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19
thirdparty/assimp/contrib/zip/test/CMakeLists.txt
vendored
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19
thirdparty/assimp/contrib/zip/test/CMakeLists.txt
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@@ -0,0 +1,19 @@
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cmake_minimum_required(VERSION 2.8)
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if ("${CMAKE_C_COMPILER_ID}" STREQUAL "GNU" OR "${CMAKE_C_COMPILER_ID}" STREQUAL "Clang" OR "${CMAKE_C_COMPILER_ID}" STREQUAL "AppleClang")
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if(ENABLE_COVERAGE)
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set(CMAKE_C_FLAGS "${CMAKE_C_FLAGS} -g ")
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set(CMAKE_C_FLAGS "${CMAKE_C_FLAGS} -O0")
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set(CMAKE_C_FLAGS "${CMAKE_C_FLAGS} -fprofile-arcs")
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set(CMAKE_C_FLAGS "${CMAKE_C_FLAGS} -ftest-coverage")
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set(CMAKE_EXE_LINKER_FLAGS "${CMAKE_EXE_LINKER_FLAGS} --coverage")
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endif()
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endif ()
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# test
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include_directories(../src)
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add_executable(test.exe test.c ../src/zip.c)
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add_executable(test_miniz.exe test_miniz.c)
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add_test(NAME test COMMAND test.exe)
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add_test(NAME test_miniz COMMAND test_miniz.exe)
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459
thirdparty/assimp/contrib/zip/test/test.c
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459
thirdparty/assimp/contrib/zip/test/test.c
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@@ -0,0 +1,459 @@
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#include <zip.h>
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#include <assert.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <sys/stat.h>
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#if defined(_MSC_VER) || defined(__MINGW64__) || defined(__MINGW32__)
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#define MZ_FILE_STAT_STRUCT _stat
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#define MZ_FILE_STAT _stat
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#else
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#define MZ_FILE_STAT_STRUCT stat
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#define MZ_FILE_STAT stat
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#endif
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#define ZIPNAME "test.zip\0"
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#define TESTDATA1 "Some test data 1...\0"
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#define CRC32DATA1 2220805626
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#define TESTDATA2 "Some test data 2...\0"
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#define CRC32DATA2 2532008468
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#define RFILE "4.txt\0"
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#define RMODE 0100444
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#define WFILE "6.txt\0"
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#define WMODE 0100666
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#define XFILE "7.txt\0"
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#define XMODE 0100777
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#define UNUSED(x) (void)x
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static int total_entries = 0;
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static void test_write(void) {
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struct zip_t *zip = zip_open(ZIPNAME, ZIP_DEFAULT_COMPRESSION_LEVEL, 'w');
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assert(zip != NULL);
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assert(0 == zip_entry_open(zip, "test/test-1.txt"));
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assert(0 == zip_entry_write(zip, TESTDATA1, strlen(TESTDATA1)));
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assert(0 == strcmp(zip_entry_name(zip), "test/test-1.txt"));
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assert(total_entries == zip_entry_index(zip));
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assert(strlen(TESTDATA1) == zip_entry_size(zip));
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assert(CRC32DATA1 == zip_entry_crc32(zip));
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++total_entries;
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assert(0 == zip_entry_close(zip));
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zip_close(zip);
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}
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static void test_append(void) {
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struct zip_t *zip = zip_open(ZIPNAME, ZIP_DEFAULT_COMPRESSION_LEVEL, 'a');
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assert(zip != NULL);
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assert(0 == zip_entry_open(zip, "test\\test-2.txt"));
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assert(0 == strcmp(zip_entry_name(zip), "test/test-2.txt"));
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assert(total_entries == zip_entry_index(zip));
