/* * Copyright (c) 2016, 2020, Oracle and/or its affiliates. All rights reserved. * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER. * * This code is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License version 2 only, as * published by the Free Software Foundation. * * This code is distributed in the hope that it will be useful, but WITHOUT * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License * version 2 for more details (a copy is included in the LICENSE file that * accompanied this code). * * You should have received a copy of the GNU General Public License version * 2 along with this work; if not, write to the Free Software Foundation, * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA. * * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA * or visit www.oracle.com if you need additional information or have any * questions. * */ #include "precompiled.hpp" #include "jvm.h" #include "classfile/classFileParser.hpp" #include "classfile/classLoader.hpp" #include "classfile/classLoaderData.inline.hpp" #include "classfile/classLoaderDataShared.hpp" #include "classfile/javaAssertions.hpp" #include "classfile/javaClasses.hpp" #include "classfile/javaClasses.inline.hpp" #include "classfile/moduleEntry.hpp" #include "classfile/modules.hpp" #include "classfile/packageEntry.hpp" #include "classfile/stringTable.hpp" #include "classfile/symbolTable.hpp" #include "classfile/systemDictionary.hpp" #include "classfile/vmSymbols.hpp" #include "logging/log.hpp" #include "logging/logStream.hpp" #include "memory/metaspaceShared.hpp" #include "memory/resourceArea.hpp" #include "runtime/handles.inline.hpp" #include "runtime/javaCalls.hpp" #include "runtime/jniHandles.inline.hpp" #include "utilities/stringUtils.hpp" #include "utilities/utf8.hpp" static bool verify_module_name(const char *module_name, int len) { assert(module_name != NULL, "invariant"); return (len > 0 && len <= Symbol::max_length()); } static bool verify_package_name(const char* package_name, int len) { assert(package_name != NULL, "Package name derived from non-null jstring can't be NULL"); return (len > 0 && len <= Symbol::max_length() && ClassFileParser::verify_unqualified_name(package_name, len, ClassFileParser::LegalClass)); } static char* get_module_name(oop module, int& len, TRAPS) { oop name_oop = java_lang_Module::name(module); if (name_oop == NULL) { THROW_MSG_NULL(vmSymbols::java_lang_NullPointerException(), "Null module name"); } char* module_name = java_lang_String::as_utf8_string(name_oop, len); if (!verify_module_name(module_name, len)) { THROW_MSG_NULL(vmSymbols::java_lang_IllegalArgumentException(), err_msg("Invalid module name: %s", module_name)); } return module_name; } static Symbol* as_symbol(jstring str_object) { if (str_object == NULL) { return NULL; } int len; char* str = java_lang_String::as_utf8_string(JNIHandles::resolve_non_null(str_object), len); return SymbolTable::new_symbol(str, len); } ModuleEntryTable* Modules::get_module_entry_table(Handle h_loader) { // This code can be called during start-up, before the classLoader's classLoader data got // created. So, call register_loader() to make sure the classLoader data gets created. ClassLoaderData *loader_cld = SystemDictionary::register_loader(h_loader); return loader_cld->modules(); } static PackageEntryTable* get_package_entry_table(Handle h_loader) { // This code can be called during start-up, before the classLoader's classLoader data got // created. So, call register_loader() to make sure the classLoader data gets created. ClassLoaderData *loader_cld = SystemDictionary::register_loader(h_loader); return loader_cld->packages(); } static ModuleEntry* get_module_entry(jobject module, TRAPS) { oop m = JNIHandles::resolve_non_null(module); if (!java_lang_Module::is_instance(m)) { THROW_MSG_NULL(vmSymbols::java_lang_IllegalArgumentException(), "module is not an instance of type java.lang.Module"); } return