// Copyright (C) 2016 The Android Open Source Project
//
// 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 art

import (
	"fmt"
	"path/filepath"
	"strings"

	"github.com/google/blueprint"
	"github.com/google/blueprint/proptools"

	"android/soong/android"
	"android/soong/cc"
	"android/soong/cc/config"
)

//go:generate go run ../../build/blueprint/gobtools/codegen/gob_gen.go

var supportedArches = []string{"arm", "arm64", "riscv64", "x86", "x86_64"}

// @auto-generate: gob
type testInstallInfo struct {
	Testcases map[string]string
	TestMap   map[string][]string
}

var testInstallInfoProvider = blueprint.NewProvider[testInstallInfo]()

func globalFlags(ctx android.LoadHookContext) ([]string, []string) {
	var cflags []string
	var asflags []string

	opt := ctx.Config().GetenvWithDefault("ART_NDEBUG_OPT_FLAG", "-O3")
	cflags = append(cflags, opt)

	tlab := false
	gcType := ctx.Config().GetenvWithDefault("ART_DEFAULT_GC_TYPE", "CMC")

	if ctx.Config().IsEnvTrue("ART_TEST_DEBUG_GC") {
		gcType = "SS"
		tlab = true
	}

	if ctx.Config().IsEnvTrue("ART_USE_RESTRICTED_MODE") {
		cflags = append(cflags, "-DART_USE_RESTRICTED_MODE=1")
		asflags = append(asflags, "-DART_USE_RESTRICTED_MODE=1")

		// TODO(Simulator): Support other GC types.
		gcType = "MS"
	}

	if ctx.Config().IsEnvTrue("ART_USE_SIMULATOR") {
		cflags = append(cflags, "-DART_USE_SIMULATOR=1")
		asflags = append(asflags, "-DART_USE_SIMULATOR=1")
	}

	cflags = append(cflags, "-DART_DEFAULT_GC_TYPE_IS_"+gcType)

	if ctx.Config().IsEnvTrue("ART_HEAP_POISONING") {
		cflags = append(cflags, "-DART_HEAP_POISONING=1")
		asflags = append(asflags, "-DART_HEAP_POISONING=1")
	}
	if ctx.Config().IsEnvTrue("ART_USE_CXX_INTERPRETER") {
		cflags = append(cflags, "-DART_USE_CXX_INTERPRETER=1")
	}

	// TODO: deprecate and then eventually remove ART_USE_GENERATIONAL_CC in favor of
	// ART_USE_GENERATIONAL_GC
	if !ctx.Config().IsEnvFalse("ART_USE_READ_BARRIER") && ctx.Config().ArtUseReadBarrier() &&
		!ctx.Config().IsEnvTrue("ART_USE_RESTRICTED_MODE") {
		// Used to change the read barrier type. Valid values are BAKER, TABLELOOKUP.
		// The default is BAKER.
		barrierType := ctx.Config().GetenvWithDefault("ART_READ_BARRIER_TYPE", "BAKER")
		cflags = append(cflags,
			"-DART_USE_READ_BARRIER=1",
			"-DART_READ_BARRIER_TYPE_IS_"+barrierType+"=1")
		asflags = append(asflags,
			"-DART_USE_READ_BARRIER=1",
			"-DART_READ_BARRIER_TYPE_IS_"+barrierType+"=1")

		if !(ctx.Config().IsEnvFalse("ART_USE_GENERATIONAL_CC") ||
			ctx.Config().IsEnvFalse("ART_USE_GENERATIONAL_GC")) {
			cflags = append(cflags, "-DART_USE_GENERATIONAL_GC=1")
		}
		// Force CC only if ART_USE_READ_BARRIER was set to true explicitly during
		// build time.
		if ctx.Config().IsEnvTrue("ART_USE_READ_BARRIER") {
			cflags = append(cflags, "-DART_FORCE_USE_READ_BARRIER=1")
		}
		tlab = true
	} else if gcType == "CMC" {
		tlab = true
		if !(ctx.Config().IsEnvFalse("ART_USE_GENERATIONAL_CC") ||
			ctx.Config().IsEnvFalse("ART_USE_GENERATIONAL_GC")) {
			cflags = append(cflags, "-DART_USE_GENERATIONAL_GC=1")
		}
	}

	if tlab {
		cflags = append(cflags, "-DART_USE_TLAB=1")
	}

	if ctx.Config().IsEnvTrue("ART_FORCE_TRY_PREDICATED_SIMD") {
		cflags = append(cflags, "-DART_FORCE_TRY_PREDICATED_SIMD=1")
	}

