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Overview ¶
Package common provides shared interfaces and base implementations for package builders.
Package common provides shared interfaces and base implementations for package builders.
Package common provides shared functionality for cross-compilation toolchains.
Index ¶
- Variables
- func ExtractDEB(packagePath, destDir string) error
- func ExtractRPM(packagePath, destDir string) error
- func ValidateTargetArch(arch string) error
- func ValidateToolchain(targetArch, format string) error
- type BaseBuilder
- func (bb *BaseBuilder) ApplyOptions() error
- func (bb *BaseBuilder) ApplyOptionsWithEnv(env map[string]string) error
- func (bb *BaseBuilder) BuildCcacheEnvSlice() []string
- func (bb *BaseBuilder) BuildCrossEnvSlice(targetArch string) ([]string, error)
- func (bb *BaseBuilder) BuildCrossStripEnvSlice(targetArch string) []string
- func (bb *BaseBuilder) BuildPackageName(extension string) string
- func (bb *BaseBuilder) CreateFileWalker() *files.Walker
- func (bb *BaseBuilder) CrossStripEnvMap(targetArch string) map[string]string
- func (bb *BaseBuilder) DownloadAndExtractCrossDeps(ctx context.Context, deps []string, targetArch string) error
- func (bb *BaseBuilder) ExtractToRoot(packagePath string) error
- func (bb *BaseBuilder) FormatRelease(distroSuffixMap map[string]string)
- func (bb *BaseBuilder) InstallOrExtract(artifactsPath, buildDir, targetArch string) error
- func (bb *BaseBuilder) LogCrossCompilation(targetArch string)
- func (bb *BaseBuilder) LogPackageCreated(artifactPath string)
- func (bb *BaseBuilder) Prepare(ctx context.Context, makeDepends []string, targetArch string) error
- func (bb *BaseBuilder) PrepareBackupFilePaths() []string
- func (bb *BaseBuilder) PrepareEnvironment(ctx context.Context, golang bool, targetArch string) error
- func (bb *BaseBuilder) PrepareScriptletWithHelpers(body string) string
- func (bb *BaseBuilder) ProcessDependencies(depends []string) []string
- func (bb *BaseBuilder) SetTargetArchitecture(targetArch string)
- func (bb *BaseBuilder) SetupCrossStripEnv(targetArch string)
- func (bb *BaseBuilder) SetupEnvironmentDependencies(golang bool) []string
- func (bb *BaseBuilder) SetupEnvironmentDeps(golang bool) []string
- func (bb *BaseBuilder) TranslateArchitecture()
- func (bb *BaseBuilder) Update(ctx context.Context) error
- type CrossToolchain
Constants ¶
This section is empty.
Variables ¶
var CrossToolchainMap = func() map[string]map[string]CrossToolchain { basePatterns := map[string]map[string]string{ constants.DistroDebian: { gccKey: gccFmtPattern, gppKey: gppFmtPattern, binutilsKey: binutilsFmtPat, additionalKey: libc6DevFmtPat, }, constants.DistroUbuntu: { gccKey: gccFmtPattern, gppKey: gppFmtPattern, binutilsKey: binutilsFmtPat, additionalKey: libc6DevFmtPat, }, constants.DistroFedora: { gccKey: gccFmtPattern, gppKey: gppCxxFmtPat, binutilsKey: binutilsFmtPat, additionalKey: "", }, constants.DistroArch: { gccKey: archGccFmtPat, gppKey: archGppFmtPat, binutilsKey: archBinFmtPat, additionalKey: "", }, } archSpecific := map[string]map[string]map[string]string{ constants.ArchI686: { constants.DistroArch: { gccKey: gccMultilibPkg, gppKey: gccCxxMultilib, binutilsKey: binutilsMultilib, }, }, constants.ArchX86_64: { constants.DistroFedora: { gccKey: gccX86FmtPat, gppKey: gppX86FmtPat, binutilsKey: binX86FmtPat, }, }, constants.ArchAarch64: { constants.DistroArch: { gccKey: aarch64ArchGcc, gppKey: aarch64ArchGpp, binutilsKey: "aarch64-linux-gnu-binutils", }, }, constants.ArchS390x: { constants.DistroFedora: { gccKey: gccS390xRH, gppKey: gppS390xRH, binutilsKey: binS390xRH, }, }, } archAdditional := map[string]map[string][]string{ constants.ArchAarch64: { constants.DistroDebian: {"libc6-dev-arm64-cross"}, constants.DistroUbuntu: {"libc6-dev-arm64-cross"}, }, constants.ArchArmv7: { constants.DistroDebian: {libc6DevArmhf}, constants.DistroUbuntu: {libc6DevArmhf}, }, constants.ArchArmv6: { constants.DistroDebian: {libc6DevArmhf}, constants.DistroUbuntu: {libc6DevArmhf}, }, constants.ArchI686: { constants.DistroArch: {lib32GccLibs}, constants.DistroDebian: {libc6DevI386}, constants.DistroUbuntu: {libc6DevI386}, }, constants.ArchX86_64: { constants.DistroDebian: {"libc6-dev-amd64-cross"}, constants.DistroUbuntu: {"libc6-dev-amd64-cross"}, }, constants.ArchPpc64le: { constants.DistroDebian: {"libc6-dev-ppc64el-cross"}, constants.DistroUbuntu: {"libc6-dev-ppc64el-cross"}, }, constants.ArchS390x: { constants.DistroDebian: {"libc6-dev-s390x-cross"}, constants.DistroUbuntu: {"libc6-dev-s390x-cross"}, }, constants.ArchRiscv64: { constants.DistroDebian: {"libc6-dev-riscv64-cross"}, constants.DistroUbuntu: {"libc6-dev-riscv64-cross"}, }, } archPatterns := map[string]string{ constants.ArchAarch64: constants.TripletAarch64Linux, constants.ArchArmv7: constants.TripletArmLinuxHf, constants.ArchArmv6: constants.TripletArmLinuxHf, constants.ArchI686: constants.TripletI686Linux, constants.ArchX86_64: "x86-64-linux-gnu", constants.ArchPpc64le: constants.TripletPpc64leLinux, constants.ArchS390x: constants.TripletS390xLinux, constants.ArchRiscv64: constants.TripletRiscv64Linux, } result := make(map[string]map[string]CrossToolchain) architectures := []string{ constants.ArchAarch64, constants.ArchArmv7, constants.ArchArmv6, constants.ArchI686, constants.ArchX86_64, constants.ArchPpc64le, constants.ArchS390x, constants.ArchRiscv64, } distributions := []string{ constants.DistroDebian, constants.DistroUbuntu, constants.DistroFedora, constants.DistroArch, } for _, arch := range architectures { result[arch] = make(map[string]CrossToolchain) for _, distro := range distributions { patterns, exists := basePatterns[distro] if !exists { continue } archPattern := arch if pattern, exists := archPatterns[arch]; exists { archPattern = pattern } gcc := fmt.Sprintf(patterns[gccKey], archPattern) gpp := fmt.Sprintf(patterns[gppKey], archPattern) binutils := fmt.Sprintf(patterns[binutilsKey], archPattern) if archOverrides, exists := archSpecific[arch]; exists { if distroOverrides, exists := archOverrides[distro]; exists { if override, exists := distroOverrides[gccKey]; exists { gcc = override } if override, exists := distroOverrides[gppKey]; exists { gpp = override } if override, exists := distroOverrides[binutilsKey]; exists { binutils = override } } } // Determine additional packages var additional []string if archAdd, exists := archAdditional[arch]; exists { if add, exists := archAdd[distro]; exists { additional = add } else if add, exists := archAdd[defaultKey]; exists { additional = add } } triple := archPatterns[arch] installCommands := make(map[string]string) switch distro { case constants.DistroDebian, constants.DistroUbuntu: installCommands[distro] = fmt.Sprintf("sudo apt-get install %s %s", gcc, gpp) case constants.DistroFedora: installCommands[distro] = fmt.Sprintf("sudo dnf install %s %s", gcc, gpp) case constants.DistroArch: installCommands[distro] = fmt.Sprintf("sudo pacman -S %s %s", gcc, gpp) case constants.DistroAlpine: installCommands[distro] = fmt.Sprintf("sudo apk add %s %s", gcc, gpp) } result[arch][distro] = CrossToolchain{ GCCPackage: gcc, GPlusPlusPackage: gpp, BinutilsPackage: binutils, AdditionalPackages: additional, Triple: triple, InstallCommands: installCommands, } } } return result }()
CrossToolchainMap maps target architectures to toolchain packages for each distribution.
var SkipToolchainValidation bool
SkipToolchainValidation controls whether cross-compilation toolchain validation is performed. This is set by command-line flags and used by PrepareEnvironment.
