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Orion Hodsonba28f9f2016-10-26 10:56:25 +01001/*
2 * Copyright (C) 2016 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
Orion Hodsonba28f9f2016-10-26 10:56:25 +010017#include "method_handles-inl.h"
Andreas Gampe46ee31b2016-12-14 10:11:49 -080018
19#include "android-base/stringprintf.h"
20
Orion Hodson811bd5f2016-12-07 11:35:37 +000021#include "common_dex_operations.h"
Orion Hodsonba28f9f2016-10-26 10:56:25 +010022#include "jvalue.h"
23#include "jvalue-inl.h"
Orion Hodson811bd5f2016-12-07 11:35:37 +000024#include "mirror/emulated_stack_frame.h"
Andreas Gampec6ea7d02017-02-01 16:46:28 -080025#include "mirror/method_handle_impl-inl.h"
Orion Hodson811bd5f2016-12-07 11:35:37 +000026#include "mirror/method_type.h"
Orion Hodsonba28f9f2016-10-26 10:56:25 +010027#include "reflection.h"
28#include "reflection-inl.h"
Orion Hodson1a06f9f2016-11-09 08:32:42 +000029#include "well_known_classes.h"
Orion Hodsonba28f9f2016-10-26 10:56:25 +010030
31namespace art {
32
Andreas Gampe46ee31b2016-12-14 10:11:49 -080033using android::base::StringPrintf;
34
Orion Hodsonba28f9f2016-10-26 10:56:25 +010035namespace {
36
Orion Hodson1a06f9f2016-11-09 08:32:42 +000037#define PRIMITIVES_LIST(V) \
38 V(Primitive::kPrimBoolean, Boolean, Boolean, Z) \
39 V(Primitive::kPrimByte, Byte, Byte, B) \
40 V(Primitive::kPrimChar, Char, Character, C) \
41 V(Primitive::kPrimShort, Short, Short, S) \
42 V(Primitive::kPrimInt, Int, Integer, I) \
43 V(Primitive::kPrimLong, Long, Long, J) \
44 V(Primitive::kPrimFloat, Float, Float, F) \
45 V(Primitive::kPrimDouble, Double, Double, D)
Orion Hodsonba28f9f2016-10-26 10:56:25 +010046
47// Assigns |type| to the primitive type associated with |klass|. Returns
48// true iff. |klass| was a boxed type (Integer, Long etc.), false otherwise.
49bool GetUnboxedPrimitiveType(ObjPtr<mirror::Class> klass, Primitive::Type* type)
50 REQUIRES_SHARED(Locks::mutator_lock_) {
51 ScopedAssertNoThreadSuspension ants(__FUNCTION__);
Orion Hodsona1be7132017-03-21 10:04:12 +000052 std::string storage;
53 const char* descriptor = klass->GetDescriptor(&storage);
54 static const char kJavaLangPrefix[] = "Ljava/lang/";
55 static const size_t kJavaLangPrefixSize = sizeof(kJavaLangPrefix) - 1;
56 if (strncmp(descriptor, kJavaLangPrefix, kJavaLangPrefixSize) != 0) {
57 return false;
58 }
59
60 descriptor += kJavaLangPrefixSize;
61#define LOOKUP_PRIMITIVE(primitive, _, java_name, ___) \
62 if (strcmp(descriptor, #java_name ";") == 0) { \
63 *type = primitive; \
64 return true; \
Orion Hodsonba28f9f2016-10-26 10:56:25 +010065 }
Orion Hodsonba28f9f2016-10-26 10:56:25 +010066
Orion Hodson1a06f9f2016-11-09 08:32:42 +000067 PRIMITIVES_LIST(LOOKUP_PRIMITIVE);
68#undef LOOKUP_PRIMITIVE
Orion Hodsonba28f9f2016-10-26 10:56:25 +010069 return false;
70}
71
Orion Hodson1a06f9f2016-11-09 08:32:42 +000072ObjPtr<mirror::Class> GetBoxedPrimitiveClass(Primitive::Type type)
Orion Hodsonba28f9f2016-10-26 10:56:25 +010073 REQUIRES_SHARED(Locks::mutator_lock_) {
Orion Hodson1a06f9f2016-11-09 08:32:42 +000074 ScopedAssertNoThreadSuspension ants(__FUNCTION__);
75 jmethodID m = nullptr;
76 switch (type) {
77#define CASE_PRIMITIVE(primitive, _, java_name, __) \
78 case primitive: \
79 m = WellKnownClasses::java_lang_ ## java_name ## _valueOf; \
80 break;
81 PRIMITIVES_LIST(CASE_PRIMITIVE);
82#undef CASE_PRIMITIVE
83 case Primitive::Type::kPrimNot:
84 case Primitive::Type::kPrimVoid:
85 return nullptr;
Orion Hodsonba28f9f2016-10-26 10:56:25 +010086 }
Orion Hodson1a06f9f2016-11-09 08:32:42 +000087 return jni::DecodeArtMethod(m)->GetDeclaringClass();
88}
Orion Hodsonba28f9f2016-10-26 10:56:25 +010089
Orion Hodson1a06f9f2016-11-09 08:32:42 +000090bool GetUnboxedTypeAndValue(ObjPtr<mirror::Object> o, Primitive::Type* type, JValue* value)
91 REQUIRES_SHARED(Locks::mutator_lock_) {
92 ScopedAssertNoThreadSuspension ants(__FUNCTION__);
Orion Hodsonba28f9f2016-10-26 10:56:25 +010093 ObjPtr<mirror::Class> klass = o->GetClass();
Orion Hodsonba28f9f2016-10-26 10:56:25 +010094 ArtField* primitive_field = &klass->GetIFieldsPtr()->At(0);
Orion Hodson1a06f9f2016-11-09 08:32:42 +000095#define CASE_PRIMITIVE(primitive, abbrev, _, shorthand) \
96 if (klass == GetBoxedPrimitiveClass(primitive)) { \
97 *type = primitive; \
98 value->Set ## shorthand(primitive_field->Get ## abbrev(o)); \
99 return true; \
Orion Hodsonba28f9f2016-10-26 10:56:25 +0100100 }
Orion Hodson1a06f9f2016-11-09 08:32:42 +0000101 PRIMITIVES_LIST(CASE_PRIMITIVE)
102#undef CASE_PRIMITIVE
103 return false;
Orion Hodsonba28f9f2016-10-26 10:56:25 +0100104}
105
106inline bool IsReferenceType(Primitive::Type type) {
107 return type == Primitive::kPrimNot;
108}
109
110inline bool IsPrimitiveType(Primitive::Type type) {
111 return !IsReferenceType(type);
112}
113
114} // namespace
115
Orion Hodson1a06f9f2016-11-09 08:32:42 +0000116bool IsParameterTypeConvertible(ObjPtr<mirror::Class> from, ObjPtr<mirror::Class> to)
117 REQUIRES_SHARED(Locks::mutator_lock_) {
118 // This function returns true if there's any conceivable conversion
119 // between |from| and |to|. It's expected this method will be used
120 // to determine if a WrongMethodTypeException should be raised. The
121 // decision logic follows the documentation for MethodType.asType().
