src/share/vm/classfile/verifier.cpp

Thu, 22 May 2014 11:09:06 -0700

author
asaha
date
Thu, 22 May 2014 11:09:06 -0700
changeset 6779
364b73402247
parent 6632
386dd1c71858
parent 6771
b5ae226b7516
child 6782
f73af4455d7d
permissions
-rw-r--r--

Merge

duke@435 1 /*
hseigel@6761 2 * Copyright (c) 1998, 2014, Oracle and/or its affiliates. All rights reserved.
duke@435 3 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
duke@435 4 *
duke@435 5 * This code is free software; you can redistribute it and/or modify it
duke@435 6 * under the terms of the GNU General Public License version 2 only, as
duke@435 7 * published by the Free Software Foundation.
duke@435 8 *
duke@435 9 * This code is distributed in the hope that it will be useful, but WITHOUT
duke@435 10 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
duke@435 11 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
duke@435 12 * version 2 for more details (a copy is included in the LICENSE file that
duke@435 13 * accompanied this code).
duke@435 14 *
duke@435 15 * You should have received a copy of the GNU General Public License version
duke@435 16 * 2 along with this work; if not, write to the Free Software Foundation,
duke@435 17 * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
duke@435 18 *
trims@1907 19 * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
trims@1907 20 * or visit www.oracle.com if you need additional information or have any
trims@1907 21 * questions.
duke@435 22 *
duke@435 23 */
duke@435 24
stefank@2314 25 #include "precompiled.hpp"
stefank@2314 26 #include "classfile/classFileStream.hpp"
stefank@2314 27 #include "classfile/javaClasses.hpp"
stefank@2314 28 #include "classfile/stackMapTable.hpp"
kamg@3992 29 #include "classfile/stackMapFrame.hpp"
kamg@3992 30 #include "classfile/stackMapTableFormat.hpp"
stefank@2314 31 #include "classfile/systemDictionary.hpp"
stefank@2314 32 #include "classfile/verifier.hpp"
stefank@2314 33 #include "classfile/vmSymbols.hpp"
kamg@3992 34 #include "interpreter/bytecodes.hpp"
stefank@2314 35 #include "interpreter/bytecodeStream.hpp"
stefank@2314 36 #include "memory/oopFactory.hpp"
stefank@2314 37 #include "memory/resourceArea.hpp"
stefank@2314 38 #include "oops/instanceKlass.hpp"
stefank@2314 39 #include "oops/oop.inline.hpp"
stefank@2314 40 #include "oops/typeArrayOop.hpp"
stefank@2314 41 #include "prims/jvm.h"
stefank@2314 42 #include "runtime/fieldDescriptor.hpp"
stefank@2314 43 #include "runtime/handles.inline.hpp"
stefank@2314 44 #include "runtime/interfaceSupport.hpp"
stefank@2314 45 #include "runtime/javaCalls.hpp"
stefank@2314 46 #include "runtime/orderAccess.hpp"
stefank@2314 47 #include "runtime/os.hpp"
stefank@2314 48 #ifdef TARGET_ARCH_x86
stefank@2314 49 # include "bytes_x86.hpp"
stefank@2314 50 #endif
stefank@2314 51 #ifdef TARGET_ARCH_sparc
stefank@2314 52 # include "bytes_sparc.hpp"
stefank@2314 53 #endif
stefank@2314 54 #ifdef TARGET_ARCH_zero
stefank@2314 55 # include "bytes_zero.hpp"
stefank@2314 56 #endif
bobv@2508 57 #ifdef TARGET_ARCH_arm
bobv@2508 58 # include "bytes_arm.hpp"
bobv@2508 59 #endif
bobv@2508 60 #ifdef TARGET_ARCH_ppc
bobv@2508 61 # include "bytes_ppc.hpp"
bobv@2508 62 #endif
duke@435 63
hseigel@4816 64 #define NOFAILOVER_MAJOR_VERSION 51
hseigel@4816 65 #define NONZERO_PADDING_BYTES_IN_SWITCH_MAJOR_VERSION 51
bharadwaj@4895 66 #define STATIC_METHOD_IN_INTERFACE_MAJOR_VERSION 52
kamg@1915 67
duke@435 68 // Access to external entry for VerifyClassCodes - old byte code verifier
duke@435 69
duke@435 70 extern "C" {
duke@435 71 typedef jboolean (*verify_byte_codes_fn_t)(JNIEnv *, jclass, char *, jint);
duke@435 72 typedef jboolean (*verify_byte_codes_fn_new_t)(JNIEnv *, jclass, char *, jint, jint);
duke@435 73 }
duke@435 74
duke@435 75 static void* volatile _verify_byte_codes_fn = NULL;
duke@435 76
duke@435 77 static volatile jint _is_new_verify_byte_codes_fn = (jint) true;
duke@435 78
duke@435 79 static void* verify_byte_codes_fn() {
duke@435 80 if (_verify_byte_codes_fn == NULL) {
duke@435 81 void *lib_handle = os::native_java_library();
ikrylov@2322 82 void *func = os::dll_lookup(lib_handle, "VerifyClassCodesForMajorVersion");
duke@435 83 OrderAccess::release_store_ptr(&_verify_byte_codes_fn, func);
duke@435 84 if (func == NULL) {
duke@435 85 OrderAccess::release_store(&_is_new_verify_byte_codes_fn, false);
ikrylov@2322 86 func = os::dll_lookup(lib_handle, "VerifyClassCodes");
duke@435 87 OrderAccess::release_store_ptr(&_verify_byte_codes_fn, func);
duke@435 88 }
duke@435 89 }
duke@435 90 return (void*)_verify_byte_codes_fn;
duke@435 91 }
duke@435 92
duke@435 93
duke@435 94 // Methods in Verifier
duke@435 95
acorn@1408 96 bool Verifier::should_verify_for(oop class_loader, bool should_verify_class) {
acorn@1408 97 return (class_loader == NULL || !should_verify_class) ?
duke@435 98 BytecodeVerificationLocal : BytecodeVerificationRemote;
duke@435 99 }
duke@435 100
duke@435 101 bool Verifier::relax_verify_for(oop loader) {
duke@435 102 bool trusted = java_lang_ClassLoader::is_trusted_loader(loader);
duke@435 103 bool need_verify =
duke@435 104 // verifyAll
duke@435 105 (BytecodeVerificationLocal && BytecodeVerificationRemote) ||
duke@435 106 // verifyRemote
duke@435 107 (!BytecodeVerificationLocal && BytecodeVerificationRemote && !trusted);
duke@435 108 return !need_verify;
duke@435 109 }
duke@435 110
acorn@1408 111 bool Verifier::verify(instanceKlassHandle klass, Verifier::Mode mode, bool should_verify_class, TRAPS) {
coleenp@2497 112 HandleMark hm;
duke@435 113 ResourceMark rm(THREAD);
duke@435 114
coleenp@2497 115 Symbol* exception_name = NULL;
duke@435 116 const size_t message_buffer_len = klass->name()->utf8_length() + 1024;
duke@435 117 char* message_buffer = NEW_RESOURCE_ARRAY(char, message_buffer_len);
kamg@3992 118 char* exception_message = message_buffer;
duke@435 119
duke@435 120 const char* klassName = klass->external_name();
kamg@3992 121 bool can_failover = FailOverToOldVerifier &&
kamg@3992 122 klass->major_version() < NOFAILOVER_MAJOR_VERSION;
duke@435 123
duke@435 124 // If the class should be verified, first see if we can use the split
duke@435 125 // verifier. If not, or if verification fails and FailOverToOldVerifier
duke@435 126 // is set, then call the inference verifier.
acorn@1408 127 if (is_eligible_for_verification(klass, should_verify_class)) {
duke@435 128 if (TraceClassInitialization) {
duke@435 129 tty->print_cr("Start class verification for: %s", klassName);
duke@435 130 }
hseigel@4819 131 if (klass->major_version() >= STACKMAP_ATTRIBUTE_MAJOR_VERSION) {
kamg@3992 132 ClassVerifier split_verifier(klass, THREAD);
kamg@3992 133 split_verifier.verify_class(THREAD);
kamg@3992 134 exception_name = split_verifier.result();
kamg@3992 135 if (can_failover && !HAS_PENDING_EXCEPTION &&
duke@435 136 (exception_name == vmSymbols::java_lang_VerifyError() ||
duke@435 137 exception_name == vmSymbols::java_lang_ClassFormatError())) {
kamg@3992 138 if (TraceClassInitialization || VerboseVerification) {
duke@435 139 tty->print_cr(
duke@435 140 "Fail over class verification to old verifier for: %s", klassName);
duke@435 141 }
duke@435 142 exception_name = inference_verify(
duke@435 143 klass, message_buffer, message_buffer_len, THREAD);
duke@435 144 }
kamg@3992 145 if (exception_name != NULL) {
kamg@3992 146 exception_message = split_verifier.exception_message();
kamg@3992 147 }
duke@435 148 } else {
duke@435 149 exception_name = inference_verify(
duke@435 150 klass, message_buffer, message_buffer_len, THREAD);
duke@435 151 }
duke@435 152
kamg@3992 153 if (TraceClassInitialization || VerboseVerification) {
duke@435 154 if (HAS_PENDING_EXCEPTION) {
duke@435 155 tty->print("Verification for %s has", klassName);
duke@435 156 tty->print_cr(" exception pending %s ",
coleenp@4037 157 InstanceKlass::cast(PENDING_EXCEPTION->klass())->external_name());
coleenp@2497 158 } else if (exception_name != NULL) {
duke@435 159 tty->print_cr("Verification for %s failed", klassName);
duke@435 160 }
duke@435 161 tty->print_cr("End class verification for: %s", klassName);
duke@435 162 }
duke@435 163 }
duke@435 164
duke@435 165 if (HAS_PENDING_EXCEPTION) {
duke@435 166 return false; // use the existing exception
coleenp@2497 167 } else if (exception_name == NULL) {
duke@435 168 return true; // verifcation succeeded
duke@435 169 } else { // VerifyError or ClassFormatError to be created and thrown
duke@435 170 ResourceMark rm(THREAD);
duke@435 171 instanceKlassHandle kls =
duke@435 172 SystemDictionary::resolve_or_fail(exception_name, true, CHECK_false);
duke@435 173 while (!kls.is_null()) {
duke@435 174 if (kls == klass) {
duke@435 175 // If the class being verified is the exception we're creating
duke@435 176 // or one of it's superclasses, we're in trouble and are going
duke@435 177 // to infinitely recurse when we try to initialize the exception.
duke@435 178 // So bail out here by throwing the preallocated VM error.
duke@435 179 THROW_OOP_(Universe::virtual_machine_error_instance(), false);
duke@435 180 }
duke@435 181 kls = kls->super();
duke@435 182 }
duke@435 183 message_buffer[message_buffer_len - 1] = '\0'; // just to be sure
kamg@3992 184 THROW_MSG_(exception_name, exception_message, false);
duke@435 185 }
duke@435 186 }
duke@435 187
acorn@1408 188 bool Verifier::is_eligible_for_verification(instanceKlassHandle klass, bool should_verify_class) {
coleenp@2497 189 Symbol* name = klass->name();
coleenp@4037 190 Klass* refl_magic_klass = SystemDictionary::reflect_MagicAccessorImpl_klass();
acorn@5622 191
acorn@5622 192 bool is_reflect = refl_magic_klass != NULL && klass->is_subtype_of(refl_magic_klass);
duke@435 193
acorn@1408 194 return (should_verify_for(klass->class_loader(), should_verify_class) &&
duke@435 195 // return if the class is a bootstrapping class
acorn@1408 196 // or defineClass specified not to verify by default (flags override passed arg)
duke@435 197 // We need to skip the following four for bootstraping
duke@435 198 name != vmSymbols::java_lang_Object() &&
duke@435 199 name != vmSymbols::java_lang_Class() &&
duke@435 200 name != vmSymbols::java_lang_String() &&
duke@435 201 name != vmSymbols::java_lang_Throwable() &&
duke@435 202
duke@435 203 // Can not verify the bytecodes for shared classes because they have
duke@435 204 // already been rewritten to contain constant pool cache indices,
duke@435 205 // which the verifier can't understand.
duke@435 206 // Shared classes shouldn't have stackmaps either.
duke@435 207 !klass()->is_shared() &&
duke@435 208
duke@435 209 // As of the fix for 4486457 we disable verification for all of the
duke@435 210 // dynamically-generated bytecodes associated with the 1.4
duke@435 211 // reflection implementation, not just those associated with
duke@435 212 // sun/reflect/SerializationConstructorAccessor.
duke@435 213 // NOTE: this is called too early in the bootstrapping process to be
duke@435 214 // guarded by Universe::is_gte_jdk14x_version()/UseNewReflection.
acorn@5622 215 // Also for lambda generated code, gte jdk8
minqi@6116 216 (!is_reflect || VerifyReflectionBytecodes));
duke@435 217 }
duke@435 218
coleenp@2497 219 Symbol* Verifier::inference_verify(
duke@435 220 instanceKlassHandle klass, char* message, size_t message_len, TRAPS) {
duke@435 221 JavaThread* thread = (JavaThread*)THREAD;
duke@435 222 JNIEnv *env = thread->jni_environment();
duke@435 223
duke@435 224 void* verify_func = verify_byte_codes_fn();
duke@435 225
duke@435 226 if (verify_func == NULL) {
duke@435 227 jio_snprintf(message, message_len, "Could not link verifier");
duke@435 228 return vmSymbols::java_lang_VerifyError();
duke@435 229 }
duke@435 230
duke@435 231 ResourceMark rm(THREAD);
kamg@3992 232 if (VerboseVerification) {
duke@435 233 tty->print_cr("Verifying class %s with old format", klass->external_name());
duke@435 234 }
duke@435 235
duke@435 236 jclass cls = (jclass) JNIHandles::make_local(env, klass->java_mirror());
duke@435 237 jint result;
duke@435 238
duke@435 239 {
duke@435 240 HandleMark hm(thread);
duke@435 241 ThreadToNativeFromVM ttn(thread);
duke@435 242 // ThreadToNativeFromVM takes care of changing thread_state, so safepoint
duke@435 243 // code knows that we have left the VM
duke@435 244
duke@435 245 if (_is_new_verify_byte_codes_fn) {
duke@435 246 verify_byte_codes_fn_new_t func =
duke@435 247 CAST_TO_FN_PTR(verify_byte_codes_fn_new_t, verify_func);
duke@435 248 result = (*func)(env, cls, message, (int)message_len,
duke@435 249 klass->major_version());
duke@435 250 } else {
duke@435 251 verify_byte_codes_fn_t func =
duke@435 252 CAST_TO_FN_PTR(verify_byte_codes_fn_t, verify_func);
duke@435 253 result = (*func)(env, cls, message, (int)message_len);
duke@435 254 }
duke@435 255 }
duke@435 256
duke@435 257 JNIHandles::destroy_local(cls);
duke@435 258
duke@435 259 // These numbers are chosen so that VerifyClassCodes interface doesn't need
duke@435 260 // to be changed (still return jboolean (unsigned char)), and result is
duke@435 261 // 1 when verification is passed.
duke@435 262 if (result == 0) {
duke@435 263 return vmSymbols::java_lang_VerifyError();
duke@435 264 } else if (result == 1) {
coleenp@2497 265 return NULL; // verified.
