2019-11-04 02:22:03 +00:00
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#include <qpdf/MD5.hh>
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2022-02-04 21:31:31 +00:00
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2019-11-04 02:22:03 +00:00
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#include <qpdf/QIntC.hh>
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#include <qpdf/QPDFCryptoProvider.hh>
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#include <qpdf/QUtil.hh>
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2023-05-20 11:22:32 +00:00
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#include <cstring>
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2019-11-04 02:22:03 +00:00
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MD5::MD5()
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{
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init();
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}
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void
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MD5::init()
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{
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this->crypto = QPDFCryptoProvider::getImpl();
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this->crypto->MD5_init();
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}
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void
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MD5::finalize()
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{
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this->crypto->MD5_finalize();
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}
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void
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MD5::reset()
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{
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init();
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}
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void
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MD5::encodeString(char const* str)
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{
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size_t len = strlen(str);
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crypto->MD5_init();
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encodeDataIncrementally(str, len);
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crypto->MD5_finalize();
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}
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void
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MD5::appendString(char const* input_string)
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{
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encodeDataIncrementally(input_string, strlen(input_string));
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}
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void
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MD5::encodeDataIncrementally(char const* data, size_t len)
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{
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this->crypto->MD5_update(QUtil::unsigned_char_pointer(data), len);
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}
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void
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MD5::encodeFile(char const* filename, qpdf_offset_t up_to_offset)
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{
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char buffer[1024];
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FILE* file = QUtil::safe_fopen(filename, "rb");
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size_t len;
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size_t so_far = 0;
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size_t to_try = 1024;
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size_t up_to_size = 0;
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if (up_to_offset >= 0) {
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up_to_size = QIntC::to_size(up_to_offset);
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}
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do {
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2022-02-08 14:18:08 +00:00
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if ((up_to_offset >= 0) && ((so_far + to_try) > up_to_size)) {
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to_try = up_to_size - so_far;
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}
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len = fread(buffer, 1, to_try, file);
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if (len > 0) {
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encodeDataIncrementally(buffer, len);
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so_far += len;
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if ((up_to_offset >= 0) && (so_far >= up_to_size)) {
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break;
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}
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}
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2019-11-04 02:22:03 +00:00
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} while (len > 0);
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if (ferror(file)) {
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2022-02-08 14:18:08 +00:00
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// Assume, perhaps incorrectly, that errno was set by the
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// underlying call to read....
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(void)fclose(file);
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QUtil::throw_system_error(std::string("MD5: read error on ") + filename);
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2019-11-04 02:22:03 +00:00
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}
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(void)fclose(file);
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this->crypto->MD5_finalize();
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}
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void
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MD5::digest(Digest result)
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{
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this->crypto->MD5_finalize();
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this->crypto->MD5_digest(result);
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}
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void
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MD5::print()
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{
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Digest digest_val;
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digest(digest_val);
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unsigned int i;
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for (i = 0; i < 16; ++i) {
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2022-02-08 14:18:08 +00:00
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printf("%02x", digest_val[i]);
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2019-11-04 02:22:03 +00:00
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}
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printf("\n");
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}
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std::string
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MD5::unparse()
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{
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this->crypto->MD5_finalize();
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Digest digest_val;
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digest(digest_val);
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return QUtil::hex_encode(std::string(reinterpret_cast<char*>(digest_val), 16));
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}
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std::string
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MD5::getDataChecksum(char const* buf, size_t len)
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{
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MD5 m;
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m.encodeDataIncrementally(buf, len);
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return m.unparse();
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}
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std::string
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MD5::getFileChecksum(char const* filename, qpdf_offset_t up_to_offset)
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{
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MD5 m;
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m.encodeFile(filename, up_to_offset);
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return m.unparse();
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}
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bool
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MD5::checkDataChecksum(char const* const checksum, char const* buf, size_t len)
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{
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std::string actual_checksum = getDataChecksum(buf, len);
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return (checksum == actual_checksum);
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}
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bool
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MD5::checkFileChecksum(char const* const checksum, char const* filename, qpdf_offset_t up_to_offset)
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{
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bool result = false;
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try {
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2022-02-08 14:18:08 +00:00
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std::string actual_checksum = getFileChecksum(filename, up_to_offset);
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result = (checksum == actual_checksum);
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2019-11-04 02:22:03 +00:00
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} catch (std::runtime_error const&) {
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2022-02-08 14:18:08 +00:00
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// Ignore -- return false
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2019-11-04 02:22:03 +00:00
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}
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return result;
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}
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