122 if (from == to) {
123 return true;
124 }
125
126 Primitive::Type from_primitive = from->GetPrimitiveType();
127 Primitive::Type to_primitive = to->GetPrimitiveType();
128 DCHECK(from_primitive != Primitive::Type::kPrimVoid);
129 DCHECK(to_primitive != Primitive::Type::kPrimVoid);
130
131 // If |to| and |from| are references.
132 if (IsReferenceType(from_primitive) && IsReferenceType(to_primitive)) {
133 // Assignability is determined during parameter conversion when
134 // invoking the associated method handle.
135 return true;
136 }
137
138 // If |to| and |from| are primitives and a widening conversion exists.
139 if (Primitive::IsWidenable(from_primitive, to_primitive)) {
140 return true;
141 }
142
143 // If |to| is a reference and |from| is a primitive, then boxing conversion.
144 if (IsReferenceType(to_primitive) && IsPrimitiveType(from_primitive)) {
145 return to->IsAssignableFrom(GetBoxedPrimitiveClass(from_primitive));
146 }
147
148 // If |from| is a reference and |to| is a primitive, then unboxing conversion.
149 if (IsPrimitiveType(to_primitive) && IsReferenceType(from_primitive)) {
150 if (from->DescriptorEquals("Ljava/lang/Object;")) {
151 // Object might be converted into a primitive during unboxing.
152 return true;
Orion Hodsona1be7132017-03-21 10:04:12 +0000153 }
154
155 if (Primitive::IsNumericType(to_primitive) && from->DescriptorEquals("Ljava/lang/Number;")) {
Orion Hodson1a06f9f2016-11-09 08:32:42 +0000156 // Number might be unboxed into any of the number primitive types.
157 return true;
158 }
Orion Hodsona1be7132017-03-21 10:04:12 +0000159
Orion Hodson1a06f9f2016-11-09 08:32:42 +0000160 Primitive::Type unboxed_type;
161 if (GetUnboxedPrimitiveType(from, &unboxed_type)) {
Orion Hodsonf1412b42016-11-11 12:03:29 +0000162 if (unboxed_type == to_primitive) {
163 // Straightforward unboxing conversion such as Boolean => boolean.
164 return true;
Orion Hodsonf1412b42016-11-11 12:03:29 +0000165 }
Orion Hodsona1be7132017-03-21 10:04:12 +0000166
167 // Check if widening operations for numeric primitives would work,
168 // such as Byte => byte => long.
169 return Primitive::IsWidenable(unboxed_type, to_primitive);
Orion Hodson1a06f9f2016-11-09 08:32:42 +0000170 }
171 }
172
173 return false;
174}
175
176bool IsReturnTypeConvertible(ObjPtr<mirror::Class> from, ObjPtr<mirror::Class> to)
177 REQUIRES_SHARED(Locks::mutator_lock_) {
178 if (to->GetPrimitiveType() == Primitive::Type::kPrimVoid) {
179 // Result will be ignored.
180 return true;
181 } else if (from->GetPrimitiveType() == Primitive::Type::kPrimVoid) {
182 // Returned value will be 0 / null.
183 return true;
184 } else {
185 // Otherwise apply usual parameter conversion rules.
186 return IsParameterTypeConvertible(from, to);
187 }
188}
189
Orion Hodsonba28f9f2016-10-26 10:56:25 +0100190bool ConvertJValueCommon(
191 Handle<mirror::MethodType> callsite_type,
192 Handle<mirror::MethodType> callee_type,
193 ObjPtr<mirror::Class> from,
194 ObjPtr<mirror::Class> to,
195 JValue* value) {
196 // The reader maybe concerned about the safety of the heap object
197 // that may be in |value|. There is only one case where allocation
198 // is obviously needed and that's for boxing. However, in the case
199 // of boxing |value| contains a non-reference type.
200
201 const Primitive::Type from_type = from->GetPrimitiveType();
202 const Primitive::Type to_type = to->GetPrimitiveType();
203
Orion Hodson1a06f9f2016-11-09 08:32:42 +0000204 // Put incoming value into |src_value| and set return value to 0.
205 // Errors and conversions from void require the return value to be 0.
206 const JValue src_value(*value);
207 value->SetJ(0);
208
209 // Conversion from void set result to zero.
210 if (from_type == Primitive::kPrimVoid) {
211 return true;
212 }
213
Orion Hodsonba28f9f2016-10-26 10:56:25 +0100214 // This method must be called only when the types don't match.
215 DCHECK(from != to);
216
217 if (IsPrimitiveType(from_type) && IsPrimitiveType(to_type)) {
218 // The source and target types are both primitives.
Orion Hodson1a06f9f2016-11-09 08:32:42 +0000219 if (UNLIKELY(!ConvertPrimitiveValueNoThrow(from_type, to_type, src_value, value))) {
Orion Hodsonba28f9f2016-10-26 10:56:25 +0100220 ThrowWrongMethodTypeException(callee_type.Get(), callsite_type.Get());
Orion Hodsonba28f9f2016-10-26 10:56:25 +0100221 return false;
222 }
223 return true;
224 } else if (IsReferenceType(from_type) && IsReferenceType(to_type)) {
225 // They're both reference types. If "from" is null, we can pass it
226 // through unchanged. If not, we must generate a cast exception if
227 // |to| is not assignable from the dynamic type of |ref|.
228 //
229 // Playing it safe with StackHandleScope here, not expecting any allocation
230 // in mirror::Class::IsAssignable().
231 StackHandleScope<2> hs(Thread::Current());
232 Handle<mirror::Class> h_to(hs.NewHandle(to));
Orion Hodson1a06f9f2016-11-09 08:32:42 +0000233 Handle<mirror::Object> h_obj(hs.NewHandle(src_value.GetL()));
Andreas Gampefa4333d2017-02-14 11:10:34 -0800234 if (h_obj != nullptr && !to->IsAssignableFrom(h_obj->GetClass())) {
Orion Hodsonba28f9f2016-10-26 10:56:25 +0100235 ThrowClassCastException(h_to.Get(), h_obj->GetClass());
236 return false;
237 }
238 value->SetL(h_obj.Get());
239 return true;
240 } else if (IsReferenceType(to_type)) {
241 DCHECK(IsPrimitiveType(from_type));
Orion Hodsonba28f9f2016-10-26 10:56:25 +0100242 // The source type is a primitive and the target type is a reference, so we must box.
243 // The target type maybe a super class of the boxed source type, for example,
244 // if the source type is int, it's boxed type is java.lang.Integer, and the target
245 // type could be java.lang.Number.
246 Primitive::Type type;
247 if (!GetUnboxedPrimitiveType(to, &type)) {
248 ObjPtr<mirror::Class> boxed_from_class = GetBoxedPrimitiveClass(from_type);
Orion Hodson1a06f9f2016-11-09 08:32:42 +0000249 if (boxed_from_class->IsSubClass(to)) {
Orion Hodsonba28f9f2016-10-26 10:56:25 +0100250 type = from_type;
251 } else {
Orion Hodsonba28f9f2016-10-26 10:56:25 +0100252 ThrowWrongMethodTypeException(callee_type.Get(), callsite_type.Get());
253 return false;
254 }
255 }
256
257 if (UNLIKELY(from_type != type)) {
Orion Hodsonba28f9f2016-10-26 10:56:25 +0100258 ThrowWrongMethodTypeException(callee_type.Get(), callsite_type.Get());
259 return false;
260 }
261
Orion Hodson1a06f9f2016-11-09 08:32:42 +0000262 if (!ConvertPrimitiveValueNoThrow(from_type, type, src_value, value)) {
Orion Hodsonba28f9f2016-10-26 10:56:25 +0100263 ThrowWrongMethodTypeException(callee_type.Get(), callsite_type.Get());
264 return false;
265 }
266
267 // Then perform the actual boxing, and then set the reference.