duke@435 266 } else if (result == 2) {
coleenp@2497 267 THROW_MSG_(vmSymbols::java_lang_OutOfMemoryError(), message, NULL);
duke@435 268 } else if (result == 3) {
duke@435 269 return vmSymbols::java_lang_ClassFormatError();
duke@435 270 } else {
duke@435 271 ShouldNotReachHere();
coleenp@2497 272 return NULL;
duke@435 273 }
duke@435 274 }
duke@435 275
kamg@3992 276 TypeOrigin TypeOrigin::null() {
kamg@3992 277 return TypeOrigin();
kamg@3992 278 }
kamg@3992 279 TypeOrigin TypeOrigin::local(u2 index, StackMapFrame* frame) {
kamg@3992 280 assert(frame != NULL, "Must have a frame");
kamg@3992 281 return TypeOrigin(CF_LOCALS, index, StackMapFrame::copy(frame),
kamg@3992 282 frame->local_at(index));
kamg@3992 283 }
kamg@3992 284 TypeOrigin TypeOrigin::stack(u2 index, StackMapFrame* frame) {
kamg@3992 285 assert(frame != NULL, "Must have a frame");
kamg@3992 286 return TypeOrigin(CF_STACK, index, StackMapFrame::copy(frame),
kamg@3992 287 frame->stack_at(index));
kamg@3992 288 }
kamg@3992 289 TypeOrigin TypeOrigin::sm_local(u2 index, StackMapFrame* frame) {
kamg@3992 290 assert(frame != NULL, "Must have a frame");
kamg@3992 291 return TypeOrigin(SM_LOCALS, index, StackMapFrame::copy(frame),
kamg@3992 292 frame->local_at(index));
kamg@3992 293 }
kamg@3992 294 TypeOrigin TypeOrigin::sm_stack(u2 index, StackMapFrame* frame) {
kamg@3992 295 assert(frame != NULL, "Must have a frame");
kamg@3992 296 return TypeOrigin(SM_STACK, index, StackMapFrame::copy(frame),
kamg@3992 297 frame->stack_at(index));
kamg@3992 298 }
kamg@3992 299 TypeOrigin TypeOrigin::bad_index(u2 index) {
kamg@3992 300 return TypeOrigin(BAD_INDEX, index, NULL, VerificationType::bogus_type());
kamg@3992 301 }
kamg@3992 302 TypeOrigin TypeOrigin::cp(u2 index, VerificationType vt) {
kamg@3992 303 return TypeOrigin(CONST_POOL, index, NULL, vt);
kamg@3992 304 }
kamg@3992 305 TypeOrigin TypeOrigin::signature(VerificationType vt) {
kamg@3992 306 return TypeOrigin(SIG, 0, NULL, vt);
kamg@3992 307 }
kamg@3992 308 TypeOrigin TypeOrigin::implicit(VerificationType t) {
kamg@3992 309 return TypeOrigin(IMPLICIT, 0, NULL, t);
kamg@3992 310 }
kamg@3992 311 TypeOrigin TypeOrigin::frame(StackMapFrame* frame) {
kamg@3992 312 return TypeOrigin(FRAME_ONLY, 0, StackMapFrame::copy(frame),
kamg@3992 313 VerificationType::bogus_type());
kamg@3992 314 }
kamg@3992 315
kamg@3992 316 void TypeOrigin::reset_frame() {
kamg@3992 317 if (_frame != NULL) {
kamg@3992 318 _frame->restore();
kamg@3992 319 }
kamg@3992 320 }
kamg@3992 321
kamg@3992 322 void TypeOrigin::details(outputStream* ss) const {
kamg@3992 323 _type.print_on(ss);
kamg@3992 324 switch (_origin) {
kamg@3992 325 case CF_LOCALS:
kamg@3992 326 ss->print(" (current frame, locals[%d])", _index);
kamg@3992 327 break;
kamg@3992 328 case CF_STACK:
kamg@3992 329 ss->print(" (current frame, stack[%d])", _index);
kamg@3992 330 break;
kamg@3992 331 case SM_LOCALS:
kamg@3992 332 ss->print(" (stack map, locals[%d])", _index);
kamg@3992 333 break;
kamg@3992 334 case SM_STACK:
kamg@3992 335 ss->print(" (stack map, stack[%d])", _index);
kamg@3992 336 break;
kamg@3992 337 case CONST_POOL:
kamg@3992 338 ss->print(" (constant pool %d)", _index);
kamg@3992 339 break;
kamg@3992 340 case SIG:
kamg@3992 341 ss->print(" (from method signature)");
kamg@3992 342 break;
kamg@3992 343 case IMPLICIT:
kamg@3992 344 case FRAME_ONLY:
kamg@3992 345 case NONE:
kamg@3992 346 default:
kamg@3992 347 ;
kamg@3992 348 }
kamg@3992 349 }
kamg@3992 350
kamg@3992 351 #ifdef ASSERT
kamg@3992 352 void TypeOrigin::print_on(outputStream* str) const {
kamg@3992 353 str->print("{%d,%d,%p:", _origin, _index, _frame);
kamg@3992 354 if (_frame != NULL) {
kamg@3992 355 _frame->print_on(str);
kamg@3992 356 } else {
kamg@3992 357 str->print("null");
kamg@3992 358 }
kamg@3992 359 str->print(",");
kamg@3992 360 _type.print_on(str);
kamg@3992 361 str->print("}");
kamg@3992 362 }
kamg@3992 363 #endif
kamg@3992 364
minqi@5097 365 void ErrorContext::details(outputStream* ss, const Method* method) const {
kamg@3992 366 if (is_valid()) {
kamg@3992 367 ss->print_cr("");
kamg@3992 368 ss->print_cr("Exception Details:");
kamg@3992 369 location_details(ss, method);
kamg@3992 370 reason_details(ss);
kamg@3992 371 frame_details(ss);
kamg@3992 372 bytecode_details(ss, method);
kamg@3992 373 handler_details(ss, method);
kamg@3992 374 stackmap_details(ss, method);
kamg@3992 375 }
kamg@3992 376 }
kamg@3992 377
kamg@3992 378 void ErrorContext::reason_details(outputStream* ss) const {
kamg@3992 379 streamIndentor si(ss);
kamg@3992 380 ss->indent().print_cr("Reason:");
kamg@3992 381 streamIndentor si2(ss);
kamg@3992 382 ss->indent().print("");
kamg@3992 383 switch (_fault) {
kamg@3992 384 case INVALID_BYTECODE:
kamg@3992 385 ss->print("Error exists in the bytecode");
kamg@3992 386 break;
kamg@3992 387 case WRONG_TYPE:
kamg@3992 388 if (_expected.is_valid()) {
kamg@3992 389 ss->print("Type ");
kamg@3992 390 _type.details(ss);
kamg@3992 391 ss->print(" is not assignable to ");
kamg@3992 392 _expected.details(ss);
kamg@3992 393 } else {
kamg@3992 394 ss->print("Invalid type: ");
kamg@3992 395 _type.details(ss);
kamg@3992 396 }
kamg@3992 397 break;
kamg@3992 398 case FLAGS_MISMATCH:
kamg@3992 399 if (_expected.is_valid()) {
kamg@3992 400 ss->print("Current frame's flags are not assignable "
kamg@3992 401 "to stack map frame's.");
kamg@3992 402 } else {
kamg@3992 403 ss->print("Current frame's flags are invalid in this context.");
kamg@3992 404 }
kamg@3992 405 break;
kamg@3992 406 case BAD_CP_INDEX:
kamg@3992 407 ss->print("Constant pool index %d is invalid", _type.index());
kamg@3992 408 break;
kamg@3992 409 case BAD_LOCAL_INDEX:
kamg@3992 410 ss->print("Local index %d is invalid", _type.index());
kamg@3992 411 break;
kamg@3992 412 case LOCALS_SIZE_MISMATCH:
kamg@3992 413 ss->print("Current frame's local size doesn't match stackmap.");
kamg@3992 414 break;
kamg@3992 415 case STACK_SIZE_MISMATCH:
kamg@3992 416 ss->print("Current frame's stack size doesn't match stackmap.");
kamg@3992 417 break;
kamg@3992 418 case STACK_OVERFLOW:
kamg@3992 419 ss->print("Exceeded max stack size.");
kamg@3992 420 break;
kamg@3992 421 case STACK_UNDERFLOW:
kamg@3992 422 ss->print("Attempt to pop empty stack.");
kamg@3992 423 break;
kamg@3992 424 case MISSING_STACKMAP:
kamg@3992 425 ss->print("Expected stackmap frame at this location.");
kamg@3992 426 break;
kamg@3992 427 case BAD_STACKMAP:
kamg@3992 428 ss->print("Invalid stackmap specification.");
kamg@3992 429 break;
kamg@3992 430 case UNKNOWN:
kamg@3992 431 default:
kamg@3992 432 ShouldNotReachHere();
kamg@3992 433 ss->print_cr("Unknown");
kamg@3992 434 }
kamg@3992 435 ss->print_cr("");
kamg@3992 436 }
kamg@3992 437
minqi@5097 438 void ErrorContext::location_details(outputStream* ss, const Method* method) const {
kamg@3992 439 if (_bci != -1 && method != NULL) {
kamg@3992 440 streamIndentor si(ss);
kamg@3992 441 const char* bytecode_name = "<invalid>";
kamg@3992 442 if (method->validate_bci_from_bcx(_bci) != -1) {
kamg@3992 443 Bytecodes::Code code = Bytecodes::code_or_bp_at(method->bcp_from(_bci));
kamg@3992 444 if (Bytecodes::is_defined(code)) {
kamg@3992 445 bytecode_name = Bytecodes::name(code);
kamg@3992 446 } else {
kamg@3992 447 bytecode_name = "<illegal>";
kamg@3992 448 }
kamg@3992 449 }
coleenp@4251 450 InstanceKlass* ik = method->method_holder();
kamg@3992 451 ss->indent().print_cr("Location:");
kamg@3992 452 streamIndentor si2(ss);
kamg@3992 453 ss->indent().print_cr("%s.%s%s @%d: %s",
kamg@3992 454 ik->name()->as_C_string(), method->name()->as_C_string(),
kamg@3992 455 method->signature()->as_C_string(), _bci, bytecode_name);
kamg@3992 456 }
kamg@3992 457 }
kamg@3992 458
kamg@3992 459 void ErrorContext::frame_details(outputStream* ss) const {
kamg@3992 460 streamIndentor si(ss);
kamg@3992 461 if (_type.is_valid() && _type.frame() != NULL) {
kamg@3992 462 ss->indent().print_cr("Current Frame:");
kamg@3992 463 streamIndentor si2(ss);
kamg@3992 464 _type.frame()->print_on(ss);
kamg@3992 465 }
kamg@3992 466 if (_expected.is_valid() && _expected.frame() != NULL) {
kamg@3992 467 ss->indent().print_cr("Stackmap Frame:");
kamg@3992 468 streamIndentor si2(ss);
kamg@3992 469 _expected.frame()->print_on(ss);
kamg@3992 470 }
kamg@3992 471 }
kamg@3992 472
minqi@5097 473 void ErrorContext::bytecode_details(outputStream* ss, const Method* method) const {
kamg@3992 474 if (method != NULL) {
kamg@3992 475 streamIndentor si(ss);
kamg@3992 476 ss->indent().print_cr("Bytecode:");
kamg@3992 477 streamIndentor si2(ss);
kamg@3992 478 ss->print_data(method->code_base(), method->code_size(), false);
kamg@3992 479 }
kamg@3992 480 }
kamg@3992 481
minqi@5097 482 void ErrorContext::handler_details(outputStream* ss, const Method* method) const {
kamg@3992 483 if (method != NULL) {
kamg@3992 484 streamIndentor si(ss);
kamg@3992 485 ExceptionTable table(method);
kamg@3992 486 if (table.length() > 0) {
kamg@3992 487 ss->indent().print_cr("Exception Handler Table:");
kamg@3992 488 streamIndentor si2(ss);
kamg@3992 489 for (int i = 0; i < table.length(); ++i) {
kamg@3992 490 ss->indent().print_cr("bci [%d, %d] => handler: %d", table.start_pc(i),
kamg@3992 491 table.end_pc(i), table.handler_pc(i));
kamg@3992 492 }
kamg@3992 493 }
kamg@3992 494 }
kamg@3992 495 }
kamg@3992 496
minqi@5097 497 void ErrorContext::stackmap_details(outputStream* ss, const Method* method) const {
kamg@3992 498 if (method != NULL && method->has_stackmap_table()) {
kamg@3992 499 streamIndentor si(ss);
kamg@3992 500 ss->indent().print_cr("Stackmap Table:");
coleenp@4037 501 Array<u1>* data = method->stackmap_data();
kamg@3992 502 stack_map_table* sm_table =
coleenp@4037 503 stack_map_table::at((address)data->adr_at(0));
kamg@3992 504 stack_map_frame* sm_frame = sm_table->entries();
kamg@3992 505 streamIndentor si2(ss);
kamg@3992 506 int current_offset = -1;
kamg@3992 507 for (u2 i = 0; i < sm_table->number_of_entries(); ++i) {
kamg@3992 508 ss->indent();
kamg@3992 509 sm_frame->print_on(ss, current_offset);
kamg@3992 510 ss->print_cr("");
kamg@3992 511 current_offset += sm_frame->offset_delta();
kamg@3992 512 sm_frame = sm_frame->next();
kamg@3992 513 }
kamg@3992 514 }
kamg@3992 515 }
kamg@3992 516
duke@435 517 // Methods in ClassVerifier
duke@435 518
duke@435 519 ClassVerifier::ClassVerifier(
kamg@3992 520 instanceKlassHandle klass, TRAPS)
kamg@3992 521 : _thread(THREAD), _exception_type(NULL), _message(NULL), _klass(klass) {
duke@435 522 _this_type = VerificationType::reference_type(klass->name());
coleenp@2497 523 // Create list to hold symbols in reference area.
coleenp@2497 524 _symbols = new GrowableArray<Symbol*>(100, 0, NULL);
duke@435 525 }
duke@435 526
duke@435 527 ClassVerifier::~ClassVerifier() {
coleenp@2497 528 // Decrement the reference count for any symbols created.
coleenp@2497 529 for (int i = 0; i < _symbols->length(); i++) {
coleenp@2497 530 Symbol* s = _symbols->at(i);
coleenp@2497 531 s->decrement_refcount();
coleenp@2497 532 }
duke@435 533 }
duke@435 534
kamg@2297 535 VerificationType ClassVerifier::object_type() const {
kamg@2297 536 return VerificationType::reference_type(vmSymbols::java_lang_Object());
kamg@2297 537 }
kamg@2297 538
kamg@3992 539 TypeOrigin ClassVerifier::ref_ctx(const char* sig, TRAPS) {
kamg@3992 540 VerificationType vt = VerificationType::reference_type(
kamg@3992 541 create_temporary_symbol(sig, (int)strlen(sig), THREAD));
kamg@3992 542 return TypeOrigin::implicit(vt);
kamg@3992 543 }
kamg@3992 544
duke@435 545 void ClassVerifier::verify_class(TRAPS) {
kamg@3992 546 if (VerboseVerification) {
duke@435 547 tty->print_cr("Verifying class %s with new format",
duke@435 548 _klass->external_name());
duke@435 549 }
duke@435 550
coleenp@4037 551 Array<Method*>* methods = _klass->methods();
duke@435 552 int num_methods = methods->length();
duke@435 553
duke@435 554 for (int index = 0; index < num_methods; index++) {
jrose@1925 555 // Check for recursive re-verification before each method.
jrose@1925 556 if (was_recursively_verified()) return;
jrose@1925 557
coleenp@4037 558 Method* m = methods->at(index);
kamg@4245 559 if (m->is_native() || m->is_abstract() || m->is_overpass()) {
duke@435 560 // If m is native or abstract, skip it. It is checked in class file
kamg@4245 561 // parser that methods do not override a final method. Overpass methods
kamg@4245 562 // are trusted since the VM generates them.
duke@435 563 continue;
duke@435 564 }
duke@435 565 verify_method(methodHandle(THREAD, m), CHECK_VERIFY(this));
duke@435 566 }
jrose@1925 567
kamg@3992 568 if (VerboseVerification || TraceClassInitialization) {
jrose@1925 569 if (was_recursively_verified())
jrose@1925 570 tty->print_cr("Recursive verification detected for: %s",
jrose@1925 571 _klass->external_name());
jrose@1925 572 }
duke@435 573 }
duke@435 574
duke@435 575 void ClassVerifier::verify_method(methodHandle m, TRAPS) {
coleenp@4037 576 HandleMark hm(THREAD);
duke@435 577 _method = m; // initialize _method
kamg@3992 578 if (VerboseVerification) {
duke@435 579 tty->print_cr("Verifying method %s", m->name_and_sig_as_C_string());
duke@435 580 }
duke@435 581
duke@435 582 const char* bad_type_msg = "Bad type on operand stack in %s";
duke@435 583
twisti@3974 584 int32_t max_stack = m->verifier_max_stack();
duke@435 585 int32_t max_locals = m->max_locals();
duke@435 586 constantPoolHandle cp(THREAD, m->constants());
duke@435 587
duke@435 588 if (!SignatureVerifier::is_valid_method_signature(m->signature())) {
duke@435 589 class_format_error("Invalid method signature");
duke@435 590 return;
duke@435 591 }
duke@435 592
duke@435 593 // Initial stack map frame: offset is 0, stack is initially empty.
duke@435 594 StackMapFrame current_frame(max_locals, max_stack, this);
duke@435 595 // Set initial locals
duke@435 596 VerificationType return_type = current_frame.set_locals_from_arg(
duke@435 597 m, current_type(), CHECK_VERIFY(this));
duke@435 598
duke@435 599 int32_t stackmap_index = 0; // index to the stackmap array
duke@435 600
duke@435 601 u4 code_length = m->code_size();
duke@435 602
duke@435 603 // Scan the bytecode and map each instruction's start offset to a number.
duke@435 604 char* code_data = generate_code_data(m, code_length, CHECK_VERIFY(this));
duke@435 605
duke@435 606 int ex_min = code_length;
duke@435 607 int ex_max = -1;
duke@435 608 // Look through each item on the exception table. Each of the fields must refer
duke@435 609 // to a legal instruction.
duke@435 610 verify_exception_handler_table(
duke@435 611 code_length, code_data, ex_min, ex_max, CHECK_VERIFY(this));
duke@435 612
duke@435 613 // Look through each entry on the local variable table and make sure
duke@435 614 // its range of code array offsets is valid. (4169817)
duke@435 615 if (m->has_localvariable_table()) {
duke@435 616 verify_local_variable_table(code_length, code_data, CHECK_VERIFY(this));
duke@435 617 }
duke@435 618
coleenp@4037 619 Array<u1>* stackmap_data = m->stackmap_data();
duke@435 620 StackMapStream stream(stackmap_data);
duke@435 621 StackMapReader reader(this, &stream, code_data, code_length, THREAD);
duke@435 622 StackMapTable stackmap_table(&reader, &current_frame, max_locals, max_stack,
duke@435 623 code_data, code_length, CHECK_VERIFY(this));
duke@435 624
kamg@3992 625 if (VerboseVerification) {
kamg@3992 626 stackmap_table.print_on(tty);
duke@435 627 }
duke@435 628
duke@435 629 RawBytecodeStream bcs(m);
duke@435 630
duke@435 631 // Scan the byte code linearly from the start to the end
duke@435 632 bool no_control_flow = false; // Set to true when there is no direct control
duke@435 633 // flow from current instruction to the next
duke@435 634 // instruction in sequence
hseigel@6761 635
hseigel@6761 636 set_furthest_jump(0);
hseigel@6761 637
duke@435 638 Bytecodes::Code opcode;
duke@435 639 while (!bcs.is_last_bytecode()) {
jrose@1925 640 // Check for recursive re-verification before each bytecode.
jrose@1925 641 if (was_recursively_verified()) return;
jrose@1925 642
duke@435 643 opcode = bcs.raw_next();
duke@435 644 u2 bci = bcs.bci();
duke@435 645
duke@435 646 // Set current frame's offset to bci
duke@435 647 current_frame.set_offset(bci);
kamg@3992 648 current_frame.set_mark();
duke@435 649
duke@435 650 // Make sure every offset in stackmap table point to the beginning to
duke@435 651 // an instruction. Match current_frame to stackmap_table entry with
duke@435 652 // the same offset if exists.
