remove code for original block OTA mechanism
Superseded by newer code. Bug: 16984795 Change-Id: I842299f6a02af7ccf51ef2ca174d813ca53deef1
This commit is contained in:
@@ -36,8 +36,6 @@ LOCAL_STATIC_LIBRARIES += libcutils liblog libstdc++ libc
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LOCAL_STATIC_LIBRARIES += libselinux
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LOCAL_C_INCLUDES += $(LOCAL_PATH)/..
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LOCAL_STATIC_LIBRARIES += libsyspatch libxz libxdelta3
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# Each library in TARGET_RECOVERY_UPDATER_LIBS should have a function
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# named "Register_<libname>()". Here we emit a little C function that
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# gets #included by updater.c. It calls all those registration
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@@ -45,7 +45,6 @@
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#include "mtdutils/mounts.h"
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#include "mtdutils/mtdutils.h"
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#include "updater.h"
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#include "syspatch.h"
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#include "install.h"
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#ifdef USE_EXT4
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@@ -464,68 +463,6 @@ Value* PackageExtractDirFn(const char* name, State* state,
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}
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DontCareMap* ReadDontCareMapFromZip(ZipArchive* za, const char* path) {
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const char* name = "ReadDontCareMapFromZip";
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const ZipEntry* entry = mzFindZipEntry(za, path);
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if (entry == NULL) {
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printf("%s: no %s in package\n", name, path);
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return NULL;
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}
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size_t map_size = mzGetZipEntryUncompLen(entry);
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char* map_data = malloc(map_size);
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if (map_data == NULL) {
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printf("%s: failed to allocate %zu bytes for %s\n",
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name, map_size, path);
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return NULL;
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}
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if (!mzExtractZipEntryToBuffer(za, entry, (unsigned char*) map_data)) {
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printf("%s: failed to read %s\n", name, path);
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return NULL;
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}
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char* p = map_data;
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DontCareMap* map = (DontCareMap*) malloc(sizeof(DontCareMap));
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map->block_size = strtoul(p, &p, 0);
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if (map->block_size != 4096) {
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printf("%s: unexpected block size %zu\n", name, map->block_size);
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return NULL;
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}
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map->region_count = strtoul(p, &p, 0);
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map->regions = (int*) malloc(map->region_count * sizeof(int));
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map->total_blocks = 0;
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int i;
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for (i = 0; i < map->region_count; ++i) {
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map->regions[i] = strtoul(p, &p, 0);
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map->total_blocks += map->regions[i];
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}
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return map;
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}
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static FILE* mapwrite_cmd_pipe;
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static void progress_cb(long done, long total) {
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if (total > 0) {
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double frac = (double)done / total;
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fprintf(mapwrite_cmd_pipe, "set_progress %f\n", frac);
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fflush(mapwrite_cmd_pipe);
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}
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}
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bool MapWriter(const unsigned char* data, int dataLen, void* cookie) {
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return write_with_map(data, dataLen, (MapState*) cookie, progress_cb) == dataLen;
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}
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// package_extract_file(package_path, destination_path, map_path)
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// or
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// package_extract_file(package_path, destination_path)
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// or
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// package_extract_file(package_path)
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@@ -533,33 +470,22 @@ bool MapWriter(const unsigned char* data, int dataLen, void* cookie) {
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// function (the char* returned is actually a FileContents*).
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Value* PackageExtractFileFn(const char* name, State* state,
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int argc, Expr* argv[]) {
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if (argc < 1 || argc > 3) {
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return ErrorAbort(state, "%s() expects 1 or 2 or 3 args, got %d",
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if (argc < 1 || argc > 2) {
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return ErrorAbort(state, "%s() expects 1 or 2 args, got %d",
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name, argc);
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}
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bool success = false;
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UpdaterInfo* ui = (UpdaterInfo*)(state->cookie);
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mapwrite_cmd_pipe = ui->cmd_pipe;
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if (argc >= 2) {
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// The two-argument version extracts to a file; the three-arg
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// version extracts to a file, skipping over regions in a
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// don't care map.
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if (argc == 2) {
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// The two-argument version extracts to a file.
