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9 Commits

Author SHA1 Message Date
Peng Wang
39a8c8a9e3 remove 2 zk unit tests 2025-11-25 08:10:28 -05:00
Peng Wang
f44fc39c7d address PR comments 2025-11-24 20:40:31 -05:00
Peng Wang
b841184d76 add memory limit and disable float and other advanced instructions 2025-11-20 15:36:27 -05:00
Olek
6c9adada2f Fix wasmi MacOs build (#6051) 2025-11-18 19:07:37 -05:00
Oleksandr
89936020f8 Wasm small refactoring 2025-11-11 17:02:14 -05:00
Oleksandr
7d9805d569 Wasm fixtures sources 2025-11-11 17:02:14 -05:00
Oleksandr
d1af56a45b Wasm fee voting 2025-11-11 17:02:14 -05:00
Oleksandr
6d5e2bd03c Wasm SmartEscrow 2025-11-11 17:02:14 -05:00
Oleksandr
dddbeec0a4 Wasmi engine 2025-11-11 17:02:14 -05:00
265 changed files with 36913 additions and 2453 deletions

6
.github/CODEOWNERS vendored
View File

@@ -1,8 +1,2 @@
# Allow anyone to review any change by default.
*
# Require the rpc-reviewers team to review changes to the rpc code.
include/xrpl/protocol/ @xrplf/rpc-reviewers
src/libxrpl/protocol/ @xrplf/rpc-reviewers
src/xrpld/rpc/ @xrplf/rpc-reviewers
src/xrpld/app/misc/ @xrplf/rpc-reviewers

View File

@@ -70,6 +70,9 @@ fi
if ! grep -q 'Dev Null' src/test/app/tx/apply_test.cpp; then
echo -e "// Copyright (c) 2020 Dev Null Productions\n\n$(cat src/test/app/tx/apply_test.cpp)" > src/test/app/tx/apply_test.cpp
fi
if ! grep -q 'Dev Null' src/test/app/NetworkOPs_test.cpp; then
echo -e "// Copyright (c) 2020 Dev Null Productions\n\n$(cat src/test/app/NetworkOPs_test.cpp)" > src/test/app/NetworkOPs_test.cpp
fi
if ! grep -q 'Dev Null' src/test/rpc/ManifestRPC_test.cpp; then
echo -e "// Copyright (c) 2020 Dev Null Productions\n\n$(cat src/test/rpc/ManifestRPC_test.cpp)" > src/test/rpc/ManifestRPC_test.cpp
fi

View File

@@ -2,12 +2,11 @@
import argparse
import itertools
import json
from dataclasses import dataclass
from pathlib import Path
from dataclasses import dataclass
THIS_DIR = Path(__file__).parent.resolve()
@dataclass
class Config:
architecture: list[dict]
@@ -15,8 +14,7 @@ class Config:
build_type: list[str]
cmake_args: list[str]
"""
'''
Generate a strategy matrix for GitHub Actions CI.
On each PR commit we will build a selection of Debian, RHEL, Ubuntu, MacOS, and
@@ -29,23 +27,19 @@ We will further set additional CMake arguments as follows:
- All release builds will have the `assert` option.
- Certain Debian Bookworm configurations will change the reference fee, enable
codecov, and enable voidstar in PRs.
"""
'''
def generate_strategy_matrix(all: bool, config: Config) -> list:
configurations = []
for architecture, os, build_type, cmake_args in itertools.product(
config.architecture, config.os, config.build_type, config.cmake_args
):
for architecture, os, build_type, cmake_args in itertools.product(config.architecture, config.os, config.build_type, config.cmake_args):
# The default CMake target is 'all' for Linux and MacOS and 'install'
# for Windows, but it can get overridden for certain configurations.
cmake_target = "install" if os["distro_name"] == "windows" else "all"
cmake_target = 'install' if os["distro_name"] == 'windows' else 'all'
# We build and test all configurations by default, except for Windows in
# Debug, because it is too slow, as well as when code coverage is
# enabled as that mode already runs the tests.
build_only = False
if os["distro_name"] == "windows" and build_type == "Debug":
if os['distro_name'] == 'windows' and build_type == 'Debug':
build_only = True
# Only generate a subset of configurations in PRs.
@@ -60,46 +54,21 @@ def generate_strategy_matrix(all: bool, config: Config) -> list:
# - Bookworm using Clang 17: Release and no Unity on linux/amd64,
# set the reference fee to 1000.
# - Bookworm using Clang 20: Debug and Unity on linux/amd64.
if os["distro_name"] == "debian":
if os['distro_name'] == 'debian':
skip = True
if os["distro_version"] == "bookworm":
if (
f"{os['compiler_name']}-{os['compiler_version']}" == "gcc-13"
and build_type == "Release"
and "-Dunity=ON" in cmake_args
and architecture["platform"] == "linux/amd64"
):
cmake_args = f"-DUNIT_TEST_REFERENCE_FEE=500 {cmake_args}"
if os['distro_version'] == 'bookworm':
if f'{os['compiler_name']}-{os['compiler_version']}' == 'gcc-13' and build_type == 'Release' and '-Dunity=ON' in cmake_args and architecture['platform'] == 'linux/amd64':
cmake_args = f'-DUNIT_TEST_REFERENCE_FEE=500 {cmake_args}'
skip = False
if (
f"{os['compiler_name']}-{os['compiler_version']}" == "gcc-15"
and build_type == "Debug"
and "-Dunity=OFF" in cmake_args
and architecture["platform"] == "linux/amd64"
):
if f'{os['compiler_name']}-{os['compiler_version']}' == 'gcc-15' and build_type == 'Debug' and '-Dunity=OFF' in cmake_args and architecture['platform'] == 'linux/amd64':
skip = False
if (
f"{os['compiler_name']}-{os['compiler_version']}" == "clang-16"
and build_type == "Debug"
and "-Dunity=OFF" in cmake_args
and architecture["platform"] == "linux/arm64"
):
cmake_args = f"-Dvoidstar=ON {cmake_args}"
if f'{os['compiler_name']}-{os['compiler_version']}' == 'clang-16' and build_type == 'Debug' and '-Dunity=OFF' in cmake_args and architecture['platform'] == 'linux/arm64':
cmake_args = f'-Dvoidstar=ON {cmake_args}'
skip = False
if (
f"{os['compiler_name']}-{os['compiler_version']}" == "clang-17"
and build_type == "Release"
and "-Dunity=ON" in cmake_args
and architecture["platform"] == "linux/amd64"
):
cmake_args = f"-DUNIT_TEST_REFERENCE_FEE=1000 {cmake_args}"
if f'{os['compiler_name']}-{os['compiler_version']}' == 'clang-17' and build_type == 'Release' and '-Dunity=ON' in cmake_args and architecture['platform'] == 'linux/amd64':
cmake_args = f'-DUNIT_TEST_REFERENCE_FEE=1000 {cmake_args}'
skip = False
if (
f"{os['compiler_name']}-{os['compiler_version']}" == "clang-20"
and build_type == "Debug"
and "-Dunity=ON" in cmake_args
and architecture["platform"] == "linux/amd64"
):
if f'{os['compiler_name']}-{os['compiler_version']}' == 'clang-20' and build_type == 'Debug' and '-Dunity=ON' in cmake_args and architecture['platform'] == 'linux/amd64':
skip = False
if skip:
continue
@@ -107,23 +76,13 @@ def generate_strategy_matrix(all: bool, config: Config) -> list:
# RHEL:
# - 9 using GCC 12: Debug and Unity on linux/amd64.
# - 10 using Clang: Release and no Unity on linux/amd64.
if os["distro_name"] == "rhel":
if os['distro_name'] == 'rhel':
skip = True
if os["distro_version"] == "9":
if (
f"{os['compiler_name']}-{os['compiler_version']}" == "gcc-12"
and build_type == "Debug"
and "-Dunity=ON" in cmake_args
and architecture["platform"] == "linux/amd64"
):
if os['distro_version'] == '9':
if f'{os['compiler_name']}-{os['compiler_version']}' == 'gcc-12' and build_type == 'Debug' and '-Dunity=ON' in cmake_args and architecture['platform'] == 'linux/amd64':
skip = False
elif os["distro_version"] == "10":
if (
f"{os['compiler_name']}-{os['compiler_version']}" == "clang-any"
and build_type == "Release"
and "-Dunity=OFF" in cmake_args
and architecture["platform"] == "linux/amd64"
):
elif os['distro_version'] == '10':
if f'{os['compiler_name']}-{os['compiler_version']}' == 'clang-any' and build_type == 'Release' and '-Dunity=OFF' in cmake_args and architecture['platform'] == 'linux/amd64':
skip = False
if skip:
continue
@@ -133,169 +92,104 @@ def generate_strategy_matrix(all: bool, config: Config) -> list:
# - Noble using GCC 14: Release and Unity on linux/amd64.
# - Noble using Clang 18: Debug and no Unity on linux/amd64.
# - Noble using Clang 19: Release and Unity on linux/arm64.
if os["distro_name"] == "ubuntu":
if os['distro_name'] == 'ubuntu':
skip = True
if os["distro_version"] == "jammy":
if (
f"{os['compiler_name']}-{os['compiler_version']}" == "gcc-12"
and build_type == "Debug"
and "-Dunity=OFF" in cmake_args
and architecture["platform"] == "linux/arm64"
):
if os['distro_version'] == 'jammy':
if f'{os['compiler_name']}-{os['compiler_version']}' == 'gcc-12' and build_type == 'Debug' and '-Dunity=OFF' in cmake_args and architecture['platform'] == 'linux/arm64':
skip = False
elif os["distro_version"] == "noble":
if (
f"{os['compiler_name']}-{os['compiler_version']}" == "gcc-14"
and build_type == "Release"
and "-Dunity=ON" in cmake_args
and architecture["platform"] == "linux/amd64"
):
elif os['distro_version'] == 'noble':
if f'{os['compiler_name']}-{os['compiler_version']}' == 'gcc-14' and build_type == 'Release' and '-Dunity=ON' in cmake_args and architecture['platform'] == 'linux/amd64':
skip = False
if (
f"{os['compiler_name']}-{os['compiler_version']}" == "clang-18"
and build_type == "Debug"
and "-Dunity=OFF" in cmake_args
and architecture["platform"] == "linux/amd64"
):
if f'{os['compiler_name']}-{os['compiler_version']}' == 'clang-18' and build_type == 'Debug' and '-Dunity=OFF' in cmake_args and architecture['platform'] == 'linux/amd64':
skip = False
if (
f"{os['compiler_name']}-{os['compiler_version']}" == "clang-19"
and build_type == "Release"
and "-Dunity=ON" in cmake_args
and architecture["platform"] == "linux/arm64"
):
if f'{os['compiler_name']}-{os['compiler_version']}' == 'clang-19' and build_type == 'Release' and '-Dunity=ON' in cmake_args and architecture['platform'] == 'linux/arm64':
skip = False
if skip:
continue
# MacOS:
# - Debug and no Unity on macos/arm64.
if os["distro_name"] == "macos" and not (
build_type == "Debug"
and "-Dunity=OFF" in cmake_args
and architecture["platform"] == "macos/arm64"
):
if os['distro_name'] == 'macos' and not (build_type == 'Debug' and '-Dunity=OFF' in cmake_args and architecture['platform'] == 'macos/arm64'):
continue
# Windows:
# - Release and Unity on windows/amd64.
if os["distro_name"] == "windows" and not (
build_type == "Release"
and "-Dunity=ON" in cmake_args
and architecture["platform"] == "windows/amd64"
):
if os['distro_name'] == 'windows' and not (build_type == 'Release' and '-Dunity=ON' in cmake_args and architecture['platform'] == 'windows/amd64'):
continue
# Additional CMake arguments.
cmake_args = f"{cmake_args} -Dtests=ON -Dwerr=ON -Dxrpld=ON"
if not f"{os['compiler_name']}-{os['compiler_version']}" in [
"gcc-12",
"clang-16",
]:
cmake_args = f"{cmake_args} -Dwextra=ON"
if build_type == "Release":
cmake_args = f"{cmake_args} -Dassert=ON"
cmake_args = f'{cmake_args} -Dtests=ON -Dwerr=ON -Dxrpld=ON'
if not f'{os['compiler_name']}-{os['compiler_version']}' in ['gcc-12', 'clang-16']:
cmake_args = f'{cmake_args} -Dwextra=ON'
if build_type == 'Release':
cmake_args = f'{cmake_args} -Dassert=ON'
# We skip all RHEL on arm64 due to a build failure that needs further
# investigation.
if os["distro_name"] == "rhel" and architecture["platform"] == "linux/arm64":
if os['distro_name'] == 'rhel' and architecture['platform'] == 'linux/arm64':
continue
# We skip all clang 20+ on arm64 due to Boost build error.
if (
f"{os['compiler_name']}-{os['compiler_version']}"
in ["clang-20", "clang-21"]
and architecture["platform"] == "linux/arm64"
):
# We skip all clang-20 on arm64 due to boost 1.86 build error
if f'{os['compiler_name']}-{os['compiler_version']}' == 'clang-20' and architecture['platform'] == 'linux/arm64':
continue
# Enable code coverage for Debian Bookworm using GCC 15 in Debug and no
# Unity on linux/amd64
if (
f"{os['compiler_name']}-{os['compiler_version']}" == "gcc-15"
and build_type == "Debug"
and "-Dunity=OFF" in cmake_args
and architecture["platform"] == "linux/amd64"
):
cmake_args = f"-Dcoverage=ON -Dcoverage_format=xml -DCODE_COVERAGE_VERBOSE=ON -DCMAKE_C_FLAGS=-O0 -DCMAKE_CXX_FLAGS=-O0 {cmake_args}"
if f'{os['compiler_name']}-{os['compiler_version']}' == 'gcc-15' and build_type == 'Debug' and '-Dunity=OFF' in cmake_args and architecture['platform'] == 'linux/amd64':
cmake_args = f'-Dcoverage=ON -Dcoverage_format=xml -DCODE_COVERAGE_VERBOSE=ON -DCMAKE_C_FLAGS=-O0 -DCMAKE_CXX_FLAGS=-O0 {cmake_args}'
# Generate a unique name for the configuration, e.g. macos-arm64-debug
# or debian-bookworm-gcc-12-amd64-release-unity.
config_name = os["distro_name"]
if (n := os["distro_version"]) != "":
config_name += f"-{n}"
if (n := os["compiler_name"]) != "":
config_name += f"-{n}"
if (n := os["compiler_version"]) != "":
config_name += f"-{n}"
config_name += (
f"-{architecture['platform'][architecture['platform'].find('/') + 1 :]}"
)
config_name += f"-{build_type.lower()}"
if "-Dunity=ON" in cmake_args:
config_name += "-unity"
config_name = os['distro_name']
if (n := os['distro_version']) != '':
config_name += f'-{n}'
if (n := os['compiler_name']) != '':
config_name += f'-{n}'
if (n := os['compiler_version']) != '':
config_name += f'-{n}'
config_name += f'-{architecture['platform'][architecture['platform'].find('/')+1:]}'
config_name += f'-{build_type.lower()}'
if '-Dunity=ON' in cmake_args:
config_name += '-unity'
# Add the configuration to the list, with the most unique fields first,
# so that they are easier to identify in the GitHub Actions UI, as long
# names get truncated.
configurations.append(
{
"config_name": config_name,
"cmake_args": cmake_args,
"cmake_target": cmake_target,
"build_only": build_only,
"build_type": build_type,
"os": os,
"architecture": architecture,
}
)
configurations.append({
'config_name': config_name,
'cmake_args': cmake_args,
'cmake_target': cmake_target,
'build_only': build_only,
'build_type': build_type,
'os': os,
'architecture': architecture,
})
return configurations
def read_config(file: Path) -> Config:
config = json.loads(file.read_text())
if (
config["architecture"] is None
or config["os"] is None
or config["build_type"] is None
or config["cmake_args"] is None
):
raise Exception("Invalid configuration file.")
if config['architecture'] is None or config['os'] is None or config['build_type'] is None or config['cmake_args'] is None:
raise Exception('Invalid configuration file.')
return Config(**config)
if __name__ == "__main__":
if __name__ == '__main__':
parser = argparse.ArgumentParser()
parser.add_argument(
"-a",
"--all",
help="Set to generate all configurations (generally used when merging a PR) or leave unset to generate a subset of configurations (generally used when committing to a PR).",
action="store_true",
)
parser.add_argument(
"-c",
"--config",
help="Path to the JSON file containing the strategy matrix configurations.",
required=False,
type=Path,
)
parser.add_argument('-a', '--all', help='Set to generate all configurations (generally used when merging a PR) or leave unset to generate a subset of configurations (generally used when committing to a PR).', action="store_true")
parser.add_argument('-c', '--config', help='Path to the JSON file containing the strategy matrix configurations.', required=False, type=Path)
args = parser.parse_args()
matrix = []
if args.config is None or args.config == "":
matrix += generate_strategy_matrix(
args.all, read_config(THIS_DIR / "linux.json")
)
matrix += generate_strategy_matrix(
args.all, read_config(THIS_DIR / "macos.json")
)
matrix += generate_strategy_matrix(
args.all, read_config(THIS_DIR / "windows.json")
)
if args.config is None or args.config == '':
matrix += generate_strategy_matrix(args.all, read_config(THIS_DIR / "linux.json"))
matrix += generate_strategy_matrix(args.all, read_config(THIS_DIR / "macos.json"))
matrix += generate_strategy_matrix(args.all, read_config(THIS_DIR / "windows.json"))
else:
matrix += generate_strategy_matrix(args.all, read_config(args.config))
# Generate the strategy matrix.
print(f"matrix={json.dumps({'include': matrix})}")
print(f'matrix={json.dumps({"include": matrix})}')

View File

@@ -15,91 +15,63 @@
"distro_version": "bookworm",
"compiler_name": "gcc",
"compiler_version": "12",
"image_sha": "0525eae"
"image_sha": "e1782cd"
},
{
"distro_name": "debian",
"distro_version": "bookworm",
"compiler_name": "gcc",
"compiler_version": "13",
"image_sha": "0525eae"
"image_sha": "e1782cd"
},
{
"distro_name": "debian",
"distro_version": "bookworm",
"compiler_name": "gcc",
"compiler_version": "14",
"image_sha": "0525eae"
"image_sha": "e1782cd"
},
{
"distro_name": "debian",
"distro_version": "bookworm",
"compiler_name": "gcc",
"compiler_version": "15",
"image_sha": "0525eae"
"image_sha": "e1782cd"
},
{
"distro_name": "debian",
"distro_version": "bookworm",
"compiler_name": "clang",
"compiler_version": "16",
"image_sha": "0525eae"
"image_sha": "e1782cd"
},
{
"distro_name": "debian",
"distro_version": "bookworm",
"compiler_name": "clang",
"compiler_version": "17",
"image_sha": "0525eae"
"image_sha": "e1782cd"
},
{
"distro_name": "debian",
"distro_version": "bookworm",
"compiler_name": "clang",
"compiler_version": "18",
"image_sha": "0525eae"
"image_sha": "e1782cd"
},
{
"distro_name": "debian",
"distro_version": "bookworm",
"compiler_name": "clang",
"compiler_version": "19",
"image_sha": "0525eae"
"image_sha": "e1782cd"
},
{
"distro_name": "debian",
"distro_version": "bookworm",
"compiler_name": "clang",
"compiler_version": "20",
"image_sha": "0525eae"
},
{
"distro_name": "debian",
"distro_version": "trixie",
"compiler_name": "gcc",
"compiler_version": "14",
"image_sha": "0525eae"
},
{
"distro_name": "debian",
"distro_version": "trixie",
"compiler_name": "gcc",
"compiler_version": "15",
"image_sha": "0525eae"
},
{
"distro_name": "debian",
"distro_version": "trixie",
"compiler_name": "clang",
"compiler_version": "20",
"image_sha": "0525eae"
},
{
"distro_name": "debian",
"distro_version": "trixie",
"compiler_name": "clang",
"compiler_version": "21",
"image_sha": "0525eae"
"image_sha": "e1782cd"
},
{
"distro_name": "rhel",

View File

@@ -122,7 +122,7 @@ jobs:
needs:
- should-run
- build-test
if: ${{ needs.should-run.outputs.go == 'true' && (startsWith(github.base_ref, 'release') || github.base_ref == 'master') }}
if: ${{ needs.should-run.outputs.go == 'true' && contains(fromJSON('["release", "master"]'), github.ref_name) }}
uses: ./.github/workflows/reusable-notify-clio.yml
secrets:
clio_notify_token: ${{ secrets.CLIO_NOTIFY_TOKEN }}

View File

@@ -14,7 +14,9 @@ on:
- "master"
paths:
# These paths are unique to `on-trigger.yml`.
- ".github/workflows/reusable-check-missing-commits.yml"
- ".github/workflows/on-trigger.yml"
- ".github/workflows/publish-docs.yml"
# Keep the paths below in sync with those in `on-pr.yml`.
- ".github/actions/build-deps/**"
@@ -61,6 +63,10 @@ defaults:
shell: bash
jobs:
check-missing-commits:
if: ${{ github.event_name == 'push' && github.ref_type == 'branch' && contains(fromJSON('["develop", "release"]'), github.ref_name) }}
uses: ./.github/workflows/reusable-check-missing-commits.yml
build-test:
uses: ./.github/workflows/reusable-build-test.yml
strategy:

View File

@@ -55,10 +55,6 @@ on:
description: "The Codecov token to use for uploading coverage reports."
required: true
defaults:
run:
shell: bash
jobs:
build-and-test:
name: ${{ inputs.config_name }}
@@ -69,9 +65,9 @@ jobs:
ENABLED_VOIDSTAR: ${{ contains(inputs.cmake_args, '-Dvoidstar=ON') }}
ENABLED_COVERAGE: ${{ contains(inputs.cmake_args, '-Dcoverage=ON') }}
steps:
- name: Cleanup workspace (macOS and Windows)
if: ${{ runner.os == 'macOS' || runner.os == 'Windows' }}
uses: XRPLF/actions/.github/actions/cleanup-workspace@01b244d2718865d427b499822fbd3f15e7197fcc
- name: Cleanup workspace
if: ${{ runner.os == 'macOS' }}
uses: XRPLF/actions/.github/actions/cleanup-workspace@3f044c7478548e3c32ff68980eeb36ece02b364e
- name: Checkout repository
uses: actions/checkout@08eba0b27e820071cde6df949e0beb9ba4906955 # v4.3.0
@@ -104,6 +100,7 @@ jobs:
log_verbosity: ${{ runner.os == 'Windows' && 'quiet' || 'verbose' }}
- name: Configure CMake
shell: bash
working-directory: ${{ inputs.build_dir }}
env:
BUILD_TYPE: ${{ inputs.build_type }}
@@ -117,6 +114,7 @@ jobs:
..
- name: Build the binary
shell: bash
working-directory: ${{ inputs.build_dir }}
env:
BUILD_NPROC: ${{ steps.nproc.outputs.nproc }}
@@ -130,7 +128,7 @@ jobs:
--target "${CMAKE_TARGET}"
- name: Upload rippled artifact (Linux)
if: ${{ github.repository_owner == 'XRPLF' && runner.os == 'Linux' }}
if: ${{ runner.os == 'Linux' }}
uses: actions/upload-artifact@ea165f8d65b6e75b540449e92b4886f43607fa02 # v4.6.2
env:
BUILD_DIR: ${{ inputs.build_dir }}
@@ -143,6 +141,7 @@ jobs:
- name: Check linking (Linux)
if: ${{ runner.os == 'Linux' }}
working-directory: ${{ inputs.build_dir }}
shell: bash
run: |
ldd ./rippled
if [ "$(ldd ./rippled | grep -E '(libstdc\+\+|libgcc)' | wc -l)" -eq 0 ]; then
@@ -155,6 +154,7 @@ jobs:
- name: Verify presence of instrumentation (Linux)
if: ${{ runner.os == 'Linux' && env.ENABLED_VOIDSTAR == 'true' }}
working-directory: ${{ inputs.build_dir }}
shell: bash
run: |
./rippled --version | grep libvoidstar
@@ -165,6 +165,7 @@ jobs:
env:
BUILD_TYPE: ${{ inputs.build_type }}
PARALLELISM: ${{ runner.os == 'Windows' && '1' || steps.nproc.outputs.nproc }}
shell: bash
run: |
ctest \
--output-on-failure \
@@ -174,6 +175,7 @@ jobs:
- name: Run the embedded tests
if: ${{ !inputs.build_only }}
working-directory: ${{ runner.os == 'Windows' && format('{0}/{1}', inputs.build_dir, inputs.build_type) || inputs.build_dir }}
shell: bash
env:
BUILD_NPROC: ${{ steps.nproc.outputs.nproc }}
run: |
@@ -181,6 +183,7 @@ jobs:
- name: Debug failure (Linux)
if: ${{ failure() && runner.os == 'Linux' && !inputs.build_only }}
shell: bash
run: |
echo "IPv4 local port range:"
cat /proc/sys/net/ipv4/ip_local_port_range
@@ -193,6 +196,7 @@ jobs:
env:
BUILD_NPROC: ${{ steps.nproc.outputs.nproc }}
BUILD_TYPE: ${{ inputs.build_type }}
shell: bash
run: |
cmake \
--build . \

View File

@@ -0,0 +1,62 @@
# This workflow checks that all commits in the "master" branch are also in the
# "release" and "develop" branches, and that all commits in the "release" branch
# are also in the "develop" branch.
name: Check for missing commits
# This workflow can only be triggered by other workflows.
on: workflow_call
concurrency:
group: ${{ github.workflow }}-${{ github.ref }}-missing-commits
cancel-in-progress: true
defaults:
run:
shell: bash
jobs:
check:
runs-on: ubuntu-latest
steps:
- name: Checkout repository
uses: actions/checkout@08eba0b27e820071cde6df949e0beb9ba4906955 # v4.3.0
with:
fetch-depth: 0
- name: Check for missing commits
env:
MESSAGE: |
If you are reading this, then the commits indicated above are missing
from the "develop" and/or "release" branch. Do a reverse-merge as soon
as possible. See CONTRIBUTING.md for instructions.
run: |
set -o pipefail
# Branches are ordered by how "canonical" they are. Every commit in one
# branch should be in all the branches behind it.
order=(master release develop)
branches=()
for branch in "${order[@]}"; do
# Check that the branches exist so that this job will work on forked
# repos, which don't necessarily have master and release branches.
echo "Checking if ${branch} exists."
if git ls-remote --exit-code --heads origin \
refs/heads/${branch} > /dev/null; then
branches+=(origin/${branch})
fi
done
prior=()
for branch in "${branches[@]}"; do
if [[ ${#prior[@]} -ne 0 ]]; then
echo "Checking ${prior[@]} for commits missing from ${branch}."
git log --oneline --no-merges "${prior[@]}" \
^$branch | tee -a "missing-commits.txt"
echo
fi
prior+=("${branch}")
done
if [[ $(cat missing-commits.txt | wc -l) -ne 0 ]]; then
echo "${MESSAGE}"
exit 1
fi

View File

@@ -18,10 +18,6 @@ on:
description: "The generated strategy matrix."
value: ${{ jobs.generate-matrix.outputs.matrix }}
defaults:
run:
shell: bash
jobs:
generate-matrix:
runs-on: ubuntu-latest

View File

@@ -40,10 +40,6 @@ concurrency:
group: ${{ github.workflow }}-${{ github.ref }}
cancel-in-progress: true
defaults:
run:
shell: bash
jobs:
# Generate the strategy matrix to be used by the following job.
generate-matrix:
@@ -62,9 +58,9 @@ jobs:
runs-on: ${{ matrix.architecture.runner }}
container: ${{ contains(matrix.architecture.platform, 'linux') && format('ghcr.io/xrplf/ci/{0}-{1}:{2}-{3}-sha-{4}', matrix.os.distro_name, matrix.os.distro_version, matrix.os.compiler_name, matrix.os.compiler_version, matrix.os.image_sha) || null }}
steps:
- name: Cleanup workspace (macOS and Windows)
if: ${{ runner.os == 'macOS' || runner.os == 'Windows' }}
uses: XRPLF/actions/.github/actions/cleanup-workspace@01b244d2718865d427b499822fbd3f15e7197fcc
- name: Cleanup workspace
if: ${{ runner.os == 'macOS' }}
uses: XRPLF/actions/.github/actions/cleanup-workspace@3f044c7478548e3c32ff68980eeb36ece02b364e
- name: Checkout repository
uses: actions/checkout@08eba0b27e820071cde6df949e0beb9ba4906955 # v4.3.0

View File

@@ -31,11 +31,6 @@ repos:
hooks:
- id: prettier
- repo: https://github.com/psf/black-pre-commit-mirror
rev: 25.11.0
hooks:
- id: black
exclude: |
(?x)^(
external/.*|

