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No commits in common. "master" and "v1.15.6" have entirely different histories.

1189 changed files with 50357 additions and 160111 deletions

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@ -1,27 +0,0 @@
on:
workflow_dispatch:
### Note we cannot use cron-triggered builds right now, Gitea seems to have
### a few bugs in that area. So this workflow is scheduled using an external
### triggering mechanism and workflow_dispatch.
#
# schedule:
# - cron: '0 15 * * *'
jobs:
azure-cleanup:
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v4
- name: Set up Go
uses: actions/setup-go@v5
with:
go-version: 1.24
cache: false
- name: Run cleanup script
run: |
go run build/ci.go purge -store gethstore/builds -days 14
env:
AZURE_BLOBSTORE_TOKEN: ${{ secrets.AZURE_BLOBSTORE_TOKEN }}

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@ -1,46 +0,0 @@
on:
push:
tags:
- "v*"
workflow_dispatch:
### Note we cannot use cron-triggered builds right now, Gitea seems to have
### a few bugs in that area. So this workflow is scheduled using an external
### triggering mechanism and workflow_dispatch.
#
# schedule:
# - cron: '0 16 * * *'
jobs:
ppa:
name: PPA Upload
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v4
- name: Show environment
run: |
env
- name: Set up Go
uses: actions/setup-go@v5
with:
go-version: 1.24
cache: false
- name: Install deb toolchain
run: |
apt-get update
apt-get -yq --no-install-suggests --no-install-recommends install devscripts debhelper dput fakeroot
- name: Add launchpad to known_hosts
run: |
echo '|1|7SiYPr9xl3uctzovOTj4gMwAC1M=|t6ReES75Bo/PxlOPJ6/GsGbTrM0= ssh-rsa AAAAB3NzaC1yc2EAAAABIwAAAQEA0aKz5UTUndYgIGG7dQBV+HaeuEZJ2xPHo2DS2iSKvUL4xNMSAY4UguNW+pX56nAQmZKIZZ8MaEvSj6zMEDiq6HFfn5JcTlM80UwlnyKe8B8p7Nk06PPQLrnmQt5fh0HmEcZx+JU9TZsfCHPnX7MNz4ELfZE6cFsclClrKim3BHUIGq//t93DllB+h4O9LHjEUsQ1Sr63irDLSutkLJD6RXchjROXkNirlcNVHH/jwLWR5RcYilNX7S5bIkK8NlWPjsn/8Ua5O7I9/YoE97PpO6i73DTGLh5H9JN/SITwCKBkgSDWUt61uPK3Y11Gty7o2lWsBjhBUm2Y38CBsoGmBw==' >> ~/.ssh/known_hosts
- name: Run ci.go
run: |
go run build/ci.go debsrc -upload ethereum/ethereum -sftp-user geth-ci -signer "Go Ethereum Linux Builder <geth-ci@ethereum.org>"
env:
PPA_SIGNING_KEY: ${{ secrets.PPA_SIGNING_KEY }}
PPA_SSH_KEY: ${{ secrets.PPA_SSH_KEY }}

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@ -1,225 +0,0 @@
on:
push:
branches:
- "master"
tags:
- "v*"
workflow_dispatch:
jobs:
linux-intel:
name: Linux Build
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v4
- name: Set up Go
uses: actions/setup-go@v5
with:
go-version: 1.24
cache: false
- name: Install cross toolchain
run: |
apt-get update
apt-get -yq --no-install-suggests --no-install-recommends install gcc-multilib
- name: Build (amd64)
run: |
go run build/ci.go install -static -arch amd64 -dlgo
- name: Create/upload archive (amd64)
run: |
go run build/ci.go archive -arch amd64 -type tar -signer LINUX_SIGNING_KEY -upload gethstore/builds
rm -f build/bin/*
env:
LINUX_SIGNING_KEY: ${{ secrets.LINUX_SIGNING_KEY }}
AZURE_BLOBSTORE_TOKEN: ${{ secrets.AZURE_BLOBSTORE_TOKEN }}
- name: Build (386)
run: |
go run build/ci.go install -static -arch 386 -dlgo
- name: Create/upload archive (386)
run: |
go run build/ci.go archive -arch 386 -type tar -signer LINUX_SIGNING_KEY -upload gethstore/builds
rm -f build/bin/*
env:
LINUX_SIGNING_KEY: ${{ secrets.LINUX_SIGNING_KEY }}
AZURE_BLOBSTORE_TOKEN: ${{ secrets.AZURE_BLOBSTORE_TOKEN }}
linux-arm:
name: Linux Build (arm)
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v4
- name: Set up Go
uses: actions/setup-go@v5
with:
go-version: 1.24
cache: false
- name: Install cross toolchain
run: |
apt-get update
apt-get -yq --no-install-suggests --no-install-recommends install gcc-arm-linux-gnueabi libc6-dev-armel-cross gcc-arm-linux-gnueabihf libc6-dev-armhf-cross gcc-aarch64-linux-gnu libc6-dev-arm64-cross
ln -s /usr/include/asm-generic /usr/include/asm
- name: Build (arm64)
run: |
go run build/ci.go install -static -dlgo -arch arm64 -cc aarch64-linux-gnu-gcc
- name: Create/upload archive (arm64)
run: |
go run build/ci.go archive -arch arm64 -type tar -signer LINUX_SIGNING_KEY -upload gethstore/builds
rm -fr build/bin/*
env:
LINUX_SIGNING_KEY: ${{ secrets.LINUX_SIGNING_KEY }}
AZURE_BLOBSTORE_TOKEN: ${{ secrets.AZURE_BLOBSTORE_TOKEN }}
- name: Run build (arm5)
run: |
go run build/ci.go install -static -dlgo -arch arm -cc arm-linux-gnueabi-gcc
env:
GOARM: "5"
- name: Create/upload archive (arm5)
run: |
go run build/ci.go archive -arch arm -type tar -signer LINUX_SIGNING_KEY -upload gethstore/builds
env:
GOARM: "5"
LINUX_SIGNING_KEY: ${{ secrets.LINUX_SIGNING_KEY }}
AZURE_BLOBSTORE_TOKEN: ${{ secrets.AZURE_BLOBSTORE_TOKEN }}
- name: Run build (arm6)
run: |
go run build/ci.go install -static -dlgo -arch arm -cc arm-linux-gnueabi-gcc
env:
GOARM: "6"
- name: Create/upload archive (arm6)
run: |
go run build/ci.go archive -arch arm -type tar -signer LINUX_SIGNING_KEY -upload gethstore/builds
rm -fr build/bin/*
env:
GOARM: "6"
LINUX_SIGNING_KEY: ${{ secrets.LINUX_SIGNING_KEY }}
AZURE_BLOBSTORE_TOKEN: ${{ secrets.AZURE_BLOBSTORE_TOKEN }}
- name: Run build (arm7)
run: |
go run build/ci.go install -static -dlgo -arch arm -cc arm-linux-gnueabi-gcc
env:
GOARM: "7"
- name: Create/upload archive (arm7)
run: |
go run build/ci.go archive -arch arm -type tar -signer LINUX_SIGNING_KEY -upload gethstore/builds
rm -fr build/bin/*
env:
GOARM: "7"
LINUX_SIGNING_KEY: ${{ secrets.LINUX_SIGNING_KEY }}
AZURE_BLOBSTORE_TOKEN: ${{ secrets.AZURE_BLOBSTORE_TOKEN }}
keeper:
name: Keeper Build
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v4
- name: Set up Go
uses: actions/setup-go@v5
with:
go-version: 1.24
cache: false
- name: Install cross toolchain
run: |
apt-get update
apt-get -yq --no-install-suggests --no-install-recommends install gcc-multilib
- name: Build (amd64)
run: |
go run build/ci.go keeper -dlgo
windows:
name: Windows Build
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v4
- name: Set up Go
uses: actions/setup-go@v5
with:
go-version: 1.24
cache: false
- name: Install cross toolchain
run: |
apt-get update
apt-get -yq --no-install-suggests --no-install-recommends install \
gcc-mingw-w64-x86-64 gcc-mingw-w64-i686 nsis
- name: "Build (amd64)"
run: |
go run build/ci.go install -dlgo -os windows -arch amd64 -cc x86_64-w64-mingw32-gcc
- name: "Create/upload archive (amd64)"
run: |
go run build/ci.go archive -os windows -arch amd64 -type zip -signer WINDOWS_SIGNING_KEY -upload gethstore/builds
env:
WINDOWS_SIGNING_KEY: ${{ secrets.WINDOWS_SIGNING_KEY }}
AZURE_BLOBSTORE_TOKEN: ${{ secrets.AZURE_BLOBSTORE_TOKEN }}
- name: "Create/upload NSIS installer (amd64)"
run: |
go run build/ci.go nsis -arch amd64 -signer WINDOWS_SIGNING_KEY -upload gethstore/builds
rm -f build/bin/*
env:
WINDOWS_SIGNING_KEY: ${{ secrets.WINDOWS_SIGNING_KEY }}
AZURE_BLOBSTORE_TOKEN: ${{ secrets.AZURE_BLOBSTORE_TOKEN }}
- name: "Build (386)"
run: |
go run build/ci.go install -dlgo -os windows -arch 386 -cc i686-w64-mingw32-gcc
- name: "Create/upload archive (386)"
run: |
go run build/ci.go archive -os windows -arch 386 -type zip -signer WINDOWS_SIGNING_KEY -upload gethstore/builds
env:
WINDOWS_SIGNING_KEY: ${{ secrets.WINDOWS_SIGNING_KEY }}
AZURE_BLOBSTORE_TOKEN: ${{ secrets.AZURE_BLOBSTORE_TOKEN }}
- name: "Create/upload NSIS installer (386)"
run: |
go run build/ci.go nsis -arch 386 -signer WINDOWS_SIGNING_KEY -upload gethstore/builds
rm -f build/bin/*
env:
WINDOWS_SIGNING_KEY: ${{ secrets.WINDOWS_SIGNING_KEY }}
AZURE_BLOBSTORE_TOKEN: ${{ secrets.AZURE_BLOBSTORE_TOKEN }}
docker:
name: Docker Image
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v4
- name: Set up QEMU
uses: docker/setup-qemu-action@v3
- name: Set up Docker Buildx
uses: docker/setup-buildx-action@v3
- name: Set up Go
uses: actions/setup-go@v5
with:
go-version: 1.24
cache: false
- name: Run docker build
env:
DOCKER_HUB_USERNAME: ${{ secrets.DOCKER_HUB_USERNAME }}
DOCKER_HUB_PASSWORD: ${{ secrets.DOCKER_HUB_PASSWORD }}
run: |
go run build/ci.go dockerx -platform linux/amd64,linux/arm64,linux/riscv64 -upload

27
.github/CODEOWNERS vendored
View file

@ -9,23 +9,28 @@ beacon/light/ @zsfelfoldi
beacon/merkle/ @zsfelfoldi beacon/merkle/ @zsfelfoldi
beacon/types/ @zsfelfoldi @fjl beacon/types/ @zsfelfoldi @fjl
beacon/params/ @zsfelfoldi @fjl beacon/params/ @zsfelfoldi @fjl
cmd/evm/ @MariusVanDerWijden @lightclient cmd/clef/ @holiman
cmd/keeper/ @gballet cmd/evm/ @holiman @MariusVanDerWijden @lightclient
core/state/ @rjl493456442 core/state/ @rjl493456442 @holiman
crypto/ @gballet @jwasinger @fjl crypto/ @gballet @jwasinger @holiman @fjl
core/ @rjl493456442 core/ @holiman @rjl493456442
eth/ @rjl493456442 eth/ @holiman @rjl493456442
eth/catalyst/ @MariusVanDerWijden @lightclient @fjl @jwasinger eth/catalyst/ @MariusVanDerWijden @lightclient @fjl @jwasinger
eth/tracers/ @s1na
ethclient/ @fjl ethclient/ @fjl
ethdb/ @rjl493456442 ethdb/ @rjl493456442
event/ @fjl event/ @fjl
trie/ @rjl493456442 @gballet trie/ @rjl493456442
triedb/ @rjl493456442 triedb/ @rjl493456442
internal/ethapi/ @fjl @lightclient core/tracing/ @s1na
graphql/ @s1na
internal/ethapi/ @fjl @s1na @lightclient
internal/era/ @lightclient internal/era/ @lightclient
miner/ @MariusVanDerWijden @fjl @rjl493456442 metrics/ @holiman
miner/ @MariusVanDerWijden @holiman @fjl @rjl493456442
node/ @fjl node/ @fjl
p2p/ @fjl @zsfelfoldi p2p/ @fjl @zsfelfoldi
rlp/ @fjl rlp/ @fjl
params/ @fjl @gballet @rjl493456442 @zsfelfoldi params/ @fjl @holiman @karalabe @gballet @rjl493456442 @zsfelfoldi
rpc/ @fjl rpc/ @fjl @holiman
signer/ @holiman

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@ -1,29 +0,0 @@
on:
push:
branches:
- freebsd-github-action
workflow_dispatch:
jobs:
build:
name: FreeBSD-build
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v6
with:
submodules: false
- name: Test in FreeBSD
id: test
uses: vmactions/freebsd-vm@v1
with:
release: "15.0"
usesh: true
prepare: |
pkg install -y go
run: |
freebsd-version
uname -a
go version
go run ./build/ci.go test -p 8

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@ -1,25 +1,18 @@
name: i386 linux tests
on: on:
push: push:
branches: branches: [ master ]
- master
pull_request: pull_request:
branches: branches: [ master ]
- master
workflow_dispatch: workflow_dispatch:
# Free runner capacity by cancelling superseded PR runs.
concurrency:
group: ${{ github.workflow }}-${{ github.event.pull_request.number || github.ref }}
cancel-in-progress: ${{ github.event_name == 'pull_request' }}
jobs: jobs:
lint: lint:
name: Lint name: Lint
runs-on: [self-hosted-ghr, size-s-x64] runs-on: self-hosted
steps: steps:
- uses: actions/checkout@v4 - uses: actions/checkout@v4
with:
submodules: false
# Cache build tools to avoid downloading them each time # Cache build tools to avoid downloading them each time
- uses: actions/cache@v4 - uses: actions/cache@v4
@ -30,7 +23,7 @@ jobs:
- name: Set up Go - name: Set up Go
uses: actions/setup-go@v5 uses: actions/setup-go@v5
with: with:
go-version: 1.25 go-version: 1.23.0
cache: false cache: false
- name: Run linters - name: Run linters
@ -39,107 +32,17 @@ jobs:
go run build/ci.go check_generate go run build/ci.go check_generate
go run build/ci.go check_baddeps go run build/ci.go check_baddeps
keeper: build:
name: Keeper Builds runs-on: self-hosted
needs: test
runs-on: [self-hosted-ghr, size-l-x64]
steps: steps:
- uses: actions/checkout@v4 - uses: actions/checkout@v4
with:
submodules: true
- name: Set up Go - name: Set up Go
uses: actions/setup-go@v5 uses: actions/setup-go@v5
with: with:
go-version: '1.25' go-version: 1.24.0
cache: false cache: false
- name: Build
run: go run build/ci.go keeper
test-32bit:
name: "32bit tests"
needs: test
runs-on: [self-hosted-ghr, size-l-x64]
steps:
- uses: actions/checkout@v4
with:
submodules: false
- name: Set up Go
uses: actions/setup-go@v5
with:
go-version: '1.25'
cache: false
- name: Install cross toolchain
run: |
sudo apt-get update
sudo apt-get -yq --no-install-suggests --no-install-recommends install gcc-multilib
- name: Build
run: go run build/ci.go test -arch 386 -short -p 8
test:
name: Test
needs: lint
runs-on: [self-hosted-ghr, size-l-x64]
strategy:
matrix:
go:
- '1.25'
- '1.24'
steps:
- uses: actions/checkout@v4
with:
submodules: true
- name: Set up Go
uses: actions/setup-go@v5
with:
go-version: ${{ matrix.go }}
cache: false
- name: Run tests - name: Run tests
run: go run build/ci.go test -p 8 run: go test -short ./...
env:
windows: GOOS: linux
name: Windows ${{ matrix.arch }} GOARCH: 386
needs: lint
runs-on: [self-hosted, windows, x64]
strategy:
fail-fast: false
matrix:
include:
- arch: amd64
mingw: 'C:\msys64\mingw64'
test: true
- arch: '386'
mingw: 'C:\msys64\mingw32'
test: false
env:
GETH_MINGW: ${{ matrix.mingw }}
GETH_CC: ${{ matrix.mingw }}\bin\gcc.exe
steps:
- uses: actions/checkout@v4
with:
submodules: true
- name: Set up Go
uses: actions/setup-go@v5
with:
go-version: '1.25'
cache: false
- name: Build
shell: cmd
run: |
set PATH=%GETH_MINGW%\bin;%PATH%
go run build/ci.go install -arch ${{ matrix.arch }} -cc %GETH_CC%
- name: Run tests
if: matrix.test
shell: cmd
run: |
set PATH=%GETH_MINGW%\bin;%PATH%
go run build/ci.go test -arch ${{ matrix.arch }} -cc %GETH_CC% -short -p 8

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@ -1,83 +0,0 @@
name: PR Format Validation
on:
pull_request:
types: [opened, edited, synchronize]
jobs:
validate-pr:
runs-on: ubuntu-latest
steps:
- name: Check for Spam PR
uses: actions/github-script@v7
with:
script: |
const prTitle = context.payload.pull_request.title;
const spamRegex = /^(feat|chore|fix)(\(.*\))?\s*:/i;
if (spamRegex.test(prTitle)) {
// Leave a comment explaining why
await github.rest.issues.createComment({
owner: context.repo.owner,
repo: context.repo.repo,
issue_number: context.payload.pull_request.number,
body: `## PR Closed as Spam
This PR was automatically closed because the title format \`feat:\`, \`fix:\`, or \`chore:\` is commonly associated with spam contributions.
If this is a legitimate contribution, please:
1. Review our contribution guidelines
2. Use the correct PR title format: \`directory, ...: description\`
3. Open a new PR with the proper title format
Thank you for your understanding.`
});
// Close the PR
await github.rest.pulls.update({
owner: context.repo.owner,
repo: context.repo.repo,
pull_number: context.payload.pull_request.number,
state: 'closed'
});
core.setFailed('PR closed as spam due to suspicious title format');
return;
}
console.log('✅ PR passed spam check');
- name: Checkout repository
uses: actions/checkout@v4
- name: Check PR Title Format
uses: actions/github-script@v7
with:
script: |
const fs = require('fs');
const path = require('path');
const prTitle = context.payload.pull_request.title;
const titleRegex = /^([\w\s,{}/.]+): .+/;
if (!titleRegex.test(prTitle)) {
core.setFailed(`PR title "${prTitle}" does not match required format: directory, ...: description`);
return;
}
const match = prTitle.match(titleRegex);
const dirPart = match[1];
const directories = dirPart.split(',').map(d => d.trim());
const missingDirs = [];
for (const dir of directories) {
const fullPath = path.join(process.env.GITHUB_WORKSPACE, dir);
if (!fs.existsSync(fullPath)) {
missingDirs.push(dir);
}
}
if (missingDirs.length > 0) {
core.setFailed(`The following directories in the PR title do not exist: ${missingDirs.join(', ')}`);
return;
}
console.log('✅ PR title format is valid');

14
.gitignore vendored
View file

@ -43,17 +43,3 @@ profile.cov
.vscode .vscode
tests/spec-tests/ tests/spec-tests/
# binaries
cmd/abidump/abidump
cmd/abigen/abigen
cmd/blsync/blsync
cmd/clef/clef
cmd/devp2p/devp2p
cmd/era/era
cmd/ethkey/ethkey
cmd/evm/evm
cmd/geth/geth
cmd/rlpdump/rlpdump
cmd/workload/workload
cmd/keeper/keeper

View file

@ -1,25 +1,31 @@
# This file configures github.com/golangci/golangci-lint. # This file configures github.com/golangci/golangci-lint.
version: '2'
run: run:
timeout: 20m
tests: true tests: true
linters: linters:
default: none disable-all: true
enable: enable:
- bidichk - goimports
- copyloopvar - gosimple
- durationcheck
- gocheckcompilerdirectives
- govet - govet
- ineffassign - ineffassign
- mirror
- misspell - misspell
- reassign
- revive # only certain checks enabled
- staticcheck
- unconvert - unconvert
- typecheck
- unused - unused
- usetesting - staticcheck
- bidichk
- durationcheck
- copyloopvar
- whitespace - whitespace
- revive # only certain checks enabled
- durationcheck
- gocheckcompilerdirectives
- reassign
- mirror
- usetesting
### linters we tried and will not be using: ### linters we tried and will not be using:
### ###
# - structcheck # lots of false positives # - structcheck # lots of false positives
@ -30,67 +36,44 @@ linters:
# - exhaustive # silly check # - exhaustive # silly check
# - makezero # false positives # - makezero # false positives
# - nilerr # several intentional # - nilerr # several intentional
settings:
staticcheck: linters-settings:
checks: gofmt:
# disable Quickfixes simplify: true
- -QF1* revive:
revive: enable-all-rules: false
enable-all-rules: false # here we enable specific useful rules
# here we enable specific useful rules # see https://golangci-lint.run/usage/linters/#revive for supported rules
# see https://golangci-lint.run/usage/linters/#revive for supported rules
rules:
- name: receiver-naming
severity: warning
disabled: false
exclude:
- ''
exclusions:
generated: lax
presets:
- comments
- common-false-positives
- legacy
- std-error-handling
rules: rules:
- linters: - name: receiver-naming
- deadcode severity: warning
- staticcheck disabled: false
path: crypto/bn256/cloudflare/optate.go exclude: [""]
- linters:
- revive issues:
path: crypto/bn256/ # default is true. Enables skipping of directories:
- path: cmd/utils/flags.go # vendor$, third_party$, testdata$, examples$, Godeps$, builtin$
text: "SA1019: cfg.TxLookupLimit is deprecated: use 'TransactionHistory' instead." exclude-dirs-use-default: true
- path: cmd/utils/flags.go exclude-files:
text: "SA1019: ethconfig.Defaults.TxLookupLimit is deprecated: use 'TransactionHistory' instead." - core/genesis_alloc.go
- path: internal/build/pgp.go exclude-rules:
text: 'SA1019: "golang.org/x/crypto/openpgp" is deprecated: this package is unmaintained except for security fixes.' - path: crypto/bn256/cloudflare/optate.go
- path: core/vm/contracts.go linters:
text: 'SA1019: "golang.org/x/crypto/ripemd160" is deprecated: RIPEMD-160 is a legacy hash and should not be used for new applications.' - deadcode
- path: (.+)\.go$ - staticcheck
text: 'SA1019: event.TypeMux is deprecated: use Feed' - path: crypto/bn256/
- path: (.+)\.go$ linters:
text: 'SA1019: strings.Title is deprecated' - revive
- path: (.+)\.go$ - path: cmd/utils/flags.go
text: 'SA1019: strings.Title has been deprecated since Go 1.18 and an alternative has been available since Go 1.0: The rule Title uses for word boundaries does not handle Unicode punctuation properly. Use golang.org/x/text/cases instead.' text: "SA1019: cfg.TxLookupLimit is deprecated: use 'TransactionHistory' instead."
- path: (.+)\.go$ - path: cmd/utils/flags.go
text: 'SA1029: should not use built-in type string as key for value' text: "SA1019: ethconfig.Defaults.TxLookupLimit is deprecated: use 'TransactionHistory' instead."
paths: - path: internal/build/pgp.go
- core/genesis_alloc.go text: 'SA1019: "golang.org/x/crypto/openpgp" is deprecated: this package is unmaintained except for security fixes.'
- third_party$ - path: core/vm/contracts.go
- builtin$ text: 'SA1019: "golang.org/x/crypto/ripemd160" is deprecated: RIPEMD-160 is a legacy hash and should not be used for new applications.'
- examples$ exclude:
formatters: - 'SA1019: event.TypeMux is deprecated: use Feed'
enable: - 'SA1019: strings.Title is deprecated'
- goimports - 'SA1019: strings.Title has been deprecated since Go 1.18 and an alternative has been available since Go 1.0: The rule Title uses for word boundaries does not handle Unicode punctuation properly. Use golang.org/x/text/cases instead.'
settings: - 'SA1029: should not use built-in type string as key for value'
gofmt:
simplify: true
exclusions:
generated: lax
paths:
- core/genesis_alloc.go
- third_party$
- builtin$
- examples$

View file

@ -48,15 +48,8 @@ Bas van Kervel <bas@ethdev.com> <bas-vk@users.noreply.github.com>
Boqin Qin <bobbqqin@bupt.edu.cn> Boqin Qin <bobbqqin@bupt.edu.cn>
Boqin Qin <bobbqqin@bupt.edu.cn> <Bobbqqin@gmail.com> Boqin Qin <bobbqqin@bupt.edu.cn> <Bobbqqin@gmail.com>
Bosul Mun <bsbs8645@snu.ac.kr>
Bosul Mun <bsbs8645@snu.ac.kr> <bosul.mun@ethereum.org>
Casey Detrio <cdetrio@gmail.com> Casey Detrio <cdetrio@gmail.com>
Charlotte <tqpcharlie@proton.me>
Charlotte <tqpcharlie@proton.me> <Zachinquarantine@protonmail.com>
Charlotte <tqpcharlie@proton.me> <zachinquarantine@yahoo.com>
Cheng Li <lob4tt@gmail.com> Cheng Li <lob4tt@gmail.com>
Chris Ziogas <ziogaschr@gmail.com> Chris Ziogas <ziogaschr@gmail.com>
@ -308,6 +301,9 @@ Yohann Léon <sybiload@gmail.com>
yzb <335357057@qq.com> yzb <335357057@qq.com>
yzb <335357057@qq.com> <flyingyzb@gmail.com> yzb <335357057@qq.com> <flyingyzb@gmail.com>
Zachinquarantine <Zachinquarantine@protonmail.com>
Zachinquarantine <Zachinquarantine@protonmail.com> <zachinquarantine@yahoo.com>
Ziyuan Zhong <zzy.albert@163.com> Ziyuan Zhong <zzy.albert@163.com>
Zsolt Felföldi <zsfelfoldi@gmail.com> Zsolt Felföldi <zsfelfoldi@gmail.com>

138
.travis.yml Normal file
View file

@ -0,0 +1,138 @@
language: go
go_import_path: github.com/ethereum/go-ethereum
sudo: false
jobs:
allow_failures:
- stage: build
os: osx
env:
- azure-osx
include:
# This builder create and push the Docker images for all architectures
- stage: build
if: type = push
os: linux
arch: amd64
dist: focal
go: 1.24.x
env:
- docker
services:
- docker
git:
submodules: false # avoid cloning ethereum/tests
before_install:
- export DOCKER_CLI_EXPERIMENTAL=enabled
script:
- go run build/ci.go dockerx -platform "linux/amd64,linux/arm64,linux/riscv64" -hub ethereum/client-go -upload
# This builder does the Linux Azure uploads
- stage: build
if: type = push
os: linux
dist: focal
sudo: required
go: 1.24.x
env:
- azure-linux
git:
submodules: false # avoid cloning ethereum/tests
script:
# build amd64
- go run build/ci.go install -dlgo
- go run build/ci.go archive -type tar -signer LINUX_SIGNING_KEY -signify SIGNIFY_KEY -upload gethstore/builds
# build 386
- sudo -E apt-get -yq --no-install-suggests --no-install-recommends install gcc-multilib
- git status --porcelain
- go run build/ci.go install -dlgo -arch 386
- go run build/ci.go archive -arch 386 -type tar -signer LINUX_SIGNING_KEY -signify SIGNIFY_KEY -upload gethstore/builds
# Switch over GCC to cross compilation (breaks 386, hence why do it here only)
- sudo -E apt-get -yq --no-install-suggests --no-install-recommends --force-yes install gcc-arm-linux-gnueabi libc6-dev-armel-cross gcc-arm-linux-gnueabihf libc6-dev-armhf-cross gcc-aarch64-linux-gnu libc6-dev-arm64-cross
- sudo ln -s /usr/include/asm-generic /usr/include/asm
- GOARM=5 go run build/ci.go install -dlgo -arch arm -cc arm-linux-gnueabi-gcc
- GOARM=5 go run build/ci.go archive -arch arm -type tar -signer LINUX_SIGNING_KEY -signify SIGNIFY_KEY -upload gethstore/builds
- GOARM=6 go run build/ci.go install -dlgo -arch arm -cc arm-linux-gnueabi-gcc
- GOARM=6 go run build/ci.go archive -arch arm -type tar -signer LINUX_SIGNING_KEY -signify SIGNIFY_KEY -upload gethstore/builds
- GOARM=7 go run build/ci.go install -dlgo -arch arm -cc arm-linux-gnueabihf-gcc
- GOARM=7 go run build/ci.go archive -arch arm -type tar -signer LINUX_SIGNING_KEY -signify SIGNIFY_KEY -upload gethstore/builds
- go run build/ci.go install -dlgo -arch arm64 -cc aarch64-linux-gnu-gcc
- go run build/ci.go archive -arch arm64 -type tar -signer LINUX_SIGNING_KEY -signify SIGNIFY_KEY -upload gethstore/builds
# This builder does the OSX Azure uploads
- stage: build
if: type = push
os: osx
osx_image: xcode14.2
go: 1.23.1 # See https://github.com/ethereum/go-ethereum/pull/30478
env:
- azure-osx
git:
submodules: false # avoid cloning ethereum/tests
script:
- ln -sf /Users/travis/gopath/bin/go1.23.1 /usr/local/bin/go # Work around travis go-setup bug
- go run build/ci.go install -dlgo
- go run build/ci.go archive -type tar -signer OSX_SIGNING_KEY -signify SIGNIFY_KEY -upload gethstore/builds
- go run build/ci.go install -dlgo -arch arm64
- go run build/ci.go archive -arch arm64 -type tar -signer OSX_SIGNING_KEY -signify SIGNIFY_KEY -upload gethstore/builds
# These builders run the tests
- stage: build
if: type = push
os: linux
arch: amd64
dist: focal
go: 1.24.x
script:
- travis_wait 45 go run build/ci.go test $TEST_PACKAGES
- stage: build
if: type = push
os: linux
dist: focal
go: 1.23.x
script:
- travis_wait 45 go run build/ci.go test $TEST_PACKAGES
# This builder does the Ubuntu PPA nightly uploads
- stage: build
if: type = cron || (type = push && tag ~= /^v[0-9]/)
os: linux
dist: focal
go: 1.24.x
env:
- ubuntu-ppa
git:
submodules: false # avoid cloning ethereum/tests
before_install:
- sudo -E apt-get -yq --no-install-suggests --no-install-recommends install devscripts debhelper dput fakeroot
script:
- echo '|1|7SiYPr9xl3uctzovOTj4gMwAC1M=|t6ReES75Bo/PxlOPJ6/GsGbTrM0= ssh-rsa AAAAB3NzaC1yc2EAAAABIwAAAQEA0aKz5UTUndYgIGG7dQBV+HaeuEZJ2xPHo2DS2iSKvUL4xNMSAY4UguNW+pX56nAQmZKIZZ8MaEvSj6zMEDiq6HFfn5JcTlM80UwlnyKe8B8p7Nk06PPQLrnmQt5fh0HmEcZx+JU9TZsfCHPnX7MNz4ELfZE6cFsclClrKim3BHUIGq//t93DllB+h4O9LHjEUsQ1Sr63irDLSutkLJD6RXchjROXkNirlcNVHH/jwLWR5RcYilNX7S5bIkK8NlWPjsn/8Ua5O7I9/YoE97PpO6i73DTGLh5H9JN/SITwCKBkgSDWUt61uPK3Y11Gty7o2lWsBjhBUm2Y38CBsoGmBw==' >> ~/.ssh/known_hosts
- go run build/ci.go debsrc -upload ethereum/ethereum -sftp-user geth-ci -signer "Go Ethereum Linux Builder <geth-ci@ethereum.org>"
# This builder does the Azure archive purges to avoid accumulating junk
- stage: build
if: type = cron
os: linux
dist: focal
go: 1.24.x
env:
- azure-purge
git:
submodules: false # avoid cloning ethereum/tests
script:
- go run build/ci.go purge -store gethstore/builds -days 14
# This builder executes race tests
- stage: build
if: type = cron
os: linux
dist: focal
go: 1.24.x
env:
- racetests
script:
- travis_wait 60 go run build/ci.go test -race $TEST_PACKAGES

102
AGENTS.md
View file

@ -1,102 +0,0 @@
# AGENTS
## Guidelines
- **Keep changes minimal and focused.** Only modify code directly related to the task at hand. Do not refactor unrelated code, rename existing variables or functions for style, or bundle unrelated fixes into the same commit or PR.
- **Do not add, remove, or update dependencies** unless the task explicitly requires it.
## Pre-Commit Checklist
Before every commit, run **all** of the following checks and ensure they pass:
### 1. Formatting
Before committing, always run `gofmt` and `goimports` on all modified files:
```sh
gofmt -w <modified files>
goimports -w <modified files>
```
### 2. Build All Commands
Verify that all tools compile successfully:
```sh
make all
```
This builds all executables under `cmd/`, including `keeper` which has special build requirements.
### 3. Tests
While iterating during development, use `-short` for faster feedback:
```sh
go run ./build/ci.go test -short
```
Before committing, run the full test suite **without** `-short` to ensure all tests pass, including the Ethereum execution-spec tests and all state/block test permutations:
```sh
go run ./build/ci.go test
```
### 4. Linting
```sh
go run ./build/ci.go lint
```
This runs additional style checks. Fix any issues before committing.
### 5. Generated Code
```sh
go run ./build/ci.go check_generate
```
Ensures that all generated files (e.g., `gen_*.go`) are up to date. If this fails, first install the required code generators by running `make devtools`, then run the appropriate `go generate` commands and include the updated files in your commit.
### 6. Dependency Hygiene
```sh
go run ./build/ci.go check_baddeps
```
Verifies that no forbidden dependencies have been introduced.
## What to include in commits
Do not commit binaries, whether they are produced by the main build or byproducts of investigations.
## Commit Message Format
Commit messages must be prefixed with the package(s) they modify, followed by a short lowercase description:
```
<package(s)>: description
```
Examples:
- `core/vm: fix stack overflow in PUSH instruction`
- `eth, rpc: make trace configs optional`
- `cmd/geth: add new flag for sync mode`
Use comma-separated package names when multiple areas are affected. Keep the description concise.
## Pull Request Title Format
PR titles follow the same convention as commit messages:
```
<list of modified paths>: description
```
Examples:
- `core/vm: fix stack overflow in PUSH instruction`
- `core, eth: add arena allocator support`
- `cmd/geth, internal/ethapi: refactor transaction args`
- `trie/archiver: streaming subtree archival to fix OOM`
Use the top-level package paths, comma-separated if multiple areas are affected. Only mention the directories with functional changes, interface changes that trickle all over the codebase should not generate an exhaustive list. The description should be a short, lowercase summary of the change.

View file

@ -123,7 +123,6 @@ Ceyhun Onur <ceyhun.onur@avalabs.org>
chabashilah <doumodoumo@gmail.com> chabashilah <doumodoumo@gmail.com>
changhong <changhong.yu@shanbay.com> changhong <changhong.yu@shanbay.com>
Charles Cooper <cooper.charles.m@gmail.com> Charles Cooper <cooper.charles.m@gmail.com>
Charlotte <tqpcharlie@proton.me>
Chase Wright <mysticryuujin@gmail.com> Chase Wright <mysticryuujin@gmail.com>
Chawin Aiemvaravutigul <nick41746@hotmail.com> Chawin Aiemvaravutigul <nick41746@hotmail.com>
Chen Quan <terasum@163.com> Chen Quan <terasum@163.com>
@ -840,6 +839,7 @@ ywzqwwt <39263032+ywzqwwt@users.noreply.github.com>
yzb <335357057@qq.com> yzb <335357057@qq.com>
zaccoding <zaccoding725@gmail.com> zaccoding <zaccoding725@gmail.com>
Zach <zach.ramsay@gmail.com> Zach <zach.ramsay@gmail.com>
Zachinquarantine <Zachinquarantine@protonmail.com>
zah <zahary@gmail.com> zah <zahary@gmail.com>
Zahoor Mohamed <zahoor@zahoor.in> Zahoor Mohamed <zahoor@zahoor.in>
Zak Cole <zak@beattiecole.com> Zak Cole <zak@beattiecole.com>

View file

@ -4,7 +4,7 @@ ARG VERSION=""
ARG BUILDNUM="" ARG BUILDNUM=""
# Build Geth in a stock Go builder container # Build Geth in a stock Go builder container
FROM golang:1.26-alpine AS builder FROM golang:1.24-alpine AS builder
RUN apk add --no-cache gcc musl-dev linux-headers git RUN apk add --no-cache gcc musl-dev linux-headers git

View file

@ -4,7 +4,7 @@ ARG VERSION=""
ARG BUILDNUM="" ARG BUILDNUM=""
# Build Geth in a stock Go builder container # Build Geth in a stock Go builder container
FROM golang:1.26-alpine AS builder FROM golang:1.24-alpine AS builder
RUN apk add --no-cache gcc musl-dev linux-headers git RUN apk add --no-cache gcc musl-dev linux-headers git

View file

@ -2,7 +2,7 @@
# with Go source code. If you know what GOPATH is then you probably # with Go source code. If you know what GOPATH is then you probably
# don't need to bother with make. # don't need to bother with make.
.PHONY: geth evm all test lint fmt clean devtools help .PHONY: geth all test lint fmt clean devtools help
GOBIN = ./build/bin GOBIN = ./build/bin
GO ?= latest GO ?= latest
@ -14,12 +14,6 @@ geth:
@echo "Done building." @echo "Done building."
@echo "Run \"$(GOBIN)/geth\" to launch geth." @echo "Run \"$(GOBIN)/geth\" to launch geth."
#? evm: Build evm.
evm:
$(GORUN) build/ci.go install ./cmd/evm
@echo "Done building."
@echo "Run \"$(GOBIN)/evm\" to launch evm."
#? all: Build all packages and executables. #? all: Build all packages and executables.
all: all:
$(GORUN) build/ci.go install $(GORUN) build/ci.go install

View file

@ -8,7 +8,6 @@ https://pkg.go.dev/badge/github.com/ethereum/go-ethereum
[![Go Report Card](https://goreportcard.com/badge/github.com/ethereum/go-ethereum)](https://goreportcard.com/report/github.com/ethereum/go-ethereum) [![Go Report Card](https://goreportcard.com/badge/github.com/ethereum/go-ethereum)](https://goreportcard.com/report/github.com/ethereum/go-ethereum)
[![Travis](https://app.travis-ci.com/ethereum/go-ethereum.svg?branch=master)](https://app.travis-ci.com/github/ethereum/go-ethereum) [![Travis](https://app.travis-ci.com/ethereum/go-ethereum.svg?branch=master)](https://app.travis-ci.com/github/ethereum/go-ethereum)
[![Discord](https://img.shields.io/badge/discord-join%20chat-blue.svg)](https://discord.gg/nthXNEv) [![Discord](https://img.shields.io/badge/discord-join%20chat-blue.svg)](https://discord.gg/nthXNEv)
[![Twitter](https://img.shields.io/twitter/follow/go_ethereum)](https://x.com/go_ethereum)
Automated builds are available for stable releases and the unstable master branch. Binary Automated builds are available for stable releases and the unstable master branch. Binary
archives are published at https://geth.ethereum.org/downloads/. archives are published at https://geth.ethereum.org/downloads/.
@ -38,6 +37,7 @@ directory.
| Command | Description | | Command | Description |
| :--------: | ---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------- | | :--------: | ---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------- |
| **`geth`** | Our main Ethereum CLI client. It is the entry point into the Ethereum network (main-, test- or private net), capable of running as a full node (default), archive node (retaining all historical state) or a light node (retrieving data live). It can be used by other processes as a gateway into the Ethereum network via JSON RPC endpoints exposed on top of HTTP, WebSocket and/or IPC transports. `geth --help` and the [CLI page](https://geth.ethereum.org/docs/fundamentals/command-line-options) for command line options. | | **`geth`** | Our main Ethereum CLI client. It is the entry point into the Ethereum network (main-, test- or private net), capable of running as a full node (default), archive node (retaining all historical state) or a light node (retrieving data live). It can be used by other processes as a gateway into the Ethereum network via JSON RPC endpoints exposed on top of HTTP, WebSocket and/or IPC transports. `geth --help` and the [CLI page](https://geth.ethereum.org/docs/fundamentals/command-line-options) for command line options. |
| `clef` | Stand-alone signing tool, which can be used as a backend signer for `geth`. |
| `devp2p` | Utilities to interact with nodes on the networking layer, without running a full blockchain. | | `devp2p` | Utilities to interact with nodes on the networking layer, without running a full blockchain. |
| `abigen` | Source code generator to convert Ethereum contract definitions into easy-to-use, compile-time type-safe Go packages. It operates on plain [Ethereum contract ABIs](https://docs.soliditylang.org/en/develop/abi-spec.html) with expanded functionality if the contract bytecode is also available. However, it also accepts Solidity source files, making development much more streamlined. Please see our [Native DApps](https://geth.ethereum.org/docs/developers/dapp-developer/native-bindings) page for details. | | `abigen` | Source code generator to convert Ethereum contract definitions into easy-to-use, compile-time type-safe Go packages. It operates on plain [Ethereum contract ABIs](https://docs.soliditylang.org/en/develop/abi-spec.html) with expanded functionality if the contract bytecode is also available. However, it also accepts Solidity source files, making development much more streamlined. Please see our [Native DApps](https://geth.ethereum.org/docs/developers/dapp-developer/native-bindings) page for details. |
| `evm` | Developer utility version of the EVM (Ethereum Virtual Machine) that is capable of running bytecode snippets within a configurable environment and execution mode. Its purpose is to allow isolated, fine-grained debugging of EVM opcodes (e.g. `evm --code 60ff60ff --debug run`). | | `evm` | Developer utility version of the EVM (Ethereum Virtual Machine) that is capable of running bytecode snippets within a configurable environment and execution mode. Its purpose is to allow isolated, fine-grained debugging of EVM opcodes (e.g. `evm --code 60ff60ff --debug run`). |
@ -162,7 +162,7 @@ accessible from the outside.
As a developer, sooner rather than later you'll want to start interacting with `geth` and the As a developer, sooner rather than later you'll want to start interacting with `geth` and the
Ethereum network via your own programs and not manually through the console. To aid Ethereum network via your own programs and not manually through the console. To aid
this, `geth` has built-in support for a JSON-RPC based APIs ([standard APIs](https://ethereum.org/en/developers/docs/apis/json-rpc/) this, `geth` has built-in support for a JSON-RPC based APIs ([standard APIs](https://ethereum.github.io/execution-apis/api-documentation/)
and [`geth` specific APIs](https://geth.ethereum.org/docs/interacting-with-geth/rpc)). and [`geth` specific APIs](https://geth.ethereum.org/docs/interacting-with-geth/rpc)).
These can be exposed via HTTP, WebSockets and IPC (UNIX sockets on UNIX based These can be exposed via HTTP, WebSockets and IPC (UNIX sockets on UNIX based
platforms, and named pipes on Windows). platforms, and named pipes on Windows).

View file

@ -11,6 +11,7 @@ Audit reports are published in the `docs` folder: https://github.com/ethereum/go
| Scope | Date | Report Link | | Scope | Date | Report Link |
| ------- | ------- | ----------- | | ------- | ------- | ----------- |
| `geth` | 20170425 | [pdf](https://github.com/ethereum/go-ethereum/blob/master/docs/audits/2017-04-25_Geth-audit_Truesec.pdf) | | `geth` | 20170425 | [pdf](https://github.com/ethereum/go-ethereum/blob/master/docs/audits/2017-04-25_Geth-audit_Truesec.pdf) |
| `clef` | 20180914 | [pdf](https://github.com/ethereum/go-ethereum/blob/master/docs/audits/2018-09-14_Clef-audit_NCC.pdf) |
| `Discv5` | 20191015 | [pdf](https://github.com/ethereum/go-ethereum/blob/master/docs/audits/2019-10-15_Discv5_audit_LeastAuthority.pdf) | | `Discv5` | 20191015 | [pdf](https://github.com/ethereum/go-ethereum/blob/master/docs/audits/2019-10-15_Discv5_audit_LeastAuthority.pdf) |
| `Discv5` | 20200124 | [pdf](https://github.com/ethereum/go-ethereum/blob/master/docs/audits/2020-01-24_DiscV5_audit_Cure53.pdf) | | `Discv5` | 20200124 | [pdf](https://github.com/ethereum/go-ethereum/blob/master/docs/audits/2020-01-24_DiscV5_audit_Cure53.pdf) |
@ -20,6 +21,7 @@ Audit reports are published in the `docs` folder: https://github.com/ethereum/go
To find out how to disclose a vulnerability in Ethereum visit [https://bounty.ethereum.org](https://bounty.ethereum.org) or email bounty@ethereum.org. Please read the [disclosure page](https://github.com/ethereum/go-ethereum/security/advisories?state=published) for more information about publicly disclosed security vulnerabilities. To find out how to disclose a vulnerability in Ethereum visit [https://bounty.ethereum.org](https://bounty.ethereum.org) or email bounty@ethereum.org. Please read the [disclosure page](https://github.com/ethereum/go-ethereum/security/advisories?state=published) for more information about publicly disclosed security vulnerabilities.
Use the built-in `geth version-check` feature to check whether the software is affected by any known vulnerability. This command will fetch the latest [`vulnerabilities.json`](https://geth.ethereum.org/docs/vulnerabilities/vulnerabilities.json) file which contains known security vulnerabilities concerning `geth`, and cross-check the data against its own version number.
The following key may be used to communicate sensitive information to developers. The following key may be used to communicate sensitive information to developers.