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ZipArchive* za = ((UpdaterInfo*)(state->cookie))->package_zip;
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char* zip_path;
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char* dest_path;
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char* map_path = NULL;
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DontCareMap* map = NULL;
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if (argc == 2) {
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if (ReadArgs(state, argv, 2, &zip_path, &dest_path) < 0) return NULL;
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} else {
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if (ReadArgs(state, argv, 3, &zip_path, &dest_path, &map_path) < 0) return NULL;
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map = ReadDontCareMapFromZip(za, map_path);
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if (map == NULL) goto done2;
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}
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if (ReadArgs(state, argv, 2, &zip_path, &dest_path) < 0) return NULL;
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const ZipEntry* entry = mzFindZipEntry(za, zip_path);
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if (entry == NULL) {
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@@ -573,26 +499,12 @@ Value* PackageExtractFileFn(const char* name, State* state,
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name, dest_path, strerror(errno));
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goto done2;
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}
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if (map) {
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MapState state;
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state.map = map;
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state.cr = 0;
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state.so_far = 0;
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state.f = f;
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success = mzProcessZipEntryContents(za, entry, MapWriter, &state);
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} else {
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success = mzExtractZipEntryToFile(za, entry, fileno(f));
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}
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success = mzExtractZipEntryToFile(za, entry, fileno(f));
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fclose(f);
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done2:
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free(zip_path);
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free(dest_path);
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free(map_path);
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if (map) {
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free(map->regions);
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free(map);
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}
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return StringValue(strdup(success ? "t" : ""));
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} else {
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// The one-argument version returns the contents of the file
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@@ -1192,118 +1104,6 @@ Value* ApplyPatchSpaceFn(const char* name, State* state,
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return StringValue(strdup(CacheSizeCheck(bytes) ? "" : "t"));
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}
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bool CheckMappedFileSha1(FILE* f, DontCareMap* map, uint8_t* intended_digest) {
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MapState state;
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state.f = f;
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state.so_far = 0;
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state.cr = 0;
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state.map = map;
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SHA_CTX ctx;
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SHA_init(&ctx);
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unsigned char buffer[32173];
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size_t bytes_read;
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while ((bytes_read = read_with_map(buffer, sizeof(buffer), &state)) > 0) {
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SHA_update(&ctx, buffer, bytes_read);
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}
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const uint8_t* digest = SHA_final(&ctx);
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return memcmp(digest, intended_digest, SHA_DIGEST_SIZE) == 0;
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}
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// syspatch(file, tgt_mapfile, tgt_sha1, init_mapfile, init_sha1, patch)
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Value* SysPatchFn(const char* name, State* state, int argc, Expr* argv[]) {
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if (argc != 6) {
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return ErrorAbort(state, "%s(): expected 6 args, got %d", name, argc);
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}
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char* filename;
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char* target_mapfilename;
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char* target_sha1;
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char* init_mapfilename;
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char* init_sha1;
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char* patch_filename;
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uint8_t target_digest[SHA_DIGEST_SIZE];
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uint8_t init_digest[SHA_DIGEST_SIZE];
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if (ReadArgs(state, argv, 6, &filename,
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&target_mapfilename, &target_sha1,
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&init_mapfilename, &init_sha1, &patch_filename) < 0) {
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return NULL;
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}
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UpdaterInfo* ui = (UpdaterInfo*)(state->cookie);
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mapwrite_cmd_pipe = ui->cmd_pipe;
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if (ParseSha1(target_sha1, target_digest) != 0) {
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printf("%s(): failed to parse '%s' as target SHA-1", name, target_sha1);
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memset(target_digest, 0, SHA_DIGEST_SIZE);
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}
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if (ParseSha1(init_sha1, init_digest) != 0) {
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printf("%s(): failed to parse '%s' as init SHA-1", name, init_sha1);
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memset(init_digest, 0, SHA_DIGEST_SIZE);
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}
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ZipArchive* za = ((UpdaterInfo*)(state->cookie))->package_zip;
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FILE* src = fopen(filename, "r");
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DontCareMap* init_map = ReadDontCareMapFromZip(za, init_mapfilename);
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if (init_map == NULL) return ErrorAbort(state, "%s(): failed to read init map\n", name);
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DontCareMap* target_map = ReadDontCareMapFromZip(za, target_mapfilename);
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if (target_map == NULL) return ErrorAbort(state, "%s(): failed to read target map\n", name);
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if (CheckMappedFileSha1(src, init_map, init_digest)) {
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// If the partition contents match the init_digest, then we need to apply the patch.
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rewind(src);
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const ZipEntry* entry = mzFindZipEntry(za, patch_filename);
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if (entry == NULL) {
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return ErrorAbort(state, "%s(): no %s in package\n", name, patch_filename);
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}
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unsigned char* patch_data;
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size_t patch_len;
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if (!mzGetStoredEntry(za, entry, &patch_data, &patch_len)) {
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return ErrorAbort(state, "%s(): failed to get %s entry\n", name, patch_filename);
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}
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FILE* tgt = fopen(filename, "r+");
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int ret = syspatch(src, init_map, patch_data, patch_len, tgt, target_map, progress_cb);
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fclose(src);
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fclose(tgt);
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if (ret != 0) {
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return ErrorAbort(state, "%s(): patching failed\n", name);
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}
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} else {
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rewind(src);
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if (CheckMappedFileSha1(src, target_map, target_digest)) {
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// If the partition contents match the target already, we
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// don't need to do anything.
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printf("%s: output is already target\n", name);
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} else {
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return ErrorAbort(state, "%s(): %s in unknown state\n", name, filename);
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}
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}
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done:
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free(target_sha1);
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free(target_mapfilename);
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free(init_sha1);
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free(init_mapfilename);
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free(patch_filename);
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return StringValue(filename);
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}
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// apply_patch(file, size, init_sha1, tgt_sha1, patch)
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Value* ApplyPatchFn(const char* name, State* state, int argc, Expr* argv[]) {
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@@ -1738,7 +1538,6 @@ void RegisterInstallFunctions() {
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RegisterFunction("apply_patch_space", ApplyPatchSpaceFn);
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RegisterFunction("wipe_block_device", WipeBlockDeviceFn);
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RegisterFunction("syspatch", SysPatchFn);
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RegisterFunction("read_file", ReadFileFn);
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RegisterFunction("sha1_check", Sha1CheckFn);
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