mirror of
https://github.com/topjohnwu/Magisk.git
synced 2024-11-30 21:45:27 +00:00
02dc1172be
Since we no longer need to add new properties in the device tree, and all the patches we do removes strings, we can just directly patch the flat device tree in-place, ignoring basically all the higher level DTB structure and format to accomplish 100% compatibility.
198 lines
5.6 KiB
C++
198 lines
5.6 KiB
C++
#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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#include <unistd.h>
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#include <sys/mman.h>
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#include <mincrypt/sha.h>
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#include <logging.hpp>
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#include <utils.hpp>
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#include <flags.h>
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#include "magiskboot.hpp"
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#include "compress.hpp"
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using namespace std;
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static void usage(char *arg0) {
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fprintf(stderr,
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NAME_WITH_VER(MagiskBoot) R"EOF( - Boot Image Modification Tool
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Usage: %s <action> [args...]
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Supported actions:
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unpack [-n] [-h] <bootimg>
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Unpack <bootimg> to, if available, kernel, kernel_dtb, ramdisk.cpio,
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second, dtb, extra, and recovery_dtbo into current directory.
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If '-n' is provided, it will not attempt to decompress kernel or
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ramdisk.cpio from their original formats.
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If '-h' is provided, it will dump header info to 'header',
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which will be parsed when repacking.
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Return values:
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0:valid 1:error 2:chromeos
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repack [-n] <origbootimg> [outbootimg]
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Repack boot image components from current directory
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to [outbootimg], or new-boot.img if not specified.
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If '-n' is provided, it will not attempt to recompress ramdisk.cpio,
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otherwise it will compress ramdisk.cpio and kernel with the same method
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in <origbootimg> if the file provided is not already compressed.
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hexpatch <file> <hexpattern1> <hexpattern2>
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Search <hexpattern1> in <file>, and replace with <hexpattern2>
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cpio <incpio> [commands...]
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Do cpio commands to <incpio> (modifications are done in-place)
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Each command is a single argument, add quotes for each command
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Supported commands:
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exists ENTRY
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Return 0 if ENTRY exists, else return 1
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rm [-r] ENTRY
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Remove ENTRY, specify [-r] to remove recursively
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mkdir MODE ENTRY
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Create directory ENTRY in permissions MODE
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ln TARGET ENTRY
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Create a symlink to TARGET with the name ENTRY
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mv SOURCE DEST
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Move SOURCE to DEST
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add MODE ENTRY INFILE
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Add INFILE as ENTRY in permissions MODE; replaces ENTRY if exists
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extract [ENTRY OUT]
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Extract ENTRY to OUT, or extract all entries to current directory
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test
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Test the current cpio's patch status
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Return values:
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0:stock 1:Magisk 2:unsupported (phh, SuperSU, Xposed)
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patch
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Apply ramdisk patches
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Configure with env variables: KEEPVERITY KEEPFORCEENCRYPT
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backup ORIG
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Create ramdisk backups from ORIG
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restore
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Restore ramdisk from ramdisk backup stored within incpio
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sha1
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Print stock boot SHA1 if previously backed up in ramdisk
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dtb <input> <action> [args...]
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Do dtb related actions to <input>
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Supported actions:
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print [-f]
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Print all contents of dtb for debugging
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Specify [-f] to only print fstab nodes
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patch
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Search for fstab and remove verity/avb
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Modifications are done directly to the file in-place
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Configure with env variables: KEEPVERITY
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split <input>
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Split image.*-dtb into kernel + kernel_dtb
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sha1 <file>
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Print the SHA1 checksum for <file>
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cleanup
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Cleanup the current working directory
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compress[=method] <infile> [outfile]
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Compress <infile> with [method] (default: gzip), optionally to [outfile]
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<infile>/[outfile] can be '-' to be STDIN/STDOUT
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Supported methods: )EOF", arg0);
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for (auto &it : name2fmt)
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fprintf(stderr, "%s ", it.first.data());
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fprintf(stderr, R"EOF(
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decompress <infile> [outfile]
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Detect method and decompress <infile>, optionally to [outfile]
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<infile>/[outfile] can be '-' to be STDIN/STDOUT
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Supported methods: )EOF");
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for (auto &it : name2fmt)
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fprintf(stderr, "%s ", it.first.data());
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fprintf(stderr, "\n\n");
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exit(1);
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}
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int main(int argc, char *argv[]) {
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cmdline_logging();
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umask(0);
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if (argc < 2)
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usage(argv[0]);
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// Skip '--' for backwards compatibility
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string_view action(argv[1]);
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if (str_starts(action, "--"))
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action = argv[1] + 2;
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if (action == "cleanup") {
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fprintf(stderr, "Cleaning up...\n");
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unlink(HEADER_FILE);
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unlink(KERNEL_FILE);
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unlink(RAMDISK_FILE);
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unlink(SECOND_FILE);
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unlink(KER_DTB_FILE);
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unlink(EXTRA_FILE);
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unlink(RECV_DTBO_FILE);
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unlink(DTB_FILE);
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} else if (argc > 2 && action == "sha1") {
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uint8_t sha1[SHA_DIGEST_SIZE];
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void *buf;
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size_t size;
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mmap_ro(argv[2], buf, size);
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SHA_hash(buf, size, sha1);
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for (uint8_t i : sha1)
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printf("%02x", i);
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printf("\n");
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munmap(buf, size);
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} else if (argc > 2 && action == "split") {
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return split_image_dtb(argv[2]);
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} else if (argc > 2 && action == "unpack") {
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int idx = 2;
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bool nodecomp = false;
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bool hdr = false;
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for (;;) {
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if (idx >= argc)
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usage(argv[0]);
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if (argv[idx][0] != '-')
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break;
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for (char *flag = &argv[idx][1]; *flag; ++flag) {
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if (*flag == 'n')
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nodecomp = true;
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else if (*flag == 'h')
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hdr = true;
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else
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usage(argv[0]);
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}
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++idx;
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}
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return unpack(argv[idx], nodecomp, hdr);
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} else if (argc > 2 && action == "repack") {
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if (argv[2] == "-n"sv) {
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if (argc == 3)
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usage(argv[0]);
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repack(argv[3], argv[4] ? argv[4] : NEW_BOOT, true);
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} else {
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repack(argv[2], argv[3] ? argv[3] : NEW_BOOT);
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}
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} else if (argc > 2 && action == "decompress") {
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decompress(argv[2], argv[3]);
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} else if (argc > 2 && str_starts(action, "compress")) {
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compress(action[8] == '=' ? &action[9] : "gzip", argv[2], argv[3]);
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} else if (argc > 4 && action == "hexpatch") {
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return hexpatch(argv[2], argv[3], argv[4]);
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} else if (argc > 2 && action == "cpio"sv) {
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if (cpio_commands(argc - 2, argv + 2))
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usage(argv[0]);
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} else if (argc > 3 && action == "dtb") {
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if (dtb_commands(argc - 2, argv + 2))
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usage(argv[0]);
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} else {
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usage(argv[0]);
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}
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return 0;
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}
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