Files
sdk/runtime/vm/debugger.cc
T

1106 lines
34 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 "vm/debugger.h"
#include "vm/code_generator.h"
#include "vm/code_patcher.h"
#include "vm/compiler.h"
#include "vm/dart_entry.h"
#include "vm/flags.h"
#include "vm/globals.h"
#include "vm/longjump.h"
#include "vm/object.h"
#include "vm/object_store.h"
#include "vm/os.h"
#include "vm/stack_frame.h"
#include "vm/stub_code.h"
#include "vm/visitor.h"
namespace dart {
static const bool verbose = false;
SourceBreakpoint::SourceBreakpoint(const Function& func, intptr_t token_index)
: function_(func.raw()),
token_index_(token_index),
line_number_(-1),
is_enabled_(false),
next_(NULL) {
ASSERT(!func.IsNull());
ASSERT((func.token_index() <= token_index_) &&
(token_index_ < func.end_token_index()));
}
void SourceBreakpoint::Enable() {
is_enabled_ = true;
Isolate::Current()->debugger()->SyncBreakpoint(this);
}
void SourceBreakpoint::Disable() {
is_enabled_ = false;
Isolate::Current()->debugger()->SyncBreakpoint(this);
}
RawScript* SourceBreakpoint::SourceCode() {
const Function& func = Function::Handle(function_);
const Class& cls = Class::Handle(func.owner());
return cls.script();
}
RawString* SourceBreakpoint::SourceUrl() {
const Script& script = Script::Handle(SourceCode());
return script.url();
}
intptr_t SourceBreakpoint::LineNumber() {
// Compute line number lazily since it causes scanning of the script.
if (line_number_ < 0) {
const Script& script = Script::Handle(SourceCode());
intptr_t ignore_column;
script.GetTokenLocation(token_index_, &line_number_, &ignore_column);
}
return line_number_;
}
void SourceBreakpoint::set_function(const Function& func) {
function_ = func.raw();
}
void SourceBreakpoint::VisitObjectPointers(ObjectPointerVisitor* visitor) {
visitor->VisitPointer(reinterpret_cast<RawObject**>(&function_));
}
void CodeBreakpoint::VisitObjectPointers(ObjectPointerVisitor* visitor) {
visitor->VisitPointer(reinterpret_cast<RawObject**>(&function_));
}
ActivationFrame::ActivationFrame(uword pc, uword fp, uword sp)
: pc_(pc), fp_(fp), sp_(sp),
function_(Function::ZoneHandle()),
token_index_(-1),
line_number_(-1),
var_descriptors_(NULL),
desc_indices_(8) {
}
const Function& ActivationFrame::DartFunction() {
if (function_.IsNull()) {
Isolate* isolate = Isolate::Current();
ASSERT(isolate != NULL);
const Code& code = Code::Handle(StackFrame::LookupCode(isolate, pc_));
function_ = code.function();
}
return function_;
}
const char* Debugger::QualifiedFunctionName(const Function& func) {
const String& func_name = String::Handle(func.name());
Class& func_class = Class::Handle(func.owner());
String& class_name = String::Handle(func_class.Name());
const char* kFormat = "%s%s%s";
intptr_t len = OS::SNPrint(NULL, 0, kFormat,
func_class.IsTopLevel() ? "" : class_name.ToCString(),
func_class.IsTopLevel() ? "" : ".",
func_name.ToCString());
len++; // String terminator.
char* chars = reinterpret_cast<char*>(
Isolate::Current()->current_zone()->Allocate(len));
OS::SNPrint(chars, len, kFormat,
func_class.IsTopLevel() ? "" : class_name.ToCString(),
func_class.IsTopLevel() ? "" : ".",
func_name.ToCString());
return chars;
}
RawString* ActivationFrame::QualifiedFunctionName() {
const Function& func = DartFunction();
return String::New(Debugger::QualifiedFunctionName(func));
}
RawString* ActivationFrame::SourceUrl() {
const Script& script = Script::Handle(SourceScript());
return script.url();
}
RawScript* ActivationFrame::SourceScript() {
const Function& func = DartFunction();
const Class& cls = Class::Handle(func.owner());
return cls.script();
}
intptr_t ActivationFrame::TokenIndex() {
if (token_index_ < 0) {
const Function& func = DartFunction();
ASSERT(!func.HasOptimizedCode());
Code& code = Code::Handle(func.unoptimized_code());
ASSERT(!code.IsNull());
PcDescriptors& desc = PcDescriptors::Handle(code.pc_descriptors());
for (int i = 0; i < desc.Length(); i++) {
if (desc.PC(i) == pc_) {
token_index_ = desc.TokenIndex(i);
break;
}
}
ASSERT(token_index_ >= 0);
}
return token_index_;
}
intptr_t ActivationFrame::LineNumber() {
// Compute line number lazily since it causes scanning of the script.
