c1e4c29d0d
This diff eliminates setOpEqual() and appendOpEqual() from Variant, and it also removes several methods from ObjectData: o_assign_op(), o_argval(), setDummy(), init(), cloneDynamic(), o_setPublicWithRef(), o_i_set(), getRedeclaredParent(), and o_propForIteration(). This diff also makes several methods in ObjectData non-virtual: destruct(), o_toIterArray(), and o_getDynamicProperties(). To achieve this, some of the logic from Instance was moved to ObjectData. Finally, this diff gets rid of "hhvm/externals_stubs.cpp" and "runtime/eval/eval.cpp".
999 linhas
30 KiB
C++
999 linhas
30 KiB
C++
/*
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+----------------------------------------------------------------------+
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| HipHop for PHP |
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+----------------------------------------------------------------------+
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| Copyright (c) 2010- Facebook, Inc. (http://www.facebook.com) |
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+----------------------------------------------------------------------+
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| This source file is subject to version 3.01 of the PHP license, |
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| that is bundled with this package in the file LICENSE, and is |
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| available through the world-wide-web at the following url: |
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| http://www.php.net/license/3_01.txt |
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| If you did not receive a copy of the PHP license and are unable to |
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| obtain it through the world-wide-web, please send a note to |
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| license@php.net so we can mail you a copy immediately. |
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+----------------------------------------------------------------------+
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*/
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#include <runtime/base/complex_types.h>
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#include <runtime/base/type_conversions.h>
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#include <runtime/base/builtin_functions.h>
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#include <runtime/base/externals.h>
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#include <runtime/base/variable_serializer.h>
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#include <runtime/base/execution_context.h>
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#include <util/lock.h>
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#include <runtime/base/class_info.h>
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#include <runtime/ext/ext_closure.h>
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#include <runtime/ext/ext_continuation.h>
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#include <runtime/ext/ext_collection.h>
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#include <runtime/vm/class.h>
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#include <system/lib/systemlib.h>
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namespace HPHP {
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///////////////////////////////////////////////////////////////////////////////
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// statics
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// current maximum object identifier
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IMPLEMENT_THREAD_LOCAL_NO_CHECK_HOT(int, ObjectData::os_max_id);
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int ObjectData::GetMaxId() {
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return *(ObjectData::os_max_id.getCheck());
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}
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static StaticString s_offsetGet("offsetGet");
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static StaticString s___call("__call");
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static StaticString s___callStatic("__callStatic");
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static StaticString s_serialize("serialize");
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///////////////////////////////////////////////////////////////////////////////
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// constructor/destructor
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ObjectData::~ObjectData() {
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if (ArrayData* a = o_properties.get()) decRefArr(a);
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int &pmax = *os_max_id;
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if (o_id && o_id == pmax) {
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--pmax;
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}
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}
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HPHP::VM::Class*
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ObjectData::instanceof(const HPHP::VM::PreClass* pc) const {
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return m_cls->classof(pc);
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}
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bool ObjectData::instanceof(const HPHP::VM::Class* c) const {
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return m_cls->classof(c);
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}
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HOT_FUNC
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void ObjectData::destruct() {
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if (UNLIKELY(RuntimeOption::EnableObjDestructCall)) {
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assert(RuntimeOption::EnableObjDestructCall);
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g_vmContext->m_liveBCObjs.erase(this);
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}
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if (!noDestruct()) {
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setNoDestruct();
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if (auto meth = m_cls->getDtor()) {
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// We raise the refcount around the call to __destruct(). This is to
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// prevent the refcount from going to zero when the destructor returns.
