blob: c1adf7ba3fd16aaece7fc79a4b7afde720786316 [file] [log] [blame]
Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * Copyright (C) 2000, 2001, 2002 Jeff Dike (jdike@karaya.com)
3 * Copyright 2003 PathScale, Inc.
4 * Licensed under the GPL
5 */
6
7#include "linux/config.h"
8#include "linux/kernel.h"
9#include "linux/sched.h"
10#include "linux/interrupt.h"
11#include "linux/mm.h"
12#include "linux/slab.h"
13#include "linux/utsname.h"
14#include "linux/fs.h"
15#include "linux/utime.h"
16#include "linux/smp_lock.h"
17#include "linux/module.h"
18#include "linux/init.h"
19#include "linux/capability.h"
20#include "linux/vmalloc.h"
21#include "linux/spinlock.h"
22#include "linux/proc_fs.h"
23#include "linux/ptrace.h"
24#include "linux/random.h"
25#include "asm/unistd.h"
26#include "asm/mman.h"
27#include "asm/segment.h"
28#include "asm/stat.h"
29#include "asm/pgtable.h"
30#include "asm/processor.h"
31#include "asm/tlbflush.h"
32#include "asm/uaccess.h"
33#include "asm/user.h"
34#include "user_util.h"
35#include "kern_util.h"
36#include "kern.h"
37#include "signal_kern.h"
38#include "signal_user.h"
39#include "init.h"
40#include "irq_user.h"
41#include "mem_user.h"
42#include "time_user.h"
43#include "tlb.h"
44#include "frame_kern.h"
45#include "sigcontext.h"
46#include "2_5compat.h"
47#include "os.h"
48#include "mode.h"
49#include "mode_kern.h"
50#include "choose-mode.h"
51
52/* This is a per-cpu array. A processor only modifies its entry and it only
53 * cares about its entry, so it's OK if another processor is modifying its
54 * entry.
55 */
56struct cpu_task cpu_tasks[NR_CPUS] = { [0 ... NR_CPUS - 1] = { -1, NULL } };
57
58struct task_struct *get_task(int pid, int require)
59{
60 struct task_struct *ret;
61
62 read_lock(&tasklist_lock);
63 ret = find_task_by_pid(pid);
64 read_unlock(&tasklist_lock);
65
66 if(require && (ret == NULL)) panic("get_task couldn't find a task\n");
67 return(ret);
68}
69
70int external_pid(void *t)
71{
72 struct task_struct *task = t ? t : current;
73
74 return(CHOOSE_MODE_PROC(external_pid_tt, external_pid_skas, task));
75}
76
77int pid_to_processor_id(int pid)
78{
79 int i;
80
81 for(i = 0; i < ncpus; i++){
82 if(cpu_tasks[i].pid == pid) return(i);
83 }
84 return(-1);
85}
86
87void free_stack(unsigned long stack, int order)
88{
89 free_pages(stack, order);
90}
91
92unsigned long alloc_stack(int order, int atomic)
93{
94 unsigned long page;
95 int flags = GFP_KERNEL;
96
97 if(atomic) flags |= GFP_ATOMIC;
98 page = __get_free_pages(flags, order);
99 if(page == 0)
100 return(0);
101 stack_protections(page);
102 return(page);
103}
104
105int kernel_thread(int (*fn)(void *), void * arg, unsigned long flags)
106{
107 int pid;
108
109 current->thread.request.u.thread.proc = fn;
110 current->thread.request.u.thread.arg = arg;
111 pid = do_fork(CLONE_VM | CLONE_UNTRACED | flags, 0, NULL, 0, NULL,
112 NULL);
113 if(pid < 0)
114 panic("do_fork failed in kernel_thread, errno = %d", pid);
115 return(pid);
116}
117
Linus Torvalds1da177e2005-04-16 15:20:36 -0700118void set_current(void *t)
119{
120 struct task_struct *task = t;
121
122 cpu_tasks[task->thread_info->cpu] = ((struct cpu_task)
123 { external_pid(task), task });
124}
125
126void *_switch_to(void *prev, void *next, void *last)
127{
128 return(CHOOSE_MODE(switch_to_tt(prev, next),
129 switch_to_skas(prev, next)));
130}
131
132void interrupt_end(void)
133{
134 if(need_resched()) schedule();
135 if(test_tsk_thread_flag(current, TIF_SIGPENDING)) do_signal();
136}
137
138void release_thread(struct task_struct *task)
139{
140 CHOOSE_MODE(release_thread_tt(task), release_thread_skas(task));
141}
142
143void exit_thread(void)
144{
Linus Torvalds1da177e2005-04-16 15:20:36 -0700145 unprotect_stack((unsigned long) current_thread);
146}
147
148void *get_current(void)
149{
150 return(current);
151}
152
Linus Torvalds1da177e2005-04-16 15:20:36 -0700153int copy_thread(int nr, unsigned long clone_flags, unsigned long sp,
154 unsigned long stack_top, struct task_struct * p,
155 struct pt_regs *regs)
156{
157 p->thread = (struct thread_struct) INIT_THREAD;
158 return(CHOOSE_MODE_PROC(copy_thread_tt, copy_thread_skas, nr,
159 clone_flags, sp, stack_top, p, regs));
160}
161
162void initial_thread_cb(void (*proc)(void *), void *arg)
163{
164 int save_kmalloc_ok = kmalloc_ok;
165
166 kmalloc_ok = 0;
167 CHOOSE_MODE_PROC(initial_thread_cb_tt, initial_thread_cb_skas, proc,
168 arg);
169 kmalloc_ok = save_kmalloc_ok;
170}
171
172unsigned long stack_sp(unsigned long page)
173{
174 return(page + PAGE_SIZE - sizeof(void *));
175}
176
177int current_pid(void)
178{
179 return(current->pid);
180}
181
182void default_idle(void)
183{
184 uml_idle_timer();
185
186 atomic_inc(&init_mm.mm_count);
187 current->mm = &init_mm;
188 current->active_mm = &init_mm;
189
190 while(1){
191 /* endless idle loop with no priority at all */
192 SET_PRI(current);
193
194 /*
195 * although we are an idle CPU, we do not want to
196 * get into the scheduler unnecessarily.
