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README.md
23
README.md
@ -6,8 +6,8 @@ schemes that are in the
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The goal of PQClean is to provide *standalone implementations* that
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* can easily be integrated into libraries such as [liboqs](https://openquantumsafe.org/#liboqs) or [libpqcrypto](https://libpqcrypto.org/);
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* can efficiently upstream into higher-level protocol integration efforts such as [Open Quantum Safe](https://openquantumsafe.org/#integrations);
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* can easily be integrated into benchmarking framworks such as [SUPERCOP](https://bench.cr.yp.to/supercop.shtml);
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* can easily be integrated into framworks targeting embedded platforms such as [pqm4](https://github.com/mupq/pqm4);
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* can easily be integrated into benchmarking frameworks such as [SUPERCOP](https://bench.cr.yp.to/supercop.shtml);
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* can easily be integrated into frameworks targeting embedded platforms such as [pqm4](https://github.com/mupq/pqm4);
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* are suitable starting points for architecture-specific optimized implementations;
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* are suitable starting points for evaluation of implementation security; and
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* are suitable targets for formal verification.
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@ -34,28 +34,28 @@ listed below.
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* Only dependencies:
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* `common_crypto.c` (Keccak, AES, SHA-2)
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* `randombytes.c`
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* API functions return 0 on success, negative on failure
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* API functions return `0` on success, negative on failure
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* No dynamic memory allocations
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* No branching on secret data (dynamically checked using valgrind)
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* No access to secret memory locations (dynamically checked using valgrind)
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* Separate subdirectories (without symlinks) for each parameter set of each scheme
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* Builds under Linux, Mac OSX, and Windows
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* Builds under Linux, MacOS, and Windows
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* Makefile-based build for each separate scheme
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* Makefile-based build for Windows (nmake)
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* Makefile-based build for Windows (`nmake`)
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* All exported symbols are namespaced with `PQCLEAN_SCHEMENAME_`
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* Each implementation comes with a LICENSE file (see below)
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* Each implementation comes with a META file giving details about version of the algorithm, designers, etc.
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* Each implementation comes with a `LICENSE` file (see below)
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* Each implementation comes with a `META` file giving details about version of the algorithm, designers, etc.
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## Requirements on C implementations that are manually checked
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* Makefiles without explicit rules (rely on implicit, built-in rules)
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* #ifdefs only for header encapsulation
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* `#ifdef`s only for header encapsulation
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* No stringification macros
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* Output-parameter pointers in functions are on the left
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* const arguments are labelled as const
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* All exported symbols are namespaced inplace
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* All integer types are of fixed size, using `stdint.h` types (including `uint8_t` instead of `"unsigned char`)
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* `const` arguments are labeled as `const`
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* All exported symbols are namespaced in place
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* All integer types are of fixed size, using `stdint.h` types (including `uint8_t` instead of `unsigned char`)
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* Integers used for indexing are of size `size_t`
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* variable declarations at the beginning (except in `for (size_t i=...`)
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@ -97,4 +97,3 @@ int crypto_sign_verify(const uint8_t *sig, size_t siglen, const uint8_t *m, size
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Each subdirectory containing implementations contains a LICENSE file stating under what license
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that specific implementation is released. All other code for testing etc. in this repository
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is released under the conditions of [CC0](http://creativecommons.org/publicdomain/zero/1.0/).
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