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https://github.com/topjohnwu/Magisk.git
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Update size in MTK headers
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@ -93,4 +93,10 @@ struct boot_img_hdr
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** else: jump to kernel_addr
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*/
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typedef struct mtk_hdr {
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uint8_t magic[4]; /* MTK magic */
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uint32_t size; /* Size of the content */
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uint8_t name[32]; /* The type of the header */
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} mtk_hdr;
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#endif
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@ -66,7 +66,7 @@ typedef uint64_t elf64_xword;
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#define EM_ARM 40
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#define EI_NIDENT 16
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typedef struct elf32_ehdr{
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typedef struct elf32_ehdr {
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unsigned char e_ident[EI_NIDENT];
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elf32_half e_type;
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elf32_half e_machine;
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@ -100,7 +100,7 @@ typedef struct elf64_ehdr {
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elf64_half e_shstrndx;
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} elf64_ehdr;
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typedef struct elf32_phdr{
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typedef struct elf32_phdr {
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elf32_word p_type;
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elf32_off p_offset;
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elf32_addr p_vaddr;
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@ -94,6 +94,7 @@ extern unsigned char *kernel, *ramdisk, *second, *dtb, *extra;
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extern boot_img_hdr hdr;
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extern file_t boot_type, ramdisk_type, dtb_type;
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extern int mtk_kernel, mtk_ramdisk;
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extern int zero;
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// Main entries
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void unpack(const char *image);
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@ -14,17 +14,24 @@ static size_t restore(const char *filename, int fd) {
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return size;
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}
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static void restore_buf(const void *buf, size_t size, int fd) {
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static void restore_buf(int fd, const void *buf, size_t size) {
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if (write(fd, buf, size) != size) {
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error(1, "Cannot dump from input file\n");
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}
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}
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void repack(const char* orig_image, const char* out_image) {
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zero = open("/dev/zero", O_RDONLY);
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if (zero < 0) error(1, "Cannot open /dev/zero");
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size_t size;
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unsigned char *orig;
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char name[PATH_MAX];
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// There are possible two MTK headers
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mtk_hdr mtk_kernel_hdr, mtk_ramdisk_hdr;
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size_t mtk_kernel_off, mtk_ramdisk_off;
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// Load original image
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mmap_ro(orig_image, &orig, &size);
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@ -32,6 +39,8 @@ void repack(const char* orig_image, const char* out_image) {
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printf("Parsing boot image: [%s]\n\n", orig_image);
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parse_img(orig, size);
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printf("Repack to boot image: [%s]\n\n", out_image);
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// Create new image
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int fd = open_new(out_image);
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@ -42,23 +51,23 @@ void repack(const char* orig_image, const char* out_image) {
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hdr.dt_size = 0;
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// Skip a page for header
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ftruncate(fd, hdr.page_size);
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lseek(fd, 0, SEEK_END);
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sendfile(fd, zero, NULL, hdr.page_size);
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// Restore kernel
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if (mtk_kernel) {
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restore_buf(kernel, 512, fd);
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hdr.kernel_size += 512;
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mtk_kernel_off = lseek(fd, 0, SEEK_CUR);
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sendfile(fd, zero, NULL, 512);
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memcpy(&mtk_kernel_hdr, kernel, sizeof(mtk_kernel_hdr));
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}
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hdr.kernel_size += restore(KERNEL_FILE, fd);
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hdr.kernel_size = restore(KERNEL_FILE, fd);
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file_align(fd, hdr.page_size, 1);
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// Restore ramdisk
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if (mtk_ramdisk) {
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restore_buf(ramdisk, 512, fd);
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hdr.ramdisk_size += 512;
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mtk_ramdisk_off = lseek(fd, 0, SEEK_CUR);
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sendfile(fd, zero, NULL, 512);
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memcpy(&mtk_ramdisk_hdr, ramdisk, sizeof(mtk_ramdisk_hdr));