java_lang_Module::module_entry(m); } static PackageEntry* get_locked_package_entry(ModuleEntry* module_entry, const char* package_name, int len, TRAPS) { assert(Module_lock->owned_by_self(), "should have the Module_lock"); assert(package_name != NULL, "Precondition"); TempNewSymbol pkg_symbol = SymbolTable::new_symbol(package_name, len); PackageEntryTable* package_entry_table = module_entry->loader_data()->packages(); assert(package_entry_table != NULL, "Unexpected null package entry table"); PackageEntry* package_entry = package_entry_table->locked_lookup_only(pkg_symbol); assert(package_entry == NULL || package_entry->module() == module_entry, "Unexpectedly found a package linked to another module"); return package_entry; } static PackageEntry* get_package_entry_by_name(Symbol* package, Handle h_loader, TRAPS) { if (package != NULL) { PackageEntryTable* const package_entry_table = get_package_entry_table(h_loader); assert(package_entry_table != NULL, "Unexpected null package entry table"); return package_entry_table->lookup_only(package); } return NULL; } bool Modules::is_package_defined(Symbol* package, Handle h_loader, TRAPS) { PackageEntry* res = get_package_entry_by_name(package, h_loader, CHECK_false); return res != NULL; } // Converts the String oop to an internal package // Will use the provided buffer if it's sufficiently large, otherwise allocates // a resource array // The length of the resulting string will be assigned to utf8_len static const char* as_internal_package(oop package_string, char* buf, int buflen, int& utf8_len) { char* package_name = java_lang_String::as_utf8_string_full(package_string, buf, buflen, utf8_len); // Turn all '/'s into '.'s for (int index = 0; index < utf8_len; index++) { if (package_name[index] == JVM_SIGNATURE_DOT) { package_name[index] = JVM_SIGNATURE_SLASH; } } return package_name; } static void define_javabase_module(Handle module_handle, jstring version, jstring location, objArrayHandle pkgs, int num_packages, TRAPS) { ResourceMark rm(THREAD); // Obtain java.base's module version TempNewSymbol version_symbol = as_symbol(version); // Obtain java.base's location TempNewSymbol location_symbol = as_symbol(location); // Check that the packages are syntactically ok. char buf[128]; GrowableArray* pkg_list = new GrowableArray(num_packages); for (int x = 0; x < num_packages; x++) { oop pkg_str = pkgs->obj_at(x); if (pkg_str == NULL || pkg_str->klass() != SystemDictionary::String_klass()) { THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), err_msg("Bad package name")); } int package_len; const char* package_name = as_internal_package(pkg_str, buf, sizeof(buf), package_len); if (!verify_package_name(package_name, package_len)) { THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), err_msg("Invalid package name: %s for module: " JAVA_BASE_NAME, package_name)); } Symbol* pkg_symbol = SymbolTable::new_symbol(package_name, package_len); pkg_list->append(pkg_symbol); } // Validate java_base's loader is the boot loader. oop loader = java_lang_Module::loader(module_handle()); if (loader != NULL) { THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), "Class loader must be the boot class loader"); } Handle h_loader(THREAD, loader); // Ensure the boot loader's PackageEntryTable has been created PackageEntryTable* package_table = get_package_entry_table(h_loader); assert(pkg_list->length() == 0 || package_table != NULL, "Bad package_table"); // Ensure java.base's ModuleEntry has been created assert(ModuleEntryTable::javabase_moduleEntry() != NULL, "No ModuleEntry for " JAVA_BASE_NAME); bool duplicate_javabase = false; { MutexLocker m1(THREAD, Module_lock); if (ModuleEntryTable::javabase_defined()) { duplicate_javabase = true; } else { // Verify that all java.base packages created during bootstrapping are in // pkg_list. If any are not in pkg_list, than a non-java.base class was // loaded erroneously pre java.base module