mirror of
https://github.com/CTCaer/CTCaer-TWRP.git
synced 2024-11-23 10:19:46 +00:00
32c8eb81af
Move TW zip install code to C++ so that it can use the ui->functions. Bring in mincrypt code to fix a crash during signature checking.
581 lines
17 KiB
C++
581 lines
17 KiB
C++
/*
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* Copyright (C) 2007 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include <ctype.h>
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#include <errno.h>
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#include <fcntl.h>
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#include <limits.h>
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#include <sys/stat.h>
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#include <sys/wait.h>
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#include <unistd.h>
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#include <string.h>
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#include <stdio.h>
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#include "common.h"
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#include "twmincrypt/twrsa.h"
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#include "twmincrypt/twsha.h"
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#include "minui/minui.h"
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#include "minzip/SysUtil.h"
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#include "minzip/Zip.h"
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#include "mtdutils/mounts.h"
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#include "mtdutils/mtdutils.h"
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#include "roots.h"
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#include "verifier.h"
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#include "ui.h"
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#include "variables.h"
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#include "data.hpp"
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#include "partitions.hpp"
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extern "C" {
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#include "extra-functions.h"
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int __system(const char *command);
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};
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extern RecoveryUI* ui;
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#define ASSUMED_UPDATE_BINARY_NAME "META-INF/com/google/android/update-binary"
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#define PUBLIC_KEYS_FILE "/res/keys"
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// Default allocation of progress bar segments to operations
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static const int VERIFICATION_PROGRESS_TIME = 60;
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static const float VERIFICATION_PROGRESS_FRACTION = 0.25;
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static const float DEFAULT_FILES_PROGRESS_FRACTION = 0.4;
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static const float DEFAULT_IMAGE_PROGRESS_FRACTION = 0.1;
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enum { INSTALL_SUCCESS, INSTALL_ERROR, INSTALL_CORRUPT };
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// Look for an RSA signature embedded in the .ZIP file comment given
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// the path to the zip. Verify it matches one of the given public
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// keys.
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//
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// Return VERIFY_SUCCESS, VERIFY_FAILURE (if any error is encountered
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// or no key matches the signature).
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int TWverify_file(const char* path, const RSAPublicKey *pKeys, unsigned int numKeys) {
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ui->SetProgress(0.0);
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FILE* f = fopen(path, "rb");
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if (f == NULL) {
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LOGE("failed to open %s (%s)\n", path, strerror(errno));
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return VERIFY_FAILURE;
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}
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// An archive with a whole-file signature will end in six bytes:
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//
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// (2-byte signature start) $ff $ff (2-byte comment size)
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//
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// (As far as the ZIP format is concerned, these are part of the
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// archive comment.) We start by reading this footer, this tells
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// us how far back from the end we have to start reading to find
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// the whole comment.
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#define FOOTER_SIZE 6
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if (fseek(f, -FOOTER_SIZE, SEEK_END) != 0) {
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LOGE("failed to seek in %s (%s)\n", path, strerror(errno));
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fclose(f);
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return VERIFY_FAILURE;
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}
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unsigned char footer[FOOTER_SIZE];
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if (fread(footer, 1, FOOTER_SIZE, f) != FOOTER_SIZE) {
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LOGE("failed to read footer from %s (%s)\n", path, strerror(errno));
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fclose(f);
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return VERIFY_FAILURE;
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}
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if (footer[2] != 0xff || footer[3] != 0xff) {
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fclose(f);
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return VERIFY_FAILURE;
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}
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size_t comment_size = footer[4] + (footer[5] << 8);
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size_t signature_start = footer[0] + (footer[1] << 8);
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LOGI("comment is %d bytes; signature %d bytes from end\n",
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comment_size, signature_start);
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if (signature_start - FOOTER_SIZE < RSANUMBYTES) {
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// "signature" block isn't big enough to contain an RSA block.
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LOGE("signature is too short\n");
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fclose(f);
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return VERIFY_FAILURE;
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}
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#define EOCD_HEADER_SIZE 22
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// The end-of-central-directory record is 22 bytes plus any
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// comment length.