Functions ¶
func ExtractDEB ¶ added in v2.1.0
ExtractDEB is a wrapper around archive.ExtractDEB for backward compatibility. It extracts a Debian package (.deb) to the destination directory.
func ExtractRPM ¶ added in v2.1.0
ExtractRPM is a wrapper around archive.ExtractRPM for backward compatibility. It extracts an RPM package payload to the destination directory.
func ValidateTargetArch ¶
ValidateTargetArch returns an error if arch is not a recognised cross-compilation target. Returns nil when arch is empty (native build) or known.
func ValidateToolchain ¶
ValidateToolchain checks if the required cross-compilation toolchain is available for the given target architecture and package format. It returns a detailed error message with installation instructions if the toolchain is missing.
APK (Alpine) format always returns an error: Alpine does not ship Linux-userspace cross-compiler packages. Use a native Alpine container or QEMU instead.
Types ¶
type BaseBuilder ¶
type BaseBuilder struct {
PKGBUILD *pkgbuild.PKGBUILD
Format string // Package format: "apk", "deb", "rpm", "pacman"
}
BaseBuilder provides common functionality that can be embedded in concrete builders.
func NewBaseBuilder ¶
func NewBaseBuilder(pkgBuild *pkgbuild.PKGBUILD, format string) *BaseBuilder
NewBaseBuilder creates a new base builder instance.
func (*BaseBuilder) ApplyOptions ¶
func (bb *BaseBuilder) ApplyOptions() error
ApplyOptions runs the PKGBUILD option handlers (strip, docs, libtool, etc.) against the package directory using the process environment for STRIP/OBJCOPY. Prefer ApplyOptionsWithEnv for parallel builds.
func (*BaseBuilder) ApplyOptionsWithEnv ¶ added in v2.1.2
func (bb *BaseBuilder) ApplyOptionsWithEnv(env map[string]string) error
ApplyOptionsWithEnv is the env-overlay variant of ApplyOptions. The env map is consulted before os.Getenv for STRIP/OBJCOPY during the strip pass. Pair with BuildCrossStripEnvSlice() (parsed to a map) to scope cross-strip toolchain selection without mutating the global process environment.
func (*BaseBuilder) BuildCcacheEnvSlice ¶ added in v2.1.0
func (bb *BaseBuilder) BuildCcacheEnvSlice() []string
BuildCcacheEnvSlice returns ccache environment variables as a "KEY=VALUE" slice for safe concurrent use. Unlike SetupCcache, it does NOT mutate the process environment (no os.Setenv calls). Returns nil if ccache is not available.
CC/CXX are set to bare compiler names (gcc, g++). ccache wrapping is achieved by prepending the ccache symlink directory to PATH, matching the approach used by the cross-compilation path (BuildCrossEnvSlice). This avoids the "CC=ccache gcc" pattern which breaks some autoconf configure scripts that perform word-splitting on $CC in ways that fail with multi-word values.
func (*BaseBuilder) BuildCrossEnvSlice ¶ added in v2.1.0
func (bb *BaseBuilder) BuildCrossEnvSlice(targetArch string) ([]string, error)
BuildCrossEnvSlice returns the cross-compilation environment variables as a "KEY=VALUE" slice for safe concurrent use. Unlike SetupCrossCompilationEnvironment, it does NOT mutate the process environment (no os.Setenv calls). Returns nil if no cross-compilation is needed (targetArch == "" or == build arch).
func (*BaseBuilder) BuildCrossStripEnvSlice ¶ added in v2.1.2
func (bb *BaseBuilder) BuildCrossStripEnvSlice(targetArch string) []string
BuildCrossStripEnvSlice returns STRIP and OBJCOPY environment variables as a "KEY=VALUE" slice for safe concurrent use. Unlike SetupCrossStripEnv, it does NOT mutate the process environment (no os.Setenv calls). Returns nil if no cross-compilation is active or if the toolchain cannot be resolved.
