goto segv_term;
}
- if (!(*pte)) {
- // Invalid location
- goto segv_term;
- }
+ // if (!(*pte)) {
+ // // Invalid location
+ // goto segv_term;
+ // }
uintptr_t loc = *pte & ~0xfff;
if ((hit_region->attr & REGION_WRITE) && (*pte & 0xfff) && !loc) {
cpu_invplg(pte);
uintptr_t pa = pmm_alloc_page(__current->pid, 0);
+ if (!pa) {
+ goto oom;
+ }
+
+ *pte = *pte | pa | PG_PRESENT;
+ goto resolved;
+ }
+
+ // if mfile is set, then it is a mem map
+ if (hit_region->mfile) {
+ struct v_file* file = hit_region->mfile;
+ u32_t offset =
+ (ptr - hit_region->start) & (PG_SIZE - 1) + hit_region->offset;
+ uintptr_t pa = pmm_alloc_page(__current->pid, 0);
+
+ if (!pa) {
+ goto oom;
+ }
+
+ cpu_invplg(pte);
*pte = *pte | pa | PG_PRESENT;
+ int errno = file->ops->read_page(
+ file->inode, ptr & (PG_SIZE - 1), PG_SIZE, offset);
+ if (errno < 0) {
+ kprintf(KERROR "fail to read page (%d)\n", errno);
+ goto segv_term;
+ }
goto resolved;
}
while (1)
;
+oom:
+ kprintf(KERROR "out of memory\n");
segv_term:
kprintf(KERROR "(pid: %d) Segmentation fault on %p (%p:%p)\n",
__current->pid,
do_kernel(v_mapping* mapping)
{
uintptr_t addr = mapping->va;
- if (addr >= KHEAP_START && addr < PROC_START) {
- // This is kernel heap page
- uintptr_t pa = pmm_alloc_page(KERNEL_PID, 0);
- *mapping->pte = (*mapping->pte & 0xfff) | pa | PG_PRESENT;
- cpu_invplg(mapping->pte);
- cpu_invplg(addr);
- goto done;
- }
+
+ // TODO
return 0;
done: