mirror of
https://github.com/topjohnwu/Magisk.git
synced 2024-11-23 18:15:30 +00:00
parent
3b27de3715
commit
5ac7dc0b37
2
.gitignore
vendored
2
.gitignore
vendored
@ -13,7 +13,7 @@ native/out
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# Android Studio / Gradle
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*.iml
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.gradle
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.idea
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/local.properties
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/.idea
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/build
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/captures
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@ -7,6 +7,7 @@ use cfg_if::cfg_if;
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use cxx::private::c_char;
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use libc::mode_t;
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use crate::files::map_file_at;
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pub(crate) use crate::xwrap::*;
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use crate::{
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clone_attr, cstr, fclone_attr, fd_path, map_fd, map_file, slice_from_ptr, CxxResultExt,
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@ -61,6 +62,14 @@ pub(crate) fn map_file_for_cxx(path: &Utf8CStr, rw: bool) -> &'static mut [u8] {
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map_file(path, rw).log_cxx().unwrap_or(&mut [])
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}
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pub(crate) fn map_file_at_for_cxx(fd: RawFd, path: &Utf8CStr, rw: bool) -> &'static mut [u8] {
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unsafe {
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map_file_at(BorrowedFd::borrow_raw(fd), path, rw)
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.log_cxx()
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.unwrap_or(&mut [])
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}
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}
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pub(crate) fn map_fd_for_cxx(fd: RawFd, sz: usize, rw: bool) -> &'static mut [u8] {
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unsafe {
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map_fd(BorrowedFd::borrow_raw(fd), sz, rw)
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@ -117,6 +117,14 @@ mmap_data::mmap_data(const char *name, bool rw) {
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}
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}
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mmap_data::mmap_data(int dirfd, const char *name, bool rw) {
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auto slice = rust::map_file_at(dirfd, name, rw);
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if (!slice.empty()) {
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_buf = slice.data();
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_sz = slice.size();
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}
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}
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mmap_data::mmap_data(int fd, size_t sz, bool rw) {
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auto slice = rust::map_fd(fd, sz, rw);
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if (!slice.empty()) {
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@ -26,6 +26,7 @@ struct mmap_data : public byte_data {
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ALLOW_MOVE_ONLY(mmap_data)
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explicit mmap_data(const char *name, bool rw = false);
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mmap_data(int dirfd, const char *name, bool rw = false);
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mmap_data(int fd, size_t sz, bool rw = false);
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~mmap_data();
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};
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@ -856,6 +856,14 @@ impl MappedFile {
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Ok(MappedFile(map_file(path, true)?))
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}
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pub fn openat<T: AsFd>(dir: &T, path: &Utf8CStr) -> io::Result<MappedFile> {
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Ok(MappedFile(map_file_at(dir.as_fd(), path, false)?))
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}
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pub fn openat_rw<T: AsFd>(dir: &T, path: &Utf8CStr) -> io::Result<MappedFile> {
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Ok(MappedFile(map_file_at(dir.as_fd(), path, true)?))
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}
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pub fn create(fd: BorrowedFd, sz: usize, rw: bool) -> io::Result<MappedFile> {
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Ok(MappedFile(map_fd(fd, sz, rw)?))
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}
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@ -888,6 +896,14 @@ extern "C" {
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// We mark the returned slice static because it is valid until explicitly unmapped
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pub(crate) fn map_file(path: &Utf8CStr, rw: bool) -> io::Result<&'static mut [u8]> {
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unsafe { map_file_at(BorrowedFd::borrow_raw(libc::AT_FDCWD), path, rw) }
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}
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pub(crate) fn map_file_at(
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dirfd: BorrowedFd,
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path: &Utf8CStr,
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rw: bool,
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) -> io::Result<&'static mut [u8]> {
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#[cfg(target_pointer_width = "64")]
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const BLKGETSIZE64: u32 = 0x80081272;
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@ -895,18 +911,22 @@ pub(crate) fn map_file(path: &Utf8CStr, rw: bool) -> io::Result<&'static mut [u8
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const BLKGETSIZE64: u32 = 0x80041272;
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let flag = if rw { O_RDWR } else { O_RDONLY };
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let file = FsPath::from(path).open(flag | O_CLOEXEC)?;
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let fd = unsafe {
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OwnedFd::from_raw_fd(
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libc::openat(dirfd.as_raw_fd(), path.as_ptr(), flag | O_CLOEXEC).check_os_err()?,
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)
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};
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let attr = fd_get_attr(file.as_raw_fd())?;
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let attr = fd_get_attr(fd.as_raw_fd())?;
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let sz = if attr.is_block_device() {
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let mut sz = 0_u64;
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unsafe { ioctl(file.as_raw_fd(), BLKGETSIZE64, &mut sz) }.as_os_err()?;
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unsafe { ioctl(fd.as_raw_fd(), BLKGETSIZE64, &mut sz) }.as_os_err()?;
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sz
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} else {
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attr.st.st_size as u64
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};
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map_fd(file.as_fd(), sz as usize, rw)
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map_fd(fd.as_fd(), sz as usize, rw)
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}
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pub(crate) fn map_fd(fd: BorrowedFd, sz: usize, rw: bool) -> io::Result<&'static mut [u8]> {
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@ -61,6 +61,8 @@ pub mod ffi {
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fn fd_path_for_cxx(fd: i32, buf: &mut [u8]) -> isize;
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#[cxx_name = "map_file"]
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fn map_file_for_cxx(path: Utf8CStrRef, rw: bool) -> &'static mut [u8];
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#[cxx_name = "map_file_at"]
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fn map_file_at_for_cxx(fd: i32, path: Utf8CStrRef, rw: bool) -> &'static mut [u8];
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#[cxx_name = "map_fd"]
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fn map_fd_for_cxx(fd: i32, sz: usize, rw: bool) -> &'static mut [u8];
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}
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@ -1,6 +1,7 @@
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#include <bit>
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#include <functional>
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#include <memory>
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#include <span>
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#include <base.hpp>
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@ -61,6 +62,8 @@ void dyn_img_hdr::print() const {
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fprintf(stderr, "%-*s [%u]\n", PADDING, "RECOV_DTBO_SZ", recovery_dtbo_size());
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if (ver == 2 || is_vendor())
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fprintf(stderr, "%-*s [%u]\n", PADDING, "DTB_SZ", dtb_size());
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if (ver == 4 && is_vendor())
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fprintf(stderr, "%-*s [%u]\n", PADDING, "BOOTCONFIG_SZ", bootconfig_size());
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if (uint32_t os_ver = os_version()) {
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int a,b,c,y,m = 0;
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@ -273,8 +276,7 @@ static format_t check_fmt_lg(const uint8_t *buf, unsigned sz) {
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#define CMD_MATCH(s) BUFFER_MATCH(h->cmdline, s)
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const pair<const uint8_t *, dyn_img_hdr *>
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boot_img::create_hdr(const uint8_t *addr, format_t type) {
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pair<const uint8_t *, dyn_img_hdr *> boot_img::create_hdr(const uint8_t *addr, format_t type) {
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if (type == AOSP_VENDOR) {
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fprintf(stderr, "VENDOR_BOOT_HDR\n");
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auto h = reinterpret_cast<const boot_img_hdr_vnd_v3*>(addr);
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@ -346,10 +348,23 @@ const pair<const uint8_t *, dyn_img_hdr *>
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addr += ACCLAIM_PRE_HEADER_SZ;
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}
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// addr could be adjusted
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return make_pair(addr, make_hdr(addr));
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}
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static const char *vendor_ramdisk_type(int type) {
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switch (type) {
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case VENDOR_RAMDISK_TYPE_PLATFORM:
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return "platform";
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case VENDOR_RAMDISK_TYPE_RECOVERY:
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return "recovery";
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case VENDOR_RAMDISK_TYPE_DLKM:
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return "dlkm";
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case VENDOR_RAMDISK_TYPE_NONE:
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default:
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return "none";
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}
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}
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#define assert_off() \
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if ((base_addr + off) > (map.buf() + map.sz())) { \
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fprintf(stderr, "Corrupted boot image!\n"); \
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@ -362,14 +377,6 @@ off += hdr->name##_size(); \
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off = align_to(off, hdr->page_size()); \
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assert_off();
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#define get_ignore(name) \
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if (hdr->name##_size()) { \
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auto blk_sz = align_to(hdr->name##_size(), hdr->page_size()); \
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off += blk_sz; \
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} \
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assert_off();
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bool boot_img::parse_image(const uint8_t *p, format_t type) {
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auto [base_addr, hdr] = create_hdr(p, type);
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if (hdr == nullptr) {
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@ -395,15 +402,12 @@ bool boot_img::parse_image(const uint8_t *p, format_t type) {
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get_block(extra);
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get_block(recovery_dtbo);
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get_block(dtb);
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auto ignore_addr = base_addr + off;
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get_ignore(signature)
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get_ignore(vendor_ramdisk_table)
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get_ignore(bootconfig)
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get_block(signature);
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get_block(vendor_ramdisk_table);
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get_block(bootconfig);
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payload = byte_view(base_addr, off);
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auto tail_addr = base_addr + off;
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ignore = byte_view(ignore_addr, tail_addr - ignore_addr);
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tail = byte_view(tail_addr, map.buf() + map.sz() - tail_addr);
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if (auto size = hdr->kernel_size()) {
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@ -458,13 +462,28 @@ bool boot_img::parse_image(const uint8_t *p, format_t type) {
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fprintf(stderr, "%-*s [%s]\n", PADDING, "KERNEL_FMT", fmt2name[k_fmt]);
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}
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if (auto size = hdr->ramdisk_size()) {
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if (hdr->is_vendor() && hdr->header_version() >= 4) {
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if (vendor_ramdisk_table != nullptr) {
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// v4 vendor boot contains multiple ramdisks
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// Do not try to mess with it for now
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r_fmt = UNKNOWN;
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using table_entry = const vendor_ramdisk_table_entry_v4;
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if (hdr->vendor_ramdisk_table_entry_size() != sizeof(table_entry)) {
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fprintf(stderr,
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"! Invalid vendor image: vendor_ramdisk_table_entry_size != %zu\n",
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sizeof(table_entry));
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exit(1);
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}
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span<table_entry> table(
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reinterpret_cast<table_entry *>(vendor_ramdisk_table),
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hdr->vendor_ramdisk_table_entry_num());
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for (auto &it : table) {
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format_t fmt = check_fmt_lg(ramdisk + it.ramdisk_offset, it.ramdisk_size);
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fprintf(stderr,
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"%-*s name=[%s] type=[%s] size=[%u] fmt=[%s]\n", PADDING, "VND_RAMDISK",
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it.ramdisk_name, vendor_ramdisk_type(it.ramdisk_type),
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it.ramdisk_size, fmt2name[fmt]);
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}
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} else {
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r_fmt = check_fmt_lg(ramdisk, size);
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}
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if (r_fmt == MTK) {
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fprintf(stderr, "MTK_RAMDISK_HDR\n");
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flags[MTK_RAMDISK] = true;
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@ -477,6 +496,7 @@ bool boot_img::parse_image(const uint8_t *p, format_t type) {
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}
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fprintf(stderr, "%-*s [%s]\n", PADDING, "RAMDISK_FMT", fmt2name[r_fmt]);
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}
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}
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if (auto size = hdr->extra_size()) {
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e_fmt = check_fmt_lg(extra, size);
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fprintf(stderr, "%-*s [%s]\n", PADDING, "EXTRA_FMT", fmt2name[e_fmt]);
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@ -561,7 +581,30 @@ int unpack(const char *image, bool skip_decomp, bool hdr) {
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dump(boot.kernel_dtb.buf(), boot.kernel_dtb.sz(), KER_DTB_FILE);
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// Dump ramdisk
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if (!skip_decomp && COMPRESSED(boot.r_fmt)) {
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if (boot.vendor_ramdisk_table != nullptr) {
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using table_entry = const vendor_ramdisk_table_entry_v4;
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span<table_entry> table(
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reinterpret_cast<table_entry *>(boot.vendor_ramdisk_table),
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boot.hdr->vendor_ramdisk_table_entry_num());
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xmkdir(VND_RAMDISK_DIR, 0755);
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owned_fd dirfd = xopen(VND_RAMDISK_DIR, O_RDONLY | O_CLOEXEC);
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for (auto &it : table) {
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char file_name[40];
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if (it.ramdisk_name[0] == '\0') {
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strscpy(file_name, RAMDISK_FILE, sizeof(file_name));
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} else {
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ssprintf(file_name, sizeof(file_name), "%s.cpio", it.ramdisk_name);
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}
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owned_fd fd = xopenat(dirfd, file_name, O_CREAT | O_TRUNC | O_WRONLY | O_CLOEXEC, 0644);
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format_t fmt = check_fmt_lg(boot.ramdisk + it.ramdisk_offset, it.ramdisk_size);
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if (!skip_decomp && COMPRESSED(fmt)) {
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decompress(fmt, fd, boot.ramdisk + it.ramdisk_offset, it.ramdisk_size);
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} else {
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xwrite(fd, boot.ramdisk + it.ramdisk_offset, it.ramdisk_size);
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}
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}
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} else if (!skip_decomp && COMPRESSED(boot.r_fmt)) {
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if (boot.hdr->ramdisk_size() != 0) {
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int fd = creat(RAMDISK_FILE, 0644);
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decompress(boot.r_fmt, fd, boot.ramdisk, boot.hdr->ramdisk_size());
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@ -591,6 +634,9 @@ int unpack(const char *image, bool skip_decomp, bool hdr) {
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// Dump dtb
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dump(boot.dtb, boot.hdr->dtb_size(), DTB_FILE);
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// Dump bootconfig
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dump(boot.bootconfig, boot.hdr->bootconfig_size(), BOOTCONFIG_FILE);
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return boot.flags[CHROMEOS_FLAG] ? 2 : 0;
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}
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@ -620,6 +666,7 @@ void repack(const char *src_img, const char *out_img, bool skip_comp) {
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hdr->ramdisk_size() = 0;
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hdr->second_size() = 0;
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hdr->dtb_size() = 0;
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hdr->bootconfig_size() = 0;
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if (access(HEADER_FILE, R_OK) == 0)
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hdr->load_hdr_file();
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@ -703,7 +750,40 @@ void repack(const char *src_img, const char *out_img, bool skip_comp) {
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// Copy MTK headers
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xwrite(fd, boot.r_hdr, sizeof(mtk_hdr));
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}
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if (access(RAMDISK_FILE, R_OK) == 0) {
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using table_entry = vendor_ramdisk_table_entry_v4;
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vector<table_entry> ramdisk_table;
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if (boot.vendor_ramdisk_table) {
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// Create a copy so we can modify it
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auto entry_start = reinterpret_cast<const table_entry *>(boot.vendor_ramdisk_table);
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ramdisk_table.insert(
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ramdisk_table.begin(),
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entry_start, entry_start + boot.hdr->vendor_ramdisk_table_entry_num());
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owned_fd dirfd = xopen(VND_RAMDISK_DIR, O_RDONLY | O_CLOEXEC);
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uint32_t ramdisk_offset = 0;
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for (auto &it : ramdisk_table) {
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char file_name[64];
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if (it.ramdisk_name[0] == '\0') {
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strscpy(file_name, RAMDISK_FILE, sizeof(file_name));
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} else {
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ssprintf(file_name, sizeof(file_name), "%s.cpio", it.ramdisk_name);
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}
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mmap_data m(dirfd, file_name);
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format_t fmt = check_fmt_lg(boot.ramdisk + it.ramdisk_offset, it.ramdisk_size);
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it.ramdisk_offset = ramdisk_offset;
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if (!skip_comp && !COMPRESSED_ANY(check_fmt(m.buf(), m.sz())) && COMPRESSED(fmt)) {
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it.ramdisk_size = compress(fmt, fd, m.buf(), m.sz());
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} else {
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it.ramdisk_size = xwrite(fd, m.buf(), m.sz());
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}
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ramdisk_offset += it.ramdisk_size;
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}
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hdr->ramdisk_size() = ramdisk_offset;
