2 * linux/arch/m68k/kernel/process.c
4 * Copyright (C) 1995 Hamish Macdonald
6 * 68060 fixes by Jesper Skov
10 * This file handles the architecture-dependent parts of process handling..
13 #include <linux/config.h>
14 #include <linux/errno.h>
15 #include <linux/module.h>
16 #include <linux/sched.h>
17 #include <linux/kernel.h>
19 #include <linux/smp.h>
20 #include <linux/smp_lock.h>
21 #include <linux/stddef.h>
22 #include <linux/unistd.h>
23 #include <linux/ptrace.h>
24 #include <linux/slab.h>
25 #include <linux/user.h>
26 #include <linux/a.out.h>
27 #include <linux/reboot.h>
28 #include <linux/init_task.h>
29 #include <linux/mqueue.h>
31 #include <asm/uaccess.h>
32 #include <asm/system.h>
33 #include <asm/traps.h>
34 #include <asm/machdep.h>
35 #include <asm/setup.h>
36 #include <asm/pgtable.h>
39 * Initial task/thread structure. Make this a per-architecture thing,
40 * because different architectures tend to have different
41 * alignment requirements and potentially different initial
44 static struct fs_struct init_fs
= INIT_FS
;
45 static struct files_struct init_files
= INIT_FILES
;
46 static struct signal_struct init_signals
= INIT_SIGNALS(init_signals
);
47 static struct sighand_struct init_sighand
= INIT_SIGHAND(init_sighand
);
48 struct mm_struct init_mm
= INIT_MM(init_mm
);
50 EXPORT_SYMBOL(init_mm
);
52 union thread_union init_thread_union
53 __attribute__((section(".data.init_task"), aligned(THREAD_SIZE
)))
54 = { INIT_THREAD_INFO(init_task
) };
56 /* initial task structure */
57 struct task_struct init_task
= INIT_TASK(init_task
);
59 EXPORT_SYMBOL(init_task
);
61 asmlinkage
void ret_from_fork(void);
65 * Return saved PC from a blocked thread
67 unsigned long thread_saved_pc(struct task_struct
*tsk
)
69 struct switch_stack
*sw
= (struct switch_stack
*)tsk
->thread
.ksp
;
70 /* Check whether the thread is blocked in resume() */
71 if (in_sched_functions(sw
->retpc
))
72 return ((unsigned long *)sw
->a6
)[1];
78 * The idle loop on an m68k..
80 void default_idle(void)
83 #if defined(MACH_ATARI_ONLY) && !defined(CONFIG_HADES)
84 /* block out HSYNC on the atari (falcon) */
85 __asm__("stop #0x2200" : : : "cc");
87 __asm__("stop #0x2000" : : : "cc");
91 void (*idle
)(void) = default_idle
;
94 * The idle thread. There's no useful work to be
95 * done, so just try to conserve power and have a
96 * low exit latency (ie sit in a loop waiting for
97 * somebody to say that they'd like to reschedule)
101 /* endless idle loop with no priority at all */
103 while (!need_resched())
109 void machine_restart(char * __unused
)
116 void machine_halt(void)
123 void machine_power_off(void)
130 void show_regs(struct pt_regs
* regs
)
133 printk("Format %02x Vector: %04x PC: %08lx Status: %04x %s\n",
134 regs
->format
, regs
->vector
, regs
->pc
, regs
->sr
, print_tainted());
135 printk("ORIG_D0: %08lx D0: %08lx A2: %08lx A1: %08lx\n",
136 regs
->orig_d0
, regs
->d0
, regs
->a2
, regs
->a1
);
137 printk("A0: %08lx D5: %08lx D4: %08lx\n",
138 regs
->a0
, regs
->d5
, regs
->d4
);
139 printk("D3: %08lx D2: %08lx D1: %08lx\n",
140 regs
->d3
, regs
->d2
, regs
->d1
);
141 if (!(regs
->sr
& PS_S
))
142 printk("USP: %08lx\n", rdusp());
146 * Create a kernel thread
148 int kernel_thread(int (*fn
)(void *), void * arg
, unsigned long flags
)
157 register long retval
__asm__ ("d0");
158 register long clone_arg
__asm__ ("d1") = flags
| CLONE_VM
| CLONE_UNTRACED
;
163 "trap #0\n\t" /* Linux/m68k system call */
164 "tstl %0\n\t" /* child or parent */
