4 * Copyright (C) 1999 Arun Sharma <arun.sharma@intel.com>
5 * Copyright (C) 2001 Hewlett-Packard Co
6 * David Mosberger-Tang <davidm@hpl.hp.com>
8 * 06/16/00 A. Mallick initialize csd/ssd/tssd/cflg for ia32_load_state
9 * 04/13/01 D. Mosberger dropped saving tssd in ar.k1---it's not needed
10 * 09/14/01 D. Mosberger fixed memory management for gdt/tss page
12 #include <linux/config.h>
14 #include <linux/types.h>
16 #include <linux/security.h>
18 #include <asm/param.h>
19 #include <asm/signal.h>
22 #include "elfcore32.h"
24 /* Override some function names */
26 #define start_thread ia32_start_thread
27 #define elf_format elf32_format
28 #define init_elf_binfmt init_elf32_binfmt
29 #define exit_elf_binfmt exit_elf32_binfmt
32 #define CLOCKS_PER_SEC IA32_CLOCKS_PER_SEC
34 extern void ia64_elf32_init (struct pt_regs
*regs
);
36 static void elf32_set_personality (void);
38 #define setup_arg_pages(bprm,exec) ia32_setup_arg_pages(bprm,exec)
39 #define elf_map elf32_map
41 #undef SET_PERSONALITY
42 #define SET_PERSONALITY(ex, ibcs2) elf32_set_personality()
44 #define elf_read_implies_exec(ex, have_pt_gnu_stack) (!(have_pt_gnu_stack))
46 /* Ugly but avoids duplication */
47 #include "../../../fs/binfmt_elf.c"
49 extern struct page
*ia32_shared_page
[];
50 extern unsigned long *ia32_gdt
;
51 extern struct page
*ia32_gate_page
;
54 ia32_install_shared_page (struct vm_area_struct
*vma
, unsigned long address
, int *type
)
56 struct page
*pg
= ia32_shared_page
[smp_processor_id()];
59 *type
= VM_FAULT_MINOR
;
64 ia32_install_gate_page (struct vm_area_struct
*vma
, unsigned long address
, int *type
)
66 struct page
*pg
= ia32_gate_page
;
69 *type
= VM_FAULT_MINOR
;
74 static struct vm_operations_struct ia32_shared_page_vm_ops
= {
75 .nopage
= ia32_install_shared_page
78 static struct vm_operations_struct ia32_gate_page_vm_ops
= {
79 .nopage
= ia32_install_gate_page
83 ia64_elf32_init (struct pt_regs
*regs
)
85 struct vm_area_struct
*vma
;
88 * Map GDT below 4GB, where the processor can find it. We need to map
89 * it with privilege level 3 because the IVE uses non-privileged accesses to these
90 * tables. IA-32 segmentation is used to protect against IA-32 accesses to them.
92 vma
= kmem_cache_alloc(vm_area_cachep
, SLAB_KERNEL
);
94 memset(vma
, 0, sizeof(*vma
));
95 vma
->vm_mm
= current
->mm
;
96 vma
->vm_start
= IA32_GDT_OFFSET
;
97 vma
->vm_end
= vma
->vm_start
+ PAGE_SIZE
;
98 vma
->vm_page_prot
= PAGE_SHARED
;
99 vma
->vm_flags
= VM_READ
|VM_MAYREAD
|VM_RESERVED
;
100 vma
->vm_ops
= &ia32_shared_page_vm_ops
;
101 down_write(¤t
->mm
->mmap_sem
);
103 insert_vm_struct(current
->mm
, vma
);
105 up_write(¤t
->mm
->mmap_sem
);
109 * When user stack is not executable, push sigreturn code to stack makes
110 * segmentation fault raised when returning to kernel. So now sigreturn
111 * code is locked in specific gate page, which is pointed by pretcode
112 * when setup_frame_ia32
114 vma
= kmem_cache_alloc(vm_area_cachep
, SLAB_KERNEL
);
116 memset(vma
, 0, sizeof(*vma
));
117 vma
->vm_mm
= current
->mm
;
118 vma
->vm_start
= IA32_GATE_OFFSET
;
119 vma
->vm_end
= vma
->vm_start
+ PAGE_SIZE
;
120 vma
->vm_page_prot
= PAGE_COPY_EXEC
;
121 vma
->vm_flags
= VM_READ
| VM_MAYREAD
| VM_EXEC
122 | VM_MAYEXEC
| VM_RESERVED
;
123 vma
->vm_ops
= &ia32_gate_page_vm_ops
;
124 down_write(¤t
->mm
->mmap_sem
);
126 insert_vm_struct(current
->mm
, vma
);
128 up_write(¤t
->mm
->mmap_sem
);
132 * Install LDT as anonymous memory. This gives us all-zero segment descriptors
133 * until a task modifies them via modify_ldt().
135 vma
= kmem_cache_alloc(vm_area_cachep
, SLAB_KERNEL
);
137 memset(vma
, 0, sizeof(*vma
));
138 vma
->vm_mm
= current
->mm
;
139 vma
->vm_start
= IA32_LDT_OFFSET
;
140 vma
->vm_end
= vma
->vm_start
+ PAGE_ALIGN(IA32_LDT_ENTRIES
*IA32_LDT_ENTRY_SIZE
);
141 vma
->vm_page_prot
= PAGE_SHARED
;
142 vma
->vm_flags
= VM_READ
|VM_WRITE
|VM_MAYREAD
|VM_MAYWRITE
;
143 down_write(¤t
->mm
->mmap_sem
);
145 insert_vm_struct(current
->mm
, vma
);
147 up_write(¤t
->mm
->mmap_sem
);
150 ia64_psr(regs
)->ac
= 0; /* turn off alignment checking */
153 * According to the ABI %edx points to an `atexit' handler. Since we don't have
154 * one we'll set it to 0 and initialize all the other registers just to make
155 * things more deterministic, ala the i386 implementation.
