* Rename hash_to_curve as encode_to_curve
* Implement the inline description of the standard.
* Generalise map_to_field to return an arbitrary number of field elements.
* Implement hash_to_curve as defined in the standard.
* Put elligator behind the "digest" feature.
* Add warning on non-uniformity of `encode_to_curve`.
* Remove the need of Vec for hash_to_field.
* Apply suggestions from code review
* Refactor expand_message_xmd out of hash_to_field
* Add hash-to-curve to benches
* Constraint COUNT to 1 or 2; add note on secure hash function usage
* Correct hash function usage in encode- and hash-to-curve
---------
Co-authored-by: Armando Faz <armfazh@users.noreply.github.com>
Co-authored-by: Michael Rosenberg <mrosenberg@cloudflare.com>
* [WIP] Scalar::div_by_2
* debug_assert that carry is 0
* revise tests
* Test multiply by half scalar, double and compress (#804)
* Test `div_by_2` with `proptest` (#806)
---------
Co-authored-by: daxpedda <daxpedda@gmail.com>
When pulling crates via git (to grab non-released yet fixes or
otherwise), the `path = "../"` in each crate crates duplicates unless
you pull the whole tree in your local `[patch.crates-io]`.
This creates issues in downstream packaging (nix, ...) where a crate
version can only appear once.
Those are somewhat difficult to diagnose.
Using a `[patch.crates-io]` in the workspace serves the same purpose but
does not create the duplication in consumers' tree.
* Update changelogs and readmes
* Fix missing/wrong features in readmes
* ed: Remove std entirely
* ed: Fix deprecated warnings in bench
* Document removing std from ed
This represents the first breaking change in a new release series,
bumping all crates to the 2024 edition of Rust.
As such, the version numbers of all crates have been incremented to
represent a new prerelease series:
- `curve25519-dalek`: v5.0.0-pre
- `ed25519-dalek`: v3.0.0-pre
- `x25519-dalek`: v3.0.0-pre
Note that this commit isn't intended to cut associated crate releases of
these on crates.io, but is merely bumping the version numbers to denote
there are pending breaking changes.
This commit also includes rustfmt changes which were made as part of the
2024 edition.
Also includes clippy fixes.
* Implementation of `hash_to_field` as defined in the standard
* Implementation of `hash_to_curve` as defined in the standard, by changing the mechanism over which we chose the sign.
* For the point above, had to change the `elligator_encode` to return whether `eps` is a square or not (required for `hash_to_curve`).
* Included test vectors of the draft.
* Included `FieldElement::from_bytes_wide(bytes: &u8; 64])` to reduce integers encoded in 64 bytes.
* curve: extract `AffinePoint` type
Based on discussions about `elliptic-curve` trait impls in #746, and
observing a similar type in `ed448-goldilocks` which inspired this one
(not to mention in all of the @RustCrypto elliptic curve crates), adds
an `AffinePoint` type with `x` and `y` coordinates.
For now, the type is kept out of the public API, and used as an
implementation detail for point compression. However, it's been written
with the intent of eventually stabilizing and exposing it. It's been
marked `pub` so unused functionality doesn't automatically trigger dead
code lints.
Further work could include refactoring point decompression to first
produce an `AffinePoint` and then convert to extended twisted Edwards
coordinates (i.e. `EdwardsPoint`), which is more or less what the
existing `step_1` and `step_2` functions do (`step_1` technically
produces projective coordinates, but `Z` is always set to `ONE`).
* Update curve25519-dalek/src/edwards.rs
* curve: rename `FieldElement*::as_bytes` => `::to_bytes`
Methods named `as_*` should perform a zero-cost borrowing conversion:
https://rust-lang.github.io/api-guidelines/naming.html#ad-hoc-conversions-follow-as_-to_-into_-conventions-c-conv
Methods named `to_*` can perform an expensive owned conversion.
Since the `FieldElement*` types are technically part of the public API
(but feature gated), this also preserves the old names with a
deprecation. We can remove them in the next breaking release.
The same change was also made to the backend `Scalar*` types, however
these types are not a part of the public API.
* curve: add `EdwardsPoint::compress_batch` and `::random`
We've had various requests to implement batch point compression for
`EdwardsPoint`, e.g. #705.
We can leverage `FieldElement::batch_invert` to implement it, which
results in a fairly significant speedup.
The name `EdwardsPoint::compress_batch` has been chosen to match
`RistrettoPoint::double_and_compress_batch`.
For benchmarking, randomized `EdwardsPoint`s have been used. To obtain
these, an inherent `EdwardsPoint::random` has been extracted from the
existing `Group::random` implementation, which uses rejection sampling.
