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sdk/runtime/vm/code_index_table_test.cc
T
dgrove@google.com 4c0f559d23 Initial checkin.
git-svn-id: https://dart.googlecode.com/svn/branches/bleeding_edge/dart@15 260f80e4-7a28-3924-810f-c04153c831b5
2011-10-05 05:20:07 +00:00

158 lines
5.9 KiB
C++

// Copyright (c) 2011, 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 "vm/code_index_table.h"
#include "vm/assert.h"
#include "vm/class_finalizer.h"
#include "vm/compiler.h"
#include "vm/object.h"
#include "vm/unit_test.h"
namespace dart {
#if defined(TARGET_ARCH_IA32) // Compiler only implemented on IA32 now.
TEST_CASE(CodeIndexTable) {
const int kScriptSize = 512 * KB;
const int kNumFunctions = 1024;
char scriptChars[kScriptSize];
String& url = String::Handle(String::New("dart-test:CodeIndexTable"));
String& source = String::Handle();
Script& script = Script::Handle();
Library& lib = Library::Handle();
Class& clsA = Class::Handle();
Class& clsB = Class::Handle();
String& function_name = String::Handle();
Function& function = Function::Handle();
char buffer[256];
// Get access to the code index table.
ASSERT(Isolate::Current() != NULL);
CodeIndexTable* code_index_table = Isolate::Current()->code_index_table();
ASSERT(code_index_table != NULL);
lib = Library::CoreLibrary();
// Load up class A with 1024 functions.
int written = OS::SNPrint(scriptChars, kScriptSize, "class A {");
for (int i = 0; i < kNumFunctions; i++) {
OS::SNPrint(buffer,
256,
"static foo%d(int i=1,int j=2,int k=3){return i+j+k;}", i);
written += OS::SNPrint((scriptChars + written),
(kScriptSize - written),
"%s",
buffer);
}
OS::SNPrint((scriptChars + written), (kScriptSize - written), "}");
source = String::New(scriptChars);
script = Script::New(url, source, RawScript::kSource);
EXPECT(CompilerTest::TestCompileScript(lib, script));
clsA = lib.LookupClass(String::Handle(String::NewSymbol("A")));
EXPECT(!clsA.IsNull());
ClassFinalizer::FinalizePendingClasses();
for (int i = 0; i < kNumFunctions; i++) {
OS::SNPrint(buffer, 256, "foo%d", i);
function_name = String::New(buffer);
function = clsA.LookupStaticFunction(function_name);
EXPECT(!function.IsNull());
EXPECT(CompilerTest::TestCompileFunction(function));
EXPECT(function.HasCode());
}
// Now load up class B with 1024 functions.
written = OS::SNPrint(scriptChars, kScriptSize, "class B {");
// Create one large function.
OS::SNPrint(buffer, sizeof(buffer), "static moo0(int i=1) { return ");
written += OS::SNPrint((scriptChars + written),
(kScriptSize - written),
"%s",
buffer);
// Currently this causes about 750KB of code to be allocated. The
// nesting level of binary operations is reduced from 50000 so this
// test will pass on Windows. Larger nesting leads to stack overflow
// in debug mode in the code generation visitor even when the stack
// reserved size is set to 2MB.
for (int i = 0; i < 35000; i++) {
OS::SNPrint(buffer, sizeof(buffer), "i+");
written += OS::SNPrint((scriptChars + written),
(kScriptSize - written),
"%s",
buffer);
}
OS::SNPrint(buffer, sizeof(buffer), "i; }");
written += OS::SNPrint((scriptChars + written),
(kScriptSize - written),
"%s",
buffer);
for (int i = 1; i < kNumFunctions; i++) {
OS::SNPrint(buffer,
256,
"static moo%d(int i=1,int j=2,int k=3){return i+j+k;}", i);
written += OS::SNPrint((scriptChars + written),
(kScriptSize - written),
"%s",
buffer);
}
OS::SNPrint((scriptChars + written), (kScriptSize - written), "}");
url = String::New("dart-test:CodeIndexTable");
source = String::New(scriptChars);
script = Script::New(url, source, RawScript::kSource);
EXPECT(CompilerTest::TestCompileScript(lib, script));
clsB = lib.LookupClass(String::Handle(String::NewSymbol("B")));
EXPECT(!clsB.IsNull());
ClassFinalizer::FinalizePendingClasses();
for (int i = 0; i < kNumFunctions; i++) {
OS::SNPrint(buffer, 256, "moo%d", i);
function_name = String::New(buffer);
function = clsB.LookupStaticFunction(function_name);
EXPECT(!function.IsNull());
EXPECT(CompilerTest::TestCompileFunction(function));
EXPECT(function.HasCode());
}
// Now try and access these functions using the code index table.
Code& code = Code::Handle();
uword pc;
OS::SNPrint(buffer, 256, "foo%d", 123);
function_name = String::New(buffer);
function = clsA.LookupStaticFunction(function_name);
EXPECT(!function.IsNull());
code = function.code();
EXPECT(code.Size() > 16);
pc = code.EntryPoint() + 16;
EXPECT(code_index_table->LookupFunction(pc) == function.raw());
EXPECT(code_index_table->LookupCode(pc) == code.raw());
OS::SNPrint(buffer, 256, "moo%d", 54);
function_name = String::New(buffer);
function = clsB.LookupStaticFunction(function_name);
EXPECT(!function.IsNull());
code = function.code();
EXPECT(code.Size() > 16);
pc = code.EntryPoint() + 16;
EXPECT(code_index_table->LookupFunction(pc) == function.raw());
EXPECT(code_index_table->LookupCode(pc) == code.raw());
// Lookup the large function
OS::SNPrint(buffer, 256, "moo%d", 0);
function_name = String::New(buffer);
function = clsB.LookupStaticFunction(function_name);
EXPECT(!function.IsNull());
code = function.code();
EXPECT(code.Size() > 16);
pc = code.EntryPoint() + 16;
EXPECT(code_index_table->LookupFunction(pc) == function.raw());
EXPECT(code_index_table->LookupCode(pc) == code.raw());
EXPECT(code.Size() > 750 * KB);
pc = code.EntryPoint() + 750 * KB;
EXPECT(code_index_table->LookupFunction(pc) == function.raw());
EXPECT(code_index_table->LookupCode(pc) == code.raw());
}
#endif // TARGET_ARCH_IA32
} // namespace dart