CRC-64/GO-ISO Checksum
Calculate CRC-64/GO-ISO over UTF-8 text with polynomial 0x000000000000001B, initial value 0xFFFFFFFFFFFFFFFF, and final XOR 0xFFFFFFFFFFFFFFFF.
Description
Calculate CRC-64/GO-ISO Checksum over UTF-8 text and display the result as uppercase hexadecimal.
CRC-64/GO-ISO Checksum is intended for interoperability and accidental-error detection. CRC-64/GO-ISO uses a 64-bit register, polynomial 0x1B, initial value 0xFFFFFFFFFFFFFFFF, final XOR 0xFFFFFFFFFFFFFFFF, and reflected byte processing.1
When to use CRC-64/GO-ISO Checksum
Use this checksum only when a file format, device, protocol, or published test vector specifies the same named profile and parameters. Profiles with the same width can still produce unrelated results.
How CRC-64/GO-ISO Checksum works
CRC-64/GO-ISO uses a 64-bit register, polynomial 0x1B, initial value 0xFFFFFFFFFFFFFFFF, final XOR 0xFFFFFFFFFFFFFFFF, and reflected byte processing.1
How the CRC-64/GO-ISO function processes input
- Encode the entered text as UTF-8 bytes.
- Process the bytes with the selected algorithm and its exact parameters.
- Render the result in the canonical textual form shown by the tool.
Limitations and assumptions
- Checksums are not collision-resistant and must not be used as digital signatures or security proofs.
- Text is encoded as UTF-8; a checksum over a file's raw bytes can differ.
- Every CRC parameter—including reflection and initialization—must match the other implementation.
Alternative or Complementary approaches
Use a cryptographic hash such as SHA-256 when malicious modification is in scope. Use the custom CRC calculator when a documented profile is not available as a preset.
References
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Catalogue of parametrised CRC algorithms — CRC RevEng
Similar or alternative tools
- CRC-32 Checksum
Use the common ISO-HDLC CRC-32 profile.
- SHA-256 Hash Generator
Use a cryptographic digest for adversarial integrity.