platform_build_soong/ui/build/config.go
Dan Willemsen c40e10bd6b Drop make flags in soong_ui
MAKELEVEL and MAKEFLAGS were are both unset by makeparallel when invoked
from Make. In preparation for removing the Make wrapper (and
makeparallel), strip them in soong_ui as well.

Add MFLAGS for completeness.

Test: m -j
Change-Id: I029f9464d11b432e979b32ede360450f4facb038
2017-07-11 15:23:55 -07:00

443 lines
11 KiB
Go

// Copyright 2017 Google Inc. All rights reserved.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package build
import (
"log"
"os"
"path/filepath"
"runtime"
"strconv"
"strings"
"android/soong/shared"
)
type Config struct{ *configImpl }
type configImpl struct {
// From the environment
arguments []string
goma bool
environ *Environment
// From the arguments
parallel int
keepGoing int
verbose bool
dist bool
// From the product config
katiArgs []string
ninjaArgs []string
katiSuffix string
targetDevice string
}
const srcDirFileCheck = "build/soong/root.bp"
func NewConfig(ctx Context, args ...string) Config {
ret := &configImpl{
environ: OsEnvironment(),
}
// Sane default matching ninja
ret.parallel = runtime.NumCPU() + 2
ret.keepGoing = 1
ret.parseArgs(ctx, args)
// Make sure OUT_DIR is set appropriately
if outDir, ok := ret.environ.Get("OUT_DIR"); ok {
ret.environ.Set("OUT_DIR", filepath.Clean(outDir))
} else {
outDir := "out"
if baseDir, ok := ret.environ.Get("OUT_DIR_COMMON_BASE"); ok {
if wd, err := os.Getwd(); err != nil {
ctx.Fatalln("Failed to get working directory:", err)
} else {
outDir = filepath.Join(baseDir, filepath.Base(wd))
}
}
ret.environ.Set("OUT_DIR", outDir)
}
ret.environ.Unset(
// We're already using it
"USE_SOONG_UI",
// We should never use GOROOT/GOPATH from the shell environment
"GOROOT",
"GOPATH",
// These should only come from Soong, not the environment.
"CLANG",
"CLANG_CXX",
"CCC_CC",
"CCC_CXX",
// Used by the goma compiler wrapper, but should only be set by
// gomacc
"GOMACC_PATH",
// We handle this above
"OUT_DIR_COMMON_BASE",
// Variables that have caused problems in the past
"DISPLAY",
"GREP_OPTIONS",
// Drop make flags
"MAKEFLAGS",
"MAKELEVEL",
"MFLAGS",
)
// Tell python not to spam the source tree with .pyc files.
ret.environ.Set("PYTHONDONTWRITEBYTECODE", "1")
// Precondition: the current directory is the top of the source tree
if _, err := os.Stat(srcDirFileCheck); err != nil {
if os.IsNotExist(err) {
log.Fatalf("Current working directory must be the source tree. %q not found", srcDirFileCheck)
}
log.Fatalln("Error verifying tree state:", err)
}
if srcDir, err := filepath.Abs("."); err == nil {
if strings.ContainsRune(srcDir, ' ') {
log.Println("You are building in a directory whose absolute path contains a space character:")
log.Println()
log.Printf("%q\n", srcDir)
log.Println()
log.Fatalln("Directory names containing spaces are not supported")
}
}
if outDir := ret.OutDir(); strings.ContainsRune(outDir, ' ') {
log.Println("The absolute path of your output directory ($OUT_DIR) contains a space character:")
log.Println()
log.Printf("%q\n", outDir)
log.Println()
log.Fatalln("Directory names containing spaces are not supported")
}
if distDir := ret.DistDir(); strings.ContainsRune(distDir, ' ') {
log.Println("The absolute path of your dist directory ($DIST_DIR) contains a space character:")
log.Println()
log.Printf("%q\n", distDir)
log.Println()
log.Fatalln("Directory names containing spaces are not supported")
}
return Config{ret}
}
func (c *configImpl) parseArgs(ctx Context, args []string) {
for i := 0; i < len(args); i++ {
arg := strings.TrimSpace(args[i])
if arg == "--make-mode" {
continue
} else if arg == "showcommands" {
c.verbose = true
continue
} else if arg == "dist" {
c.dist = true
}
if arg[0] == '-' {
parseArgNum := func(def int) int {
if len(arg) > 2 {
p, err := strconv.ParseUint(arg[2:], 10, 31)
if err != nil {
ctx.Fatalf("Failed to parse %q: %v", arg, err)
}
return int(p)
} else if i+1 < len(args) {
p, err := strconv.ParseUint(args[i+1], 10, 31)
if err == nil {
i++
return int(p)
}
}
return def
}
if arg[1] == 'j' {
c.parallel = parseArgNum(c.parallel)
} else if arg[1] == 'k' {
c.keepGoing = parseArgNum(0)
} else {
ctx.Fatalln("Unknown option:", arg)
}
} else if k, v, ok := decodeKeyValue(arg); ok && len(k) > 0 {
c.environ.Set(k, v)
} else {
c.arguments = append(c.arguments, arg)
}
}
}
// Lunch configures the environment for a specific product similarly to the
// `lunch` bash function.