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CountableHelper h(this);
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TypedValue retval;
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tvWriteNull(&retval);
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try {
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// Call the destructor method
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g_vmContext->invokeFunc(&retval, meth, null_array, this);
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} catch (...) {
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// Swallow any exceptions that escape the __destruct method
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handle_destructor_exception();
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}
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tvRefcountedDecRef(&retval);
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}
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}
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}
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///////////////////////////////////////////////////////////////////////////////
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// class info
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CStrRef ObjectData::o_getClassName() const {
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if (isResource()) return o_getClassNameHook();
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return *(const String*)(&m_cls->m_preClass->nameRef());
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}
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CStrRef ObjectData::o_getParentName() const {
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if (isResource()) return empty_string;
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return *(const String*)(&m_cls->m_preClass->parentRef());
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}
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CStrRef ObjectData::GetParentName(CStrRef cls) {
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const ClassInfo *classInfo = ClassInfo::FindClass(cls);
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if (classInfo) {
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CStrRef parentClass = classInfo->getParentClass();
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if (!parentClass.isNull()) {
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return parentClass;
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}
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}
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return empty_string;
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}
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CStrRef ObjectData::o_getClassNameHook() const {
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throw FatalErrorException("Class didnt provide a name");
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return empty_string;
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}
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HOT_FUNC
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bool ObjectData::o_instanceof(CStrRef s) const {
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HPHP::VM::Class* cls = VM::Unit::lookupClass(s.get());
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if (!cls) return false;
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return m_cls->classof(cls);
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}
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bool ObjectData::o_isClass(const char *s) const {
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return strcasecmp(s, o_getClassName()) == 0;
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}
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int64_t ObjectData::o_toInt64() const {
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raise_notice("Object of class %s could not be converted to int",
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o_getClassName().data());
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return 1;
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}
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///////////////////////////////////////////////////////////////////////////////
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// instance methods and properties
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static StaticString s_getIterator("getIterator");
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Object ObjectData::iterableObject(bool& isIterable,
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bool mayImplementIterator /* = true */) {
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assert(mayImplementIterator || !implementsIterator());
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if (mayImplementIterator && implementsIterator()) {
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isIterable = true;
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return Object(this);
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}
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Object obj(this);
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while (obj->instanceof(SystemLib::s_IteratorAggregateClass)) {
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Variant iterator = obj->o_invoke(s_getIterator, Array());
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if (!iterator.isObject()) break;
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ObjectData* o = iterator.getObjectData();
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if (o->instanceof(SystemLib::s_IteratorClass)) {
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isIterable = true;
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return o;
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}
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obj = iterator.getObjectData();
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}
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isIterable = false;
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return obj;
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}
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ArrayIter ObjectData::begin(CStrRef context /* = null_string */) {
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bool isIterable;
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if (isCollection()) {
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return ArrayIter(this);
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}
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Object iterable = iterableObject(isIterable);
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if (isIterable) {
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return ArrayIter(iterable, ArrayIter::transferOwner);
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} else {
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return ArrayIter(iterable->o_toIterArray(context));
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}
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}
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MutableArrayIter ObjectData::begin(Variant *key, Variant &val,
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CStrRef context /* = null_string */) {
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bool isIterable;
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if (isCollection()) {
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raise_error("Collection elements cannot be taken by reference");
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}
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Object iterable = iterableObject(isIterable);
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if (isIterable) {
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throw FatalErrorException("An iterator cannot be used with "
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"foreach by reference");
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}
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Array properties = iterable->o_toIterArray(context, true);
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ArrayData *arr = properties.detach();
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return MutableArrayIter(arr, key, val);
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}
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void ObjectData::initProperties(int nProp) {
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if (!o_properties.get()) ((HPHP::VM::Instance*)this)->initDynProps(nProp);
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}
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void *ObjectData::o_realPropTyped(CStrRef propName, int flags,
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CStrRef context, DataType *type) const {
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*type = KindOfUnknown;
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/*
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* Returns a pointer to a place for a property value. This should never
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* call the magic methods __get or __set. The flags argument describes the
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* behavior in cases where the named property is nonexistent or
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* inaccessible.
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*/
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HPHP::VM::Class* ctx = nullptr;
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if (!context.empty()) {
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ctx = VM::Unit::lookupClass(context.get());
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}
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HPHP::VM::Instance* thiz = (HPHP::VM::Instance*)(this); // sigh
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bool visible, accessible, unset;
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TypedValue* ret = (flags & RealPropNoDynamic)
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? thiz->getDeclProp(ctx, propName.get(), visible,
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accessible, unset)
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: thiz->getProp(ctx, propName.get(), visible,
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accessible, unset);
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if (ret == nullptr) {
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// Property is not declared, and not dynamically created yet.