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assert(0 == zip_entry_write(zip, TESTDATA2, strlen(TESTDATA2)));
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assert(strlen(TESTDATA2) == zip_entry_size(zip));
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assert(CRC32DATA2 == zip_entry_crc32(zip));
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++total_entries;
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assert(0 == zip_entry_close(zip));
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assert(0 == zip_entry_open(zip, "test\\empty/"));
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assert(0 == strcmp(zip_entry_name(zip), "test/empty/"));
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assert(0 == zip_entry_size(zip));
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assert(0 == zip_entry_crc32(zip));
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assert(total_entries == zip_entry_index(zip));
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++total_entries;
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assert(0 == zip_entry_close(zip));
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assert(0 == zip_entry_open(zip, "empty/"));
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assert(0 == strcmp(zip_entry_name(zip), "empty/"));
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assert(0 == zip_entry_size(zip));
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assert(0 == zip_entry_crc32(zip));
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assert(total_entries == zip_entry_index(zip));
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++total_entries;
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assert(0 == zip_entry_close(zip));
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zip_close(zip);
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}
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static void test_read(void) {
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char *buf = NULL;
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ssize_t bufsize;
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size_t buftmp;
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struct zip_t *zip = zip_open(ZIPNAME, 0, 'r');
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assert(zip != NULL);
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assert(0 == zip_entry_open(zip, "test\\test-1.txt"));
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assert(strlen(TESTDATA1) == zip_entry_size(zip));
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assert(CRC32DATA1 == zip_entry_crc32(zip));
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bufsize = zip_entry_read(zip, (void **)&buf, &buftmp);
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assert(bufsize == strlen(TESTDATA1));
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assert((size_t)bufsize == buftmp);
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assert(0 == strncmp(buf, TESTDATA1, bufsize));
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assert(0 == zip_entry_close(zip));
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free(buf);
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buf = NULL;
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assert(0 == zip_entry_open(zip, "test/test-2.txt"));
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assert(strlen(TESTDATA2) == zip_entry_size(zip));
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assert(CRC32DATA2 == zip_entry_crc32(zip));
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bufsize = zip_entry_read(zip, (void **)&buf, NULL);
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assert((size_t)bufsize == strlen(TESTDATA2));
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assert(0 == strncmp(buf, TESTDATA2, (size_t)bufsize));
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assert(0 == zip_entry_close(zip));
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free(buf);
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buf = NULL;
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bufsize = 0;
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assert(0 == zip_entry_open(zip, "test\\empty/"));
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assert(0 == strcmp(zip_entry_name(zip), "test/empty/"));
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assert(0 == zip_entry_size(zip));
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assert(0 == zip_entry_crc32(zip));
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assert(0 == zip_entry_close(zip));
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buftmp = strlen(TESTDATA2);
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buf = calloc(buftmp, sizeof(char));
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assert(0 == zip_entry_open(zip, "test/test-2.txt"));
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bufsize = zip_entry_noallocread(zip, (void *)buf, buftmp);
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assert(buftmp == (size_t)bufsize);
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assert(0 == strncmp(buf, TESTDATA2, buftmp));
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assert(0 == zip_entry_close(zip));
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free(buf);
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buf = NULL;
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buftmp = strlen(TESTDATA1);
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buf = calloc(buftmp, sizeof(char));
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assert(0 == zip_entry_open(zip, "test/test-1.txt"));
