#include <sys/cdefs.h>
#include "opt_watchdog.h"
#include <sys/param.h>
#include <sys/systm.h>
#include <sys/conf.h>
#include <sys/cons.h>
#include <sys/kernel.h>
#include <sys/kerneldump.h>
#include <sys/msgbuf.h>
#include <sys/watchdog.h>
#include <vm/vm.h>
#include <vm/vm_param.h>
#include <vm/vm_page.h>
#include <vm/vm_phys.h>
#include <vm/vm_dumpset.h>
#include <vm/pmap.h>
#include <machine/atomic.h>
#include <machine/elf.h>
#include <machine/md_var.h>
#include <machine/minidump.h>
CTASSERT(sizeof(struct kerneldumpheader) == 512);
static struct kerneldumpheader kdh;
static size_t fragsz;
static void *dump_va;
static int
blk_flush(struct dumperinfo *di)
{
int error;
if (fragsz == 0)
return (0);
error = dump_append(di, dump_va, fragsz);
fragsz = 0;
return (error);
}
static int
blk_write(struct dumperinfo *di, char *ptr, vm_paddr_t pa, size_t sz)
{
size_t len;
int error, i, c;
u_int maxdumpsz;
maxdumpsz = min(di->maxiosize, MAXDUMPPGS * PAGE_SIZE);
if (maxdumpsz == 0)
maxdumpsz = PAGE_SIZE;
error = 0;
if ((sz % PAGE_SIZE) != 0) {
printf("size not page aligned\n");
return (EINVAL);
}
if (ptr != NULL && pa != 0) {
printf("cant have both va and pa!\n");
return (EINVAL);
}
if (pa != 0 && (((uintptr_t)ptr) % PAGE_SIZE) != 0) {
printf("address not page aligned\n");
return (EINVAL);
}
if (ptr != NULL) {
error = blk_flush(di);
if (error)
return (error);
}
while (sz) {
len = maxdumpsz - fragsz;
if (len > sz)
len = sz;
dumpsys_pb_progress(len);
wdog_kern_pat(WD_LASTVAL);
if (ptr) {
error = dump_append(di, ptr, len);
if (error)
return (error);
ptr += len;
sz -= len;
} else {
for (i = 0; i < len; i += PAGE_SIZE)
dump_va = pmap_kenter_temporary(pa + i, (i + fragsz) >> PAGE_SHIFT);
fragsz += len;
pa += len;
sz -= len;
if (fragsz == maxdumpsz) {
error = blk_flush(di);
if (error)
return (error);
}
}
c = cncheckc();
if (c == 0x03)
return (ECANCELED);
if (c != -1)
printf(" (CTRL-C to abort) ");
}
return (0);
}
static pt_entry_t fakept[NPTEPG];
#ifdef PMAP_PAE_COMP
#define cpu_minidumpsys cpu_minidumpsys_pae
#define IdlePTD IdlePTD_pae
#else
#define cpu_minidumpsys cpu_minidumpsys_nopae
#define IdlePTD IdlePTD_nopae
#endif
int
cpu_minidumpsys(struct dumperinfo *di, const struct minidumpstate *state)
{
uint64_t dumpsize;
uint32_t ptesize;
vm_offset_t va, kva_end;
int error;
uint64_t pa;
pd_entry_t *pd, pde;
pt_entry_t *pt, pte;
int k;
struct minidumphdr mdhdr;
struct msgbuf *mbp;
kva_end = kernel_vm_end;
ptesize = 0;
for (va = KERNBASE; va < kva_end; va += NBPDR) {
ptesize += PAGE_SIZE;
pd = IdlePTD;
pde = pte_load(&pd[va >> PDRSHIFT]);
if ((pde & (PG_PS | PG_V)) == (PG_PS | PG_V)) {
pa = pde & PG_PS_FRAME;
for (k = 0; k < NPTEPG; k++) {
if (vm_phys_is_dumpable(pa))
vm_page_dump_add(state->dump_bitset,
pa);
pa += PAGE_SIZE;
}
continue;
}
if ((pde & PG_V) == PG_V) {
pt = pmap_kenter_temporary(pde & PG_FRAME, 0);
for (k = 0; k < NPTEPG; k++) {
pte = pte_load(&pt[k]);
if ((pte & PG_V) == PG_V) {
pa = pte & PG_FRAME;