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if (flags & RealPropCreate) {
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assert(!(flags & RealPropNoDynamic));
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if (o_properties.get() == nullptr) {
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thiz->initDynProps();
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}
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o_properties.get()->lvalPtr(propName,
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*(Variant**)(&ret), false, true);
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return (Variant*)ret;
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} else {
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return nullptr;
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}
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}
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// ret is non-NULL if we reach here
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assert(visible);
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if ((accessible && !unset) ||
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(flags & (RealPropUnchecked|RealPropExist))) {
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return (Variant*)ret;
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} else {
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return nullptr;
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}
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}
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Variant *ObjectData::o_realProp(CStrRef propName, int flags,
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CStrRef context /* = null_string */) const {
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DataType type;
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if (void *p = o_realPropTyped(propName, flags, context, &type)) {
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if (LIKELY(type == KindOfUnknown)) return (Variant*)p;
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if (flags & (RealPropCreate|RealPropWrite)) return nullptr;
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SystemGlobals* globals = get_system_globals();
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Variant *res = &globals->__realPropProxy;
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*res = ClassInfo::GetVariant(type, p);
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return res;
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}
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return nullptr;
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}
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Variant *ObjectData::o_realPropPublic(CStrRef propName, int flags) const {
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return o_realProp(propName, flags, empty_string);
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}
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bool ObjectData::o_exists(CStrRef propName,
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CStrRef context /* = null_string */) const {
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const Variant *t = o_realProp(propName, RealPropUnchecked, context);
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return t && t->isInitialized();
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}
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inline Variant ObjectData::o_getImpl(CStrRef propName, int flags,
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bool error /* = true */,
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CStrRef context /* = null_string */) {
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if (UNLIKELY(!*propName.data())) {
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throw_invalid_property_name(propName);
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}
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if (Variant *t = o_realProp(propName, flags, context)) {
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if (t->isInitialized())
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return *t;
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}
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if (getAttribute(UseGet)) {
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AttributeClearer a(UseGet, this);
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return t___get(propName);
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}
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if (error) {
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return o_getError(propName, context);
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}
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return null;
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}
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Variant ObjectData::o_get(CStrRef propName, bool error /* = true */,
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CStrRef context /* = null_string */) {
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return o_getImpl(propName, 0, error, context);
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}
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Variant ObjectData::o_getPublic(CStrRef propName, bool error /* = true */) {
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if (UNLIKELY(!*propName.data())) {
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throw_invalid_property_name(propName);
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}
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if (Variant *t = o_realPropPublic(propName, 0)) {
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if (t->isInitialized())
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return *t;
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}
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if (getAttribute(UseGet)) {
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AttributeClearer a(UseGet, this);
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return t___get(propName);
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}
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if (error) {
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return o_getError(propName, null_string);
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}
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return null;
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}
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Variant ObjectData::o_getUnchecked(CStrRef propName,
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CStrRef context /* = null_string */) {
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return o_getImpl(propName, RealPropUnchecked, true, context);
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}
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template <class T>
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inline ALWAYS_INLINE Variant ObjectData::o_setImpl(CStrRef propName, T v,
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bool forInit,
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CStrRef context) {
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if (UNLIKELY(!*propName.data())) {
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throw_invalid_property_name(propName);
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}
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bool useSet = !forInit && getAttribute(UseSet);
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int flags = useSet ? RealPropWrite : RealPropCreate | RealPropWrite;
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if (forInit) flags |= RealPropUnchecked;
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if (Variant *t = o_realProp(propName, flags, context)) {
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if (!useSet || t->isInitialized()) {
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*t = v;
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return variant(v);
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}
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}
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if (useSet) {
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AttributeClearer a(UseSet, this);
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t___set(propName, variant(v));
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return variant(v);
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}
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o_setError(propName, context);
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return variant(v);
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}
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Variant ObjectData::o_set(CStrRef propName, CVarRef v) {
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return o_setImpl<CVarRef>(propName, v, false, null_string);
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}
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Variant ObjectData::o_set(CStrRef propName, RefResult v) {
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return o_setRef(propName, variant(v), null_string);
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}
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Variant ObjectData::o_setRef(CStrRef propName, CVarRef v) {
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return o_setImpl<RefResult>(propName, ref(v), false, null_string);
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}
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Variant ObjectData::o_set(CStrRef propName, CVarRef v, CStrRef context) {
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return o_setImpl<CVarRef>(propName, v, false, context);
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}
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Variant ObjectData::o_set(CStrRef propName, RefResult v, CStrRef context) {
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return o_setRef(propName, variant(v), context);
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}
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Variant ObjectData::o_setRef(CStrRef propName, CVarRef v, CStrRef context) {
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return o_setImpl<RefResult>(propName, ref(v), false, context);
