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sdk/runtime/vm/code_descriptors_test.cc
T
asiva@google.com 2d3775a1b1 Resubmit change 6302 after fixing the compiler warning on older GCC compiler versions:
Change 6302 description:
- Wire the stack frame iterator to use stack maps for traversing objects if
there are stack maps in the code object. If there are no stack maps it still
does the old style stack frame traversal between fp and sp looking for tagged
pointers.
- Added a mechanism to be able to iterate over the code space and look for a
particular object.
Review URL: https://chromiumcodereview.appspot.com//10030001

git-svn-id: https://dart.googlecode.com/svn/branches/bleeding_edge/dart@6331 260f80e4-7a28-3924-810f-c04153c831b5
2012-04-09 18:20:23 +00:00

219 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/code_generator.h"
#include "vm/dart_entry.h"
#include "vm/native_entry.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.set_node_sequence(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) {
CodeGenerator code_gen(&assembler, parsed_function);
// 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.
code_gen.GenerateCode();
const char* function_fullname = function.ToFullyQualifiedCString();
const Code& code =
Code::Handle(Code::FinalizeCode(function_fullname, &assembler));
const Array& stack_maps = Array::Handle(builder->FinalizeStackmaps(code));
code.set_stackmaps(stack_maps);
function.SetCode(code);
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);
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)