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size_t eocd_size = comment_size + EOCD_HEADER_SIZE;
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if (fseek(f, -eocd_size, SEEK_END) != 0) {
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LOGE("failed to seek in %s (%s)\n", path, strerror(errno));
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fclose(f);
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return VERIFY_FAILURE;
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}
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// Determine how much of the file is covered by the signature.
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// This is everything except the signature data and length, which
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// includes all of the EOCD except for the comment length field (2
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// bytes) and the comment data.
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size_t signed_len = ftell(f) + EOCD_HEADER_SIZE - 2;
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unsigned char* eocd = (unsigned char*)malloc(eocd_size);
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if (eocd == NULL) {
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LOGE("malloc for EOCD record failed\n");
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fclose(f);
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return VERIFY_FAILURE;
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}
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if (fread(eocd, 1, eocd_size, f) != eocd_size) {
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LOGE("failed to read eocd from %s (%s)\n", path, strerror(errno));
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fclose(f);
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return VERIFY_FAILURE;
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}
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// If this is really is the EOCD record, it will begin with the
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// magic number $50 $4b $05 $06.
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if (eocd[0] != 0x50 || eocd[1] != 0x4b ||
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eocd[2] != 0x05 || eocd[3] != 0x06) {
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LOGE("signature length doesn't match EOCD marker\n");
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fclose(f);
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return VERIFY_FAILURE;
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}
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size_t i;
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for (i = 4; i < eocd_size-3; ++i) {
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if (eocd[i ] == 0x50 && eocd[i+1] == 0x4b &&
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eocd[i+2] == 0x05 && eocd[i+3] == 0x06) {
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// if the sequence $50 $4b $05 $06 appears anywhere after
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// the real one, minzip will find the later (wrong) one,
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// which could be exploitable. Fail verification if
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// this sequence occurs anywhere after the real one.
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LOGE("EOCD marker occurs after start of EOCD\n");
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fclose(f);
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return VERIFY_FAILURE;
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}
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}
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#define BUFFER_SIZE 4096
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SHA_CTX ctx;
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SHA_init(&ctx);
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unsigned char* buffer = (unsigned char*)malloc(BUFFER_SIZE);
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if (buffer == NULL) {
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LOGE("failed to alloc memory for sha1 buffer\n");
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fclose(f);
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return VERIFY_FAILURE;
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}
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double frac = -1.0;
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size_t so_far = 0;
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fseek(f, 0, SEEK_SET);
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while (so_far < signed_len) {
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size_t size = BUFFER_SIZE;
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if (signed_len - so_far < size) size = signed_len - so_far;
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if (fread(buffer, 1, size, f) != size) {
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LOGE("failed to read data from %s (%s)\n", path, strerror(errno));
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fclose(f);
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return VERIFY_FAILURE;
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}
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SHA_update(&ctx, buffer, size);
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so_far += size;
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double f = so_far / (double)signed_len;
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if (f > frac + 0.02 || size == so_far) {
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ui->SetProgress(f);
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frac = f;
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}
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}
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fclose(f);
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free(buffer);
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const uint8_t* sha1 = SHA_final(&ctx);
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for (i = 0; i < numKeys; ++i) {
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// The 6 bytes is the "(signature_start) $ff $ff (comment_size)" that
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// the signing tool appends after the signature itself.
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if (RSA_verify(pKeys+i, eocd + eocd_size - 6 - RSANUMBYTES,
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RSANUMBYTES, sha1)) {
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LOGI("whole-file signature verified against key %d\n", i);
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free(eocd);
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return VERIFY_SUCCESS;
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}
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}
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free(eocd);
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LOGE("failed to verify whole-file signature\n");
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return VERIFY_FAILURE;
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}
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// If the package contains an update binary, extract it and run it.