duke@435 653 stackmap_index = verify_stackmap_table(
duke@435 654 stackmap_index, bci, &current_frame, &stackmap_table,
duke@435 655 no_control_flow, CHECK_VERIFY(this));
duke@435 656
kamg@3992 657
duke@435 658 bool this_uninit = false; // Set to true when invokespecial <init> initialized 'this'
duke@435 659
duke@435 660 // Merge with the next instruction
duke@435 661 {
duke@435 662 u2 index;
duke@435 663 int target;
duke@435 664 VerificationType type, type2;
duke@435 665 VerificationType atype;
duke@435 666
duke@435 667 #ifndef PRODUCT
kamg@3992 668 if (VerboseVerification) {
kamg@3992 669 current_frame.print_on(tty);
duke@435 670 tty->print_cr("offset = %d, opcode = %s", bci, Bytecodes::name(opcode));
duke@435 671 }
duke@435 672 #endif
duke@435 673
duke@435 674 // Make sure wide instruction is in correct format
duke@435 675 if (bcs.is_wide()) {
duke@435 676 if (opcode != Bytecodes::_iinc && opcode != Bytecodes::_iload &&
duke@435 677 opcode != Bytecodes::_aload && opcode != Bytecodes::_lload &&
duke@435 678 opcode != Bytecodes::_istore && opcode != Bytecodes::_astore &&
duke@435 679 opcode != Bytecodes::_lstore && opcode != Bytecodes::_fload &&
duke@435 680 opcode != Bytecodes::_dload && opcode != Bytecodes::_fstore &&
duke@435 681 opcode != Bytecodes::_dstore) {
kamg@3992 682 /* Unreachable? RawBytecodeStream's raw_next() returns 'illegal'
kamg@3992 683 * if we encounter a wide instruction that modifies an invalid
kamg@3992 684 * opcode (not one of the ones listed above) */
kamg@3992 685 verify_error(ErrorContext::bad_code(bci), "Bad wide instruction");
duke@435 686 return;
duke@435 687 }
duke@435 688 }
duke@435 689
duke@435 690 switch (opcode) {
duke@435 691 case Bytecodes::_nop :
duke@435 692 no_control_flow = false; break;
duke@435 693 case Bytecodes::_aconst_null :
duke@435 694 current_frame.push_stack(
duke@435 695 VerificationType::null_type(), CHECK_VERIFY(this));
duke@435 696 no_control_flow = false; break;
duke@435 697 case Bytecodes::_iconst_m1 :
duke@435 698 case Bytecodes::_iconst_0 :
duke@435 699 case Bytecodes::_iconst_1 :
duke@435 700 case Bytecodes::_iconst_2 :
duke@435 701 case Bytecodes::_iconst_3 :
duke@435 702 case Bytecodes::_iconst_4 :
duke@435 703 case Bytecodes::_iconst_5 :
duke@435 704 current_frame.push_stack(
duke@435 705 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 706 no_control_flow = false; break;
duke@435 707 case Bytecodes::_lconst_0 :
duke@435 708 case Bytecodes::_lconst_1 :
duke@435 709 current_frame.push_stack_2(
duke@435 710 VerificationType::long_type(),
duke@435 711 VerificationType::long2_type(), CHECK_VERIFY(this));
duke@435 712 no_control_flow = false; break;
duke@435 713 case Bytecodes::_fconst_0 :
duke@435 714 case Bytecodes::_fconst_1 :
duke@435 715 case Bytecodes::_fconst_2 :
duke@435 716 current_frame.push_stack(
duke@435 717 VerificationType::float_type(), CHECK_VERIFY(this));
duke@435 718 no_control_flow = false; break;
duke@435 719 case Bytecodes::_dconst_0 :
duke@435 720 case Bytecodes::_dconst_1 :
duke@435 721 current_frame.push_stack_2(
duke@435 722 VerificationType::double_type(),
duke@435 723 VerificationType::double2_type(), CHECK_VERIFY(this));
duke@435 724 no_control_flow = false; break;
duke@435 725 case Bytecodes::_sipush :
duke@435 726 case Bytecodes::_bipush :
duke@435 727 current_frame.push_stack(
duke@435 728 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 729 no_control_flow = false; break;
duke@435 730 case Bytecodes::_ldc :
duke@435 731 verify_ldc(
jrose@1920 732 opcode, bcs.get_index_u1(), &current_frame,
duke@435 733 cp, bci, CHECK_VERIFY(this));
duke@435 734 no_control_flow = false; break;
duke@435 735 case Bytecodes::_ldc_w :
duke@435 736 case Bytecodes::_ldc2_w :
duke@435 737 verify_ldc(
jrose@1920 738 opcode, bcs.get_index_u2(), &current_frame,
duke@435 739 cp, bci, CHECK_VERIFY(this));
duke@435 740 no_control_flow = false; break;
duke@435 741 case Bytecodes::_iload :
duke@435 742 verify_iload(bcs.get_index(), &current_frame, CHECK_VERIFY(this));
duke@435 743 no_control_flow = false; break;
duke@435 744 case Bytecodes::_iload_0 :
duke@435 745 case Bytecodes::_iload_1 :
duke@435 746 case Bytecodes::_iload_2 :
duke@435 747 case Bytecodes::_iload_3 :
duke@435 748 index = opcode - Bytecodes::_iload_0;
duke@435 749 verify_iload(index, &current_frame, CHECK_VERIFY(this));
duke@435 750 no_control_flow = false; break;
duke@435 751 case Bytecodes::_lload :
duke@435 752 verify_lload(bcs.get_index(), &current_frame, CHECK_VERIFY(this));
duke@435 753 no_control_flow = false; break;
duke@435 754 case Bytecodes::_lload_0 :
duke@435 755 case Bytecodes::_lload_1 :
duke@435 756 case Bytecodes::_lload_2 :
duke@435 757 case Bytecodes::_lload_3 :
duke@435 758 index = opcode - Bytecodes::_lload_0;
duke@435 759 verify_lload(index, &current_frame, CHECK_VERIFY(this));
duke@435 760 no_control_flow = false; break;
duke@435 761 case Bytecodes::_fload :
duke@435 762 verify_fload(bcs.get_index(), &current_frame, CHECK_VERIFY(this));
duke@435 763 no_control_flow = false; break;
duke@435 764 case Bytecodes::_fload_0 :
duke@435 765 case Bytecodes::_fload_1 :
duke@435 766 case Bytecodes::_fload_2 :
duke@435 767 case Bytecodes::_fload_3 :
duke@435 768 index = opcode - Bytecodes::_fload_0;
duke@435 769 verify_fload(index, &current_frame, CHECK_VERIFY(this));
duke@435 770 no_control_flow = false; break;
duke@435 771 case Bytecodes::_dload :
duke@435 772 verify_dload(bcs.get_index(), &current_frame, CHECK_VERIFY(this));
duke@435 773 no_control_flow = false; break;
duke@435 774 case Bytecodes::_dload_0 :
duke@435 775 case Bytecodes::_dload_1 :
duke@435 776 case Bytecodes::_dload_2 :
duke@435 777 case Bytecodes::_dload_3 :
duke@435 778 index = opcode - Bytecodes::_dload_0;
duke@435 779 verify_dload(index, &current_frame, CHECK_VERIFY(this));
duke@435 780 no_control_flow = false; break;
duke@435 781 case Bytecodes::_aload :
duke@435 782 verify_aload(bcs.get_index(), &current_frame, CHECK_VERIFY(this));
duke@435 783 no_control_flow = false; break;
duke@435 784 case Bytecodes::_aload_0 :
duke@435 785 case Bytecodes::_aload_1 :
duke@435 786 case Bytecodes::_aload_2 :
duke@435 787 case Bytecodes::_aload_3 :
duke@435 788 index = opcode - Bytecodes::_aload_0;
duke@435 789 verify_aload(index, &current_frame, CHECK_VERIFY(this));
duke@435 790 no_control_flow = false; break;
duke@435 791 case Bytecodes::_iaload :
duke@435 792 type = current_frame.pop_stack(
duke@435 793 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 794 atype = current_frame.pop_stack(
duke@435 795 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 796 if (!atype.is_int_array()) {
kamg@3992 797 verify_error(ErrorContext::bad_type(bci,
kamg@3992 798 current_frame.stack_top_ctx(), ref_ctx("[I", THREAD)),
kamg@3992 799 bad_type_msg, "iaload");
duke@435 800 return;
duke@435 801 }
duke@435 802 current_frame.push_stack(
duke@435 803 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 804 no_control_flow = false; break;
duke@435 805 case Bytecodes::_baload :
duke@435 806 type = current_frame.pop_stack(
duke@435 807 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 808 atype = current_frame.pop_stack(
duke@435 809 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 810 if (!atype.is_bool_array() && !atype.is_byte_array()) {
kamg@3992 811 verify_error(
kamg@3992 812 ErrorContext::bad_type(bci, current_frame.stack_top_ctx()),
kamg@3992 813 bad_type_msg, "baload");
duke@435 814 return;
duke@435 815 }
duke@435 816 current_frame.push_stack(
duke@435 817 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 818 no_control_flow = false; break;
duke@435 819 case Bytecodes::_caload :
duke@435 820 type = current_frame.pop_stack(
duke@435 821 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 822 atype = current_frame.pop_stack(
duke@435 823 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 824 if (!atype.is_char_array()) {
kamg@3992 825 verify_error(ErrorContext::bad_type(bci,
kamg@3992 826 current_frame.stack_top_ctx(), ref_ctx("[C", THREAD)),
kamg@3992 827 bad_type_msg, "caload");
duke@435 828 return;
duke@435 829 }
duke@435 830 current_frame.push_stack(
duke@435 831 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 832 no_control_flow = false; break;
duke@435 833 case Bytecodes::_saload :
duke@435 834 type = current_frame.pop_stack(
duke@435 835 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 836 atype = current_frame.pop_stack(
duke@435 837 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 838 if (!atype.is_short_array()) {
kamg@3992 839 verify_error(ErrorContext::bad_type(bci,
kamg@3992 840 current_frame.stack_top_ctx(), ref_ctx("[S", THREAD)),
kamg@3992 841 bad_type_msg, "saload");
duke@435 842 return;
duke@435 843 }
duke@435 844 current_frame.push_stack(
duke@435 845 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 846 no_control_flow = false; break;
duke@435 847 case Bytecodes::_laload :
duke@435 848 type = current_frame.pop_stack(
duke@435 849 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 850 atype = current_frame.pop_stack(
duke@435 851 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 852 if (!atype.is_long_array()) {
kamg@3992 853 verify_error(ErrorContext::bad_type(bci,
kamg@3992 854 current_frame.stack_top_ctx(), ref_ctx("[J", THREAD)),
kamg@3992 855 bad_type_msg, "laload");
duke@435 856 return;
duke@435 857 }
duke@435 858 current_frame.push_stack_2(
duke@435 859 VerificationType::long_type(),
duke@435 860 VerificationType::long2_type(), CHECK_VERIFY(this));
duke@435 861 no_control_flow = false; break;
duke@435 862 case Bytecodes::_faload :
duke@435 863 type = current_frame.pop_stack(
duke@435 864 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 865 atype = current_frame.pop_stack(
duke@435 866 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 867 if (!atype.is_float_array()) {
kamg@3992 868 verify_error(ErrorContext::bad_type(bci,
kamg@3992 869 current_frame.stack_top_ctx(), ref_ctx("[F", THREAD)),
kamg@3992 870 bad_type_msg, "faload");
duke@435 871 return;
duke@435 872 }
duke@435 873 current_frame.push_stack(
duke@435 874 VerificationType::float_type(), CHECK_VERIFY(this));
duke@435 875 no_control_flow = false; break;
duke@435 876 case Bytecodes::_daload :
duke@435 877 type = current_frame.pop_stack(
duke@435 878 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 879 atype = current_frame.pop_stack(
duke@435 880 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 881 if (!atype.is_double_array()) {
kamg@3992 882 verify_error(ErrorContext::bad_type(bci,
kamg@3992 883 current_frame.stack_top_ctx(), ref_ctx("[D", THREAD)),
kamg@3992 884 bad_type_msg, "daload");
duke@435 885 return;
duke@435 886 }
duke@435 887 current_frame.push_stack_2(
duke@435 888 VerificationType::double_type(),
duke@435 889 VerificationType::double2_type(), CHECK_VERIFY(this));
duke@435 890 no_control_flow = false; break;
duke@435 891 case Bytecodes::_aaload : {
duke@435 892 type = current_frame.pop_stack(
duke@435 893 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 894 atype = current_frame.pop_stack(
duke@435 895 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 896 if (!atype.is_reference_array()) {
kamg@3992 897 verify_error(ErrorContext::bad_type(bci,
kamg@3992 898 current_frame.stack_top_ctx(),
kamg@3992 899 TypeOrigin::implicit(VerificationType::reference_check())),
kamg@3992 900 bad_type_msg, "aaload");
duke@435 901 return;
duke@435 902 }
duke@435 903 if (atype.is_null()) {
duke@435 904 current_frame.push_stack(
duke@435 905 VerificationType::null_type(), CHECK_VERIFY(this));
duke@435 906 } else {
duke@435 907 VerificationType component =
coleenp@2497 908 atype.get_component(this, CHECK_VERIFY(this));
duke@435 909 current_frame.push_stack(component, CHECK_VERIFY(this));
duke@435 910 }
duke@435 911 no_control_flow = false; break;
duke@435 912 }
duke@435 913 case Bytecodes::_istore :
duke@435 914 verify_istore(bcs.get_index(), &current_frame, CHECK_VERIFY(this));
duke@435 915 no_control_flow = false; break;
duke@435 916 case Bytecodes::_istore_0 :
duke@435 917 case Bytecodes::_istore_1 :
duke@435 918 case Bytecodes::_istore_2 :
duke@435 919 case Bytecodes::_istore_3 :
duke@435 920 index = opcode - Bytecodes::_istore_0;
duke@435 921 verify_istore(index, &current_frame, CHECK_VERIFY(this));
duke@435 922 no_control_flow = false; break;
duke@435 923 case Bytecodes::_lstore :
duke@435 924 verify_lstore(bcs.get_index(), &current_frame, CHECK_VERIFY(this));
duke@435 925 no_control_flow = false; break;
duke@435 926 case Bytecodes::_lstore_0 :
duke@435 927 case Bytecodes::_lstore_1 :
duke@435 928 case Bytecodes::_lstore_2 :
duke@435 929 case Bytecodes::_lstore_3 :
duke@435 930 index = opcode - Bytecodes::_lstore_0;
duke@435 931 verify_lstore(index, &current_frame, CHECK_VERIFY(this));
duke@435 932 no_control_flow = false; break;
duke@435 933 case Bytecodes::_fstore :
duke@435 934 verify_fstore(bcs.get_index(), &current_frame, CHECK_VERIFY(this));
duke@435 935 no_control_flow = false; break;
duke@435 936 case Bytecodes::_fstore_0 :
duke@435 937 case Bytecodes::_fstore_1 :
duke@435 938 case Bytecodes::_fstore_2 :
duke@435 939 case Bytecodes::_fstore_3 :
duke@435 940 index = opcode - Bytecodes::_fstore_0;
duke@435 941 verify_fstore(index, &current_frame, CHECK_VERIFY(this));
duke@435 942 no_control_flow = false; break;
duke@435 943 case Bytecodes::_dstore :
duke@435 944 verify_dstore(bcs.get_index(), &current_frame, CHECK_VERIFY(this));
duke@435 945 no_control_flow = false; break;
duke@435 946 case Bytecodes::_dstore_0 :
duke@435 947 case Bytecodes::_dstore_1 :
duke@435 948 case Bytecodes::_dstore_2 :
duke@435 949 case Bytecodes::_dstore_3 :
duke@435 950 index = opcode - Bytecodes::_dstore_0;
duke@435 951 verify_dstore(index, &current_frame, CHECK_VERIFY(this));
duke@435 952 no_control_flow = false; break;
duke@435 953 case Bytecodes::_astore :
duke@435 954 verify_astore(bcs.get_index(), &current_frame, CHECK_VERIFY(this));
duke@435 955 no_control_flow = false; break;
duke@435 956 case Bytecodes::_astore_0 :
duke@435 957 case Bytecodes::_astore_1 :
duke@435 958 case Bytecodes::_astore_2 :
duke@435 959 case Bytecodes::_astore_3 :
duke@435 960 index = opcode - Bytecodes::_astore_0;
duke@435 961 verify_astore(index, &current_frame, CHECK_VERIFY(this));
duke@435 962 no_control_flow = false; break;
duke@435 963 case Bytecodes::_iastore :
duke@435 964 type = current_frame.pop_stack(
duke@435 965 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 966 type2 = current_frame.pop_stack(
duke@435 967 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 968 atype = current_frame.pop_stack(
duke@435 969 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 970 if (!atype.is_int_array()) {
kamg@3992 971 verify_error(ErrorContext::bad_type(bci,
kamg@3992 972 current_frame.stack_top_ctx(), ref_ctx("[I", THREAD)),
kamg@3992 973 bad_type_msg, "iastore");
duke@435 974 return;
duke@435 975 }
duke@435 976 no_control_flow = false; break;
duke@435 977 case Bytecodes::_bastore :
duke@435 978 type = current_frame.pop_stack(
duke@435 979 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 980 type2 = current_frame.pop_stack(
duke@435 981 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 982 atype = current_frame.pop_stack(
duke@435 983 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 984 if (!atype.is_bool_array() && !atype.is_byte_array()) {
kamg@3992 985 verify_error(
kamg@3992 986 ErrorContext::bad_type(bci, current_frame.stack_top_ctx()),
kamg@3992 987 bad_type_msg, "bastore");
duke@435 988 return;
duke@435 989 }
duke@435 990 no_control_flow = false; break;
duke@435 991 case Bytecodes::_castore :
duke@435 992 current_frame.pop_stack(
duke@435 993 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 994 current_frame.pop_stack(
duke@435 995 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 996 atype = current_frame.pop_stack(
duke@435 997 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 998 if (!atype.is_char_array()) {
kamg@3992 999 verify_error(ErrorContext::bad_type(bci,
kamg@3992 1000 current_frame.stack_top_ctx(), ref_ctx("[C", THREAD)),
kamg@3992 1001 bad_type_msg, "castore");
duke@435 1002 return;
duke@435 1003 }
duke@435 1004 no_control_flow = false; break;
duke@435 1005 case Bytecodes::_sastore :
duke@435 1006 current_frame.pop_stack(
duke@435 1007 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1008 current_frame.pop_stack(
duke@435 1009 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1010 atype = current_frame.pop_stack(
duke@435 1011 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 1012 if (!atype.is_short_array()) {
kamg@3992 1013 verify_error(ErrorContext::bad_type(bci,
kamg@3992 1014 current_frame.stack_top_ctx(), ref_ctx("[S", THREAD)),
kamg@3992 1015 bad_type_msg, "sastore");
duke@435 1016 return;
duke@435 1017 }
duke@435 1018 no_control_flow = false; break;
duke@435 1019 case Bytecodes::_lastore :
duke@435 1020 current_frame.pop_stack_2(
duke@435 1021 VerificationType::long2_type(),
duke@435 1022 VerificationType::long_type(), CHECK_VERIFY(this));
duke@435 1023 current_frame.pop_stack(
duke@435 1024 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1025 atype = current_frame.pop_stack(
duke@435 1026 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 1027 if (!atype.is_long_array()) {
kamg@3992 1028 verify_error(ErrorContext::bad_type(bci,
kamg@3992 1029 current_frame.stack_top_ctx(), ref_ctx("[J", THREAD)),
kamg@3992 1030 bad_type_msg, "lastore");
duke@435 1031 return;
duke@435 1032 }
duke@435 1033 no_control_flow = false; break;
duke@435 1034 case Bytecodes::_fastore :
duke@435 1035 current_frame.pop_stack(
duke@435 1036 VerificationType::float_type(), CHECK_VERIFY(this));
duke@435 1037 current_frame.pop_stack
duke@435 1038 (VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1039 atype = current_frame.pop_stack(
duke@435 1040 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 1041 if (!atype.is_float_array()) {
kamg@3992 1042 verify_error(ErrorContext::bad_type(bci,
kamg@3992 1043 current_frame.stack_top_ctx(), ref_ctx("[F", THREAD)),
kamg@3992 1044 bad_type_msg, "fastore");
duke@435 1045 return;
duke@435 1046 }
duke@435 1047 no_control_flow = false; break;
duke@435 1048 case Bytecodes::_dastore :
duke@435 1049 current_frame.pop_stack_2(
duke@435 1050 VerificationType::double2_type(),
duke@435 1051 VerificationType::double_type(), CHECK_VERIFY(this));
duke@435 1052 current_frame.pop_stack(
duke@435 1053 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1054 atype = current_frame.pop_stack(
duke@435 1055 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 1056 if (!atype.is_double_array()) {
kamg@3992 1057 verify_error(ErrorContext::bad_type(bci,
kamg@3992 1058 current_frame.stack_top_ctx(), ref_ctx("[D", THREAD)),
kamg@3992 1059 bad_type_msg, "dastore");
duke@435 1060 return;
duke@435 1061 }
duke@435 1062 no_control_flow = false; break;
duke@435 1063 case Bytecodes::_aastore :
kamg@2297 1064 type = current_frame.pop_stack(object_type(), CHECK_VERIFY(this));
duke@435 1065 type2 = current_frame.pop_stack(
duke@435 1066 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1067 atype = current_frame.pop_stack(
duke@435 1068 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 1069 // more type-checking is done at runtime
duke@435 1070 if (!atype.is_reference_array()) {
kamg@3992 1071 verify_error(ErrorContext::bad_type(bci,
kamg@3992 1072 current_frame.stack_top_ctx(),
kamg@3992 1073 TypeOrigin::implicit(VerificationType::reference_check())),
kamg@3992 1074 bad_type_msg, "aastore");
duke@435 1075 return;
duke@435 1076 }
duke@435 1077 // 4938384: relaxed constraint in JVMS 3nd edition.