Orion Hodson1a06f9f2016-11-09 08:32:42 +0000268 ObjPtr<mirror::Object> boxed = BoxPrimitive(type, src_value);
Orion Hodsonba28f9f2016-10-26 10:56:25 +0100269 value->SetL(boxed.Ptr());
270 return true;
271 } else {
272 // The source type is a reference and the target type is a primitive, so we must unbox.
273 DCHECK(IsReferenceType(from_type));
274 DCHECK(IsPrimitiveType(to_type));
275
Orion Hodson1a06f9f2016-11-09 08:32:42 +0000276 ObjPtr<mirror::Object> from_obj(src_value.GetL());
277 if (UNLIKELY(from_obj == nullptr)) {
278 ThrowNullPointerException(
279 StringPrintf("Expected to unbox a '%s' primitive type but was returned null",
280 from->PrettyDescriptor().c_str()).c_str());
281 return false;
282 }
Orion Hodsonba28f9f2016-10-26 10:56:25 +0100283
Orion Hodson1a06f9f2016-11-09 08:32:42 +0000284 Primitive::Type unboxed_type;
285 JValue unboxed_value;
286 if (UNLIKELY(!GetUnboxedTypeAndValue(from_obj, &unboxed_type, &unboxed_value))) {
Orion Hodsonba28f9f2016-10-26 10:56:25 +0100287 ThrowWrongMethodTypeException(callee_type.Get(), callsite_type.Get());
288 return false;
289 }
290
Orion Hodson1a06f9f2016-11-09 08:32:42 +0000291 if (UNLIKELY(!ConvertPrimitiveValueNoThrow(unboxed_type, to_type, unboxed_value, value))) {
292 ThrowClassCastException(from, to);
Orion Hodsonba28f9f2016-10-26 10:56:25 +0100293 return false;
294 }
295
Orion Hodson1a06f9f2016-11-09 08:32:42 +0000296 return true;
Orion Hodsonba28f9f2016-10-26 10:56:25 +0100297 }
298}
299
Orion Hodson811bd5f2016-12-07 11:35:37 +0000300namespace {
301
302template <bool is_range>
303inline void CopyArgumentsFromCallerFrame(const ShadowFrame& caller_frame,
304 ShadowFrame* callee_frame,
305 const uint32_t (&args)[Instruction::kMaxVarArgRegs],
306 uint32_t first_arg,
307 const size_t first_dst_reg,
308 const size_t num_regs)
309 REQUIRES_SHARED(Locks::mutator_lock_) {
310 for (size_t i = 0; i < num_regs; ++i) {
311 size_t dst_reg = first_dst_reg + i;
312 size_t src_reg = is_range ? (first_arg + i) : args[i];
313 // Uint required, so that sign extension does not make this wrong on 64-bit systems
314 uint32_t src_value = caller_frame.GetVReg(src_reg);
315 ObjPtr<mirror::Object> o = caller_frame.GetVRegReference<kVerifyNone>(src_reg);
316 // If both register locations contains the same value, the register probably holds a reference.
317 // Note: As an optimization, non-moving collectors leave a stale reference value
318 // in the references array even after the original vreg was overwritten to a non-reference.
319 if (src_value == reinterpret_cast<uintptr_t>(o.Ptr())) {
320 callee_frame->SetVRegReference(dst_reg, o.Ptr());
321 } else {
322 callee_frame->SetVReg(dst_reg, src_value);
323 }
324 }
325}
326
327template <bool is_range>
328inline bool ConvertAndCopyArgumentsFromCallerFrame(
329 Thread* self,
330 Handle<mirror::MethodType> callsite_type,
331 Handle<mirror::MethodType> callee_type,
332 const ShadowFrame& caller_frame,
333 const uint32_t (&args)[Instruction::kMaxVarArgRegs],
334 uint32_t first_arg,
335 uint32_t first_dst_reg,
336 ShadowFrame* callee_frame)
337 REQUIRES_SHARED(Locks::mutator_lock_) {
338 ObjPtr<mirror::ObjectArray<mirror::Class>> from_types(callsite_type->GetPTypes());
339 ObjPtr<mirror::ObjectArray<mirror::Class>> to_types(callee_type->GetPTypes());
340
341 const int32_t num_method_params = from_types->GetLength();
342 if (to_types->GetLength() != num_method_params) {
343 ThrowWrongMethodTypeException(callee_type.Get(), callsite_type.Get());
344 return false;
345 }
346
347 ShadowFrameGetter<is_range> getter(first_arg, args, caller_frame);
348 ShadowFrameSetter setter(callee_frame, first_dst_reg);
349
350 return PerformConversions<ShadowFrameGetter<is_range>, ShadowFrameSetter>(self,
351 callsite_type,
352 callee_type,
353 &getter,
354 &setter,
355 num_method_params);
356}
357
358inline bool IsMethodHandleInvokeExact(const ArtMethod* const method) {
359 if (method == jni::DecodeArtMethod(WellKnownClasses::java_lang_invoke_MethodHandle_invokeExact)) {
360 return true;
361 } else {
362 DCHECK_EQ(method, jni::DecodeArtMethod(WellKnownClasses::java_lang_invoke_MethodHandle_invoke));
363 return false;
364 }
365}
366
367inline bool IsInvoke(const mirror::MethodHandle::Kind handle_kind) {
368 return handle_kind <= mirror::MethodHandle::Kind::kLastInvokeKind;
369}
370
371inline bool IsInvokeTransform(const mirror::MethodHandle::Kind handle_kind) {
372 return (handle_kind == mirror::MethodHandle::Kind::kInvokeTransform
373 || handle_kind == mirror::MethodHandle::Kind::kInvokeCallSiteTransform);
374}
375
376inline bool IsFieldAccess(mirror::MethodHandle::Kind handle_kind) {
377 return (handle_kind >= mirror::MethodHandle::Kind::kFirstAccessorKind
378 && handle_kind <= mirror::MethodHandle::Kind::kLastAccessorKind);
379}
380
381// Calculate the number of ins for a proxy or native method, where we
382// can't just look at the code item.
383static inline size_t GetInsForProxyOrNativeMethod(ArtMethod* method)
384 REQUIRES_SHARED(Locks::mutator_lock_) {
385 DCHECK(method->IsNative() || method->IsProxyMethod());
Orion Hodson811bd5f2016-12-07 11:35:37 +0000386 method = method->GetInterfaceMethodIfProxy(kRuntimePointerSize);
Orion Hodsona1be7132017-03-21 10:04:12 +0000387 uint32_t shorty_length = 0;
388 const char* shorty = method->GetShorty(&shorty_length);
Orion Hodson811bd5f2016-12-07 11:35:37 +0000389
Orion Hodsona1be7132017-03-21 10:04:12 +0000390 // Static methods do not include the receiver. The receiver isn't included
391 // in the shorty_length though the return value is.
