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      1 /*
      2  * Copyright (C) 2008 The Android Open Source Project
      3  *
      4  * Licensed under the Apache License, Version 2.0 (the "License");
      5  * you may not use this file except in compliance with the License.
      6  * You may obtain a copy of the License at
      7  *
      8  *      http://www.apache.org/licenses/LICENSE-2.0
      9  *
     10  * Unless required by applicable law or agreed to in writing, software
     11  * distributed under the License is distributed on an "AS IS" BASIS,
     12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
     13  * See the License for the specific language governing permissions and
     14  * limitations under the License.
     15  */
     16 
     17 #include <errno.h>
     18 #include <libgen.h>
     19 #include <stdio.h>
     20 #include <stdlib.h>
     21 #include <string.h>
     22 #include <sys/stat.h>
     23 #include <sys/statfs.h>
     24 #include <sys/types.h>
     25 #include <fcntl.h>
     26 #include <unistd.h>
     27 
     28 #include "mincrypt/sha.h"
     29 #include "applypatch.h"
     30 #include "mtdutils/mtdutils.h"
     31 #include "edify/expr.h"
     32 
     33 static int LoadPartitionContents(const char* filename, FileContents* file);
     34 static ssize_t FileSink(unsigned char* data, ssize_t len, void* token);
     35 static int GenerateTarget(FileContents* source_file,
     36                           const Value* source_patch_value,
     37                           FileContents* copy_file,
     38                           const Value* copy_patch_value,
     39                           const char* source_filename,
     40                           const char* target_filename,
     41                           const uint8_t target_sha1[SHA_DIGEST_SIZE],
     42                           size_t target_size,
     43                           const Value* bonus_data);
     44 
     45 static int mtd_partitions_scanned = 0;
     46 
     47 // Read a file into memory; optionally (retouch_flag == RETOUCH_DO_MASK) mask
     48 // the retouched entries back to their original value (such that SHA-1 checks
     49 // don't fail due to randomization); store the file contents and associated
     50 // metadata in *file.
     51 //
     52 // Return 0 on success.
     53 int LoadFileContents(const char* filename, FileContents* file,
     54                      int retouch_flag) {
     55     file->data = NULL;
     56 
     57     // A special 'filename' beginning with "MTD:" or "EMMC:" means to
     58     // load the contents of a partition.
     59     if (strncmp(filename, "MTD:", 4) == 0 ||
     60         strncmp(filename, "EMMC:", 5) == 0) {
     61         return LoadPartitionContents(filename, file);
     62     }
     63 
     64     if (stat(filename, &file->st) != 0) {
     65         printf("failed to stat \"%s\": %s\n", filename, strerror(errno));
     66         return -1;
     67     }
     68 
     69     file->size = file->st.st_size;
     70     file->data = malloc(file->size);
     71 
     72     FILE* f = fopen(filename, "rb");
     73     if (f == NULL) {
     74         printf("failed to open \"%s\": %s\n", filename, strerror(errno));
     75         free(file->data);
     76         file->data = NULL;
     77         return -1;
     78     }
     79 
     80     ssize_t bytes_read = fread(file->data, 1, file->size, f);
     81     if (bytes_read != file->size) {
     82         printf("short read of \"%s\" (%ld bytes of %ld)\n",
     83                filename, (long)bytes_read, (long)file->size);
     84         free(file->data);
     85         file->data = NULL;
     86         return -1;
     87     }
     88     fclose(f);
     89 
     90     // apply_patch[_check] functions are blind to randomization. Randomization
     91     // is taken care of in [Undo]RetouchBinariesFn. If there is a mismatch
     92     // within a file, this means the file is assumed "corrupt" for simplicity.
     93     if (retouch_flag) {
     94         int32_t desired_offset = 0;
     95         if (retouch_mask_data(file->data, file->size,
     96                               &desired_offset, NULL) != RETOUCH_DATA_MATCHED) {
     97             printf("error trying to mask retouch entries\n");
     98             free(file->data);
     99             file->data = NULL;
    100             return -1;
    101         }
    102     }
    103 
    104     SHA(file->data, file->size, file->sha1);
    105     return 0;
    106 }
    107 
    108 static size_t* size_array;
    109 // comparison function for qsort()ing an int array of indexes into
    110 // size_array[].