	// We need larger stack overflow guards for ASAN, as the compiled code will have
	// larger frame sizes. For simplicity, just use global not-target-specific cflags.
	// Note: We increase this for both debug and non-debug, as the overflow gap will
	//       be compiled into managed code. We always preopt (and build core images) with
	//       the debug version. So make the gap consistent (and adjust for the worst).
	if len(ctx.Config().SanitizeDevice()) > 0 || len(ctx.Config().SanitizeHost()) > 0 {
		cflags = append(cflags,
			"-DART_STACK_OVERFLOW_GAP_arm=16384",
			"-DART_STACK_OVERFLOW_GAP_arm64=16384",
			"-DART_STACK_OVERFLOW_GAP_riscv64=16384",
			"-DART_STACK_OVERFLOW_GAP_x86=16384",
			"-DART_STACK_OVERFLOW_GAP_x86_64=20480")
	} else {
		cflags = append(cflags,
			"-DART_STACK_OVERFLOW_GAP_arm=8192",
			"-DART_STACK_OVERFLOW_GAP_arm64=8192",
			"-DART_STACK_OVERFLOW_GAP_riscv64=8192",
			"-DART_STACK_OVERFLOW_GAP_x86=8192",
			"-DART_STACK_OVERFLOW_GAP_x86_64=8192")
	}

	// This was originally coupled to targets, with the no bionic page size
	// macro. However, we want all devices to have the same layout for Art
	// targets. This is important to share optimizations across devices as
	// well as to make sure all test configurations are consistent (Android
	// shares tests between targets, and tests built with this option will
	// only work on devices with this option.
	// Previously contingent on  ctx.Config().NoBionicPageSizeMacro()
	cflags = append(cflags, "-DART_PAGE_SIZE_AGNOSTIC=1")

	if ctx.Config().IsEnvTrue("ART_ENABLE_ADDRESS_SANITIZER") {
		// Used to enable full sanitization, i.e., user poisoning, under ASAN.
		cflags = append(cflags, "-DART_ENABLE_ADDRESS_SANITIZER=1")
		asflags = append(asflags, "-DART_ENABLE_ADDRESS_SANITIZER=1")
	}

	if !ctx.Config().IsEnvFalse("USE_D8_DESUGAR") {
		cflags = append(cflags, "-DUSE_D8_DESUGAR=1")
	}

	if ctx.Config().IsEnvTrue("ART_TEST_ON_SBC_RISCV64_V_ADRALN_WORKAROUND") {
		cflags = append(cflags, "-DART_TEST_ON_SBC_RISCV64_V_ADRALN_WORKAROUND=1")
	}

	return cflags, asflags
}

func deviceFlags(ctx android.LoadHookContext) []string {
	var cflags []string
	deviceFrameSizeLimit := 1744
	if len(ctx.Config().SanitizeDevice()) > 0 {
		deviceFrameSizeLimit = 7400
	}
	cflags = append(cflags,
		fmt.Sprintf("-Wframe-larger-than=%d", deviceFrameSizeLimit),
		fmt.Sprintf("-DART_FRAME_SIZE_LIMIT=%d", deviceFrameSizeLimit),
	)

	cflags = append(cflags, "-DART_BASE_ADDRESS="+ctx.Config().LibartImgDeviceBaseAddress())
	minDelta := ctx.Config().GetenvWithDefault("LIBART_IMG_TARGET_MIN_BASE_ADDRESS_DELTA", "(-0x1000000)")
	maxDelta := ctx.Config().GetenvWithDefault("LIBART_IMG_TARGET_MAX_BASE_ADDRESS_DELTA", "0x1000000")
	cflags = append(cflags, "-DART_BASE_ADDRESS_MIN_DELTA="+minDelta)
	cflags = append(cflags, "-DART_BASE_ADDRESS_MAX_DELTA="+maxDelta)

	return cflags
}

func hostFlags(ctx android.LoadHookContext) []string {
	var cflags []string
	hostFrameSizeLimit := 1744
	if len(ctx.Config().SanitizeHost()) > 0 {
		// art/test/137-cfi/cfi.cc
		// error: stack frame size of 1944 bytes in function 'Java_Main_unwindInProcess'
		// b/249586057, need larger stack frame for newer clang compilers
		hostFrameSizeLimit = 10000
		// cannot add "-fsanitize-address-use-after-return=never" everywhere,
		// or some file like compiler_driver.o can have stack frame of 30072 bytes.
		// cflags = append(cflags, "-fsanitize-address-use-after-return=never")
	}
	cflags = append(cflags,
		fmt.Sprintf("-Wframe-larger-than=%d", hostFrameSizeLimit),
		fmt.Sprintf("-DART_FRAME_SIZE_LIMIT=%d", hostFrameSizeLimit),
	)