View File

@@ -88,13 +88,6 @@ These instructions assume a basic familiarity with Conan and CMake. If you are
unfamiliar with Conan, then please read [this crash course](./docs/build/conan.md) or the official
[Getting Started][3] walkthrough.
#### Conan lockfile
To achieve reproducible dependencies, we use a [Conan lockfile](https://docs.conan.io/2/tutorial/versioning/lockfiles.html),
which has to be updated every time dependencies change.
Please see the [instructions on how to regenerate the lockfile](conan/lockfile/README.md).
#### Default profile
We recommend that you import the provided `conan/profiles/default` profile:
@@ -145,14 +138,13 @@ cd external
git init
git remote add origin git@github.com:XRPLF/conan-center-index.git
git sparse-checkout init
git sparse-checkout set recipes/ed25519
git sparse-checkout add recipes/snappy
git sparse-checkout set recipes/snappy
git sparse-checkout add recipes/soci
git fetch origin master
git checkout master
conan export --version 2015.03 recipes/ed25519/all
conan export --version 1.1.10 recipes/snappy/all
conan export --version 4.0.3 recipes/soci/all
conan export --version 0.42.1 external/wasmi
rm -rf .git
```
@@ -164,8 +156,7 @@ the new recipe will be automatically pulled from the official Conan Center.
> [!NOTE]
> You might need to add `--lockfile=""` to your `conan install` command
> to avoid automatic use of the existing `conan.lock` file when you run
> `conan export` manually on your machine
> to avoid automatic use of the existing `conan.lock` file when you run `conan export` manually on your machine
### Conan profile tweaks
@@ -460,6 +451,33 @@ tools.build:cxxflags=['-DBOOST_ASIO_DISABLE_CONCEPTS']
The location of `rippled` binary in your build directory depends on your
CMake generator. Pass `--help` to see the rest of the command line options.
#### Conan lockfile
To achieve reproducible dependencies, we use [Conan lockfile](https://docs.conan.io/2/tutorial/versioning/lockfiles.html).
The `conan.lock` file in the repository contains a "snapshot" of the current dependencies.
It is implicitly used when running `conan` commands, you don't need to specify it.
You have to update this file every time you add a new dependency or change a revision or version of an existing dependency.
> [!NOTE]
> Conan uses local cache by default when creating a lockfile.
>
> To ensure, that lockfile creation works the same way on all developer machines, you should clear the local cache before creating a new lockfile.
To create a new lockfile, run the following commands in the repository root:
```bash
conan remove '*' --confirm
rm conan.lock
# This ensure that xrplf remote is the first to be consulted
conan remote add --force --index 0 xrplf https://conan.ripplex.io
conan lock create . -o '&:jemalloc=True' -o '&:rocksdb=True'
```
> [!NOTE]
> If some dependencies are exclusive for some OS, you may need to run the last command for them adding `--profile:all <PROFILE>`.
## Coverage report
The coverage report is intended for developers using compilers GCC

View File

@@ -97,6 +97,7 @@ set(SECP256K1_BUILD_CTIME_TESTS FALSE)
set(SECP256K1_BUILD_EXAMPLES FALSE)
add_subdirectory(external/secp256k1)
add_library(secp256k1::secp256k1 ALIAS secp256k1)
add_subdirectory(external/ed25519-donna)
add_subdirectory(external/antithesis-sdk)
find_package(gRPC REQUIRED)
find_package(lz4 REQUIRED)
@@ -116,9 +117,9 @@ if(rocksdb)
target_link_libraries(xrpl_libs INTERFACE RocksDB::rocksdb)
endif()
find_package(date REQUIRED)
find_package(ed25519 REQUIRED)
find_package(nudb REQUIRED)
find_package(date REQUIRED)
find_package(wasmi REQUIRED)
find_package(xxHash REQUIRED)
target_link_libraries(xrpl_libs INTERFACE

View File

@@ -1051,11 +1051,10 @@
# The online delete process checks periodically
# that rippled is still in sync with the network,
# and that the validated ledger is less than
# 'age_threshold_seconds' old, and that all
# recent ledgers are available. If not, then continue
# 'age_threshold_seconds' old. If not, then continue
# sleeping for this number of seconds and
# checking until healthy.
# Default is 1.
# Default is 5.
#
# Notes:
# The 'node_db' entry configures the primary, persistent storage.
@@ -1291,6 +1290,39 @@
# Example:
# owner_reserve = 2000000 # 2 XRP
#
# extension_compute_limit = <gas>
#
# The extension compute limit is the maximum amount of gas that can be
# consumed by a single transaction. The gas limit is used to prevent
# transactions from consuming too many resources.
#
# If this parameter is unspecified, rippled will use an internal
# default. Don't change this without understanding the consequences.
#
# Example:
# extension_compute_limit = 1000000 # 1 million gas
#
# extension_size_limit = <bytes>
#
# The extension size limit is the maximum size of a WASM extension in
# bytes. The size limit is used to prevent extensions from consuming
# too many resources.
#
# If this parameter is unspecified, rippled will use an internal
# default. Don't change this without understanding the consequences.
#
# Example:
# extension_size_limit = 100000 # 100 kb
#
# gas_price = <bytes>
#
# The gas price is the conversion between WASM gas and its price in drops.
#
# If this parameter is unspecified, rippled will use an internal
# default. Don't change this without understanding the consequences.
#
# Example:
# gas_price = 1000000 # 1 drop per gas
#-------------------------------------------------------------------------------
#
# 9. Misc Settings

View File

@@ -63,6 +63,7 @@ target_link_libraries(xrpl.imports.main
Xrpl::opts
Xrpl::syslibs
secp256k1::secp256k1
wasmi::wasmi
xrpl.libpb
xxHash::xxhash
$<$<BOOL:${voidstar}>:antithesis-sdk-cpp>

View File

@@ -1,61 +0,0 @@
{
"version": "0.5",
"requires": [
"zlib/1.3.1#b8bc2603263cf7eccbd6e17e66b0ed76%1756234269.497",
"xxhash/0.8.3#681d36a0a6111fc56e5e45ea182c19cc%1756234289.683",
"sqlite3/3.49.1#8631739a4c9b93bd3d6b753bac548a63%1756234266.869",
"soci/4.0.3#a9f8d773cd33e356b5879a4b0564f287%1756234262.318",
"snappy/1.1.10#968fef506ff261592ec30c574d4a7809%1756234314.246",
"rocksdb/10.5.1#4a197eca381a3e5ae8adf8cffa5aacd0%1762797952.535",
"re2/20230301#ca3b241baec15bd31ea9187150e0b333%1764175362.029",
"protobuf/3.21.12#44ee56c0a6eea0c19aeeaca680370b88%1764175361.456",
"openssl/3.5.4#a1d5835cc6ed5c5b8f3cd5b9b5d24205%1760106486.594",
"nudb/2.0.9#fb8dfd1a5557f5e0528114c2da17721e%1763150366.909",
"lz4/1.10.0#59fc63cac7f10fbe8e05c7e62c2f3504%1756234228.999",
"libiconv/1.17#1e65319e945f2d31941a9d28cc13c058%1756223727.64",
"libbacktrace/cci.20210118#a7691bfccd8caaf66309df196790a5a1%1756230911.03",
"libarchive/3.8.1#ffee18995c706e02bf96e7a2f7042e0d%1764175360.142",
"jemalloc/5.3.0#e951da9cf599e956cebc117880d2d9f8%1729241615.244",
"grpc/1.50.1#02291451d1e17200293a409410d1c4e1%1756234248.958",
"ed25519/2015.03#17c1f1910e769f368025267a53c23c13%1764259445.491",
"doctest/2.4.12#eb9fb352fb2fdfc8abb17ec270945165%1762797941.757",
"date/3.0.4#862e11e80030356b53c2c38599ceb32b%1763584497.32",
"c-ares/1.34.5#5581c2b62a608b40bb85d965ab3ec7c8%1764175359.429",
"bzip2/1.0.8#c470882369c2d95c5c77e970c0c7e321%1764175359.429",
"boost/1.88.0#8852c0b72ce8271fb8ff7c53456d4983%1756223752.326",
"abseil/20230802.1#90ba607d4ee8fb5fb157c3db540671fc%1764175359.429"
],
"build_requires": [
"zlib/1.3.1#b8bc2603263cf7eccbd6e17e66b0ed76%1756234269.497",
"strawberryperl/5.32.1.1#707032463aa0620fa17ec0d887f5fe41%1756234281.733",
"protobuf/3.21.12#44ee56c0a6eea0c19aeeaca680370b88%1764175361.456",
"nasm/2.16.01#31e26f2ee3c4346ecd347911bd126904%1756234232.901",
"msys2/cci.latest#5b73b10144f73cc5bfe0572ed9be39e1%1751977009.857",
"m4/1.4.19#70dc8bbb33e981d119d2acc0175cf381%1763158052.846",
"cmake/4.2.0#ae0a44f44a1ef9ab68fd4b3e9a1f8671%1764175359.44",
"cmake/3.31.10#313d16a1aa16bbdb2ca0792467214b76%1764175359.429",
"b2/5.3.3#107c15377719889654eb9a162a673975%1756234226.28",
"automake/1.16.5#b91b7c384c3deaa9d535be02da14d04f%1755524470.56",
"autoconf/2.71#51077f068e61700d65bb05541ea1e4b0%1731054366.86"
],
"python_requires": [],
"overrides": {
"protobuf/3.21.12": [
null,
"protobuf/3.21.12"
],
"lz4/1.9.4": [
"lz4/1.10.0"
],
"boost/1.83.0": [
"boost/1.88.0"
],
"sqlite3/3.44.2": [
"sqlite3/3.49.1"
],
"lz4/[>=1.9.4 <2]": [
"lz4/1.10.0#59fc63cac7f10fbe8e05c7e62c2f3504"
]
},
"config_requires": []
}

View File

@@ -1,12 +0,0 @@
# Conan lockfile
To achieve reproducible dependencies, we use a [Conan lockfile](https://docs.conan.io/2/tutorial/versioning/lockfiles.html).
The `conan.lock` file in the repository contains a "snapshot" of the current
dependencies. It is implicitly used when running `conan` commands, so you don't
need to specify it.
You have to update this file every time you add a new dependency or change a
revision or version of an existing dependency.
To update a lockfile, run from the repository root: `./conan/lockfile/regenerate.sh`

View File

@@ -1,8 +0,0 @@
[settings]
arch=x86_64
build_type=Release
compiler=gcc
compiler.cppstd=20
compiler.libcxx=libstdc++11
compiler.version=13
os=Linux

View File

@@ -1,8 +0,0 @@
[settings]
arch=armv8
build_type=Release
compiler=apple-clang
compiler.cppstd=20
compiler.libcxx=libc++
compiler.version=17.0
os=Macos

View File

@@ -1,36 +0,0 @@
#!/usr/bin/env bash
set -ex
TEMP_DIR=$(mktemp -d)
trap "rm -rf $TEMP_DIR" EXIT
echo "Using temporary CONAN_HOME: $TEMP_DIR"
# We use a temporary Conan home to avoid polluting the user's existing Conan
# configuration and to not use local cache (which leads to non-reproducible lockfiles).
export CONAN_HOME="$TEMP_DIR"
# Ensure that the xrplf remote is the first to be consulted, so any recipes we
# patched are used. We also add it there to not created huge diff when the
# official Conan Center Index is updated.
conan remote add --force --index 0 xrplf https://conan.ripplex.io
# Delete any existing lockfile.
rm -f conan.lock
# Create a new lockfile that is compatible with Linux, macOS, and Windows. The
# first create command will create a new lockfile, while the subsequent create
# commands will merge any additional dependencies into the created lockfile.
conan lock create . \
--options '&:jemalloc=True' \
--options '&:rocksdb=True' \
--profile:all=conan/lockfile/linux.profile
conan lock create . \
--options '&:jemalloc=True' \
--options '&:rocksdb=True' \
--profile:all=conan/lockfile/macos.profile
conan lock create . \
--options '&:jemalloc=True' \
--options '&:rocksdb=True' \
--profile:all=conan/lockfile/windows.profile

View File

@@ -1,9 +0,0 @@
[settings]
arch=x86_64
build_type=Release
compiler=msvc
compiler.cppstd=20
compiler.runtime=dynamic
compiler.runtime_type=Release
compiler.version=194
os=Windows

View File

@@ -1,156 +1,152 @@
import re
from conan import ConanFile, __version__ as conan_version
from conan.tools.cmake import CMake, CMakeToolchain, cmake_layout
from conan import ConanFile
from conan import __version__ as conan_version
import re
class Xrpl(ConanFile):
name = "xrpl"
name = 'xrpl'
license = "ISC"
author = "John Freeman <jfreeman@ripple.com>"
url = "https://github.com/xrplf/rippled"
description = "The XRP Ledger"
settings = "os", "compiler", "build_type", "arch"
license = 'ISC'
author = 'John Freeman <jfreeman@ripple.com>'
url = 'https://github.com/xrplf/rippled'
description = 'The XRP Ledger'
settings = 'os', 'compiler', 'build_type', 'arch'
options = {
"assertions": [True, False],
"coverage": [True, False],
"fPIC": [True, False],
"jemalloc": [True, False],
"rocksdb": [True, False],
"shared": [True, False],
"static": [True, False],
"tests": [True, False],
"unity": [True, False],
"xrpld": [True, False],
'assertions': [True, False],
'coverage': [True, False],
'fPIC': [True, False],
'jemalloc': [True, False],
'rocksdb': [True, False],
'shared': [True, False],
'static': [True, False],
'tests': [True, False],
'unity': [True, False],
'xrpld': [True, False],
}
requires = [
"ed25519/2015.03",
"grpc/1.50.1",
"libarchive/3.8.1",
"nudb/2.0.9",
"openssl/3.5.4",
"soci/4.0.3",
"zlib/1.3.1",
'grpc/1.50.1',
'libarchive/3.8.1',
'nudb/2.0.9',
'openssl/3.5.4',
'soci/4.0.3',
'wasmi/0.42.1',
'zlib/1.3.1',
]
test_requires = [
"doctest/2.4.12",
'doctest/2.4.12',
]
tool_requires = [
"protobuf/3.21.12",
'protobuf/3.21.12',
]
default_options = {
"assertions": False,
"coverage": False,
"fPIC": True,
"jemalloc": False,
"rocksdb": True,
"shared": False,
"static": True,
"tests": False,
"unity": False,
"xrpld": False,
"date/*:header_only": True,
"grpc/*:shared": False,
"grpc/*:secure": True,
"libarchive/*:shared": False,
"libarchive/*:with_acl": False,
"libarchive/*:with_bzip2": False,
"libarchive/*:with_cng": False,
"libarchive/*:with_expat": False,
"libarchive/*:with_iconv": False,
"libarchive/*:with_libxml2": False,
"libarchive/*:with_lz4": True,
"libarchive/*:with_lzma": False,
"libarchive/*:with_lzo": False,
"libarchive/*:with_nettle": False,
"libarchive/*:with_openssl": False,
"libarchive/*:with_pcreposix": False,
"libarchive/*:with_xattr": False,
"libarchive/*:with_zlib": False,
"lz4/*:shared": False,
"openssl/*:shared": False,
"protobuf/*:shared": False,
"protobuf/*:with_zlib": True,
"rocksdb/*:enable_sse": False,
"rocksdb/*:lite": False,
"rocksdb/*:shared": False,
"rocksdb/*:use_rtti": True,
"rocksdb/*:with_jemalloc": False,
"rocksdb/*:with_lz4": True,
"rocksdb/*:with_snappy": True,
"snappy/*:shared": False,
"soci/*:shared": False,
"soci/*:with_sqlite3": True,
"soci/*:with_boost": True,
"xxhash/*:shared": False,
'assertions': False,
'coverage': False,
'fPIC': True,
'jemalloc': False,
'rocksdb': True,
'shared': False,
'static': True,
'tests': False,
'unity': False,
'xrpld': False,
'date/*:header_only': True,
'grpc/*:shared': False,
'grpc/*:secure': True,
'libarchive/*:shared': False,
'libarchive/*:with_acl': False,
'libarchive/*:with_bzip2': False,
'libarchive/*:with_cng': False,
'libarchive/*:with_expat': False,
'libarchive/*:with_iconv': False,
'libarchive/*:with_libxml2': False,
'libarchive/*:with_lz4': True,
'libarchive/*:with_lzma': False,
'libarchive/*:with_lzo': False,
'libarchive/*:with_nettle': False,
'libarchive/*:with_openssl': False,
'libarchive/*:with_pcreposix': False,
'libarchive/*:with_xattr': False,
'libarchive/*:with_zlib': False,
'lz4/*:shared': False,
'openssl/*:shared': False,
'protobuf/*:shared': False,
'protobuf/*:with_zlib': True,
'rocksdb/*:enable_sse': False,
'rocksdb/*:lite': False,
'rocksdb/*:shared': False,
'rocksdb/*:use_rtti': True,
'rocksdb/*:with_jemalloc': False,
'rocksdb/*:with_lz4': True,
'rocksdb/*:with_snappy': True,
'snappy/*:shared': False,
'soci/*:shared': False,
'soci/*:with_sqlite3': True,
'soci/*:with_boost': True,
'xxhash/*:shared': False,
}
def set_version(self):
if self.version is None:
path = f"{self.recipe_folder}/src/libxrpl/protocol/BuildInfo.cpp"
regex = r"versionString\s?=\s?\"(.*)\""
with open(path, encoding="utf-8") as file:
path = f'{self.recipe_folder}/src/libxrpl/protocol/BuildInfo.cpp'
regex = r'versionString\s?=\s?\"(.*)\"'
with open(path, encoding='utf-8') as file:
matches = (re.search(regex, line) for line in file)
match = next(m for m in matches if m)
self.version = match.group(1)
def configure(self):
if self.settings.compiler == "apple-clang":
self.options["boost"].visibility = "global"
if self.settings.compiler in ["clang", "gcc"]:
self.options["boost"].without_cobalt = True
if self.settings.compiler == 'apple-clang':
self.options['boost'].visibility = 'global'
if self.settings.compiler in ['clang', 'gcc']:
self.options['boost'].without_cobalt = True
def requirements(self):
# Conan 2 requires transitive headers to be specified
transitive_headers_opt = (
{"transitive_headers": True} if conan_version.split(".")[0] == "2" else {}
)
self.requires("boost/1.88.0", force=True, **transitive_headers_opt)
self.requires("date/3.0.4", **transitive_headers_opt)
self.requires("lz4/1.10.0", force=True)
self.requires("protobuf/3.21.12", force=True)
self.requires("sqlite3/3.49.1", force=True)
transitive_headers_opt = {'transitive_headers': True} if conan_version.split('.')[0] == '2' else {}
self.requires('boost/1.88.0', force=True, **transitive_headers_opt)
self.requires('date/3.0.4', **transitive_headers_opt)
self.requires('lz4/1.10.0', force=True)
self.requires('protobuf/3.21.12', force=True)
self.requires('sqlite3/3.49.1', force=True)
if self.options.jemalloc:
self.requires("jemalloc/5.3.0")
self.requires('jemalloc/5.3.0')
if self.options.rocksdb:
self.requires("rocksdb/10.5.1")
self.requires("xxhash/0.8.3", **transitive_headers_opt)
self.requires('rocksdb/10.5.1')
self.requires('xxhash/0.8.3', **transitive_headers_opt)
exports_sources = (
"CMakeLists.txt",
"cfg/*",
"cmake/*",
"external/*",
"include/*",
"src/*",
'CMakeLists.txt',
'cfg/*',
'cmake/*',
'external/*',
'include/*',
'src/*',
)
def layout(self):
cmake_layout(self)
# Fix this setting to follow the default introduced in Conan 1.48
# to align with our build instructions.
self.folders.generators = "build/generators"
self.folders.generators = 'build/generators'
generators = "CMakeDeps"
generators = 'CMakeDeps'
def generate(self):
tc = CMakeToolchain(self)
tc.variables["tests"] = self.options.tests
tc.variables["assert"] = self.options.assertions
tc.variables["coverage"] = self.options.coverage
tc.variables["jemalloc"] = self.options.jemalloc
tc.variables["rocksdb"] = self.options.rocksdb
tc.variables["BUILD_SHARED_LIBS"] = self.options.shared
tc.variables["static"] = self.options.static
tc.variables["unity"] = self.options.unity
tc.variables["xrpld"] = self.options.xrpld
tc.variables['tests'] = self.options.tests
tc.variables['assert'] = self.options.assertions
tc.variables['coverage'] = self.options.coverage
tc.variables['jemalloc'] = self.options.jemalloc
tc.variables['rocksdb'] = self.options.rocksdb
tc.variables['BUILD_SHARED_LIBS'] = self.options.shared
tc.variables['static'] = self.options.static
tc.variables['unity'] = self.options.unity
tc.variables['xrpld'] = self.options.xrpld
tc.generate()
def build(self):
@@ -165,41 +161,41 @@ class Xrpl(ConanFile):
cmake.install()
def package_info(self):
libxrpl = self.cpp_info.components["libxrpl"]
libxrpl = self.cpp_info.components['libxrpl']
libxrpl.libs = [
"xrpl",
"xrpl.libpb",
"ed25519",
"secp256k1",
'xrpl',
'xrpl.libpb',
'ed25519',
'secp256k1',
]
# TODO: Fix the protobufs to include each other relative to
# `include/`, not `include/ripple/proto/`.
libxrpl.includedirs = ["include", "include/ripple/proto"]
libxrpl.includedirs = ['include', 'include/ripple/proto']
libxrpl.requires = [
"boost::headers",
"boost::chrono",
"boost::container",
"boost::coroutine",
"boost::date_time",
"boost::filesystem",
"boost::json",
"boost::program_options",
"boost::process",
"boost::regex",
"boost::system",
"boost::thread",
"date::date",
"ed25519::ed25519",
"grpc::grpc++",
"libarchive::libarchive",
"lz4::lz4",
"nudb::nudb",
"openssl::crypto",
"protobuf::libprotobuf",
"soci::soci",
"sqlite3::sqlite",
"xxhash::xxhash",
"zlib::zlib",
'boost::headers',
'boost::chrono',
'boost::container',
'boost::coroutine',
'boost::date_time',
'boost::filesystem',
'boost::json',
'boost::program_options',
'boost::process',
'boost::regex',
'boost::system',
'boost::thread',
'date::date',
'grpc::grpc++',
'libarchive::libarchive',
'lz4::lz4',
'nudb::nudb',
'openssl::crypto',
'protobuf::libprotobuf',
'soci::soci',
'sqlite3::sqlite',
'wasmi::wasmi',
'xxhash::xxhash',
'zlib::zlib',
]
if self.options.rocksdb:
libxrpl.requires.append("rocksdb::librocksdb")
libxrpl.requires.append('rocksdb::librocksdb')

1
external/README.md vendored
View File

@@ -5,4 +5,5 @@ The subdirectories in this directory contain external libraries used by rippled.
| Folder | Upstream | Description |
| :--------------- | :------------------------------------------------------------- | :------------------------------------------------------------------------------------------- |
| `antithesis-sdk` | [Project](https://github.com/antithesishq/antithesis-sdk-cpp/) | [Antithesis](https://antithesis.com/docs/using_antithesis/sdk/cpp/overview.html) SDK for C++ |
| `ed25519-donna` | [Project](https://github.com/floodyberry/ed25519-donna) | [Ed25519](http://ed25519.cr.yp.to/) digital signatures |
| `secp256k1` | [Project](https://github.com/bitcoin-core/secp256k1) | ECDSA digital signatures using the **secp256k1** curve |

51
external/ed25519-donna/CMakeLists.txt vendored Normal file
View File

@@ -0,0 +1,51 @@
cmake_minimum_required(VERSION 3.11)
project(ed25519
LANGUAGES C
)
if(PROJECT_NAME STREQUAL CMAKE_PROJECT_NAME)
set(CMAKE_ARCHIVE_OUTPUT_DIRECTORY "${PROJECT_BINARY_DIR}/output/$<CONFIG>/lib")
endif()
if(NOT TARGET OpenSSL::SSL)
find_package(OpenSSL)
endif()
add_library(ed25519 STATIC
ed25519.c
)
add_library(ed25519::ed25519 ALIAS ed25519)
target_link_libraries(ed25519 PUBLIC OpenSSL::SSL)
if(NOT MSVC)
target_compile_options(ed25519 PRIVATE -Wno-implicit-fallthrough)
endif()
include(GNUInstallDirs)
#[=========================================================[
NOTE for macos:
https://github.com/floodyberry/ed25519-donna/issues/29
our source for ed25519-donna-portable.h has been
patched to workaround this.
#]=========================================================]
target_include_directories(ed25519 PUBLIC
$<INSTALL_INTERFACE:${CMAKE_INSTALL_INCLUDEDIR}>
$<BUILD_INTERFACE:${CMAKE_CURRENT_SOURCE_DIR}>
)
install(
TARGETS ed25519
EXPORT ${PROJECT_NAME}-exports
ARCHIVE DESTINATION "${CMAKE_INSTALL_LIBDIR}"
)
install(
EXPORT ${PROJECT_NAME}-exports
DESTINATION "${CMAKE_INSTALL_LIBDIR}/cmake/${PROJECT_NAME}"
FILE ${PROJECT_NAME}-targets.cmake
NAMESPACE ${PROJECT_NAME}::
)
install(
FILES ed25519.h
DESTINATION "${CMAKE_INSTALL_INCLUDEDIR}"
)

183
external/ed25519-donna/README.md vendored Normal file
View File

@@ -0,0 +1,183 @@
[ed25519](http://ed25519.cr.yp.to/) is an
[Elliptic Curve Digital Signature Algortithm](http://en.wikipedia.org/wiki/Elliptic_Curve_DSA),
developed by [Dan Bernstein](http://cr.yp.to/djb.html),
[Niels Duif](http://www.nielsduif.nl/),
[Tanja Lange](http://hyperelliptic.org/tanja),
[Peter Schwabe](http://www.cryptojedi.org/users/peter/),
and [Bo-Yin Yang](http://www.iis.sinica.edu.tw/pages/byyang/).
This project provides performant, portable 32-bit & 64-bit implementations. All implementations are
of course constant time in regard to secret data.
#### Performance
SSE2 code and benches have not been updated yet. I will do those next.
Compilers versions are gcc 4.6.3, icc 13.1.1, clang 3.4-1~exp1.
Batch verification time (in parentheses) is the average time per 1 verification in a batch of 64 signatures. Counts are in thousands of cycles.
Note that SSE2 performance may be less impressive on AMD & older CPUs with slower SSE ops!
Visual Studio performance for `ge25519_scalarmult_base_niels` will lag behind a bit until optimized assembler versions of `ge25519_scalarmult_base_choose_niels`
are made.
##### E5200 @ 2.5ghz, march=core2
<table>
<thead><tr><th>Implementation</th><th>Sign</th><th>gcc</th><th>icc</th><th>clang</th><th>Verify</th><th>gcc</th><th>icc</th><th>clang</th></tr></thead>
<tbody>
<tr><td>ed25519-donna 64bit </td><td></td><td>100k</td><td>110k</td><td>137k</td><td></td><td>327k (144k) </td><td>342k (163k) </td><td>422k (194k) </td></tr>
<tr><td>amd64-64-24k </td><td></td><td>102k</td><td> </td><td> </td><td></td><td>355k (158k) </td><td> </td><td> </td></tr>
<tr><td>ed25519-donna-sse2 64bit</td><td></td><td>108k</td><td>111k</td><td>116k</td><td></td><td>353k (155k) </td><td>345k (154k) </td><td>360k (161k) </td></tr>
<tr><td>amd64-51-32k </td><td></td><td>116k</td><td> </td><td> </td><td></td><td>380k (175k) </td><td> </td><td> </td></tr>
<tr><td>ed25519-donna-sse2 32bit</td><td></td><td>147k</td><td>147k</td><td>156k</td><td></td><td>380k (178k) </td><td>381k (173k) </td><td>430k (192k) </td></tr>
<tr><td>ed25519-donna 32bit </td><td></td><td>597k</td><td>335k</td><td>380k</td><td></td><td>1693k (720k)</td><td>1052k (453k)</td><td>1141k (493k)</td></tr>
</tbody>
</table>
##### E3-1270 @ 3.4ghz, march=corei7-avx
<table>
<thead><tr><th>Implementation</th><th>Sign</th><th>gcc</th><th>icc</th><th>clang</th><th>Verify</th><th>gcc</th><th>icc</th><th>clang</th></tr></thead>
<tbody>
<tr><td>amd64-64-24k </td><td></td><td> 68k</td><td> </td><td> </td><td></td><td>225k (104k) </td><td> </td><td> </td></tr>
<tr><td>ed25519-donna 64bit </td><td></td><td> 71k</td><td> 75k</td><td> 90k</td><td></td><td>226k (105k) </td><td>226k (112k) </td><td>277k (125k) </td></tr>
<tr><td>amd64-51-32k </td><td></td><td> 72k</td><td> </td><td> </td><td></td><td>218k (107k) </td><td> </td><td> </td></tr>
<tr><td>ed25519-donna-sse2 64bit</td><td></td><td> 79k</td><td> 82k</td><td> 92k</td><td></td><td>252k (122k) </td><td>259k (124k) </td><td>282k (131k) </td></tr>
<tr><td>ed25519-donna-sse2 32bit</td><td></td><td> 94k</td><td> 95k</td><td>103k</td><td></td><td>296k (146k) </td><td>294k (137k) </td><td>306k (147k) </td></tr>
<tr><td>ed25519-donna 32bit </td><td></td><td>525k</td><td>299k</td><td>316k</td><td></td><td>1502k (645k)</td><td>959k (418k) </td><td>954k (416k) </td></tr>
</tbody>
</table>
#### Compilation
No configuration is needed **if you are compiling against OpenSSL**.
##### Hash Options
If you are not compiling aginst OpenSSL, you will need a hash function.
To use a simple/**slow** implementation of SHA-512, use `-DED25519_REFHASH` when compiling `ed25519.c`.
This should never be used except to verify the code works when OpenSSL is not available.
To use a custom hash function, use `-DED25519_CUSTOMHASH` when compiling `ed25519.c` and put your
custom hash implementation in ed25519-hash-custom.h. The hash must have a 512bit digest and implement
struct ed25519_hash_context;
void ed25519_hash_init(ed25519_hash_context *ctx);
void ed25519_hash_update(ed25519_hash_context *ctx, const uint8_t *in, size_t inlen);
void ed25519_hash_final(ed25519_hash_context *ctx, uint8_t *hash);
void ed25519_hash(uint8_t *hash, const uint8_t *in, size_t inlen);
##### Random Options
If you are not compiling aginst OpenSSL, you will need a random function for batch verification.
To use a custom random function, use `-DED25519_CUSTOMRANDOM` when compiling `ed25519.c` and put your
custom hash implementation in ed25519-randombytes-custom.h. The random function must implement:
void ED25519_FN(ed25519_randombytes_unsafe) (void *p, size_t len);
Use `-DED25519_TEST` when compiling `ed25519.c` to use a deterministically seeded, non-thread safe CSPRNG
variant of Bob Jenkins [ISAAC](http://en.wikipedia.org/wiki/ISAAC_%28cipher%29)
##### Minor options
Use `-DED25519_INLINE_ASM` to disable the use of custom assembler routines and instead rely on portable C.
Use `-DED25519_FORCE_32BIT` to force the use of 32 bit routines even when compiling for 64 bit.
##### 32-bit
gcc ed25519.c -m32 -O3 -c
##### 64-bit
gcc ed25519.c -m64 -O3 -c
##### SSE2
gcc ed25519.c -m32 -O3 -c -DED25519_SSE2 -msse2
gcc ed25519.c -m64 -O3 -c -DED25519_SSE2
clang and icc are also supported
#### Usage
To use the code, link against `ed25519.o -mbits` and:
#include "ed25519.h"
Add `-lssl -lcrypto` when using OpenSSL (Some systems don't need -lcrypto? It might be trial and error).
To generate a private key, simply generate 32 bytes from a secure
cryptographic source:
ed25519_secret_key sk;
randombytes(sk, sizeof(ed25519_secret_key));
To generate a public key:
ed25519_public_key pk;
ed25519_publickey(sk, pk);
To sign a message:
ed25519_signature sig;
ed25519_sign(message, message_len, sk, pk, signature);
To verify a signature:
int valid = ed25519_sign_open(message, message_len, pk, signature) == 0;
To batch verify signatures:
const unsigned char *mp[num] = {message1, message2..}
size_t ml[num] = {message_len1, message_len2..}
const unsigned char *pkp[num] = {pk1, pk2..}
const unsigned char *sigp[num] = {signature1, signature2..}
int valid[num]
/* valid[i] will be set to 1 if the individual signature was valid, 0 otherwise */
int all_valid = ed25519_sign_open_batch(mp, ml, pkp, sigp, num, valid) == 0;
**Note**: Batch verification uses `ed25519_randombytes_unsafe`, implemented in
`ed25519-randombytes.h`, to generate random scalars for the verification code.
The default implementation now uses OpenSSLs `RAND_bytes`.
Unlike the [SUPERCOP](http://bench.cr.yp.to/supercop.html) version, signatures are
not appended to messages, and there is no need for padding in front of messages.
Additionally, the secret key does not contain a copy of the public key, so it is
32 bytes instead of 64 bytes, and the public key must be provided to the signing
function.
##### Curve25519
Curve25519 public keys can be generated thanks to
[Adam Langley](http://www.imperialviolet.org/2013/05/10/fastercurve25519.html)
leveraging Ed25519's precomputed basepoint scalar multiplication.
curved25519_key sk, pk;
randombytes(sk, sizeof(curved25519_key));
curved25519_scalarmult_basepoint(pk, sk);
Note the name is curved25519, a combination of curve and ed25519, to prevent
name clashes. Performance is slightly faster than short message ed25519
signing due to both using the same code for the scalar multiply.
#### Testing
Fuzzing against reference implemenations is now available. See [fuzz/README](fuzz/README.md).
Building `ed25519.c` with `-DED25519_TEST` and linking with `test.c` will run basic sanity tests
and benchmark each function. `test-batch.c` has been incorporated in to `test.c`.
`test-internals.c` is standalone and built the same way as `ed25519.c`. It tests the math primitives
with extreme values to ensure they function correctly. SSE2 is now supported.
#### Papers
[Available on the Ed25519 website](http://ed25519.cr.yp.to/papers.html)

View File

@@ -0,0 +1,579 @@
/*
Public domain by Andrew M. <liquidsun@gmail.com>
See: https://github.com/floodyberry/curve25519-donna
32 bit integer curve25519 implementation
*/
typedef uint32_t bignum25519[10];
typedef uint32_t bignum25519align16[12];
static const uint32_t reduce_mask_25 = (1 << 25) - 1;
static const uint32_t reduce_mask_26 = (1 << 26) - 1;
/* out = in */
DONNA_INLINE static void
curve25519_copy(bignum25519 out, const bignum25519 in) {
out[0] = in[0];
out[1] = in[1];
out[2] = in[2];
out[3] = in[3];
out[4] = in[4];
out[5] = in[5];
out[6] = in[6];
out[7] = in[7];
out[8] = in[8];
out[9] = in[9];
}
/* out = a + b */
DONNA_INLINE static void
curve25519_add(bignum25519 out, const bignum25519 a, const bignum25519 b) {
out[0] = a[0] + b[0];
out[1] = a[1] + b[1];
out[2] = a[2] + b[2];
out[3] = a[3] + b[3];
out[4] = a[4] + b[4];
out[5] = a[5] + b[5];
out[6] = a[6] + b[6];
out[7] = a[7] + b[7];
out[8] = a[8] + b[8];
out[9] = a[9] + b[9];
}
DONNA_INLINE static void
curve25519_add_after_basic(bignum25519 out, const bignum25519 a, const bignum25519 b) {
uint32_t c;
out[0] = a[0] + b[0] ; c = (out[0] >> 26); out[0] &= reduce_mask_26;
out[1] = a[1] + b[1] + c; c = (out[1] >> 25); out[1] &= reduce_mask_25;
out[2] = a[2] + b[2] + c; c = (out[2] >> 26); out[2] &= reduce_mask_26;
out[3] = a[3] + b[3] + c; c = (out[3] >> 25); out[3] &= reduce_mask_25;
out[4] = a[4] + b[4] + c; c = (out[4] >> 26); out[4] &= reduce_mask_26;
out[5] = a[5] + b[5] + c; c = (out[5] >> 25); out[5] &= reduce_mask_25;
out[6] = a[6] + b[6] + c; c = (out[6] >> 26); out[6] &= reduce_mask_26;
out[7] = a[7] + b[7] + c; c = (out[7] >> 25); out[7] &= reduce_mask_25;
out[8] = a[8] + b[8] + c; c = (out[8] >> 26); out[8] &= reduce_mask_26;
out[9] = a[9] + b[9] + c; c = (out[9] >> 25); out[9] &= reduce_mask_25;
out[0] += 19 * c;
}
DONNA_INLINE static void
curve25519_add_reduce(bignum25519 out, const bignum25519 a, const bignum25519 b) {
uint32_t c;
out[0] = a[0] + b[0] ; c = (out[0] >> 26); out[0] &= reduce_mask_26;
out[1] = a[1] + b[1] + c; c = (out[1] >> 25); out[1] &= reduce_mask_25;
out[2] = a[2] + b[2] + c; c = (out[2] >> 26); out[2] &= reduce_mask_26;
out[3] = a[3] + b[3] + c; c = (out[3] >> 25); out[3] &= reduce_mask_25;
out[4] = a[4] + b[4] + c; c = (out[4] >> 26); out[4] &= reduce_mask_26;
out[5] = a[5] + b[5] + c; c = (out[5] >> 25); out[5] &= reduce_mask_25;
out[6] = a[6] + b[6] + c; c = (out[6] >> 26); out[6] &= reduce_mask_26;
out[7] = a[7] + b[7] + c; c = (out[7] >> 25); out[7] &= reduce_mask_25;
out[8] = a[8] + b[8] + c; c = (out[8] >> 26); out[8] &= reduce_mask_26;
out[9] = a[9] + b[9] + c; c = (out[9] >> 25); out[9] &= reduce_mask_25;
out[0] += 19 * c;
}
/* multiples of p */
static const uint32_t twoP0 = 0x07ffffda;
static const uint32_t twoP13579 = 0x03fffffe;
static const uint32_t twoP2468 = 0x07fffffe;
static const uint32_t fourP0 = 0x0fffffb4;
static const uint32_t fourP13579 = 0x07fffffc;
static const uint32_t fourP2468 = 0x0ffffffc;
/* out = a - b */
DONNA_INLINE static void
curve25519_sub(bignum25519 out, const bignum25519 a, const bignum25519 b) {
uint32_t c;
out[0] = twoP0 + a[0] - b[0] ; c = (out[0] >> 26); out[0] &= reduce_mask_26;
out[1] = twoP13579 + a[1] - b[1] + c; c = (out[1] >> 25); out[1] &= reduce_mask_25;
out[2] = twoP2468 + a[2] - b[2] + c; c = (out[2] >> 26); out[2] &= reduce_mask_26;
out[3] = twoP13579 + a[3] - b[3] + c; c = (out[3] >> 25); out[3] &= reduce_mask_25;
out[4] = twoP2468 + a[4] - b[4] + c;
out[5] = twoP13579 + a[5] - b[5] ;
out[6] = twoP2468 + a[6] - b[6] ;
out[7] = twoP13579 + a[7] - b[7] ;
out[8] = twoP2468 + a[8] - b[8] ;
out[9] = twoP13579 + a[9] - b[9] ;
}
/* out = a - b, where a is the result of a basic op (add,sub) */
DONNA_INLINE static void
curve25519_sub_after_basic(bignum25519 out, const bignum25519 a, const bignum25519 b) {
uint32_t c;
out[0] = fourP0 + a[0] - b[0] ; c = (out[0] >> 26); out[0] &= reduce_mask_26;
out[1] = fourP13579 + a[1] - b[1] + c; c = (out[1] >> 25); out[1] &= reduce_mask_25;
out[2] = fourP2468 + a[2] - b[2] + c; c = (out[2] >> 26); out[2] &= reduce_mask_26;
out[3] = fourP13579 + a[3] - b[3] + c; c = (out[3] >> 25); out[3] &= reduce_mask_25;
out[4] = fourP2468 + a[4] - b[4] + c; c = (out[4] >> 26); out[4] &= reduce_mask_26;
out[5] = fourP13579 + a[5] - b[5] + c; c = (out[5] >> 25); out[5] &= reduce_mask_25;
out[6] = fourP2468 + a[6] - b[6] + c; c = (out[6] >> 26); out[6] &= reduce_mask_26;
out[7] = fourP13579 + a[7] - b[7] + c; c = (out[7] >> 25); out[7] &= reduce_mask_25;
out[8] = fourP2468 + a[8] - b[8] + c; c = (out[8] >> 26); out[8] &= reduce_mask_26;
out[9] = fourP13579 + a[9] - b[9] + c; c = (out[9] >> 25); out[9] &= reduce_mask_25;
out[0] += 19 * c;
}
DONNA_INLINE static void
curve25519_sub_reduce(bignum25519 out, const bignum25519 a, const bignum25519 b) {
uint32_t c;
out[0] = fourP0 + a[0] - b[0] ; c = (out[0] >> 26); out[0] &= reduce_mask_26;
out[1] = fourP13579 + a[1] - b[1] + c; c = (out[1] >> 25); out[1] &= reduce_mask_25;
out[2] = fourP2468 + a[2] - b[2] + c; c = (out[2] >> 26); out[2] &= reduce_mask_26;
out[3] = fourP13579 + a[3] - b[3] + c; c = (out[3] >> 25); out[3] &= reduce_mask_25;
out[4] = fourP2468 + a[4] - b[4] + c; c = (out[4] >> 26); out[4] &= reduce_mask_26;
out[5] = fourP13579 + a[5] - b[5] + c; c = (out[5] >> 25); out[5] &= reduce_mask_25;
out[6] = fourP2468 + a[6] - b[6] + c; c = (out[6] >> 26); out[6] &= reduce_mask_26;
out[7] = fourP13579 + a[7] - b[7] + c; c = (out[7] >> 25); out[7] &= reduce_mask_25;
out[8] = fourP2468 + a[8] - b[8] + c; c = (out[8] >> 26); out[8] &= reduce_mask_26;
out[9] = fourP13579 + a[9] - b[9] + c; c = (out[9] >> 25); out[9] &= reduce_mask_25;
out[0] += 19 * c;
}
/* out = -a */
DONNA_INLINE static void
curve25519_neg(bignum25519 out, const bignum25519 a) {
uint32_t c;
out[0] = twoP0 - a[0] ; c = (out[0] >> 26); out[0] &= reduce_mask_26;
out[1] = twoP13579 - a[1] + c; c = (out[1] >> 25); out[1] &= reduce_mask_25;
out[2] = twoP2468 - a[2] + c; c = (out[2] >> 26); out[2] &= reduce_mask_26;
out[3] = twoP13579 - a[3] + c; c = (out[3] >> 25); out[3] &= reduce_mask_25;
out[4] = twoP2468 - a[4] + c; c = (out[4] >> 26); out[4] &= reduce_mask_26;
out[5] = twoP13579 - a[5] + c; c = (out[5] >> 25); out[5] &= reduce_mask_25;
out[6] = twoP2468 - a[6] + c; c = (out[6] >> 26); out[6] &= reduce_mask_26;
out[7] = twoP13579 - a[7] + c; c = (out[7] >> 25); out[7] &= reduce_mask_25;
out[8] = twoP2468 - a[8] + c; c = (out[8] >> 26); out[8] &= reduce_mask_26;
out[9] = twoP13579 - a[9] + c; c = (out[9] >> 25); out[9] &= reduce_mask_25;
out[0] += 19 * c;
}
/* out = a * b */
#define curve25519_mul_noinline curve25519_mul
static void
curve25519_mul(bignum25519 out, const bignum25519 a, const bignum25519 b) {
uint32_t r0,r1,r2,r3,r4,r5,r6,r7,r8,r9;
uint32_t s0,s1,s2,s3,s4,s5,s6,s7,s8,s9;
uint64_t m0,m1,m2,m3,m4,m5,m6,m7,m8,m9,c;
uint32_t p;
r0 = b[0];
r1 = b[1];
r2 = b[2];
r3 = b[3];
r4 = b[4];
r5 = b[5];
r6 = b[6];
r7 = b[7];
r8 = b[8];
r9 = b[9];
s0 = a[0];
s1 = a[1];
s2 = a[2];
s3 = a[3];
s4 = a[4];
s5 = a[5];
s6 = a[6];
s7 = a[7];
s8 = a[8];
s9 = a[9];
m1 = mul32x32_64(r0, s1) + mul32x32_64(r1, s0);
m3 = mul32x32_64(r0, s3) + mul32x32_64(r1, s2) + mul32x32_64(r2, s1) + mul32x32_64(r3, s0);
m5 = mul32x32_64(r0, s5) + mul32x32_64(r1, s4) + mul32x32_64(r2, s3) + mul32x32_64(r3, s2) + mul32x32_64(r4, s1) + mul32x32_64(r5, s0);
m7 = mul32x32_64(r0, s7) + mul32x32_64(r1, s6) + mul32x32_64(r2, s5) + mul32x32_64(r3, s4) + mul32x32_64(r4, s3) + mul32x32_64(r5, s2) + mul32x32_64(r6, s1) + mul32x32_64(r7, s0);
m9 = mul32x32_64(r0, s9) + mul32x32_64(r1, s8) + mul32x32_64(r2, s7) + mul32x32_64(r3, s6) + mul32x32_64(r4, s5) + mul32x32_64(r5, s4) + mul32x32_64(r6, s3) + mul32x32_64(r7, s2) + mul32x32_64(r8, s1) + mul32x32_64(r9, s0);
r1 *= 2;
r3 *= 2;
r5 *= 2;
r7 *= 2;
m0 = mul32x32_64(r0, s0);
m2 = mul32x32_64(r0, s2) + mul32x32_64(r1, s1) + mul32x32_64(r2, s0);
m4 = mul32x32_64(r0, s4) + mul32x32_64(r1, s3) + mul32x32_64(r2, s2) + mul32x32_64(r3, s1) + mul32x32_64(r4, s0);
m6 = mul32x32_64(r0, s6) + mul32x32_64(r1, s5) + mul32x32_64(r2, s4) + mul32x32_64(r3, s3) + mul32x32_64(r4, s2) + mul32x32_64(r5, s1) + mul32x32_64(r6, s0);
m8 = mul32x32_64(r0, s8) + mul32x32_64(r1, s7) + mul32x32_64(r2, s6) + mul32x32_64(r3, s5) + mul32x32_64(r4, s4) + mul32x32_64(r5, s3) + mul32x32_64(r6, s2) + mul32x32_64(r7, s1) + mul32x32_64(r8, s0);
r1 *= 19;
r2 *= 19;
r3 = (r3 / 2) * 19;
r4 *= 19;
r5 = (r5 / 2) * 19;
r6 *= 19;
r7 = (r7 / 2) * 19;
r8 *= 19;
r9 *= 19;
m1 += (mul32x32_64(r9, s2) + mul32x32_64(r8, s3) + mul32x32_64(r7, s4) + mul32x32_64(r6, s5) + mul32x32_64(r5, s6) + mul32x32_64(r4, s7) + mul32x32_64(r3, s8) + mul32x32_64(r2, s9));
m3 += (mul32x32_64(r9, s4) + mul32x32_64(r8, s5) + mul32x32_64(r7, s6) + mul32x32_64(r6, s7) + mul32x32_64(r5, s8) + mul32x32_64(r4, s9));
m5 += (mul32x32_64(r9, s6) + mul32x32_64(r8, s7) + mul32x32_64(r7, s8) + mul32x32_64(r6, s9));
m7 += (mul32x32_64(r9, s8) + mul32x32_64(r8, s9));
r3 *= 2;
r5 *= 2;
r7 *= 2;
r9 *= 2;
m0 += (mul32x32_64(r9, s1) + mul32x32_64(r8, s2) + mul32x32_64(r7, s3) + mul32x32_64(r6, s4) + mul32x32_64(r5, s5) + mul32x32_64(r4, s6) + mul32x32_64(r3, s7) + mul32x32_64(r2, s8) + mul32x32_64(r1, s9));
m2 += (mul32x32_64(r9, s3) + mul32x32_64(r8, s4) + mul32x32_64(r7, s5) + mul32x32_64(r6, s6) + mul32x32_64(r5, s7) + mul32x32_64(r4, s8) + mul32x32_64(r3, s9));
m4 += (mul32x32_64(r9, s5) + mul32x32_64(r8, s6) + mul32x32_64(r7, s7) + mul32x32_64(r6, s8) + mul32x32_64(r5, s9));
m6 += (mul32x32_64(r9, s7) + mul32x32_64(r8, s8) + mul32x32_64(r7, s9));
m8 += (mul32x32_64(r9, s9));
r0 = (uint32_t)m0 & reduce_mask_26; c = (m0 >> 26);
m1 += c; r1 = (uint32_t)m1 & reduce_mask_25; c = (m1 >> 25);
m2 += c; r2 = (uint32_t)m2 & reduce_mask_26; c = (m2 >> 26);
m3 += c; r3 = (uint32_t)m3 & reduce_mask_25; c = (m3 >> 25);
m4 += c; r4 = (uint32_t)m4 & reduce_mask_26; c = (m4 >> 26);
m5 += c; r5 = (uint32_t)m5 & reduce_mask_25; c = (m5 >> 25);
m6 += c; r6 = (uint32_t)m6 & reduce_mask_26; c = (m6 >> 26);
m7 += c; r7 = (uint32_t)m7 & reduce_mask_25; c = (m7 >> 25);
m8 += c; r8 = (uint32_t)m8 & reduce_mask_26; c = (m8 >> 26);
m9 += c; r9 = (uint32_t)m9 & reduce_mask_25; p = (uint32_t)(m9 >> 25);
m0 = r0 + mul32x32_64(p,19); r0 = (uint32_t)m0 & reduce_mask_26; p = (uint32_t)(m0 >> 26);
r1 += p;
out[0] = r0;
out[1] = r1;
out[2] = r2;
out[3] = r3;
out[4] = r4;
out[5] = r5;
out[6] = r6;
out[7] = r7;
out[8] = r8;
out[9] = r9;
}
/* out = in*in */
static void
curve25519_square(bignum25519 out, const bignum25519 in) {
uint32_t r0,r1,r2,r3,r4,r5,r6,r7,r8,r9;
uint32_t d6,d7,d8,d9;
uint64_t m0,m1,m2,m3,m4,m5,m6,m7,m8,m9,c;
uint32_t p;
r0 = in[0];
r1 = in[1];
r2 = in[2];
r3 = in[3];
r4 = in[4];
r5 = in[5];
r6 = in[6];
r7 = in[7];
r8 = in[8];
r9 = in[9];
m0 = mul32x32_64(r0, r0);
r0 *= 2;
m1 = mul32x32_64(r0, r1);
m2 = mul32x32_64(r0, r2) + mul32x32_64(r1, r1 * 2);
r1 *= 2;
m3 = mul32x32_64(r0, r3) + mul32x32_64(r1, r2 );
m4 = mul32x32_64(r0, r4) + mul32x32_64(r1, r3 * 2) + mul32x32_64(r2, r2);
r2 *= 2;
m5 = mul32x32_64(r0, r5) + mul32x32_64(r1, r4 ) + mul32x32_64(r2, r3);
m6 = mul32x32_64(r0, r6) + mul32x32_64(r1, r5 * 2) + mul32x32_64(r2, r4) + mul32x32_64(r3, r3 * 2);
r3 *= 2;
m7 = mul32x32_64(r0, r7) + mul32x32_64(r1, r6 ) + mul32x32_64(r2, r5) + mul32x32_64(r3, r4 );
m8 = mul32x32_64(r0, r8) + mul32x32_64(r1, r7 * 2) + mul32x32_64(r2, r6) + mul32x32_64(r3, r5 * 2) + mul32x32_64(r4, r4 );
m9 = mul32x32_64(r0, r9) + mul32x32_64(r1, r8 ) + mul32x32_64(r2, r7) + mul32x32_64(r3, r6 ) + mul32x32_64(r4, r5 * 2);
d6 = r6 * 19;
d7 = r7 * 2 * 19;
d8 = r8 * 19;
d9 = r9 * 2 * 19;
m0 += (mul32x32_64(d9, r1 ) + mul32x32_64(d8, r2 ) + mul32x32_64(d7, r3 ) + mul32x32_64(d6, r4 * 2) + mul32x32_64(r5, r5 * 2 * 19));
m1 += (mul32x32_64(d9, r2 / 2) + mul32x32_64(d8, r3 ) + mul32x32_64(d7, r4 ) + mul32x32_64(d6, r5 * 2));
m2 += (mul32x32_64(d9, r3 ) + mul32x32_64(d8, r4 * 2) + mul32x32_64(d7, r5 * 2) + mul32x32_64(d6, r6 ));
m3 += (mul32x32_64(d9, r4 ) + mul32x32_64(d8, r5 * 2) + mul32x32_64(d7, r6 ));
m4 += (mul32x32_64(d9, r5 * 2) + mul32x32_64(d8, r6 * 2) + mul32x32_64(d7, r7 ));
m5 += (mul32x32_64(d9, r6 ) + mul32x32_64(d8, r7 * 2));
m6 += (mul32x32_64(d9, r7 * 2) + mul32x32_64(d8, r8 ));
m7 += (mul32x32_64(d9, r8 ));
m8 += (mul32x32_64(d9, r9 ));
r0 = (uint32_t)m0 & reduce_mask_26; c = (m0 >> 26);
m1 += c; r1 = (uint32_t)m1 & reduce_mask_25; c = (m1 >> 25);
m2 += c; r2 = (uint32_t)m2 & reduce_mask_26; c = (m2 >> 26);
m3 += c; r3 = (uint32_t)m3 & reduce_mask_25; c = (m3 >> 25);
m4 += c; r4 = (uint32_t)m4 & reduce_mask_26; c = (m4 >> 26);
m5 += c; r5 = (uint32_t)m5 & reduce_mask_25; c = (m5 >> 25);
m6 += c; r6 = (uint32_t)m6 & reduce_mask_26; c = (m6 >> 26);
m7 += c; r7 = (uint32_t)m7 & reduce_mask_25; c = (m7 >> 25);
m8 += c; r8 = (uint32_t)m8 & reduce_mask_26; c = (m8 >> 26);
m9 += c; r9 = (uint32_t)m9 & reduce_mask_25; p = (uint32_t)(m9 >> 25);
m0 = r0 + mul32x32_64(p,19); r0 = (uint32_t)m0 & reduce_mask_26; p = (uint32_t)(m0 >> 26);
r1 += p;
out[0] = r0;
out[1] = r1;
out[2] = r2;
out[3] = r3;
out[4] = r4;
out[5] = r5;
out[6] = r6;
out[7] = r7;
out[8] = r8;
out[9] = r9;
}
/* out = in ^ (2 * count) */
static void
curve25519_square_times(bignum25519 out, const bignum25519 in, int count) {
uint32_t r0,r1,r2,r3,r4,r5,r6,r7,r8,r9;
uint32_t d6,d7,d8,d9;
uint64_t m0,m1,m2,m3,m4,m5,m6,m7,m8,m9,c;
uint32_t p;
r0 = in[0];
r1 = in[1];
r2 = in[2];
r3 = in[3];
r4 = in[4];
r5 = in[5];
r6 = in[6];
r7 = in[7];
r8 = in[8];
r9 = in[9];
do {
m0 = mul32x32_64(r0, r0);
r0 *= 2;
m1 = mul32x32_64(r0, r1);
m2 = mul32x32_64(r0, r2) + mul32x32_64(r1, r1 * 2);
r1 *= 2;
m3 = mul32x32_64(r0, r3) + mul32x32_64(r1, r2 );
m4 = mul32x32_64(r0, r4) + mul32x32_64(r1, r3 * 2) + mul32x32_64(r2, r2);
r2 *= 2;
m5 = mul32x32_64(r0, r5) + mul32x32_64(r1, r4 ) + mul32x32_64(r2, r3);
m6 = mul32x32_64(r0, r6) + mul32x32_64(r1, r5 * 2) + mul32x32_64(r2, r4) + mul32x32_64(r3, r3 * 2);
r3 *= 2;
m7 = mul32x32_64(r0, r7) + mul32x32_64(r1, r6 ) + mul32x32_64(r2, r5) + mul32x32_64(r3, r4 );
m8 = mul32x32_64(r0, r8) + mul32x32_64(r1, r7 * 2) + mul32x32_64(r2, r6) + mul32x32_64(r3, r5 * 2) + mul32x32_64(r4, r4 );
m9 = mul32x32_64(r0, r9) + mul32x32_64(r1, r8 ) + mul32x32_64(r2, r7) + mul32x32_64(r3, r6 ) + mul32x32_64(r4, r5 * 2);