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static int
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try_update_binary(const char *path, ZipArchive *zip, int* wipe_cache) {
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const ZipEntry* binary_entry =
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mzFindZipEntry(zip, ASSUMED_UPDATE_BINARY_NAME);
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if (binary_entry == NULL) {
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mzCloseZipArchive(zip);
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return INSTALL_CORRUPT;
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}
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const char* binary = "/tmp/update_binary";
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unlink(binary);
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int fd = creat(binary, 0755);
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if (fd < 0) {
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mzCloseZipArchive(zip);
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LOGE("Can't make %s\n", binary);
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return INSTALL_ERROR;
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}
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bool ok = mzExtractZipEntryToFile(zip, binary_entry, fd);
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close(fd);
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mzCloseZipArchive(zip);
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if (!ok) {
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LOGE("Can't copy %s\n", ASSUMED_UPDATE_BINARY_NAME);
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return INSTALL_ERROR;
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}
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int pipefd[2];
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pipe(pipefd);
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// When executing the update binary contained in the package, the
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// arguments passed are:
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//
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// - the version number for this interface
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//
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// - an fd to which the program can write in order to update the
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// progress bar. The program can write single-line commands:
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//
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// progress <frac> <secs>
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// fill up the next <frac> part of of the progress bar
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// over <secs> seconds. If <secs> is zero, use
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// set_progress commands to manually control the
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// progress of this segment of the bar
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//
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// set_progress <frac>
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// <frac> should be between 0.0 and 1.0; sets the
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// progress bar within the segment defined by the most
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// recent progress command.
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//
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// firmware <"hboot"|"radio"> <filename>
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// arrange to install the contents of <filename> in the
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// given partition on reboot.
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//
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// (API v2: <filename> may start with "PACKAGE:" to
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// indicate taking a file from the OTA package.)
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//
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// (API v3: this command no longer exists.)
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//
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// ui_print <string>
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// display <string> on the screen.
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//
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// - the name of the package zip file.
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//
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const char** args = (const char**)malloc(sizeof(char*) * 5);
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args[0] = binary;
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args[1] = EXPAND(RECOVERY_API_VERSION); // defined in Android.mk
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char* temp = (char*)malloc(10);
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sprintf(temp, "%d", pipefd[1]);
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args[2] = temp;
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args[3] = (char*)path;
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args[4] = NULL;
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pid_t pid = fork();
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if (pid == 0) {
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close(pipefd[0]);
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execv(binary, (char* const*)args);
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fprintf(stdout, "E:Can't run %s (%s)\n", binary, strerror(errno));
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_exit(-1);
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}
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close(pipefd[1]);
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*wipe_cache = 0;
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char buffer[1024];
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FILE* from_child = fdopen(pipefd[0], "r");
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while (fgets(buffer, sizeof(buffer), from_child) != NULL) {
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char* command = strtok(buffer, " \n");
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if (command == NULL) {
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continue;
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} else if (strcmp(command, "progress") == 0) {
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char* fraction_s = strtok(NULL, " \n");
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char* seconds_s = strtok(NULL, " \n");
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float fraction = strtof(fraction_s, NULL);
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int seconds = strtol(seconds_s, NULL, 10);
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ui->ShowProgress(fraction * (1-VERIFICATION_PROGRESS_FRACTION), seconds);
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} else if (strcmp(command, "set_progress") == 0) {
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char* fraction_s = strtok(NULL, " \n");
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float fraction = strtof(fraction_s, NULL);
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ui->SetProgress(fraction);
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} else if (strcmp(command, "ui_print") == 0) {
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char* str = strtok(NULL, "\n");
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if (str) {
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ui->Print("%s", str);
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} else {
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ui->Print("\n");
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}
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} else if (strcmp(command, "wipe_cache") == 0) {
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*wipe_cache = 1;
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} else if (strcmp(command, "clear_display") == 0) {
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//ui->SetBackground(RecoveryUI::NONE);
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} else {
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LOGE("unknown command [%s]\n", command);
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}
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}
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fclose(from_child);
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int status;
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waitpid(pid, &status, 0);
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if (!WIFEXITED(status) || WEXITSTATUS(status) != 0) {
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LOGE("Error in %s\n(Status %d)\n", path, WEXITSTATUS(status));
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return INSTALL_ERROR;
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}
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return INSTALL_SUCCESS;
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}
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// Reads a file containing one or more public keys as produced by
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// DumpPublicKey: this is an RSAPublicKey struct as it would appear
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// as a C source literal, eg:
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//
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// "{64,0xc926ad21,{1795090719,...,-695002876},{-857949815,...,1175080310}}"
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//
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// (Note that the braces and commas in this example are actual
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// characters the parser expects to find in the file; the ellipses
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// indicate more numbers omitted from this example.)