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bufsize = zip_entry_noallocread(zip, (void *)buf, buftmp);
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assert(buftmp == (size_t)bufsize);
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assert(0 == strncmp(buf, TESTDATA1, buftmp));
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assert(0 == zip_entry_close(zip));
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free(buf);
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buf = NULL;
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bufsize = 0;
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zip_close(zip);
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}
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struct buffer_t {
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char *data;
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size_t size;
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};
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static size_t on_extract(void *arg, unsigned long long offset, const void *data,
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size_t size) {
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UNUSED(offset);
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struct buffer_t *buf = (struct buffer_t *)arg;
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buf->data = realloc(buf->data, buf->size + size + 1);
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assert(NULL != buf->data);
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memcpy(&(buf->data[buf->size]), data, size);
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buf->size += size;
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buf->data[buf->size] = 0;
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return size;
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}
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static void test_extract(void) {
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struct buffer_t buf;
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struct zip_t *zip = zip_open(ZIPNAME, 0, 'r');
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assert(zip != NULL);
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memset((void *)&buf, 0, sizeof(struct buffer_t));
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assert(0 == zip_entry_open(zip, "test/test-1.txt"));
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assert(0 == zip_entry_extract(zip, on_extract, &buf));
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assert(buf.size == strlen(TESTDATA1));
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assert(0 == strncmp(buf.data, TESTDATA1, buf.size));
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assert(0 == zip_entry_close(zip));
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free(buf.data);
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buf.data = NULL;
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buf.size = 0;
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zip_close(zip);
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}
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static void test_total_entries(void) {
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struct zip_t *zip = zip_open(ZIPNAME, 0, 'r');
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assert(zip != NULL);
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int n = zip_total_entries(zip);
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zip_close(zip);
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assert(n == total_entries);
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}
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static void test_entry_name(void) {
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struct zip_t *zip = zip_open(ZIPNAME, 0, 'r');
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assert(zip != NULL);
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assert(zip_entry_name(zip) == NULL);
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assert(0 == zip_entry_open(zip, "test\\test-1.txt"));
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assert(NULL != zip_entry_name(zip));
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assert(0 == strcmp(zip_entry_name(zip), "test/test-1.txt"));
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assert(strlen(TESTDATA1) == zip_entry_size(zip));
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assert(CRC32DATA1 == zip_entry_crc32(zip));
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assert(0 == zip_entry_index(zip));
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assert(0 == zip_entry_close(zip));
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assert(0 == zip_entry_open(zip, "test/test-2.txt"));
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assert(NULL != zip_entry_name(zip));
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assert(0 == strcmp(zip_entry_name(zip), "test/test-2.txt"));
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assert(strlen(TESTDATA2) == zip_entry_size(zip));
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assert(CRC32DATA2 == zip_entry_crc32(zip));
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assert(1 == zip_entry_index(zip));
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assert(0 == zip_entry_close(zip));
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zip_close(zip);
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}
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static void test_entry_index(void) {
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struct zip_t *zip = zip_open(ZIPNAME, 0, 'r');