157 regs
->r8
= 0; /* %eax */
158 regs
->r11
= 0; /* %ebx */
159 regs
->r9
= 0; /* %ecx */
160 regs
->r10
= 0; /* %edx */
161 regs
->r13
= 0; /* %ebp */
162 regs
->r14
= 0; /* %esi */
163 regs
->r15
= 0; /* %edi */
165 current
->thread
.eflag
= IA32_EFLAG
;
166 current
->thread
.fsr
= IA32_FSR_DEFAULT
;
167 current
->thread
.fcr
= IA32_FCR_DEFAULT
;
168 current
->thread
.fir
= 0;
169 current
->thread
.fdr
= 0;
172 * Setup GDTD. Note: GDTD is the descrambled version of the pseudo-descriptor
173 * format defined by Figure 3-11 "Pseudo-Descriptor Format" in the IA-32
174 * architecture manual. Also note that the only fields that are not ignored are
175 * `base', `limit', 'G', `P' (must be 1) and `S' (must be 0).
177 regs
->r31
= IA32_SEG_UNSCRAMBLE(IA32_SEG_DESCRIPTOR(IA32_GDT_OFFSET
, IA32_PAGE_SIZE
- 1,
178 0, 0, 0, 1, 0, 0, 0));
179 /* Setup the segment selectors */
180 regs
->r16
= (__USER_DS
<< 16) | __USER_DS
; /* ES == DS, GS, FS are zero */
181 regs
->r17
= (__USER_DS
<< 16) | __USER_CS
; /* SS, CS; ia32_load_state() sets TSS and LDT */
183 ia32_load_segment_descriptors(current
);
184 ia32_load_state(current
);
188 ia32_setup_arg_pages (struct linux_binprm
*bprm
, int executable_stack
)
190 unsigned long stack_base
;
191 struct vm_area_struct
*mpnt
;
192 struct mm_struct
*mm
= current
->mm
;
195 stack_base
= IA32_STACK_TOP
- MAX_ARG_PAGES
*PAGE_SIZE
;
196 mm
->arg_start
= bprm
->p
+ stack_base
;
198 bprm
->p
+= stack_base
;
200 bprm
->loader
+= stack_base
;
201 bprm
->exec
+= stack_base
;
203 mpnt
= kmem_cache_alloc(vm_area_cachep
, SLAB_KERNEL
);
207 if (security_vm_enough_memory((IA32_STACK_TOP
- (PAGE_MASK
& (unsigned long) bprm
->p
))
209 kmem_cache_free(vm_area_cachep
, mpnt
);
213 memset(mpnt
, 0, sizeof(*mpnt
));
215 down_write(¤t
->mm
->mmap_sem
);
217 mpnt
->vm_mm
= current
->mm
;
218 mpnt
->vm_start
= PAGE_MASK
& (unsigned long) bprm
->p
;
219 mpnt
->vm_end
= IA32_STACK_TOP
;
220 if (executable_stack
== EXSTACK_ENABLE_X
)
221 mpnt
->vm_flags
= VM_STACK_FLAGS
| VM_EXEC
;
222 else if (executable_stack
== EXSTACK_DISABLE_X
)
223 mpnt
->vm_flags
= VM_STACK_FLAGS
& ~VM_EXEC
;
225 mpnt
->vm_flags
= VM_STACK_FLAGS
;
226 mpnt
->vm_page_prot
= (mpnt
->vm_flags
& VM_EXEC
)?
227 PAGE_COPY_EXEC
: PAGE_COPY
;
228 insert_vm_struct(current
->mm
, mpnt
);
229 current
->mm
->stack_vm
= current
->mm
->total_vm
= vma_pages(mpnt
);
232 for (i
= 0 ; i
< MAX_ARG_PAGES
; i
++) {
233 struct page
*page
= bprm
->page
[i
];
235 bprm
->page
[i
] = NULL
;
236 install_arg_page(mpnt
, page
, stack_base
);
238 stack_base
+= PAGE_SIZE
;
240 up_write(¤t
->mm
->mmap_sem
);
242 /* Can't do it in ia64_elf32_init(). Needs to be done before calls to
244 current
->thread
.ppl
= ia32_init_pp_list();
250 elf32_set_personality (void)
252 set_personality(PER_LINUX32
);
253 current
->thread
.map_base
= IA32_PAGE_OFFSET
/3;
254 current
->thread
.task_size
= IA32_PAGE_OFFSET
; /* use what Linux/x86 uses... */
255 set_fs(USER_DS
); /* set addr limit for new TASK_SIZE */
259 elf32_map (struct file
*filep
, unsigned long addr
, struct elf_phdr
*eppnt
, int prot
, int type
)
261 unsigned long pgoff
= (eppnt
->p_vaddr
) & ~IA32_PAGE_MASK
;
263 return ia32_do_mmap(filep
, (addr
& IA32_PAGE_MASK
), eppnt
->p_filesz
+ pgoff
, prot
, type
,
264 eppnt
->p_offset
- pgoff
);
267 #define cpu_uses_ia32el() (local_cpu_data->family > 0x1f)
269 static int __init
check_elf32_binfmt(void)
271 if (cpu_uses_ia32el()) {
272 printk("Please use IA-32 EL for executing IA-32 binaries\n");
273 return unregister_binfmt(&elf_format
);
278 module_init(check_elf32_binfmt
)