View file

@ -33,10 +33,6 @@ import (
"github.com/ethereum/go-ethereum/log" "github.com/ethereum/go-ethereum/log"
) )
var (
intRegex = regexp.MustCompile(`(u)?int([0-9]*)`)
)
func isKeyWord(arg string) bool { func isKeyWord(arg string) bool {
switch arg { switch arg {
case "break": case "break":
@ -303,7 +299,7 @@ func bindBasicType(kind abi.Type) string {
case abi.AddressTy: case abi.AddressTy:
return "common.Address" return "common.Address"
case abi.IntTy, abi.UintTy: case abi.IntTy, abi.UintTy:
parts := intRegex.FindStringSubmatch(kind.String()) parts := regexp.MustCompile(`(u)?int([0-9]*)`).FindStringSubmatch(kind.String())
switch parts[2] { switch parts[2] {
case "8", "16", "32", "64": case "8", "16", "32", "64":
return fmt.Sprintf("%sint%s", parts[1], parts[2]) return fmt.Sprintf("%sint%s", parts[1], parts[2])

View file

@ -485,13 +485,13 @@ var bindTests = []struct {
contract Defaulter { contract Defaulter {
address public caller; address public caller;
fallback() external payable { function() {
caller = msg.sender; caller = msg.sender;
} }
} }
`, `,
[]string{`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`}, []string{`6060604052606a8060106000396000f360606040523615601d5760e060020a6000350463fc9c8d3981146040575b605e6000805473ffffffffffffffffffffffffffffffffffffffff191633179055565b606060005473ffffffffffffffffffffffffffffffffffffffff1681565b005b6060908152602090f3`},
[]string{`[{"stateMutability":"payable","type":"fallback"},{"inputs":[],"name":"caller","outputs":[{"internalType":"address","name":"","type":"address"}],"stateMutability":"view","type":"function"}]`}, []string{`[{"constant":true,"inputs":[],"name":"caller","outputs":[{"name":"","type":"address"}],"type":"function"}]`},
` `
"math/big" "math/big"
@ -939,7 +939,6 @@ var bindTests = []struct {
if _, err := eventer.RaiseSimpleEvent(auth, common.Address{byte(j)}, [32]byte{byte(j)}, true, big.NewInt(int64(10*i+j))); err != nil { if _, err := eventer.RaiseSimpleEvent(auth, common.Address{byte(j)}, [32]byte{byte(j)}, true, big.NewInt(int64(10*i+j))); err != nil {
t.Fatalf("block %d, event %d: raise failed: %v", i, j, err) t.Fatalf("block %d, event %d: raise failed: %v", i, j, err)
} }
time.Sleep(time.Millisecond * 200)
} }
sim.Commit() sim.Commit()
} }
@ -1496,7 +1495,7 @@ var bindTests = []struct {
if n != 3 { if n != 3 {
t.Fatalf("Invalid bar0 event") t.Fatalf("Invalid bar0 event")
} }
case <-time.NewTimer(10 * time.Second).C: case <-time.NewTimer(3 * time.Second).C:
t.Fatalf("Wait bar0 event timeout") t.Fatalf("Wait bar0 event timeout")
} }
@ -1507,7 +1506,7 @@ var bindTests = []struct {
if n != 1 { if n != 1 {
t.Fatalf("Invalid bar event") t.Fatalf("Invalid bar event")
} }
case <-time.NewTimer(10 * time.Second).C: case <-time.NewTimer(3 * time.Second).C:
t.Fatalf("Wait bar event timeout") t.Fatalf("Wait bar event timeout")
} }
close(stopCh) close(stopCh)
@ -1807,9 +1806,7 @@ var bindTests = []struct {
[]string{"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"}, []string{"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"},
[]string{`[{"anonymous":false,"inputs":[{"components":[{"internalType":"uint256","name":"a","type":"uint256"},{"internalType":"uint256","name":"b","type":"uint256"}],"indexed":false,"internalType":"struct Test.MyStruct","name":"s","type":"tuple"}],"name":"StructEvent","type":"event"},{"inputs":[],"name":"TestEvent","outputs":[],"stateMutability":"nonpayable","type":"function"}]`}, []string{`[{"anonymous":false,"inputs":[{"components":[{"internalType":"uint256","name":"a","type":"uint256"},{"internalType":"uint256","name":"b","type":"uint256"}],"indexed":false,"internalType":"struct Test.MyStruct","name":"s","type":"tuple"}],"name":"StructEvent","type":"event"},{"inputs":[],"name":"TestEvent","outputs":[],"stateMutability":"nonpayable","type":"function"}]`},
` `
"context"
"math/big" "math/big"
"time"
"github.com/ethereum/go-ethereum/accounts/abi/bind" "github.com/ethereum/go-ethereum/accounts/abi/bind"
"github.com/ethereum/go-ethereum/accounts/abi/bind/backends" "github.com/ethereum/go-ethereum/accounts/abi/bind/backends"
@ -1831,23 +1828,12 @@ var bindTests = []struct {
} }
sim.Commit() sim.Commit()
tx, err := d.TestEvent(user) _, err = d.TestEvent(user)
if err != nil { if err != nil {
t.Fatalf("Failed to call contract %v", err) t.Fatalf("Failed to call contract %v", err)
} }
sim.Commit() sim.Commit()
// Wait for the transaction to be mined
ctx, cancel := context.WithTimeout(context.Background(), 2*time.Second)
defer cancel()
receipt, err := bind.WaitMined(ctx, sim, tx)
if err != nil {
t.Fatalf("Failed to wait for tx to be mined: %v", err)
}
if receipt.Status != types.ReceiptStatusSuccessful {
t.Fatal("Transaction failed")
}
it, err := d.FilterStructEvent(nil) it, err := d.FilterStructEvent(nil)
if err != nil { if err != nil {
t.Fatalf("Failed to filter contract event %v", err) t.Fatalf("Failed to filter contract event %v", err)

View file

@ -281,7 +281,7 @@ func TestBindingV2ConvertedV1Tests(t *testing.T) {
} }
// Set this environment variable to regenerate the test outputs. // Set this environment variable to regenerate the test outputs.
if os.Getenv("WRITE_TEST_FILES") != "" { if os.Getenv("WRITE_TEST_FILES") != "" {
if err := os.WriteFile(fname, []byte(have), 0666); err != nil { if err := os.WriteFile((fname), []byte(have), 0666); err != nil {
t.Fatalf("err writing expected output to file: %v\n", err) t.Fatalf("err writing expected output to file: %v\n", err)
} }
} }

View file

@ -4,10 +4,8 @@
package {{.Package}} package {{.Package}}
import ( import (
"context"
"math/big" "math/big"
"strings" "strings"
"time"
"errors" "errors"
ethereum "github.com/ethereum/go-ethereum" ethereum "github.com/ethereum/go-ethereum"
@ -29,8 +27,6 @@ var (
_ = types.BloomLookup _ = types.BloomLookup
_ = event.NewSubscription _ = event.NewSubscription
_ = abi.ConvertType _ = abi.ConvertType
_ = time.Tick
_ = context.Background
) )
{{$structs := .Structs}} {{$structs := .Structs}}
@ -81,11 +77,7 @@ var (
return common.Address{}, nil, nil, errors.New("GetABI returned nil") return common.Address{}, nil, nil, errors.New("GetABI returned nil")
} }
{{range $pattern, $name := .Libraries}} {{range $pattern, $name := .Libraries}}
{{decapitalise $name}}Addr, tx, _, _ := Deploy{{capitalise $name}}(auth, backend) {{decapitalise $name}}Addr, _, _, _ := Deploy{{capitalise $name}}(auth, backend)
ctx, _ := context.WithTimeout(context.Background(), 5 * time.Second)
if err := bind.WaitAccepted(ctx, backend, tx); err != nil {
return common.Address{}, nil, nil, err
}
{{$contract.Type}}Bin = strings.ReplaceAll({{$contract.Type}}Bin, "__${{$pattern}}$__", {{decapitalise $name}}Addr.String()[2:]) {{$contract.Type}}Bin = strings.ReplaceAll({{$contract.Type}}Bin, "__${{$pattern}}$__", {{decapitalise $name}}Addr.String()[2:])
{{end}} {{end}}
address, tx, contract, err := bind.DeployContract(auth, *parsed, common.FromHex({{.Type}}Bin), backend {{range .Constructor.Inputs}}, {{.Name}}{{end}}) address, tx, contract, err := bind.DeployContract(auth, *parsed, common.FromHex({{.Type}}Bin), backend {{range .Constructor.Inputs}}, {{.Name}}{{end}})

View file

@ -59,11 +59,6 @@ var (
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *{{.Type}}) GetABI() abi.ABI {
return c.abi
}
// New{{.Type}} creates a new instance of {{.Type}}. // New{{.Type}} creates a new instance of {{.Type}}.
func New{{.Type}}() *{{.Type}} { func New{{.Type}}() *{{.Type}} {
parsed, err := {{.Type}}MetaData.ParseABI() parsed, err := {{.Type}}MetaData.ParseABI()
@ -95,8 +90,7 @@ var (
{{range .Calls}} {{range .Calls}}
// Pack{{.Normalized.Name}} is the Go binding used to pack the parameters required for calling // Pack{{.Normalized.Name}} is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x{{printf "%x" .Original.ID}}. This method will panic if any // the contract method with ID 0x{{printf "%x" .Original.ID}}.
// invalid/nil inputs are passed.
// //
// Solidity: {{.Original.String}} // Solidity: {{.Original.String}}
func ({{ decapitalise $contract.Type}} *{{$contract.Type}}) Pack{{.Normalized.Name}}({{range .Normalized.Inputs}} {{.Name}} {{bindtype .Type $structs}}, {{end}}) []byte { func ({{ decapitalise $contract.Type}} *{{$contract.Type}}) Pack{{.Normalized.Name}}({{range .Normalized.Inputs}} {{.Name}} {{bindtype .Type $structs}}, {{end}}) []byte {
@ -107,15 +101,6 @@ var (
return enc return enc
} }
// TryPack{{.Normalized.Name}} is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x{{printf "%x" .Original.ID}}. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: {{.Original.String}}
func ({{ decapitalise $contract.Type}} *{{$contract.Type}}) TryPack{{.Normalized.Name}}({{range .Normalized.Inputs}} {{.Name}} {{bindtype .Type $structs}}, {{end}}) ([]byte, error) {
return {{ decapitalise $contract.Type}}.abi.Pack("{{.Original.Name}}" {{range .Normalized.Inputs}}, {{.Name}}{{end}})
}
{{/* Unpack method is needed only when there are return args */}} {{/* Unpack method is needed only when there are return args */}}
{{if .Normalized.Outputs }} {{if .Normalized.Outputs }}
{{ if .Structured }} {{ if .Structured }}
@ -148,7 +133,8 @@ var (
outstruct.{{capitalise .Name}} = *abi.ConvertType(out[{{$i}}], new({{bindtype .Type $structs}})).(*{{bindtype .Type $structs}}) outstruct.{{capitalise .Name}} = *abi.ConvertType(out[{{$i}}], new({{bindtype .Type $structs}})).(*{{bindtype .Type $structs}})
{{- end }} {{- end }}
{{- end }} {{- end }}
return *outstruct, nil{{else}} return *outstruct, err
{{else}}
if err != nil { if err != nil {
return {{range $i, $_ := .Normalized.Outputs}}{{if ispointertype .Type}}new({{underlyingbindtype .Type }}), {{else}}*new({{bindtype .Type $structs}}), {{end}}{{end}} err return {{range $i, $_ := .Normalized.Outputs}}{{if ispointertype .Type}}new({{underlyingbindtype .Type }}), {{else}}*new({{bindtype .Type $structs}}), {{end}}{{end}} err
} }
@ -159,8 +145,8 @@ var (
out{{$i}} := *abi.ConvertType(out[{{$i}}], new({{bindtype .Type $structs}})).(*{{bindtype .Type $structs}}) out{{$i}} := *abi.ConvertType(out[{{$i}}], new({{bindtype .Type $structs}})).(*{{bindtype .Type $structs}})
{{- end }} {{- end }}
{{- end}} {{- end}}
return {{range $i, $t := .Normalized.Outputs}}out{{$i}}, {{end}} nil return {{range $i, $t := .Normalized.Outputs}}out{{$i}}, {{end}} err
{{- end}} {{- end}}
} }
{{end}} {{end}}
{{end}} {{end}}
@ -188,11 +174,8 @@ var (
// Solidity: {{.Original.String}} // Solidity: {{.Original.String}}
func ({{ decapitalise $contract.Type}} *{{$contract.Type}}) Unpack{{.Normalized.Name}}Event(log *types.Log) (*{{$contract.Type}}{{.Normalized.Name}}, error) { func ({{ decapitalise $contract.Type}} *{{$contract.Type}}) Unpack{{.Normalized.Name}}Event(log *types.Log) (*{{$contract.Type}}{{.Normalized.Name}}, error) {
event := "{{.Original.Name}}" event := "{{.Original.Name}}"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != {{ decapitalise $contract.Type}}.abi.Events[event].ID { if log.Topics[0] != {{ decapitalise $contract.Type}}.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new({{$contract.Type}}{{.Normalized.Name}}) out := new({{$contract.Type}}{{.Normalized.Name}})
if len(log.Data) > 0 { if len(log.Data) > 0 {

View file

@ -36,11 +36,6 @@ type CallbackParam struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *CallbackParam) GetABI() abi.ABI {
return c.abi
}
// NewCallbackParam creates a new instance of CallbackParam. // NewCallbackParam creates a new instance of CallbackParam.
func NewCallbackParam() *CallbackParam { func NewCallbackParam() *CallbackParam {
parsed, err := CallbackParamMetaData.ParseABI() parsed, err := CallbackParamMetaData.ParseABI()
@ -57,8 +52,7 @@ func (c *CallbackParam) Instance(backend bind.ContractBackend, addr common.Addre
} }
// PackTest is the Go binding used to pack the parameters required for calling // PackTest is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xd7a5aba2. This method will panic if any // the contract method with ID 0xd7a5aba2.
// invalid/nil inputs are passed.
// //
// Solidity: function test(function callback) returns() // Solidity: function test(function callback) returns()
func (callbackParam *CallbackParam) PackTest(callback [24]byte) []byte { func (callbackParam *CallbackParam) PackTest(callback [24]byte) []byte {
@ -68,12 +62,3 @@ func (callbackParam *CallbackParam) PackTest(callback [24]byte) []byte {
} }
return enc return enc
} }
// TryPackTest is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xd7a5aba2. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function test(function callback) returns()
func (callbackParam *CallbackParam) TryPackTest(callback [24]byte) ([]byte, error) {
return callbackParam.abi.Pack("test", callback)
}

View file

@ -36,11 +36,6 @@ type Crowdsale struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *Crowdsale) GetABI() abi.ABI {
return c.abi
}
// NewCrowdsale creates a new instance of Crowdsale. // NewCrowdsale creates a new instance of Crowdsale.
func NewCrowdsale() *Crowdsale { func NewCrowdsale() *Crowdsale {
parsed, err := CrowdsaleMetaData.ParseABI() parsed, err := CrowdsaleMetaData.ParseABI()
@ -69,8 +64,7 @@ func (crowdsale *Crowdsale) PackConstructor(ifSuccessfulSendTo common.Address, f
} }
// PackAmountRaised is the Go binding used to pack the parameters required for calling // PackAmountRaised is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x7b3e5e7b. This method will panic if any // the contract method with ID 0x7b3e5e7b.
// invalid/nil inputs are passed.
// //
// Solidity: function amountRaised() returns(uint256) // Solidity: function amountRaised() returns(uint256)
func (crowdsale *Crowdsale) PackAmountRaised() []byte { func (crowdsale *Crowdsale) PackAmountRaised() []byte {
@ -81,15 +75,6 @@ func (crowdsale *Crowdsale) PackAmountRaised() []byte {
return enc return enc
} }
// TryPackAmountRaised is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x7b3e5e7b. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function amountRaised() returns(uint256)
func (crowdsale *Crowdsale) TryPackAmountRaised() ([]byte, error) {
return crowdsale.abi.Pack("amountRaised")
}
// UnpackAmountRaised is the Go binding that unpacks the parameters returned // UnpackAmountRaised is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x7b3e5e7b. // from invoking the contract method with ID 0x7b3e5e7b.
// //
@ -100,12 +85,11 @@ func (crowdsale *Crowdsale) UnpackAmountRaised(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// PackBeneficiary is the Go binding used to pack the parameters required for calling // PackBeneficiary is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x38af3eed. This method will panic if any // the contract method with ID 0x38af3eed.
// invalid/nil inputs are passed.
// //
// Solidity: function beneficiary() returns(address) // Solidity: function beneficiary() returns(address)
func (crowdsale *Crowdsale) PackBeneficiary() []byte { func (crowdsale *Crowdsale) PackBeneficiary() []byte {
@ -116,15 +100,6 @@ func (crowdsale *Crowdsale) PackBeneficiary() []byte {
return enc return enc
} }
// TryPackBeneficiary is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x38af3eed. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function beneficiary() returns(address)
func (crowdsale *Crowdsale) TryPackBeneficiary() ([]byte, error) {
return crowdsale.abi.Pack("beneficiary")
}
// UnpackBeneficiary is the Go binding that unpacks the parameters returned // UnpackBeneficiary is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x38af3eed. // from invoking the contract method with ID 0x38af3eed.
// //
@ -135,12 +110,11 @@ func (crowdsale *Crowdsale) UnpackBeneficiary(data []byte) (common.Address, erro
return *new(common.Address), err return *new(common.Address), err
} }
out0 := *abi.ConvertType(out[0], new(common.Address)).(*common.Address) out0 := *abi.ConvertType(out[0], new(common.Address)).(*common.Address)
return out0, nil return out0, err
} }
// PackCheckGoalReached is the Go binding used to pack the parameters required for calling // PackCheckGoalReached is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x01cb3b20. This method will panic if any // the contract method with ID 0x01cb3b20.
// invalid/nil inputs are passed.
// //
// Solidity: function checkGoalReached() returns() // Solidity: function checkGoalReached() returns()
func (crowdsale *Crowdsale) PackCheckGoalReached() []byte { func (crowdsale *Crowdsale) PackCheckGoalReached() []byte {
@ -151,18 +125,8 @@ func (crowdsale *Crowdsale) PackCheckGoalReached() []byte {
return enc return enc
} }
// TryPackCheckGoalReached is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x01cb3b20. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function checkGoalReached() returns()
func (crowdsale *Crowdsale) TryPackCheckGoalReached() ([]byte, error) {
return crowdsale.abi.Pack("checkGoalReached")
}
// PackDeadline is the Go binding used to pack the parameters required for calling // PackDeadline is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x29dcb0cf. This method will panic if any // the contract method with ID 0x29dcb0cf.
// invalid/nil inputs are passed.
// //
// Solidity: function deadline() returns(uint256) // Solidity: function deadline() returns(uint256)
func (crowdsale *Crowdsale) PackDeadline() []byte { func (crowdsale *Crowdsale) PackDeadline() []byte {
@ -173,15 +137,6 @@ func (crowdsale *Crowdsale) PackDeadline() []byte {
return enc return enc
} }
// TryPackDeadline is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x29dcb0cf. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function deadline() returns(uint256)
func (crowdsale *Crowdsale) TryPackDeadline() ([]byte, error) {
return crowdsale.abi.Pack("deadline")
}
// UnpackDeadline is the Go binding that unpacks the parameters returned // UnpackDeadline is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x29dcb0cf. // from invoking the contract method with ID 0x29dcb0cf.
// //
@ -192,12 +147,11 @@ func (crowdsale *Crowdsale) UnpackDeadline(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// PackFunders is the Go binding used to pack the parameters required for calling // PackFunders is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xdc0d3dff. This method will panic if any // the contract method with ID 0xdc0d3dff.
// invalid/nil inputs are passed.
// //
// Solidity: function funders(uint256 ) returns(address addr, uint256 amount) // Solidity: function funders(uint256 ) returns(address addr, uint256 amount)
func (crowdsale *Crowdsale) PackFunders(arg0 *big.Int) []byte { func (crowdsale *Crowdsale) PackFunders(arg0 *big.Int) []byte {
@ -208,15 +162,6 @@ func (crowdsale *Crowdsale) PackFunders(arg0 *big.Int) []byte {
return enc return enc
} }
// TryPackFunders is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xdc0d3dff. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function funders(uint256 ) returns(address addr, uint256 amount)
func (crowdsale *Crowdsale) TryPackFunders(arg0 *big.Int) ([]byte, error) {
return crowdsale.abi.Pack("funders", arg0)
}
// FundersOutput serves as a container for the return parameters of contract // FundersOutput serves as a container for the return parameters of contract
// method Funders. // method Funders.
type FundersOutput struct { type FundersOutput struct {
@ -236,12 +181,12 @@ func (crowdsale *Crowdsale) UnpackFunders(data []byte) (FundersOutput, error) {
} }
outstruct.Addr = *abi.ConvertType(out[0], new(common.Address)).(*common.Address) outstruct.Addr = *abi.ConvertType(out[0], new(common.Address)).(*common.Address)
outstruct.Amount = abi.ConvertType(out[1], new(big.Int)).(*big.Int) outstruct.Amount = abi.ConvertType(out[1], new(big.Int)).(*big.Int)
return *outstruct, nil return *outstruct, err
} }
// PackFundingGoal is the Go binding used to pack the parameters required for calling // PackFundingGoal is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x7a3a0e84. This method will panic if any // the contract method with ID 0x7a3a0e84.
// invalid/nil inputs are passed.
// //
// Solidity: function fundingGoal() returns(uint256) // Solidity: function fundingGoal() returns(uint256)
func (crowdsale *Crowdsale) PackFundingGoal() []byte { func (crowdsale *Crowdsale) PackFundingGoal() []byte {
@ -252,15 +197,6 @@ func (crowdsale *Crowdsale) PackFundingGoal() []byte {
return enc return enc
} }
// TryPackFundingGoal is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x7a3a0e84. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function fundingGoal() returns(uint256)
func (crowdsale *Crowdsale) TryPackFundingGoal() ([]byte, error) {
return crowdsale.abi.Pack("fundingGoal")
}
// UnpackFundingGoal is the Go binding that unpacks the parameters returned // UnpackFundingGoal is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x7a3a0e84. // from invoking the contract method with ID 0x7a3a0e84.
// //
@ -271,12 +207,11 @@ func (crowdsale *Crowdsale) UnpackFundingGoal(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// PackPrice is the Go binding used to pack the parameters required for calling // PackPrice is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xa035b1fe. This method will panic if any // the contract method with ID 0xa035b1fe.
// invalid/nil inputs are passed.
// //
// Solidity: function price() returns(uint256) // Solidity: function price() returns(uint256)
func (crowdsale *Crowdsale) PackPrice() []byte { func (crowdsale *Crowdsale) PackPrice() []byte {
@ -287,15 +222,6 @@ func (crowdsale *Crowdsale) PackPrice() []byte {
return enc return enc
} }
// TryPackPrice is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xa035b1fe. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function price() returns(uint256)
func (crowdsale *Crowdsale) TryPackPrice() ([]byte, error) {
return crowdsale.abi.Pack("price")
}
// UnpackPrice is the Go binding that unpacks the parameters returned // UnpackPrice is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0xa035b1fe. // from invoking the contract method with ID 0xa035b1fe.
// //
@ -306,12 +232,11 @@ func (crowdsale *Crowdsale) UnpackPrice(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// PackTokenReward is the Go binding used to pack the parameters required for calling // PackTokenReward is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x6e66f6e9. This method will panic if any // the contract method with ID 0x6e66f6e9.
// invalid/nil inputs are passed.
// //
// Solidity: function tokenReward() returns(address) // Solidity: function tokenReward() returns(address)
func (crowdsale *Crowdsale) PackTokenReward() []byte { func (crowdsale *Crowdsale) PackTokenReward() []byte {
@ -322,15 +247,6 @@ func (crowdsale *Crowdsale) PackTokenReward() []byte {
return enc return enc
} }
// TryPackTokenReward is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x6e66f6e9. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function tokenReward() returns(address)
func (crowdsale *Crowdsale) TryPackTokenReward() ([]byte, error) {
return crowdsale.abi.Pack("tokenReward")
}
// UnpackTokenReward is the Go binding that unpacks the parameters returned // UnpackTokenReward is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x6e66f6e9. // from invoking the contract method with ID 0x6e66f6e9.
// //
@ -341,7 +257,7 @@ func (crowdsale *Crowdsale) UnpackTokenReward(data []byte) (common.Address, erro
return *new(common.Address), err return *new(common.Address), err
} }
out0 := *abi.ConvertType(out[0], new(common.Address)).(*common.Address) out0 := *abi.ConvertType(out[0], new(common.Address)).(*common.Address)
return out0, nil return out0, err
} }
// CrowdsaleFundTransfer represents a FundTransfer event raised by the Crowdsale contract. // CrowdsaleFundTransfer represents a FundTransfer event raised by the Crowdsale contract.
@ -365,11 +281,8 @@ func (CrowdsaleFundTransfer) ContractEventName() string {
// Solidity: event FundTransfer(address backer, uint256 amount, bool isContribution) // Solidity: event FundTransfer(address backer, uint256 amount, bool isContribution)
func (crowdsale *Crowdsale) UnpackFundTransferEvent(log *types.Log) (*CrowdsaleFundTransfer, error) { func (crowdsale *Crowdsale) UnpackFundTransferEvent(log *types.Log) (*CrowdsaleFundTransfer, error) {
event := "FundTransfer" event := "FundTransfer"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != crowdsale.abi.Events[event].ID { if log.Topics[0] != crowdsale.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(CrowdsaleFundTransfer) out := new(CrowdsaleFundTransfer)
if len(log.Data) > 0 { if len(log.Data) > 0 {

View file

@ -36,11 +36,6 @@ type DAO struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *DAO) GetABI() abi.ABI {
return c.abi
}
// NewDAO creates a new instance of DAO. // NewDAO creates a new instance of DAO.
func NewDAO() *DAO { func NewDAO() *DAO {
parsed, err := DAOMetaData.ParseABI() parsed, err := DAOMetaData.ParseABI()
@ -69,8 +64,7 @@ func (dAO *DAO) PackConstructor(minimumQuorumForProposals *big.Int, minutesForDe
} }
// PackChangeMembership is the Go binding used to pack the parameters required for calling // PackChangeMembership is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x9644fcbd. This method will panic if any // the contract method with ID 0x9644fcbd.
// invalid/nil inputs are passed.
// //
// Solidity: function changeMembership(address targetMember, bool canVote, string memberName) returns() // Solidity: function changeMembership(address targetMember, bool canVote, string memberName) returns()
func (dAO *DAO) PackChangeMembership(targetMember common.Address, canVote bool, memberName string) []byte { func (dAO *DAO) PackChangeMembership(targetMember common.Address, canVote bool, memberName string) []byte {
@ -81,18 +75,8 @@ func (dAO *DAO) PackChangeMembership(targetMember common.Address, canVote bool,
return enc return enc
} }
// TryPackChangeMembership is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x9644fcbd. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function changeMembership(address targetMember, bool canVote, string memberName) returns()
func (dAO *DAO) TryPackChangeMembership(targetMember common.Address, canVote bool, memberName string) ([]byte, error) {
return dAO.abi.Pack("changeMembership", targetMember, canVote, memberName)
}
// PackChangeVotingRules is the Go binding used to pack the parameters required for calling // PackChangeVotingRules is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xbcca1fd3. This method will panic if any // the contract method with ID 0xbcca1fd3.
// invalid/nil inputs are passed.
// //
// Solidity: function changeVotingRules(uint256 minimumQuorumForProposals, uint256 minutesForDebate, int256 marginOfVotesForMajority) returns() // Solidity: function changeVotingRules(uint256 minimumQuorumForProposals, uint256 minutesForDebate, int256 marginOfVotesForMajority) returns()
func (dAO *DAO) PackChangeVotingRules(minimumQuorumForProposals *big.Int, minutesForDebate *big.Int, marginOfVotesForMajority *big.Int) []byte { func (dAO *DAO) PackChangeVotingRules(minimumQuorumForProposals *big.Int, minutesForDebate *big.Int, marginOfVotesForMajority *big.Int) []byte {
@ -103,18 +87,8 @@ func (dAO *DAO) PackChangeVotingRules(minimumQuorumForProposals *big.Int, minute
return enc return enc
} }
// TryPackChangeVotingRules is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xbcca1fd3. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function changeVotingRules(uint256 minimumQuorumForProposals, uint256 minutesForDebate, int256 marginOfVotesForMajority) returns()
func (dAO *DAO) TryPackChangeVotingRules(minimumQuorumForProposals *big.Int, minutesForDebate *big.Int, marginOfVotesForMajority *big.Int) ([]byte, error) {
return dAO.abi.Pack("changeVotingRules", minimumQuorumForProposals, minutesForDebate, marginOfVotesForMajority)
}
// PackCheckProposalCode is the Go binding used to pack the parameters required for calling // PackCheckProposalCode is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xeceb2945. This method will panic if any // the contract method with ID 0xeceb2945.
// invalid/nil inputs are passed.
// //
// Solidity: function checkProposalCode(uint256 proposalNumber, address beneficiary, uint256 etherAmount, bytes transactionBytecode) returns(bool codeChecksOut) // Solidity: function checkProposalCode(uint256 proposalNumber, address beneficiary, uint256 etherAmount, bytes transactionBytecode) returns(bool codeChecksOut)
func (dAO *DAO) PackCheckProposalCode(proposalNumber *big.Int, beneficiary common.Address, etherAmount *big.Int, transactionBytecode []byte) []byte { func (dAO *DAO) PackCheckProposalCode(proposalNumber *big.Int, beneficiary common.Address, etherAmount *big.Int, transactionBytecode []byte) []byte {
@ -125,15 +99,6 @@ func (dAO *DAO) PackCheckProposalCode(proposalNumber *big.Int, beneficiary commo
return enc return enc
} }
// TryPackCheckProposalCode is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xeceb2945. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function checkProposalCode(uint256 proposalNumber, address beneficiary, uint256 etherAmount, bytes transactionBytecode) returns(bool codeChecksOut)
func (dAO *DAO) TryPackCheckProposalCode(proposalNumber *big.Int, beneficiary common.Address, etherAmount *big.Int, transactionBytecode []byte) ([]byte, error) {
return dAO.abi.Pack("checkProposalCode", proposalNumber, beneficiary, etherAmount, transactionBytecode)
}
// UnpackCheckProposalCode is the Go binding that unpacks the parameters returned // UnpackCheckProposalCode is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0xeceb2945. // from invoking the contract method with ID 0xeceb2945.
// //
@ -144,12 +109,11 @@ func (dAO *DAO) UnpackCheckProposalCode(data []byte) (bool, error) {
return *new(bool), err return *new(bool), err
} }
out0 := *abi.ConvertType(out[0], new(bool)).(*bool) out0 := *abi.ConvertType(out[0], new(bool)).(*bool)
return out0, nil return out0, err
} }
// PackDebatingPeriodInMinutes is the Go binding used to pack the parameters required for calling // PackDebatingPeriodInMinutes is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x69bd3436. This method will panic if any // the contract method with ID 0x69bd3436.
// invalid/nil inputs are passed.
// //
// Solidity: function debatingPeriodInMinutes() returns(uint256) // Solidity: function debatingPeriodInMinutes() returns(uint256)
func (dAO *DAO) PackDebatingPeriodInMinutes() []byte { func (dAO *DAO) PackDebatingPeriodInMinutes() []byte {
@ -160,15 +124,6 @@ func (dAO *DAO) PackDebatingPeriodInMinutes() []byte {
return enc return enc
} }
// TryPackDebatingPeriodInMinutes is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x69bd3436. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function debatingPeriodInMinutes() returns(uint256)
func (dAO *DAO) TryPackDebatingPeriodInMinutes() ([]byte, error) {
return dAO.abi.Pack("debatingPeriodInMinutes")
}
// UnpackDebatingPeriodInMinutes is the Go binding that unpacks the parameters returned // UnpackDebatingPeriodInMinutes is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x69bd3436. // from invoking the contract method with ID 0x69bd3436.
// //
@ -179,12 +134,11 @@ func (dAO *DAO) UnpackDebatingPeriodInMinutes(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// PackExecuteProposal is the Go binding used to pack the parameters required for calling // PackExecuteProposal is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x237e9492. This method will panic if any // the contract method with ID 0x237e9492.
// invalid/nil inputs are passed.
// //
// Solidity: function executeProposal(uint256 proposalNumber, bytes transactionBytecode) returns(int256 result) // Solidity: function executeProposal(uint256 proposalNumber, bytes transactionBytecode) returns(int256 result)
func (dAO *DAO) PackExecuteProposal(proposalNumber *big.Int, transactionBytecode []byte) []byte { func (dAO *DAO) PackExecuteProposal(proposalNumber *big.Int, transactionBytecode []byte) []byte {
@ -195,15 +149,6 @@ func (dAO *DAO) PackExecuteProposal(proposalNumber *big.Int, transactionBytecode
return enc return enc
} }
// TryPackExecuteProposal is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x237e9492. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function executeProposal(uint256 proposalNumber, bytes transactionBytecode) returns(int256 result)
func (dAO *DAO) TryPackExecuteProposal(proposalNumber *big.Int, transactionBytecode []byte) ([]byte, error) {
return dAO.abi.Pack("executeProposal", proposalNumber, transactionBytecode)
}
// UnpackExecuteProposal is the Go binding that unpacks the parameters returned // UnpackExecuteProposal is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x237e9492. // from invoking the contract method with ID 0x237e9492.
// //
@ -214,12 +159,11 @@ func (dAO *DAO) UnpackExecuteProposal(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// PackMajorityMargin is the Go binding used to pack the parameters required for calling // PackMajorityMargin is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xaa02a90f. This method will panic if any // the contract method with ID 0xaa02a90f.
// invalid/nil inputs are passed.
// //
// Solidity: function majorityMargin() returns(int256) // Solidity: function majorityMargin() returns(int256)
func (dAO *DAO) PackMajorityMargin() []byte { func (dAO *DAO) PackMajorityMargin() []byte {
@ -230,15 +174,6 @@ func (dAO *DAO) PackMajorityMargin() []byte {
return enc return enc
} }
// TryPackMajorityMargin is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xaa02a90f. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function majorityMargin() returns(int256)
func (dAO *DAO) TryPackMajorityMargin() ([]byte, error) {
return dAO.abi.Pack("majorityMargin")
}
// UnpackMajorityMargin is the Go binding that unpacks the parameters returned // UnpackMajorityMargin is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0xaa02a90f. // from invoking the contract method with ID 0xaa02a90f.
// //
@ -249,12 +184,11 @@ func (dAO *DAO) UnpackMajorityMargin(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// PackMemberId is the Go binding used to pack the parameters required for calling // PackMemberId is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x39106821. This method will panic if any // the contract method with ID 0x39106821.
// invalid/nil inputs are passed.
// //
// Solidity: function memberId(address ) returns(uint256) // Solidity: function memberId(address ) returns(uint256)
func (dAO *DAO) PackMemberId(arg0 common.Address) []byte { func (dAO *DAO) PackMemberId(arg0 common.Address) []byte {
@ -265,15 +199,6 @@ func (dAO *DAO) PackMemberId(arg0 common.Address) []byte {
return enc return enc
} }
// TryPackMemberId is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x39106821. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function memberId(address ) returns(uint256)
func (dAO *DAO) TryPackMemberId(arg0 common.Address) ([]byte, error) {
return dAO.abi.Pack("memberId", arg0)
}
// UnpackMemberId is the Go binding that unpacks the parameters returned // UnpackMemberId is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x39106821. // from invoking the contract method with ID 0x39106821.
// //
@ -284,12 +209,11 @@ func (dAO *DAO) UnpackMemberId(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// PackMembers is the Go binding used to pack the parameters required for calling // PackMembers is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x5daf08ca. This method will panic if any // the contract method with ID 0x5daf08ca.
// invalid/nil inputs are passed.
// //
// Solidity: function members(uint256 ) returns(address member, bool canVote, string name, uint256 memberSince) // Solidity: function members(uint256 ) returns(address member, bool canVote, string name, uint256 memberSince)
func (dAO *DAO) PackMembers(arg0 *big.Int) []byte { func (dAO *DAO) PackMembers(arg0 *big.Int) []byte {
@ -300,15 +224,6 @@ func (dAO *DAO) PackMembers(arg0 *big.Int) []byte {
return enc return enc
} }
// TryPackMembers is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x5daf08ca. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function members(uint256 ) returns(address member, bool canVote, string name, uint256 memberSince)
func (dAO *DAO) TryPackMembers(arg0 *big.Int) ([]byte, error) {
return dAO.abi.Pack("members", arg0)
}
// MembersOutput serves as a container for the return parameters of contract // MembersOutput serves as a container for the return parameters of contract
// method Members. // method Members.
type MembersOutput struct { type MembersOutput struct {
@ -332,12 +247,12 @@ func (dAO *DAO) UnpackMembers(data []byte) (MembersOutput, error) {
outstruct.CanVote = *abi.ConvertType(out[1], new(bool)).(*bool) outstruct.CanVote = *abi.ConvertType(out[1], new(bool)).(*bool)
outstruct.Name = *abi.ConvertType(out[2], new(string)).(*string) outstruct.Name = *abi.ConvertType(out[2], new(string)).(*string)
outstruct.MemberSince = abi.ConvertType(out[3], new(big.Int)).(*big.Int) outstruct.MemberSince = abi.ConvertType(out[3], new(big.Int)).(*big.Int)
return *outstruct, nil return *outstruct, err
} }
// PackMinimumQuorum is the Go binding used to pack the parameters required for calling // PackMinimumQuorum is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x8160f0b5. This method will panic if any // the contract method with ID 0x8160f0b5.
// invalid/nil inputs are passed.
// //
// Solidity: function minimumQuorum() returns(uint256) // Solidity: function minimumQuorum() returns(uint256)
func (dAO *DAO) PackMinimumQuorum() []byte { func (dAO *DAO) PackMinimumQuorum() []byte {
@ -348,15 +263,6 @@ func (dAO *DAO) PackMinimumQuorum() []byte {
return enc return enc
} }
// TryPackMinimumQuorum is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x8160f0b5. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function minimumQuorum() returns(uint256)
func (dAO *DAO) TryPackMinimumQuorum() ([]byte, error) {
return dAO.abi.Pack("minimumQuorum")
}
// UnpackMinimumQuorum is the Go binding that unpacks the parameters returned // UnpackMinimumQuorum is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x8160f0b5. // from invoking the contract method with ID 0x8160f0b5.
// //
@ -367,12 +273,11 @@ func (dAO *DAO) UnpackMinimumQuorum(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// PackNewProposal is the Go binding used to pack the parameters required for calling // PackNewProposal is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xb1050da5. This method will panic if any // the contract method with ID 0xb1050da5.
// invalid/nil inputs are passed.
// //
// Solidity: function newProposal(address beneficiary, uint256 etherAmount, string JobDescription, bytes transactionBytecode) returns(uint256 proposalID) // Solidity: function newProposal(address beneficiary, uint256 etherAmount, string JobDescription, bytes transactionBytecode) returns(uint256 proposalID)
func (dAO *DAO) PackNewProposal(beneficiary common.Address, etherAmount *big.Int, jobDescription string, transactionBytecode []byte) []byte { func (dAO *DAO) PackNewProposal(beneficiary common.Address, etherAmount *big.Int, jobDescription string, transactionBytecode []byte) []byte {
@ -383,15 +288,6 @@ func (dAO *DAO) PackNewProposal(beneficiary common.Address, etherAmount *big.Int
return enc return enc
} }
// TryPackNewProposal is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xb1050da5. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function newProposal(address beneficiary, uint256 etherAmount, string JobDescription, bytes transactionBytecode) returns(uint256 proposalID)
func (dAO *DAO) TryPackNewProposal(beneficiary common.Address, etherAmount *big.Int, jobDescription string, transactionBytecode []byte) ([]byte, error) {
return dAO.abi.Pack("newProposal", beneficiary, etherAmount, jobDescription, transactionBytecode)
}
// UnpackNewProposal is the Go binding that unpacks the parameters returned // UnpackNewProposal is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0xb1050da5. // from invoking the contract method with ID 0xb1050da5.
// //
@ -402,12 +298,11 @@ func (dAO *DAO) UnpackNewProposal(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// PackNumProposals is the Go binding used to pack the parameters required for calling // PackNumProposals is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x400e3949. This method will panic if any // the contract method with ID 0x400e3949.
// invalid/nil inputs are passed.
// //
// Solidity: function numProposals() returns(uint256) // Solidity: function numProposals() returns(uint256)
func (dAO *DAO) PackNumProposals() []byte { func (dAO *DAO) PackNumProposals() []byte {
@ -418,15 +313,6 @@ func (dAO *DAO) PackNumProposals() []byte {
return enc return enc
} }
// TryPackNumProposals is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x400e3949. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function numProposals() returns(uint256)
func (dAO *DAO) TryPackNumProposals() ([]byte, error) {
return dAO.abi.Pack("numProposals")
}
// UnpackNumProposals is the Go binding that unpacks the parameters returned // UnpackNumProposals is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x400e3949. // from invoking the contract method with ID 0x400e3949.
// //
@ -437,12 +323,11 @@ func (dAO *DAO) UnpackNumProposals(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// PackOwner is the Go binding used to pack the parameters required for calling // PackOwner is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x8da5cb5b. This method will panic if any // the contract method with ID 0x8da5cb5b.
// invalid/nil inputs are passed.
// //
// Solidity: function owner() returns(address) // Solidity: function owner() returns(address)
func (dAO *DAO) PackOwner() []byte { func (dAO *DAO) PackOwner() []byte {
@ -453,15 +338,6 @@ func (dAO *DAO) PackOwner() []byte {
return enc return enc
} }
// TryPackOwner is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x8da5cb5b. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function owner() returns(address)
func (dAO *DAO) TryPackOwner() ([]byte, error) {
return dAO.abi.Pack("owner")
}
// UnpackOwner is the Go binding that unpacks the parameters returned // UnpackOwner is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x8da5cb5b. // from invoking the contract method with ID 0x8da5cb5b.
// //
@ -472,12 +348,11 @@ func (dAO *DAO) UnpackOwner(data []byte) (common.Address, error) {
return *new(common.Address), err return *new(common.Address), err
} }
out0 := *abi.ConvertType(out[0], new(common.Address)).(*common.Address) out0 := *abi.ConvertType(out[0], new(common.Address)).(*common.Address)
return out0, nil return out0, err
} }
// PackProposals is the Go binding used to pack the parameters required for calling // PackProposals is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x013cf08b. This method will panic if any // the contract method with ID 0x013cf08b.
// invalid/nil inputs are passed.
// //
// Solidity: function proposals(uint256 ) returns(address recipient, uint256 amount, string description, uint256 votingDeadline, bool executed, bool proposalPassed, uint256 numberOfVotes, int256 currentResult, bytes32 proposalHash) // Solidity: function proposals(uint256 ) returns(address recipient, uint256 amount, string description, uint256 votingDeadline, bool executed, bool proposalPassed, uint256 numberOfVotes, int256 currentResult, bytes32 proposalHash)
func (dAO *DAO) PackProposals(arg0 *big.Int) []byte { func (dAO *DAO) PackProposals(arg0 *big.Int) []byte {
@ -488,15 +363,6 @@ func (dAO *DAO) PackProposals(arg0 *big.Int) []byte {
return enc return enc
} }
// TryPackProposals is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x013cf08b. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function proposals(uint256 ) returns(address recipient, uint256 amount, string description, uint256 votingDeadline, bool executed, bool proposalPassed, uint256 numberOfVotes, int256 currentResult, bytes32 proposalHash)
func (dAO *DAO) TryPackProposals(arg0 *big.Int) ([]byte, error) {
return dAO.abi.Pack("proposals", arg0)
}
// ProposalsOutput serves as a container for the return parameters of contract // ProposalsOutput serves as a container for the return parameters of contract
// method Proposals. // method Proposals.
type ProposalsOutput struct { type ProposalsOutput struct {
@ -530,12 +396,12 @@ func (dAO *DAO) UnpackProposals(data []byte) (ProposalsOutput, error) {
outstruct.NumberOfVotes = abi.ConvertType(out[6], new(big.Int)).(*big.Int) outstruct.NumberOfVotes = abi.ConvertType(out[6], new(big.Int)).(*big.Int)
outstruct.CurrentResult = abi.ConvertType(out[7], new(big.Int)).(*big.Int) outstruct.CurrentResult = abi.ConvertType(out[7], new(big.Int)).(*big.Int)
outstruct.ProposalHash = *abi.ConvertType(out[8], new([32]byte)).(*[32]byte) outstruct.ProposalHash = *abi.ConvertType(out[8], new([32]byte)).(*[32]byte)
return *outstruct, nil return *outstruct, err
} }
// PackTransferOwnership is the Go binding used to pack the parameters required for calling // PackTransferOwnership is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xf2fde38b. This method will panic if any // the contract method with ID 0xf2fde38b.
// invalid/nil inputs are passed.
// //
// Solidity: function transferOwnership(address newOwner) returns() // Solidity: function transferOwnership(address newOwner) returns()
func (dAO *DAO) PackTransferOwnership(newOwner common.Address) []byte { func (dAO *DAO) PackTransferOwnership(newOwner common.Address) []byte {
@ -546,18 +412,8 @@ func (dAO *DAO) PackTransferOwnership(newOwner common.Address) []byte {
return enc return enc
} }
// TryPackTransferOwnership is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xf2fde38b. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function transferOwnership(address newOwner) returns()
func (dAO *DAO) TryPackTransferOwnership(newOwner common.Address) ([]byte, error) {
return dAO.abi.Pack("transferOwnership", newOwner)
}
// PackVote is the Go binding used to pack the parameters required for calling // PackVote is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xd3c0715b. This method will panic if any // the contract method with ID 0xd3c0715b.
// invalid/nil inputs are passed.
// //
// Solidity: function vote(uint256 proposalNumber, bool supportsProposal, string justificationText) returns(uint256 voteID) // Solidity: function vote(uint256 proposalNumber, bool supportsProposal, string justificationText) returns(uint256 voteID)
func (dAO *DAO) PackVote(proposalNumber *big.Int, supportsProposal bool, justificationText string) []byte { func (dAO *DAO) PackVote(proposalNumber *big.Int, supportsProposal bool, justificationText string) []byte {
@ -568,15 +424,6 @@ func (dAO *DAO) PackVote(proposalNumber *big.Int, supportsProposal bool, justifi
return enc return enc
} }
// TryPackVote is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xd3c0715b. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function vote(uint256 proposalNumber, bool supportsProposal, string justificationText) returns(uint256 voteID)
func (dAO *DAO) TryPackVote(proposalNumber *big.Int, supportsProposal bool, justificationText string) ([]byte, error) {
return dAO.abi.Pack("vote", proposalNumber, supportsProposal, justificationText)
}
// UnpackVote is the Go binding that unpacks the parameters returned // UnpackVote is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0xd3c0715b. // from invoking the contract method with ID 0xd3c0715b.
// //
@ -587,7 +434,7 @@ func (dAO *DAO) UnpackVote(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// DAOChangeOfRules represents a ChangeOfRules event raised by the DAO contract. // DAOChangeOfRules represents a ChangeOfRules event raised by the DAO contract.
@ -611,11 +458,8 @@ func (DAOChangeOfRules) ContractEventName() string {
// Solidity: event ChangeOfRules(uint256 minimumQuorum, uint256 debatingPeriodInMinutes, int256 majorityMargin) // Solidity: event ChangeOfRules(uint256 minimumQuorum, uint256 debatingPeriodInMinutes, int256 majorityMargin)
func (dAO *DAO) UnpackChangeOfRulesEvent(log *types.Log) (*DAOChangeOfRules, error) { func (dAO *DAO) UnpackChangeOfRulesEvent(log *types.Log) (*DAOChangeOfRules, error) {
event := "ChangeOfRules" event := "ChangeOfRules"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != dAO.abi.Events[event].ID { if log.Topics[0] != dAO.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(DAOChangeOfRules) out := new(DAOChangeOfRules)
if len(log.Data) > 0 { if len(log.Data) > 0 {
@ -656,11 +500,8 @@ func (DAOMembershipChanged) ContractEventName() string {
// Solidity: event MembershipChanged(address member, bool isMember) // Solidity: event MembershipChanged(address member, bool isMember)
func (dAO *DAO) UnpackMembershipChangedEvent(log *types.Log) (*DAOMembershipChanged, error) { func (dAO *DAO) UnpackMembershipChangedEvent(log *types.Log) (*DAOMembershipChanged, error) {
event := "MembershipChanged" event := "MembershipChanged"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != dAO.abi.Events[event].ID { if log.Topics[0] != dAO.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(DAOMembershipChanged) out := new(DAOMembershipChanged)
if len(log.Data) > 0 { if len(log.Data) > 0 {
@ -703,11 +544,8 @@ func (DAOProposalAdded) ContractEventName() string {
// Solidity: event ProposalAdded(uint256 proposalID, address recipient, uint256 amount, string description) // Solidity: event ProposalAdded(uint256 proposalID, address recipient, uint256 amount, string description)
func (dAO *DAO) UnpackProposalAddedEvent(log *types.Log) (*DAOProposalAdded, error) { func (dAO *DAO) UnpackProposalAddedEvent(log *types.Log) (*DAOProposalAdded, error) {
event := "ProposalAdded" event := "ProposalAdded"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != dAO.abi.Events[event].ID { if log.Topics[0] != dAO.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(DAOProposalAdded) out := new(DAOProposalAdded)
if len(log.Data) > 0 { if len(log.Data) > 0 {
@ -750,11 +588,8 @@ func (DAOProposalTallied) ContractEventName() string {
// Solidity: event ProposalTallied(uint256 proposalID, int256 result, uint256 quorum, bool active) // Solidity: event ProposalTallied(uint256 proposalID, int256 result, uint256 quorum, bool active)
func (dAO *DAO) UnpackProposalTalliedEvent(log *types.Log) (*DAOProposalTallied, error) { func (dAO *DAO) UnpackProposalTalliedEvent(log *types.Log) (*DAOProposalTallied, error) {
event := "ProposalTallied" event := "ProposalTallied"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != dAO.abi.Events[event].ID { if log.Topics[0] != dAO.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(DAOProposalTallied) out := new(DAOProposalTallied)
if len(log.Data) > 0 { if len(log.Data) > 0 {
@ -797,11 +632,8 @@ func (DAOVoted) ContractEventName() string {
// Solidity: event Voted(uint256 proposalID, bool position, address voter, string justification) // Solidity: event Voted(uint256 proposalID, bool position, address voter, string justification)
func (dAO *DAO) UnpackVotedEvent(log *types.Log) (*DAOVoted, error) { func (dAO *DAO) UnpackVotedEvent(log *types.Log) (*DAOVoted, error) {
event := "Voted" event := "Voted"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != dAO.abi.Events[event].ID { if log.Topics[0] != dAO.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(DAOVoted) out := new(DAOVoted)
if len(log.Data) > 0 { if len(log.Data) > 0 {