definition. package_table->verify_javabase_packages(pkg_list); // loop through and add any new packages for java.base for (int x = 0; x < pkg_list->length(); x++) { // Some of java.base's packages were added early in bootstrapping, ignore duplicates. package_table->locked_create_entry_if_not_exist(pkg_list->at(x), ModuleEntryTable::javabase_moduleEntry()); assert(package_table->locked_lookup_only(pkg_list->at(x)) != NULL, "Unable to create a " JAVA_BASE_NAME " package entry"); // Unable to have a GrowableArray of TempNewSymbol. Must decrement the refcount of // the Symbol* that was created above for each package. The refcount was incremented // by SymbolTable::new_symbol and as well by the PackageEntry creation. pkg_list->at(x)->decrement_refcount(); } // Finish defining java.base's ModuleEntry ModuleEntryTable::finalize_javabase(module_handle, version_symbol, location_symbol); } } if (duplicate_javabase) { THROW_MSG(vmSymbols::java_lang_InternalError(), "Module " JAVA_BASE_NAME " is already defined"); } // Only the thread that actually defined the base module will get here, // so no locking is needed. // Patch any previously loaded class's module field with java.base's java.lang.Module. ModuleEntryTable::patch_javabase_entries(module_handle); log_info(module, load)(JAVA_BASE_NAME " location: %s", location_symbol != NULL ? location_symbol->as_C_string() : "NULL"); log_debug(module)("define_javabase_module(): Definition of module: " JAVA_BASE_NAME ", version: %s, location: %s, package #: %d", version_symbol != NULL ? version_symbol->as_C_string() : "NULL", location_symbol != NULL ? location_symbol->as_C_string() : "NULL", pkg_list->length()); // packages defined to java.base if (log_is_enabled(Trace, module)) { for (int x = 0; x < pkg_list->length(); x++) { log_trace(module)("define_javabase_module(): creation of package %s for module " JAVA_BASE_NAME, (pkg_list->at(x))->as_C_string()); } } } // Caller needs ResourceMark. void throw_dup_pkg_exception(const char* module_name, PackageEntry* package, TRAPS) { const char* package_name = package->name()->as_C_string(); if (package->module()->is_named()) { THROW_MSG(vmSymbols::java_lang_IllegalStateException(), err_msg("Package %s for module %s is already in another module, %s, defined to the class loader", package_name, module_name, package->module()->name()->as_C_string())); } else { THROW_MSG(vmSymbols::java_lang_IllegalStateException(), err_msg("Package %s for module %s is already in the unnamed module defined to the class loader", package_name, module_name)); } } void Modules::define_module(jobject module, jboolean is_open, jstring version, jstring location, jobjectArray packages, TRAPS) { ResourceMark rm(THREAD); if (module == NULL) { THROW_MSG(vmSymbols::java_lang_NullPointerException(), "Null module object"); } Handle module_handle(THREAD, JNIHandles::resolve_non_null(module)); if (!java_lang_Module::is_instance(module_handle())) { THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), "module is not an instance of type java.lang.Module"); } int module_name_len; char* module_name = get_module_name(module_handle(), module_name_len, CHECK); if (module_name == NULL) { THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), "Module name cannot be null"); } // Resolve packages objArrayHandle packages_h(THREAD, objArrayOop(JNIHandles::resolve(packages))); int num_packages = (packages_h.is_null() ? 