197 */
198 if(need_resched())
199 schedule();
200
201 idle_sleep(10);
202 }
203}
204
205void cpu_idle(void)
206{
207 CHOOSE_MODE(init_idle_tt(), init_idle_skas());
208}
209
210int page_size(void)
211{
212 return(PAGE_SIZE);
213}
214
215unsigned long page_mask(void)
216{
217 return(PAGE_MASK);
218}
219
220void *um_virt_to_phys(struct task_struct *task, unsigned long addr,
221 pte_t *pte_out)
222{
223 pgd_t *pgd;
224 pud_t *pud;
225 pmd_t *pmd;
226 pte_t *pte;
227
228 if(task->mm == NULL)
229 return(ERR_PTR(-EINVAL));
230 pgd = pgd_offset(task->mm, addr);
231 if(!pgd_present(*pgd))
232 return(ERR_PTR(-EINVAL));
233
234 pud = pud_offset(pgd, addr);
235 if(!pud_present(*pud))
236 return(ERR_PTR(-EINVAL));
237
238 pmd = pmd_offset(pud, addr);
239 if(!pmd_present(*pmd))
240 return(ERR_PTR(-EINVAL));
241
242 pte = pte_offset_kernel(pmd, addr);
243 if(!pte_present(*pte))
244 return(ERR_PTR(-EINVAL));
245
246 if(pte_out != NULL)
247 *pte_out = *pte;
248 return((void *) (pte_val(*pte) & PAGE_MASK) + (addr & ~PAGE_MASK));
249}
250
251char *current_cmd(void)
252{
253#if defined(CONFIG_SMP) || defined(CONFIG_HIGHMEM)
254 return("(Unknown)");
255#else
256 void *addr = um_virt_to_phys(current, current->mm->arg_start, NULL);
257 return IS_ERR(addr) ? "(Unknown)": __va((unsigned long) addr);
258#endif
259}
260
261void force_sigbus(void)
262{
263 printk(KERN_ERR "Killing pid %d because of a lack of memory\n",
264 current->pid);
265 lock_kernel();
266 sigaddset(&current->pending.signal, SIGBUS);
267 recalc_sigpending();
268 current->flags |= PF_SIGNALED;
269 do_exit(SIGBUS | 0x80);
270}
271
272void dump_thread(struct pt_regs *regs, struct user *u)
273{
274}
275
276void enable_hlt(void)
277{
278 panic("enable_hlt");
279}
280
281EXPORT_SYMBOL(enable_hlt);
282
283void disable_hlt(void)
284{
285 panic("disable_hlt");
286}
287
288EXPORT_SYMBOL(disable_hlt);
289
290void *um_kmalloc(int size)
291{
292 return(kmalloc(size, GFP_KERNEL));
293}
294
295void *um_kmalloc_atomic(int size)
296{
297 return(kmalloc(size, GFP_ATOMIC));
298}
299
300void *um_vmalloc(int size)
301{
302 return(vmalloc(size));
303}
304
305unsigned long get_fault_addr(void)
306{
307 return((unsigned long) current->thread.fault_addr);
308}
309
310EXPORT_SYMBOL(get_fault_addr);
311
312void not_implemented(void)
313{
314 printk(KERN_DEBUG "Something isn't implemented in here\n");
315}
316
317EXPORT_SYMBOL(not_implemented);
318
319int user_context(unsigned long sp)
320{
321 unsigned long stack;
322
323 stack = sp & (PAGE_MASK << CONFIG_KERNEL_STACK_ORDER);
324 return(stack != (unsigned long) current_thread);
325}
326
327extern void remove_umid_dir(void);
328
329__uml_exitcall(remove_umid_dir);
330
331extern exitcall_t __uml_exitcall_begin, __uml_exitcall_end;
332
333void do_uml_exitcalls(void)
334{
335 exitcall_t *call;
336
337 call = &__uml_exitcall_end;
338 while (--call >= &__uml_exitcall_begin)
339 (*call)();
340}
341
342char *uml_strdup(char *string)
343{
344 char *new;
345
346 new = kmalloc(strlen(string) + 1, GFP_KERNEL);
347 if(new == NULL) return(NULL);
348 strcpy(new, string);
349 return(new);
350}
351
352void *get_init_task(void)
353{
354 return(&init_thread_union.thread_info.task);
355}
356
357int copy_to_user_proc(void __user *to, void *from, int size)
358{