View file

@ -36,11 +36,6 @@ type DeeplyNestedArray struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *DeeplyNestedArray) GetABI() abi.ABI {
return c.abi
}
// NewDeeplyNestedArray creates a new instance of DeeplyNestedArray. // NewDeeplyNestedArray creates a new instance of DeeplyNestedArray.
func NewDeeplyNestedArray() *DeeplyNestedArray { func NewDeeplyNestedArray() *DeeplyNestedArray {
parsed, err := DeeplyNestedArrayMetaData.ParseABI() parsed, err := DeeplyNestedArrayMetaData.ParseABI()
@ -57,8 +52,7 @@ func (c *DeeplyNestedArray) Instance(backend bind.ContractBackend, addr common.A
} }
// PackDeepUint64Array is the Go binding used to pack the parameters required for calling // PackDeepUint64Array is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x98ed1856. This method will panic if any // the contract method with ID 0x98ed1856.
// invalid/nil inputs are passed.
// //
// Solidity: function deepUint64Array(uint256 , uint256 , uint256 ) view returns(uint64) // Solidity: function deepUint64Array(uint256 , uint256 , uint256 ) view returns(uint64)
func (deeplyNestedArray *DeeplyNestedArray) PackDeepUint64Array(arg0 *big.Int, arg1 *big.Int, arg2 *big.Int) []byte { func (deeplyNestedArray *DeeplyNestedArray) PackDeepUint64Array(arg0 *big.Int, arg1 *big.Int, arg2 *big.Int) []byte {
@ -69,15 +63,6 @@ func (deeplyNestedArray *DeeplyNestedArray) PackDeepUint64Array(arg0 *big.Int, a
return enc return enc
} }
// TryPackDeepUint64Array is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x98ed1856. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function deepUint64Array(uint256 , uint256 , uint256 ) view returns(uint64)
func (deeplyNestedArray *DeeplyNestedArray) TryPackDeepUint64Array(arg0 *big.Int, arg1 *big.Int, arg2 *big.Int) ([]byte, error) {
return deeplyNestedArray.abi.Pack("deepUint64Array", arg0, arg1, arg2)
}
// UnpackDeepUint64Array is the Go binding that unpacks the parameters returned // UnpackDeepUint64Array is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x98ed1856. // from invoking the contract method with ID 0x98ed1856.
// //
@ -88,12 +73,11 @@ func (deeplyNestedArray *DeeplyNestedArray) UnpackDeepUint64Array(data []byte) (
return *new(uint64), err return *new(uint64), err
} }
out0 := *abi.ConvertType(out[0], new(uint64)).(*uint64) out0 := *abi.ConvertType(out[0], new(uint64)).(*uint64)
return out0, nil return out0, err
} }
// PackRetrieveDeepArray is the Go binding used to pack the parameters required for calling // PackRetrieveDeepArray is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x8ed4573a. This method will panic if any // the contract method with ID 0x8ed4573a.
// invalid/nil inputs are passed.
// //
// Solidity: function retrieveDeepArray() view returns(uint64[3][4][5]) // Solidity: function retrieveDeepArray() view returns(uint64[3][4][5])
func (deeplyNestedArray *DeeplyNestedArray) PackRetrieveDeepArray() []byte { func (deeplyNestedArray *DeeplyNestedArray) PackRetrieveDeepArray() []byte {
@ -104,15 +88,6 @@ func (deeplyNestedArray *DeeplyNestedArray) PackRetrieveDeepArray() []byte {
return enc return enc
} }
// TryPackRetrieveDeepArray is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x8ed4573a. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function retrieveDeepArray() view returns(uint64[3][4][5])
func (deeplyNestedArray *DeeplyNestedArray) TryPackRetrieveDeepArray() ([]byte, error) {
return deeplyNestedArray.abi.Pack("retrieveDeepArray")
}
// UnpackRetrieveDeepArray is the Go binding that unpacks the parameters returned // UnpackRetrieveDeepArray is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x8ed4573a. // from invoking the contract method with ID 0x8ed4573a.
// //
@ -123,12 +98,11 @@ func (deeplyNestedArray *DeeplyNestedArray) UnpackRetrieveDeepArray(data []byte)
return *new([5][4][3]uint64), err return *new([5][4][3]uint64), err
} }
out0 := *abi.ConvertType(out[0], new([5][4][3]uint64)).(*[5][4][3]uint64) out0 := *abi.ConvertType(out[0], new([5][4][3]uint64)).(*[5][4][3]uint64)
return out0, nil return out0, err
} }
// PackStoreDeepUintArray is the Go binding used to pack the parameters required for calling // PackStoreDeepUintArray is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x34424855. This method will panic if any // the contract method with ID 0x34424855.
// invalid/nil inputs are passed.
// //
// Solidity: function storeDeepUintArray(uint64[3][4][5] arr) returns() // Solidity: function storeDeepUintArray(uint64[3][4][5] arr) returns()
func (deeplyNestedArray *DeeplyNestedArray) PackStoreDeepUintArray(arr [5][4][3]uint64) []byte { func (deeplyNestedArray *DeeplyNestedArray) PackStoreDeepUintArray(arr [5][4][3]uint64) []byte {
@ -138,12 +112,3 @@ func (deeplyNestedArray *DeeplyNestedArray) PackStoreDeepUintArray(arr [5][4][3]
} }
return enc return enc
} }
// TryPackStoreDeepUintArray is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x34424855. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function storeDeepUintArray(uint64[3][4][5] arr) returns()
func (deeplyNestedArray *DeeplyNestedArray) TryPackStoreDeepUintArray(arr [5][4][3]uint64) ([]byte, error) {
return deeplyNestedArray.abi.Pack("storeDeepUintArray", arr)
}

View file

@ -36,11 +36,6 @@ type Empty struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *Empty) GetABI() abi.ABI {
return c.abi
}
// NewEmpty creates a new instance of Empty. // NewEmpty creates a new instance of Empty.
func NewEmpty() *Empty { func NewEmpty() *Empty {
parsed, err := EmptyMetaData.ParseABI() parsed, err := EmptyMetaData.ParseABI()

View file

@ -35,11 +35,6 @@ type EventChecker struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *EventChecker) GetABI() abi.ABI {
return c.abi
}
// NewEventChecker creates a new instance of EventChecker. // NewEventChecker creates a new instance of EventChecker.
func NewEventChecker() *EventChecker { func NewEventChecker() *EventChecker {
parsed, err := EventCheckerMetaData.ParseABI() parsed, err := EventCheckerMetaData.ParseABI()
@ -77,11 +72,8 @@ func (EventCheckerDynamic) ContractEventName() string {
// Solidity: event dynamic(string indexed idxStr, bytes indexed idxDat, string str, bytes dat) // Solidity: event dynamic(string indexed idxStr, bytes indexed idxDat, string str, bytes dat)
func (eventChecker *EventChecker) UnpackDynamicEvent(log *types.Log) (*EventCheckerDynamic, error) { func (eventChecker *EventChecker) UnpackDynamicEvent(log *types.Log) (*EventCheckerDynamic, error) {
event := "dynamic" event := "dynamic"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != eventChecker.abi.Events[event].ID { if log.Topics[0] != eventChecker.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(EventCheckerDynamic) out := new(EventCheckerDynamic)
if len(log.Data) > 0 { if len(log.Data) > 0 {
@ -120,11 +112,8 @@ func (EventCheckerEmpty) ContractEventName() string {
// Solidity: event empty() // Solidity: event empty()
func (eventChecker *EventChecker) UnpackEmptyEvent(log *types.Log) (*EventCheckerEmpty, error) { func (eventChecker *EventChecker) UnpackEmptyEvent(log *types.Log) (*EventCheckerEmpty, error) {
event := "empty" event := "empty"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != eventChecker.abi.Events[event].ID { if log.Topics[0] != eventChecker.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(EventCheckerEmpty) out := new(EventCheckerEmpty)
if len(log.Data) > 0 { if len(log.Data) > 0 {
@ -165,11 +154,8 @@ func (EventCheckerIndexed) ContractEventName() string {
// Solidity: event indexed(address indexed addr, int256 indexed num) // Solidity: event indexed(address indexed addr, int256 indexed num)
func (eventChecker *EventChecker) UnpackIndexedEvent(log *types.Log) (*EventCheckerIndexed, error) { func (eventChecker *EventChecker) UnpackIndexedEvent(log *types.Log) (*EventCheckerIndexed, error) {
event := "indexed" event := "indexed"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != eventChecker.abi.Events[event].ID { if log.Topics[0] != eventChecker.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(EventCheckerIndexed) out := new(EventCheckerIndexed)
if len(log.Data) > 0 { if len(log.Data) > 0 {
@ -210,11 +196,8 @@ func (EventCheckerMixed) ContractEventName() string {
// Solidity: event mixed(address indexed addr, int256 num) // Solidity: event mixed(address indexed addr, int256 num)
func (eventChecker *EventChecker) UnpackMixedEvent(log *types.Log) (*EventCheckerMixed, error) { func (eventChecker *EventChecker) UnpackMixedEvent(log *types.Log) (*EventCheckerMixed, error) {
event := "mixed" event := "mixed"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != eventChecker.abi.Events[event].ID { if log.Topics[0] != eventChecker.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(EventCheckerMixed) out := new(EventCheckerMixed)
if len(log.Data) > 0 { if len(log.Data) > 0 {
@ -255,11 +238,8 @@ func (EventCheckerUnnamed) ContractEventName() string {
// Solidity: event unnamed(uint256 indexed arg0, uint256 indexed arg1) // Solidity: event unnamed(uint256 indexed arg0, uint256 indexed arg1)
func (eventChecker *EventChecker) UnpackUnnamedEvent(log *types.Log) (*EventCheckerUnnamed, error) { func (eventChecker *EventChecker) UnpackUnnamedEvent(log *types.Log) (*EventCheckerUnnamed, error) {
event := "unnamed" event := "unnamed"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != eventChecker.abi.Events[event].ID { if log.Topics[0] != eventChecker.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(EventCheckerUnnamed) out := new(EventCheckerUnnamed)
if len(log.Data) > 0 { if len(log.Data) > 0 {

View file

@ -36,11 +36,6 @@ type Getter struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *Getter) GetABI() abi.ABI {
return c.abi
}
// NewGetter creates a new instance of Getter. // NewGetter creates a new instance of Getter.
func NewGetter() *Getter { func NewGetter() *Getter {
parsed, err := GetterMetaData.ParseABI() parsed, err := GetterMetaData.ParseABI()
@ -57,8 +52,7 @@ func (c *Getter) Instance(backend bind.ContractBackend, addr common.Address) *bi
} }
// PackGetter is the Go binding used to pack the parameters required for calling // PackGetter is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x993a04b7. This method will panic if any // the contract method with ID 0x993a04b7.
// invalid/nil inputs are passed.
// //
// Solidity: function getter() returns(string, int256, bytes32) // Solidity: function getter() returns(string, int256, bytes32)
func (getter *Getter) PackGetter() []byte { func (getter *Getter) PackGetter() []byte {
@ -69,15 +63,6 @@ func (getter *Getter) PackGetter() []byte {
return enc return enc
} }
// TryPackGetter is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x993a04b7. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function getter() returns(string, int256, bytes32)
func (getter *Getter) TryPackGetter() ([]byte, error) {
return getter.abi.Pack("getter")
}
// GetterOutput serves as a container for the return parameters of contract // GetterOutput serves as a container for the return parameters of contract
// method Getter. // method Getter.
type GetterOutput struct { type GetterOutput struct {
@ -99,5 +84,6 @@ func (getter *Getter) UnpackGetter(data []byte) (GetterOutput, error) {
outstruct.Arg0 = *abi.ConvertType(out[0], new(string)).(*string) outstruct.Arg0 = *abi.ConvertType(out[0], new(string)).(*string)
outstruct.Arg1 = abi.ConvertType(out[1], new(big.Int)).(*big.Int) outstruct.Arg1 = abi.ConvertType(out[1], new(big.Int)).(*big.Int)
outstruct.Arg2 = *abi.ConvertType(out[2], new([32]byte)).(*[32]byte) outstruct.Arg2 = *abi.ConvertType(out[2], new([32]byte)).(*[32]byte)
return *outstruct, nil return *outstruct, err
} }

View file

@ -36,11 +36,6 @@ type IdentifierCollision struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *IdentifierCollision) GetABI() abi.ABI {
return c.abi
}
// NewIdentifierCollision creates a new instance of IdentifierCollision. // NewIdentifierCollision creates a new instance of IdentifierCollision.
func NewIdentifierCollision() *IdentifierCollision { func NewIdentifierCollision() *IdentifierCollision {
parsed, err := IdentifierCollisionMetaData.ParseABI() parsed, err := IdentifierCollisionMetaData.ParseABI()
@ -57,8 +52,7 @@ func (c *IdentifierCollision) Instance(backend bind.ContractBackend, addr common
} }
// PackMyVar is the Go binding used to pack the parameters required for calling // PackMyVar is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x4ef1f0ad. This method will panic if any // the contract method with ID 0x4ef1f0ad.
// invalid/nil inputs are passed.
// //
// Solidity: function MyVar() view returns(uint256) // Solidity: function MyVar() view returns(uint256)
func (identifierCollision *IdentifierCollision) PackMyVar() []byte { func (identifierCollision *IdentifierCollision) PackMyVar() []byte {
@ -69,15 +63,6 @@ func (identifierCollision *IdentifierCollision) PackMyVar() []byte {
return enc return enc
} }
// TryPackMyVar is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x4ef1f0ad. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function MyVar() view returns(uint256)
func (identifierCollision *IdentifierCollision) TryPackMyVar() ([]byte, error) {
return identifierCollision.abi.Pack("MyVar")
}
// UnpackMyVar is the Go binding that unpacks the parameters returned // UnpackMyVar is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x4ef1f0ad. // from invoking the contract method with ID 0x4ef1f0ad.
// //
@ -88,12 +73,11 @@ func (identifierCollision *IdentifierCollision) UnpackMyVar(data []byte) (*big.I
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// PackPubVar is the Go binding used to pack the parameters required for calling // PackPubVar is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x01ad4d87. This method will panic if any // the contract method with ID 0x01ad4d87.
// invalid/nil inputs are passed.
// //
// Solidity: function _myVar() view returns(uint256) // Solidity: function _myVar() view returns(uint256)
func (identifierCollision *IdentifierCollision) PackPubVar() []byte { func (identifierCollision *IdentifierCollision) PackPubVar() []byte {
@ -104,15 +88,6 @@ func (identifierCollision *IdentifierCollision) PackPubVar() []byte {
return enc return enc
} }
// TryPackPubVar is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x01ad4d87. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function _myVar() view returns(uint256)
func (identifierCollision *IdentifierCollision) TryPackPubVar() ([]byte, error) {
return identifierCollision.abi.Pack("_myVar")
}
// UnpackPubVar is the Go binding that unpacks the parameters returned // UnpackPubVar is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x01ad4d87. // from invoking the contract method with ID 0x01ad4d87.
// //
@ -123,5 +98,5 @@ func (identifierCollision *IdentifierCollision) UnpackPubVar(data []byte) (*big.
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }

View file

@ -35,11 +35,6 @@ type InputChecker struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *InputChecker) GetABI() abi.ABI {
return c.abi
}
// NewInputChecker creates a new instance of InputChecker. // NewInputChecker creates a new instance of InputChecker.
func NewInputChecker() *InputChecker { func NewInputChecker() *InputChecker {
parsed, err := InputCheckerMetaData.ParseABI() parsed, err := InputCheckerMetaData.ParseABI()
@ -56,8 +51,7 @@ func (c *InputChecker) Instance(backend bind.ContractBackend, addr common.Addres
} }
// PackAnonInput is the Go binding used to pack the parameters required for calling // PackAnonInput is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x3e708e82. This method will panic if any // the contract method with ID 0x3e708e82.
// invalid/nil inputs are passed.
// //
// Solidity: function anonInput(string ) returns() // Solidity: function anonInput(string ) returns()
func (inputChecker *InputChecker) PackAnonInput(arg0 string) []byte { func (inputChecker *InputChecker) PackAnonInput(arg0 string) []byte {
@ -68,18 +62,8 @@ func (inputChecker *InputChecker) PackAnonInput(arg0 string) []byte {
return enc return enc
} }
// TryPackAnonInput is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x3e708e82. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function anonInput(string ) returns()
func (inputChecker *InputChecker) TryPackAnonInput(arg0 string) ([]byte, error) {
return inputChecker.abi.Pack("anonInput", arg0)
}
// PackAnonInputs is the Go binding used to pack the parameters required for calling // PackAnonInputs is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x28160527. This method will panic if any // the contract method with ID 0x28160527.
// invalid/nil inputs are passed.
// //
// Solidity: function anonInputs(string , string ) returns() // Solidity: function anonInputs(string , string ) returns()
func (inputChecker *InputChecker) PackAnonInputs(arg0 string, arg1 string) []byte { func (inputChecker *InputChecker) PackAnonInputs(arg0 string, arg1 string) []byte {
@ -90,18 +74,8 @@ func (inputChecker *InputChecker) PackAnonInputs(arg0 string, arg1 string) []byt
return enc return enc
} }
// TryPackAnonInputs is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x28160527. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function anonInputs(string , string ) returns()
func (inputChecker *InputChecker) TryPackAnonInputs(arg0 string, arg1 string) ([]byte, error) {
return inputChecker.abi.Pack("anonInputs", arg0, arg1)
}
// PackMixedInputs is the Go binding used to pack the parameters required for calling // PackMixedInputs is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xc689ebdc. This method will panic if any // the contract method with ID 0xc689ebdc.
// invalid/nil inputs are passed.
// //
// Solidity: function mixedInputs(string , string str) returns() // Solidity: function mixedInputs(string , string str) returns()
func (inputChecker *InputChecker) PackMixedInputs(arg0 string, str string) []byte { func (inputChecker *InputChecker) PackMixedInputs(arg0 string, str string) []byte {
@ -112,18 +86,8 @@ func (inputChecker *InputChecker) PackMixedInputs(arg0 string, str string) []byt
return enc return enc
} }
// TryPackMixedInputs is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xc689ebdc. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function mixedInputs(string , string str) returns()
func (inputChecker *InputChecker) TryPackMixedInputs(arg0 string, str string) ([]byte, error) {
return inputChecker.abi.Pack("mixedInputs", arg0, str)
}
// PackNamedInput is the Go binding used to pack the parameters required for calling // PackNamedInput is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x0d402005. This method will panic if any // the contract method with ID 0x0d402005.
// invalid/nil inputs are passed.
// //
// Solidity: function namedInput(string str) returns() // Solidity: function namedInput(string str) returns()
func (inputChecker *InputChecker) PackNamedInput(str string) []byte { func (inputChecker *InputChecker) PackNamedInput(str string) []byte {
@ -134,18 +98,8 @@ func (inputChecker *InputChecker) PackNamedInput(str string) []byte {
return enc return enc
} }
// TryPackNamedInput is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x0d402005. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function namedInput(string str) returns()
func (inputChecker *InputChecker) TryPackNamedInput(str string) ([]byte, error) {
return inputChecker.abi.Pack("namedInput", str)
}
// PackNamedInputs is the Go binding used to pack the parameters required for calling // PackNamedInputs is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x63c796ed. This method will panic if any // the contract method with ID 0x63c796ed.
// invalid/nil inputs are passed.
// //
// Solidity: function namedInputs(string str1, string str2) returns() // Solidity: function namedInputs(string str1, string str2) returns()
func (inputChecker *InputChecker) PackNamedInputs(str1 string, str2 string) []byte { func (inputChecker *InputChecker) PackNamedInputs(str1 string, str2 string) []byte {
@ -156,18 +110,8 @@ func (inputChecker *InputChecker) PackNamedInputs(str1 string, str2 string) []by
return enc return enc
} }
// TryPackNamedInputs is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x63c796ed. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function namedInputs(string str1, string str2) returns()
func (inputChecker *InputChecker) TryPackNamedInputs(str1 string, str2 string) ([]byte, error) {
return inputChecker.abi.Pack("namedInputs", str1, str2)
}
// PackNoInput is the Go binding used to pack the parameters required for calling // PackNoInput is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x53539029. This method will panic if any // the contract method with ID 0x53539029.
// invalid/nil inputs are passed.
// //
// Solidity: function noInput() returns() // Solidity: function noInput() returns()
func (inputChecker *InputChecker) PackNoInput() []byte { func (inputChecker *InputChecker) PackNoInput() []byte {
@ -177,12 +121,3 @@ func (inputChecker *InputChecker) PackNoInput() []byte {
} }
return enc return enc
} }
// TryPackNoInput is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x53539029. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function noInput() returns()
func (inputChecker *InputChecker) TryPackNoInput() ([]byte, error) {
return inputChecker.abi.Pack("noInput")
}

View file

@ -36,11 +36,6 @@ type Interactor struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *Interactor) GetABI() abi.ABI {
return c.abi
}
// NewInteractor creates a new instance of Interactor. // NewInteractor creates a new instance of Interactor.
func NewInteractor() *Interactor { func NewInteractor() *Interactor {
parsed, err := InteractorMetaData.ParseABI() parsed, err := InteractorMetaData.ParseABI()
@ -69,8 +64,7 @@ func (interactor *Interactor) PackConstructor(str string) []byte {
} }
// PackDeployString is the Go binding used to pack the parameters required for calling // PackDeployString is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x6874e809. This method will panic if any // the contract method with ID 0x6874e809.
// invalid/nil inputs are passed.
// //
// Solidity: function deployString() returns(string) // Solidity: function deployString() returns(string)
func (interactor *Interactor) PackDeployString() []byte { func (interactor *Interactor) PackDeployString() []byte {
@ -81,15 +75,6 @@ func (interactor *Interactor) PackDeployString() []byte {
return enc return enc
} }
// TryPackDeployString is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x6874e809. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function deployString() returns(string)
func (interactor *Interactor) TryPackDeployString() ([]byte, error) {
return interactor.abi.Pack("deployString")
}
// UnpackDeployString is the Go binding that unpacks the parameters returned // UnpackDeployString is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x6874e809. // from invoking the contract method with ID 0x6874e809.
// //
@ -100,12 +85,11 @@ func (interactor *Interactor) UnpackDeployString(data []byte) (string, error) {
return *new(string), err return *new(string), err
} }
out0 := *abi.ConvertType(out[0], new(string)).(*string) out0 := *abi.ConvertType(out[0], new(string)).(*string)
return out0, nil return out0, err
} }
// PackTransact is the Go binding used to pack the parameters required for calling // PackTransact is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xd736c513. This method will panic if any // the contract method with ID 0xd736c513.
// invalid/nil inputs are passed.
// //
// Solidity: function transact(string str) returns() // Solidity: function transact(string str) returns()
func (interactor *Interactor) PackTransact(str string) []byte { func (interactor *Interactor) PackTransact(str string) []byte {
@ -116,18 +100,8 @@ func (interactor *Interactor) PackTransact(str string) []byte {
return enc return enc
} }
// TryPackTransact is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xd736c513. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function transact(string str) returns()
func (interactor *Interactor) TryPackTransact(str string) ([]byte, error) {
return interactor.abi.Pack("transact", str)
}
// PackTransactString is the Go binding used to pack the parameters required for calling // PackTransactString is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x0d86a0e1. This method will panic if any // the contract method with ID 0x0d86a0e1.
// invalid/nil inputs are passed.
// //
// Solidity: function transactString() returns(string) // Solidity: function transactString() returns(string)
func (interactor *Interactor) PackTransactString() []byte { func (interactor *Interactor) PackTransactString() []byte {
@ -138,15 +112,6 @@ func (interactor *Interactor) PackTransactString() []byte {
return enc return enc
} }
// TryPackTransactString is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x0d86a0e1. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function transactString() returns(string)
func (interactor *Interactor) TryPackTransactString() ([]byte, error) {
return interactor.abi.Pack("transactString")
}
// UnpackTransactString is the Go binding that unpacks the parameters returned // UnpackTransactString is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x0d86a0e1. // from invoking the contract method with ID 0x0d86a0e1.
// //
@ -157,5 +122,5 @@ func (interactor *Interactor) UnpackTransactString(data []byte) (string, error)
return *new(string), err return *new(string), err
} }
out0 := *abi.ConvertType(out[0], new(string)).(*string) out0 := *abi.ConvertType(out[0], new(string)).(*string)
return out0, nil return out0, err
} }

View file

@ -42,11 +42,6 @@ type NameConflict struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *NameConflict) GetABI() abi.ABI {
return c.abi
}
// NewNameConflict creates a new instance of NameConflict. // NewNameConflict creates a new instance of NameConflict.
func NewNameConflict() *NameConflict { func NewNameConflict() *NameConflict {
parsed, err := NameConflictMetaData.ParseABI() parsed, err := NameConflictMetaData.ParseABI()
@ -63,8 +58,7 @@ func (c *NameConflict) Instance(backend bind.ContractBackend, addr common.Addres
} }
// PackAddRequest is the Go binding used to pack the parameters required for calling // PackAddRequest is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xcce7b048. This method will panic if any // the contract method with ID 0xcce7b048.
// invalid/nil inputs are passed.
// //
// Solidity: function addRequest((bytes,bytes) req) pure returns() // Solidity: function addRequest((bytes,bytes) req) pure returns()
func (nameConflict *NameConflict) PackAddRequest(req Oraclerequest) []byte { func (nameConflict *NameConflict) PackAddRequest(req Oraclerequest) []byte {
@ -75,18 +69,8 @@ func (nameConflict *NameConflict) PackAddRequest(req Oraclerequest) []byte {
return enc return enc
} }
// TryPackAddRequest is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xcce7b048. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function addRequest((bytes,bytes) req) pure returns()
func (nameConflict *NameConflict) TryPackAddRequest(req Oraclerequest) ([]byte, error) {
return nameConflict.abi.Pack("addRequest", req)
}
// PackGetRequest is the Go binding used to pack the parameters required for calling // PackGetRequest is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xc2bb515f. This method will panic if any // the contract method with ID 0xc2bb515f.
// invalid/nil inputs are passed.
// //
// Solidity: function getRequest() pure returns((bytes,bytes)) // Solidity: function getRequest() pure returns((bytes,bytes))
func (nameConflict *NameConflict) PackGetRequest() []byte { func (nameConflict *NameConflict) PackGetRequest() []byte {
@ -97,15 +81,6 @@ func (nameConflict *NameConflict) PackGetRequest() []byte {
return enc return enc
} }
// TryPackGetRequest is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xc2bb515f. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function getRequest() pure returns((bytes,bytes))
func (nameConflict *NameConflict) TryPackGetRequest() ([]byte, error) {
return nameConflict.abi.Pack("getRequest")
}
// UnpackGetRequest is the Go binding that unpacks the parameters returned // UnpackGetRequest is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0xc2bb515f. // from invoking the contract method with ID 0xc2bb515f.
// //
@ -116,7 +91,7 @@ func (nameConflict *NameConflict) UnpackGetRequest(data []byte) (Oraclerequest,
return *new(Oraclerequest), err return *new(Oraclerequest), err
} }
out0 := *abi.ConvertType(out[0], new(Oraclerequest)).(*Oraclerequest) out0 := *abi.ConvertType(out[0], new(Oraclerequest)).(*Oraclerequest)
return out0, nil return out0, err
} }
// NameConflictLog represents a log event raised by the NameConflict contract. // NameConflictLog represents a log event raised by the NameConflict contract.
@ -139,11 +114,8 @@ func (NameConflictLog) ContractEventName() string {
// Solidity: event log(int256 msg, int256 _msg) // Solidity: event log(int256 msg, int256 _msg)
func (nameConflict *NameConflict) UnpackLogEvent(log *types.Log) (*NameConflictLog, error) { func (nameConflict *NameConflict) UnpackLogEvent(log *types.Log) (*NameConflictLog, error) {
event := "log" event := "log"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != nameConflict.abi.Events[event].ID { if log.Topics[0] != nameConflict.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(NameConflictLog) out := new(NameConflictLog)
if len(log.Data) > 0 { if len(log.Data) > 0 {

View file

@ -36,11 +36,6 @@ type NumericMethodName struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *NumericMethodName) GetABI() abi.ABI {
return c.abi
}
// NewNumericMethodName creates a new instance of NumericMethodName. // NewNumericMethodName creates a new instance of NumericMethodName.
func NewNumericMethodName() *NumericMethodName { func NewNumericMethodName() *NumericMethodName {
parsed, err := NumericMethodNameMetaData.ParseABI() parsed, err := NumericMethodNameMetaData.ParseABI()
@ -57,8 +52,7 @@ func (c *NumericMethodName) Instance(backend bind.ContractBackend, addr common.A
} }
// PackE1test is the Go binding used to pack the parameters required for calling // PackE1test is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xffa02795. This method will panic if any // the contract method with ID 0xffa02795.
// invalid/nil inputs are passed.
// //
// Solidity: function _1test() pure returns() // Solidity: function _1test() pure returns()
func (numericMethodName *NumericMethodName) PackE1test() []byte { func (numericMethodName *NumericMethodName) PackE1test() []byte {
@ -69,18 +63,8 @@ func (numericMethodName *NumericMethodName) PackE1test() []byte {
return enc return enc
} }
// TryPackE1test is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xffa02795. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function _1test() pure returns()
func (numericMethodName *NumericMethodName) TryPackE1test() ([]byte, error) {
return numericMethodName.abi.Pack("_1test")
}
// PackE1test0 is the Go binding used to pack the parameters required for calling // PackE1test0 is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xd02767c7. This method will panic if any // the contract method with ID 0xd02767c7.
// invalid/nil inputs are passed.
// //
// Solidity: function __1test() pure returns() // Solidity: function __1test() pure returns()
func (numericMethodName *NumericMethodName) PackE1test0() []byte { func (numericMethodName *NumericMethodName) PackE1test0() []byte {
@ -91,18 +75,8 @@ func (numericMethodName *NumericMethodName) PackE1test0() []byte {
return enc return enc
} }
// TryPackE1test0 is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xd02767c7. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function __1test() pure returns()
func (numericMethodName *NumericMethodName) TryPackE1test0() ([]byte, error) {
return numericMethodName.abi.Pack("__1test")
}
// PackE2test is the Go binding used to pack the parameters required for calling // PackE2test is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x9d993132. This method will panic if any // the contract method with ID 0x9d993132.
// invalid/nil inputs are passed.
// //
// Solidity: function __2test() pure returns() // Solidity: function __2test() pure returns()
func (numericMethodName *NumericMethodName) PackE2test() []byte { func (numericMethodName *NumericMethodName) PackE2test() []byte {
@ -113,15 +87,6 @@ func (numericMethodName *NumericMethodName) PackE2test() []byte {
return enc return enc
} }
// TryPackE2test is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x9d993132. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function __2test() pure returns()
func (numericMethodName *NumericMethodName) TryPackE2test() ([]byte, error) {
return numericMethodName.abi.Pack("__2test")
}
// NumericMethodNameE1TestEvent represents a _1TestEvent event raised by the NumericMethodName contract. // NumericMethodNameE1TestEvent represents a _1TestEvent event raised by the NumericMethodName contract.
type NumericMethodNameE1TestEvent struct { type NumericMethodNameE1TestEvent struct {
Param common.Address Param common.Address
@ -141,11 +106,8 @@ func (NumericMethodNameE1TestEvent) ContractEventName() string {
// Solidity: event _1TestEvent(address _param) // Solidity: event _1TestEvent(address _param)
func (numericMethodName *NumericMethodName) UnpackE1TestEventEvent(log *types.Log) (*NumericMethodNameE1TestEvent, error) { func (numericMethodName *NumericMethodName) UnpackE1TestEventEvent(log *types.Log) (*NumericMethodNameE1TestEvent, error) {
event := "_1TestEvent" event := "_1TestEvent"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != numericMethodName.abi.Events[event].ID { if log.Topics[0] != numericMethodName.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(NumericMethodNameE1TestEvent) out := new(NumericMethodNameE1TestEvent)
if len(log.Data) > 0 { if len(log.Data) > 0 {

View file

@ -35,11 +35,6 @@ type OutputChecker struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *OutputChecker) GetABI() abi.ABI {
return c.abi
}
// NewOutputChecker creates a new instance of OutputChecker. // NewOutputChecker creates a new instance of OutputChecker.
func NewOutputChecker() *OutputChecker { func NewOutputChecker() *OutputChecker {
parsed, err := OutputCheckerMetaData.ParseABI() parsed, err := OutputCheckerMetaData.ParseABI()
@ -56,8 +51,7 @@ func (c *OutputChecker) Instance(backend bind.ContractBackend, addr common.Addre
} }
// PackAnonOutput is the Go binding used to pack the parameters required for calling // PackAnonOutput is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x008bda05. This method will panic if any // the contract method with ID 0x008bda05.
// invalid/nil inputs are passed.
// //
// Solidity: function anonOutput() returns(string) // Solidity: function anonOutput() returns(string)
func (outputChecker *OutputChecker) PackAnonOutput() []byte { func (outputChecker *OutputChecker) PackAnonOutput() []byte {
@ -68,15 +62,6 @@ func (outputChecker *OutputChecker) PackAnonOutput() []byte {
return enc return enc
} }
// TryPackAnonOutput is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x008bda05. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function anonOutput() returns(string)
func (outputChecker *OutputChecker) TryPackAnonOutput() ([]byte, error) {
return outputChecker.abi.Pack("anonOutput")
}
// UnpackAnonOutput is the Go binding that unpacks the parameters returned // UnpackAnonOutput is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x008bda05. // from invoking the contract method with ID 0x008bda05.
// //
@ -87,12 +72,11 @@ func (outputChecker *OutputChecker) UnpackAnonOutput(data []byte) (string, error
return *new(string), err return *new(string), err
} }
out0 := *abi.ConvertType(out[0], new(string)).(*string) out0 := *abi.ConvertType(out[0], new(string)).(*string)
return out0, nil return out0, err
} }
// PackAnonOutputs is the Go binding used to pack the parameters required for calling // PackAnonOutputs is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x3c401115. This method will panic if any // the contract method with ID 0x3c401115.
// invalid/nil inputs are passed.
// //
// Solidity: function anonOutputs() returns(string, string) // Solidity: function anonOutputs() returns(string, string)
func (outputChecker *OutputChecker) PackAnonOutputs() []byte { func (outputChecker *OutputChecker) PackAnonOutputs() []byte {
@ -103,15 +87,6 @@ func (outputChecker *OutputChecker) PackAnonOutputs() []byte {
return enc return enc
} }
// TryPackAnonOutputs is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x3c401115. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function anonOutputs() returns(string, string)
func (outputChecker *OutputChecker) TryPackAnonOutputs() ([]byte, error) {
return outputChecker.abi.Pack("anonOutputs")
}
// AnonOutputsOutput serves as a container for the return parameters of contract // AnonOutputsOutput serves as a container for the return parameters of contract
// method AnonOutputs. // method AnonOutputs.
type AnonOutputsOutput struct { type AnonOutputsOutput struct {
@ -131,12 +106,12 @@ func (outputChecker *OutputChecker) UnpackAnonOutputs(data []byte) (AnonOutputsO
} }
outstruct.Arg0 = *abi.ConvertType(out[0], new(string)).(*string) outstruct.Arg0 = *abi.ConvertType(out[0], new(string)).(*string)
outstruct.Arg1 = *abi.ConvertType(out[1], new(string)).(*string) outstruct.Arg1 = *abi.ConvertType(out[1], new(string)).(*string)
return *outstruct, nil return *outstruct, err
} }
// PackCollidingOutputs is the Go binding used to pack the parameters required for calling // PackCollidingOutputs is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xeccbc1ee. This method will panic if any // the contract method with ID 0xeccbc1ee.
// invalid/nil inputs are passed.
// //
// Solidity: function collidingOutputs() returns(string str, string Str) // Solidity: function collidingOutputs() returns(string str, string Str)
func (outputChecker *OutputChecker) PackCollidingOutputs() []byte { func (outputChecker *OutputChecker) PackCollidingOutputs() []byte {
@ -147,15 +122,6 @@ func (outputChecker *OutputChecker) PackCollidingOutputs() []byte {
return enc return enc
} }
// TryPackCollidingOutputs is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xeccbc1ee. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function collidingOutputs() returns(string str, string Str)
func (outputChecker *OutputChecker) TryPackCollidingOutputs() ([]byte, error) {
return outputChecker.abi.Pack("collidingOutputs")
}
// CollidingOutputsOutput serves as a container for the return parameters of contract // CollidingOutputsOutput serves as a container for the return parameters of contract
// method CollidingOutputs. // method CollidingOutputs.
type CollidingOutputsOutput struct { type CollidingOutputsOutput struct {
@ -175,12 +141,12 @@ func (outputChecker *OutputChecker) UnpackCollidingOutputs(data []byte) (Collidi
} }
outstruct.Str = *abi.ConvertType(out[0], new(string)).(*string) outstruct.Str = *abi.ConvertType(out[0], new(string)).(*string)
outstruct.Str0 = *abi.ConvertType(out[1], new(string)).(*string) outstruct.Str0 = *abi.ConvertType(out[1], new(string)).(*string)
return *outstruct, nil return *outstruct, err
} }
// PackMixedOutputs is the Go binding used to pack the parameters required for calling // PackMixedOutputs is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x21b77b44. This method will panic if any // the contract method with ID 0x21b77b44.
// invalid/nil inputs are passed.
// //
// Solidity: function mixedOutputs() returns(string, string str) // Solidity: function mixedOutputs() returns(string, string str)
func (outputChecker *OutputChecker) PackMixedOutputs() []byte { func (outputChecker *OutputChecker) PackMixedOutputs() []byte {
@ -191,15 +157,6 @@ func (outputChecker *OutputChecker) PackMixedOutputs() []byte {
return enc return enc
} }
// TryPackMixedOutputs is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x21b77b44. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function mixedOutputs() returns(string, string str)
func (outputChecker *OutputChecker) TryPackMixedOutputs() ([]byte, error) {
return outputChecker.abi.Pack("mixedOutputs")
}
// MixedOutputsOutput serves as a container for the return parameters of contract // MixedOutputsOutput serves as a container for the return parameters of contract
// method MixedOutputs. // method MixedOutputs.
type MixedOutputsOutput struct { type MixedOutputsOutput struct {
@ -219,12 +176,12 @@ func (outputChecker *OutputChecker) UnpackMixedOutputs(data []byte) (MixedOutput
} }
outstruct.Arg0 = *abi.ConvertType(out[0], new(string)).(*string) outstruct.Arg0 = *abi.ConvertType(out[0], new(string)).(*string)
outstruct.Str = *abi.ConvertType(out[1], new(string)).(*string) outstruct.Str = *abi.ConvertType(out[1], new(string)).(*string)
return *outstruct, nil return *outstruct, err
} }
// PackNamedOutput is the Go binding used to pack the parameters required for calling // PackNamedOutput is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x5e632bd5. This method will panic if any // the contract method with ID 0x5e632bd5.
// invalid/nil inputs are passed.
// //
// Solidity: function namedOutput() returns(string str) // Solidity: function namedOutput() returns(string str)
func (outputChecker *OutputChecker) PackNamedOutput() []byte { func (outputChecker *OutputChecker) PackNamedOutput() []byte {
@ -235,15 +192,6 @@ func (outputChecker *OutputChecker) PackNamedOutput() []byte {
return enc return enc
} }
// TryPackNamedOutput is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x5e632bd5. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function namedOutput() returns(string str)
func (outputChecker *OutputChecker) TryPackNamedOutput() ([]byte, error) {
return outputChecker.abi.Pack("namedOutput")
}
// UnpackNamedOutput is the Go binding that unpacks the parameters returned // UnpackNamedOutput is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x5e632bd5. // from invoking the contract method with ID 0x5e632bd5.
// //
@ -254,12 +202,11 @@ func (outputChecker *OutputChecker) UnpackNamedOutput(data []byte) (string, erro
return *new(string), err return *new(string), err
} }
out0 := *abi.ConvertType(out[0], new(string)).(*string) out0 := *abi.ConvertType(out[0], new(string)).(*string)
return out0, nil return out0, err
} }
// PackNamedOutputs is the Go binding used to pack the parameters required for calling // PackNamedOutputs is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x7970a189. This method will panic if any // the contract method with ID 0x7970a189.
// invalid/nil inputs are passed.
// //
// Solidity: function namedOutputs() returns(string str1, string str2) // Solidity: function namedOutputs() returns(string str1, string str2)
func (outputChecker *OutputChecker) PackNamedOutputs() []byte { func (outputChecker *OutputChecker) PackNamedOutputs() []byte {
@ -270,15 +217,6 @@ func (outputChecker *OutputChecker) PackNamedOutputs() []byte {
return enc return enc
} }
// TryPackNamedOutputs is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x7970a189. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function namedOutputs() returns(string str1, string str2)
func (outputChecker *OutputChecker) TryPackNamedOutputs() ([]byte, error) {
return outputChecker.abi.Pack("namedOutputs")
}
// NamedOutputsOutput serves as a container for the return parameters of contract // NamedOutputsOutput serves as a container for the return parameters of contract
// method NamedOutputs. // method NamedOutputs.
type NamedOutputsOutput struct { type NamedOutputsOutput struct {
@ -298,12 +236,12 @@ func (outputChecker *OutputChecker) UnpackNamedOutputs(data []byte) (NamedOutput
} }
outstruct.Str1 = *abi.ConvertType(out[0], new(string)).(*string) outstruct.Str1 = *abi.ConvertType(out[0], new(string)).(*string)
outstruct.Str2 = *abi.ConvertType(out[1], new(string)).(*string) outstruct.Str2 = *abi.ConvertType(out[1], new(string)).(*string)
return *outstruct, nil return *outstruct, err
} }
// PackNoOutput is the Go binding used to pack the parameters required for calling // PackNoOutput is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x625f0306. This method will panic if any // the contract method with ID 0x625f0306.
// invalid/nil inputs are passed.
// //
// Solidity: function noOutput() returns() // Solidity: function noOutput() returns()
func (outputChecker *OutputChecker) PackNoOutput() []byte { func (outputChecker *OutputChecker) PackNoOutput() []byte {
@ -313,12 +251,3 @@ func (outputChecker *OutputChecker) PackNoOutput() []byte {
} }
return enc return enc
} }
// TryPackNoOutput is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x625f0306. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function noOutput() returns()
func (outputChecker *OutputChecker) TryPackNoOutput() ([]byte, error) {
return outputChecker.abi.Pack("noOutput")
}