0 : packages_h->length()); // Special handling of java.base definition if (strcmp(module_name, JAVA_BASE_NAME) == 0) { assert(is_open == JNI_FALSE, "java.base module cannot be open"); define_javabase_module(module_handle, version, location, packages_h, num_packages, CHECK); return; } oop loader = java_lang_Module::loader(module_handle()); // Make sure loader is not the jdk.internal.reflect.DelegatingClassLoader. if (loader != java_lang_ClassLoader::non_reflection_class_loader(loader)) { THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), "Class loader is an invalid delegating class loader"); } Handle h_loader = Handle(THREAD, loader); // define_module can be called during start-up, before the class loader's ClassLoaderData // has been created. SystemDictionary::register_loader ensures creation, if needed. ClassLoaderData* loader_data = SystemDictionary::register_loader(h_loader); assert(loader_data != NULL, "class loader data shouldn't be null"); // Only modules defined to either the boot or platform class loader, can define a "java/" package. bool java_pkg_disallowed = !h_loader.is_null() && !SystemDictionary::is_platform_class_loader(h_loader()); // Check that the list of packages has no duplicates and that the // packages are syntactically ok. char buf[128]; GrowableArray* pkg_list = new GrowableArray(num_packages); for (int x = 0; x < num_packages; x++) { oop pkg_str = packages_h->obj_at(x); if (pkg_str == NULL || pkg_str->klass() != SystemDictionary::String_klass()) { THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), err_msg("Bad package name")); } int package_len; const char* package_name = as_internal_package(pkg_str, buf, sizeof(buf), package_len); if (!verify_package_name(package_name, package_len)) { THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), err_msg("Invalid package name: %s for module: %s", package_name, module_name)); } // Only modules defined to either the boot or platform class loader, can define a "java/" package. if (java_pkg_disallowed && (strncmp(package_name, JAVAPKG, JAVAPKG_LEN) == 0 && (package_name[JAVAPKG_LEN] == JVM_SIGNATURE_SLASH || package_name[JAVAPKG_LEN] == '\0'))) { const char* class_loader_name = loader_data->loader_name_and_id(); size_t pkg_len = strlen(package_name); char* pkg_name = NEW_RESOURCE_ARRAY_IN_THREAD(THREAD, char, pkg_len + 1); strncpy(pkg_name, package_name, pkg_len + 1); StringUtils::replace_no_expand(pkg_name, "/", "."); const char* msg_text1 = "Class loader (instance of): "; const char* msg_text2 = " tried to define prohibited package name: "; size_t len = strlen(msg_text1) + strlen(class_loader_name) + strlen(msg_text2) + pkg_len + 1; char* message = NEW_RESOURCE_ARRAY_IN_THREAD(THREAD, char, len); jio_snprintf(message, len, "%s%s%s%s", msg_text1, class_loader_name, msg_text2, pkg_name); THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), message); } Symbol* pkg_symbol = SymbolTable::new_symbol(package_name, package_len); pkg_list->append(pkg_symbol); } ModuleEntryTable* module_table = get_module_entry_table(h_loader); assert(module_table != NULL, "module entry table shouldn't be null"); // Create symbol* entry for module name. TempNewSymbol module_symbol = SymbolTable::new_symbol(module_name, module_name_len); bool dupl_modules = false; // Create symbol for module version. TempNewSymbol version_symbol = as_symbol(version); // Create symbol* entry for module location. TempNewSymbol location_symbol = as_symbol(location); PackageEntryTable* package_table = NULL; PackageEntry* existing_pkg = NULL; { MutexLocker ml(THREAD, Module_lock); if (num_packages > 0) { package_table = get_package_entry_table(h_loader); assert(package_table != NULL, "Missing package_table"); // Check that none of the packages exist in the class loader's package table. for (int x = 0; x < pkg_list->length(); x++) { existing_pkg = package_table->locked_lookup_only(pkg_list->at(x)); if (existing_pkg != NULL) { // This could be because the module was already defined. If so, // report that error instead of the package error. if (module_table->lookup_only(module_symbol) != NULL) { dupl_modules = true; } break; } } } // if (num_packages > 0)... // Add the module and its packages. if (!dupl_modules && existing_pkg == NULL) { if (module_table->lookup_only(module_symbol) == NULL) { // Create the entry for this module in the class loader's module entry table. ModuleEntry* module_entry = module_table->locked_create_entry(module_handle, (is_open == JNI_TRUE), module_symbol, version_symbol, location_symbol, loader_data); assert(module_entry != NULL, "module_entry creation failed"); // Add the packages. assert(pkg_list->length() == 0 || package_table != NULL, "Bad package table"); for (int y = 0; y < pkg_list->length(); y++) { package_table->locked_create_entry(pkg_list->at(y), module_entry); // Unable to have a GrowableArray of TempNewSymbol. Must decrement the refcount of // the Symbol* that was created above for each package. The refcount was incremented // by SymbolTable::new_symbol and as well by the PackageEntry creation. pkg_list->at(y)->decrement_refcount(); } // Store pointer to ModuleEntry record in java.lang.Module object. java_lang_Module::set_module_entry(module_handle(), module_entry); } else { dupl_modules = true; } } } // Release the lock // any errors ? if (dupl_modules) { THROW_MSG(vmSymbols::java_lang_IllegalStateException(), err_msg("Module %s is already defined", module_name)); } else if (existing_pkg != NULL) { throw_dup_pkg_exception(module_name, existing_pkg, CHECK); } log_info(module, load)("%s location: %s", module_name, location_symbol != NULL ? location_symbol->as_C_string() : "NULL"); LogTarget(Debug, module) lt; if (lt.is_enabled()) { LogStream ls(lt); ls.print("define_module(): creation of module: %s, version: %s, location: %s, ", module_name, version_symbol != NULL ? version_symbol->as_C_string() : "NULL", location_symbol != NULL ? location_symbol->as_C_string() : "NULL"); loader_data->print_value_on(&ls); ls.print_cr(", package #: %d", pkg_list->length()); for (int y = 0; y < pkg_list->length(); y++) { log_trace(module)("define_module(): creation of package %s for module %s", (pkg_list->at(y))->as_C_string(), module_name); } } // If the module is defined to the boot loader and an exploded build is being // used, prepend /modules/modules_name to the system boot class path. if (h_loader.is_null() && !ClassLoader::has_jrt_entry()) { ClassLoader::add_to_exploded_build_list(module_symbol, CHECK); } } #if INCLUDE_CDS_JAVA_HEAP void Modules::define_archived_modules(jobject platform_loader, jobject system_loader, TRAPS) { if (platform_loader == NULL) { THROW_MSG(vmSymbols::java_lang_NullPointerException(), "Null platform loader object"); } if (system_loader == NULL) { THROW_MSG(vmSymbols::java_lang_NullPointerException(), "Null system loader object"); } if (UseSharedSpaces && MetaspaceShared::use_full_module_graph()) { Handle h_platform_loader(THREAD, JNIHandles::resolve_non_null(platform_loader)); ClassLoaderData* platform_loader_data = SystemDictionary::register_loader(h_platform_loader); ClassLoaderDataShared::restore_java_platform_loader_from_archive(platform_loader_data); Handle h_system_loader(THREAD, JNIHandles::resolve_non_null(system_loader)); ClassLoaderData* system_loader_data = SystemDictionary::register_loader(h_system_loader); ClassLoaderDataShared::restore_java_system_loader_from_archive(system_loader_data); } } #endif void Modules::set_bootloader_unnamed_module(jobject module, TRAPS) { ResourceMark rm(THREAD); if (module == NULL) { THROW_MSG(vmSymbols::java_lang_NullPointerException(), "Null module object"); } Handle module_handle(THREAD, JNIHandles::resolve(module)); if (!java_lang_Module::is_instance(module_handle())) { THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), "module is not an instance of type java.lang.Module"); } // Ensure that this is an unnamed module oop name = java_lang_Module::name(module_handle()); if (name != NULL) { THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), "boot loader's unnamed module's java.lang.Module has a name"); } // Validate java_base's loader is the boot loader. oop loader = java_lang_Module::loader(module_handle()); if (loader != NULL) { THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), "Class loader must be the boot class loader"); } log_debug(module)("set_bootloader_unnamed_module(): recording unnamed module