duke@435 1078 no_control_flow = false; break;
duke@435 1079 case Bytecodes::_pop :
duke@435 1080 current_frame.pop_stack(
duke@435 1081 VerificationType::category1_check(), CHECK_VERIFY(this));
duke@435 1082 no_control_flow = false; break;
duke@435 1083 case Bytecodes::_pop2 :
duke@435 1084 type = current_frame.pop_stack(CHECK_VERIFY(this));
duke@435 1085 if (type.is_category1()) {
duke@435 1086 current_frame.pop_stack(
duke@435 1087 VerificationType::category1_check(), CHECK_VERIFY(this));
duke@435 1088 } else if (type.is_category2_2nd()) {
duke@435 1089 current_frame.pop_stack(
duke@435 1090 VerificationType::category2_check(), CHECK_VERIFY(this));
duke@435 1091 } else {
kamg@3992 1092 /* Unreachable? Would need a category2_1st on TOS
kamg@3992 1093 * which does not appear possible. */
kamg@3992 1094 verify_error(
kamg@3992 1095 ErrorContext::bad_type(bci, current_frame.stack_top_ctx()),
kamg@3992 1096 bad_type_msg, "pop2");
duke@435 1097 return;
duke@435 1098 }
duke@435 1099 no_control_flow = false; break;
duke@435 1100 case Bytecodes::_dup :
duke@435 1101 type = current_frame.pop_stack(
duke@435 1102 VerificationType::category1_check(), CHECK_VERIFY(this));
duke@435 1103 current_frame.push_stack(type, CHECK_VERIFY(this));
duke@435 1104 current_frame.push_stack(type, CHECK_VERIFY(this));
duke@435 1105 no_control_flow = false; break;
duke@435 1106 case Bytecodes::_dup_x1 :
duke@435 1107 type = current_frame.pop_stack(
duke@435 1108 VerificationType::category1_check(), CHECK_VERIFY(this));
duke@435 1109 type2 = current_frame.pop_stack(
duke@435 1110 VerificationType::category1_check(), CHECK_VERIFY(this));
duke@435 1111 current_frame.push_stack(type, CHECK_VERIFY(this));
duke@435 1112 current_frame.push_stack(type2, CHECK_VERIFY(this));
duke@435 1113 current_frame.push_stack(type, CHECK_VERIFY(this));
duke@435 1114 no_control_flow = false; break;
duke@435 1115 case Bytecodes::_dup_x2 :
duke@435 1116 {
duke@435 1117 VerificationType type3;
duke@435 1118 type = current_frame.pop_stack(
duke@435 1119 VerificationType::category1_check(), CHECK_VERIFY(this));
duke@435 1120 type2 = current_frame.pop_stack(CHECK_VERIFY(this));
duke@435 1121 if (type2.is_category1()) {
duke@435 1122 type3 = current_frame.pop_stack(
duke@435 1123 VerificationType::category1_check(), CHECK_VERIFY(this));
duke@435 1124 } else if (type2.is_category2_2nd()) {
duke@435 1125 type3 = current_frame.pop_stack(
duke@435 1126 VerificationType::category2_check(), CHECK_VERIFY(this));
duke@435 1127 } else {
kamg@3992 1128 /* Unreachable? Would need a category2_1st at stack depth 2 with
kamg@3992 1129 * a category1 on TOS which does not appear possible. */
kamg@3992 1130 verify_error(ErrorContext::bad_type(
kamg@3992 1131 bci, current_frame.stack_top_ctx()), bad_type_msg, "dup_x2");
duke@435 1132 return;
duke@435 1133 }
duke@435 1134 current_frame.push_stack(type, CHECK_VERIFY(this));
duke@435 1135 current_frame.push_stack(type3, CHECK_VERIFY(this));
duke@435 1136 current_frame.push_stack(type2, CHECK_VERIFY(this));
duke@435 1137 current_frame.push_stack(type, CHECK_VERIFY(this));
duke@435 1138 no_control_flow = false; break;
duke@435 1139 }
duke@435 1140 case Bytecodes::_dup2 :
duke@435 1141 type = current_frame.pop_stack(CHECK_VERIFY(this));
duke@435 1142 if (type.is_category1()) {
duke@435 1143 type2 = current_frame.pop_stack(
duke@435 1144 VerificationType::category1_check(), CHECK_VERIFY(this));
duke@435 1145 } else if (type.is_category2_2nd()) {
duke@435 1146 type2 = current_frame.pop_stack(
duke@435 1147 VerificationType::category2_check(), CHECK_VERIFY(this));
duke@435 1148 } else {
kamg@3992 1149 /* Unreachable? Would need a category2_1st on TOS which does not
kamg@3992 1150 * appear possible. */
kamg@3992 1151 verify_error(
kamg@3992 1152 ErrorContext::bad_type(bci, current_frame.stack_top_ctx()),
kamg@3992 1153 bad_type_msg, "dup2");
duke@435 1154 return;
duke@435 1155 }
duke@435 1156 current_frame.push_stack(type2, CHECK_VERIFY(this));
duke@435 1157 current_frame.push_stack(type, CHECK_VERIFY(this));
duke@435 1158 current_frame.push_stack(type2, CHECK_VERIFY(this));
duke@435 1159 current_frame.push_stack(type, CHECK_VERIFY(this));
duke@435 1160 no_control_flow = false; break;
duke@435 1161 case Bytecodes::_dup2_x1 :
duke@435 1162 {
duke@435 1163 VerificationType type3;
duke@435 1164 type = current_frame.pop_stack(CHECK_VERIFY(this));
duke@435 1165 if (type.is_category1()) {
duke@435 1166 type2 = current_frame.pop_stack(
duke@435 1167 VerificationType::category1_check(), CHECK_VERIFY(this));
kamg@3992 1168 } else if (type.is_category2_2nd()) {
kamg@3992 1169 type2 = current_frame.pop_stack(
kamg@3992 1170 VerificationType::category2_check(), CHECK_VERIFY(this));
duke@435 1171 } else {
kamg@3992 1172 /* Unreachable? Would need a category2_1st on TOS which does
kamg@3992 1173 * not appear possible. */
kamg@3992 1174 verify_error(
kamg@3992 1175 ErrorContext::bad_type(bci, current_frame.stack_top_ctx()),
kamg@3992 1176 bad_type_msg, "dup2_x1");
duke@435 1177 return;
duke@435 1178 }
duke@435 1179 type3 = current_frame.pop_stack(
duke@435 1180 VerificationType::category1_check(), CHECK_VERIFY(this));
duke@435 1181 current_frame.push_stack(type2, CHECK_VERIFY(this));
duke@435 1182 current_frame.push_stack(type, CHECK_VERIFY(this));
duke@435 1183 current_frame.push_stack(type3, CHECK_VERIFY(this));
duke@435 1184 current_frame.push_stack(type2, CHECK_VERIFY(this));
duke@435 1185 current_frame.push_stack(type, CHECK_VERIFY(this));
duke@435 1186 no_control_flow = false; break;
duke@435 1187 }
duke@435 1188 case Bytecodes::_dup2_x2 :
duke@435 1189 {
duke@435 1190 VerificationType type3, type4;
duke@435 1191 type = current_frame.pop_stack(CHECK_VERIFY(this));
duke@435 1192 if (type.is_category1()) {
duke@435 1193 type2 = current_frame.pop_stack(
duke@435 1194 VerificationType::category1_check(), CHECK_VERIFY(this));
duke@435 1195 } else if (type.is_category2_2nd()) {
duke@435 1196 type2 = current_frame.pop_stack(
duke@435 1197 VerificationType::category2_check(), CHECK_VERIFY(this));
duke@435 1198 } else {
kamg@3992 1199 /* Unreachable? Would need a category2_1st on TOS which does
kamg@3992 1200 * not appear possible. */
kamg@3992 1201 verify_error(
kamg@3992 1202 ErrorContext::bad_type(bci, current_frame.stack_top_ctx()),
kamg@3992 1203 bad_type_msg, "dup2_x2");
duke@435 1204 return;
duke@435 1205 }
duke@435 1206 type3 = current_frame.pop_stack(CHECK_VERIFY(this));
duke@435 1207 if (type3.is_category1()) {
duke@435 1208 type4 = current_frame.pop_stack(
duke@435 1209 VerificationType::category1_check(), CHECK_VERIFY(this));
duke@435 1210 } else if (type3.is_category2_2nd()) {
duke@435 1211 type4 = current_frame.pop_stack(
duke@435 1212 VerificationType::category2_check(), CHECK_VERIFY(this));
duke@435 1213 } else {
kamg@3992 1214 /* Unreachable? Would need a category2_1st on TOS after popping
kamg@3992 1215 * a long/double or two category 1's, which does not
kamg@3992 1216 * appear possible. */
kamg@3992 1217 verify_error(
kamg@3992 1218 ErrorContext::bad_type(bci, current_frame.stack_top_ctx()),
kamg@3992 1219 bad_type_msg, "dup2_x2");
duke@435 1220 return;
duke@435 1221 }
duke@435 1222 current_frame.push_stack(type2, CHECK_VERIFY(this));
duke@435 1223 current_frame.push_stack(type, CHECK_VERIFY(this));
duke@435 1224 current_frame.push_stack(type4, CHECK_VERIFY(this));
duke@435 1225 current_frame.push_stack(type3, CHECK_VERIFY(this));
duke@435 1226 current_frame.push_stack(type2, CHECK_VERIFY(this));
duke@435 1227 current_frame.push_stack(type, CHECK_VERIFY(this));
duke@435 1228 no_control_flow = false; break;
duke@435 1229 }
duke@435 1230 case Bytecodes::_swap :
duke@435 1231 type = current_frame.pop_stack(
duke@435 1232 VerificationType::category1_check(), CHECK_VERIFY(this));
duke@435 1233 type2 = current_frame.pop_stack(
duke@435 1234 VerificationType::category1_check(), CHECK_VERIFY(this));
duke@435 1235 current_frame.push_stack(type, CHECK_VERIFY(this));
duke@435 1236 current_frame.push_stack(type2, CHECK_VERIFY(this));
duke@435 1237 no_control_flow = false; break;
duke@435 1238 case Bytecodes::_iadd :
duke@435 1239 case Bytecodes::_isub :
duke@435 1240 case Bytecodes::_imul :
duke@435 1241 case Bytecodes::_idiv :
duke@435 1242 case Bytecodes::_irem :
duke@435 1243 case Bytecodes::_ishl :
duke@435 1244 case Bytecodes::_ishr :
duke@435 1245 case Bytecodes::_iushr :
duke@435 1246 case Bytecodes::_ior :
duke@435 1247 case Bytecodes::_ixor :
duke@435 1248 case Bytecodes::_iand :
duke@435 1249 current_frame.pop_stack(
duke@435 1250 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1251 // fall through
duke@435 1252 case Bytecodes::_ineg :
duke@435 1253 current_frame.pop_stack(
duke@435 1254 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1255 current_frame.push_stack(
duke@435 1256 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1257 no_control_flow = false; break;
duke@435 1258 case Bytecodes::_ladd :
duke@435 1259 case Bytecodes::_lsub :
duke@435 1260 case Bytecodes::_lmul :
duke@435 1261 case Bytecodes::_ldiv :
duke@435 1262 case Bytecodes::_lrem :
duke@435 1263 case Bytecodes::_land :
duke@435 1264 case Bytecodes::_lor :
duke@435 1265 case Bytecodes::_lxor :
duke@435 1266 current_frame.pop_stack_2(
duke@435 1267 VerificationType::long2_type(),
duke@435 1268 VerificationType::long_type(), CHECK_VERIFY(this));
duke@435 1269 // fall through
duke@435 1270 case Bytecodes::_lneg :
duke@435 1271 current_frame.pop_stack_2(
duke@435 1272 VerificationType::long2_type(),
duke@435 1273 VerificationType::long_type(), CHECK_VERIFY(this));
duke@435 1274 current_frame.push_stack_2(
duke@435 1275 VerificationType::long_type(),
duke@435 1276 VerificationType::long2_type(), CHECK_VERIFY(this));
duke@435 1277 no_control_flow = false; break;
duke@435 1278 case Bytecodes::_lshl :
duke@435 1279 case Bytecodes::_lshr :
duke@435 1280 case Bytecodes::_lushr :
duke@435 1281 current_frame.pop_stack(
duke@435 1282 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1283 current_frame.pop_stack_2(
duke@435 1284 VerificationType::long2_type(),
duke@435 1285 VerificationType::long_type(), CHECK_VERIFY(this));
duke@435 1286 current_frame.push_stack_2(
duke@435 1287 VerificationType::long_type(),
duke@435 1288 VerificationType::long2_type(), CHECK_VERIFY(this));
duke@435 1289 no_control_flow = false; break;
duke@435 1290 case Bytecodes::_fadd :
duke@435 1291 case Bytecodes::_fsub :
duke@435 1292 case Bytecodes::_fmul :
duke@435 1293 case Bytecodes::_fdiv :
duke@435 1294 case Bytecodes::_frem :
duke@435 1295 current_frame.pop_stack(
duke@435 1296 VerificationType::float_type(), CHECK_VERIFY(this));
duke@435 1297 // fall through
duke@435 1298 case Bytecodes::_fneg :
duke@435 1299 current_frame.pop_stack(
duke@435 1300 VerificationType::float_type(), CHECK_VERIFY(this));
duke@435 1301 current_frame.push_stack(
duke@435 1302 VerificationType::float_type(), CHECK_VERIFY(this));
duke@435 1303 no_control_flow = false; break;
duke@435 1304 case Bytecodes::_dadd :
duke@435 1305 case Bytecodes::_dsub :
duke@435 1306 case Bytecodes::_dmul :
duke@435 1307 case Bytecodes::_ddiv :
duke@435 1308 case Bytecodes::_drem :
duke@435 1309 current_frame.pop_stack_2(
duke@435 1310 VerificationType::double2_type(),
duke@435 1311 VerificationType::double_type(), CHECK_VERIFY(this));
duke@435 1312 // fall through
duke@435 1313 case Bytecodes::_dneg :
duke@435 1314 current_frame.pop_stack_2(
duke@435 1315 VerificationType::double2_type(),
duke@435 1316 VerificationType::double_type(), CHECK_VERIFY(this));
duke@435 1317 current_frame.push_stack_2(
duke@435 1318 VerificationType::double_type(),
duke@435 1319 VerificationType::double2_type(), CHECK_VERIFY(this));
duke@435 1320 no_control_flow = false; break;
duke@435 1321 case Bytecodes::_iinc :
duke@435 1322 verify_iinc(bcs.get_index(), &current_frame, CHECK_VERIFY(this));
duke@435 1323 no_control_flow = false; break;
duke@435 1324 case Bytecodes::_i2l :
duke@435 1325 type = current_frame.pop_stack(
duke@435 1326 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1327 current_frame.push_stack_2(
duke@435 1328 VerificationType::long_type(),
duke@435 1329 VerificationType::long2_type(), CHECK_VERIFY(this));
duke@435 1330 no_control_flow = false; break;
duke@435 1331 case Bytecodes::_l2i :
duke@435 1332 current_frame.pop_stack_2(
duke@435 1333 VerificationType::long2_type(),
duke@435 1334 VerificationType::long_type(), CHECK_VERIFY(this));
duke@435 1335 current_frame.push_stack(
duke@435 1336 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1337 no_control_flow = false; break;
duke@435 1338 case Bytecodes::_i2f :
duke@435 1339 current_frame.pop_stack(
duke@435 1340 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1341 current_frame.push_stack(
duke@435 1342 VerificationType::float_type(), CHECK_VERIFY(this));
duke@435 1343 no_control_flow = false; break;
duke@435 1344 case Bytecodes::_i2d :
duke@435 1345 current_frame.pop_stack(
duke@435 1346 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1347 current_frame.push_stack_2(
duke@435 1348 VerificationType::double_type(),
duke@435 1349 VerificationType::double2_type(), CHECK_VERIFY(this));
duke@435 1350 no_control_flow = false; break;
duke@435 1351 case Bytecodes::_l2f :
duke@435 1352 current_frame.pop_stack_2(
duke@435 1353 VerificationType::long2_type(),
duke@435 1354 VerificationType::long_type(), CHECK_VERIFY(this));
duke@435 1355 current_frame.push_stack(
duke@435 1356 VerificationType::float_type(), CHECK_VERIFY(this));
duke@435 1357 no_control_flow = false; break;
duke@435 1358 case Bytecodes::_l2d :
duke@435 1359 current_frame.pop_stack_2(
duke@435 1360 VerificationType::long2_type(),
duke@435 1361 VerificationType::long_type(), CHECK_VERIFY(this));
duke@435 1362 current_frame.push_stack_2(
duke@435 1363 VerificationType::double_type(),
duke@435 1364 VerificationType::double2_type(), CHECK_VERIFY(this));
duke@435 1365 no_control_flow = false; break;
duke@435 1366 case Bytecodes::_f2i :
duke@435 1367 current_frame.pop_stack(
duke@435 1368 VerificationType::float_type(), CHECK_VERIFY(this));
duke@435 1369 current_frame.push_stack(
duke@435 1370 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1371 no_control_flow = false; break;
duke@435 1372 case Bytecodes::_f2l :
duke@435 1373 current_frame.pop_stack(
duke@435 1374 VerificationType::float_type(), CHECK_VERIFY(this));
duke@435 1375 current_frame.push_stack_2(
duke@435 1376 VerificationType::long_type(),
duke@435 1377 VerificationType::long2_type(), CHECK_VERIFY(this));
duke@435 1378 no_control_flow = false; break;
duke@435 1379 case Bytecodes::_f2d :
duke@435 1380 current_frame.pop_stack(
duke@435 1381 VerificationType::float_type(), CHECK_VERIFY(this));
duke@435 1382 current_frame.push_stack_2(
duke@435 1383 VerificationType::double_type(),
duke@435 1384 VerificationType::double2_type(), CHECK_VERIFY(this));
duke@435 1385 no_control_flow = false; break;
duke@435 1386 case Bytecodes::_d2i :
duke@435 1387 current_frame.pop_stack_2(
duke@435 1388 VerificationType::double2_type(),
duke@435 1389 VerificationType::double_type(), CHECK_VERIFY(this));
duke@435 1390 current_frame.push_stack(
duke@435 1391 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1392 no_control_flow = false; break;
duke@435 1393 case Bytecodes::_d2l :
duke@435 1394 current_frame.pop_stack_2(
duke@435 1395 VerificationType::double2_type(),
duke@435 1396 VerificationType::double_type(), CHECK_VERIFY(this));
duke@435 1397 current_frame.push_stack_2(
duke@435 1398 VerificationType::long_type(),
duke@435 1399 VerificationType::long2_type(), CHECK_VERIFY(this));
duke@435 1400 no_control_flow = false; break;
duke@435 1401 case Bytecodes::_d2f :
duke@435 1402 current_frame.pop_stack_2(
duke@435 1403 VerificationType::double2_type(),
duke@435 1404 VerificationType::double_type(), CHECK_VERIFY(this));
duke@435 1405 current_frame.push_stack(
duke@435 1406 VerificationType::float_type(), CHECK_VERIFY(this));
duke@435 1407 no_control_flow = false; break;
duke@435 1408 case Bytecodes::_i2b :
duke@435 1409 case Bytecodes::_i2c :
duke@435 1410 case Bytecodes::_i2s :
duke@435 1411 current_frame.pop_stack(
duke@435 1412 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1413 current_frame.push_stack(
duke@435 1414 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1415 no_control_flow = false; break;
duke@435 1416 case Bytecodes::_lcmp :
duke@435 1417 current_frame.pop_stack_2(
duke@435 1418 VerificationType::long2_type(),
duke@435 1419 VerificationType::long_type(), CHECK_VERIFY(this));
duke@435 1420 current_frame.pop_stack_2(
duke@435 1421 VerificationType::long2_type(),
duke@435 1422 VerificationType::long_type(), CHECK_VERIFY(this));
duke@435 1423 current_frame.push_stack(
duke@435 1424 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1425 no_control_flow = false; break;
duke@435 1426 case Bytecodes::_fcmpl :
duke@435 1427 case Bytecodes::_fcmpg :
duke@435 1428 current_frame.pop_stack(
duke@435 1429 VerificationType::float_type(), CHECK_VERIFY(this));