View file

@ -36,11 +36,6 @@ type Overload struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *Overload) GetABI() abi.ABI {
return c.abi
}
// NewOverload creates a new instance of Overload. // NewOverload creates a new instance of Overload.
func NewOverload() *Overload { func NewOverload() *Overload {
parsed, err := OverloadMetaData.ParseABI() parsed, err := OverloadMetaData.ParseABI()
@ -57,8 +52,7 @@ func (c *Overload) Instance(backend bind.ContractBackend, addr common.Address) *
} }
// PackFoo is the Go binding used to pack the parameters required for calling // PackFoo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x04bc52f8. This method will panic if any // the contract method with ID 0x04bc52f8.
// invalid/nil inputs are passed.
// //
// Solidity: function foo(uint256 i, uint256 j) returns() // Solidity: function foo(uint256 i, uint256 j) returns()
func (overload *Overload) PackFoo(i *big.Int, j *big.Int) []byte { func (overload *Overload) PackFoo(i *big.Int, j *big.Int) []byte {
@ -69,18 +63,8 @@ func (overload *Overload) PackFoo(i *big.Int, j *big.Int) []byte {
return enc return enc
} }
// TryPackFoo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x04bc52f8. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function foo(uint256 i, uint256 j) returns()
func (overload *Overload) TryPackFoo(i *big.Int, j *big.Int) ([]byte, error) {
return overload.abi.Pack("foo", i, j)
}
// PackFoo0 is the Go binding used to pack the parameters required for calling // PackFoo0 is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x2fbebd38. This method will panic if any // the contract method with ID 0x2fbebd38.
// invalid/nil inputs are passed.
// //
// Solidity: function foo(uint256 i) returns() // Solidity: function foo(uint256 i) returns()
func (overload *Overload) PackFoo0(i *big.Int) []byte { func (overload *Overload) PackFoo0(i *big.Int) []byte {
@ -91,15 +75,6 @@ func (overload *Overload) PackFoo0(i *big.Int) []byte {
return enc return enc
} }
// TryPackFoo0 is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x2fbebd38. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function foo(uint256 i) returns()
func (overload *Overload) TryPackFoo0(i *big.Int) ([]byte, error) {
return overload.abi.Pack("foo0", i)
}
// OverloadBar represents a bar event raised by the Overload contract. // OverloadBar represents a bar event raised by the Overload contract.
type OverloadBar struct { type OverloadBar struct {
I *big.Int I *big.Int
@ -119,11 +94,8 @@ func (OverloadBar) ContractEventName() string {
// Solidity: event bar(uint256 i) // Solidity: event bar(uint256 i)
func (overload *Overload) UnpackBarEvent(log *types.Log) (*OverloadBar, error) { func (overload *Overload) UnpackBarEvent(log *types.Log) (*OverloadBar, error) {
event := "bar" event := "bar"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != overload.abi.Events[event].ID { if log.Topics[0] != overload.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(OverloadBar) out := new(OverloadBar)
if len(log.Data) > 0 { if len(log.Data) > 0 {
@ -164,11 +136,8 @@ func (OverloadBar0) ContractEventName() string {
// Solidity: event bar(uint256 i, uint256 j) // Solidity: event bar(uint256 i, uint256 j)
func (overload *Overload) UnpackBar0Event(log *types.Log) (*OverloadBar0, error) { func (overload *Overload) UnpackBar0Event(log *types.Log) (*OverloadBar0, error) {
event := "bar0" event := "bar0"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != overload.abi.Events[event].ID { if log.Topics[0] != overload.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(OverloadBar0) out := new(OverloadBar0)
if len(log.Data) > 0 { if len(log.Data) > 0 {

View file

@ -36,11 +36,6 @@ type RangeKeyword struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *RangeKeyword) GetABI() abi.ABI {
return c.abi
}
// NewRangeKeyword creates a new instance of RangeKeyword. // NewRangeKeyword creates a new instance of RangeKeyword.
func NewRangeKeyword() *RangeKeyword { func NewRangeKeyword() *RangeKeyword {
parsed, err := RangeKeywordMetaData.ParseABI() parsed, err := RangeKeywordMetaData.ParseABI()
@ -57,8 +52,7 @@ func (c *RangeKeyword) Instance(backend bind.ContractBackend, addr common.Addres
} }
// PackFunctionWithKeywordParameter is the Go binding used to pack the parameters required for calling // PackFunctionWithKeywordParameter is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x527a119f. This method will panic if any // the contract method with ID 0x527a119f.
// invalid/nil inputs are passed.
// //
// Solidity: function functionWithKeywordParameter(uint256 range) pure returns() // Solidity: function functionWithKeywordParameter(uint256 range) pure returns()
func (rangeKeyword *RangeKeyword) PackFunctionWithKeywordParameter(arg0 *big.Int) []byte { func (rangeKeyword *RangeKeyword) PackFunctionWithKeywordParameter(arg0 *big.Int) []byte {
@ -68,12 +62,3 @@ func (rangeKeyword *RangeKeyword) PackFunctionWithKeywordParameter(arg0 *big.Int
} }
return enc return enc
} }
// TryPackFunctionWithKeywordParameter is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x527a119f. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function functionWithKeywordParameter(uint256 range) pure returns()
func (rangeKeyword *RangeKeyword) TryPackFunctionWithKeywordParameter(arg0 *big.Int) ([]byte, error) {
return rangeKeyword.abi.Pack("functionWithKeywordParameter", arg0)
}

View file

@ -36,11 +36,6 @@ type Slicer struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *Slicer) GetABI() abi.ABI {
return c.abi
}
// NewSlicer creates a new instance of Slicer. // NewSlicer creates a new instance of Slicer.
func NewSlicer() *Slicer { func NewSlicer() *Slicer {
parsed, err := SlicerMetaData.ParseABI() parsed, err := SlicerMetaData.ParseABI()
@ -57,8 +52,7 @@ func (c *Slicer) Instance(backend bind.ContractBackend, addr common.Address) *bi
} }
// PackEchoAddresses is the Go binding used to pack the parameters required for calling // PackEchoAddresses is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xbe1127a3. This method will panic if any // the contract method with ID 0xbe1127a3.
// invalid/nil inputs are passed.
// //
// Solidity: function echoAddresses(address[] input) returns(address[] output) // Solidity: function echoAddresses(address[] input) returns(address[] output)
func (slicer *Slicer) PackEchoAddresses(input []common.Address) []byte { func (slicer *Slicer) PackEchoAddresses(input []common.Address) []byte {
@ -69,15 +63,6 @@ func (slicer *Slicer) PackEchoAddresses(input []common.Address) []byte {
return enc return enc
} }
// TryPackEchoAddresses is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xbe1127a3. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function echoAddresses(address[] input) returns(address[] output)
func (slicer *Slicer) TryPackEchoAddresses(input []common.Address) ([]byte, error) {
return slicer.abi.Pack("echoAddresses", input)
}
// UnpackEchoAddresses is the Go binding that unpacks the parameters returned // UnpackEchoAddresses is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0xbe1127a3. // from invoking the contract method with ID 0xbe1127a3.
// //
@ -88,12 +73,11 @@ func (slicer *Slicer) UnpackEchoAddresses(data []byte) ([]common.Address, error)
return *new([]common.Address), err return *new([]common.Address), err
} }
out0 := *abi.ConvertType(out[0], new([]common.Address)).(*[]common.Address) out0 := *abi.ConvertType(out[0], new([]common.Address)).(*[]common.Address)
return out0, nil return out0, err
} }
// PackEchoBools is the Go binding used to pack the parameters required for calling // PackEchoBools is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xf637e589. This method will panic if any // the contract method with ID 0xf637e589.
// invalid/nil inputs are passed.
// //
// Solidity: function echoBools(bool[] input) returns(bool[] output) // Solidity: function echoBools(bool[] input) returns(bool[] output)
func (slicer *Slicer) PackEchoBools(input []bool) []byte { func (slicer *Slicer) PackEchoBools(input []bool) []byte {
@ -104,15 +88,6 @@ func (slicer *Slicer) PackEchoBools(input []bool) []byte {
return enc return enc
} }
// TryPackEchoBools is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xf637e589. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function echoBools(bool[] input) returns(bool[] output)
func (slicer *Slicer) TryPackEchoBools(input []bool) ([]byte, error) {
return slicer.abi.Pack("echoBools", input)
}
// UnpackEchoBools is the Go binding that unpacks the parameters returned // UnpackEchoBools is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0xf637e589. // from invoking the contract method with ID 0xf637e589.
// //
@ -123,12 +98,11 @@ func (slicer *Slicer) UnpackEchoBools(data []byte) ([]bool, error) {
return *new([]bool), err return *new([]bool), err
} }
out0 := *abi.ConvertType(out[0], new([]bool)).(*[]bool) out0 := *abi.ConvertType(out[0], new([]bool)).(*[]bool)
return out0, nil return out0, err
} }
// PackEchoFancyInts is the Go binding used to pack the parameters required for calling // PackEchoFancyInts is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xd88becc0. This method will panic if any // the contract method with ID 0xd88becc0.
// invalid/nil inputs are passed.
// //
// Solidity: function echoFancyInts(uint24[23] input) returns(uint24[23] output) // Solidity: function echoFancyInts(uint24[23] input) returns(uint24[23] output)
func (slicer *Slicer) PackEchoFancyInts(input [23]*big.Int) []byte { func (slicer *Slicer) PackEchoFancyInts(input [23]*big.Int) []byte {
@ -139,15 +113,6 @@ func (slicer *Slicer) PackEchoFancyInts(input [23]*big.Int) []byte {
return enc return enc
} }
// TryPackEchoFancyInts is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xd88becc0. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function echoFancyInts(uint24[23] input) returns(uint24[23] output)
func (slicer *Slicer) TryPackEchoFancyInts(input [23]*big.Int) ([]byte, error) {
return slicer.abi.Pack("echoFancyInts", input)
}
// UnpackEchoFancyInts is the Go binding that unpacks the parameters returned // UnpackEchoFancyInts is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0xd88becc0. // from invoking the contract method with ID 0xd88becc0.
// //
@ -158,12 +123,11 @@ func (slicer *Slicer) UnpackEchoFancyInts(data []byte) ([23]*big.Int, error) {
return *new([23]*big.Int), err return *new([23]*big.Int), err
} }
out0 := *abi.ConvertType(out[0], new([23]*big.Int)).(*[23]*big.Int) out0 := *abi.ConvertType(out[0], new([23]*big.Int)).(*[23]*big.Int)
return out0, nil return out0, err
} }
// PackEchoInts is the Go binding used to pack the parameters required for calling // PackEchoInts is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xe15a3db7. This method will panic if any // the contract method with ID 0xe15a3db7.
// invalid/nil inputs are passed.
// //
// Solidity: function echoInts(int256[] input) returns(int256[] output) // Solidity: function echoInts(int256[] input) returns(int256[] output)
func (slicer *Slicer) PackEchoInts(input []*big.Int) []byte { func (slicer *Slicer) PackEchoInts(input []*big.Int) []byte {
@ -174,15 +138,6 @@ func (slicer *Slicer) PackEchoInts(input []*big.Int) []byte {
return enc return enc
} }
// TryPackEchoInts is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xe15a3db7. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function echoInts(int256[] input) returns(int256[] output)
func (slicer *Slicer) TryPackEchoInts(input []*big.Int) ([]byte, error) {
return slicer.abi.Pack("echoInts", input)
}
// UnpackEchoInts is the Go binding that unpacks the parameters returned // UnpackEchoInts is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0xe15a3db7. // from invoking the contract method with ID 0xe15a3db7.
// //
@ -193,5 +148,5 @@ func (slicer *Slicer) UnpackEchoInts(data []byte) ([]*big.Int, error) {
return *new([]*big.Int), err return *new([]*big.Int), err
} }
out0 := *abi.ConvertType(out[0], new([]*big.Int)).(*[]*big.Int) out0 := *abi.ConvertType(out[0], new([]*big.Int)).(*[]*big.Int)
return out0, nil return out0, err
} }

View file

@ -0,0 +1,116 @@
// Code generated via abigen V2 - DO NOT EDIT.
// This file is a generated binding and any manual changes will be lost.
package v1bindtests
import (
"bytes"
"errors"
"math/big"
"github.com/ethereum/go-ethereum/accounts/abi"
"github.com/ethereum/go-ethereum/accounts/abi/bind/v2"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/core/types"
)
// Reference imports to suppress errors if they are not otherwise used.
var (
_ = bytes.Equal
_ = errors.New
_ = big.NewInt
_ = common.Big1
_ = types.BloomLookup
_ = abi.ConvertType
)
// Struct0 is an auto generated low-level Go binding around an user-defined struct.
type Struct0 struct {
B [32]byte
}
// StructsMetaData contains all meta data concerning the Structs contract.
var StructsMetaData = bind.MetaData{
ABI: "[{\"inputs\":[],\"name\":\"F\",\"outputs\":[{\"components\":[{\"internalType\":\"bytes32\",\"name\":\"B\",\"type\":\"bytes32\"}],\"internalType\":\"structStructs.A[]\",\"name\":\"a\",\"type\":\"tuple[]\"},{\"internalType\":\"uint256[]\",\"name\":\"c\",\"type\":\"uint256[]\"},{\"internalType\":\"bool[]\",\"name\":\"d\",\"type\":\"bool[]\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"G\",\"outputs\":[{\"components\":[{\"internalType\":\"bytes32\",\"name\":\"B\",\"type\":\"bytes32\"}],\"internalType\":\"structStructs.A[]\",\"name\":\"a\",\"type\":\"tuple[]\"}],\"stateMutability\":\"view\",\"type\":\"function\"}]",
ID: "Structs",
}
// Structs is an auto generated Go binding around an Ethereum contract.
type Structs struct {
abi abi.ABI
}
// NewStructs creates a new instance of Structs.
func NewStructs() *Structs {
parsed, err := StructsMetaData.ParseABI()
if err != nil {
panic(errors.New("invalid ABI: " + err.Error()))
}
return &Structs{abi: *parsed}
}
// Instance creates a wrapper for a deployed contract instance at the given address.
<<<<<<< HEAD
// Use this to create the instance object passed to abigen v2 library functions Call, Transact, etc.
func (c *Structs) Instance(backend bind.ContractBackend, addr common.Address) *bind.BoundContract {
return bind.NewBoundContract(addr, c.abi, backend, backend, backend)
=======
// Use this to create the instance object passed to abigen v2 library functions Call,
// Transact, etc.
func (c *Structs) Instance(backend bind.ContractBackend, addr common.Address) bind.BoundContract {
return bind.NewBoundContract(backend, addr, c.abi)
>>>>>>> 854c25e086 (accounts/abi/abigen: improve v2 template)
}
// F is the Go binding used to pack the parameters required for calling
// the contract method 0x28811f59.
//
// Solidity: function F() view returns((bytes32)[] a, uint256[] c, bool[] d)
func (structs *Structs) PackF() ([]byte, error) {
return structs.abi.Pack("F")
}
// FOutput serves as a container for the return parameters of contract
// method F.
type FOutput struct {
A []Struct0
C []*big.Int
D []bool
}
// UnpackF is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x28811f59.
//
// Solidity: function F() view returns((bytes32)[] a, uint256[] c, bool[] d)
func (structs *Structs) UnpackF(data []byte) (*FOutput, error) {
out, err := structs.abi.Unpack("F", data)
if err != nil {
return nil, err
}
ret := new(FOutput)
ret.A = *abi.ConvertType(out[0], new([]Struct0)).(*[]Struct0)
ret.C = *abi.ConvertType(out[1], new([]*big.Int)).(*[]*big.Int)
ret.D = *abi.ConvertType(out[2], new([]bool)).(*[]bool)
return ret, nil
}
// G is the Go binding used to pack the parameters required for calling
// the contract method 0x6fecb623.
//
// Solidity: function G() view returns((bytes32)[] a)
func (structs *Structs) PackG() ([]byte, error) {
return structs.abi.Pack("G")
}
// UnpackG is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x6fecb623.
//
// Solidity: function G() view returns((bytes32)[] a)
func (structs *Structs) UnpackG(data []byte) (*[]Struct0, error) {
out, err := structs.abi.Unpack("G", data)
if err != nil {
return nil, err
}
out0 := *abi.ConvertType(out[0], new([]Struct0)).(*[]Struct0)
return &out0, nil
}

View file

@ -41,11 +41,6 @@ type Structs struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *Structs) GetABI() abi.ABI {
return c.abi
}
// NewStructs creates a new instance of Structs. // NewStructs creates a new instance of Structs.
func NewStructs() *Structs { func NewStructs() *Structs {
parsed, err := StructsMetaData.ParseABI() parsed, err := StructsMetaData.ParseABI()
@ -62,8 +57,7 @@ func (c *Structs) Instance(backend bind.ContractBackend, addr common.Address) *b
} }
// PackF is the Go binding used to pack the parameters required for calling // PackF is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x28811f59. This method will panic if any // the contract method with ID 0x28811f59.
// invalid/nil inputs are passed.
// //
// Solidity: function F() view returns((bytes32)[] a, uint256[] c, bool[] d) // Solidity: function F() view returns((bytes32)[] a, uint256[] c, bool[] d)
func (structs *Structs) PackF() []byte { func (structs *Structs) PackF() []byte {
@ -74,15 +68,6 @@ func (structs *Structs) PackF() []byte {
return enc return enc
} }
// TryPackF is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x28811f59. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function F() view returns((bytes32)[] a, uint256[] c, bool[] d)
func (structs *Structs) TryPackF() ([]byte, error) {
return structs.abi.Pack("F")
}
// FOutput serves as a container for the return parameters of contract // FOutput serves as a container for the return parameters of contract
// method F. // method F.
type FOutput struct { type FOutput struct {
@ -104,12 +89,12 @@ func (structs *Structs) UnpackF(data []byte) (FOutput, error) {
outstruct.A = *abi.ConvertType(out[0], new([]Struct0)).(*[]Struct0) outstruct.A = *abi.ConvertType(out[0], new([]Struct0)).(*[]Struct0)
outstruct.C = *abi.ConvertType(out[1], new([]*big.Int)).(*[]*big.Int) outstruct.C = *abi.ConvertType(out[1], new([]*big.Int)).(*[]*big.Int)
outstruct.D = *abi.ConvertType(out[2], new([]bool)).(*[]bool) outstruct.D = *abi.ConvertType(out[2], new([]bool)).(*[]bool)
return *outstruct, nil return *outstruct, err
} }
// PackG is the Go binding used to pack the parameters required for calling // PackG is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x6fecb623. This method will panic if any // the contract method with ID 0x6fecb623.
// invalid/nil inputs are passed.
// //
// Solidity: function G() view returns((bytes32)[] a) // Solidity: function G() view returns((bytes32)[] a)
func (structs *Structs) PackG() []byte { func (structs *Structs) PackG() []byte {
@ -120,15 +105,6 @@ func (structs *Structs) PackG() []byte {
return enc return enc
} }
// TryPackG is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x6fecb623. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function G() view returns((bytes32)[] a)
func (structs *Structs) TryPackG() ([]byte, error) {
return structs.abi.Pack("G")
}
// UnpackG is the Go binding that unpacks the parameters returned // UnpackG is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x6fecb623. // from invoking the contract method with ID 0x6fecb623.
// //
@ -139,5 +115,5 @@ func (structs *Structs) UnpackG(data []byte) ([]Struct0, error) {
return *new([]Struct0), err return *new([]Struct0), err
} }
out0 := *abi.ConvertType(out[0], new([]Struct0)).(*[]Struct0) out0 := *abi.ConvertType(out[0], new([]Struct0)).(*[]Struct0)
return out0, nil return out0, err
} }

View file

@ -36,11 +36,6 @@ type Token struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *Token) GetABI() abi.ABI {
return c.abi
}
// NewToken creates a new instance of Token. // NewToken creates a new instance of Token.
func NewToken() *Token { func NewToken() *Token {
parsed, err := TokenMetaData.ParseABI() parsed, err := TokenMetaData.ParseABI()
@ -69,8 +64,7 @@ func (token *Token) PackConstructor(initialSupply *big.Int, tokenName string, de
} }
// PackAllowance is the Go binding used to pack the parameters required for calling // PackAllowance is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xdd62ed3e. This method will panic if any // the contract method with ID 0xdd62ed3e.
// invalid/nil inputs are passed.
// //
// Solidity: function allowance(address , address ) returns(uint256) // Solidity: function allowance(address , address ) returns(uint256)
func (token *Token) PackAllowance(arg0 common.Address, arg1 common.Address) []byte { func (token *Token) PackAllowance(arg0 common.Address, arg1 common.Address) []byte {
@ -81,15 +75,6 @@ func (token *Token) PackAllowance(arg0 common.Address, arg1 common.Address) []by
return enc return enc
} }
// TryPackAllowance is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xdd62ed3e. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function allowance(address , address ) returns(uint256)
func (token *Token) TryPackAllowance(arg0 common.Address, arg1 common.Address) ([]byte, error) {
return token.abi.Pack("allowance", arg0, arg1)
}
// UnpackAllowance is the Go binding that unpacks the parameters returned // UnpackAllowance is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0xdd62ed3e. // from invoking the contract method with ID 0xdd62ed3e.
// //
@ -100,12 +85,11 @@ func (token *Token) UnpackAllowance(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// PackApproveAndCall is the Go binding used to pack the parameters required for calling // PackApproveAndCall is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xcae9ca51. This method will panic if any // the contract method with ID 0xcae9ca51.
// invalid/nil inputs are passed.
// //
// Solidity: function approveAndCall(address _spender, uint256 _value, bytes _extraData) returns(bool success) // Solidity: function approveAndCall(address _spender, uint256 _value, bytes _extraData) returns(bool success)
func (token *Token) PackApproveAndCall(spender common.Address, value *big.Int, extraData []byte) []byte { func (token *Token) PackApproveAndCall(spender common.Address, value *big.Int, extraData []byte) []byte {
@ -116,15 +100,6 @@ func (token *Token) PackApproveAndCall(spender common.Address, value *big.Int, e
return enc return enc
} }
// TryPackApproveAndCall is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xcae9ca51. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function approveAndCall(address _spender, uint256 _value, bytes _extraData) returns(bool success)
func (token *Token) TryPackApproveAndCall(spender common.Address, value *big.Int, extraData []byte) ([]byte, error) {
return token.abi.Pack("approveAndCall", spender, value, extraData)
}
// UnpackApproveAndCall is the Go binding that unpacks the parameters returned // UnpackApproveAndCall is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0xcae9ca51. // from invoking the contract method with ID 0xcae9ca51.
// //
@ -135,12 +110,11 @@ func (token *Token) UnpackApproveAndCall(data []byte) (bool, error) {
return *new(bool), err return *new(bool), err
} }
out0 := *abi.ConvertType(out[0], new(bool)).(*bool) out0 := *abi.ConvertType(out[0], new(bool)).(*bool)
return out0, nil return out0, err
} }
// PackBalanceOf is the Go binding used to pack the parameters required for calling // PackBalanceOf is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x70a08231. This method will panic if any // the contract method with ID 0x70a08231.
// invalid/nil inputs are passed.
// //
// Solidity: function balanceOf(address ) returns(uint256) // Solidity: function balanceOf(address ) returns(uint256)
func (token *Token) PackBalanceOf(arg0 common.Address) []byte { func (token *Token) PackBalanceOf(arg0 common.Address) []byte {
@ -151,15 +125,6 @@ func (token *Token) PackBalanceOf(arg0 common.Address) []byte {
return enc return enc
} }
// TryPackBalanceOf is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x70a08231. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function balanceOf(address ) returns(uint256)
func (token *Token) TryPackBalanceOf(arg0 common.Address) ([]byte, error) {
return token.abi.Pack("balanceOf", arg0)
}
// UnpackBalanceOf is the Go binding that unpacks the parameters returned // UnpackBalanceOf is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x70a08231. // from invoking the contract method with ID 0x70a08231.
// //
@ -170,12 +135,11 @@ func (token *Token) UnpackBalanceOf(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// PackDecimals is the Go binding used to pack the parameters required for calling // PackDecimals is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x313ce567. This method will panic if any // the contract method with ID 0x313ce567.
// invalid/nil inputs are passed.
// //
// Solidity: function decimals() returns(uint8) // Solidity: function decimals() returns(uint8)
func (token *Token) PackDecimals() []byte { func (token *Token) PackDecimals() []byte {
@ -186,15 +150,6 @@ func (token *Token) PackDecimals() []byte {
return enc return enc
} }
// TryPackDecimals is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x313ce567. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function decimals() returns(uint8)
func (token *Token) TryPackDecimals() ([]byte, error) {
return token.abi.Pack("decimals")
}
// UnpackDecimals is the Go binding that unpacks the parameters returned // UnpackDecimals is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x313ce567. // from invoking the contract method with ID 0x313ce567.
// //
@ -205,12 +160,11 @@ func (token *Token) UnpackDecimals(data []byte) (uint8, error) {
return *new(uint8), err return *new(uint8), err
} }
out0 := *abi.ConvertType(out[0], new(uint8)).(*uint8) out0 := *abi.ConvertType(out[0], new(uint8)).(*uint8)
return out0, nil return out0, err
} }
// PackName is the Go binding used to pack the parameters required for calling // PackName is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x06fdde03. This method will panic if any // the contract method with ID 0x06fdde03.
// invalid/nil inputs are passed.
// //
// Solidity: function name() returns(string) // Solidity: function name() returns(string)
func (token *Token) PackName() []byte { func (token *Token) PackName() []byte {
@ -221,15 +175,6 @@ func (token *Token) PackName() []byte {
return enc return enc
} }
// TryPackName is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x06fdde03. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function name() returns(string)
func (token *Token) TryPackName() ([]byte, error) {
return token.abi.Pack("name")
}
// UnpackName is the Go binding that unpacks the parameters returned // UnpackName is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x06fdde03. // from invoking the contract method with ID 0x06fdde03.
// //
@ -240,12 +185,11 @@ func (token *Token) UnpackName(data []byte) (string, error) {
return *new(string), err return *new(string), err
} }
out0 := *abi.ConvertType(out[0], new(string)).(*string) out0 := *abi.ConvertType(out[0], new(string)).(*string)
return out0, nil return out0, err
} }
// PackSpentAllowance is the Go binding used to pack the parameters required for calling // PackSpentAllowance is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xdc3080f2. This method will panic if any // the contract method with ID 0xdc3080f2.
// invalid/nil inputs are passed.
// //
// Solidity: function spentAllowance(address , address ) returns(uint256) // Solidity: function spentAllowance(address , address ) returns(uint256)
func (token *Token) PackSpentAllowance(arg0 common.Address, arg1 common.Address) []byte { func (token *Token) PackSpentAllowance(arg0 common.Address, arg1 common.Address) []byte {
@ -256,15 +200,6 @@ func (token *Token) PackSpentAllowance(arg0 common.Address, arg1 common.Address)
return enc return enc
} }
// TryPackSpentAllowance is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xdc3080f2. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function spentAllowance(address , address ) returns(uint256)
func (token *Token) TryPackSpentAllowance(arg0 common.Address, arg1 common.Address) ([]byte, error) {
return token.abi.Pack("spentAllowance", arg0, arg1)
}
// UnpackSpentAllowance is the Go binding that unpacks the parameters returned // UnpackSpentAllowance is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0xdc3080f2. // from invoking the contract method with ID 0xdc3080f2.
// //
@ -275,12 +210,11 @@ func (token *Token) UnpackSpentAllowance(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// PackSymbol is the Go binding used to pack the parameters required for calling // PackSymbol is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x95d89b41. This method will panic if any // the contract method with ID 0x95d89b41.
// invalid/nil inputs are passed.
// //
// Solidity: function symbol() returns(string) // Solidity: function symbol() returns(string)
func (token *Token) PackSymbol() []byte { func (token *Token) PackSymbol() []byte {
@ -291,15 +225,6 @@ func (token *Token) PackSymbol() []byte {
return enc return enc
} }
// TryPackSymbol is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x95d89b41. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function symbol() returns(string)
func (token *Token) TryPackSymbol() ([]byte, error) {
return token.abi.Pack("symbol")
}
// UnpackSymbol is the Go binding that unpacks the parameters returned // UnpackSymbol is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x95d89b41. // from invoking the contract method with ID 0x95d89b41.
// //
@ -310,12 +235,11 @@ func (token *Token) UnpackSymbol(data []byte) (string, error) {
return *new(string), err return *new(string), err
} }
out0 := *abi.ConvertType(out[0], new(string)).(*string) out0 := *abi.ConvertType(out[0], new(string)).(*string)
return out0, nil return out0, err
} }
// PackTransfer is the Go binding used to pack the parameters required for calling // PackTransfer is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xa9059cbb. This method will panic if any // the contract method with ID 0xa9059cbb.
// invalid/nil inputs are passed.
// //
// Solidity: function transfer(address _to, uint256 _value) returns() // Solidity: function transfer(address _to, uint256 _value) returns()
func (token *Token) PackTransfer(to common.Address, value *big.Int) []byte { func (token *Token) PackTransfer(to common.Address, value *big.Int) []byte {
@ -326,18 +250,8 @@ func (token *Token) PackTransfer(to common.Address, value *big.Int) []byte {
return enc return enc
} }
// TryPackTransfer is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xa9059cbb. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function transfer(address _to, uint256 _value) returns()
func (token *Token) TryPackTransfer(to common.Address, value *big.Int) ([]byte, error) {
return token.abi.Pack("transfer", to, value)
}
// PackTransferFrom is the Go binding used to pack the parameters required for calling // PackTransferFrom is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x23b872dd. This method will panic if any // the contract method with ID 0x23b872dd.
// invalid/nil inputs are passed.
// //
// Solidity: function transferFrom(address _from, address _to, uint256 _value) returns(bool success) // Solidity: function transferFrom(address _from, address _to, uint256 _value) returns(bool success)
func (token *Token) PackTransferFrom(from common.Address, to common.Address, value *big.Int) []byte { func (token *Token) PackTransferFrom(from common.Address, to common.Address, value *big.Int) []byte {
@ -348,15 +262,6 @@ func (token *Token) PackTransferFrom(from common.Address, to common.Address, val
return enc return enc
} }
// TryPackTransferFrom is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x23b872dd. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function transferFrom(address _from, address _to, uint256 _value) returns(bool success)
func (token *Token) TryPackTransferFrom(from common.Address, to common.Address, value *big.Int) ([]byte, error) {
return token.abi.Pack("transferFrom", from, to, value)
}
// UnpackTransferFrom is the Go binding that unpacks the parameters returned // UnpackTransferFrom is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x23b872dd. // from invoking the contract method with ID 0x23b872dd.
// //
@ -367,7 +272,7 @@ func (token *Token) UnpackTransferFrom(data []byte) (bool, error) {
return *new(bool), err return *new(bool), err
} }
out0 := *abi.ConvertType(out[0], new(bool)).(*bool) out0 := *abi.ConvertType(out[0], new(bool)).(*bool)
return out0, nil return out0, err
} }
// TokenTransfer represents a Transfer event raised by the Token contract. // TokenTransfer represents a Transfer event raised by the Token contract.
@ -391,11 +296,8 @@ func (TokenTransfer) ContractEventName() string {
// Solidity: event Transfer(address indexed from, address indexed to, uint256 value) // Solidity: event Transfer(address indexed from, address indexed to, uint256 value)
func (token *Token) UnpackTransferEvent(log *types.Log) (*TokenTransfer, error) { func (token *Token) UnpackTransferEvent(log *types.Log) (*TokenTransfer, error) {
event := "Transfer" event := "Transfer"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != token.abi.Events[event].ID { if log.Topics[0] != token.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(TokenTransfer) out := new(TokenTransfer)
if len(log.Data) > 0 { if len(log.Data) > 0 {

View file

@ -61,11 +61,6 @@ type Tuple struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *Tuple) GetABI() abi.ABI {
return c.abi
}
// NewTuple creates a new instance of Tuple. // NewTuple creates a new instance of Tuple.
func NewTuple() *Tuple { func NewTuple() *Tuple {
parsed, err := TupleMetaData.ParseABI() parsed, err := TupleMetaData.ParseABI()
@ -82,8 +77,7 @@ func (c *Tuple) Instance(backend bind.ContractBackend, addr common.Address) *bin
} }
// PackFunc1 is the Go binding used to pack the parameters required for calling // PackFunc1 is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x443c79b4. This method will panic if any // the contract method with ID 0x443c79b4.
// invalid/nil inputs are passed.
// //
// Solidity: function func1((uint256,uint256[],(uint256,uint256)[]) a, (uint256,uint256)[2][] b, (uint256,uint256)[][2] c, (uint256,uint256[],(uint256,uint256)[])[] d, uint256[] e) pure returns((uint256,uint256[],(uint256,uint256)[]), (uint256,uint256)[2][], (uint256,uint256)[][2], (uint256,uint256[],(uint256,uint256)[])[], uint256[]) // Solidity: function func1((uint256,uint256[],(uint256,uint256)[]) a, (uint256,uint256)[2][] b, (uint256,uint256)[][2] c, (uint256,uint256[],(uint256,uint256)[])[] d, uint256[] e) pure returns((uint256,uint256[],(uint256,uint256)[]), (uint256,uint256)[2][], (uint256,uint256)[][2], (uint256,uint256[],(uint256,uint256)[])[], uint256[])
func (tuple *Tuple) PackFunc1(a TupleS, b [][2]TupleT, c [2][]TupleT, d []TupleS, e []*big.Int) []byte { func (tuple *Tuple) PackFunc1(a TupleS, b [][2]TupleT, c [2][]TupleT, d []TupleS, e []*big.Int) []byte {
@ -94,15 +88,6 @@ func (tuple *Tuple) PackFunc1(a TupleS, b [][2]TupleT, c [2][]TupleT, d []TupleS
return enc return enc
} }
// TryPackFunc1 is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x443c79b4. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function func1((uint256,uint256[],(uint256,uint256)[]) a, (uint256,uint256)[2][] b, (uint256,uint256)[][2] c, (uint256,uint256[],(uint256,uint256)[])[] d, uint256[] e) pure returns((uint256,uint256[],(uint256,uint256)[]), (uint256,uint256)[2][], (uint256,uint256)[][2], (uint256,uint256[],(uint256,uint256)[])[], uint256[])
func (tuple *Tuple) TryPackFunc1(a TupleS, b [][2]TupleT, c [2][]TupleT, d []TupleS, e []*big.Int) ([]byte, error) {
return tuple.abi.Pack("func1", a, b, c, d, e)
}
// Func1Output serves as a container for the return parameters of contract // Func1Output serves as a container for the return parameters of contract
// method Func1. // method Func1.
type Func1Output struct { type Func1Output struct {
@ -128,12 +113,12 @@ func (tuple *Tuple) UnpackFunc1(data []byte) (Func1Output, error) {
outstruct.Arg2 = *abi.ConvertType(out[2], new([2][]TupleT)).(*[2][]TupleT) outstruct.Arg2 = *abi.ConvertType(out[2], new([2][]TupleT)).(*[2][]TupleT)
outstruct.Arg3 = *abi.ConvertType(out[3], new([]TupleS)).(*[]TupleS) outstruct.Arg3 = *abi.ConvertType(out[3], new([]TupleS)).(*[]TupleS)
outstruct.Arg4 = *abi.ConvertType(out[4], new([]*big.Int)).(*[]*big.Int) outstruct.Arg4 = *abi.ConvertType(out[4], new([]*big.Int)).(*[]*big.Int)
return *outstruct, nil return *outstruct, err
} }
// PackFunc2 is the Go binding used to pack the parameters required for calling // PackFunc2 is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xd0062cdd. This method will panic if any // the contract method with ID 0xd0062cdd.
// invalid/nil inputs are passed.
// //
// Solidity: function func2((uint256,uint256[],(uint256,uint256)[]) a, (uint256,uint256)[2][] b, (uint256,uint256)[][2] c, (uint256,uint256[],(uint256,uint256)[])[] d, uint256[] e) returns() // Solidity: function func2((uint256,uint256[],(uint256,uint256)[]) a, (uint256,uint256)[2][] b, (uint256,uint256)[][2] c, (uint256,uint256[],(uint256,uint256)[])[] d, uint256[] e) returns()
func (tuple *Tuple) PackFunc2(a TupleS, b [][2]TupleT, c [2][]TupleT, d []TupleS, e []*big.Int) []byte { func (tuple *Tuple) PackFunc2(a TupleS, b [][2]TupleT, c [2][]TupleT, d []TupleS, e []*big.Int) []byte {
@ -144,18 +129,8 @@ func (tuple *Tuple) PackFunc2(a TupleS, b [][2]TupleT, c [2][]TupleT, d []TupleS
return enc return enc
} }
// TryPackFunc2 is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xd0062cdd. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function func2((uint256,uint256[],(uint256,uint256)[]) a, (uint256,uint256)[2][] b, (uint256,uint256)[][2] c, (uint256,uint256[],(uint256,uint256)[])[] d, uint256[] e) returns()
func (tuple *Tuple) TryPackFunc2(a TupleS, b [][2]TupleT, c [2][]TupleT, d []TupleS, e []*big.Int) ([]byte, error) {
return tuple.abi.Pack("func2", a, b, c, d, e)
}
// PackFunc3 is the Go binding used to pack the parameters required for calling // PackFunc3 is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xe4d9a43b. This method will panic if any // the contract method with ID 0xe4d9a43b.
// invalid/nil inputs are passed.
// //
// Solidity: function func3((uint16,uint16)[] ) pure returns() // Solidity: function func3((uint16,uint16)[] ) pure returns()
func (tuple *Tuple) PackFunc3(arg0 []TupleQ) []byte { func (tuple *Tuple) PackFunc3(arg0 []TupleQ) []byte {
@ -166,15 +141,6 @@ func (tuple *Tuple) PackFunc3(arg0 []TupleQ) []byte {
return enc return enc
} }
// TryPackFunc3 is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xe4d9a43b. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function func3((uint16,uint16)[] ) pure returns()
func (tuple *Tuple) TryPackFunc3(arg0 []TupleQ) ([]byte, error) {
return tuple.abi.Pack("func3", arg0)
}
// TupleTupleEvent represents a TupleEvent event raised by the Tuple contract. // TupleTupleEvent represents a TupleEvent event raised by the Tuple contract.
type TupleTupleEvent struct { type TupleTupleEvent struct {
A TupleS A TupleS
@ -198,11 +164,8 @@ func (TupleTupleEvent) ContractEventName() string {
// Solidity: event TupleEvent((uint256,uint256[],(uint256,uint256)[]) a, (uint256,uint256)[2][] b, (uint256,uint256)[][2] c, (uint256,uint256[],(uint256,uint256)[])[] d, uint256[] e) // Solidity: event TupleEvent((uint256,uint256[],(uint256,uint256)[]) a, (uint256,uint256)[2][] b, (uint256,uint256)[][2] c, (uint256,uint256[],(uint256,uint256)[])[] d, uint256[] e)
func (tuple *Tuple) UnpackTupleEventEvent(log *types.Log) (*TupleTupleEvent, error) { func (tuple *Tuple) UnpackTupleEventEvent(log *types.Log) (*TupleTupleEvent, error) {
event := "TupleEvent" event := "TupleEvent"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != tuple.abi.Events[event].ID { if log.Topics[0] != tuple.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(TupleTupleEvent) out := new(TupleTupleEvent)
if len(log.Data) > 0 { if len(log.Data) > 0 {
@ -242,11 +205,8 @@ func (TupleTupleEvent2) ContractEventName() string {
// Solidity: event TupleEvent2((uint8,uint8)[] arg0) // Solidity: event TupleEvent2((uint8,uint8)[] arg0)
func (tuple *Tuple) UnpackTupleEvent2Event(log *types.Log) (*TupleTupleEvent2, error) { func (tuple *Tuple) UnpackTupleEvent2Event(log *types.Log) (*TupleTupleEvent2, error) {
event := "TupleEvent2" event := "TupleEvent2"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != tuple.abi.Events[event].ID { if log.Topics[0] != tuple.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(TupleTupleEvent2) out := new(TupleTupleEvent2)
if len(log.Data) > 0 { if len(log.Data) > 0 {

View file

@ -36,11 +36,6 @@ type Tupler struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *Tupler) GetABI() abi.ABI {
return c.abi
}
// NewTupler creates a new instance of Tupler. // NewTupler creates a new instance of Tupler.
func NewTupler() *Tupler { func NewTupler() *Tupler {
parsed, err := TuplerMetaData.ParseABI() parsed, err := TuplerMetaData.ParseABI()
@ -57,8 +52,7 @@ func (c *Tupler) Instance(backend bind.ContractBackend, addr common.Address) *bi
} }
// PackTuple is the Go binding used to pack the parameters required for calling // PackTuple is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x3175aae2. This method will panic if any // the contract method with ID 0x3175aae2.
// invalid/nil inputs are passed.
// //
// Solidity: function tuple() returns(string a, int256 b, bytes32 c) // Solidity: function tuple() returns(string a, int256 b, bytes32 c)
func (tupler *Tupler) PackTuple() []byte { func (tupler *Tupler) PackTuple() []byte {
@ -69,15 +63,6 @@ func (tupler *Tupler) PackTuple() []byte {
return enc return enc
} }
// TryPackTuple is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x3175aae2. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function tuple() returns(string a, int256 b, bytes32 c)
func (tupler *Tupler) TryPackTuple() ([]byte, error) {
return tupler.abi.Pack("tuple")
}
// TupleOutput serves as a container for the return parameters of contract // TupleOutput serves as a container for the return parameters of contract
// method Tuple. // method Tuple.
type TupleOutput struct { type TupleOutput struct {
@ -99,5 +84,6 @@ func (tupler *Tupler) UnpackTuple(data []byte) (TupleOutput, error) {
outstruct.A = *abi.ConvertType(out[0], new(string)).(*string) outstruct.A = *abi.ConvertType(out[0], new(string)).(*string)
outstruct.B = abi.ConvertType(out[1], new(big.Int)).(*big.Int) outstruct.B = abi.ConvertType(out[1], new(big.Int)).(*big.Int)
outstruct.C = *abi.ConvertType(out[2], new([32]byte)).(*[32]byte) outstruct.C = *abi.ConvertType(out[2], new([32]byte)).(*[32]byte)
return *outstruct, nil return *outstruct, err
} }

