1 /*
2 * Copyright (c) 2021 Huawei Device Co., Ltd.
3 * Licensed under the Apache License, Version 2.0 (the "License");
4 * you may not use this file except in compliance with the License.
5 * You may obtain a copy of the License at
6 *
7 * http://www.apache.org/licenses/LICENSE-2.0
8 *
9 * Unless required by applicable law or agreed to in writing, software
10 * distributed under the License is distributed on an "AS IS" BASIS,
11 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12 * See the License for the specific language governing permissions and
13 * limitations under the License.
14 */
15
16 #include "ecmascript/module/js_module_namespace.h"
17
18 #include "ecmascript/global_env.h"
19 #include "ecmascript/js_array.h"
20 #include "ecmascript/object_factory-inl.h"
21 #include "ecmascript/module/js_module_deregister.h"
22 #include "ecmascript/module/js_module_record.h"
23 #include "ecmascript/module/js_module_source_text.h"
24 #include "ecmascript/base/string_helper.h"
25
26 namespace panda::ecmascript {
ModuleNamespaceCreate(JSThread * thread,const JSHandle<JSTaggedValue> & module,const JSHandle<TaggedArray> & exports)27 JSHandle<ModuleNamespace> ModuleNamespace::ModuleNamespaceCreate(JSThread *thread,
28 const JSHandle<JSTaggedValue> &module,
29 const JSHandle<TaggedArray> &exports)
30 {
31 auto globalConst = thread->GlobalConstants();
32 // 1. Assert: module is a Module Record.
33 ASSERT(module->IsModuleRecord());
34 // 2. Assert: module.[[Namespace]] is undefined.
35 JSHandle<ModuleRecord> moduleRecord = JSHandle<ModuleRecord>::Cast(module);
36 ASSERT(ModuleRecord::GetNamespace(moduleRecord.GetTaggedValue()).IsUndefined());
37 // 3. Assert: exports is a List of String values.
38 // 4. Let M be a newly created object.
39 // 5. Set M's essential internal methods to the definitions specified in 9.4.6.
40 ObjectFactory *factory = thread->GetEcmaVM()->GetFactory();
41 JSHandle<ModuleNamespace> mNp = factory->NewModuleNamespace();
42 // 6. Set M.[[Module]] to module.
43 mNp->SetModule(thread, module);
44 // 7. Let sortedExports be a new List containing the same values as the list exports where the values
45 // are ordered as if an Array of the same values had been sorted using
46 // Array.prototype.sort using undefined as comparefn.
47 JSHandle<JSArray> exportsArray = JSArray::CreateArrayFromList(thread, exports);
48 JSHandle<JSTaggedValue> sortedExports = JSHandle<JSTaggedValue>::Cast(exportsArray);
49 JSHandle<JSTaggedValue> fn = globalConst->GetHandledUndefined();
50 JSArray::Sort(thread, sortedExports, fn);
51 // 8. Set M.[[Exports]] to sortedExports.
52 mNp->SetExports(thread, sortedExports);
53 // 9. Create own properties of M corresponding to the definitions in 26.3.
54
55 JSHandle<JSTaggedValue> toStringTag = thread->GetEcmaVM()->GetGlobalEnv()->GetToStringTagSymbol();
56 JSHandle<JSTaggedValue> moduleString = globalConst->GetHandledModuleString();
57 PropertyDescriptor des(thread, moduleString, false, false, false);
58 JSHandle<JSObject> mNpObj = JSHandle<JSObject>::Cast(mNp);
59 JSObject::DefineOwnProperty(thread, mNpObj, toStringTag, des);
60 // 10. Set module.[[Namespace]] to M.
61 SetModuleDeregisterProcession(thread, mNp, ModuleDeregister::FreeModuleRecord);
62 ModuleRecord::SetNamespace(thread, moduleRecord.GetTaggedValue(), mNp.GetTaggedValue());
63 mNp->GetJSHClass()->SetExtensible(false);
64 return mNp;
65 }
66
GetProperty(JSThread * thread,const JSHandle<JSTaggedValue> & obj,const JSHandle<JSTaggedValue> & key)67 OperationResult ModuleNamespace::GetProperty(JSThread *thread, const JSHandle<JSTaggedValue> &obj,
68 const JSHandle<JSTaggedValue> &key)
69 {
70 // 1. Assert: IsPropertyKey(P) is true.