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}
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template<typename T>
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inline ALWAYS_INLINE Variant ObjectData::o_setPublicImpl(CStrRef propName,
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T v,
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bool forInit) {
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if (UNLIKELY(!*propName.data())) {
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throw_invalid_property_name(propName);
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}
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bool useSet = !forInit && getAttribute(UseSet);
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int flags = useSet ? RealPropWrite : RealPropCreate | RealPropWrite;
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if (forInit) flags |= RealPropUnchecked;
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if (Variant *t = o_realPropPublic(propName, flags)) {
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if (!useSet || t->isInitialized()) {
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*t = v;
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return variant(v);
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}
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}
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if (useSet) {
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AttributeClearer a(UseSet, this);
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t___set(propName, variant(v));
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return variant(v);
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}
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o_setError(propName, null_string);
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return variant(v);
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}
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Variant ObjectData::o_setPublic(CStrRef propName, CVarRef v) {
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return o_setPublicImpl<CVarRef>(propName, v, false);
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}
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Variant ObjectData::o_setPublic(CStrRef propName, RefResult v) {
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return o_setPublicRef(propName, variant(v));
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}
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Variant ObjectData::o_setPublicRef(CStrRef propName, CVarRef v) {
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return o_setPublicImpl<CVarStrongBind>(propName, strongBind(v), false);
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}
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Variant ObjectData::o_i_setPublicWithRef(CStrRef propName, CVarRef v) {
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return o_setPublicImpl<CVarWithRefBind>(propName, withRefBind(v), true);
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}
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HOT_FUNC
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void ObjectData::o_setArray(CArrRef properties) {
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for (ArrayIter iter(properties); iter; ++iter) {
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String key = iter.first().toString();
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if (key.empty() || key.charAt(0) != '\0') {
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// non-private property
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CVarRef secondRef = iter.secondRef();
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o_i_setPublicWithRef(key, secondRef);
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}
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}
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}
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void ObjectData::o_getArray(Array &props, bool pubOnly /* = false */) const {
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const Array& arr = o_properties.asArray();
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if (!arr.empty()) {
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for (ArrayIter it(arr); !it.end(); it.next()) {
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Variant key = it.first();
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CVarRef value = it.secondRef();
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props.lvalAt(key, AccessFlags::Key).setWithRef(value);
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}
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}
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}
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Object ObjectData::FromArray(ArrayData *properties) {
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ObjectData *ret = SystemLib::AllocStdClassObject();
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if (!properties->empty()) {
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ret->o_properties.asArray() = properties;
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}
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return ret;
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}
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CVarRef ObjectData::set(CStrRef s, CVarRef v) {
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o_set(s, v);
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return v;
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}
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Variant &ObjectData::o_lval(CStrRef propName, CVarRef tmpForGet,
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CStrRef context /* = null_string */) {
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if (UNLIKELY(!*propName.data())) {
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throw_invalid_property_name(propName);
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}
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bool useGet = getAttribute(UseGet);
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int flags = useGet ? RealPropWrite : RealPropCreate | RealPropWrite;
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if (Variant *t = o_realProp(propName, flags, context)) {
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if (!useGet || t->isInitialized()) {
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return *t;
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}
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}
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Variant &ret = const_cast<Variant&>(tmpForGet);
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if (LIKELY(useGet)) {
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AttributeClearer a(UseGet, this);
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if (getAttribute(HasLval)) {
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return *___lval(propName);
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}
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ret = t___get(propName);
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return ret;
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}
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/* we only get here if its a protected property
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under hphpi - and then o_getError fatals
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with a suitable message
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*/
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ret = o_getError(propName, context);
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return ret;
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}
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Variant *ObjectData::o_weakLval(CStrRef propName,
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CStrRef context /* = null_string */) {
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if (Variant *t = o_realProp(propName, RealPropWrite|RealPropUnchecked,
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context)) {
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if (t->isInitialized()) {
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return t;
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}
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}
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return nullptr;
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}
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Array ObjectData::o_toArray() const {
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Array ret(ArrayData::Create());
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ClassInfo::GetArray(this, ret, ClassInfo::GetArrayAll);
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return ret;
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}
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Array ObjectData::o_toIterArray(CStrRef context,
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bool getRef /* = false */) {
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size_t size = m_cls->m_declPropNumAccessible +
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(o_properties.get() ? o_properties.get()->size() : 0);
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HphpArray* retval = NEW(HphpArray)(size);
|
|
VM::Class* ctx = nullptr;
|
|
if (!context.empty()) {
|
|
ctx = VM::Unit::lookupClass(context.get());
|
|
}
|
|
|
|
// Get all declared properties first, bottom-to-top in the inheritance
|
|
// hierarchy, in declaration order.
|
|
const VM::Class* klass = m_cls;
|
|
while (klass != nullptr) {
|
|
const VM::PreClass::Prop* props = klass->m_preClass->properties();
|
|
const size_t numProps = klass->m_preClass->numProperties();
|
|
|
|
for (size_t i = 0; i < numProps; ++i) {
|
|
auto key = const_cast<StringData*>(props[i].name());
|
|
bool visible, accessible, unset;
|
|
TypedValue* val = ((VM::Instance*)this)->getProp(
|
|
ctx, key, visible, accessible, unset);
|
|
if (accessible && val->m_type != KindOfUninit && !unset) {
|
|
if (getRef) {
|
|
if (val->m_type != KindOfRef) {
|
|
tvBox(val);
|
|
}
|
|
retval->nvBind(key, val);
|
|
} else {
|
|
retval->nvSet(key, val, false);
|
|
}
|
|
}
|
|
}
|
|
klass = klass->m_parent.get();
|
|
}
|
|
|
|
// Now get dynamic properties.