duke@435 1430 current_frame.pop_stack(
duke@435 1431 VerificationType::float_type(), CHECK_VERIFY(this));
duke@435 1432 current_frame.push_stack(
duke@435 1433 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1434 no_control_flow = false; break;
duke@435 1435 case Bytecodes::_dcmpl :
duke@435 1436 case Bytecodes::_dcmpg :
duke@435 1437 current_frame.pop_stack_2(
duke@435 1438 VerificationType::double2_type(),
duke@435 1439 VerificationType::double_type(), CHECK_VERIFY(this));
duke@435 1440 current_frame.pop_stack_2(
duke@435 1441 VerificationType::double2_type(),
duke@435 1442 VerificationType::double_type(), CHECK_VERIFY(this));
duke@435 1443 current_frame.push_stack(
duke@435 1444 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1445 no_control_flow = false; break;
duke@435 1446 case Bytecodes::_if_icmpeq:
duke@435 1447 case Bytecodes::_if_icmpne:
duke@435 1448 case Bytecodes::_if_icmplt:
duke@435 1449 case Bytecodes::_if_icmpge:
duke@435 1450 case Bytecodes::_if_icmpgt:
duke@435 1451 case Bytecodes::_if_icmple:
duke@435 1452 current_frame.pop_stack(
duke@435 1453 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1454 // fall through
duke@435 1455 case Bytecodes::_ifeq:
duke@435 1456 case Bytecodes::_ifne:
duke@435 1457 case Bytecodes::_iflt:
duke@435 1458 case Bytecodes::_ifge:
duke@435 1459 case Bytecodes::_ifgt:
duke@435 1460 case Bytecodes::_ifle:
duke@435 1461 current_frame.pop_stack(
duke@435 1462 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1463 target = bcs.dest();
duke@435 1464 stackmap_table.check_jump_target(
duke@435 1465 &current_frame, target, CHECK_VERIFY(this));
duke@435 1466 no_control_flow = false; break;
duke@435 1467 case Bytecodes::_if_acmpeq :
duke@435 1468 case Bytecodes::_if_acmpne :
duke@435 1469 current_frame.pop_stack(
duke@435 1470 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 1471 // fall through
duke@435 1472 case Bytecodes::_ifnull :
duke@435 1473 case Bytecodes::_ifnonnull :
duke@435 1474 current_frame.pop_stack(
duke@435 1475 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 1476 target = bcs.dest();
duke@435 1477 stackmap_table.check_jump_target
duke@435 1478 (&current_frame, target, CHECK_VERIFY(this));
duke@435 1479 no_control_flow = false; break;
duke@435 1480 case Bytecodes::_goto :
duke@435 1481 target = bcs.dest();
duke@435 1482 stackmap_table.check_jump_target(
duke@435 1483 &current_frame, target, CHECK_VERIFY(this));
duke@435 1484 no_control_flow = true; break;
duke@435 1485 case Bytecodes::_goto_w :
duke@435 1486 target = bcs.dest_w();
duke@435 1487 stackmap_table.check_jump_target(
duke@435 1488 &current_frame, target, CHECK_VERIFY(this));
duke@435 1489 no_control_flow = true; break;
duke@435 1490 case Bytecodes::_tableswitch :
duke@435 1491 case Bytecodes::_lookupswitch :
duke@435 1492 verify_switch(
duke@435 1493 &bcs, code_length, code_data, &current_frame,
duke@435 1494 &stackmap_table, CHECK_VERIFY(this));
duke@435 1495 no_control_flow = true; break;
duke@435 1496 case Bytecodes::_ireturn :
duke@435 1497 type = current_frame.pop_stack(
duke@435 1498 VerificationType::integer_type(), CHECK_VERIFY(this));
kamg@3992 1499 verify_return_value(return_type, type, bci,
kamg@3992 1500 &current_frame, CHECK_VERIFY(this));
duke@435 1501 no_control_flow = true; break;
duke@435 1502 case Bytecodes::_lreturn :
duke@435 1503 type2 = current_frame.pop_stack(
duke@435 1504 VerificationType::long2_type(), CHECK_VERIFY(this));
duke@435 1505 type = current_frame.pop_stack(
duke@435 1506 VerificationType::long_type(), CHECK_VERIFY(this));
kamg@3992 1507 verify_return_value(return_type, type, bci,
kamg@3992 1508 &current_frame, CHECK_VERIFY(this));
duke@435 1509 no_control_flow = true; break;
duke@435 1510 case Bytecodes::_freturn :
duke@435 1511 type = current_frame.pop_stack(
duke@435 1512 VerificationType::float_type(), CHECK_VERIFY(this));
kamg@3992 1513 verify_return_value(return_type, type, bci,
kamg@3992 1514 &current_frame, CHECK_VERIFY(this));
duke@435 1515 no_control_flow = true; break;
duke@435 1516 case Bytecodes::_dreturn :
duke@435 1517 type2 = current_frame.pop_stack(
duke@435 1518 VerificationType::double2_type(), CHECK_VERIFY(this));
duke@435 1519 type = current_frame.pop_stack(
duke@435 1520 VerificationType::double_type(), CHECK_VERIFY(this));
kamg@3992 1521 verify_return_value(return_type, type, bci,
kamg@3992 1522 &current_frame, CHECK_VERIFY(this));
duke@435 1523 no_control_flow = true; break;
duke@435 1524 case Bytecodes::_areturn :
duke@435 1525 type = current_frame.pop_stack(
duke@435 1526 VerificationType::reference_check(), CHECK_VERIFY(this));
kamg@3992 1527 verify_return_value(return_type, type, bci,
kamg@3992 1528 &current_frame, CHECK_VERIFY(this));
duke@435 1529 no_control_flow = true; break;
duke@435 1530 case Bytecodes::_return :
duke@435 1531 if (return_type != VerificationType::bogus_type()) {
kamg@3992 1532 verify_error(ErrorContext::bad_code(bci),
kamg@3992 1533 "Method expects a return value");
duke@435 1534 return;
duke@435 1535 }
duke@435 1536 // Make sure "this" has been initialized if current method is an
duke@435 1537 // <init>
duke@435 1538 if (_method->name() == vmSymbols::object_initializer_name() &&
duke@435 1539 current_frame.flag_this_uninit()) {
kamg@3992 1540 verify_error(ErrorContext::bad_code(bci),
kamg@3992 1541 "Constructor must call super() or this() "
kamg@3992 1542 "before return");
duke@435 1543 return;
duke@435 1544 }
duke@435 1545 no_control_flow = true; break;
duke@435 1546 case Bytecodes::_getstatic :
duke@435 1547 case Bytecodes::_putstatic :
duke@435 1548 case Bytecodes::_getfield :
duke@435 1549 case Bytecodes::_putfield :
duke@435 1550 verify_field_instructions(
duke@435 1551 &bcs, &current_frame, cp, CHECK_VERIFY(this));
duke@435 1552 no_control_flow = false; break;
duke@435 1553 case Bytecodes::_invokevirtual :
duke@435 1554 case Bytecodes::_invokespecial :
duke@435 1555 case Bytecodes::_invokestatic :
duke@435 1556 verify_invoke_instructions(
duke@435 1557 &bcs, code_length, &current_frame,
duke@435 1558 &this_uninit, return_type, cp, CHECK_VERIFY(this));
duke@435 1559 no_control_flow = false; break;
duke@435 1560 case Bytecodes::_invokeinterface :
jrose@1161 1561 case Bytecodes::_invokedynamic :
duke@435 1562 verify_invoke_instructions(
duke@435 1563 &bcs, code_length, &current_frame,
duke@435 1564 &this_uninit, return_type, cp, CHECK_VERIFY(this));
duke@435 1565 no_control_flow = false; break;
duke@435 1566 case Bytecodes::_new :
duke@435 1567 {
jrose@1920 1568 index = bcs.get_index_u2();
kamg@3992 1569 verify_cp_class_type(bci, index, cp, CHECK_VERIFY(this));
duke@435 1570 VerificationType new_class_type =
duke@435 1571 cp_index_to_type(index, cp, CHECK_VERIFY(this));
duke@435 1572 if (!new_class_type.is_object()) {
kamg@3992 1573 verify_error(ErrorContext::bad_type(bci,
kamg@3992 1574 TypeOrigin::cp(index, new_class_type)),
kamg@3992 1575 "Illegal new instruction");
duke@435 1576 return;
duke@435 1577 }
duke@435 1578 type = VerificationType::uninitialized_type(bci);
duke@435 1579 current_frame.push_stack(type, CHECK_VERIFY(this));
duke@435 1580 no_control_flow = false; break;
duke@435 1581 }
duke@435 1582 case Bytecodes::_newarray :
duke@435 1583 type = get_newarray_type(bcs.get_index(), bci, CHECK_VERIFY(this));
duke@435 1584 current_frame.pop_stack(
duke@435 1585 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1586 current_frame.push_stack(type, CHECK_VERIFY(this));
duke@435 1587 no_control_flow = false; break;
duke@435 1588 case Bytecodes::_anewarray :
duke@435 1589 verify_anewarray(
kamg@3992 1590 bci, bcs.get_index_u2(), cp, &current_frame, CHECK_VERIFY(this));
duke@435 1591 no_control_flow = false; break;
duke@435 1592 case Bytecodes::_arraylength :
duke@435 1593 type = current_frame.pop_stack(
duke@435 1594 VerificationType::reference_check(), CHECK_VERIFY(this));
kamg@569 1595 if (!(type.is_null() || type.is_array())) {
kamg@3992 1596 verify_error(ErrorContext::bad_type(
kamg@3992 1597 bci, current_frame.stack_top_ctx()),
kamg@3992 1598 bad_type_msg, "arraylength");
duke@435 1599 }
duke@435 1600 current_frame.push_stack(
duke@435 1601 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1602 no_control_flow = false; break;
duke@435 1603 case Bytecodes::_checkcast :
duke@435 1604 {
jrose@1920 1605 index = bcs.get_index_u2();
kamg@3992 1606 verify_cp_class_type(bci, index, cp, CHECK_VERIFY(this));
kamg@2297 1607 current_frame.pop_stack(object_type(), CHECK_VERIFY(this));
duke@435 1608 VerificationType klass_type = cp_index_to_type(
duke@435 1609 index, cp, CHECK_VERIFY(this));
duke@435 1610 current_frame.push_stack(klass_type, CHECK_VERIFY(this));
duke@435 1611 no_control_flow = false; break;
duke@435 1612 }
duke@435 1613 case Bytecodes::_instanceof : {
jrose@1920 1614 index = bcs.get_index_u2();
kamg@3992 1615 verify_cp_class_type(bci, index, cp, CHECK_VERIFY(this));
kamg@2297 1616 current_frame.pop_stack(object_type(), CHECK_VERIFY(this));
duke@435 1617 current_frame.push_stack(
duke@435 1618 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1619 no_control_flow = false; break;
duke@435 1620 }
duke@435 1621 case Bytecodes::_monitorenter :
duke@435 1622 case Bytecodes::_monitorexit :
duke@435 1623 current_frame.pop_stack(
duke@435 1624 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 1625 no_control_flow = false; break;
duke@435 1626 case Bytecodes::_multianewarray :
duke@435 1627 {
jrose@1920 1628 index = bcs.get_index_u2();
duke@435 1629 u2 dim = *(bcs.bcp()+3);
kamg@3992 1630 verify_cp_class_type(bci, index, cp, CHECK_VERIFY(this));
duke@435 1631 VerificationType new_array_type =
duke@435 1632 cp_index_to_type(index, cp, CHECK_VERIFY(this));
duke@435 1633 if (!new_array_type.is_array()) {
kamg@3992 1634 verify_error(ErrorContext::bad_type(bci,
kamg@3992 1635 TypeOrigin::cp(index, new_array_type)),
kamg@3992 1636 "Illegal constant pool index in multianewarray instruction");
duke@435 1637 return;
duke@435 1638 }
duke@435 1639 if (dim < 1 || new_array_type.dimensions() < dim) {
kamg@3992 1640 verify_error(ErrorContext::bad_code(bci),
kamg@3992 1641 "Illegal dimension in multianewarray instruction: %d", dim);
duke@435 1642 return;
duke@435 1643 }
duke@435 1644 for (int i = 0; i < dim; i++) {
duke@435 1645 current_frame.pop_stack(
duke@435 1646 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1647 }
duke@435 1648 current_frame.push_stack(new_array_type, CHECK_VERIFY(this));
duke@435 1649 no_control_flow = false; break;
duke@435 1650 }
duke@435 1651 case Bytecodes::_athrow :
duke@435 1652 type = VerificationType::reference_type(
duke@435 1653 vmSymbols::java_lang_Throwable());
duke@435 1654 current_frame.pop_stack(type, CHECK_VERIFY(this));
duke@435 1655 no_control_flow = true; break;
duke@435 1656 default:
duke@435 1657 // We only need to check the valid bytecodes in class file.
duke@435 1658 // And jsr and ret are not in the new class file format in JDK1.5.
kamg@3992 1659 verify_error(ErrorContext::bad_code(bci),
kamg@3992 1660 "Bad instruction: %02x", opcode);
duke@435 1661 no_control_flow = false;
duke@435 1662 return;
duke@435 1663 } // end switch
duke@435 1664 } // end Merge with the next instruction
duke@435 1665
duke@435 1666 // Look for possible jump target in exception handlers and see if it
duke@435 1667 // matches current_frame
duke@435 1668 if (bci >= ex_min && bci < ex_max) {
duke@435 1669 verify_exception_handler_targets(
duke@435 1670 bci, this_uninit, &current_frame, &stackmap_table, CHECK_VERIFY(this));
duke@435 1671 }
duke@435 1672 } // end while
duke@435 1673
duke@435 1674 // Make sure that control flow does not fall through end of the method
duke@435 1675 if (!no_control_flow) {
kamg@3992 1676 verify_error(ErrorContext::bad_code(code_length),
kamg@3992 1677 "Control flow falls through code end");
duke@435 1678 return;
duke@435 1679 }
duke@435 1680 }
duke@435 1681
duke@435 1682 char* ClassVerifier::generate_code_data(methodHandle m, u4 code_length, TRAPS) {
duke@435 1683 char* code_data = NEW_RESOURCE_ARRAY(char, code_length);
duke@435 1684 memset(code_data, 0, sizeof(char) * code_length);
duke@435 1685 RawBytecodeStream bcs(m);
duke@435 1686
duke@435 1687 while (!bcs.is_last_bytecode()) {
duke@435 1688 if (bcs.raw_next() != Bytecodes::_illegal) {
duke@435 1689 int bci = bcs.bci();
jrose@1920 1690 if (bcs.raw_code() == Bytecodes::_new) {
duke@435 1691 code_data[bci] = NEW_OFFSET;
duke@435 1692 } else {
duke@435 1693 code_data[bci] = BYTECODE_OFFSET;
duke@435 1694 }
duke@435 1695 } else {
kamg@3992 1696 verify_error(ErrorContext::bad_code(bcs.bci()), "Bad instruction");
duke@435 1697 return NULL;
duke@435 1698 }
duke@435 1699 }
duke@435 1700
duke@435 1701 return code_data;
duke@435 1702 }
duke@435 1703
duke@435 1704 void ClassVerifier::verify_exception_handler_table(u4 code_length, char* code_data, int& min, int& max, TRAPS) {
jiangli@3917 1705 ExceptionTable exhandlers(_method());
jiangli@3917 1706 int exlength = exhandlers.length();
duke@435 1707 constantPoolHandle cp (THREAD, _method->constants());
duke@435 1708
jiangli@3917 1709 for(int i = 0; i < exlength; i++) {
jiangli@3917 1710 //reacquire the table in case a GC happened
jiangli@3917 1711 ExceptionTable exhandlers(_method());
jiangli@3917 1712 u2 start_pc = exhandlers.start_pc(i);
jiangli@3917 1713 u2 end_pc = exhandlers.end_pc(i);
jiangli@3917 1714 u2 handler_pc = exhandlers.handler_pc(i);
jiangli@3917 1715 if (start_pc >= code_length || code_data[start_pc] == 0) {
jiangli@3917 1716 class_format_error("Illegal exception table start_pc %d", start_pc);
jiangli@3917 1717 return;
jiangli@3917 1718 }
jiangli@3917 1719 if (end_pc != code_length) { // special case: end_pc == code_length
jiangli@3917 1720 if (end_pc > code_length || code_data[end_pc] == 0) {
jiangli@3917 1721 class_format_error("Illegal exception table end_pc %d", end_pc);
duke@435 1722 return;
duke@435 1723 }
jiangli@3917 1724 }
jiangli@3917 1725 if (handler_pc >= code_length || code_data[handler_pc] == 0) {
jiangli@3917 1726 class_format_error("Illegal exception table handler_pc %d", handler_pc);
jiangli@3917 1727 return;
jiangli@3917 1728 }
jiangli@3917 1729 int catch_type_index = exhandlers.catch_type_index(i);
jiangli@3917 1730 if (catch_type_index != 0) {
jiangli@3917 1731 VerificationType catch_type = cp_index_to_type(
jiangli@3917 1732 catch_type_index, cp, CHECK_VERIFY(this));
jiangli@3917 1733 VerificationType throwable =
jiangli@3917 1734 VerificationType::reference_type(vmSymbols::java_lang_Throwable());
jiangli@3917 1735 bool is_subclass = throwable.is_assignable_from(
jiangli@3917 1736 catch_type, this, CHECK_VERIFY(this));
jiangli@3917 1737 if (!is_subclass) {
jiangli@3917 1738 // 4286534: should throw VerifyError according to recent spec change
kamg@3992 1739 verify_error(ErrorContext::bad_type(handler_pc,
kamg@3992 1740 TypeOrigin::cp(catch_type_index, catch_type),
kamg@3992 1741 TypeOrigin::implicit(throwable)),
kamg@3992 1742 "Catch type is not a subclass "
kamg@3992 1743 "of Throwable in exception handler %d", handler_pc);
duke@435 1744 return;
duke@435 1745 }
duke@435 1746 }
jiangli@3917 1747 if (start_pc < min) min = start_pc;
jiangli@3917 1748 if (end_pc > max) max = end_pc;
duke@435 1749 }
duke@435 1750 }
duke@435 1751
duke@435 1752 void ClassVerifier::verify_local_variable_table(u4 code_length, char* code_data, TRAPS) {
duke@435 1753 int localvariable_table_length = _method()->localvariable_table_length();
duke@435 1754 if (localvariable_table_length > 0) {
duke@435 1755 LocalVariableTableElement* table = _method()->localvariable_table_start();
duke@435 1756 for (int i = 0; i < localvariable_table_length; i++) {
duke@435 1757 u2 start_bci = table[i].start_bci;
duke@435 1758 u2 length = table[i].length;
duke@435 1759
duke@435 1760 if (start_bci >= code_length || code_data[start_bci] == 0) {
duke@435 1761 class_format_error(
duke@435 1762 "Illegal local variable table start_pc %d", start_bci);
duke@435 1763 return;
duke@435 1764 }
duke@435 1765 u4 end_bci = (u4)(start_bci + length);
duke@435 1766 if (end_bci != code_length) {
duke@435 1767 if (end_bci >= code_length || code_data[end_bci] == 0) {
duke@435 1768 class_format_error( "Illegal local variable table length %d", length);
duke@435 1769 return;
duke@435 1770 }
duke@435 1771 }
duke@435 1772 }
duke@435 1773 }
duke@435 1774 }
duke@435 1775
duke@435 1776 u2 ClassVerifier::verify_stackmap_table(u2 stackmap_index, u2 bci,
duke@435 1777 StackMapFrame* current_frame,
duke@435 1778 StackMapTable* stackmap_table,
duke@435 1779 bool no_control_flow, TRAPS) {
duke@435 1780 if (stackmap_index < stackmap_table->get_frame_count()) {
duke@435 1781 u2 this_offset = stackmap_table->get_offset(stackmap_index);
duke@435 1782 if (no_control_flow && this_offset > bci) {
kamg@3992 1783 verify_error(ErrorContext::missing_stackmap(bci),
kamg@3992 1784 "Expecting a stack map frame");
duke@435 1785 return 0;
duke@435 1786 }
duke@435 1787 if (this_offset == bci) {
kamg@3992 1788 ErrorContext ctx;
duke@435 1789 // See if current stack map can be assigned to the frame in table.