71 ASSERT_PRINT(JSTaggedValue::IsPropertyKey(key), "Key is not a property key");
72 // 2. If Type(P) is Symbol, then
73 // a. Return ? OrdinaryGet(O, P, Receiver).
74 if (key->IsSymbol()) {
75 return JSObject::GetProperty(thread, obj, key);
76 }
77 JSHandle<ModuleNamespace> moduleNamespace = JSHandle<ModuleNamespace>::Cast(obj);
78 // 3. Let exports be O.[[Exports]].
79 JSHandle<JSTaggedValue> exports(thread, moduleNamespace->GetExports());
80 // 4. If P is not an element of exports, return undefined.
81 if (exports->IsUndefined()) {
82 return OperationResult(thread, thread->GlobalConstants()->GetUndefined(), PropertyMetaData(false));
83 }
84 if (!JSArray::IncludeInSortedValue(thread, exports, key)) {
85 return OperationResult(thread, thread->GlobalConstants()->GetUndefined(), PropertyMetaData(false));
86 }
87 // 5. Let m be O.[[Module]].
88 JSHandle<SourceTextModule> mm(thread, moduleNamespace->GetModule());
89 // 6. Let binding be ! m.ResolveExport(P, « »).
90 CVector<std::pair<JSHandle<SourceTextModule>, JSHandle<JSTaggedValue>>> resolveSet;
91 JSHandle<JSTaggedValue> binding = SourceTextModule::ResolveExport(thread, mm, key, resolveSet);
92 // 7. Assert: binding is a ResolvedBinding Record.
93 // Adapter new module
94 ASSERT(binding->IsResolvedBinding() || binding->IsResolvedIndexBinding());
95 JSTaggedValue result;
96 // 8. Let targetModule be binding.[[Module]].
97 if (binding->IsResolvedBinding()) {
98 JSHandle<ResolvedBinding> resolvedBind = JSHandle<ResolvedBinding>::Cast(binding);
99 JSTaggedValue targetModule = resolvedBind->GetModule();
100 // 9. Assert: targetModule is not undefined.
101 ASSERT(!targetModule.IsUndefined());
102 if (UNLIKELY(SourceTextModule::IsNativeModule(mm->GetTypes()))) {
103 result = SourceTextModule::Cast(mm.GetTaggedValue())->
104 GetNativeModuleValue(thread, resolvedBind);
105 } else {
106 result = SourceTextModule::Cast(targetModule.GetTaggedObject())->
107 GetModuleValue(thread, resolvedBind->GetBindingName(), true);
108 }
109 } else {
110 JSHandle<ResolvedIndexBinding> resolvedBind = JSHandle<ResolvedIndexBinding>::Cast(binding);
111 JSTaggedValue targetModule = resolvedBind->GetModule();
112 // 9. Assert: targetModule is not undefined.
113 ASSERT(!targetModule.IsUndefined());
114 if (UNLIKELY(SourceTextModule::IsNativeModule(mm->GetTypes()))) {
115 result = SourceTextModule::Cast(mm.GetTaggedValue())->
116 GetNativeModuleValue(thread, resolvedBind);
117 } else {
118 result = SourceTextModule::Cast(targetModule.GetTaggedObject())->
119 GetModuleValue(thread, resolvedBind->GetIndex(), true);
120 }
121 }
122 return OperationResult(thread, result, PropertyMetaData(true));
123 }
OwnPropertyKeys(JSThread * thread,const JSHandle<JSTaggedValue> & obj)124 JSHandle<TaggedArray> ModuleNamespace::OwnPropertyKeys(JSThread *thread, const JSHandle<JSTaggedValue> &obj)
125 {
126 ASSERT(obj->IsModuleNamespace());
127 // 1. Let exports be a copy of O.[[Exports]].
128 JSHandle<ModuleNamespace> moduleNamespace = JSHandle<ModuleNamespace>::Cast(obj);
129 JSHandle<JSTaggedValue> exports(thread, moduleNamespace->GetExports());
130 JSHandle<TaggedArray> exportsArray = JSArray::ToTaggedArray(thread, exports);
131 if (!moduleNamespace->ValidateKeysAvailable(thread, exportsArray)) {
132 return exportsArray;
133 }
134
135 // 2. Let symbolKeys be ! OrdinaryOwnPropertyKeys(O).
