/* * Copyright (c) 1998, 2022, 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. *
*/
void ThreadShadow::clear_pending_nonasync_exception() { // Do not clear probable async exceptions. if ((_pending_exception->klass() != vmClasses::InternalError_klass() ||
java_lang_InternalError::during_unsafe_access(_pending_exception) != JNI_TRUE)) {
clear_pending_exception();
}
}
// Implementation of Exceptions
bool Exceptions::special_exception(JavaThread* thread, constchar* file, int line, Handle h_exception) { // bootstrapping check if (!Universe::is_fully_initialized()) {
vm_exit_during_initialization(h_exception);
ShouldNotReachHere();
}
#ifdef ASSERT // Check for trying to throw stack overflow before initialization is complete // to prevent infinite recursion trying to initialize stack overflow without // adequate stack space. // This can happen with stress testing a large value of StackShadowPages if (h_exception()->klass() == vmClasses::StackOverflowError_klass()) {
InstanceKlass* ik = InstanceKlass::cast(h_exception->klass());
assert(ik->is_initialized(), "need to increase java_thread_min_stack_allowed calculation");
} #endif// ASSERT
if (!thread->can_call_java()) { // We do not care what kind of exception we get for a thread which // is compiling. We just install a dummy exception object
thread->set_pending_exception(Universe::vm_exception(), file, line); returntrue;
}
returnfalse;
}
bool Exceptions::special_exception(JavaThread* thread, constchar* file, int line, Symbol* h_name, constchar* message) { // bootstrapping check if (!Universe::is_fully_initialized()) { if (h_name == NULL) { // at least an informative message.
vm_exit_during_initialization("Exception", message);
} else {
vm_exit_during_initialization(h_name, message);
}
ShouldNotReachHere();
}
if (!thread->can_call_java()) { // We do not care what kind of exception we get for a thread which // is compiling. We just install a dummy exception object
thread->set_pending_exception(Universe::vm_exception(), file, line); returntrue;
} returnfalse;
}
// This method should only be called from generated code, // therefore the exception oop should be in the oopmap. void Exceptions::_throw_oop(JavaThread* thread, constchar* file, int line, oop exception) {
assert(exception != NULL, "exception should not be NULL");
Handle h_exception(thread, exception);
_throw(thread, file, line, h_exception);
}
void Exceptions::_throw(JavaThread* thread, constchar* file, int line, Handle h_exception, constchar* message) {
ResourceMark rm(thread);
assert(h_exception() != NULL, "exception should not be NULL");
// tracing (do this up front - so it works during boot strapping) // Note, the print_value_string() argument is not called unless logging is enabled!
log_info(exceptions)("Exception <%s%s%s> (" PTR_FORMAT ") \n" "thrown [%s, line %d]\nfor thread " PTR_FORMAT,
h_exception->print_value_string(),
message ? ": " : "", message ? message : "",
p2i(h_exception()), file, line, p2i(thread));
// for AbortVMOnException flag
Exceptions::debug_check_abort(h_exception, message);
// Check for special boot-strapping/compiler-thread handling if (special_exception(thread, file, line, h_exception)) { return;
}
if (h_exception->is_a(vmClasses::VirtualMachineError_klass())) { // Remove the ScopedValue bindings in case we got a virtual machine // Error while we were trying to manipulate ScopedValue bindings.
thread->clear_scopedValueBindings();
if (h_exception->is_a(vmClasses::OutOfMemoryError_klass())) {
count_out_of_memory_exceptions(h_exception);
}
}
if (h_exception->is_a(vmClasses::LinkageError_klass())) {
Atomic::inc(&_linkage_errors, memory_order_relaxed);
}
assert(h_exception->is_a(vmClasses::Throwable_klass()), "exception is not a subclass of java/lang/Throwable");
// set the pending exception
thread->set_pending_exception(h_exception(), file, line);
// vm log
Events::log_exception(thread, h_exception, message, file, line);
}
// Creates an exception oop, calls the <init> method with the given signature. // and returns a Handle
Handle Exceptions::new_exception(JavaThread* thread, Symbol* name,
Symbol* signature, JavaCallArguments *args,
Handle h_loader, Handle h_protection_domain) {
assert(Universe::is_fully_initialized(), "cannot be called during initialization");
assert(!thread->has_pending_exception(), "already has exception");
Handle h_exception;
// Resolve exception klass, and check for pending exception below.