duke@435 1790 // current_frame is the stackmap frame got from the last instruction.
duke@435 1791 // If matched, current_frame will be updated by this method.
kamg@3992 1792 bool matches = stackmap_table->match_stackmap(
duke@435 1793 current_frame, this_offset, stackmap_index,
kamg@3992 1794 !no_control_flow, true, &ctx, CHECK_VERIFY_(this, 0));
kamg@3992 1795 if (!matches) {
duke@435 1796 // report type error
kamg@3992 1797 verify_error(ctx, "Instruction type does not match stack map");
duke@435 1798 return 0;
duke@435 1799 }
duke@435 1800 stackmap_index++;
duke@435 1801 } else if (this_offset < bci) {
duke@435 1802 // current_offset should have met this_offset.
duke@435 1803 class_format_error("Bad stack map offset %d", this_offset);
duke@435 1804 return 0;
duke@435 1805 }
duke@435 1806 } else if (no_control_flow) {
kamg@3992 1807 verify_error(ErrorContext::bad_code(bci), "Expecting a stack map frame");
duke@435 1808 return 0;
duke@435 1809 }
duke@435 1810 return stackmap_index;
duke@435 1811 }
duke@435 1812
duke@435 1813 void ClassVerifier::verify_exception_handler_targets(u2 bci, bool this_uninit, StackMapFrame* current_frame,
duke@435 1814 StackMapTable* stackmap_table, TRAPS) {
duke@435 1815 constantPoolHandle cp (THREAD, _method->constants());
jiangli@3917 1816 ExceptionTable exhandlers(_method());
jiangli@3917 1817 int exlength = exhandlers.length();
jiangli@3917 1818 for(int i = 0; i < exlength; i++) {
jiangli@3917 1819 //reacquire the table in case a GC happened
jiangli@3917 1820 ExceptionTable exhandlers(_method());
jiangli@3917 1821 u2 start_pc = exhandlers.start_pc(i);
jiangli@3917 1822 u2 end_pc = exhandlers.end_pc(i);
jiangli@3917 1823 u2 handler_pc = exhandlers.handler_pc(i);
jiangli@3917 1824 int catch_type_index = exhandlers.catch_type_index(i);
jiangli@3917 1825 if(bci >= start_pc && bci < end_pc) {
jiangli@3917 1826 u1 flags = current_frame->flags();
jiangli@3917 1827 if (this_uninit) { flags |= FLAG_THIS_UNINIT; }
jiangli@3917 1828 StackMapFrame* new_frame = current_frame->frame_in_exception_handler(flags);
jiangli@3917 1829 if (catch_type_index != 0) {
jiangli@3917 1830 // We know that this index refers to a subclass of Throwable
jiangli@3917 1831 VerificationType catch_type = cp_index_to_type(
jiangli@3917 1832 catch_type_index, cp, CHECK_VERIFY(this));
jiangli@3917 1833 new_frame->push_stack(catch_type, CHECK_VERIFY(this));
jiangli@3917 1834 } else {
jiangli@3917 1835 VerificationType throwable =
jiangli@3917 1836 VerificationType::reference_type(vmSymbols::java_lang_Throwable());
jiangli@3917 1837 new_frame->push_stack(throwable, CHECK_VERIFY(this));
jiangli@3917 1838 }
kamg@3992 1839 ErrorContext ctx;
kamg@3992 1840 bool matches = stackmap_table->match_stackmap(
kamg@3992 1841 new_frame, handler_pc, true, false, &ctx, CHECK_VERIFY(this));
kamg@3992 1842 if (!matches) {
kamg@3992 1843 verify_error(ctx, "Stack map does not match the one at "
kamg@3992 1844 "exception handler %d", handler_pc);
jiangli@3917 1845 return;
duke@435 1846 }
duke@435 1847 }
duke@435 1848 }
duke@435 1849 }
duke@435 1850
kamg@3992 1851 void ClassVerifier::verify_cp_index(
kamg@3992 1852 u2 bci, constantPoolHandle cp, int index, TRAPS) {
duke@435 1853 int nconstants = cp->length();
duke@435 1854 if ((index <= 0) || (index >= nconstants)) {
kamg@3992 1855 verify_error(ErrorContext::bad_cp_index(bci, index),
kamg@3992 1856 "Illegal constant pool index %d in class %s",
coleenp@4251 1857 index, cp->pool_holder()->external_name());
duke@435 1858 return;
duke@435 1859 }
duke@435 1860 }
duke@435 1861
duke@435 1862 void ClassVerifier::verify_cp_type(
kamg@3992 1863 u2 bci, int index, constantPoolHandle cp, unsigned int types, TRAPS) {
duke@435 1864
duke@435 1865 // In some situations, bytecode rewriting may occur while we're verifying.
duke@435 1866 // In this case, a constant pool cache exists and some indices refer to that
jrose@1925 1867 // instead. Be sure we don't pick up such indices by accident.
jrose@1925 1868 // We must check was_recursively_verified() before we get here.
jrose@1925 1869 guarantee(cp->cache() == NULL, "not rewritten yet");
duke@435 1870
kamg@3992 1871 verify_cp_index(bci, cp, index, CHECK_VERIFY(this));
duke@435 1872 unsigned int tag = cp->tag_at(index).value();
duke@435 1873 if ((types & (1 << tag)) == 0) {
kamg@3992 1874 verify_error(ErrorContext::bad_cp_index(bci, index),
duke@435 1875 "Illegal type at constant pool entry %d in class %s",
coleenp@4251 1876 index, cp->pool_holder()->external_name());
duke@435 1877 return;
duke@435 1878 }
duke@435 1879 }
duke@435 1880
duke@435 1881 void ClassVerifier::verify_cp_class_type(
kamg@3992 1882 u2 bci, int index, constantPoolHandle cp, TRAPS) {
kamg@3992 1883 verify_cp_index(bci, cp, index, CHECK_VERIFY(this));
duke@435 1884 constantTag tag = cp->tag_at(index);
duke@435 1885 if (!tag.is_klass() && !tag.is_unresolved_klass()) {
kamg@3992 1886 verify_error(ErrorContext::bad_cp_index(bci, index),
kamg@3992 1887 "Illegal type at constant pool entry %d in class %s",
coleenp@4251 1888 index, cp->pool_holder()->external_name());
duke@435 1889 return;
duke@435 1890 }
duke@435 1891 }
duke@435 1892
kamg@3992 1893 void ClassVerifier::verify_error(ErrorContext ctx, const char* msg, ...) {
kamg@3992 1894 stringStream ss;
duke@435 1895
kamg@3992 1896 ctx.reset_frames();
duke@435 1897 _exception_type = vmSymbols::java_lang_VerifyError();
kamg@3992 1898 _error_context = ctx;
duke@435 1899 va_list va;
kamg@3992 1900 va_start(va, msg);
kamg@3992 1901 ss.vprint(msg, va);
duke@435 1902 va_end(va);
kamg@3992 1903 _message = ss.as_string();
kamg@3992 1904 #ifdef ASSERT
kamg@3992 1905 ResourceMark rm;
kamg@3992 1906 const char* exception_name = _exception_type->as_C_string();
kamg@3992 1907 Exceptions::debug_check_abort(exception_name, NULL);
kamg@3992 1908 #endif // ndef ASSERT
duke@435 1909 }
duke@435 1910
duke@435 1911 void ClassVerifier::class_format_error(const char* msg, ...) {
kamg@3992 1912 stringStream ss;
duke@435 1913 _exception_type = vmSymbols::java_lang_ClassFormatError();
duke@435 1914 va_list va;
duke@435 1915 va_start(va, msg);
kamg@3992 1916 ss.vprint(msg, va);
duke@435 1917 va_end(va);
kamg@3992 1918 if (!_method.is_null()) {
kamg@3992 1919 ss.print(" in method %s", _method->name_and_sig_as_C_string());
kamg@3992 1920 }
kamg@3992 1921 _message = ss.as_string();
duke@435 1922 }
duke@435 1923
coleenp@4037 1924 Klass* ClassVerifier::load_class(Symbol* name, TRAPS) {
duke@435 1925 // Get current loader and protection domain first.
duke@435 1926 oop loader = current_class()->class_loader();
duke@435 1927 oop protection_domain = current_class()->protection_domain();
duke@435 1928
duke@435 1929 return SystemDictionary::resolve_or_fail(
duke@435 1930 name, Handle(THREAD, loader), Handle(THREAD, protection_domain),
duke@435 1931 true, CHECK_NULL);
duke@435 1932 }
duke@435 1933
duke@435 1934 bool ClassVerifier::is_protected_access(instanceKlassHandle this_class,
coleenp@4037 1935 Klass* target_class,
coleenp@2497 1936 Symbol* field_name,
coleenp@2497 1937 Symbol* field_sig,
duke@435 1938 bool is_method) {
duke@435 1939 No_Safepoint_Verifier nosafepoint;
duke@435 1940
duke@435 1941 // If target class isn't a super class of this class, we don't worry about this case
duke@435 1942 if (!this_class->is_subclass_of(target_class)) {
duke@435 1943 return false;
duke@435 1944 }
duke@435 1945 // Check if the specified method or field is protected
coleenp@4037 1946 InstanceKlass* target_instance = InstanceKlass::cast(target_class);
duke@435 1947 fieldDescriptor fd;
duke@435 1948 if (is_method) {
lfoltan@6632 1949 Method* m = target_instance->uncached_lookup_method(field_name, field_sig, Klass::normal);
duke@435 1950 if (m != NULL && m->is_protected()) {
duke@435 1951 if (!this_class->is_same_class_package(m->method_holder())) {
duke@435 1952 return true;
duke@435 1953 }
duke@435 1954 }
duke@435 1955 } else {
coleenp@4037 1956 Klass* member_klass = target_instance->find_field(field_name, field_sig, &fd);
kamg@3992 1957 if (member_klass != NULL && fd.is_protected()) {
duke@435 1958 if (!this_class->is_same_class_package(member_klass)) {
duke@435 1959 return true;
duke@435 1960 }
duke@435 1961 }
duke@435 1962 }
duke@435 1963 return false;
duke@435 1964 }
duke@435 1965
duke@435 1966 void ClassVerifier::verify_ldc(
kamg@3992 1967 int opcode, u2 index, StackMapFrame* current_frame,
kamg@3992 1968 constantPoolHandle cp, u2 bci, TRAPS) {
kamg@3992 1969 verify_cp_index(bci, cp, index, CHECK_VERIFY(this));
duke@435 1970 constantTag tag = cp->tag_at(index);
duke@435 1971 unsigned int types;
duke@435 1972 if (opcode == Bytecodes::_ldc || opcode == Bytecodes::_ldc_w) {
coleenp@4037 1973 if (!tag.is_unresolved_klass()) {
duke@435 1974 types = (1 << JVM_CONSTANT_Integer) | (1 << JVM_CONSTANT_Float)
jrose@1957 1975 | (1 << JVM_CONSTANT_String) | (1 << JVM_CONSTANT_Class)
jrose@1957 1976 | (1 << JVM_CONSTANT_MethodHandle) | (1 << JVM_CONSTANT_MethodType);
jrose@1957 1977 // Note: The class file parser already verified the legality of
jrose@1957 1978 // MethodHandle and MethodType constants.
kamg@3992 1979 verify_cp_type(bci, index, cp, types, CHECK_VERIFY(this));
duke@435 1980 }
duke@435 1981 } else {
duke@435 1982 assert(opcode == Bytecodes::_ldc2_w, "must be ldc2_w");
duke@435 1983 types = (1 << JVM_CONSTANT_Double) | (1 << JVM_CONSTANT_Long);
kamg@3992 1984 verify_cp_type(bci, index, cp, types, CHECK_VERIFY(this));
duke@435 1985 }
jrose@866 1986 if (tag.is_string() && cp->is_pseudo_string_at(index)) {
kamg@2297 1987 current_frame->push_stack(object_type(), CHECK_VERIFY(this));
coleenp@4037 1988 } else if (tag.is_string()) {
duke@435 1989 current_frame->push_stack(
duke@435 1990 VerificationType::reference_type(
duke@435 1991 vmSymbols::java_lang_String()), CHECK_VERIFY(this));
duke@435 1992 } else if (tag.is_klass() || tag.is_unresolved_klass()) {
duke@435 1993 current_frame->push_stack(
duke@435 1994 VerificationType::reference_type(
duke@435 1995 vmSymbols::java_lang_Class()), CHECK_VERIFY(this));
duke@435 1996 } else if (tag.is_int()) {
duke@435 1997 current_frame->push_stack(
duke@435 1998 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 1999 } else if (tag.is_float()) {
duke@435 2000 current_frame->push_stack(
duke@435 2001 VerificationType::float_type(), CHECK_VERIFY(this));
duke@435 2002 } else if (tag.is_double()) {
duke@435 2003 current_frame->push_stack_2(
duke@435 2004 VerificationType::double_type(),
duke@435 2005 VerificationType::double2_type(), CHECK_VERIFY(this));
duke@435 2006 } else if (tag.is_long()) {
duke@435 2007 current_frame->push_stack_2(
duke@435 2008 VerificationType::long_type(),
duke@435 2009 VerificationType::long2_type(), CHECK_VERIFY(this));
jrose@1957 2010 } else if (tag.is_method_handle()) {
jrose@1957 2011 current_frame->push_stack(
jrose@1957 2012 VerificationType::reference_type(
jrose@2742 2013 vmSymbols::java_lang_invoke_MethodHandle()), CHECK_VERIFY(this));
jrose@1957 2014 } else if (tag.is_method_type()) {
jrose@1957 2015 current_frame->push_stack(
jrose@1957 2016 VerificationType::reference_type(
jrose@2742 2017 vmSymbols::java_lang_invoke_MethodType()), CHECK_VERIFY(this));
duke@435 2018 } else {
kamg@3992 2019 /* Unreachable? verify_cp_type has already validated the cp type. */
kamg@3992 2020 verify_error(
kamg@3992 2021 ErrorContext::bad_cp_index(bci, index), "Invalid index in ldc");
duke@435 2022 return;
duke@435 2023 }
duke@435 2024 }
duke@435 2025
duke@435 2026 void ClassVerifier::verify_switch(
duke@435 2027 RawBytecodeStream* bcs, u4 code_length, char* code_data,
duke@435 2028 StackMapFrame* current_frame, StackMapTable* stackmap_table, TRAPS) {
duke@435 2029 int bci = bcs->bci();
duke@435 2030 address bcp = bcs->bcp();
duke@435 2031 address aligned_bcp = (address) round_to((intptr_t)(bcp + 1), jintSize);
duke@435 2032
hseigel@4816 2033 if (_klass->major_version() < NONZERO_PADDING_BYTES_IN_SWITCH_MAJOR_VERSION) {
hseigel@4816 2034 // 4639449 & 4647081: padding bytes must be 0
hseigel@4816 2035 u2 padding_offset = 1;
hseigel@4816 2036 while ((bcp + padding_offset) < aligned_bcp) {
hseigel@4816 2037 if(*(bcp + padding_offset) != 0) {
hseigel@4816 2038 verify_error(ErrorContext::bad_code(bci),
hseigel@4816 2039 "Nonzero padding byte in lookswitch or tableswitch");
hseigel@4816 2040 return;
hseigel@4816 2041 }
hseigel@4816 2042 padding_offset++;
duke@435 2043 }
duke@435 2044 }
hseigel@4816 2045
duke@435 2046 int default_offset = (int) Bytes::get_Java_u4(aligned_bcp);
duke@435 2047 int keys, delta;
duke@435 2048 current_frame->pop_stack(
duke@435 2049 VerificationType::integer_type(), CHECK_VERIFY(this));
jrose@1920 2050 if (bcs->raw_code() == Bytecodes::_tableswitch) {
duke@435 2051 jint low = (jint)Bytes::get_Java_u4(aligned_bcp + jintSize);
duke@435 2052 jint high = (jint)Bytes::get_Java_u4(aligned_bcp + 2*jintSize);
duke@435 2053 if (low > high) {
kamg@3992 2054 verify_error(ErrorContext::bad_code(bci),
kamg@3992 2055 "low must be less than or equal to high in tableswitch");
duke@435 2056 return;
duke@435 2057 }
duke@435 2058 keys = high - low + 1;
duke@435 2059 if (keys < 0) {
kamg@3992 2060 verify_error(ErrorContext::bad_code(bci), "too many keys in tableswitch");
duke@435 2061 return;
duke@435 2062 }
duke@435 2063 delta = 1;
duke@435 2064 } else {
duke@435 2065 keys = (int)Bytes::get_Java_u4(aligned_bcp + jintSize);
duke@435 2066 if (keys < 0) {
kamg@3992 2067 verify_error(ErrorContext::bad_code(bci),
kamg@3992 2068 "number of keys in lookupswitch less than 0");
duke@435 2069 return;
duke@435 2070 }
duke@435 2071 delta = 2;
duke@435 2072 // Make sure that the lookupswitch items are sorted
duke@435 2073 for (int i = 0; i < (keys - 1); i++) {
duke@435 2074 jint this_key = Bytes::get_Java_u4(aligned_bcp + (2+2*i)*jintSize);
duke@435 2075 jint next_key = Bytes::get_Java_u4(aligned_bcp + (2+2*i+2)*jintSize);
duke@435 2076 if (this_key >= next_key) {
kamg@3992 2077 verify_error(ErrorContext::bad_code(bci),
kamg@3992 2078 "Bad lookupswitch instruction");
duke@435 2079 return;
duke@435 2080 }
duke@435 2081 }
duke@435 2082 }
duke@435 2083 int target = bci + default_offset;
duke@435 2084 stackmap_table->check_jump_target(current_frame, target, CHECK_VERIFY(this));
duke@435 2085 for (int i = 0; i < keys; i++) {
kamg@3821 2086 // Because check_jump_target() may safepoint, the bytecode could have
kamg@3821 2087 // moved, which means 'aligned_bcp' is no good and needs to be recalculated.