359 return(copy_to_user(to, from, size));
360}
361
362int copy_from_user_proc(void *to, void __user *from, int size)
363{
364 return(copy_from_user(to, from, size));
365}
366
367int clear_user_proc(void __user *buf, int size)
368{
369 return(clear_user(buf, size));
370}
371
372int strlen_user_proc(char __user *str)
373{
374 return(strlen_user(str));
375}
376
377int smp_sigio_handler(void)
378{
379#ifdef CONFIG_SMP
380 int cpu = current_thread->cpu;
381 IPI_handler(cpu);
382 if(cpu != 0)
383 return(1);
384#endif
385 return(0);
386}
387
388int um_in_interrupt(void)
389{
390 return(in_interrupt());
391}
392
393int cpu(void)
394{
395 return(current_thread->cpu);
396}
397
398static atomic_t using_sysemu = ATOMIC_INIT(0);
399int sysemu_supported;
400
401void set_using_sysemu(int value)
402{
403 if (value > sysemu_supported)
404 return;
405 atomic_set(&using_sysemu, value);
406}
407
408int get_using_sysemu(void)
409{
410 return atomic_read(&using_sysemu);
411}
412
413static int proc_read_sysemu(char *buf, char **start, off_t offset, int size,int *eof, void *data)
414{
415 if (snprintf(buf, size, "%d\n", get_using_sysemu()) < size) /*No overflow*/
416 *eof = 1;
417
418 return strlen(buf);
419}
420
421static int proc_write_sysemu(struct file *file,const char *buf, unsigned long count,void *data)
422{
423 char tmp[2];
424
425 if (copy_from_user(tmp, buf, 1))
426 return -EFAULT;
427
428 if (tmp[0] >= '0' && tmp[0] <= '2')
429 set_using_sysemu(tmp[0] - '0');
430 return count; /*We use the first char, but pretend to write everything*/
431}
432
433int __init make_proc_sysemu(void)
434{
435 struct proc_dir_entry *ent;
436 if (!sysemu_supported)
437 return 0;
438
439 ent = create_proc_entry("sysemu", 0600, &proc_root);
440
441 if (ent == NULL)
442 {
443 printk("Failed to register /proc/sysemu\n");
444 return(0);
445 }
446
447 ent->read_proc = proc_read_sysemu;
448 ent->write_proc = proc_write_sysemu;
449
450 return 0;
451}
452
453late_initcall(make_proc_sysemu);
454
455int singlestepping(void * t)
456{
457 struct task_struct *task = t ? t : current;
458
459 if ( ! (task->ptrace & PT_DTRACE) )
460 return(0);
461
462 if (task->thread.singlestep_syscall)
463 return(1);
464
465 return 2;
466}
467
Bodo Stroesserb8bd0222005-05-06 21:30:53 -0700468/*
469 * Only x86 and x86_64 have an arch_align_stack().
470 * All other arches have "#define arch_align_stack(x) (x)"
471 * in their asm/system.h
472 * As this is included in UML from asm-um/system-generic.h,
473 * we can use it to behave as the subarch does.
474 */
475#ifndef arch_align_stack
Linus Torvalds1da177e2005-04-16 15:20:36 -0700476unsigned long arch_align_stack(unsigned long sp)
477{
478 if (randomize_va_space)
479 sp -= get_random_int() % 8192;
480 return sp & ~0xf;
481}
Bodo Stroesserb8bd0222005-05-06 21:30:53 -0700482#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -0700483
484
485/*
486 * Overrides for Emacs so that we follow Linus's tabbing style.
487 * Emacs will notice this stuff at the end of the file and automatically
488 * adjust the settings for this buffer only. This must remain at the end
489 * of the file.
490 * ---------------------------------------------------------------------------
491 * Local variables:
492 * c-file-style: "linux"
493 * End:
494 */