The current record macros already log the function being called. This patch extends the macros to also log their input arguments and removes explicit logging from the SB API. This might degrade the amount of information in some cases (because of smarter casts or efforts to log return values). However I think this is outweighed by the increased coverage and consistency. Furthermore, using the reproducer infrastructure, diagnosing bugs in the API layer should become much easier compared to relying on log messages. Differential revision: https://reviews.llvm.org/D59101 llvm-svn: 355649
201 lines
5.1 KiB
C++
201 lines
5.1 KiB
C++
//===-- SBValueList.cpp -----------------------------------------*- C++ -*-===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#include "lldb/API/SBValueList.h"
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#include "SBReproducerPrivate.h"
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#include "lldb/API/SBStream.h"
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#include "lldb/API/SBValue.h"
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#include "lldb/Core/ValueObjectList.h"
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#include <vector>
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using namespace lldb;
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using namespace lldb_private;
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class ValueListImpl {
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public:
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ValueListImpl() : m_values() {}
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ValueListImpl(const ValueListImpl &rhs) : m_values(rhs.m_values) {}
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ValueListImpl &operator=(const ValueListImpl &rhs) {
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if (this == &rhs)
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return *this;
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m_values = rhs.m_values;
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return *this;
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}
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uint32_t GetSize() { return m_values.size(); }
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void Append(const lldb::SBValue &sb_value) { m_values.push_back(sb_value); }
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void Append(const ValueListImpl &list) {
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for (auto val : list.m_values)
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Append(val);
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}
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lldb::SBValue GetValueAtIndex(uint32_t index) {
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if (index >= GetSize())
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return lldb::SBValue();
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return m_values[index];
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}
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lldb::SBValue FindValueByUID(lldb::user_id_t uid) {
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for (auto val : m_values) {
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if (val.IsValid() && val.GetID() == uid)
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return val;
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}
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return lldb::SBValue();
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}
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lldb::SBValue GetFirstValueByName(const char *name) const {
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if (name) {
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for (auto val : m_values) {
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if (val.IsValid() && val.GetName() && strcmp(name, val.GetName()) == 0)
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return val;
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}
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}
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return lldb::SBValue();
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}
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private:
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std::vector<lldb::SBValue> m_values;
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};
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SBValueList::SBValueList() : m_opaque_up() {
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LLDB_RECORD_CONSTRUCTOR_NO_ARGS(SBValueList);
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}
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SBValueList::SBValueList(const SBValueList &rhs) : m_opaque_up() {
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LLDB_RECORD_CONSTRUCTOR(SBValueList, (const lldb::SBValueList &), rhs);
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if (rhs.IsValid())
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m_opaque_up.reset(new ValueListImpl(*rhs));
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}
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SBValueList::SBValueList(const ValueListImpl *lldb_object_ptr) : m_opaque_up() {
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if (lldb_object_ptr)
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m_opaque_up.reset(new ValueListImpl(*lldb_object_ptr));
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}
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SBValueList::~SBValueList() {}
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bool SBValueList::IsValid() const {
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LLDB_RECORD_METHOD_CONST_NO_ARGS(bool, SBValueList, IsValid);
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return (m_opaque_up != NULL);
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}
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void SBValueList::Clear() {
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LLDB_RECORD_METHOD_NO_ARGS(void, SBValueList, Clear);
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m_opaque_up.reset();
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}
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const SBValueList &SBValueList::operator=(const SBValueList &rhs) {
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LLDB_RECORD_METHOD(const lldb::SBValueList &,
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SBValueList, operator=,(const lldb::SBValueList &), rhs);
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if (this != &rhs) {
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if (rhs.IsValid())
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m_opaque_up.reset(new ValueListImpl(*rhs));
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else
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m_opaque_up.reset();
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}
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return *this;
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}
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ValueListImpl *SBValueList::operator->() { return m_opaque_up.get(); }
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ValueListImpl &SBValueList::operator*() { return *m_opaque_up; }
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const ValueListImpl *SBValueList::operator->() const {
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return m_opaque_up.get();
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}
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const ValueListImpl &SBValueList::operator*() const { return *m_opaque_up; }
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void SBValueList::Append(const SBValue &val_obj) {
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LLDB_RECORD_METHOD(void, SBValueList, Append, (const lldb::SBValue &),
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val_obj);
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CreateIfNeeded();
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m_opaque_up->Append(val_obj);
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}
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void SBValueList::Append(lldb::ValueObjectSP &val_obj_sp) {
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if (val_obj_sp) {
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CreateIfNeeded();
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m_opaque_up->Append(SBValue(val_obj_sp));
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}
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}
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void SBValueList::Append(const lldb::SBValueList &value_list) {
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LLDB_RECORD_METHOD(void, SBValueList, Append, (const lldb::SBValueList &),
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value_list);
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if (value_list.IsValid()) {
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CreateIfNeeded();
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m_opaque_up->Append(*value_list);
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}
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}
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SBValue SBValueList::GetValueAtIndex(uint32_t idx) const {
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LLDB_RECORD_METHOD_CONST(lldb::SBValue, SBValueList, GetValueAtIndex,
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(uint32_t), idx);
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SBValue sb_value;
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if (m_opaque_up)
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sb_value = m_opaque_up->GetValueAtIndex(idx);
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return LLDB_RECORD_RESULT(sb_value);
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}
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uint32_t SBValueList::GetSize() const {
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LLDB_RECORD_METHOD_CONST_NO_ARGS(uint32_t, SBValueList, GetSize);
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uint32_t size = 0;
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if (m_opaque_up)
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size = m_opaque_up->GetSize();
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return size;
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}
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void SBValueList::CreateIfNeeded() {
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if (m_opaque_up == NULL)
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m_opaque_up.reset(new ValueListImpl());
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}
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SBValue SBValueList::FindValueObjectByUID(lldb::user_id_t uid) {
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LLDB_RECORD_METHOD(lldb::SBValue, SBValueList, FindValueObjectByUID,
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(lldb::user_id_t), uid);
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SBValue sb_value;
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if (m_opaque_up)
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sb_value = m_opaque_up->FindValueByUID(uid);
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return LLDB_RECORD_RESULT(sb_value);
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}
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SBValue SBValueList::GetFirstValueByName(const char *name) const {
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LLDB_RECORD_METHOD_CONST(lldb::SBValue, SBValueList, GetFirstValueByName,
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(const char *), name);
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SBValue sb_value;
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if (m_opaque_up)
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sb_value = m_opaque_up->GetFirstValueByName(name);
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return LLDB_RECORD_RESULT(sb_value);
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}
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void *SBValueList::opaque_ptr() { return m_opaque_up.get(); }
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ValueListImpl &SBValueList::ref() {
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CreateIfNeeded();
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return *m_opaque_up;
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}
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