if (line_number_ < 0) {
const Script& script = Script::Handle(SourceScript());
intptr_t ignore_column;
script.GetTokenLocation(TokenIndex(), &line_number_, &ignore_column);
}
return line_number_;
}
void ActivationFrame::GetDescIndices() {
if (var_descriptors_ == NULL) {
ASSERT(!DartFunction().HasOptimizedCode());
const Code& code = Code::Handle(DartFunction().unoptimized_code());
var_descriptors_ =
&LocalVarDescriptors::ZoneHandle(code.var_descriptors());
// TODO(Hausner): Consider replacing this GrowableArray.
GrowableArray<String*> var_names(8);
intptr_t activation_token_pos = TokenIndex();
intptr_t var_desc_len = var_descriptors_->Length();
for (int cur_idx = 0; cur_idx < var_desc_len; cur_idx++) {
ASSERT(var_names.length() == desc_indices_.length());
intptr_t scope_id, begin_pos, end_pos;
var_descriptors_->GetScopeInfo(cur_idx, &scope_id, &begin_pos, &end_pos);
if ((begin_pos <= activation_token_pos) &&
(activation_token_pos <= end_pos)) {
// The current variable is textually in scope. Now check whether
// there is another local variable with the same name that shadows
// or is shadowed by this variable.
String& var_name = String::Handle(var_descriptors_->GetName(cur_idx));
intptr_t indices_len = desc_indices_.length();
bool name_match_found = false;
for (int i = 0; i < indices_len; i++) {
if (var_name.Equals(*var_names[i])) {
// Found two local variables with the same name. Now determine
// which one is shadowed.
name_match_found = true;
intptr_t i_begin_pos, ignore;
var_descriptors_->GetScopeInfo(
desc_indices_[i], &ignore, &i_begin_pos, &ignore);
if (i_begin_pos < begin_pos) {
// The variable we found earlier is in an outer scope
// and is shadowed by the current variable. Replace the
// descriptor index of the previously found variable
// with the descriptor index of the current variable.
desc_indices_[i] = cur_idx;
} else {
// The variable we found earlier is in an inner scope
// and shadows the current variable. Skip the current
// variable. (Nothing to do.)
}
break; // Stop looking for name matches.
}
}
if (!name_match_found) {
// No duplicate name found. Add the current descriptor index to the
// list of visible variables.
desc_indices_.Add(cur_idx);
var_names.Add(&var_name);
}
}
}
}
}
intptr_t ActivationFrame::NumLocalVariables() {
GetDescIndices();
return desc_indices_.length();
}
void ActivationFrame::VariableAt(intptr_t i,
String* name,
intptr_t* token_pos,
intptr_t* end_pos,
Instance* value) {
GetDescIndices();
ASSERT(i < desc_indices_.length());
ASSERT(name != NULL);
intptr_t desc_index = desc_indices_[i];
*name ^= var_descriptors_->GetName(desc_index);
intptr_t scope_id;
var_descriptors_->GetScopeInfo(desc_index, &scope_id, token_pos, end_pos);
ASSERT(value != NULL);
*value = GetLocalVarValue(var_descriptors_->GetSlotIndex(desc_index));
}
RawArray* ActivationFrame::GetLocalVariables() {
GetDescIndices();
intptr_t num_variables = desc_indices_.length();
String& var_name = String::Handle();
Instance& value = Instance::Handle();
const Array& list = Array::Handle(Array::New(2 * num_variables));
for (int i = 0; i < num_variables; i++) {
var_name = var_descriptors_->GetName(i);
list.SetAt(2 * i, var_name);
value = GetLocalVarValue(var_descriptors_->GetSlotIndex(i));
list.SetAt((2 * i) + 1, value);
}
return list.raw();
}
const char* ActivationFrame::ToCString() {
const char* kFormat = "Function: '%s' url: '%s' line: %d";
const Function& func = DartFunction();
const String& url = String::Handle(SourceUrl());
intptr_t line = LineNumber();
const char* func_name = Debugger::QualifiedFunctionName(func);
intptr_t len =
OS::SNPrint(NULL, 0, kFormat, func_name, url.ToCString(), line);
len++; // String terminator.