if (vm_phys_is_dumpable(pa))
vm_page_dump_add(
state->dump_bitset, pa);
}
}
} else {
}
}
mbp = state->msgbufp;
dumpsize = ptesize;
dumpsize += round_page(mbp->msg_size);
dumpsize += round_page(sizeof(dump_avail));
dumpsize += round_page(BITSET_SIZE(vm_page_dump_pages));
VM_PAGE_DUMP_FOREACH(state->dump_bitset, pa) {
if (vm_phys_is_dumpable(pa)) {
dumpsize += PAGE_SIZE;
} else {
vm_page_dump_drop(state->dump_bitset, pa);
}
}
dumpsize += PAGE_SIZE;
dumpsys_pb_init(dumpsize);
bzero(&mdhdr, sizeof(mdhdr));
strcpy(mdhdr.magic, MINIDUMP_MAGIC);
mdhdr.version = MINIDUMP_VERSION;
mdhdr.msgbufsize = mbp->msg_size;
mdhdr.bitmapsize = round_page(BITSET_SIZE(vm_page_dump_pages));
mdhdr.ptesize = ptesize;
mdhdr.kernbase = KERNBASE;
mdhdr.paemode = pae_mode;
mdhdr.dumpavailsize = round_page(sizeof(dump_avail));
dump_init_header(di, &kdh, KERNELDUMPMAGIC, KERNELDUMP_I386_VERSION,
dumpsize);
error = dump_start(di, &kdh);
if (error != 0)
goto fail;
printf("Physical memory: %ju MB\n", ptoa((uintmax_t)physmem) / 1048576);
printf("Dumping %llu MB:", (long long)dumpsize >> 20);
bzero(&fakept, sizeof(fakept));
bcopy(&mdhdr, &fakept, sizeof(mdhdr));
error = blk_write(di, (char *)&fakept, 0, PAGE_SIZE);
if (error)
goto fail;
error = blk_write(di, (char *)mbp->msg_ptr, 0,
round_page(mbp->msg_size));
if (error)
goto fail;
_Static_assert(sizeof(dump_avail) <= sizeof(fakept),
"Large dump_avail not handled");
bzero(fakept, sizeof(fakept));
memcpy(fakept, dump_avail, sizeof(dump_avail));
error = blk_write(di, (char *)&fakept, 0, PAGE_SIZE);
if (error)
goto fail;
error = blk_write(di, (char *)vm_page_dump, 0,
round_page(BITSET_SIZE(vm_page_dump_pages)));
if (error)
goto fail;
for (va = KERNBASE; va < kva_end; va += NBPDR) {
pd = IdlePTD;
pde = pte_load(&pd[va >> PDRSHIFT]);
if ((pde & (PG_PS | PG_V)) == (PG_PS | PG_V)) {
pa = pde & PG_PS_FRAME;
for (k = 0; k < NPTEPG; k++) {
fakept[k] = (pa + (k * PAGE_SIZE)) | PG_V | PG_RW | PG_A | PG_M;
}
error = blk_write(di, (char *)&fakept, 0, PAGE_SIZE);
if (error)
goto fail;
error = blk_flush(di);
if (error)
goto fail;
continue;
}
if ((pde & PG_V) == PG_V) {
pa = pde & PG_FRAME;
error = blk_write(di, 0, pa, PAGE_SIZE);
if (error)
goto fail;
} else {
bzero(fakept, sizeof(fakept));
error = blk_write(di, (char *)&fakept, 0, PAGE_SIZE);
if (error)
goto fail;
error = blk_flush(di);
if (error)
goto fail;
}
}
VM_PAGE_DUMP_FOREACH(state->dump_bitset, pa) {
error = blk_write(di, 0, pa, PAGE_SIZE);
if (error)
goto fail;
}
error = blk_flush(di);
if (error)
goto fail;
error = dump_finish(di, &kdh);
if (error != 0)
goto fail;
printf("\nDump complete\n");
return (0);
fail:
if (error < 0)
error = -error;
if (error == ECANCELED)
printf("\nDump aborted\n");
else if (error == E2BIG || error == ENOSPC) {
printf("\nDump failed. Partition too small (about %lluMB were "
"needed this time).\n", (long long)dumpsize >> 20);
} else
printf("\n** DUMP FAILED (ERROR %d) **\n", error);
return (error);
}