|
|
if (o_properties.get()) {
|
|
ssize_t iter = o_properties.get()->iter_begin();
|
|
while (iter != HphpArray::ElmIndEmpty) {
|
|
TypedValue key;
|
|
static_cast<HphpArray*>(o_properties.get())->nvGetKey(&key, iter);
|
|
iter = o_properties.get()->iter_advance(iter);
|
|
|
|
// You can get this if you cast an array to object. These properties must
|
|
// be dynamic because you can't declare a property with a non-string name.
|
|
if (UNLIKELY(!IS_STRING_TYPE(key.m_type))) {
|
|
assert(key.m_type == KindOfInt64);
|
|
TypedValue* val =
|
|
static_cast<HphpArray*>(o_properties.get())->nvGet(key.m_data.num);
|
|
if (getRef) {
|
|
if (val->m_type != KindOfRef) {
|
|
tvBox(val);
|
|
}
|
|
retval->nvBind(key.m_data.num, val);
|
|
} else {
|
|
retval->nvSet(key.m_data.num, val, false);
|
|
}
|
|
continue;
|
|
}
|
|
|
|
StringData* strKey = key.m_data.pstr;
|
|
TypedValue* val =
|
|
static_cast<HphpArray*>(o_properties.get())->nvGet(strKey);
|
|
if (getRef) {
|
|
if (val->m_type != KindOfRef) {
|
|
tvBox(val);
|
|
}
|
|
retval->nvBind(strKey, val);
|
|
} else {
|
|
retval->nvSet(strKey, val, false);
|
|
}
|
|
decRefStr(strKey);
|
|
}
|
|
}
|
|
|
|
return Array(retval);
|
|
}
|
|
|
|
Variant ObjectData::o_invoke(CStrRef s, CArrRef params,
|
|
strhash_t hash /* = -1 */,
|
|
bool fatal /* = true */) {
|
|
// TODO This duplicates some logic from vm_decode_function and
|
|
// vm_call_user_func, we should refactor this in the near future
|
|
ObjectData* this_ = this;
|
|
HPHP::VM::Class* cls = getVMClass();
|
|
StringData* invName = nullptr;
|
|
// XXX The lookup below doesn't take context into account, so it will lead
|
|
// to incorrect behavior in some corner cases. o_invoke is gradually being
|
|
// removed from the HPHP runtime this should be ok for the short term.
|
|
const HPHP::VM::Func* f = cls->lookupMethod(s.get());
|
|
if (f && (f->attrs() & HPHP::VM::AttrStatic)) {
|
|
// If we found a method and its static, null out this_
|
|
this_ = nullptr;
|
|
} else if (!f) {
|
|
if (this_) {
|
|
// If this_ is non-null AND we could not find a method, try
|
|
// looking up __call in cls's method table
|
|
f = cls->lookupMethod(s___call.get());
|
|
}
|
|
if (!f) {
|
|
// Bail if we couldn't find the method or __call
|
|
o_invoke_failed(o_getClassName().data(), s.data(), fatal);
|
|
return null;
|
|
}
|
|
// We found __call! Stash the original name into invName.
|
|
assert(!(f->attrs() & HPHP::VM::AttrStatic));
|
|
invName = s.get();
|
|
invName->incRefCount();
|
|
}
|
|
assert(f);
|
|
Variant ret;
|
|
g_vmContext->invokeFunc((TypedValue*)&ret, f, params, this_, cls,
|
|
nullptr, invName);
|
|
return ret;
|
|
}
|
|
|
|
#define APPEND_1_ARGS(params) params.append(a0);
|
|
#define APPEND_2_ARGS(params) APPEND_1_ARGS(params); params.append(a1)
|
|
#define APPEND_3_ARGS(params) APPEND_2_ARGS(params); params.append(a2)
|
|
#define APPEND_4_ARGS(params) APPEND_3_ARGS(params); params.append(a3)
|
|
#define APPEND_5_ARGS(params) APPEND_4_ARGS(params); params.append(a4)
|
|
#define APPEND_6_ARGS(params) APPEND_5_ARGS(params); params.append(a5)
|
|
#define APPEND_7_ARGS(params) APPEND_6_ARGS(params); params.append(a6)
|
|
#define APPEND_8_ARGS(params) APPEND_7_ARGS(params); params.append(a7)
|
|
#define APPEND_9_ARGS(params) APPEND_8_ARGS(params); params.append(a8)
|
|
#define APPEND_10_ARGS(params) APPEND_9_ARGS(params); params.append(a9)
|
|
|
|
Variant ObjectData::o_invoke_few_args(CStrRef s, strhash_t hash, int count,
|
|