for boot loader"); // Set java.lang.Module for the boot loader's unnamed module ClassLoaderData* boot_loader_data = ClassLoaderData::the_null_class_loader_data(); ModuleEntry* unnamed_module = boot_loader_data->unnamed_module(); assert(unnamed_module != NULL, "boot loader's unnamed ModuleEntry not defined"); unnamed_module->set_module(boot_loader_data->add_handle(module_handle)); // Store pointer to the ModuleEntry in the unnamed module's java.lang.Module object. java_lang_Module::set_module_entry(module_handle(), unnamed_module); } void Modules::add_module_exports(jobject from_module, jstring package_name, jobject to_module, TRAPS) { if (package_name == NULL) { THROW_MSG(vmSymbols::java_lang_NullPointerException(), "package is null"); } if (from_module == NULL) { THROW_MSG(vmSymbols::java_lang_NullPointerException(), "from_module is null"); } ModuleEntry* from_module_entry = get_module_entry(from_module, CHECK); if (from_module_entry == NULL) { THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), "from_module cannot be found"); } // All packages in unnamed and open modules are exported by default. if (!from_module_entry->is_named() || from_module_entry->is_open()) return; ModuleEntry* to_module_entry; if (to_module == NULL) { to_module_entry = NULL; // It's an unqualified export. } else { to_module_entry = get_module_entry(to_module, CHECK); if (to_module_entry == NULL) { THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), "to_module is invalid"); } } PackageEntry* package_entry = NULL; char buf[128]; int package_len; ResourceMark rm(THREAD); const char* pkg = as_internal_package(JNIHandles::resolve_non_null(package_name), buf, sizeof(buf), package_len); { MutexLocker ml(THREAD, Module_lock); package_entry = get_locked_package_entry(from_module_entry, pkg, package_len, CHECK); // Do nothing if modules are the same // If the package is not found we'll throw an exception later if (from_module_entry != to_module_entry && package_entry != NULL) { package_entry->set_exported(to_module_entry); } } // Handle errors and logging outside locked section if (package_entry == NULL) { THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), err_msg("Package %s not found in from_module %s", pkg != NULL ? pkg : "", from_module_entry->name()->as_C_string())); } if (log_is_enabled(Debug, module)) { log_debug(module)("add_module_exports(): package %s in module %s is exported to module %s", package_entry->name()->as_C_string(), from_module_entry->name()->as_C_string(), to_module_entry == NULL ? "NULL" : to_module_entry->is_named() ? to_module_entry->name()->as_C_string() : UNNAMED_MODULE); } } void Modules::add_module_exports_qualified(jobject from_module, jstring package, jobject to_module, TRAPS) { if (to_module == NULL) { THROW_MSG(vmSymbols::java_lang_NullPointerException(), "to_module is null"); } add_module_exports(from_module, package, to_module, CHECK); } void Modules::add_reads_module(jobject from_module, jobject to_module, TRAPS) { if (from_module == NULL) { THROW_MSG(vmSymbols::java_lang_NullPointerException(), "from_module is null"); } ModuleEntry* from_module_entry = get_module_entry(from_module, CHECK); if (from_module_entry == NULL) { THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), "from_module is not valid"); } ModuleEntry* to_module_entry; if (to_module != NULL) { to_module_entry = get_module_entry(to_module, CHECK); if (to_module_entry == NULL) { THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), "to_module is invalid"); } } else { to_module_entry = NULL; } ResourceMark rm(THREAD); log_debug(module)("add_reads_module(): Adding read from module %s to module %s", from_module_entry->is_named() ? from_module_entry->name()->as_C_string() : UNNAMED_MODULE, to_module_entry == NULL ? "all unnamed" : (to_module_entry->is_named() ? to_module_entry->name()->as_C_string() : UNNAMED_MODULE)); // if modules are the same or if from_module is unnamed then