func (c *configImpl) Lunch(ctx Context, product, variant string) {
if variant != "eng" && variant != "userdebug" && variant != "user" {
ctx.Fatalf("Invalid variant %q. Must be one of 'user', 'userdebug' or 'eng'", variant)
}
c.environ.Set("TARGET_PRODUCT", product)
c.environ.Set("TARGET_BUILD_VARIANT", variant)
c.environ.Set("TARGET_BUILD_TYPE", "release")
c.environ.Unset("TARGET_BUILD_APPS")
}
// Tapas configures the environment to build one or more unbundled apps,
// similarly to the `tapas` bash function.
func (c *configImpl) Tapas(ctx Context, apps []string, arch, variant string) {
if len(apps) == 0 {
apps = []string{"all"}
}
if variant == "" {
variant = "eng"
}
if variant != "eng" && variant != "userdebug" && variant != "user" {
ctx.Fatalf("Invalid variant %q. Must be one of 'user', 'userdebug' or 'eng'", variant)
}
var product string
switch arch {
case "armv5":
product = "generic_armv5"
case "arm", "":
product = "aosp_arm"
case "arm64":
product = "aosm_arm64"
case "mips":
product = "aosp_mips"
case "mips64":
product = "aosp_mips64"
case "x86":
product = "aosp_x86"
case "x86_64":
product = "aosp_x86_64"
default:
ctx.Fatalf("Invalid architecture: %q", arch)
}
c.environ.Set("TARGET_PRODUCT", product)
c.environ.Set("TARGET_BUILD_VARIANT", variant)
c.environ.Set("TARGET_BUILD_TYPE", "release")
c.environ.Set("TARGET_BUILD_APPS", strings.Join(apps, " "))
}
func (c *configImpl) Environment() *Environment {
return c.environ
}
func (c *configImpl) Arguments() []string {
return c.arguments
}
func (c *configImpl) OutDir() string {
if outDir, ok := c.environ.Get("OUT_DIR"); ok {
return outDir
}
return "out"
}
func (c *configImpl) DistDir() string {
if distDir, ok := c.environ.Get("DIST_DIR"); ok {
return distDir
}
return filepath.Join(c.OutDir(), "dist")
}
func (c *configImpl) NinjaArgs() []string {
return c.ninjaArgs
}
func (c *configImpl) SoongOutDir() string {
return filepath.Join(c.OutDir(), "soong")
}
func (c *configImpl) TempDir() string {
return shared.TempDirForOutDir(c.SoongOutDir())
}
func (c *configImpl) KatiSuffix() string {
if c.katiSuffix != "" {
return c.katiSuffix
}
panic("SetKatiSuffix has not been called")
}
func (c *configImpl) Dist() bool {
return c.dist
}
func (c *configImpl) IsVerbose() bool {
return c.verbose
}
func (c *configImpl) TargetProduct() string {
if v, ok := c.environ.Get("TARGET_PRODUCT"); ok {
return v
}
panic("TARGET_PRODUCT is not defined")
}
func (c *configImpl) TargetDevice() string {
return c.targetDevice
}
func (c *configImpl) SetTargetDevice(device string) {
c.targetDevice = device
}
func (c *configImpl) TargetBuildVariant() string {
if v, ok := c.environ.Get("TARGET_BUILD_VARIANT"); ok {
return v
}
panic("TARGET_BUILD_VARIANT is not defined")
}
func (c *configImpl) KatiArgs() []string {
return c.katiArgs
}
func (c *configImpl) Parallel() int {
return c.parallel
}
func (c *configImpl) UseGoma() bool {
if v, ok := c.environ.Get("USE_GOMA"); ok {
v = strings.TrimSpace(v)
if v != "" && v != "false" {
return true
}
}
return false
}