    111 static int compare_size_indices(const void* a, const void* b) {
    112     int aa = *(int*)a;
    113     int bb = *(int*)b;
    114     if (size_array[aa] < size_array[bb]) {
    115         return -1;
    116     } else if (size_array[aa] > size_array[bb]) {
    117         return 1;
    118     } else {
    119         return 0;
    120     }
    121 }
    122 
    123 // Load the contents of an MTD or EMMC partition into the provided
    124 // FileContents.  filename should be a string of the form
    125 // "MTD:<partition_name>:<size_1>:<sha1_1>:<size_2>:<sha1_2>:..."  (or
    126 // "EMMC:<partition_device>:...").  The smallest size_n bytes for
    127 // which that prefix of the partition contents has the corresponding
    128 // sha1 hash will be loaded.  It is acceptable for a size value to be
    129 // repeated with different sha1s.  Will return 0 on success.
    130 //
    131 // This complexity is needed because if an OTA installation is
    132 // interrupted, the partition might contain either the source or the
    133 // target data, which might be of different lengths.  We need to know
    134 // the length in order to read from a partition (there is no
    135 // "end-of-file" marker), so the caller must specify the possible
    136 // lengths and the hash of the data, and we'll do the load expecting
    137 // to find one of those hashes.
    138 enum PartitionType { MTD, EMMC };
    139 
    140 static int LoadPartitionContents(const char* filename, FileContents* file) {
    141     char* copy = strdup(filename);
    142     const char* magic = strtok(copy, ":");
    143 
    144     enum PartitionType type;
    145 
    146     if (strcmp(magic, "MTD") == 0) {
    147         type = MTD;
    148     } else if (strcmp(magic, "EMMC") == 0) {
    149         type = EMMC;
    150     } else {
    151         printf("LoadPartitionContents called with bad filename (%s)\n",
    152                filename);
    153         return -1;
    154     }
    155     const char* partition = strtok(NULL, ":");
    156 
    157     int i;
    158     int colons = 0;
    159     for (i = 0; filename[i] != '\0'; ++i) {
    160         if (filename[i] == ':') {
    161             ++colons;
    162         }
    163     }
    164     if (colons < 3 || colons%2 == 0) {
    165         printf("LoadPartitionContents called with bad filename (%s)\n",
    166                filename);
    167     }
    168 
    169     int pairs = (colons-1)/2;     // # of (size,sha1) pairs in filename
    170     int* index = malloc(pairs * sizeof(int));
    171     size_t* size = malloc(pairs * sizeof(size_t));
    172     char** sha1sum = malloc(pairs * sizeof(char*));
    173 
    174     for (i = 0; i < pairs; ++i) {
    175         const char* size_str = strtok(NULL, ":");
    176         size[i] = strtol(size_str, NULL, 10);
    177         if (size[i] == 0) {
    178             printf("LoadPartitionContents called with bad size (%s)\n", filename);
    179             return -1;
    180         }
    181         sha1sum[i] = strtok(NULL, ":");
    182         index[i] = i;
    183     }
    184 
    185     // sort the index[] array so it indexes the pairs in order of
    186     // increasing size.
    187     size_array = size;
    188     qsort(index, pairs, sizeof(int), compare_size_indices);
    189 
    190     MtdReadContext* ctx = NULL;
    191     FILE* dev = NULL;
    192 
    193     switch (type) {
    194         case MTD:
    195             if (!mtd_partitions_scanned) {
    196                 mtd_scan_partitions();
    197                 mtd_partitions_scanned = 1;
    198             }
    199 
    200             const MtdPartition* mtd = mtd_find_partition_by_name(partition);
    201             if (mtd == NULL) {
    202                 printf("mtd partition \"%s\" not found (loading %s)\n",
    203                        partition, filename);
    204                 return -1;
    205             }
    206 
    207             ctx = mtd_read_partition(mtd);
    208             if (ctx == NULL) {
    209                 printf("failed to initialize read of mtd partition \"%s\"\n",
    210                        partition);
    211                 return -1;
    212             }
    213             break;
    214 
    215         case EMMC:
    216             dev = fopen(partition, "rb");
    217             if (dev == NULL) {
    218                 printf("failed to open emmc partition \"%s\": %s\n",
    219                        partition, strerror(errno));
    220                 return -1;
    221             }
    222     }
    223 
    224     SHA_CTX sha_ctx;
    225     SHA_init(&sha_ctx);
    226     uint8_t parsed_sha[SHA_DIGEST_SIZE];
    227 
    228     // allocate enough memory to hold the largest size.