View file

@ -36,11 +36,6 @@ type Underscorer struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *Underscorer) GetABI() abi.ABI {
return c.abi
}
// NewUnderscorer creates a new instance of Underscorer. // NewUnderscorer creates a new instance of Underscorer.
func NewUnderscorer() *Underscorer { func NewUnderscorer() *Underscorer {
parsed, err := UnderscorerMetaData.ParseABI() parsed, err := UnderscorerMetaData.ParseABI()
@ -57,8 +52,7 @@ func (c *Underscorer) Instance(backend bind.ContractBackend, addr common.Address
} }
// PackAllPurelyUnderscoredOutput is the Go binding used to pack the parameters required for calling // PackAllPurelyUnderscoredOutput is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xb564b34d. This method will panic if any // the contract method with ID 0xb564b34d.
// invalid/nil inputs are passed.
// //
// Solidity: function AllPurelyUnderscoredOutput() view returns(int256 _, int256 __) // Solidity: function AllPurelyUnderscoredOutput() view returns(int256 _, int256 __)
func (underscorer *Underscorer) PackAllPurelyUnderscoredOutput() []byte { func (underscorer *Underscorer) PackAllPurelyUnderscoredOutput() []byte {
@ -69,15 +63,6 @@ func (underscorer *Underscorer) PackAllPurelyUnderscoredOutput() []byte {
return enc return enc
} }
// TryPackAllPurelyUnderscoredOutput is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xb564b34d. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function AllPurelyUnderscoredOutput() view returns(int256 _, int256 __)
func (underscorer *Underscorer) TryPackAllPurelyUnderscoredOutput() ([]byte, error) {
return underscorer.abi.Pack("AllPurelyUnderscoredOutput")
}
// AllPurelyUnderscoredOutputOutput serves as a container for the return parameters of contract // AllPurelyUnderscoredOutputOutput serves as a container for the return parameters of contract
// method AllPurelyUnderscoredOutput. // method AllPurelyUnderscoredOutput.
type AllPurelyUnderscoredOutputOutput struct { type AllPurelyUnderscoredOutputOutput struct {
@ -97,12 +82,12 @@ func (underscorer *Underscorer) UnpackAllPurelyUnderscoredOutput(data []byte) (A
} }
outstruct.Arg0 = abi.ConvertType(out[0], new(big.Int)).(*big.Int) outstruct.Arg0 = abi.ConvertType(out[0], new(big.Int)).(*big.Int)
outstruct.Arg1 = abi.ConvertType(out[1], new(big.Int)).(*big.Int) outstruct.Arg1 = abi.ConvertType(out[1], new(big.Int)).(*big.Int)
return *outstruct, nil return *outstruct, err
} }
// PackLowerLowerCollision is the Go binding used to pack the parameters required for calling // PackLowerLowerCollision is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xe409ca45. This method will panic if any // the contract method with ID 0xe409ca45.
// invalid/nil inputs are passed.
// //
// Solidity: function LowerLowerCollision() view returns(int256 _res, int256 res) // Solidity: function LowerLowerCollision() view returns(int256 _res, int256 res)
func (underscorer *Underscorer) PackLowerLowerCollision() []byte { func (underscorer *Underscorer) PackLowerLowerCollision() []byte {
@ -113,15 +98,6 @@ func (underscorer *Underscorer) PackLowerLowerCollision() []byte {
return enc return enc
} }
// TryPackLowerLowerCollision is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xe409ca45. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function LowerLowerCollision() view returns(int256 _res, int256 res)
func (underscorer *Underscorer) TryPackLowerLowerCollision() ([]byte, error) {
return underscorer.abi.Pack("LowerLowerCollision")
}
// LowerLowerCollisionOutput serves as a container for the return parameters of contract // LowerLowerCollisionOutput serves as a container for the return parameters of contract
// method LowerLowerCollision. // method LowerLowerCollision.
type LowerLowerCollisionOutput struct { type LowerLowerCollisionOutput struct {
@ -141,12 +117,12 @@ func (underscorer *Underscorer) UnpackLowerLowerCollision(data []byte) (LowerLow
} }
outstruct.Res = abi.ConvertType(out[0], new(big.Int)).(*big.Int) outstruct.Res = abi.ConvertType(out[0], new(big.Int)).(*big.Int)
outstruct.Res0 = abi.ConvertType(out[1], new(big.Int)).(*big.Int) outstruct.Res0 = abi.ConvertType(out[1], new(big.Int)).(*big.Int)
return *outstruct, nil return *outstruct, err
} }
// PackLowerUpperCollision is the Go binding used to pack the parameters required for calling // PackLowerUpperCollision is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x03a59213. This method will panic if any // the contract method with ID 0x03a59213.
// invalid/nil inputs are passed.
// //
// Solidity: function LowerUpperCollision() view returns(int256 _res, int256 Res) // Solidity: function LowerUpperCollision() view returns(int256 _res, int256 Res)
func (underscorer *Underscorer) PackLowerUpperCollision() []byte { func (underscorer *Underscorer) PackLowerUpperCollision() []byte {
@ -157,15 +133,6 @@ func (underscorer *Underscorer) PackLowerUpperCollision() []byte {
return enc return enc
} }
// TryPackLowerUpperCollision is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x03a59213. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function LowerUpperCollision() view returns(int256 _res, int256 Res)
func (underscorer *Underscorer) TryPackLowerUpperCollision() ([]byte, error) {
return underscorer.abi.Pack("LowerUpperCollision")
}
// LowerUpperCollisionOutput serves as a container for the return parameters of contract // LowerUpperCollisionOutput serves as a container for the return parameters of contract
// method LowerUpperCollision. // method LowerUpperCollision.
type LowerUpperCollisionOutput struct { type LowerUpperCollisionOutput struct {
@ -185,12 +152,12 @@ func (underscorer *Underscorer) UnpackLowerUpperCollision(data []byte) (LowerUpp
} }
outstruct.Res = abi.ConvertType(out[0], new(big.Int)).(*big.Int) outstruct.Res = abi.ConvertType(out[0], new(big.Int)).(*big.Int)
outstruct.Res0 = abi.ConvertType(out[1], new(big.Int)).(*big.Int) outstruct.Res0 = abi.ConvertType(out[1], new(big.Int)).(*big.Int)
return *outstruct, nil return *outstruct, err
} }
// PackPurelyUnderscoredOutput is the Go binding used to pack the parameters required for calling // PackPurelyUnderscoredOutput is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x9df48485. This method will panic if any // the contract method with ID 0x9df48485.
// invalid/nil inputs are passed.
// //
// Solidity: function PurelyUnderscoredOutput() view returns(int256 _, int256 res) // Solidity: function PurelyUnderscoredOutput() view returns(int256 _, int256 res)
func (underscorer *Underscorer) PackPurelyUnderscoredOutput() []byte { func (underscorer *Underscorer) PackPurelyUnderscoredOutput() []byte {
@ -201,15 +168,6 @@ func (underscorer *Underscorer) PackPurelyUnderscoredOutput() []byte {
return enc return enc
} }
// TryPackPurelyUnderscoredOutput is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x9df48485. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function PurelyUnderscoredOutput() view returns(int256 _, int256 res)
func (underscorer *Underscorer) TryPackPurelyUnderscoredOutput() ([]byte, error) {
return underscorer.abi.Pack("PurelyUnderscoredOutput")
}
// PurelyUnderscoredOutputOutput serves as a container for the return parameters of contract // PurelyUnderscoredOutputOutput serves as a container for the return parameters of contract
// method PurelyUnderscoredOutput. // method PurelyUnderscoredOutput.
type PurelyUnderscoredOutputOutput struct { type PurelyUnderscoredOutputOutput struct {
@ -229,12 +187,12 @@ func (underscorer *Underscorer) UnpackPurelyUnderscoredOutput(data []byte) (Pure
} }
outstruct.Arg0 = abi.ConvertType(out[0], new(big.Int)).(*big.Int) outstruct.Arg0 = abi.ConvertType(out[0], new(big.Int)).(*big.Int)
outstruct.Res = abi.ConvertType(out[1], new(big.Int)).(*big.Int) outstruct.Res = abi.ConvertType(out[1], new(big.Int)).(*big.Int)
return *outstruct, nil return *outstruct, err
} }
// PackUnderscoredOutput is the Go binding used to pack the parameters required for calling // PackUnderscoredOutput is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x67e6633d. This method will panic if any // the contract method with ID 0x67e6633d.
// invalid/nil inputs are passed.
// //
// Solidity: function UnderscoredOutput() view returns(int256 _int, string _string) // Solidity: function UnderscoredOutput() view returns(int256 _int, string _string)
func (underscorer *Underscorer) PackUnderscoredOutput() []byte { func (underscorer *Underscorer) PackUnderscoredOutput() []byte {
@ -245,15 +203,6 @@ func (underscorer *Underscorer) PackUnderscoredOutput() []byte {
return enc return enc
} }
// TryPackUnderscoredOutput is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x67e6633d. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function UnderscoredOutput() view returns(int256 _int, string _string)
func (underscorer *Underscorer) TryPackUnderscoredOutput() ([]byte, error) {
return underscorer.abi.Pack("UnderscoredOutput")
}
// UnderscoredOutputOutput serves as a container for the return parameters of contract // UnderscoredOutputOutput serves as a container for the return parameters of contract
// method UnderscoredOutput. // method UnderscoredOutput.
type UnderscoredOutputOutput struct { type UnderscoredOutputOutput struct {
@ -273,12 +222,12 @@ func (underscorer *Underscorer) UnpackUnderscoredOutput(data []byte) (Underscore
} }
outstruct.Int = abi.ConvertType(out[0], new(big.Int)).(*big.Int) outstruct.Int = abi.ConvertType(out[0], new(big.Int)).(*big.Int)
outstruct.String = *abi.ConvertType(out[1], new(string)).(*string) outstruct.String = *abi.ConvertType(out[1], new(string)).(*string)
return *outstruct, nil return *outstruct, err
} }
// PackUpperLowerCollision is the Go binding used to pack the parameters required for calling // PackUpperLowerCollision is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xaf7486ab. This method will panic if any // the contract method with ID 0xaf7486ab.
// invalid/nil inputs are passed.
// //
// Solidity: function UpperLowerCollision() view returns(int256 _Res, int256 res) // Solidity: function UpperLowerCollision() view returns(int256 _Res, int256 res)
func (underscorer *Underscorer) PackUpperLowerCollision() []byte { func (underscorer *Underscorer) PackUpperLowerCollision() []byte {
@ -289,15 +238,6 @@ func (underscorer *Underscorer) PackUpperLowerCollision() []byte {
return enc return enc
} }
// TryPackUpperLowerCollision is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xaf7486ab. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function UpperLowerCollision() view returns(int256 _Res, int256 res)
func (underscorer *Underscorer) TryPackUpperLowerCollision() ([]byte, error) {
return underscorer.abi.Pack("UpperLowerCollision")
}
// UpperLowerCollisionOutput serves as a container for the return parameters of contract // UpperLowerCollisionOutput serves as a container for the return parameters of contract
// method UpperLowerCollision. // method UpperLowerCollision.
type UpperLowerCollisionOutput struct { type UpperLowerCollisionOutput struct {
@ -317,12 +257,12 @@ func (underscorer *Underscorer) UnpackUpperLowerCollision(data []byte) (UpperLow
} }
outstruct.Res = abi.ConvertType(out[0], new(big.Int)).(*big.Int) outstruct.Res = abi.ConvertType(out[0], new(big.Int)).(*big.Int)
outstruct.Res0 = abi.ConvertType(out[1], new(big.Int)).(*big.Int) outstruct.Res0 = abi.ConvertType(out[1], new(big.Int)).(*big.Int)
return *outstruct, nil return *outstruct, err
} }
// PackUpperUpperCollision is the Go binding used to pack the parameters required for calling // PackUpperUpperCollision is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xe02ab24d. This method will panic if any // the contract method with ID 0xe02ab24d.
// invalid/nil inputs are passed.
// //
// Solidity: function UpperUpperCollision() view returns(int256 _Res, int256 Res) // Solidity: function UpperUpperCollision() view returns(int256 _Res, int256 Res)
func (underscorer *Underscorer) PackUpperUpperCollision() []byte { func (underscorer *Underscorer) PackUpperUpperCollision() []byte {
@ -333,15 +273,6 @@ func (underscorer *Underscorer) PackUpperUpperCollision() []byte {
return enc return enc
} }
// TryPackUpperUpperCollision is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xe02ab24d. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function UpperUpperCollision() view returns(int256 _Res, int256 Res)
func (underscorer *Underscorer) TryPackUpperUpperCollision() ([]byte, error) {
return underscorer.abi.Pack("UpperUpperCollision")
}
// UpperUpperCollisionOutput serves as a container for the return parameters of contract // UpperUpperCollisionOutput serves as a container for the return parameters of contract
// method UpperUpperCollision. // method UpperUpperCollision.
type UpperUpperCollisionOutput struct { type UpperUpperCollisionOutput struct {
@ -361,12 +292,12 @@ func (underscorer *Underscorer) UnpackUpperUpperCollision(data []byte) (UpperUpp
} }
outstruct.Res = abi.ConvertType(out[0], new(big.Int)).(*big.Int) outstruct.Res = abi.ConvertType(out[0], new(big.Int)).(*big.Int)
outstruct.Res0 = abi.ConvertType(out[1], new(big.Int)).(*big.Int) outstruct.Res0 = abi.ConvertType(out[1], new(big.Int)).(*big.Int)
return *outstruct, nil return *outstruct, err
} }
// PackUnderScoredFunc is the Go binding used to pack the parameters required for calling // PackUnderScoredFunc is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x46546dbe. This method will panic if any // the contract method with ID 0x46546dbe.
// invalid/nil inputs are passed.
// //
// Solidity: function _under_scored_func() view returns(int256 _int) // Solidity: function _under_scored_func() view returns(int256 _int)
func (underscorer *Underscorer) PackUnderScoredFunc() []byte { func (underscorer *Underscorer) PackUnderScoredFunc() []byte {
@ -377,15 +308,6 @@ func (underscorer *Underscorer) PackUnderScoredFunc() []byte {
return enc return enc
} }
// TryPackUnderScoredFunc is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x46546dbe. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function _under_scored_func() view returns(int256 _int)
func (underscorer *Underscorer) TryPackUnderScoredFunc() ([]byte, error) {
return underscorer.abi.Pack("_under_scored_func")
}
// UnpackUnderScoredFunc is the Go binding that unpacks the parameters returned // UnpackUnderScoredFunc is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x46546dbe. // from invoking the contract method with ID 0x46546dbe.
// //
@ -396,5 +318,5 @@ func (underscorer *Underscorer) UnpackUnderScoredFunc(data []byte) (*big.Int, er
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }

View file

@ -112,7 +112,7 @@ func (arguments Arguments) UnpackIntoMap(v map[string]any, data []byte) error {
// Copy performs the operation go format -> provided struct. // Copy performs the operation go format -> provided struct.
func (arguments Arguments) Copy(v any, values []any) error { func (arguments Arguments) Copy(v any, values []any) error {
// make sure the passed value is arguments pointer // make sure the passed value is arguments pointer
if reflect.Pointer != reflect.ValueOf(v).Kind() { if reflect.Ptr != reflect.ValueOf(v).Kind() {
return fmt.Errorf("abi: Unpack(non-pointer %T)", v) return fmt.Errorf("abi: Unpack(non-pointer %T)", v)
} }
if len(values) == 0 { if len(values) == 0 {
@ -165,7 +165,7 @@ func (arguments Arguments) copyTuple(v any, marshalledValues []any) error {
} }
case reflect.Slice, reflect.Array: case reflect.Slice, reflect.Array:
if value.Len() < len(marshalledValues) { if value.Len() < len(marshalledValues) {
return fmt.Errorf("abi: insufficient number of arguments for unpack, want %d, got %d", len(marshalledValues), value.Len()) return fmt.Errorf("abi: insufficient number of arguments for unpack, want %d, got %d", len(arguments), value.Len())
} }
for i := range nonIndexedArgs { for i := range nonIndexedArgs {
if err := set(value.Index(i), reflect.ValueOf(marshalledValues[i])); err != nil { if err := set(value.Index(i), reflect.ValueOf(marshalledValues[i])); err != nil {

View file

@ -176,13 +176,6 @@ var (
// ErrNoCodeAfterDeploy is returned by WaitDeployed if contract creation leaves // ErrNoCodeAfterDeploy is returned by WaitDeployed if contract creation leaves
// an empty contract behind. // an empty contract behind.
ErrNoCodeAfterDeploy = bind2.ErrNoCodeAfterDeploy ErrNoCodeAfterDeploy = bind2.ErrNoCodeAfterDeploy
// ErrNoEventSignature is returned when a log entry has no topics.
ErrNoEventSignature = bind2.ErrNoEventSignature
// ErrEventSignatureMismatch is returned when a log's topic[0] does not match
// the expected event signature.
ErrEventSignatureMismatch = bind2.ErrEventSignatureMismatch
) )
// ContractCaller defines the methods needed to allow operating with a contract on a read // ContractCaller defines the methods needed to allow operating with a contract on a read
@ -273,12 +266,6 @@ func (m *MetaData) GetAbi() (*abi.ABI, error) {
// util.go // util.go
// WaitAccepted waits for a tx to be accepted into the pool.
// It stops waiting when the context is canceled.
func WaitAccepted(ctx context.Context, b ContractBackend, tx *types.Transaction) error {
return bind2.WaitAccepted(ctx, b, tx.Hash())
}
// WaitMined waits for tx to be mined on the blockchain. // WaitMined waits for tx to be mined on the blockchain.
// It stops waiting when the context is canceled. // It stops waiting when the context is canceled.
func WaitMined(ctx context.Context, b DeployBackend, tx *types.Transaction) (*types.Receipt, error) { func WaitMined(ctx context.Context, b DeployBackend, tx *types.Transaction) (*types.Receipt, error) {

View file

@ -103,9 +103,6 @@ type ContractTransactor interface {
// PendingNonceAt retrieves the current pending nonce associated with an account. // PendingNonceAt retrieves the current pending nonce associated with an account.
PendingNonceAt(ctx context.Context, account common.Address) (uint64, error) PendingNonceAt(ctx context.Context, account common.Address) (uint64, error)
// TransactionByHash retrieves the transaction associated with the hash, if it exists in the pool.
TransactionByHash(ctx context.Context, hash common.Hash) (tx *types.Transaction, isPending bool, err error)
} }
// DeployBackend wraps the operations needed by WaitMined and WaitDeployed. // DeployBackend wraps the operations needed by WaitMined and WaitDeployed.

View file

@ -35,8 +35,8 @@ import (
const basefeeWiggleMultiplier = 2 const basefeeWiggleMultiplier = 2
var ( var (
ErrNoEventSignature = errors.New("no event signature") errNoEventSignature = errors.New("no event signature")
ErrEventSignatureMismatch = errors.New("event signature mismatch") errEventSignatureMismatch = errors.New("event signature mismatch")
) )
// SignerFn is a signer function callback when a contract requires a method to // SignerFn is a signer function callback when a contract requires a method to
@ -150,11 +150,6 @@ func NewBoundContract(address common.Address, abi abi.ABI, caller ContractCaller
} }
} }
// Address returns the deployment address of the contract.
func (c *BoundContract) Address() common.Address {
return c.address
}
// Call invokes the (constant) contract method with params as input values and // Call invokes the (constant) contract method with params as input values and
// sets the output to result. The result type might be a single field for simple // sets the output to result. The result type might be a single field for simple
// returns, a slice of interfaces for anonymous returns and a struct for named // returns, a slice of interfaces for anonymous returns and a struct for named
@ -277,10 +272,8 @@ func (c *BoundContract) RawCreationTransact(opts *TransactOpts, calldata []byte)
// Transfer initiates a plain transaction to move funds to the contract, calling // Transfer initiates a plain transaction to move funds to the contract, calling
// its default method if one is available. // its default method if one is available.
func (c *BoundContract) Transfer(opts *TransactOpts) (*types.Transaction, error) { func (c *BoundContract) Transfer(opts *TransactOpts) (*types.Transaction, error) {
// Check if payable fallback or receive is defined // todo(rjl493456442) check the payable fallback or receive is defined
if !c.abi.HasReceive() && !(c.abi.HasFallback() && c.abi.Fallback.IsPayable()) { // or not, reject invalid transaction at the first place
return nil, fmt.Errorf("contract does not have a payable fallback or receive function")
}
return c.transact(opts, &c.address, nil) return c.transact(opts, &c.address, nil)
} }
@ -320,7 +313,7 @@ func (c *BoundContract) createDynamicTx(opts *TransactOpts, contract *common.Add
} }
} }
// create the transaction // create the transaction
nonce, err := c.GetNonce(opts) nonce, err := c.getNonce(opts)
if err != nil { if err != nil {
return nil, err return nil, err
} }
@ -365,7 +358,7 @@ func (c *BoundContract) createLegacyTx(opts *TransactOpts, contract *common.Addr
} }
} }
// create the transaction // create the transaction
nonce, err := c.GetNonce(opts) nonce, err := c.getNonce(opts)
if err != nil { if err != nil {
return nil, err return nil, err
} }
@ -390,19 +383,18 @@ func (c *BoundContract) estimateGasLimit(opts *TransactOpts, contract *common.Ad
} }
} }
msg := ethereum.CallMsg{ msg := ethereum.CallMsg{
From: opts.From, From: opts.From,
To: contract, To: contract,
GasPrice: gasPrice, GasPrice: gasPrice,
GasTipCap: gasTipCap, GasTipCap: gasTipCap,
GasFeeCap: gasFeeCap, GasFeeCap: gasFeeCap,
Value: value, Value: value,
Data: input, Data: input,
AccessList: opts.AccessList,
} }
return c.transactor.EstimateGas(ensureContext(opts.Context), msg) return c.transactor.EstimateGas(ensureContext(opts.Context), msg)
} }
func (c *BoundContract) GetNonce(opts *TransactOpts) (uint64, error) { func (c *BoundContract) getNonce(opts *TransactOpts) (uint64, error) {
if opts.Nonce == nil { if opts.Nonce == nil {
return c.transactor.PendingNonceAt(ensureContext(opts.Context), opts.From) return c.transactor.PendingNonceAt(ensureContext(opts.Context), opts.From)
} else { } else {
@ -536,10 +528,10 @@ func (c *BoundContract) WatchLogs(opts *WatchOpts, name string, query ...[]any)
func (c *BoundContract) UnpackLog(out any, event string, log types.Log) error { func (c *BoundContract) UnpackLog(out any, event string, log types.Log) error {
// Anonymous events are not supported. // Anonymous events are not supported.
if len(log.Topics) == 0 { if len(log.Topics) == 0 {
return ErrNoEventSignature return errNoEventSignature
} }
if log.Topics[0] != c.abi.Events[event].ID { if log.Topics[0] != c.abi.Events[event].ID {
return ErrEventSignatureMismatch return errEventSignatureMismatch
} }
if len(log.Data) > 0 { if len(log.Data) > 0 {
if err := c.abi.UnpackIntoInterface(out, event, log.Data); err != nil { if err := c.abi.UnpackIntoInterface(out, event, log.Data); err != nil {
@ -559,10 +551,10 @@ func (c *BoundContract) UnpackLog(out any, event string, log types.Log) error {
func (c *BoundContract) UnpackLogIntoMap(out map[string]any, event string, log types.Log) error { func (c *BoundContract) UnpackLogIntoMap(out map[string]any, event string, log types.Log) error {
// Anonymous events are not supported. // Anonymous events are not supported.
if len(log.Topics) == 0 { if len(log.Topics) == 0 {
return ErrNoEventSignature return errNoEventSignature
} }
if log.Topics[0] != c.abi.Events[event].ID { if log.Topics[0] != c.abi.Events[event].ID {
return ErrEventSignatureMismatch return errEventSignatureMismatch
} }
if len(log.Data) > 0 { if len(log.Data) > 0 {
if err := c.abi.UnpackIntoMap(out, event, log.Data); err != nil { if err := c.abi.UnpackIntoMap(out, event, log.Data); err != nil {

View file

@ -75,10 +75,6 @@ func (mt *mockTransactor) SendTransaction(ctx context.Context, tx *types.Transac
return nil return nil
} }
func (mt *mockTransactor) TransactionByHash(ctx context.Context, hash common.Hash) (*types.Transaction, bool, error) {
return nil, false, nil
}
type mockCaller struct { type mockCaller struct {
codeAtBlockNumber *big.Int codeAtBlockNumber *big.Int
callContractBlockNumber *big.Int callContractBlockNumber *big.Int

View file

@ -158,10 +158,10 @@ func testLinkCase(tcInput linkTestCaseInput) error {
overrideAddrs = make(map[rune]common.Address) overrideAddrs = make(map[rune]common.Address)
) )
// generate deterministic addresses for the override set. // generate deterministic addresses for the override set.
rng := rand.New(rand.NewSource(42)) rand.Seed(42)
for contract := range tcInput.overrides { for contract := range tcInput.overrides {
var addr common.Address var addr common.Address
rng.Read(addr[:]) rand.Read(addr[:])
overrideAddrs[contract] = addr overrideAddrs[contract] = addr
overridesAddrs[addr] = struct{}{} overridesAddrs[addr] = struct{}{}
} }
@ -329,7 +329,7 @@ func TestContractLinking(t *testing.T) {
map[rune]struct{}{}, map[rune]struct{}{},
}, },
// two contracts ('a' and 'f') share some dependencies. contract 'a' is marked as an override. expect that any of // two contracts ('a' and 'f') share some dependencies. contract 'a' is marked as an override. expect that any of
// its dependencies that aren't shared with 'f' are not deployed. // its depdencies that aren't shared with 'f' are not deployed.
linkTestCaseInput{map[rune][]rune{ linkTestCaseInput{map[rune][]rune{
'a': {'b', 'c', 'd', 'e'}, 'a': {'b', 'c', 'd', 'e'},
'f': {'g', 'c', 'd', 'h'}}, 'f': {'g', 'c', 'd', 'h'}},

View file

@ -43,11 +43,6 @@ type DB struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *DB) GetABI() abi.ABI {
return c.abi
}
// NewDB creates a new instance of DB. // NewDB creates a new instance of DB.
func NewDB() *DB { func NewDB() *DB {
parsed, err := DBMetaData.ParseABI() parsed, err := DBMetaData.ParseABI()
@ -64,8 +59,7 @@ func (c *DB) Instance(backend bind.ContractBackend, addr common.Address) *bind.B
} }
// PackGet is the Go binding used to pack the parameters required for calling // PackGet is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x9507d39a. This method will panic if any // the contract method with ID 0x9507d39a.
// invalid/nil inputs are passed.
// //
// Solidity: function get(uint256 k) returns(uint256) // Solidity: function get(uint256 k) returns(uint256)
func (dB *DB) PackGet(k *big.Int) []byte { func (dB *DB) PackGet(k *big.Int) []byte {
@ -76,15 +70,6 @@ func (dB *DB) PackGet(k *big.Int) []byte {
return enc return enc
} }
// TryPackGet is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x9507d39a. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function get(uint256 k) returns(uint256)
func (dB *DB) TryPackGet(k *big.Int) ([]byte, error) {
return dB.abi.Pack("get", k)
}
// UnpackGet is the Go binding that unpacks the parameters returned // UnpackGet is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x9507d39a. // from invoking the contract method with ID 0x9507d39a.
// //
@ -95,12 +80,11 @@ func (dB *DB) UnpackGet(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// PackGetNamedStatParams is the Go binding used to pack the parameters required for calling // PackGetNamedStatParams is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xe369ba3b. This method will panic if any // the contract method with ID 0xe369ba3b.
// invalid/nil inputs are passed.
// //
// Solidity: function getNamedStatParams() view returns(uint256 gets, uint256 inserts, uint256 mods) // Solidity: function getNamedStatParams() view returns(uint256 gets, uint256 inserts, uint256 mods)
func (dB *DB) PackGetNamedStatParams() []byte { func (dB *DB) PackGetNamedStatParams() []byte {
@ -111,15 +95,6 @@ func (dB *DB) PackGetNamedStatParams() []byte {
return enc return enc
} }
// TryPackGetNamedStatParams is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xe369ba3b. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function getNamedStatParams() view returns(uint256 gets, uint256 inserts, uint256 mods)
func (dB *DB) TryPackGetNamedStatParams() ([]byte, error) {
return dB.abi.Pack("getNamedStatParams")
}
// GetNamedStatParamsOutput serves as a container for the return parameters of contract // GetNamedStatParamsOutput serves as a container for the return parameters of contract
// method GetNamedStatParams. // method GetNamedStatParams.
type GetNamedStatParamsOutput struct { type GetNamedStatParamsOutput struct {
@ -141,12 +116,12 @@ func (dB *DB) UnpackGetNamedStatParams(data []byte) (GetNamedStatParamsOutput, e
outstruct.Gets = abi.ConvertType(out[0], new(big.Int)).(*big.Int) outstruct.Gets = abi.ConvertType(out[0], new(big.Int)).(*big.Int)
outstruct.Inserts = abi.ConvertType(out[1], new(big.Int)).(*big.Int) outstruct.Inserts = abi.ConvertType(out[1], new(big.Int)).(*big.Int)
outstruct.Mods = abi.ConvertType(out[2], new(big.Int)).(*big.Int) outstruct.Mods = abi.ConvertType(out[2], new(big.Int)).(*big.Int)
return *outstruct, nil return *outstruct, err
} }
// PackGetStatParams is the Go binding used to pack the parameters required for calling // PackGetStatParams is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x6fcb9c70. This method will panic if any // the contract method with ID 0x6fcb9c70.
// invalid/nil inputs are passed.
// //
// Solidity: function getStatParams() view returns(uint256, uint256, uint256) // Solidity: function getStatParams() view returns(uint256, uint256, uint256)
func (dB *DB) PackGetStatParams() []byte { func (dB *DB) PackGetStatParams() []byte {
@ -157,15 +132,6 @@ func (dB *DB) PackGetStatParams() []byte {
return enc return enc
} }
// TryPackGetStatParams is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x6fcb9c70. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function getStatParams() view returns(uint256, uint256, uint256)
func (dB *DB) TryPackGetStatParams() ([]byte, error) {
return dB.abi.Pack("getStatParams")
}
// GetStatParamsOutput serves as a container for the return parameters of contract // GetStatParamsOutput serves as a container for the return parameters of contract
// method GetStatParams. // method GetStatParams.
type GetStatParamsOutput struct { type GetStatParamsOutput struct {
@ -187,12 +153,12 @@ func (dB *DB) UnpackGetStatParams(data []byte) (GetStatParamsOutput, error) {
outstruct.Arg0 = abi.ConvertType(out[0], new(big.Int)).(*big.Int) outstruct.Arg0 = abi.ConvertType(out[0], new(big.Int)).(*big.Int)
outstruct.Arg1 = abi.ConvertType(out[1], new(big.Int)).(*big.Int) outstruct.Arg1 = abi.ConvertType(out[1], new(big.Int)).(*big.Int)
outstruct.Arg2 = abi.ConvertType(out[2], new(big.Int)).(*big.Int) outstruct.Arg2 = abi.ConvertType(out[2], new(big.Int)).(*big.Int)
return *outstruct, nil return *outstruct, err
} }
// PackGetStatsStruct is the Go binding used to pack the parameters required for calling // PackGetStatsStruct is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xee8161e0. This method will panic if any // the contract method with ID 0xee8161e0.
// invalid/nil inputs are passed.
// //
// Solidity: function getStatsStruct() view returns((uint256,uint256,uint256)) // Solidity: function getStatsStruct() view returns((uint256,uint256,uint256))
func (dB *DB) PackGetStatsStruct() []byte { func (dB *DB) PackGetStatsStruct() []byte {
@ -203,15 +169,6 @@ func (dB *DB) PackGetStatsStruct() []byte {
return enc return enc
} }
// TryPackGetStatsStruct is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xee8161e0. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function getStatsStruct() view returns((uint256,uint256,uint256))
func (dB *DB) TryPackGetStatsStruct() ([]byte, error) {
return dB.abi.Pack("getStatsStruct")
}
// UnpackGetStatsStruct is the Go binding that unpacks the parameters returned // UnpackGetStatsStruct is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0xee8161e0. // from invoking the contract method with ID 0xee8161e0.
// //
@ -222,12 +179,11 @@ func (dB *DB) UnpackGetStatsStruct(data []byte) (DBStats, error) {
return *new(DBStats), err return *new(DBStats), err
} }
out0 := *abi.ConvertType(out[0], new(DBStats)).(*DBStats) out0 := *abi.ConvertType(out[0], new(DBStats)).(*DBStats)
return out0, nil return out0, err
} }
// PackInsert is the Go binding used to pack the parameters required for calling // PackInsert is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x1d834a1b. This method will panic if any // the contract method with ID 0x1d834a1b.
// invalid/nil inputs are passed.
// //
// Solidity: function insert(uint256 k, uint256 v) returns(uint256) // Solidity: function insert(uint256 k, uint256 v) returns(uint256)
func (dB *DB) PackInsert(k *big.Int, v *big.Int) []byte { func (dB *DB) PackInsert(k *big.Int, v *big.Int) []byte {
@ -238,15 +194,6 @@ func (dB *DB) PackInsert(k *big.Int, v *big.Int) []byte {
return enc return enc
} }
// TryPackInsert is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x1d834a1b. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function insert(uint256 k, uint256 v) returns(uint256)
func (dB *DB) TryPackInsert(k *big.Int, v *big.Int) ([]byte, error) {
return dB.abi.Pack("insert", k, v)
}
// UnpackInsert is the Go binding that unpacks the parameters returned // UnpackInsert is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x1d834a1b. // from invoking the contract method with ID 0x1d834a1b.
// //
@ -257,7 +204,7 @@ func (dB *DB) UnpackInsert(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// DBInsert represents a Insert event raised by the DB contract. // DBInsert represents a Insert event raised by the DB contract.
@ -281,11 +228,8 @@ func (DBInsert) ContractEventName() string {
// Solidity: event Insert(uint256 key, uint256 value, uint256 length) // Solidity: event Insert(uint256 key, uint256 value, uint256 length)
func (dB *DB) UnpackInsertEvent(log *types.Log) (*DBInsert, error) { func (dB *DB) UnpackInsertEvent(log *types.Log) (*DBInsert, error) {
event := "Insert" event := "Insert"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != dB.abi.Events[event].ID { if log.Topics[0] != dB.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(DBInsert) out := new(DBInsert)
if len(log.Data) > 0 { if len(log.Data) > 0 {
@ -326,11 +270,8 @@ func (DBKeyedInsert) ContractEventName() string {
// Solidity: event KeyedInsert(uint256 indexed key, uint256 value) // Solidity: event KeyedInsert(uint256 indexed key, uint256 value)
func (dB *DB) UnpackKeyedInsertEvent(log *types.Log) (*DBKeyedInsert, error) { func (dB *DB) UnpackKeyedInsertEvent(log *types.Log) (*DBKeyedInsert, error) {
event := "KeyedInsert" event := "KeyedInsert"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != dB.abi.Events[event].ID { if log.Topics[0] != dB.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(DBKeyedInsert) out := new(DBKeyedInsert)
if len(log.Data) > 0 { if len(log.Data) > 0 {

View file

@ -36,11 +36,6 @@ type C struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *C) GetABI() abi.ABI {
return c.abi
}
// NewC creates a new instance of C. // NewC creates a new instance of C.
func NewC() *C { func NewC() *C {
parsed, err := CMetaData.ParseABI() parsed, err := CMetaData.ParseABI()
@ -57,8 +52,7 @@ func (c *C) Instance(backend bind.ContractBackend, addr common.Address) *bind.Bo
} }
// PackEmitMulti is the Go binding used to pack the parameters required for calling // PackEmitMulti is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xcb493749. This method will panic if any // the contract method with ID 0xcb493749.
// invalid/nil inputs are passed.
// //
// Solidity: function EmitMulti() returns() // Solidity: function EmitMulti() returns()
func (c *C) PackEmitMulti() []byte { func (c *C) PackEmitMulti() []byte {
@ -69,18 +63,8 @@ func (c *C) PackEmitMulti() []byte {
return enc return enc
} }
// TryPackEmitMulti is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xcb493749. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function EmitMulti() returns()
func (c *C) TryPackEmitMulti() ([]byte, error) {
return c.abi.Pack("EmitMulti")
}
// PackEmitOne is the Go binding used to pack the parameters required for calling // PackEmitOne is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xe8e49a71. This method will panic if any // the contract method with ID 0xe8e49a71.
// invalid/nil inputs are passed.
// //
// Solidity: function EmitOne() returns() // Solidity: function EmitOne() returns()
func (c *C) PackEmitOne() []byte { func (c *C) PackEmitOne() []byte {
@ -91,15 +75,6 @@ func (c *C) PackEmitOne() []byte {
return enc return enc
} }
// TryPackEmitOne is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xe8e49a71. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function EmitOne() returns()
func (c *C) TryPackEmitOne() ([]byte, error) {
return c.abi.Pack("EmitOne")
}
// CBasic1 represents a basic1 event raised by the C contract. // CBasic1 represents a basic1 event raised by the C contract.
type CBasic1 struct { type CBasic1 struct {
Id *big.Int Id *big.Int
@ -120,11 +95,8 @@ func (CBasic1) ContractEventName() string {
// Solidity: event basic1(uint256 indexed id, uint256 data) // Solidity: event basic1(uint256 indexed id, uint256 data)
func (c *C) UnpackBasic1Event(log *types.Log) (*CBasic1, error) { func (c *C) UnpackBasic1Event(log *types.Log) (*CBasic1, error) {
event := "basic1" event := "basic1"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != c.abi.Events[event].ID { if log.Topics[0] != c.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(CBasic1) out := new(CBasic1)
if len(log.Data) > 0 { if len(log.Data) > 0 {
@ -165,11 +137,8 @@ func (CBasic2) ContractEventName() string {
// Solidity: event basic2(bool indexed flag, uint256 data) // Solidity: event basic2(bool indexed flag, uint256 data)
func (c *C) UnpackBasic2Event(log *types.Log) (*CBasic2, error) { func (c *C) UnpackBasic2Event(log *types.Log) (*CBasic2, error) {
event := "basic2" event := "basic2"
if len(log.Topics) == 0 {
return nil, bind.ErrNoEventSignature
}
if log.Topics[0] != c.abi.Events[event].ID { if log.Topics[0] != c.abi.Events[event].ID {
return nil, bind.ErrEventSignatureMismatch return nil, errors.New("event signature mismatch")
} }
out := new(CBasic2) out := new(CBasic2)
if len(log.Data) > 0 { if len(log.Data) > 0 {