165 "jne 1f\n\t" /* parent - jump */
166 "lea %%sp@(%c7),%6\n\t" /* reload current */
168 "movel %3,%%sp@-\n\t" /* push argument */
169 "jsr %4@\n\t" /* call fn */
170 "movel %0,%%d1\n\t" /* pass exit value */
171 "movel %2,%%d0\n\t" /* exit */
175 : "i" (__NR_clone
), "i" (__NR_exit
),
176 "r" (arg
), "a" (fn
), "d" (clone_arg
), "r" (current
),
187 void flush_thread(void)
189 unsigned long zero
= 0;
191 current
->thread
.fs
= __USER_DS
;
193 asm volatile (".chip 68k/68881\n\t"
195 ".chip 68k" : : "a" (&zero
));
199 * "m68k_fork()".. By the time we get here, the
200 * non-volatile registers have also been saved on the
201 * stack. We do some ugly pointer stuff here.. (see
205 asmlinkage
int m68k_fork(struct pt_regs
*regs
)
207 return do_fork(SIGCHLD
, rdusp(), regs
, 0, NULL
, NULL
);
210 asmlinkage
int m68k_vfork(struct pt_regs
*regs
)
212 return do_fork(CLONE_VFORK
| CLONE_VM
| SIGCHLD
, rdusp(), regs
, 0,
216 asmlinkage
int m68k_clone(struct pt_regs
*regs
)
218 unsigned long clone_flags
;
220 int *parent_tidptr
, *child_tidptr
;
222 /* syscall2 puts clone_flags in d1 and usp in d2 */
223 clone_flags
= regs
->d1
;
225 parent_tidptr
= (int *)regs
->d3
;
226 child_tidptr
= (int *)regs
->d4
;
229 return do_fork(clone_flags
, newsp
, regs
, 0,
230 parent_tidptr
, child_tidptr
);
233 int copy_thread(int nr
, unsigned long clone_flags
, unsigned long usp
,
234 unsigned long unused
,
235 struct task_struct
* p
, struct pt_regs
* regs
)
237 struct pt_regs
* childregs
;
238 struct switch_stack
* childstack
, *stack
;
239 unsigned long stack_offset
, *retp
;
241 stack_offset
= THREAD_SIZE
- sizeof(struct pt_regs
);
242 childregs
= (struct pt_regs
*) ((unsigned long) (p
->thread_info
) + stack_offset
);
247 retp
= ((unsigned long *) regs
);
248 stack
= ((struct switch_stack
*) retp
) - 1;
250 childstack
= ((struct switch_stack
*) childregs
) - 1;
251 *childstack
= *stack
;
252 childstack
->retpc
= (unsigned long)ret_from_fork
;
255 p
->thread
.ksp
= (unsigned long)childstack
;
257 * Must save the current SFC/DFC value, NOT the value when
258 * the parent was last descheduled - RGH 10-08-96
260 p
->thread
.fs
= get_fs().seg
;
263 /* Copy the current fpu state */
264 asm volatile ("fsave %0" : : "m" (p
->thread
.fpstate
[0]) : "memory");
266 if (!CPU_IS_060
? p
->thread
.fpstate
[0] : p
->thread
.fpstate
[2])
267 asm volatile ("fmovemx %/fp0-%/fp7,%0\n\t"
268 "fmoveml %/fpiar/%/fpcr/%/fpsr,%1"
269 : : "m" (p
->thread
.fp
[0]), "m" (p
->thread
.fpcntl
[0])
271 /* Restore the state in case the fpu was busy */
272 asm volatile ("frestore %0" : : "m" (p
->thread
.fpstate
[0]));
278 /* Fill in the fpu structure for a core dump. */
280 int dump_fpu (struct pt_regs
*regs
, struct user_m68kfp_struct
*fpu
)
287 memcpy(fpu
->fpcntl
, current
->thread
.fpcntl
, 12);
288 memcpy(fpu
->fpregs
, current
->thread
.fp
, 96);
289 /* Convert internal fpu reg representation
290 * into long double format
292 for (i
= 0; i
< 24; i
+= 3)
293 fpu
->fpregs
[i
] = ((fpu
->fpregs
[i
] & 0xffff0000) << 15) |
294 ((fpu
->fpregs
[i
] & 0x0000ffff) << 16);
298 /* First dump the fpu context to avoid protocol violation. */
299 asm volatile ("fsave %0" :: "m" (fpustate
[0]) : "memory");
300 if (!CPU_IS_060
? !fpustate
[0] : !fpustate
[2])
303 asm volatile ("fmovem %/fpiar/%/fpcr/%/fpsr,%0"
304 :: "m" (fpu
->fpcntl
[0])
306 asm volatile ("fmovemx %/fp0-%/fp7,%0"
307 :: "m" (fpu
->fpregs
[0])
313 * fill in the user structure for a core dump..