char* chars = reinterpret_cast<char*>(
Isolate::Current()->current_zone()->Allocate(len));
OS::SNPrint(chars, len, kFormat, func_name, url.ToCString(), line);
return chars;
}
void DebuggerStackTrace::AddActivation(ActivationFrame* frame) {
trace_.Add(frame);
}
CodeBreakpoint::CodeBreakpoint(const Function& func, intptr_t pc_desc_index)
: function_(func.raw()),
pc_desc_index_(pc_desc_index),
pc_(0),
line_number_(-1),
is_enabled_(false),
src_bpt_(NULL),
next_(NULL) {
ASSERT(!func.HasOptimizedCode());
Code& code = Code::Handle(func.unoptimized_code());
ASSERT(!code.IsNull()); // Function must be compiled.
PcDescriptors& desc = PcDescriptors::Handle(code.pc_descriptors());
ASSERT(pc_desc_index < desc.Length());
token_index_ = desc.TokenIndex(pc_desc_index);
ASSERT(token_index_ >= 0);
pc_ = desc.PC(pc_desc_index);
ASSERT(pc_ != 0);
breakpoint_kind_ = desc.DescriptorKind(pc_desc_index);
ASSERT((breakpoint_kind_ == PcDescriptors::kIcCall) ||
(breakpoint_kind_ == PcDescriptors::kFuncCall) ||
(breakpoint_kind_ == PcDescriptors::kReturn));
}
CodeBreakpoint::~CodeBreakpoint() {
// Make sure we don't leave patched code behind.
ASSERT(!IsEnabled());
// Poison the data so we catch use after free errors.
#ifdef DEBUG
function_ = Function::null();
pc_ = 0ul;
src_bpt_ = NULL;
next_ = NULL;
breakpoint_kind_ = PcDescriptors::kOther;
#endif
}
RawScript* CodeBreakpoint::SourceCode() {
const Function& func = Function::Handle(function_);
const Class& cls = Class::Handle(func.owner());
return cls.script();
}
RawString* CodeBreakpoint::SourceUrl() {
const Script& script = Script::Handle(SourceCode());
return script.url();
}
intptr_t CodeBreakpoint::LineNumber() {
// Compute line number lazily since it causes scanning of the script.
if (line_number_ < 0) {
const Script& script = Script::Handle(SourceCode());
intptr_t ignore_column;
script.GetTokenLocation(token_index_, &line_number_, &ignore_column);
}
return line_number_;
}
void CodeBreakpoint::PatchCode() {
ASSERT(!is_enabled_);
switch (breakpoint_kind_) {
case PcDescriptors::kIcCall: {
int num_args, num_named_args;
CodePatcher::GetInstanceCallAt(pc_,
NULL, &num_args, &num_named_args,
&saved_bytes_.target_address_);
CodePatcher::PatchInstanceCallAt(
pc_, StubCode::BreakpointDynamicEntryPoint());
break;
}
case PcDescriptors::kFuncCall: {
Function& func = Function::Handle();
CodePatcher::GetStaticCallAt(pc_, &func, &saved_bytes_.target_address_);
CodePatcher::PatchStaticCallAt(pc_,
StubCode::BreakpointStaticEntryPoint());
break;
}
case PcDescriptors::kReturn:
PatchFunctionReturn();
break;
default:
UNREACHABLE();
}
is_enabled_ = true;
}
void CodeBreakpoint::RestoreCode() {
ASSERT(is_enabled_);
switch (breakpoint_kind_) {
case PcDescriptors::kIcCall:
CodePatcher::PatchInstanceCallAt(pc_, saved_bytes_.target_address_);
break;
case PcDescriptors::kFuncCall:
CodePatcher::PatchStaticCallAt(pc_, saved_bytes_.target_address_);
break;
case PcDescriptors::kReturn:
RestoreFunctionReturn();
break;
default:
UNREACHABLE();
}
is_enabled_ = false;
}
void CodeBreakpoint::Enable() {
if (!is_enabled_) {
PatchCode();
}
ASSERT(is_enabled_);
}
void CodeBreakpoint::Disable() {
if (is_enabled_) {
RestoreCode();
}
ASSERT(!is_enabled_);
}
Debugger::Debugger()
: isolate_(NULL),
initialized_(false),
bp_handler_(NULL),
src_breakpoints_(NULL),
code_breakpoints_(NULL),
resume_action_(kContinue),
ignore_breakpoints_(false) {
}
Debugger::~Debugger() {
ASSERT(src_breakpoints_ == NULL);
ASSERT(code_breakpoints_ == NULL);
}
void Debugger::Shutdown() {
while (src_breakpoints_ != NULL) {
SourceBreakpoint* bpt = src_breakpoints_;
src_breakpoints_ = src_breakpoints_->next();
delete bpt;
}
while (code_breakpoints_ != NULL) {
CodeBreakpoint* bpt = code_breakpoints_;
code_breakpoints_ = code_breakpoints_->next();
bpt->Disable();
delete bpt;
}
}
bool Debugger::IsActive() {
// TODO(hausner): The code generator uses this function to prevent
// generation of optimized code when Dart code is being debugged.
