criu/include/restorer.h
Pavel Emelyanov b7de83aaf3 crtools: Interval timers support
Timers are dumped from inside parasite code, the format is plain -- just
3 pairs of interval/value one-by-one.

The restoration occurs in two stages -- first prepare the timer values in
restorer (and check for sanity), then setup the timers in the latest stage
before actually calling the sigreturn.

Signed-off-by: Pavel Emelyanov <xemul@parallels.com>
Signed-off-by: Cyrill Gorcunov <gorcunov@openvz.org>
2012-01-24 18:41:49 +04:00

245 lines
5.1 KiB
C

#ifndef CR_RESTORER_H__
#define CR_RESTORER_H__
#include <signal.h>
#include <limits.h>
#include "compiler.h"
#include "types.h"
#include "image.h"
#include "lock.h"
#include "util.h"
#include "crtools.h"
#ifndef CONFIG_X86_64
# error Only x86-64 is supported
#endif
struct task_restore_core_args;
struct thread_restore_args;
extern long restore_task(struct task_restore_core_args *args);
extern long restore_thread(struct thread_restore_args *args);
typedef long (*task_restore_fcall_t) (struct task_restore_core_args *args);
typedef long (*thread_restore_fcall_t) (struct thread_restore_args *args);
#define RESTORE_CMD__NONE 0
#define RESTORE_CMD__GET_SELF_LEN 1
#define RESTORE_CMD__RESTORE_CORE 2
#define RESTORE_CMD__RESTORE_THREAD 3
/*
* These *must* be power of two values.
*/
#define RESTORE_ARGS_SIZE (512)
#define RESTORE_STACK_REDZONE (128)
#define RESTORE_STACK_SIGFRAME (KILO(16))
#define RESTORE_STACK_SIZE (KILO(32))
#define RESTORE_HEAP_SIZE (KILO(16))
#define RESTORE_ALIGN_STACK(start, size) \
(ALIGN((start) + (size) - sizeof(long), sizeof(long)))
struct restore_mem_zone {
u8 redzone[RESTORE_STACK_REDZONE];
u8 stack[RESTORE_STACK_SIZE];
u8 rt_sigframe[RESTORE_STACK_SIGFRAME];
u8 heap[RESTORE_HEAP_SIZE];
} __aligned(sizeof(long));
#define first_on_heap(ptr, heap) ((typeof(ptr))heap)
#define next_on_heap(ptr, prev) ((typeof(ptr))((long)(prev) + sizeof(*(prev))))
/* Make sure it's pow2 in size */
struct thread_restore_args {
struct restore_mem_zone mem_zone;
int pid;
int fd_core;
u32 *rst_lock;
} __aligned(sizeof(long));
struct task_restore_core_args {
struct restore_mem_zone mem_zone;
int pid; /* task pid */
int fd_core; /* opened core file */
int fd_self_vmas; /* opened file with running VMAs to unmap */
int logfd;
bool restore_threads; /* if to restore threads */
u32 rst_lock;
/* threads restoration */
int nr_threads; /* number of threads */
thread_restore_fcall_t clone_restore_fn; /* helper address for clone() call */
struct thread_restore_args *thread_args; /* array of thread arguments */
struct shmems *shmems;
struct task_entries *task_entries;
rt_sigaction_t sigchld_act;
struct itimerval itimers[3];
} __aligned(sizeof(long));
struct pt_regs {
unsigned long r15;
unsigned long r14;
unsigned long r13;
unsigned long r12;
unsigned long bp;
unsigned long bx;
unsigned long r11;
unsigned long r10;
unsigned long r9;
unsigned long r8;
unsigned long ax;
unsigned long cx;
unsigned long dx;
unsigned long si;
unsigned long di;
unsigned long orig_ax;
unsigned long ip;
unsigned long cs;
unsigned long flags;
unsigned long sp;
unsigned long ss;
};
struct rt_sigcontext {
unsigned long r8;
unsigned long r9;
unsigned long r10;
unsigned long r11;
unsigned long r12;
unsigned long r13;
unsigned long r14;
unsigned long r15;
unsigned long rdi;
unsigned long rsi;
unsigned long rbp;
unsigned long rbx;
unsigned long rdx;
unsigned long rax;
unsigned long rcx;
unsigned long rsp;
unsigned long rip;
unsigned long eflags;
unsigned short cs;
unsigned short gs;
unsigned short fs;
unsigned short __pad0;
unsigned long err;
unsigned long trapno;
unsigned long oldmask;
unsigned long cr2;
struct user_fpregs_entry *fpstate;
unsigned long reserved1[8];
};
#ifndef __ARCH_SI_PREAMBLE_SIZE
#define __ARCH_SI_PREAMBLE_SIZE (3 * sizeof(int))
#endif
#define SI_MAX_SIZE 128
#ifndef SI_PAD_SIZE
#define SI_PAD_SIZE ((SI_MAX_SIZE - __ARCH_SI_PREAMBLE_SIZE) / sizeof(int))
#endif
typedef struct rt_siginfo {
int si_signo;
int si_errno;
int si_code;
int _pad[SI_PAD_SIZE];
} rt_siginfo_t;
typedef struct rt_sigaltstack {
void *ss_sp;
int ss_flags;
size_t ss_size;
} rt_stack_t;
struct rt_ucontext {
unsigned long uc_flags;
struct rt_ucontext *uc_link;
rt_stack_t uc_stack;
struct rt_sigcontext uc_mcontext;
rt_sigset_t uc_sigmask; /* mask last for extensibility */
};
struct rt_sigframe {
char *pretcode;
struct rt_ucontext uc;
struct rt_siginfo info;
/* fp state follows here */
};
#define SHMEMS_SIZE 4096
struct shmem_info {
unsigned long start;
unsigned long end;
unsigned long shmid;
int pid;
u32 lock; /* futex */
};
struct shmems {
int nr_shmems;
struct shmem_info entries[0];
};
#define TASK_ENTRIES_SIZE 4096
enum {
CR_STATE_RESTORE,
CR_STATE_RESTORE_SIGCHLD,
CR_STATE_COMPLETE
};
struct task_entry {
int pid;
u32 done; // futex
};
struct task_entries {
int nr;
u32 nr_in_progress;
u32 start; //futex
struct task_entry entries[0];
};
static always_inline struct shmem_info *
find_shmem_by_pid(struct shmems *shmems, unsigned long start, int pid)
{
struct shmem_info *si;
int i;
for (i = 0; i < shmems->nr_shmems; i++) {
si = &shmems->entries[i];
if (si->start == start &&
si->end > start &&
si->pid == pid)
return si;
}
return NULL;
}
static always_inline struct task_entry *
task_get_entry(struct task_entries *base, int pid)
{
int i;
for (i = 0; i < base->nr; i++)
if (base->entries[i].pid == pid)
return &base->entries[i];
return NULL;
}
#endif /* CR_RESTORER_H__ */