// RemoteParallel controls how many remote jobs (i.e., commands which contain
// gomacc) are run in parallel. Note the parallelism of all other jobs is
// still limited by Parallel()
func (c *configImpl) RemoteParallel() int {
if v, ok := c.environ.Get("NINJA_REMOTE_NUM_JOBS"); ok {
if i, err := strconv.Atoi(v); err == nil {
return i
}
}
return 500
}
func (c *configImpl) SetKatiArgs(args []string) {
c.katiArgs = args
}
func (c *configImpl) SetNinjaArgs(args []string) {
c.ninjaArgs = args
}
func (c *configImpl) SetKatiSuffix(suffix string) {
c.katiSuffix = suffix
}
func (c *configImpl) KatiEnvFile() string {
return filepath.Join(c.OutDir(), "env"+c.KatiSuffix()+".sh")
}
func (c *configImpl) KatiNinjaFile() string {
return filepath.Join(c.OutDir(), "build"+c.KatiSuffix()+".ninja")
}
func (c *configImpl) SoongNinjaFile() string {
return filepath.Join(c.SoongOutDir(), "build.ninja")
}
func (c *configImpl) CombinedNinjaFile() string {
return filepath.Join(c.OutDir(), "combined"+c.KatiSuffix()+".ninja")
}
func (c *configImpl) SoongAndroidMk() string {
return filepath.Join(c.SoongOutDir(), "Android-"+c.TargetProduct()+".mk")
}
func (c *configImpl) SoongMakeVarsMk() string {
return filepath.Join(c.SoongOutDir(), "make_vars-"+c.TargetProduct()+".mk")
}
func (c *configImpl) ProductOut() string {
if buildType, ok := c.environ.Get("TARGET_BUILD_TYPE"); ok && buildType == "debug" {
return filepath.Join(c.OutDir(), "debug", "target", "product", c.TargetDevice())
} else {
return filepath.Join(c.OutDir(), "target", "product", c.TargetDevice())
}
}
func (c *configImpl) DevicePreviousProductConfig() string {
return filepath.Join(c.ProductOut(), "previous_build_config.mk")
}
func (c *configImpl) hostOutRoot() string {
if buildType, ok := c.environ.Get("HOST_BUILD_TYPE"); ok && buildType == "debug" {
return filepath.Join(c.OutDir(), "debug", "host")
} else {
return filepath.Join(c.OutDir(), "host")
}
}
func (c *configImpl) HostOut() string {
return filepath.Join(c.hostOutRoot(), c.HostPrebuiltTag())
}
// This probably needs to be multi-valued, so not exporting it for now
func (c *configImpl) hostCrossOut() string {
if runtime.GOOS == "linux" {
return filepath.Join(c.hostOutRoot(), "windows-x86")
} else {
return ""
}
}
func (c *configImpl) HostPrebuiltTag() string {
if runtime.GOOS == "linux" {
return "linux-x86"
} else if runtime.GOOS == "darwin" {
return "darwin-x86"
} else {
panic("Unsupported OS")
}
}
func (c *configImpl) HostAsan() bool {
if v, ok := c.environ.Get("SANITIZE_HOST"); ok {
if sanitize := strings.Fields(v); inList("address", sanitize) {
return true
}
}
return false
}
func (c *configImpl) PrebuiltBuildTool(name string) string {
// (b/36182021) We're seeing rare ckati crashes, so always enable asan kati on the build servers.
if c.HostAsan() || (c.Dist() && name == "ckati") {
asan := filepath.Join("prebuilts/build-tools", c.HostPrebuiltTag(), "asan/bin", name)
if _, err := os.Stat(asan); err == nil {
return asan
}
}
return filepath.Join("prebuilts/build-tools", c.HostPrebuiltTag(), "bin", name)
}