392 size_t num_ins = method->IsStatic() ? shorty_length - 1 : shorty_length;
393 for (const char* c = shorty + 1; *c != '\0'; ++c) {
394 if (*c == 'J' || *c == 'D') {
Orion Hodson811bd5f2016-12-07 11:35:37 +0000395 ++num_ins;
396 }
397 }
Orion Hodson811bd5f2016-12-07 11:35:37 +0000398 return num_ins;
399}
400
401// Returns true iff. the callsite type for a polymorphic invoke is transformer
402// like, i.e that it has a single input argument whose type is
403// dalvik.system.EmulatedStackFrame.
404static inline bool IsCallerTransformer(Handle<mirror::MethodType> callsite_type)
405 REQUIRES_SHARED(Locks::mutator_lock_) {
406 ObjPtr<mirror::ObjectArray<mirror::Class>> param_types(callsite_type->GetPTypes());
407 if (param_types->GetLength() == 1) {
408 ObjPtr<mirror::Class> param(param_types->GetWithoutChecks(0));
Orion Hodsona1be7132017-03-21 10:04:12 +0000409 // NB Comparing descriptor here as it appears faster in cycle simulation than using:
410 // param == WellKnownClasses::ToClass(WellKnownClasses::dalvik_system_EmulatedStackFrame)
411 // Costs are 98 vs 173 cycles per invocation.
412 return param->DescriptorEquals("Ldalvik/system/EmulatedStackFrame;");
Orion Hodson811bd5f2016-12-07 11:35:37 +0000413 }
414
415 return false;
416}
417
418template <bool is_range>
419static inline bool DoCallPolymorphic(ArtMethod* called_method,
420 Handle<mirror::MethodType> callsite_type,
421 Handle<mirror::MethodType> target_type,
422 Thread* self,
423 ShadowFrame& shadow_frame,
424 const uint32_t (&args)[Instruction::kMaxVarArgRegs],
425 uint32_t first_arg,
Orion Hodsona1be7132017-03-21 10:04:12 +0000426 JValue* result)
Orion Hodson811bd5f2016-12-07 11:35:37 +0000427 REQUIRES_SHARED(Locks::mutator_lock_) {
428 // Compute method information.
429 const DexFile::CodeItem* code_item = called_method->GetCodeItem();
430
431 // Number of registers for the callee's call frame. Note that for non-exact
432 // invokes, we always derive this information from the callee method. We
433 // cannot guarantee during verification that the number of registers encoded
434 // in the invoke is equal to the number of ins for the callee. This is because
435 // some transformations (such as boxing a long -> Long or wideining an
436 // int -> long will change that number.
437 uint16_t num_regs;
438 size_t num_input_regs;
439 size_t first_dest_reg;
440 if (LIKELY(code_item != nullptr)) {
441 num_regs = code_item->registers_size_;
442 first_dest_reg = num_regs - code_item->ins_size_;
443 num_input_regs = code_item->ins_size_;
444 // Parameter registers go at the end of the shadow frame.
445 DCHECK_NE(first_dest_reg, (size_t)-1);
446 } else {
447 // No local regs for proxy and native methods.
448 DCHECK(called_method->IsNative() || called_method->IsProxyMethod());
449 num_regs = num_input_regs = GetInsForProxyOrNativeMethod(called_method);
450 first_dest_reg = 0;
451 }
452
453 // Allocate shadow frame on the stack.
454 ShadowFrameAllocaUniquePtr shadow_frame_unique_ptr =
455 CREATE_SHADOW_FRAME(num_regs, &shadow_frame, called_method, /* dex pc */ 0);
456 ShadowFrame* new_shadow_frame = shadow_frame_unique_ptr.get();
457
458 // Whether this polymorphic invoke was issued by a transformer method.
459 bool is_caller_transformer = false;
460 // Thread might be suspended during PerformArgumentConversions due to the
461 // allocations performed during boxing.
462 {
463 ScopedStackedShadowFramePusher pusher(
464 self, new_shadow_frame, StackedShadowFrameType::kShadowFrameUnderConstruction);
465 if (callsite_type->IsExactMatch(target_type.Get())) {
466 // This is an exact invoke, we can take the fast path of just copying all
467 // registers without performing any argument conversions.
468 CopyArgumentsFromCallerFrame<is_range>(shadow_frame,
469 new_shadow_frame,
470 args,
471 first_arg,
472 first_dest_reg,
473 num_input_regs);
474 } else {
475 // This includes the case where we're entering this invoke-polymorphic
476 // from a transformer method. In that case, the callsite_type will contain
477 // a single argument of type dalvik.system.EmulatedStackFrame. In that
478 // case, we'll have to unmarshal the EmulatedStackFrame into the
479 // new_shadow_frame and perform argument conversions on it.
480 if (IsCallerTransformer(callsite_type)) {
481 is_caller_transformer = true;
482 // The emulated stack frame is the first and only argument when we're coming
483 // through from a transformer.
484 size_t first_arg_register = (is_range) ? first_arg : args[0];
485 ObjPtr<mirror::EmulatedStackFrame> emulated_stack_frame(
486 reinterpret_cast<mirror::EmulatedStackFrame*>(
487 shadow_frame.GetVRegReference(first_arg_register)));
488 if (!emulated_stack_frame->WriteToShadowFrame(self,
489 target_type,
490 first_dest_reg,
491 new_shadow_frame)) {
492 DCHECK(self->IsExceptionPending());
493 result->SetL(0);
494 return false;
495 }
Orion Hodsona1be7132017-03-21 10:04:12 +0000496 } else {
497 if (!callsite_type->IsConvertible(target_type.Get())) {
498 ThrowWrongMethodTypeException(target_type.Get(), callsite_type.Get());
499 return false;
500 }
501 if (!ConvertAndCopyArgumentsFromCallerFrame<is_range>(self,
502 callsite_type,
503 target_type,
504 shadow_frame,
505 args,
506 first_arg,
507 first_dest_reg,
508 new_shadow_frame)) {
509 DCHECK(self->IsExceptionPending());
510 result->SetL(0);
511 return false;
512 }
Orion Hodson811bd5f2016-12-07 11:35:37 +0000513 }
514 }
515 }
516
Orion Hodson811bd5f2016-12-07 11:35:37 +0000517 PerformCall(self, code_item, shadow_frame.GetMethod(), first_dest_reg, new_shadow_frame, result);
518 if (self->IsExceptionPending()) {
519 return false;
520 }
521
522 // If the caller of this signature polymorphic method was a transformer,
523 // we need to copy the result back out to the emulated stack frame.