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//
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// The file may contain multiple keys in this format, separated by
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// commas. The last key must not be followed by a comma.
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//
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// Returns NULL if the file failed to parse, or if it contain zero keys.
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static RSAPublicKey*
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load_keys(const char* filename, int* numKeys) {
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RSAPublicKey* out = NULL;
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*numKeys = 0;
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FILE* f = fopen(filename, "r");
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if (f == NULL) {
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LOGE("opening %s: %s\n", filename, strerror(errno));
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goto exit;
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}
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{
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int i;
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bool done = false;
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while (!done) {
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++*numKeys;
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out = (RSAPublicKey*)realloc(out, *numKeys * sizeof(RSAPublicKey));
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RSAPublicKey* key = out + (*numKeys - 1);
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if (fscanf(f, " { %i , 0x%x , { %u",
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&(key->len), &(key->n0inv), &(key->n[0])) != 3) {
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goto exit;
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}
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if (key->len != RSANUMWORDS) {
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LOGE("key length (%d) does not match expected size\n", key->len);
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goto exit;
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}
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for (i = 1; i < key->len; ++i) {
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if (fscanf(f, " , %u", &(key->n[i])) != 1) goto exit;
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}
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if (fscanf(f, " } , { %u", &(key->rr[0])) != 1) goto exit;
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for (i = 1; i < key->len; ++i) {
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if (fscanf(f, " , %u", &(key->rr[i])) != 1) goto exit;
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}
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fscanf(f, " } } ");
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// if the line ends in a comma, this file has more keys.
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switch (fgetc(f)) {
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case ',':
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// more keys to come.
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break;
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case EOF:
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done = true;
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break;
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default:
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LOGE("unexpected character between keys\n");
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goto exit;
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}
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}
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}
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fclose(f);
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return out;
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exit:
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if (f) fclose(f);
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free(out);
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*numKeys = 0;
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return NULL;
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}
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char* get_path (char* path) {
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char *s;
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/* Go to the end of the string. */
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s = path + strlen(path) - 1;
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/* Strip off trailing /s (unless it is also the leading /). */
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while (path < s && s[0] == '/')
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s--;
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/* Strip the last component. */
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while (path <= s && s[0] != '/')
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s--;
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while (path < s && s[0] == '/')
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s--;
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if (s < path)
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return (char*)(".");
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s[1] = '\0';
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return path;
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}
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/*
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Checks md5 for a path