    229     file->data = malloc(size[index[pairs-1]]);
    230     char* p = (char*)file->data;
    231     file->size = 0;                // # bytes read so far
    232 
    233     for (i = 0; i < pairs; ++i) {
    234         // Read enough additional bytes to get us up to the next size
    235         // (again, we're trying the possibilities in order of increasing
    236         // size).
    237         size_t next = size[index[i]] - file->size;
    238         size_t read = 0;
    239         if (next > 0) {
    240             switch (type) {
    241                 case MTD:
    242                     read = mtd_read_data(ctx, p, next);
    243                     break;
    244 
    245                 case EMMC:
    246                     read = fread(p, 1, next, dev);
    247                     break;
    248             }
    249             if (next != read) {
    250                 printf("short read (%d bytes of %d) for partition \"%s\"\n",
    251                        read, next, partition);
    252                 free(file->data);
    253                 file->data = NULL;
    254                 return -1;
    255             }
    256             SHA_update(&sha_ctx, p, read);
    257             file->size += read;
    258         }
    259 
    260         // Duplicate the SHA context and finalize the duplicate so we can
    261         // check it against this pair's expected hash.
    262         SHA_CTX temp_ctx;
    263         memcpy(&temp_ctx, &sha_ctx, sizeof(SHA_CTX));
    264         const uint8_t* sha_so_far = SHA_final(&temp_ctx);
    265 
    266         if (ParseSha1(sha1sum[index[i]], parsed_sha) != 0) {
    267             printf("failed to parse sha1 %s in %s\n",
    268                    sha1sum[index[i]], filename);
    269             free(file->data);
    270             file->data = NULL;
    271             return -1;
    272         }
    273 
    274         if (memcmp(sha_so_far, parsed_sha, SHA_DIGEST_SIZE) == 0) {
    275             // we have a match.  stop reading the partition; we'll return
    276             // the data we've read so far.
    277             printf("partition read matched size %d sha %s\n",
    278                    size[index[i]], sha1sum[index[i]]);
    279             break;
    280         }
    281 
    282         p += read;
    283     }
    284 
    285     switch (type) {
    286         case MTD:
    287             mtd_read_close(ctx);
    288             break;
    289 
    290         case EMMC:
    291             fclose(dev);
    292             break;
    293     }
    294 
    295 
    296     if (i == pairs) {
    297         // Ran off the end of the list of (size,sha1) pairs without
    298         // finding a match.
    299         printf("contents of partition \"%s\" didn't match %s\n",
    300                partition, filename);
    301         free(file->data);
    302         file->data = NULL;
    303         return -1;
    304     }
    305 
    306     const uint8_t* sha_final = SHA_final(&sha_ctx);
    307     for (i = 0; i < SHA_DIGEST_SIZE; ++i) {
    308         file->sha1[i] = sha_final[i];
    309     }
    310 
    311     // Fake some stat() info.
    312     file->st.st_mode = 0644;
    313     file->st.st_uid = 0;
    314     file->st.st_gid = 0;
    315 
    316     free(copy);
    317     free(index);
    318     free(size);
    319     free(sha1sum);
    320 
    321     return 0;
    322 }
    323 
    324 
    325 // Save the contents of the given FileContents object under the given
    326 // filename.  Return 0 on success.
    327 int SaveFileContents(const char* filename, const FileContents* file) {
    328     int fd = open(filename, O_WRONLY | O_CREAT | O_TRUNC, S_IRUSR | S_IWUSR);
    329     if (fd < 0) {
    330         printf("failed to open \"%s\" for write: %s\n",
    331                filename, strerror(errno));
    332         return -1;
    333     }
    334 
    335     ssize_t bytes_written = FileSink(file->data, file->size, &fd);
    336     if (bytes_written != file->size) {
    337         printf("short write of \"%s\" (%ld bytes of %ld) (%s)\n",
    338                filename, (long)bytes_written, (long)file->size,
    339                strerror(errno));
    340         close(fd);
    341         return -1;
    342     }
    343     fsync(fd);
    344     close(fd);
    345 
    346     if (chmod(filename, file->st.st_mode) != 0) {
    347         printf("chmod of \"%s\" failed: %s\n", filename, strerror(errno));
    348         return -1;
    349     }
    350     if (chown(filename, file->st.st_uid, file->st.st_gid) != 0) {
    351         printf("chown of \"%s\" failed: %s\n", filename, strerror(errno));
    352         return -1;
    353     }
    354 
    355     return 0;
    356 }
    357 
    358 // Write a memory buffer to 'target' partition, a string of the form
    359 // "MTD:<partition>[:...]" or "EMMC:<partition_device>:".  Return 0 on
    360 // success.