524 if (is_caller_transformer) {
525 StackHandleScope<2> hs(self);
526 size_t first_callee_register = is_range ? (first_arg) : args[0];
527 Handle<mirror::EmulatedStackFrame> emulated_stack_frame(
528 hs.NewHandle(reinterpret_cast<mirror::EmulatedStackFrame*>(
529 shadow_frame.GetVRegReference(first_callee_register))));
530 Handle<mirror::MethodType> emulated_stack_type(hs.NewHandle(emulated_stack_frame->GetType()));
531 JValue local_result;
532 local_result.SetJ(result->GetJ());
533
534 if (ConvertReturnValue(emulated_stack_type, target_type, &local_result)) {
535 emulated_stack_frame->SetReturnValue(self, local_result);
536 return true;
Orion Hodson811bd5f2016-12-07 11:35:37 +0000537 }
Orion Hodsona1be7132017-03-21 10:04:12 +0000538
539 DCHECK(self->IsExceptionPending());
540 return false;
Orion Hodson811bd5f2016-12-07 11:35:37 +0000541 }
Orion Hodsona1be7132017-03-21 10:04:12 +0000542
543 return ConvertReturnValue(callsite_type, target_type, result);
Orion Hodson811bd5f2016-12-07 11:35:37 +0000544}
545
546template <bool is_range>
547static inline bool DoCallTransform(ArtMethod* called_method,
548 Handle<mirror::MethodType> callsite_type,
549 Handle<mirror::MethodType> callee_type,
550 Thread* self,
551 ShadowFrame& shadow_frame,
Orion Hodsonc069a302017-01-18 09:23:12 +0000552 Handle<mirror::MethodHandle> receiver,
Orion Hodson811bd5f2016-12-07 11:35:37 +0000553 const uint32_t (&args)[Instruction::kMaxVarArgRegs],
554 uint32_t first_arg,
555 JValue* result)
556 REQUIRES_SHARED(Locks::mutator_lock_) {
557 // This can be fixed to two, because the method we're calling here
558 // (MethodHandle.transformInternal) doesn't have any locals and the signature
559 // is known :
560 //
561 // private MethodHandle.transformInternal(EmulatedStackFrame sf);
562 //
563 // This means we need only two vregs :
564 // - One for the receiver object.
565 // - One for the only method argument (an EmulatedStackFrame).
566 static constexpr size_t kNumRegsForTransform = 2;
567
568 const DexFile::CodeItem* code_item = called_method->GetCodeItem();
569 DCHECK(code_item != nullptr);
570 DCHECK_EQ(kNumRegsForTransform, code_item->registers_size_);
571 DCHECK_EQ(kNumRegsForTransform, code_item->ins_size_);
572
573 ShadowFrameAllocaUniquePtr shadow_frame_unique_ptr =
574 CREATE_SHADOW_FRAME(kNumRegsForTransform, &shadow_frame, called_method, /* dex pc */ 0);
575 ShadowFrame* new_shadow_frame = shadow_frame_unique_ptr.get();
576
577 StackHandleScope<1> hs(self);
578 MutableHandle<mirror::EmulatedStackFrame> sf(hs.NewHandle<mirror::EmulatedStackFrame>(nullptr));
579 if (IsCallerTransformer(callsite_type)) {
580 // If we're entering this transformer from another transformer, we can pass
581 // through the handle directly to the callee, instead of having to
582 // instantiate a new stack frame based on the shadow frame.
583 size_t first_callee_register = is_range ? first_arg : args[0];
584 sf.Assign(reinterpret_cast<mirror::EmulatedStackFrame*>(
585 shadow_frame.GetVRegReference(first_callee_register)));
586 } else {
587 sf.Assign(mirror::EmulatedStackFrame::CreateFromShadowFrameAndArgs<is_range>(self,
588 callsite_type,
589 callee_type,
590 shadow_frame,
591 first_arg,
592 args));
593
594 // Something went wrong while creating the emulated stack frame, we should
595 // throw the pending exception.
Andreas Gampefa4333d2017-02-14 11:10:34 -0800596 if (sf == nullptr) {
Orion Hodson811bd5f2016-12-07 11:35:37 +0000597 DCHECK(self->IsExceptionPending());
598 return false;
599 }
600 }
601
602 new_shadow_frame->SetVRegReference(0, receiver.Get());
603 new_shadow_frame->SetVRegReference(1, sf.Get());
604
605 PerformCall(self,
606 code_item,
607 shadow_frame.GetMethod(),
608 0 /* first destination register */,
609 new_shadow_frame,
610 result);
611 if (self->IsExceptionPending()) {
612 return false;
613 }
614
615 // If the called transformer method we called has returned a value, then we
616 // need to copy it back to |result|.
617 sf->GetReturnValue(self, result);
618 return ConvertReturnValue(callsite_type, callee_type, result);
619}
620
621inline static ObjPtr<mirror::Class> GetAndInitializeDeclaringClass(Thread* self, ArtField* field)
622 REQUIRES_SHARED(Locks::mutator_lock_) {
623 // Method handle invocations on static fields should ensure class is
624 // initialized. This usually happens when an instance is constructed
625 // or class members referenced, but this is not guaranteed when
626 // looking up method handles.
627 ObjPtr<mirror::Class> klass = field->GetDeclaringClass();
628 if (UNLIKELY(!klass->IsInitialized())) {
629 StackHandleScope<1> hs(self);
630 HandleWrapperObjPtr<mirror::Class> h(hs.NewHandleWrapper(&klass));
631 if (!Runtime::Current()->GetClassLinker()->EnsureInitialized(self, h, true, true)) {
632 DCHECK(self->IsExceptionPending());
633 return nullptr;
634 }
635 }
636 return klass;
637}
638
Orion Hodsona1be7132017-03-21 10:04:12 +0000639ArtMethod* RefineTargetMethod(Thread* self,
640 ShadowFrame& shadow_frame,
641 const mirror::MethodHandle::Kind& handle_kind,
642 Handle<mirror::MethodType> handle_type,
643 Handle<mirror::MethodType> callsite_type,
644 const uint32_t receiver_reg,
645 ArtMethod* target_method)
646 REQUIRES_SHARED(Locks::mutator_lock_) {
647 if (handle_kind == mirror::MethodHandle::Kind::kInvokeVirtual ||
648 handle_kind == mirror::MethodHandle::Kind::kInvokeInterface) {
649 // For virtual and interface methods ensure target_method points to
650 // the actual method to invoke.
651 ObjPtr<mirror::Object> receiver(shadow_frame.GetVRegReference(receiver_reg));
652 if (IsCallerTransformer(callsite_type)) {
653 // The current receiver is an emulated stack frame, the method's
654 // receiver needs to be fetched from there as the emulated frame
655 // will be unpacked into a new frame.
656 receiver = ObjPtr<mirror::EmulatedStackFrame>::DownCast(receiver)->GetReceiver();
657 }
658
659 ObjPtr<mirror::Class> declaring_class(target_method->GetDeclaringClass());
660 if (receiver == nullptr || receiver->GetClass() != declaring_class) {
661 // Verify that _vRegC is an object reference and of the type expected by
662 // the receiver.
663 if (!VerifyObjectIsClass(receiver, declaring_class)) {
664 DCHECK(self->IsExceptionPending());
665 return nullptr;
666 }
667 return receiver->GetClass()->FindVirtualMethodForVirtualOrInterface(
668 target_method, kRuntimePointerSize);
669 }
670 } else if (handle_kind == mirror::MethodHandle::Kind::kInvokeDirect) {
671 // String constructors are a special case, they are replaced with
672 // StringFactory methods.
673 if (target_method->IsConstructor() && target_method->GetDeclaringClass()->IsStringClass()) {
674 DCHECK(handle_type->GetRType()->IsStringClass());
675 return WellKnownClasses::StringInitToStringFactory(target_method);
676 }
677 } else if (handle_kind == mirror::MethodHandle::Kind::kInvokeSuper) {
678 ObjPtr<mirror::Class> declaring_class = target_method->GetDeclaringClass();
679
680 // Note that we're not dynamically dispatching on the type of the receiver
681 // here. We use the static type of the "receiver" object that we've
682 // recorded in the method handle's type, which will be the same as the
683 // special caller that was specified at the point of lookup.