136 JSHandle<TaggedArray> symbolKeys = JSObject::GetOwnPropertyKeys(thread, JSHandle<JSObject>(obj));
137 // 3. Append all the entries of symbolKeys to the end of exports.
138 JSHandle<TaggedArray> result = TaggedArray::Append(thread, exportsArray, symbolKeys);
139 // 4. Return exports.
140 return result;
141 }
142
OwnEnumPropertyKeys(JSThread * thread,const JSHandle<JSTaggedValue> & obj)143 JSHandle<TaggedArray> ModuleNamespace::OwnEnumPropertyKeys(JSThread *thread, const JSHandle<JSTaggedValue> &obj)
144 {
145 ASSERT(obj->IsModuleNamespace());
146 // 1. Let exports be a copy of O.[[Exports]].
147 JSHandle<ModuleNamespace> moduleNamespace = JSHandle<ModuleNamespace>::Cast(obj);
148 JSHandle<JSTaggedValue> exports(thread, moduleNamespace->GetExports());
149 JSHandle<TaggedArray> exportsArray = JSArray::ToTaggedArray(thread, exports);
150 if (!moduleNamespace->ValidateKeysAvailable(thread, exportsArray)) {
151 return exportsArray;
152 }
153
154 // 2. Let symbolKeys be ! OrdinaryOwnPropertyKeys(O).
155 JSHandle<TaggedArray> symbolKeys = JSObject::GetOwnEnumPropertyKeys(thread, JSHandle<JSObject>(obj));
156 // 3. Append all the entries of symbolKeys to the end of exports.
157 JSHandle<TaggedArray> result = TaggedArray::Append(thread, exportsArray, symbolKeys);
158 // 4. Return exports.
159 return result;
160 }
161
PreventExtensions()162 bool ModuleNamespace::PreventExtensions()
163 {
164 return true;
165 }
166
DefineOwnProperty(JSThread * thread,const JSHandle<JSTaggedValue> & obj,const JSHandle<JSTaggedValue> & key,PropertyDescriptor desc)167 bool ModuleNamespace::DefineOwnProperty(JSThread *thread,
168 const JSHandle<JSTaggedValue> &obj,
169 const JSHandle<JSTaggedValue> &key,
170 PropertyDescriptor desc)
171 {
172 ASSERT(obj->IsModuleNamespace());
173 // 1. If Type(P) is Symbol, return ! OrdinaryDefineOwnProperty(O, P, Desc).
174 if (key->IsSymbol()) {
175 bool res = JSObject::OrdinaryDefineOwnProperty(thread, JSHandle<JSObject>(obj), key, desc);
176 return res;
177 }
178
179 // 2. Let current be ? O.[[GetOwnProperty]](P).
180 PropertyDescriptor current(thread);
181 // 3. If current is undefined, return false.
182 if (!GetOwnProperty(thread, obj, key, current)) {
183 return false;
184 }
185 // 4. If Desc has a [[Configurable]] field and Desc.[[Configurable]] is true, return false.
186 // 5. If Desc has an [[Enumerable]] field and Desc.[[Enumerable]] is false, return false.
187 // 6. If IsAccessorDescriptor(Desc) is true, return false.
188 // 7. If Desc has a [[Writable]] field and Desc.[[Writable]] is false, return false.
189 if (desc.IsAccessorDescriptor()) {
190 return false;
191 }
192 if (desc.HasConfigurable() && desc.IsConfigurable()) {
193 return false;
194 }
195 if (desc.HasEnumerable() && !desc.IsEnumerable()) {
196 return false;
197 }
198 if (desc.HasWritable() && !desc.IsWritable()) {
199 return false;
200 }
201
202 // 8. If Desc has a [[Value]] field, return SameValue(Desc.[[Value]], current.[[Value]]).
203 if (desc.HasValue()) {
204 JSHandle<JSTaggedValue> descValue = desc.GetValue();
205 JSHandle<JSTaggedValue> currentValue = current.GetValue();
206 return JSTaggedValue::SameValue(descValue, currentValue);
207 }
208
209 // 9. Return true.