	cflags = append(cflags, "-DART_BASE_ADDRESS="+ctx.Config().LibartImgHostBaseAddress())
	minDelta := ctx.Config().GetenvWithDefault("LIBART_IMG_HOST_MIN_BASE_ADDRESS_DELTA", "(-0x1000000)")
	maxDelta := ctx.Config().GetenvWithDefault("LIBART_IMG_HOST_MAX_BASE_ADDRESS_DELTA", "0x1000000")
	cflags = append(cflags, "-DART_BASE_ADDRESS_MIN_DELTA="+minDelta)
	cflags = append(cflags, "-DART_BASE_ADDRESS_MAX_DELTA="+maxDelta)

	if len(ctx.Config().SanitizeHost()) > 0 && !ctx.Config().IsEnvFalse("ART_ENABLE_ADDRESS_SANITIZER") {
		// We enable full sanitization on the host by default.
		cflags = append(cflags, "-DART_ENABLE_ADDRESS_SANITIZER=1")
	}

	clang_path := filepath.Join(config.ClangDefaultBase, ctx.Config().PrebuiltOS(), config.ClangVersion(ctx))
	cflags = append(cflags, fmt.Sprintf("-DART_CLANG_PATH=\"%s\"", clang_path))

	return cflags
}

func globalDefaults(ctx android.LoadHookContext) {
	type props struct {
		Target struct {
			Android struct {
				Cflags []string
			}
			Host struct {
				Cflags []string
			}
		}
		Cflags   []string
		Asflags  []string
		Sanitize struct {
			Recover []string
		}
	}

	p := &props{}
	p.Cflags, p.Asflags = globalFlags(ctx)
	p.Target.Android.Cflags = deviceFlags(ctx)
	p.Target.Host.Cflags = hostFlags(ctx)

	if ctx.Config().IsEnvTrue("ART_DEX_FILE_ACCESS_TRACKING") {
		p.Cflags = append(p.Cflags, "-DART_DEX_FILE_ACCESS_TRACKING")
		p.Sanitize.Recover = []string{
			"address",
		}
	}

	ctx.AppendProperties(p)
}

// Hook that adds flags that are implicit for all cc_art_* modules.
func addImplicitFlags(ctx android.LoadHookContext) {
	type props struct {
		Target struct {
			Android struct {
				Cflags []string
			}
		}
	}

	p := &props{}
	if ctx.Config().IsEnvTrue("ART_TARGET_LINUX") {
		p.Target.Android.Cflags = []string{"-DART_TARGET", "-DART_TARGET_LINUX"}
	} else {
		p.Target.Android.Cflags = []string{"-DART_TARGET", "-DART_TARGET_ANDROID"}
	}

	ctx.AppendProperties(p)
}

func customLinker(ctx android.LoadHookContext) {
	linker := ctx.Config().Getenv("CUSTOM_TARGET_LINKER")
	type props struct {
		DynamicLinker string
	}

	p := &props{}
	if linker != "" {
		p.DynamicLinker = linker
	}

	ctx.AppendProperties(p)
}

func prefer32Bit(ctx android.LoadHookContext) {
	type props struct {
		Target struct {
			Host struct {
				Compile_multilib *string
			}
		}
	}

	p := &props{}
	if ctx.Config().IsEnvTrue("HOST_PREFER_32_BIT") {
		p.Target.Host.Compile_multilib = proptools.StringPtr("prefer32")
	}

	// Prepend to make it overridable in the blueprints. Note that it doesn't work
	// to override the property in a cc_defaults module.
	ctx.PrependProperties(p)
}

func testInstall(data *testInstallInfo) func(ctx android.InstallHookContext) {
	return func(ctx android.InstallHookContext) {
		var name string
		if ctx.Host() {
			name = "host_"
		} else {
			name = "device_"
		}
		name += ctx.Arch().ArchType.String() + "_" + ctx.ModuleName()
		data.TestMap[name] = append(data.TestMap[name], ctx.Path().String())
	}
}