// This is probably not conservative enough (we could set the first
// breakpoint after optimized code has already been produced).
// Long-term, we need to be able to de-optimize code.
return (src_breakpoints_ != NULL) || (code_breakpoints_ != NULL);
}
static RawFunction* ResolveLibraryFunction(
const Library& library,
const String& fname) {
ASSERT(!library.IsNull());
Function& function = Function::Handle();
const Object& object = Object::Handle(library.LookupObject(fname));
if (!object.IsNull() && object.IsFunction()) {
function ^= object.raw();
}
return function.raw();
}
RawFunction* Debugger::ResolveFunction(const Library& library,
const String& class_name,
const String& function_name) {
ASSERT(!library.IsNull());
ASSERT(!class_name.IsNull());
ASSERT(!function_name.IsNull());
if (class_name.Length() == 0) {
return ResolveLibraryFunction(library, function_name);
}
const Class& cls = Class::Handle(library.LookupClass(class_name));
Function& function = Function::Handle();
if (!cls.IsNull()) {
function = cls.LookupStaticFunction(function_name);
if (function.IsNull()) {
function = cls.LookupDynamicFunction(function_name);
}
}
return function.raw();
}
// Deoptimize function if necessary. Does not patch return addresses on the
// stack. If there are activation frames of this function on the stack,
// the optimized code will be executed when the callee returns.
void Debugger::EnsureFunctionIsDeoptimized(const Function& func) {
if (func.HasOptimizedCode()) {
if (verbose) {
OS::Print("Deoptimizing function %s\n",
String::Handle(func.name()).ToCString());
}
func.set_usage_counter(0);
func.set_deoptimization_counter(func.deoptimization_counter() + 1);
Compiler::CompileFunction(func);
ASSERT(!func.HasOptimizedCode());
}
}
void Debugger::InstrumentForStepping(const Function& target_function) {
if (target_function.HasCode()) {
EnsureFunctionIsDeoptimized(target_function);
} else {
Compiler::CompileFunction(target_function);
// If there were any errors, ignore them silently and return without
// adding breakpoints to target.
if (!target_function.HasCode()) {
return;
}
}
Code& code = Code::Handle(target_function.unoptimized_code());
ASSERT(!code.IsNull());
PcDescriptors& desc = PcDescriptors::Handle(code.pc_descriptors());
for (int i = 0; i < desc.Length(); i++) {
CodeBreakpoint* bpt = GetCodeBreakpoint(desc.PC(i));
if (bpt != NULL) {
// There is already a breakpoint for this address. Leave it alone.
continue;
}
PcDescriptors::Kind kind = desc.DescriptorKind(i);
if ((kind == PcDescriptors::kIcCall) ||
(kind == PcDescriptors::kFuncCall) ||
(kind == PcDescriptors::kReturn)) {
bpt = new CodeBreakpoint(target_function, i);
RegisterCodeBreakpoint(bpt);
bpt->Enable();
}
}
}
CodeBreakpoint* Debugger::MakeCodeBreakpoint(const Function& func,
intptr_t token_index) {
ASSERT(func.HasCode());
ASSERT(!func.HasOptimizedCode());
Code& code = Code::Handle(func.unoptimized_code());
ASSERT(!code.IsNull());
PcDescriptors& desc = PcDescriptors::Handle(code.pc_descriptors());
intptr_t best_fit_index = -1;
intptr_t best_fit = INT_MAX;
for (int i = 0; i < desc.Length(); i++) {
intptr_t desc_token_index = desc.TokenIndex(i);
if (desc_token_index < token_index) {
continue;
}
PcDescriptors::Kind kind = desc.DescriptorKind(i);
if ((kind == PcDescriptors::kIcCall) ||
(kind == PcDescriptors::kFuncCall) ||
(kind == PcDescriptors::kReturn)) {
if ((desc_token_index - token_index) < best_fit) {
best_fit = desc_token_index - token_index;
ASSERT(best_fit >= 0);
best_fit_index = i;
}
}
}
if (best_fit_index >= 0) {
CodeBreakpoint* bpt = GetCodeBreakpoint(desc.PC(best_fit_index));
// We should only ever have one code breakpoint at the same address.