View file

@ -40,11 +40,6 @@ type C1 struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *C1) GetABI() abi.ABI {
return c.abi
}
// NewC1 creates a new instance of C1. // NewC1 creates a new instance of C1.
func NewC1() *C1 { func NewC1() *C1 {
parsed, err := C1MetaData.ParseABI() parsed, err := C1MetaData.ParseABI()
@ -73,8 +68,7 @@ func (c1 *C1) PackConstructor(v1 *big.Int, v2 *big.Int) []byte {
} }
// PackDo is the Go binding used to pack the parameters required for calling // PackDo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x2ad11272. This method will panic if any // the contract method with ID 0x2ad11272.
// invalid/nil inputs are passed.
// //
// Solidity: function Do(uint256 val) pure returns(uint256 res) // Solidity: function Do(uint256 val) pure returns(uint256 res)
func (c1 *C1) PackDo(val *big.Int) []byte { func (c1 *C1) PackDo(val *big.Int) []byte {
@ -85,15 +79,6 @@ func (c1 *C1) PackDo(val *big.Int) []byte {
return enc return enc
} }
// TryPackDo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x2ad11272. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function Do(uint256 val) pure returns(uint256 res)
func (c1 *C1) TryPackDo(val *big.Int) ([]byte, error) {
return c1.abi.Pack("Do", val)
}
// UnpackDo is the Go binding that unpacks the parameters returned // UnpackDo is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x2ad11272. // from invoking the contract method with ID 0x2ad11272.
// //
@ -104,7 +89,7 @@ func (c1 *C1) UnpackDo(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// C2MetaData contains all meta data concerning the C2 contract. // C2MetaData contains all meta data concerning the C2 contract.
@ -123,11 +108,6 @@ type C2 struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *C2) GetABI() abi.ABI {
return c.abi
}
// NewC2 creates a new instance of C2. // NewC2 creates a new instance of C2.
func NewC2() *C2 { func NewC2() *C2 {
parsed, err := C2MetaData.ParseABI() parsed, err := C2MetaData.ParseABI()
@ -156,8 +136,7 @@ func (c2 *C2) PackConstructor(v1 *big.Int, v2 *big.Int) []byte {
} }
// PackDo is the Go binding used to pack the parameters required for calling // PackDo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x2ad11272. This method will panic if any // the contract method with ID 0x2ad11272.
// invalid/nil inputs are passed.
// //
// Solidity: function Do(uint256 val) pure returns(uint256 res) // Solidity: function Do(uint256 val) pure returns(uint256 res)
func (c2 *C2) PackDo(val *big.Int) []byte { func (c2 *C2) PackDo(val *big.Int) []byte {
@ -168,15 +147,6 @@ func (c2 *C2) PackDo(val *big.Int) []byte {
return enc return enc
} }
// TryPackDo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x2ad11272. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function Do(uint256 val) pure returns(uint256 res)
func (c2 *C2) TryPackDo(val *big.Int) ([]byte, error) {
return c2.abi.Pack("Do", val)
}
// UnpackDo is the Go binding that unpacks the parameters returned // UnpackDo is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x2ad11272. // from invoking the contract method with ID 0x2ad11272.
// //
@ -187,7 +157,7 @@ func (c2 *C2) UnpackDo(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// L1MetaData contains all meta data concerning the L1 contract. // L1MetaData contains all meta data concerning the L1 contract.
@ -202,11 +172,6 @@ type L1 struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *L1) GetABI() abi.ABI {
return c.abi
}
// NewL1 creates a new instance of L1. // NewL1 creates a new instance of L1.
func NewL1() *L1 { func NewL1() *L1 {
parsed, err := L1MetaData.ParseABI() parsed, err := L1MetaData.ParseABI()
@ -223,8 +188,7 @@ func (c *L1) Instance(backend bind.ContractBackend, addr common.Address) *bind.B
} }
// PackDo is the Go binding used to pack the parameters required for calling // PackDo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x2ad11272. This method will panic if any // the contract method with ID 0x2ad11272.
// invalid/nil inputs are passed.
// //
// Solidity: function Do(uint256 val) pure returns(uint256) // Solidity: function Do(uint256 val) pure returns(uint256)
func (l1 *L1) PackDo(val *big.Int) []byte { func (l1 *L1) PackDo(val *big.Int) []byte {
@ -235,15 +199,6 @@ func (l1 *L1) PackDo(val *big.Int) []byte {
return enc return enc
} }
// TryPackDo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x2ad11272. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function Do(uint256 val) pure returns(uint256)
func (l1 *L1) TryPackDo(val *big.Int) ([]byte, error) {
return l1.abi.Pack("Do", val)
}
// UnpackDo is the Go binding that unpacks the parameters returned // UnpackDo is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x2ad11272. // from invoking the contract method with ID 0x2ad11272.
// //
@ -254,7 +209,7 @@ func (l1 *L1) UnpackDo(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// L2MetaData contains all meta data concerning the L2 contract. // L2MetaData contains all meta data concerning the L2 contract.
@ -272,11 +227,6 @@ type L2 struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *L2) GetABI() abi.ABI {
return c.abi
}
// NewL2 creates a new instance of L2. // NewL2 creates a new instance of L2.
func NewL2() *L2 { func NewL2() *L2 {
parsed, err := L2MetaData.ParseABI() parsed, err := L2MetaData.ParseABI()
@ -293,8 +243,7 @@ func (c *L2) Instance(backend bind.ContractBackend, addr common.Address) *bind.B
} }
// PackDo is the Go binding used to pack the parameters required for calling // PackDo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x2ad11272. This method will panic if any // the contract method with ID 0x2ad11272.
// invalid/nil inputs are passed.
// //
// Solidity: function Do(uint256 val) pure returns(uint256) // Solidity: function Do(uint256 val) pure returns(uint256)
func (l2 *L2) PackDo(val *big.Int) []byte { func (l2 *L2) PackDo(val *big.Int) []byte {
@ -305,15 +254,6 @@ func (l2 *L2) PackDo(val *big.Int) []byte {
return enc return enc
} }
// TryPackDo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x2ad11272. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function Do(uint256 val) pure returns(uint256)
func (l2 *L2) TryPackDo(val *big.Int) ([]byte, error) {
return l2.abi.Pack("Do", val)
}
// UnpackDo is the Go binding that unpacks the parameters returned // UnpackDo is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x2ad11272. // from invoking the contract method with ID 0x2ad11272.
// //
@ -324,7 +264,7 @@ func (l2 *L2) UnpackDo(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// L2bMetaData contains all meta data concerning the L2b contract. // L2bMetaData contains all meta data concerning the L2b contract.
@ -342,11 +282,6 @@ type L2b struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *L2b) GetABI() abi.ABI {
return c.abi
}
// NewL2b creates a new instance of L2b. // NewL2b creates a new instance of L2b.
func NewL2b() *L2b { func NewL2b() *L2b {
parsed, err := L2bMetaData.ParseABI() parsed, err := L2bMetaData.ParseABI()
@ -363,8 +298,7 @@ func (c *L2b) Instance(backend bind.ContractBackend, addr common.Address) *bind.
} }
// PackDo is the Go binding used to pack the parameters required for calling // PackDo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x2ad11272. This method will panic if any // the contract method with ID 0x2ad11272.
// invalid/nil inputs are passed.
// //
// Solidity: function Do(uint256 val) pure returns(uint256) // Solidity: function Do(uint256 val) pure returns(uint256)
func (l2b *L2b) PackDo(val *big.Int) []byte { func (l2b *L2b) PackDo(val *big.Int) []byte {
@ -375,15 +309,6 @@ func (l2b *L2b) PackDo(val *big.Int) []byte {
return enc return enc
} }
// TryPackDo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x2ad11272. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function Do(uint256 val) pure returns(uint256)
func (l2b *L2b) TryPackDo(val *big.Int) ([]byte, error) {
return l2b.abi.Pack("Do", val)
}
// UnpackDo is the Go binding that unpacks the parameters returned // UnpackDo is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x2ad11272. // from invoking the contract method with ID 0x2ad11272.
// //
@ -394,7 +319,7 @@ func (l2b *L2b) UnpackDo(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// L3MetaData contains all meta data concerning the L3 contract. // L3MetaData contains all meta data concerning the L3 contract.
@ -409,11 +334,6 @@ type L3 struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *L3) GetABI() abi.ABI {
return c.abi
}
// NewL3 creates a new instance of L3. // NewL3 creates a new instance of L3.
func NewL3() *L3 { func NewL3() *L3 {
parsed, err := L3MetaData.ParseABI() parsed, err := L3MetaData.ParseABI()
@ -430,8 +350,7 @@ func (c *L3) Instance(backend bind.ContractBackend, addr common.Address) *bind.B
} }
// PackDo is the Go binding used to pack the parameters required for calling // PackDo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x2ad11272. This method will panic if any // the contract method with ID 0x2ad11272.
// invalid/nil inputs are passed.
// //
// Solidity: function Do(uint256 val) pure returns(uint256) // Solidity: function Do(uint256 val) pure returns(uint256)
func (l3 *L3) PackDo(val *big.Int) []byte { func (l3 *L3) PackDo(val *big.Int) []byte {
@ -442,15 +361,6 @@ func (l3 *L3) PackDo(val *big.Int) []byte {
return enc return enc
} }
// TryPackDo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x2ad11272. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function Do(uint256 val) pure returns(uint256)
func (l3 *L3) TryPackDo(val *big.Int) ([]byte, error) {
return l3.abi.Pack("Do", val)
}
// UnpackDo is the Go binding that unpacks the parameters returned // UnpackDo is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x2ad11272. // from invoking the contract method with ID 0x2ad11272.
// //
@ -461,7 +371,7 @@ func (l3 *L3) UnpackDo(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// L4MetaData contains all meta data concerning the L4 contract. // L4MetaData contains all meta data concerning the L4 contract.
@ -480,11 +390,6 @@ type L4 struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *L4) GetABI() abi.ABI {
return c.abi
}
// NewL4 creates a new instance of L4. // NewL4 creates a new instance of L4.
func NewL4() *L4 { func NewL4() *L4 {
parsed, err := L4MetaData.ParseABI() parsed, err := L4MetaData.ParseABI()
@ -501,8 +406,7 @@ func (c *L4) Instance(backend bind.ContractBackend, addr common.Address) *bind.B
} }
// PackDo is the Go binding used to pack the parameters required for calling // PackDo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x2ad11272. This method will panic if any // the contract method with ID 0x2ad11272.
// invalid/nil inputs are passed.
// //
// Solidity: function Do(uint256 val) pure returns(uint256) // Solidity: function Do(uint256 val) pure returns(uint256)
func (l4 *L4) PackDo(val *big.Int) []byte { func (l4 *L4) PackDo(val *big.Int) []byte {
@ -513,15 +417,6 @@ func (l4 *L4) PackDo(val *big.Int) []byte {
return enc return enc
} }
// TryPackDo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x2ad11272. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function Do(uint256 val) pure returns(uint256)
func (l4 *L4) TryPackDo(val *big.Int) ([]byte, error) {
return l4.abi.Pack("Do", val)
}
// UnpackDo is the Go binding that unpacks the parameters returned // UnpackDo is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x2ad11272. // from invoking the contract method with ID 0x2ad11272.
// //
@ -532,7 +427,7 @@ func (l4 *L4) UnpackDo(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }
// L4bMetaData contains all meta data concerning the L4b contract. // L4bMetaData contains all meta data concerning the L4b contract.
@ -550,11 +445,6 @@ type L4b struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *L4b) GetABI() abi.ABI {
return c.abi
}
// NewL4b creates a new instance of L4b. // NewL4b creates a new instance of L4b.
func NewL4b() *L4b { func NewL4b() *L4b {
parsed, err := L4bMetaData.ParseABI() parsed, err := L4bMetaData.ParseABI()
@ -571,8 +461,7 @@ func (c *L4b) Instance(backend bind.ContractBackend, addr common.Address) *bind.
} }
// PackDo is the Go binding used to pack the parameters required for calling // PackDo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x2ad11272. This method will panic if any // the contract method with ID 0x2ad11272.
// invalid/nil inputs are passed.
// //
// Solidity: function Do(uint256 val) pure returns(uint256) // Solidity: function Do(uint256 val) pure returns(uint256)
func (l4b *L4b) PackDo(val *big.Int) []byte { func (l4b *L4b) PackDo(val *big.Int) []byte {
@ -583,15 +472,6 @@ func (l4b *L4b) PackDo(val *big.Int) []byte {
return enc return enc
} }
// TryPackDo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0x2ad11272. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function Do(uint256 val) pure returns(uint256)
func (l4b *L4b) TryPackDo(val *big.Int) ([]byte, error) {
return l4b.abi.Pack("Do", val)
}
// UnpackDo is the Go binding that unpacks the parameters returned // UnpackDo is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0x2ad11272. // from invoking the contract method with ID 0x2ad11272.
// //
@ -602,5 +482,5 @@ func (l4b *L4b) UnpackDo(data []byte) (*big.Int, error) {
return new(big.Int), err return new(big.Int), err
} }
out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int) out0 := abi.ConvertType(out[0], new(big.Int)).(*big.Int)
return out0, nil return out0, err
} }

View file

@ -36,11 +36,6 @@ type C struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *C) GetABI() abi.ABI {
return c.abi
}
// NewC creates a new instance of C. // NewC creates a new instance of C.
func NewC() *C { func NewC() *C {
parsed, err := CMetaData.ParseABI() parsed, err := CMetaData.ParseABI()
@ -57,8 +52,7 @@ func (c *C) Instance(backend bind.ContractBackend, addr common.Address) *bind.Bo
} }
// PackBar is the Go binding used to pack the parameters required for calling // PackBar is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xb0a378b0. This method will panic if any // the contract method with ID 0xb0a378b0.
// invalid/nil inputs are passed.
// //
// Solidity: function Bar() pure returns() // Solidity: function Bar() pure returns()
func (c *C) PackBar() []byte { func (c *C) PackBar() []byte {
@ -69,18 +63,8 @@ func (c *C) PackBar() []byte {
return enc return enc
} }
// TryPackBar is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xb0a378b0. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function Bar() pure returns()
func (c *C) TryPackBar() ([]byte, error) {
return c.abi.Pack("Bar")
}
// PackFoo is the Go binding used to pack the parameters required for calling // PackFoo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xbfb4ebcf. This method will panic if any // the contract method with ID 0xbfb4ebcf.
// invalid/nil inputs are passed.
// //
// Solidity: function Foo() pure returns() // Solidity: function Foo() pure returns()
func (c *C) PackFoo() []byte { func (c *C) PackFoo() []byte {
@ -91,15 +75,6 @@ func (c *C) PackFoo() []byte {
return enc return enc
} }
// TryPackFoo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xbfb4ebcf. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function Foo() pure returns()
func (c *C) TryPackFoo() ([]byte, error) {
return c.abi.Pack("Foo")
}
// UnpackError attempts to decode the provided error data using user-defined // UnpackError attempts to decode the provided error data using user-defined
// error definitions. // error definitions.
func (c *C) UnpackError(raw []byte) (any, error) { func (c *C) UnpackError(raw []byte) (any, error) {
@ -178,11 +153,6 @@ type C2 struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *C2) GetABI() abi.ABI {
return c.abi
}
// NewC2 creates a new instance of C2. // NewC2 creates a new instance of C2.
func NewC2() *C2 { func NewC2() *C2 {
parsed, err := C2MetaData.ParseABI() parsed, err := C2MetaData.ParseABI()
@ -199,8 +169,7 @@ func (c *C2) Instance(backend bind.ContractBackend, addr common.Address) *bind.B
} }
// PackFoo is the Go binding used to pack the parameters required for calling // PackFoo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xbfb4ebcf. This method will panic if any // the contract method with ID 0xbfb4ebcf.
// invalid/nil inputs are passed.
// //
// Solidity: function Foo() pure returns() // Solidity: function Foo() pure returns()
func (c2 *C2) PackFoo() []byte { func (c2 *C2) PackFoo() []byte {
@ -211,15 +180,6 @@ func (c2 *C2) PackFoo() []byte {
return enc return enc
} }
// TryPackFoo is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xbfb4ebcf. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function Foo() pure returns()
func (c2 *C2) TryPackFoo() ([]byte, error) {
return c2.abi.Pack("Foo")
}
// UnpackError attempts to decode the provided error data using user-defined // UnpackError attempts to decode the provided error data using user-defined
// error definitions. // error definitions.
func (c2 *C2) UnpackError(raw []byte) (any, error) { func (c2 *C2) UnpackError(raw []byte) (any, error) {

View file

@ -36,11 +36,6 @@ type MyContract struct {
abi abi.ABI abi abi.ABI
} }
// GetABI returns the ABI associated with this contract binding.
func (c *MyContract) GetABI() abi.ABI {
return c.abi
}
// NewMyContract creates a new instance of MyContract. // NewMyContract creates a new instance of MyContract.
func NewMyContract() *MyContract { func NewMyContract() *MyContract {
parsed, err := MyContractMetaData.ParseABI() parsed, err := MyContractMetaData.ParseABI()
@ -57,8 +52,7 @@ func (c *MyContract) Instance(backend bind.ContractBackend, addr common.Address)
} }
// PackGetNums is the Go binding used to pack the parameters required for calling // PackGetNums is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xbd6d1007. This method will panic if any // the contract method with ID 0xbd6d1007.
// invalid/nil inputs are passed.
// //
// Solidity: function GetNums() pure returns(uint256[5]) // Solidity: function GetNums() pure returns(uint256[5])
func (myContract *MyContract) PackGetNums() []byte { func (myContract *MyContract) PackGetNums() []byte {
@ -69,15 +63,6 @@ func (myContract *MyContract) PackGetNums() []byte {
return enc return enc
} }
// TryPackGetNums is the Go binding used to pack the parameters required for calling
// the contract method with ID 0xbd6d1007. This method will return an error
// if any inputs are invalid/nil.
//
// Solidity: function GetNums() pure returns(uint256[5])
func (myContract *MyContract) TryPackGetNums() ([]byte, error) {
return myContract.abi.Pack("GetNums")
}
// UnpackGetNums is the Go binding that unpacks the parameters returned // UnpackGetNums is the Go binding that unpacks the parameters returned
// from invoking the contract method with ID 0xbd6d1007. // from invoking the contract method with ID 0xbd6d1007.
// //
@ -88,5 +73,5 @@ func (myContract *MyContract) UnpackGetNums(data []byte) ([5]*big.Int, error) {
return *new([5]*big.Int), err return *new([5]*big.Int), err
} }
out0 := *abi.ConvertType(out[0], new([5]*big.Int)).(*[5]*big.Int) out0 := *abi.ConvertType(out[0], new([5]*big.Int)).(*[5]*big.Int)
return out0, nil return out0, err
} }

View file

@ -28,7 +28,6 @@ package bind
import ( import (
"errors" "errors"
"math/big"
"github.com/ethereum/go-ethereum" "github.com/ethereum/go-ethereum"
"github.com/ethereum/go-ethereum/accounts/abi" "github.com/ethereum/go-ethereum/accounts/abi"
@ -242,27 +241,3 @@ func DefaultDeployer(opts *TransactOpts, backend ContractBackend) DeployFn {
return addr, tx, nil return addr, tx, nil
} }
} }
// DeployerWithNonceAssignment is basically identical to DefaultDeployer,
// but it additionally tracks the nonce to enable automatic assignment.
//
// This is especially useful when deploying multiple contracts
// from the same address — whether they are independent contracts
// or part of a dependency chain that must be deployed in order.
func DeployerWithNonceAssignment(opts *TransactOpts, backend ContractBackend) DeployFn {
var pendingNonce int64
if opts.Nonce != nil {
pendingNonce = opts.Nonce.Int64()
}
return func(input []byte, deployer []byte) (common.Address, *types.Transaction, error) {
if pendingNonce != 0 {
opts.Nonce = big.NewInt(pendingNonce)
}
addr, tx, err := DeployContract(opts, deployer, backend, input)
if err != nil {
return common.Address{}, nil, err
}
pendingNonce = int64(tx.Nonce() + 1)
return addr, tx, nil
}
}

View file

@ -65,14 +65,6 @@ func makeTestDeployer(backend simulated.Client) func(input, deployer []byte) (co
return bind.DefaultDeployer(bind.NewKeyedTransactor(testKey, chainId), backend) return bind.DefaultDeployer(bind.NewKeyedTransactor(testKey, chainId), backend)
} }
// makeTestDeployerWithNonceAssignment is similar to makeTestDeployer,
// but it returns a deployer that automatically tracks nonce,
// enabling the deployment of multiple contracts from the same account.
func makeTestDeployerWithNonceAssignment(backend simulated.Client) func(input, deployer []byte) (common.Address, *types.Transaction, error) {
chainId, _ := backend.ChainID(context.Background())
return bind.DeployerWithNonceAssignment(bind.NewKeyedTransactor(testKey, chainId), backend)
}
// test that deploying a contract with library dependencies works, // test that deploying a contract with library dependencies works,
// verifying by calling method on the deployed contract. // verifying by calling method on the deployed contract.
func TestDeploymentLibraries(t *testing.T) { func TestDeploymentLibraries(t *testing.T) {
@ -88,7 +80,7 @@ func TestDeploymentLibraries(t *testing.T) {
Contracts: []*bind.MetaData{&nested_libraries.C1MetaData}, Contracts: []*bind.MetaData{&nested_libraries.C1MetaData},
Inputs: map[string][]byte{nested_libraries.C1MetaData.ID: constructorInput}, Inputs: map[string][]byte{nested_libraries.C1MetaData.ID: constructorInput},
} }
res, err := bind.LinkAndDeploy(deploymentParams, makeTestDeployerWithNonceAssignment(bindBackend.Client)) res, err := bind.LinkAndDeploy(deploymentParams, makeTestDeployer(bindBackend.Client))
if err != nil { if err != nil {
t.Fatalf("err: %+v\n", err) t.Fatalf("err: %+v\n", err)
} }
@ -130,7 +122,7 @@ func TestDeploymentWithOverrides(t *testing.T) {
deploymentParams := &bind.DeploymentParams{ deploymentParams := &bind.DeploymentParams{
Contracts: nested_libraries.C1MetaData.Deps, Contracts: nested_libraries.C1MetaData.Deps,
} }
res, err := bind.LinkAndDeploy(deploymentParams, makeTestDeployerWithNonceAssignment(bindBackend)) res, err := bind.LinkAndDeploy(deploymentParams, makeTestDeployer(bindBackend))
if err != nil { if err != nil {
t.Fatalf("err: %+v\n", err) t.Fatalf("err: %+v\n", err)
} }
@ -310,7 +302,7 @@ done:
t.Fatalf("expected e1Count of 2 from filter call. got %d", e1Count) t.Fatalf("expected e1Count of 2 from filter call. got %d", e1Count)
} }
if e2Count != 1 { if e2Count != 1 {
t.Fatalf("expected e2Count of 1 from filter call. got %d", e2Count) t.Fatalf("expected e2Count of 1 from filter call. got %d", e1Count)
} }
} }
@ -367,28 +359,3 @@ func TestErrors(t *testing.T) {
t.Fatalf("bad unpacked error result: expected Arg4 to be false. got true") t.Fatalf("bad unpacked error result: expected Arg4 to be false. got true")
} }
} }
func TestEventUnpackEmptyTopics(t *testing.T) {
c := events.NewC()
for _, log := range []*types.Log{
{Topics: []common.Hash{}},
{Topics: nil},
} {
_, err := c.UnpackBasic1Event(log)
if err == nil {
t.Fatal("expected error when unpacking event with empty topics, got nil")
}
if err != bind.ErrNoEventSignature {
t.Fatalf("expected 'no event signature' error, got: %v", err)
}
_, err = c.UnpackBasic2Event(log)
if err == nil {
t.Fatal("expected error when unpacking event with empty topics, got nil")
}
if err != bind.ErrNoEventSignature {
t.Fatalf("expected 'no event signature' error, got: %v", err)
}
}
}

View file

@ -75,28 +75,3 @@ func WaitDeployed(ctx context.Context, b DeployBackend, hash common.Hash) (commo
} }
return receipt.ContractAddress, err return receipt.ContractAddress, err
} }
func WaitAccepted(ctx context.Context, d ContractBackend, txHash common.Hash) error {
queryTicker := time.NewTicker(time.Second)
defer queryTicker.Stop()
logger := log.New("hash", txHash)
for {
_, _, err := d.TransactionByHash(ctx, txHash)
if err == nil {
return nil
}
if errors.Is(err, ethereum.NotFound) { // TODO: check this is emitted
logger.Trace("Transaction not yet accepted")
} else {
logger.Trace("Transaction submission failed", "err", err)
}
// Wait for the next round.
select {
case <-ctx.Done():
return ctx.Err()
case <-queryTicker.C:
}
}
}

View file

@ -100,29 +100,22 @@ func TestWaitDeployed(t *testing.T) {
} }
func TestWaitDeployedCornerCases(t *testing.T) { func TestWaitDeployedCornerCases(t *testing.T) {
var ( backend := simulated.NewBackend(
backend = simulated.NewBackend( types.GenesisAlloc{
types.GenesisAlloc{ crypto.PubkeyToAddress(testKey.PublicKey): {Balance: big.NewInt(10000000000000000)},
crypto.PubkeyToAddress(testKey.PublicKey): {Balance: big.NewInt(10000000000000000)}, },
},
)
head, _ = backend.Client().HeaderByNumber(t.Context(), nil) // Should be child's, good enough
gasPrice = new(big.Int).Add(head.BaseFee, big.NewInt(1))
signer = types.LatestSigner(params.AllDevChainProtocolChanges)
code = common.FromHex("6060604052600a8060106000396000f360606040526008565b00")
ctx, cancel = context.WithCancel(t.Context())
) )
defer backend.Close() defer backend.Close()
// 1. WaitDeploy on a transaction that does not deploy a contract, verify it head, _ := backend.Client().HeaderByNumber(context.Background(), nil) // Should be child's, good enough
// returns an error. gasPrice := new(big.Int).Add(head.BaseFee, big.NewInt(1))
tx := types.MustSignNewTx(testKey, signer, &types.LegacyTx{
Nonce: 0, // Create a transaction to an account.
To: &common.Address{0x01}, code := "6060604052600a8060106000396000f360606040526008565b00"
Gas: 300000, tx := types.NewTransaction(0, common.HexToAddress("0x01"), big.NewInt(0), 3000000, gasPrice, common.FromHex(code))
GasPrice: gasPrice, tx, _ = types.SignTx(tx, types.LatestSigner(params.AllDevChainProtocolChanges), testKey)
Data: code, ctx, cancel := context.WithCancel(context.Background())
}) defer cancel()
if err := backend.Client().SendTransaction(ctx, tx); err != nil { if err := backend.Client().SendTransaction(ctx, tx); err != nil {
t.Errorf("failed to send transaction: %q", err) t.Errorf("failed to send transaction: %q", err)
} }
@ -131,22 +124,14 @@ func TestWaitDeployedCornerCases(t *testing.T) {
t.Errorf("error mismatch: want %q, got %q, ", bind.ErrNoAddressInReceipt, err) t.Errorf("error mismatch: want %q, got %q, ", bind.ErrNoAddressInReceipt, err)
} }
// 2. Create a contract, but cancel the WaitDeploy before it is mined. // Create a transaction that is not mined.
tx = types.MustSignNewTx(testKey, signer, &types.LegacyTx{ tx = types.NewContractCreation(1, big.NewInt(0), 3000000, gasPrice, common.FromHex(code))
Nonce: 1, tx, _ = types.SignTx(tx, types.LatestSigner(params.AllDevChainProtocolChanges), testKey)
Gas: 300000,
GasPrice: gasPrice,
Data: code,
})
// Wait in another thread so that we can quickly cancel it after submitting
// the transaction.
done := make(chan struct{})
go func() { go func() {
defer close(done) contextCanceled := errors.New("context canceled")
_, err := bind.WaitDeployed(ctx, backend.Client(), tx.Hash()) if _, err := bind.WaitDeployed(ctx, backend.Client(), tx.Hash()); err.Error() != contextCanceled.Error() {
if !errors.Is(err, context.Canceled) { t.Errorf("error mismatch: want %q, got %q, ", contextCanceled, err)
t.Errorf("error mismatch: want %v, got %v", context.Canceled, err)
} }
}() }()
@ -154,11 +139,4 @@ func TestWaitDeployedCornerCases(t *testing.T) {
t.Errorf("failed to send transaction: %q", err) t.Errorf("failed to send transaction: %q", err)
} }
cancel() cancel()
// Wait for goroutine to exit or for a timeout.
select {
case <-done:
case <-time.After(time.Second * 2):
t.Fatalf("failed to cancel wait deploy")
}
} }

View file

@ -23,16 +23,15 @@ import (
) )
var ( var (
errBadBool = errors.New("abi: improperly encoded boolean value") errBadBool = errors.New("abi: improperly encoded boolean value")
errBadUint8 = errors.New("abi: improperly encoded uint8 value") errBadUint8 = errors.New("abi: improperly encoded uint8 value")
errBadUint16 = errors.New("abi: improperly encoded uint16 value") errBadUint16 = errors.New("abi: improperly encoded uint16 value")
errBadUint32 = errors.New("abi: improperly encoded uint32 value") errBadUint32 = errors.New("abi: improperly encoded uint32 value")
errBadUint64 = errors.New("abi: improperly encoded uint64 value") errBadUint64 = errors.New("abi: improperly encoded uint64 value")
errBadInt8 = errors.New("abi: improperly encoded int8 value") errBadInt8 = errors.New("abi: improperly encoded int8 value")
errBadInt16 = errors.New("abi: improperly encoded int16 value") errBadInt16 = errors.New("abi: improperly encoded int16 value")
errBadInt32 = errors.New("abi: improperly encoded int32 value") errBadInt32 = errors.New("abi: improperly encoded int32 value")
errBadInt64 = errors.New("abi: improperly encoded int64 value") errBadInt64 = errors.New("abi: improperly encoded int64 value")
errInvalidSign = errors.New("abi: negatively-signed value cannot be packed into uint parameter")
) )
// formatSliceString formats the reflection kind with the given slice size // formatSliceString formats the reflection kind with the given slice size

View file

@ -37,16 +37,7 @@ func packBytesSlice(bytes []byte, l int) []byte {
// t. // t.
func packElement(t Type, reflectValue reflect.Value) ([]byte, error) { func packElement(t Type, reflectValue reflect.Value) ([]byte, error) {
switch t.T { switch t.T {
case UintTy: case IntTy, UintTy:
// make sure to not pack a negative value into a uint type.
if reflectValue.Kind() == reflect.Pointer {
val := new(big.Int).Set(reflectValue.Interface().(*big.Int))
if val.Sign() == -1 {
return nil, errInvalidSign
}
}
return packNum(reflectValue), nil
case IntTy:
return packNum(reflectValue), nil return packNum(reflectValue), nil
case StringTy: case StringTy:
return packBytesSlice([]byte(reflectValue.String()), reflectValue.Len()), nil return packBytesSlice([]byte(reflectValue.String()), reflectValue.Len()), nil
@ -86,7 +77,7 @@ func packNum(value reflect.Value) []byte {
return math.U256Bytes(new(big.Int).SetUint64(value.Uint())) return math.U256Bytes(new(big.Int).SetUint64(value.Uint()))
case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64: case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64:
return math.U256Bytes(big.NewInt(value.Int())) return math.U256Bytes(big.NewInt(value.Int()))
case reflect.Pointer: case reflect.Ptr:
return math.U256Bytes(new(big.Int).Set(value.Interface().(*big.Int))) return math.U256Bytes(new(big.Int).Set(value.Interface().(*big.Int)))
default: default:
panic("abi: fatal error") panic("abi: fatal error")

View file

@ -177,11 +177,6 @@ func TestMethodPack(t *testing.T) {
if !bytes.Equal(packed, sig) { if !bytes.Equal(packed, sig) {
t.Errorf("expected %x got %x", sig, packed) t.Errorf("expected %x got %x", sig, packed)
} }
// test that we can't pack a negative value for a parameter that is specified as a uint
if _, err := abi.Pack("send", big.NewInt(-1)); err == nil {
t.Fatal("expected error when trying to pack negative big.Int into uint256 value")
}
} }
func TestPackNumber(t *testing.T) { func TestPackNumber(t *testing.T) {

View file

@ -53,7 +53,7 @@ func ConvertType(in interface{}, proto interface{}) interface{} {
// indirect recursively dereferences the value until it either gets the value // indirect recursively dereferences the value until it either gets the value
// or finds a big.Int // or finds a big.Int
func indirect(v reflect.Value) reflect.Value { func indirect(v reflect.Value) reflect.Value {
if v.Kind() == reflect.Pointer && v.Elem().Type() != reflect.TypeFor[big.Int]() { if v.Kind() == reflect.Ptr && v.Elem().Type() != reflect.TypeOf(big.Int{}) {
return indirect(v.Elem()) return indirect(v.Elem())
} }
return v return v
@ -65,32 +65,32 @@ func reflectIntType(unsigned bool, size int) reflect.Type {
if unsigned { if unsigned {
switch size { switch size {
case 8: case 8:
return reflect.TypeFor[uint8]() return reflect.TypeOf(uint8(0))
case 16: case 16:
return reflect.TypeFor[uint16]() return reflect.TypeOf(uint16(0))
case 32: case 32:
return reflect.TypeFor[uint32]() return reflect.TypeOf(uint32(0))
case 64: case 64:
return reflect.TypeFor[uint64]() return reflect.TypeOf(uint64(0))
} }
} }
switch size { switch size {
case 8: case 8:
return reflect.TypeFor[int8]() return reflect.TypeOf(int8(0))
case 16: case 16:
return reflect.TypeFor[int16]() return reflect.TypeOf(int16(0))
case 32: case 32:
return reflect.TypeFor[int32]() return reflect.TypeOf(int32(0))
case 64: case 64:
return reflect.TypeFor[int64]() return reflect.TypeOf(int64(0))
} }
return reflect.TypeFor[*big.Int]() return reflect.TypeOf(&big.Int{})
} }
// mustArrayToByteSlice creates a new byte slice with the exact same size as value // mustArrayToByteSlice creates a new byte slice with the exact same size as value
// and copies the bytes in value to the new slice. // and copies the bytes in value to the new slice.
func mustArrayToByteSlice(value reflect.Value) reflect.Value { func mustArrayToByteSlice(value reflect.Value) reflect.Value {
slice := reflect.ValueOf(make([]byte, value.Len())) slice := reflect.MakeSlice(reflect.TypeOf([]byte{}), value.Len(), value.Len())
reflect.Copy(slice, value) reflect.Copy(slice, value)
return slice return slice
} }
@ -102,9 +102,9 @@ func mustArrayToByteSlice(value reflect.Value) reflect.Value {
func set(dst, src reflect.Value) error { func set(dst, src reflect.Value) error {
dstType, srcType := dst.Type(), src.Type() dstType, srcType := dst.Type(), src.Type()
switch { switch {
case dstType.Kind() == reflect.Interface && dst.Elem().IsValid() && (dst.Elem().Type().Kind() == reflect.Pointer || dst.Elem().CanSet()): case dstType.Kind() == reflect.Interface && dst.Elem().IsValid() && (dst.Elem().Type().Kind() == reflect.Ptr || dst.Elem().CanSet()):
return set(dst.Elem(), src) return set(dst.Elem(), src)
case dstType.Kind() == reflect.Pointer && dstType.Elem() != reflect.TypeFor[big.Int](): case dstType.Kind() == reflect.Ptr && dstType.Elem() != reflect.TypeOf(big.Int{}):
return set(dst.Elem(), src) return set(dst.Elem(), src)
case srcType.AssignableTo(dstType) && dst.CanSet(): case srcType.AssignableTo(dstType) && dst.CanSet():
dst.Set(src) dst.Set(src)
@ -138,7 +138,7 @@ func setSlice(dst, src reflect.Value) error {
} }
func setArray(dst, src reflect.Value) error { func setArray(dst, src reflect.Value) error {
if src.Kind() == reflect.Pointer { if src.Kind() == reflect.Ptr {
return set(dst, indirect(src)) return set(dst, indirect(src))
} }
array := reflect.New(dst.Type()).Elem() array := reflect.New(dst.Type()).Elem()

View file

@ -204,12 +204,12 @@ func TestConvertType(t *testing.T) {
var fields []reflect.StructField var fields []reflect.StructField
fields = append(fields, reflect.StructField{ fields = append(fields, reflect.StructField{
Name: "X", Name: "X",
Type: reflect.TypeFor[*big.Int](), Type: reflect.TypeOf(new(big.Int)),
Tag: "json:\"" + "x" + "\"", Tag: "json:\"" + "x" + "\"",
}) })
fields = append(fields, reflect.StructField{ fields = append(fields, reflect.StructField{
Name: "Y", Name: "Y",
Type: reflect.TypeFor[*big.Int](), Type: reflect.TypeOf(new(big.Int)),
Tag: "json:\"" + "y" + "\"", Tag: "json:\"" + "y" + "\"",
}) })
val := reflect.New(reflect.StructOf(fields)) val := reflect.New(reflect.StructOf(fields))

View file

@ -75,11 +75,8 @@ func parseElementaryType(unescapedSelector string) (string, string, error) {
parsedType = parsedType + string(rest[0]) parsedType = parsedType + string(rest[0])
rest = rest[1:] rest = rest[1:]
} }
if len(rest) == 0 { if len(rest) == 0 || rest[0] != ']' {
return "", "", fmt.Errorf("failed to parse array: expected ']', got end of string") return "", "", fmt.Errorf("failed to parse array: expected ']', got %c", unescapedSelector[0])
}
if rest[0] != ']' {
return "", "", fmt.Errorf("failed to parse array: expected ']', got %c", rest[0])
} }
parsedType = parsedType + string(rest[0]) parsedType = parsedType + string(rest[0])
rest = rest[1:] rest = rest[1:]

View file

@ -238,9 +238,9 @@ func (t Type) GetType() reflect.Type {
case UintTy: case UintTy:
return reflectIntType(true, t.Size) return reflectIntType(true, t.Size)
case BoolTy: case BoolTy:
return reflect.TypeFor[bool]() return reflect.TypeOf(false)
case StringTy: case StringTy:
return reflect.TypeFor[string]() return reflect.TypeOf("")
case SliceTy: case SliceTy:
return reflect.SliceOf(t.Elem.GetType()) return reflect.SliceOf(t.Elem.GetType())
case ArrayTy: case ArrayTy:
@ -248,15 +248,19 @@ func (t Type) GetType() reflect.Type {
case TupleTy: case TupleTy:
return t.TupleType return t.TupleType
case AddressTy: case AddressTy:
return reflect.TypeFor[common.Address]() return reflect.TypeOf(common.Address{})
case FixedBytesTy: case FixedBytesTy:
return reflect.ArrayOf(t.Size, reflect.TypeFor[byte]()) return reflect.ArrayOf(t.Size, reflect.TypeOf(byte(0)))
case BytesTy: case BytesTy:
return reflect.TypeFor[[]byte]() return reflect.SliceOf(reflect.TypeOf(byte(0)))
case HashTy, FixedPointTy: // currently not used case HashTy:
return reflect.TypeFor[[32]byte]() // hashtype currently not used
return reflect.ArrayOf(32, reflect.TypeOf(byte(0)))
case FixedPointTy:
// fixedpoint type currently not used
return reflect.ArrayOf(32, reflect.TypeOf(byte(0)))
case FunctionTy: case FunctionTy:
return reflect.TypeFor[[24]byte]() return reflect.ArrayOf(24, reflect.TypeOf(byte(0)))
default: default:
panic("Invalid type") panic("Invalid type")
} }

View file

@ -154,7 +154,7 @@ func forEachUnpack(t Type, output []byte, start, size int) (interface{}, error)
return nil, fmt.Errorf("cannot marshal input to array, size is negative (%d)", size) return nil, fmt.Errorf("cannot marshal input to array, size is negative (%d)", size)
} }
if start+32*size > len(output) { if start+32*size > len(output) {
return nil, fmt.Errorf("abi: cannot marshal into go array: offset %d would go over slice boundary (len=%d)", start+32*size, len(output)) return nil, fmt.Errorf("abi: cannot marshal into go array: offset %d would go over slice boundary (len=%d)", len(output), start+32*size)
} }
// this value will become our slice or our array, depending on the type // this value will become our slice or our array, depending on the type

View file

@ -910,7 +910,7 @@ func TestUnpackTuple(t *testing.T) {
}, },
}, },
FieldT: T{ FieldT: T{
big.NewInt(0).SetBits([]big.Word{}), big.NewInt(1), big.NewInt(0), big.NewInt(1),
}, },
A: big.NewInt(1), A: big.NewInt(1),
} }
@ -919,7 +919,7 @@ func TestUnpackTuple(t *testing.T) {
if err != nil { if err != nil {
t.Error(err) t.Error(err)
} }
if !reflect.DeepEqual(ret, expected) { if reflect.DeepEqual(ret, expected) {
t.Error("unexpected unpack value") t.Error("unexpected unpack value")
} }
} }
@ -1014,134 +1014,128 @@ func TestPackAndUnpackIncompatibleNumber(t *testing.T) {
cases := []struct { cases := []struct {
decodeType string decodeType string
inputValue *big.Int inputValue *big.Int
unpackErr error err error
packErr error
expectValue interface{} expectValue interface{}
}{ }{
{ {
decodeType: "uint8", decodeType: "uint8",
inputValue: big.NewInt(math.MaxUint8 + 1), inputValue: big.NewInt(math.MaxUint8 + 1),
unpackErr: errBadUint8, err: errBadUint8,
}, },
{ {
decodeType: "uint8", decodeType: "uint8",
inputValue: big.NewInt(math.MaxUint8), inputValue: big.NewInt(math.MaxUint8),
unpackErr: nil, err: nil,
expectValue: uint8(math.MaxUint8), expectValue: uint8(math.MaxUint8),
}, },
{ {
decodeType: "uint16", decodeType: "uint16",
inputValue: big.NewInt(math.MaxUint16 + 1), inputValue: big.NewInt(math.MaxUint16 + 1),
unpackErr: errBadUint16, err: errBadUint16,
}, },
{ {
decodeType: "uint16", decodeType: "uint16",
inputValue: big.NewInt(math.MaxUint16), inputValue: big.NewInt(math.MaxUint16),
unpackErr: nil, err: nil,
expectValue: uint16(math.MaxUint16), expectValue: uint16(math.MaxUint16),
}, },
{ {
decodeType: "uint32", decodeType: "uint32",
inputValue: big.NewInt(math.MaxUint32 + 1), inputValue: big.NewInt(math.MaxUint32 + 1),
unpackErr: errBadUint32, err: errBadUint32,
}, },
{ {
decodeType: "uint32", decodeType: "uint32",
inputValue: big.NewInt(math.MaxUint32), inputValue: big.NewInt(math.MaxUint32),
unpackErr: nil, err: nil,
expectValue: uint32(math.MaxUint32), expectValue: uint32(math.MaxUint32),
}, },
{ {
decodeType: "uint64", decodeType: "uint64",
inputValue: maxU64Plus1, inputValue: maxU64Plus1,
unpackErr: errBadUint64, err: errBadUint64,
}, },
{ {
decodeType: "uint64", decodeType: "uint64",
inputValue: maxU64, inputValue: maxU64,
unpackErr: nil, err: nil,
expectValue: uint64(math.MaxUint64), expectValue: uint64(math.MaxUint64),
}, },
{ {
decodeType: "uint256", decodeType: "uint256",
inputValue: maxU64Plus1, inputValue: maxU64Plus1,
unpackErr: nil, err: nil,
expectValue: maxU64Plus1, expectValue: maxU64Plus1,
}, },
{ {
decodeType: "int8", decodeType: "int8",
inputValue: big.NewInt(math.MaxInt8 + 1), inputValue: big.NewInt(math.MaxInt8 + 1),
unpackErr: errBadInt8, err: errBadInt8,
}, },
{ {
decodeType: "int8",
inputValue: big.NewInt(math.MinInt8 - 1), inputValue: big.NewInt(math.MinInt8 - 1),
packErr: errInvalidSign, err: errBadInt8,
}, },
{ {
decodeType: "int8", decodeType: "int8",
inputValue: big.NewInt(math.MaxInt8), inputValue: big.NewInt(math.MaxInt8),
unpackErr: nil, err: nil,
expectValue: int8(math.MaxInt8), expectValue: int8(math.MaxInt8),
}, },
{ {
decodeType: "int16", decodeType: "int16",
inputValue: big.NewInt(math.MaxInt16 + 1), inputValue: big.NewInt(math.MaxInt16 + 1),
unpackErr: errBadInt16, err: errBadInt16,
}, },
{ {
decodeType: "int16",
inputValue: big.NewInt(math.MinInt16 - 1), inputValue: big.NewInt(math.MinInt16 - 1),
packErr: errInvalidSign, err: errBadInt16,
}, },
{ {
decodeType: "int16", decodeType: "int16",
inputValue: big.NewInt(math.MaxInt16), inputValue: big.NewInt(math.MaxInt16),
unpackErr: nil, err: nil,
expectValue: int16(math.MaxInt16), expectValue: int16(math.MaxInt16),
}, },
{ {
decodeType: "int32", decodeType: "int32",
inputValue: big.NewInt(math.MaxInt32 + 1), inputValue: big.NewInt(math.MaxInt32 + 1),
unpackErr: errBadInt32, err: errBadInt32,
}, },
{ {
decodeType: "int32",
inputValue: big.NewInt(math.MinInt32 - 1), inputValue: big.NewInt(math.MinInt32 - 1),
packErr: errInvalidSign, err: errBadInt32,
}, },
{ {
decodeType: "int32", decodeType: "int32",
inputValue: big.NewInt(math.MaxInt32), inputValue: big.NewInt(math.MaxInt32),
unpackErr: nil, err: nil,
expectValue: int32(math.MaxInt32), expectValue: int32(math.MaxInt32),
}, },
{ {
decodeType: "int64", decodeType: "int64",
inputValue: new(big.Int).Add(big.NewInt(math.MaxInt64), big.NewInt(1)), inputValue: new(big.Int).Add(big.NewInt(math.MaxInt64), big.NewInt(1)),
unpackErr: errBadInt64, err: errBadInt64,
}, },
{ {
decodeType: "int64",
inputValue: new(big.Int).Sub(big.NewInt(math.MinInt64), big.NewInt(1)), inputValue: new(big.Int).Sub(big.NewInt(math.MinInt64), big.NewInt(1)),
packErr: errInvalidSign, err: errBadInt64,
}, },
{ {
decodeType: "int64", decodeType: "int64",
inputValue: big.NewInt(math.MaxInt64), inputValue: big.NewInt(math.MaxInt64),
unpackErr: nil, err: nil,
expectValue: int64(math.MaxInt64), expectValue: int64(math.MaxInt64),
}, },
} }
for i, testCase := range cases { for i, testCase := range cases {
packed, err := encodeABI.Pack(testCase.inputValue) packed, err := encodeABI.Pack(testCase.inputValue)
if testCase.packErr != nil { if err != nil {
if err == nil { panic(err)
t.Fatalf("expected packing of testcase input value to fail")
}
if err != testCase.packErr {
t.Fatalf("expected error '%v', got '%v'", testCase.packErr, err)
}
continue
}
if err != nil && err != testCase.packErr {
panic(fmt.Errorf("unexpected error packing test-case input: %v", err))
} }
ty, err := NewType(testCase.decodeType, "", nil) ty, err := NewType(testCase.decodeType, "", nil)
if err != nil { if err != nil {
@ -1151,8 +1145,8 @@ func TestPackAndUnpackIncompatibleNumber(t *testing.T) {
{Type: ty}, {Type: ty},
} }
decoded, err := decodeABI.Unpack(packed) decoded, err := decodeABI.Unpack(packed)
if err != testCase.unpackErr { if err != testCase.err {
t.Fatalf("Expected error %v, actual error %v. case %d", testCase.unpackErr, err, i) t.Fatalf("Expected error %v, actual error %v. case %d", testCase.err, err, i)
} }
if err != nil { if err != nil {
continue continue

View file

@ -24,8 +24,8 @@ import (
"github.com/ethereum/go-ethereum" "github.com/ethereum/go-ethereum"
"github.com/ethereum/go-ethereum/common" "github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/core/types" "github.com/ethereum/go-ethereum/core/types"
"github.com/ethereum/go-ethereum/crypto/keccak"
"github.com/ethereum/go-ethereum/event" "github.com/ethereum/go-ethereum/event"
"golang.org/x/crypto/sha3"
) )
// Account represents an Ethereum account located at a specific location defined // Account represents an Ethereum account located at a specific location defined
@ -196,7 +196,7 @@ func TextHash(data []byte) []byte {
// This gives context to the signed message and prevents signing of transactions. // This gives context to the signed message and prevents signing of transactions.
func TextAndHash(data []byte) ([]byte, string) { func TextAndHash(data []byte) ([]byte, string) {
msg := fmt.Sprintf("\x19Ethereum Signed Message:\n%d%s", len(data), data) msg := fmt.Sprintf("\x19Ethereum Signed Message:\n%d%s", len(data), data)
hasher := keccak.NewLegacyKeccak256() hasher := sha3.NewLegacyKeccak256()
hasher.Write([]byte(msg)) hasher.Write([]byte(msg))
return hasher.Sum(nil), msg return hasher.Sum(nil), msg
} }

View file

@ -237,7 +237,6 @@ func (api *ExternalSigner) SignTx(account accounts.Account, tx *types.Transactio
} }
if tx.Type() == types.BlobTxType { if tx.Type() == types.BlobTxType {
args.BlobHashes = tx.BlobHashes() args.BlobHashes = tx.BlobHashes()
args.BlobFeeCap = (*hexutil.Big)(tx.BlobGasFeeCap())
sidecar := tx.BlobTxSidecar() sidecar := tx.BlobTxSidecar()
if sidecar == nil { if sidecar == nil {
return nil, errors.New("blobs must be present for signing") return nil, errors.New("blobs must be present for signing")

View file

@ -68,27 +68,18 @@ func waitWatcherStart(ks *KeyStore) bool {
func waitForAccounts(wantAccounts []accounts.Account, ks *KeyStore) error { func waitForAccounts(wantAccounts []accounts.Account, ks *KeyStore) error {
var list []accounts.Account var list []accounts.Account
haveAccounts := false
haveChange := false
for t0 := time.Now(); time.Since(t0) < 5*time.Second; time.Sleep(100 * time.Millisecond) { for t0 := time.Now(); time.Since(t0) < 5*time.Second; time.Sleep(100 * time.Millisecond) {
if !haveAccounts { list = ks.Accounts()
list = ks.Accounts() if reflect.DeepEqual(list, wantAccounts) {
haveAccounts = reflect.DeepEqual(list, wantAccounts) // ks should have also received change notifications
}
if !haveChange {
select { select {
case <-ks.changes: case <-ks.changes:
haveChange = true
default: default:
return errors.New("wasn't notified of new accounts")
} }
}
if haveAccounts && haveChange {
return nil return nil
} }
} }
if haveAccounts {
return errors.New("wasn't notified of new accounts")
}
return fmt.Errorf("\ngot %v\nwant %v", list, wantAccounts) return fmt.Errorf("\ngot %v\nwant %v", list, wantAccounts)
} }