684 ObjPtr<mirror::Class> referrer_class = handle_type->GetPTypes()->Get(0);
685 if (!declaring_class->IsInterface()) {
686 ObjPtr<mirror::Class> super_class = referrer_class->GetSuperClass();
687 uint16_t vtable_index = target_method->GetMethodIndex();
688 DCHECK(super_class != nullptr);
689 DCHECK(super_class->HasVTable());
690 // Note that super_class is a super of referrer_class and target_method
691 // will always be declared by super_class (or one of its super classes).
692 DCHECK_LT(vtable_index, super_class->GetVTableLength());
693 return super_class->GetVTableEntry(vtable_index, kRuntimePointerSize);
694 } else {
695 return referrer_class->FindVirtualMethodForInterfaceSuper(target_method, kRuntimePointerSize);
696 }
697 }
698 return target_method;
699}
700
Orion Hodson811bd5f2016-12-07 11:35:37 +0000701template <bool is_range>
Orion Hodsona1be7132017-03-21 10:04:12 +0000702bool DoInvokePolymorphicMethod(Thread* self,
703 ShadowFrame& shadow_frame,
704 Handle<mirror::MethodHandle> method_handle,
705 Handle<mirror::MethodType> callsite_type,
706 const uint32_t (&args)[Instruction::kMaxVarArgRegs],
707 uint32_t first_arg,
708 JValue* result)
Orion Hodson811bd5f2016-12-07 11:35:37 +0000709 REQUIRES_SHARED(Locks::mutator_lock_) {
710 StackHandleScope<1> hs(self);
711 Handle<mirror::MethodType> handle_type(hs.NewHandle(method_handle->GetMethodType()));
712 const mirror::MethodHandle::Kind handle_kind = method_handle->GetHandleKind();
Orion Hodsona1be7132017-03-21 10:04:12 +0000713 DCHECK(IsInvoke(handle_kind));
Orion Hodson811bd5f2016-12-07 11:35:37 +0000714
Orion Hodsona1be7132017-03-21 10:04:12 +0000715 // Get the method we're actually invoking along with the kind of
716 // invoke that is desired. We don't need to perform access checks at this
717 // point because they would have been performed on our behalf at the point
718 // of creation of the method handle.
719 ArtMethod* target_method = method_handle->GetTargetMethod();
720 uint32_t receiver_reg = is_range ? first_arg: args[0];
721 ArtMethod* called_method = RefineTargetMethod(self,
722 shadow_frame,
723 handle_kind,
724 handle_type,
725 callsite_type,
726 receiver_reg,
727 target_method);
728 if (called_method == nullptr) {
729 DCHECK(self->IsExceptionPending());
730 return false;
731 }
Orion Hodson811bd5f2016-12-07 11:35:37 +0000732
Orion Hodsona1be7132017-03-21 10:04:12 +0000733 if (IsInvokeTransform(handle_kind)) {
734 // There are two cases here - method handles representing regular
735 // transforms and those representing call site transforms. Method
736 // handles for call site transforms adapt their MethodType to match
737 // the call site. For these, the |callee_type| is the same as the
738 // |callsite_type|. The VarargsCollector is such a tranform, its
739 // method type depends on the call site, ie. x(a) or x(a, b), or
740 // x(a, b, c). The VarargsCollector invokes a variable arity method
741 // with the arity arguments in an array.
742 Handle<mirror::MethodType> callee_type =
743 (handle_kind == mirror::MethodHandle::Kind::kInvokeCallSiteTransform) ? callsite_type
744 : handle_type;
745 return DoCallTransform<is_range>(called_method,
746 callsite_type,
747 callee_type,
748 self,
749 shadow_frame,
750 method_handle /* receiver */,
751 args,
752 first_arg,
753 result);
754 } else {
755 return DoCallPolymorphic<is_range>(called_method,
Orion Hodson811bd5f2016-12-07 11:35:37 +0000756 callsite_type,
Orion Hodsona1be7132017-03-21 10:04:12 +0000757 handle_type,
Orion Hodson811bd5f2016-12-07 11:35:37 +0000758 self,
759 shadow_frame,
Orion Hodson811bd5f2016-12-07 11:35:37 +0000760 args,
761 first_arg,
762 result);
Orion Hodson811bd5f2016-12-07 11:35:37 +0000763 }
764}
765
766// Helper for getters in invoke-polymorphic.
767inline static void DoFieldGetForInvokePolymorphic(Thread* self,
768 const ShadowFrame& shadow_frame,
769 ObjPtr<mirror::Object>& obj,
770 ArtField* field,
771 Primitive::Type field_type,
772 JValue* result)
773 REQUIRES_SHARED(Locks::mutator_lock_) {
774 switch (field_type) {
775 case Primitive::kPrimBoolean:
776 DoFieldGetCommon<Primitive::kPrimBoolean>(self, shadow_frame, obj, field, result);
777 break;
778 case Primitive::kPrimByte:
779 DoFieldGetCommon<Primitive::kPrimByte>(self, shadow_frame, obj, field, result);
780 break;
781 case Primitive::kPrimChar:
782 DoFieldGetCommon<Primitive::kPrimChar>(self, shadow_frame, obj, field, result);
783 break;
784 case Primitive::kPrimShort:
785 DoFieldGetCommon<Primitive::kPrimShort>(self, shadow_frame, obj, field, result);
786 break;
787 case Primitive::kPrimInt:
788 DoFieldGetCommon<Primitive::kPrimInt>(self, shadow_frame, obj, field, result);
789 break;
790 case Primitive::kPrimLong:
791 DoFieldGetCommon<Primitive::kPrimLong>(self, shadow_frame, obj, field, result);
792 break;
793 case Primitive::kPrimFloat:
794 DoFieldGetCommon<Primitive::kPrimInt>(self, shadow_frame, obj, field, result);
795 break;
796 case Primitive::kPrimDouble:
797 DoFieldGetCommon<Primitive::kPrimLong>(self, shadow_frame, obj, field, result);
798 break;
799 case Primitive::kPrimNot:
800 DoFieldGetCommon<Primitive::kPrimNot>(self, shadow_frame, obj, field, result);
801 break;
802 case Primitive::kPrimVoid:
803 LOG(FATAL) << "Unreachable: " << field_type;
804 UNREACHABLE();
805 }
806}
807
808// Helper for setters in invoke-polymorphic.
Orion Hodson811bd5f2016-12-07 11:35:37 +0000809inline bool DoFieldPutForInvokePolymorphic(Thread* self,
810 ShadowFrame& shadow_frame,
811 ObjPtr<mirror::Object>& obj,
812 ArtField* field,
813 Primitive::Type field_type,
814 const JValue& value)
815 REQUIRES_SHARED(Locks::mutator_lock_) {
Orion Hodsonc069a302017-01-18 09:23:12 +0000816 DCHECK(!Runtime::Current()->IsActiveTransaction());
817 static const bool kTransaction = false; // Not in a transaction.
818 static const bool kAssignabilityCheck = false; // No access check.