// If we find an existing breakpoint, it must be an internal one which
// is used for stepping.
if (bpt != NULL) {
ASSERT(bpt->src_bpt() == NULL);
return bpt;
}
bpt = new CodeBreakpoint(func, best_fit_index);
if (verbose) {
OS::Print("Setting breakpoint in function '%s' (%s:%d) (PC %p)\n",
String::Handle(func.name()).ToCString(),
String::Handle(bpt->SourceUrl()).ToCString(),
bpt->LineNumber(),
bpt->pc());
}
RegisterCodeBreakpoint(bpt);
return bpt;
}
return NULL;
}
SourceBreakpoint* Debugger::SetBreakpoint(const Function& target_function,
intptr_t token_index) {
if ((token_index < target_function.token_index()) ||
(target_function.end_token_index() <= token_index)) {
// The given token position is not within the target function.
return NULL;
}
EnsureFunctionIsDeoptimized(target_function);
SourceBreakpoint* bpt = GetSourceBreakpoint(target_function, token_index);
if (bpt != NULL) {
// A breakpoint for this location already exists, return it.
return bpt;
}
bpt = new SourceBreakpoint(target_function, token_index);
RegisterSourceBreakpoint(bpt);
if (verbose && !target_function.HasCode()) {
OS::Print("Registering breakpoint for uncompiled function '%s'"
" (%s:%d)\n",
String::Handle(target_function.name()).ToCString(),
String::Handle(bpt->SourceUrl()).ToCString(),
bpt->LineNumber());
}
if (target_function.HasCode()) {
CodeBreakpoint* cbpt = MakeCodeBreakpoint(target_function, token_index);
if (cbpt != NULL) {
ASSERT(cbpt->src_bpt() == NULL);
cbpt->set_src_bpt(bpt);
} else {
if (verbose) {
OS::Print("Failed to set breakpoint at '%s' line %d\n",
String::Handle(bpt->SourceUrl()).ToCString(),
bpt->LineNumber());
}
}
}
bpt->Enable();
return bpt;
}
// Synchronize the enabled/disabled state of all code breakpoints
// associated with the source breakpoint bpt.
void Debugger::SyncBreakpoint(SourceBreakpoint* bpt) {
CodeBreakpoint* cbpt = code_breakpoints_;
while (cbpt != NULL) {
if (bpt == cbpt->src_bpt()) {
if (bpt->IsEnabled()) {
cbpt->Enable();
} else {
cbpt->Disable();
}
}
cbpt = cbpt->next();
}
}
SourceBreakpoint* Debugger::SetBreakpointAtEntry(
const Function& target_function) {
ASSERT(!target_function.IsNull());
return SetBreakpoint(target_function, target_function.token_index());
}
SourceBreakpoint* Debugger::SetBreakpointAtLine(const String& script_url,
intptr_t line_number) {
Library& lib = Library::Handle();
Script& script = Script::Handle();
lib = isolate_->object_store()->registered_libraries();
while (!lib.IsNull()) {
script = lib.LookupScript(script_url);
if (!script.IsNull()) {
break;
}
lib = lib.next_registered();
}
if (script.IsNull()) {
if (verbose) {
OS::Print("Failed to find script with url '%s'\n",
script_url.ToCString());
}
return NULL;
}
intptr_t token_index_at_line = script.TokenIndexAtLine(line_number);
if (token_index_at_line < 0) {
// Script does not contain the given line number.
if (verbose) {
OS::Print("Script '%s' does not contain line number %d\n",
script_url.ToCString(), line_number);
}
return NULL;
}
const Function& func =
Function::Handle(lib.LookupFunctionInScript(script, token_index_at_line));
if (func.IsNull()) {
if (verbose) {
OS::Print("No executable code at line %d in '%s'\n",
line_number, script_url.ToCString());
}
return NULL;
}
return SetBreakpoint(func, token_index_at_line);
}
// TODO(hausner): Merge some of this functionality with the code in
// dart_api_impl.cc.