    361 int WriteToPartition(unsigned char* data, size_t len,
    362                         const char* target) {
    363     char* copy = strdup(target);
    364     const char* magic = strtok(copy, ":");
    365 
    366     enum PartitionType type;
    367     if (strcmp(magic, "MTD") == 0) {
    368         type = MTD;
    369     } else if (strcmp(magic, "EMMC") == 0) {
    370         type = EMMC;
    371     } else {
    372         printf("WriteToPartition called with bad target (%s)\n", target);
    373         return -1;
    374     }
    375     const char* partition = strtok(NULL, ":");
    376 
    377     if (partition == NULL) {
    378         printf("bad partition target name \"%s\"\n", target);
    379         return -1;
    380     }
    381 
    382     switch (type) {
    383         case MTD:
    384             if (!mtd_partitions_scanned) {
    385                 mtd_scan_partitions();
    386                 mtd_partitions_scanned = 1;
    387             }
    388 
    389             const MtdPartition* mtd = mtd_find_partition_by_name(partition);
    390             if (mtd == NULL) {
    391                 printf("mtd partition \"%s\" not found for writing\n",
    392                        partition);
    393                 return -1;
    394             }
    395 
    396             MtdWriteContext* ctx = mtd_write_partition(mtd);
    397             if (ctx == NULL) {
    398                 printf("failed to init mtd partition \"%s\" for writing\n",
    399                        partition);
    400                 return -1;
    401             }
    402 
    403             size_t written = mtd_write_data(ctx, (char*)data, len);
    404             if (written != len) {
    405                 printf("only wrote %d of %d bytes to MTD %s\n",
    406                        written, len, partition);
    407                 mtd_write_close(ctx);
    408                 return -1;
    409             }
    410 
    411             if (mtd_erase_blocks(ctx, -1) < 0) {
    412                 printf("error finishing mtd write of %s\n", partition);
    413                 mtd_write_close(ctx);
    414                 return -1;
    415             }
    416 
    417             if (mtd_write_close(ctx)) {
    418                 printf("error closing mtd write of %s\n", partition);
    419                 return -1;
    420             }
    421             break;
    422 
    423         case EMMC:
    424             ;
    425             FILE* f = fopen(partition, "wb");
    426             if (fwrite(data, 1, len, f) != len) {
    427                 printf("short write writing to %s (%s)\n",
    428                        partition, strerror(errno));
    429                 return -1;
    430             }
    431             if (fclose(f) != 0) {
    432                 printf("error closing %s (%s)\n", partition, strerror(errno));
    433                 return -1;
    434             }
    435             break;
    436     }
    437 
    438     free(copy);
    439     return 0;
    440 }
    441 
    442 
    443 // Take a string 'str' of 40 hex digits and parse it into the 20
    444 // byte array 'digest'.  'str' may contain only the digest or be of
    445 // the form "<digest>:<anything>".  Return 0 on success, -1 on any
    446 // error.
    447 int ParseSha1(const char* str, uint8_t* digest) {
    448     int i;
    449     const char* ps = str;
    450     uint8_t* pd = digest;
    451     for (i = 0; i < SHA_DIGEST_SIZE * 2; ++i, ++ps) {
    452         int digit;
    453         if (*ps >= '0' && *ps <= '9') {
    454             digit = *ps - '0';
    455         } else if (*ps >= 'a' && *ps <= 'f') {
    456             digit = *ps - 'a' + 10;
    457         } else if (*ps >= 'A' && *ps <= 'F') {
    458             digit = *ps - 'A' + 10;
    459         } else {
    460             return -1;
    461         }
    462         if (i % 2 == 0) {
    463             *pd = digit << 4;
    464         } else {
    465             *pd |= digit;
    466             ++pd;
    467         }
    468     }
    469     if (*ps != '\0') return -1;
    470     return 0;
    471 }
    472 
    473 // Search an array of sha1 strings for one matching the given sha1.
    474 // Return the index of the match on success, or -1 if no match is
    475 // found.