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file_align();
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} else if (access(RAMDISK_FILE, R_OK) == 0) {
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mmap_data m(RAMDISK_FILE);
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auto r_fmt = boot.r_fmt;
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if (!skip_comp && !hdr->is_vendor() && hdr->header_version() == 4 && r_fmt != LZ4_LEGACY) {
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@ -754,10 +834,22 @@ void repack(const char *src_img, const char *out_img, bool skip_comp) {
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file_align();
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}
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// Directly copy ignored blobs
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if (boot.ignore.sz()) {
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// ignore.sz() should already be aligned
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xwrite(fd, boot.ignore.buf(), boot.ignore.sz());
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// Copy boot signature
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if (boot.hdr->signature_size()) {
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xwrite(fd, boot.signature, boot.hdr->signature_size());
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file_align();
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}
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// vendor ramdisk table
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if (!ramdisk_table.empty()) {
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xwrite(fd, ramdisk_table.data(), sizeof(table_entry) * ramdisk_table.size());
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file_align();
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}
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// bootconfig
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if (access(BOOTCONFIG_FILE, R_OK) == 0) {
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hdr->bootconfig_size() = restore(fd, BOOTCONFIG_FILE);
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file_align();
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}
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// Proprietary stuffs
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|
@ -1,6 +1,6 @@
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#pragma once
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#include <stdint.h>
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#include <cstdint>
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#include <utility>
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#include <bitset>
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#include <cxx.h>
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@ -111,15 +111,21 @@ struct AvbVBMetaImageHeader {
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#define VENDOR_RAMDISK_NAME_SIZE 32
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#define VENDOR_RAMDISK_TABLE_ENTRY_BOARD_ID_SIZE 16
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/* When the boot image header has a version of 0 - 2, the structure of the boot
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#define VENDOR_RAMDISK_TYPE_NONE 0
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#define VENDOR_RAMDISK_TYPE_PLATFORM 1
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#define VENDOR_RAMDISK_TYPE_RECOVERY 2
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#define VENDOR_RAMDISK_TYPE_DLKM 3
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/*
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* When the boot image header has a version of 0 - 2, the structure of the boot
|
||||
* image is as follows:
|
||||
*
|
||||
* +-----------------+
|
||||
* | boot header | 1 page
|
||||
* +-----------------+
|
||||
* | kernel | n pages
|
||||
* | kernel | m pages
|
||||
* +-----------------+
|
||||
* | ramdisk | m pages
|
||||
* | ramdisk | n pages
|
||||
* +-----------------+
|
||||
* | second stage | o pages
|
||||
* +-----------------+
|
||||
@ -130,8 +136,8 @@ struct AvbVBMetaImageHeader {
|
||||
* | dtb | q pages
|
||||
* +-----------------+
|
||||
*
|
||||
* n = (kernel_size + page_size - 1) / page_size
|
||||
* m = (ramdisk_size + page_size - 1) / page_size
|
||||
* m = (kernel_size + page_size - 1) / page_size
|
||||
* n = (ramdisk_size + page_size - 1) / page_size
|
||||
* o = (second_size + page_size - 1) / page_size
|
||||
* p = (recovery_dtbo_size + page_size - 1) / page_size
|
||||
* q = (dtb_size + page_size - 1) / page_size
|
||||
@ -211,7 +217,8 @@ struct boot_img_hdr_pxa : public boot_img_hdr_v0_common {
|
||||
char extra_cmdline[BOOT_EXTRA_ARGS_SIZE];
|
||||
} __attribute__((packed));
|
||||
|
||||
/* When the boot image header has a version of 3 - 4, the structure of the boot
|
||||
/*
|
||||
* When the boot image header has a version of 3 - 4, the structure of the boot
|
||||
* image is as follows:
|
||||
*
|
||||
* +---------------------+
|
||||
@ -329,7 +336,7 @@ struct vendor_ramdisk_table_entry_v4 {
|
||||
uint32_t ramdisk_size; /* size in bytes for the ramdisk image */
|
||||
uint32_t ramdisk_offset; /* offset to the ramdisk image in vendor ramdisk section */
|
||||
uint32_t ramdisk_type; /* type of the ramdisk */
|
||||
uint8_t ramdisk_name[VENDOR_RAMDISK_NAME_SIZE]; /* asciiz ramdisk name */
|
||||
char ramdisk_name[VENDOR_RAMDISK_NAME_SIZE]; /* asciiz ramdisk name */
|
||||
|
||||
// Hardware identifiers describing the board, soc or platform which this
|
||||
// ramdisk is intended to be loaded on.
|
||||
@ -376,8 +383,12 @@ struct dyn_img_hdr {
|
||||
|
||||
// v4 specific
|
||||
decl_val(signature_size, 32)
|
||||
|
||||
// v4 vendor specific
|
||||
decl_val(vendor_ramdisk_table_size, 32)
|
||||
decl_val(bootconfig_size, 32)
|
||||
decl_val(vendor_ramdisk_table_entry_num, 32)
|
||||
decl_val(vendor_ramdisk_table_entry_size, 32)
|
||||
decl_var(bootconfig_size, 32)
|
||||
|
||||
virtual ~dyn_img_hdr() {
|
||||
free(raw);
|
||||
@ -554,7 +565,9 @@ struct dyn_img_vnd_v4 : public dyn_img_vnd_v3 {
|
||||
impl_cls(vnd_v4)
|
||||
|
||||
impl_val(vendor_ramdisk_table_size)
|
||||
impl_val(bootconfig_size)
|
||||
impl_val(vendor_ramdisk_table_entry_num)
|
||||
impl_val(vendor_ramdisk_table_entry_size)
|
||||
impl_var(bootconfig_size)
|
||||
};
|
||||
|
||||
#undef __impl_cls
|
||||
@ -591,7 +604,7 @@ struct boot_img {
|
||||
const mmap_data map;
|
||||
|
||||
// Android image header
|
||||
const dyn_img_hdr *hdr;
|
||||
const dyn_img_hdr *hdr = nullptr;
|
||||
|
||||
// Flags to indicate the state of current boot image
|
||||
std::bitset<BOOT_FLAGS_MAX> flags;
|
||||
@ -607,9 +620,9 @@ struct boot_img {
|
||||
|
||||
// Layout of the memory mapped region
|
||||
// +---------+
|
||||
// | head | Vendor specific. Should be empty for standard AOSP boot images.