RawObject* Debugger::GetInstanceField(const Class& cls,
const String& field_name,
const Instance& object) {
const Function& getter_func =
Function::Handle(cls.LookupGetterFunction(field_name));
ASSERT(!getter_func.IsNull());
Object& result = Object::Handle();
LongJump* base = isolate_->long_jump_base();
LongJump jump;
isolate_->set_long_jump_base(&jump);
bool saved_ignore_flag = ignore_breakpoints_;
ignore_breakpoints_ = true;
if (setjmp(*jump.Set()) == 0) {
GrowableArray<const Object*> noArguments;
const Array& noArgumentNames = Array::Handle();
result = DartEntry::InvokeDynamic(object, getter_func,
noArguments, noArgumentNames);
} else {
result = isolate_->object_store()->sticky_error();
}
ignore_breakpoints_ = saved_ignore_flag;
isolate_->set_long_jump_base(base);
return result.raw();
}
RawObject* Debugger::GetStaticField(const Class& cls,
const String& field_name) {
const Field& fld = Field::Handle(cls.LookupStaticField(field_name));
if (!fld.IsNull()) {
// Return the value in the field if it has been initialized already.
const Instance& value = Instance::Handle(fld.value());
ASSERT(value.raw() != Object::transition_sentinel());
if (value.raw() != Object::sentinel()) {
return value.raw();
}
}
// There is no field or the field has not been initialized yet.
// We must have a getter. Run the getter.
const Function& getter_func =
Function::Handle(cls.LookupGetterFunction(field_name));
ASSERT(!getter_func.IsNull());
if (getter_func.IsNull()) {
return Object::null();
}
Object& result = Object::Handle();
LongJump* base = isolate_->long_jump_base();
LongJump jump;
isolate_->set_long_jump_base(&jump);
bool saved_ignore_flag = ignore_breakpoints_;
ignore_breakpoints_ = true;
if (setjmp(*jump.Set()) == 0) {
GrowableArray<const Object*> noArguments;
const Array& noArgumentNames = Array::Handle();
result = DartEntry::InvokeStatic(getter_func, noArguments, noArgumentNames);
} else {
result = isolate_->object_store()->sticky_error();
}
ignore_breakpoints_ = saved_ignore_flag;
isolate_->set_long_jump_base(base);
return result.raw();
}
RawArray* Debugger::GetInstanceFields(const Instance& obj) {
Class& cls = Class::Handle(obj.clazz());
Array& fields = Array::Handle();
Field& field = Field::Handle();
const GrowableObjectArray& field_list =
GrowableObjectArray::Handle(GrowableObjectArray::New(8));
String& field_name = String::Handle();
Object& field_value = Object::Handle();
// Iterate over fields in class hierarchy to count all instance fields.
while (!cls.IsNull()) {
fields = cls.fields();
for (int i = 0; i < fields.Length(); i++) {
field ^= fields.At(i);
if (!field.is_static()) {
field_name = field.name();
field_list.Add(field_name);
field_value = GetInstanceField(cls, field_name, obj);
field_list.Add(field_value);
}
}
cls = cls.SuperClass();
}
return Array::MakeArray(field_list);
}
RawArray* Debugger::GetStaticFields(const Class& cls) {
const GrowableObjectArray& field_list =
GrowableObjectArray::Handle(GrowableObjectArray::New(8));
Array& fields = Array::Handle(cls.fields());
Field& field = Field::Handle();
String& field_name = String::Handle();
Object& field_value = Object::Handle();
for (int i = 0; i < fields.Length(); i++) {
field ^= fields.At(i);
if (field.is_static()) {
field_name = field.name();
field_value = GetStaticField(cls, field_name);
field_list.Add(field_name);
field_list.Add(field_value);
}
}
return Array::MakeArray(field_list);
}
void Debugger::VisitObjectPointers(ObjectPointerVisitor* visitor) {
ASSERT(visitor != NULL);
SourceBreakpoint* bpt = src_breakpoints_;
while (bpt != NULL) {
bpt->VisitObjectPointers(visitor);
bpt = bpt->next();
}
CodeBreakpoint* cbpt = code_breakpoints_;
while (cbpt != NULL) {
cbpt->VisitObjectPointers(visitor);
cbpt = cbpt->next();
}
}
static void DefaultBreakpointHandler(SourceBreakpoint* bpt,
DebuggerStackTrace* stack) {
String& var_name = String::Handle();
Instance& value = Instance::Handle();
for (intptr_t i = 0; i < stack->Length(); i++) {
ActivationFrame* frame = stack->ActivationFrameAt(i);
OS::Print(" %d. %s\n",
i + 1, frame->ToCString());
intptr_t num_locals = frame->NumLocalVariables();
for (intptr_t i = 0; i < num_locals; i++) {
intptr_t token_pos, end_pos;
frame->VariableAt(i, &var_name, &token_pos, &end_pos, &value);