    476 int FindMatchingPatch(uint8_t* sha1, const char** patch_sha1_str,
    477                       int num_patches) {
    478     int i;
    479     uint8_t patch_sha1[SHA_DIGEST_SIZE];
    480     for (i = 0; i < num_patches; ++i) {
    481         if (ParseSha1(patch_sha1_str[i], patch_sha1) == 0 &&
    482             memcmp(patch_sha1, sha1, SHA_DIGEST_SIZE) == 0) {
    483             return i;
    484         }
    485     }
    486     return -1;
    487 }
    488 
    489 // Returns 0 if the contents of the file (argv[2]) or the cached file
    490 // match any of the sha1's on the command line (argv[3:]).  Returns
    491 // nonzero otherwise.
    492 int applypatch_check(const char* filename,
    493                      int num_patches, char** const patch_sha1_str) {
    494     FileContents file;
    495     file.data = NULL;
    496 
    497     // It's okay to specify no sha1s; the check will pass if the
    498     // LoadFileContents is successful.  (Useful for reading
    499     // partitions, where the filename encodes the sha1s; no need to
    500     // check them twice.)
    501     if (LoadFileContents(filename, &file, RETOUCH_DO_MASK) != 0 ||
    502         (num_patches > 0 &&
    503          FindMatchingPatch(file.sha1, patch_sha1_str, num_patches) < 0)) {
    504         printf("file \"%s\" doesn't have any of expected "
    505                "sha1 sums; checking cache\n", filename);
    506 
    507         free(file.data);
    508         file.data = NULL;
    509 
    510         // If the source file is missing or corrupted, it might be because
    511         // we were killed in the middle of patching it.  A copy of it
    512         // should have been made in CACHE_TEMP_SOURCE.  If that file
    513         // exists and matches the sha1 we're looking for, the check still
    514         // passes.
    515 
    516         if (LoadFileContents(CACHE_TEMP_SOURCE, &file, RETOUCH_DO_MASK) != 0) {
    517             printf("failed to load cache file\n");
    518             return 1;
    519         }
    520 
    521         if (FindMatchingPatch(file.sha1, patch_sha1_str, num_patches) < 0) {
    522             printf("cache bits don't match any sha1 for \"%s\"\n", filename);
    523             free(file.data);
    524             return 1;
    525         }
    526     }
    527 
    528     free(file.data);
    529     return 0;
    530 }
    531 
    532 int ShowLicenses() {
    533     ShowBSDiffLicense();
    534     return 0;
    535 }
    536 
    537 ssize_t FileSink(unsigned char* data, ssize_t len, void* token) {
    538     int fd = *(int *)token;
    539     ssize_t done = 0;
    540     ssize_t wrote;
    541     while (done < (ssize_t) len) {
    542         wrote = write(fd, data+done, len-done);
    543         if (wrote <= 0) {
    544             printf("error writing %d bytes: %s\n", (int)(len-done), strerror(errno));
    545             return done;
    546         }
    547         done += wrote;
    548     }
    549     return done;
    550 }
    551 
    552 typedef struct {
    553     unsigned char* buffer;
    554     ssize_t size;
    555     ssize_t pos;
    556 } MemorySinkInfo;
    557 
    558 ssize_t MemorySink(unsigned char* data, ssize_t len, void* token) {
    559     MemorySinkInfo* msi = (MemorySinkInfo*)token;
    560     if (msi->size - msi->pos < len) {
    561         return -1;
    562     }
    563     memcpy(msi->buffer + msi->pos, data, len);
    564     msi->pos += len;
    565     return len;
    566 }
    567 
    568 // Return the amount of free space (in bytes) on the filesystem
    569 // containing filename.  filename must exist.  Return -1 on error.
    570 size_t FreeSpaceForFile(const char* filename) {
    571     struct statfs sf;
    572     if (statfs(filename, &sf) != 0) {
    573         printf("failed to statfs %s: %s\n", filename, strerror(errno));
    574         return -1;
    575     }
    576     return sf.f_bsize * sf.f_bfree;
    577 }
    578 
    579 int CacheSizeCheck(size_t bytes) {
    580     if (MakeFreeSpaceOnCache(bytes) < 0) {
    581         printf("unable to make %ld bytes available on /cache\n", (long)bytes);
    582         return 1;
    583     } else {
    584         return 0;
    585     }
    586 }
    587 
    588 
    589 // This function applies binary patches to files in a way that is safe
    590 // (the original file is not touched until we have the desired
    591 // replacement for it) and idempotent (it's okay to run this program
    592 // multiple times).