`Group::random` has been updated to call the inherent
`EdwardsPoint::random`. This avoids a `group` dependency just to run the
batch compression benchmarks.
The following benchmark results have been obtained:
edwards benches/EdwardsPoint compression
time: [3.5029 µs 3.5098 µs 3.5171 µs]
edwards benches/Batch EdwardsPoint compression/1
time: [3.6698 µs 3.6758 µs 3.6817 µs]
edwards benches/Batch EdwardsPoint compression/2
time: [3.8410 µs 3.8461 µs 3.8516 µs]
edwards benches/Batch EdwardsPoint compression/4
time: [4.1534 µs 4.1961 µs 4.2558 µs]
edwards benches/Batch EdwardsPoint compression/8
time: [4.8466 µs 4.8533 µs 4.8600 µs]
edwards benches/Batch EdwardsPoint compression/16
time: [6.1216 µs 6.1315 µs 6.1410 µs]
As you can see, it affords a fairly significant speedup, batch
compressing 16 points in less time than the standard point compression
algorithm would take to compress 2 in a row.
The build is currently broken because it's been stabilized:
error: the feature `avx512_target_feature` has been stable since 1.89.0-nightly and no longer requires an attribute to enable
* Make AVX512IFMA opt-in backend
* Updated README to have backend info
* Added entry to changelog
---------
Co-authored-by: Michael Rosenberg <michael@mrosenberg.pub>
Alternative to #659/#661 and #662 which leverages `subtle::Choice` and
`subtle::ConditionallySelectable` as the optimization barriers.
Really the previous masking was there to conditionally add the scalar
field modulus on underflow, so instead of that, we can conditionally
select zero or the modulus using a `Choice` constructed from the
underflow bit.
Replaces the security mitigation added in #659 and #661 for
masking-related timing variability which used an inline `black_box`
using the recently added `subtle::BlackBox` newtype (see
dalek-cryptography/subtle#123)
Internally `BlackBox` uses a volatile read by default (i.e. same
strategy which was used before) or when the `core_hint_black_box`
feature of `subtle` is enabled, it uses `core::hint::black_box`
(whose documentation was recently updated to reflect the nuances of
potential cryptographic use, see rust-lang/rust#126703)
This PR goes ahead and uses `BlackBox` for both `mask` and
`underflow_mask` where previously it was only used on `underflow_mask`.
The general pattern of bitwise masking inside a loop seems worrisome for
the optimizer potentially inserting branches in the future.
Below are godbolt inspections of the generated assembly, which are free
of the `jns` instructions originally spotted in #659/#661:
- 32-bit (read_volatile): https://godbolt.org/z/TKo9fqza4
- 32-bit (hint::black_box): https://godbolt.org/z/caoMxYbET
- 64-bit (read_volatile): https://godbolt.org/z/PM6zKjj1f
- 64-bit (hint::black_box): https://godbolt.org/z/nseaPvdWv
Similar security fix to #659, but for the 32-bit backend. See that PR
for more information about the problem. Relevant compiler outputs (thanks to @tarcieri):
Without fix
https://godbolt.org/z/zvaWxzvqv
Notice the `jns` ("jump if not sign") instruction on line 106.
With fix
https://godbolt.org/z/jc9j7eb8E
Timing variability of any kind is problematic when working with
potentially secret values such as elliptic curve scalars, and such
issues can potentially leak private keys and other secrets. Such a
problem was recently discovered in `curve25519-dalek`.
The `Scalar52::sub` function contained usage of a mask value inside of a
loop where LLVM saw an opportunity to insert a branch instruction
(`jns` on x86) to conditionally bypass this code section when the mask
value is set to zero, as can be seen in godbolt:
https://godbolt.org/z/PczYj7Pda
A similar problem was recently discovered in the Kyber reference
implementation:
https://groups.google.com/a/list.nist.gov/g/pqc-forum/c/hqbtIGFKIpU/m/cnE3pbueBgAJ
As discussed on that thread, one portable solution, which is also used
in this PR, is to introduce a volatile read as an optimization barrier,
which prevents the compiler from optimizing it away.
The fix can be validated in godbolt here:
https://godbolt.org/z/x8d46Yfah
The problem was discovered and the solution independently verified by
Alexander Wagner <alexander.wagner@aisec.fraunhofer.de> and
Lea Themint <lea.thiemt@tum.de> using their DATA tool:
https://github.com/Fraunhofer-AISEC/DATA
Co-authored-by: Tony Arcieri <bascule@gmail.com>