OS::Print(" var %s (pos %d) = %s\n",
var_name.ToCString(), token_pos, value.ToCString());
}
}
}
void Debugger::SetBreakpointHandler(BreakpointHandler* handler) {
bp_handler_ = handler;
if (bp_handler_ == NULL) {
bp_handler_ = &DefaultBreakpointHandler;
}
}
void Debugger::BreakpointCallback() {
ASSERT(initialized_);
if (ignore_breakpoints_) {
return;
}
DartFrameIterator iterator;
StackFrame* frame = iterator.NextFrame();
ASSERT(frame != NULL && frame->IsDartFrame());
CodeBreakpoint* bpt = GetCodeBreakpoint(frame->pc());
ASSERT(bpt != NULL);
if (verbose) {
OS::Print(">>> %s breakpoint at %s:%d (Address %p)\n",
bpt->IsInternal() ? "hit internal" : "hit user",
bpt ? String::Handle(bpt->SourceUrl()).ToCString() : "?",
bpt ? bpt->LineNumber() : 0,
frame->pc());
}
DebuggerStackTrace* stack_trace = new DebuggerStackTrace(8);
while (frame != NULL) {
ASSERT(frame->IsValid());
ASSERT(frame->IsDartFrame());
ActivationFrame* activation =
new ActivationFrame(frame->pc(), frame->fp(), frame->sp());
stack_trace->AddActivation(activation);
frame = iterator.NextFrame();
}
resume_action_ = kContinue;
if (bp_handler_ != NULL) {
SourceBreakpoint* src_bpt = bpt->src_bpt();
(*bp_handler_)(src_bpt, stack_trace);
}
if (resume_action_ == kContinue) {
RemoveInternalBreakpoints();
} else if (resume_action_ == kStepOver) {
Function& func = Function::Handle(bpt->function());
if (bpt->breakpoint_kind_ == PcDescriptors::kReturn) {
// If we are at the function return, do a StepOut action.
if (stack_trace->Length() > 1) {
ActivationFrame* caller = stack_trace->ActivationFrameAt(1);
func = caller->DartFunction().raw();
}
}
RemoveInternalBreakpoints(); // *bpt is now invalid.
InstrumentForStepping(func);
} else if (resume_action_ == kStepInto) {
if (bpt->breakpoint_kind_ == PcDescriptors::kIcCall) {
int num_args, num_named_args;
uword target;
CodePatcher::GetInstanceCallAt(bpt->pc_, NULL,
&num_args, &num_named_args, &target);
RemoveInternalBreakpoints(); // *bpt is now invalid.
ActivationFrame* top_frame = stack_trace->ActivationFrameAt(0);
Instance& receiver = Instance::Handle(
top_frame->GetInstanceCallReceiver(num_args));
Code& code = Code::Handle(
ResolveCompileInstanceCallTarget(isolate_, receiver));
if (!code.IsNull()) {
Function& callee = Function::Handle(code.function());
InstrumentForStepping(callee);
}
} else if (bpt->breakpoint_kind_ == PcDescriptors::kFuncCall) {
Function& callee = Function::Handle();
uword target;
CodePatcher::GetStaticCallAt(bpt->pc_, &callee, &target);
RemoveInternalBreakpoints(); // *bpt is now invalid.
InstrumentForStepping(callee);
} else {
ASSERT(bpt->breakpoint_kind_ == PcDescriptors::kReturn);
RemoveInternalBreakpoints(); // *bpt is now invalid.
// Treat like stepping out to caller.
if (stack_trace->Length() > 1) {
ActivationFrame* caller = stack_trace->ActivationFrameAt(1);
InstrumentForStepping(caller->DartFunction());
}
}
} else {
ASSERT(resume_action_ == kStepOut);
RemoveInternalBreakpoints(); // *bpt is now invalid.
// Set stepping breakpoints in the caller.
if (stack_trace->Length() > 1) {
ActivationFrame* caller = stack_trace->ActivationFrameAt(1);
InstrumentForStepping(caller->DartFunction());
}
}
}
void Debugger::Initialize(Isolate* isolate) {
if (initialized_) {
return;
}
isolate_ = isolate;
initialized_ = true;
SetBreakpointHandler(DefaultBreakpointHandler);
}
void Debugger::NotifyCompilation(const Function& func) {
if (src_breakpoints_ == NULL) {
// Return with minimal overhead if there are no breakpoints.
return;
}
Function& lookup_function = Function::Handle(func.raw());
if (func.IsImplicitClosureFunction()) {
// If the newly compiled function is a an implicit closure (a closure that
// was formed by assigning a static or instance method to a function
// object), we need to use the closure's parent function to see whether
// there are any breakpoints. The parent function is the actual method on
// which the user sets breakpoints.
lookup_function = func.parent_function();
ASSERT(!lookup_function.IsNull());
}
SourceBreakpoint* bpt = src_breakpoints_;
while (bpt != NULL) {
if (lookup_function.raw() == bpt->function()) {
// Check if the breakpoint is inside a closure or local function
// within the newly compiled function.