    593 //
    594 // - if the sha1 hash of <target_filename> is <target_sha1_string>,
    595 //   does nothing and exits successfully.
    596 //
    597 // - otherwise, if the sha1 hash of <source_filename> is one of the
    598 //   entries in <patch_sha1_str>, the corresponding patch from
    599 //   <patch_data> (which must be a VAL_BLOB) is applied to produce a
    600 //   new file (the type of patch is automatically detected from the
    601 //   blob daat).  If that new file has sha1 hash <target_sha1_str>,
    602 //   moves it to replace <target_filename>, and exits successfully.
    603 //   Note that if <source_filename> and <target_filename> are not the
    604 //   same, <source_filename> is NOT deleted on success.
    605 //   <target_filename> may be the string "-" to mean "the same as
    606 //   source_filename".
    607 //
    608 // - otherwise, or if any error is encountered, exits with non-zero
    609 //   status.
    610 //
    611 // <source_filename> may refer to a partition to read the source data.
    612 // See the comments for the LoadPartition Contents() function above
    613 // for the format of such a filename.
    614 
    615 int applypatch(const char* source_filename,
    616                const char* target_filename,
    617                const char* target_sha1_str,
    618                size_t target_size,
    619                int num_patches,
    620                char** const patch_sha1_str,
    621                Value** patch_data,
    622                Value* bonus_data) {
    623     printf("\napplying patch to %s\n", source_filename);
    624 
    625     if (target_filename[0] == '-' &&
    626         target_filename[1] == '\0') {
    627         target_filename = source_filename;
    628     }
    629 
    630     uint8_t target_sha1[SHA_DIGEST_SIZE];
    631     if (ParseSha1(target_sha1_str, target_sha1) != 0) {
    632         printf("failed to parse tgt-sha1 \"%s\"\n", target_sha1_str);
    633         return 1;
    634     }
    635 
    636     FileContents copy_file;
    637     FileContents source_file;
    638     copy_file.data = NULL;
    639     source_file.data = NULL;
    640     const Value* source_patch_value = NULL;
    641     const Value* copy_patch_value = NULL;
    642 
    643     // We try to load the target file into the source_file object.
    644     if (LoadFileContents(target_filename, &source_file,
    645                          RETOUCH_DO_MASK) == 0) {
    646         if (memcmp(source_file.sha1, target_sha1, SHA_DIGEST_SIZE) == 0) {
    647             // The early-exit case:  the patch was already applied, this file
    648             // has the desired hash, nothing for us to do.
    649             printf("\"%s\" is already target; no patch needed\n",
    650                    target_filename);
    651             free(source_file.data);
    652             return 0;
    653         }
    654     }
    655 
    656     if (source_file.data == NULL ||
    657         (target_filename != source_filename &&
    658          strcmp(target_filename, source_filename) != 0)) {
    659         // Need to load the source file:  either we failed to load the
    660         // target file, or we did but it's different from the source file.
    661         free(source_file.data);
    662         source_file.data = NULL;
    663         LoadFileContents(source_filename, &source_file,
    664                          RETOUCH_DO_MASK);
    665     }
    666 
    667     if (source_file.data != NULL) {
    668         int to_use = FindMatchingPatch(source_file.sha1,
    669                                        patch_sha1_str, num_patches);
    670         if (to_use >= 0) {
    671             source_patch_value = patch_data[to_use];
    672         }
    673     }
    674 
    675     if (source_patch_value == NULL) {
    676         free(source_file.data);
    677         source_file.data = NULL;
    678         printf("source file is bad; trying copy\n");
    679 
    680         if (LoadFileContents(CACHE_TEMP_SOURCE, &copy_file,
    681                              RETOUCH_DO_MASK) < 0) {
    682             // fail.
    683             printf("failed to read copy file\n");
    684             return 1;
    685         }
    686 
    687         int to_use = FindMatchingPatch(copy_file.sha1,
    688                                        patch_sha1_str, num_patches);
    689         if (to_use >= 0) {
    690             copy_patch_value = patch_data[to_use];
    691         }
    692 
    693         if (copy_patch_value == NULL) {
    694             // fail.