210 return true;
211 }
212
HasProperty(JSThread * thread,const JSHandle<JSTaggedValue> & obj,const JSHandle<JSTaggedValue> & key)213 bool ModuleNamespace::HasProperty(JSThread *thread, const JSHandle<JSTaggedValue> &obj,
214 const JSHandle<JSTaggedValue> &key)
215 {
216 ASSERT(obj->IsModuleNamespace());
217 // 1. If Type(P) is Symbol, return OrdinaryHasProperty(O, P).
218 if (key->IsSymbol()) {
219 return JSObject::HasProperty(thread, JSHandle<JSObject>(obj), key);
220 }
221 // 2. Let exports be O.[[Exports]].
222 JSHandle<ModuleNamespace> moduleNamespace = JSHandle<ModuleNamespace>::Cast(obj);
223 JSHandle<JSTaggedValue> exports(thread, moduleNamespace->GetExports());
224 // 3. If P is an element of exports, return true.
225 if (exports->IsUndefined()) {
226 return false;
227 }
228 if (JSArray::IncludeInSortedValue(thread, exports, key)) {
229 return true;
230 }
231 // 4. Return false.
232 return false;
233 }
234
SetPrototype(const JSHandle<JSTaggedValue> & obj,const JSHandle<JSTaggedValue> & proto)235 bool ModuleNamespace::SetPrototype([[maybe_unused]] const JSHandle<JSTaggedValue> &obj,
236 const JSHandle<JSTaggedValue> &proto)
237 {
238 ASSERT(obj->IsModuleNamespace());
239 // 1. Assert: Either Type(V) is Object or Type(V) is Null.
240 ASSERT(proto->IsECMAObject() || proto->IsNull());
241 return proto->IsNull();
242 }
243
GetOwnProperty(JSThread * thread,const JSHandle<JSTaggedValue> & obj,const JSHandle<JSTaggedValue> & key,PropertyDescriptor & desc)244 bool ModuleNamespace::GetOwnProperty(JSThread *thread, const JSHandle<JSTaggedValue> &obj,
245 const JSHandle<JSTaggedValue> &key, PropertyDescriptor &desc)
246 {
247 // 1. If Type(P) is Symbol, return OrdinaryGetOwnProperty(O, P).
248 if (key->IsSymbol()) {
249 return JSObject::GetOwnProperty(thread, JSHandle<JSObject>(obj), key, desc);
250 }
251 // 2. Let exports be O.[[Exports]].
252 JSHandle<ModuleNamespace> moduleNamespace = JSHandle<ModuleNamespace>::Cast(obj);
253 JSHandle<JSTaggedValue> exports(thread, moduleNamespace->GetExports());
254 // 3. If P is not an element of exports, return undefined.
255 if (exports->IsUndefined()) {
256 return false;
257 }
258 if (!JSArray::IncludeInSortedValue(thread, exports, key)) {
259 return false;
260 }
261 // 4. Let value be ? O.[[Get]](P, O).
262 JSHandle<JSTaggedValue> value = ModuleNamespace::GetProperty(thread, obj, key).GetValue();
263 RETURN_VALUE_IF_ABRUPT_COMPLETION(thread, false);
264 // 5. Return PropertyDescriptor {
265 // [[Value]]: value, [[Writable]]: true, [[Enumerable]]: true, [[Configurable]]: false }.
266 desc.SetValue(value);
267 desc.SetEnumerable(true);
268 desc.SetWritable(true);
269 desc.SetConfigurable(false);
270 return true;
271 }
272
SetProperty(JSThread * thread,bool mayThrow)273 bool ModuleNamespace::SetProperty(JSThread *thread, bool mayThrow)
274 {
275 if (mayThrow) {
276 THROW_TYPE_ERROR_AND_RETURN(thread, "Cannot assign to read only property of Object Module", false);
277 }
278 return false;
279 }
280
DeleteProperty(JSThread * thread,const JSHandle<JSTaggedValue> & obj,const JSHandle<JSTaggedValue> & key)281 bool ModuleNamespace::DeleteProperty(JSThread *thread, const JSHandle<JSTaggedValue> &obj,
282 const JSHandle<JSTaggedValue> &key)
283 {
284 ASSERT(obj->IsModuleNamespace());
285 // 1. Assert: IsPropertyKey(P) is true.
286 ASSERT_PRINT(JSTaggedValue::IsPropertyKey(key), "Key is not a property key");
287 // 2. If Type(P) is Symbol, then
288 // Return ? OrdinaryDelete(O, P).