Orion Hodson811bd5f2016-12-07 11:35:37 +0000819 switch (field_type) {
820 case Primitive::kPrimBoolean:
Orion Hodsonc069a302017-01-18 09:23:12 +0000821 return
822 DoFieldPutCommon<Primitive::kPrimBoolean, kAssignabilityCheck, kTransaction>(
823 self, shadow_frame, obj, field, value);
Orion Hodson811bd5f2016-12-07 11:35:37 +0000824 case Primitive::kPrimByte:
Orion Hodsonc069a302017-01-18 09:23:12 +0000825 return DoFieldPutCommon<Primitive::kPrimByte, kAssignabilityCheck, kTransaction>(
Orion Hodson811bd5f2016-12-07 11:35:37 +0000826 self, shadow_frame, obj, field, value);
827 case Primitive::kPrimChar:
Orion Hodsonc069a302017-01-18 09:23:12 +0000828 return DoFieldPutCommon<Primitive::kPrimChar, kAssignabilityCheck, kTransaction>(
Orion Hodson811bd5f2016-12-07 11:35:37 +0000829 self, shadow_frame, obj, field, value);
830 case Primitive::kPrimShort:
Orion Hodsonc069a302017-01-18 09:23:12 +0000831 return DoFieldPutCommon<Primitive::kPrimShort, kAssignabilityCheck, kTransaction>(
Orion Hodson811bd5f2016-12-07 11:35:37 +0000832 self, shadow_frame, obj, field, value);
833 case Primitive::kPrimInt:
834 case Primitive::kPrimFloat:
Orion Hodsonc069a302017-01-18 09:23:12 +0000835 return DoFieldPutCommon<Primitive::kPrimInt, kAssignabilityCheck, kTransaction>(
Orion Hodson811bd5f2016-12-07 11:35:37 +0000836 self, shadow_frame, obj, field, value);
837 case Primitive::kPrimLong:
838 case Primitive::kPrimDouble:
Orion Hodsonc069a302017-01-18 09:23:12 +0000839 return DoFieldPutCommon<Primitive::kPrimLong, kAssignabilityCheck, kTransaction>(
Orion Hodson811bd5f2016-12-07 11:35:37 +0000840 self, shadow_frame, obj, field, value);
841 case Primitive::kPrimNot:
Orion Hodsonc069a302017-01-18 09:23:12 +0000842 return DoFieldPutCommon<Primitive::kPrimNot, kAssignabilityCheck, kTransaction>(
Orion Hodson811bd5f2016-12-07 11:35:37 +0000843 self, shadow_frame, obj, field, value);
844 case Primitive::kPrimVoid:
845 LOG(FATAL) << "Unreachable: " << field_type;
846 UNREACHABLE();
847 }
848}
849
850static JValue GetValueFromShadowFrame(const ShadowFrame& shadow_frame,
851 Primitive::Type field_type,
852 uint32_t vreg)
853 REQUIRES_SHARED(Locks::mutator_lock_) {
854 JValue field_value;
855 switch (field_type) {
856 case Primitive::kPrimBoolean:
857 field_value.SetZ(static_cast<uint8_t>(shadow_frame.GetVReg(vreg)));
858 break;
859 case Primitive::kPrimByte:
860 field_value.SetB(static_cast<int8_t>(shadow_frame.GetVReg(vreg)));
861 break;
862 case Primitive::kPrimChar:
863 field_value.SetC(static_cast<uint16_t>(shadow_frame.GetVReg(vreg)));
864 break;
865 case Primitive::kPrimShort:
866 field_value.SetS(static_cast<int16_t>(shadow_frame.GetVReg(vreg)));
867 break;
868 case Primitive::kPrimInt:
869 case Primitive::kPrimFloat:
870 field_value.SetI(shadow_frame.GetVReg(vreg));
871 break;
872 case Primitive::kPrimLong:
873 case Primitive::kPrimDouble:
874 field_value.SetJ(shadow_frame.GetVRegLong(vreg));
875 break;
876 case Primitive::kPrimNot:
877 field_value.SetL(shadow_frame.GetVRegReference(vreg));
878 break;
879 case Primitive::kPrimVoid:
880 LOG(FATAL) << "Unreachable: " << field_type;
881 UNREACHABLE();
882 }
883 return field_value;
884}
885
Orion Hodsonc069a302017-01-18 09:23:12 +0000886template <bool is_range, bool do_conversions>
Orion Hodson811bd5f2016-12-07 11:35:37 +0000887bool DoInvokePolymorphicFieldAccess(Thread* self,
888 ShadowFrame& shadow_frame,
Orion Hodsonc069a302017-01-18 09:23:12 +0000889 Handle<mirror::MethodHandle> method_handle,
Orion Hodson811bd5f2016-12-07 11:35:37 +0000890 Handle<mirror::MethodType> callsite_type,
891 const uint32_t (&args)[Instruction::kMaxVarArgRegs],
892 uint32_t first_arg,
893 JValue* result)
894 REQUIRES_SHARED(Locks::mutator_lock_) {
895 StackHandleScope<1> hs(self);
896 Handle<mirror::MethodType> handle_type(hs.NewHandle(method_handle->GetMethodType()));
897 const mirror::MethodHandle::Kind handle_kind = method_handle->GetHandleKind();
898 ArtField* field = method_handle->GetTargetField();
899 Primitive::Type field_type = field->GetTypeAsPrimitiveType();
900
901 switch (handle_kind) {
902 case mirror::MethodHandle::kInstanceGet: {
903 size_t obj_reg = is_range ? first_arg : args[0];
904 ObjPtr<mirror::Object> obj = shadow_frame.GetVRegReference(obj_reg);
905 DoFieldGetForInvokePolymorphic(self, shadow_frame, obj, field, field_type, result);
906 if (do_conversions && !ConvertReturnValue(callsite_type, handle_type, result)) {
907 DCHECK(self->IsExceptionPending());
908 return false;
909 }
910 return true;
911 }
912 case mirror::MethodHandle::kStaticGet: {
913 ObjPtr<mirror::Object> obj = GetAndInitializeDeclaringClass(self, field);
914 if (obj == nullptr) {
915 DCHECK(self->IsExceptionPending());
916 return false;
917 }
918 DoFieldGetForInvokePolymorphic(self, shadow_frame, obj, field, field_type, result);
919 if (do_conversions && !ConvertReturnValue(callsite_type, handle_type, result)) {
920 DCHECK(self->IsExceptionPending());
921 return false;
922 }
923 return true;
924 }
925 case mirror::MethodHandle::kInstancePut: {
926 size_t obj_reg = is_range ? first_arg : args[0];
927 size_t value_reg = is_range ? (first_arg + 1) : args[1];
Mathieu Chartier71b17082017-04-17 20:12:29 -0700928 const size_t kPTypeIndex = 1;
929 // Use ptypes instead of field type since we may be unboxing a reference for a primitive
930 // field. The field type is incorrect for this case.