d6 = r6 * 19;
d7 = r7 * 2 * 19;
d8 = r8 * 19;
d9 = r9 * 2 * 19;
m0 += (mul32x32_64(d9, r1 ) + mul32x32_64(d8, r2 ) + mul32x32_64(d7, r3 ) + mul32x32_64(d6, r4 * 2) + mul32x32_64(r5, r5 * 2 * 19));
m1 += (mul32x32_64(d9, r2 / 2) + mul32x32_64(d8, r3 ) + mul32x32_64(d7, r4 ) + mul32x32_64(d6, r5 * 2));
m2 += (mul32x32_64(d9, r3 ) + mul32x32_64(d8, r4 * 2) + mul32x32_64(d7, r5 * 2) + mul32x32_64(d6, r6 ));
m3 += (mul32x32_64(d9, r4 ) + mul32x32_64(d8, r5 * 2) + mul32x32_64(d7, r6 ));
m4 += (mul32x32_64(d9, r5 * 2) + mul32x32_64(d8, r6 * 2) + mul32x32_64(d7, r7 ));
m5 += (mul32x32_64(d9, r6 ) + mul32x32_64(d8, r7 * 2));
m6 += (mul32x32_64(d9, r7 * 2) + mul32x32_64(d8, r8 ));
m7 += (mul32x32_64(d9, r8 ));
m8 += (mul32x32_64(d9, r9 ));
r0 = (uint32_t)m0 & reduce_mask_26; c = (m0 >> 26);
m1 += c; r1 = (uint32_t)m1 & reduce_mask_25; c = (m1 >> 25);
m2 += c; r2 = (uint32_t)m2 & reduce_mask_26; c = (m2 >> 26);
m3 += c; r3 = (uint32_t)m3 & reduce_mask_25; c = (m3 >> 25);
m4 += c; r4 = (uint32_t)m4 & reduce_mask_26; c = (m4 >> 26);
m5 += c; r5 = (uint32_t)m5 & reduce_mask_25; c = (m5 >> 25);
m6 += c; r6 = (uint32_t)m6 & reduce_mask_26; c = (m6 >> 26);
m7 += c; r7 = (uint32_t)m7 & reduce_mask_25; c = (m7 >> 25);
m8 += c; r8 = (uint32_t)m8 & reduce_mask_26; c = (m8 >> 26);
m9 += c; r9 = (uint32_t)m9 & reduce_mask_25; p = (uint32_t)(m9 >> 25);
m0 = r0 + mul32x32_64(p,19); r0 = (uint32_t)m0 & reduce_mask_26; p = (uint32_t)(m0 >> 26);
r1 += p;
} while (--count);
out[0] = r0;
out[1] = r1;
out[2] = r2;
out[3] = r3;
out[4] = r4;
out[5] = r5;
out[6] = r6;
out[7] = r7;
out[8] = r8;
out[9] = r9;
}
/* Take a little-endian, 32-byte number and expand it into polynomial form */
static void
curve25519_expand(bignum25519 out, const unsigned char in[32]) {
static const union { uint8_t b[2]; uint16_t s; } endian_check = {{1,0}};
uint32_t x0,x1,x2,x3,x4,x5,x6,x7;
if (endian_check.s == 1) {
x0 = *(uint32_t *)(in + 0);
x1 = *(uint32_t *)(in + 4);
x2 = *(uint32_t *)(in + 8);
x3 = *(uint32_t *)(in + 12);
x4 = *(uint32_t *)(in + 16);
x5 = *(uint32_t *)(in + 20);
x6 = *(uint32_t *)(in + 24);
x7 = *(uint32_t *)(in + 28);
} else {
#define F(s) \
((((uint32_t)in[s + 0]) ) | \
(((uint32_t)in[s + 1]) << 8) | \
(((uint32_t)in[s + 2]) << 16) | \
(((uint32_t)in[s + 3]) << 24))
x0 = F(0);
x1 = F(4);
x2 = F(8);
x3 = F(12);
x4 = F(16);
x5 = F(20);
x6 = F(24);
x7 = F(28);
#undef F
}
out[0] = ( x0 ) & 0x3ffffff;
out[1] = ((((uint64_t)x1 << 32) | x0) >> 26) & 0x1ffffff;
out[2] = ((((uint64_t)x2 << 32) | x1) >> 19) & 0x3ffffff;
out[3] = ((((uint64_t)x3 << 32) | x2) >> 13) & 0x1ffffff;
out[4] = (( x3) >> 6) & 0x3ffffff;
out[5] = ( x4 ) & 0x1ffffff;
out[6] = ((((uint64_t)x5 << 32) | x4) >> 25) & 0x3ffffff;
out[7] = ((((uint64_t)x6 << 32) | x5) >> 19) & 0x1ffffff;
out[8] = ((((uint64_t)x7 << 32) | x6) >> 12) & 0x3ffffff;
out[9] = (( x7) >> 6) & 0x1ffffff;
}
/* Take a fully reduced polynomial form number and contract it into a
* little-endian, 32-byte array
*/
static void
curve25519_contract(unsigned char out[32], const bignum25519 in) {
bignum25519 f;
curve25519_copy(f, in);
#define carry_pass() \
f[1] += f[0] >> 26; f[0] &= reduce_mask_26; \
f[2] += f[1] >> 25; f[1] &= reduce_mask_25; \
f[3] += f[2] >> 26; f[2] &= reduce_mask_26; \
f[4] += f[3] >> 25; f[3] &= reduce_mask_25; \
f[5] += f[4] >> 26; f[4] &= reduce_mask_26; \
f[6] += f[5] >> 25; f[5] &= reduce_mask_25; \
f[7] += f[6] >> 26; f[6] &= reduce_mask_26; \
f[8] += f[7] >> 25; f[7] &= reduce_mask_25; \
f[9] += f[8] >> 26; f[8] &= reduce_mask_26;
#define carry_pass_full() \
carry_pass() \
f[0] += 19 * (f[9] >> 25); f[9] &= reduce_mask_25;
#define carry_pass_final() \
carry_pass() \
f[9] &= reduce_mask_25;
carry_pass_full()
carry_pass_full()
/* now t is between 0 and 2^255-1, properly carried. */
/* case 1: between 0 and 2^255-20. case 2: between 2^255-19 and 2^255-1. */
f[0] += 19;
carry_pass_full()
/* now between 19 and 2^255-1 in both cases, and offset by 19. */
f[0] += (reduce_mask_26 + 1) - 19;
f[1] += (reduce_mask_25 + 1) - 1;
f[2] += (reduce_mask_26 + 1) - 1;
f[3] += (reduce_mask_25 + 1) - 1;
f[4] += (reduce_mask_26 + 1) - 1;
f[5] += (reduce_mask_25 + 1) - 1;
f[6] += (reduce_mask_26 + 1) - 1;
f[7] += (reduce_mask_25 + 1) - 1;
f[8] += (reduce_mask_26 + 1) - 1;
f[9] += (reduce_mask_25 + 1) - 1;
/* now between 2^255 and 2^256-20, and offset by 2^255. */
carry_pass_final()
#undef carry_pass
#undef carry_full
#undef carry_final
f[1] <<= 2;
f[2] <<= 3;
f[3] <<= 5;
f[4] <<= 6;
f[6] <<= 1;
f[7] <<= 3;
f[8] <<= 4;
f[9] <<= 6;
#define F(i, s) \
out[s+0] |= (unsigned char )(f[i] & 0xff); \
out[s+1] = (unsigned char )((f[i] >> 8) & 0xff); \
out[s+2] = (unsigned char )((f[i] >> 16) & 0xff); \
out[s+3] = (unsigned char )((f[i] >> 24) & 0xff);
out[0] = 0;
out[16] = 0;
F(0,0);
F(1,3);
F(2,6);
F(3,9);
F(4,12);
F(5,16);
F(6,19);
F(7,22);
F(8,25);
F(9,28);
#undef F
}
/* out = (flag) ? in : out */
DONNA_INLINE static void
curve25519_move_conditional_bytes(uint8_t out[96], const uint8_t in[96], uint32_t flag) {
const uint32_t nb = flag - 1, b = ~nb;
const uint32_t *inl = (const uint32_t *)in;
uint32_t *outl = (uint32_t *)out;
outl[0] = (outl[0] & nb) | (inl[0] & b);
outl[1] = (outl[1] & nb) | (inl[1] & b);
outl[2] = (outl[2] & nb) | (inl[2] & b);
outl[3] = (outl[3] & nb) | (inl[3] & b);
outl[4] = (outl[4] & nb) | (inl[4] & b);
outl[5] = (outl[5] & nb) | (inl[5] & b);
outl[6] = (outl[6] & nb) | (inl[6] & b);
outl[7] = (outl[7] & nb) | (inl[7] & b);
outl[8] = (outl[8] & nb) | (inl[8] & b);
outl[9] = (outl[9] & nb) | (inl[9] & b);
outl[10] = (outl[10] & nb) | (inl[10] & b);
outl[11] = (outl[11] & nb) | (inl[11] & b);
outl[12] = (outl[12] & nb) | (inl[12] & b);
outl[13] = (outl[13] & nb) | (inl[13] & b);
outl[14] = (outl[14] & nb) | (inl[14] & b);
outl[15] = (outl[15] & nb) | (inl[15] & b);
outl[16] = (outl[16] & nb) | (inl[16] & b);
outl[17] = (outl[17] & nb) | (inl[17] & b);
outl[18] = (outl[18] & nb) | (inl[18] & b);
outl[19] = (outl[19] & nb) | (inl[19] & b);
outl[20] = (outl[20] & nb) | (inl[20] & b);
outl[21] = (outl[21] & nb) | (inl[21] & b);
outl[22] = (outl[22] & nb) | (inl[22] & b);
outl[23] = (outl[23] & nb) | (inl[23] & b);
}
/* if (iswap) swap(a, b) */
DONNA_INLINE static void
curve25519_swap_conditional(bignum25519 a, bignum25519 b, uint32_t iswap) {
const uint32_t swap = (uint32_t)(-(int32_t)iswap);
uint32_t x0,x1,x2,x3,x4,x5,x6,x7,x8,x9;
x0 = swap & (a[0] ^ b[0]); a[0] ^= x0; b[0] ^= x0;
x1 = swap & (a[1] ^ b[1]); a[1] ^= x1; b[1] ^= x1;
x2 = swap & (a[2] ^ b[2]); a[2] ^= x2; b[2] ^= x2;
x3 = swap & (a[3] ^ b[3]); a[3] ^= x3; b[3] ^= x3;
x4 = swap & (a[4] ^ b[4]); a[4] ^= x4; b[4] ^= x4;
x5 = swap & (a[5] ^ b[5]); a[5] ^= x5; b[5] ^= x5;
x6 = swap & (a[6] ^ b[6]); a[6] ^= x6; b[6] ^= x6;
x7 = swap & (a[7] ^ b[7]); a[7] ^= x7; b[7] ^= x7;
x8 = swap & (a[8] ^ b[8]); a[8] ^= x8; b[8] ^= x8;
x9 = swap & (a[9] ^ b[9]); a[9] ^= x9; b[9] ^= x9;
}

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@@ -0,0 +1,413 @@
/*
Public domain by Adam Langley <agl@imperialviolet.org> &
Andrew M. <liquidsun@gmail.com>
See: https://github.com/floodyberry/curve25519-donna
64bit integer curve25519 implementation
*/
typedef uint64_t bignum25519[5];
static const uint64_t reduce_mask_40 = ((uint64_t)1 << 40) - 1;
static const uint64_t reduce_mask_51 = ((uint64_t)1 << 51) - 1;
static const uint64_t reduce_mask_56 = ((uint64_t)1 << 56) - 1;
/* out = in */
DONNA_INLINE static void
curve25519_copy(bignum25519 out, const bignum25519 in) {
out[0] = in[0];
out[1] = in[1];
out[2] = in[2];
out[3] = in[3];
out[4] = in[4];
}
/* out = a + b */
DONNA_INLINE static void
curve25519_add(bignum25519 out, const bignum25519 a, const bignum25519 b) {
out[0] = a[0] + b[0];
out[1] = a[1] + b[1];
out[2] = a[2] + b[2];
out[3] = a[3] + b[3];
out[4] = a[4] + b[4];
}
/* out = a + b, where a and/or b are the result of a basic op (add,sub) */
DONNA_INLINE static void
curve25519_add_after_basic(bignum25519 out, const bignum25519 a, const bignum25519 b) {
out[0] = a[0] + b[0];
out[1] = a[1] + b[1];
out[2] = a[2] + b[2];
out[3] = a[3] + b[3];
out[4] = a[4] + b[4];
}
DONNA_INLINE static void
curve25519_add_reduce(bignum25519 out, const bignum25519 a, const bignum25519 b) {
uint64_t c;
out[0] = a[0] + b[0] ; c = (out[0] >> 51); out[0] &= reduce_mask_51;
out[1] = a[1] + b[1] + c; c = (out[1] >> 51); out[1] &= reduce_mask_51;
out[2] = a[2] + b[2] + c; c = (out[2] >> 51); out[2] &= reduce_mask_51;
out[3] = a[3] + b[3] + c; c = (out[3] >> 51); out[3] &= reduce_mask_51;
out[4] = a[4] + b[4] + c; c = (out[4] >> 51); out[4] &= reduce_mask_51;
out[0] += c * 19;
}
/* multiples of p */
static const uint64_t twoP0 = 0x0fffffffffffda;
static const uint64_t twoP1234 = 0x0ffffffffffffe;
static const uint64_t fourP0 = 0x1fffffffffffb4;
static const uint64_t fourP1234 = 0x1ffffffffffffc;
/* out = a - b */
DONNA_INLINE static void
curve25519_sub(bignum25519 out, const bignum25519 a, const bignum25519 b) {
out[0] = a[0] + twoP0 - b[0];
out[1] = a[1] + twoP1234 - b[1];
out[2] = a[2] + twoP1234 - b[2];
out[3] = a[3] + twoP1234 - b[3];
out[4] = a[4] + twoP1234 - b[4];
}
/* out = a - b, where a and/or b are the result of a basic op (add,sub) */
DONNA_INLINE static void
curve25519_sub_after_basic(bignum25519 out, const bignum25519 a, const bignum25519 b) {
out[0] = a[0] + fourP0 - b[0];
out[1] = a[1] + fourP1234 - b[1];
out[2] = a[2] + fourP1234 - b[2];
out[3] = a[3] + fourP1234 - b[3];
out[4] = a[4] + fourP1234 - b[4];
}
DONNA_INLINE static void
curve25519_sub_reduce(bignum25519 out, const bignum25519 a, const bignum25519 b) {
uint64_t c;
out[0] = a[0] + fourP0 - b[0] ; c = (out[0] >> 51); out[0] &= reduce_mask_51;
out[1] = a[1] + fourP1234 - b[1] + c; c = (out[1] >> 51); out[1] &= reduce_mask_51;
out[2] = a[2] + fourP1234 - b[2] + c; c = (out[2] >> 51); out[2] &= reduce_mask_51;
out[3] = a[3] + fourP1234 - b[3] + c; c = (out[3] >> 51); out[3] &= reduce_mask_51;
out[4] = a[4] + fourP1234 - b[4] + c; c = (out[4] >> 51); out[4] &= reduce_mask_51;
out[0] += c * 19;
}
/* out = -a */
DONNA_INLINE static void
curve25519_neg(bignum25519 out, const bignum25519 a) {
uint64_t c;
out[0] = twoP0 - a[0] ; c = (out[0] >> 51); out[0] &= reduce_mask_51;
out[1] = twoP1234 - a[1] + c; c = (out[1] >> 51); out[1] &= reduce_mask_51;
out[2] = twoP1234 - a[2] + c; c = (out[2] >> 51); out[2] &= reduce_mask_51;
out[3] = twoP1234 - a[3] + c; c = (out[3] >> 51); out[3] &= reduce_mask_51;
out[4] = twoP1234 - a[4] + c; c = (out[4] >> 51); out[4] &= reduce_mask_51;
out[0] += c * 19;
}
/* out = a * b */
DONNA_INLINE static void
curve25519_mul(bignum25519 out, const bignum25519 in2, const bignum25519 in) {
#if !defined(HAVE_NATIVE_UINT128)
uint128_t mul;
#endif
uint128_t t[5];
uint64_t r0,r1,r2,r3,r4,s0,s1,s2,s3,s4,c;
r0 = in[0];
r1 = in[1];
r2 = in[2];
r3 = in[3];
r4 = in[4];
s0 = in2[0];
s1 = in2[1];
s2 = in2[2];
s3 = in2[3];
s4 = in2[4];
#if defined(HAVE_NATIVE_UINT128)
t[0] = ((uint128_t) r0) * s0;
t[1] = ((uint128_t) r0) * s1 + ((uint128_t) r1) * s0;
t[2] = ((uint128_t) r0) * s2 + ((uint128_t) r2) * s0 + ((uint128_t) r1) * s1;
t[3] = ((uint128_t) r0) * s3 + ((uint128_t) r3) * s0 + ((uint128_t) r1) * s2 + ((uint128_t) r2) * s1;
t[4] = ((uint128_t) r0) * s4 + ((uint128_t) r4) * s0 + ((uint128_t) r3) * s1 + ((uint128_t) r1) * s3 + ((uint128_t) r2) * s2;
#else
mul64x64_128(t[0], r0, s0)
mul64x64_128(t[1], r0, s1) mul64x64_128(mul, r1, s0) add128(t[1], mul)
mul64x64_128(t[2], r0, s2) mul64x64_128(mul, r2, s0) add128(t[2], mul) mul64x64_128(mul, r1, s1) add128(t[2], mul)
mul64x64_128(t[3], r0, s3) mul64x64_128(mul, r3, s0) add128(t[3], mul) mul64x64_128(mul, r1, s2) add128(t[3], mul) mul64x64_128(mul, r2, s1) add128(t[3], mul)
mul64x64_128(t[4], r0, s4) mul64x64_128(mul, r4, s0) add128(t[4], mul) mul64x64_128(mul, r3, s1) add128(t[4], mul) mul64x64_128(mul, r1, s3) add128(t[4], mul) mul64x64_128(mul, r2, s2) add128(t[4], mul)
#endif
r1 *= 19;
r2 *= 19;
r3 *= 19;
r4 *= 19;
#if defined(HAVE_NATIVE_UINT128)
t[0] += ((uint128_t) r4) * s1 + ((uint128_t) r1) * s4 + ((uint128_t) r2) * s3 + ((uint128_t) r3) * s2;
t[1] += ((uint128_t) r4) * s2 + ((uint128_t) r2) * s4 + ((uint128_t) r3) * s3;
t[2] += ((uint128_t) r4) * s3 + ((uint128_t) r3) * s4;
t[3] += ((uint128_t) r4) * s4;
#else
mul64x64_128(mul, r4, s1) add128(t[0], mul) mul64x64_128(mul, r1, s4) add128(t[0], mul) mul64x64_128(mul, r2, s3) add128(t[0], mul) mul64x64_128(mul, r3, s2) add128(t[0], mul)
mul64x64_128(mul, r4, s2) add128(t[1], mul) mul64x64_128(mul, r2, s4) add128(t[1], mul) mul64x64_128(mul, r3, s3) add128(t[1], mul)
mul64x64_128(mul, r4, s3) add128(t[2], mul) mul64x64_128(mul, r3, s4) add128(t[2], mul)
mul64x64_128(mul, r4, s4) add128(t[3], mul)
#endif
r0 = lo128(t[0]) & reduce_mask_51; shr128(c, t[0], 51);
add128_64(t[1], c) r1 = lo128(t[1]) & reduce_mask_51; shr128(c, t[1], 51);
add128_64(t[2], c) r2 = lo128(t[2]) & reduce_mask_51; shr128(c, t[2], 51);
add128_64(t[3], c) r3 = lo128(t[3]) & reduce_mask_51; shr128(c, t[3], 51);
add128_64(t[4], c) r4 = lo128(t[4]) & reduce_mask_51; shr128(c, t[4], 51);
r0 += c * 19; c = r0 >> 51; r0 = r0 & reduce_mask_51;
r1 += c;
out[0] = r0;
out[1] = r1;
out[2] = r2;
out[3] = r3;
out[4] = r4;
}
DONNA_NOINLINE static void
curve25519_mul_noinline(bignum25519 out, const bignum25519 in2, const bignum25519 in) {
curve25519_mul(out, in2, in);
}
/* out = in^(2 * count) */
DONNA_NOINLINE static void
curve25519_square_times(bignum25519 out, const bignum25519 in, uint64_t count) {
#if !defined(HAVE_NATIVE_UINT128)
uint128_t mul;
#endif
uint128_t t[5];
uint64_t r0,r1,r2,r3,r4,c;
uint64_t d0,d1,d2,d4,d419;
r0 = in[0];
r1 = in[1];
r2 = in[2];
r3 = in[3];
r4 = in[4];
do {
d0 = r0 * 2;
d1 = r1 * 2;
d2 = r2 * 2 * 19;
d419 = r4 * 19;
d4 = d419 * 2;
#if defined(HAVE_NATIVE_UINT128)
t[0] = ((uint128_t) r0) * r0 + ((uint128_t) d4) * r1 + (((uint128_t) d2) * (r3 ));
t[1] = ((uint128_t) d0) * r1 + ((uint128_t) d4) * r2 + (((uint128_t) r3) * (r3 * 19));
t[2] = ((uint128_t) d0) * r2 + ((uint128_t) r1) * r1 + (((uint128_t) d4) * (r3 ));
t[3] = ((uint128_t) d0) * r3 + ((uint128_t) d1) * r2 + (((uint128_t) r4) * (d419 ));
t[4] = ((uint128_t) d0) * r4 + ((uint128_t) d1) * r3 + (((uint128_t) r2) * (r2 ));
#else
mul64x64_128(t[0], r0, r0) mul64x64_128(mul, d4, r1) add128(t[0], mul) mul64x64_128(mul, d2, r3) add128(t[0], mul)
mul64x64_128(t[1], d0, r1) mul64x64_128(mul, d4, r2) add128(t[1], mul) mul64x64_128(mul, r3, r3 * 19) add128(t[1], mul)
mul64x64_128(t[2], d0, r2) mul64x64_128(mul, r1, r1) add128(t[2], mul) mul64x64_128(mul, d4, r3) add128(t[2], mul)
mul64x64_128(t[3], d0, r3) mul64x64_128(mul, d1, r2) add128(t[3], mul) mul64x64_128(mul, r4, d419) add128(t[3], mul)
mul64x64_128(t[4], d0, r4) mul64x64_128(mul, d1, r3) add128(t[4], mul) mul64x64_128(mul, r2, r2) add128(t[4], mul)
#endif
r0 = lo128(t[0]) & reduce_mask_51;
r1 = lo128(t[1]) & reduce_mask_51; shl128(c, t[0], 13); r1 += c;
r2 = lo128(t[2]) & reduce_mask_51; shl128(c, t[1], 13); r2 += c;
r3 = lo128(t[3]) & reduce_mask_51; shl128(c, t[2], 13); r3 += c;
r4 = lo128(t[4]) & reduce_mask_51; shl128(c, t[3], 13); r4 += c;
shl128(c, t[4], 13); r0 += c * 19;
c = r0 >> 51; r0 &= reduce_mask_51;
r1 += c ; c = r1 >> 51; r1 &= reduce_mask_51;
r2 += c ; c = r2 >> 51; r2 &= reduce_mask_51;
r3 += c ; c = r3 >> 51; r3 &= reduce_mask_51;
r4 += c ; c = r4 >> 51; r4 &= reduce_mask_51;
r0 += c * 19;
} while(--count);
out[0] = r0;
out[1] = r1;
out[2] = r2;
out[3] = r3;
out[4] = r4;
}
DONNA_INLINE static void
curve25519_square(bignum25519 out, const bignum25519 in) {
#if !defined(HAVE_NATIVE_UINT128)
uint128_t mul;
#endif
uint128_t t[5];
uint64_t r0,r1,r2,r3,r4,c;
uint64_t d0,d1,d2,d4,d419;
r0 = in[0];
r1 = in[1];
r2 = in[2];
r3 = in[3];
r4 = in[4];
d0 = r0 * 2;
d1 = r1 * 2;
d2 = r2 * 2 * 19;
d419 = r4 * 19;
d4 = d419 * 2;
#if defined(HAVE_NATIVE_UINT128)
t[0] = ((uint128_t) r0) * r0 + ((uint128_t) d4) * r1 + (((uint128_t) d2) * (r3 ));
t[1] = ((uint128_t) d0) * r1 + ((uint128_t) d4) * r2 + (((uint128_t) r3) * (r3 * 19));
t[2] = ((uint128_t) d0) * r2 + ((uint128_t) r1) * r1 + (((uint128_t) d4) * (r3 ));
t[3] = ((uint128_t) d0) * r3 + ((uint128_t) d1) * r2 + (((uint128_t) r4) * (d419 ));
t[4] = ((uint128_t) d0) * r4 + ((uint128_t) d1) * r3 + (((uint128_t) r2) * (r2 ));
#else
mul64x64_128(t[0], r0, r0) mul64x64_128(mul, d4, r1) add128(t[0], mul) mul64x64_128(mul, d2, r3) add128(t[0], mul)
mul64x64_128(t[1], d0, r1) mul64x64_128(mul, d4, r2) add128(t[1], mul) mul64x64_128(mul, r3, r3 * 19) add128(t[1], mul)
mul64x64_128(t[2], d0, r2) mul64x64_128(mul, r1, r1) add128(t[2], mul) mul64x64_128(mul, d4, r3) add128(t[2], mul)
mul64x64_128(t[3], d0, r3) mul64x64_128(mul, d1, r2) add128(t[3], mul) mul64x64_128(mul, r4, d419) add128(t[3], mul)
mul64x64_128(t[4], d0, r4) mul64x64_128(mul, d1, r3) add128(t[4], mul) mul64x64_128(mul, r2, r2) add128(t[4], mul)
#endif
r0 = lo128(t[0]) & reduce_mask_51; shr128(c, t[0], 51);
add128_64(t[1], c) r1 = lo128(t[1]) & reduce_mask_51; shr128(c, t[1], 51);
add128_64(t[2], c) r2 = lo128(t[2]) & reduce_mask_51; shr128(c, t[2], 51);
add128_64(t[3], c) r3 = lo128(t[3]) & reduce_mask_51; shr128(c, t[3], 51);
add128_64(t[4], c) r4 = lo128(t[4]) & reduce_mask_51; shr128(c, t[4], 51);
r0 += c * 19; c = r0 >> 51; r0 = r0 & reduce_mask_51;
r1 += c;
out[0] = r0;
out[1] = r1;
out[2] = r2;
out[3] = r3;
out[4] = r4;
}
/* Take a little-endian, 32-byte number and expand it into polynomial form */
DONNA_INLINE static void
curve25519_expand(bignum25519 out, const unsigned char *in) {
static const union { uint8_t b[2]; uint16_t s; } endian_check = {{1,0}};
uint64_t x0,x1,x2,x3;
if (endian_check.s == 1) {
x0 = *(uint64_t *)(in + 0);
x1 = *(uint64_t *)(in + 8);
x2 = *(uint64_t *)(in + 16);
x3 = *(uint64_t *)(in + 24);
} else {
#define F(s) \
((((uint64_t)in[s + 0]) ) | \
(((uint64_t)in[s + 1]) << 8) | \
(((uint64_t)in[s + 2]) << 16) | \
(((uint64_t)in[s + 3]) << 24) | \
(((uint64_t)in[s + 4]) << 32) | \
(((uint64_t)in[s + 5]) << 40) | \
(((uint64_t)in[s + 6]) << 48) | \
(((uint64_t)in[s + 7]) << 56))
x0 = F(0);
x1 = F(8);
x2 = F(16);
x3 = F(24);
}
out[0] = x0 & reduce_mask_51; x0 = (x0 >> 51) | (x1 << 13);
out[1] = x0 & reduce_mask_51; x1 = (x1 >> 38) | (x2 << 26);
out[2] = x1 & reduce_mask_51; x2 = (x2 >> 25) | (x3 << 39);
out[3] = x2 & reduce_mask_51; x3 = (x3 >> 12);
out[4] = x3 & reduce_mask_51;
}
/* Take a fully reduced polynomial form number and contract it into a
* little-endian, 32-byte array
*/
DONNA_INLINE static void
curve25519_contract(unsigned char *out, const bignum25519 input) {
uint64_t t[5];
uint64_t f, i;
t[0] = input[0];
t[1] = input[1];
t[2] = input[2];
t[3] = input[3];
t[4] = input[4];
#define curve25519_contract_carry() \
t[1] += t[0] >> 51; t[0] &= reduce_mask_51; \
t[2] += t[1] >> 51; t[1] &= reduce_mask_51; \
t[3] += t[2] >> 51; t[2] &= reduce_mask_51; \
t[4] += t[3] >> 51; t[3] &= reduce_mask_51;
#define curve25519_contract_carry_full() curve25519_contract_carry() \
t[0] += 19 * (t[4] >> 51); t[4] &= reduce_mask_51;
#define curve25519_contract_carry_final() curve25519_contract_carry() \
t[4] &= reduce_mask_51;
curve25519_contract_carry_full()
curve25519_contract_carry_full()
/* now t is between 0 and 2^255-1, properly carried. */
/* case 1: between 0 and 2^255-20. case 2: between 2^255-19 and 2^255-1. */
t[0] += 19;
curve25519_contract_carry_full()
/* now between 19 and 2^255-1 in both cases, and offset by 19. */
t[0] += (reduce_mask_51 + 1) - 19;
t[1] += (reduce_mask_51 + 1) - 1;
t[2] += (reduce_mask_51 + 1) - 1;
t[3] += (reduce_mask_51 + 1) - 1;
t[4] += (reduce_mask_51 + 1) - 1;
/* now between 2^255 and 2^256-20, and offset by 2^255. */
curve25519_contract_carry_final()
#define write51full(n,shift) \
f = ((t[n] >> shift) | (t[n+1] << (51 - shift))); \
for (i = 0; i < 8; i++, f >>= 8) *out++ = (unsigned char)f;
#define write51(n) write51full(n,13*n)
write51(0)
write51(1)
write51(2)
write51(3)
}
#if !defined(ED25519_GCC_64BIT_CHOOSE)
/* out = (flag) ? in : out */
DONNA_INLINE static void
curve25519_move_conditional_bytes(uint8_t out[96], const uint8_t in[96], uint64_t flag) {
const uint64_t nb = flag - 1, b = ~nb;
const uint64_t *inq = (const uint64_t *)in;
uint64_t *outq = (uint64_t *)out;
outq[0] = (outq[0] & nb) | (inq[0] & b);
outq[1] = (outq[1] & nb) | (inq[1] & b);
outq[2] = (outq[2] & nb) | (inq[2] & b);
outq[3] = (outq[3] & nb) | (inq[3] & b);
outq[4] = (outq[4] & nb) | (inq[4] & b);
outq[5] = (outq[5] & nb) | (inq[5] & b);
outq[6] = (outq[6] & nb) | (inq[6] & b);
outq[7] = (outq[7] & nb) | (inq[7] & b);
outq[8] = (outq[8] & nb) | (inq[8] & b);
outq[9] = (outq[9] & nb) | (inq[9] & b);
outq[10] = (outq[10] & nb) | (inq[10] & b);
outq[11] = (outq[11] & nb) | (inq[11] & b);
}
/* if (iswap) swap(a, b) */
DONNA_INLINE static void
curve25519_swap_conditional(bignum25519 a, bignum25519 b, uint64_t iswap) {
const uint64_t swap = (uint64_t)(-(int64_t)iswap);
uint64_t x0,x1,x2,x3,x4;
x0 = swap & (a[0] ^ b[0]); a[0] ^= x0; b[0] ^= x0;
x1 = swap & (a[1] ^ b[1]); a[1] ^= x1; b[1] ^= x1;
x2 = swap & (a[2] ^ b[2]); a[2] ^= x2; b[2] ^= x2;
x3 = swap & (a[3] ^ b[3]); a[3] ^= x3; b[3] ^= x3;
x4 = swap & (a[4] ^ b[4]); a[4] ^= x4; b[4] ^= x4;
}
#endif /* ED25519_GCC_64BIT_CHOOSE */
#define ED25519_64BIT_TABLES

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/*
Public domain by Andrew M. <liquidsun@gmail.com>
See: https://github.com/floodyberry/curve25519-donna
Curve25519 implementation agnostic helpers
*/
/*
* In: b = 2^5 - 2^0
* Out: b = 2^250 - 2^0
*/
static void
curve25519_pow_two5mtwo0_two250mtwo0(bignum25519 b) {
bignum25519 ALIGN(16) t0,c;
/* 2^5 - 2^0 */ /* b */
/* 2^10 - 2^5 */ curve25519_square_times(t0, b, 5);
/* 2^10 - 2^0 */ curve25519_mul_noinline(b, t0, b);
/* 2^20 - 2^10 */ curve25519_square_times(t0, b, 10);
/* 2^20 - 2^0 */ curve25519_mul_noinline(c, t0, b);
/* 2^40 - 2^20 */ curve25519_square_times(t0, c, 20);
/* 2^40 - 2^0 */ curve25519_mul_noinline(t0, t0, c);
/* 2^50 - 2^10 */ curve25519_square_times(t0, t0, 10);
/* 2^50 - 2^0 */ curve25519_mul_noinline(b, t0, b);
/* 2^100 - 2^50 */ curve25519_square_times(t0, b, 50);
/* 2^100 - 2^0 */ curve25519_mul_noinline(c, t0, b);
/* 2^200 - 2^100 */ curve25519_square_times(t0, c, 100);
/* 2^200 - 2^0 */ curve25519_mul_noinline(t0, t0, c);
/* 2^250 - 2^50 */ curve25519_square_times(t0, t0, 50);
/* 2^250 - 2^0 */ curve25519_mul_noinline(b, t0, b);
}
/*
* z^(p - 2) = z(2^255 - 21)
*/
static void
curve25519_recip(bignum25519 out, const bignum25519 z) {
bignum25519 ALIGN(16) a,t0,b;
/* 2 */ curve25519_square_times(a, z, 1); /* a = 2 */
/* 8 */ curve25519_square_times(t0, a, 2);
/* 9 */ curve25519_mul_noinline(b, t0, z); /* b = 9 */
/* 11 */ curve25519_mul_noinline(a, b, a); /* a = 11 */
/* 22 */ curve25519_square_times(t0, a, 1);
/* 2^5 - 2^0 = 31 */ curve25519_mul_noinline(b, t0, b);
/* 2^250 - 2^0 */ curve25519_pow_two5mtwo0_two250mtwo0(b);
/* 2^255 - 2^5 */ curve25519_square_times(b, b, 5);
/* 2^255 - 21 */ curve25519_mul_noinline(out, b, a);
}
/*
* z^((p-5)/8) = z^(2^252 - 3)
*/
static void
curve25519_pow_two252m3(bignum25519 two252m3, const bignum25519 z) {
bignum25519 ALIGN(16) b,c,t0;
/* 2 */ curve25519_square_times(c, z, 1); /* c = 2 */
/* 8 */ curve25519_square_times(t0, c, 2); /* t0 = 8 */
/* 9 */ curve25519_mul_noinline(b, t0, z); /* b = 9 */
/* 11 */ curve25519_mul_noinline(c, b, c); /* c = 11 */
/* 22 */ curve25519_square_times(t0, c, 1);
/* 2^5 - 2^0 = 31 */ curve25519_mul_noinline(b, t0, b);
/* 2^250 - 2^0 */ curve25519_pow_two5mtwo0_two250mtwo0(b);
/* 2^252 - 2^2 */ curve25519_square_times(b, b, 2);
/* 2^252 - 3 */ curve25519_mul_noinline(two252m3, b, z);
}

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#if defined(ED25519_GCC_32BIT_SSE_CHOOSE)
#define HAVE_GE25519_SCALARMULT_BASE_CHOOSE_NIELS
DONNA_NOINLINE static void
ge25519_scalarmult_base_choose_niels(ge25519_niels *t, const uint8_t table[256][96], uint32_t pos, signed char b) {
int32_t breg = (int32_t)b;
uint32_t sign = (uint32_t)breg >> 31;
uint32_t mask = ~(sign - 1);
uint32_t u = (breg + mask) ^ mask;
__asm__ __volatile__ (
/* ysubx+xaddy */
"movl %0, %%eax ;\n"
"movd %%eax, %%xmm6 ;\n"
"pshufd $0x00, %%xmm6, %%xmm6 ;\n"
"pxor %%xmm0, %%xmm0 ;\n"
"pxor %%xmm1, %%xmm1 ;\n"
"pxor %%xmm2, %%xmm2 ;\n"
"pxor %%xmm3, %%xmm3 ;\n"
/* 0 */
"movl $0, %%eax ;\n"
"movd %%eax, %%xmm7 ;\n"
"pshufd $0x00, %%xmm7, %%xmm7 ;\n"
"pcmpeqd %%xmm6, %%xmm7 ;\n"
"movl $1, %%ecx ;\n"
"movd %%ecx, %%xmm4 ;\n"
"pxor %%xmm5, %%xmm5 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"pand %%xmm7, %%xmm5 ;\n"
"por %%xmm4, %%xmm0 ;\n"
"por %%xmm5, %%xmm1 ;\n"
"por %%xmm4, %%xmm2 ;\n"
"por %%xmm5, %%xmm3 ;\n"
/* 1 */
"movl $1, %%eax ;\n"
"movd %%eax, %%xmm7 ;\n"
"pshufd $0x00, %%xmm7, %%xmm7 ;\n"
"pcmpeqd %%xmm6, %%xmm7 ;\n"
"movdqa 0(%1), %%xmm4 ;\n"
"movdqa 16(%1), %%xmm5 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"pand %%xmm7, %%xmm5 ;\n"
"por %%xmm4, %%xmm0 ;\n"
"por %%xmm5, %%xmm1 ;\n"
"movdqa 32(%1), %%xmm4 ;\n"
"movdqa 48(%1), %%xmm5 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"pand %%xmm7, %%xmm5 ;\n"
"por %%xmm4, %%xmm2 ;\n"
"por %%xmm5, %%xmm3 ;\n"
/* 2 */
"movl $2, %%eax ;\n"
"movd %%eax, %%xmm7 ;\n"
"pshufd $0x00, %%xmm7, %%xmm7 ;\n"
"pcmpeqd %%xmm6, %%xmm7 ;\n"
"movdqa 96(%1), %%xmm4 ;\n"
"movdqa 112(%1), %%xmm5 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"pand %%xmm7, %%xmm5 ;\n"
"por %%xmm4, %%xmm0 ;\n"
"por %%xmm5, %%xmm1 ;\n"
"movdqa 128(%1), %%xmm4 ;\n"
"movdqa 144(%1), %%xmm5 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"pand %%xmm7, %%xmm5 ;\n"
"por %%xmm4, %%xmm2 ;\n"
"por %%xmm5, %%xmm3 ;\n"
/* 3 */
"movl $3, %%eax ;\n"
"movd %%eax, %%xmm7 ;\n"
"pshufd $0x00, %%xmm7, %%xmm7 ;\n"
"pcmpeqd %%xmm6, %%xmm7 ;\n"
"movdqa 192(%1), %%xmm4 ;\n"
"movdqa 208(%1), %%xmm5 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"pand %%xmm7, %%xmm5 ;\n"
"por %%xmm4, %%xmm0 ;\n"
"por %%xmm5, %%xmm1 ;\n"
"movdqa 224(%1), %%xmm4 ;\n"
"movdqa 240(%1), %%xmm5 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"pand %%xmm7, %%xmm5 ;\n"
"por %%xmm4, %%xmm2 ;\n"
"por %%xmm5, %%xmm3 ;\n"
/* 4 */
"movl $4, %%eax ;\n"
"movd %%eax, %%xmm7 ;\n"
"pshufd $0x00, %%xmm7, %%xmm7 ;\n"
"pcmpeqd %%xmm6, %%xmm7 ;\n"
"movdqa 288(%1), %%xmm4 ;\n"
"movdqa 304(%1), %%xmm5 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"pand %%xmm7, %%xmm5 ;\n"
"por %%xmm4, %%xmm0 ;\n"
"por %%xmm5, %%xmm1 ;\n"
"movdqa 320(%1), %%xmm4 ;\n"
"movdqa 336(%1), %%xmm5 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"pand %%xmm7, %%xmm5 ;\n"
"por %%xmm4, %%xmm2 ;\n"
"por %%xmm5, %%xmm3 ;\n"
/* 5 */
"movl $5, %%eax ;\n"
"movd %%eax, %%xmm7 ;\n"
"pshufd $0x00, %%xmm7, %%xmm7 ;\n"
"pcmpeqd %%xmm6, %%xmm7 ;\n"
"movdqa 384(%1), %%xmm4 ;\n"
"movdqa 400(%1), %%xmm5 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"pand %%xmm7, %%xmm5 ;\n"
"por %%xmm4, %%xmm0 ;\n"
"por %%xmm5, %%xmm1 ;\n"
"movdqa 416(%1), %%xmm4 ;\n"
"movdqa 432(%1), %%xmm5 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"pand %%xmm7, %%xmm5 ;\n"
"por %%xmm4, %%xmm2 ;\n"
"por %%xmm5, %%xmm3 ;\n"
/* 6 */
"movl $6, %%eax ;\n"
"movd %%eax, %%xmm7 ;\n"
"pshufd $0x00, %%xmm7, %%xmm7 ;\n"
"pcmpeqd %%xmm6, %%xmm7 ;\n"
"movdqa 480(%1), %%xmm4 ;\n"
"movdqa 496(%1), %%xmm5 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"pand %%xmm7, %%xmm5 ;\n"
"por %%xmm4, %%xmm0 ;\n"
"por %%xmm5, %%xmm1 ;\n"
"movdqa 512(%1), %%xmm4 ;\n"
"movdqa 528(%1), %%xmm5 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"pand %%xmm7, %%xmm5 ;\n"
"por %%xmm4, %%xmm2 ;\n"
"por %%xmm5, %%xmm3 ;\n"
/* 7 */
"movl $7, %%eax ;\n"
"movd %%eax, %%xmm7 ;\n"
"pshufd $0x00, %%xmm7, %%xmm7 ;\n"
"pcmpeqd %%xmm6, %%xmm7 ;\n"
"movdqa 576(%1), %%xmm4 ;\n"
"movdqa 592(%1), %%xmm5 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"pand %%xmm7, %%xmm5 ;\n"
"por %%xmm4, %%xmm0 ;\n"
"por %%xmm5, %%xmm1 ;\n"
"movdqa 608(%1), %%xmm4 ;\n"
"movdqa 624(%1), %%xmm5 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"pand %%xmm7, %%xmm5 ;\n"
"por %%xmm4, %%xmm2 ;\n"
"por %%xmm5, %%xmm3 ;\n"
/* 8 */
"movl $8, %%eax ;\n"
"movd %%eax, %%xmm7 ;\n"
"pshufd $0x00, %%xmm7, %%xmm7 ;\n"
"pcmpeqd %%xmm6, %%xmm7 ;\n"
"movdqa 672(%1), %%xmm4 ;\n"
"movdqa 688(%1), %%xmm5 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"pand %%xmm7, %%xmm5 ;\n"
"por %%xmm4, %%xmm0 ;\n"
"por %%xmm5, %%xmm1 ;\n"
"movdqa 704(%1), %%xmm4 ;\n"
"movdqa 720(%1), %%xmm5 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"pand %%xmm7, %%xmm5 ;\n"
"por %%xmm4, %%xmm2 ;\n"
"por %%xmm5, %%xmm3 ;\n"
/* conditional swap based on sign */
"movl %3, %%ecx ;\n"
"movl %2, %%eax ;\n"
"xorl $1, %%ecx ;\n"
"movd %%ecx, %%xmm6 ;\n"
"pxor %%xmm7, %%xmm7 ;\n"
"pshufd $0x00, %%xmm6, %%xmm6 ;\n"
"pxor %%xmm0, %%xmm2 ;\n"
"pxor %%xmm1, %%xmm3 ;\n"
"pcmpeqd %%xmm6, %%xmm7 ;\n"
"movdqa %%xmm2, %%xmm4 ;\n"
"movdqa %%xmm3, %%xmm5 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"pand %%xmm7, %%xmm5 ;\n"
"pxor %%xmm4, %%xmm0 ;\n"
"pxor %%xmm5, %%xmm1 ;\n"
"pxor %%xmm0, %%xmm2 ;\n"
"pxor %%xmm1, %%xmm3 ;\n"
/* store ysubx */
"movd %%xmm0, %%ecx ;\n"
"movl %%ecx, %%edx ;\n"
"pshufd $0x39, %%xmm0, %%xmm0 ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"movl %%ecx, 0(%%eax) ;\n"
"movd %%xmm0, %%ecx ;\n"
"pshufd $0x39, %%xmm0, %%xmm0 ;\n"
"shrdl $26, %%ecx, %%edx ;\n"
"andl $0x1ffffff, %%edx ;\n"
"movl %%edx, 4(%%eax) ;\n"
"movd %%xmm0, %%edx ;\n"
"pshufd $0x39, %%xmm0, %%xmm0 ;\n"
"shrdl $19, %%edx, %%ecx ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"movl %%ecx, 8(%%eax) ;\n"
"movd %%xmm0, %%ecx ;\n"
"shrdl $13, %%ecx, %%edx ;\n"
"andl $0x1ffffff, %%edx ;\n"
"movl %%edx, 12(%%eax) ;\n"
"movd %%xmm1, %%edx ;\n"
"pshufd $0x39, %%xmm1, %%xmm1 ;\n"
"shrl $6, %%ecx ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"movl %%ecx, 16(%%eax) ;\n"
"movl %%edx, %%ecx ;\n"
"andl $0x1ffffff, %%edx ;\n"
"movl %%edx, 20(%%eax) ;\n"
"movd %%xmm1, %%edx ;\n"
"pshufd $0x39, %%xmm1, %%xmm1 ;\n"
"shrdl $25, %%edx, %%ecx ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"movl %%ecx, 24(%%eax) ;\n"
"movd %%xmm1, %%ecx ;\n"
"pshufd $0x39, %%xmm1, %%xmm1 ;\n"
"shrdl $19, %%ecx, %%edx ;\n"
"andl $0x1ffffff, %%edx ;\n"
"movl %%edx, 28(%%eax) ;\n"
"movd %%xmm1, %%edx ;\n"
"shrdl $12, %%edx, %%ecx ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"movl %%ecx, 32(%%eax) ;\n"
"shrl $6, %%edx ;\n"
"andl $0x1ffffff, %%edx ;\n"
"xorl %%ecx, %%ecx ;\n"
"movl %%edx, 36(%%eax) ;\n"
"movl %%ecx, 40(%%eax) ;\n"
"movl %%ecx, 44(%%eax) ;\n"
/* store xaddy */
"addl $48, %%eax ;\n"
"movdqa %%xmm2, %%xmm0 ;\n"
"movdqa %%xmm3, %%xmm1 ;\n"
"movd %%xmm0, %%ecx ;\n"
"movl %%ecx, %%edx ;\n"
"pshufd $0x39, %%xmm0, %%xmm0 ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"movl %%ecx, 0(%%eax) ;\n"
"movd %%xmm0, %%ecx ;\n"
"pshufd $0x39, %%xmm0, %%xmm0 ;\n"
"shrdl $26, %%ecx, %%edx ;\n"
"andl $0x1ffffff, %%edx ;\n"
"movl %%edx, 4(%%eax) ;\n"
"movd %%xmm0, %%edx ;\n"
"pshufd $0x39, %%xmm0, %%xmm0 ;\n"
"shrdl $19, %%edx, %%ecx ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"movl %%ecx, 8(%%eax) ;\n"
"movd %%xmm0, %%ecx ;\n"
"shrdl $13, %%ecx, %%edx ;\n"
"andl $0x1ffffff, %%edx ;\n"
"movl %%edx, 12(%%eax) ;\n"
"movd %%xmm1, %%edx ;\n"
"pshufd $0x39, %%xmm1, %%xmm1 ;\n"
"shrl $6, %%ecx ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"movl %%ecx, 16(%%eax) ;\n"
"movl %%edx, %%ecx ;\n"
"andl $0x1ffffff, %%edx ;\n"
"movl %%edx, 20(%%eax) ;\n"
"movd %%xmm1, %%edx ;\n"
"pshufd $0x39, %%xmm1, %%xmm1 ;\n"
"shrdl $25, %%edx, %%ecx ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"movl %%ecx, 24(%%eax) ;\n"
"movd %%xmm1, %%ecx ;\n"
"pshufd $0x39, %%xmm1, %%xmm1 ;\n"
"shrdl $19, %%ecx, %%edx ;\n"
"andl $0x1ffffff, %%edx ;\n"
"movl %%edx, 28(%%eax) ;\n"
"movd %%xmm1, %%edx ;\n"
"shrdl $12, %%edx, %%ecx ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"movl %%ecx, 32(%%eax) ;\n"
"shrl $6, %%edx ;\n"
"andl $0x1ffffff, %%edx ;\n"
"xorl %%ecx, %%ecx ;\n"
"movl %%edx, 36(%%eax) ;\n"
"movl %%ecx, 40(%%eax) ;\n"
"movl %%ecx, 44(%%eax) ;\n"
/* t2d */
"movl %0, %%eax ;\n"
"movd %%eax, %%xmm6 ;\n"
"pshufd $0x00, %%xmm6, %%xmm6 ;\n"
"pxor %%xmm0, %%xmm0 ;\n"
"pxor %%xmm1, %%xmm1 ;\n"
/* 0 */
"movl $0, %%eax ;\n"
"movd %%eax, %%xmm7 ;\n"
"pshufd $0x00, %%xmm7, %%xmm7 ;\n"
"pcmpeqd %%xmm6, %%xmm7 ;\n"
"pxor %%xmm0, %%xmm0 ;\n"
"pxor %%xmm1, %%xmm1 ;\n"
/* 1 */
"movl $1, %%eax ;\n"
"movd %%eax, %%xmm7 ;\n"
"pshufd $0x00, %%xmm7, %%xmm7 ;\n"
"pcmpeqd %%xmm6, %%xmm7 ;\n"
"movdqa 64(%1), %%xmm3 ;\n"
"movdqa 80(%1), %%xmm4 ;\n"
"pand %%xmm7, %%xmm3 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"por %%xmm3, %%xmm0 ;\n"
"por %%xmm4, %%xmm1 ;\n"
/* 2 */
"movl $2, %%eax ;\n"
"movd %%eax, %%xmm7 ;\n"
"pshufd $0x00, %%xmm7, %%xmm7 ;\n"
"pcmpeqd %%xmm6, %%xmm7 ;\n"
"movdqa 160(%1), %%xmm3 ;\n"
"movdqa 176(%1), %%xmm4 ;\n"
"pand %%xmm7, %%xmm3 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"por %%xmm3, %%xmm0 ;\n"
"por %%xmm4, %%xmm1 ;\n"
/* 3 */
"movl $3, %%eax ;\n"
"movd %%eax, %%xmm7 ;\n"
"pshufd $0x00, %%xmm7, %%xmm7 ;\n"
"pcmpeqd %%xmm6, %%xmm7 ;\n"
"movdqa 256(%1), %%xmm3 ;\n"
"movdqa 272(%1), %%xmm4 ;\n"
"pand %%xmm7, %%xmm3 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"por %%xmm3, %%xmm0 ;\n"
"por %%xmm4, %%xmm1 ;\n"
/* 4 */
"movl $4, %%eax ;\n"
"movd %%eax, %%xmm7 ;\n"
"pshufd $0x00, %%xmm7, %%xmm7 ;\n"
"pcmpeqd %%xmm6, %%xmm7 ;\n"
"movdqa 352(%1), %%xmm3 ;\n"
"movdqa 368(%1), %%xmm4 ;\n"
"pand %%xmm7, %%xmm3 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"por %%xmm3, %%xmm0 ;\n"
"por %%xmm4, %%xmm1 ;\n"
/* 5 */
"movl $5, %%eax ;\n"
"movd %%eax, %%xmm7 ;\n"
"pshufd $0x00, %%xmm7, %%xmm7 ;\n"
"pcmpeqd %%xmm6, %%xmm7 ;\n"
"movdqa 448(%1), %%xmm3 ;\n"
"movdqa 464(%1), %%xmm4 ;\n"
"pand %%xmm7, %%xmm3 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"por %%xmm3, %%xmm0 ;\n"
"por %%xmm4, %%xmm1 ;\n"
/* 6 */
"movl $6, %%eax ;\n"
"movd %%eax, %%xmm7 ;\n"
"pshufd $0x00, %%xmm7, %%xmm7 ;\n"
"pcmpeqd %%xmm6, %%xmm7 ;\n"
"movdqa 544(%1), %%xmm3 ;\n"
"movdqa 560(%1), %%xmm4 ;\n"
"pand %%xmm7, %%xmm3 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"por %%xmm3, %%xmm0 ;\n"
"por %%xmm4, %%xmm1 ;\n"
/* 7 */
"movl $7, %%eax ;\n"
"movd %%eax, %%xmm7 ;\n"
"pshufd $0x00, %%xmm7, %%xmm7 ;\n"
"pcmpeqd %%xmm6, %%xmm7 ;\n"
"movdqa 640(%1), %%xmm3 ;\n"
"movdqa 656(%1), %%xmm4 ;\n"
"pand %%xmm7, %%xmm3 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"por %%xmm3, %%xmm0 ;\n"
"por %%xmm4, %%xmm1 ;\n"
/* 8 */
"movl $8, %%eax ;\n"
"movd %%eax, %%xmm7 ;\n"
"pshufd $0x00, %%xmm7, %%xmm7 ;\n"
"pcmpeqd %%xmm6, %%xmm7 ;\n"
"movdqa 736(%1), %%xmm3 ;\n"
"movdqa 752(%1), %%xmm4 ;\n"
"pand %%xmm7, %%xmm3 ;\n"
"pand %%xmm7, %%xmm4 ;\n"
"por %%xmm3, %%xmm0 ;\n"
"por %%xmm4, %%xmm1 ;\n"
/* store t2d */
"movl %2, %%eax ;\n"
"addl $96, %%eax ;\n"
"movd %%xmm0, %%ecx ;\n"
"movl %%ecx, %%edx ;\n"
"pshufd $0x39, %%xmm0, %%xmm0 ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"movl %%ecx, 0(%%eax) ;\n"
"movd %%xmm0, %%ecx ;\n"
"pshufd $0x39, %%xmm0, %%xmm0 ;\n"
"shrdl $26, %%ecx, %%edx ;\n"
"andl $0x1ffffff, %%edx ;\n"
"movl %%edx, 4(%%eax) ;\n"
"movd %%xmm0, %%edx ;\n"
"pshufd $0x39, %%xmm0, %%xmm0 ;\n"
"shrdl $19, %%edx, %%ecx ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"movl %%ecx, 8(%%eax) ;\n"
"movd %%xmm0, %%ecx ;\n"
"shrdl $13, %%ecx, %%edx ;\n"
"andl $0x1ffffff, %%edx ;\n"
"movl %%edx, 12(%%eax) ;\n"
"movd %%xmm1, %%edx ;\n"
"pshufd $0x39, %%xmm1, %%xmm1 ;\n"
"shrl $6, %%ecx ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"movl %%ecx, 16(%%eax) ;\n"
"movl %%edx, %%ecx ;\n"
"andl $0x1ffffff, %%edx ;\n"
"movl %%edx, 20(%%eax) ;\n"
"movd %%xmm1, %%edx ;\n"
"pshufd $0x39, %%xmm1, %%xmm1 ;\n"
"shrdl $25, %%edx, %%ecx ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"movl %%ecx, 24(%%eax) ;\n"
"movd %%xmm1, %%ecx ;\n"
"pshufd $0x39, %%xmm1, %%xmm1 ;\n"
"shrdl $19, %%ecx, %%edx ;\n"
"andl $0x1ffffff, %%edx ;\n"
"movl %%edx, 28(%%eax) ;\n"
"movd %%xmm1, %%edx ;\n"
"movd %%xmm1, %%edx ;\n"
"shrdl $12, %%edx, %%ecx ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"movl %%ecx, 32(%%eax) ;\n"
"shrl $6, %%edx ;\n"
"andl $0x1ffffff, %%edx ;\n"
"xorl %%ecx, %%ecx ;\n"
"movl %%edx, 36(%%eax) ;\n"
"movl %%ecx, 40(%%eax) ;\n"
"movl %%ecx, 44(%%eax) ;\n"
"movdqa 0(%%eax), %%xmm0 ;\n"
"movdqa 16(%%eax), %%xmm1 ;\n"
"movdqa 32(%%eax), %%xmm2 ;\n"
/* conditionally negate t2d */
/* set up 2p in to 3/4 */
"movl $0x7ffffda, %%ecx ;\n"
"movl $0x3fffffe, %%edx ;\n"
"movd %%ecx, %%xmm3 ;\n"
"movd %%edx, %%xmm5 ;\n"
"movl $0x7fffffe, %%ecx ;\n"
"movd %%ecx, %%xmm4 ;\n"
"punpckldq %%xmm5, %%xmm3 ;\n"
"punpckldq %%xmm5, %%xmm4 ;\n"
"punpcklqdq %%xmm4, %%xmm3 ;\n"
"movdqa %%xmm4, %%xmm5 ;\n"
"punpcklqdq %%xmm4, %%xmm4 ;\n"
/* subtract and conditionally move */
"movl %3, %%ecx ;\n"
"sub $1, %%ecx ;\n"
"movd %%ecx, %%xmm6 ;\n"
"pshufd $0x00, %%xmm6, %%xmm6 ;\n"
"movdqa %%xmm6, %%xmm7 ;\n"
"psubd %%xmm0, %%xmm3 ;\n"
"psubd %%xmm1, %%xmm4 ;\n"
"psubd %%xmm2, %%xmm5 ;\n"
"pand %%xmm6, %%xmm0 ;\n"
"pand %%xmm6, %%xmm1 ;\n"
"pand %%xmm6, %%xmm2 ;\n"
"pandn %%xmm3, %%xmm6 ;\n"
"movdqa %%xmm7, %%xmm3 ;\n"
"pandn %%xmm4, %%xmm7 ;\n"
"pandn %%xmm5, %%xmm3 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm3, %%xmm2 ;\n"
/* store */
"movdqa %%xmm0, 0(%%eax) ;\n"
"movdqa %%xmm1, 16(%%eax) ;\n"
"movdqa %%xmm2, 32(%%eax) ;\n"
:
: "m"(u), "r"(&table[pos * 8]), "m"(t), "m"(sign) /* %0 = u, %1 = table, %2 = t, %3 = sign */
: "%eax", "%ecx", "%edx", "%xmm0", "%xmm1", "%xmm2", "%xmm3", "%xmm4", "%xmm5", "%xmm6", "%xmm7", "cc", "memory"
);
}
#endif /* defined(ED25519_GCC_32BIT_SSE_CHOOSE) */

View File

@@ -0,0 +1,61 @@
static const ge25519 ALIGN(16) ge25519_basepoint = {
{0x0325d51a,0x018b5823,0x00f6592a,0x0104a92d,0x01a4b31d,0x01d6dc5c,0x027118fe,0x007fd814,0x013cd6e5,0x0085a4db},
{0x02666658,0x01999999,0x00cccccc,0x01333333,0x01999999,0x00666666,0x03333333,0x00cccccc,0x02666666,0x01999999},
{0x00000001,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000,0x00000000},
{0x01b7dda3,0x01a2ace9,0x025eadbb,0x0003ba8a,0x0083c27e,0x00abe37d,0x01274732,0x00ccacdd,0x00fd78b7,0x019e1d7c}
};
/*
d
*/
static const bignum25519 ALIGN(16) ge25519_ecd = {
0x035978a3,0x00d37284,0x03156ebd,0x006a0a0e,0x0001c029,0x0179e898,0x03a03cbb,0x01ce7198,0x02e2b6ff,0x01480db3
};
static const bignum25519 ALIGN(16) ge25519_ec2d = {
0x02b2f159,0x01a6e509,0x022add7a,0x00d4141d,0x00038052,0x00f3d130,0x03407977,0x019ce331,0x01c56dff,0x00901b67
};
/*
sqrt(-1)
*/
static const bignum25519 ALIGN(16) ge25519_sqrtneg1 = {
0x020ea0b0,0x0186c9d2,0x008f189d,0x0035697f,0x00bd0c60,0x01fbd7a7,0x02804c9e,0x01e16569,0x0004fc1d,0x00ae0c92
};
static const ge25519_niels ALIGN(16) ge25519_niels_sliding_multiples[32] = {
{{0x0340913e,0x000e4175,0x03d673a2,0x002e8a05,0x03f4e67c,0x008f8a09,0x00c21a34,0x004cf4b8,0x01298f81,0x0113f4be},{0x018c3b85,0x0124f1bd,0x01c325f7,0x0037dc60,0x033e4cb7,0x003d42c2,0x01a44c32,0x014ca4e1,0x03a33d4b,0x001f3e74},{0x037aaa68,0x00448161,0x0093d579,0x011e6556,0x009b67a0,0x0143598c,0x01bee5ee,0x00b50b43,0x0289f0c6,0x01bc45ed}},
{{0x00fcd265,0x0047fa29,0x034faacc,0x01ef2e0d,0x00ef4d4f,0x014bd6bd,0x00f98d10,0x014c5026,0x007555bd,0x00aae456},{0x00ee9730,0x016c2a13,0x017155e4,0x01874432,0x00096a10,0x01016732,0x01a8014f,0x011e9823,0x01b9a80f,0x01e85938},{0x01d0d889,0x01a4cfc3,0x034c4295,0x0110e1ae,0x0162508c,0x00f2db4c,0x0072a2c6,0x0098da2e,0x02f12b9b,0x0168a09a}},
{{0x0047d6ba,0x0060b0e9,0x0136eff2,0x008a5939,0x03540053,0x0064a087,0x02788e5c,0x00be7c67,0x033eb1b5,0x005529f9},{0x00a5bb33,0x00af1102,0x01a05442,0x001e3af7,0x02354123,0x00bfec44,0x01f5862d,0x00dd7ba3,0x03146e20,0x00a51733},{0x012a8285,0x00f6fc60,0x023f9797,0x003e85ee,0x009c3820,0x01bda72d,0x01b3858d,0x00d35683,0x0296b3bb,0x010eaaf9}},
{{0x023221b1,0x01cb26aa,0x0074f74d,0x0099ddd1,0x01b28085,0x00192c3a,0x013b27c9,0x00fc13bd,0x01d2e531,0x0075bb75},{0x004ea3bf,0x00973425,0x001a4d63,0x01d59cee,0x01d1c0d4,0x00542e49,0x01294114,0x004fce36,0x029283c9,0x01186fa9},{0x01b8b3a2,0x00db7200,0x00935e30,0x003829f5,0x02cc0d7d,0x0077adf3,0x0220dd2c,0x0014ea53,0x01c6a0f9,0x01ea7eec}},
{{0x039d8064,0x01885f80,0x00337e6d,0x01b7a902,0x02628206,0x015eb044,0x01e30473,0x0191f2d9,0x011fadc9,0x01270169},{0x02a8632f,0x0199e2a9,0x00d8b365,0x017a8de2,0x02994279,0x0086f5b5,0x0119e4e3,0x01eb39d6,0x0338add7,0x00d2e7b4},{0x0045af1b,0x013a2fe4,0x0245e0d6,0x014538ce,0x038bfe0f,0x01d4cf16,0x037e14c9,0x0160d55e,0x0021b008,0x01cf05c8}},
{{0x01864348,0x01d6c092,0x0070262b,0x014bb844,0x00fb5acd,0x008deb95,0x003aaab5,0x00eff474,0x00029d5c,0x0062ad66},{0x02802ade,0x01c02122,0x01c4e5f7,0x00781181,0x039767fb,0x01703406,0x0342388b,0x01f5e227,0x022546d8,0x0109d6ab},{0x016089e9,0x00cb317f,0x00949b05,0x01099417,0x000c7ad2,0x011a8622,0x0088ccda,0x01290886,0x022b53df,0x00f71954}},
{{0x027fbf93,0x01c04ecc,0x01ed6a0d,0x004cdbbb,0x02bbf3af,0x00ad5968,0x01591955,0x0094f3a2,0x02d17602,0x00099e20},{0x02007f6d,0x003088a8,0x03db77ee,0x00d5ade6,0x02fe12ce,0x0107ba07,0x0107097d,0x00482a6f,0x02ec346f,0x008d3f5f},{0x032ea378,0x0028465c,0x028e2a6c,0x018efc6e,0x0090df9a,0x01a7e533,0x039bfc48,0x010c745d,0x03daa097,0x0125ee9b}},
{{0x028ccf0b,0x00f36191,0x021ac081,0x012154c8,0x034e0a6e,0x01b25192,0x00180403,0x01d7eea1,0x00218d05,0x010ed735},{0x03cfeaa0,0x01b300c4,0x008da499,0x0068c4e1,0x0219230a,0x01f2d4d0,0x02defd60,0x00e565b7,0x017f12de,0x018788a4},{0x03d0b516,0x009d8be6,0x03ddcbb3,0x0071b9fe,0x03ace2bd,0x01d64270,0x032d3ec9,0x01084065,0x0210ae4d,0x01447584}},
{{0x0020de87,0x00e19211,0x01b68102,0x00b5ac97,0x022873c0,0x01942d25,0x01271394,0x0102073f,0x02fe2482,0x01c69ff9},{0x010e9d81,0x019dbbe5,0x0089f258,0x006e06b8,0x02951883,0x018f1248,0x019b3237,0x00bc7553,0x024ddb85,0x01b4c964},{0x01c8c854,0x0060ae29,0x01406d8e,0x01cff2f9,0x00cff451,0x01778d0c,0x03ac8c41,0x01552e59,0x036559ee,0x011d1b12}},
{{0x00741147,0x0151b219,0x01092690,0x00e877e6,0x01f4d6bb,0x0072a332,0x01cd3b03,0x00dadff2,0x0097db5e,0x0086598d},{0x01c69a2b,0x01decf1b,0x02c2fa6e,0x013b7c4f,0x037beac8,0x013a16b5,0x028e7bda,0x01f6e8ac,0x01e34fe9,0x01726947},{0x01f10e67,0x003c73de,0x022b7ea2,0x010f32c2,0x03ff776a,0x00142277,0x01d38b88,0x00776138,0x03c60822,0x01201140}},
{{0x0236d175,0x0008748e,0x03c6476d,0x013f4cdc,0x02eed02a,0x00838a47,0x032e7210,0x018bcbb3,0x00858de4,0x01dc7826},{0x00a37fc7,0x0127b40b,0x01957884,0x011d30ad,0x02816683,0x016e0e23,0x00b76be4,0x012db115,0x02516506,0x0154ce62},{0x00451edf,0x00bd749e,0x03997342,0x01cc2c4c,0x00eb6975,0x01a59508,0x03a516cf,0x00c228ef,0x0168ff5a,0x01697b47}},
{{0x00527359,0x01783156,0x03afd75c,0x00ce56dc,0x00e4b970,0x001cabe9,0x029e0f6d,0x0188850c,0x0135fefd,0x00066d80},{0x02150e83,0x01448abf,0x02bb0232,0x012bf259,0x033c8268,0x00711e20,0x03fc148f,0x005e0e70,0x017d8bf9,0x0112b2e2},{0x02134b83,0x001a0517,0x0182c3cc,0x00792182,0x0313d799,0x001a3ed7,0x0344547e,0x01f24a0d,0x03de6ad2,0x00543127}},
{{0x00dca868,0x00618f27,0x015a1709,0x00ddc38a,0x0320fd13,0x0036168d,0x0371ab06,0x01783fc7,0x0391e05f,0x01e29b5d},{0x01471138,0x00fca542,0x00ca31cf,0x01ca7bad,0x0175bfbc,0x01a708ad,0x03bce212,0x01244215,0x0075bb99,0x01acad68},{0x03a0b976,0x01dc12d1,0x011aab17,0x00aba0ba,0x029806cd,0x0142f590,0x018fd8ea,0x01a01545,0x03c4ad55,0x01c971ff}},
{{0x00d098c0,0x000afdc7,0x006cd230,0x01276af3,0x03f905b2,0x0102994c,0x002eb8a4,0x015cfbeb,0x025f855f,0x01335518},{0x01cf99b2,0x0099c574,0x01a69c88,0x00881510,0x01cd4b54,0x0112109f,0x008abdc5,0x0074647a,0x0277cb1f,0x01e53324},{0x02ac5053,0x01b109b0,0x024b095e,0x016997b3,0x02f26bb6,0x00311021,0x00197885,0x01d0a55a,0x03b6fcc8,0x01c020d5}},
{{0x02584a34,0x00e7eee0,0x03257a03,0x011e95a3,0x011ead91,0x00536202,0x00b1ce24,0x008516c6,0x03669d6d,0x004ea4a8},{0x00773f01,0x0019c9ce,0x019f6171,0x01d4afde,0x02e33323,0x01ad29b6,0x02ead1dc,0x01ed51a5,0x01851ad0,0x001bbdfa},{0x00577de5,0x00ddc730,0x038b9952,0x00f281ae,0x01d50390,0x0002e071,0x000780ec,0x010d448d,0x01f8a2af,0x00f0a5b7}},