INVOKE_FEW_ARGS_IMPL_ARGS) {
|
|
Array params = Array::Create();
|
|
switch(count) {
|
|
case 1: APPEND_1_ARGS(params);
|
|
break;
|
|
case 2: APPEND_2_ARGS(params);
|
|
break;
|
|
case 3: APPEND_3_ARGS(params);
|
|
break;
|
|
#if INVOKE_FEW_ARGS_COUNT > 3
|
|
case 4: APPEND_4_ARGS(params);
|
|
break;
|
|
case 5: APPEND_5_ARGS(params);
|
|
break;
|
|
case 6: APPEND_6_ARGS(params);
|
|
break;
|
|
#if INVOKE_FEW_ARGS_COUNT > 6
|
|
case 7: APPEND_7_ARGS(params);
|
|
break;
|
|
case 8: APPEND_8_ARGS(params);
|
|
break;
|
|
case 9: APPEND_9_ARGS(params);
|
|
break;
|
|
case 10: APPEND_10_ARGS(params);
|
|
break;
|
|
#endif
|
|
#endif
|
|
default: not_implemented();
|
|
}
|
|
return o_invoke(s, params, hash);
|
|
}
|
|
|
|
Variant ObjectData::o_invoke_ex(CStrRef clsname, CStrRef s,
|
|
CArrRef params, bool fatal /* = true */) {
|
|
// TODO This duplicates some logic from vm_decode_function and
|
|
// vm_call_user_func, we should refactor this in the near future
|
|
ObjectData* this_ = this;
|
|
HPHP::VM::Class* cls = VM::Unit::lookupClass(clsname.get());
|
|
if (!cls || !getVMClass()->classof(cls)) {
|
|
o_invoke_failed(clsname.data(), s.data(), fatal);
|
|
return null;
|
|
}
|
|
StringData* invName = nullptr;
|
|
// XXX The lookup below doesn't take context into account, so it will lead
|
|
// to incorrect behavior in some corner cases. o_invoke is gradually being
|
|
// removed from the HPHP runtime this should be ok for the short term.
|
|
const HPHP::VM::Func* f = cls->lookupMethod(s.get());
|
|
if (f && (f->attrs() & HPHP::VM::AttrStatic)) {
|
|
// If we found a method and its static, null out this_
|
|
this_ = nullptr;
|
|
} else if (!f) {
|
|
if (this_) {
|
|
// If this_ is non-null AND we could not find a method, try
|
|
// looking up __call in cls's method table
|
|
f = cls->lookupMethod(s___call.get());
|
|
}
|
|
if (!f) {
|
|
// Bail if we couldn't find the method or __call
|
|
o_invoke_failed(clsname.data(), s.data(), fatal);
|
|
return null;
|
|
}
|
|
// We found __call! Stash the original name into invName.
|
|
assert(!(f->attrs() & HPHP::VM::AttrStatic));
|
|
invName = s.get();
|
|
invName->incRefCount();
|
|
}
|
|
assert(f);
|
|
Variant ret;
|
|
g_vmContext->invokeFunc((TypedValue*)&ret, f, params, this_, cls,
|
|
nullptr, invName);
|
|
return ret;
|
|
}
|
|
|
|
bool ObjectData::php_sleep(Variant &ret) {
|
|
setAttribute(HasSleep);
|
|
ret = t___sleep();
|
|
return getAttribute(HasSleep);
|
|
}
|
|
|
|
StaticString s_zero("\0", 1);
|
|
|
|
void ObjectData::serialize(VariableSerializer *serializer) const {
|
|
if (UNLIKELY(serializer->incNestedLevel((void*)this, true))) {
|
|
serializer->writeOverflow((void*)this, true);
|
|
} else {
|
|
serializeImpl(serializer);
|
|
}
|
|
serializer->decNestedLevel((void*)this);
|
|
}
|
|
|
|
void ObjectData::serializeImpl(VariableSerializer *serializer) const {
|
|
bool handleSleep = false;
|
|
Variant ret;
|
|
if (LIKELY(serializer->getType() == VariableSerializer::Serialize ||
|
|
serializer->getType() == VariableSerializer::APCSerialize)) {
|
|
if (instanceof(SystemLib::s_SerializableClass)) {
|
|
assert(!isCollection());
|
|
Variant ret =
|
|
const_cast<ObjectData*>(this)->o_invoke(s_serialize, Array(), -1);
|
|
if (ret.isString()) {
|
|
serializer->writeSerializableObject(o_getClassName(), ret.toString());
|
|
} else if (ret.isNull()) {
|
|
serializer->writeNull();
|
|
} else {
|
|
raise_error("%s::serialize() must return a string or NULL",
|
|
o_getClassName().data());
|
|