Class& owner = Class::Handle(lookup_function.owner());
Function& closure =
Function::Handle(owner.LookupClosureFunction(bpt->token_index()));
if (!closure.IsNull() && (closure.raw() != lookup_function.raw())) {
if (verbose) {
OS::Print("Resetting pending breakpoint to function %s\n",
String::Handle(closure.name()).ToCString());
}
bpt->set_function(closure);
} else {
if (verbose) {
OS::Print("Enable pending breakpoint for function '%s'\n",
String::Handle(lookup_function.name()).ToCString());
}
// Set breakpoint in newly compiled code of function func.
CodeBreakpoint* cbpt = MakeCodeBreakpoint(func, bpt->token_index());
if (cbpt != NULL) {
cbpt->set_src_bpt(bpt);
}
}
bpt->Enable(); // Enables the code breakpoint as well.
}
bpt = bpt->next();
}
}
CodeBreakpoint* Debugger::GetCodeBreakpoint(uword breakpoint_address) {
CodeBreakpoint* bpt = code_breakpoints_;
while (bpt != NULL) {
if (bpt->pc() == breakpoint_address) {
return bpt;
}
bpt = bpt->next();
}
return NULL;
}
// Remove and delete the source breakpoint bpt and its associated
// code breakpoints.
void Debugger::RemoveBreakpoint(SourceBreakpoint* bpt) {
ASSERT(src_breakpoints_ != NULL);
SourceBreakpoint* prev_bpt = NULL;
SourceBreakpoint* curr_bpt = src_breakpoints_;
while (curr_bpt != NULL) {
if (bpt == curr_bpt) {
if (prev_bpt == NULL) {
src_breakpoints_ = src_breakpoints_->next();
} else {
prev_bpt->set_next(curr_bpt->next());
}
// Remove the code breakpoints associated with the source breakpoint.
RemoveCodeBreakpoints(bpt);
delete bpt;
return;
}
prev_bpt = curr_bpt;
curr_bpt = curr_bpt->next();
}
// bpt is not a registered breakpoint, nothing to do.
}
// Remove and delete the code breakpoints that are associated with given
// source breakpoint bpt. If bpt is null, remove the internal breakpoints.
void Debugger::RemoveCodeBreakpoints(SourceBreakpoint* src_bpt) {
CodeBreakpoint* prev_bpt = NULL;
CodeBreakpoint* curr_bpt = code_breakpoints_;
while (curr_bpt != NULL) {
if (curr_bpt->src_bpt() == src_bpt) {
if (prev_bpt == NULL) {
code_breakpoints_ = code_breakpoints_->next();
} else {
prev_bpt->set_next(curr_bpt->next());
}
CodeBreakpoint* temp_bpt = curr_bpt;
curr_bpt = curr_bpt->next();
temp_bpt->Disable();
delete temp_bpt;
} else {
prev_bpt = curr_bpt;
curr_bpt = curr_bpt->next();
}
}
}
// Remove and delete all breakpoints that are not associated with a
// user-defined source breakpoint.
void Debugger::RemoveInternalBreakpoints() {
RemoveCodeBreakpoints(NULL);
}
SourceBreakpoint* Debugger::GetSourceBreakpoint(const Function& func,
intptr_t token_index) {
SourceBreakpoint* bpt = src_breakpoints_;
while (bpt != NULL) {
if ((bpt->function() == func.raw()) &&
(bpt->token_index() == token_index)) {
return bpt;
}
bpt = bpt->next();
}
return NULL;
}
void Debugger::RegisterSourceBreakpoint(SourceBreakpoint* bpt) {
ASSERT(bpt->next() == NULL);
bpt->set_next(src_breakpoints_);
src_breakpoints_ = bpt;
}
void Debugger::RegisterCodeBreakpoint(CodeBreakpoint* bpt) {
ASSERT(bpt->next() == NULL);
bpt->set_next(code_breakpoints_);
code_breakpoints_ = bpt;
}
} // namespace dart