// Binaries and libraries also need to be copied in the testcases directory for
// running tests on host.  This method adds module to the list of needed files.
// The 'key' is the file in testcases and 'value' is the path to copy it from.
// The actual copy will be done in make since soong does not do installations.
func addTestcasesFile(data *testInstallInfo) func(ctx android.InstallHookContext) {
	return func(ctx android.InstallHookContext) {
		if ctx.Os() != ctx.Config().BuildOS || ctx.Target().HostCross || ctx.Module().IsSkipInstall() {
			return
		}

		src := ctx.SrcPath().String()
		path := strings.Split(ctx.Path().String(), "/")
		// Keep last two parts of the install path (e.g. bin/dex2oat).
		dst := strings.Join(path[len(path)-2:], "/")
		if oldSrc, ok := data.Testcases[dst]; ok {
			ctx.ModuleErrorf("Conflicting sources for %s: %s and %s", dst, oldSrc, src)
		}
		data.Testcases[dst] = src
	}
}

func setTestInstallInfo(data *testInstallInfo) func(ctx android.ModuleContext) {
	return func(ctx android.ModuleContext) {
		if len(data.Testcases) > 0 || len(data.TestMap) > 0 {
			android.SetProvider(ctx, testInstallInfoProvider, *data)
		}
	}
}

func init() {
	artModuleTypes := []string{
		"art_cc_library",
		"art_cc_library_static",
		"art_cc_binary",
		"art_cc_test",
		"art_cc_test_library",
		"art_cc_defaults",
		"art_global_defaults",
	}
	android.AddNeverAllowRules(
		android.NeverAllow().
			NotIn("art", "external/vixl").
			ModuleType(artModuleTypes...))

	android.RegisterModuleType("art_cc_library", artLibrary)
	android.RegisterModuleType("art_cc_library_static", artStaticLibrary)
	android.RegisterModuleType("art_cc_binary", artBinary)
	android.RegisterModuleType("art_cc_test", artTest)
	android.RegisterModuleType("art_cc_test_library", artTestLibrary)
	android.RegisterModuleType("art_cc_defaults", artDefaultsFactory)
	android.RegisterModuleType("art_global_defaults", artGlobalDefaultsFactory)
}

func artGlobalDefaultsFactory() android.Module {
	module := artDefaultsFactory()
	android.AddLoadHook(module, addImplicitFlags)
	android.AddLoadHook(module, globalDefaults)

	return module
}

func artDefaultsFactory() android.Module {
	c := &codegenProperties{}
	module := cc.DefaultsFactory(c)
	android.AddLoadHook(module, func(ctx android.LoadHookContext) { codegen(ctx, c, staticAndSharedLibrary) })

	return module
}

func artLibrary() android.Module {
	module := cc.LibraryFactory()

	installCodegenCustomizer(module, staticAndSharedLibrary)

	android.AddLoadHook(module, addImplicitFlags)
	data := &testInstallInfo{
		Testcases: make(map[string]string),
	}
	android.AddInstallHook(module, addTestcasesFile(data))
	android.AddPostGenerateAndroidBuildActionsHook(module, setTestInstallInfo(data))
	return module
}

func artStaticLibrary() android.Module {
	module := cc.LibraryStaticFactory()

	installCodegenCustomizer(module, staticLibrary)

	android.AddLoadHook(module, addImplicitFlags)
	return module
}

func artBinary() android.Module {
	module := cc.BinaryFactory()

	android.AddLoadHook(module, addImplicitFlags)
	android.AddLoadHook(module, customLinker)
	android.AddLoadHook(module, prefer32Bit)
	data := &testInstallInfo{
		Testcases: make(map[string]string),
	}
	android.AddInstallHook(module, addTestcasesFile(data))
	android.AddPostGenerateAndroidBuildActionsHook(module, setTestInstallInfo(data))
	return module
}

func artTest() android.Module {
	module := cc.NewTest(android.HostAndDeviceSupported).Init()

	installCodegenCustomizer(module, binary)

	android.AddLoadHook(module, addImplicitFlags)
	android.AddLoadHook(module, customLinker)
	android.AddLoadHook(module, prefer32Bit)
	data := &testInstallInfo{
		TestMap: make(map[string][]string),
	}
	android.AddInstallHook(module, testInstall(data))
	android.AddPostGenerateAndroidBuildActionsHook(module, setTestInstallInfo(data))
	return module
}

func artTestLibrary() android.Module {
	module := cc.TestLibraryFactory()

	installCodegenCustomizer(module, staticAndSharedLibrary)

	android.AddLoadHook(module, addImplicitFlags)
	android.AddLoadHook(module, prefer32Bit)
	data := &testInstallInfo{
		TestMap: make(map[string][]string),
	}
	android.AddInstallHook(module, testInstall(data))
	android.AddPostGenerateAndroidBuildActionsHook(module, setTestInstallInfo(data))
	return module
}