The returned slice can be passed to ApplyOptions() to configure cross-compilation binutils for the strip/objcopy pass, making it safe to call from multiple goroutines simultaneously (parallel builds).
func (*BaseBuilder) BuildPackageName ¶
func (bb *BaseBuilder) BuildPackageName(extension string) string
BuildPackageName constructs standardized package names for different formats. Used by: APK, DEB, Pacman Not used by: RPM (RPM does not include epoch in the filename, only in metadata)
func (*BaseBuilder) CreateFileWalker ¶
func (bb *BaseBuilder) CreateFileWalker() *files.Walker
CreateFileWalker creates a configured file walker for the package format.
func (*BaseBuilder) CrossStripEnvMap ¶ added in v2.1.2
func (bb *BaseBuilder) CrossStripEnvMap(targetArch string) map[string]string
CrossStripEnvMap parses BuildCrossStripEnvSlice into a map[K]V usable with ApplyOptionsWithEnv. Returns nil if no cross-strip env is needed.
func (*BaseBuilder) DownloadAndExtractCrossDeps ¶
func (bb *BaseBuilder) DownloadAndExtractCrossDeps( ctx context.Context, deps []string, targetArch string, ) error
DownloadAndExtractCrossDeps downloads runtime dependencies and extracts them directly to the root filesystem without registering them in the dpkg database. This avoids the circular dependency problem where arch-all meta-packages (e.g. carbonio-core) depend on arch-specific packages (e.g. carbonio-openldap) that conflict with the target-arch variants needed for cross-compilation.
The function partitions deps the same way as installCrossDeps: arch-all packages are downloaded unqualified, arch-specific ones are qualified with the target architecture (e.g. :arm64). All packages are extracted to "/" without dpkg, so there is no conflict checking.
**Transitive resolution**: the declared PKGBUILD dependencies are walked through aptcache.DownloadClosure so transitive runtime libraries that the declared deps themselves need are pulled in too. Without this, a PKGBUILD listing only carbonio-ffmpeg fails to cross-link because libavcodec.so has DT_NEEDED entries for libvpx.so / libx264.so which come from sibling packages (carbonio-libvpx, carbonio-x264) the PKGBUILD did not declare.
func (*BaseBuilder) ExtractToRoot ¶
func (bb *BaseBuilder) ExtractToRoot(packagePath string) error
ExtractToRoot extracts a package directly to the root filesystem (/). This extracts the package contents to the actual filesystem without using a sysroot directory.
func (*BaseBuilder) FormatRelease ¶
func (bb *BaseBuilder) FormatRelease(distroSuffixMap map[string]string)
FormatRelease formats the package release string with distribution-specific suffixes. For DEB packages: always appends a distro suffix (codename or distro name) for proper repository targeting. The suffix is guarded against double-append for split packages. For RPM packages: appends RPM distro suffix and codename (only when codename is set) For other formats: returns release unchanged
func (*BaseBuilder) InstallOrExtract ¶
func (bb *BaseBuilder) InstallOrExtract(artifactsPath, buildDir, targetArch string) error
InstallOrExtract extracts the built package to the root filesystem (/). This applies to both native and cross-compilation builds.
func (*BaseBuilder) LogCrossCompilation ¶
func (bb *BaseBuilder) LogCrossCompilation(targetArch string)
LogCrossCompilation logs cross-compilation build initiation if target architecture differs. This consolidates duplicated cross-compilation logging across builders.
func (*BaseBuilder) LogPackageCreated ¶
func (bb *BaseBuilder) LogPackageCreated(artifactPath string)
LogPackageCreated logs successful package creation with consistent formatting. When running under sudo, ownership of the artifact is transferred to the original invoking user so downstream consumers (CI agents, etc.) can read it without elevated privileges.
func (*BaseBuilder) Prepare ¶
Prepare installs build dependencies using the appropriate package manager. This consolidates duplicated Prepare methods across all builders.
func (*BaseBuilder) PrepareBackupFilePaths ¶
func (bb *BaseBuilder) PrepareBackupFilePaths() []string
PrepareBackupFilePaths ensures all backup file paths have a leading slash. This is required by RPM and some other package formats.
func (*BaseBuilder) PrepareEnvironment ¶
func (bb *BaseBuilder) PrepareEnvironment(ctx context.Context, golang bool, targetArch string) error
PrepareEnvironment sets up the build environment with necessary tools. This consolidates duplicated PrepareEnvironment methods across all builders. Toolchain validation is always skipped here: PrepareEnvironment is called by "yap prepare" whose job is to *install* the cross-compiler — the toolchain cannot be present before it is installed. Validation runs later during the build stage (builder.processFunction → SetupCrossCompilationEnvironment).
func (*BaseBuilder) PrepareScriptletWithHelpers ¶
func (bb *BaseBuilder) PrepareScriptletWithHelpers(body string) string
PrepareScriptletWithHelpers prepends the PKGBUILD helper function preamble to a scriptlet body. Returns the body unchanged if no preamble is needed.