|
||||
// | head | Vendor specific. Should not exist for standard AOSP boot images.
|
||||
// +---------+
|
||||
// | payload | The actual boot image, including the AOSP boot image header.
|
||||
// | payload | The actual entire AOSP boot image, including the boot image header.
|
||||
// +---------+
|
||||
// | tail | Data after payload. Usually contains signature/AVB information.
|
||||
// +---------+
|
||||
@ -618,8 +631,8 @@ struct boot_img {
|
||||
byte_view tail;
|
||||
|
||||
// MTK headers
|
||||
const mtk_hdr *k_hdr;
|
||||
const mtk_hdr *r_hdr;
|
||||
const mtk_hdr *k_hdr = nullptr;
|
||||
const mtk_hdr *r_hdr = nullptr;
|
||||
|
||||
// The pointers/values after parse_image
|
||||
// +---------------+
|
||||
@ -629,23 +642,26 @@ struct boot_img {
|
||||
// +---------------+
|
||||
// | z_info.tail | z_info.tail.sz()
|
||||
// +---------------+
|
||||
const zimage_hdr *z_hdr;
|
||||
const zimage_hdr *z_hdr = nullptr;
|
||||
struct {
|
||||
uint32_t hdr_sz;
|
||||
byte_view tail;
|
||||
} z_info;
|
||||
|
||||
// AVB structs
|
||||
const AvbFooter *avb_footer;
|
||||
const AvbVBMetaImageHeader *vbmeta;
|
||||
const AvbFooter *avb_footer = nullptr;
|
||||
const AvbVBMetaImageHeader *vbmeta = nullptr;
|
||||
|
||||
// Pointers to blocks defined in header
|
||||
const uint8_t *kernel;
|
||||
const uint8_t *ramdisk;
|
||||
const uint8_t *second;
|
||||
const uint8_t *extra;
|
||||
const uint8_t *recovery_dtbo;
|
||||
const uint8_t *dtb;
|
||||
const uint8_t *kernel = nullptr;
|
||||
const uint8_t *ramdisk = nullptr;
|
||||
const uint8_t *second = nullptr;
|
||||
const uint8_t *extra = nullptr;
|
||||
const uint8_t *recovery_dtbo = nullptr;
|
||||
const uint8_t *dtb = nullptr;
|
||||
const uint8_t *signature = nullptr;
|
||||
const uint8_t *vendor_ramdisk_table = nullptr;
|
||||
const uint8_t *bootconfig = nullptr;
|
||||
|
||||
// dtb embedded in kernel
|
||||
byte_view kernel_dtb;
|
||||
@ -657,7 +673,7 @@ struct boot_img {
|
||||
~boot_img();
|
||||
|
||||
bool parse_image(const uint8_t *addr, format_t type);
|
||||
const std::pair<const uint8_t *, dyn_img_hdr *> create_hdr(const uint8_t *addr, format_t type);
|
||||
std::pair<const uint8_t *, dyn_img_hdr *> create_hdr(const uint8_t *addr, format_t type);
|
||||
|
||||
// Rust FFI
|
||||
rust::Slice<const uint8_t> get_payload() const { return payload; }
|
||||
|
@ -7,11 +7,13 @@
|
||||
#define HEADER_FILE "header"
|
||||
#define KERNEL_FILE "kernel"
|
||||
#define RAMDISK_FILE "ramdisk.cpio"
|
||||
#define VND_RAMDISK_DIR "vendor_ramdisk"
|
||||
#define SECOND_FILE "second"
|
||||
#define EXTRA_FILE "extra"
|
||||
#define KER_DTB_FILE "kernel_dtb"
|
||||
#define RECV_DTBO_FILE "recovery_dtbo"
|
||||
#define DTB_FILE "dtb"
|
||||
#define BOOTCONFIG_FILE "bootconfig"
|
||||
#define NEW_BOOT "new-boot.img"
|
||||
|
||||
int unpack(const char *image, bool skip_decomp = false, bool hdr = false);
|
||||
|
Loading…
Reference in New Issue
Block a user