{{0x031f2541,0x00d34bae,0x0323ff9d,0x003a056d,0x02e25443,0x00a1ad05,0x00d1bee8,0x002f7f8e,0x03007477,0x002a24b1},{0x0114a713,0x01457e76,0x032255d5,0x01cc647f,0x02a4bdef,0x0153d730,0x00118bcf,0x00f755ff,0x013490c7,0x01ea674e},{0x02bda3e8,0x00bb490d,0x00f291ea,0x000abf40,0x01dea321,0x002f9ce0,0x00b2b193,0x00fa54b5,0x0128302f,0x00a19d8b}},
{{0x022ef5bd,0x01638af3,0x038c6f8a,0x01a33a3d,0x039261b2,0x01bb89b8,0x010bcf9d,0x00cf42a9,0x023d6f17,0x01da1bca},{0x00e35b25,0x000d824f,0x0152e9cf,0x00ed935d,0x020b8460,0x01c7b83f,0x00c969e5,0x01a74198,0x0046a9d9,0x00cbc768},{0x01597c6a,0x0144a99b,0x00a57551,0x0018269c,0x023c464c,0x0009b022,0x00ee39e1,0x0114c7f2,0x038a9ad2,0x01584c17}},
{{0x03b0c0d5,0x00b30a39,0x038a6ce4,0x01ded83a,0x01c277a6,0x01010a61,0x0346d3eb,0x018d995e,0x02f2c57c,0x000c286b},{0x0092aed1,0x0125e37b,0x027ca201,0x001a6b6b,0x03290f55,0x0047ba48,0x018d916c,0x01a59062,0x013e35d4,0x0002abb1},{0x003ad2aa,0x007ddcc0,0x00c10f76,0x0001590b,0x002cfca6,0x000ed23e,0x00ee4329,0x00900f04,0x01c24065,0x0082fa70}},
{{0x02025e60,0x003912b8,0x0327041c,0x017e5ee5,0x02c0ecec,0x015a0d1c,0x02b1ce7c,0x0062220b,0x0145067e,0x01a5d931},{0x009673a6,0x00e1f609,0x00927c2a,0x016faa37,0x01650ef0,0x016f63b5,0x03cd40e1,0x003bc38f,0x0361f0ac,0x01d42acc},{0x02f81037,0x008ca0e8,0x017e23d1,0x011debfe,0x01bcbb68,0x002e2563,0x03e8add6,0x000816e5,0x03fb7075,0x0153e5ac}},
{{0x02b11ecd,0x016bf185,0x008f22ef,0x00e7d2bb,0x0225d92e,0x00ece785,0x00508873,0x017e16f5,0x01fbe85d,0x01e39a0e},{0x01669279,0x017c810a,0x024941f5,0x0023ebeb,0x00eb7688,0x005760f1,0x02ca4146,0x0073cde7,0x0052bb75,0x00f5ffa7},{0x03b8856b,0x00cb7dcd,0x02f14e06,0x001820d0,0x01d74175,0x00e59e22,0x03fba550,0x00484641,0x03350088,0x01c3c9a3}},
{{0x00dcf355,0x0104481c,0x0022e464,0x01f73fe7,0x00e03325,0x0152b698,0x02ef769a,0x00973663,0x00039b8c,0x0101395b},{0x01805f47,0x019160ec,0x03832cd0,0x008b06eb,0x03d4d717,0x004cb006,0x03a75b8f,0x013b3d30,0x01cfad88,0x01f034d1},{0x0078338a,0x01c7d2e3,0x02bc2b23,0x018b3f05,0x0280d9aa,0x005f3d44,0x0220a95a,0x00eeeb97,0x0362aaec,0x00835d51}},
{{0x01b9f543,0x013fac4d,0x02ad93ae,0x018ef464,0x0212cdf7,0x01138ba9,0x011583ab,0x019c3d26,0x028790b4,0x00e2e2b6},{0x033bb758,0x01f0dbf1,0x03734bd1,0x0129b1e5,0x02b3950e,0x003bc922,0x01a53ec8,0x018c5532,0x006f3cee,0x00ae3c79},{0x0351f95d,0x0012a737,0x03d596b8,0x017658fe,0x00ace54a,0x008b66da,0x0036c599,0x012a63a2,0x032ceba1,0x00126bac}},
{{0x03dcfe7e,0x019f4f18,0x01c81aee,0x0044bc2b,0x00827165,0x014f7c13,0x03b430f0,0x00bf96cc,0x020c8d62,0x01471997},{0x01fc7931,0x001f42dd,0x00ba754a,0x005bd339,0x003fbe49,0x016b3930,0x012a159c,0x009f83b0,0x03530f67,0x01e57b85},{0x02ecbd81,0x0096c294,0x01fce4a9,0x017701a5,0x0175047d,0x00ee4a31,0x012686e5,0x008efcd4,0x0349dc54,0x01b3466f}},
{{0x02179ca3,0x01d86414,0x03f0afd0,0x00305964,0x015c7428,0x0099711e,0x015d5442,0x00c71014,0x01b40b2e,0x01d483cf},{0x01afc386,0x01984859,0x036203ff,0x0045c6a8,0x0020a8aa,0x00990baa,0x03313f10,0x007ceede,0x027429e4,0x017806ce},{0x039357a1,0x0142f8f4,0x0294a7b6,0x00eaccf4,0x0259edb3,0x01311e6e,0x004d326f,0x0130c346,0x01ccef3c,0x01c424b2}},
{{0x0364918c,0x00148fc0,0x01638a7b,0x01a1fd5b,0x028ad013,0x0081e5a4,0x01a54f33,0x0174e101,0x003d0257,0x003a856c},{0x00051dcf,0x00f62b1d,0x0143d0ad,0x0042adbd,0x000fda90,0x01743ceb,0x0173e5e4,0x017bc749,0x03b7137a,0x0105ce96},{0x00f9218a,0x015b8c7c,0x00e102f8,0x0158d7e2,0x0169a5b8,0x00b2f176,0x018b347a,0x014cfef2,0x0214a4e3,0x017f1595}},
{{0x006d7ae5,0x0195c371,0x0391e26d,0x0062a7c6,0x003f42ab,0x010dad86,0x024f8198,0x01542b2a,0x0014c454,0x0189c471},{0x0390988e,0x00b8799d,0x02e44912,0x0078e2e6,0x00075654,0x01923eed,0x0040cd72,0x00a37c76,0x0009d466,0x00c8531d},{0x02651770,0x00609d01,0x0286c265,0x0134513c,0x00ee9281,0x005d223c,0x035c760c,0x00679b36,0x0073ecb8,0x016faa50}},
{{0x02c89be4,0x016fc244,0x02f38c83,0x018beb72,0x02b3ce2c,0x0097b065,0x034f017b,0x01dd957f,0x00148f61,0x00eab357},{0x0343d2f8,0x003398fc,0x011e368e,0x00782a1f,0x00019eea,0x00117b6f,0x0128d0d1,0x01a5e6bb,0x01944f1b,0x012b41e1},{0x03318301,0x018ecd30,0x0104d0b1,0x0038398b,0x03726701,0x019da88c,0x002d9769,0x00a7a681,0x031d9028,0x00ebfc32}},
{{0x0220405e,0x0171face,0x02d930f8,0x017f6d6a,0x023b8c47,0x0129d5f9,0x02972456,0x00a3a524,0x006f4cd2,0x004439fa},{0x00c53505,0x0190c2fd,0x00507244,0x009930f9,0x01a39270,0x01d327c6,0x0399bc47,0x01cfe13d,0x0332bd99,0x00b33e7d},{0x0203f5e4,0x003627b5,0x00018af8,0x01478581,0x004a2218,0x002e3bb7,0x039384d0,0x0146ea62,0x020b9693,0x0017155f}},
{{0x03c97e6f,0x00738c47,0x03b5db1f,0x01808fcf,0x01e8fc98,0x01ed25dd,0x01bf5045,0x00eb5c2b,0x0178fe98,0x01b85530},{0x01c20eb0,0x01aeec22,0x030b9eee,0x01b7d07e,0x0187e16f,0x014421fb,0x009fa731,0x0040b6d7,0x00841861,0x00a27fbc},{0x02d69abf,0x0058cdbf,0x0129f9ec,0x013c19ae,0x026c5b93,0x013a7fe7,0x004bb2ba,0x0063226f,0x002a95ca,0x01abefd9}},
{{0x02f5d2c1,0x00378318,0x03734fb5,0x01258073,0x0263f0f6,0x01ad70e0,0x01b56d06,0x01188fbd,0x011b9503,0x0036d2e1},{0x0113a8cc,0x01541c3e,0x02ac2bbc,0x01d95867,0x01f47459,0x00ead489,0x00ab5b48,0x01db3b45,0x00edb801,0x004b024f},{0x00b8190f,0x011fe4c2,0x00621f82,0x010508d7,0x001a5a76,0x00c7d7fd,0x03aab96d,0x019cd9dc,0x019c6635,0x00ceaa1e}},
{{0x01085cf2,0x01fd47af,0x03e3f5e1,0x004b3e99,0x01e3d46a,0x0060033c,0x015ff0a8,0x0150cdd8,0x029e8e21,0x008cf1bc},{0x00156cb1,0x003d623f,0x01a4f069,0x00d8d053,0x01b68aea,0x01ca5ab6,0x0316ae43,0x0134dc44,0x001c8d58,0x0084b343},{0x0318c781,0x0135441f,0x03a51a5e,0x019293f4,0x0048bb37,0x013d3341,0x0143151e,0x019c74e1,0x00911914,0x0076ddde}},
{{0x006bc26f,0x00d48e5f,0x00227bbe,0x00629ea8,0x01ea5f8b,0x0179a330,0x027a1d5f,0x01bf8f8e,0x02d26e2a,0x00c6b65e},{0x01701ab6,0x0051da77,0x01b4b667,0x00a0ce7c,0x038ae37b,0x012ac852,0x03a0b0fe,0x0097c2bb,0x00a017d2,0x01eb8b2a},{0x0120b962,0x0005fb42,0x0353b6fd,0x0061f8ce,0x007a1463,0x01560a64,0x00e0a792,0x01907c92,0x013a6622,0x007b47f1}}
};

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@@ -0,0 +1,436 @@
#if defined(ED25519_GCC_64BIT_SSE_CHOOSE)
#define HAVE_GE25519_SCALARMULT_BASE_CHOOSE_NIELS
DONNA_NOINLINE static void
ge25519_scalarmult_base_choose_niels(ge25519_niels *t, const uint8_t table[256][96], uint32_t pos, signed char b) {
int64_t breg = (int64_t)b;
uint64_t sign = (uint64_t)breg >> 63;
uint64_t mask = ~(sign - 1);
uint64_t u = (breg + mask) ^ mask;
__asm__ __volatile__ (
/* ysubx+xaddy+t2d */
"movq %0, %%rax ;\n"
"movd %%rax, %%xmm14 ;\n"
"pshufd $0x00, %%xmm14, %%xmm14 ;\n"
"pxor %%xmm0, %%xmm0 ;\n"
"pxor %%xmm1, %%xmm1 ;\n"
"pxor %%xmm2, %%xmm2 ;\n"
"pxor %%xmm3, %%xmm3 ;\n"
"pxor %%xmm4, %%xmm4 ;\n"
"pxor %%xmm5, %%xmm5 ;\n"
/* 0 */
"movq $0, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movq $1, %%rax ;\n"
"movd %%rax, %%xmm6 ;\n"
"pxor %%xmm7, %%xmm7 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm6, %%xmm2 ;\n"
"por %%xmm7, %%xmm3 ;\n"
/* 1 */
"movq $1, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 0(%1), %%xmm6 ;\n"
"movdqa 16(%1), %%xmm7 ;\n"
"movdqa 32(%1), %%xmm8 ;\n"
"movdqa 48(%1), %%xmm9 ;\n"
"movdqa 64(%1), %%xmm10 ;\n"
"movdqa 80(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 2 */
"movq $2, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 96(%1), %%xmm6 ;\n"
"movdqa 112(%1), %%xmm7 ;\n"
"movdqa 128(%1), %%xmm8 ;\n"
"movdqa 144(%1), %%xmm9 ;\n"
"movdqa 160(%1), %%xmm10 ;\n"
"movdqa 176(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 3 */
"movq $3, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 192(%1), %%xmm6 ;\n"
"movdqa 208(%1), %%xmm7 ;\n"
"movdqa 224(%1), %%xmm8 ;\n"
"movdqa 240(%1), %%xmm9 ;\n"
"movdqa 256(%1), %%xmm10 ;\n"
"movdqa 272(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 4 */
"movq $4, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 288(%1), %%xmm6 ;\n"
"movdqa 304(%1), %%xmm7 ;\n"
"movdqa 320(%1), %%xmm8 ;\n"
"movdqa 336(%1), %%xmm9 ;\n"
"movdqa 352(%1), %%xmm10 ;\n"
"movdqa 368(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 5 */
"movq $5, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 384(%1), %%xmm6 ;\n"
"movdqa 400(%1), %%xmm7 ;\n"
"movdqa 416(%1), %%xmm8 ;\n"
"movdqa 432(%1), %%xmm9 ;\n"
"movdqa 448(%1), %%xmm10 ;\n"
"movdqa 464(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 6 */
"movq $6, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 480(%1), %%xmm6 ;\n"
"movdqa 496(%1), %%xmm7 ;\n"
"movdqa 512(%1), %%xmm8 ;\n"
"movdqa 528(%1), %%xmm9 ;\n"
"movdqa 544(%1), %%xmm10 ;\n"
"movdqa 560(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 7 */
"movq $7, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 576(%1), %%xmm6 ;\n"
"movdqa 592(%1), %%xmm7 ;\n"
"movdqa 608(%1), %%xmm8 ;\n"
"movdqa 624(%1), %%xmm9 ;\n"
"movdqa 640(%1), %%xmm10 ;\n"
"movdqa 656(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 8 */
"movq $8, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 672(%1), %%xmm6 ;\n"
"movdqa 688(%1), %%xmm7 ;\n"
"movdqa 704(%1), %%xmm8 ;\n"
"movdqa 720(%1), %%xmm9 ;\n"
"movdqa 736(%1), %%xmm10 ;\n"
"movdqa 752(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* conditionally swap ysubx and xaddy */
"movq %3, %%rax ;\n"
"xorq $1, %%rax ;\n"
"movd %%rax, %%xmm14 ;\n"
"pxor %%xmm15, %%xmm15 ;\n"
"pshufd $0x00, %%xmm14, %%xmm14 ;\n"
"pxor %%xmm0, %%xmm2 ;\n"
"pxor %%xmm1, %%xmm3 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa %%xmm2, %%xmm6 ;\n"
"movdqa %%xmm3, %%xmm7 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pxor %%xmm6, %%xmm0 ;\n"
"pxor %%xmm7, %%xmm1 ;\n"
"pxor %%xmm0, %%xmm2 ;\n"
"pxor %%xmm1, %%xmm3 ;\n"
/* store ysubx */
"xorq %%rax, %%rax ;\n"
"movd %%xmm0, %%rcx ;\n"
"movd %%xmm0, %%r8 ;\n"
"movd %%xmm1, %%rsi ;\n"
"pshufd $0xee, %%xmm0, %%xmm0 ;\n"
"pshufd $0xee, %%xmm1, %%xmm1 ;\n"
"movd %%xmm0, %%rdx ;\n"
"movd %%xmm1, %%rdi ;\n"
"shrdq $51, %%rdx, %%r8 ;\n"
"shrdq $38, %%rsi, %%rdx ;\n"
"shrdq $25, %%rdi, %%rsi ;\n"
"shrq $12, %%rdi ;\n"
"movq %%rcx, %%r9 ;\n"
"movq %%r8, %%r10 ;\n"
"movq %%rdx, %%r11 ;\n"
"movq %%rsi, %%r12 ;\n"
"movq %%rdi, %%r13 ;\n"
"shrq $26, %%r9 ;\n"
"shrq $26, %%r10 ;\n"
"shrq $26, %%r11 ;\n"
"shrq $26, %%r12 ;\n"
"shrq $26, %%r13 ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"andl $0x1ffffff, %%r9d ;\n"
"andl $0x3ffffff, %%r8d ;\n"
"andl $0x1ffffff, %%r10d ;\n"
"andl $0x3ffffff, %%edx ;\n"
"andl $0x1ffffff, %%r11d ;\n"
"andl $0x3ffffff, %%esi ;\n"
"andl $0x1ffffff, %%r12d ;\n"
"andl $0x3ffffff, %%edi ;\n"
"andl $0x1ffffff, %%r13d ;\n"
"movl %%ecx, 0(%2) ;\n"
"movl %%r9d, 4(%2) ;\n"
"movl %%r8d, 8(%2) ;\n"
"movl %%r10d, 12(%2) ;\n"
"movl %%edx, 16(%2) ;\n"
"movl %%r11d, 20(%2) ;\n"
"movl %%esi, 24(%2) ;\n"
"movl %%r12d, 28(%2) ;\n"
"movl %%edi, 32(%2) ;\n"
"movl %%r13d, 36(%2) ;\n"
"movq %%rax, 40(%2) ;\n"
/* store xaddy */
"movd %%xmm2, %%rcx ;\n"
"movd %%xmm2, %%r8 ;\n"
"movd %%xmm3, %%rsi ;\n"
"pshufd $0xee, %%xmm2, %%xmm2 ;\n"
"pshufd $0xee, %%xmm3, %%xmm3 ;\n"
"movd %%xmm2, %%rdx ;\n"
"movd %%xmm3, %%rdi ;\n"
"shrdq $51, %%rdx, %%r8 ;\n"
"shrdq $38, %%rsi, %%rdx ;\n"
"shrdq $25, %%rdi, %%rsi ;\n"
"shrq $12, %%rdi ;\n"
"movq %%rcx, %%r9 ;\n"
"movq %%r8, %%r10 ;\n"
"movq %%rdx, %%r11 ;\n"
"movq %%rsi, %%r12 ;\n"
"movq %%rdi, %%r13 ;\n"
"shrq $26, %%r9 ;\n"
"shrq $26, %%r10 ;\n"
"shrq $26, %%r11 ;\n"
"shrq $26, %%r12 ;\n"
"shrq $26, %%r13 ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"andl $0x1ffffff, %%r9d ;\n"
"andl $0x3ffffff, %%r8d ;\n"
"andl $0x1ffffff, %%r10d ;\n"
"andl $0x3ffffff, %%edx ;\n"
"andl $0x1ffffff, %%r11d ;\n"
"andl $0x3ffffff, %%esi ;\n"
"andl $0x1ffffff, %%r12d ;\n"
"andl $0x3ffffff, %%edi ;\n"
"andl $0x1ffffff, %%r13d ;\n"
"movl %%ecx, 48(%2) ;\n"
"movl %%r9d, 52(%2) ;\n"
"movl %%r8d, 56(%2) ;\n"
"movl %%r10d, 60(%2) ;\n"
"movl %%edx, 64(%2) ;\n"
"movl %%r11d, 68(%2) ;\n"
"movl %%esi, 72(%2) ;\n"
"movl %%r12d, 76(%2) ;\n"
"movl %%edi, 80(%2) ;\n"
"movl %%r13d, 84(%2) ;\n"
"movq %%rax, 88(%2) ;\n"
/* extract t2d */
"xorq %%rax, %%rax ;\n"
"movd %%xmm4, %%rcx ;\n"
"movd %%xmm4, %%r8 ;\n"
"movd %%xmm5, %%rsi ;\n"
"pshufd $0xee, %%xmm4, %%xmm4 ;\n"
"pshufd $0xee, %%xmm5, %%xmm5 ;\n"
"movd %%xmm4, %%rdx ;\n"
"movd %%xmm5, %%rdi ;\n"
"shrdq $51, %%rdx, %%r8 ;\n"
"shrdq $38, %%rsi, %%rdx ;\n"
"shrdq $25, %%rdi, %%rsi ;\n"
"shrq $12, %%rdi ;\n"
"movq %%rcx, %%r9 ;\n"
"movq %%r8, %%r10 ;\n"
"movq %%rdx, %%r11 ;\n"
"movq %%rsi, %%r12 ;\n"
"movq %%rdi, %%r13 ;\n"
"shrq $26, %%r9 ;\n"
"shrq $26, %%r10 ;\n"
"shrq $26, %%r11 ;\n"
"shrq $26, %%r12 ;\n"
"shrq $26, %%r13 ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"andl $0x1ffffff, %%r9d ;\n"
"andl $0x3ffffff, %%r8d ;\n"
"andl $0x1ffffff, %%r10d ;\n"
"andl $0x3ffffff, %%edx ;\n"
"andl $0x1ffffff, %%r11d ;\n"
"andl $0x3ffffff, %%esi ;\n"
"andl $0x1ffffff, %%r12d ;\n"
"andl $0x3ffffff, %%edi ;\n"
"andl $0x1ffffff, %%r13d ;\n"
"movd %%ecx, %%xmm0 ;\n"
"movd %%r9d, %%xmm4 ;\n"
"movd %%r8d, %%xmm8 ;\n"
"movd %%r10d, %%xmm3 ;\n"
"movd %%edx, %%xmm1 ;\n"
"movd %%r11d, %%xmm5 ;\n"
"movd %%esi, %%xmm6 ;\n"
"movd %%r12d, %%xmm7 ;\n"
"movd %%edi, %%xmm2 ;\n"
"movd %%r13d, %%xmm9 ;\n"
"punpckldq %%xmm4, %%xmm0 ;\n"
"punpckldq %%xmm3, %%xmm8 ;\n"
"punpckldq %%xmm5, %%xmm1 ;\n"
"punpckldq %%xmm7, %%xmm6 ;\n"
"punpckldq %%xmm9, %%xmm2 ;\n"
"punpcklqdq %%xmm8, %%xmm0 ;\n"
"punpcklqdq %%xmm6, %%xmm1 ;\n"
/* set up 2p in to 3/4 */
"movl $0x7ffffda, %%ecx ;\n"
"movl $0x3fffffe, %%edx ;\n"
"movl $0x7fffffe, %%eax ;\n"
"movd %%ecx, %%xmm3 ;\n"
"movd %%edx, %%xmm5 ;\n"
"movd %%eax, %%xmm4 ;\n"
"punpckldq %%xmm5, %%xmm3 ;\n"
"punpckldq %%xmm5, %%xmm4 ;\n"
"punpcklqdq %%xmm4, %%xmm3 ;\n"
"movdqa %%xmm4, %%xmm5 ;\n"
"punpcklqdq %%xmm4, %%xmm4 ;\n"
/* subtract and conditionally move */
"movl %3, %%ecx ;\n"
"sub $1, %%ecx ;\n"
"movd %%ecx, %%xmm6 ;\n"
"pshufd $0x00, %%xmm6, %%xmm6 ;\n"
"movdqa %%xmm6, %%xmm7 ;\n"
"psubd %%xmm0, %%xmm3 ;\n"
"psubd %%xmm1, %%xmm4 ;\n"
"psubd %%xmm2, %%xmm5 ;\n"
"pand %%xmm6, %%xmm0 ;\n"
"pand %%xmm6, %%xmm1 ;\n"
"pand %%xmm6, %%xmm2 ;\n"
"pandn %%xmm3, %%xmm6 ;\n"
"movdqa %%xmm7, %%xmm3 ;\n"
"pandn %%xmm4, %%xmm7 ;\n"
"pandn %%xmm5, %%xmm3 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm3, %%xmm2 ;\n"
/* store t2d */
"movdqa %%xmm0, 96(%2) ;\n"
"movdqa %%xmm1, 112(%2) ;\n"
"movdqa %%xmm2, 128(%2) ;\n"
:
: "m"(u), "r"(&table[pos * 8]), "r"(t), "m"(sign) /* %0 = u, %1 = table, %2 = t, %3 = sign */
:
"%rax", "%rcx", "%rdx", "%rdi", "%rsi", "%r8", "%r9", "%r10", "%r11", "%r12", "%r13",
"%xmm0", "%xmm1", "%xmm2", "%xmm3", "%xmm4", "%xmm5", "%xmm6", "%xmm7", "%xmm8", "%xmm9", "%xmm10", "%xmm11", "%xmm14", "%xmm14",
"cc", "memory"
);
}
#endif /* defined(ED25519_GCC_64BIT_SSE_CHOOSE) */

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@@ -0,0 +1,53 @@
static const ge25519 ge25519_basepoint = {
{0x00062d608f25d51a,0x000412a4b4f6592a,0x00075b7171a4b31d,0x0001ff60527118fe,0x000216936d3cd6e5},
{0x0006666666666658,0x0004cccccccccccc,0x0001999999999999,0x0003333333333333,0x0006666666666666},
{0x0000000000000001,0x0000000000000000,0x0000000000000000,0x0000000000000000,0x0000000000000000},
{0x00068ab3a5b7dda3,0x00000eea2a5eadbb,0x0002af8df483c27e,0x000332b375274732,0x00067875f0fd78b7}
};
static const bignum25519 ge25519_ecd = {
0x00034dca135978a3,0x0001a8283b156ebd,0x0005e7a26001c029,0x000739c663a03cbb,0x00052036cee2b6ff
};
static const bignum25519 ge25519_ec2d = {
0x00069b9426b2f159,0x00035050762add7a,0x0003cf44c0038052,0x0006738cc7407977,0x0002406d9dc56dff
};
static const bignum25519 ge25519_sqrtneg1 = {
0x00061b274a0ea0b0,0x0000d5a5fc8f189d,0x0007ef5e9cbd0c60,0x00078595a6804c9e,0x0002b8324804fc1d
};
static const ge25519_niels ge25519_niels_sliding_multiples[32] = {
{{0x00003905d740913e,0x0000ba2817d673a2,0x00023e2827f4e67c,0x000133d2e0c21a34,0x00044fd2f9298f81},{0x000493c6f58c3b85,0x0000df7181c325f7,0x0000f50b0b3e4cb7,0x0005329385a44c32,0x00007cf9d3a33d4b},{0x00011205877aaa68,0x000479955893d579,0x00050d66309b67a0,0x0002d42d0dbee5ee,0x0006f117b689f0c6}},
{{0x00011fe8a4fcd265,0x0007bcb8374faacc,0x00052f5af4ef4d4f,0x0005314098f98d10,0x0002ab91587555bd},{0x0005b0a84cee9730,0x00061d10c97155e4,0x0004059cc8096a10,0x00047a608da8014f,0x0007a164e1b9a80f},{0x0006933f0dd0d889,0x00044386bb4c4295,0x0003cb6d3162508c,0x00026368b872a2c6,0x0005a2826af12b9b}},
{{0x000182c3a447d6ba,0x00022964e536eff2,0x000192821f540053,0x0002f9f19e788e5c,0x000154a7e73eb1b5},{0x0002bc4408a5bb33,0x000078ebdda05442,0x0002ffb112354123,0x000375ee8df5862d,0x0002945ccf146e20},{0x0003dbf1812a8285,0x0000fa17ba3f9797,0x0006f69cb49c3820,0x00034d5a0db3858d,0x00043aabe696b3bb}},
{{0x00072c9aaa3221b1,0x000267774474f74d,0x000064b0e9b28085,0x0003f04ef53b27c9,0x0001d6edd5d2e531},{0x00025cd0944ea3bf,0x00075673b81a4d63,0x000150b925d1c0d4,0x00013f38d9294114,0x000461bea69283c9},{0x00036dc801b8b3a2,0x0000e0a7d4935e30,0x0001deb7cecc0d7d,0x000053a94e20dd2c,0x0007a9fbb1c6a0f9}},
{{0x0006217e039d8064,0x0006dea408337e6d,0x00057ac112628206,0x000647cb65e30473,0x00049c05a51fadc9},{0x0006678aa6a8632f,0x0005ea3788d8b365,0x00021bd6d6994279,0x0007ace75919e4e3,0x00034b9ed338add7},{0x0004e8bf9045af1b,0x000514e33a45e0d6,0x0007533c5b8bfe0f,0x000583557b7e14c9,0x00073c172021b008}},
{{0x00075b0249864348,0x00052ee11070262b,0x000237ae54fb5acd,0x0003bfd1d03aaab5,0x00018ab598029d5c},{0x000700848a802ade,0x0001e04605c4e5f7,0x0005c0d01b9767fb,0x0007d7889f42388b,0x0004275aae2546d8},{0x00032cc5fd6089e9,0x000426505c949b05,0x00046a18880c7ad2,0x0004a4221888ccda,0x0003dc65522b53df}},
{{0x0007013b327fbf93,0x0001336eeded6a0d,0x0002b565a2bbf3af,0x000253ce89591955,0x0000267882d17602},{0x0000c222a2007f6d,0x000356b79bdb77ee,0x00041ee81efe12ce,0x000120a9bd07097d,0x000234fd7eec346f},{0x0000a119732ea378,0x00063bf1ba8e2a6c,0x00069f94cc90df9a,0x000431d1779bfc48,0x000497ba6fdaa097}},
{{0x0003cd86468ccf0b,0x00048553221ac081,0x0006c9464b4e0a6e,0x00075fba84180403,0x00043b5cd4218d05},{0x0006cc0313cfeaa0,0x0001a313848da499,0x0007cb534219230a,0x00039596dedefd60,0x00061e22917f12de},{0x0002762f9bd0b516,0x0001c6e7fbddcbb3,0x00075909c3ace2bd,0x00042101972d3ec9,0x000511d61210ae4d}},
{{0x000386484420de87,0x0002d6b25db68102,0x000650b4962873c0,0x0004081cfd271394,0x00071a7fe6fe2482},{0x000676ef950e9d81,0x0001b81ae089f258,0x00063c4922951883,0x0002f1d54d9b3237,0x0006d325924ddb85},{0x000182b8a5c8c854,0x00073fcbe5406d8e,0x0005de3430cff451,0x000554b967ac8c41,0x0004746c4b6559ee}},
{{0x000546c864741147,0x0003a1df99092690,0x0001ca8cc9f4d6bb,0x00036b7fc9cd3b03,0x000219663497db5e},{0x00077b3c6dc69a2b,0x0004edf13ec2fa6e,0x0004e85ad77beac8,0x0007dba2b28e7bda,0x0005c9a51de34fe9},{0x0000f1cf79f10e67,0x00043ccb0a2b7ea2,0x00005089dfff776a,0x0001dd84e1d38b88,0x0004804503c60822}},
{{0x000021d23a36d175,0x0004fd3373c6476d,0x00020e291eeed02a,0x00062f2ecf2e7210,0x000771e098858de4},{0x00049ed02ca37fc7,0x000474c2b5957884,0x0005b8388e816683,0x0004b6c454b76be4,0x000553398a516506},{0x0002f5d278451edf,0x000730b133997342,0x0006965420eb6975,0x000308a3bfa516cf,0x0005a5ed1d68ff5a}},
{{0x0005e0c558527359,0x0003395b73afd75c,0x000072afa4e4b970,0x00062214329e0f6d,0x000019b60135fefd},{0x0005122afe150e83,0x0004afc966bb0232,0x0001c478833c8268,0x00017839c3fc148f,0x00044acb897d8bf9},{0x000068145e134b83,0x0001e4860982c3cc,0x000068fb5f13d799,0x0007c9283744547e,0x000150c49fde6ad2}},
{{0x0001863c9cdca868,0x0003770e295a1709,0x0000d85a3720fd13,0x0005e0ff1f71ab06,0x00078a6d7791e05f},{0x0003f29509471138,0x000729eeb4ca31cf,0x00069c22b575bfbc,0x0004910857bce212,0x0006b2b5a075bb99},{0x0007704b47a0b976,0x0002ae82e91aab17,0x00050bd6429806cd,0x00068055158fd8ea,0x000725c7ffc4ad55}},
{{0x00002bf71cd098c0,0x00049dabcc6cd230,0x00040a6533f905b2,0x000573efac2eb8a4,0x0004cd54625f855f},{0x00026715d1cf99b2,0x0002205441a69c88,0x000448427dcd4b54,0x0001d191e88abdc5,0x000794cc9277cb1f},{0x0006c426c2ac5053,0x0005a65ece4b095e,0x0000c44086f26bb6,0x0007429568197885,0x0007008357b6fcc8}},
{{0x00039fbb82584a34,0x00047a568f257a03,0x00014d88091ead91,0x0002145b18b1ce24,0x00013a92a3669d6d},{0x0000672738773f01,0x000752bf799f6171,0x0006b4a6dae33323,0x0007b54696ead1dc,0x00006ef7e9851ad0},{0x0003771cc0577de5,0x0003ca06bb8b9952,0x00000b81c5d50390,0x00043512340780ec,0x0003c296ddf8a2af}},
{{0x00034d2ebb1f2541,0x0000e815b723ff9d,0x000286b416e25443,0x0000bdfe38d1bee8,0x0000a892c7007477},{0x000515f9d914a713,0x00073191ff2255d5,0x00054f5cc2a4bdef,0x0003dd57fc118bcf,0x0007a99d393490c7},{0x0002ed2436bda3e8,0x00002afd00f291ea,0x0000be7381dea321,0x0003e952d4b2b193,0x000286762d28302f}},
{{0x00058e2bce2ef5bd,0x00068ce8f78c6f8a,0x0006ee26e39261b2,0x00033d0aa50bcf9d,0x0007686f2a3d6f17},{0x000036093ce35b25,0x0003b64d7552e9cf,0x00071ee0fe0b8460,0x00069d0660c969e5,0x00032f1da046a9d9},{0x000512a66d597c6a,0x0000609a70a57551,0x000026c08a3c464c,0x0004531fc8ee39e1,0x000561305f8a9ad2}},
{{0x0002cc28e7b0c0d5,0x00077b60eb8a6ce4,0x0004042985c277a6,0x000636657b46d3eb,0x000030a1aef2c57c},{0x0004978dec92aed1,0x000069adae7ca201,0x00011ee923290f55,0x00069641898d916c,0x00000aaec53e35d4},{0x0001f773003ad2aa,0x000005642cc10f76,0x00003b48f82cfca6,0x0002403c10ee4329,0x00020be9c1c24065}},
{{0x0000e44ae2025e60,0x0005f97b9727041c,0x0005683472c0ecec,0x000188882eb1ce7c,0x00069764c545067e},{0x000387d8249673a6,0x0005bea8dc927c2a,0x0005bd8ed5650ef0,0x0000ef0e3fcd40e1,0x000750ab3361f0ac},{0x00023283a2f81037,0x000477aff97e23d1,0x0000b8958dbcbb68,0x0000205b97e8add6,0x00054f96b3fb7075}},
{{0x0005afc616b11ecd,0x00039f4aec8f22ef,0x0003b39e1625d92e,0x0005f85bd4508873,0x00078e6839fbe85d},{0x0005f20429669279,0x00008fafae4941f5,0x00015d83c4eb7688,0x0001cf379eca4146,0x0003d7fe9c52bb75},{0x00032df737b8856b,0x0000608342f14e06,0x0003967889d74175,0x0001211907fba550,0x00070f268f350088}},
{{0x0004112070dcf355,0x0007dcff9c22e464,0x00054ada60e03325,0x00025cd98eef769a,0x000404e56c039b8c},{0x00064583b1805f47,0x00022c1baf832cd0,0x000132c01bd4d717,0x0004ecf4c3a75b8f,0x0007c0d345cfad88},{0x00071f4b8c78338a,0x00062cfc16bc2b23,0x00017cf51280d9aa,0x0003bbae5e20a95a,0x00020d754762aaec}},
{{0x0004feb135b9f543,0x00063bd192ad93ae,0x00044e2ea612cdf7,0x000670f4991583ab,0x00038b8ada8790b4},{0x0007c36fc73bb758,0x0004a6c797734bd1,0x0000ef248ab3950e,0x00063154c9a53ec8,0x0002b8f1e46f3cee},{0x00004a9cdf51f95d,0x0005d963fbd596b8,0x00022d9b68ace54a,0x0004a98e8836c599,0x000049aeb32ceba1}},
{{0x00067d3c63dcfe7e,0x000112f0adc81aee,0x00053df04c827165,0x0002fe5b33b430f0,0x00051c665e0c8d62},{0x00007d0b75fc7931,0x00016f4ce4ba754a,0x0005ace4c03fbe49,0x00027e0ec12a159c,0x000795ee17530f67},{0x00025b0a52ecbd81,0x0005dc0695fce4a9,0x0003b928c575047d,0x00023bf3512686e5,0x0006cd19bf49dc54}},
{{0x0007619052179ca3,0x0000c16593f0afd0,0x000265c4795c7428,0x00031c40515d5442,0x0007520f3db40b2e},{0x0006612165afc386,0x0001171aa36203ff,0x0002642ea820a8aa,0x0001f3bb7b313f10,0x0005e01b3a7429e4},{0x00050be3d39357a1,0x0003ab33d294a7b6,0x0004c479ba59edb3,0x0004c30d184d326f,0x00071092c9ccef3c}},
{{0x0000523f0364918c,0x000687f56d638a7b,0x00020796928ad013,0x0005d38405a54f33,0x0000ea15b03d0257},{0x0003d8ac74051dcf,0x00010ab6f543d0ad,0x0005d0f3ac0fda90,0x0005ef1d2573e5e4,0x0004173a5bb7137a},{0x00056e31f0f9218a,0x0005635f88e102f8,0x0002cbc5d969a5b8,0x000533fbc98b347a,0x0005fc565614a4e3}},
{{0x0006570dc46d7ae5,0x00018a9f1b91e26d,0x000436b6183f42ab,0x000550acaa4f8198,0x00062711c414c454},{0x0002e1e67790988e,0x0001e38b9ae44912,0x000648fbb4075654,0x00028df1d840cd72,0x0003214c7409d466},{0x0001827406651770,0x0004d144f286c265,0x00017488f0ee9281,0x00019e6cdb5c760c,0x0005bea94073ecb8}},
{{0x0005bf0912c89be4,0x00062fadcaf38c83,0x00025ec196b3ce2c,0x00077655ff4f017b,0x0003aacd5c148f61},{0x0000ce63f343d2f8,0x0001e0a87d1e368e,0x000045edbc019eea,0x0006979aed28d0d1,0x0004ad0785944f1b},{0x00063b34c3318301,0x0000e0e62d04d0b1,0x000676a233726701,0x00029e9a042d9769,0x0003aff0cb1d9028}},
{{0x0005c7eb3a20405e,0x0005fdb5aad930f8,0x0004a757e63b8c47,0x00028e9492972456,0x000110e7e86f4cd2},{0x0006430bf4c53505,0x000264c3e4507244,0x00074c9f19a39270,0x00073f84f799bc47,0x0002ccf9f732bd99},{0x0000d89ed603f5e4,0x00051e1604018af8,0x0000b8eedc4a2218,0x00051ba98b9384d0,0x00005c557e0b9693}},
{{0x0001ce311fc97e6f,0x0006023f3fb5db1f,0x0007b49775e8fc98,0x0003ad70adbf5045,0x0006e154c178fe98},{0x0006bbb089c20eb0,0x0006df41fb0b9eee,0x00051087ed87e16f,0x000102db5c9fa731,0x000289fef0841861},{0x00016336fed69abf,0x0004f066b929f9ec,0x0004e9ff9e6c5b93,0x00018c89bc4bb2ba,0x0006afbf642a95ca}},
{{0x0000de0c62f5d2c1,0x00049601cf734fb5,0x0006b5c38263f0f6,0x0004623ef5b56d06,0x0000db4b851b9503},{0x00055070f913a8cc,0x000765619eac2bbc,0x0003ab5225f47459,0x00076ced14ab5b48,0x00012c093cedb801},{0x00047f9308b8190f,0x000414235c621f82,0x00031f5ff41a5a76,0x0006736773aab96d,0x00033aa8799c6635}},
{{0x0007f51ebd085cf2,0x00012cfa67e3f5e1,0x0001800cf1e3d46a,0x00054337615ff0a8,0x000233c6f29e8e21},{0x0000f588fc156cb1,0x000363414da4f069,0x0007296ad9b68aea,0x0004d3711316ae43,0x000212cd0c1c8d58},{0x0004d5107f18c781,0x00064a4fd3a51a5e,0x0004f4cd0448bb37,0x000671d38543151e,0x0001db7778911914}},
{{0x000352397c6bc26f,0x00018a7aa0227bbe,0x0005e68cc1ea5f8b,0x0006fe3e3a7a1d5f,0x00031ad97ad26e2a},{0x00014769dd701ab6,0x00028339f1b4b667,0x0004ab214b8ae37b,0x00025f0aefa0b0fe,0x0007ae2ca8a017d2},{0x000017ed0920b962,0x000187e33b53b6fd,0x00055829907a1463,0x000641f248e0a792,0x0001ed1fc53a6622}}
};

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@@ -0,0 +1,435 @@
#if defined(ED25519_GCC_64BIT_32BIT_CHOOSE)
#define HAVE_GE25519_SCALARMULT_BASE_CHOOSE_NIELS
DONNA_NOINLINE static void
ge25519_scalarmult_base_choose_niels(ge25519_niels *t, const uint8_t table[256][96], uint32_t pos, signed char b) {
int64_t breg = (int64_t)b;
uint64_t sign = (uint64_t)breg >> 63;
uint64_t mask = ~(sign - 1);
uint64_t u = (breg + mask) ^ mask;
__asm__ __volatile__ (
/* ysubx+xaddy+t2d */
"movq %0, %%rax ;\n"
"movd %%rax, %%xmm14 ;\n"
"pshufd $0x00, %%xmm14, %%xmm14 ;\n"
"pxor %%xmm0, %%xmm0 ;\n"
"pxor %%xmm1, %%xmm1 ;\n"
"pxor %%xmm2, %%xmm2 ;\n"
"pxor %%xmm3, %%xmm3 ;\n"
"pxor %%xmm4, %%xmm4 ;\n"
"pxor %%xmm5, %%xmm5 ;\n"
/* 0 */
"movq $0, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movq $1, %%rax ;\n"
"movd %%rax, %%xmm6 ;\n"
"pxor %%xmm7, %%xmm7 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm6, %%xmm2 ;\n"
"por %%xmm7, %%xmm3 ;\n"
/* 1 */
"movq $1, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 0(%1), %%xmm6 ;\n"
"movdqa 16(%1), %%xmm7 ;\n"
"movdqa 32(%1), %%xmm8 ;\n"
"movdqa 48(%1), %%xmm9 ;\n"
"movdqa 64(%1), %%xmm10 ;\n"
"movdqa 80(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 2 */
"movq $2, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 96(%1), %%xmm6 ;\n"
"movdqa 112(%1), %%xmm7 ;\n"
"movdqa 128(%1), %%xmm8 ;\n"
"movdqa 144(%1), %%xmm9 ;\n"
"movdqa 160(%1), %%xmm10 ;\n"
"movdqa 176(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 3 */
"movq $3, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 192(%1), %%xmm6 ;\n"
"movdqa 208(%1), %%xmm7 ;\n"
"movdqa 224(%1), %%xmm8 ;\n"
"movdqa 240(%1), %%xmm9 ;\n"
"movdqa 256(%1), %%xmm10 ;\n"
"movdqa 272(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 4 */
"movq $4, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 288(%1), %%xmm6 ;\n"
"movdqa 304(%1), %%xmm7 ;\n"
"movdqa 320(%1), %%xmm8 ;\n"
"movdqa 336(%1), %%xmm9 ;\n"
"movdqa 352(%1), %%xmm10 ;\n"
"movdqa 368(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 5 */
"movq $5, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 384(%1), %%xmm6 ;\n"
"movdqa 400(%1), %%xmm7 ;\n"
"movdqa 416(%1), %%xmm8 ;\n"
"movdqa 432(%1), %%xmm9 ;\n"
"movdqa 448(%1), %%xmm10 ;\n"
"movdqa 464(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 6 */
"movq $6, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 480(%1), %%xmm6 ;\n"
"movdqa 496(%1), %%xmm7 ;\n"
"movdqa 512(%1), %%xmm8 ;\n"
"movdqa 528(%1), %%xmm9 ;\n"
"movdqa 544(%1), %%xmm10 ;\n"
"movdqa 560(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 7 */
"movq $7, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 576(%1), %%xmm6 ;\n"
"movdqa 592(%1), %%xmm7 ;\n"
"movdqa 608(%1), %%xmm8 ;\n"
"movdqa 624(%1), %%xmm9 ;\n"
"movdqa 640(%1), %%xmm10 ;\n"
"movdqa 656(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 8 */
"movq $8, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 672(%1), %%xmm6 ;\n"
"movdqa 688(%1), %%xmm7 ;\n"
"movdqa 704(%1), %%xmm8 ;\n"
"movdqa 720(%1), %%xmm9 ;\n"
"movdqa 736(%1), %%xmm10 ;\n"
"movdqa 752(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* conditionally swap ysubx and xaddy */
"movq %3, %%rax ;\n"
"xorq $1, %%rax ;\n"
"movd %%rax, %%xmm14 ;\n"
"pxor %%xmm15, %%xmm15 ;\n"
"pshufd $0x00, %%xmm14, %%xmm14 ;\n"
"pxor %%xmm0, %%xmm2 ;\n"
"pxor %%xmm1, %%xmm3 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa %%xmm2, %%xmm6 ;\n"
"movdqa %%xmm3, %%xmm7 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pxor %%xmm6, %%xmm0 ;\n"
"pxor %%xmm7, %%xmm1 ;\n"
"pxor %%xmm0, %%xmm2 ;\n"
"pxor %%xmm1, %%xmm3 ;\n"
/* store ysubx */
"xorq %%rax, %%rax ;\n"
"movd %%xmm0, %%rcx ;\n"
"movd %%xmm0, %%r8 ;\n"
"movd %%xmm1, %%rsi ;\n"
"pshufd $0xee, %%xmm0, %%xmm0 ;\n"
"pshufd $0xee, %%xmm1, %%xmm1 ;\n"
"movd %%xmm0, %%rdx ;\n"
"movd %%xmm1, %%rdi ;\n"
"shrdq $51, %%rdx, %%r8 ;\n"
"shrdq $38, %%rsi, %%rdx ;\n"
"shrdq $25, %%rdi, %%rsi ;\n"
"shrq $12, %%rdi ;\n"
"movq %%rcx, %%r9 ;\n"
"movq %%r8, %%r10 ;\n"
"movq %%rdx, %%r11 ;\n"
"movq %%rsi, %%r12 ;\n"
"movq %%rdi, %%r13 ;\n"
"shrq $26, %%r9 ;\n"
"shrq $26, %%r10 ;\n"
"shrq $26, %%r11 ;\n"
"shrq $26, %%r12 ;\n"
"shrq $26, %%r13 ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"andl $0x1ffffff, %%r9d ;\n"
"andl $0x3ffffff, %%r8d ;\n"
"andl $0x1ffffff, %%r10d ;\n"
"andl $0x3ffffff, %%edx ;\n"
"andl $0x1ffffff, %%r11d ;\n"
"andl $0x3ffffff, %%esi ;\n"
"andl $0x1ffffff, %%r12d ;\n"
"andl $0x3ffffff, %%edi ;\n"
"andl $0x1ffffff, %%r13d ;\n"
"movl %%ecx, 0(%2) ;\n"
"movl %%r9d, 4(%2) ;\n"
"movl %%r8d, 8(%2) ;\n"
"movl %%r10d, 12(%2) ;\n"
"movl %%edx, 16(%2) ;\n"
"movl %%r11d, 20(%2) ;\n"
"movl %%esi, 24(%2) ;\n"
"movl %%r12d, 28(%2) ;\n"
"movl %%edi, 32(%2) ;\n"
"movl %%r13d, 36(%2) ;\n"
/* store xaddy */
"movd %%xmm2, %%rcx ;\n"
"movd %%xmm2, %%r8 ;\n"
"movd %%xmm3, %%rsi ;\n"
"pshufd $0xee, %%xmm2, %%xmm2 ;\n"
"pshufd $0xee, %%xmm3, %%xmm3 ;\n"
"movd %%xmm2, %%rdx ;\n"
"movd %%xmm3, %%rdi ;\n"
"shrdq $51, %%rdx, %%r8 ;\n"
"shrdq $38, %%rsi, %%rdx ;\n"
"shrdq $25, %%rdi, %%rsi ;\n"
"shrq $12, %%rdi ;\n"
"movq %%rcx, %%r9 ;\n"
"movq %%r8, %%r10 ;\n"
"movq %%rdx, %%r11 ;\n"
"movq %%rsi, %%r12 ;\n"
"movq %%rdi, %%r13 ;\n"
"shrq $26, %%r9 ;\n"
"shrq $26, %%r10 ;\n"
"shrq $26, %%r11 ;\n"
"shrq $26, %%r12 ;\n"
"shrq $26, %%r13 ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"andl $0x1ffffff, %%r9d ;\n"
"andl $0x3ffffff, %%r8d ;\n"
"andl $0x1ffffff, %%r10d ;\n"
"andl $0x3ffffff, %%edx ;\n"
"andl $0x1ffffff, %%r11d ;\n"
"andl $0x3ffffff, %%esi ;\n"
"andl $0x1ffffff, %%r12d ;\n"
"andl $0x3ffffff, %%edi ;\n"
"andl $0x1ffffff, %%r13d ;\n"
"movl %%ecx, 40(%2) ;\n"
"movl %%r9d, 44(%2) ;\n"
"movl %%r8d, 48(%2) ;\n"
"movl %%r10d, 52(%2) ;\n"
"movl %%edx, 56(%2) ;\n"
"movl %%r11d, 60(%2) ;\n"
"movl %%esi, 64(%2) ;\n"
"movl %%r12d, 68(%2) ;\n"
"movl %%edi, 72(%2) ;\n"
"movl %%r13d, 76(%2) ;\n"
/* extract t2d */
"xorq %%rax, %%rax ;\n"
"movd %%xmm4, %%rcx ;\n"
"movd %%xmm4, %%r8 ;\n"
"movd %%xmm5, %%rsi ;\n"
"pshufd $0xee, %%xmm4, %%xmm4 ;\n"
"pshufd $0xee, %%xmm5, %%xmm5 ;\n"
"movd %%xmm4, %%rdx ;\n"
"movd %%xmm5, %%rdi ;\n"
"shrdq $51, %%rdx, %%r8 ;\n"
"shrdq $38, %%rsi, %%rdx ;\n"
"shrdq $25, %%rdi, %%rsi ;\n"
"shrq $12, %%rdi ;\n"
"movq %%rcx, %%r9 ;\n"
"movq %%r8, %%r10 ;\n"
"movq %%rdx, %%r11 ;\n"
"movq %%rsi, %%r12 ;\n"
"movq %%rdi, %%r13 ;\n"
"shrq $26, %%r9 ;\n"
"shrq $26, %%r10 ;\n"
"shrq $26, %%r11 ;\n"
"shrq $26, %%r12 ;\n"
"shrq $26, %%r13 ;\n"
"andl $0x3ffffff, %%ecx ;\n"
"andl $0x1ffffff, %%r9d ;\n"
"andl $0x3ffffff, %%r8d ;\n"
"andl $0x1ffffff, %%r10d ;\n"
"andl $0x3ffffff, %%edx ;\n"
"andl $0x1ffffff, %%r11d ;\n"
"andl $0x3ffffff, %%esi ;\n"
"andl $0x1ffffff, %%r12d ;\n"
"andl $0x3ffffff, %%edi ;\n"
"andl $0x1ffffff, %%r13d ;\n"
"movd %%ecx, %%xmm0 ;\n"
"movd %%r9d, %%xmm4 ;\n"
"movd %%r8d, %%xmm8 ;\n"
"movd %%r10d, %%xmm3 ;\n"
"movd %%edx, %%xmm1 ;\n"
"movd %%r11d, %%xmm5 ;\n"
"movd %%esi, %%xmm6 ;\n"
"movd %%r12d, %%xmm7 ;\n"
"movd %%edi, %%xmm2 ;\n"
"movd %%r13d, %%xmm9 ;\n"
"punpckldq %%xmm4, %%xmm0 ;\n"
"punpckldq %%xmm3, %%xmm8 ;\n"
"punpckldq %%xmm5, %%xmm1 ;\n"
"punpckldq %%xmm7, %%xmm6 ;\n"
"punpckldq %%xmm9, %%xmm2 ;\n"
"punpcklqdq %%xmm8, %%xmm0 ;\n"
"punpcklqdq %%xmm6, %%xmm1 ;\n"
/* set up 2p in to 3/4 */
"movl $0x7ffffda, %%ecx ;\n"
"movl $0x3fffffe, %%edx ;\n"
"movl $0x7fffffe, %%eax ;\n"
"movd %%ecx, %%xmm3 ;\n"
"movd %%edx, %%xmm5 ;\n"
"movd %%eax, %%xmm4 ;\n"
"punpckldq %%xmm5, %%xmm3 ;\n"
"punpckldq %%xmm5, %%xmm4 ;\n"
"punpcklqdq %%xmm4, %%xmm3 ;\n"
"movdqa %%xmm4, %%xmm5 ;\n"
"punpcklqdq %%xmm4, %%xmm4 ;\n"
/* subtract and conditionally move */
"movl %3, %%ecx ;\n"
"sub $1, %%ecx ;\n"
"movd %%ecx, %%xmm6 ;\n"
"pshufd $0x00, %%xmm6, %%xmm6 ;\n"
"movdqa %%xmm6, %%xmm7 ;\n"
"psubd %%xmm0, %%xmm3 ;\n"
"psubd %%xmm1, %%xmm4 ;\n"
"psubd %%xmm2, %%xmm5 ;\n"
"pand %%xmm6, %%xmm0 ;\n"
"pand %%xmm6, %%xmm1 ;\n"
"pand %%xmm6, %%xmm2 ;\n"
"pandn %%xmm3, %%xmm6 ;\n"
"movdqa %%xmm7, %%xmm3 ;\n"
"pandn %%xmm4, %%xmm7 ;\n"
"pandn %%xmm5, %%xmm3 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm3, %%xmm2 ;\n"
/* store t2d */
"movdqa %%xmm0, 80(%2) ;\n"
"movdqa %%xmm1, 96(%2) ;\n"
"movd %%xmm2, %%rax ;\n"
"movq %%rax, 112(%2) ;\n"
:
: "m"(u), "r"(&table[pos * 8]), "r"(t), "m"(sign) /* %0 = u, %1 = table, %2 = t, %3 = sign */
:
"%rax", "%rcx", "%rdx", "%rdi", "%rsi", "%r8", "%r9", "%r10", "%r11", "%r12", "%r13",
"%xmm0", "%xmm1", "%xmm2", "%xmm3", "%xmm4", "%xmm5", "%xmm6", "%xmm7", "%xmm8", "%xmm9", "%xmm10", "%xmm11", "%xmm14", "%xmm14",
"cc", "memory"
);
}
#endif /* defined(ED25519_GCC_64BIT_32BIT_CHOOSE) */

View File

@@ -0,0 +1,357 @@
#if defined(ED25519_GCC_64BIT_X86_CHOOSE)
#define HAVE_GE25519_SCALARMULT_BASE_CHOOSE_NIELS
#if defined(__clang__) || defined (__GNUC__)
# define ATTRIBUTE_NO_SANITIZE_ADDRESS __attribute__((no_sanitize_address))
#else
# define ATTRIBUTE_NO_SANITIZE_ADDRESS
#endif
ATTRIBUTE_NO_SANITIZE_ADDRESS DONNA_NOINLINE static void
ge25519_scalarmult_base_choose_niels(ge25519_niels *t, const uint8_t table[256][96], uint32_t pos, signed char b) {
int64_t breg = (int64_t)b;
uint64_t sign = (uint64_t)breg >> 63;
uint64_t mask = ~(sign - 1);
uint64_t u = (breg + mask) ^ mask;
__asm__ __volatile__ (
/* ysubx+xaddy+t2d */
"movq %0, %%rax ;\n"
"movd %%rax, %%xmm14 ;\n"
"pshufd $0x00, %%xmm14, %%xmm14 ;\n"
"pxor %%xmm0, %%xmm0 ;\n"
"pxor %%xmm1, %%xmm1 ;\n"
"pxor %%xmm2, %%xmm2 ;\n"
"pxor %%xmm3, %%xmm3 ;\n"
"pxor %%xmm4, %%xmm4 ;\n"
"pxor %%xmm5, %%xmm5 ;\n"
/* 0 */
"movq $0, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movq $1, %%rax ;\n"
"movd %%rax, %%xmm6 ;\n"
"pxor %%xmm7, %%xmm7 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm6, %%xmm2 ;\n"
"por %%xmm7, %%xmm3 ;\n"
/* 1 */
"movq $1, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 0(%1), %%xmm6 ;\n"
"movdqa 16(%1), %%xmm7 ;\n"
"movdqa 32(%1), %%xmm8 ;\n"
"movdqa 48(%1), %%xmm9 ;\n"
"movdqa 64(%1), %%xmm10 ;\n"
"movdqa 80(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 2 */
"movq $2, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 96(%1), %%xmm6 ;\n"
"movdqa 112(%1), %%xmm7 ;\n"
"movdqa 128(%1), %%xmm8 ;\n"
"movdqa 144(%1), %%xmm9 ;\n"
"movdqa 160(%1), %%xmm10 ;\n"
"movdqa 176(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 3 */
"movq $3, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 192(%1), %%xmm6 ;\n"
"movdqa 208(%1), %%xmm7 ;\n"
"movdqa 224(%1), %%xmm8 ;\n"
"movdqa 240(%1), %%xmm9 ;\n"
"movdqa 256(%1), %%xmm10 ;\n"
"movdqa 272(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 4 */
"movq $4, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 288(%1), %%xmm6 ;\n"
"movdqa 304(%1), %%xmm7 ;\n"
"movdqa 320(%1), %%xmm8 ;\n"
"movdqa 336(%1), %%xmm9 ;\n"
"movdqa 352(%1), %%xmm10 ;\n"
"movdqa 368(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 5 */
"movq $5, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 384(%1), %%xmm6 ;\n"
"movdqa 400(%1), %%xmm7 ;\n"
"movdqa 416(%1), %%xmm8 ;\n"
"movdqa 432(%1), %%xmm9 ;\n"
"movdqa 448(%1), %%xmm10 ;\n"
"movdqa 464(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 6 */
"movq $6, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 480(%1), %%xmm6 ;\n"
"movdqa 496(%1), %%xmm7 ;\n"
"movdqa 512(%1), %%xmm8 ;\n"
"movdqa 528(%1), %%xmm9 ;\n"
"movdqa 544(%1), %%xmm10 ;\n"
"movdqa 560(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 7 */
"movq $7, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 576(%1), %%xmm6 ;\n"
"movdqa 592(%1), %%xmm7 ;\n"
"movdqa 608(%1), %%xmm8 ;\n"
"movdqa 624(%1), %%xmm9 ;\n"
"movdqa 640(%1), %%xmm10 ;\n"
"movdqa 656(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* 8 */
"movq $8, %%rax ;\n"
"movd %%rax, %%xmm15 ;\n"
"pshufd $0x00, %%xmm15, %%xmm15 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa 672(%1), %%xmm6 ;\n"
"movdqa 688(%1), %%xmm7 ;\n"
"movdqa 704(%1), %%xmm8 ;\n"
"movdqa 720(%1), %%xmm9 ;\n"
"movdqa 736(%1), %%xmm10 ;\n"
"movdqa 752(%1), %%xmm11 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pand %%xmm15, %%xmm8 ;\n"
"pand %%xmm15, %%xmm9 ;\n"
"pand %%xmm15, %%xmm10 ;\n"
"pand %%xmm15, %%xmm11 ;\n"
"por %%xmm6, %%xmm0 ;\n"
"por %%xmm7, %%xmm1 ;\n"
"por %%xmm8, %%xmm2 ;\n"
"por %%xmm9, %%xmm3 ;\n"
"por %%xmm10, %%xmm4 ;\n"
"por %%xmm11, %%xmm5 ;\n"
/* conditionally swap ysubx and xaddy */
"movq %3, %%rax ;\n"
"xorq $1, %%rax ;\n"
"movd %%rax, %%xmm14 ;\n"
"pxor %%xmm15, %%xmm15 ;\n"
"pshufd $0x00, %%xmm14, %%xmm14 ;\n"
"pxor %%xmm0, %%xmm2 ;\n"
"pxor %%xmm1, %%xmm3 ;\n"
"pcmpeqd %%xmm14, %%xmm15 ;\n"
"movdqa %%xmm2, %%xmm6 ;\n"
"movdqa %%xmm3, %%xmm7 ;\n"
"pand %%xmm15, %%xmm6 ;\n"
"pand %%xmm15, %%xmm7 ;\n"
"pxor %%xmm6, %%xmm0 ;\n"
"pxor %%xmm7, %%xmm1 ;\n"
"pxor %%xmm0, %%xmm2 ;\n"
"pxor %%xmm1, %%xmm3 ;\n"
/* store ysubx */
"movq $0x7ffffffffffff, %%rax ;\n"
"movd %%xmm0, %%rcx ;\n"
"movd %%xmm0, %%r8 ;\n"
"movd %%xmm1, %%rsi ;\n"
"pshufd $0xee, %%xmm0, %%xmm0 ;\n"
"pshufd $0xee, %%xmm1, %%xmm1 ;\n"
"movd %%xmm0, %%rdx ;\n"
"movd %%xmm1, %%rdi ;\n"
"shrdq $51, %%rdx, %%r8 ;\n"
"shrdq $38, %%rsi, %%rdx ;\n"
"shrdq $25, %%rdi, %%rsi ;\n"
"shrq $12, %%rdi ;\n"
"andq %%rax, %%rcx ;\n"
"andq %%rax, %%r8 ;\n"
"andq %%rax, %%rdx ;\n"
"andq %%rax, %%rsi ;\n"
"andq %%rax, %%rdi ;\n"
"movq %%rcx, 0(%2) ;\n"
"movq %%r8, 8(%2) ;\n"
"movq %%rdx, 16(%2) ;\n"
"movq %%rsi, 24(%2) ;\n"
"movq %%rdi, 32(%2) ;\n"
/* store xaddy */
"movq $0x7ffffffffffff, %%rax ;\n"
"movd %%xmm2, %%rcx ;\n"
"movd %%xmm2, %%r8 ;\n"
"movd %%xmm3, %%rsi ;\n"
"pshufd $0xee, %%xmm2, %%xmm2 ;\n"
"pshufd $0xee, %%xmm3, %%xmm3 ;\n"
"movd %%xmm2, %%rdx ;\n"
"movd %%xmm3, %%rdi ;\n"
"shrdq $51, %%rdx, %%r8 ;\n"
"shrdq $38, %%rsi, %%rdx ;\n"
"shrdq $25, %%rdi, %%rsi ;\n"
"shrq $12, %%rdi ;\n"
"andq %%rax, %%rcx ;\n"
"andq %%rax, %%r8 ;\n"
"andq %%rax, %%rdx ;\n"
"andq %%rax, %%rsi ;\n"
"andq %%rax, %%rdi ;\n"
"movq %%rcx, 40(%2) ;\n"
"movq %%r8, 48(%2) ;\n"
"movq %%rdx, 56(%2) ;\n"
"movq %%rsi, 64(%2) ;\n"
"movq %%rdi, 72(%2) ;\n"
/* extract t2d */
"movq $0x7ffffffffffff, %%rax ;\n"
"movd %%xmm4, %%rcx ;\n"
"movd %%xmm4, %%r8 ;\n"
"movd %%xmm5, %%rsi ;\n"
"pshufd $0xee, %%xmm4, %%xmm4 ;\n"
"pshufd $0xee, %%xmm5, %%xmm5 ;\n"
"movd %%xmm4, %%rdx ;\n"
"movd %%xmm5, %%rdi ;\n"
"shrdq $51, %%rdx, %%r8 ;\n"
"shrdq $38, %%rsi, %%rdx ;\n"
"shrdq $25, %%rdi, %%rsi ;\n"
"shrq $12, %%rdi ;\n"
"andq %%rax, %%rcx ;\n"
"andq %%rax, %%r8 ;\n"
"andq %%rax, %%rdx ;\n"
"andq %%rax, %%rsi ;\n"
"andq %%rax, %%rdi ;\n"
/* conditionally negate t2d */
"movq %3, %%rax ;\n"
"movq $0xfffffffffffda, %%r9 ;\n"
"movq $0xffffffffffffe, %%r10 ;\n"
"movq %%r10, %%r11 ;\n"
"movq %%r10, %%r12 ;\n"
"movq %%r10, %%r13 ;\n"
"subq %%rcx, %%r9 ;\n"
"subq %%r8, %%r10 ;\n"
"subq %%rdx, %%r11 ;\n"
"subq %%rsi, %%r12 ;\n"
"subq %%rdi, %%r13 ;\n"
"cmpq $1, %%rax ;\n"
"cmove %%r9, %%rcx ;\n"
"cmove %%r10, %%r8 ;\n"
"cmove %%r11, %%rdx ;\n"
"cmove %%r12, %%rsi ;\n"
"cmove %%r13, %%rdi ;\n"
/* store t2d */
"movq %%rcx, 80(%2) ;\n"
"movq %%r8, 88(%2) ;\n"
"movq %%rdx, 96(%2) ;\n"
"movq %%rsi, 104(%2) ;\n"
"movq %%rdi, 112(%2) ;\n"
:
: "m"(u), "r"(&table[pos * 8]), "r"(t), "m"(sign) /* %0 = u, %1 = table, %2 = t, %3 = sign */
:
"%rax", "%rcx", "%rdx", "%rdi", "%rsi", "%r8", "%r9", "%r10", "%r11", "%r12", "%r13",
"%xmm0", "%xmm1", "%xmm2", "%xmm3", "%xmm4", "%xmm5", "%xmm6", "%xmm7", "%xmm8", "%xmm9", "%xmm10", "%xmm11", "%xmm14", "%xmm14",
"cc", "memory"
);
}
#endif /* defined(ED25519_GCC_64BIT_X86_CHOOSE) */

View File

@@ -0,0 +1,259 @@
/* multiples of the base point in packed {ysubx, xaddy, t2d} form */
static const uint8_t ALIGN(16) ge25519_niels_base_multiples[256][96] = {
{0x3e,0x91,0x40,0xd7,0x05,0x39,0x10,0x9d,0xb3,0xbe,0x40,0xd1,0x05,0x9f,0x39,0xfd,0x09,0x8a,0x8f,0x68,0x34,0x84,0xc1,0xa5,0x67,0x12,0xf8,0x98,0x92,0x2f,0xfd,0x44,0x85,0x3b,0x8c,0xf5,0xc6,0x93,0xbc,0x2f,0x19,0x0e,0x8c,0xfb,0xc6,0x2d,0x93,0xcf,0xc2,0x42,0x3d,0x64,0x98,0x48,0x0b,0x27,0x65,0xba,0xd4,0x33,0x3a,0x9d,0xcf,0x07,0x59,0xbb,0x6f,0x4b,0x67,0x15,0xbd,0xdb,0xea,0xa5,0xa2,0xee,0x00,0x3f,0xe1,0x41,0xfa,0xc6,0x57,0xc9,0x1c,0x9d,0xd4,0xcd,0xca,0xec,0x16,0xaf,0x1f,0xbe,0x0e,0x4f},
{0xa8,0xd5,0xb4,0x42,0x60,0xa5,0x99,0x8a,0xf6,0xac,0x60,0x4e,0x0c,0x81,0x2b,0x8f,0xaa,0x37,0x6e,0xb1,0x6b,0x23,0x9e,0xe0,0x55,0x25,0xc9,0x69,0xa6,0x95,0xb5,0x6b,0xd7,0x71,0x3c,0x93,0xfc,0xe7,0x24,0x92,0xb5,0xf5,0x0f,0x7a,0x96,0x9d,0x46,0x9f,0x02,0x07,0xd6,0xe1,0x65,0x9a,0xa6,0x5a,0x2e,0x2e,0x7d,0xa8,0x3f,0x06,0x0c,0x59,0x02,0x68,0xd3,0xda,0xaa,0x7e,0x34,0x6e,0x05,0x48,0xee,0x83,0x93,0x59,0xf3,0xba,0x26,0x68,0x07,0xe6,0x10,0xbe,0xca,0x3b,0xb8,0xd1,0x5e,0x16,0x0a,0x4f,0x31,0x49},
{0x65,0xd2,0xfc,0xa4,0xe8,0x1f,0x61,0x56,0x7d,0xba,0xc1,0xe5,0xfd,0x53,0xd3,0x3b,0xbd,0xd6,0x4b,0x21,0x1a,0xf3,0x31,0x81,0x62,0xda,0x5b,0x55,0x87,0x15,0xb9,0x2a,0x30,0x97,0xee,0x4c,0xa8,0xb0,0x25,0xaf,0x8a,0x4b,0x86,0xe8,0x30,0x84,0x5a,0x02,0x32,0x67,0x01,0x9f,0x02,0x50,0x1b,0xc1,0xf4,0xf8,0x80,0x9a,0x1b,0x4e,0x16,0x7a,0x34,0x48,0x67,0xf1,0xf4,0x11,0xf2,0x9b,0x95,0xf8,0x2d,0xf6,0x17,0x6b,0x4e,0xb8,0x4e,0x2a,0x72,0x5b,0x07,0x6f,0xde,0xd7,0x21,0x2a,0xbb,0x63,0xb9,0x04,0x9a,0x54},
{0xbf,0x18,0x68,0x05,0x0a,0x05,0xfe,0x95,0xa9,0xfa,0x60,0x56,0x71,0x89,0x7e,0x32,0x73,0x50,0xa0,0x06,0xcd,0xe3,0xe8,0xc3,0x9a,0xa4,0x45,0x74,0x4c,0x3f,0x93,0x27,0x9f,0x09,0xfc,0x8e,0xb9,0x51,0x73,0x28,0x38,0x25,0xfd,0x7d,0xf4,0xc6,0x65,0x67,0x65,0x92,0x0a,0xfb,0x3d,0x8d,0x34,0xca,0x27,0x87,0xe5,0x21,0x03,0x91,0x0e,0x68,0xb0,0x26,0x14,0xe5,0xec,0x45,0x1e,0xbf,0x94,0x0f,0xba,0x6d,0x3d,0xc6,0x2b,0xe3,0xc0,0x52,0xf8,0x8c,0xd5,0x74,0x29,0xe4,0x18,0x4c,0xe6,0xb0,0xb1,0x79,0xf0,0x44},
{0xba,0xd6,0x47,0xa4,0xc3,0x82,0x91,0x7f,0xb7,0x29,0x27,0x4b,0xd1,0x14,0x00,0xd5,0x87,0xa0,0x64,0xb8,0x1c,0xf1,0x3c,0xe3,0xf3,0x55,0x1b,0xeb,0x73,0x7e,0x4a,0x15,0x33,0xbb,0xa5,0x08,0x44,0xbc,0x12,0xa2,0x02,0xed,0x5e,0xc7,0xc3,0x48,0x50,0x8d,0x44,0xec,0xbf,0x5a,0x0c,0xeb,0x1b,0xdd,0xeb,0x06,0xe2,0x46,0xf1,0xcc,0x45,0x29,0xb3,0x03,0xd0,0xe7,0x79,0xa1,0x32,0xc8,0x7e,0x4d,0x12,0x00,0x0a,0x9d,0x72,0x5f,0xf3,0x8f,0x6d,0x0e,0xa1,0xd4,0xc1,0x62,0x98,0x7a,0xb2,0x38,0x59,0xac,0xb8,0x68},
{0xa4,0x8c,0x7d,0x7b,0xb6,0x06,0x98,0x49,0x39,0x27,0xd2,0x27,0x84,0xe2,0x5b,0x57,0xb9,0x53,0x45,0x20,0xe7,0x5c,0x08,0xbb,0x84,0x78,0x41,0xae,0x41,0x4c,0xb6,0x38,0x31,0x71,0x15,0x77,0xeb,0xee,0x0c,0x3a,0x88,0xaf,0xc8,0x00,0x89,0x15,0x27,0x9b,0x36,0xa7,0x59,0xda,0x68,0xb6,0x65,0x80,0xbd,0x38,0xcc,0xa2,0xb6,0x7b,0xe5,0x51,0xa4,0xe3,0x9d,0x68,0x91,0xad,0x9d,0x8f,0x37,0x91,0xfb,0xf8,0x28,0x24,0x5f,0x17,0x88,0xb9,0xcf,0x9f,0x32,0xb5,0x0a,0x05,0x9f,0xc0,0x54,0x13,0xa2,0xdf,0x65,0x78},
{0xb1,0x21,0x32,0xaa,0x9a,0x2c,0x6f,0xba,0xa7,0x23,0xba,0x3b,0x53,0x21,0xa0,0x6c,0x3a,0x2c,0x19,0x92,0x4f,0x76,0xea,0x9d,0xe0,0x17,0x53,0x2e,0x5d,0xdd,0x6e,0x1d,0xbf,0xa3,0x4e,0x94,0xd0,0x5c,0x1a,0x6b,0xd2,0xc0,0x9d,0xb3,0x3a,0x35,0x70,0x74,0x49,0x2e,0x54,0x28,0x82,0x52,0xb2,0x71,0x7e,0x92,0x3c,0x28,0x69,0xea,0x1b,0x46,0x36,0xda,0x0f,0xab,0xac,0x8a,0x7a,0x21,0xc8,0x49,0x35,0x3d,0x54,0xc6,0x28,0xa5,0x68,0x75,0xab,0x13,0x8b,0x5b,0xd0,0x37,0x37,0xbc,0x2c,0x3a,0x62,0xef,0x3c,0x23},