}
|
|
return;
|
|
}
|
|
handleSleep = const_cast<ObjectData*>(this)->php_sleep(ret);
|
|
} else if (UNLIKELY(serializer->getType() ==
|
|
VariableSerializer::DebuggerSerialize)) {
|
|
if (instanceof(SystemLib::s_SerializableClass)) {
|
|
assert(!isCollection());
|
|
try {
|
|
Variant ret =
|
|
const_cast<ObjectData*>(this)->o_invoke(s_serialize, Array(), -1);
|
|
if (ret.isString()) {
|
|
serializer->writeSerializableObject(o_getClassName(), ret.toString());
|
|
} else if (ret.isNull()) {
|
|
serializer->writeNull();
|
|
} else {
|
|
raise_warning("%s::serialize() must return a string or NULL",
|
|
o_getClassName().data());
|
|
serializer->writeNull();
|
|
}
|
|
} catch (...) {
|
|
// serialize() throws exception
|
|
raise_warning("%s::serialize() throws exception",
|
|
o_getClassName().data());
|
|
serializer->writeNull();
|
|
}
|
|
return;
|
|
}
|
|
try {
|
|
handleSleep = const_cast<ObjectData*>(this)->php_sleep(ret);
|
|
} catch (...) {
|
|
raise_warning("%s::sleep() throws exception", o_getClassName().data());
|
|
ret = null;
|
|
handleSleep = true;
|
|
}
|
|
}
|
|
if (UNLIKELY(handleSleep)) {
|
|
assert(!isCollection());
|
|
if (ret.isArray()) {
|
|
const ClassInfo *cls = ClassInfo::FindClass(o_getClassName());
|
|
Array wanted = Array::Create();
|
|
Array props = ret.toArray();
|
|
for (ArrayIter iter(props); iter; ++iter) {
|
|
String name = iter.second().toString();
|
|
if (o_exists(name, o_getClassName())) {
|
|
ClassInfo::PropertyInfo *p = cls->getPropertyInfo(name);
|
|
String propName = name;
|
|
if (p && (p->attribute & ClassInfo::IsPrivate)) {
|
|
propName = concat4(s_zero, o_getClassName(), s_zero, name);
|
|
}
|
|
wanted.set(propName, const_cast<ObjectData*>(this)->
|
|
o_getUnchecked(name, o_getClassName()));
|
|
} else {
|
|
raise_warning("\"%s\" returned as member variable from "
|
|
"__sleep() but does not exist", name.data());
|
|
wanted.set(name, null);
|
|
}
|
|
}
|
|
serializer->setObjectInfo(o_getClassName(), o_getId(), 'O');
|
|
wanted.serialize(serializer, true);
|
|
} else {
|
|
if (instanceof(c_Closure::s_cls)) {
|
|
if (serializer->getType() == VariableSerializer::APCSerialize) {
|
|
p_DummyClosure dummy(NEWOBJ(c_DummyClosure));
|
|
serializer->write(dummy);
|
|
} else if (serializer->getType() ==
|
|
VariableSerializer::DebuggerSerialize) {
|
|
serializer->write("Closure");
|
|
} else {
|
|
throw_fatal("Serialization of Closure is not allowed");
|
|
}
|
|
} else if (instanceof(c_Continuation::s_cls)) {
|
|
if (serializer->getType() == VariableSerializer::APCSerialize) {
|
|
p_DummyContinuation dummy(NEWOBJ(c_DummyContinuation));
|
|
serializer->write(dummy);
|
|
} else if (serializer->getType() ==
|
|
VariableSerializer::DebuggerSerialize) {
|
|
serializer->write("Continuation");
|
|
} else {
|
|
throw_fatal("Serialization of Continuation is not allowed");
|
|
}
|
|
} else {
|
|
raise_warning("serialize(): __sleep should return an array only "
|
|
"containing the names of instance-variables to "
|
|
"serialize");
|
|
null.serialize(serializer);
|
|
}
|
|
}
|
|
} else {
|
|
if (isCollection()) {
|
|
collectionSerialize(const_cast<ObjectData*>(this), serializer);
|
|
} else {
|
|
serializer->setObjectInfo(o_getClassName(), o_getId(), 'O');
|
|
o_toArray().serialize(serializer, true);
|
|
}
|
|
}
|
|
}
|
|
|
|
bool ObjectData::hasInternalReference(PointerSet &vars,
|
|
bool ds /* = false */) const {
|
|
if (isCollection()) {
|
|
return true;
|
|
}
|
|
return o_toArray().get()->hasInternalReference(vars, ds);