kamg@3821 2088 aligned_bcp = (address)round_to((intptr_t)(bcs->bcp() + 1), jintSize);
duke@435 2089 target = bci + (jint)Bytes::get_Java_u4(aligned_bcp+(3+i*delta)*jintSize);
duke@435 2090 stackmap_table->check_jump_target(
duke@435 2091 current_frame, target, CHECK_VERIFY(this));
duke@435 2092 }
kamg@3821 2093 NOT_PRODUCT(aligned_bcp = NULL); // no longer valid at this point
duke@435 2094 }
duke@435 2095
duke@435 2096 bool ClassVerifier::name_in_supers(
coleenp@2497 2097 Symbol* ref_name, instanceKlassHandle current) {
coleenp@4037 2098 Klass* super = current->super();
duke@435 2099 while (super != NULL) {
coleenp@4037 2100 if (super->name() == ref_name) {
duke@435 2101 return true;
duke@435 2102 }
coleenp@4037 2103 super = super->super();
duke@435 2104 }
duke@435 2105 return false;
duke@435 2106 }
duke@435 2107
duke@435 2108 void ClassVerifier::verify_field_instructions(RawBytecodeStream* bcs,
duke@435 2109 StackMapFrame* current_frame,
duke@435 2110 constantPoolHandle cp,
duke@435 2111 TRAPS) {
jrose@1920 2112 u2 index = bcs->get_index_u2();
kamg@3992 2113 verify_cp_type(bcs->bci(), index, cp,
kamg@3992 2114 1 << JVM_CONSTANT_Fieldref, CHECK_VERIFY(this));
duke@435 2115
duke@435 2116 // Get field name and signature
coleenp@2497 2117 Symbol* field_name = cp->name_ref_at(index);
coleenp@2497 2118 Symbol* field_sig = cp->signature_ref_at(index);
duke@435 2119
duke@435 2120 if (!SignatureVerifier::is_valid_type_signature(field_sig)) {
duke@435 2121 class_format_error(
duke@435 2122 "Invalid signature for field in class %s referenced "
duke@435 2123 "from constant pool index %d", _klass->external_name(), index);
duke@435 2124 return;
duke@435 2125 }
duke@435 2126
duke@435 2127 // Get referenced class type
duke@435 2128 VerificationType ref_class_type = cp_ref_index_to_type(
duke@435 2129 index, cp, CHECK_VERIFY(this));
duke@435 2130 if (!ref_class_type.is_object()) {
kamg@3992 2131 /* Unreachable? Class file parser verifies Fieldref contents */
kamg@3992 2132 verify_error(ErrorContext::bad_type(bcs->bci(),
kamg@3992 2133 TypeOrigin::cp(index, ref_class_type)),
kamg@3992 2134 "Expecting reference to class in class %s at constant pool index %d",
kamg@3992 2135 _klass->external_name(), index);
duke@435 2136 return;
duke@435 2137 }
duke@435 2138 VerificationType target_class_type = ref_class_type;
duke@435 2139
duke@435 2140 assert(sizeof(VerificationType) == sizeof(uintptr_t),
duke@435 2141 "buffer type must match VerificationType size");
duke@435 2142 uintptr_t field_type_buffer[2];
duke@435 2143 VerificationType* field_type = (VerificationType*)field_type_buffer;
duke@435 2144 // If we make a VerificationType[2] array directly, the compiler calls
duke@435 2145 // to the c-runtime library to do the allocation instead of just
duke@435 2146 // stack allocating it. Plus it would run constructors. This shows up
duke@435 2147 // in performance profiles.
duke@435 2148
duke@435 2149 SignatureStream sig_stream(field_sig, false);
duke@435 2150 VerificationType stack_object_type;
duke@435 2151 int n = change_sig_to_verificationType(
duke@435 2152 &sig_stream, field_type, CHECK_VERIFY(this));
duke@435 2153 u2 bci = bcs->bci();
duke@435 2154 bool is_assignable;
jrose@1920 2155 switch (bcs->raw_code()) {
duke@435 2156 case Bytecodes::_getstatic: {
duke@435 2157 for (int i = 0; i < n; i++) {
duke@435 2158 current_frame->push_stack(field_type[i], CHECK_VERIFY(this));
duke@435 2159 }
duke@435 2160 break;
duke@435 2161 }
duke@435 2162 case Bytecodes::_putstatic: {
duke@435 2163 for (int i = n - 1; i >= 0; i--) {
duke@435 2164 current_frame->pop_stack(field_type[i], CHECK_VERIFY(this));
duke@435 2165 }
duke@435 2166 break;
duke@435 2167 }
duke@435 2168 case Bytecodes::_getfield: {
duke@435 2169 stack_object_type = current_frame->pop_stack(
duke@435 2170 target_class_type, CHECK_VERIFY(this));
duke@435 2171 for (int i = 0; i < n; i++) {
duke@435 2172 current_frame->push_stack(field_type[i], CHECK_VERIFY(this));
duke@435 2173 }
duke@435 2174 goto check_protected;
duke@435 2175 }
duke@435 2176 case Bytecodes::_putfield: {
duke@435 2177 for (int i = n - 1; i >= 0; i--) {
duke@435 2178 current_frame->pop_stack(field_type[i], CHECK_VERIFY(this));
duke@435 2179 }
duke@435 2180 stack_object_type = current_frame->pop_stack(CHECK_VERIFY(this));
duke@435 2181
duke@435 2182 // The JVMS 2nd edition allows field initialization before the superclass
duke@435 2183 // initializer, if the field is defined within the current class.
duke@435 2184 fieldDescriptor fd;
duke@435 2185 if (stack_object_type == VerificationType::uninitialized_this_type() &&
duke@435 2186 target_class_type.equals(current_type()) &&
coleenp@2497 2187 _klass->find_local_field(field_name, field_sig, &fd)) {
duke@435 2188 stack_object_type = current_type();
duke@435 2189 }
duke@435 2190 is_assignable = target_class_type.is_assignable_from(
coleenp@2497 2191 stack_object_type, this, CHECK_VERIFY(this));
duke@435 2192 if (!is_assignable) {
kamg@3992 2193 verify_error(ErrorContext::bad_type(bci,
kamg@3992 2194 current_frame->stack_top_ctx(),
kamg@3992 2195 TypeOrigin::cp(index, target_class_type)),
kamg@3992 2196 "Bad type on operand stack in putfield");
duke@435 2197 return;
duke@435 2198 }
duke@435 2199 }
duke@435 2200 check_protected: {
duke@435 2201 if (_this_type == stack_object_type)
duke@435 2202 break; // stack_object_type must be assignable to _current_class_type
coleenp@2497 2203 Symbol* ref_class_name =
coleenp@2497 2204 cp->klass_name_at(cp->klass_ref_index_at(index));
coleenp@2497 2205 if (!name_in_supers(ref_class_name, current_class()))
duke@435 2206 // stack_object_type must be assignable to _current_class_type since:
duke@435 2207 // 1. stack_object_type must be assignable to ref_class.
duke@435 2208 // 2. ref_class must be _current_class or a subclass of it. It can't
duke@435 2209 // be a superclass of it. See revised JVMS 5.4.4.
duke@435 2210 break;
duke@435 2211
coleenp@4037 2212 Klass* ref_class_oop = load_class(ref_class_name, CHECK);
coleenp@2497 2213 if (is_protected_access(current_class(), ref_class_oop, field_name,
coleenp@2497 2214 field_sig, false)) {
duke@435 2215 // It's protected access, check if stack object is assignable to
duke@435 2216 // current class.
duke@435 2217 is_assignable = current_type().is_assignable_from(
coleenp@2497 2218 stack_object_type, this, CHECK_VERIFY(this));
duke@435 2219 if (!is_assignable) {
kamg@3992 2220 verify_error(ErrorContext::bad_type(bci,
kamg@3992 2221 current_frame->stack_top_ctx(),
kamg@3992 2222 TypeOrigin::implicit(current_type())),
kamg@3992 2223 "Bad access to protected data in getfield");
duke@435 2224 return;
duke@435 2225 }
duke@435 2226 }
duke@435 2227 break;
duke@435 2228 }
duke@435 2229 default: ShouldNotReachHere();
duke@435 2230 }
duke@435 2231 }
duke@435 2232
duke@435 2233 void ClassVerifier::verify_invoke_init(
kamg@3992 2234 RawBytecodeStream* bcs, u2 ref_class_index, VerificationType ref_class_type,
duke@435 2235 StackMapFrame* current_frame, u4 code_length, bool *this_uninit,
duke@435 2236 constantPoolHandle cp, TRAPS) {
duke@435 2237 u2 bci = bcs->bci();
duke@435 2238 VerificationType type = current_frame->pop_stack(
duke@435 2239 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 2240 if (type == VerificationType::uninitialized_this_type()) {
kamg@3858 2241 // The method must be an <init> method of this class or its superclass
coleenp@4037 2242 Klass* superk = current_class()->super();
apangin@2032 2243 if (ref_class_type.name() != current_class()->name() &&
coleenp@4037 2244 ref_class_type.name() != superk->name()) {
kamg@3992 2245 verify_error(ErrorContext::bad_type(bci,
kamg@3992 2246 TypeOrigin::implicit(ref_class_type),
kamg@3992 2247 TypeOrigin::implicit(current_type())),
kamg@3992 2248 "Bad <init> method call");
duke@435 2249 return;
duke@435 2250 }
hseigel@6761 2251
hseigel@6761 2252 // Make sure that this call is not jumped over.
hseigel@6761 2253 if (bci < furthest_jump()) {
hseigel@6761 2254 verify_error(ErrorContext::bad_code(bci),
hseigel@6761 2255 "Bad <init> method call from inside of a branch");
hseigel@6761 2256 return;
hseigel@6761 2257 }
hseigel@6761 2258
hseigel@6761 2259 // Make sure that this call is not done from within a TRY block because
hseigel@6761 2260 // that can result in returning an incomplete object. Simply checking
hseigel@6761 2261 // (bci >= start_pc) also ensures that this call is not done after a TRY
hseigel@6761 2262 // block. That is also illegal because this call must be the first Java
hseigel@6761 2263 // statement in the constructor.
hseigel@6761 2264 ExceptionTable exhandlers(_method());
hseigel@6761 2265 int exlength = exhandlers.length();
hseigel@6761 2266 for(int i = 0; i < exlength; i++) {
hseigel@6761 2267 if (bci >= exhandlers.start_pc(i)) {
hseigel@6761 2268 verify_error(ErrorContext::bad_code(bci),
hseigel@6761 2269 "Bad <init> method call from after the start of a try block");
hseigel@6761 2270 return;
hseigel@6761 2271 }
hseigel@6761 2272 }
hseigel@6761 2273
duke@435 2274 current_frame->initialize_object(type, current_type());
duke@435 2275 *this_uninit = true;
duke@435 2276 } else if (type.is_uninitialized()) {
duke@435 2277 u2 new_offset = type.bci();
duke@435 2278 address new_bcp = bcs->bcp() - bci + new_offset;
duke@435 2279 if (new_offset > (code_length - 3) || (*new_bcp) != Bytecodes::_new) {
kamg@3992 2280 /* Unreachable? Stack map parsing ensures valid type and new
kamg@3992 2281 * instructions have a valid BCI. */
kamg@3992 2282 verify_error(ErrorContext::bad_code(new_offset),
kamg@3992 2283 "Expecting new instruction");
duke@435 2284 return;
duke@435 2285 }
duke@435 2286 u2 new_class_index = Bytes::get_Java_u2(new_bcp + 1);
kamg@3992 2287 verify_cp_class_type(bci, new_class_index, cp, CHECK_VERIFY(this));
duke@435 2288
duke@435 2289 // The method must be an <init> method of the indicated class
duke@435 2290 VerificationType new_class_type = cp_index_to_type(
duke@435 2291 new_class_index, cp, CHECK_VERIFY(this));
duke@435 2292 if (!new_class_type.equals(ref_class_type)) {
kamg@3992 2293 verify_error(ErrorContext::bad_type(bci,
kamg@3992 2294 TypeOrigin::cp(new_class_index, new_class_type),
kamg@3992 2295 TypeOrigin::cp(ref_class_index, ref_class_type)),
kamg@3992 2296 "Call to wrong <init> method");
duke@435 2297 return;
duke@435 2298 }
duke@435 2299 // According to the VM spec, if the referent class is a superclass of the
duke@435 2300 // current class, and is in a different runtime package, and the method is
duke@435 2301 // protected, then the objectref must be the current class or a subclass
duke@435 2302 // of the current class.
duke@435 2303 VerificationType objectref_type = new_class_type;
duke@435 2304 if (name_in_supers(ref_class_type.name(), current_class())) {
coleenp@4037 2305 Klass* ref_klass = load_class(
duke@435 2306 ref_class_type.name(), CHECK_VERIFY(this));
coleenp@4037 2307 Method* m = InstanceKlass::cast(ref_klass)->uncached_lookup_method(
duke@435 2308 vmSymbols::object_initializer_name(),
asaha@6779 2309 cp->signature_ref_at(bcs->get_index_u2()), Klass::normal);
hseigel@6771 2310 if (m == NULL) {
hseigel@6771 2311 verify_error(ErrorContext::bad_code(bci),
hseigel@6771 2312 "Call to missing <init> method");
hseigel@6771 2313 return;
hseigel@6771 2314 }
duke@435 2315 instanceKlassHandle mh(THREAD, m->method_holder());
duke@435 2316 if (m->is_protected() && !mh->is_same_class_package(_klass())) {
duke@435 2317 bool assignable = current_type().is_assignable_from(
coleenp@2497 2318 objectref_type, this, CHECK_VERIFY(this));
duke@435 2319 if (!assignable) {
kamg@3992 2320 verify_error(ErrorContext::bad_type(bci,
kamg@3992 2321 TypeOrigin::cp(new_class_index, objectref_type),
kamg@3992 2322 TypeOrigin::implicit(current_type())),
kamg@3992 2323 "Bad access to protected <init> method");
duke@435 2324 return;
duke@435 2325 }
duke@435 2326 }
duke@435 2327 }
duke@435 2328 current_frame->initialize_object(type, new_class_type);
duke@435 2329 } else {
kamg@3992 2330 verify_error(ErrorContext::bad_type(bci, current_frame->stack_top_ctx()),
kamg@3992 2331 "Bad operand type when invoking <init>");
duke@435 2332 return;
duke@435 2333 }
duke@435 2334 }
duke@435 2335
hseigel@6132 2336 bool ClassVerifier::is_same_or_direct_interface(
hseigel@6132 2337 instanceKlassHandle klass,
hseigel@6132 2338 VerificationType klass_type,
hseigel@6132 2339 VerificationType ref_class_type) {
hseigel@6132 2340 if (ref_class_type.equals(klass_type)) return true;
hseigel@6132 2341 Array<Klass*>* local_interfaces = klass->local_interfaces();
hseigel@6132 2342 if (local_interfaces != NULL) {
hseigel@6132 2343 for (int x = 0; x < local_interfaces->length(); x++) {
hseigel@6132 2344 Klass* k = local_interfaces->at(x);
hseigel@6132 2345 assert (k != NULL && k->is_interface(), "invalid interface");
hseigel@6132 2346 if (ref_class_type.equals(VerificationType::reference_type(k->name()))) {
hseigel@6132 2347 return true;
hseigel@6132 2348 }
hseigel@6132 2349 }
hseigel@6132 2350 }
hseigel@6132 2351 return false;
hseigel@6132 2352 }
hseigel@6132 2353
duke@435 2354 void ClassVerifier::verify_invoke_instructions(
duke@435 2355 RawBytecodeStream* bcs, u4 code_length, StackMapFrame* current_frame,
duke@435 2356 bool *this_uninit, VerificationType return_type,
duke@435 2357 constantPoolHandle cp, TRAPS) {
duke@435 2358 // Make sure the constant pool item is the right type
jrose@1920 2359 u2 index = bcs->get_index_u2();
jrose@1920 2360 Bytecodes::Code opcode = bcs->raw_code();
kamg@4245 2361 unsigned int types;
kamg@4245 2362 switch (opcode) {
kamg@4245 2363 case Bytecodes::_invokeinterface:
kamg@4245 2364 types = 1 << JVM_CONSTANT_InterfaceMethodref;
kamg@4245 2365 break;
kamg@4245 2366 case Bytecodes::_invokedynamic:
kamg@4245 2367 types = 1 << JVM_CONSTANT_InvokeDynamic;
kamg@4245 2368 break;
kamg@4245 2369 case Bytecodes::_invokespecial:
bharadwaj@4895 2370 case Bytecodes::_invokestatic:
bharadwaj@4895 2371 types = (_klass->major_version() < STATIC_METHOD_IN_INTERFACE_MAJOR_VERSION) ?
bharadwaj@4895 2372 (1 << JVM_CONSTANT_Methodref) :
bharadwaj@4895 2373 ((1 << JVM_CONSTANT_InterfaceMethodref) | (1 << JVM_CONSTANT_Methodref));
bharadwaj@4895 2374 break;
kamg@4245 2375 default:
kamg@4245 2376 types = 1 << JVM_CONSTANT_Methodref;
kamg@4245 2377 }
kamg@3992 2378 verify_cp_type(bcs->bci(), index, cp, types, CHECK_VERIFY(this));
duke@435 2379
duke@435 2380 // Get method name and signature
coleenp@2497 2381 Symbol* method_name = cp->name_ref_at(index);
coleenp@2497 2382 Symbol* method_sig = cp->signature_ref_at(index);
duke@435 2383
duke@435 2384 if (!SignatureVerifier::is_valid_method_signature(method_sig)) {
duke@435 2385 class_format_error(
duke@435 2386 "Invalid method signature in class %s referenced "
duke@435 2387 "from constant pool index %d", _klass->external_name(), index);
duke@435 2388 return;
duke@435 2389 }
duke@435 2390
duke@435 2391 // Get referenced class type
jrose@1161 2392 VerificationType ref_class_type;
jrose@1161 2393 if (opcode == Bytecodes::_invokedynamic) {
jrose@1957 2394 if (!EnableInvokeDynamic ||
jrose@1957 2395 _klass->major_version() < Verifier::INVOKEDYNAMIC_MAJOR_VERSION) {
jrose@1161 2396 class_format_error(
jrose@1957 2397 (!EnableInvokeDynamic ?
jrose@1957 2398 "invokedynamic instructions not enabled in this JVM" :
jrose@1957 2399 "invokedynamic instructions not supported by this class file version"),
jrose@1161 2400 _klass->external_name());
jrose@1161 2401 return;
jrose@1161 2402 }
jrose@1161 2403 } else {
jrose@1161 2404 ref_class_type = cp_ref_index_to_type(index, cp, CHECK_VERIFY(this));
jrose@1161 2405 }
duke@435 2406
duke@435 2407 // For a small signature length, we just allocate 128 bytes instead
duke@435 2408 // of parsing the signature once to find its size.
duke@435 2409 // -3 is for '(', ')' and return descriptor; multiply by 2 is for
duke@435 2410 // longs/doubles to be consertive.
duke@435 2411 assert(sizeof(VerificationType) == sizeof(uintptr_t),
duke@435 2412 "buffer type must match VerificationType size");
duke@435 2413 uintptr_t on_stack_sig_types_buffer[128];
duke@435 2414 // If we make a VerificationType[128] array directly, the compiler calls
duke@435 2415 // to the c-runtime library to do the allocation instead of just
duke@435 2416 // stack allocating it. Plus it would run constructors. This shows up
duke@435 2417 // in performance profiles.
duke@435 2418
duke@435 2419 VerificationType* sig_types;
duke@435 2420 int size = (method_sig->utf8_length() - 3) * 2;
duke@435 2421 if (size > 128) {
duke@435 2422 // Long and double occupies two slots here.
duke@435 2423 ArgumentSizeComputer size_it(method_sig);
duke@435 2424 size = size_it.size();
duke@435 2425 sig_types = NEW_RESOURCE_ARRAY_IN_THREAD(THREAD, VerificationType, size);
duke@435 2426 } else{
duke@435 2427 sig_types = (VerificationType*)on_stack_sig_types_buffer;
duke@435 2428 }
duke@435 2429 SignatureStream sig_stream(method_sig);
duke@435 2430 int sig_i = 0;
duke@435 2431 while (!sig_stream.at_return_type()) {
duke@435 2432 sig_i += change_sig_to_verificationType(
duke@435 2433 &sig_stream, &sig_types[sig_i], CHECK_VERIFY(this));
duke@435 2434 sig_stream.next();
duke@435 2435 }
duke@435 2436 int nargs = sig_i;
duke@435 2437
duke@435 2438 #ifdef ASSERT
duke@435 2439 {
duke@435 2440 ArgumentSizeComputer size_it(method_sig);
duke@435 2441 assert(nargs == size_it.size(), "Argument sizes do not match");
duke@435 2442 assert(nargs <= (method_sig->utf8_length() - 3) * 2, "estimate of max size isn't conservative enough");
duke@435 2443 }
duke@435 2444 #endif
duke@435 2445
duke@435 2446 // Check instruction operands
duke@435 2447 u2 bci = bcs->bci();
duke@435 2448 if (opcode == Bytecodes::_invokeinterface) {
duke@435 2449 address bcp = bcs->bcp();
duke@435 2450 // 4905268: count operand in invokeinterface should be nargs+1, not nargs.