{0xd9,0x34,0x92,0xf3,0xed,0x5d,0xa7,0xe2,0xf9,0x58,0xb5,0xe1,0x80,0x76,0x3d,0x96,0xfb,0x23,0x3c,0x6e,0xac,0x41,0x27,0x2c,0xc3,0x01,0x0e,0x32,0xa1,0x24,0x90,0x3a,0x8f,0x3e,0xdd,0x04,0x66,0x59,0xb7,0x59,0x2c,0x70,0x88,0xe2,0x77,0x03,0xb3,0x6c,0x23,0xc3,0xd9,0x5e,0x66,0x9c,0x33,0xb1,0x2f,0xe5,0xbc,0x61,0x60,0xe7,0x15,0x09,0x7e,0xa3,0x34,0xa8,0x35,0xe8,0x7d,0xdf,0xea,0x57,0x98,0x68,0xda,0x9c,0xe1,0x8b,0x26,0xb3,0x67,0x71,0x36,0x85,0x11,0x2c,0xc2,0xd5,0xef,0xdb,0xd9,0xb3,0x9e,0x58},
{0x5e,0x51,0xaa,0x49,0x54,0x63,0x5b,0xed,0x3a,0x82,0xc6,0x0b,0x9f,0xc4,0x65,0xa8,0xc4,0xd1,0x42,0x5b,0xe9,0x1f,0x0c,0x85,0xb9,0x15,0xd3,0x03,0x6f,0x6d,0xd7,0x30,0x1d,0x9c,0x2f,0x63,0x0e,0xdd,0xcc,0x2e,0x15,0x31,0x89,0x76,0x96,0xb6,0xd0,0x51,0x58,0x7a,0x63,0xa8,0x6b,0xb7,0xdf,0x52,0x39,0xef,0x0e,0xa0,0x49,0x7d,0xd3,0x6d,0xc7,0xe4,0x06,0x21,0x17,0x44,0x44,0x6c,0x69,0x7f,0x8d,0x92,0x80,0xd6,0x53,0xfb,0x26,0x3f,0x4d,0x69,0xa4,0x9e,0x73,0xb4,0xb0,0x4b,0x86,0x2e,0x11,0x97,0xc6,0x10},
{0xde,0x5f,0xbe,0x7d,0x27,0xc4,0x93,0x64,0xa2,0x7e,0xad,0x19,0xad,0x4f,0x5d,0x26,0x90,0x45,0x30,0x46,0xc8,0xdf,0x00,0x0e,0x09,0xfe,0x66,0xed,0xab,0x1c,0xe6,0x25,0x05,0xc8,0x58,0x83,0xa0,0x2a,0xa6,0x0c,0x47,0x42,0x20,0x7a,0xe3,0x4a,0x3d,0x6a,0xdc,0xed,0x11,0x3b,0xa6,0xd3,0x64,0x74,0xef,0x06,0x08,0x55,0xaf,0x9b,0xbf,0x03,0x04,0x66,0x58,0xcc,0x28,0xe1,0x13,0x3f,0x7e,0x74,0x59,0xb4,0xec,0x73,0x58,0x6f,0xf5,0x68,0x12,0xcc,0xed,0x3d,0xb6,0xa0,0x2c,0xe2,0x86,0x45,0x63,0x78,0x6d,0x56},
{0x34,0x08,0xc1,0x9c,0x9f,0xa4,0x37,0x16,0x51,0xc4,0x9b,0xa8,0xd5,0x56,0x8e,0xbc,0xdb,0xd2,0x7f,0x7f,0x0f,0xec,0xb5,0x1c,0xd9,0x35,0xcc,0x5e,0xca,0x5b,0x97,0x33,0xd0,0x2f,0x5a,0xc6,0x85,0x42,0x05,0xa1,0xc3,0x67,0x16,0xf3,0x2a,0x11,0x64,0x6c,0x58,0xee,0x1a,0x73,0x40,0xe2,0x0a,0x68,0x2a,0xb2,0x93,0x47,0xf3,0xa5,0xfb,0x14,0xd4,0xf7,0x85,0x69,0x16,0x46,0xd7,0x3c,0x57,0x00,0xc8,0xc9,0x84,0x5e,0x3e,0x59,0x1e,0x13,0x61,0x7b,0xb6,0xf2,0xc3,0x2f,0x6c,0x52,0xfc,0x83,0xea,0x9c,0x82,0x14},
{0xc2,0x95,0xdd,0x97,0x84,0x7b,0x43,0xff,0xa7,0xb5,0x4e,0xaa,0x30,0x4e,0x74,0x6c,0x8b,0xe8,0x85,0x3c,0x61,0x5d,0x0c,0x9e,0x73,0x81,0x75,0x5f,0x1e,0xc7,0xd9,0x2f,0xb8,0xec,0x71,0x4e,0x2f,0x0b,0xe7,0x21,0xe3,0x77,0xa4,0x40,0xb9,0xdd,0x56,0xe6,0x80,0x4f,0x1d,0xce,0xce,0x56,0x65,0xbf,0x7e,0x7b,0x5d,0x53,0xc4,0x3b,0xfc,0x05,0xdd,0xde,0xaf,0x52,0xae,0xb3,0xb8,0x24,0xcf,0x30,0x3b,0xed,0x8c,0x63,0x95,0x34,0x95,0x81,0xbe,0xa9,0x83,0xbc,0xa4,0x33,0x04,0x1f,0x65,0x5c,0x47,0x67,0x37,0x37},
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{0xa0,0xbb,0xe6,0xf8,0xe0,0x3b,0xdc,0x71,0x0a,0xe3,0xff,0x7e,0x34,0xf8,0xce,0xd6,0x6a,0x47,0x3a,0xe1,0x5f,0x42,0x92,0xa9,0x63,0xb7,0x1d,0xfb,0xe3,0xbc,0xd6,0x2c,0x1e,0x3f,0x23,0xf3,0x44,0xd6,0x27,0x03,0x16,0xf0,0xfc,0x34,0x0e,0x26,0x9a,0x49,0x79,0xb9,0xda,0xf2,0x16,0xa7,0xb5,0x83,0x1f,0x11,0xd4,0x9b,0xad,0xee,0xac,0x68,0x10,0xc2,0xd7,0xf3,0x0e,0xc9,0xb4,0x38,0x0c,0x04,0xad,0xb7,0x24,0x6e,0x8e,0x30,0x23,0x3e,0xe7,0xb7,0xf1,0xd9,0x60,0x38,0x97,0xf5,0x08,0xb5,0xd5,0x60,0x57,0x59},
{0x97,0x63,0xaa,0x04,0xe1,0xbf,0x29,0x61,0xcb,0xfc,0xa7,0xa4,0x08,0x00,0x96,0x8f,0x58,0x94,0x90,0x7d,0x89,0xc0,0x8b,0x3f,0xa9,0x91,0xb2,0xdc,0x3e,0xa4,0x9f,0x70,0x90,0x27,0x02,0xfd,0xeb,0xcb,0x2a,0x88,0x60,0x57,0x11,0xc4,0x05,0x33,0xaf,0x89,0xf4,0x73,0x34,0x7d,0xe3,0x92,0xf4,0x65,0x2b,0x5a,0x51,0x54,0xdf,0xc5,0xb2,0x2c,0xca,0x2a,0xfd,0x63,0x8c,0x5d,0x0a,0xeb,0xff,0x4e,0x69,0x2e,0x66,0xc1,0x2b,0xd2,0x3a,0xb0,0xcb,0xf8,0x6e,0xf3,0x23,0x27,0x1f,0x13,0xc8,0xf0,0xec,0x29,0xf0,0x70},
{0x33,0x3e,0xed,0x2e,0xb3,0x07,0x13,0x46,0xe7,0x81,0x55,0xa4,0x33,0x2f,0x04,0xae,0x66,0x03,0x5f,0x19,0xd3,0x49,0x44,0xc9,0x58,0x48,0x31,0x6c,0x8a,0x5d,0x7d,0x0b,0xb9,0xb0,0x10,0x5e,0xaa,0xaf,0x6a,0x2a,0xa9,0x1a,0x04,0xef,0x70,0xa3,0xf0,0x78,0x1f,0xd6,0x3a,0xaa,0x77,0xfb,0x3e,0x77,0xe1,0xd9,0x4b,0xa7,0xa2,0xa5,0xec,0x44,0x43,0xd5,0x95,0x7b,0x32,0x48,0xd4,0x25,0x1d,0x0f,0x34,0xa3,0x00,0x83,0xd3,0x70,0x2b,0xc5,0xe1,0x60,0x1c,0x53,0x1c,0xde,0xe4,0xe9,0x7d,0x2c,0x51,0x24,0x22,0x27},
{0x2e,0x34,0xc5,0x49,0xaf,0x92,0xbc,0x1a,0xd0,0xfa,0xe6,0xb2,0x11,0xd8,0xee,0xff,0x29,0x4e,0xc8,0xfc,0x8d,0x8c,0xa2,0xef,0x43,0xc5,0x4c,0xa4,0x18,0xdf,0xb5,0x11,0xfc,0x75,0xa9,0x42,0x8a,0xbb,0x7b,0xbf,0x58,0xa3,0xad,0x96,0x77,0x39,0x5c,0x8c,0x48,0xaa,0xed,0xcd,0x6f,0xc7,0x7f,0xe2,0xa6,0x20,0xbc,0xf6,0xd7,0x5f,0x73,0x19,0x66,0x42,0xc8,0x42,0xd0,0x90,0xab,0xe3,0x7e,0x54,0x19,0x7f,0x0f,0x8e,0x84,0xeb,0xb9,0x97,0xa4,0x65,0xd0,0xa1,0x03,0x25,0x5f,0x89,0xdf,0x91,0x11,0x91,0xef,0x0f}
};

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@@ -0,0 +1,275 @@
/*
Ed25519 batch verification
*/
#define max_batch_size 64
#define heap_batch_size ((max_batch_size * 2) + 1)
/* which limb is the 128th bit in? */
static const size_t limb128bits = (128 + bignum256modm_bits_per_limb - 1) / bignum256modm_bits_per_limb;
typedef size_t heap_index_t;
typedef struct batch_heap_t {
unsigned char r[heap_batch_size][16]; /* 128 bit random values */
ge25519 points[heap_batch_size];
bignum256modm scalars[heap_batch_size];
heap_index_t heap[heap_batch_size];
size_t size;
} batch_heap;
/* swap two values in the heap */
static void
heap_swap(heap_index_t *heap, size_t a, size_t b) {
heap_index_t temp;
temp = heap[a];
heap[a] = heap[b];
heap[b] = temp;
}
/* add the scalar at the end of the list to the heap */
static void
heap_insert_next(batch_heap *heap) {
size_t node = heap->size, parent;
heap_index_t *pheap = heap->heap;
bignum256modm *scalars = heap->scalars;
/* insert at the bottom */
pheap[node] = (heap_index_t)node;
/* sift node up to its sorted spot */
parent = (node - 1) / 2;
while (node && lt256_modm_batch(scalars[pheap[parent]], scalars[pheap[node]], bignum256modm_limb_size - 1)) {
heap_swap(pheap, parent, node);
node = parent;
parent = (node - 1) / 2;
}
heap->size++;
}
/* update the heap when the root element is updated */
static void
heap_updated_root(batch_heap *heap, size_t limbsize) {
size_t node, parent, childr, childl;
heap_index_t *pheap = heap->heap;
bignum256modm *scalars = heap->scalars;
/* sift root to the bottom */
parent = 0;
node = 1;
childl = 1;
childr = 2;
while ((childr < heap->size)) {
node = lt256_modm_batch(scalars[pheap[childl]], scalars[pheap[childr]], limbsize) ? childr : childl;
heap_swap(pheap, parent, node);
parent = node;
childl = (parent * 2) + 1;
childr = childl + 1;
}
/* sift root back up to its sorted spot */
parent = (node - 1) / 2;
while (node && lte256_modm_batch(scalars[pheap[parent]], scalars[pheap[node]], limbsize)) {
heap_swap(pheap, parent, node);
node = parent;
parent = (node - 1) / 2;
}
}
/* build the heap with count elements, count must be >= 3 */
static void
heap_build(batch_heap *heap, size_t count) {
heap->heap[0] = 0;
heap->size = 0;
while (heap->size < count)
heap_insert_next(heap);
}
/* extend the heap to contain new_count elements */
static void
heap_extend(batch_heap *heap, size_t new_count) {
while (heap->size < new_count)
heap_insert_next(heap);
}
/* get the top 2 elements of the heap */
static void
heap_get_top2(batch_heap *heap, heap_index_t *max1, heap_index_t *max2, size_t limbsize) {
heap_index_t h0 = heap->heap[0], h1 = heap->heap[1], h2 = heap->heap[2];
if (lt256_modm_batch(heap->scalars[h1], heap->scalars[h2], limbsize))
h1 = h2;
*max1 = h0;
*max2 = h1;
}
/* */
static void
ge25519_multi_scalarmult_vartime_final(ge25519 *r, ge25519 *point, bignum256modm scalar) {
const bignum256modm_element_t topbit = ((bignum256modm_element_t)1 << (bignum256modm_bits_per_limb - 1));
size_t limb = limb128bits;
bignum256modm_element_t flag;
if (isone256_modm_batch(scalar)) {
/* this will happen most of the time after bos-carter */
*r = *point;
return;
} else if (iszero256_modm_batch(scalar)) {
/* this will only happen if all scalars == 0 */
memset(r, 0, sizeof(*r));
r->y[0] = 1;
r->z[0] = 1;
return;
}
*r = *point;
/* find the limb where first bit is set */
while (!scalar[limb])
limb--;
/* find the first bit */
flag = topbit;
while ((scalar[limb] & flag) == 0)
flag >>= 1;
/* exponentiate */
for (;;) {
ge25519_double(r, r);
if (scalar[limb] & flag)
ge25519_add(r, r, point);
flag >>= 1;
if (!flag) {
if (!limb--)
break;
flag = topbit;
}
}
}
/* count must be >= 5 */
static void
ge25519_multi_scalarmult_vartime(ge25519 *r, batch_heap *heap, size_t count) {
heap_index_t max1, max2;
/* start with the full limb size */
size_t limbsize = bignum256modm_limb_size - 1;
/* whether the heap has been extended to include the 128 bit scalars */
int extended = 0;
/* grab an odd number of scalars to build the heap, unknown limb sizes */
heap_build(heap, ((count + 1) / 2) | 1);
for (;;) {
heap_get_top2(heap, &max1, &max2, limbsize);
/* only one scalar remaining, we're done */
if (iszero256_modm_batch(heap->scalars[max2]))
break;
/* exhausted another limb? */
if (!heap->scalars[max1][limbsize])
limbsize -= 1;
/* can we extend to the 128 bit scalars? */
if (!extended && isatmost128bits256_modm_batch(heap->scalars[max1])) {
heap_extend(heap, count);
heap_get_top2(heap, &max1, &max2, limbsize);
extended = 1;
}
sub256_modm_batch(heap->scalars[max1], heap->scalars[max1], heap->scalars[max2], limbsize);
ge25519_add(&heap->points[max2], &heap->points[max2], &heap->points[max1]);
heap_updated_root(heap, limbsize);
}
ge25519_multi_scalarmult_vartime_final(r, &heap->points[max1], heap->scalars[max1]);
}
/* not actually used for anything other than testing */
unsigned char batch_point_buffer[3][32];
static int
ge25519_is_neutral_vartime(const ge25519 *p) {
static const unsigned char zero[32] = {0};
unsigned char point_buffer[3][32];
curve25519_contract(point_buffer[0], p->x);
curve25519_contract(point_buffer[1], p->y);
curve25519_contract(point_buffer[2], p->z);
memcpy(batch_point_buffer[1], point_buffer[1], 32);
return (memcmp(point_buffer[0], zero, 32) == 0) && (memcmp(point_buffer[1], point_buffer[2], 32) == 0);
}
int
ED25519_FN(ed25519_sign_open_batch) (const unsigned char **m, size_t *mlen, const unsigned char **pk, const unsigned char **RS, size_t num, int *valid) {
batch_heap ALIGN(16) batch;
ge25519 ALIGN(16) p;
bignum256modm *r_scalars;
size_t i, batchsize;
unsigned char hram[64];
int ret = 0;
for (i = 0; i < num; i++)
valid[i] = 1;
while (num > 3) {
batchsize = (num > max_batch_size) ? max_batch_size : num;
/* generate r (scalars[batchsize+1]..scalars[2*batchsize] */
ED25519_FN(ed25519_randombytes_unsafe) (batch.r, batchsize * 16);
r_scalars = &batch.scalars[batchsize + 1];
for (i = 0; i < batchsize; i++)
expand256_modm(r_scalars[i], batch.r[i], 16);
/* compute scalars[0] = ((r1s1 + r2s2 + ...)) */
for (i = 0; i < batchsize; i++) {
expand256_modm(batch.scalars[i], RS[i] + 32, 32);
mul256_modm(batch.scalars[i], batch.scalars[i], r_scalars[i]);
}
for (i = 1; i < batchsize; i++)
add256_modm(batch.scalars[0], batch.scalars[0], batch.scalars[i]);
/* compute scalars[1]..scalars[batchsize] as r[i]*H(R[i],A[i],m[i]) */
for (i = 0; i < batchsize; i++) {
ed25519_hram(hram, RS[i], pk[i], m[i], mlen[i]);
expand256_modm(batch.scalars[i+1], hram, 64);
mul256_modm(batch.scalars[i+1], batch.scalars[i+1], r_scalars[i]);
}
/* compute points */
batch.points[0] = ge25519_basepoint;
for (i = 0; i < batchsize; i++)
if (!ge25519_unpack_negative_vartime(&batch.points[i+1], pk[i]))
goto fallback;
for (i = 0; i < batchsize; i++)
if (!ge25519_unpack_negative_vartime(&batch.points[batchsize+i+1], RS[i]))
goto fallback;
ge25519_multi_scalarmult_vartime(&p, &batch, (batchsize * 2) + 1);
if (!ge25519_is_neutral_vartime(&p)) {
ret |= 2;
fallback:
for (i = 0; i < batchsize; i++) {
valid[i] = ED25519_FN(ed25519_sign_open) (m[i], mlen[i], pk[i], RS[i]) ? 0 : 1;
ret |= (valid[i] ^ 1);
}
}
m += batchsize;
mlen += batchsize;
pk += batchsize;
RS += batchsize;
num -= batchsize;
valid += batchsize;
}
for (i = 0; i < num; i++) {
valid[i] = ED25519_FN(ed25519_sign_open) (m[i], mlen[i], pk[i], RS[i]) ? 0 : 1;
ret |= (valid[i] ^ 1);
}
return ret;
}

View File

@@ -0,0 +1,364 @@
/*
conversions
*/
DONNA_INLINE static void
ge25519_p1p1_to_partial(ge25519 *r, const ge25519_p1p1 *p) {
curve25519_mul(r->x, p->x, p->t);
curve25519_mul(r->y, p->y, p->z);
curve25519_mul(r->z, p->z, p->t);
}
DONNA_INLINE static void
ge25519_p1p1_to_full(ge25519 *r, const ge25519_p1p1 *p) {
curve25519_mul(r->x, p->x, p->t);
curve25519_mul(r->y, p->y, p->z);
curve25519_mul(r->z, p->z, p->t);
curve25519_mul(r->t, p->x, p->y);
}
static void
ge25519_full_to_pniels(ge25519_pniels *p, const ge25519 *r) {
curve25519_sub(p->ysubx, r->y, r->x);
curve25519_add(p->xaddy, r->y, r->x);
curve25519_copy(p->z, r->z);
curve25519_mul(p->t2d, r->t, ge25519_ec2d);
}
/*
adding & doubling
*/
static void
ge25519_add_p1p1(ge25519_p1p1 *r, const ge25519 *p, const ge25519 *q) {
bignum25519 a,b,c,d,t,u;
curve25519_sub(a, p->y, p->x);
curve25519_add(b, p->y, p->x);
curve25519_sub(t, q->y, q->x);
curve25519_add(u, q->y, q->x);
curve25519_mul(a, a, t);
curve25519_mul(b, b, u);
curve25519_mul(c, p->t, q->t);
curve25519_mul(c, c, ge25519_ec2d);
curve25519_mul(d, p->z, q->z);
curve25519_add(d, d, d);
curve25519_sub(r->x, b, a);
curve25519_add(r->y, b, a);
curve25519_add_after_basic(r->z, d, c);
curve25519_sub_after_basic(r->t, d, c);
}
static void
ge25519_double_p1p1(ge25519_p1p1 *r, const ge25519 *p) {
bignum25519 a,b,c;
curve25519_square(a, p->x);
curve25519_square(b, p->y);
curve25519_square(c, p->z);
curve25519_add_reduce(c, c, c);
curve25519_add(r->x, p->x, p->y);
curve25519_square(r->x, r->x);
curve25519_add(r->y, b, a);
curve25519_sub(r->z, b, a);
curve25519_sub_after_basic(r->x, r->x, r->y);
curve25519_sub_after_basic(r->t, c, r->z);
}
static void
ge25519_nielsadd2_p1p1(ge25519_p1p1 *r, const ge25519 *p, const ge25519_niels *q, unsigned char signbit) {
const bignum25519 *qb = (const bignum25519 *)q;
bignum25519 *rb = (bignum25519 *)r;
bignum25519 a,b,c;
curve25519_sub(a, p->y, p->x);
curve25519_add(b, p->y, p->x);
curve25519_mul(a, a, qb[signbit]); /* x for +, y for - */
curve25519_mul(r->x, b, qb[signbit^1]); /* y for +, x for - */
curve25519_add(r->y, r->x, a);
curve25519_sub(r->x, r->x, a);
curve25519_mul(c, p->t, q->t2d);
curve25519_add_reduce(r->t, p->z, p->z);
curve25519_copy(r->z, r->t);
curve25519_add(rb[2+signbit], rb[2+signbit], c); /* z for +, t for - */
curve25519_sub(rb[2+(signbit^1)], rb[2+(signbit^1)], c); /* t for +, z for - */
}
static void
ge25519_pnielsadd_p1p1(ge25519_p1p1 *r, const ge25519 *p, const ge25519_pniels *q, unsigned char signbit) {
const bignum25519 *qb = (const bignum25519 *)q;
bignum25519 *rb = (bignum25519 *)r;
bignum25519 a,b,c;
curve25519_sub(a, p->y, p->x);
curve25519_add(b, p->y, p->x);
curve25519_mul(a, a, qb[signbit]); /* ysubx for +, xaddy for - */
curve25519_mul(r->x, b, qb[signbit^1]); /* xaddy for +, ysubx for - */
curve25519_add(r->y, r->x, a);
curve25519_sub(r->x, r->x, a);
curve25519_mul(c, p->t, q->t2d);
curve25519_mul(r->t, p->z, q->z);
curve25519_add_reduce(r->t, r->t, r->t);
curve25519_copy(r->z, r->t);
curve25519_add(rb[2+signbit], rb[2+signbit], c); /* z for +, t for - */
curve25519_sub(rb[2+(signbit^1)], rb[2+(signbit^1)], c); /* t for +, z for - */
}
static void
ge25519_double_partial(ge25519 *r, const ge25519 *p) {
ge25519_p1p1 t;
ge25519_double_p1p1(&t, p);
ge25519_p1p1_to_partial(r, &t);
}
static void
ge25519_double(ge25519 *r, const ge25519 *p) {
ge25519_p1p1 t;
ge25519_double_p1p1(&t, p);
ge25519_p1p1_to_full(r, &t);
}
static void
ge25519_add(ge25519 *r, const ge25519 *p, const ge25519 *q) {
ge25519_p1p1 t;
ge25519_add_p1p1(&t, p, q);
ge25519_p1p1_to_full(r, &t);
}
static void
ge25519_nielsadd2(ge25519 *r, const ge25519_niels *q) {
bignum25519 a,b,c,e,f,g,h;
curve25519_sub(a, r->y, r->x);
curve25519_add(b, r->y, r->x);
curve25519_mul(a, a, q->ysubx);
curve25519_mul(e, b, q->xaddy);
curve25519_add(h, e, a);
curve25519_sub(e, e, a);
curve25519_mul(c, r->t, q->t2d);
curve25519_add(f, r->z, r->z);
curve25519_add_after_basic(g, f, c);
curve25519_sub_after_basic(f, f, c);
curve25519_mul(r->x, e, f);
curve25519_mul(r->y, h, g);
curve25519_mul(r->z, g, f);
curve25519_mul(r->t, e, h);
}
static void
ge25519_pnielsadd(ge25519_pniels *r, const ge25519 *p, const ge25519_pniels *q) {
bignum25519 a,b,c,x,y,z,t;
curve25519_sub(a, p->y, p->x);
curve25519_add(b, p->y, p->x);
curve25519_mul(a, a, q->ysubx);
curve25519_mul(x, b, q->xaddy);
curve25519_add(y, x, a);
curve25519_sub(x, x, a);
curve25519_mul(c, p->t, q->t2d);
curve25519_mul(t, p->z, q->z);
curve25519_add(t, t, t);
curve25519_add_after_basic(z, t, c);
curve25519_sub_after_basic(t, t, c);
curve25519_mul(r->xaddy, x, t);
curve25519_mul(r->ysubx, y, z);
curve25519_mul(r->z, z, t);
curve25519_mul(r->t2d, x, y);
curve25519_copy(y, r->ysubx);
curve25519_sub(r->ysubx, r->ysubx, r->xaddy);
curve25519_add(r->xaddy, r->xaddy, y);
curve25519_mul(r->t2d, r->t2d, ge25519_ec2d);
}
/*
pack & unpack
*/
static void
ge25519_pack(unsigned char r[32], const ge25519 *p) {
bignum25519 tx, ty, zi;
unsigned char parity[32];
curve25519_recip(zi, p->z);
curve25519_mul(tx, p->x, zi);
curve25519_mul(ty, p->y, zi);
curve25519_contract(r, ty);
curve25519_contract(parity, tx);
r[31] ^= ((parity[0] & 1) << 7);
}
static int
ge25519_unpack_negative_vartime(ge25519 *r, const unsigned char p[32]) {
static const unsigned char zero[32] = {0};
static const bignum25519 one = {1};
unsigned char parity = p[31] >> 7;
unsigned char check[32];
bignum25519 t, root, num, den, d3;
curve25519_expand(r->y, p);
curve25519_copy(r->z, one);
curve25519_square(num, r->y); /* x = y^2 */
curve25519_mul(den, num, ge25519_ecd); /* den = dy^2 */
curve25519_sub_reduce(num, num, r->z); /* x = y^1 - 1 */
curve25519_add(den, den, r->z); /* den = dy^2 + 1 */
/* Computation of sqrt(num/den) */
/* 1.: computation of num^((p-5)/8)*den^((7p-35)/8) = (num*den^7)^((p-5)/8) */
curve25519_square(t, den);
curve25519_mul(d3, t, den);
curve25519_square(r->x, d3);
curve25519_mul(r->x, r->x, den);
curve25519_mul(r->x, r->x, num);
curve25519_pow_two252m3(r->x, r->x);
/* 2. computation of r->x = num * den^3 * (num*den^7)^((p-5)/8) */
curve25519_mul(r->x, r->x, d3);
curve25519_mul(r->x, r->x, num);
/* 3. Check if either of the roots works: */
curve25519_square(t, r->x);
curve25519_mul(t, t, den);
curve25519_sub_reduce(root, t, num);
curve25519_contract(check, root);
if (!ed25519_verify(check, zero, 32)) {
curve25519_add_reduce(t, t, num);
curve25519_contract(check, t);
if (!ed25519_verify(check, zero, 32))
return 0;
curve25519_mul(r->x, r->x, ge25519_sqrtneg1);
}
curve25519_contract(check, r->x);
if ((check[0] & 1) == parity) {
curve25519_copy(t, r->x);
curve25519_neg(r->x, t);
}
curve25519_mul(r->t, r->x, r->y);
return 1;
}
/*
scalarmults
*/
#define S1_SWINDOWSIZE 5
#define S1_TABLE_SIZE (1<<(S1_SWINDOWSIZE-2))
#define S2_SWINDOWSIZE 7
#define S2_TABLE_SIZE (1<<(S2_SWINDOWSIZE-2))
/* computes [s1]p1 + [s2]basepoint */
static void
ge25519_double_scalarmult_vartime(ge25519 *r, const ge25519 *p1, const bignum256modm s1, const bignum256modm s2) {
signed char slide1[256], slide2[256];
ge25519_pniels pre1[S1_TABLE_SIZE];
ge25519 d1;
ge25519_p1p1 t;
int32_t i;
contract256_slidingwindow_modm(slide1, s1, S1_SWINDOWSIZE);
contract256_slidingwindow_modm(slide2, s2, S2_SWINDOWSIZE);
ge25519_double(&d1, p1);
ge25519_full_to_pniels(pre1, p1);
for (i = 0; i < S1_TABLE_SIZE - 1; i++)
ge25519_pnielsadd(&pre1[i+1], &d1, &pre1[i]);
/* set neutral */
memset(r, 0, sizeof(ge25519));
r->y[0] = 1;
r->z[0] = 1;
i = 255;
while ((i >= 0) && !(slide1[i] | slide2[i]))
i--;
for (; i >= 0; i--) {
ge25519_double_p1p1(&t, r);
if (slide1[i]) {
ge25519_p1p1_to_full(r, &t);
ge25519_pnielsadd_p1p1(&t, r, &pre1[abs(slide1[i]) / 2], (unsigned char)slide1[i] >> 7);
}
if (slide2[i]) {
ge25519_p1p1_to_full(r, &t);
ge25519_nielsadd2_p1p1(&t, r, &ge25519_niels_sliding_multiples[abs(slide2[i]) / 2], (unsigned char)slide2[i] >> 7);
}
ge25519_p1p1_to_partial(r, &t);
}
}
#if !defined(HAVE_GE25519_SCALARMULT_BASE_CHOOSE_NIELS)
static uint32_t
ge25519_windowb_equal(uint32_t b, uint32_t c) {
return ((b ^ c) - 1) >> 31;
}
static void
ge25519_scalarmult_base_choose_niels(ge25519_niels *t, const uint8_t table[256][96], uint32_t pos, signed char b) {
bignum25519 neg;
uint32_t sign = (uint32_t)((unsigned char)b >> 7);
uint32_t mask = ~(sign - 1);
uint32_t u = (b + mask) ^ mask;
uint32_t i;
/* ysubx, xaddy, t2d in packed form. initialize to ysubx = 1, xaddy = 1, t2d = 0 */
uint8_t packed[96] = {0};
packed[0] = 1;
packed[32] = 1;
for (i = 0; i < 8; i++)
curve25519_move_conditional_bytes(packed, table[(pos * 8) + i], ge25519_windowb_equal(u, i + 1));
/* expand in to t */
curve25519_expand(t->ysubx, packed + 0);
curve25519_expand(t->xaddy, packed + 32);
curve25519_expand(t->t2d , packed + 64);
/* adjust for sign */
curve25519_swap_conditional(t->ysubx, t->xaddy, sign);
curve25519_neg(neg, t->t2d);
curve25519_swap_conditional(t->t2d, neg, sign);
}
#endif /* HAVE_GE25519_SCALARMULT_BASE_CHOOSE_NIELS */
/* computes [s]basepoint */
static void
ge25519_scalarmult_base_niels(ge25519 *r, const uint8_t basepoint_table[256][96], const bignum256modm s) {
signed char b[64];
uint32_t i;
ge25519_niels t;
contract256_window4_modm(b, s);
ge25519_scalarmult_base_choose_niels(&t, basepoint_table, 0, b[1]);
curve25519_sub_reduce(r->x, t.xaddy, t.ysubx);
curve25519_add_reduce(r->y, t.xaddy, t.ysubx);
memset(r->z, 0, sizeof(bignum25519));
curve25519_copy(r->t, t.t2d);
r->z[0] = 2;
for (i = 3; i < 64; i += 2) {
ge25519_scalarmult_base_choose_niels(&t, basepoint_table, i / 2, b[i]);
ge25519_nielsadd2(r, &t);
}
ge25519_double_partial(r, r);
ge25519_double_partial(r, r);
ge25519_double_partial(r, r);
ge25519_double(r, r);
ge25519_scalarmult_base_choose_niels(&t, basepoint_table, 0, b[0]);
curve25519_mul(t.t2d, t.t2d, ge25519_ecd);
ge25519_nielsadd2(r, &t);
for(i = 2; i < 64; i += 2) {
ge25519_scalarmult_base_choose_niels(&t, basepoint_table, i / 2, b[i]);
ge25519_nielsadd2(r, &t);
}
}

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@@ -0,0 +1,390 @@
/*
conversions
*/
static void
ge25519_p1p1_to_partial(ge25519 *r, const ge25519_p1p1 *p) {
packed64bignum25519 ALIGN(16) xz, tt, xzout;
curve25519_mul(r->y, p->y, p->z);
curve25519_tangle64(xz, p->x, p->z);
curve25519_tangleone64(tt, p->t);
curve25519_mul_packed64(xzout, xz, tt);
curve25519_untangle64(r->x, r->z, xzout);
}
static void
ge25519_p1p1_to_full(ge25519 *r, const ge25519_p1p1 *p) {
packed64bignum25519 ALIGN(16) zy, xt, xx, zz, ty;
curve25519_tangle64(ty, p->t, p->y);
curve25519_tangleone64(xx, p->x);
curve25519_mul_packed64(xt, xx, ty);
curve25519_untangle64(r->x, r->t, xt);
curve25519_tangleone64(zz, p->z);
curve25519_mul_packed64(zy, zz, ty);
curve25519_untangle64(r->z, r->y, zy);
}
static void
ge25519_full_to_pniels(ge25519_pniels *p, const ge25519 *r) {
curve25519_sub(p->ysubx, r->y, r->x);
curve25519_add(p->xaddy, r->x, r->y);
curve25519_copy(p->z, r->z);
curve25519_mul(p->t2d, r->t, ge25519_ec2d);
}
/*
adding & doubling
*/
static void
ge25519_add_p1p1(ge25519_p1p1 *r, const ge25519 *p, const ge25519 *q) {
bignum25519 ALIGN(16) a,b,c,d;
packed32bignum25519 ALIGN(16) xx, yy, yypxx, yymxx, bd, ac, bdmac, bdpac;
packed64bignum25519 ALIGN(16) at, bu, atbu, ptz, qtz, cd;
curve25519_tangle32(yy, p->y, q->y);
curve25519_tangle32(xx, p->x, q->x);
curve25519_add_packed32(yypxx, yy, xx);
curve25519_sub_packed32(yymxx, yy, xx);
curve25519_tangle64_from32(at, bu, yymxx, yypxx);
curve25519_mul_packed64(atbu, at, bu);
curve25519_untangle64(a, b, atbu);
curve25519_tangle64(ptz, p->t, p->z);
curve25519_tangle64(qtz, q->t, q->z);
curve25519_mul_packed64(cd, ptz, qtz);
curve25519_untangle64(c, d, cd);
curve25519_mul(c, c, ge25519_ec2d);
curve25519_add_reduce(d, d, d);
/* reduce, so no after_basic is needed later */
curve25519_tangle32(bd, b, d);
curve25519_tangle32(ac, a, c);
curve25519_sub_packed32(bdmac, bd, ac);
curve25519_add_packed32(bdpac, bd, ac);
curve25519_untangle32(r->x, r->t, bdmac);
curve25519_untangle32(r->y, r->z, bdpac);
}
static void
ge25519_double_p1p1(ge25519_p1p1 *r, const ge25519 *p) {
bignum25519 ALIGN(16) a,b,c,x;
packed64bignum25519 ALIGN(16) xy, zx, ab, cx;
packed32bignum25519 ALIGN(16) xc, yz, xt, yc, ac, bc;
curve25519_add(x, p->x, p->y);
curve25519_tangle64(xy, p->x, p->y);
curve25519_square_packed64(ab, xy);
curve25519_untangle64(a, b, ab);
curve25519_tangle64(zx, p->z, x);
curve25519_square_packed64(cx, zx);
curve25519_untangle64(c, x, cx);
curve25519_tangle32(bc, b, c);
curve25519_tangle32(ac, a, c);
curve25519_add_reduce_packed32(yc, bc, ac);
curve25519_untangle32(r->y, c, yc);
curve25519_sub(r->z, b, a);
curve25519_tangle32(yz, r->y, r->z);
curve25519_tangle32(xc, x, c);
curve25519_sub_after_basic_packed32(xt, xc, yz);
curve25519_untangle32(r->x, r->t, xt);
}
static void
ge25519_nielsadd2_p1p1(ge25519_p1p1 *r, const ge25519 *p, const ge25519_niels *q, unsigned char signbit) {
const bignum25519 *qb = (const bignum25519 *)q;
bignum25519 *rb = (bignum25519 *)r;
bignum25519 ALIGN(16) a,b,c;
packed64bignum25519 ALIGN(16) ab, yx, aybx;
packed32bignum25519 ALIGN(16) bd, ac, bdac;
curve25519_sub(a, p->y, p->x);
curve25519_add(b, p->y, p->x);
curve25519_tangle64(ab, a, b);
curve25519_tangle64(yx, qb[signbit], qb[signbit^1]);
curve25519_mul_packed64(aybx, ab, yx);
curve25519_untangle64(a, b, aybx);
curve25519_add(r->y, b, a);
curve25519_add_reduce(r->t, p->z, p->z);
curve25519_mul(c, p->t, q->t2d);
curve25519_copy(r->z, r->t);
curve25519_add(rb[2+signbit], rb[2+signbit], c);
curve25519_tangle32(bd, b, rb[2+(signbit^1)]);
curve25519_tangle32(ac, a, c);
curve25519_sub_packed32(bdac, bd, ac);
curve25519_untangle32(r->x, rb[2+(signbit^1)], bdac);
}
static void
ge25519_pnielsadd_p1p1(ge25519_p1p1 *r, const ge25519 *p, const ge25519_pniels *q, unsigned char signbit) {
const bignum25519 *qb = (const bignum25519 *)q;
bignum25519 *rb = (bignum25519 *)r;
bignum25519 ALIGN(16) a,b,c;
packed64bignum25519 ALIGN(16) ab, yx, aybx, zt, zt2d, tc;
packed32bignum25519 ALIGN(16) bd, ac, bdac;
curve25519_sub(a, p->y, p->x);
curve25519_add(b, p->y, p->x);
curve25519_tangle64(ab, a, b);
curve25519_tangle64(yx, qb[signbit], qb[signbit^1]);
curve25519_mul_packed64(aybx, ab, yx);
curve25519_untangle64(a, b, aybx);
curve25519_add(r->y, b, a);
curve25519_tangle64(zt, p->z, p->t);
curve25519_tangle64(zt2d, q->z, q->t2d);
curve25519_mul_packed64(tc, zt, zt2d);
curve25519_untangle64(r->t, c, tc);
curve25519_add_reduce(r->t, r->t, r->t);
curve25519_copy(r->z, r->t);
curve25519_add(rb[2+signbit], rb[2+signbit], c);
curve25519_tangle32(bd, b, rb[2+(signbit^1)]);
curve25519_tangle32(ac, a, c);
curve25519_sub_packed32(bdac, bd, ac);
curve25519_untangle32(r->x, rb[2+(signbit^1)], bdac);
}
static void
ge25519_double(ge25519 *r, const ge25519 *p) {
ge25519_p1p1 ALIGN(16) t;
ge25519_double_p1p1(&t, p);
ge25519_p1p1_to_full(r, &t);
}
static void
ge25519_add(ge25519 *r, const ge25519 *p, const ge25519 *q) {
ge25519_p1p1 ALIGN(16) t;
ge25519_add_p1p1(&t, p, q);
ge25519_p1p1_to_full(r, &t);
}
static void
ge25519_double_partial(ge25519 *r, const ge25519 *p) {
ge25519_p1p1 ALIGN(16) t;
ge25519_double_p1p1(&t, p);
ge25519_p1p1_to_partial(r, &t);
}
static void
ge25519_nielsadd2(ge25519 *r, const ge25519_niels *q) {
packed64bignum25519 ALIGN(16) ab, yx, aybx, eg, ff, hh, xz, ty;
packed32bignum25519 ALIGN(16) bd, ac, bdac;
bignum25519 ALIGN(16) a,b,c,d,e,f,g,h;
curve25519_sub(a, r->y, r->x);
curve25519_add(b, r->y, r->x);
curve25519_tangle64(ab, a, b);
curve25519_tangle64(yx, q->ysubx, q->xaddy);
curve25519_mul_packed64(aybx, ab, yx);
curve25519_untangle64(a, b, aybx);
curve25519_add(h, b, a);
curve25519_add_reduce(d, r->z, r->z);
curve25519_mul(c, r->t, q->t2d);
curve25519_add(g, d, c); /* d is reduced, so no need for after_basic */
curve25519_tangle32(bd, b, d);
curve25519_tangle32(ac, a, c);
curve25519_sub_packed32(bdac, bd, ac); /* d is reduced, so no need for after_basic */
curve25519_untangle32(e, f, bdac);
curve25519_tangle64(eg, e, g);
curve25519_tangleone64(ff, f);
curve25519_mul_packed64(xz, eg, ff);
curve25519_untangle64(r->x, r->z, xz);
curve25519_tangleone64(hh, h);
curve25519_mul_packed64(ty, eg, hh);
curve25519_untangle64(r->t, r->y, ty);
}
static void
ge25519_pnielsadd(ge25519_pniels *r, const ge25519 *p, const ge25519_pniels *q) {
ge25519_p1p1 ALIGN(16) t;
ge25519 ALIGN(16) f;
ge25519_pnielsadd_p1p1(&t, p, q, 0);
ge25519_p1p1_to_full(&f, &t);
ge25519_full_to_pniels(r, &f);
}
/*
pack & unpack
*/
static void
ge25519_pack(unsigned char r[32], const ge25519 *p) {
bignum25519 ALIGN(16) tx, ty, zi;
unsigned char parity[32];
curve25519_recip(zi, p->z);
curve25519_mul(tx, p->x, zi);
curve25519_mul(ty, p->y, zi);
curve25519_contract(r, ty);
curve25519_contract(parity, tx);
r[31] ^= ((parity[0] & 1) << 7);
}
static int
ge25519_unpack_negative_vartime(ge25519 *r, const unsigned char p[32]) {
static const bignum25519 ALIGN(16) one = {1};
static const unsigned char zero[32] = {0};
unsigned char parity = p[31] >> 7;
unsigned char check[32];
bignum25519 ALIGN(16) t, root, num, den, d3;
curve25519_expand(r->y, p);
curve25519_copy(r->z, one);
curve25519_square_times(num, r->y, 1); /* x = y^2 */
curve25519_mul(den, num, ge25519_ecd); /* den = dy^2 */
curve25519_sub_reduce(num, num, r->z); /* x = y^2 - 1 */
curve25519_add(den, den, r->z); /* den = dy^2 + 1 */
/* Computation of sqrt(num/den) */
/* 1.: computation of num^((p-5)/8)*den^((7p-35)/8) = (num*den^7)^((p-5)/8) */
curve25519_square_times(t, den, 1);
curve25519_mul(d3, t, den);
curve25519_square_times(r->x, d3, 1);
curve25519_mul(r->x, r->x, den);
curve25519_mul(r->x, r->x, num);
curve25519_pow_two252m3(r->x, r->x);
/* 2. computation of r->x = t * num * den^3 */
curve25519_mul(r->x, r->x, d3);
curve25519_mul(r->x, r->x, num);
/* 3. Check if either of the roots works: */
curve25519_square_times(t, r->x, 1);
curve25519_mul(t, t, den);
curve25519_copy(root, t);
curve25519_sub_reduce(root, root, num);
curve25519_contract(check, root);
if (!ed25519_verify(check, zero, 32)) {
curve25519_add_reduce(t, t, num);
curve25519_contract(check, t);
if (!ed25519_verify(check, zero, 32))
return 0;
curve25519_mul(r->x, r->x, ge25519_sqrtneg1);
}
curve25519_contract(check, r->x);
if ((check[0] & 1) == parity) {
curve25519_copy(t, r->x);
curve25519_neg(r->x, t);
}
curve25519_mul(r->t, r->x, r->y);
return 1;
}
/*
scalarmults
*/
#define S1_SWINDOWSIZE 5
#define S1_TABLE_SIZE (1<<(S1_SWINDOWSIZE-2))
#define S2_SWINDOWSIZE 7
#define S2_TABLE_SIZE (1<<(S2_SWINDOWSIZE-2))
static void
ge25519_double_scalarmult_vartime(ge25519 *r, const ge25519 *p1, const bignum256modm s1, const bignum256modm s2) {
signed char slide1[256], slide2[256];
ge25519_pniels ALIGN(16) pre1[S1_TABLE_SIZE];
ge25519 ALIGN(16) d1;
ge25519_p1p1 ALIGN(16) t;
int32_t i;
contract256_slidingwindow_modm(slide1, s1, S1_SWINDOWSIZE);
contract256_slidingwindow_modm(slide2, s2, S2_SWINDOWSIZE);
ge25519_double(&d1, p1);
ge25519_full_to_pniels(pre1, p1);
for (i = 0; i < S1_TABLE_SIZE - 1; i++)
ge25519_pnielsadd(&pre1[i+1], &d1, &pre1[i]);
/* set neutral */
memset(r, 0, sizeof(ge25519));
r->y[0] = 1;
r->z[0] = 1;
i = 255;
while ((i >= 0) && !(slide1[i] | slide2[i]))
i--;
for (; i >= 0; i--) {
ge25519_double_p1p1(&t, r);
if (slide1[i]) {
ge25519_p1p1_to_full(r, &t);
ge25519_pnielsadd_p1p1(&t, r, &pre1[abs(slide1[i]) / 2], (unsigned char)slide1[i] >> 7);
}
if (slide2[i]) {
ge25519_p1p1_to_full(r, &t);
ge25519_nielsadd2_p1p1(&t, r, &ge25519_niels_sliding_multiples[abs(slide2[i]) / 2], (unsigned char)slide2[i] >> 7);
}
ge25519_p1p1_to_partial(r, &t);
}
}
#if !defined(HAVE_GE25519_SCALARMULT_BASE_CHOOSE_NIELS)
static uint32_t
ge25519_windowb_equal(uint32_t b, uint32_t c) {
return ((b ^ c) - 1) >> 31;
}
static void
ge25519_scalarmult_base_choose_niels(ge25519_niels *t, const uint8_t table[256][96], uint32_t pos, signed char b) {
bignum25519 ALIGN(16) neg;
uint32_t sign = (uint32_t)((unsigned char)b >> 7);
uint32_t mask = ~(sign - 1);
uint32_t u = (b + mask) ^ mask;
uint32_t i;
/* ysubx, xaddy, t2d in packed form. initialize to ysubx = 1, xaddy = 1, t2d = 0 */
uint8_t ALIGN(16) packed[96] = {0};
packed[0] = 1;
packed[32] = 1;
for (i = 0; i < 8; i++)
curve25519_move_conditional_bytes(packed, table[(pos * 8) + i], ge25519_windowb_equal(u, i + 1));
/* expand in to t */
curve25519_expand(t->ysubx, packed + 0);
curve25519_expand(t->xaddy, packed + 32);
curve25519_expand(t->t2d , packed + 64);
/* adjust for sign */
curve25519_swap_conditional(t->ysubx, t->xaddy, sign);
curve25519_neg(neg, t->t2d);
curve25519_swap_conditional(t->t2d, neg, sign);
}
#endif /* HAVE_GE25519_SCALARMULT_BASE_CHOOSE_NIELS */
static void
ge25519_scalarmult_base_niels(ge25519 *r, const uint8_t table[256][96], const bignum256modm s) {
signed char b[64];
uint32_t i;
ge25519_niels ALIGN(16) t;
contract256_window4_modm(b, s);
ge25519_scalarmult_base_choose_niels(&t, table, 0, b[1]);
curve25519_sub_reduce(r->x, t.xaddy, t.ysubx);
curve25519_add_reduce(r->y, t.xaddy, t.ysubx);
memset(r->z, 0, sizeof(bignum25519));
r->z[0] = 2;
curve25519_copy(r->t, t.t2d);
for (i = 3; i < 64; i += 2) {
ge25519_scalarmult_base_choose_niels(&t, table, i / 2, b[i]);
ge25519_nielsadd2(r, &t);
}
ge25519_double_partial(r, r);
ge25519_double_partial(r, r);
ge25519_double_partial(r, r);
ge25519_double(r, r);
ge25519_scalarmult_base_choose_niels(&t, table, 0, b[0]);
curve25519_mul(t.t2d, t.t2d, ge25519_ecd);
ge25519_nielsadd2(r, &t);
for(i = 2; i < 64; i += 2) {
ge25519_scalarmult_base_choose_niels(&t, table, i / 2, b[i]);
ge25519_nielsadd2(r, &t);
}
}

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/* os */
#if defined(_WIN32) || defined(_WIN64) || defined(__TOS_WIN__) || defined(__WINDOWS__)
#define OS_WINDOWS
#elif defined(sun) || defined(__sun) || defined(__SVR4) || defined(__svr4__)
#define OS_SOLARIS
#else
#include <sys/param.h> /* need this to define BSD */
#define OS_NIX
#if defined(__linux__)
#define OS_LINUX
#elif defined(BSD)
#define OS_BSD
#if defined(MACOS_X) || (defined(__APPLE__) & defined(__MACH__))
#define OS_OSX
#elif defined(macintosh) || defined(Macintosh)
#define OS_MAC
#elif defined(__OpenBSD__)
#define OS_OPENBSD
#endif
#endif
#endif
/* compiler */
#if defined(_MSC_VER)
#define COMPILER_MSVC
#endif
#if defined(__ICC)
#define COMPILER_INTEL
#endif
#if defined(__GNUC__)
#if (__GNUC__ >= 3)
#define COMPILER_GCC ((__GNUC__ * 10000) + (__GNUC_MINOR__ * 100) + (__GNUC_PATCHLEVEL__))
#else
#define COMPILER_GCC ((__GNUC__ * 10000) + (__GNUC_MINOR__ * 100) )
#endif
#endif
#if defined(__PATHCC__)
#define COMPILER_PATHCC
#endif
#if defined(__clang__)
#define COMPILER_CLANG ((__clang_major__ * 10000) + (__clang_minor__ * 100) + (__clang_patchlevel__))
#endif
/* cpu */
#if defined(__amd64__) || defined(__amd64) || defined(__x86_64__ ) || defined(_M_X64)
#define CPU_X86_64
#elif defined(__i586__) || defined(__i686__) || (defined(_M_IX86) && (_M_IX86 >= 500))
#define CPU_X86 500
#elif defined(__i486__) || (defined(_M_IX86) && (_M_IX86 >= 400))
#define CPU_X86 400
#elif defined(__i386__) || (defined(_M_IX86) && (_M_IX86 >= 300)) || defined(__X86__) || defined(_X86_) || defined(__I86__)
#define CPU_X86 300
#elif defined(__ia64__) || defined(_IA64) || defined(__IA64__) || defined(_M_IA64) || defined(__ia64)
#define CPU_IA64
#endif
#if defined(__sparc__) || defined(__sparc) || defined(__sparcv9)
#define CPU_SPARC
#if defined(__sparcv9)
#define CPU_SPARC64
#endif
#endif
#if defined(powerpc) || defined(__PPC__) || defined(__ppc__) || defined(_ARCH_PPC) || defined(__powerpc__) || defined(__powerpc) || defined(POWERPC) || defined(_M_PPC)
#define CPU_PPC
#if defined(_ARCH_PWR7)
#define CPU_POWER7
#elif defined(__64BIT__)
#define CPU_PPC64
#else
#define CPU_PPC32
#endif
#endif
#if defined(__hppa__) || defined(__hppa)
#define CPU_HPPA
#endif
#if defined(__alpha__) || defined(__alpha) || defined(_M_ALPHA)
#define CPU_ALPHA
#endif
/* 64 bit cpu */
#if defined(CPU_X86_64) || defined(CPU_IA64) || defined(CPU_SPARC64) || defined(__64BIT__) || defined(__LP64__) || defined(_LP64) || (defined(_MIPS_SZLONG) && (_MIPS_SZLONG == 64))
#define CPU_64BITS
#endif
#if defined(COMPILER_MSVC)
typedef signed char int8_t;
typedef unsigned char uint8_t;
typedef signed short int16_t;
typedef unsigned short uint16_t;
typedef signed int int32_t;
typedef unsigned int uint32_t;
typedef signed __int64 int64_t;
typedef unsigned __int64 uint64_t;
#else
#include <stdint.h>
#endif

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#include "ed25519-donna-portable-identify.h"
#define mul32x32_64(a,b) (((uint64_t)(a))*(b))
/* platform */
#if defined(COMPILER_MSVC)
#include <intrin.h>
#if !defined(_DEBUG)
#undef mul32x32_64
#define mul32x32_64(a,b) __emulu(a,b)
#endif
#undef inline
#define inline __forceinline
#define DONNA_INLINE __forceinline
#define DONNA_NOINLINE __declspec(noinline)
#define ALIGN(x) __declspec(align(x))
#define ROTL32(a,b) _rotl(a,b)
#define ROTR32(a,b) _rotr(a,b)
#else
#include <sys/param.h>
#define DONNA_INLINE inline __attribute__((always_inline))
#define DONNA_NOINLINE __attribute__((noinline))
#undef ALIGN
#define ALIGN(x) __attribute__((aligned(x)))
#define ROTL32(a,b) (((a) << (b)) | ((a) >> (32 - b)))
#define ROTR32(a,b) (((a) >> (b)) | ((a) << (32 - b)))
#endif
/* uint128_t */
#if defined(CPU_64BITS) && !defined(ED25519_FORCE_32BIT)
#if defined(COMPILER_CLANG) && (COMPILER_CLANG >= 30100)
#define HAVE_NATIVE_UINT128
typedef unsigned __int128 uint128_t;
#elif defined(COMPILER_MSVC)
#define HAVE_UINT128
typedef struct uint128_t {
uint64_t lo, hi;
} uint128_t;
#define mul64x64_128(out,a,b) out.lo = _umul128(a,b,&out.hi);
#define shr128_pair(out,hi,lo,shift) out = __shiftright128(lo, hi, shift);
#define shl128_pair(out,hi,lo,shift) out = __shiftleft128(lo, hi, shift);
#define shr128(out,in,shift) shr128_pair(out, in.hi, in.lo, shift)
#define shl128(out,in,shift) shl128_pair(out, in.hi, in.lo, shift)
#define add128(a,b) { uint64_t p = a.lo; a.lo += b.lo; a.hi += b.hi + (a.lo < p); }
#define add128_64(a,b) { uint64_t p = a.lo; a.lo += b; a.hi += (a.lo < p); }
#define lo128(a) (a.lo)
#define hi128(a) (a.hi)
#elif defined(COMPILER_GCC) && !defined(HAVE_NATIVE_UINT128)
#if defined(__SIZEOF_INT128__)
#define HAVE_NATIVE_UINT128
typedef unsigned __int128 uint128_t;
#elif (COMPILER_GCC >= 40400)
#define HAVE_NATIVE_UINT128
typedef unsigned uint128_t __attribute__((mode(TI)));
#elif defined(CPU_X86_64)
#define HAVE_UINT128
typedef struct uint128_t {
uint64_t lo, hi;
} uint128_t;
#define mul64x64_128(out,a,b) __asm__ ("mulq %3" : "=a" (out.lo), "=d" (out.hi) : "a" (a), "rm" (b));
#define shr128_pair(out,hi,lo,shift) __asm__ ("shrdq %2,%1,%0" : "+r" (lo) : "r" (hi), "J" (shift)); out = lo;
#define shl128_pair(out,hi,lo,shift) __asm__ ("shldq %2,%1,%0" : "+r" (hi) : "r" (lo), "J" (shift)); out = hi;
#define shr128(out,in,shift) shr128_pair(out,in.hi, in.lo, shift)
#define shl128(out,in,shift) shl128_pair(out,in.hi, in.lo, shift)
#define add128(a,b) __asm__ ("addq %4,%2; adcq %5,%3" : "=r" (a.hi), "=r" (a.lo) : "1" (a.lo), "0" (a.hi), "rm" (b.lo), "rm" (b.hi) : "cc");
#define add128_64(a,b) __asm__ ("addq %4,%2; adcq $0,%3" : "=r" (a.hi), "=r" (a.lo) : "1" (a.lo), "0" (a.hi), "rm" (b) : "cc");
#define lo128(a) (a.lo)
#define hi128(a) (a.hi)
#endif
#endif
#if defined(HAVE_NATIVE_UINT128)
#define HAVE_UINT128
#define mul64x64_128(out,a,b) out = (uint128_t)a * b;
#define shr128_pair(out,hi,lo,shift) out = (uint64_t)((((uint128_t)hi << 64) | lo) >> (shift));
#define shl128_pair(out,hi,lo,shift) out = (uint64_t)(((((uint128_t)hi << 64) | lo) << (shift)) >> 64);
#define shr128(out,in,shift) out = (uint64_t)(in >> (shift));
#define shl128(out,in,shift) out = (uint64_t)((in << shift) >> 64);
#define add128(a,b) a += b;
#define add128_64(a,b) a += (uint64_t)b;
#define lo128(a) ((uint64_t)a)
#define hi128(a) ((uint64_t)(a >> 64))
#endif
#if !defined(HAVE_UINT128)
#error Need a uint128_t implementation!
#endif
#endif
/* endian */
#if !defined(ED25519_OPENSSLRNG)
static inline void U32TO8_LE(unsigned char *p, const uint32_t v) {
p[0] = (unsigned char)(v );
p[1] = (unsigned char)(v >> 8);
p[2] = (unsigned char)(v >> 16);
p[3] = (unsigned char)(v >> 24);
}
#endif
#if !defined(HAVE_UINT128)
static inline uint32_t U8TO32_LE(const unsigned char *p) {
return
(((uint32_t)(p[0]) ) |
((uint32_t)(p[1]) << 8) |
((uint32_t)(p[2]) << 16) |
((uint32_t)(p[3]) << 24));
}
#else
static inline uint64_t U8TO64_LE(const unsigned char *p) {
return
(((uint64_t)(p[0]) ) |
((uint64_t)(p[1]) << 8) |
((uint64_t)(p[2]) << 16) |
((uint64_t)(p[3]) << 24) |
((uint64_t)(p[4]) << 32) |
((uint64_t)(p[5]) << 40) |
((uint64_t)(p[6]) << 48) |
((uint64_t)(p[7]) << 56));
}
static inline void U64TO8_LE(unsigned char *p, const uint64_t v) {
p[0] = (unsigned char)(v );
p[1] = (unsigned char)(v >> 8);
p[2] = (unsigned char)(v >> 16);
p[3] = (unsigned char)(v >> 24);
p[4] = (unsigned char)(v >> 32);
p[5] = (unsigned char)(v >> 40);
p[6] = (unsigned char)(v >> 48);
p[7] = (unsigned char)(v >> 56);
}
#endif
#include <stdlib.h>
#include <string.h>

115
external/ed25519-donna/ed25519-donna.h vendored Normal file
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/*
Public domain by Andrew M. <liquidsun@gmail.com>
Modified from the amd64-51-30k implementation by
Daniel J. Bernstein
Niels Duif
Tanja Lange
Peter Schwabe
Bo-Yin Yang
*/
#include "ed25519-donna-portable.h"
#if defined(ED25519_SSE2)
#else
#if defined(HAVE_UINT128) && !defined(ED25519_FORCE_32BIT)
#define ED25519_64BIT
#else
#define ED25519_32BIT
#endif
#endif
#if !defined(ED25519_NO_INLINE_ASM)
/* detect extra features first so un-needed functions can be disabled throughout */
#if defined(ED25519_SSE2)
#if defined(COMPILER_GCC) && defined(CPU_X86)
#define ED25519_GCC_32BIT_SSE_CHOOSE
#elif defined(COMPILER_GCC) && defined(CPU_X86_64)
#define ED25519_GCC_64BIT_SSE_CHOOSE
#endif
#else
#if defined(CPU_X86_64)
#if defined(COMPILER_GCC)
#if defined(ED25519_64BIT)
#define ED25519_GCC_64BIT_X86_CHOOSE
#else
#define ED25519_GCC_64BIT_32BIT_CHOOSE
#endif
#endif
#endif
#endif
#endif
#if defined(ED25519_SSE2)
#include "curve25519-donna-sse2.h"
#elif defined(ED25519_64BIT)
#include "curve25519-donna-64bit.h"
#else
#include "curve25519-donna-32bit.h"
#endif
#include "curve25519-donna-helpers.h"
/* separate uint128 check for 64 bit sse2 */
#if defined(HAVE_UINT128) && !defined(ED25519_FORCE_32BIT)
#include "modm-donna-64bit.h"
#else
#include "modm-donna-32bit.h"
#endif
typedef unsigned char hash_512bits[64];
/*
Timing safe memory compare
*/
static int
ed25519_verify(const unsigned char *x, const unsigned char *y, size_t len) {
size_t differentbits = 0;
while (len--)
differentbits |= (*x++ ^ *y++);
return (int) (1 & ((differentbits - 1) >> 8));
}
/*
* Arithmetic on the twisted Edwards curve -x^2 + y^2 = 1 + dx^2y^2
* with d = -(121665/121666) = 37095705934669439343138083508754565189542113879843219016388785533085940283555
* Base point: (15112221349535400772501151409588531511454012693041857206046113283949847762202,46316835694926478169428394003475163141307993866256225615783033603165251855960);
*/
typedef struct ge25519_t {
bignum25519 x, y, z, t;
} ge25519;
typedef struct ge25519_p1p1_t {
bignum25519 x, y, z, t;
} ge25519_p1p1;
typedef struct ge25519_niels_t {
bignum25519 ysubx, xaddy, t2d;
} ge25519_niels;
typedef struct ge25519_pniels_t {
bignum25519 ysubx, xaddy, z, t2d;
} ge25519_pniels;
#include "ed25519-donna-basepoint-table.h"
#if defined(ED25519_64BIT)
#include "ed25519-donna-64bit-tables.h"
#include "ed25519-donna-64bit-x86.h"
#else
#include "ed25519-donna-32bit-tables.h"
#include "ed25519-donna-64bit-x86-32bit.h"
#endif
#if defined(ED25519_SSE2)
#include "ed25519-donna-32bit-sse2.h"
#include "ed25519-donna-64bit-sse2.h"
#include "ed25519-donna-impl-sse2.h"
#else
#include "ed25519-donna-impl-base.h"
#endif

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/*
a custom hash must have a 512bit digest and implement:
struct ed25519_hash_context;
void ed25519_hash_init(ed25519_hash_context *ctx);