Klass* klass = SystemDictionary::resolve_or_fail(name, h_loader, h_protection_domain, true, thread);
if (!thread->has_pending_exception()) {
assert(klass != NULL, "klass must exist");
h_exception = JavaCalls::construct_new_instance(InstanceKlass::cast(klass),
signature,
args,
thread);
}
// Check if another exception was thrown in the process, if so rethrow that one if (thread->has_pending_exception()) {
h_exception = Handle(thread, thread->pending_exception());
thread->clear_pending_exception();
} return h_exception;
}
// Creates an exception oop, calls the <init> method with the given signature. // and returns a Handle // Initializes the cause if cause non-null
Handle Exceptions::new_exception(JavaThread* thread, Symbol* name,
Symbol* signature, JavaCallArguments *args,
Handle h_cause,
Handle h_loader, Handle h_protection_domain) {
Handle h_exception = new_exception(thread, name, signature, args, h_loader, h_protection_domain);
// Future: object initializer should take a cause argument if (h_cause.not_null()) {
assert(h_cause->is_a(vmClasses::Throwable_klass()), "exception cause is not a subclass of java/lang/Throwable");
JavaValue result1(T_OBJECT);
JavaCallArguments args1;
args1.set_receiver(h_exception);
args1.push_oop(h_cause);
JavaCalls::call_virtual(&result1, h_exception->klass(),
vmSymbols::initCause_name(),
vmSymbols::throwable_throwable_signature(),
&args1,
thread);
}
// Check if another exception was thrown in the process, if so rethrow that one if (thread->has_pending_exception()) {
h_exception = Handle(thread, thread->pending_exception());
thread->clear_pending_exception();
} return h_exception;
}
// Convenience method. Calls either the <init>() or <init>(Throwable) method when // creating a new exception
Handle Exceptions::new_exception(JavaThread* thread, Symbol* name,
Handle h_cause,
Handle h_loader, Handle h_protection_domain,
ExceptionMsgToUtf8Mode to_utf8_safe) {
JavaCallArguments args;
Symbol* signature = NULL; if (h_cause.is_null()) {
signature = vmSymbols::void_method_signature();
} else {
signature = vmSymbols::throwable_void_signature();
args.push_oop(h_cause);
} return new_exception(thread, name, signature, &args, h_loader, h_protection_domain);
}
// Convenience method. Calls either the <init>() or <init>(String) method when // creating a new exception
Handle Exceptions::new_exception(JavaThread* thread, Symbol* name, constchar* message, Handle h_cause,
Handle h_loader, Handle h_protection_domain,
ExceptionMsgToUtf8Mode to_utf8_safe) {
JavaCallArguments args;
Symbol* signature = NULL; if (message == NULL) {
signature = vmSymbols::void_method_signature();
} else { // There should be no pending exception. The caller is responsible for not calling // this with a pending exception.
Handle incoming_exception; if (thread->has_pending_exception()) {
incoming_exception = Handle(thread, thread->pending_exception());
thread->clear_pending_exception();
ResourceMark rm(thread);
assert(incoming_exception.is_null(), "Pending exception while throwing %s %s", name->as_C_string(), message);
}
Handle msg; if (to_utf8_safe == safe_to_utf8) { // Make a java UTF8 string.
msg = java_lang_String::create_from_str(message, thread);
} else { // Make a java string keeping the encoding scheme of the original string.
msg = java_lang_String::create_from_platform_dependent_str(message, thread);
} // If we get an exception from the allocation, prefer that to // the exception we are trying to build, or the pending exception (in product mode) if (thread->has_pending_exception()) {
Handle exception(thread, thread->pending_exception());
thread->clear_pending_exception(); return exception;
} if (incoming_exception.not_null()) { return incoming_exception;
}
args.push_oop(msg);
signature = vmSymbols::string_void_signature();
} return new_exception(thread, name, signature, &args, h_cause, h_loader, h_protection_domain);
}
// Another convenience method that creates handles for null class loaders and // protection domains and null causes. // If the last parameter 'to_utf8_mode' is safe_to_utf8, // it means we can safely ignore the encoding scheme of the message string and // convert it directly to a java UTF8 string. Otherwise, we need to take the // encoding scheme of the string into account. One thing we should do at some // point is to push this flag down to class java_lang_String since other // classes may need similar functionalities.
Handle Exceptions::new_exception(JavaThread* thread, Symbol* name, constchar* message,
ExceptionMsgToUtf8Mode to_utf8_safe) {
// invokedynamic uses wrap_dynamic_exception for: // - bootstrap method resolution // - post call to MethodHandleNatives::linkCallSite // dynamically computed constant uses wrap_dynamic_exception for: // - bootstrap method resolution // - post call to MethodHandleNatives::linkDynamicConstant void Exceptions::wrap_dynamic_exception(bool is_indy, JavaThread* THREAD) { if (THREAD->has_pending_exception()) { bool log_indy = log_is_enabled(Debug, methodhandles, indy) && is_indy; bool log_condy = log_is_enabled(Debug, methodhandles, condy) && !is_indy;
LogStreamHandle(Debug, methodhandles, indy) lsh_indy;
LogStreamHandle(Debug, methodhandles, condy) lsh_condy;
LogStream* ls = NULL; if (log_indy) {
ls = &lsh_indy;
} elseif (log_condy) {
ls = &lsh_condy;
}
oop exception = THREAD->pending_exception();
// See the "Linking Exceptions" section for the invokedynamic instruction // in JVMS 6.5. if (exception->is_a(vmClasses::Error_klass())) { // Pass through an Error, including BootstrapMethodError, any other form // of linkage error, or say OutOfMemoryError if (ls != NULL) {
ls->print_cr("bootstrap method invocation wraps BSME around " PTR_FORMAT, p2i(exception));
exception->print_on(ls);
} return;
}
// Otherwise wrap the exception in a BootstrapMethodError if (ls != NULL) {
ls->print_cr("%s throws BSME for " PTR_FORMAT, is_indy ? "invokedynamic" : "dynamic constant", p2i(exception));
exception->print_on(ls);
}
Handle nested_exception(THREAD, exception);
THREAD->clear_pending_exception();
THROW_CAUSE(vmSymbols::java_lang_BootstrapMethodError(), nested_exception)
}
}
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