
| MAP_32BIT
,
382 up_write(¤t
->mm
->mmap_sem
);
384 if (error
!= N_TXTADDR(ex
)) {
385 send_sig(SIGKILL
, current
, 0);
389 down_write(¤t
->mm
->mmap_sem
);
390 error
= do_mmap(bprm
->file
, N_DATADDR(ex
), ex
.a_data
,
391 PROT_READ
| PROT_WRITE
| PROT_EXEC
,
392 MAP_FIXED
| MAP_PRIVATE
| MAP_DENYWRITE
| MAP_EXECUTABLE
| MAP_32BIT
,
393 fd_offset
+ ex
.a_text
);
394 up_write(¤t
->mm
->mmap_sem
);
395 if (error
!= N_DATADDR(ex
)) {
396 send_sig(SIGKILL
, current
, 0);
401 set_binfmt(&aout_format
);
403 set_brk(current
->mm
->start_brk
, current
->mm
->brk
);
405 retval
= ia32_setup_arg_pages(bprm
, IA32_STACK_TOP
, EXSTACK_DEFAULT
);
407 /* Someone check-me: is this error path enough? */
408 send_sig(SIGKILL
, current
, 0);
412 current
->mm
->start_stack
=
413 (unsigned long)create_aout_tables((char __user
*)bprm
->p
, bprm
);
415 asm volatile("movl %0,%%fs" :: "r" (0)); \
416 asm volatile("movl %0,%%es; movl %0,%%ds": :"r" (__USER32_DS
));
418 (regs
)->rip
= ex
.a_entry
;
419 (regs
)->rsp
= current
->mm
->start_stack
;
420 (regs
)->eflags
= 0x200;
421 (regs
)->cs
= __USER32_CS
;
422 (regs
)->ss
= __USER32_DS
;
424 if (unlikely(current
->ptrace
& PT_PTRACED
)) {
425 if (current
->ptrace
& PT_TRACE_EXEC
)
426 ptrace_notify ((PTRACE_EVENT_EXEC
<< 8) | SIGTRAP
);
428 send_sig(SIGTRAP
, current
, 0);
433 static int load_aout_library(struct file
*file
)
435 struct inode
* inode
;
436 unsigned long bss
, start_addr
, len
;
441 inode
= file
->f_dentry
->d_inode
;
444 error
= kernel_read(file
, 0, (char *) &ex
, sizeof(ex
));
445 if (error
!= sizeof(ex
))
448 /* We come in here for the regular a.out style of shared libraries */
449 if ((N_MAGIC(ex
) != ZMAGIC
&& N_MAGIC(ex
) != QMAGIC
) || N_TRSIZE(ex
) ||
450 N_DRSIZE(ex
) || ((ex
.a_entry
& 0xfff) && N_MAGIC(ex
) == ZMAGIC
) ||
451 i_size_read(inode
) < ex
.a_text
+ex
.a_data
+N_SYMSIZE(ex
)+N_TXTOFF(ex
)) {
458 /* For QMAGIC, the starting address is 0x20 into the page. We mask
459 this off to get the starting address for the page */
461 start_addr
= ex
.a_entry
& 0xfffff000;
463 if ((N_TXTOFF(ex
) & ~PAGE_MASK
) != 0) {
464 loff_t pos
= N_TXTOFF(ex
);
467 static unsigned long error_time
;
468 if ((jiffies
-error_time
) > 5*HZ
)
471 "N_TXTOFF is not page aligned. Please convert library: %s\n",
472 file
->f_dentry
->d_name
.name
);
473 error_time
= jiffies
;
476 down_write(¤t
->mm
->mmap_sem
);
477 do_brk(start_addr
, ex
.a_text
+ ex
.a_data
+ ex
.a_bss
);
478 up_write(¤t
->mm
->mmap_sem
);
480 file
->f_op
->read(file
, (char *)start_addr
,
481 ex
.a_text
+ ex
.a_data
, &pos
);
482 flush_icache_range((unsigned long) start_addr
,
483 (unsigned long) start_addr
+ ex
.a_text
+ ex
.a_data
);
488 /* Now use mmap to map the library into memory. */
489 down_write(¤t
->mm
->mmap_sem
);
490 error
= do_mmap(file
, start_addr
, ex
.a_text
+ ex
.a_data
,
491 PROT_READ
| PROT_WRITE
| PROT_EXEC
,
492 MAP_FIXED
| MAP_PRIVATE
| MAP_DENYWRITE
| MAP_32BIT
,
494 up_write(¤t
->mm
->mmap_sem
);
496 if (error
!= start_addr
)
499 len
= PAGE_ALIGN(ex
.a_text
+ ex
.a_data
);
500 bss
= ex
.a_text
+ ex
.a_data
+ ex
.a_bss
;
502 down_write(¤t
->mm
->mmap_sem
);
503 error
= do_brk(start_addr
+ len
, bss
- len
);
504 up_write(¤t
->mm
->mmap_sem
);
506 if (error
!= start_addr
+ len
)
514 static int __init
init_aout_binfmt(void)
516 return register_binfmt(&aout_format
);
519 static void __exit
exit_aout_binfmt(void)
521 unregister_binfmt(&aout_format
);
524 module_init(init_aout_binfmt
);
525 module_exit(exit_aout_binfmt
);
526 MODULE_LICENSE("GPL");