void ed25519_hash_update(ed25519_hash_context *ctx, const uint8_t *in, size_t inlen);
void ed25519_hash_final(ed25519_hash_context *ctx, uint8_t *hash);
void ed25519_hash(uint8_t *hash, const uint8_t *in, size_t inlen);
*/

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external/ed25519-donna/ed25519-hash.h vendored Normal file
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#if defined(ED25519_REFHASH)
/* reference/slow SHA-512. really, do not use this */
#define HASH_BLOCK_SIZE 128
#define HASH_DIGEST_SIZE 64
typedef struct sha512_state_t {
uint64_t H[8];
uint64_t T[2];
uint32_t leftover;
uint8_t buffer[HASH_BLOCK_SIZE];
} sha512_state;
typedef sha512_state ed25519_hash_context;
static const uint64_t sha512_constants[80] = {
0x428a2f98d728ae22ull, 0x7137449123ef65cdull, 0xb5c0fbcfec4d3b2full, 0xe9b5dba58189dbbcull,
0x3956c25bf348b538ull, 0x59f111f1b605d019ull, 0x923f82a4af194f9bull, 0xab1c5ed5da6d8118ull,
0xd807aa98a3030242ull, 0x12835b0145706fbeull, 0x243185be4ee4b28cull, 0x550c7dc3d5ffb4e2ull,
0x72be5d74f27b896full, 0x80deb1fe3b1696b1ull, 0x9bdc06a725c71235ull, 0xc19bf174cf692694ull,
0xe49b69c19ef14ad2ull, 0xefbe4786384f25e3ull, 0x0fc19dc68b8cd5b5ull, 0x240ca1cc77ac9c65ull,
0x2de92c6f592b0275ull, 0x4a7484aa6ea6e483ull, 0x5cb0a9dcbd41fbd4ull, 0x76f988da831153b5ull,
0x983e5152ee66dfabull, 0xa831c66d2db43210ull, 0xb00327c898fb213full, 0xbf597fc7beef0ee4ull,
0xc6e00bf33da88fc2ull, 0xd5a79147930aa725ull, 0x06ca6351e003826full, 0x142929670a0e6e70ull,
0x27b70a8546d22ffcull, 0x2e1b21385c26c926ull, 0x4d2c6dfc5ac42aedull, 0x53380d139d95b3dfull,
0x650a73548baf63deull, 0x766a0abb3c77b2a8ull, 0x81c2c92e47edaee6ull, 0x92722c851482353bull,
0xa2bfe8a14cf10364ull, 0xa81a664bbc423001ull, 0xc24b8b70d0f89791ull, 0xc76c51a30654be30ull,
0xd192e819d6ef5218ull, 0xd69906245565a910ull, 0xf40e35855771202aull, 0x106aa07032bbd1b8ull,
0x19a4c116b8d2d0c8ull, 0x1e376c085141ab53ull, 0x2748774cdf8eeb99ull, 0x34b0bcb5e19b48a8ull,
0x391c0cb3c5c95a63ull, 0x4ed8aa4ae3418acbull, 0x5b9cca4f7763e373ull, 0x682e6ff3d6b2b8a3ull,
0x748f82ee5defb2fcull, 0x78a5636f43172f60ull, 0x84c87814a1f0ab72ull, 0x8cc702081a6439ecull,
0x90befffa23631e28ull, 0xa4506cebde82bde9ull, 0xbef9a3f7b2c67915ull, 0xc67178f2e372532bull,
0xca273eceea26619cull, 0xd186b8c721c0c207ull, 0xeada7dd6cde0eb1eull, 0xf57d4f7fee6ed178ull,
0x06f067aa72176fbaull, 0x0a637dc5a2c898a6ull, 0x113f9804bef90daeull, 0x1b710b35131c471bull,
0x28db77f523047d84ull, 0x32caab7b40c72493ull, 0x3c9ebe0a15c9bebcull, 0x431d67c49c100d4cull,
0x4cc5d4becb3e42b6ull, 0x597f299cfc657e2aull, 0x5fcb6fab3ad6faecull, 0x6c44198c4a475817ull
};
static uint64_t
sha512_ROTR64(uint64_t x, int k) {
return (x >> k) | (x << (64 - k));
}
static uint64_t
sha512_LOAD64_BE(const uint8_t *p) {
return
((uint64_t)p[0] << 56) |
((uint64_t)p[1] << 48) |
((uint64_t)p[2] << 40) |
((uint64_t)p[3] << 32) |
((uint64_t)p[4] << 24) |
((uint64_t)p[5] << 16) |
((uint64_t)p[6] << 8) |
((uint64_t)p[7] );
}
static void
sha512_STORE64_BE(uint8_t *p, uint64_t v) {
p[0] = (uint8_t)(v >> 56);
p[1] = (uint8_t)(v >> 48);
p[2] = (uint8_t)(v >> 40);
p[3] = (uint8_t)(v >> 32);
p[4] = (uint8_t)(v >> 24);
p[5] = (uint8_t)(v >> 16);
p[6] = (uint8_t)(v >> 8);
p[7] = (uint8_t)(v );
}
#define Ch(x,y,z) (z ^ (x & (y ^ z)))
#define Maj(x,y,z) (((x | y) & z) | (x & y))
#define S0(x) (sha512_ROTR64(x, 28) ^ sha512_ROTR64(x, 34) ^ sha512_ROTR64(x, 39))
#define S1(x) (sha512_ROTR64(x, 14) ^ sha512_ROTR64(x, 18) ^ sha512_ROTR64(x, 41))
#define G0(x) (sha512_ROTR64(x, 1) ^ sha512_ROTR64(x, 8) ^ (x >> 7))
#define G1(x) (sha512_ROTR64(x, 19) ^ sha512_ROTR64(x, 61) ^ (x >> 6))
#define W0(in,i) (sha512_LOAD64_BE(&in[i * 8]))
#define W1(i) (G1(w[i - 2]) + w[i - 7] + G0(w[i - 15]) + w[i - 16])
#define STEP(i) \
t1 = S0(r[0]) + Maj(r[0], r[1], r[2]); \
t0 = r[7] + S1(r[4]) + Ch(r[4], r[5], r[6]) + sha512_constants[i] + w[i]; \
r[7] = r[6]; \
r[6] = r[5]; \
r[5] = r[4]; \
r[4] = r[3] + t0; \
r[3] = r[2]; \
r[2] = r[1]; \
r[1] = r[0]; \
r[0] = t0 + t1;
static void
sha512_blocks(sha512_state *S, const uint8_t *in, size_t blocks) {
uint64_t r[8], w[80], t0, t1;
size_t i;
for (i = 0; i < 8; i++) r[i] = S->H[i];
while (blocks--) {
for (i = 0; i < 16; i++) { w[i] = W0(in, i); }
for (i = 16; i < 80; i++) { w[i] = W1(i); }
for (i = 0; i < 80; i++) { STEP(i); }
for (i = 0; i < 8; i++) { r[i] += S->H[i]; S->H[i] = r[i]; }
S->T[0] += HASH_BLOCK_SIZE * 8;
S->T[1] += (!S->T[0]) ? 1 : 0;
in += HASH_BLOCK_SIZE;
}
}
static void
ed25519_hash_init(sha512_state *S) {
S->H[0] = 0x6a09e667f3bcc908ull;
S->H[1] = 0xbb67ae8584caa73bull;
S->H[2] = 0x3c6ef372fe94f82bull;
S->H[3] = 0xa54ff53a5f1d36f1ull;
S->H[4] = 0x510e527fade682d1ull;
S->H[5] = 0x9b05688c2b3e6c1full;
S->H[6] = 0x1f83d9abfb41bd6bull;
S->H[7] = 0x5be0cd19137e2179ull;
S->T[0] = 0;
S->T[1] = 0;
S->leftover = 0;
}
static void
ed25519_hash_update(sha512_state *S, const uint8_t *in, size_t inlen) {
size_t blocks, want;
/* handle the previous data */
if (S->leftover) {
want = (HASH_BLOCK_SIZE - S->leftover);
want = (want < inlen) ? want : inlen;
memcpy(S->buffer + S->leftover, in, want);
S->leftover += (uint32_t)want;
if (S->leftover < HASH_BLOCK_SIZE)
return;
in += want;
inlen -= want;
sha512_blocks(S, S->buffer, 1);
}
/* handle the current data */
blocks = (inlen & ~(HASH_BLOCK_SIZE - 1));
S->leftover = (uint32_t)(inlen - blocks);
if (blocks) {
sha512_blocks(S, in, blocks / HASH_BLOCK_SIZE);
in += blocks;
}
/* handle leftover data */
if (S->leftover)
memcpy(S->buffer, in, S->leftover);
}
static void
ed25519_hash_final(sha512_state *S, uint8_t *hash) {
uint64_t t0 = S->T[0] + (S->leftover * 8), t1 = S->T[1];
S->buffer[S->leftover] = 0x80;
if (S->leftover <= 111) {
memset(S->buffer + S->leftover + 1, 0, 111 - S->leftover);
} else {
memset(S->buffer + S->leftover + 1, 0, 127 - S->leftover);
sha512_blocks(S, S->buffer, 1);
memset(S->buffer, 0, 112);
}
sha512_STORE64_BE(S->buffer + 112, t1);
sha512_STORE64_BE(S->buffer + 120, t0);
sha512_blocks(S, S->buffer, 1);
sha512_STORE64_BE(&hash[ 0], S->H[0]);
sha512_STORE64_BE(&hash[ 8], S->H[1]);
sha512_STORE64_BE(&hash[16], S->H[2]);
sha512_STORE64_BE(&hash[24], S->H[3]);
sha512_STORE64_BE(&hash[32], S->H[4]);
sha512_STORE64_BE(&hash[40], S->H[5]);
sha512_STORE64_BE(&hash[48], S->H[6]);
sha512_STORE64_BE(&hash[56], S->H[7]);
}
static void
ed25519_hash(uint8_t *hash, const uint8_t *in, size_t inlen) {
ed25519_hash_context ctx;
ed25519_hash_init(&ctx);
ed25519_hash_update(&ctx, in, inlen);
ed25519_hash_final(&ctx, hash);
}
#elif defined(ED25519_CUSTOMHASH)
#include "ed25519-hash-custom.h"
#else
#include <openssl/sha.h>
typedef SHA512_CTX ed25519_hash_context;
static void
ed25519_hash_init(ed25519_hash_context *ctx) {
SHA512_Init(ctx);
}
static void
ed25519_hash_update(ed25519_hash_context *ctx, const uint8_t *in, size_t inlen) {
SHA512_Update(ctx, in, inlen);
}
static void
ed25519_hash_final(ed25519_hash_context *ctx, uint8_t *hash) {
SHA512_Final(hash, ctx);
}
static void
ed25519_hash(uint8_t *hash, const uint8_t *in, size_t inlen) {
SHA512(in, inlen, hash);
}
#endif

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/*
a custom randombytes must implement:
void ED25519_FN(ed25519_randombytes_unsafe) (void *p, size_t len);
ed25519_randombytes_unsafe is used by the batch verification function
to create random scalars
*/

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#if defined(ED25519_TEST)
/*
ISAAC+ "variant", the paper is not clear on operator precedence and other
things. This is the "first in, first out" option!
Not threadsafe or securely initialized, only for deterministic testing
*/
typedef struct isaacp_state_t {
uint32_t state[256];
unsigned char buffer[1024];
uint32_t a, b, c;
size_t left;
} isaacp_state;
#define isaacp_step(offset, mix) \
x = mm[i + offset]; \
a = (a ^ (mix)) + (mm[(i + offset + 128) & 0xff]); \
y = (a ^ b) + mm[(x >> 2) & 0xff]; \
mm[i + offset] = y; \
b = (x + a) ^ mm[(y >> 10) & 0xff]; \
U32TO8_LE(out + (i + offset) * 4, b);
static void
isaacp_mix(isaacp_state *st) {
uint32_t i, x, y;
uint32_t a = st->a, b = st->b, c = st->c;
uint32_t *mm = st->state;
unsigned char *out = st->buffer;
c = c + 1;
b = b + c;
for (i = 0; i < 256; i += 4) {
isaacp_step(0, ROTL32(a,13))
isaacp_step(1, ROTR32(a, 6))
isaacp_step(2, ROTL32(a, 2))
isaacp_step(3, ROTR32(a,16))
}
st->a = a;
st->b = b;
st->c = c;
st->left = 1024;
}
static void
isaacp_random(isaacp_state *st, void *p, size_t len) {
size_t use;
unsigned char *c = (unsigned char *)p;
while (len) {
use = (len > st->left) ? st->left : len;
memcpy(c, st->buffer + (sizeof(st->buffer) - st->left), use);
st->left -= use;
c += use;
len -= use;
if (!st->left)
isaacp_mix(st);
}
}
void
ED25519_FN(ed25519_randombytes_unsafe) (void *p, size_t len) {
static int initialized = 0;
static isaacp_state rng;
if (!initialized) {
memset(&rng, 0, sizeof(rng));
isaacp_mix(&rng);
isaacp_mix(&rng);
initialized = 1;
}
isaacp_random(&rng, p, len);
}
#elif defined(ED25519_CUSTOMRNG)
#include "ed25519-randombytes-custom.h"
#else
#include <openssl/rand.h>
void
ED25519_FN(ed25519_randombytes_unsafe) (void *p, size_t len) {
RAND_bytes(p, (int) len);
}
#endif

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/*
Public domain by Andrew M. <liquidsun@gmail.com>
Ed25519 reference implementation using Ed25519-donna
*/
/* define ED25519_SUFFIX to have it appended to the end of each public function */
#if !defined(ED25519_SUFFIX)
#define ED25519_SUFFIX
#endif
#define ED25519_FN3(fn,suffix) fn##suffix
#define ED25519_FN2(fn,suffix) ED25519_FN3(fn,suffix)
#define ED25519_FN(fn) ED25519_FN2(fn,ED25519_SUFFIX)
#include "ed25519-donna.h"
#include "ed25519.h"
#include "ed25519-randombytes.h"
#include "ed25519-hash.h"
/*
Generates a (extsk[0..31]) and aExt (extsk[32..63])
*/
DONNA_INLINE static void
ed25519_extsk(hash_512bits extsk, const ed25519_secret_key sk) {
ed25519_hash(extsk, sk, 32);
extsk[0] &= 248;
extsk[31] &= 127;
extsk[31] |= 64;
}
static void
ed25519_hram(hash_512bits hram, const ed25519_signature RS, const ed25519_public_key pk, const unsigned char *m, size_t mlen) {
ed25519_hash_context ctx;
ed25519_hash_init(&ctx);
ed25519_hash_update(&ctx, RS, 32);
ed25519_hash_update(&ctx, pk, 32);
ed25519_hash_update(&ctx, m, mlen);
ed25519_hash_final(&ctx, hram);
}
void
ED25519_FN(ed25519_publickey) (const ed25519_secret_key sk, ed25519_public_key pk) {
bignum256modm a;
ge25519 ALIGN(16) A;
hash_512bits extsk;
/* A = aB */
ed25519_extsk(extsk, sk);
expand256_modm(a, extsk, 32);
ge25519_scalarmult_base_niels(&A, ge25519_niels_base_multiples, a);
ge25519_pack(pk, &A);
}
void
ED25519_FN(ed25519_sign) (const unsigned char *m, size_t mlen, const ed25519_secret_key sk, const ed25519_public_key pk, ed25519_signature RS) {
ed25519_hash_context ctx;
bignum256modm r, S, a;
ge25519 ALIGN(16) R;
hash_512bits extsk, hashr, hram;
ed25519_extsk(extsk, sk);
/* r = H(aExt[32..64], m) */
ed25519_hash_init(&ctx);
ed25519_hash_update(&ctx, extsk + 32, 32);
ed25519_hash_update(&ctx, m, mlen);
ed25519_hash_final(&ctx, hashr);
expand256_modm(r, hashr, 64);
/* R = rB */
ge25519_scalarmult_base_niels(&R, ge25519_niels_base_multiples, r);
ge25519_pack(RS, &R);
/* S = H(R,A,m).. */
ed25519_hram(hram, RS, pk, m, mlen);
expand256_modm(S, hram, 64);
/* S = H(R,A,m)a */
expand256_modm(a, extsk, 32);
mul256_modm(S, S, a);
/* S = (r + H(R,A,m)a) */
add256_modm(S, S, r);
/* S = (r + H(R,A,m)a) mod L */
contract256_modm(RS + 32, S);
}
int
ED25519_FN(ed25519_sign_open) (const unsigned char *m, size_t mlen, const ed25519_public_key pk, const ed25519_signature RS) {
ge25519 ALIGN(16) R, A;
hash_512bits hash;
bignum256modm hram, S;
unsigned char checkR[32];
if ((RS[63] & 224) || !ge25519_unpack_negative_vartime(&A, pk))
return -1;
/* hram = H(R,A,m) */
ed25519_hram(hash, RS, pk, m, mlen);
expand256_modm(hram, hash, 64);
/* S */
expand256_modm(S, RS + 32, 32);
/* SB - H(R,A,m)A */
ge25519_double_scalarmult_vartime(&R, &A, hram, S);
ge25519_pack(checkR, &R);
/* check that R = SB - H(R,A,m)A */
return ed25519_verify(RS, checkR, 32) ? 0 : -1;
}
#include "ed25519-donna-batchverify.h"
/*
Fast Curve25519 basepoint scalar multiplication
*/
void
ED25519_FN(curved25519_scalarmult_basepoint) (curved25519_key pk, const curved25519_key e) {
curved25519_key ec;
bignum256modm s;
bignum25519 ALIGN(16) yplusz, zminusy;
ge25519 ALIGN(16) p;
size_t i;
/* clamp */
for (i = 0; i < 32; i++) ec[i] = e[i];
ec[0] &= 248;
ec[31] &= 127;
ec[31] |= 64;
expand_raw256_modm(s, ec);
/* scalar * basepoint */
ge25519_scalarmult_base_niels(&p, ge25519_niels_base_multiples, s);
/* u = (y + z) / (z - y) */
curve25519_add(yplusz, p.y, p.z);
curve25519_sub(zminusy, p.z, p.y);
curve25519_recip(zminusy, zminusy);
curve25519_mul(yplusz, yplusz, zminusy);
curve25519_contract(pk, yplusz);
}

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#ifndef ED25519_H
#define ED25519_H
#include <stdlib.h>
#if defined(__cplusplus)
extern "C" {
#endif
typedef unsigned char ed25519_signature[64];
typedef unsigned char ed25519_public_key[32];
typedef unsigned char ed25519_secret_key[32];
typedef unsigned char curved25519_key[32];
void ed25519_publickey(const ed25519_secret_key sk, ed25519_public_key pk);
int ed25519_sign_open(const unsigned char *m, size_t mlen, const ed25519_public_key pk, const ed25519_signature RS);
void ed25519_sign(const unsigned char *m, size_t mlen, const ed25519_secret_key sk, const ed25519_public_key pk, ed25519_signature RS);
int ed25519_sign_open_batch(const unsigned char **m, size_t *mlen, const unsigned char **pk, const unsigned char **RS, size_t num, int *valid);
void ed25519_randombytes_unsafe(void *out, size_t count);
void curved25519_scalarmult_basepoint(curved25519_key pk, const curved25519_key e);
#if defined(__cplusplus)
}
#endif
#endif // ED25519_H

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This code fuzzes ed25519-donna (and optionally ed25519-donna-sse2) against the ref10 implementations of
[curve25519](https://github.com/floodyberry/supercop/tree/master/crypto_scalarmult/curve25519/ref10) and
[ed25519](https://github.com/floodyberry/supercop/tree/master/crypto_sign/ed25519/ref10).
Curve25519 tests that generating a public key from a secret key
# Building
## *nix + PHP
`php build-nix.php (required parameters) (optional parameters)`
Required parameters:
* `--function=[curve25519,ed25519]`
* `--bits=[32,64]`
Optional parameters:
* `--with-sse2`
Also fuzz against ed25519-donna-sse2
* `--with-openssl`
Build with OpenSSL's SHA-512.
Default: Reference SHA-512 implementation (slow!)
* `--compiler=[gcc,clang,icc]`
Default: gcc
* `--no-asm`
Do not use platform specific assembler
example:
php build-nix.php --bits=64 --function=ed25519 --with-sse2 --compiler=icc
## Windows
Create a project with access to the ed25519 files.
If you are not using OpenSSL, add the `ED25519_REFHASH` define to the projects
"Properties/Preprocessor/Preprocessor Definitions" option
Add the following files to the project:
* `fuzz/curve25519-ref10.c`
* `fuzz/ed25519-ref10.c`
* `fuzz/ed25519-donna.c`
* `fuzz/ed25519-donna-sse2.c` (optional)
* `fuzz-[curve25519/ed25519].c` (depending on which you want to fuzz)
If you are also fuzzing against ed25519-donna-sse2, add the `ED25519_SSE2` define for `fuzz-[curve25519/ed25519].c` under
its "Properties/Preprocessor/Preprocessor Definitions" option.
# Running
If everything agrees, the program will only output occasional status dots (every 0x1000 passes)
and a 64bit progress count (every 0x20000 passes):
fuzzing: ref10 curved25519 curved25519-sse2
................................ [0000000000020000]
................................ [0000000000040000]
................................ [0000000000060000]
................................ [0000000000080000]
................................ [00000000000a0000]
................................ [00000000000c0000]
If any of the implementations do not agree with the ref10 implementation, the program will dump
the random data that was used, the data generated by the ref10 implementation, and diffs of the
ed25519-donna data against the ref10 data.
## Example errors
These are example error dumps (with intentionally introduced errors).
### Ed25519
Random data:
* sk, or Secret Key
* m, or Message
Generated data:
* pk, or Public Key
* sig, or Signature
* valid, or if the signature of the message is valid with the public key
Dump:
sk:
0x3b,0xb7,0x17,0x7a,0x66,0xdc,0xb7,0x9a,0x90,0x25,0x07,0x99,0x96,0xf3,0x92,0xef,
0x78,0xf8,0xad,0x6c,0x35,0x87,0x81,0x67,0x03,0xe6,0x95,0xba,0x06,0x18,0x7c,0x9c,
m:
0x7c,0x8d,0x3d,0xe1,0x92,0xee,0x7a,0xb8,0x4d,0xc9,0xfb,0x02,0x34,0x1e,0x5a,0x91,
0xee,0x01,0xa6,0xb8,0xab,0x37,0x3f,0x3d,0x6d,0xa2,0x47,0xe3,0x27,0x93,0x7c,0xb7,
0x77,0x07,0xb6,0x88,0x41,0x22,0xf3,0x3f,0xce,0xcb,0x6b,0x3e,0x2b,0x23,0x68,0x7f,
0x5b,0xb9,0xda,0x04,0xbb,0xae,0x42,0x50,0xf5,0xe9,0xc5,0x11,0xbd,0x52,0x76,0x98,
0xf1,0x87,0x09,0xb9,0x89,0x0a,0x52,0x69,0x01,0xce,0xe0,0x4a,0xa6,0x46,0x5a,0xe1,
0x63,0x14,0xe0,0x81,0x52,0xec,0xcd,0xcf,0x70,0x54,0x7d,0xa3,0x49,0x8b,0xf0,0x89,
0x70,0x07,0x12,0x2a,0xd9,0xaa,0x16,0x01,0xb2,0x16,0x3a,0xbb,0xfc,0xfa,0x13,0x5b,
0x69,0x83,0x92,0x70,0x95,0x76,0xa0,0x8e,0x16,0x79,0xcc,0xaa,0xb5,0x7c,0xf8,0x7a,
ref10:
pk:
0x71,0xb0,0x5e,0x62,0x1b,0xe3,0xe7,0x36,0x91,0x8b,0xc0,0x13,0x36,0x0c,0xc9,0x04,
0x16,0xf5,0xff,0x48,0x0c,0x83,0x6b,0x88,0x53,0xa2,0xc6,0x0f,0xf7,0xac,0x42,0x04,
sig:
0x3e,0x05,0xc5,0x37,0x16,0x0b,0x29,0x30,0x89,0xa3,0xe7,0x83,0x08,0x16,0xdd,0x96,
0x02,0xfa,0x0d,0x44,0x2c,0x43,0xaa,0x80,0x93,0x04,0x58,0x22,0x09,0xbf,0x11,0xa5,
0xcc,0xa5,0x3c,0x9f,0xa0,0xa4,0x64,0x5a,0x4a,0xdb,0x20,0xfb,0xc7,0x9b,0xfd,0x3f,
0x08,0xae,0xc4,0x3c,0x1e,0xd8,0xb6,0xb4,0xd2,0x6d,0x80,0x92,0xcb,0x71,0xf3,0x02,
valid: yes
ed25519-donna:
pk diff:
____,____,____,____,____,____,____,____,____,____,____,____,____,____,____,____,
____,____,____,____,____,____,____,____,____,____,____,____,____,____,____,____,
sig diff:
0x2c,0xb9,0x25,0x14,0xd0,0x94,0xeb,0xfe,0x46,0x02,0xc2,0xe8,0xa3,0xeb,0xbf,0xb5,
0x72,0x84,0xbf,0xc1,0x8a,0x32,0x30,0x99,0xf7,0x58,0xfe,0x06,0xa8,0xdc,0xdc,0xab,
0xb5,0x57,0x03,0x33,0x87,0xce,0x54,0x55,0x6a,0x69,0x8a,0xc4,0xb7,0x2a,0xed,0x97,
0xb4,0x68,0xe7,0x52,0x7a,0x07,0x55,0x3b,0xa2,0x94,0xd6,0x5e,0xa1,0x61,0x80,0x08,
valid: no
In this case, the generated public key matches, but the generated signature is completely
different and does not validate.
### Curve25519
Random data:
* sk, or Secret Key
Generated data:
* pk, or Public Key
Dump:
sk:
0x44,0xec,0x0b,0x0e,0xa2,0x0e,0x9c,0x5b,0x8c,0xce,0x7b,0x1d,0x68,0xae,0x0f,0x9e,
0x81,0xe2,0x04,0x76,0xda,0x87,0xa4,0x9e,0xc9,0x4f,0x3b,0xf9,0xc3,0x89,0x63,0x70,
ref10:
0x24,0x55,0x55,0xc0,0xf9,0x80,0xaf,0x02,0x43,0xee,0x8c,0x7f,0xc1,0xad,0x90,0x95,
0x57,0x91,0x14,0x2e,0xf2,0x14,0x22,0x80,0xdd,0x4e,0x3c,0x85,0x71,0x84,0x8c,0x62,
curved25519 diff:
0x12,0xd1,0x61,0x2b,0x16,0xb3,0xd8,0x29,0xf8,0xa3,0xba,0x70,0x4e,0x49,0x4f,0x43,
0xa1,0x3c,0x6b,0x42,0x11,0x61,0xcc,0x30,0x87,0x73,0x46,0xfb,0x85,0xc7,0x9a,0x35,
curved25519-sse2 diff:
____,____,____,____,____,____,____,____,____,____,____,____,____,____,____,____,
____,____,____,____,____,____,____,____,____,____,____,____,____,____,____,____,
In this case, curved25519 is totally wrong, while curved25519-sse2 matches the reference
implementation.

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<?php
function echoln($str) {
echo $str;
echo "\n";
}
function usage($reason) {
echoln("Usage: php build-nix.php [flags]");
echoln("Flags in parantheses are optional");
echoln("");
echoln(" --bits=[32,64]");
echoln(" --function=[curve25519,ed25519]");
echoln(" (--compiler=[*gcc,clang,icc]) which compiler to use, gcc is default");
echoln(" (--with-openssl) use openssl for SHA512");
echoln(" (--with-sse2) additionally fuzz against SSE2");
echoln(" (--no-asm) don't use platform specific asm");
echoln("");
if ($reason)
echoln($reason);
}
function cleanup() {
system("rm -f *.o");
}
function runcmd($desc, $cmd) {
echoln($desc);
$ret = 0;
system($cmd, $ret);
if ($ret) {
cleanup();
exit;
}
}
class argument {
var $set, $value;
}
class multiargument extends argument {
function multiargument($flag, $legal_values) {
global $argc, $argv;
$this->set = false;
$map = array();
foreach($legal_values as $value)
$map[$value] = true;
for ($i = 1; $i < $argc; $i++) {
if (!preg_match("!--".$flag."=(.*)!", $argv[$i], $m))
continue;
if (isset($map[$m[1]])) {
$this->value = $m[1];
$this->set = true;
return;
} else {
usage("{$m[1]} is not a valid parameter to --{$flag}!");
exit(1);
}
}
}
}
class flag extends argument {
function flag($flag) {
global $argc, $argv;
$this->set = false;
$flag = "--{$flag}";
for ($i = 1; $i < $argc; $i++) {
if ($argv[$i] !== $flag)
continue;
$this->value = true;
$this->set = true;
return;
}
}
}
$bits = new multiargument("bits", array("32", "64"));
$function = new multiargument("function", array("curve25519", "ed25519"));
$compiler = new multiargument("compiler", array("gcc", "clang", "icc"));
$with_sse2 = new flag("with-sse2");
$with_openssl = new flag("with-openssl");
$no_asm = new flag("no-asm");
$err = "";
if (!$bits->set)
$err .= "--bits not set\n";
if (!$function->set)
$err .= "--function not set\n";
if ($err !== "") {
usage($err);
exit;
}
$compile = ($compiler->set) ? $compiler->value : "gcc";
$link = "";
$flags = "-O3 -m{$bits->value}";
$ret = 0;
if ($with_openssl->set) $link .= " -lssl -lcrypto";
if (!$with_openssl->set) $flags .= " -DED25519_REFHASH -DED25519_TEST";
if ($no_asm->set) $flags .= " -DED25519_NO_INLINE_ASM";
if ($function->value === "curve25519") {
runcmd("building ref10..", "{$compile} {$flags} curve25519-ref10.c -c -o curve25519-ref10.o");
runcmd("building ed25519..", "{$compile} {$flags} ed25519-donna.c -c -o ed25519.o");
if ($with_sse2->set) {
runcmd("building ed25519-sse2..", "{$compile} {$flags} ed25519-donna-sse2.c -c -o ed25519-sse2.o -msse2");
$flags .= " -DED25519_SSE2";
$link .= " ed25519-sse2.o";
}
runcmd("linking..", "{$compile} {$flags} {$link} fuzz-curve25519.c ed25519.o curve25519-ref10.o -o fuzz-curve25519");
echoln("fuzz-curve25519 built.");
} else if ($function->value === "ed25519") {
runcmd("building ref10..", "{$compile} {$flags} ed25519-ref10.c -c -o ed25519-ref10.o");
runcmd("building ed25519..", "{$compile} {$flags} ed25519-donna.c -c -o ed25519.o");
if ($with_sse2->set) {
runcmd("building ed25519-sse2..", "{$compile} {$flags} ed25519-donna-sse2.c -c -o ed25519-sse2.o -msse2");
$flags .= " -DED25519_SSE2";
$link .= " ed25519-sse2.o";
}
runcmd("linking..", "{$compile} {$flags} {$link} fuzz-ed25519.c ed25519.o ed25519-ref10.o -o fuzz-ed25519");
echoln("fuzz-ed25519 built.");
}
cleanup();
?>

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#ifndef CURVE25519_REF10_H
#define CURVE25519_REF10_H
int crypto_scalarmult_base_ref10(unsigned char *q,const unsigned char *n);
int crypto_scalarmult_ref10(unsigned char *q, const unsigned char *n, const unsigned char *p);
#endif /* CURVE25519_REF10_H */

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#define ED25519_SUFFIX _sse2
#define ED25519_SSE2
#include "../ed25519.c"

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#include "../ed25519.c"

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#ifndef ED25519_H
#define ED25519_H
#include <stdlib.h>
typedef unsigned char ed25519_signature[64];
typedef unsigned char ed25519_public_key[32];
typedef unsigned char ed25519_secret_key[32];
typedef unsigned char curved25519_key[32];
void ed25519_publickey(const ed25519_secret_key sk, ed25519_public_key pk);
int ed25519_sign_open(const unsigned char *m, size_t mlen, const ed25519_public_key pk, const ed25519_signature RS);
void ed25519_sign(const unsigned char *m, size_t mlen, const ed25519_secret_key sk, const ed25519_public_key pk, ed25519_signature RS);
int ed25519_sign_open_batch(const unsigned char **m, size_t *mlen, const unsigned char **pk, const unsigned char **RS, size_t num, int *valid);
void ed25519_randombytes_unsafe(void *out, size_t count);
void curved25519_scalarmult_basepoint(curved25519_key pk, const curved25519_key e);
#if defined(ED25519_SSE2)
void ed25519_publickey_sse2(const ed25519_secret_key sk, ed25519_public_key pk);
int ed25519_sign_open_sse2(const unsigned char *m, size_t mlen, const ed25519_public_key pk, const ed25519_signature RS);
void ed25519_sign_sse2(const unsigned char *m, size_t mlen, const ed25519_secret_key sk, const ed25519_public_key pk, ed25519_signature RS);
int ed25519_sign_open_batch_sse2(const unsigned char **m, size_t *mlen, const unsigned char **pk, const unsigned char **RS, size_t num, int *valid);
void ed25519_randombytes_unsafe_sse2(void *out, size_t count);
void curved25519_scalarmult_basepoint_sse2(curved25519_key pk, const curved25519_key e);
#endif
#endif // ED25519_H

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#ifndef ED25519_REF10_H
#define ED25519_REF10_H
int crypto_sign_pk_ref10(unsigned char *pk,unsigned char *sk);
int crypto_sign_ref10(unsigned char *sm,unsigned long long *smlen,const unsigned char *m,unsigned long long mlen,const unsigned char *sk);
int crypto_sign_open_ref10(unsigned char *m,unsigned long long *mlen,const unsigned char *sm,unsigned long long smlen,const unsigned char *pk);
#endif /* ED25519_REF10_H */

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#if defined(_WIN32)
#include <windows.h>
#include <wincrypt.h>
typedef unsigned int uint32_t;
typedef unsigned __int64 uint64_t;
#else
#include <stdint.h>
#endif
#include <string.h>
#include <stdio.h>
#include "ed25519-donna.h"
#include "curve25519-ref10.h"
static void
print_diff(const char *desc, const unsigned char *a, const unsigned char *b, size_t len) {
size_t p = 0;
unsigned char diff;
printf("%s diff:\n", desc);
while (len--) {
diff = *a++ ^ *b++;
if (!diff)
printf("____,");
else
printf("0x%02x,", diff);
if ((++p & 15) == 0)
printf("\n");
}
printf("\n\n");
}
static void
print_bytes(const char *desc, const unsigned char *bytes, size_t len) {
size_t p = 0;
printf("%s:\n", desc);
while (len--) {
printf("0x%02x,", *bytes++);
if ((++p & 15) == 0)
printf("\n");
}
printf("\n\n");
}
/* chacha20/12 prng */
void
prng(unsigned char *out, size_t bytes) {
static uint32_t state[16];
static int init = 0;
uint32_t x[16], t;
size_t i;
if (!init) {
#if defined(_WIN32)
HCRYPTPROV csp;
if (!CryptAcquireContext(&csp, 0, 0, PROV_RSA_FULL, CRYPT_VERIFYCONTEXT)) {
printf("CryptAcquireContext failed\n");
exit(1);
}
if (!CryptGenRandom(csp, (DWORD)sizeof(state), (BYTE*)state)) {
printf("CryptGenRandom failed\n");
exit(1);
}
CryptReleaseContext(csp, 0);
#else
FILE *f = NULL;
f = fopen("/dev/urandom", "rb");
if (!f) {
printf("failed to open /dev/urandom\n");
exit(1);
}
if (fread(state, sizeof(state), 1, f) != 1) {
printf("read error on /dev/urandom\n");
exit(1);
}
#endif
init = 1;
}
while (bytes) {
for (i = 0; i < 16; i++) x[i] = state[i];
#define rotl32(x,k) ((x << k) | (x >> (32 - k)))
#define quarter(a,b,c,d) \
x[a] += x[b]; t = x[d]^x[a]; x[d] = rotl32(t,16); \
x[c] += x[d]; t = x[b]^x[c]; x[b] = rotl32(t,12); \
x[a] += x[b]; t = x[d]^x[a]; x[d] = rotl32(t, 8); \
x[c] += x[d]; t = x[b]^x[c]; x[b] = rotl32(t, 7);
for (i = 0; i < 12; i += 2) {
quarter( 0, 4, 8,12)
quarter( 1, 5, 9,13)
quarter( 2, 6,10,14)
quarter( 3, 7,11,15)
quarter( 0, 5,10,15)
quarter( 1, 6,11,12)
quarter( 2, 7, 8,13)
quarter( 3, 4, 9,14)
};
if (bytes <= 64) {
memcpy(out, x, bytes);
bytes = 0;
} else {
memcpy(out, x, 64);
bytes -= 64;
out += 64;
}
/* don't need a nonce, so last 4 words are the counter. 2^136 bytes can be generated */
if (!++state[12]) if (!++state[13]) if (!++state[14]) ++state[15];
}
}
int main() {
const size_t skmax = 1024;
static unsigned char sk[1024][32];
unsigned char pk[3][32];
unsigned char *skp;
size_t ski, pki, i;
uint64_t ctr;
printf("fuzzing: ");
printf(" ref10");
printf(" curved25519");
#if defined(ED25519_SSE2)
printf(" curved25519-sse2");
#endif
printf("\n\n");
for (ctr = 0, ski = skmax;;ctr++) {
if (ski == skmax) {
prng((unsigned char *)sk, sizeof(sk));
ski = 0;
}
skp = sk[ski++];
pki = 0;
crypto_scalarmult_base_ref10(pk[pki++], skp);
curved25519_scalarmult_basepoint(pk[pki++], skp);
#if defined(ED25519_SSE2)
curved25519_scalarmult_basepoint_sse2(pk[pki++], skp);
#endif
for (i = 1; i < pki; i++) {
if (memcmp(pk[0], pk[i], 32) != 0) {
printf("\n\n");
print_bytes("sk", skp, 32);
print_bytes("ref10", pk[0], 32);
print_diff("curved25519", pk[0], pk[1], 32);
#if defined(ED25519_SSE2)
print_diff("curved25519-sse2", pk[0], pk[2], 32);
#endif
exit(1);
}
}
if (ctr && (ctr % 0x1000 == 0)) {
printf(".");
if ((ctr % 0x20000) == 0) {
printf(" [");
for (i = 0; i < 8; i++)
printf("%02x", (unsigned char)(ctr >> ((7 - i) * 8)));
printf("]\n");
}
}
}
}

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#if defined(_WIN32)
#include <windows.h>
#include <wincrypt.h>
typedef unsigned int uint32_t;
#else
#include <stdint.h>
#endif
#include <string.h>
#include <stdio.h>
#include "ed25519-donna.h"
#include "ed25519-ref10.h"
static void
print_diff(const char *desc, const unsigned char *a, const unsigned char *b, size_t len) {
size_t p = 0;
unsigned char diff;
printf("%s diff:\n", desc);
while (len--) {
diff = *a++ ^ *b++;
if (!diff)
printf("____,");
else
printf("0x%02x,", diff);
if ((++p & 15) == 0)
printf("\n");
}
printf("\n");
}
static void
print_bytes(const char *desc, const unsigned char *bytes, size_t len) {
size_t p = 0;
printf("%s:\n", desc);
while (len--) {
printf("0x%02x,", *bytes++);
if ((++p & 15) == 0)
printf("\n");
}
printf("\n");
}
/* chacha20/12 prng */
void
prng(unsigned char *out, size_t bytes) {
static uint32_t state[16];
static int init = 0;
uint32_t x[16], t;
size_t i;
if (!init) {
#if defined(_WIN32)
HCRYPTPROV csp = NULL;
if (!CryptAcquireContext(&csp, 0, 0, PROV_RSA_FULL, CRYPT_VERIFYCONTEXT)) {
printf("CryptAcquireContext failed\n");
exit(1);
}
if (!CryptGenRandom(csp, (DWORD)sizeof(state), (BYTE*)state)) {
printf("CryptGenRandom failed\n");
exit(1);
}
CryptReleaseContext(csp, 0);
#else
FILE *f = NULL;
f = fopen("/dev/urandom", "rb");
if (!f) {
printf("failed to open /dev/urandom\n");
exit(1);
}
if (fread(state, sizeof(state), 1, f) != 1) {
printf("read error on /dev/urandom\n");
exit(1);
}
#endif
init = 1;
}
while (bytes) {
for (i = 0; i < 16; i++) x[i] = state[i];
#define rotl32(x,k) ((x << k) | (x >> (32 - k)))
#define quarter(a,b,c,d) \
x[a] += x[b]; t = x[d]^x[a]; x[d] = rotl32(t,16); \
x[c] += x[d]; t = x[b]^x[c]; x[b] = rotl32(t,12); \
x[a] += x[b]; t = x[d]^x[a]; x[d] = rotl32(t, 8); \
x[c] += x[d]; t = x[b]^x[c]; x[b] = rotl32(t, 7);
for (i = 0; i < 12; i += 2) {
quarter( 0, 4, 8,12)
quarter( 1, 5, 9,13)
quarter( 2, 6,10,14)
quarter( 3, 7,11,15)
quarter( 0, 5,10,15)
quarter( 1, 6,11,12)
quarter( 2, 7, 8,13)
quarter( 3, 4, 9,14)
};
if (bytes <= 64) {
memcpy(out, x, bytes);
bytes = 0;
} else {
memcpy(out, x, 64);
bytes -= 64;
out += 64;
}
/* don't need a nonce, so last 4 words are the counter. 2^136 bytes can be generated */
if (!++state[12]) if (!++state[13]) if (!++state[14]) ++state[15];
}
}
typedef struct random_data_t {
unsigned char sk[32];
unsigned char m[128];
} random_data;
typedef struct generated_data_t {
unsigned char pk[32];
unsigned char sig[64];
int valid;
} generated_data;
static void
print_generated(const char *desc, generated_data *g) {
printf("%s:\n", desc);
print_bytes("pk", g->pk, 32);
print_bytes("sig", g->sig, 64);
printf("valid: %s\n\n", g->valid ? "no" : "yes");
}
static void
print_generated_diff(const char *desc, const generated_data *base, generated_data *g) {
printf("%s:\n", desc);
print_diff("pk", base->pk, g->pk, 32);
print_diff("sig", base->sig, g->sig, 64);
printf("valid: %s\n\n", (base->valid == g->valid) ? "___" : (g->valid ? "no" : "yes"));
}
int main() {
const size_t rndmax = 128;
static random_data rnd[128];
static generated_data gen[3];
random_data *r;
generated_data *g;
unsigned long long dummylen;
unsigned char dummysk[64];
unsigned char dummymsg[2][128+64];
size_t rndi, geni, i, j;
uint64_t ctr;
printf("fuzzing: ");
printf(" ref10");
printf(" ed25519-donna");
#if defined(ED25519_SSE2)
printf(" ed25519-donna-sse2");
#endif
printf("\n\n");
for (ctr = 0, rndi = rndmax;;ctr++) {
if (rndi == rndmax) {
prng((unsigned char *)rnd, sizeof(rnd));
rndi = 0;
}
r = &rnd[rndi++];
/* ref10, lots of horrible gymnastics to work around the wonky api */
geni = 0;
g = &gen[geni++];
memcpy(dummysk, r->sk, 32); /* pk is appended to the sk, need to copy the sk to a larger buffer */
crypto_sign_pk_ref10(dummysk + 32, dummysk);
memcpy(g->pk, dummysk + 32, 32);
crypto_sign_ref10(dummymsg[0], &dummylen, r->m, 128, dummysk);
memcpy(g->sig, dummymsg[0], 64); /* sig is placed in front of the signed message */
g->valid = crypto_sign_open_ref10(dummymsg[1], &dummylen, dummymsg[0], 128 + 64, g->pk);
/* ed25519-donna */
g = &gen[geni++];
ed25519_publickey(r->sk, g->pk);
ed25519_sign(r->m, 128, r->sk, g->pk, g->sig);
g->valid = ed25519_sign_open(r->m, 128, g->pk, g->sig);
#if defined(ED25519_SSE2)
/* ed25519-donna-sse2 */
g = &gen[geni++];
ed25519_publickey_sse2(r->sk, g->pk);
ed25519_sign_sse2(r->m, 128, r->sk, g->pk, g->sig);
g->valid = ed25519_sign_open_sse2(r->m, 128, g->pk, g->sig);
#endif
/* compare implementations 1..geni against the reference */
for (i = 1; i < geni; i++) {
if (memcmp(&gen[0], &gen[i], sizeof(generated_data)) != 0) {
printf("\n\n");
print_bytes("sk", r->sk, 32);
print_bytes("m", r->m, 128);
print_generated("ref10", &gen[0]);
print_generated_diff("ed25519-donna", &gen[0], &gen[1]);
#if defined(ED25519_SSE2)
print_generated_diff("ed25519-donna-sse2", &gen[0], &gen[2]);
#endif
exit(1);
}
}
/* print out status */
if (ctr && (ctr % 0x1000 == 0)) {
printf(".");
if ((ctr % 0x20000) == 0) {
printf(" [");
for (i = 0; i < 8; i++)
printf("%02x", (unsigned char)(ctr >> ((7 - i) * 8)));
printf("]\n");
}
}
}
}

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/*
Public domain by Andrew M. <liquidsun@gmail.com>
*/
/*
Arithmetic modulo the group order n = 2^252 + 27742317777372353535851937790883648493 = 7237005577332262213973186563042994240857116359379907606001950938285454250989
k = 32
b = 1 << 8 = 256
m = 2^252 + 27742317777372353535851937790883648493 = 0x1000000000000000000000000000000014def9dea2f79cd65812631a5cf5d3ed
mu = floor( b^(k*2) / m ) = 0xfffffffffffffffffffffffffffffffeb2106215d086329a7ed9ce5a30a2c131b
*/
#define bignum256modm_bits_per_limb 30
#define bignum256modm_limb_size 9
typedef uint32_t bignum256modm_element_t;
typedef bignum256modm_element_t bignum256modm[9];
static const bignum256modm modm_m = {
0x1cf5d3ed, 0x20498c69, 0x2f79cd65, 0x37be77a8,
0x00000014, 0x00000000, 0x00000000, 0x00000000,
0x00001000
};
static const bignum256modm modm_mu = {
0x0a2c131b, 0x3673968c, 0x06329a7e, 0x01885742,
0x3fffeb21, 0x3fffffff, 0x3fffffff, 0x3fffffff,
0x000fffff
};
static bignum256modm_element_t
lt_modm(bignum256modm_element_t a, bignum256modm_element_t b) {
return (a - b) >> 31;
}
/* see HAC, Alg. 14.42 Step 4 */
static void
reduce256_modm(bignum256modm r) {
bignum256modm t;
bignum256modm_element_t b = 0, pb, mask;
/* t = r - m */
pb = 0;
pb += modm_m[0]; b = lt_modm(r[0], pb); t[0] = (r[0] - pb + (b << 30)); pb = b;
pb += modm_m[1]; b = lt_modm(r[1], pb); t[1] = (r[1] - pb + (b << 30)); pb = b;
pb += modm_m[2]; b = lt_modm(r[2], pb); t[2] = (r[2] - pb + (b << 30)); pb = b;
pb += modm_m[3]; b = lt_modm(r[3], pb); t[3] = (r[3] - pb + (b << 30)); pb = b;
pb += modm_m[4]; b = lt_modm(r[4], pb); t[4] = (r[4] - pb + (b << 30)); pb = b;
pb += modm_m[5]; b = lt_modm(r[5], pb); t[5] = (r[5] - pb + (b << 30)); pb = b;
pb += modm_m[6]; b = lt_modm(r[6], pb); t[6] = (r[6] - pb + (b << 30)); pb = b;
pb += modm_m[7]; b = lt_modm(r[7], pb); t[7] = (r[7] - pb + (b << 30)); pb = b;
pb += modm_m[8]; b = lt_modm(r[8], pb); t[8] = (r[8] - pb + (b << 16));
/* keep r if r was smaller than m */
mask = b - 1;
r[0] ^= mask & (r[0] ^ t[0]);
r[1] ^= mask & (r[1] ^ t[1]);
r[2] ^= mask & (r[2] ^ t[2]);
r[3] ^= mask & (r[3] ^ t[3]);
r[4] ^= mask & (r[4] ^ t[4]);
r[5] ^= mask & (r[5] ^ t[5]);
r[6] ^= mask & (r[6] ^ t[6]);
r[7] ^= mask & (r[7] ^ t[7]);
r[8] ^= mask & (r[8] ^ t[8]);
}
/*
Barrett reduction, see HAC, Alg. 14.42
Instead of passing in x, pre-process in to q1 and r1 for efficiency
*/
static void
barrett_reduce256_modm(bignum256modm r, const bignum256modm q1, const bignum256modm r1) {
bignum256modm q3, r2;
uint64_t c;
bignum256modm_element_t f, b, pb;
/* q1 = x >> 248 = 264 bits = 9 30 bit elements
q2 = mu * q1
q3 = (q2 / 256(32+1)) = q2 / (2^8)^(32+1) = q2 >> 264 */
c = mul32x32_64(modm_mu[0], q1[7]) + mul32x32_64(modm_mu[1], q1[6]) + mul32x32_64(modm_mu[2], q1[5]) + mul32x32_64(modm_mu[3], q1[4]) + mul32x32_64(modm_mu[4], q1[3]) + mul32x32_64(modm_mu[5], q1[2]) + mul32x32_64(modm_mu[6], q1[1]) + mul32x32_64(modm_mu[7], q1[0]);
c >>= 30;
c += mul32x32_64(modm_mu[0], q1[8]) + mul32x32_64(modm_mu[1], q1[7]) + mul32x32_64(modm_mu[2], q1[6]) + mul32x32_64(modm_mu[3], q1[5]) + mul32x32_64(modm_mu[4], q1[4]) + mul32x32_64(modm_mu[5], q1[3]) + mul32x32_64(modm_mu[6], q1[2]) + mul32x32_64(modm_mu[7], q1[1]) + mul32x32_64(modm_mu[8], q1[0]);
f = (bignum256modm_element_t)c; q3[0] = (f >> 24) & 0x3f; c >>= 30;
c += mul32x32_64(modm_mu[1], q1[8]) + mul32x32_64(modm_mu[2], q1[7]) + mul32x32_64(modm_mu[3], q1[6]) + mul32x32_64(modm_mu[4], q1[5]) + mul32x32_64(modm_mu[5], q1[4]) + mul32x32_64(modm_mu[6], q1[3]) + mul32x32_64(modm_mu[7], q1[2]) + mul32x32_64(modm_mu[8], q1[1]);
f = (bignum256modm_element_t)c; q3[0] |= (f << 6) & 0x3fffffff; q3[1] = (f >> 24) & 0x3f; c >>= 30;
c += mul32x32_64(modm_mu[2], q1[8]) + mul32x32_64(modm_mu[3], q1[7]) + mul32x32_64(modm_mu[4], q1[6]) + mul32x32_64(modm_mu[5], q1[5]) + mul32x32_64(modm_mu[6], q1[4]) + mul32x32_64(modm_mu[7], q1[3]) + mul32x32_64(modm_mu[8], q1[2]);
f = (bignum256modm_element_t)c; q3[1] |= (f << 6) & 0x3fffffff; q3[2] = (f >> 24) & 0x3f; c >>= 30;
c += mul32x32_64(modm_mu[3], q1[8]) + mul32x32_64(modm_mu[4], q1[7]) + mul32x32_64(modm_mu[5], q1[6]) + mul32x32_64(modm_mu[6], q1[5]) + mul32x32_64(modm_mu[7], q1[4]) + mul32x32_64(modm_mu[8], q1[3]);
f = (bignum256modm_element_t)c; q3[2] |= (f << 6) & 0x3fffffff; q3[3] = (f >> 24) & 0x3f; c >>= 30;
c += mul32x32_64(modm_mu[4], q1[8]) + mul32x32_64(modm_mu[5], q1[7]) + mul32x32_64(modm_mu[6], q1[6]) + mul32x32_64(modm_mu[7], q1[5]) + mul32x32_64(modm_mu[8], q1[4]);
f = (bignum256modm_element_t)c; q3[3] |= (f << 6) & 0x3fffffff; q3[4] = (f >> 24) & 0x3f; c >>= 30;
c += mul32x32_64(modm_mu[5], q1[8]) + mul32x32_64(modm_mu[6], q1[7]) + mul32x32_64(modm_mu[7], q1[6]) + mul32x32_64(modm_mu[8], q1[5]);
f = (bignum256modm_element_t)c; q3[4] |= (f << 6) & 0x3fffffff; q3[5] = (f >> 24) & 0x3f; c >>= 30;
c += mul32x32_64(modm_mu[6], q1[8]) + mul32x32_64(modm_mu[7], q1[7]) + mul32x32_64(modm_mu[8], q1[6]);
f = (bignum256modm_element_t)c; q3[5] |= (f << 6) & 0x3fffffff; q3[6] = (f >> 24) & 0x3f; c >>= 30;
c += mul32x32_64(modm_mu[7], q1[8]) + mul32x32_64(modm_mu[8], q1[7]);
f = (bignum256modm_element_t)c; q3[6] |= (f << 6) & 0x3fffffff; q3[7] = (f >> 24) & 0x3f; c >>= 30;
c += mul32x32_64(modm_mu[8], q1[8]);
f = (bignum256modm_element_t)c; q3[7] |= (f << 6) & 0x3fffffff; q3[8] = (bignum256modm_element_t)(c >> 24);
/* r1 = (x mod 256^(32+1)) = x mod (2^8)(31+1) = x & ((1 << 264) - 1)
r2 = (q3 * m) mod (256^(32+1)) = (q3 * m) & ((1 << 264) - 1) */
c = mul32x32_64(modm_m[0], q3[0]);
r2[0] = (bignum256modm_element_t)(c & 0x3fffffff); c >>= 30;
c += mul32x32_64(modm_m[0], q3[1]) + mul32x32_64(modm_m[1], q3[0]);
r2[1] = (bignum256modm_element_t)(c & 0x3fffffff); c >>= 30;
c += mul32x32_64(modm_m[0], q3[2]) + mul32x32_64(modm_m[1], q3[1]) + mul32x32_64(modm_m[2], q3[0]);
r2[2] = (bignum256modm_element_t)(c & 0x3fffffff); c >>= 30;
c += mul32x32_64(modm_m[0], q3[3]) + mul32x32_64(modm_m[1], q3[2]) + mul32x32_64(modm_m[2], q3[1]) + mul32x32_64(modm_m[3], q3[0]);
r2[3] = (bignum256modm_element_t)(c & 0x3fffffff); c >>= 30;
c += mul32x32_64(modm_m[0], q3[4]) + mul32x32_64(modm_m[1], q3[3]) + mul32x32_64(modm_m[2], q3[2]) + mul32x32_64(modm_m[3], q3[1]) + mul32x32_64(modm_m[4], q3[0]);
r2[4] = (bignum256modm_element_t)(c & 0x3fffffff); c >>= 30;
c += mul32x32_64(modm_m[0], q3[5]) + mul32x32_64(modm_m[1], q3[4]) + mul32x32_64(modm_m[2], q3[3]) + mul32x32_64(modm_m[3], q3[2]) + mul32x32_64(modm_m[4], q3[1]) + mul32x32_64(modm_m[5], q3[0]);
r2[5] = (bignum256modm_element_t)(c & 0x3fffffff); c >>= 30;
c += mul32x32_64(modm_m[0], q3[6]) + mul32x32_64(modm_m[1], q3[5]) + mul32x32_64(modm_m[2], q3[4]) + mul32x32_64(modm_m[3], q3[3]) + mul32x32_64(modm_m[4], q3[2]) + mul32x32_64(modm_m[5], q3[1]) + mul32x32_64(modm_m[6], q3[0]);
r2[6] = (bignum256modm_element_t)(c & 0x3fffffff); c >>= 30;
c += mul32x32_64(modm_m[0], q3[7]) + mul32x32_64(modm_m[1], q3[6]) + mul32x32_64(modm_m[2], q3[5]) + mul32x32_64(modm_m[3], q3[4]) + mul32x32_64(modm_m[4], q3[3]) + mul32x32_64(modm_m[5], q3[2]) + mul32x32_64(modm_m[6], q3[1]) + mul32x32_64(modm_m[7], q3[0]);
r2[7] = (bignum256modm_element_t)(c & 0x3fffffff); c >>= 30;
c += mul32x32_64(modm_m[0], q3[8]) + mul32x32_64(modm_m[1], q3[7]) + mul32x32_64(modm_m[2], q3[6]) + mul32x32_64(modm_m[3], q3[5]) + mul32x32_64(modm_m[4], q3[4]) + mul32x32_64(modm_m[5], q3[3]) + mul32x32_64(modm_m[6], q3[2]) + mul32x32_64(modm_m[7], q3[1]) + mul32x32_64(modm_m[8], q3[0]);
r2[8] = (bignum256modm_element_t)(c & 0xffffff);
/* r = r1 - r2
if (r < 0) r += (1 << 264) */
pb = 0;
pb += r2[0]; b = lt_modm(r1[0], pb); r[0] = (r1[0] - pb + (b << 30)); pb = b;
pb += r2[1]; b = lt_modm(r1[1], pb); r[1] = (r1[1] - pb + (b << 30)); pb = b;
pb += r2[2]; b = lt_modm(r1[2], pb); r[2] = (r1[2] - pb + (b << 30)); pb = b;
pb += r2[3]; b = lt_modm(r1[3], pb); r[3] = (r1[3] - pb + (b << 30)); pb = b;
pb += r2[4]; b = lt_modm(r1[4], pb); r[4] = (r1[4] - pb + (b << 30)); pb = b;
pb += r2[5]; b = lt_modm(r1[5], pb); r[5] = (r1[5] - pb + (b << 30)); pb = b;
pb += r2[6]; b = lt_modm(r1[6], pb); r[6] = (r1[6] - pb + (b << 30)); pb = b;
pb += r2[7]; b = lt_modm(r1[7], pb); r[7] = (r1[7] - pb + (b << 30)); pb = b;
pb += r2[8]; b = lt_modm(r1[8], pb); r[8] = (r1[8] - pb + (b << 24));
reduce256_modm(r);
reduce256_modm(r);
}
/* addition modulo m */
static void
add256_modm(bignum256modm r, const bignum256modm x, const bignum256modm y) {
bignum256modm_element_t c;
c = x[0] + y[0]; r[0] = c & 0x3fffffff; c >>= 30;
c += x[1] + y[1]; r[1] = c & 0x3fffffff; c >>= 30;
c += x[2] + y[2]; r[2] = c & 0x3fffffff; c >>= 30;
c += x[3] + y[3]; r[3] = c & 0x3fffffff; c >>= 30;
c += x[4] + y[4]; r[4] = c & 0x3fffffff; c >>= 30;
c += x[5] + y[5]; r[5] = c & 0x3fffffff; c >>= 30;
c += x[6] + y[6]; r[6] = c & 0x3fffffff; c >>= 30;
c += x[7] + y[7]; r[7] = c & 0x3fffffff; c >>= 30;
c += x[8] + y[8]; r[8] = c;
reduce256_modm(r);
}
/* multiplication modulo m */
static void
mul256_modm(bignum256modm r, const bignum256modm x, const bignum256modm y) {
bignum256modm r1, q1;
uint64_t c;
bignum256modm_element_t f;
/* r1 = (x mod 256^(32+1)) = x mod (2^8)(31+1) = x & ((1 << 264) - 1)
q1 = x >> 248 = 264 bits = 9 30 bit elements */
c = mul32x32_64(x[0], y[0]);
f = (bignum256modm_element_t)c; r1[0] = (f & 0x3fffffff); c >>= 30;
c += mul32x32_64(x[0], y[1]) + mul32x32_64(x[1], y[0]);
f = (bignum256modm_element_t)c; r1[1] = (f & 0x3fffffff); c >>= 30;
c += mul32x32_64(x[0], y[2]) + mul32x32_64(x[1], y[1]) + mul32x32_64(x[2], y[0]);
f = (bignum256modm_element_t)c; r1[2] = (f & 0x3fffffff); c >>= 30;
c += mul32x32_64(x[0], y[3]) + mul32x32_64(x[1], y[2]) + mul32x32_64(x[2], y[1]) + mul32x32_64(x[3], y[0]);
f = (bignum256modm_element_t)c; r1[3] = (f & 0x3fffffff); c >>= 30;
c += mul32x32_64(x[0], y[4]) + mul32x32_64(x[1], y[3]) + mul32x32_64(x[2], y[2]) + mul32x32_64(x[3], y[1]) + mul32x32_64(x[4], y[0]);
f = (bignum256modm_element_t)c; r1[4] = (f & 0x3fffffff); c >>= 30;