    695             printf("copy file doesn't match source SHA-1s either\n");
    696             free(copy_file.data);
    697             return 1;
    698         }
    699     }
    700 
    701     int result = GenerateTarget(&source_file, source_patch_value,
    702                                 &copy_file, copy_patch_value,
    703                                 source_filename, target_filename,
    704                                 target_sha1, target_size, bonus_data);
    705     free(source_file.data);
    706     free(copy_file.data);
    707 
    708     return result;
    709 }
    710 
    711 static int GenerateTarget(FileContents* source_file,
    712                           const Value* source_patch_value,
    713                           FileContents* copy_file,
    714                           const Value* copy_patch_value,
    715                           const char* source_filename,
    716                           const char* target_filename,
    717                           const uint8_t target_sha1[SHA_DIGEST_SIZE],
    718                           size_t target_size,
    719                           const Value* bonus_data) {
    720     int retry = 1;
    721     SHA_CTX ctx;
    722     int output;
    723     MemorySinkInfo msi;
    724     FileContents* source_to_use;
    725     char* outname;
    726     int made_copy = 0;
    727 
    728     // assume that target_filename (eg "/system/app/Foo.apk") is located
    729     // on the same filesystem as its top-level directory ("/system").
    730     // We need something that exists for calling statfs().
    731     char target_fs[strlen(target_filename)+1];
    732     char* slash = strchr(target_filename+1, '/');
    733     if (slash != NULL) {
    734         int count = slash - target_filename;
    735         strncpy(target_fs, target_filename, count);
    736         target_fs[count] = '\0';
    737     } else {
    738         strcpy(target_fs, target_filename);
    739     }
    740 
    741     do {
    742         // Is there enough room in the target filesystem to hold the patched
    743         // file?
    744 
    745         if (strncmp(target_filename, "MTD:", 4) == 0 ||
    746             strncmp(target_filename, "EMMC:", 5) == 0) {
    747             // If the target is a partition, we're actually going to
    748             // write the output to /tmp and then copy it to the
    749             // partition.  statfs() always returns 0 blocks free for
    750             // /tmp, so instead we'll just assume that /tmp has enough
    751             // space to hold the file.
    752 
    753             // We still write the original source to cache, in case
    754             // the partition write is interrupted.
    755             if (MakeFreeSpaceOnCache(source_file->size) < 0) {
    756                 printf("not enough free space on /cache\n");
    757                 return 1;
    758             }
    759             if (SaveFileContents(CACHE_TEMP_SOURCE, source_file) < 0) {
    760                 printf("failed to back up source file\n");
    761                 return 1;
    762             }
    763             made_copy = 1;
    764             retry = 0;
    765         } else {
    766             int enough_space = 0;
    767             if (retry > 0) {
    768                 size_t free_space = FreeSpaceForFile(target_fs);
    769                 enough_space =
    770                     (free_space > (256 << 10)) &&          // 256k (two-block) minimum
    771                     (free_space > (target_size * 3 / 2));  // 50% margin of error
    772                 printf("target %ld bytes; free space %ld bytes; retry %d; enough %d\n",
    773                        (long)target_size, (long)free_space, retry, enough_space);
    774             }
    775 
    776             if (!enough_space) {
    777                 retry = 0;
    778             }
    779 
    780             if (!enough_space && source_patch_value != NULL) {
    781                 // Using the original source, but not enough free space.  First
    782                 // copy the source file to cache, then delete it from the original
    783                 // location.
    784 
    785                 if (strncmp(source_filename, "MTD:", 4) == 0 ||
    786                     strncmp(source_filename, "EMMC:", 5) == 0) {
    787                     // It's impossible to free space on the target filesystem by
    788                     // deleting the source if the source is a partition.  If
    789                     // we're ever in a state where we need to do this, fail.
    790                     printf("not enough free space for target but source "
    791                            "is partition\n");
    792                     return 1;
    793                 }
    794 
    795                 if (MakeFreeSpaceOnCache(source_file->size) < 0) {
    796                     printf("not enough free space on /cache\n");
    797                     return 1;
    798                 }
    799 
    800                 if (SaveFileContents(CACHE_TEMP_SOURCE, source_file) < 0) {
    801                     printf("failed to back up source file\n");
    802                     return 1;
    803                 }
    804                 made_copy = 1;
    805                 unlink(source_filename);
    806 
    807                 size_t free_space = FreeSpaceForFile(target_fs);
    808                 printf("(now %ld bytes free for target)\n", (long)free_space);
    809             }
    810         }
    811 
    812         const Value* patch;
    813         if (source_patch_value != NULL) {
    814             source_to_use = source_file;
    815             patch = source_patch_value;
    816         } else {
    817             source_to_use = copy_file;
    818             patch = copy_patch_value;
    819         }
    820 
    821         if (patch->type != VAL_BLOB) {
    822             printf("patch is not a blob\n");
    823             return 1;
    824         }
    825 
    826         SinkFn sink = NULL;
    827         void* token = NULL;
    828         output = -1;
    829         outname = NULL;
    830         if (strncmp(target_filename, "MTD:", 4) == 0 ||
    831             strncmp(target_filename, "EMMC:", 5) == 0) {
    832             // We store the decoded output in memory.