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assert(zip != NULL);
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assert(0 == zip_entry_open(zip, "test\\test-1.txt"));
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assert(0 == zip_entry_index(zip));
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assert(0 == strcmp(zip_entry_name(zip), "test/test-1.txt"));
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assert(strlen(TESTDATA1) == zip_entry_size(zip));
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assert(CRC32DATA1 == zip_entry_crc32(zip));
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assert(0 == zip_entry_close(zip));
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assert(0 == zip_entry_open(zip, "test/test-2.txt"));
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assert(1 == zip_entry_index(zip));
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assert(0 == strcmp(zip_entry_name(zip), "test/test-2.txt"));
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assert(strlen(TESTDATA2) == zip_entry_size(zip));
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assert(CRC32DATA2 == zip_entry_crc32(zip));
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assert(0 == zip_entry_close(zip));
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zip_close(zip);
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}
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static void test_entry_openbyindex(void) {
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struct zip_t *zip = zip_open(ZIPNAME, 0, 'r');
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assert(zip != NULL);
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assert(0 == zip_entry_openbyindex(zip, 1));
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assert(1 == zip_entry_index(zip));
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assert(strlen(TESTDATA2) == zip_entry_size(zip));
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assert(CRC32DATA2 == zip_entry_crc32(zip));
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assert(0 == strcmp(zip_entry_name(zip), "test/test-2.txt"));
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assert(0 == zip_entry_close(zip));
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assert(0 == zip_entry_openbyindex(zip, 0));
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assert(0 == zip_entry_index(zip));
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assert(strlen(TESTDATA1) == zip_entry_size(zip));
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assert(CRC32DATA1 == zip_entry_crc32(zip));
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assert(0 == strcmp(zip_entry_name(zip), "test/test-1.txt"));
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assert(0 == zip_entry_close(zip));
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zip_close(zip);
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}
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static void test_list_entries(void) {
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struct zip_t *zip = zip_open(ZIPNAME, 0, 'r');
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assert(zip != NULL);
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int i = 0, n = zip_total_entries(zip);
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for (; i < n; ++i) {
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assert(0 == zip_entry_openbyindex(zip, i));
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fprintf(stdout, "[%d]: %s", i, zip_entry_name(zip));
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if (zip_entry_isdir(zip)) {
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fprintf(stdout, " (DIR)");
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}
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fprintf(stdout, "\n");
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assert(0 == zip_entry_close(zip));
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}
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zip_close(zip);
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}
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static void test_fwrite(void) {
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const char *filename = WFILE;
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FILE *stream = NULL;
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struct zip_t *zip = NULL;
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#if defined(_MSC_VER)
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if (0 != fopen_s(&stream, filename, "w+"))
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#else
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if (!(stream = fopen(filename, "w+")))
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#endif
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{
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// Cannot open filename
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fprintf(stdout, "Cannot open filename\n");
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assert(0 == -1);
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}
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fwrite(TESTDATA1, sizeof(char), strlen(TESTDATA1), stream);
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assert(0 == fclose(stream));
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zip = zip_open(ZIPNAME, 9, 'w');
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assert(zip != NULL);
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assert(0 == zip_entry_open(zip, WFILE));
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assert(0 == zip_entry_fwrite(zip, WFILE));