289 if (key->IsSymbol()) {
290 return JSObject::DeleteProperty(thread, JSHandle<JSObject>(obj), key);
291 }
292 // 3. Let exports be O.[[Exports]].
293 JSHandle<ModuleNamespace> moduleNamespace = JSHandle<ModuleNamespace>::Cast(obj);
294 JSHandle<JSTaggedValue> exports(thread, moduleNamespace->GetExports());
295 // 4. If P is an element of exports, return false.
296 if (exports->IsUndefined()) {
297 return true;
298 }
299 if (JSArray::IncludeInSortedValue(thread, exports, key)) {
300 return false;
301 }
302 return true;
303 }
304
ValidateKeysAvailable(JSThread * thread,const JSHandle<TaggedArray> & exports)305 bool ModuleNamespace::ValidateKeysAvailable(JSThread *thread, const JSHandle<TaggedArray> &exports)
306 {
307 JSHandle<ModuleNamespace> moduleNamespace(thread, this);
308 JSHandle<SourceTextModule> mm(thread, moduleNamespace->GetModule());
309 uint32_t exportsLength = exports->GetLength();
310 for (uint32_t idx = 0; idx < exportsLength; idx++) {
311 JSHandle<JSTaggedValue> key(thread, exports->Get(idx));
312 CVector<std::pair<JSHandle<SourceTextModule>, JSHandle<JSTaggedValue>>> resolveSet;
313 JSHandle<JSTaggedValue> binding = SourceTextModule::ResolveExport(thread, mm, key, resolveSet);
314 // Adapter new module
315 ASSERT(binding->IsResolvedBinding() || binding->IsResolvedIndexBinding());
316 JSTaggedValue targetModule = JSTaggedValue::Undefined();
317 if (binding->IsResolvedBinding()) {
318 targetModule = JSHandle<ResolvedBinding>::Cast(binding)->GetModule();
319 } else if (binding->IsResolvedIndexBinding()) {
320 targetModule = JSHandle<ResolvedIndexBinding>::Cast(binding)->GetModule();
321 }
322 ASSERT(!targetModule.IsUndefined());
323 JSTaggedValue dictionary = SourceTextModule::Cast(targetModule.GetTaggedObject())->GetNameDictionary();
324 if (dictionary.IsUndefined()) {
325 THROW_REFERENCE_ERROR_AND_RETURN(thread, "module environment is undefined", false);
326 }
327 }
328 return true;
329 }
330
SetModuleDeregisterProcession(JSThread * thread,const JSHandle<ModuleNamespace> & nameSpace,const DeleteEntryPoint & callback)331 void ModuleNamespace::SetModuleDeregisterProcession(JSThread *thread, const JSHandle<ModuleNamespace> &nameSpace,
332 const DeleteEntryPoint &callback)
333 {
334 ObjectFactory *factory = thread->GetEcmaVM()->GetFactory();
335
336 JSHandle<SourceTextModule> module(thread, nameSpace->GetModule());
337 JSHandle<JSTaggedValue> moduleName(thread, SourceTextModule::GetModuleName(module.GetTaggedValue()));
338 CString moduleStr = ConvertToString(moduleName.GetTaggedValue());
339 int srcLength = strlen(moduleStr.c_str()) + 1;
340 auto moduleNameData = thread->GetEcmaVM()->GetNativeAreaAllocator()->AllocateBuffer(srcLength);
341 if (memcpy_s(moduleNameData, srcLength, moduleStr.c_str(), srcLength) != EOK) {
342 LOG_ECMA(FATAL) << "Failed to copy module name's data.";
343 UNREACHABLE();
344 }
345 char *tmpData = reinterpret_cast<char *>(moduleNameData);
346 tmpData[srcLength - 1] = '\0';
347 ASSERT(nameSpace->GetDeregisterProcession().IsUndefined());
348 JSHandle<JSNativePointer> registerPointer = factory->NewJSNativePointer(
349 reinterpret_cast<void *>(moduleNameData), callback, reinterpret_cast<void *>(thread), false, srcLength);
350 nameSpace->SetDeregisterProcession(thread, registerPointer.GetTaggedValue());
351 }
352 } // namespace panda::ecmascript
353