func (*BaseBuilder) ProcessDependencies ¶
func (bb *BaseBuilder) ProcessDependencies(depends []string) []string
ProcessDependencies processes dependency strings with version operators. This consolidates the duplicated dependency processing logic across package formats.
func (*BaseBuilder) SetTargetArchitecture ¶
func (bb *BaseBuilder) SetTargetArchitecture(targetArch string)
SetTargetArchitecture sets the target architecture for cross-compilation and translates it. If targetArch is empty, it uses the current ArchComputed value. Architecture-independent packages (arch=any) are never overridden — they always produce arch-all packages regardless of the cross-compilation target. This consolidates the duplicated architecture handling pattern across all builders.
func (*BaseBuilder) SetupCrossStripEnv ¶ added in v2.1.0
func (bb *BaseBuilder) SetupCrossStripEnv(targetArch string)
SetupCrossStripEnv sets STRIP and OBJCOPY in the process environment so that any code path that still reads them via os.Getenv (e.g. external tooling) sees the cross-compilation binutils. Internal callers should prefer CrossStripEnvMap + ApplyOptionsWithEnv, which is parallel-safe. No-op when targetArch is empty or equals the build arch. Guarded by envMutex to serialize concurrent invocations.
func (*BaseBuilder) SetupEnvironmentDependencies ¶
func (bb *BaseBuilder) SetupEnvironmentDependencies(golang bool) []string
SetupEnvironmentDependencies gets the build environment dependencies for the format, including install flags. Calls SetupEnvironmentDeps internally.
func (*BaseBuilder) SetupEnvironmentDeps ¶ added in v2.1.0
func (bb *BaseBuilder) SetupEnvironmentDeps(golang bool) []string
SetupEnvironmentDeps gets the build environment dependency package names (without install flags) for the format.
func (*BaseBuilder) TranslateArchitecture ¶
func (bb *BaseBuilder) TranslateArchitecture()
TranslateArchitecture translates architecture names for the target package format.
func (*BaseBuilder) Update ¶
func (bb *BaseBuilder) Update(ctx context.Context) error
Update updates the package manager's package database. This consolidates duplicated Update methods across all builders. For DEB, --allow-insecure-repositories is passed so that apt writes Packages index files for unsigned extra repos (e.g. --repo flags) to /var/lib/apt/lists/. Without it, apt silently skips those repos and aptcache.Reload() cannot see their packages for arch classification.
type CrossToolchain ¶
type CrossToolchain struct {
// GCCPackage is the name of the GCC cross-compiler package
GCCPackage string
// GPlusPlusPackage is the name of the G++ cross-compiler package
GPlusPlusPackage string
// BinutilsPackage is the name of the binutils package for the target architecture
BinutilsPackage string
// AdditionalPackages are any additional packages needed for the toolchain
AdditionalPackages []string
// Triple is the GNU triplet for the target architecture
Triple string
// InstallCommands provides distribution-specific installation commands
InstallCommands map[string]string
}
CrossToolchain represents a cross-compilation toolchain for a specific target architecture.
func GetCrossToolchain ¶
func GetCrossToolchain(arch, distro string) (CrossToolchain, error)
GetCrossToolchain retrieves the toolchain for a given architecture and distribution.
func (*CrossToolchain) GetAllPackages ¶
func (ct *CrossToolchain) GetAllPackages() []string
GetAllPackages returns all packages needed for this toolchain.
func (*CrossToolchain) GetExecutableName ¶
func (ct *CrossToolchain) GetExecutableName(packageName string) string
GetExecutableName converts a package name to its actual cross-compiler executable name. Naming conventions differ by distribution:
- Debian/Ubuntu: gcc-aarch64-linux-gnu → aarch64-linux-gnu-gcc
- Fedora: gcc-c++-aarch64-linux-gnu → aarch64-linux-gnu-g++
- Arch: aarch64-linux-gnu-gcc → aarch64-linux-gnu-gcc (already correct)
- Alpine: gcc-aarch64 → aarch64-alpine-linux-musl-gcc
func (*CrossToolchain) GetPackagesByType ¶
func (ct *CrossToolchain) GetPackagesByType() map[string][]string
GetPackagesByType returns packages categorized by type.
func (*CrossToolchain) Validate ¶
func (ct *CrossToolchain) Validate() ([]string, error)
Validate checks if the required toolchain executables are available in PATH. It resolves package names to their actual executable names before checking.