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assert(0 == zip_entry_close(zip));
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zip_close(zip);
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||||
remove(WFILE);
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remove(ZIPNAME);
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}
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||||
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||||
static void test_exe_permissions(void) {
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#if defined(_WIN32) || defined(__WIN32__)
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||||
#else
|
||||
struct MZ_FILE_STAT_STRUCT file_stats;
|
||||
const char *filenames[] = {XFILE};
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FILE *f = fopen(XFILE, "w");
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fclose(f);
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chmod(XFILE, XMODE);
|
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|
||||
remove(ZIPNAME);
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||||
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||||
assert(0 == zip_create(ZIPNAME, filenames, 1));
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||||
|
||||
remove(XFILE);
|
||||
|
||||
assert(0 == zip_extract(ZIPNAME, ".", NULL, NULL));
|
||||
|
||||
assert(0 == MZ_FILE_STAT(XFILE, &file_stats));
|
||||
assert(XMODE == file_stats.st_mode);
|
||||
|
||||
remove(XFILE);
|
||||
remove(ZIPNAME);
|
||||
#endif
|
||||
}
|
||||
|
||||
static void test_read_permissions(void) {
|
||||
#if defined(_MSC_VER)
|
||||
#else
|
||||
|
||||
struct MZ_FILE_STAT_STRUCT file_stats;
|
||||
const char *filenames[] = {RFILE};
|
||||
FILE *f = fopen(RFILE, "w");
|
||||
fclose(f);
|
||||
chmod(RFILE, RMODE);
|
||||
|
||||
remove(ZIPNAME);
|
||||
|
||||
assert(0 == zip_create(ZIPNAME, filenames, 1));
|
||||
|
||||
// chmod from 444 to 666 to be able delete the file on windows
|
||||
chmod(RFILE, WMODE);
|
||||
remove(RFILE);
|
||||
|
||||
assert(0 == zip_extract(ZIPNAME, ".", NULL, NULL));
|
||||
|
||||
assert(0 == MZ_FILE_STAT(RFILE, &file_stats));
|
||||
assert(RMODE == file_stats.st_mode);
|
||||
|
||||
chmod(RFILE, WMODE);
|
||||
remove(RFILE);
|
||||
remove(ZIPNAME);
|
||||
#endif
|
||||
}
|
||||
|
||||
static void test_write_permissions(void) {
|
||||
#if defined(_MSC_VER)
|
||||
#else
|
||||
|
||||
struct MZ_FILE_STAT_STRUCT file_stats;
|
||||
const char *filenames[] = {WFILE};
|
||||
FILE *f = fopen(WFILE, "w");
|
||||
fclose(f);
|
||||
chmod(WFILE, WMODE);
|
||||
|
||||
remove(ZIPNAME);
|
||||
|
||||
assert(0 == zip_create(ZIPNAME, filenames, 1));
|
||||
|
||||
remove(WFILE);
|
||||
|
||||
assert(0 == zip_extract(ZIPNAME, ".", NULL, NULL));
|
||||
|
||||
assert(0 == MZ_FILE_STAT(WFILE, &file_stats));
|
||||
assert(WMODE == file_stats.st_mode);
|
||||
|
||||
remove(WFILE);
|
||||
remove(ZIPNAME);
|
||||
#endif
|
||||
}
|
||||
|
||||
static void test_mtime(void) {
|
||||
struct MZ_FILE_STAT_STRUCT file_stat1, file_stat2;
|
||||
|
||||
const char *filename = WFILE;
|
||||
FILE *stream = NULL;
|
||||
struct zip_t *zip = NULL;
|
||||
#if defined(_MSC_VER)
|
||||
if (0 != fopen_s(&stream, filename, "w+"))
|
||||
#else
|
||||
if (!(stream = fopen(filename, "w+")))
|
||||
#endif
|
||||
{
|
||||
// Cannot open filename
|
||||
fprintf(stdout, "Cannot open filename\n");
|
||||
assert(0 == -1);
|
||||
}
|
||||
fwrite(TESTDATA1, sizeof(char), strlen(TESTDATA1), stream);
|
||||
assert(0 == fclose(stream));
|
||||
|
||||
memset(&file_stat1, 0, sizeof(file_stat1));
|
||||
memset(&file_stat2, 0, sizeof(file_stat2));
|
||||
zip = zip_open(ZIPNAME, ZIP_DEFAULT_COMPRESSION_LEVEL, 'w');
|
||||
assert(zip != NULL);
|
||||
assert(0 == zip_entry_open(zip, filename));
|
||||
assert(0 == zip_entry_fwrite(zip, filename));
|
||||
assert(0 == zip_entry_close(zip));
|
||||
zip_close(zip);
|
||||
|
||||
assert(0 == MZ_FILE_STAT(filename, &file_stat1));
|
||||
|
||||
remove(filename);
|
||||
assert(0 == zip_extract(ZIPNAME, ".", NULL, NULL));
|
||||
assert(0 == MZ_FILE_STAT(filename, &file_stat2));
|
||||
fprintf(stdout, "file_stat1.st_mtime: %lu\n", file_stat1.st_mtime);
|
||||
fprintf(stdout, "file_stat2.st_mtime: %lu\n", file_stat2.st_mtime);
|
||||
assert(labs(file_stat1.st_mtime - file_stat2.st_mtime) <= 1);
|
||||
|
||||
remove(filename);
|
||||
remove(ZIPNAME);
|
||||
}
|
||||
|
||||
int main(int argc, char *argv[]) {
|
||||
UNUSED(argc);
|
||||
UNUSED(argv);
|
||||
|
||||
remove(ZIPNAME);
|
||||
|
||||
test_write();
|
||||
test_append();
|
||||
test_read();
|
||||
test_extract();
|
||||
test_total_entries();
|
||||
test_entry_name();
|
||||
test_entry_index();
|
||||
test_entry_openbyindex();
|
||||
test_list_entries();
|
||||
test_fwrite();
|
||||
test_read_permissions();
|
||||
test_write_permissions();
|
||||
test_exe_permissions();
|
||||
test_mtime();
|
||||
|
||||
remove(ZIPNAME);
|
||||
return 0;
|
||||
}
|
||||
104
thirdparty/assimp/contrib/zip/test/test_miniz.c
vendored
Normal file
104
thirdparty/assimp/contrib/zip/test/test_miniz.c
vendored
Normal file
@@ -0,0 +1,104 @@
|
||||
// Demonstrates miniz.c's compress() and uncompress() functions
|
||||
// (same as zlib's). Public domain, May 15 2011, Rich Geldreich,
|
||||
// richgel99@gmail.com. See "unlicense" statement at the end of tinfl.c.
|
||||
|
||||
#include <miniz.h>
|
||||
#include <stdio.h>
|
||||
|
||||
typedef unsigned char uint8;
|
||||
typedef unsigned short uint16;
|
||||
typedef unsigned int uint;
|
||||
|
||||
// The string to compress.
|
||||
static const char *s_pStr =
|
||||
"Good morning Dr. Chandra. This is Hal. I am ready for my first lesson."