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}
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if (access(RAMDISK_FILE, R_OK) == 0) {
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// If we found raw cpio, compress to original format
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@ -89,18 +98,18 @@ void repack(const char* orig_image, const char* out_image) {
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}
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if (!found)
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error(1, "No ramdisk exists!");
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hdr.ramdisk_size += restore(name, fd);
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hdr.ramdisk_size = restore(name, fd);
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file_align(fd, hdr.page_size, 1);
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// Restore second
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if (access(SECOND_FILE, R_OK) == 0) {
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hdr.second_size += restore(SECOND_FILE, fd);
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hdr.second_size = restore(SECOND_FILE, fd);
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file_align(fd, hdr.page_size, 1);
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}
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// Restore dtb
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if (access(DTB_FILE, R_OK) == 0) {
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hdr.dt_size += restore(DTB_FILE, fd);
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hdr.dt_size = restore(DTB_FILE, fd);
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file_align(fd, hdr.page_size, 1);
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}
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@ -108,18 +117,32 @@ void repack(const char* orig_image, const char* out_image) {
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if (extra) {
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if (memcmp(extra, "SEANDROIDENFORCE", 16) == 0 ||
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memcmp(extra, "\x41\xa9\xe4\x67\x74\x4d\x1d\x1b\xa4\x29\xf2\xec\xea\x65\x52\x79", 16) == 0 ) {
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restore_buf(extra, 16, fd);
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restore_buf(fd, extra, 16);
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}
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}
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// Write header back
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printf("Repack to boot image: [%s]\n\n", out_image);
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print_info();
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// Write headers back
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if (mtk_kernel) {
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lseek(fd, mtk_kernel_off, SEEK_SET);
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mtk_kernel_hdr.size = hdr.kernel_size;
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hdr.kernel_size += 512;
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restore_buf(fd, &mtk_kernel_hdr, sizeof(mtk_kernel_hdr));
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}
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if (mtk_ramdisk) {
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lseek(fd, mtk_ramdisk_off, SEEK_SET);
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mtk_ramdisk_hdr.size = hdr.ramdisk_size;
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hdr.ramdisk_size += 512;
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restore_buf(fd, &mtk_ramdisk_hdr, sizeof(mtk_ramdisk_hdr));
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}
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// Main header
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lseek(fd, 0, SEEK_SET);
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write(fd, &hdr, sizeof(hdr));
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restore_buf(fd, &hdr, sizeof(hdr));
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// Print new image info
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print_info();
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munmap(orig, size);
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if (lseek(fd, 0, SEEK_CUR) > size) {
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if (lseek(fd, 0, SEEK_END) > size) {
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error(2, "Boot partition too small!");
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}
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close(fd);
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@ -3,6 +3,7 @@
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char *SUP_EXT_LIST[SUP_NUM] = { "gz", "xz", "lzma", "bz2", "lz4" };
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file_t SUP_TYPE_LIST[SUP_NUM] = { GZIP, XZ, LZMA, BZIP2, LZ4 };
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int zero = -1;
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void mmap_ro(const char *filename, unsigned char **buf, size_t *size) {
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int fd = open(filename, O_RDONLY);
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@ -65,12 +66,18 @@ void mem_align(size_t *pos, size_t align) {
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void file_align(int fd, size_t align, int out) {
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size_t pos = lseek(fd, 0, SEEK_CUR);
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size_t mask = align - 1;
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size_t off;
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if (pos & mask) {
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pos += align - (pos & mask);
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off = align - (pos & mask);
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if (out) {
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ftruncate(fd, pos);
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if (zero < 0) {
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zero = open("/dev/zero", O_RDONLY);
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if (zero < 0) error(1, "Cannot open /dev/zero");
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}
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sendfile(fd, zero, NULL, off);
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} else {
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lseek(fd, pos + off, SEEK_SET);
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}
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lseek(fd, pos, SEEK_SET);
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}
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}
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