View file

@ -230,7 +230,7 @@ func toISO8601(t time.Time) string {
if name == "UTC" { if name == "UTC" {
tz = "Z" tz = "Z"
} else { } else {
tz = fmt.Sprintf("%+03d00", offset/3600) tz = fmt.Sprintf("%03d00", offset/3600)
} }
return fmt.Sprintf("%04d-%02d-%02dT%02d-%02d-%02d.%09d%s", return fmt.Sprintf("%04d-%02d-%02dT%02d-%02d-%02d.%09d%s",
t.Year(), t.Month(), t.Day(), t.Hour(), t.Minute(), t.Second(), t.Nanosecond(), tz) t.Year(), t.Month(), t.Day(), t.Hour(), t.Minute(), t.Second(), t.Nanosecond(), tz)

View file

@ -17,7 +17,7 @@
// Package keystore implements encrypted storage of secp256k1 private keys. // Package keystore implements encrypted storage of secp256k1 private keys.
// //
// Keys are stored as encrypted JSON files according to the Web3 Secret Storage specification. // Keys are stored as encrypted JSON files according to the Web3 Secret Storage specification.
// See https://ethereum.org/en/developers/docs/data-structures-and-encoding/web3-secret-storage/ for more information. // See https://github.com/ethereum/wiki/wiki/Web3-Secret-Storage-Definition for more information.
package keystore package keystore
import ( import (
@ -50,7 +50,7 @@ var (
) )
// KeyStoreType is the reflect type of a keystore backend. // KeyStoreType is the reflect type of a keystore backend.
var KeyStoreType = reflect.TypeFor[*KeyStore]() var KeyStoreType = reflect.TypeOf(&KeyStore{})
// KeyStoreScheme is the protocol scheme prefixing account and wallet URLs. // KeyStoreScheme is the protocol scheme prefixing account and wallet URLs.
const KeyStoreScheme = "keystore" const KeyStoreScheme = "keystore"
@ -99,10 +99,9 @@ func (ks *KeyStore) init(keydir string) {
// TODO: In order for this finalizer to work, there must be no references // TODO: In order for this finalizer to work, there must be no references
// to ks. addressCache doesn't keep a reference but unlocked keys do, // to ks. addressCache doesn't keep a reference but unlocked keys do,
// so the finalizer will not trigger until all timed unlocks have expired. // so the finalizer will not trigger until all timed unlocks have expired.
runtime.AddCleanup(ks, func(c *accountCache) { runtime.SetFinalizer(ks, func(m *KeyStore) {
c.close() m.cache.close()
}, ks.cache) })
// Create the initial list of wallets from the cache // Create the initial list of wallets from the cache
accs := ks.cache.accounts() accs := ks.cache.accounts()
ks.wallets = make([]accounts.Wallet, len(accs)) ks.wallets = make([]accounts.Wallet, len(accs))
@ -196,14 +195,11 @@ func (ks *KeyStore) Subscribe(sink chan<- accounts.WalletEvent) event.Subscripti
// forces a manual refresh (only triggers for systems where the filesystem notifier // forces a manual refresh (only triggers for systems where the filesystem notifier
// is not running). // is not running).
func (ks *KeyStore) updater() { func (ks *KeyStore) updater() {
ticker := time.NewTicker(walletRefreshCycle)
defer ticker.Stop()
for { for {
// Wait for an account update or a refresh timeout // Wait for an account update or a refresh timeout
select { select {
case <-ks.changes: case <-ks.changes:
case <-ticker.C: case <-time.After(walletRefreshCycle):
} }
// Run the wallet refresher // Run the wallet refresher
ks.refreshWallets() ks.refreshWallets()
@ -418,7 +414,6 @@ func (ks *KeyStore) Export(a accounts.Account, passphrase, newPassphrase string)
if err != nil { if err != nil {
return nil, err return nil, err
} }
defer zeroKey(key.PrivateKey)
var N, P int var N, P int
if store, ok := ks.storage.(*keyStorePassphrase); ok { if store, ok := ks.storage.(*keyStorePassphrase); ok {
N, P = store.scryptN, store.scryptP N, P = store.scryptN, store.scryptP
@ -478,7 +473,6 @@ func (ks *KeyStore) Update(a accounts.Account, passphrase, newPassphrase string)
if err != nil { if err != nil {
return err return err
} }
defer zeroKey(key.PrivateKey)
return ks.storage.StoreKey(a.URL.Path, key, newPassphrase) return ks.storage.StoreKey(a.URL.Path, key, newPassphrase)
} }

View file

@ -19,7 +19,7 @@
This key store behaves as KeyStorePlain with the difference that This key store behaves as KeyStorePlain with the difference that
the private key is encrypted and on disk uses another JSON encoding. the private key is encrypted and on disk uses another JSON encoding.
The crypto is documented at https://ethereum.org/en/developers/docs/data-structures-and-encoding/web3-secret-storage/ The crypto is documented at https://github.com/ethereum/wiki/wiki/Web3-Secret-Storage-Definition
*/ */

View file

@ -81,9 +81,6 @@ func decryptPreSaleKey(fileContent []byte, password string) (key *Key, err error
*/ */
passBytes := []byte(password) passBytes := []byte(password)
derivedKey := pbkdf2.Key(passBytes, passBytes, 2000, 16, sha256.New) derivedKey := pbkdf2.Key(passBytes, passBytes, 2000, 16, sha256.New)
if len(cipherText)%aes.BlockSize != 0 {
return nil, errors.New("ciphertext must be a multiple of block size")
}
plainText, err := aesCBCDecrypt(derivedKey, cipherText, iv) plainText, err := aesCBCDecrypt(derivedKey, cipherText, iv)
if err != nil { if err != nil {
return nil, err return nil, err

View file

@ -14,8 +14,8 @@
// You should have received a copy of the GNU Lesser General Public License // You should have received a copy of the GNU Lesser General Public License
// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>. // along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
//go:build (darwin && !ios && cgo) || freebsd || linux || netbsd || solaris //go:build (darwin && !ios && cgo) || freebsd || (linux && !arm64) || netbsd || solaris
// +build darwin,!ios,cgo freebsd linux netbsd solaris // +build darwin,!ios,cgo freebsd linux,!arm64 netbsd solaris
package keystore package keystore

View file

@ -14,8 +14,8 @@
// You should have received a copy of the GNU Lesser General Public License // You should have received a copy of the GNU Lesser General Public License
// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>. // along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
//go:build (darwin && !cgo) || ios || windows || (!darwin && !freebsd && !linux && !netbsd && !solaris) //go:build (darwin && !cgo) || ios || (linux && arm64) || windows || (!darwin && !freebsd && !linux && !netbsd && !solaris)
// +build darwin,!cgo ios windows !darwin,!freebsd,!linux,!netbsd,!solaris // +build darwin,!cgo ios linux,arm64 windows !darwin,!freebsd,!linux,!netbsd,!solaris
// This is the fallback implementation of directory watching. // This is the fallback implementation of directory watching.
// It is used on unsupported platforms. // It is used on unsupported platforms.

View file

@ -18,7 +18,6 @@ package accounts
import ( import (
"reflect" "reflect"
"slices"
"sort" "sort"
"sync" "sync"
@ -94,6 +93,9 @@ func NewManager(config *Config, backends ...Backend) *Manager {
// Close terminates the account manager's internal notification processes. // Close terminates the account manager's internal notification processes.
func (am *Manager) Close() error { func (am *Manager) Close() error {
for _, w := range am.wallets {
w.Close()
}
errc := make(chan error) errc := make(chan error)
am.quit <- errc am.quit <- errc
return <-errc return <-errc
@ -147,10 +149,6 @@ func (am *Manager) update() {
am.lock.Unlock() am.lock.Unlock()
close(event.processed) close(event.processed)
case errc := <-am.quit: case errc := <-am.quit:
// Close all owned wallets
for _, w := range am.wallets {
w.Close()
}
// Manager terminating, return // Manager terminating, return
errc <- nil errc <- nil
// Signals event emitters the loop is not receiving values // Signals event emitters the loop is not receiving values
@ -255,12 +253,13 @@ func merge(slice []Wallet, wallets ...Wallet) []Wallet {
// drop is the counterpart of merge, which looks up wallets from within the sorted // drop is the counterpart of merge, which looks up wallets from within the sorted
// cache and removes the ones specified. // cache and removes the ones specified.
func drop(slice []Wallet, wallets ...Wallet) []Wallet { func drop(slice []Wallet, wallets ...Wallet) []Wallet {
remove := make(map[URL]struct{}, len(wallets)) for _, wallet := range wallets {
for _, w := range wallets { n := sort.Search(len(slice), func(i int) bool { return slice[i].URL().Cmp(wallet.URL()) >= 0 })
remove[w.URL()] = struct{}{} if n == len(slice) {
// Wallet not found, may happen during startup
continue
}
slice = append(slice[:n], slice[n+1:]...)
} }
return slices.DeleteFunc(slice, func(w Wallet) bool { return slice
_, ok := remove[w.URL()]
return ok
})
} }

View file

@ -113,7 +113,7 @@ func (hub *Hub) readPairings() error {
} }
func (hub *Hub) writePairings() error { func (hub *Hub) writePairings() error {
pairingFile, err := os.OpenFile(filepath.Join(hub.datadir, "smartcards.json"), os.O_RDWR|os.O_CREATE|os.O_TRUNC, 0755) pairingFile, err := os.OpenFile(filepath.Join(hub.datadir, "smartcards.json"), os.O_RDWR|os.O_CREATE, 0755)
if err != nil { if err != nil {
return err return err
} }
@ -129,8 +129,11 @@ func (hub *Hub) writePairings() error {
return err return err
} }
_, err = pairingFile.Write(pairingData) if _, err := pairingFile.Write(pairingData); err != nil {
return err return err
}
return nil
} }
func (hub *Hub) pairing(wallet *Wallet) *smartcardPairing { func (hub *Hub) pairing(wallet *Wallet) *smartcardPairing {

View file

@ -300,10 +300,6 @@ func (s *SecureChannelSession) decryptAPDU(data []byte) ([]byte, error) {
return nil, err return nil, err
} }
if len(data) == 0 || len(data)%aes.BlockSize != 0 {
return nil, fmt.Errorf("invalid ciphertext length: %d", len(data))
}
ret := make([]byte, len(data)) ret := make([]byte, len(data))
crypter := cipher.NewCBCDecrypter(a, s.iv) crypter := cipher.NewCBCDecrypter(a, s.iv)

View file

@ -472,11 +472,6 @@ func (w *Wallet) selfDerive() {
continue continue
} }
pairing := w.Hub.pairing(w) pairing := w.Hub.pairing(w)
if pairing == nil {
w.lock.Unlock()
reqc <- struct{}{}
continue
}
// Device lock obtained, derive the next batch of accounts // Device lock obtained, derive the next batch of accounts
var ( var (
@ -636,13 +631,13 @@ func (w *Wallet) Derive(path accounts.DerivationPath, pin bool) (accounts.Accoun
} }
if pin { if pin {
if pairing := w.Hub.pairing(w); pairing != nil { pairing := w.Hub.pairing(w)
pairing.Accounts[account.Address] = path pairing.Accounts[account.Address] = path
if err := w.Hub.setPairing(w, pairing); err != nil { if err := w.Hub.setPairing(w, pairing); err != nil {
return accounts.Account{}, err return accounts.Account{}, err
}
} }
} }
return account, nil return account, nil
} }
@ -779,11 +774,11 @@ func (w *Wallet) SignTxWithPassphrase(account accounts.Account, passphrase strin
// It first checks for the address in the list of pinned accounts, and if it is // It first checks for the address in the list of pinned accounts, and if it is
// not found, attempts to parse the derivation path from the account's URL. // not found, attempts to parse the derivation path from the account's URL.
func (w *Wallet) findAccountPath(account accounts.Account) (accounts.DerivationPath, error) { func (w *Wallet) findAccountPath(account accounts.Account) (accounts.DerivationPath, error) {
if pairing := w.Hub.pairing(w); pairing != nil { pairing := w.Hub.pairing(w)
if path, ok := pairing.Accounts[account.Address]; ok { if path, ok := pairing.Accounts[account.Address]; ok {
return path, nil return path, nil
}
} }
// Look for the path in the URL // Look for the path in the URL
if account.URL.Scheme != w.Hub.scheme { if account.URL.Scheme != w.Hub.scheme {
return nil, fmt.Errorf("scheme %s does not match wallet scheme %s", account.URL.Scheme, w.Hub.scheme) return nil, fmt.Errorf("scheme %s does not match wallet scheme %s", account.URL.Scheme, w.Hub.scheme)

View file

@ -26,7 +26,7 @@ import (
"github.com/ethereum/go-ethereum/accounts" "github.com/ethereum/go-ethereum/accounts"
"github.com/ethereum/go-ethereum/event" "github.com/ethereum/go-ethereum/event"
"github.com/ethereum/go-ethereum/log" "github.com/ethereum/go-ethereum/log"
"github.com/ethereum/hid" "github.com/karalabe/hid"
) )
// LedgerScheme is the protocol scheme prefixing account and wallet URLs. // LedgerScheme is the protocol scheme prefixing account and wallet URLs.
@ -43,14 +43,6 @@ const refreshCycle = time.Second
// trashing. // trashing.
const refreshThrottling = 500 * time.Millisecond const refreshThrottling = 500 * time.Millisecond
const (
// deviceUsagePage identifies Ledger devices by HID usage page (0xffa0) on Windows and macOS.
// See: https://github.com/LedgerHQ/ledger-live/blob/05a2980e838955a11a1418da638ef8ac3df4fb74/libs/ledgerjs/packages/hw-transport-node-hid-noevents/src/TransportNodeHid.ts
deviceUsagePage = 0xffa0
// deviceInterface identifies Ledger devices by USB interface number (0) on Linux.
deviceInterface = 0
)
// Hub is a accounts.Backend that can find and handle generic USB hardware wallets. // Hub is a accounts.Backend that can find and handle generic USB hardware wallets.
type Hub struct { type Hub struct {
scheme string // Protocol scheme prefixing account and wallet URLs. scheme string // Protocol scheme prefixing account and wallet URLs.
@ -90,7 +82,6 @@ func NewLedgerHub() (*Hub, error) {
0x0005, /* Ledger Nano S Plus */ 0x0005, /* Ledger Nano S Plus */
0x0006, /* Ledger Nano FTS */ 0x0006, /* Ledger Nano FTS */
0x0007, /* Ledger Flex */ 0x0007, /* Ledger Flex */
0x0008, /* Ledger Nano Gen5 */
0x0000, /* WebUSB Ledger Blue */ 0x0000, /* WebUSB Ledger Blue */
0x1000, /* WebUSB Ledger Nano S */ 0x1000, /* WebUSB Ledger Nano S */
@ -98,8 +89,7 @@ func NewLedgerHub() (*Hub, error) {
0x5000, /* WebUSB Ledger Nano S Plus */ 0x5000, /* WebUSB Ledger Nano S Plus */
0x6000, /* WebUSB Ledger Nano FTS */ 0x6000, /* WebUSB Ledger Nano FTS */
0x7000, /* WebUSB Ledger Flex */ 0x7000, /* WebUSB Ledger Flex */
0x8000, /* WebUSB Ledger Nano Gen5 */ }, 0xffa0, 0, newLedgerDriver)
}, deviceUsagePage, deviceInterface, newLedgerDriver)
} }
// NewTrezorHubWithHID creates a new hardware wallet manager for Trezor devices. // NewTrezorHubWithHID creates a new hardware wallet manager for Trezor devices.

View file

@ -110,16 +110,6 @@ func (w *ledgerDriver) offline() bool {
return w.version == [3]byte{0, 0, 0} return w.version == [3]byte{0, 0, 0}
} }
func ledgerVersionLessThan(version [3]byte, major, minor, patch byte) bool {
if version[0] != major {
return version[0] < major
}
if version[1] != minor {
return version[1] < minor
}
return version[2] < patch
}
// Open implements usbwallet.driver, attempting to initialize the connection to the // Open implements usbwallet.driver, attempting to initialize the connection to the
// Ledger hardware wallet. The Ledger does not require a user passphrase, so that // Ledger hardware wallet. The Ledger does not require a user passphrase, so that
// parameter is silently discarded. // parameter is silently discarded.
@ -176,19 +166,7 @@ func (w *ledgerDriver) SignTx(path accounts.DerivationPath, tx *types.Transactio
return common.Address{}, nil, accounts.ErrWalletClosed return common.Address{}, nil, accounts.ErrWalletClosed
} }
// Ensure the wallet is capable of signing the given transaction // Ensure the wallet is capable of signing the given transaction
switch tx.Type() { if chainID != nil && w.version[0] <= 1 && w.version[1] <= 0 && w.version[2] <= 2 {
case types.AccessListTxType, types.DynamicFeeTxType:
if ledgerVersionLessThan(w.version, 1, 9, 0) {
//lint:ignore ST1005 brand name displayed on the console
return common.Address{}, nil, fmt.Errorf("Ledger version >= 1.9.0 required for EIP-2930/EIP-1559 signing (found version v%d.%d.%d)", w.version[0], w.version[1], w.version[2])
}
case types.SetCodeTxType:
if ledgerVersionLessThan(w.version, 1, 17, 0) {
//lint:ignore ST1005 brand name displayed on the console
return common.Address{}, nil, fmt.Errorf("Ledger version >= 1.17.0 required for EIP-7702 signing (found version v%d.%d.%d)", w.version[0], w.version[1], w.version[2])
}
}
if chainID != nil && ledgerVersionLessThan(w.version, 1, 0, 3) {
//lint:ignore ST1005 brand name displayed on the console //lint:ignore ST1005 brand name displayed on the console
return common.Address{}, nil, fmt.Errorf("Ledger v%d.%d.%d doesn't support signing this transaction, please update to v1.0.3 at least", w.version[0], w.version[1], w.version[2]) return common.Address{}, nil, fmt.Errorf("Ledger v%d.%d.%d doesn't support signing this transaction, please update to v1.0.3 at least", w.version[0], w.version[1], w.version[2])
} }
@ -206,7 +184,7 @@ func (w *ledgerDriver) SignTypedMessage(path accounts.DerivationPath, domainHash
return nil, accounts.ErrWalletClosed return nil, accounts.ErrWalletClosed
} }
// Ensure the wallet is capable of signing the given transaction // Ensure the wallet is capable of signing the given transaction
if ledgerVersionLessThan(w.version, 1, 5, 0) { if w.version[0] < 1 && w.version[1] < 5 {
//lint:ignore ST1005 brand name displayed on the console //lint:ignore ST1005 brand name displayed on the console
return nil, fmt.Errorf("Ledger version >= 1.5.0 required for EIP-712 signing (found version v%d.%d.%d)", w.version[0], w.version[1], w.version[2]) return nil, fmt.Errorf("Ledger version >= 1.5.0 required for EIP-712 signing (found version v%d.%d.%d)", w.version[0], w.version[1], w.version[2])
} }
@ -356,41 +334,26 @@ func (w *ledgerDriver) ledgerSign(derivationPath []uint32, tx *types.Transaction
err error err error
) )
if chainID == nil { if chainID == nil {
if txrlp, err = rlp.EncodeToBytes([]any{tx.Nonce(), tx.GasPrice(), tx.Gas(), tx.To(), tx.Value(), tx.Data()}); err != nil { if txrlp, err = rlp.EncodeToBytes([]interface{}{tx.Nonce(), tx.GasPrice(), tx.Gas(), tx.To(), tx.Value(), tx.Data()}); err != nil {
return common.Address{}, nil, err return common.Address{}, nil, err
} }
} else { } else {
switch tx.Type() { if tx.Type() == types.DynamicFeeTxType {
case types.SetCodeTxType: if txrlp, err = rlp.EncodeToBytes([]interface{}{chainID, tx.Nonce(), tx.GasTipCap(), tx.GasFeeCap(), tx.Gas(), tx.To(), tx.Value(), tx.Data(), tx.AccessList()}); err != nil {
if txrlp, err = rlp.EncodeToBytes([]any{chainID, tx.Nonce(), tx.GasTipCap(), tx.GasFeeCap(), tx.Gas(), tx.To(), tx.Value(), tx.Data(), tx.AccessList(), tx.SetCodeAuthorizations()}); err != nil {
return common.Address{}, nil, err return common.Address{}, nil, err
} }
// append type to transaction // append type to transaction
txrlp = append([]byte{tx.Type()}, txrlp...) txrlp = append([]byte{tx.Type()}, txrlp...)
case types.BlobTxType: } else if tx.Type() == types.AccessListTxType {
if txrlp, err = rlp.EncodeToBytes([]any{chainID, tx.Nonce(), tx.GasTipCap(), tx.GasFeeCap(), tx.Gas(), tx.To(), tx.Value(), tx.Data(), tx.AccessList(), tx.BlobGasFeeCap(), tx.BlobHashes()}); err != nil { if txrlp, err = rlp.EncodeToBytes([]interface{}{chainID, tx.Nonce(), tx.GasPrice(), tx.Gas(), tx.To(), tx.Value(), tx.Data(), tx.AccessList()}); err != nil {
return common.Address{}, nil, err return common.Address{}, nil, err
} }
// append type to transaction // append type to transaction
txrlp = append([]byte{tx.Type()}, txrlp...) txrlp = append([]byte{tx.Type()}, txrlp...)
case types.DynamicFeeTxType: } else if tx.Type() == types.LegacyTxType {
if txrlp, err = rlp.EncodeToBytes([]any{chainID, tx.Nonce(), tx.GasTipCap(), tx.GasFeeCap(), tx.Gas(), tx.To(), tx.Value(), tx.Data(), tx.AccessList()}); err != nil { if txrlp, err = rlp.EncodeToBytes([]interface{}{tx.Nonce(), tx.GasPrice(), tx.Gas(), tx.To(), tx.Value(), tx.Data(), chainID, big.NewInt(0), big.NewInt(0)}); err != nil {
return common.Address{}, nil, err return common.Address{}, nil, err
} }
// append type to transaction
txrlp = append([]byte{tx.Type()}, txrlp...)
case types.AccessListTxType:
if txrlp, err = rlp.EncodeToBytes([]any{chainID, tx.Nonce(), tx.GasPrice(), tx.Gas(), tx.To(), tx.Value(), tx.Data(), tx.AccessList()}); err != nil {
return common.Address{}, nil, err
}
// append type to transaction
txrlp = append([]byte{tx.Type()}, txrlp...)
case types.LegacyTxType:
if txrlp, err = rlp.EncodeToBytes([]any{tx.Nonce(), tx.GasPrice(), tx.Gas(), tx.To(), tx.Value(), tx.Data(), chainID, big.NewInt(0), big.NewInt(0)}); err != nil {
return common.Address{}, nil, err
}
default:
return common.Address{}, nil, fmt.Errorf("unsupported transaction type: %d", tx.Type())
} }
} }
payload := append(path, txrlp...) payload := append(path, txrlp...)

View file

@ -25,7 +25,6 @@ import (
"errors" "errors"
"fmt" "fmt"
"io" "io"
"math"
"math/big" "math/big"
"github.com/ethereum/go-ethereum/accounts" "github.com/ethereum/go-ethereum/accounts"
@ -250,11 +249,7 @@ func (w *trezorDriver) trezorSign(derivationPath []uint32, tx *types.Transaction
} }
} }
// Extract the Ethereum signature and do a sanity validation // Extract the Ethereum signature and do a sanity validation
if len(response.GetSignatureR()) == 0 || len(response.GetSignatureS()) == 0 { if len(response.GetSignatureR()) == 0 || len(response.GetSignatureS()) == 0 || response.GetSignatureV() == 0 {
return common.Address{}, nil, errors.New("reply lacks signature")
} else if response.GetSignatureV() == 0 && int(chainID.Int64()) <= (math.MaxUint32-36)/2 {
// for chainId >= (MaxUint32-36)/2, Trezor returns signature bit only
// https://github.com/trezor/trezor-mcu/pull/399
return common.Address{}, nil, errors.New("reply lacks signature") return common.Address{}, nil, errors.New("reply lacks signature")
} }
signature := append(append(response.GetSignatureR(), response.GetSignatureS()...), byte(response.GetSignatureV())) signature := append(append(response.GetSignatureR(), response.GetSignatureS()...), byte(response.GetSignatureV()))
@ -266,11 +261,7 @@ func (w *trezorDriver) trezorSign(derivationPath []uint32, tx *types.Transaction
} else { } else {
// Trezor backend does not support typed transactions yet. // Trezor backend does not support typed transactions yet.
signer = types.NewEIP155Signer(chainID) signer = types.NewEIP155Signer(chainID)
// if chainId is above (MaxUint32 - 36) / 2 then the final v values is returned signature[64] -= byte(chainID.Uint64()*2 + 35)
// directly. Otherwise, the returned value is 35 + chainid * 2.
if signature[64] > 1 && int(chainID.Int64()) <= (math.MaxUint32-36)/2 {
signature[64] -= byte(chainID.Uint64()*2 + 35)
}
} }
// Inject the final signature into the transaction and sanity check the sender // Inject the final signature into the transaction and sanity check the sender

View file

@ -31,7 +31,7 @@ import (
"github.com/ethereum/go-ethereum/core/types" "github.com/ethereum/go-ethereum/core/types"
"github.com/ethereum/go-ethereum/crypto" "github.com/ethereum/go-ethereum/crypto"
"github.com/ethereum/go-ethereum/log" "github.com/ethereum/go-ethereum/log"
"github.com/ethereum/hid" "github.com/karalabe/hid"
) )
// Maximum time between wallet health checks to detect USB unplugs. // Maximum time between wallet health checks to detect USB unplugs.
@ -632,7 +632,7 @@ func (w *wallet) SignTx(account accounts.Account, tx *types.Transaction, chainID
// data is not supported for Ledger wallets, so this method will always return // data is not supported for Ledger wallets, so this method will always return
// an error. // an error.
func (w *wallet) SignTextWithPassphrase(account accounts.Account, passphrase string, text []byte) ([]byte, error) { func (w *wallet) SignTextWithPassphrase(account accounts.Account, passphrase string, text []byte) ([]byte, error) {
return w.SignText(account, text) return w.SignText(account, accounts.TextHash(text))
} }
// SignTxWithPassphrase implements accounts.Wallet, attempting to sign the given // SignTxWithPassphrase implements accounts.Wallet, attempting to sign the given

59
appveyor.yml Normal file
View file

@ -0,0 +1,59 @@
clone_depth: 5
version: "{branch}.{build}"
image:
- Ubuntu
- Visual Studio 2019
environment:
matrix:
- GETH_ARCH: amd64
GETH_MINGW: 'C:\msys64\mingw64'
- GETH_ARCH: 386
GETH_MINGW: 'C:\msys64\mingw32'
install:
- git submodule update --init --depth 1 --recursive
- go version
for:
# Linux has its own script without -arch and -cc.
# The linux builder also runs lint.
- matrix:
only:
- image: Ubuntu
build_script:
- go run build/ci.go lint
- go run build/ci.go check_generate
- go run build/ci.go check_baddeps
- go run build/ci.go install -dlgo
test_script:
- go run build/ci.go test -dlgo -short
# linux/386 is disabled.
- matrix:
exclude:
- image: Ubuntu
GETH_ARCH: 386
# Windows builds for amd64 + 386.
- matrix:
only:
- image: Visual Studio 2019
environment:
# We use gcc from MSYS2 because it is the most recent compiler version available on
# AppVeyor. Note: gcc.exe only works properly if the corresponding bin/ directory is
# contained in PATH.
GETH_CC: '%GETH_MINGW%\bin\gcc.exe'
PATH: '%GETH_MINGW%\bin;C:\Program Files (x86)\NSIS\;%PATH%'
build_script:
- 'echo %GETH_ARCH%'
- 'echo %GETH_CC%'
- '%GETH_CC% --version'
- go run build/ci.go install -dlgo -arch %GETH_ARCH% -cc %GETH_CC%
after_build:
# Upload builds. Note that ci.go makes this a no-op PR builds.
- go run build/ci.go archive -arch %GETH_ARCH% -type zip -signer WINDOWS_SIGNING_KEY -upload gethstore/builds
- go run build/ci.go nsis -arch %GETH_ARCH% -signer WINDOWS_SIGNING_KEY -upload gethstore/builds
test_script:
- go run build/ci.go test -dlgo -arch %GETH_ARCH% -cc %GETH_CC% -short

View file

@ -32,7 +32,7 @@ var (
testServer2 = testServer("testServer2") testServer2 = testServer("testServer2")
testBlock1 = types.NewBeaconBlock(&deneb.BeaconBlock{ testBlock1 = types.NewBeaconBlock(&deneb.BeaconBlock{
Slot: 127, Slot: 123,
Body: deneb.BeaconBlockBody{ Body: deneb.BeaconBlockBody{
ExecutionPayload: deneb.ExecutionPayload{ ExecutionPayload: deneb.ExecutionPayload{
BlockNumber: 456, BlockNumber: 456,
@ -41,7 +41,7 @@ var (
}, },
}) })
testBlock2 = types.NewBeaconBlock(&deneb.BeaconBlock{ testBlock2 = types.NewBeaconBlock(&deneb.BeaconBlock{
Slot: 128, Slot: 124,
Body: deneb.BeaconBlockBody{ Body: deneb.BeaconBlockBody{
ExecutionPayload: deneb.ExecutionPayload{ ExecutionPayload: deneb.ExecutionPayload{
BlockNumber: 457, BlockNumber: 457,
@ -49,14 +49,6 @@ var (
}, },
}, },
}) })
testFinal1 = types.NewExecutionHeader(&deneb.ExecutionPayloadHeader{
BlockNumber: 395,
BlockHash: zrntcommon.Hash32(common.HexToHash("abbe7625624bf8ddd84723709e2758956289465dd23475f02387e0854942666")),
})
testFinal2 = types.NewExecutionHeader(&deneb.ExecutionPayloadHeader{
BlockNumber: 420,
BlockHash: zrntcommon.Hash32(common.HexToHash("9182a6ef8723654de174283750932ccc092378549836bf4873657eeec474598")),
})
) )
type testServer string type testServer string
@ -74,10 +66,9 @@ func TestBlockSync(t *testing.T) {
ts.AddServer(testServer1, 1) ts.AddServer(testServer1, 1)
ts.AddServer(testServer2, 1) ts.AddServer(testServer2, 1)
expHeadEvent := func(expHead *types.BeaconBlock, expFinal *types.ExecutionHeader) { expHeadBlock := func(expHead *types.BeaconBlock) {
t.Helper() t.Helper()
var expNumber, headNumber uint64 var expNumber, headNumber uint64
var expFinalHash, finalHash common.Hash
if expHead != nil { if expHead != nil {
p, err := expHead.ExecutionPayload() p, err := expHead.ExecutionPayload()
if err != nil { if err != nil {
@ -85,26 +76,19 @@ func TestBlockSync(t *testing.T) {
} }
expNumber = p.NumberU64() expNumber = p.NumberU64()
} }
if expFinal != nil {
expFinalHash = expFinal.BlockHash()
}
select { select {
case event := <-headCh: case event := <-headCh:
headNumber = event.Block.NumberU64() headNumber = event.Block.NumberU64()
finalHash = event.Finalized
default: default:
} }
if headNumber != expNumber { if headNumber != expNumber {
t.Errorf("Wrong head block, expected block number %d, got %d)", expNumber, headNumber) t.Errorf("Wrong head block, expected block number %d, got %d)", expNumber, headNumber)
} }
if finalHash != expFinalHash {
t.Errorf("Wrong finalized block, expected block hash %064x, got %064x)", expFinalHash[:], finalHash[:])
}
} }
// no block requests expected until head tracker knows about a head // no block requests expected until head tracker knows about a head
ts.Run(1) ts.Run(1)
expHeadEvent(nil, nil) expHeadBlock(nil)
// set block 1 as prefetch head, announced by server 2 // set block 1 as prefetch head, announced by server 2
head1 := blockHeadInfo(testBlock1) head1 := blockHeadInfo(testBlock1)
@ -119,13 +103,12 @@ func TestBlockSync(t *testing.T) {
ts.AddAllowance(testServer2, 1) ts.AddAllowance(testServer2, 1)
ts.Run(3) ts.Run(3)
// head block still not expected as the fetched block is not the validated head yet // head block still not expected as the fetched block is not the validated head yet
expHeadEvent(nil, nil) expHeadBlock(nil)
// set as validated head, expect no further requests but block 1 set as head block // set as validated head, expect no further requests but block 1 set as head block
ht.validated.Header = testBlock1.Header() ht.validated.Header = testBlock1.Header()
ht.finalized, ht.finalizedPayload = testBlock1.Header(), testFinal1
ts.Run(4) ts.Run(4)
expHeadEvent(testBlock1, testFinal1) expHeadBlock(testBlock1)
// set block 2 as prefetch head, announced by server 1 // set block 2 as prefetch head, announced by server 1
head2 := blockHeadInfo(testBlock2) head2 := blockHeadInfo(testBlock2)
@ -143,26 +126,17 @@ func TestBlockSync(t *testing.T) {
// expect req2 retry to server 2 // expect req2 retry to server 2
ts.Run(7, testServer2, sync.ReqBeaconBlock(head2.BlockRoot)) ts.Run(7, testServer2, sync.ReqBeaconBlock(head2.BlockRoot))
// now head block should be unavailable again // now head block should be unavailable again
expHeadEvent(nil, nil) expHeadBlock(nil)
// valid response, now head block should be block 2 immediately as it is already validated // valid response, now head block should be block 2 immediately as it is already validated
// but head event is still not expected because an epoch boundary was crossed and the
// expected finality update has not arrived yet
ts.RequestEvent(request.EvResponse, ts.Request(7, 1), testBlock2) ts.RequestEvent(request.EvResponse, ts.Request(7, 1), testBlock2)
ts.Run(8) ts.Run(8)
expHeadEvent(nil, nil) expHeadBlock(testBlock2)
// expected finality update arrived, now a head event is expected
ht.finalized, ht.finalizedPayload = testBlock2.Header(), testFinal2
ts.Run(9)
expHeadEvent(testBlock2, testFinal2)
} }
type testHeadTracker struct { type testHeadTracker struct {
prefetch types.HeadInfo prefetch types.HeadInfo
validated types.SignedHeader validated types.SignedHeader
finalized types.Header
finalizedPayload *types.ExecutionHeader
} }
func (h *testHeadTracker) PrefetchHead() types.HeadInfo { func (h *testHeadTracker) PrefetchHead() types.HeadInfo {
@ -177,14 +151,13 @@ func (h *testHeadTracker) ValidatedOptimistic() (types.OptimisticUpdate, bool) {
}, h.validated.Header != (types.Header{}) }, h.validated.Header != (types.Header{})
} }
// TODO add test case for finality
func (h *testHeadTracker) ValidatedFinality() (types.FinalityUpdate, bool) { func (h *testHeadTracker) ValidatedFinality() (types.FinalityUpdate, bool) {
if h.validated.Header == (types.Header{}) || h.finalizedPayload == nil { finalized := types.NewExecutionHeader(new(deneb.ExecutionPayloadHeader))
return types.FinalityUpdate{}, false
}
return types.FinalityUpdate{ return types.FinalityUpdate{
Attested: types.HeaderWithExecProof{Header: h.finalized}, Attested: types.HeaderWithExecProof{Header: h.validated.Header},
Finalized: types.HeaderWithExecProof{Header: h.finalized, PayloadHeader: h.finalizedPayload}, Finalized: types.HeaderWithExecProof{PayloadHeader: finalized},
Signature: h.validated.Signature, Signature: h.validated.Signature,
SignatureSlot: h.validated.SignatureSlot, SignatureSlot: h.validated.SignatureSlot,
}, true }, h.validated.Header != (types.Header{})
} }

View file

@ -23,11 +23,9 @@ import (
"github.com/ethereum/go-ethereum/beacon/light/sync" "github.com/ethereum/go-ethereum/beacon/light/sync"
"github.com/ethereum/go-ethereum/beacon/params" "github.com/ethereum/go-ethereum/beacon/params"
"github.com/ethereum/go-ethereum/beacon/types" "github.com/ethereum/go-ethereum/beacon/types"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/common/mclock" "github.com/ethereum/go-ethereum/common/mclock"
"github.com/ethereum/go-ethereum/ethdb/memorydb" "github.com/ethereum/go-ethereum/ethdb/memorydb"
"github.com/ethereum/go-ethereum/event" "github.com/ethereum/go-ethereum/event"
"github.com/ethereum/go-ethereum/log"
"github.com/ethereum/go-ethereum/rpc" "github.com/ethereum/go-ethereum/rpc"
) )
@ -48,13 +46,7 @@ func NewClient(config params.ClientConfig) *Client {
var ( var (
db = memorydb.New() db = memorydb.New()
committeeChain = light.NewCommitteeChain(db, &config.ChainConfig, config.Threshold, !config.NoFilter) committeeChain = light.NewCommitteeChain(db, &config.ChainConfig, config.Threshold, !config.NoFilter)
headTracker = light.NewHeadTracker(committeeChain, config.Threshold, func(checkpoint common.Hash) { headTracker = light.NewHeadTracker(committeeChain, config.Threshold)
if saved, err := config.SaveCheckpointToFile(checkpoint); saved {
log.Debug("Saved beacon checkpoint", "file", config.CheckpointFile, "checkpoint", checkpoint)
} else if err != nil {
log.Error("Failed to save beacon checkpoint", "file", config.CheckpointFile, "checkpoint", checkpoint, "error", err)
}
})
) )
headSync := sync.NewHeadSync(headTracker, committeeChain) headSync := sync.NewHeadSync(headTracker, committeeChain)

View file

@ -26,7 +26,6 @@ import (
"github.com/ethereum/go-ethereum/beacon/params" "github.com/ethereum/go-ethereum/beacon/params"
"github.com/ethereum/go-ethereum/beacon/types" "github.com/ethereum/go-ethereum/beacon/types"
"github.com/ethereum/go-ethereum/common" "github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/common/hexutil"
ctypes "github.com/ethereum/go-ethereum/core/types" ctypes "github.com/ethereum/go-ethereum/core/types"
"github.com/ethereum/go-ethereum/log" "github.com/ethereum/go-ethereum/log"
"github.com/ethereum/go-ethereum/rpc" "github.com/ethereum/go-ethereum/rpc"
@ -87,10 +86,6 @@ func (ec *engineClient) updateLoop(headCh <-chan types.ChainHeadEvent) {
if status, err := ec.callForkchoiceUpdated(forkName, event); err == nil { if status, err := ec.callForkchoiceUpdated(forkName, event); err == nil {
log.Info("Successful ForkchoiceUpdated", "head", event.Block.Hash(), "status", status) log.Info("Successful ForkchoiceUpdated", "head", event.Block.Hash(), "status", status)
} else { } else {
if err.Error() == "beacon syncer reorging" {
log.Debug("Failed ForkchoiceUpdated", "head", event.Block.Hash(), "error", err)
continue // ignore beacon syncer reorging errors, this error can occur if the blsync is skipping a block
}
log.Error("Failed ForkchoiceUpdated", "head", event.Block.Hash(), "error", err) log.Error("Failed ForkchoiceUpdated", "head", event.Block.Hash(), "error", err)
} }
} }
@ -105,24 +100,20 @@ func (ec *engineClient) callNewPayload(fork string, event types.ChainHeadEvent)
params = []any{execData} params = []any{execData}
) )
switch fork { switch fork {
case "altair", "bellatrix": case "electra":
method = "engine_newPayloadV1" method = "engine_newPayloadV4"
case "capella": parentBeaconRoot := event.BeaconHead.ParentRoot
method = "engine_newPayloadV2" blobHashes := collectBlobHashes(event.Block)
params = append(params, blobHashes, parentBeaconRoot, event.ExecRequests)
case "deneb": case "deneb":
method = "engine_newPayloadV3" method = "engine_newPayloadV3"
parentBeaconRoot := event.BeaconHead.ParentRoot parentBeaconRoot := event.BeaconHead.ParentRoot
blobHashes := collectBlobHashes(event.Block) blobHashes := collectBlobHashes(event.Block)
params = append(params, blobHashes, parentBeaconRoot) params = append(params, blobHashes, parentBeaconRoot)
default: // electra, fulu and above case "capella":
method = "engine_newPayloadV4" method = "engine_newPayloadV2"
parentBeaconRoot := event.BeaconHead.ParentRoot default:
blobHashes := collectBlobHashes(event.Block) method = "engine_newPayloadV1"
hexRequests := make([]hexutil.Bytes, len(event.ExecRequests))
for i := range event.ExecRequests {
hexRequests[i] = hexutil.Bytes(event.ExecRequests[i])
}
params = append(params, blobHashes, parentBeaconRoot, hexRequests)
} }
ctx, cancel := context.WithTimeout(ec.rootCtx, time.Second*5) ctx, cancel := context.WithTimeout(ec.rootCtx, time.Second*5)
@ -149,12 +140,12 @@ func (ec *engineClient) callForkchoiceUpdated(fork string, event types.ChainHead
var method string var method string
switch fork { switch fork {
case "altair", "bellatrix": case "deneb", "electra":
method = "engine_forkchoiceUpdatedV1" method = "engine_forkchoiceUpdatedV3"
case "capella": case "capella":
method = "engine_forkchoiceUpdatedV2" method = "engine_forkchoiceUpdatedV2"
default: // deneb, electra, fulu and above default:
method = "engine_forkchoiceUpdatedV3" method = "engine_forkchoiceUpdatedV1"
} }
ctx, cancel := context.WithTimeout(ec.rootCtx, time.Second*5) ctx, cancel := context.WithTimeout(ec.rootCtx, time.Second*5)

View file

@ -1,75 +0,0 @@
// Copyright 2026 The go-ethereum Authors
// This file is part of the go-ethereum library.
//
// The go-ethereum library is free software: you can redistribute it and/or modify
// it under the terms of the GNU Lesser General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// The go-ethereum library is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public License
// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
package engine
import (
"github.com/fjl/jsonw"
)
// MarshalJSON implements json.Marshaler.
func (list BlobAndProofListV1) MarshalJSON() ([]byte, error) {
if list == nil {
return []byte("null"), nil
}
var b jsonw.Buffer
b.Array(func() {
for _, item := range list {
marshalBlobAndProofV1(&b, item)
}
})
return b.Output(), nil
}
func marshalBlobAndProofV1(b *jsonw.Buffer, item *BlobAndProofV1) {
if item == nil {
b.Null()
} else {
b.Object(func() {
b.Key("blob")
b.HexBytes(item.Blob)
b.Key("proof")
b.HexBytes(item.Proof)
})
}
}
// MarshalJSON implements json.Marshaler.
func (list BlobAndProofListV2) MarshalJSON() ([]byte, error) {
if list == nil {
return []byte("null"), nil
}
var b jsonw.Buffer
b.Array(func() {
for _, item := range list {
marshalBlobAndProofV2(&b, item)
}
})
return b.Output(), nil
}
func marshalBlobAndProofV2(b *jsonw.Buffer, item *BlobAndProofV2) {
if item == nil {
b.Null()
} else {
b.Object(func() {
b.Key("blob")
b.HexBytes(item.Blob)
b.Key("proofs")
appendHexBytesArray(b, item.CellProofs)
})
}
}

View file

@ -1,102 +0,0 @@
// Copyright 2026 The go-ethereum Authors
// This file is part of the go-ethereum library.
//
// The go-ethereum library is free software: you can redistribute it and/or modify
// it under the terms of the GNU Lesser General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// The go-ethereum library is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public License
// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
package engine
import (
"encoding/json"
"errors"
"github.com/fjl/jsonw"
)
// marshalBlobsBundle writes BlobsBundle as JSON and appends it to buf.
func marshalBlobsBundle(b *jsonw.Buffer, bundle *BlobsBundle) {
if bundle == nil {
b.Null()
return
}
b.Object(func() {
b.Key("commitments")
appendHexBytesArray(b, bundle.Commitments)
b.Key("proofs")
appendHexBytesArray(b, bundle.Proofs)
b.Key("blobs")
appendHexBytesArray(b, bundle.Blobs)
})
}
// MarshalJSON implements json.Marshaler.
func (e ExecutionPayloadEnvelope) MarshalJSON() ([]byte, error) {
if e.ExecutionPayload == nil {
return nil, errors.New("missing required field 'executionPayload' for ExecutionPayloadEnvelope")
}
// Pre-marshal the execution payload using its gencodec MarshalJSON.
payload, err := e.ExecutionPayload.MarshalJSON()
if err != nil {
return nil, err
}
// Pre-marshal the witness.
var witness []byte
if e.Witness != nil {
witness, err = json.Marshal(e.Witness)
if err != nil {
return nil, err
}
}
// Write the execution payload to the buffer
var b jsonw.Buffer
b.Object(func() {
b.Key("executionPayload")
b.RawValue(payload)
b.Key("blockValue")
if e.BlockValue != nil {
b.HexBigInt(e.BlockValue)
} else {
b.Null()
}
b.Key("blobsBundle")
marshalBlobsBundle(&b, e.BlobsBundle)
b.Key("executionRequests")
if e.Requests == nil {
b.Null()
} else {
appendHexBytesArray(&b, e.Requests)
}
b.Key("shouldOverrideBuilder")
b.Bool(e.Override)
if e.Witness != nil {
b.Key("witness")
b.RawValue(witness)
}
})
return b.Output(), nil
}
func appendHexBytesArray[T ~[]byte](b *jsonw.Buffer, slice []T) {
b.Array(func() {
for _, elem := range slice {
b.HexBytes(elem)
}
})
}