|
||||
"Good morning Dr. Chandra. This is Hal. I am ready for my first lesson."
|
||||
"Good morning Dr. Chandra. This is Hal. I am ready for my first lesson."
|
||||
"Good morning Dr. Chandra. This is Hal. I am ready for my first lesson."
|
||||
"Good morning Dr. Chandra. This is Hal. I am ready for my first lesson."
|
||||
"Good morning Dr. Chandra. This is Hal. I am ready for my first lesson."
|
||||
"Good morning Dr. Chandra. This is Hal. I am ready for my first lesson.";
|
||||
|
||||
int main(int argc, char *argv[]) {
|
||||
uint step = 0;
|
||||
int cmp_status;
|
||||
uLong src_len = (uLong)strlen(s_pStr);
|
||||
uLong cmp_len = compressBound(src_len);
|
||||
uLong uncomp_len = src_len;
|
||||
uint8 *pCmp, *pUncomp;
|
||||
uint total_succeeded = 0;
|
||||
(void)argc, (void)argv;
|
||||
|
||||
printf("miniz.c version: %s\n", MZ_VERSION);
|
||||
|
||||
do {
|
||||
// Allocate buffers to hold compressed and uncompressed data.
|
||||
pCmp = (mz_uint8 *)malloc((size_t)cmp_len);
|
||||
pUncomp = (mz_uint8 *)malloc((size_t)src_len);
|
||||
if ((!pCmp) || (!pUncomp)) {
|
||||
printf("Out of memory!\n");
|
||||
return EXIT_FAILURE;
|
||||
}
|
||||
|
||||
// Compress the string.
|
||||
cmp_status =
|
||||
compress(pCmp, &cmp_len, (const unsigned char *)s_pStr, src_len);
|
||||
if (cmp_status != Z_OK) {
|
||||
printf("compress() failed!\n");
|
||||
free(pCmp);
|
||||
free(pUncomp);
|
||||
return EXIT_FAILURE;
|
||||
}
|
||||
|
||||
printf("Compressed from %u to %u bytes\n", (mz_uint32)src_len,
|
||||
(mz_uint32)cmp_len);
|
||||
|
||||
if (step) {
|
||||
// Purposely corrupt the compressed data if fuzzy testing (this is a
|
||||
// very crude fuzzy test).
|
||||
uint n = 1 + (rand() % 3);
|
||||
while (n--) {
|
||||
uint i = rand() % cmp_len;
|
||||
pCmp[i] ^= (rand() & 0xFF);
|
||||
}
|
||||
}
|
||||
|
||||
// Decompress.
|
||||
cmp_status = uncompress(pUncomp, &uncomp_len, pCmp, cmp_len);
|
||||
total_succeeded += (cmp_status == Z_OK);
|
||||
|
||||
if (step) {
|
||||
printf("Simple fuzzy test: step %u total_succeeded: %u\n", step,
|
||||
total_succeeded);
|
||||
} else {
|
||||
if (cmp_status != Z_OK) {
|
||||
printf("uncompress failed!\n");
|
||||
free(pCmp);
|
||||
free(pUncomp);
|
||||
return EXIT_FAILURE;
|
||||
}
|
||||
|
||||
printf("Decompressed from %u to %u bytes\n", (mz_uint32)cmp_len,
|
||||
(mz_uint32)uncomp_len);
|
||||
|
||||
// Ensure uncompress() returned the expected data.
|
||||
if ((uncomp_len != src_len) ||
|
||||
(memcmp(pUncomp, s_pStr, (size_t)src_len))) {
|
||||
printf("Decompression failed!\n");
|
||||
free(pCmp);
|
||||
free(pUncomp);
|
||||
return EXIT_FAILURE;
|
||||
}
|
||||
}
|
||||
|
||||
free(pCmp);
|
||||
free(pUncomp);
|
||||
|
||||
step++;
|
||||
|
||||
// Keep on fuzzy testing if there's a non-empty command line.
|
||||
} while (argc >= 2);
|
||||
|
||||
printf("Success.\n");
|
||||
return EXIT_SUCCESS;
|
||||
}
|
||||
Reference in New Issue
Block a user