|
|
}
|
|
|
|
void ObjectData::dump() const {
|
|
o_toArray().dump();
|
|
}
|
|
|
|
ObjectData *ObjectData::clone() {
|
|
HPHP::VM::Instance* instance = static_cast<HPHP::VM::Instance*>(this);
|
|
return instance->cloneImpl();
|
|
}
|
|
|
|
Variant ObjectData::o_getError(CStrRef prop, CStrRef context) {
|
|
raise_notice("Undefined property: %s::$%s", o_getClassName().data(),
|
|
prop.data());
|
|
return null;
|
|
}
|
|
|
|
Variant ObjectData::o_setError(CStrRef prop, CStrRef context) {
|
|
return null;
|
|
}
|
|
|
|
///////////////////////////////////////////////////////////////////////////////
|
|
// magic methods that user classes can override, and these are default handlers
|
|
// or actions to take:
|
|
|
|
Variant ObjectData::t___destruct() {
|
|
// do nothing
|
|
return null;
|
|
}
|
|
|
|
Variant ObjectData::t___call(Variant v_name, Variant v_arguments) {
|
|
// do nothing
|
|
return null;
|
|
}
|
|
|
|
Variant ObjectData::t___set(Variant v_name, Variant v_value) {
|
|
// not called
|
|
return null;
|
|
}
|
|
|
|
Variant ObjectData::t___get(Variant v_name) {
|
|
// not called
|
|
return null;
|
|
}
|
|
|
|
Variant *ObjectData::___lval(Variant v_name) {
|
|
return nullptr;
|
|
}
|
|
|
|
Variant ObjectData::offsetGet(Variant key) {
|
|
assert(instanceof(SystemLib::s_ArrayAccessClass));
|
|
const VM::Func* method = m_cls->lookupMethod(s_offsetGet.get());
|
|
assert(method);
|
|
if (!method) {
|
|
return null;
|
|
}
|
|
Variant v;
|
|
g_vmContext->invokeFunc((TypedValue*)(&v), method,
|
|
CREATE_VECTOR1(key), this);
|
|
return v;
|
|
}
|
|
|
|
bool ObjectData::t___isset(Variant v_name) {
|
|
return false;
|
|
}
|
|
|
|
Variant ObjectData::t___unset(Variant v_name) {
|
|
// not called
|
|
return null;
|
|
}
|
|
|
|
bool ObjectData::o_propExists(CStrRef s, CStrRef context /* = null_string */) {
|
|
Variant *t = o_realProp(s, RealPropExist, context);
|
|
return t;
|
|
}
|
|
|
|
Variant ObjectData::t___sleep() {
|
|
clearAttribute(HasSleep);
|
|
return null;
|
|
}
|
|
|
|
Variant ObjectData::t___wakeup() {
|
|
// do nothing
|
|
return null;
|
|
}
|
|
|
|
String ObjectData::t___tostring() {
|
|
string msg = o_getClassName().data();
|
|
msg += "::__toString() was not defined";
|
|
throw BadTypeConversionException(msg.c_str());
|
|
}
|
|
|
|
Variant ObjectData::t___clone() {
|
|
// do nothing
|
|
return null;
|
|
}
|
|
|
|
///////////////////////////////////////////////////////////////////////////////
|
|
|
|
namespace {
|
|
|
|
template<int Idx>
|
|
struct FindIndex {
|
|
static int run(int size) {
|
|
if (size <= ObjectSizeTable<Idx>::value) {
|
|
return Idx;
|
|
}
|
|
return FindIndex<Idx + 1>::run(size);
|
|
}
|
|
};
|
|
|
|
template<>
|
|
struct FindIndex<NumObjectSizeClasses> {
|
|
static int run(int) {
|
|
return -1;
|
|
}
|
|
};
|
|
|
|
template<int Idx>
|
|
struct FindSize {
|
|
static int run(int idx) {
|
|
if (idx == Idx) {
|
|
return ObjectSizeTable<Idx>::value;
|
|
}
|
|
return FindSize<Idx + 1>::run(idx);
|
|
}
|
|
};
|
|
|
|
template<>
|
|
struct FindSize<NumObjectSizeClasses> {
|
|
static int run(int) {
|
|
not_reached();
|
|
}
|
|
};
|
|
|
|
}
|
|
|
|
int object_alloc_size_to_index(size_t size) {
|
|
return FindIndex<0>::run(size);
|
|
}
|
|
|
|
// This returns the maximum size for the size class
|
|
size_t object_alloc_index_to_size(int idx) {
|
|
return FindSize<0>::run(idx);
|
|
}
|
|
|
|
///////////////////////////////////////////////////////////////////////////////
|
|
}
|