c += mul32x32_64(x[0], y[5]) + mul32x32_64(x[1], y[4]) + mul32x32_64(x[2], y[3]) + mul32x32_64(x[3], y[2]) + mul32x32_64(x[4], y[1]) + mul32x32_64(x[5], y[0]);
f = (bignum256modm_element_t)c; r1[5] = (f & 0x3fffffff); c >>= 30;
c += mul32x32_64(x[0], y[6]) + mul32x32_64(x[1], y[5]) + mul32x32_64(x[2], y[4]) + mul32x32_64(x[3], y[3]) + mul32x32_64(x[4], y[2]) + mul32x32_64(x[5], y[1]) + mul32x32_64(x[6], y[0]);
f = (bignum256modm_element_t)c; r1[6] = (f & 0x3fffffff); c >>= 30;
c += mul32x32_64(x[0], y[7]) + mul32x32_64(x[1], y[6]) + mul32x32_64(x[2], y[5]) + mul32x32_64(x[3], y[4]) + mul32x32_64(x[4], y[3]) + mul32x32_64(x[5], y[2]) + mul32x32_64(x[6], y[1]) + mul32x32_64(x[7], y[0]);
f = (bignum256modm_element_t)c; r1[7] = (f & 0x3fffffff); c >>= 30;
c += mul32x32_64(x[0], y[8]) + mul32x32_64(x[1], y[7]) + mul32x32_64(x[2], y[6]) + mul32x32_64(x[3], y[5]) + mul32x32_64(x[4], y[4]) + mul32x32_64(x[5], y[3]) + mul32x32_64(x[6], y[2]) + mul32x32_64(x[7], y[1]) + mul32x32_64(x[8], y[0]);
f = (bignum256modm_element_t)c; r1[8] = (f & 0x00ffffff); q1[0] = (f >> 8) & 0x3fffff; c >>= 30;
c += mul32x32_64(x[1], y[8]) + mul32x32_64(x[2], y[7]) + mul32x32_64(x[3], y[6]) + mul32x32_64(x[4], y[5]) + mul32x32_64(x[5], y[4]) + mul32x32_64(x[6], y[3]) + mul32x32_64(x[7], y[2]) + mul32x32_64(x[8], y[1]);
f = (bignum256modm_element_t)c; q1[0] = (q1[0] | (f << 22)) & 0x3fffffff; q1[1] = (f >> 8) & 0x3fffff; c >>= 30;
c += mul32x32_64(x[2], y[8]) + mul32x32_64(x[3], y[7]) + mul32x32_64(x[4], y[6]) + mul32x32_64(x[5], y[5]) + mul32x32_64(x[6], y[4]) + mul32x32_64(x[7], y[3]) + mul32x32_64(x[8], y[2]);
f = (bignum256modm_element_t)c; q1[1] = (q1[1] | (f << 22)) & 0x3fffffff; q1[2] = (f >> 8) & 0x3fffff; c >>= 30;
c += mul32x32_64(x[3], y[8]) + mul32x32_64(x[4], y[7]) + mul32x32_64(x[5], y[6]) + mul32x32_64(x[6], y[5]) + mul32x32_64(x[7], y[4]) + mul32x32_64(x[8], y[3]);
f = (bignum256modm_element_t)c; q1[2] = (q1[2] | (f << 22)) & 0x3fffffff; q1[3] = (f >> 8) & 0x3fffff; c >>= 30;
c += mul32x32_64(x[4], y[8]) + mul32x32_64(x[5], y[7]) + mul32x32_64(x[6], y[6]) + mul32x32_64(x[7], y[5]) + mul32x32_64(x[8], y[4]);
f = (bignum256modm_element_t)c; q1[3] = (q1[3] | (f << 22)) & 0x3fffffff; q1[4] = (f >> 8) & 0x3fffff; c >>= 30;
c += mul32x32_64(x[5], y[8]) + mul32x32_64(x[6], y[7]) + mul32x32_64(x[7], y[6]) + mul32x32_64(x[8], y[5]);
f = (bignum256modm_element_t)c; q1[4] = (q1[4] | (f << 22)) & 0x3fffffff; q1[5] = (f >> 8) & 0x3fffff; c >>= 30;
c += mul32x32_64(x[6], y[8]) + mul32x32_64(x[7], y[7]) + mul32x32_64(x[8], y[6]);
f = (bignum256modm_element_t)c; q1[5] = (q1[5] | (f << 22)) & 0x3fffffff; q1[6] = (f >> 8) & 0x3fffff; c >>= 30;
c += mul32x32_64(x[7], y[8]) + mul32x32_64(x[8], y[7]);
f = (bignum256modm_element_t)c; q1[6] = (q1[6] | (f << 22)) & 0x3fffffff; q1[7] = (f >> 8) & 0x3fffff; c >>= 30;
c += mul32x32_64(x[8], y[8]);
f = (bignum256modm_element_t)c; q1[7] = (q1[7] | (f << 22)) & 0x3fffffff; q1[8] = (f >> 8) & 0x3fffff;
barrett_reduce256_modm(r, q1, r1);
}
static void
expand256_modm(bignum256modm out, const unsigned char *in, size_t len) {
unsigned char work[64] = {0};
bignum256modm_element_t x[16];
bignum256modm q1;
memcpy(work, in, len);
x[0] = U8TO32_LE(work + 0);
x[1] = U8TO32_LE(work + 4);
x[2] = U8TO32_LE(work + 8);
x[3] = U8TO32_LE(work + 12);
x[4] = U8TO32_LE(work + 16);
x[5] = U8TO32_LE(work + 20);
x[6] = U8TO32_LE(work + 24);
x[7] = U8TO32_LE(work + 28);
x[8] = U8TO32_LE(work + 32);
x[9] = U8TO32_LE(work + 36);
x[10] = U8TO32_LE(work + 40);
x[11] = U8TO32_LE(work + 44);
x[12] = U8TO32_LE(work + 48);
x[13] = U8TO32_LE(work + 52);
x[14] = U8TO32_LE(work + 56);
x[15] = U8TO32_LE(work + 60);
/* r1 = (x mod 256^(32+1)) = x mod (2^8)(31+1) = x & ((1 << 264) - 1) */
out[0] = ( x[0]) & 0x3fffffff;
out[1] = ((x[ 0] >> 30) | (x[ 1] << 2)) & 0x3fffffff;
out[2] = ((x[ 1] >> 28) | (x[ 2] << 4)) & 0x3fffffff;
out[3] = ((x[ 2] >> 26) | (x[ 3] << 6)) & 0x3fffffff;
out[4] = ((x[ 3] >> 24) | (x[ 4] << 8)) & 0x3fffffff;
out[5] = ((x[ 4] >> 22) | (x[ 5] << 10)) & 0x3fffffff;
out[6] = ((x[ 5] >> 20) | (x[ 6] << 12)) & 0x3fffffff;
out[7] = ((x[ 6] >> 18) | (x[ 7] << 14)) & 0x3fffffff;
out[8] = ((x[ 7] >> 16) | (x[ 8] << 16)) & 0x00ffffff;
/* 8*31 = 248 bits, no need to reduce */
if (len < 32)
return;
/* q1 = x >> 248 = 264 bits = 9 30 bit elements */
q1[0] = ((x[ 7] >> 24) | (x[ 8] << 8)) & 0x3fffffff;
q1[1] = ((x[ 8] >> 22) | (x[ 9] << 10)) & 0x3fffffff;
q1[2] = ((x[ 9] >> 20) | (x[10] << 12)) & 0x3fffffff;
q1[3] = ((x[10] >> 18) | (x[11] << 14)) & 0x3fffffff;
q1[4] = ((x[11] >> 16) | (x[12] << 16)) & 0x3fffffff;
q1[5] = ((x[12] >> 14) | (x[13] << 18)) & 0x3fffffff;
q1[6] = ((x[13] >> 12) | (x[14] << 20)) & 0x3fffffff;
q1[7] = ((x[14] >> 10) | (x[15] << 22)) & 0x3fffffff;
q1[8] = ((x[15] >> 8) );
barrett_reduce256_modm(out, q1, out);
}
static void
expand_raw256_modm(bignum256modm out, const unsigned char in[32]) {
bignum256modm_element_t x[8];
x[0] = U8TO32_LE(in + 0);
x[1] = U8TO32_LE(in + 4);
x[2] = U8TO32_LE(in + 8);
x[3] = U8TO32_LE(in + 12);
x[4] = U8TO32_LE(in + 16);
x[5] = U8TO32_LE(in + 20);
x[6] = U8TO32_LE(in + 24);
x[7] = U8TO32_LE(in + 28);
out[0] = ( x[0]) & 0x3fffffff;
out[1] = ((x[ 0] >> 30) | (x[ 1] << 2)) & 0x3fffffff;
out[2] = ((x[ 1] >> 28) | (x[ 2] << 4)) & 0x3fffffff;
out[3] = ((x[ 2] >> 26) | (x[ 3] << 6)) & 0x3fffffff;
out[4] = ((x[ 3] >> 24) | (x[ 4] << 8)) & 0x3fffffff;
out[5] = ((x[ 4] >> 22) | (x[ 5] << 10)) & 0x3fffffff;
out[6] = ((x[ 5] >> 20) | (x[ 6] << 12)) & 0x3fffffff;
out[7] = ((x[ 6] >> 18) | (x[ 7] << 14)) & 0x3fffffff;
out[8] = ((x[ 7] >> 16) ) & 0x0000ffff;
}
static void
contract256_modm(unsigned char out[32], const bignum256modm in) {
U32TO8_LE(out + 0, (in[0] ) | (in[1] << 30));
U32TO8_LE(out + 4, (in[1] >> 2) | (in[2] << 28));
U32TO8_LE(out + 8, (in[2] >> 4) | (in[3] << 26));
U32TO8_LE(out + 12, (in[3] >> 6) | (in[4] << 24));
U32TO8_LE(out + 16, (in[4] >> 8) | (in[5] << 22));
U32TO8_LE(out + 20, (in[5] >> 10) | (in[6] << 20));
U32TO8_LE(out + 24, (in[6] >> 12) | (in[7] << 18));
U32TO8_LE(out + 28, (in[7] >> 14) | (in[8] << 16));
}
static void
contract256_window4_modm(signed char r[64], const bignum256modm in) {
char carry;
signed char *quads = r;
bignum256modm_element_t i, j, v;
for (i = 0; i < 8; i += 2) {
v = in[i];
for (j = 0; j < 7; j++) {
*quads++ = (v & 15);
v >>= 4;
}
v |= (in[i+1] << 2);
for (j = 0; j < 8; j++) {
*quads++ = (v & 15);
v >>= 4;
}
}
v = in[8];
*quads++ = (v & 15); v >>= 4;
*quads++ = (v & 15); v >>= 4;
*quads++ = (v & 15); v >>= 4;
*quads++ = (v & 15); v >>= 4;
/* making it signed */
carry = 0;
for(i = 0; i < 63; i++) {
r[i] += carry;
r[i+1] += (r[i] >> 4);
r[i] &= 15;
carry = (r[i] >> 3);
r[i] -= (carry << 4);
}
r[63] += carry;
}
static void
contract256_slidingwindow_modm(signed char r[256], const bignum256modm s, int windowsize) {
int i,j,k,b;
int m = (1 << (windowsize - 1)) - 1, soplen = 256;
signed char *bits = r;
bignum256modm_element_t v;
/* first put the binary expansion into r */
for (i = 0; i < 8; i++) {
v = s[i];
for (j = 0; j < 30; j++, v >>= 1)
*bits++ = (v & 1);
}
v = s[8];
for (j = 0; j < 16; j++, v >>= 1)
*bits++ = (v & 1);
/* Making it sliding window */
for (j = 0; j < soplen; j++) {
if (!r[j])
continue;
for (b = 1; (b < (soplen - j)) && (b <= 6); b++) {
if ((r[j] + (r[j + b] << b)) <= m) {
r[j] += r[j + b] << b;
r[j + b] = 0;
} else if ((r[j] - (r[j + b] << b)) >= -m) {
r[j] -= r[j + b] << b;
for (k = j + b; k < soplen; k++) {
if (!r[k]) {
r[k] = 1;
break;
}
r[k] = 0;
}
} else if (r[j + b]) {
break;
}
}
}
}
/*
helpers for batch verifcation, are allowed to be vartime
*/
/* out = a - b, a must be larger than b */
static void
sub256_modm_batch(bignum256modm out, const bignum256modm a, const bignum256modm b, size_t limbsize) {
size_t i = 0;
bignum256modm_element_t carry = 0;
switch (limbsize) {
case 8: out[i] = (a[i] - b[i]) - carry; carry = (out[i] >> 31); out[i] &= 0x3fffffff; i++;
case 7: out[i] = (a[i] - b[i]) - carry; carry = (out[i] >> 31); out[i] &= 0x3fffffff; i++;
case 6: out[i] = (a[i] - b[i]) - carry; carry = (out[i] >> 31); out[i] &= 0x3fffffff; i++;
case 5: out[i] = (a[i] - b[i]) - carry; carry = (out[i] >> 31); out[i] &= 0x3fffffff; i++;
case 4: out[i] = (a[i] - b[i]) - carry; carry = (out[i] >> 31); out[i] &= 0x3fffffff; i++;
case 3: out[i] = (a[i] - b[i]) - carry; carry = (out[i] >> 31); out[i] &= 0x3fffffff; i++;
case 2: out[i] = (a[i] - b[i]) - carry; carry = (out[i] >> 31); out[i] &= 0x3fffffff; i++;
case 1: out[i] = (a[i] - b[i]) - carry; carry = (out[i] >> 31); out[i] &= 0x3fffffff; i++;
case 0:
default: out[i] = (a[i] - b[i]) - carry;
}
}
/* is a < b */
static int
lt256_modm_batch(const bignum256modm a, const bignum256modm b, size_t limbsize) {
switch (limbsize) {
case 8: if (a[8] > b[8]) return 0; if (a[8] < b[8]) return 1;
case 7: if (a[7] > b[7]) return 0; if (a[7] < b[7]) return 1;
case 6: if (a[6] > b[6]) return 0; if (a[6] < b[6]) return 1;
case 5: if (a[5] > b[5]) return 0; if (a[5] < b[5]) return 1;
case 4: if (a[4] > b[4]) return 0; if (a[4] < b[4]) return 1;
case 3: if (a[3] > b[3]) return 0; if (a[3] < b[3]) return 1;
case 2: if (a[2] > b[2]) return 0; if (a[2] < b[2]) return 1;
case 1: if (a[1] > b[1]) return 0; if (a[1] < b[1]) return 1;
case 0: if (a[0] > b[0]) return 0; if (a[0] < b[0]) return 1;
}
return 0;
}
/* is a <= b */
static int
lte256_modm_batch(const bignum256modm a, const bignum256modm b, size_t limbsize) {
switch (limbsize) {
case 8: if (a[8] > b[8]) return 0; if (a[8] < b[8]) return 1;
case 7: if (a[7] > b[7]) return 0; if (a[7] < b[7]) return 1;
case 6: if (a[6] > b[6]) return 0; if (a[6] < b[6]) return 1;
case 5: if (a[5] > b[5]) return 0; if (a[5] < b[5]) return 1;
case 4: if (a[4] > b[4]) return 0; if (a[4] < b[4]) return 1;
case 3: if (a[3] > b[3]) return 0; if (a[3] < b[3]) return 1;
case 2: if (a[2] > b[2]) return 0; if (a[2] < b[2]) return 1;
case 1: if (a[1] > b[1]) return 0; if (a[1] < b[1]) return 1;
case 0: if (a[0] > b[0]) return 0; if (a[0] < b[0]) return 1;
}
return 1;
}
/* is a == 0 */
static int
iszero256_modm_batch(const bignum256modm a) {
size_t i;
for (i = 0; i < 9; i++)
if (a[i])
return 0;
return 1;
}
/* is a == 1 */
static int
isone256_modm_batch(const bignum256modm a) {
size_t i;
if (a[0] != 1)
return 0;
for (i = 1; i < 9; i++)
if (a[i])
return 0;
return 1;
}
/* can a fit in to (at most) 128 bits */
static int
isatmost128bits256_modm_batch(const bignum256modm a) {
uint32_t mask =
((a[8] ) | /* 16 */
(a[7] ) | /* 46 */
(a[6] ) | /* 76 */
(a[5] ) | /* 106 */
(a[4] & 0x3fffff00)); /* 128 */
return (mask == 0);
}

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/*
Public domain by Andrew M. <liquidsun@gmail.com>
*/
/*
Arithmetic modulo the group order n = 2^252 + 27742317777372353535851937790883648493 = 7237005577332262213973186563042994240857116359379907606001950938285454250989
k = 32
b = 1 << 8 = 256
m = 2^252 + 27742317777372353535851937790883648493 = 0x1000000000000000000000000000000014def9dea2f79cd65812631a5cf5d3ed
mu = floor( b^(k*2) / m ) = 0xfffffffffffffffffffffffffffffffeb2106215d086329a7ed9ce5a30a2c131b
*/
#define bignum256modm_bits_per_limb 56
#define bignum256modm_limb_size 5
typedef uint64_t bignum256modm_element_t;
typedef bignum256modm_element_t bignum256modm[5];
static const bignum256modm modm_m = {
0x12631a5cf5d3ed,
0xf9dea2f79cd658,
0x000000000014de,
0x00000000000000,
0x00000010000000
};
static const bignum256modm modm_mu = {
0x9ce5a30a2c131b,
0x215d086329a7ed,
0xffffffffeb2106,
0xffffffffffffff,
0x00000fffffffff
};
static bignum256modm_element_t
lt_modm(bignum256modm_element_t a, bignum256modm_element_t b) {
return (a - b) >> 63;
}
static void
reduce256_modm(bignum256modm r) {
bignum256modm t;
bignum256modm_element_t b = 0, pb, mask;
/* t = r - m */
pb = 0;
pb += modm_m[0]; b = lt_modm(r[0], pb); t[0] = (r[0] - pb + (b << 56)); pb = b;
pb += modm_m[1]; b = lt_modm(r[1], pb); t[1] = (r[1] - pb + (b << 56)); pb = b;
pb += modm_m[2]; b = lt_modm(r[2], pb); t[2] = (r[2] - pb + (b << 56)); pb = b;
pb += modm_m[3]; b = lt_modm(r[3], pb); t[3] = (r[3] - pb + (b << 56)); pb = b;
pb += modm_m[4]; b = lt_modm(r[4], pb); t[4] = (r[4] - pb + (b << 32));
/* keep r if r was smaller than m */
mask = b - 1;
r[0] ^= mask & (r[0] ^ t[0]);
r[1] ^= mask & (r[1] ^ t[1]);
r[2] ^= mask & (r[2] ^ t[2]);
r[3] ^= mask & (r[3] ^ t[3]);
r[4] ^= mask & (r[4] ^ t[4]);
}
static void
barrett_reduce256_modm(bignum256modm r, const bignum256modm q1, const bignum256modm r1) {
bignum256modm q3, r2;
uint128_t c, mul;
bignum256modm_element_t f, b, pb;
/* q1 = x >> 248 = 264 bits = 5 56 bit elements
q2 = mu * q1
q3 = (q2 / 256(32+1)) = q2 / (2^8)^(32+1) = q2 >> 264 */
mul64x64_128(c, modm_mu[0], q1[3]) mul64x64_128(mul, modm_mu[3], q1[0]) add128(c, mul) mul64x64_128(mul, modm_mu[1], q1[2]) add128(c, mul) mul64x64_128(mul, modm_mu[2], q1[1]) add128(c, mul) shr128(f, c, 56);
mul64x64_128(c, modm_mu[0], q1[4]) add128_64(c, f) mul64x64_128(mul, modm_mu[4], q1[0]) add128(c, mul) mul64x64_128(mul, modm_mu[3], q1[1]) add128(c, mul) mul64x64_128(mul, modm_mu[1], q1[3]) add128(c, mul) mul64x64_128(mul, modm_mu[2], q1[2]) add128(c, mul)
f = lo128(c); q3[0] = (f >> 40) & 0xffff; shr128(f, c, 56);
mul64x64_128(c, modm_mu[4], q1[1]) add128_64(c, f) mul64x64_128(mul, modm_mu[1], q1[4]) add128(c, mul) mul64x64_128(mul, modm_mu[2], q1[3]) add128(c, mul) mul64x64_128(mul, modm_mu[3], q1[2]) add128(c, mul)
f = lo128(c); q3[0] |= (f << 16) & 0xffffffffffffff; q3[1] = (f >> 40) & 0xffff; shr128(f, c, 56);
mul64x64_128(c, modm_mu[4], q1[2]) add128_64(c, f) mul64x64_128(mul, modm_mu[2], q1[4]) add128(c, mul) mul64x64_128(mul, modm_mu[3], q1[3]) add128(c, mul)
f = lo128(c); q3[1] |= (f << 16) & 0xffffffffffffff; q3[2] = (f >> 40) & 0xffff; shr128(f, c, 56);
mul64x64_128(c, modm_mu[4], q1[3]) add128_64(c, f) mul64x64_128(mul, modm_mu[3], q1[4]) add128(c, mul)
f = lo128(c); q3[2] |= (f << 16) & 0xffffffffffffff; q3[3] = (f >> 40) & 0xffff; shr128(f, c, 56);
mul64x64_128(c, modm_mu[4], q1[4]) add128_64(c, f)
f = lo128(c); q3[3] |= (f << 16) & 0xffffffffffffff; q3[4] = (f >> 40) & 0xffff; shr128(f, c, 56);
q3[4] |= (f << 16);
mul64x64_128(c, modm_m[0], q3[0])
r2[0] = lo128(c) & 0xffffffffffffff; shr128(f, c, 56);
mul64x64_128(c, modm_m[0], q3[1]) add128_64(c, f) mul64x64_128(mul, modm_m[1], q3[0]) add128(c, mul)
r2[1] = lo128(c) & 0xffffffffffffff; shr128(f, c, 56);
mul64x64_128(c, modm_m[0], q3[2]) add128_64(c, f) mul64x64_128(mul, modm_m[2], q3[0]) add128(c, mul) mul64x64_128(mul, modm_m[1], q3[1]) add128(c, mul)
r2[2] = lo128(c) & 0xffffffffffffff; shr128(f, c, 56);
mul64x64_128(c, modm_m[0], q3[3]) add128_64(c, f) mul64x64_128(mul, modm_m[3], q3[0]) add128(c, mul) mul64x64_128(mul, modm_m[1], q3[2]) add128(c, mul) mul64x64_128(mul, modm_m[2], q3[1]) add128(c, mul)
r2[3] = lo128(c) & 0xffffffffffffff; shr128(f, c, 56);
mul64x64_128(c, modm_m[0], q3[4]) add128_64(c, f) mul64x64_128(mul, modm_m[4], q3[0]) add128(c, mul) mul64x64_128(mul, modm_m[3], q3[1]) add128(c, mul) mul64x64_128(mul, modm_m[1], q3[3]) add128(c, mul) mul64x64_128(mul, modm_m[2], q3[2]) add128(c, mul)
r2[4] = lo128(c) & 0x0000ffffffffff;
pb = 0;
pb += r2[0]; b = lt_modm(r1[0], pb); r[0] = (r1[0] - pb + (b << 56)); pb = b;
pb += r2[1]; b = lt_modm(r1[1], pb); r[1] = (r1[1] - pb + (b << 56)); pb = b;
pb += r2[2]; b = lt_modm(r1[2], pb); r[2] = (r1[2] - pb + (b << 56)); pb = b;
pb += r2[3]; b = lt_modm(r1[3], pb); r[3] = (r1[3] - pb + (b << 56)); pb = b;
pb += r2[4]; b = lt_modm(r1[4], pb); r[4] = (r1[4] - pb + (b << 40));
reduce256_modm(r);
reduce256_modm(r);
}
static void
add256_modm(bignum256modm r, const bignum256modm x, const bignum256modm y) {
bignum256modm_element_t c;
c = x[0] + y[0]; r[0] = c & 0xffffffffffffff; c >>= 56;
c += x[1] + y[1]; r[1] = c & 0xffffffffffffff; c >>= 56;
c += x[2] + y[2]; r[2] = c & 0xffffffffffffff; c >>= 56;
c += x[3] + y[3]; r[3] = c & 0xffffffffffffff; c >>= 56;
c += x[4] + y[4]; r[4] = c;
reduce256_modm(r);
}
static void
mul256_modm(bignum256modm r, const bignum256modm x, const bignum256modm y) {
bignum256modm q1, r1;
uint128_t c, mul;
bignum256modm_element_t f;
mul64x64_128(c, x[0], y[0])
f = lo128(c); r1[0] = f & 0xffffffffffffff; shr128(f, c, 56);
mul64x64_128(c, x[0], y[1]) add128_64(c, f) mul64x64_128(mul, x[1], y[0]) add128(c, mul)
f = lo128(c); r1[1] = f & 0xffffffffffffff; shr128(f, c, 56);
mul64x64_128(c, x[0], y[2]) add128_64(c, f) mul64x64_128(mul, x[2], y[0]) add128(c, mul) mul64x64_128(mul, x[1], y[1]) add128(c, mul)
f = lo128(c); r1[2] = f & 0xffffffffffffff; shr128(f, c, 56);
mul64x64_128(c, x[0], y[3]) add128_64(c, f) mul64x64_128(mul, x[3], y[0]) add128(c, mul) mul64x64_128(mul, x[1], y[2]) add128(c, mul) mul64x64_128(mul, x[2], y[1]) add128(c, mul)
f = lo128(c); r1[3] = f & 0xffffffffffffff; shr128(f, c, 56);
mul64x64_128(c, x[0], y[4]) add128_64(c, f) mul64x64_128(mul, x[4], y[0]) add128(c, mul) mul64x64_128(mul, x[3], y[1]) add128(c, mul) mul64x64_128(mul, x[1], y[3]) add128(c, mul) mul64x64_128(mul, x[2], y[2]) add128(c, mul)
f = lo128(c); r1[4] = f & 0x0000ffffffffff; q1[0] = (f >> 24) & 0xffffffff; shr128(f, c, 56);
mul64x64_128(c, x[4], y[1]) add128_64(c, f) mul64x64_128(mul, x[1], y[4]) add128(c, mul) mul64x64_128(mul, x[2], y[3]) add128(c, mul) mul64x64_128(mul, x[3], y[2]) add128(c, mul)
f = lo128(c); q1[0] |= (f << 32) & 0xffffffffffffff; q1[1] = (f >> 24) & 0xffffffff; shr128(f, c, 56);
mul64x64_128(c, x[4], y[2]) add128_64(c, f) mul64x64_128(mul, x[2], y[4]) add128(c, mul) mul64x64_128(mul, x[3], y[3]) add128(c, mul)
f = lo128(c); q1[1] |= (f << 32) & 0xffffffffffffff; q1[2] = (f >> 24) & 0xffffffff; shr128(f, c, 56);
mul64x64_128(c, x[4], y[3]) add128_64(c, f) mul64x64_128(mul, x[3], y[4]) add128(c, mul)
f = lo128(c); q1[2] |= (f << 32) & 0xffffffffffffff; q1[3] = (f >> 24) & 0xffffffff; shr128(f, c, 56);
mul64x64_128(c, x[4], y[4]) add128_64(c, f)
f = lo128(c); q1[3] |= (f << 32) & 0xffffffffffffff; q1[4] = (f >> 24) & 0xffffffff; shr128(f, c, 56);
q1[4] |= (f << 32);
barrett_reduce256_modm(r, q1, r1);
}
static void
expand256_modm(bignum256modm out, const unsigned char *in, size_t len) {
unsigned char work[64] = {0};
bignum256modm_element_t x[16];
bignum256modm q1;
memcpy(work, in, len);
x[0] = U8TO64_LE(work + 0);
x[1] = U8TO64_LE(work + 8);
x[2] = U8TO64_LE(work + 16);
x[3] = U8TO64_LE(work + 24);
x[4] = U8TO64_LE(work + 32);
x[5] = U8TO64_LE(work + 40);
x[6] = U8TO64_LE(work + 48);
x[7] = U8TO64_LE(work + 56);
/* r1 = (x mod 256^(32+1)) = x mod (2^8)(31+1) = x & ((1 << 264) - 1) */
out[0] = ( x[0]) & 0xffffffffffffff;
out[1] = ((x[ 0] >> 56) | (x[ 1] << 8)) & 0xffffffffffffff;
out[2] = ((x[ 1] >> 48) | (x[ 2] << 16)) & 0xffffffffffffff;
out[3] = ((x[ 2] >> 40) | (x[ 3] << 24)) & 0xffffffffffffff;
out[4] = ((x[ 3] >> 32) | (x[ 4] << 32)) & 0x0000ffffffffff;
/* under 252 bits, no need to reduce */
if (len < 32)
return;
/* q1 = x >> 248 = 264 bits */
q1[0] = ((x[ 3] >> 56) | (x[ 4] << 8)) & 0xffffffffffffff;
q1[1] = ((x[ 4] >> 48) | (x[ 5] << 16)) & 0xffffffffffffff;
q1[2] = ((x[ 5] >> 40) | (x[ 6] << 24)) & 0xffffffffffffff;
q1[3] = ((x[ 6] >> 32) | (x[ 7] << 32)) & 0xffffffffffffff;
q1[4] = ((x[ 7] >> 24) );
barrett_reduce256_modm(out, q1, out);
}
static void
expand_raw256_modm(bignum256modm out, const unsigned char in[32]) {
bignum256modm_element_t x[4];
x[0] = U8TO64_LE(in + 0);
x[1] = U8TO64_LE(in + 8);
x[2] = U8TO64_LE(in + 16);
x[3] = U8TO64_LE(in + 24);
out[0] = ( x[0]) & 0xffffffffffffff;
out[1] = ((x[ 0] >> 56) | (x[ 1] << 8)) & 0xffffffffffffff;
out[2] = ((x[ 1] >> 48) | (x[ 2] << 16)) & 0xffffffffffffff;
out[3] = ((x[ 2] >> 40) | (x[ 3] << 24)) & 0xffffffffffffff;
out[4] = ((x[ 3] >> 32) ) & 0x000000ffffffff;
}
static void
contract256_modm(unsigned char out[32], const bignum256modm in) {
U64TO8_LE(out + 0, (in[0] ) | (in[1] << 56));
U64TO8_LE(out + 8, (in[1] >> 8) | (in[2] << 48));
U64TO8_LE(out + 16, (in[2] >> 16) | (in[3] << 40));
U64TO8_LE(out + 24, (in[3] >> 24) | (in[4] << 32));
}
static void
contract256_window4_modm(signed char r[64], const bignum256modm in) {
char carry;
signed char *quads = r;
bignum256modm_element_t i, j, v, m;
for (i = 0; i < 5; i++) {
v = in[i];
m = (i == 4) ? 8 : 14;
for (j = 0; j < m; j++) {
*quads++ = (v & 15);
v >>= 4;
}
}
/* making it signed */
carry = 0;
for(i = 0; i < 63; i++) {
r[i] += carry;
r[i+1] += (r[i] >> 4);
r[i] &= 15;
carry = (r[i] >> 3);
r[i] -= (carry << 4);
}
r[63] += carry;
}
static void
contract256_slidingwindow_modm(signed char r[256], const bignum256modm s, int windowsize) {
int i,j,k,b;
int m = (1 << (windowsize - 1)) - 1, soplen = 256;
signed char *bits = r;
bignum256modm_element_t v;
/* first put the binary expansion into r */
for (i = 0; i < 4; i++) {
v = s[i];
for (j = 0; j < 56; j++, v >>= 1)
*bits++ = (v & 1);
}
v = s[4];
for (j = 0; j < 32; j++, v >>= 1)
*bits++ = (v & 1);
/* Making it sliding window */
for (j = 0; j < soplen; j++) {
if (!r[j])
continue;
for (b = 1; (b < (soplen - j)) && (b <= 6); b++) {
if ((r[j] + (r[j + b] << b)) <= m) {
r[j] += r[j + b] << b;
r[j + b] = 0;
} else if ((r[j] - (r[j + b] << b)) >= -m) {
r[j] -= r[j + b] << b;
for (k = j + b; k < soplen; k++) {
if (!r[k]) {
r[k] = 1;
break;
}
r[k] = 0;
}
} else if (r[j + b]) {
break;
}
}
}
}
/*
helpers for batch verifcation, are allowed to be vartime
*/
/* out = a - b, a must be larger than b */
static void
sub256_modm_batch(bignum256modm out, const bignum256modm a, const bignum256modm b, size_t limbsize) {
size_t i = 0;
bignum256modm_element_t carry = 0;
switch (limbsize) {
case 4: out[i] = (a[i] - b[i]) ; carry = (out[i] >> 63); out[i] &= 0xffffffffffffff; i++;
case 3: out[i] = (a[i] - b[i]) - carry; carry = (out[i] >> 63); out[i] &= 0xffffffffffffff; i++;
case 2: out[i] = (a[i] - b[i]) - carry; carry = (out[i] >> 63); out[i] &= 0xffffffffffffff; i++;
case 1: out[i] = (a[i] - b[i]) - carry; carry = (out[i] >> 63); out[i] &= 0xffffffffffffff; i++;
case 0:
default: out[i] = (a[i] - b[i]) - carry;
}
}
/* is a < b */
static int
lt256_modm_batch(const bignum256modm a, const bignum256modm b, size_t limbsize) {
size_t i = 0;
bignum256modm_element_t t, carry = 0;
switch (limbsize) {
case 4: t = (a[i] - b[i]) ; carry = (t >> 63); i++;
case 3: t = (a[i] - b[i]) - carry; carry = (t >> 63); i++;
case 2: t = (a[i] - b[i]) - carry; carry = (t >> 63); i++;
case 1: t = (a[i] - b[i]) - carry; carry = (t >> 63); i++;
case 0: t = (a[i] - b[i]) - carry; carry = (t >> 63);
}
return (int)carry;
}
/* is a <= b */
static int
lte256_modm_batch(const bignum256modm a, const bignum256modm b, size_t limbsize) {
size_t i = 0;
bignum256modm_element_t t, carry = 0;
switch (limbsize) {
case 4: t = (b[i] - a[i]) ; carry = (t >> 63); i++;
case 3: t = (b[i] - a[i]) - carry; carry = (t >> 63); i++;
case 2: t = (b[i] - a[i]) - carry; carry = (t >> 63); i++;
case 1: t = (b[i] - a[i]) - carry; carry = (t >> 63); i++;
case 0: t = (b[i] - a[i]) - carry; carry = (t >> 63);
}
return (int)!carry;
}
/* is a == 0 */
static int
iszero256_modm_batch(const bignum256modm a) {
size_t i;
for (i = 0; i < 5; i++)
if (a[i])
return 0;
return 1;
}
/* is a == 1 */
static int
isone256_modm_batch(const bignum256modm a) {
size_t i;
for (i = 0; i < 5; i++)
if (a[i] != ((i) ? 0 : 1))
return 0;
return 1;
}
/* can a fit in to (at most) 128 bits */
static int
isatmost128bits256_modm_batch(const bignum256modm a) {
uint64_t mask =
((a[4] ) | /* 32 */
(a[3] ) | /* 88 */
(a[2] & 0xffffffffff0000));
return (mask == 0);
}

1024
external/ed25519-donna/regression.h vendored Normal file

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176
external/ed25519-donna/test-internals.c vendored Normal file
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#include <stdio.h>
#include "ed25519-donna.h"
static int
test_adds() {
#if defined(HAVE_UINT128) && !defined(ED25519_SSE2)
/* largest result for each limb from a mult or square: all elements except r1 reduced, r1 overflowed as far as possible */
static const bignum25519 max_bignum = {
0x7ffffffffffff,0x8000000001230,0x7ffffffffffff,0x7ffffffffffff,0x7ffffffffffff
};
/* what max_bignum should fully reduce to */
static const unsigned char max_bignum_raw[32] = {
0x12,0x00,0x00,0x00,0x00,0x00,0x88,0x91,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00
};
/* (max_bignum + max_bignum)^2 */
static const unsigned char max_bignum2_squared_raw[32] = {
0x10,0x05,0x00,0x00,0x00,0x00,0x80,0xdc,0x51,0x00,0x00,0x00,0x00,0x61,0xed,0x4a,
0x01,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
};
/* ((max_bignum + max_bignum) + max_bignum)^2 */
static const unsigned char max_bignum3_squared_raw[32] = {
0x64,0x0b,0x00,0x00,0x00,0x00,0x20,0x30,0xb8,0x00,0x00,0x00,0x40,0x1a,0x96,0xe8,
0x02,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
};
#else
/* largest result for each limb from a mult or square: all elements except r1 reduced, r1 overflowed as far as possible */
static const bignum25519 ALIGN(16) max_bignum = {
0x3ffffff,0x2000300,0x3ffffff,0x1ffffff,0x3ffffff,
0x1ffffff,0x3ffffff,0x1ffffff,0x3ffffff,0x1ffffff
};
/* what max_bignum should fully reduce to */
static const unsigned char max_bignum2_squared_raw[32] = {
0x10,0x05,0x00,0x40,0xc2,0x06,0x40,0x80,0x41,0x02,0x00,0x00,0x00,0x00,0x00,0x00,
0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
};
/* (max_bignum * max_bignum) */
static const unsigned char max_bignum3_squared_raw[32] = {
0x64,0x0b,0x00,0x10,0x35,0x0f,0x90,0x60,0x13,0x05,0x00,0x00,0x00,0x00,0x00,0x00,
0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
};
#endif
unsigned char result[32];
static const bignum25519 ALIGN(16) zero = {0};
bignum25519 ALIGN(16) a, b, c;
size_t i;
/* a = (max_bignum + max_bignum) */
curve25519_add(a, max_bignum, max_bignum);
/* b = ((max_bignum + max_bignum) * (max_bignum + max_bignum)) */
curve25519_mul(b, a, a);
curve25519_contract(result, b);
if (memcmp(result, max_bignum2_squared_raw, 32) != 0)
return -1;
curve25519_square(b, a);
curve25519_contract(result, b);
if (memcmp(result, max_bignum2_squared_raw, 32) != 0)
return -1;
/* b = (max_bignum + max_bignum + max_bignum) */
curve25519_add_after_basic(b, a, max_bignum);
/* a = ((max_bignum + max_bignum + max_bignum) * (max_bignum + max_bignum + max_bignum)) */
curve25519_mul(a, b, b);
curve25519_contract(result, a);
if (memcmp(result, max_bignum3_squared_raw, 32) != 0)
return -1;
curve25519_square(a, b);
curve25519_contract(result, a);
if (memcmp(result, max_bignum3_squared_raw, 32) != 0)
return -1;
return 0;
}
static int
test_subs() {
#if defined(HAVE_UINT128) && !defined(ED25519_SSE2)
/* largest result for each limb from a mult or square: all elements except r1 reduced, r1 overflowed as far as possible */
static const bignum25519 max_bignum = {
0x7ffffffffffff,0x8000000001230,0x7ffffffffffff,0x7ffffffffffff,0x7ffffffffffff
};
/* what max_bignum should fully reduce to */
static const unsigned char max_bignum_raw[32] = {
0x12,0x00,0x00,0x00,0x00,0x00,0x88,0x91,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00
};
/* (max_bignum * max_bignum) */
static const unsigned char max_bignum_squared_raw[32] = {
0x44,0x01,0x00,0x00,0x00,0x00,0x20,0x77,0x14,0x00,0x00,0x00,0x40,0x58,0xbb,0x52,
0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00
};
#else
/* largest result for each limb from a mult or square: all elements except r1 reduced, r1 overflowed as far as possible */
static const bignum25519 ALIGN(16) max_bignum = {
0x3ffffff,0x2000300,0x3ffffff,0x1ffffff,0x3ffffff,
0x1ffffff,0x3ffffff,0x1ffffff,0x3ffffff,0x1ffffff
};
/* what max_bignum should fully reduce to */
static const unsigned char max_bignum_raw[32] = {
0x12,0x00,0x00,0x04,0x0c,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
};
/* (max_bignum * max_bignum) */
static const unsigned char max_bignum_squared_raw[32] = {
0x44,0x01,0x00,0x90,0xb0,0x01,0x10,0x60,0x90,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,
};
#endif
unsigned char result[32];
static const bignum25519 ALIGN(16) zero = {0};
bignum25519 ALIGN(16) a, b, c;
size_t i;
/* a = max_bignum - 0, which expands to 2p + max_bignum - 0 */
curve25519_sub(a, max_bignum, zero);
curve25519_contract(result, a);
if (memcmp(result, max_bignum_raw, 32) != 0)
return -1;
/* b = (max_bignum * max_bignum) */
curve25519_mul(b, a, a);
curve25519_contract(result, b);
if (memcmp(result, max_bignum_squared_raw, 32) != 0)
return -1;
curve25519_square(b, a);
curve25519_contract(result, b);
if (memcmp(result, max_bignum_squared_raw, 32) != 0)
return -1;
/* b = ((a - 0) - 0) */
curve25519_sub_after_basic(b, a, zero);
curve25519_contract(result, b);
if (memcmp(result, max_bignum_raw, 32) != 0)
return -1;
/* a = (max_bignum * max_bignum) */
curve25519_mul(a, b, b);
curve25519_contract(result, a);
if (memcmp(result, max_bignum_squared_raw, 32) != 0)
return -1;
curve25519_square(a, b);
curve25519_contract(result, a);
if (memcmp(result, max_bignum_squared_raw, 32) != 0)
return -1;
return 0;
}
int
main() {
int ret = 0;
int single;
single = test_adds();
if (single) printf("test_adds: FAILED\n");
ret |= single;
single = test_subs();
if (single) printf("test_subs: FAILED\n");
ret |= single;
if (!ret) printf("success\n");
return ret;
}

50
external/ed25519-donna/test-ticks.h vendored Normal file
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@@ -0,0 +1,50 @@
#include "ed25519-donna-portable-identify.h"
/* ticks - not tested on anything other than x86 */
static uint64_t
get_ticks(void) {
#if defined(CPU_X86) || defined(CPU_X86_64)
#if defined(COMPILER_INTEL)
return _rdtsc();
#elif defined(COMPILER_MSVC)
return __rdtsc();
#elif defined(COMPILER_GCC)
uint32_t lo, hi;
__asm__ __volatile__("rdtsc" : "=a" (lo), "=d" (hi));
return ((uint64_t)lo | ((uint64_t)hi << 32));
#else
need rdtsc for this compiler
#endif
#elif defined(OS_SOLARIS)
return (uint64_t)gethrtime();
#elif defined(CPU_SPARC) && !defined(OS_OPENBSD)
uint64_t t;
__asm__ __volatile__("rd %%tick, %0" : "=r" (t));
return t;
#elif defined(CPU_PPC)
uint32_t lo = 0, hi = 0;
__asm__ __volatile__("mftbu %0; mftb %1" : "=r" (hi), "=r" (lo));
return ((uint64_t)lo | ((uint64_t)hi << 32));
#elif defined(CPU_IA64)
uint64_t t;
__asm__ __volatile__("mov %0=ar.itc" : "=r" (t));
return t;
#elif defined(OS_NIX)
timeval t2;
gettimeofday(&t2, NULL);
t = ((uint64_t)t2.tv_usec << 32) | (uint64_t)t2.tv_sec;
return t;
#else
need ticks for this platform
#endif
}
#define timeit(x,minvar) \
ticks = get_ticks(); \
x; \
ticks = get_ticks() - ticks; \
if (ticks < minvar) \
minvar = ticks;
#define maxticks 0xffffffffffffffffull

260
external/ed25519-donna/test.c vendored Normal file
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@@ -0,0 +1,260 @@
/*
Validate ed25519 implementation against the official test vectors from
http://ed25519.cr.yp.to/software.html
*/
#include <stdio.h>
#include <string.h>
#include "ed25519.h"
#include "test-ticks.h"
static void
edassert(int check, int round, const char *failreason) {
if (check)
return;
printf("round %d, %s\n", round, failreason);
exit(1);
}
static void
edassert_die(const unsigned char *a, const unsigned char *b, size_t len, int round, const char *failreason) {
size_t i;
if (round > 0)
printf("round %d, %s\n", round, failreason);
else
printf("%s\n", failreason);
printf("want: "); for (i = 0; i < len; i++) printf("%02x,", a[i]); printf("\n");
printf("got : "); for (i = 0; i < len; i++) printf("%02x,", b[i]); printf("\n");
printf("diff: "); for (i = 0; i < len; i++) if (a[i] ^ b[i]) printf("%02x,", a[i] ^ b[i]); else printf(" ,"); printf("\n\n");
exit(1);
}
static void
edassert_equal(const unsigned char *a, const unsigned char *b, size_t len, const char *failreason) {
if (memcmp(a, b, len) == 0)
return;
edassert_die(a, b, len, -1, failreason);
}
static void
edassert_equal_round(const unsigned char *a, const unsigned char *b, size_t len, int round, const char *failreason) {
if (memcmp(a, b, len) == 0)
return;
edassert_die(a, b, len, round, failreason);
}
/* test data */
typedef struct test_data_t {
unsigned char sk[32], pk[32], sig[64];
const char *m;
} test_data;
test_data dataset[] = {
#include "regression.h"
};
/* result of the curve25519 scalarmult ((|255| * basepoint) * basepoint)... 1024 times */
const curved25519_key curved25519_expected = {
0xac,0xce,0x24,0xb1,0xd4,0xa2,0x36,0x21,
0x15,0xe2,0x3e,0x84,0x3c,0x23,0x2b,0x5f,
0x95,0x6c,0xc0,0x7b,0x95,0x82,0xd7,0x93,
0xd5,0x19,0xb6,0xf1,0xfb,0x96,0xd6,0x04
};
/* from ed25519-donna-batchverify.h */
extern unsigned char batch_point_buffer[3][32];
/* y coordinate of the final point from 'amd64-51-30k' with the same random generator */
static const unsigned char batch_verify_y[32] = {
0x51,0xe7,0x68,0xe0,0xf7,0xa1,0x88,0x45,
0xde,0xa1,0xcb,0xd9,0x37,0xd4,0x78,0x53,
0x1b,0x95,0xdb,0xbe,0x66,0x59,0x29,0x3b,
0x94,0x51,0x2f,0xbc,0x0d,0x66,0xba,0x3f
};
/*
static const unsigned char batch_verify_y[32] = {
0x5c,0x63,0x96,0x26,0xca,0xfe,0xfd,0xc4,
0x2d,0x11,0xa8,0xe4,0xc4,0x46,0x42,0x97,
0x97,0x92,0xbe,0xe0,0x3c,0xef,0x96,0x01,
0x50,0xa1,0xcc,0x8f,0x50,0x85,0x76,0x7d
};
Introducing the 128 bit r scalars to the heap _before_ the largest scalar
fits in to 128 bits alters the heap shape and produces a different,
yet still neutral/valid y/z value.
This was the value of introducing the r scalars when the largest scalar fit
in to 135-256 bits. You can produce it with amd64-64-24k / amd64-51-32k
with the random sequence used in the first pass by changing
unsigned long long hlen=((npoints+1)/2)|1;
to
unsigned long long hlen=npoints;
in ge25519_multi_scalarmult.c
ed25519-donna-batchverify.h has been modified to match the
default amd64-64-24k / amd64-51-32k behaviour
*/
/* batch test */
#define test_batch_count 64
#define test_batch_rounds 96
typedef enum batch_test_t {
batch_no_errors = 0,
batch_wrong_message = 1,
batch_wrong_pk = 2,
batch_wrong_sig = 3
} batch_test;
static int
test_batch_instance(batch_test type, uint64_t *ticks) {
ed25519_secret_key sks[test_batch_count];
ed25519_public_key pks[test_batch_count];
ed25519_signature sigs[test_batch_count];
unsigned char messages[test_batch_count][128];
size_t message_lengths[test_batch_count];
const unsigned char *message_pointers[test_batch_count];
const unsigned char *pk_pointers[test_batch_count];
const unsigned char *sig_pointers[test_batch_count];
int valid[test_batch_count], ret, validret;
size_t i;
uint64_t t;
/* generate keys */
for (i = 0; i < test_batch_count; i++) {
ed25519_randombytes_unsafe(sks[i], sizeof(sks[i]));
ed25519_publickey(sks[i], pks[i]);
pk_pointers[i] = pks[i];
}
/* generate messages */
ed25519_randombytes_unsafe(messages, sizeof(messages));
for (i = 0; i < test_batch_count; i++) {
message_pointers[i] = messages[i];
message_lengths[i] = (i & 127) + 1;
}
/* sign messages */
for (i = 0; i < test_batch_count; i++) {
ed25519_sign(message_pointers[i], message_lengths[i], sks[i], pks[i], sigs[i]);
sig_pointers[i] = sigs[i];
}
validret = 0;
if (type == batch_wrong_message) {
message_pointers[0] = message_pointers[1];
validret = 1|2;
} else if (type == batch_wrong_pk) {
pk_pointers[0] = pk_pointers[1];
validret = 1|2;
} else if (type == batch_wrong_sig) {
sig_pointers[0] = sig_pointers[1];
validret = 1|2;
}
/* batch verify */
t = get_ticks();
ret = ed25519_sign_open_batch(message_pointers, message_lengths, pk_pointers, sig_pointers, test_batch_count, valid);
*ticks = get_ticks() - t;
edassert_equal((unsigned char *)&validret, (unsigned char *)&ret, sizeof(int), "batch return code");
for (i = 0; i < test_batch_count; i++) {
validret = ((type == batch_no_errors) || (i != 0)) ? 1 : 0;
edassert_equal((unsigned char *)&validret, (unsigned char *)&valid[i], sizeof(int), "individual batch return code");
}
return ret;
}
static void
test_batch(void) {
uint64_t dummy_ticks, ticks[test_batch_rounds], best = maxticks, sum;
size_t i, count;
/* check the first pass for the expected result */
test_batch_instance(batch_no_errors, &dummy_ticks);
edassert_equal(batch_verify_y, batch_point_buffer[1], 32, "failed to generate expected result");
/* make sure ge25519_multi_scalarmult_vartime throws an error on the entire batch with wrong data */
for (i = 0; i < 4; i++) {
test_batch_instance(batch_wrong_message, &dummy_ticks);
test_batch_instance(batch_wrong_pk, &dummy_ticks);
test_batch_instance(batch_wrong_sig, &dummy_ticks);
}
/* speed test */
for (i = 0; i < test_batch_rounds; i++) {
test_batch_instance(batch_no_errors, &ticks[i]);
if (ticks[i] < best)
best = ticks[i];
}
/* take anything within 1% of the best time */
for (i = 0, sum = 0, count = 0; i < test_batch_rounds; i++) {
if (ticks[i] < (best * 1.01)) {
sum += ticks[i];
count++;
}
}
printf("%.0f ticks/verification\n", (double)sum / (count * test_batch_count));
}
static void
test_main(void) {
int i, res;
ed25519_public_key pk;
ed25519_signature sig;
unsigned char forge[1024] = {'x'};
curved25519_key csk[2] = {{255}};
uint64_t ticks, pkticks = maxticks, signticks = maxticks, openticks = maxticks, curvedticks = maxticks;
for (i = 0; i < 1024; i++) {
ed25519_publickey(dataset[i].sk, pk);
edassert_equal_round(dataset[i].pk, pk, sizeof(pk), i, "public key didn't match");
ed25519_sign((unsigned char *)dataset[i].m, i, dataset[i].sk, pk, sig);
edassert_equal_round(dataset[i].sig, sig, sizeof(sig), i, "signature didn't match");
edassert(!ed25519_sign_open((unsigned char *)dataset[i].m, i, pk, sig), i, "failed to open message");
memcpy(forge, dataset[i].m, i);
if (i)
forge[i - 1] += 1;
edassert(ed25519_sign_open(forge, (i) ? i : 1, pk, sig), i, "opened forged message");
}
for (i = 0; i < 1024; i++)
curved25519_scalarmult_basepoint(csk[(i & 1) ^ 1], csk[i & 1]);
edassert_equal(curved25519_expected, csk[0], sizeof(curved25519_key), "curve25519 failed to generate correct value");
for (i = 0; i < 2048; i++) {
timeit(ed25519_publickey(dataset[0].sk, pk), pkticks)
edassert_equal_round(dataset[0].pk, pk, sizeof(pk), i, "public key didn't match");
timeit(ed25519_sign((unsigned char *)dataset[0].m, 0, dataset[0].sk, pk, sig), signticks)
edassert_equal_round(dataset[0].sig, sig, sizeof(sig), i, "signature didn't match");
timeit(res = ed25519_sign_open((unsigned char *)dataset[0].m, 0, pk, sig), openticks)
edassert(!res, 0, "failed to open message");
timeit(curved25519_scalarmult_basepoint(csk[1], csk[0]), curvedticks);
}
printf("%.0f ticks/public key generation\n", (double)pkticks);
printf("%.0f ticks/signature\n", (double)signticks);
printf("%.0f ticks/signature verification\n", (double)openticks);
printf("%.0f ticks/curve25519 basepoint scalarmult\n", (double)curvedticks);
}
int
main(void) {
test_main();
test_batch();
return 0;
}

View File

@@ -541,7 +541,7 @@ SECP256K1_API int secp256k1_ecdsa_signature_serialize_compact(
/** Verify an ECDSA signature.
*
* Returns: 1: correct signature
* 0: incorrect or unparsable signature
* 0: incorrect or unparseable signature
* Args: ctx: pointer to a context object
* In: sig: the signature being verified.
* msghash32: the 32-byte message hash being verified.

5
external/wasmi/conandata.yml vendored Normal file
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@@ -0,0 +1,5 @@
patches:
0.42.1:
- patch_description: install only static lib (to prevent conflict with shared)
patch_file: patches/wasmi.patch
patch_type: conan

90
external/wasmi/conanfile.py vendored Normal file
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@@ -0,0 +1,90 @@
from conan import ConanFile, tools
from conan.tools.cmake import CMake, CMakeToolchain, CMakeDeps, cmake_layout
from conan.tools.files import (
apply_conandata_patches,
export_conandata_patches,
# get,
)
from conan.tools.scm import Git
import os
# import json
required_conan_version = ">=1.55.0"
class WasmiConan(ConanFile):
name = "wasmi"
license = "Apache License v2.0"
url = "https://github.com/wasmi-labs/wasmi.git"
description = "WebAssembly (Wasm) interpreter"
package_type = "library"
settings = "os", "compiler", "build_type", "arch"
options = {"shared": [True, False]}
default_options = {"shared": False}
# generators = "CMakeToolchain", "CMakeDeps"
#requires = [("llvm/20.1.1@")]
def export_sources(self):
export_conandata_patches(self)
pass
# def build_requirements(self):
# self.tool_requires("llvm/20.1.1")
def config_options(self):
#if self.settings.os == "Windows":
# del self.options.fPIC
pass
def layout(self):
cmake_layout(self, src_folder="src")
def source(self):
git = Git(self)
git.fetch_commit(
url="https://github.com/wasmi-labs/wasmi.git",
commit="f628a7a86c9715f2c306f6ef9aea1cc2bdca5fa7",
)
#get(self, **self.conan_data["sources"][self.version], strip_root=True)
def generate(self):
tc = CMakeToolchain(self)
tc.variables["CMAKE_CXX_STANDARD"] = 20
tc.variables["BUILD_SHARED_LIBS"] = 0
tc.generate()
# This generates "foo-config.cmake" and "bar-config.cmake" in self.generators_folder
deps = CMakeDeps(self)
deps.generate()
def build(self):
apply_conandata_patches(self)
cmake = CMake(self)
cmake.verbose = True
cmake.configure(build_script_folder=os.path.join(self.source_folder, "crates", "c_api"))
cmake.build()
#self.run(f'echo {self.source_folder}')
# Explicit way:
# self.run('cmake %s/hello %s' % (self.source_folder, cmake.command_line))
# self.run("cmake --build . %s" % cmake.build_config)
def package(self):
cmake = CMake(self)
cmake.verbose = True
cmake.install()
def package_info(self):
self.cpp_info.libs = ["wasmi"]
self.cpp_info.names["cmake_find_package"] = "wasmi"
self.cpp_info.names["cmake_find_package_multi"] = "wasmi"

272
external/wasmi/patches/wasmi.patch vendored Normal file
View File

@@ -0,0 +1,272 @@
From 7f3aea7449095387b961408b520d1ce158e5c957 Mon Sep 17 00:00:00 2001
From: Peng Wang <pwang200@gmail.com>
Date: Mon, 24 Nov 2025 20:29:26 -0500
Subject: [PATCH] memory limit and fuel working
---
crates/c_api/CMakeLists.txt | 39 +++++++------
crates/c_api/include/wasm.h | 6 ++
crates/c_api/include/wasmi.h | 6 +-
crates/c_api/src/store.rs | 105 ++++++++++++++++++++++++++++++++---
4 files changed, 130 insertions(+), 26 deletions(-)
diff --git a/crates/c_api/CMakeLists.txt b/crates/c_api/CMakeLists.txt
index b15c787..2420bea 100644
--- a/crates/c_api/CMakeLists.txt
+++ b/crates/c_api/CMakeLists.txt
@@ -43,6 +43,11 @@ endif()
list(TRANSFORM WASMI_SHARED_FILES PREPEND ${WASMI_TARGET_DIR}/)
list(TRANSFORM WASMI_STATIC_FILES PREPEND ${WASMI_TARGET_DIR}/)
+if(NOT BUILD_SHARED_LIBS)
+ set(WASMI_SHARED_FILES )
+endif()
+
+
# Instructions on how to build and install the Wasmi Rust crate.
find_program(WASMI_CARGO_BINARY cargo REQUIRED)
include(ExternalProject)
@@ -112,23 +117,25 @@ install(
DESTINATION ${CMAKE_INSTALL_LIBDIR}
)
-if(WASMI_TARGET MATCHES "darwin")
- set(INSTALLED_LIB "${CMAKE_INSTALL_PREFIX}/${CMAKE_INSTALL_LIBDIR}/libwasmi.dylib")
- install(
- FILES "${INSTALLED_LIB}"
- DESTINATION "${CMAKE_INSTALL_PREFIX}/${CMAKE_INSTALL_LIBDIR}"
- COMPONENT Runtime
- )
- if(NOT CMAKE_INSTALL_NAME_TOOL)
- message(WARNING "CMAKE_INSTALL_NAME_TOOL is not set. LC_ID_DYLIB for libwasmi.dylib will not be set.")
- else()
- set(install_name_tool_cmd
- "${CMAKE_INSTALL_NAME_TOOL}"
- "-id"
- "@rpath/libwasmi.dylib"
- "${INSTALLED_LIB}"
+if(BUILD_SHARED_LIBS)
+ if(WASMI_TARGET MATCHES "darwin")
+ set(INSTALLED_LIB "${CMAKE_INSTALL_PREFIX}/${CMAKE_INSTALL_LIBDIR}/libwasmi.dylib")
+ install(
+ FILES "${INSTALLED_LIB}"
+ DESTINATION "${CMAKE_INSTALL_PREFIX}/${CMAKE_INSTALL_LIBDIR}"
+ COMPONENT Runtime
)
- install(CODE "execute_process(COMMAND ${install_name_tool_cmd})")
+ if(NOT CMAKE_INSTALL_NAME_TOOL)
+ message(WARNING "CMAKE_INSTALL_NAME_TOOL is not set. LC_ID_DYLIB for libwasmi.dylib will not be set.")
+ else()
+ set(install_name_tool_cmd
+ "${CMAKE_INSTALL_NAME_TOOL}"
+ "-id"
+ "@rpath/libwasmi.dylib"
+ "${INSTALLED_LIB}"
+ )
+ install(CODE "execute_process(COMMAND ${install_name_tool_cmd})")
+ endif()
endif()
endif()
diff --git a/crates/c_api/include/wasm.h b/crates/c_api/include/wasm.h
index 5ee617f..4226c29 100644
