Files
sdk/runtime/vm/code_descriptors_test.cc
T
regis@google.com 9942bef559 Remove old x64 code generator.
Refactorize compiler and test code to be independent of actual code generator.
Review URL: https://chromiumcodereview.appspot.com//10375017

git-svn-id: https://dart.googlecode.com/svn/branches/bleeding_edge/dart@7350 260f80e4-7a28-3924-810f-c04153c831b5
2012-05-04 21:55:10 +00:00

220 lines
7.9 KiB
C++

// Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file
// for details. All rights reserved. Use of this source code is governed by a
// BSD-style license that can be found in the LICENSE file.
#include "platform/assert.h"
#include "vm/globals.h"
#if defined(TARGET_ARCH_IA32) || defined(TARGET_ARCH_X64)
#include "vm/ast.h"
#include "vm/assembler.h"
#include "vm/code_descriptors.h"
#include "vm/compiler.h"
#include "vm/dart_entry.h"
#include "vm/native_entry.h"
#include "vm/parser.h"
#include "vm/unit_test.h"
namespace dart {
static const intptr_t kPos = Scanner::kDummyTokenIndex;
CODEGEN_TEST_GENERATE(StackmapCodegen, test) {
Assembler assembler;
const String& function_name = String::ZoneHandle(String::NewSymbol("test"));
const Function& function = Function::Handle(
Function::New(function_name, RawFunction::kFunction, true, false, 0));
function.set_result_type(Type::Handle(Type::DynamicType()));
Class& cls = Class::ZoneHandle();
const Script& script = Script::Handle();
cls = Class::New(function_name, script, Scanner::kDummyTokenIndex);
const Array& functions = Array::Handle(Array::New(1));
functions.SetAt(0, function);
cls.SetFunctions(functions);
Library& lib = Library::Handle(Library::CoreLibrary());
lib.AddClass(cls);
ParsedFunction parsed_function(function);
LiteralNode* l = new LiteralNode(kPos, Smi::ZoneHandle(Smi::New(1)));
test->node_sequence()->Add(new ReturnNode(kPos, l));
l = new LiteralNode(kPos, Smi::ZoneHandle(Smi::New(2)));
test->node_sequence()->Add(new ReturnNode(kPos, l));
l = new LiteralNode(kPos, Smi::ZoneHandle(Smi::New(3)));
test->node_sequence()->Add(new ReturnNode(kPos, l));
parsed_function.SetNodeSequence(test->node_sequence());
parsed_function.set_instantiator(NULL);
parsed_function.set_default_parameter_values(Array::Handle());
parsed_function.AllocateVariables();
bool retval;
Isolate* isolate = Isolate::Current();
EXPECT(isolate != NULL);
LongJump* base = isolate->long_jump_base();
LongJump jump;
isolate->set_long_jump_base(&jump);
if (setjmp(*jump.Set()) == 0) {
// Build some stack map entries.
StackmapBuilder* builder = new StackmapBuilder();
EXPECT(builder != NULL);
builder->SetSlotAsObject(0);
EXPECT(builder->IsSlotObject(0));
builder->AddEntry(0); // Add a stack map entry at pc offset 0.
builder->SetSlotAsValue(1);
EXPECT(!builder->IsSlotObject(1));
builder->SetSlotAsObject(2);
builder->AddEntry(1); // Add a stack map entry at pc offset 1.
EXPECT(builder->IsSlotObject(2));
builder->SetSlotRangeAsObject(3, 5);
for (intptr_t i = 3; i <= 5; i++) {
EXPECT(builder->IsSlotObject(i));
}
builder->AddEntry(2); // Add a stack map entry at pc offset 2.
builder->SetSlotRangeAsValue(6, 9);
for (intptr_t i = 6; i <= 9; i++) {
EXPECT(!builder->IsSlotObject(i));
}
builder->SetSlotAsObject(10);
builder->AddEntry(3); // Add a stack map entry at pc offset 3.
const Error& error =
Error::Handle(Compiler::CompileParsedFunction(parsed_function));
EXPECT(error.IsNull());
const Code& code = Code::Handle(function.CurrentCode());
const Array& stack_maps = Array::Handle(builder->FinalizeStackmaps(code));
code.set_stackmaps(stack_maps);
const Array& stack_map_list = Array::Handle(code.stackmaps());
EXPECT(!stack_map_list.IsNull());
Stackmap& stack_map = Stackmap::Handle();
EXPECT_EQ(4, stack_map_list.Length());
// Validate the first stack map entry.
stack_map ^= stack_map_list.At(0);
EXPECT(stack_map.IsObject(0));
EXPECT_EQ(0, stack_map.MinimumBitOffset());
EXPECT_EQ(0, stack_map.MaximumBitOffset());