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Return values:
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-1 : MD5 does not exist
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0 : Failed
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1 : Success
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*/
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int check_md5(const char* path) {
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FILE* fp;
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char command[255], line[512], actual_md5[512], md5[512];
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char md5file[PATH_MAX + 40];
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char *ptr;
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unsigned int line_len, index = 0;
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struct stat st;
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// Check to see if the filename.zip.md5 file exists
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strcpy(md5file, path);
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strcat(md5file, ".md5");
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if (stat(md5file, &st) != 0)
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return -1; // no MD5 file found
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// Dump the md5 of the zip to a text file for reading
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sprintf(command, "md5sum '%s' > /tmp/md5output.txt", path);
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__system(command);
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fp = fopen("/tmp/md5output.txt", "rt");
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if (fp == NULL) {
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LOGI("Unable to open /tmp/md5output.txt.\n");
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return false;
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}
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while (fgets(line, sizeof(line), fp) != NULL)
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{
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line_len = strlen(line);
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for (index = 0; index < line_len; index++) {
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if (line[index] <= 32)
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line[index] = '\0';
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}
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strcpy(actual_md5, line);
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break;
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}
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fclose(fp);
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// Read the filename.zip.md5 file
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fp = fopen(md5file, "rt");
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if (fp == NULL) {
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LOGI("Unable to open '%s'.\n", md5file);
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return false;
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}
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|
while (fgets(line, sizeof(line), fp) != NULL)
|
|
{
|
|
line_len = strlen(line);
|
|
for (index = 0; index < line_len; index++) {
|
|
if (line[index] <= 32)
|
|
line[index] = '\0';
|
|
}
|
|
strcpy(md5, line);
|
|
break;
|
|
}
|
|
fclose(fp);
|
|
|
|
// Comare the 2 MD5 values
|
|
if (strcmp(actual_md5, md5) == 0)
|
|
return 1;
|
|
LOGI("MD5 did not match: '%s' != '%s'\n", actual_md5, md5);
|
|
return 0;
|
|
}
|
|
|
|
extern "C" int TWinstall_zip(const char* path, int* wipe_cache) {
|
|
int err, zip_verify, md5_return, md5_verify;
|
|
|
|
ui_print("Installing '%s'...\n", path);
|
|
|
|
if (!PartitionManager.Mount_By_Path(path, 0)) {
|
|
LOGE("Failed to mount '%s'\n", path);
|
|
return -1;
|
|
}
|
|
|
|
ui_print("Checking for MD5 file...\n");
|
|
md5_return = check_md5(path);
|
|
if (md5_return == 0) {
|
|
// MD5 did not match.
|
|
LOGE("Zip MD5 does not match.\nUnable to install zip.\n");
|
|
return INSTALL_CORRUPT;
|
|
} else if (md5_return == -1) {
|
|
DataManager::GetValue(TW_FORCE_MD5_CHECK_VAR, md5_verify);
|
|
if (md5_verify == 1) {
|
|
// Forced MD5 checking is on and no MD5 file found.
|
|
LOGE("No MD5 file found for '%s'.\nDisable force MD5 check to avoid this error.\n", path);
|
|
return INSTALL_CORRUPT;
|
|
} else
|
|
ui_print("No MD5 file found, this is not an error.\n");
|
|
} else if (md5_return == 1)
|
|
ui_print("Zip MD5 matched.\n"); // MD5 found and matched.
|
|
|
|
DataManager::GetValue(TW_SIGNED_ZIP_VERIFY_VAR, zip_verify);
|
|
if (zip_verify) {
|
|
ui_print("Verifying zip signature...\n");
|
|
int numKeys;
|
|
RSAPublicKey* loadedKeys = load_keys(PUBLIC_KEYS_FILE, &numKeys);
|
|
if (loadedKeys == NULL) {
|
|
LOGE("Failed to load keys\n");
|
|
return -1;
|
|
}
|
|
LOGI("%d key(s) loaded from %s\n", numKeys, PUBLIC_KEYS_FILE);
|
|
|
|
// Give verification half the progress bar...
|
|
ui->Print("Verifying update package...\n");
|
|
ui->SetProgressType(RecoveryUI::DETERMINATE);
|
|
ui->ShowProgress(VERIFICATION_PROGRESS_FRACTION, VERIFICATION_PROGRESS_TIME);
|
|
|
|
err = TWverify_file(path, loadedKeys, numKeys);
|
|
free(loadedKeys);
|
|
LOGI("verify_file returned %d\n", err);
|
|
if (err != VERIFY_SUCCESS) {
|
|
LOGE("signature verification failed\n");
|
|
return -1;
|
|
}
|
|
}
|
|
/* Try to open the package.
|
|
*/
|
|
ZipArchive zip;
|
|
err = mzOpenZipArchive(path, &zip);
|
|
if (err != 0) {
|
|
LOGE("Can't open %s\n(%s)\n", path, err != -1 ? strerror(err) : "bad");
|
|
return INSTALL_CORRUPT;
|
|
}
|
|
|
|
/* Verify and install the contents of the package.
|
|
*/
|
|
return try_update_binary(path, &zip, wipe_cache);
|
|
}
|