--- a/crates/c_api/include/wasm.h
+++ b/crates/c_api/include/wasm.h
@@ -146,6 +146,12 @@ WASM_DECLARE_OWN(store)
WASM_API_EXTERN own wasm_store_t* wasm_store_new(wasm_engine_t*);
+WASM_API_EXTERN own wasm_store_t* wasm_store_new_with_memory_max_pages(wasm_engine_t*, uint32_t max_pages);
+
+// Store fuel functions (forward declarations)
+struct wasmi_error;
+WASM_API_EXTERN struct wasmi_error* wasm_store_get_fuel(const wasm_store_t*, uint64_t* fuel);
+WASM_API_EXTERN struct wasmi_error* wasm_store_set_fuel(wasm_store_t*, uint64_t fuel);
///////////////////////////////////////////////////////////////////////////////
// Type Representations
diff --git a/crates/c_api/include/wasmi.h b/crates/c_api/include/wasmi.h
index 2caffa3..0c0584e 100644
--- a/crates/c_api/include/wasmi.h
+++ b/crates/c_api/include/wasmi.h
@@ -10,7 +10,7 @@
/**
* \brief Wasmi version string.
*/
-#define WASMI_VERSION "0.35.0"
+#define WASMI_VERSION "0.42.1"
/**
* \brief Wasmi major version number.
*/
@@ -18,10 +18,10 @@
/**
* \brief Wasmi minor version number.
*/
-#define WASMI_VERSION_MINOR 35
+#define WASMI_VERSION_MINOR 42
/**
* \brief Wasmi patch version number.
*/
-#define WASMI_VERSION_PATCH 0
+#define WASMI_VERSION_PATCH 1
#endif // WASMI_H
diff --git a/crates/c_api/src/store.rs b/crates/c_api/src/store.rs
index 56d4898..9abda8e 100644
--- a/crates/c_api/src/store.rs
+++ b/crates/c_api/src/store.rs
@@ -1,7 +1,7 @@
use crate::{wasm_engine_t, wasmi_error_t, ForeignData};
use alloc::{boxed::Box, sync::Arc};
use core::{cell::UnsafeCell, ffi};
-use wasmi::{AsContext, AsContextMut, Store, StoreContext, StoreContextMut};
+use wasmi::{AsContext, AsContextMut, Store, StoreContext, StoreContextMut, StoreLimits, StoreLimitsBuilder};
/// This representation of a `Store` is used to implement the `wasm.h` API (and
/// *not* the `wasmi.h` API!)
@@ -16,7 +16,7 @@ use wasmi::{AsContext, AsContextMut, Store, StoreContext, StoreContextMut};
/// least Wasmi's implementation).
#[derive(Clone)]
pub struct WasmStoreRef {
- inner: Arc<UnsafeCell<Store<()>>>,
+ inner: Arc<UnsafeCell<Store<StoreLimits>>>,
}
impl WasmStoreRef {
@@ -27,7 +27,7 @@ impl WasmStoreRef {
/// # Safety
///
/// It is the callers responsibility to provide a valid `self`.
- pub unsafe fn context(&self) -> StoreContext<'_, ()> {
+ pub unsafe fn context(&self) -> StoreContext<'_, StoreLimits> {
(*self.inner.get()).as_context()
}
@@ -38,7 +38,7 @@ impl WasmStoreRef {
/// # Safety
///
/// It is the callers responsibility to provide a valid `self`.
- pub unsafe fn context_mut(&mut self) -> StoreContextMut<'_, ()> {
+ pub unsafe fn context_mut(&mut self) -> StoreContextMut<'_, StoreLimits> {
(*self.inner.get()).as_context_mut()
}
}
@@ -56,17 +56,71 @@ pub struct wasm_store_t {
wasmi_c_api_macros::declare_own!(wasm_store_t);
-/// Creates a new [`Store<()>`](wasmi::Store) for the given `engine`.
+/// Creates a new [`Store<StoreLimits>`](wasmi::Store) for the given `engine`.
+///
+/// The store is created with no resource limits (original behavior).
+/// For memory-limited stores, use [`wasm_store_new_with_memory_max_pages`].
///
/// The returned [`wasm_store_t`] must be freed using [`wasm_store_delete`].
///
-/// Wraps [`<wasmi::Store<()>>::new`](wasmi::Store::new).
+/// Wraps [`<wasmi::Store<StoreLimits>>::new`](wasmi::Store::new).
#[cfg_attr(not(feature = "prefix-symbols"), no_mangle)]
#[allow(clippy::arc_with_non_send_sync)]
#[cfg_attr(feature = "prefix-symbols", wasmi_c_api_macros::prefix_symbol)]
pub extern "C" fn wasm_store_new(engine: &wasm_engine_t) -> Box<wasm_store_t> {
let engine = &engine.inner;
- let store = Store::new(engine, ());
+
+ // Create store with no resource limits (original behavior)
+ let limits = StoreLimitsBuilder::new().build();
+ let store = Store::new(engine, limits);
+
+ Box::new(wasm_store_t {
+ inner: WasmStoreRef {
+ inner: Arc::new(UnsafeCell::new(store)),
+ },
+ })
+}
+
+/// Creates a new [`Store<StoreLimits>`](wasmi::Store) for the given `engine` with memory limits.
+///
+/// This function creates a store with resource limits suitable for blockchain smart contracts.
+/// The memory limit is enforced during WebAssembly execution.
+///
+/// If `max_pages` exceeds 1024 (64MB), this function will panic.
+///
+/// The returned [`wasm_store_t`] must be freed using [`wasm_store_delete`].
+///
+/// Wraps [`<wasmi::Store<StoreLimits>>::new`](wasmi::Store::new).
+#[cfg_attr(not(feature = "prefix-symbols"), no_mangle)]
+#[allow(clippy::arc_with_non_send_sync)]
+#[cfg_attr(feature = "prefix-symbols", wasmi_c_api_macros::prefix_symbol)]
+pub extern "C" fn wasm_store_new_with_memory_max_pages(
+ engine: &wasm_engine_t,
+ max_pages: u32,
+) -> Box<wasm_store_t> {
+ // Validate max_pages limit (64MB = 1024 pages)
+ if max_pages > 1024 {
+ panic!("max_pages ({}) exceeds maximum allowed value of 1024 pages (64MB)", max_pages);
+ }
+
+ // Convert pages to bytes (each page is 64KB)
+ let max_memory_bytes = (max_pages as usize) * (64 * 1024);
+
+ // Create store limits with blockchain-suitable defaults
+ let limits = StoreLimitsBuilder::new()
+ .memory_size(max_memory_bytes) // User-specified memory limit
+ .instances(1) // Single instance for blockchain
+ .tables(1) // Single table for blockchain
+ .memories(1) // Single memory for blockchain
+ .table_elements(64) // Limited table elements for blockchain
+ .trap_on_grow_failure(false) // Return -1 on growth failure instead of trapping
+ .build();
+
+ let mut store = Store::new(&engine.inner, limits);
+
+ // Install the resource limiter
+ store.limiter(|limits| limits);
+
Box::new(wasm_store_t {
inner: WasmStoreRef {
inner: Arc::new(UnsafeCell::new(store)),
@@ -175,3 +229,40 @@ pub extern "C" fn wasmi_context_set_fuel(
) -> Option<Box<wasmi_error_t>> {
crate::handle_result(store.set_fuel(fuel), |()| {})
}
+
+////////////////////////////////////////////////////////////////////////////////////////
+////////////////////////////////////////////////////////////////////////////////////////
+
+/// Returns the current fuel of the wasm store context in `fuel`.
+///
+/// Wraps [`Store::get_fuel`].
+///
+/// # Errors
+///
+/// If [`Store::get_fuel`] errors.
+#[no_mangle]
+pub extern "C" fn wasm_store_get_fuel(
+ store: &wasm_store_t,
+ fuel: &mut u64,
+) -> Option<Box<wasmi_error_t>> {
+ let context = unsafe { store.inner.context() };
+ crate::handle_result(context.get_fuel(), |amt| {
+ *fuel = amt;
+ })
+}
+
+/// Sets the current fuel of the wasm store context to `fuel`.
+///
+/// Wraps [`Store::set_fuel`].
+///
+/// # Errors
+///
+/// If [`Store::set_fuel`] errors.
+#[no_mangle]
+pub extern "C" fn wasm_store_set_fuel(
+ store: &mut wasm_store_t,
+ fuel: u64,
+) -> Option<Box<wasmi_error_t>> {
+ let mut context = unsafe { store.inner.context_mut() };
+ crate::handle_result(context.set_fuel(fuel), |()| {})
+}
--
2.43.0

View File

@@ -341,6 +341,10 @@ abs(Number x) noexcept
Number
power(Number const& f, unsigned n);
// logarithm with base 10
Number
lg(Number const& value);
// Returns f^(1/d)
// Uses NewtonRaphson iterations until the result stops changing
// to find the root of the polynomial g(x) = x^d - f

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@@ -159,7 +159,7 @@ public:
@param count the number of items the slab allocator can allocate; note
that a count of 0 is valid and means that the allocator
is, effectively, disabled. This can be very useful in some
contexts (e.g. when minimal memory usage is needed) and
contexts (e.g. when mimimal memory usage is needed) and
allows for graceful failure.
*/
constexpr explicit SlabAllocator(

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@@ -546,7 +546,7 @@ operator<=>(base_uint<Bits, Tag> const& lhs, base_uint<Bits, Tag> const& rhs)
// This comparison might seem wrong on a casual inspection because it
// compares data internally stored as std::uint32_t byte-by-byte. But
// note that the underlying data is stored in big endian, even if the
// platform is little endian. This makes the comparison correct.
// plaform is little endian. This makes the comparison correct.
//
// FIXME: use std::lexicographical_compare_three_way once support is
// added to MacOS.

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@@ -9,7 +9,7 @@ namespace ripple {
/*
* MSVC 2019 version 16.9.0 added [[nodiscard]] to the std comparison
* operator() functions. boost::bimap checks that the comparator is a
* operator() functions. boost::bimap checks that the comparitor is a
* BinaryFunction, in part by calling the function and ignoring the value.
* These two things don't play well together. These wrapper classes simply
* strip [[nodiscard]] from operator() for use in boost::bimap.

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@@ -39,7 +39,7 @@ public:
The argument string is available to suites and
allows for customization of the test. Each suite
defines its own syntax for the argument string.
defines its own syntax for the argumnet string.
The same argument is passed to all suites.
*/
void

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@@ -55,6 +55,18 @@ public:
deliver_ = amount;
}
void
setGasUsed(std::optional<std::uint32_t> const gasUsed)
{
gasUsed_ = gasUsed;
}
void
setWasmReturnCode(std::int32_t const wasmReturnCode)
{
wasmReturnCode_ = wasmReturnCode;
}
/** Get the number of modified entries
*/
std::size_t
@@ -73,6 +85,8 @@ public:
private:
std::optional<STAmount> deliver_;
std::optional<std::uint32_t> gasUsed_;
std::optional<std::int32_t> wasmReturnCode_;
};
} // namespace ripple

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@@ -53,6 +53,8 @@ public:
TER ter,
std::optional<STAmount> const& deliver,
std::optional<uint256 const> const& parentBatchId,
std::optional<std::uint32_t> const& gasUsed,
std::optional<std::int32_t> const& wasmReturnCode,
bool isDryRun,
beast::Journal j);

View File

@@ -78,15 +78,12 @@ namespace detail {
#undef XRPL_FEATURE
#pragma push_macro("XRPL_FIX")
#undef XRPL_FIX
#pragma push_macro("XRPL_RETIRE_FEATURE")
#undef XRPL_RETIRE_FEATURE
#pragma push_macro("XRPL_RETIRE_FIX")
#undef XRPL_RETIRE_FIX
#pragma push_macro("XRPL_RETIRE")
#undef XRPL_RETIRE
#define XRPL_FEATURE(name, supported, vote) +1
#define XRPL_FIX(name, supported, vote) +1
#define XRPL_RETIRE_FEATURE(name) +1
#define XRPL_RETIRE_FIX(name) +1
#define XRPL_RETIRE(name) +1
// This value SHOULD be equal to the number of amendments registered in
// Feature.cpp. Because it's only used to reserve storage, and determine how
@@ -97,10 +94,8 @@ static constexpr std::size_t numFeatures =
#include <xrpl/protocol/detail/features.macro>
);
#undef XRPL_RETIRE_FEATURE
#pragma pop_macro("XRPL_RETIRE_FEATURE")
#undef XRPL_RETIRE_FIX
#pragma pop_macro("XRPL_RETIRE_FIX")
#undef XRPL_RETIRE
#pragma pop_macro("XRPL_RETIRE")
#undef XRPL_FIX
#pragma pop_macro("XRPL_FIX")
#undef XRPL_FEATURE
@@ -344,22 +339,17 @@ foreachFeature(FeatureBitset bs, F&& f)
#undef XRPL_FEATURE
#pragma push_macro("XRPL_FIX")
#undef XRPL_FIX
#pragma push_macro("XRPL_RETIRE_FEATURE")
#undef XRPL_RETIRE_FEATURE
#pragma push_macro("XRPL_RETIRE_FIX")
#undef XRPL_RETIRE_FIX
#pragma push_macro("XRPL_RETIRE")
#undef XRPL_RETIRE
#define XRPL_FEATURE(name, supported, vote) extern uint256 const feature##name;
#define XRPL_FIX(name, supported, vote) extern uint256 const fix##name;
#define XRPL_RETIRE_FEATURE(name)
#define XRPL_RETIRE_FIX(name)
#define XRPL_RETIRE(name)
#include <xrpl/protocol/detail/features.macro>
#undef XRPL_RETIRE_FEATURE
#pragma pop_macro("XRPL_RETIRE_FEATURE")
#undef XRPL_RETIRE_FIX
#pragma pop_macro("XRPL_RETIRE_FIX")
#undef XRPL_RETIRE
#pragma pop_macro("XRPL_RETIRE")
#undef XRPL_FIX
#pragma pop_macro("XRPL_FIX")
#undef XRPL_FEATURE

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@@ -5,6 +5,8 @@
namespace ripple {
constexpr std::uint32_t MICRO_DROPS_PER_DROP{1'000'000};
/** Reflects the fee settings for a particular ledger.
The fees are always the same for any transactions applied
@@ -15,6 +17,10 @@ struct Fees
XRPAmount base{0}; // Reference tx cost (drops)
XRPAmount reserve{0}; // Reserve base (drops)
XRPAmount increment{0}; // Reserve increment (drops)
std::uint32_t extensionComputeLimit{
0}; // Extension compute limit (instructions)
std::uint32_t extensionSizeLimit{0}; // Extension size limit (bytes)
std::uint32_t gasPrice{0}; // price of WASM gas (micro-drops)
explicit Fees() = default;
Fees(Fees const&) = default;

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@@ -39,6 +39,13 @@ private:
normalize();
public:
/* The range for the mantissa when normalized */
static std::int64_t constexpr minMantissa = 1000000000000000ull;
static std::int64_t constexpr maxMantissa = 9999999999999999ull;
/* The range for the exponent when normalized */
static int constexpr minExponent = -96;
static int constexpr maxExponent = 80;
IOUAmount() = default;
explicit IOUAmount(Number const& other);
IOUAmount(beast::Zero);

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@@ -212,6 +212,12 @@ page(Keylet const& root, std::uint64_t index = 0) noexcept
Keylet
escrow(AccountID const& src, std::uint32_t seq) noexcept;
inline Keylet
escrow(uint256 const& key) noexcept
{
return {ltESCROW, key};
}
/** A PaymentChannel */
Keylet
payChan(AccountID const& src, AccountID const& dst, std::uint32_t seq) noexcept;

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@@ -116,6 +116,13 @@ std::uint8_t constexpr vaultMaximumIOUScale = 18;
* another vault; counted from 0 */
std::uint8_t constexpr maxAssetCheckDepth = 5;
/** The maximum length of a Data field in Escrow object that can be updated by
* Wasm code */
std::size_t constexpr maxWasmDataLength = 4 * 1024;
/** The maximum length of a parameters passed from Wasm code*/
std::size_t constexpr maxWasmParamLength = 1024;
/** A ledger index. */
using LedgerIndex = std::uint32_t;

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@@ -231,7 +231,11 @@ verifyDigest(
SHA512-Half, and the resulting digest is signed.
*/
[[nodiscard]] bool
verify(PublicKey const& publicKey, Slice const& m, Slice const& sig) noexcept;
verify(
PublicKey const& publicKey,
Slice const& m,
Slice const& sig,
bool mustBeFullyCanonical = true) noexcept;
/** Calculate the 160-bit node ID from a node public key. */
NodeID

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@@ -31,8 +31,17 @@ class STTx final : public STObject, public CountedObject<STTx>
TxType tx_type_;
public:
static constexpr std::size_t minMultiSigners = 1;
static constexpr std::size_t maxMultiSigners = 32;
static std::size_t const minMultiSigners = 1;
// if rules are not supplied then the largest possible value is returned
static std::size_t
maxMultiSigners(Rules const* rules = 0)
{
if (rules && !rules->enabled(featureExpandedSignerList))
return 8;
return 32;
}
STTx() = delete;
STTx(STTx const& other) = default;
@@ -103,15 +112,22 @@ public:
std::optional<std::reference_wrapper<SField const>> signatureTarget =
{});
enum class RequireFullyCanonicalSig : bool { no, yes };
/** Check the signature.
@param requireCanonicalSig If `true`, check that the signature is fully
canonical. If `false`, only check that the signature is valid.
@param rules The current ledger rules.
@return `true` if valid signature. If invalid, the error message string.
*/
Expected<void, std::string>
checkSign(Rules const& rules) const;
checkSign(RequireFullyCanonicalSig requireCanonicalSig, Rules const& rules)
const;
Expected<void, std::string>
checkBatchSign(Rules const& rules) const;
checkBatchSign(
RequireFullyCanonicalSig requireCanonicalSig,
Rules const& rules) const;
// SQL Functions with metadata.
static std::string const&
@@ -133,25 +149,40 @@ public:
private:
/** Check the signature.
@param requireCanonicalSig If `true`, check that the signature is fully
canonical. If `false`, only check that the signature is valid.
@param rules The current ledger rules.
@param sigObject Reference to object that contains the signature fields.
Will be *this more often than not.
@return `true` if valid signature. If invalid, the error message string.
*/
Expected<void, std::string>
checkSign(Rules const& rules, STObject const& sigObject) const;
checkSign(
RequireFullyCanonicalSig requireCanonicalSig,
Rules const& rules,
STObject const& sigObject) const;
Expected<void, std::string>
checkSingleSign(STObject const& sigObject) const;
checkSingleSign(
RequireFullyCanonicalSig requireCanonicalSig,
STObject const& sigObject) const;
Expected<void, std::string>
checkMultiSign(Rules const& rules, STObject const& sigObject) const;
checkMultiSign(
RequireFullyCanonicalSig requireCanonicalSig,
Rules const& rules,
STObject const& sigObject) const;
Expected<void, std::string>
checkBatchSingleSign(STObject const& batchSigner) const;
checkBatchSingleSign(
STObject const& batchSigner,
RequireFullyCanonicalSig requireCanonicalSig) const;
Expected<void, std::string>
checkBatchMultiSign(STObject const& batchSigner, Rules const& rules) const;
checkBatchMultiSign(
STObject const& batchSigner,
RequireFullyCanonicalSig requireCanonicalSig,
Rules const& rules) const;
STBase*
copy(std::size_t n, void* buf) const override;

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@@ -122,6 +122,8 @@ enum TEMcodes : TERUnderlyingType {
temARRAY_TOO_LARGE,
temBAD_TRANSFER_FEE,
temINVALID_INNER_BATCH,
temBAD_WASM,
};
//------------------------------------------------------------------------------
@@ -166,6 +168,8 @@ enum TEFcodes : TERUnderlyingType {
tefNO_TICKET,
tefNFTOKEN_IS_NOT_TRANSFERABLE,
tefINVALID_LEDGER_FIX_TYPE,
tefNO_WASM,
tefWASM_FIELD_NOT_INCLUDED,
};
//------------------------------------------------------------------------------
@@ -347,6 +351,7 @@ enum TECcodes : TERUnderlyingType {
// backward compatibility with historical data on non-prod networks, can be
// reclaimed after those networks reset.
tecNO_DELEGATE_PERMISSION = 198,
tecWASM_REJECTED = 199,
};
//------------------------------------------------------------------------------

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@@ -85,6 +85,12 @@ public:
if (obj.isFieldPresent(sfParentBatchID))
parentBatchID_ = obj.getFieldH256(sfParentBatchID);
if (obj.isFieldPresent(sfGasUsed))
gasUsed_ = obj.getFieldU32(sfGasUsed);
if (obj.isFieldPresent(sfWasmReturnCode))
wasmReturnCode_ = obj.getFieldI32(sfWasmReturnCode);
}
std::optional<STAmount> const&
@@ -105,6 +111,30 @@ public:
parentBatchID_ = id;
}
void
setGasUsed(std::optional<std::uint32_t> const gasUsed)
{
gasUsed_ = gasUsed;
}
std::optional<std::uint32_t> const&
getGasUsed() const
{
return gasUsed_;
}
void
setWasmReturnCode(std::optional<std::int32_t> const wasmReturnCode)
{
wasmReturnCode_ = wasmReturnCode;
}
std::optional<std::int32_t> const&
getWasmReturnCode() const
{
return wasmReturnCode_;
}
private:
uint256 transactionID_;
std::uint32_t ledgerSeq_;
@@ -113,6 +143,8 @@ private:
std::optional<STAmount> deliveredAmount_;
std::optional<uint256> parentBatchID_;
std::optional<std::uint32_t> gasUsed_;
std::optional<std::int32_t> wasmReturnCode_;
STArray nodes_;
};

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@@ -4,16 +4,14 @@
#if !defined(XRPL_FIX)
#error "undefined macro: XRPL_FIX"
#endif
#if !defined(XRPL_RETIRE_FEATURE)
#error "undefined macro: XRPL_RETIRE_FEATURE"
#endif
#if !defined(XRPL_RETIRE_FIX)
#error "undefined macro: XRPL_RETIRE_FIX"
#if !defined(XRPL_RETIRE)
#error "undefined macro: XRPL_RETIRE"
#endif
// Add new amendments to the top of this list.
// Keep it sorted in reverse chronological order.
XRPL_FEATURE(SmartEscrow, Supported::no, VoteBehavior::DefaultNo)
XRPL_FEATURE(PermissionDelegationV1_1, Supported::no, VoteBehavior::DefaultNo)
XRPL_FIX (DirectoryLimit, Supported::yes, VoteBehavior::DefaultNo)
XRPL_FIX (IncludeKeyletFields, Supported::yes, VoteBehavior::DefaultNo)
@@ -29,7 +27,6 @@ XRPL_FEATURE(PermissionedDEX, Supported::yes, VoteBehavior::DefaultNo
XRPL_FEATURE(Batch, Supported::yes, VoteBehavior::DefaultNo)
XRPL_FEATURE(SingleAssetVault, Supported::no, VoteBehavior::DefaultNo)
XRPL_FIX (PayChanCancelAfter, Supported::yes, VoteBehavior::DefaultNo)
// Check flags in Credential transactions
XRPL_FIX (InvalidTxFlags, Supported::yes, VoteBehavior::DefaultNo)
XRPL_FIX (FrozenLPTokenTransfer, Supported::yes, VoteBehavior::DefaultNo)
XRPL_FEATURE(DeepFreeze, Supported::yes, VoteBehavior::DefaultNo)
@@ -63,7 +60,17 @@ XRPL_FEATURE(AMM, Supported::yes, VoteBehavior::DefaultNo
XRPL_FEATURE(Clawback, Supported::yes, VoteBehavior::DefaultNo)
XRPL_FIX (UniversalNumber, Supported::yes, VoteBehavior::DefaultNo)
XRPL_FEATURE(XRPFees, Supported::yes, VoteBehavior::DefaultNo)
XRPL_FEATURE(DisallowIncoming, Supported::yes, VoteBehavior::DefaultNo)
XRPL_FIX (RemoveNFTokenAutoTrustLine, Supported::yes, VoteBehavior::DefaultYes)
XRPL_FEATURE(ExpandedSignerList, Supported::yes, VoteBehavior::DefaultNo)
XRPL_FEATURE(FlowSortStrands, Supported::yes, VoteBehavior::DefaultYes)
XRPL_FEATURE(TicketBatch, Supported::yes, VoteBehavior::DefaultYes)
XRPL_FEATURE(NegativeUNL, Supported::yes, VoteBehavior::DefaultYes)
XRPL_FEATURE(RequireFullyCanonicalSig, Supported::yes, VoteBehavior::DefaultYes)
XRPL_FEATURE(DeletableAccounts, Supported::yes, VoteBehavior::DefaultYes)
XRPL_FEATURE(MultiSignReserve, Supported::yes, VoteBehavior::DefaultYes)
XRPL_FEATURE(Checks, Supported::yes, VoteBehavior::DefaultYes)
XRPL_FEATURE(Flow, Supported::yes, VoteBehavior::DefaultYes)
// The following amendments are obsolete, but must remain supported
// because they could potentially get enabled.
@@ -75,65 +82,53 @@ XRPL_FIX (RemoveNFTokenAutoTrustLine, Supported::yes, VoteBehavior::DefaultYe
// enabled (added to the ledger).
//
// If a feature remains obsolete for long enough that no clients are able
// to vote for it, the feature can be removed entirely from the code. Until
// then the feature needs to be marked explicitly as obsolete, e.g.
// XRPL_FEATURE(Example, Supported::yes, VoteBehavior::Obsolete)
// to vote for it, the feature can be removed (entirely?) from the code.
XRPL_FEATURE(CryptoConditionsSuite, Supported::yes, VoteBehavior::Obsolete)
// The following amendments have been active for at least two years. Their
// pre-amendment code has been removed and the identifiers are deprecated.
// All known amendments and amendments that may appear in a validated ledger
// must be registered either here or above with the "active" amendments
//
// Please keep both lists sorted alphabetically for convenience.
XRPL_RETIRE_FIX(1201)
XRPL_RETIRE_FIX(1368)
XRPL_RETIRE_FIX(1373)
XRPL_RETIRE_FIX(1512)
XRPL_RETIRE_FIX(1513)
XRPL_RETIRE_FIX(1515)
XRPL_RETIRE_FIX(1523)
XRPL_RETIRE_FIX(1528)
XRPL_RETIRE_FIX(1543)
XRPL_RETIRE_FIX(1571)
XRPL_RETIRE_FIX(1578)
XRPL_RETIRE_FIX(1623)
XRPL_RETIRE_FIX(1781)
XRPL_RETIRE_FIX(AmendmentMajorityCalc)
XRPL_RETIRE_FIX(CheckThreading)
XRPL_RETIRE_FIX(MasterKeyAsRegularKey)
XRPL_RETIRE_FIX(NonFungibleTokensV1_2)
XRPL_RETIRE_FIX(NFTokenRemint)
XRPL_RETIRE_FIX(PayChanRecipientOwnerDir)
XRPL_RETIRE_FIX(QualityUpperBound)
XRPL_RETIRE_FIX(ReducedOffersV1)
XRPL_RETIRE_FIX(RmSmallIncreasedQOffers)
XRPL_RETIRE_FIX(STAmountCanonicalize)
XRPL_RETIRE_FIX(TakerDryOfferRemoval)
XRPL_RETIRE_FIX(TrustLinesToSelf)
XRPL_RETIRE_FEATURE(Checks)
XRPL_RETIRE_FEATURE(CheckCashMakesTrustLine)
XRPL_RETIRE_FEATURE(CryptoConditions)
XRPL_RETIRE_FEATURE(CryptoConditionsSuite)
XRPL_RETIRE_FEATURE(DeletableAccounts)
XRPL_RETIRE_FEATURE(DepositAuth)
XRPL_RETIRE_FEATURE(DepositPreauth)
XRPL_RETIRE_FEATURE(DisallowIncoming)
XRPL_RETIRE_FEATURE(Escrow)
XRPL_RETIRE_FEATURE(EnforceInvariants)
XRPL_RETIRE_FEATURE(ExpandedSignerList)
XRPL_RETIRE_FEATURE(FeeEscalation)
XRPL_RETIRE_FEATURE(Flow)
XRPL_RETIRE_FEATURE(FlowCross)
XRPL_RETIRE_FEATURE(FlowSortStrands)
XRPL_RETIRE_FEATURE(HardenedValidations)
XRPL_RETIRE_FEATURE(ImmediateOfferKilled)
XRPL_RETIRE_FEATURE(MultiSign)
XRPL_RETIRE_FEATURE(MultiSignReserve)
XRPL_RETIRE_FEATURE(NegativeUNL)
XRPL_RETIRE_FEATURE(NonFungibleTokensV1_1)
XRPL_RETIRE_FEATURE(PayChan)
XRPL_RETIRE_FEATURE(RequireFullyCanonicalSig)
XRPL_RETIRE_FEATURE(SortedDirectories)
XRPL_RETIRE_FEATURE(TicketBatch)
XRPL_RETIRE_FEATURE(TickSize)
XRPL_RETIRE_FEATURE(TrustSetAuth)
// Please keep this list sorted alphabetically for convenience.
XRPL_RETIRE(fix1201)
XRPL_RETIRE(fix1368)
XRPL_RETIRE(fix1373)
XRPL_RETIRE(fix1512)
XRPL_RETIRE(fix1513)
XRPL_RETIRE(fix1515)
XRPL_RETIRE(fix1523)
XRPL_RETIRE(fix1528)
XRPL_RETIRE(fix1543)
XRPL_RETIRE(fix1571)
XRPL_RETIRE(fix1578)
XRPL_RETIRE(fix1623)
XRPL_RETIRE(fix1781)
XRPL_RETIRE(fixAmendmentMajorityCalc)
XRPL_RETIRE(fixCheckThreading)
XRPL_RETIRE(fixMasterKeyAsRegularKey)
XRPL_RETIRE(fixNonFungibleTokensV1_2)
XRPL_RETIRE(fixNFTokenRemint)
XRPL_RETIRE(fixPayChanRecipientOwnerDir)
XRPL_RETIRE(fixQualityUpperBound)
XRPL_RETIRE(fixReducedOffersV1)
XRPL_RETIRE(fixRmSmallIncreasedQOffers)
XRPL_RETIRE(fixSTAmountCanonicalize)
XRPL_RETIRE(fixTakerDryOfferRemoval)
XRPL_RETIRE(fixTrustLinesToSelf)
XRPL_RETIRE(CheckCashMakesTrustLine)
XRPL_RETIRE(CryptoConditions)
XRPL_RETIRE(DepositAuth)
XRPL_RETIRE(DepositPreauth)
XRPL_RETIRE(Escrow)
XRPL_RETIRE(EnforceInvariants)
XRPL_RETIRE(FeeEscalation)
XRPL_RETIRE(FlowCross)
XRPL_RETIRE(HardenedValidations)
XRPL_RETIRE(ImmediateOfferKilled)
XRPL_RETIRE(MultiSign)
XRPL_RETIRE(NonFungibleTokensV1_1)
XRPL_RETIRE(PayChan)
XRPL_RETIRE(SortedDirectories)
XRPL_RETIRE(TickSize)
XRPL_RETIRE(TrustSetAuth)

View File

@@ -301,6 +301,11 @@ LEDGER_ENTRY(ltFEE_SETTINGS, 0x0073, FeeSettings, fee, ({
{sfBaseFeeDrops, soeOPTIONAL},
{sfReserveBaseDrops, soeOPTIONAL},
{sfReserveIncrementDrops, soeOPTIONAL},
// Smart Escrow fields
{sfExtensionComputeLimit, soeOPTIONAL},
{sfExtensionSizeLimit, soeOPTIONAL},
{sfGasPrice, soeOPTIONAL},
{sfPreviousTxnID, soeOPTIONAL},
{sfPreviousTxnLgrSeq, soeOPTIONAL},
}))
@@ -331,6 +336,8 @@ LEDGER_ENTRY(ltESCROW, 0x0075, Escrow, escrow, ({
{sfCondition, soeOPTIONAL},
{sfCancelAfter, soeOPTIONAL},
{sfFinishAfter, soeOPTIONAL},
{sfFinishFunction, soeOPTIONAL},
{sfData, soeOPTIONAL},
{sfSourceTag, soeOPTIONAL},
{sfDestinationTag, soeOPTIONAL},
{sfOwnerNode, soeREQUIRED},

View File

@@ -96,6 +96,11 @@ TYPED_SFIELD(sfFirstNFTokenSequence, UINT32, 50)
TYPED_SFIELD(sfOracleDocumentID, UINT32, 51)
TYPED_SFIELD(sfPermissionValue, UINT32, 52)
TYPED_SFIELD(sfMutableFlags, UINT32, 53)
TYPED_SFIELD(sfExtensionComputeLimit, UINT32, 54)
TYPED_SFIELD(sfExtensionSizeLimit, UINT32, 55)
TYPED_SFIELD(sfGasPrice, UINT32, 56)
TYPED_SFIELD(sfComputationAllowance, UINT32, 57)
TYPED_SFIELD(sfGasUsed, UINT32, 58)
// 64-bit integers (common)
TYPED_SFIELD(sfIndexNext, UINT64, 1)
@@ -189,11 +194,8 @@ TYPED_SFIELD(sfAssetsMaximum, NUMBER, 3)
TYPED_SFIELD(sfAssetsTotal, NUMBER, 4)
TYPED_SFIELD(sfLossUnrealized, NUMBER, 5)
// int32
// NOTE: Do not use `sfDummyInt32`. It's so far the only use of INT32
// in this file and has been defined here for test only.
// TODO: Replace `sfDummyInt32` with actually useful field.
TYPED_SFIELD(sfDummyInt32, INT32, 1) // for tests only
// 32-bit signed (common)
TYPED_SFIELD(sfWasmReturnCode, INT32, 1)
// currency amount (common)
TYPED_SFIELD(sfAmount, AMOUNT, 1)
@@ -223,7 +225,7 @@ TYPED_SFIELD(sfBaseFeeDrops, AMOUNT, 22)
TYPED_SFIELD(sfReserveBaseDrops, AMOUNT, 23)
TYPED_SFIELD(sfReserveIncrementDrops, AMOUNT, 24)
// currency amount (AMM)
// currency amount (more)
TYPED_SFIELD(sfLPTokenOut, AMOUNT, 25)
TYPED_SFIELD(sfLPTokenIn, AMOUNT, 26)
TYPED_SFIELD(sfEPrice, AMOUNT, 27)
@@ -265,6 +267,7 @@ TYPED_SFIELD(sfAssetClass, VL, 28)
TYPED_SFIELD(sfProvider, VL, 29)
TYPED_SFIELD(sfMPTokenMetadata, VL, 30)
TYPED_SFIELD(sfCredentialType, VL, 31)
TYPED_SFIELD(sfFinishFunction, VL, 32)
// account (common)
TYPED_SFIELD(sfAccount, ACCOUNT, 1)

View File

@@ -50,11 +50,13 @@ TRANSACTION(ttESCROW_CREATE, 1, EscrowCreate,
noPriv,
({
{sfDestination, soeREQUIRED},
{sfDestinationTag, soeOPTIONAL},
{sfAmount, soeREQUIRED, soeMPTSupported},
{sfCondition, soeOPTIONAL},
{sfCancelAfter, soeOPTIONAL},
{sfFinishAfter, soeOPTIONAL},
{sfDestinationTag, soeOPTIONAL},
{sfFinishFunction, soeOPTIONAL},
{sfData, soeOPTIONAL},
}))
/** This transaction type completes an existing escrow. */
@@ -68,6 +70,7 @@ TRANSACTION(ttESCROW_FINISH, 2, EscrowFinish,
{sfFulfillment, soeOPTIONAL},
{sfCondition, soeOPTIONAL},
{sfCredentialIDs, soeOPTIONAL},
{sfComputationAllowance, soeOPTIONAL},
}))
@@ -155,7 +158,7 @@ TRANSACTION(ttOFFER_CANCEL, 8, OfferCancel,
#endif
TRANSACTION(ttTICKET_CREATE, 10, TicketCreate,
Delegation::delegatable,
uint256{},
featureTicketBatch,
noPriv,
({
{sfTicketCount, soeREQUIRED},
@@ -226,7 +229,7 @@ TRANSACTION(ttPAYCHAN_CLAIM, 15, PaymentChannelClaim,
#endif
TRANSACTION(ttCHECK_CREATE, 16, CheckCreate,
Delegation::delegatable,
uint256{},
featureChecks,
noPriv,
({
{sfDestination, soeREQUIRED},
@@ -242,7 +245,7 @@ TRANSACTION(ttCHECK_CREATE, 16, CheckCreate,
#endif
TRANSACTION(ttCHECK_CASH, 17, CheckCash,
Delegation::delegatable,
uint256{},
featureChecks,
noPriv,
({
{sfCheckID, soeREQUIRED},
@@ -256,7 +259,7 @@ TRANSACTION(ttCHECK_CASH, 17, CheckCash,
#endif
TRANSACTION(ttCHECK_CANCEL, 18, CheckCancel,
Delegation::delegatable,
uint256{},
featureChecks,
noPriv,
({
{sfCheckID, soeREQUIRED},
@@ -297,7 +300,7 @@ TRANSACTION(ttTRUST_SET, 20, TrustSet,
#endif
TRANSACTION(ttACCOUNT_DELETE, 21, AccountDelete,
Delegation::notDelegatable,
uint256{},
featureDeletableAccounts,
mustDeleteAcct,
({
{sfDestination, soeREQUIRED},
@@ -959,6 +962,10 @@ TRANSACTION(ttFEE, 101, SetFee,
{sfBaseFeeDrops, soeOPTIONAL},
{sfReserveBaseDrops, soeOPTIONAL},
{sfReserveIncrementDrops, soeOPTIONAL},
// Smart Escrow fields
{sfExtensionComputeLimit, soeOPTIONAL},
{sfExtensionSizeLimit, soeOPTIONAL},
{sfGasPrice, soeOPTIONAL},
}))
/** This system-generated transaction type is used to update the network's negative UNL

View File

@@ -253,6 +253,9 @@ JSS(expected_date_UTC); // out: any (warnings)
JSS(expected_ledger_size); // out: TxQ
JSS(expiration); // out: AccountOffers, AccountChannels,
// ValidatorList, amm_info
JSS(extension_compute); // out: NetworkOps
JSS(extension_size); // out: NetworkOps
JSS(gas_price); // out: NetworkOps
JSS(fail_hard); // in: Sign, Submit
JSS(failed); // out: InboundLedger
JSS(feature); // in: Feature
@@ -704,11 +707,11 @@ JSS(write_load); // out: GetCounts
#pragma push_macro("LEDGER_ENTRY_DUPLICATE")
#undef LEDGER_ENTRY_DUPLICATE
#define LEDGER_ENTRY(tag, value, name, rpcName, ...) \
JSS(name); \
#define LEDGER_ENTRY(tag, value, name, rpcName, fields) \
JSS(name); \
JSS(rpcName);
#define LEDGER_ENTRY_DUPLICATE(tag, value, name, rpcName, ...) JSS(rpcName);
#define LEDGER_ENTRY_DUPLICATE(tag, value, name, rpcName, fields) JSS(rpcName);
#include <xrpl/protocol/detail/ledger_entries.macro>

View File

@@ -30,7 +30,7 @@ Section::append(std::vector<std::string> const& lines)
// <key> '=' <value>
static boost::regex const re1(
"^" // start of line
"(?:\\s*)" // whitespace (optional)
"(?:\\s*)" // whitespace (optonal)
"([a-zA-Z][_a-zA-Z0-9]*)" // <key>
"(?:\\s*)" // whitespace (optional)
"(?:=)" // '='

View File

@@ -604,6 +604,48 @@ power(Number const& f, unsigned n)
return r;
}
// Continued fraction approximation of ln(x)
static Number
ln(Number const& x, unsigned iterations = 50)
{
if (x <= 0)
throw std::runtime_error("Not positive value");
Number const z = (x - 1) / (x + 1);
Number const zz = z * z;
Number denom = Number(1, -10);
// Construct the fraction from the bottom up
for (int i = iterations; i > 0; --i)
{
Number k(2 * i - 1);
denom = k - (i * i * zz / denom);
}
auto const r = 2 * z / denom;
return r;
}
Number
lg(Number const& x)
{
static Number const ln10 = ln(Number(10));
if (x <= Number(10))
{
auto const r = ln(x) / ln10;
return r;
}
// ln(x) = ln(normX * 10^norm) = ln(normX) + norm * ln(10)
int diffExp = 15 + x.exponent();
Number const normalX = x / Number(1, diffExp); // (1 <= normalX < 10)
auto const lnX = ln(normalX) + diffExp * ln10;
auto const r = lnX / ln10;
return r;
}
// Returns f^(1/d)
// Uses NewtonRaphson iterations until the result stops changing
// to find the non-negative root of the polynomial g(x) = x^d - f

View File

@@ -97,6 +97,8 @@ ApplyStateTable::apply(
TER ter,
std::optional<STAmount> const& deliver,
std::optional<uint256 const> const& parentBatchId,
std::optional<std::uint32_t> const& gasUsed,
std::optional<std::int32_t> const& wasmReturnCode,
bool isDryRun,
beast::Journal j)
{
@@ -111,6 +113,8 @@ ApplyStateTable::apply(
meta.setDeliveredAmount(deliver);
meta.setParentBatchID(parentBatchId);
meta.setGasUsed(gasUsed);
meta.setWasmReturnCode(wasmReturnCode);
Mods newMod;
for (auto& item : items_)

View File

@@ -16,7 +16,16 @@ ApplyViewImpl::apply(
bool isDryRun,
beast::Journal j)
{
return items_.apply(to, tx, ter, deliver_, parentBatchId, isDryRun, j);
return items_.apply(
to,
tx,
ter,
deliver_,
parentBatchId,
gasUsed_,
wasmReturnCode_,
isDryRun,
j);
}
std::size_t

View File

@@ -1863,7 +1863,7 @@ rippleSendIOU(
// Direct send: redeeming IOUs and/or sending own IOUs.
auto const ter =
rippleCreditIOU(view, uSenderID, uReceiverID, saAmount, false, j);
if (ter != tesSUCCESS)
if (view.rules().enabled(featureDeletableAccounts) && ter != tesSUCCESS)
return ter;
saActual = saAmount;
return tesSUCCESS;
@@ -2885,7 +2885,7 @@ assetsToSharesDeposit(
.truncate()};
Number const shareTotal = issuance->at(sfOutstandingAmount);
shares = ((shareTotal * assets) / assetTotal).truncate();
shares = (shareTotal * (assets / assetTotal)).truncate();
return shares;
}
@@ -2914,7 +2914,7 @@ sharesToAssetsDeposit(
false};
Number const shareTotal = issuance->at(sfOutstandingAmount);
assets = (assetTotal * shares) / shareTotal;
assets = assetTotal * (shares / shareTotal);
return assets;
}
@@ -2940,7 +2940,7 @@ assetsToSharesWithdraw(
if (assetTotal == 0)
return shares;
Number const shareTotal = issuance->at(sfOutstandingAmount);
Number result = (shareTotal * assets) / assetTotal;
Number result = shareTotal * (assets / assetTotal);
if (truncate == TruncateShares::yes)
result = result.truncate();
shares = result;
@@ -2968,7 +2968,7 @@ sharesToAssetsWithdraw(
if (assetTotal == 0)
return assets;
Number const shareTotal = issuance->at(sfOutstandingAmount);
assets = (assetTotal * shares) / shareTotal;
assets = assetTotal * (shares / shareTotal);
return assets;
}

View File

@@ -17,7 +17,7 @@ namespace BuildInfo {
// and follow the format described at http://semver.org/
//------------------------------------------------------------------------------
// clang-format off
char const* const versionString = "3.1.0-b0"
char const* const versionString = "3.0.0-b1"
// clang-format on
#if defined(DEBUG) || defined(SANITIZER)

View File

@@ -411,10 +411,8 @@ featureToName(uint256 const& f)
#undef XRPL_FEATURE
#pragma push_macro("XRPL_FIX")
#undef XRPL_FIX
#pragma push_macro("XRPL_RETIRE_FEATURE")
#undef XRPL_RETIRE_FEATURE
#pragma push_macro("XRPL_RETIRE_FIX")
#undef XRPL_RETIRE_FIX
#pragma push_macro("XRPL_RETIRE")
#undef XRPL_RETIRE
#define XRPL_FEATURE(name, supported, vote) \
uint256 const feature##name = registerFeature(#name, supported, vote);
@@ -422,23 +420,16 @@ featureToName(uint256 const& f)
uint256 const fix##name = registerFeature("fix" #name, supported, vote);
// clang-format off
#define XRPL_RETIRE_FEATURE(name) \
[[deprecated("The referenced feature amendment has been retired")]] \
[[maybe_unused]] \
uint256 const retiredFeature##name = retireFeature(#name);
#define XRPL_RETIRE_FIX(name) \
[[deprecated("The referenced fix amendment has been retired")]] \
[[maybe_unused]] \
uint256 const retiredFix##name = retireFeature("fix" #name);
#define XRPL_RETIRE(name) \
[[deprecated("The referenced amendment has been retired")]] \
[[maybe_unused]] \
uint256 const retired##name = retireFeature(#name);
// clang-format on
#include <xrpl/protocol/detail/features.macro>
#undef XRPL_RETIRE_FEATURE
#pragma pop_macro("XRPL_RETIRE_FEATURE")
#undef XRPL_RETIRE_FIX
#pragma pop_macro("XRPL_RETIRE_FIX")
#undef XRPL_RETIRE
#pragma pop_macro("XRPL_RETIRE")
#undef XRPL_FIX
#pragma pop_macro("XRPL_FIX")
#undef XRPL_FEATURE

View File

@@ -39,13 +39,6 @@ setSTNumberSwitchover(bool v)
*getStaticSTNumberSwitchover() = v;
}
/* The range for the mantissa when normalized */
static std::int64_t constexpr minMantissa = 1000000000000000ull;
static std::int64_t constexpr maxMantissa = 9999999999999999ull;
/* The range for the exponent when normalized */
static int constexpr minExponent = -96;
static int constexpr maxExponent = 80;
IOUAmount
IOUAmount::minPositiveAmount()
{
@@ -293,7 +286,8 @@ mulRatio(
{
if (!result)
{
return IOUAmount(-minMantissa, minExponent);
return IOUAmount(
-IOUAmount::minMantissa, IOUAmount::minExponent);
}
// This subtraction cannot underflow because `result` is not zero
return IOUAmount(result.mantissa() - 1, result.exponent());

View File

@@ -267,13 +267,18 @@ verifyDigest(
}
bool
verify(PublicKey const& publicKey, Slice const& m, Slice const& sig) noexcept
verify(
PublicKey const& publicKey,
Slice const& m,
Slice const& sig,
bool mustBeFullyCanonical) noexcept
{
if (auto const type = publicKeyType(publicKey))
{
if (*type == KeyType::secp256k1)
{
return verifyDigest(publicKey, sha512Half(m), sig);
return verifyDigest(
publicKey, sha512Half(m), sig, mustBeFullyCanonical);
}
else if (*type == KeyType::ed25519)
{

View File

@@ -237,7 +237,10 @@ STTx::sign(
}
Expected<void, std::string>
STTx::checkSign(Rules const& rules, STObject const& sigObject) const
STTx::checkSign(
RequireFullyCanonicalSig requireCanonicalSig,
Rules const& rules,
STObject const& sigObject) const
{
try
{
@@ -246,8 +249,9 @@ STTx::checkSign(Rules const& rules, STObject const& sigObject) const
// multi-signing. Otherwise we're single-signing.
Blob const& signingPubKey = sigObject.getFieldVL(sfSigningPubKey);
return signingPubKey.empty() ? checkMultiSign(rules, sigObject)
: checkSingleSign(sigObject);
return signingPubKey.empty()
? checkMultiSign(requireCanonicalSig, rules, sigObject)
: checkSingleSign(requireCanonicalSig, sigObject);
}
catch (std::exception const&)
{
@@ -256,16 +260,18 @@ STTx::checkSign(Rules const& rules, STObject const& sigObject) const
}
Expected<void, std::string>
STTx::checkSign(Rules const& rules) const
STTx::checkSign(
RequireFullyCanonicalSig requireCanonicalSig,
Rules const& rules) const
{
if (auto const ret = checkSign(rules, *this); !ret)
if (auto const ret = checkSign(requireCanonicalSig, rules, *this); !ret)
return ret;
/* Placeholder for field that will be added by Lending Protocol
if (isFieldPresent(sfCounterpartySignature))
{
auto const counterSig = getFieldObject(sfCounterpartySignature);
if (auto const ret = checkSign(rules, counterSig);
if (auto const ret = checkSign(requireCanonicalSig, rules, counterSig);
!ret)
return Unexpected("Counterparty: " + ret.error());
}
@@ -274,7 +280,9 @@ STTx::checkSign(Rules const& rules) const
}
Expected<void, std::string>
STTx::checkBatchSign(Rules const& rules) const
STTx::checkBatchSign(
RequireFullyCanonicalSig requireCanonicalSig,
Rules const& rules) const
{
try
{
@@ -291,8 +299,8 @@ STTx::checkBatchSign(Rules const& rules) const
{
Blob const& signingPubKey = signer.getFieldVL(sfSigningPubKey);
auto const result = signingPubKey.empty()
? checkBatchMultiSign(signer, rules)
: checkBatchSingleSign(signer);
? checkBatchMultiSign(signer, requireCanonicalSig, rules)
: checkBatchSingleSign(signer, requireCanonicalSig);
if (!result)
return result;
@@ -387,7 +395,10 @@ STTx::getMetaSQL(
}
static Expected<void, std::string>
singleSignHelper(STObject const& sigObject, Slice const& data)
singleSignHelper(
STObject const& sigObject,
Slice const& data,
bool const fullyCanonical)
{
// We don't allow both a non-empty sfSigningPubKey and an sfSigners.
// That would allow the transaction to be signed two ways. So if both
@@ -402,8 +413,11 @@ singleSignHelper(STObject const& sigObject, Slice const& data)
if (publicKeyType(makeSlice(spk)))
{
Blob const signature = sigObject.getFieldVL(sfTxnSignature);
validSig =
verify(PublicKey(makeSlice(spk)), data, makeSlice(signature));
validSig = verify(
PublicKey(makeSlice(spk)),
data,
makeSlice(signature),
fullyCanonical);
}
}
catch (std::exception const&)
@@ -418,24 +432,33 @@ singleSignHelper(STObject const& sigObject, Slice const& data)
}
Expected<void, std::string>
STTx::checkSingleSign(STObject const& sigObject) const
STTx::checkSingleSign(
RequireFullyCanonicalSig requireCanonicalSig,
STObject const& sigObject) const
{
auto const data = getSigningData(*this);
return singleSignHelper(sigObject, makeSlice(data));
bool const fullyCanonical = (getFlags() & tfFullyCanonicalSig) ||
(requireCanonicalSig == STTx::RequireFullyCanonicalSig::yes);
return singleSignHelper(sigObject, makeSlice(data), fullyCanonical);
}
Expected<void, std::string>
STTx::checkBatchSingleSign(STObject const& batchSigner) const
STTx::checkBatchSingleSign(
STObject const& batchSigner,
RequireFullyCanonicalSig requireCanonicalSig) const
{
Serializer msg;
serializeBatch(msg, getFlags(), getBatchTransactionIDs());
return singleSignHelper(batchSigner, msg.slice());
bool const fullyCanonical = (getFlags() & tfFullyCanonicalSig) ||
(requireCanonicalSig == STTx::RequireFullyCanonicalSig::yes);
return singleSignHelper(batchSigner, msg.slice(), fullyCanonical);
}
Expected<void, std::string>
multiSignHelper(
STObject const& sigObject,
std::optional<AccountID> txnAccountID,
bool const fullyCanonical,
std::function<Serializer(AccountID const&)> makeMsg,
Rules const& rules)
{
@@ -453,7 +476,7 @@ multiSignHelper(
// There are well known bounds that the number of signers must be within.
if (signers.size() < STTx::minMultiSigners ||
signers.size() > STTx::maxMultiSigners)
signers.size() > STTx::maxMultiSigners(&rules))
return Unexpected("Invalid Signers array size.");
// Signers must be in sorted order by AccountID.
@@ -492,7 +515,8 @@ multiSignHelper(
validSig = verify(
PublicKey(makeSlice(spk)),
makeMsg(accountID).slice(),
makeSlice(signature));
makeSlice(signature),
fullyCanonical);
}
}
catch (std::exception const& e)
@@ -511,8 +535,14 @@ multiSignHelper(
}
Expected<void, std::string>
STTx::checkBatchMultiSign(STObject const& batchSigner, Rules const& rules) const
STTx::checkBatchMultiSign(
STObject const& batchSigner,
RequireFullyCanonicalSig requireCanonicalSig,
Rules const& rules) const
{
bool const fullyCanonical = (getFlags() & tfFullyCanonicalSig) ||
(requireCanonicalSig == RequireFullyCanonicalSig::yes);
// We can ease the computational load inside the loop a bit by
// pre-constructing part of the data that we hash. Fill a Serializer
// with the stuff that stays constant from signature to signature.
@@ -521,6 +551,7 @@ STTx::checkBatchMultiSign(STObject const& batchSigner, Rules const& rules) const
return multiSignHelper(
batchSigner,
std::nullopt,
fullyCanonical,
[&dataStart](AccountID const& accountID) -> Serializer {
Serializer s = dataStart;
finishMultiSigningData(accountID, s);
@@ -530,8 +561,14 @@ STTx::checkBatchMultiSign(STObject const& batchSigner, Rules const& rules) const
}
Expected<void, std::string>
STTx::checkMultiSign(Rules const& rules, STObject const& sigObject) const
STTx::checkMultiSign(
RequireFullyCanonicalSig requireCanonicalSig,
Rules const& rules,
STObject const& sigObject) const
{
bool const fullyCanonical = (getFlags() & tfFullyCanonicalSig) ||
(requireCanonicalSig == RequireFullyCanonicalSig::yes);
// Used inside the loop in multiSignHelper to enforce that
// the account owner may not multisign for themselves.
auto const txnAccountID = &sigObject != this
@@ -545,6 +582,7 @@ STTx::checkMultiSign(Rules const& rules, STObject const& sigObject) const
return multiSignHelper(
sigObject,
txnAccountID,
fullyCanonical,
[&dataStart](AccountID const& accountID) -> Serializer {
Serializer s = dataStart;
finishMultiSigningData(accountID, s);

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