// Validate the second stack map entry.
stack_map ^= stack_map_list.At(1);
EXPECT(stack_map.IsObject(0));
EXPECT(!stack_map.IsObject(1));
EXPECT(stack_map.IsObject(2));
EXPECT_EQ(0, stack_map.MinimumBitOffset());
EXPECT_EQ(2, stack_map.MaximumBitOffset());
// Validate the third stack map entry.
stack_map ^= stack_map_list.At(2);
EXPECT(stack_map.IsObject(0));
EXPECT(!stack_map.IsObject(1));
for (intptr_t i = 2; i <= 5; i++) {
EXPECT(stack_map.IsObject(i));
}
EXPECT_EQ(0, stack_map.MinimumBitOffset());
EXPECT_EQ(5, stack_map.MaximumBitOffset());
// Validate the fourth stack map entry.
stack_map ^= stack_map_list.At(3);
EXPECT(stack_map.IsObject(0));
EXPECT(!stack_map.IsObject(1));
for (intptr_t i = 2; i <= 5; i++) {
EXPECT(stack_map.IsObject(i));
}
for (intptr_t i = 6; i <= 9; i++) {
EXPECT(!stack_map.IsObject(i));
}
EXPECT(stack_map.IsObject(10));
EXPECT_EQ(0, stack_map.MinimumBitOffset());
EXPECT_EQ(10, stack_map.MaximumBitOffset());
retval = true;
} else {
retval = false;
}
EXPECT(retval);
isolate->set_long_jump_base(base);
}
CODEGEN_TEST_RUN(StackmapCodegen, Smi::New(1))
DEFINE_NATIVE_ENTRY(NativeFunc, 2) {
GET_NATIVE_ARGUMENT(Smi, i, arguments->At(0));
GET_NATIVE_ARGUMENT(Smi, k, arguments->At(1));
EXPECT_EQ(10, i.Value());
EXPECT_EQ(20, k.Value());
Isolate::Current()->heap()->CollectAllGarbage();
}
static Dart_NativeFunction native_resolver(Dart_Handle name,
int argument_count) {
return reinterpret_cast<Dart_NativeFunction>(&DN_NativeFunc);
}
TEST_CASE(StackmapGC) {
const char* kScriptChars =
"class A {"
" static void func(var i, var k) native 'NativeFunc';"
" static foo() {"
" var i;"
" var s1;"
" var k;"
" var s2;"
" var s3;"
" i = 10; s1 = 'abcd'; k = 20; s2 = 'B'; s3 = 'C';"
" func(i, k);"
" return i + k; }"
" static int moo() {"
" var i = A.foo();"
" Expect.equals(30, i);"
" }\n"
"}\n";
// First setup the script and compile the script.
TestCase::LoadTestScript(kScriptChars, native_resolver);
EXPECT(ClassFinalizer::FinalizePendingClasses());
const String& name = String::Handle(String::New(TestCase::url()));
const Library& lib = Library::Handle(Library::LookupLibrary(name));
EXPECT(!lib.IsNull());
Class& cls = Class::Handle(
lib.LookupClass(String::Handle(String::NewSymbol("A"))));
EXPECT(!cls.IsNull());
// Now compile the two functions 'A.foo' and 'A.moo'
String& function_moo_name = String::Handle(String::New("moo"));
Function& function_moo =
Function::Handle(cls.LookupStaticFunction(function_moo_name));
EXPECT(CompilerTest::TestCompileFunction(function_moo));
EXPECT(function_moo.HasCode());
String& function_foo_name = String::Handle(String::New("foo"));
Function& function_foo =
Function::Handle(cls.LookupStaticFunction(function_foo_name));
EXPECT(CompilerTest::TestCompileFunction(function_foo));
EXPECT(function_foo.HasCode());
// Build and setup a stackmap for function 'A.foo' in order to test the
// traversal of stack maps when a GC happens.
StackmapBuilder* builder = new StackmapBuilder();
EXPECT(builder != NULL);
builder->SetSlotAsValue(0); // var i.
builder->SetSlotAsObject(1); // var s1.
builder->SetSlotAsValue(2); // var k.
builder->SetSlotAsObject(3); // var s2.
builder->SetSlotAsObject(4); // var s3.
builder->AddEntry(0); // Add a stack map entry at pc offset 0.
const Code& code = Code::Handle(function_foo.unoptimized_code());
const Array& stack_maps = Array::Handle(builder->FinalizeStackmaps(code));
code.set_stackmaps(stack_maps);
// Now invoke 'A.moo' and it will trigger a GC when the native function
// is called, this should then cause the stack map of function 'A.foo'
// to be traversed and the appropriate objects visited.
GrowableArray<const Object*> arguments;
const Array& kNoArgumentNames = Array::Handle();
Object& result = Object::Handle();
result = DartEntry::InvokeStatic(function_foo, arguments, kNoArgumentNames);
EXPECT(!result.IsError());
}
} // namespace dart
#endif // defined TARGET_ARCH_IA32 || defined(TARGET_ARCH_X64)