no need to add the read. if (from_module_entry != to_module_entry && from_module_entry->is_named()) { from_module_entry->add_read(to_module_entry); } } // This method is called by JFR and JNI. jobject Modules::get_module(jclass clazz, TRAPS) { assert(ModuleEntryTable::javabase_defined(), "Attempt to call get_module before " JAVA_BASE_NAME " is defined"); if (clazz == NULL) { THROW_MSG_(vmSymbols::java_lang_NullPointerException(), "class is null", JNI_FALSE); } oop mirror = JNIHandles::resolve_non_null(clazz); if (mirror == NULL) { log_debug(module)("get_module(): no mirror, returning NULL"); return NULL; } if (!java_lang_Class::is_instance(mirror)) { THROW_MSG_(vmSymbols::java_lang_IllegalArgumentException(), "Invalid class", JNI_FALSE); } oop module = java_lang_Class::module(mirror); assert(module != NULL, "java.lang.Class module field not set"); assert(java_lang_Module::is_instance(module), "module is not an instance of type java.lang.Module"); LogTarget(Debug,module) lt; if (lt.is_enabled()) { ResourceMark rm(THREAD); LogStream ls(lt); Klass* klass = java_lang_Class::as_Klass(mirror); oop module_name = java_lang_Module::name(module); if (module_name != NULL) { ls.print("get_module(): module "); java_lang_String::print(module_name, tty); } else { ls.print("get_module(): Unamed Module"); } if (klass != NULL) { ls.print_cr(" for class %s", klass->external_name()); } else { ls.print_cr(" for primitive class"); } } return JNIHandles::make_local(THREAD, module); } jobject Modules::get_named_module(Handle h_loader, const char* package_name, TRAPS) { assert(ModuleEntryTable::javabase_defined(), "Attempt to call get_named_module before " JAVA_BASE_NAME " is defined"); assert(h_loader.is_null() || java_lang_ClassLoader::is_subclass(h_loader->klass()), "Class loader is not a subclass of java.lang.ClassLoader"); assert(package_name != NULL, "the package_name should not be NULL"); if (strlen(package_name) == 0) { return NULL; } TempNewSymbol package_sym = SymbolTable::new_symbol(package_name); const PackageEntry* const pkg_entry = get_package_entry_by_name(package_sym, h_loader, THREAD); const ModuleEntry* const module_entry = (pkg_entry != NULL ? pkg_entry->module() : NULL); if (module_entry != NULL && module_entry->module() != NULL && module_entry->is_named()) { return JNIHandles::make_local(THREAD, module_entry->module()); } return NULL; } // Export package in module to all unnamed modules. void Modules::add_module_exports_to_all_unnamed(jobject module, jstring package_name, TRAPS) { if (module == NULL) { THROW_MSG(vmSymbols::java_lang_NullPointerException(), "module is null"); } if (package_name == NULL) { THROW_MSG(vmSymbols::java_lang_NullPointerException(), "package is null"); } ModuleEntry* module_entry = get_module_entry(module, CHECK); if (module_entry == NULL) { THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), "module is invalid"); } // No-op for unnamed module and open modules if (!module_entry->is_named() || module_entry->is_open()) return; ResourceMark rm(THREAD); char buf[128]; int pkg_len; const char* pkg = as_internal_package(JNIHandles::resolve_non_null(package_name), buf, sizeof(buf), pkg_len); PackageEntry* package_entry = NULL; { MutexLocker m1(THREAD, Module_lock); package_entry = get_locked_package_entry(module_entry, pkg, pkg_len, CHECK); // Mark package as exported to all unnamed modules. if (package_entry != NULL) { package_entry->set_is_exported_allUnnamed(); } } // Handle errors and logging outside locked section if (package_entry == NULL) { THROW_MSG(vmSymbols::java_lang_IllegalArgumentException(), err_msg("Package %s not found in module %s", pkg != NULL ? pkg : "", module_entry->name()->as_C_string())); } if (log_is_enabled(Debug, module)) { log_debug(module)("add_module_exports_to_all_unnamed(): package %s in module" " %s is exported to all unnamed modules", package_entry->name()->as_C_string(), module_entry->name()->as_C_string()); } }