duke@435 2451 // JSR202 spec: The count operand of an invokeinterface instruction is valid if it is
duke@435 2452 // the difference between the size of the operand stack before and after the instruction
duke@435 2453 // executes.
duke@435 2454 if (*(bcp+3) != (nargs+1)) {
kamg@3992 2455 verify_error(ErrorContext::bad_code(bci),
kamg@3992 2456 "Inconsistent args count operand in invokeinterface");
duke@435 2457 return;
duke@435 2458 }
duke@435 2459 if (*(bcp+4) != 0) {
kamg@3992 2460 verify_error(ErrorContext::bad_code(bci),
kamg@3992 2461 "Fourth operand byte of invokeinterface must be zero");
duke@435 2462 return;
duke@435 2463 }
duke@435 2464 }
duke@435 2465
jrose@1161 2466 if (opcode == Bytecodes::_invokedynamic) {
jrose@1161 2467 address bcp = bcs->bcp();
jrose@1161 2468 if (*(bcp+3) != 0 || *(bcp+4) != 0) {
kamg@3992 2469 verify_error(ErrorContext::bad_code(bci),
kamg@3992 2470 "Third and fourth operand bytes of invokedynamic must be zero");
jrose@1161 2471 return;
jrose@1161 2472 }
jrose@1161 2473 }
jrose@1161 2474
duke@435 2475 if (method_name->byte_at(0) == '<') {
duke@435 2476 // Make sure <init> can only be invoked by invokespecial
duke@435 2477 if (opcode != Bytecodes::_invokespecial ||
coleenp@2497 2478 method_name != vmSymbols::object_initializer_name()) {
kamg@3992 2479 verify_error(ErrorContext::bad_code(bci),
kamg@3992 2480 "Illegal call to internal method");
duke@435 2481 return;
duke@435 2482 }
duke@435 2483 } else if (opcode == Bytecodes::_invokespecial
hseigel@6132 2484 && !is_same_or_direct_interface(current_class(), current_type(), ref_class_type)
duke@435 2485 && !ref_class_type.equals(VerificationType::reference_type(
coleenp@4037 2486 current_class()->super()->name()))) {
acorn@5930 2487 bool subtype = false;
hseigel@6132 2488 bool have_imr_indirect = cp->tag_at(index).value() == JVM_CONSTANT_InterfaceMethodref;
acorn@5930 2489 if (!current_class()->is_anonymous()) {
acorn@5930 2490 subtype = ref_class_type.is_assignable_from(
acorn@5930 2491 current_type(), this, CHECK_VERIFY(this));
acorn@5930 2492 } else {
hseigel@6132 2493 VerificationType host_klass_type =
hseigel@6132 2494 VerificationType::reference_type(current_class()->host_klass()->name());
hseigel@6132 2495 subtype = ref_class_type.is_assignable_from(host_klass_type, this, CHECK_VERIFY(this));
hseigel@6132 2496
hseigel@6132 2497 // If invokespecial of IMR, need to recheck for same or
hseigel@6132 2498 // direct interface relative to the host class
hseigel@6132 2499 have_imr_indirect = (have_imr_indirect &&
hseigel@6132 2500 !is_same_or_direct_interface(
hseigel@6132 2501 InstanceKlass::cast(current_class()->host_klass()),
hseigel@6132 2502 host_klass_type, ref_class_type));
acorn@5930 2503 }
duke@435 2504 if (!subtype) {
acorn@5930 2505 verify_error(ErrorContext::bad_code(bci),
acorn@5930 2506 "Bad invokespecial instruction: "
acorn@5930 2507 "current class isn't assignable to reference class.");
acorn@5930 2508 return;
hseigel@6132 2509 } else if (have_imr_indirect) {
hseigel@6132 2510 verify_error(ErrorContext::bad_code(bci),
hseigel@6132 2511 "Bad invokespecial instruction: "
hseigel@6132 2512 "interface method reference is in an indirect superinterface.");
hseigel@6132 2513 return;
duke@435 2514 }
hseigel@6132 2515
duke@435 2516 }
duke@435 2517 // Match method descriptor with operand stack
duke@435 2518 for (int i = nargs - 1; i >= 0; i--) { // Run backwards
duke@435 2519 current_frame->pop_stack(sig_types[i], CHECK_VERIFY(this));
duke@435 2520 }
duke@435 2521 // Check objectref on operand stack
jrose@1161 2522 if (opcode != Bytecodes::_invokestatic &&
jrose@1161 2523 opcode != Bytecodes::_invokedynamic) {
coleenp@2497 2524 if (method_name == vmSymbols::object_initializer_name()) { // <init> method
kamg@3992 2525 verify_invoke_init(bcs, index, ref_class_type, current_frame,
duke@435 2526 code_length, this_uninit, cp, CHECK_VERIFY(this));
duke@435 2527 } else { // other methods
duke@435 2528 // Ensures that target class is assignable to method class.
duke@435 2529 if (opcode == Bytecodes::_invokespecial) {
acorn@5852 2530 if (!current_class()->is_anonymous()) {
acorn@5852 2531 current_frame->pop_stack(current_type(), CHECK_VERIFY(this));
acorn@5852 2532 } else {
acorn@5930 2533 // anonymous class invokespecial calls: check if the
acorn@5930 2534 // objectref is a subtype of the host_klass of the current class
acorn@5852 2535 // to allow an anonymous class to reference methods in the host_klass
acorn@5852 2536 VerificationType top = current_frame->pop_stack(CHECK_VERIFY(this));
acorn@5930 2537 VerificationType hosttype =
acorn@5930 2538 VerificationType::reference_type(current_class()->host_klass()->name());
acorn@5930 2539 bool subtype = hosttype.is_assignable_from(top, this, CHECK_VERIFY(this));
acorn@5852 2540 if (!subtype) {
acorn@5852 2541 verify_error( ErrorContext::bad_type(current_frame->offset(),
acorn@5852 2542 current_frame->stack_top_ctx(),
acorn@5852 2543 TypeOrigin::implicit(top)),
acorn@5852 2544 "Bad type on operand stack");
acorn@5852 2545 return;
acorn@5852 2546 }
acorn@5852 2547 }
duke@435 2548 } else if (opcode == Bytecodes::_invokevirtual) {
duke@435 2549 VerificationType stack_object_type =
duke@435 2550 current_frame->pop_stack(ref_class_type, CHECK_VERIFY(this));
duke@435 2551 if (current_type() != stack_object_type) {
duke@435 2552 assert(cp->cache() == NULL, "not rewritten yet");
coleenp@2497 2553 Symbol* ref_class_name =
coleenp@2497 2554 cp->klass_name_at(cp->klass_ref_index_at(index));
duke@435 2555 // See the comments in verify_field_instructions() for
duke@435 2556 // the rationale behind this.
coleenp@2497 2557 if (name_in_supers(ref_class_name, current_class())) {
coleenp@4037 2558 Klass* ref_class = load_class(ref_class_name, CHECK);
duke@435 2559 if (is_protected_access(
coleenp@2497 2560 _klass, ref_class, method_name, method_sig, true)) {
duke@435 2561 // It's protected access, check if stack object is
duke@435 2562 // assignable to current class.
duke@435 2563 bool is_assignable = current_type().is_assignable_from(
coleenp@2497 2564 stack_object_type, this, CHECK_VERIFY(this));
duke@435 2565 if (!is_assignable) {
duke@435 2566 if (ref_class_type.name() == vmSymbols::java_lang_Object()
duke@435 2567 && stack_object_type.is_array()
coleenp@2497 2568 && method_name == vmSymbols::clone_name()) {
duke@435 2569 // Special case: arrays pretend to implement public Object
duke@435 2570 // clone().
duke@435 2571 } else {
kamg@3992 2572 verify_error(ErrorContext::bad_type(bci,
kamg@3992 2573 current_frame->stack_top_ctx(),
kamg@3992 2574 TypeOrigin::implicit(current_type())),
kamg@3992 2575 "Bad access to protected data in invokevirtual");
duke@435 2576 return;
duke@435 2577 }
duke@435 2578 }
duke@435 2579 }
duke@435 2580 }
duke@435 2581 }
duke@435 2582 } else {
duke@435 2583 assert(opcode == Bytecodes::_invokeinterface, "Unexpected opcode encountered");
duke@435 2584 current_frame->pop_stack(ref_class_type, CHECK_VERIFY(this));
duke@435 2585 }
duke@435 2586 }
duke@435 2587 }
duke@435 2588 // Push the result type.
duke@435 2589 if (sig_stream.type() != T_VOID) {
coleenp@2497 2590 if (method_name == vmSymbols::object_initializer_name()) {
duke@435 2591 // <init> method must have a void return type
kamg@3992 2592 /* Unreachable? Class file parser verifies that methods with '<' have
kamg@3992 2593 * void return */
kamg@3992 2594 verify_error(ErrorContext::bad_code(bci),
kamg@3992 2595 "Return type must be void in <init> method");
duke@435 2596 return;
duke@435 2597 }
duke@435 2598 VerificationType return_type[2];
duke@435 2599 int n = change_sig_to_verificationType(
duke@435 2600 &sig_stream, return_type, CHECK_VERIFY(this));
duke@435 2601 for (int i = 0; i < n; i++) {
duke@435 2602 current_frame->push_stack(return_type[i], CHECK_VERIFY(this)); // push types backwards
duke@435 2603 }
duke@435 2604 }
duke@435 2605 }
duke@435 2606
duke@435 2607 VerificationType ClassVerifier::get_newarray_type(
duke@435 2608 u2 index, u2 bci, TRAPS) {
duke@435 2609 const char* from_bt[] = {
duke@435 2610 NULL, NULL, NULL, NULL, "[Z", "[C", "[F", "[D", "[B", "[S", "[I", "[J",
duke@435 2611 };
duke@435 2612 if (index < T_BOOLEAN || index > T_LONG) {
kamg@3992 2613 verify_error(ErrorContext::bad_code(bci), "Illegal newarray instruction");
duke@435 2614 return VerificationType::bogus_type();
duke@435 2615 }
duke@435 2616
duke@435 2617 // from_bt[index] contains the array signature which has a length of 2
coleenp@2497 2618 Symbol* sig = create_temporary_symbol(
duke@435 2619 from_bt[index], 2, CHECK_(VerificationType::bogus_type()));
duke@435 2620 return VerificationType::reference_type(sig);
duke@435 2621 }
duke@435 2622
duke@435 2623 void ClassVerifier::verify_anewarray(
kamg@3992 2624 u2 bci, u2 index, constantPoolHandle cp,
kamg@3992 2625 StackMapFrame* current_frame, TRAPS) {
kamg@3992 2626 verify_cp_class_type(bci, index, cp, CHECK_VERIFY(this));
duke@435 2627 current_frame->pop_stack(
duke@435 2628 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 2629
duke@435 2630 VerificationType component_type =
duke@435 2631 cp_index_to_type(index, cp, CHECK_VERIFY(this));
duke@435 2632 int length;
duke@435 2633 char* arr_sig_str;
duke@435 2634 if (component_type.is_array()) { // it's an array
duke@435 2635 const char* component_name = component_type.name()->as_utf8();
duke@435 2636 // add one dimension to component
duke@435 2637 length = (int)strlen(component_name) + 1;
duke@435 2638 arr_sig_str = NEW_RESOURCE_ARRAY_IN_THREAD(THREAD, char, length);
duke@435 2639 arr_sig_str[0] = '[';
duke@435 2640 strncpy(&arr_sig_str[1], component_name, length - 1);
duke@435 2641 } else { // it's an object or interface
duke@435 2642 const char* component_name = component_type.name()->as_utf8();
duke@435 2643 // add one dimension to component with 'L' prepended and ';' postpended.
duke@435 2644 length = (int)strlen(component_name) + 3;
duke@435 2645 arr_sig_str = NEW_RESOURCE_ARRAY_IN_THREAD(THREAD, char, length);
duke@435 2646 arr_sig_str[0] = '[';
duke@435 2647 arr_sig_str[1] = 'L';
duke@435 2648 strncpy(&arr_sig_str[2], component_name, length - 2);
duke@435 2649 arr_sig_str[length - 1] = ';';
duke@435 2650 }
coleenp@2497 2651 Symbol* arr_sig = create_temporary_symbol(
duke@435 2652 arr_sig_str, length, CHECK_VERIFY(this));
duke@435 2653 VerificationType new_array_type = VerificationType::reference_type(arr_sig);
duke@435 2654 current_frame->push_stack(new_array_type, CHECK_VERIFY(this));
duke@435 2655 }
duke@435 2656
duke@435 2657 void ClassVerifier::verify_iload(u2 index, StackMapFrame* current_frame, TRAPS) {
duke@435 2658 current_frame->get_local(
duke@435 2659 index, VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 2660 current_frame->push_stack(
duke@435 2661 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 2662 }
duke@435 2663
duke@435 2664 void ClassVerifier::verify_lload(u2 index, StackMapFrame* current_frame, TRAPS) {
duke@435 2665 current_frame->get_local_2(
duke@435 2666 index, VerificationType::long_type(),
duke@435 2667 VerificationType::long2_type(), CHECK_VERIFY(this));
duke@435 2668 current_frame->push_stack_2(
duke@435 2669 VerificationType::long_type(),
duke@435 2670 VerificationType::long2_type(), CHECK_VERIFY(this));
duke@435 2671 }
duke@435 2672
duke@435 2673 void ClassVerifier::verify_fload(u2 index, StackMapFrame* current_frame, TRAPS) {
duke@435 2674 current_frame->get_local(
duke@435 2675 index, VerificationType::float_type(), CHECK_VERIFY(this));
duke@435 2676 current_frame->push_stack(
duke@435 2677 VerificationType::float_type(), CHECK_VERIFY(this));
duke@435 2678 }
duke@435 2679
duke@435 2680 void ClassVerifier::verify_dload(u2 index, StackMapFrame* current_frame, TRAPS) {
duke@435 2681 current_frame->get_local_2(
duke@435 2682 index, VerificationType::double_type(),
duke@435 2683 VerificationType::double2_type(), CHECK_VERIFY(this));
duke@435 2684 current_frame->push_stack_2(
duke@435 2685 VerificationType::double_type(),
duke@435 2686 VerificationType::double2_type(), CHECK_VERIFY(this));
duke@435 2687 }
duke@435 2688
duke@435 2689 void ClassVerifier::verify_aload(u2 index, StackMapFrame* current_frame, TRAPS) {
duke@435 2690 VerificationType type = current_frame->get_local(
duke@435 2691 index, VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 2692 current_frame->push_stack(type, CHECK_VERIFY(this));
duke@435 2693 }
duke@435 2694
duke@435 2695 void ClassVerifier::verify_istore(u2 index, StackMapFrame* current_frame, TRAPS) {
duke@435 2696 current_frame->pop_stack(
duke@435 2697 VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 2698 current_frame->set_local(
duke@435 2699 index, VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 2700 }
duke@435 2701
duke@435 2702 void ClassVerifier::verify_lstore(u2 index, StackMapFrame* current_frame, TRAPS) {
duke@435 2703 current_frame->pop_stack_2(
duke@435 2704 VerificationType::long2_type(),
duke@435 2705 VerificationType::long_type(), CHECK_VERIFY(this));
duke@435 2706 current_frame->set_local_2(
duke@435 2707 index, VerificationType::long_type(),
duke@435 2708 VerificationType::long2_type(), CHECK_VERIFY(this));
duke@435 2709 }
duke@435 2710
duke@435 2711 void ClassVerifier::verify_fstore(u2 index, StackMapFrame* current_frame, TRAPS) {
duke@435 2712 current_frame->pop_stack(VerificationType::float_type(), CHECK_VERIFY(this));
duke@435 2713 current_frame->set_local(
duke@435 2714 index, VerificationType::float_type(), CHECK_VERIFY(this));
duke@435 2715 }
duke@435 2716
duke@435 2717 void ClassVerifier::verify_dstore(u2 index, StackMapFrame* current_frame, TRAPS) {
duke@435 2718 current_frame->pop_stack_2(
duke@435 2719 VerificationType::double2_type(),
duke@435 2720 VerificationType::double_type(), CHECK_VERIFY(this));
duke@435 2721 current_frame->set_local_2(
duke@435 2722 index, VerificationType::double_type(),
duke@435 2723 VerificationType::double2_type(), CHECK_VERIFY(this));
duke@435 2724 }
duke@435 2725
duke@435 2726 void ClassVerifier::verify_astore(u2 index, StackMapFrame* current_frame, TRAPS) {
duke@435 2727 VerificationType type = current_frame->pop_stack(
duke@435 2728 VerificationType::reference_check(), CHECK_VERIFY(this));
duke@435 2729 current_frame->set_local(index, type, CHECK_VERIFY(this));
duke@435 2730 }
duke@435 2731
duke@435 2732 void ClassVerifier::verify_iinc(u2 index, StackMapFrame* current_frame, TRAPS) {
duke@435 2733 VerificationType type = current_frame->get_local(
duke@435 2734 index, VerificationType::integer_type(), CHECK_VERIFY(this));
duke@435 2735 current_frame->set_local(index, type, CHECK_VERIFY(this));
duke@435 2736 }
duke@435 2737
duke@435 2738 void ClassVerifier::verify_return_value(
kamg@3992 2739 VerificationType return_type, VerificationType type, u2 bci,
kamg@3992 2740 StackMapFrame* current_frame, TRAPS) {
duke@435 2741 if (return_type == VerificationType::bogus_type()) {
kamg@3992 2742 verify_error(ErrorContext::bad_type(bci,
kamg@3992 2743 current_frame->stack_top_ctx(), TypeOrigin::signature(return_type)),
kamg@3992 2744 "Method expects a return value");
duke@435 2745 return;
duke@435 2746 }
coleenp@2497 2747 bool match = return_type.is_assignable_from(type, this, CHECK_VERIFY(this));
duke@435 2748 if (!match) {
kamg@3992 2749 verify_error(ErrorContext::bad_type(bci,
kamg@3992 2750 current_frame->stack_top_ctx(), TypeOrigin::signature(return_type)),
kamg@3992 2751 "Bad return type");
duke@435 2752 return;
duke@435 2753 }
duke@435 2754 }
coleenp@2497 2755
coleenp@2497 2756 // The verifier creates symbols which are substrings of Symbols.
coleenp@2497 2757 // These are stored in the verifier until the end of verification so that
coleenp@2497 2758 // they can be reference counted.
coleenp@2497 2759 Symbol* ClassVerifier::create_temporary_symbol(const Symbol *s, int begin,
coleenp@2497 2760 int end, TRAPS) {
coleenp@2497 2761 Symbol* sym = SymbolTable::new_symbol(s, begin, end, CHECK_NULL);
coleenp@2497 2762 _symbols->push(sym);
coleenp@2497 2763 return sym;
coleenp@2497 2764 }
coleenp@2497 2765
coleenp@2497 2766 Symbol* ClassVerifier::create_temporary_symbol(const char *s, int length, TRAPS) {
coleenp@2497 2767 Symbol* sym = SymbolTable::new_symbol(s, length, CHECK_NULL);
coleenp@2497 2768 _symbols->push(sym);
coleenp@2497 2769 return sym;
coleenp@2497 2770 }

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