    833             msi.buffer = malloc(target_size);
    834             if (msi.buffer == NULL) {
    835                 printf("failed to alloc %ld bytes for output\n",
    836                        (long)target_size);
    837                 return 1;
    838             }
    839             msi.pos = 0;
    840             msi.size = target_size;
    841             sink = MemorySink;
    842             token = &msi;
    843         } else {
    844             // We write the decoded output to "<tgt-file>.patch".
    845             outname = (char*)malloc(strlen(target_filename) + 10);
    846             strcpy(outname, target_filename);
    847             strcat(outname, ".patch");
    848 
    849             output = open(outname, O_WRONLY | O_CREAT | O_TRUNC, S_IRUSR | S_IWUSR);
    850             if (output < 0) {
    851                 printf("failed to open output file %s: %s\n",
    852                        outname, strerror(errno));
    853                 return 1;
    854             }
    855             sink = FileSink;
    856             token = &output;
    857         }
    858 
    859         char* header = patch->data;
    860         ssize_t header_bytes_read = patch->size;
    861 
    862         SHA_init(&ctx);
    863 
    864         int result;
    865 
    866         if (header_bytes_read >= 8 &&
    867             memcmp(header, "BSDIFF40", 8) == 0) {
    868             result = ApplyBSDiffPatch(source_to_use->data, source_to_use->size,
    869                                       patch, 0, sink, token, &ctx);
    870         } else if (header_bytes_read >= 8 &&
    871                    memcmp(header, "IMGDIFF2", 8) == 0) {
    872             result = ApplyImagePatch(source_to_use->data, source_to_use->size,
    873                                      patch, sink, token, &ctx, bonus_data);
    874         } else {
    875             printf("Unknown patch file format\n");
    876             return 1;
    877         }
    878 
    879         if (output >= 0) {
    880             fsync(output);
    881             close(output);
    882         }
    883 
    884         if (result != 0) {
    885             if (retry == 0) {
    886                 printf("applying patch failed\n");
    887                 return result != 0;
    888             } else {
    889                 printf("applying patch failed; retrying\n");
    890             }
    891             if (outname != NULL) {
    892                 unlink(outname);
    893             }
    894         } else {
    895             // succeeded; no need to retry
    896             break;
    897         }
    898     } while (retry-- > 0);
    899 
    900     const uint8_t* current_target_sha1 = SHA_final(&ctx);
    901     if (memcmp(current_target_sha1, target_sha1, SHA_DIGEST_SIZE) != 0) {
    902         printf("patch did not produce expected sha1\n");
    903         return 1;
    904     }
    905 
    906     if (output < 0) {
    907         // Copy the temp file to the partition.
    908         if (WriteToPartition(msi.buffer, msi.pos, target_filename) != 0) {
    909             printf("write of patched data to %s failed\n", target_filename);
    910             return 1;
    911         }
    912         free(msi.buffer);
    913     } else {
    914         // Give the .patch file the same owner, group, and mode of the
    915         // original source file.
    916         if (chmod(outname, source_to_use->st.st_mode) != 0) {
    917             printf("chmod of \"%s\" failed: %s\n", outname, strerror(errno));
    918             return 1;
    919         }
    920         if (chown(outname, source_to_use->st.st_uid,
    921                   source_to_use->st.st_gid) != 0) {
    922             printf("chown of \"%s\" failed: %s\n", outname, strerror(errno));
    923             return 1;
    924         }
    925 
    926         // Finally, rename the .patch file to replace the target file.
    927         if (rename(outname, target_filename) != 0) {
    928             printf("rename of .patch to \"%s\" failed: %s\n",
    929                    target_filename, strerror(errno));
    930             return 1;
    931         }
    932     }
    933 
    934     // If this run of applypatch created the copy, and we're here, we
    935     // can delete it.
    936     if (made_copy) unlink(CACHE_TEMP_SOURCE);
    937 
    938     // Success!
    939     return 0;
    940 }
    941