View file

@ -1,128 +0,0 @@
// Copyright 2026 The go-ethereum Authors
// This file is part of the go-ethereum library.
//
// The go-ethereum library is free software: you can redistribute it and/or modify
// it under the terms of the GNU Lesser General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// The go-ethereum library is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public License
// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
package engine
import (
"bytes"
"encoding/json"
"math/big"
"reflect"
"testing"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/common/hexutil"
)
func makeTestPayload() *ExecutableData {
return &ExecutableData{
ParentHash: common.HexToHash("0x01"),
FeeRecipient: common.HexToAddress("0x02"),
StateRoot: common.HexToHash("0x03"),
ReceiptsRoot: common.HexToHash("0x04"),
LogsBloom: make([]byte, 256),
Random: common.HexToHash("0x05"),
Number: 100,
GasLimit: 1000000,
GasUsed: 500000,
Timestamp: 1234567890,
ExtraData: []byte("extra"),
BaseFeePerGas: big.NewInt(7),
BlockHash: common.HexToHash("0x08"),
Transactions: [][]byte{{0xaa, 0xbb}},
}
}
func TestMarshalJSONRoundtrip(t *testing.T) {
witness := hexutil.Bytes{0xde, 0xad}
original := ExecutionPayloadEnvelope{
ExecutionPayload: makeTestPayload(),
BlockValue: big.NewInt(12345),
BlobsBundle: &BlobsBundle{
Commitments: []hexutil.Bytes{{0x01, 0x02}},
Proofs: []hexutil.Bytes{{0x03, 0x04}},
Blobs: []hexutil.Bytes{{0x05, 0x06}},
},
Requests: [][]byte{{0xaa}, {0xbb, 0xcc}},
Override: true,
Witness: &witness,
}
data, err := original.MarshalJSON()
if err != nil {
t.Fatalf("MarshalJSON error: %v", err)
}
var decoded ExecutionPayloadEnvelope
if err := json.Unmarshal(data, &decoded); err != nil {
t.Fatalf("UnmarshalJSON error: %v", err)
}
if decoded.ExecutionPayload.Number != original.ExecutionPayload.Number {
t.Error("ExecutionPayload.Number mismatch")
}
if decoded.BlockValue.Cmp(original.BlockValue) != 0 {
t.Errorf("BlockValue mismatch: got %v, want %v", decoded.BlockValue, original.BlockValue)
}
if len(decoded.BlobsBundle.Blobs) != len(original.BlobsBundle.Blobs) {
t.Error("BlobsBundle.Blobs length mismatch")
}
if len(decoded.Requests) != len(original.Requests) {
t.Error("Requests length mismatch")
}
if decoded.Override != original.Override {
t.Error("Override mismatch")
}
if !bytes.Equal(*decoded.Witness, *original.Witness) {
t.Error("Witness mismatch")
}
}
func TestMarshalJSONNilPayload(t *testing.T) {
env := ExecutionPayloadEnvelope{
ExecutionPayload: nil,
BlockValue: big.NewInt(1),
}
_, err := env.MarshalJSON()
if err == nil {
t.Fatal("expected error for nil ExecutionPayload")
}
}
// TestExecutionPayloadEnvelopeFieldCoverage guards against structural drift.
// If a field is added to or removed from ExecutionPayloadEnvelope, this test
// fails, reminding the developer to update MarshalJSON in marshal_epe.go.
func TestExecutionPayloadEnvelopeFieldCoverage(t *testing.T) {
expected := []string{
"ExecutionPayload",
"BlockValue",
"BlobsBundle",
"Requests",
"Override",
"Witness",
}
typ := reflect.TypeOf(ExecutionPayloadEnvelope{})
if typ.NumField() != len(expected) {
t.Fatalf("ExecutionPayloadEnvelope has %d fields, expected %d — update MarshalJSON in marshal_epe.go",
typ.NumField(), len(expected))
}
for i, name := range expected {
if typ.Field(i).Name != name {
t.Errorf("field %d: got %q, want %q — update MarshalJSON in marshal_epe.go",
i, typ.Field(i).Name, name)
}
}
}

View file

@ -81,7 +81,6 @@ var (
TooLargeRequest = &EngineAPIError{code: -38004, msg: "Too large request"} TooLargeRequest = &EngineAPIError{code: -38004, msg: "Too large request"}
InvalidParams = &EngineAPIError{code: -32602, msg: "Invalid parameters"} InvalidParams = &EngineAPIError{code: -32602, msg: "Invalid parameters"}
UnsupportedFork = &EngineAPIError{code: -38005, msg: "Unsupported fork"} UnsupportedFork = &EngineAPIError{code: -38005, msg: "Unsupported fork"}
TooDeepReorg = &EngineAPIError{code: -38006, msg: "Too deep reorg"}
STATUS_INVALID = ForkChoiceResponse{PayloadStatus: PayloadStatusV1{Status: INVALID}, PayloadID: nil} STATUS_INVALID = ForkChoiceResponse{PayloadStatus: PayloadStatusV1{Status: INVALID}, PayloadID: nil}
STATUS_SYNCING = ForkChoiceResponse{PayloadStatus: PayloadStatusV1{Status: SYNCING}, PayloadID: nil} STATUS_SYNCING = ForkChoiceResponse{PayloadStatus: PayloadStatusV1{Status: SYNCING}, PayloadID: nil}

View file

@ -21,8 +21,6 @@ func (p PayloadAttributes) MarshalJSON() ([]byte, error) {
SuggestedFeeRecipient common.Address `json:"suggestedFeeRecipient" gencodec:"required"` SuggestedFeeRecipient common.Address `json:"suggestedFeeRecipient" gencodec:"required"`
Withdrawals []*types.Withdrawal `json:"withdrawals"` Withdrawals []*types.Withdrawal `json:"withdrawals"`
BeaconRoot *common.Hash `json:"parentBeaconBlockRoot"` BeaconRoot *common.Hash `json:"parentBeaconBlockRoot"`
SlotNumber *hexutil.Uint64 `json:"slotNumber"`
TargetGasLimit *hexutil.Uint64 `json:"targetGasLimit"`
} }
var enc PayloadAttributes var enc PayloadAttributes
enc.Timestamp = hexutil.Uint64(p.Timestamp) enc.Timestamp = hexutil.Uint64(p.Timestamp)
@ -30,8 +28,6 @@ func (p PayloadAttributes) MarshalJSON() ([]byte, error) {
enc.SuggestedFeeRecipient = p.SuggestedFeeRecipient enc.SuggestedFeeRecipient = p.SuggestedFeeRecipient
enc.Withdrawals = p.Withdrawals enc.Withdrawals = p.Withdrawals
enc.BeaconRoot = p.BeaconRoot enc.BeaconRoot = p.BeaconRoot
enc.SlotNumber = (*hexutil.Uint64)(p.SlotNumber)
enc.TargetGasLimit = (*hexutil.Uint64)(p.TargetGasLimit)
return json.Marshal(&enc) return json.Marshal(&enc)
} }
@ -43,8 +39,6 @@ func (p *PayloadAttributes) UnmarshalJSON(input []byte) error {
SuggestedFeeRecipient *common.Address `json:"suggestedFeeRecipient" gencodec:"required"` SuggestedFeeRecipient *common.Address `json:"suggestedFeeRecipient" gencodec:"required"`
Withdrawals []*types.Withdrawal `json:"withdrawals"` Withdrawals []*types.Withdrawal `json:"withdrawals"`
BeaconRoot *common.Hash `json:"parentBeaconBlockRoot"` BeaconRoot *common.Hash `json:"parentBeaconBlockRoot"`
SlotNumber *hexutil.Uint64 `json:"slotNumber"`
TargetGasLimit *hexutil.Uint64 `json:"targetGasLimit"`
} }
var dec PayloadAttributes var dec PayloadAttributes
if err := json.Unmarshal(input, &dec); err != nil { if err := json.Unmarshal(input, &dec); err != nil {
@ -68,11 +62,5 @@ func (p *PayloadAttributes) UnmarshalJSON(input []byte) error {
if dec.BeaconRoot != nil { if dec.BeaconRoot != nil {
p.BeaconRoot = dec.BeaconRoot p.BeaconRoot = dec.BeaconRoot
} }
if dec.SlotNumber != nil {
p.SlotNumber = (*uint64)(dec.SlotNumber)
}
if dec.TargetGasLimit != nil {
p.TargetGasLimit = (*uint64)(dec.TargetGasLimit)
}
return nil return nil
} }

View file

@ -17,25 +17,24 @@ var _ = (*executableDataMarshaling)(nil)
// MarshalJSON marshals as JSON. // MarshalJSON marshals as JSON.
func (e ExecutableData) MarshalJSON() ([]byte, error) { func (e ExecutableData) MarshalJSON() ([]byte, error) {
type ExecutableData struct { type ExecutableData struct {
ParentHash common.Hash `json:"parentHash" gencodec:"required"` ParentHash common.Hash `json:"parentHash" gencodec:"required"`
FeeRecipient common.Address `json:"feeRecipient" gencodec:"required"` FeeRecipient common.Address `json:"feeRecipient" gencodec:"required"`
StateRoot common.Hash `json:"stateRoot" gencodec:"required"` StateRoot common.Hash `json:"stateRoot" gencodec:"required"`
ReceiptsRoot common.Hash `json:"receiptsRoot" gencodec:"required"` ReceiptsRoot common.Hash `json:"receiptsRoot" gencodec:"required"`
LogsBloom hexutil.Bytes `json:"logsBloom" gencodec:"required"` LogsBloom hexutil.Bytes `json:"logsBloom" gencodec:"required"`
Random common.Hash `json:"prevRandao" gencodec:"required"` Random common.Hash `json:"prevRandao" gencodec:"required"`
Number hexutil.Uint64 `json:"blockNumber" gencodec:"required"` Number hexutil.Uint64 `json:"blockNumber" gencodec:"required"`
GasLimit hexutil.Uint64 `json:"gasLimit" gencodec:"required"` GasLimit hexutil.Uint64 `json:"gasLimit" gencodec:"required"`
GasUsed hexutil.Uint64 `json:"gasUsed" gencodec:"required"` GasUsed hexutil.Uint64 `json:"gasUsed" gencodec:"required"`
Timestamp hexutil.Uint64 `json:"timestamp" gencodec:"required"` Timestamp hexutil.Uint64 `json:"timestamp" gencodec:"required"`
ExtraData hexutil.Bytes `json:"extraData" gencodec:"required"` ExtraData hexutil.Bytes `json:"extraData" gencodec:"required"`
BaseFeePerGas *hexutil.Big `json:"baseFeePerGas" gencodec:"required"` BaseFeePerGas *hexutil.Big `json:"baseFeePerGas" gencodec:"required"`
BlockHash common.Hash `json:"blockHash" gencodec:"required"` BlockHash common.Hash `json:"blockHash" gencodec:"required"`
Transactions []hexutil.Bytes `json:"transactions" gencodec:"required"` Transactions []hexutil.Bytes `json:"transactions" gencodec:"required"`
Withdrawals []*types.Withdrawal `json:"withdrawals"` Withdrawals []*types.Withdrawal `json:"withdrawals"`
BlobGasUsed *hexutil.Uint64 `json:"blobGasUsed"` BlobGasUsed *hexutil.Uint64 `json:"blobGasUsed"`
ExcessBlobGas *hexutil.Uint64 `json:"excessBlobGas"` ExcessBlobGas *hexutil.Uint64 `json:"excessBlobGas"`
BlockAccessList hexutil.Bytes `json:"blockAccessList,omitempty"` ExecutionWitness *types.ExecutionWitness `json:"executionWitness,omitempty"`
SlotNumber *hexutil.Uint64 `json:"slotNumber,omitempty"`
} }
var enc ExecutableData var enc ExecutableData
enc.ParentHash = e.ParentHash enc.ParentHash = e.ParentHash
@ -60,33 +59,31 @@ func (e ExecutableData) MarshalJSON() ([]byte, error) {
enc.Withdrawals = e.Withdrawals enc.Withdrawals = e.Withdrawals
enc.BlobGasUsed = (*hexutil.Uint64)(e.BlobGasUsed) enc.BlobGasUsed = (*hexutil.Uint64)(e.BlobGasUsed)
enc.ExcessBlobGas = (*hexutil.Uint64)(e.ExcessBlobGas) enc.ExcessBlobGas = (*hexutil.Uint64)(e.ExcessBlobGas)
enc.BlockAccessList = e.BlockAccessList enc.ExecutionWitness = e.ExecutionWitness
enc.SlotNumber = (*hexutil.Uint64)(e.SlotNumber)
return json.Marshal(&enc) return json.Marshal(&enc)
} }
// UnmarshalJSON unmarshals from JSON. // UnmarshalJSON unmarshals from JSON.
func (e *ExecutableData) UnmarshalJSON(input []byte) error { func (e *ExecutableData) UnmarshalJSON(input []byte) error {
type ExecutableData struct { type ExecutableData struct {
ParentHash *common.Hash `json:"parentHash" gencodec:"required"` ParentHash *common.Hash `json:"parentHash" gencodec:"required"`
FeeRecipient *common.Address `json:"feeRecipient" gencodec:"required"` FeeRecipient *common.Address `json:"feeRecipient" gencodec:"required"`
StateRoot *common.Hash `json:"stateRoot" gencodec:"required"` StateRoot *common.Hash `json:"stateRoot" gencodec:"required"`
ReceiptsRoot *common.Hash `json:"receiptsRoot" gencodec:"required"` ReceiptsRoot *common.Hash `json:"receiptsRoot" gencodec:"required"`
LogsBloom *hexutil.Bytes `json:"logsBloom" gencodec:"required"` LogsBloom *hexutil.Bytes `json:"logsBloom" gencodec:"required"`
Random *common.Hash `json:"prevRandao" gencodec:"required"` Random *common.Hash `json:"prevRandao" gencodec:"required"`
Number *hexutil.Uint64 `json:"blockNumber" gencodec:"required"` Number *hexutil.Uint64 `json:"blockNumber" gencodec:"required"`
GasLimit *hexutil.Uint64 `json:"gasLimit" gencodec:"required"` GasLimit *hexutil.Uint64 `json:"gasLimit" gencodec:"required"`
GasUsed *hexutil.Uint64 `json:"gasUsed" gencodec:"required"` GasUsed *hexutil.Uint64 `json:"gasUsed" gencodec:"required"`
Timestamp *hexutil.Uint64 `json:"timestamp" gencodec:"required"` Timestamp *hexutil.Uint64 `json:"timestamp" gencodec:"required"`
ExtraData *hexutil.Bytes `json:"extraData" gencodec:"required"` ExtraData *hexutil.Bytes `json:"extraData" gencodec:"required"`
BaseFeePerGas *hexutil.Big `json:"baseFeePerGas" gencodec:"required"` BaseFeePerGas *hexutil.Big `json:"baseFeePerGas" gencodec:"required"`
BlockHash *common.Hash `json:"blockHash" gencodec:"required"` BlockHash *common.Hash `json:"blockHash" gencodec:"required"`
Transactions []hexutil.Bytes `json:"transactions" gencodec:"required"` Transactions []hexutil.Bytes `json:"transactions" gencodec:"required"`
Withdrawals []*types.Withdrawal `json:"withdrawals"` Withdrawals []*types.Withdrawal `json:"withdrawals"`
BlobGasUsed *hexutil.Uint64 `json:"blobGasUsed"` BlobGasUsed *hexutil.Uint64 `json:"blobGasUsed"`
ExcessBlobGas *hexutil.Uint64 `json:"excessBlobGas"` ExcessBlobGas *hexutil.Uint64 `json:"excessBlobGas"`
BlockAccessList *hexutil.Bytes `json:"blockAccessList,omitempty"` ExecutionWitness *types.ExecutionWitness `json:"executionWitness,omitempty"`
SlotNumber *hexutil.Uint64 `json:"slotNumber,omitempty"`
} }
var dec ExecutableData var dec ExecutableData
if err := json.Unmarshal(input, &dec); err != nil { if err := json.Unmarshal(input, &dec); err != nil {
@ -160,11 +157,8 @@ func (e *ExecutableData) UnmarshalJSON(input []byte) error {
if dec.ExcessBlobGas != nil { if dec.ExcessBlobGas != nil {
e.ExcessBlobGas = (*uint64)(dec.ExcessBlobGas) e.ExcessBlobGas = (*uint64)(dec.ExcessBlobGas)
} }
if dec.BlockAccessList != nil { if dec.ExecutionWitness != nil {
e.BlockAccessList = *dec.BlockAccessList e.ExecutionWitness = dec.ExecutionWitness
}
if dec.SlotNumber != nil {
e.SlotNumber = (*uint64)(dec.SlotNumber)
} }
return nil return nil
} }

View file

@ -12,12 +12,37 @@ import (
var _ = (*executionPayloadEnvelopeMarshaling)(nil) var _ = (*executionPayloadEnvelopeMarshaling)(nil)
// MarshalJSON marshals as JSON.
func (e ExecutionPayloadEnvelope) MarshalJSON() ([]byte, error) {
type ExecutionPayloadEnvelope struct {
ExecutionPayload *ExecutableData `json:"executionPayload" gencodec:"required"`
BlockValue *hexutil.Big `json:"blockValue" gencodec:"required"`
BlobsBundle *BlobsBundleV1 `json:"blobsBundle"`
Requests []hexutil.Bytes `json:"executionRequests"`
Override bool `json:"shouldOverrideBuilder"`
Witness *hexutil.Bytes `json:"witness,omitempty"`
}
var enc ExecutionPayloadEnvelope
enc.ExecutionPayload = e.ExecutionPayload
enc.BlockValue = (*hexutil.Big)(e.BlockValue)
enc.BlobsBundle = e.BlobsBundle
if e.Requests != nil {
enc.Requests = make([]hexutil.Bytes, len(e.Requests))
for k, v := range e.Requests {
enc.Requests[k] = v
}
}
enc.Override = e.Override
enc.Witness = e.Witness
return json.Marshal(&enc)
}
// UnmarshalJSON unmarshals from JSON. // UnmarshalJSON unmarshals from JSON.
func (e *ExecutionPayloadEnvelope) UnmarshalJSON(input []byte) error { func (e *ExecutionPayloadEnvelope) UnmarshalJSON(input []byte) error {
type ExecutionPayloadEnvelope struct { type ExecutionPayloadEnvelope struct {
ExecutionPayload *ExecutableData `json:"executionPayload" gencodec:"required"` ExecutionPayload *ExecutableData `json:"executionPayload" gencodec:"required"`
BlockValue *hexutil.Big `json:"blockValue" gencodec:"required"` BlockValue *hexutil.Big `json:"blockValue" gencodec:"required"`
BlobsBundle *BlobsBundle `json:"blobsBundle"` BlobsBundle *BlobsBundleV1 `json:"blobsBundle"`
Requests []hexutil.Bytes `json:"executionRequests"` Requests []hexutil.Bytes `json:"executionRequests"`
Override *bool `json:"shouldOverrideBuilder"` Override *bool `json:"shouldOverrideBuilder"`
Witness *hexutil.Bytes `json:"witness,omitempty"` Witness *hexutil.Bytes `json:"witness,omitempty"`

View file

@ -17,7 +17,6 @@
package engine package engine
import ( import (
"bytes"
"fmt" "fmt"
"math/big" "math/big"
"slices" "slices"
@ -25,10 +24,7 @@ import (
"github.com/ethereum/go-ethereum/common" "github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/common/hexutil" "github.com/ethereum/go-ethereum/common/hexutil"
"github.com/ethereum/go-ethereum/core/types" "github.com/ethereum/go-ethereum/core/types"
"github.com/ethereum/go-ethereum/core/types/bal"
"github.com/ethereum/go-ethereum/crypto"
"github.com/ethereum/go-ethereum/params" "github.com/ethereum/go-ethereum/params"
"github.com/ethereum/go-ethereum/rlp"
"github.com/ethereum/go-ethereum/trie" "github.com/ethereum/go-ethereum/trie"
) )
@ -37,33 +33,12 @@ import (
type PayloadVersion byte type PayloadVersion byte
var ( var (
// PayloadV1 is the identifier of ExecutionPayloadV1 introduced in paris fork.
// https://github.com/ethereum/execution-apis/blob/main/src/engine/paris.md#executionpayloadv1
PayloadV1 PayloadVersion = 0x1 PayloadV1 PayloadVersion = 0x1
// PayloadV2 is the identifier of ExecutionPayloadV2 introduced in shanghai fork.
//
// https://github.com/ethereum/execution-apis/blob/main/src/engine/shanghai.md#executionpayloadv2
// ExecutionPayloadV2 has the syntax of ExecutionPayloadV1 and appends a
// single field: withdrawals.
PayloadV2 PayloadVersion = 0x2 PayloadV2 PayloadVersion = 0x2
// PayloadV3 is the identifier of ExecutionPayloadV3 introduced in cancun fork.
//
// https://github.com/ethereum/execution-apis/blob/main/src/engine/cancun.md#executionpayloadv3
// ExecutionPayloadV3 has the syntax of ExecutionPayloadV2 and appends the new
// fields: blobGasUsed and excessBlobGas.
PayloadV3 PayloadVersion = 0x3 PayloadV3 PayloadVersion = 0x3
// PayloadV4 is the identifier of ExecutionPayloadV4 introduced in amsterdam fork.
//
// https://github.com/ethereum/execution-apis/blob/main/src/engine/amsterdam.md#executionpayloadv4
// ExecutionPayloadV4 has the syntax of ExecutionPayloadV3 and appends the new
// fields slotNumber and blockAccessList.
PayloadV4 PayloadVersion = 0x4
) )
//go:generate go run github.com/fjl/gencodec -type PayloadAttributes -field-override payloadAttributesMarshaling -out pa_codec.go //go:generate go run github.com/fjl/gencodec -type PayloadAttributes -field-override payloadAttributesMarshaling -out gen_blockparams.go
// PayloadAttributes describes the environment context in which a block should // PayloadAttributes describes the environment context in which a block should
// be built. // be built.
@ -73,56 +48,49 @@ type PayloadAttributes struct {
SuggestedFeeRecipient common.Address `json:"suggestedFeeRecipient" gencodec:"required"` SuggestedFeeRecipient common.Address `json:"suggestedFeeRecipient" gencodec:"required"`
Withdrawals []*types.Withdrawal `json:"withdrawals"` Withdrawals []*types.Withdrawal `json:"withdrawals"`
BeaconRoot *common.Hash `json:"parentBeaconBlockRoot"` BeaconRoot *common.Hash `json:"parentBeaconBlockRoot"`
SlotNumber *uint64 `json:"slotNumber"`
TargetGasLimit *uint64 `json:"targetGasLimit"`
} }
// JSON type overrides for PayloadAttributes. // JSON type overrides for PayloadAttributes.
type payloadAttributesMarshaling struct { type payloadAttributesMarshaling struct {
Timestamp hexutil.Uint64 Timestamp hexutil.Uint64
SlotNumber *hexutil.Uint64
TargetGasLimit *hexutil.Uint64
} }
//go:generate go run github.com/fjl/gencodec -type ExecutableData -field-override executableDataMarshaling -out ed_codec.go //go:generate go run github.com/fjl/gencodec -type ExecutableData -field-override executableDataMarshaling -out gen_ed.go
// ExecutableData is the data necessary to execute an EL payload. // ExecutableData is the data necessary to execute an EL payload.
type ExecutableData struct { type ExecutableData struct {
ParentHash common.Hash `json:"parentHash" gencodec:"required"` ParentHash common.Hash `json:"parentHash" gencodec:"required"`
FeeRecipient common.Address `json:"feeRecipient" gencodec:"required"` FeeRecipient common.Address `json:"feeRecipient" gencodec:"required"`
StateRoot common.Hash `json:"stateRoot" gencodec:"required"` StateRoot common.Hash `json:"stateRoot" gencodec:"required"`
ReceiptsRoot common.Hash `json:"receiptsRoot" gencodec:"required"` ReceiptsRoot common.Hash `json:"receiptsRoot" gencodec:"required"`
LogsBloom []byte `json:"logsBloom" gencodec:"required"` LogsBloom []byte `json:"logsBloom" gencodec:"required"`
Random common.Hash `json:"prevRandao" gencodec:"required"` Random common.Hash `json:"prevRandao" gencodec:"required"`
Number uint64 `json:"blockNumber" gencodec:"required"` Number uint64 `json:"blockNumber" gencodec:"required"`
GasLimit uint64 `json:"gasLimit" gencodec:"required"` GasLimit uint64 `json:"gasLimit" gencodec:"required"`
GasUsed uint64 `json:"gasUsed" gencodec:"required"` GasUsed uint64 `json:"gasUsed" gencodec:"required"`
Timestamp uint64 `json:"timestamp" gencodec:"required"` Timestamp uint64 `json:"timestamp" gencodec:"required"`
ExtraData []byte `json:"extraData" gencodec:"required"` ExtraData []byte `json:"extraData" gencodec:"required"`
BaseFeePerGas *big.Int `json:"baseFeePerGas" gencodec:"required"` BaseFeePerGas *big.Int `json:"baseFeePerGas" gencodec:"required"`
BlockHash common.Hash `json:"blockHash" gencodec:"required"` BlockHash common.Hash `json:"blockHash" gencodec:"required"`
Transactions [][]byte `json:"transactions" gencodec:"required"` Transactions [][]byte `json:"transactions" gencodec:"required"`
Withdrawals []*types.Withdrawal `json:"withdrawals"` Withdrawals []*types.Withdrawal `json:"withdrawals"`
BlobGasUsed *uint64 `json:"blobGasUsed"` BlobGasUsed *uint64 `json:"blobGasUsed"`
ExcessBlobGas *uint64 `json:"excessBlobGas"` ExcessBlobGas *uint64 `json:"excessBlobGas"`
BlockAccessList []byte `json:"blockAccessList,omitempty"` ExecutionWitness *types.ExecutionWitness `json:"executionWitness,omitempty"`
SlotNumber *uint64 `json:"slotNumber,omitempty"`
} }
// JSON type overrides for executableData. // JSON type overrides for executableData.
type executableDataMarshaling struct { type executableDataMarshaling struct {
Number hexutil.Uint64 Number hexutil.Uint64
GasLimit hexutil.Uint64 GasLimit hexutil.Uint64
GasUsed hexutil.Uint64 GasUsed hexutil.Uint64
Timestamp hexutil.Uint64 Timestamp hexutil.Uint64
BaseFeePerGas *hexutil.Big BaseFeePerGas *hexutil.Big
ExtraData hexutil.Bytes ExtraData hexutil.Bytes
LogsBloom hexutil.Bytes LogsBloom hexutil.Bytes
Transactions []hexutil.Bytes Transactions []hexutil.Bytes
BlobGasUsed *hexutil.Uint64 BlobGasUsed *hexutil.Uint64
ExcessBlobGas *hexutil.Uint64 ExcessBlobGas *hexutil.Uint64
SlotNumber *hexutil.Uint64
BlockAccessList hexutil.Bytes
} }
// StatelessPayloadStatusV1 is the result of a stateless payload execution. // StatelessPayloadStatusV1 is the result of a stateless payload execution.
@ -133,29 +101,18 @@ type StatelessPayloadStatusV1 struct {
ValidationError *string `json:"validationError"` ValidationError *string `json:"validationError"`
} }
//go:generate go run github.com/fjl/gencodec -enc=false -type ExecutionPayloadEnvelope -field-override executionPayloadEnvelopeMarshaling -out epe_decode.go //go:generate go run github.com/fjl/gencodec -type ExecutionPayloadEnvelope -field-override executionPayloadEnvelopeMarshaling -out gen_epe.go
type ExecutionPayloadEnvelope struct { type ExecutionPayloadEnvelope struct {
ExecutionPayload *ExecutableData `json:"executionPayload" gencodec:"required"` ExecutionPayload *ExecutableData `json:"executionPayload" gencodec:"required"`
BlockValue *big.Int `json:"blockValue" gencodec:"required"` BlockValue *big.Int `json:"blockValue" gencodec:"required"`
BlobsBundle *BlobsBundle `json:"blobsBundle"` BlobsBundle *BlobsBundleV1 `json:"blobsBundle"`
Requests [][]byte `json:"executionRequests"` Requests [][]byte `json:"executionRequests"`
Override bool `json:"shouldOverrideBuilder"` Override bool `json:"shouldOverrideBuilder"`
Witness *hexutil.Bytes `json:"witness,omitempty"` Witness *hexutil.Bytes `json:"witness,omitempty"`
} }
// JSON type overrides for ExecutionPayloadEnvelope. type BlobsBundleV1 struct {
type executionPayloadEnvelopeMarshaling struct {
BlockValue *hexutil.Big
Requests []hexutil.Bytes
}
// BlobsBundle includes the marshalled sidecar data. Note this structure is
// shared by BlobsBundleV1 and BlobsBundleV2 for the sake of simplicity.
//
// - BlobsBundleV1: proofs contain exactly len(blobs) kzg proofs.
// - BlobsBundleV2: proofs contain exactly CELLS_PER_EXT_BLOB * len(blobs) cell proofs.
type BlobsBundle struct {
Commitments []hexutil.Bytes `json:"commitments"` Commitments []hexutil.Bytes `json:"commitments"`
Proofs []hexutil.Bytes `json:"proofs"` Proofs []hexutil.Bytes `json:"proofs"`
Blobs []hexutil.Bytes `json:"blobs"` Blobs []hexutil.Bytes `json:"blobs"`
@ -166,27 +123,15 @@ type BlobAndProofV1 struct {
Proof hexutil.Bytes `json:"proof"` Proof hexutil.Bytes `json:"proof"`
} }
// BlobAndProofListV1 is a list of BlobAndProofV1 with a hand-rolled JSON marshaler // JSON type overrides for ExecutionPayloadEnvelope.
// that avoids the overhead of encoding/json for large blob payloads. type executionPayloadEnvelopeMarshaling struct {
type BlobAndProofListV1 []*BlobAndProofV1 BlockValue *hexutil.Big
Requests []hexutil.Bytes
type BlobAndProofV2 struct {
Blob hexutil.Bytes `json:"blob"`
CellProofs []hexutil.Bytes `json:"proofs"` // proofs MUST contain exactly CELLS_PER_EXT_BLOB cell proofs.
} }
type BlobCellsAndProofsV1 struct {
BlobCells []*hexutil.Bytes `json:"blob_cells"`
Proofs []*hexutil.Bytes `json:"proofs"`
}
// BlobAndProofListV2 is a list of BlobAndProofV2 with a hand-rolled JSON marshaler
// that avoids the overhead of encoding/json for large blob payloads.
type BlobAndProofListV2 []*BlobAndProofV2
type PayloadStatusV1 struct { type PayloadStatusV1 struct {
Status string `json:"status"` Status string `json:"status"`
Witness *hexutil.Bytes `json:"witness,omitempty"` Witness *hexutil.Bytes `json:"witness"`
LatestValidHash *common.Hash `json:"latestValidHash"` LatestValidHash *common.Hash `json:"latestValidHash"`
ValidationError *string `json:"validationError"` ValidationError *string `json:"validationError"`
} }
@ -245,7 +190,7 @@ func encodeTransactions(txs []*types.Transaction) [][]byte {
return enc return enc
} }
func DecodeTransactions(enc [][]byte) ([]*types.Transaction, error) { func decodeTransactions(enc [][]byte) ([]*types.Transaction, error) {
var txs = make([]*types.Transaction, len(enc)) var txs = make([]*types.Transaction, len(enc))
for i, encTx := range enc { for i, encTx := range enc {
var tx types.Transaction var tx types.Transaction
@ -283,7 +228,7 @@ func ExecutableDataToBlock(data ExecutableData, versionedHashes []common.Hash, b
// for stateless execution, so it skips checking if the executable data hashes to // for stateless execution, so it skips checking if the executable data hashes to
// the requested hash (stateless has to *compute* the root hash, it's not given). // the requested hash (stateless has to *compute* the root hash, it's not given).
func ExecutableDataToBlockNoHash(data ExecutableData, versionedHashes []common.Hash, beaconRoot *common.Hash, requests [][]byte) (*types.Block, error) { func ExecutableDataToBlockNoHash(data ExecutableData, versionedHashes []common.Hash, beaconRoot *common.Hash, requests [][]byte) (*types.Block, error) {
txs, err := DecodeTransactions(data.Transactions) txs, err := decodeTransactions(data.Transactions)
if err != nil { if err != nil {
return nil, err return nil, err
} }
@ -297,7 +242,7 @@ func ExecutableDataToBlockNoHash(data ExecutableData, versionedHashes []common.H
if data.BaseFeePerGas != nil && (data.BaseFeePerGas.Sign() == -1 || data.BaseFeePerGas.BitLen() > 256) { if data.BaseFeePerGas != nil && (data.BaseFeePerGas.Sign() == -1 || data.BaseFeePerGas.BitLen() > 256) {
return nil, fmt.Errorf("invalid baseFeePerGas: %v", data.BaseFeePerGas) return nil, fmt.Errorf("invalid baseFeePerGas: %v", data.BaseFeePerGas)
} }
var blobHashes = make([]common.Hash, 0, len(versionedHashes)) var blobHashes = make([]common.Hash, 0, len(txs))
for _, tx := range txs { for _, tx := range txs {
blobHashes = append(blobHashes, tx.BlobHashes()...) blobHashes = append(blobHashes, tx.BlobHashes()...)
} }
@ -306,7 +251,7 @@ func ExecutableDataToBlockNoHash(data ExecutableData, versionedHashes []common.H
} }
for i := 0; i < len(blobHashes); i++ { for i := 0; i < len(blobHashes); i++ {
if blobHashes[i] != versionedHashes[i] { if blobHashes[i] != versionedHashes[i] {
return nil, fmt.Errorf("invalid versionedHash at %v: %v blobHash: %v", i, versionedHashes[i], blobHashes[i]) return nil, fmt.Errorf("invalid versionedHash at %v: %v blobHashes: %v", i, versionedHashes, blobHashes)
} }
} }
// Only set withdrawalsRoot if it is non-nil. This allows CLs to use // Only set withdrawalsRoot if it is non-nil. This allows CLs to use
@ -324,103 +269,69 @@ func ExecutableDataToBlockNoHash(data ExecutableData, versionedHashes []common.H
requestsHash = &h requestsHash = &h
} }
// If Amsterdam is enabled, data.BlockAccessList is always non-nil,
// even for empty blocks with no state transitions.
//
// If Amsterdam is not enabled yet, blockAccessListHash is expected
// to be nil.
var blockAccessListHash *common.Hash
if data.BlockAccessList != nil {
hash := crypto.Keccak256Hash(data.BlockAccessList)
blockAccessListHash = &hash
}
header := &types.Header{ header := &types.Header{
ParentHash: data.ParentHash, ParentHash: data.ParentHash,
UncleHash: types.EmptyUncleHash, UncleHash: types.EmptyUncleHash,
Coinbase: data.FeeRecipient, Coinbase: data.FeeRecipient,
Root: data.StateRoot, Root: data.StateRoot,
TxHash: types.DeriveSha(types.Transactions(txs), trie.NewStackTrie(nil)), TxHash: types.DeriveSha(types.Transactions(txs), trie.NewStackTrie(nil)),
ReceiptHash: data.ReceiptsRoot, ReceiptHash: data.ReceiptsRoot,
Bloom: types.BytesToBloom(data.LogsBloom), Bloom: types.BytesToBloom(data.LogsBloom),
Difficulty: common.Big0, Difficulty: common.Big0,
Number: new(big.Int).SetUint64(data.Number), Number: new(big.Int).SetUint64(data.Number),
GasLimit: data.GasLimit, GasLimit: data.GasLimit,
GasUsed: data.GasUsed, GasUsed: data.GasUsed,
Time: data.Timestamp, Time: data.Timestamp,
BaseFee: data.BaseFeePerGas, BaseFee: data.BaseFeePerGas,
Extra: data.ExtraData, Extra: data.ExtraData,
MixDigest: data.Random, MixDigest: data.Random,
WithdrawalsHash: withdrawalsRoot, WithdrawalsHash: withdrawalsRoot,
ExcessBlobGas: data.ExcessBlobGas, ExcessBlobGas: data.ExcessBlobGas,
BlobGasUsed: data.BlobGasUsed, BlobGasUsed: data.BlobGasUsed,
ParentBeaconRoot: beaconRoot, ParentBeaconRoot: beaconRoot,
RequestsHash: requestsHash, RequestsHash: requestsHash,
SlotNumber: data.SlotNumber,
BlockAccessListHash: blockAccessListHash,
} }
body := types.Body{Transactions: txs, Uncles: nil, Withdrawals: data.Withdrawals} return types.NewBlockWithHeader(header).
if data.BlockAccessList != nil { WithBody(types.Body{Transactions: txs, Uncles: nil, Withdrawals: data.Withdrawals}).
var accessList bal.BlockAccessList WithWitness(data.ExecutionWitness),
if err := rlp.DecodeBytes(data.BlockAccessList, &accessList); err != nil { nil
return nil, fmt.Errorf("failed to decode BAL: %w", err)
}
return types.NewBlockWithHeader(header).WithBody(body).WithAccessListUnsafe(&accessList), nil
}
return types.NewBlockWithHeader(header).WithBody(body), nil
} }
// BlockToExecutableData constructs the ExecutableData structure by filling the // BlockToExecutableData constructs the ExecutableData structure by filling the
// fields from the given block. It assumes the given block is post-merge block. // fields from the given block. It assumes the given block is post-merge block.
func BlockToExecutableData(block *types.Block, fees *big.Int, sidecars []*types.BlobTxSidecar, requests [][]byte) *ExecutionPayloadEnvelope { func BlockToExecutableData(block *types.Block, fees *big.Int, sidecars []*types.BlobTxSidecar, requests [][]byte) *ExecutionPayloadEnvelope {
data := &ExecutableData{ data := &ExecutableData{
BlockHash: block.Hash(), BlockHash: block.Hash(),
ParentHash: block.ParentHash(), ParentHash: block.ParentHash(),
FeeRecipient: block.Coinbase(), FeeRecipient: block.Coinbase(),
StateRoot: block.Root(), StateRoot: block.Root(),
Number: block.NumberU64(), Number: block.NumberU64(),
GasLimit: block.GasLimit(), GasLimit: block.GasLimit(),
GasUsed: block.GasUsed(), GasUsed: block.GasUsed(),
BaseFeePerGas: block.BaseFee(), BaseFeePerGas: block.BaseFee(),
Timestamp: block.Time(), Timestamp: block.Time(),
ReceiptsRoot: block.ReceiptHash(), ReceiptsRoot: block.ReceiptHash(),
LogsBloom: block.Bloom().Bytes(), LogsBloom: block.Bloom().Bytes(),
Transactions: encodeTransactions(block.Transactions()), Transactions: encodeTransactions(block.Transactions()),
Random: block.MixDigest(), Random: block.MixDigest(),
ExtraData: block.Extra(), ExtraData: block.Extra(),
Withdrawals: block.Withdrawals(), Withdrawals: block.Withdrawals(),
BlobGasUsed: block.BlobGasUsed(), BlobGasUsed: block.BlobGasUsed(),
ExcessBlobGas: block.ExcessBlobGas(), ExcessBlobGas: block.ExcessBlobGas(),
SlotNumber: block.SlotNumber(), ExecutionWitness: block.ExecutionWitness(),
}
if al := block.AccessList(); al != nil {
var buf bytes.Buffer
if err := rlp.Encode(&buf, al); err == nil {
data.BlockAccessList = buf.Bytes()
}
} }
// Add blobs. // Add blobs.
bundle := BlobsBundle{ bundle := BlobsBundleV1{
Commitments: make([]hexutil.Bytes, 0), Commitments: make([]hexutil.Bytes, 0),
Blobs: make([]hexutil.Bytes, 0), Blobs: make([]hexutil.Bytes, 0),
Proofs: make([]hexutil.Bytes, 0), Proofs: make([]hexutil.Bytes, 0),
} }
for _, sidecar := range sidecars { for _, sidecar := range sidecars {
for j := range sidecar.Blobs { for j := range sidecar.Blobs {
bundle.Blobs = append(bundle.Blobs, sidecar.Blobs[j][:]) bundle.Blobs = append(bundle.Blobs, hexutil.Bytes(sidecar.Blobs[j][:]))
bundle.Commitments = append(bundle.Commitments, sidecar.Commitments[j][:]) bundle.Commitments = append(bundle.Commitments, hexutil.Bytes(sidecar.Commitments[j][:]))
} bundle.Proofs = append(bundle.Proofs, hexutil.Bytes(sidecar.Proofs[j][:]))
// - Before the Osaka fork, only version-0 blob transactions should be packed,
// with the proof length equal to len(blobs).
//
// - After the Osaka fork, only version-1 blob transactions should be packed,
// with the proof length equal to CELLS_PER_EXT_BLOB * len(blobs).
//
// Ideally, length validation should be performed based on the bundle version.
// In practice, this is unnecessary because blob transaction filtering is
// already done during payload construction.
for _, proof := range sidecar.Proofs {
bundle.Proofs = append(bundle.Proofs, proof[:])
} }
} }
@ -439,12 +350,6 @@ type ExecutionPayloadBody struct {
Withdrawals []*types.Withdrawal `json:"withdrawals"` Withdrawals []*types.Withdrawal `json:"withdrawals"`
} }
// ExecutionPayloadBodyV2 extends ExecutionPayloadBody with the block access list.
type ExecutionPayloadBodyV2 struct {
ExecutionPayloadBody
BlockAccessList *hexutil.Bytes `json:"blockAccessList"`
}
// Client identifiers to support ClientVersionV1. // Client identifiers to support ClientVersionV1.
const ( const (
ClientCode = "GE" ClientCode = "GE"

View file

@ -1,48 +0,0 @@
// Copyright 2025 The go-ethereum Authors
// This file is part of the go-ethereum library.
//
// The go-ethereum library is free software: you can redistribute it and/or modify
// it under the terms of the GNU Lesser General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// The go-ethereum library is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public License
// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
package engine
import (
"testing"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/core/types"
"github.com/ethereum/go-ethereum/crypto/kzg4844"
)
func TestBlobs(t *testing.T) {
var (
emptyBlob = new(kzg4844.Blob)
emptyBlobCommit, _ = kzg4844.BlobToCommitment(emptyBlob)
emptyBlobProof, _ = kzg4844.ComputeBlobProof(emptyBlob, emptyBlobCommit)
emptyCellProof, _ = kzg4844.ComputeCellProofs(emptyBlob)
)
header := types.Header{}
block := types.NewBlock(&header, &types.Body{}, nil, nil)
sidecarWithoutCellProofs := types.NewBlobTxSidecar(types.BlobSidecarVersion0, []kzg4844.Blob{*emptyBlob}, []kzg4844.Commitment{emptyBlobCommit}, []kzg4844.Proof{emptyBlobProof})
env := BlockToExecutableData(block, common.Big0, []*types.BlobTxSidecar{sidecarWithoutCellProofs}, nil)
if len(env.BlobsBundle.Proofs) != 1 {
t.Fatalf("Expect 1 proof in blobs bundle, got %v", len(env.BlobsBundle.Proofs))
}
sidecarWithCellProofs := types.NewBlobTxSidecar(types.BlobSidecarVersion0, []kzg4844.Blob{*emptyBlob}, []kzg4844.Commitment{emptyBlobCommit}, emptyCellProof)
env = BlockToExecutableData(block, common.Big0, []*types.BlobTxSidecar{sidecarWithCellProofs}, nil)
if len(env.BlobsBundle.Proofs) != 128 {
t.Fatalf("Expect 128 proofs in blobs bundle, got %v", len(env.BlobsBundle.Proofs))
}
}

View file

@ -69,10 +69,7 @@ func newCanonicalStore[T any](db ethdb.Iteratee, keyPrefix []byte) (*canonicalSt
// databaseKey returns the database key belonging to the given period. // databaseKey returns the database key belonging to the given period.
func (cs *canonicalStore[T]) databaseKey(period uint64) []byte { func (cs *canonicalStore[T]) databaseKey(period uint64) []byte {
key := make([]byte, len(cs.keyPrefix)+8) return binary.BigEndian.AppendUint64(append([]byte{}, cs.keyPrefix...), period)
copy(key, cs.keyPrefix)
binary.BigEndian.PutUint64(key[len(cs.keyPrefix):], period)
return key
} }
// add adds the given item to the database. It also ensures that the range remains // add adds the given item to the database. It also ensures that the range remains

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