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2025-01-01Update copyright for 2025Bruce Momjian
Backpatch-through: 13
2024-01-04Update copyright for 2024Bruce Momjian
Reported-by: Michael Paquier Discussion: https://postgr.es/m/[email protected] Backpatch-through: 12
2023-01-02Update copyright for 2023Bruce Momjian
Backpatch-through: 11
2022-01-08Update copyright for 2022Bruce Momjian
Backpatch-through: 10
2021-06-04Adjust locations which have an incorrect copyright yearDavid Rowley
A few patches committed after ca3b37487 mistakenly forgot to make the copyright year 2021. Fix these. Discussion: https://postgr.es/m/CAApHDvqyLmd9P2oBQYJ=DbrV8QwyPRdmXtCTFYPE08h+ip0UJw@mail.gmail.com
2021-04-03Refactor HMAC implementationsMichael Paquier
Similarly to the cryptohash implementations, this refactors the existing HMAC code into a single set of APIs that can be plugged with any crypto libraries PostgreSQL is built with (only OpenSSL currently). If there is no such libraries, a fallback implementation is available. Those new APIs are designed similarly to the existing cryptohash layer, so there is no real new design here, with the same logic around buffer bound checks and memory handling. HMAC has a dependency on cryptohashes, so all the cryptohash types supported by cryptohash{_openssl}.c can be used with HMAC. This refactoring is an advantage mainly for SCRAM, that included its own implementation of HMAC with SHA256 without relying on the existing crypto libraries even if PostgreSQL was built with their support. This code has been tested on Windows and Linux, with and without OpenSSL, across all the versions supported on HEAD from 1.1.1 down to 1.0.1. I have also checked that the implementations are working fine using some sample results, a custom extension of my own, and doing cross-checks across different major versions with SCRAM with the client and the backend. Author: Michael Paquier Reviewed-by: Bruce Momjian Discussion: https://postgr.es/m/[email protected]
2021-01-23Introduce SHA1 implementations in the cryptohash infrastructureMichael Paquier
With this commit, SHA1 goes through the implementation provided by OpenSSL via EVP when building the backend with it, and uses as fallback implementation KAME which was located in pgcrypto and already shaped for an integration with a set of init, update and final routines. Structures and routines have been renamed to make things consistent with the fallback implementations of MD5 and SHA2. uuid-ossp has used for ages a shortcut with pgcrypto to fetch a copy of SHA1 if needed. This was built depending on the build options within ./configure, so this cleans up some code and removes the build dependency between pgcrypto and uuid-ossp. Note that this will help with the refactoring of HMAC, as pgcrypto offers the option to use MD5, SHA1 or SHA2, so only the second option was missing to make that possible. Author: Michael Paquier Reviewed-by: Heikki Linnakangas Discussion: https://postgr.es/m/[email protected]