#include "kvm/disk-image.h" #include "kvm/read-write.h" #include "kvm/util.h" #include #include #include #include #include #include #include #include #include struct disk_image *disk_image__new(int fd, uint64_t size, struct disk_image_operations *ops) { struct disk_image *self; self = malloc(sizeof *self); if (!self) return NULL; self->fd = fd; self->size = size; self->ops = ops; return self; } static int raw_image__read_sector(struct disk_image *self, uint64_t sector, void *dst, uint32_t dst_len) { uint64_t offset = sector << SECTOR_SHIFT; if (offset + dst_len > self->size) return -1; if (pread_in_full(self->fd, dst, dst_len, offset) < 0) return -1; return 0; } static int raw_image__write_sector(struct disk_image *self, uint64_t sector, void *src, uint32_t src_len) { uint64_t offset = sector << SECTOR_SHIFT; if (offset + src_len > self->size) return -1; if (pwrite_in_full(self->fd, src, src_len, offset) < 0) return -1; return 0; } static struct disk_image_operations raw_image_ops = { .read_sector = raw_image__read_sector, .write_sector = raw_image__write_sector, }; static struct disk_image *raw_image__probe(int fd) { struct stat st; if (fstat(fd, &st) < 0) return NULL; return disk_image__new(fd, st.st_size, &raw_image_ops); } struct disk_image *disk_image__open(const char *filename) { struct disk_image *self; int fd; fd = open(filename, O_RDWR); if (fd < 0) return NULL; self = raw_image__probe(fd); if (self) return self; if (close(fd) < 0) warning("close() failed"); return NULL; } void disk_image__close(struct disk_image *self) { /* If there was no disk image then there's nothing to do: */ if (!self) return; if (self->ops->close) self->ops->close(self); if (close(self->fd) < 0) warning("close() failed"); free(self); }