315 void dump_thread(struct pt_regs
* regs
, struct user
* dump
)
317 struct switch_stack
*sw
;
319 /* changed the size calculations - should hopefully work better. lbt */
320 dump
->magic
= CMAGIC
;
321 dump
->start_code
= 0;
322 dump
->start_stack
= rdusp() & ~(PAGE_SIZE
- 1);
323 dump
->u_tsize
= ((unsigned long) current
->mm
->end_code
) >> PAGE_SHIFT
;
324 dump
->u_dsize
= ((unsigned long) (current
->mm
->brk
+
325 (PAGE_SIZE
-1))) >> PAGE_SHIFT
;
326 dump
->u_dsize
-= dump
->u_tsize
;
329 if (dump
->start_stack
< TASK_SIZE
)
330 dump
->u_ssize
= ((unsigned long) (TASK_SIZE
- dump
->start_stack
)) >> PAGE_SHIFT
;
332 dump
->u_ar0
= (struct user_regs_struct
*)((int)&dump
->regs
- (int)dump
);
333 sw
= ((struct switch_stack
*)regs
) - 1;
334 dump
->regs
.d1
= regs
->d1
;
335 dump
->regs
.d2
= regs
->d2
;
336 dump
->regs
.d3
= regs
->d3
;
337 dump
->regs
.d4
= regs
->d4
;
338 dump
->regs
.d5
= regs
->d5
;
339 dump
->regs
.d6
= sw
->d6
;
340 dump
->regs
.d7
= sw
->d7
;
341 dump
->regs
.a0
= regs
->a0
;
342 dump
->regs
.a1
= regs
->a1
;
343 dump
->regs
.a2
= regs
->a2
;
344 dump
->regs
.a3
= sw
->a3
;
345 dump
->regs
.a4
= sw
->a4
;
346 dump
->regs
.a5
= sw
->a5
;
347 dump
->regs
.a6
= sw
->a6
;
348 dump
->regs
.d0
= regs
->d0
;
349 dump
->regs
.orig_d0
= regs
->orig_d0
;
350 dump
->regs
.stkadj
= regs
->stkadj
;
351 dump
->regs
.sr
= regs
->sr
;
352 dump
->regs
.pc
= regs
->pc
;
353 dump
->regs
.fmtvec
= (regs
->format
<< 12) | regs
->vector
;
354 /* dump floating point stuff */
355 dump
->u_fpvalid
= dump_fpu (regs
, &dump
->m68kfp
);
359 * sys_execve() executes a new program.
361 asmlinkage
int sys_execve(char *name
, char **argv
, char **envp
)
365 struct pt_regs
*regs
= (struct pt_regs
*) &name
;
368 filename
= getname(name
);
369 error
= PTR_ERR(filename
);
370 if (IS_ERR(filename
))
372 error
= do_execve(filename
, argv
, envp
, regs
);
379 unsigned long get_wchan(struct task_struct
*p
)
381 unsigned long fp
, pc
;
382 unsigned long stack_page
;
384 if (!p
|| p
== current
|| p
->state
== TASK_RUNNING
)
387 stack_page
= (unsigned long)(p
->thread_info
);
388 fp
= ((struct switch_stack
*)p
->thread
.ksp
)->a6
;
390 if (fp
< stack_page
+sizeof(struct thread_info
) ||
391 fp
>= 8184+stack_page
)
393 pc
= ((unsigned long *)fp
)[1];
394 if (!in_sched_functions(pc
))
396 fp
= *(unsigned long *) fp
;
397 } while (count
++ < 16);