931 JValue value = GetValueFromShadowFrame(
932 shadow_frame,
933 callsite_type->GetPTypes()->Get(kPTypeIndex)->GetPrimitiveType(),
934 value_reg);
935 if (do_conversions && !ConvertArgumentValue(callsite_type,
936 handle_type,
937 kPTypeIndex,
938 &value)) {
Orion Hodson811bd5f2016-12-07 11:35:37 +0000939 DCHECK(self->IsExceptionPending());
940 return false;
941 }
942 ObjPtr<mirror::Object> obj = shadow_frame.GetVRegReference(obj_reg);
Orion Hodsonc069a302017-01-18 09:23:12 +0000943 return DoFieldPutForInvokePolymorphic(self, shadow_frame, obj, field, field_type, value);
Orion Hodson811bd5f2016-12-07 11:35:37 +0000944 }
945 case mirror::MethodHandle::kStaticPut: {
946 ObjPtr<mirror::Object> obj = GetAndInitializeDeclaringClass(self, field);
947 if (obj == nullptr) {
948 DCHECK(self->IsExceptionPending());
949 return false;
950 }
951 size_t value_reg = is_range ? first_arg : args[0];
Mathieu Chartier71b17082017-04-17 20:12:29 -0700952 const size_t kPTypeIndex = 0;
953 // Use ptypes instead of field type since we may be unboxing a reference for a primitive
954 // field. The field type is incorrect for this case.
955 JValue value = GetValueFromShadowFrame(
956 shadow_frame,
957 callsite_type->GetPTypes()->Get(kPTypeIndex)->GetPrimitiveType(),
958 value_reg);
959 if (do_conversions && !ConvertArgumentValue(callsite_type,
960 handle_type,
961 kPTypeIndex,
962 &value)) {
Orion Hodson811bd5f2016-12-07 11:35:37 +0000963 DCHECK(self->IsExceptionPending());
964 return false;
965 }
Orion Hodsonc069a302017-01-18 09:23:12 +0000966 return DoFieldPutForInvokePolymorphic(self, shadow_frame, obj, field, field_type, value);
Orion Hodson811bd5f2016-12-07 11:35:37 +0000967 }
968 default:
969 LOG(FATAL) << "Unreachable: " << handle_kind;
970 UNREACHABLE();
971 }
972}
973
Orion Hodsonc069a302017-01-18 09:23:12 +0000974template <bool is_range>
Orion Hodson811bd5f2016-12-07 11:35:37 +0000975static inline bool DoInvokePolymorphicNonExact(Thread* self,
976 ShadowFrame& shadow_frame,
Orion Hodsonc069a302017-01-18 09:23:12 +0000977 Handle<mirror::MethodHandle> method_handle,
Orion Hodson811bd5f2016-12-07 11:35:37 +0000978 Handle<mirror::MethodType> callsite_type,
979 const uint32_t (&args)[Instruction::kMaxVarArgRegs],
980 uint32_t first_arg,
981 JValue* result)
982 REQUIRES_SHARED(Locks::mutator_lock_) {
983 const mirror::MethodHandle::Kind handle_kind = method_handle->GetHandleKind();
984 ObjPtr<mirror::MethodType> handle_type(method_handle->GetMethodType());
985 CHECK(handle_type != nullptr);
986
Orion Hodsona1be7132017-03-21 10:04:12 +0000987 if (IsFieldAccess(handle_kind)) {
988 DCHECK(!callsite_type->IsExactMatch(handle_type.Ptr()));
989 if (!callsite_type->IsConvertible(handle_type.Ptr())) {
Orion Hodson811bd5f2016-12-07 11:35:37 +0000990 ThrowWrongMethodTypeException(handle_type.Ptr(), callsite_type.Get());
991 return false;
992 }
Orion Hodsona1be7132017-03-21 10:04:12 +0000993 const bool do_convert = true;
994 return DoInvokePolymorphicFieldAccess<is_range, do_convert>(
995 self,
996 shadow_frame,
997 method_handle,
998 callsite_type,
999 args,
1000 first_arg,
1001 result);
Orion Hodson811bd5f2016-12-07 11:35:37 +00001002 }
1003
Orion Hodsona1be7132017-03-21 10:04:12 +00001004 return DoInvokePolymorphicMethod<is_range>(self,
1005 shadow_frame,
1006 method_handle,
1007 callsite_type,
1008 args,
1009 first_arg,
1010 result);
Orion Hodson811bd5f2016-12-07 11:35:37 +00001011}
1012
Orion Hodsonc069a302017-01-18 09:23:12 +00001013template <bool is_range>
Orion Hodson811bd5f2016-12-07 11:35:37 +00001014bool DoInvokePolymorphicExact(Thread* self,
1015 ShadowFrame& shadow_frame,
Orion Hodsonc069a302017-01-18 09:23:12 +00001016 Handle<mirror::MethodHandle> method_handle,
Orion Hodson811bd5f2016-12-07 11:35:37 +00001017 Handle<mirror::MethodType> callsite_type,
1018 const uint32_t (&args)[Instruction::kMaxVarArgRegs],
1019 uint32_t first_arg,
1020 JValue* result)
1021 REQUIRES_SHARED(Locks::mutator_lock_) {
Orion Hodsona1be7132017-03-21 10:04:12 +00001022 StackHandleScope<1> hs(self);
Orion Hodson811bd5f2016-12-07 11:35:37 +00001023 const mirror::MethodHandle::Kind handle_kind = method_handle->GetHandleKind();
Orion Hodsona1be7132017-03-21 10:04:12 +00001024 Handle<mirror::MethodType> method_handle_type(hs.NewHandle(method_handle->GetMethodType()));
Orion Hodson811bd5f2016-12-07 11:35:37 +00001025 if (IsFieldAccess(handle_kind)) {
1026 const bool do_convert = false;
Orion Hodsonc069a302017-01-18 09:23:12 +00001027 return DoInvokePolymorphicFieldAccess<is_range, do_convert>(
Orion Hodson811bd5f2016-12-07 11:35:37 +00001028 self,
1029 shadow_frame,
1030 method_handle,
1031 callsite_type,
1032 args,
1033 first_arg,
1034 result);
1035 }
1036
Orion Hodsona1be7132017-03-21 10:04:12 +00001037 // Slow-path check.
1038 if (IsInvokeTransform(handle_kind) || IsCallerTransformer(callsite_type)) {
1039 return DoInvokePolymorphicMethod<is_range>(self,
1040 shadow_frame,
1041 method_handle,
1042 callsite_type,
1043 args,
1044 first_arg,
1045 result);
1046 }
1047
1048 // On the fast-path. This is equivalent to DoCallPolymoprhic without the conversion paths.
1049 ArtMethod* target_method = method_handle->GetTargetMethod();
1050 uint32_t receiver_reg = is_range ? first_arg : args[0];
1051 ArtMethod* called_method = RefineTargetMethod(self,
Orion Hodson811bd5f2016-12-07 11:35:37 +00001052 shadow_frame,
Orion Hodsona1be7132017-03-21 10:04:12 +00001053 handle_kind,
1054 method_handle_type,
Orion Hodson811bd5f2016-12-07 11:35:37 +00001055 callsite_type,
Orion Hodsona1be7132017-03-21 10:04:12 +00001056 receiver_reg,
1057 target_method);
1058 if (called_method == nullptr) {
1059 DCHECK(self->IsExceptionPending());
1060 return false;
1061 }
1062
1063 // Compute method information.
1064 const DexFile::CodeItem* code_item = called_method->GetCodeItem();
1065 uint16_t num_regs;
1066 size_t num_input_regs;
1067 size_t first_dest_reg;
1068 if (LIKELY(code_item != nullptr)) {
1069 num_regs = code_item->registers_size_;
1070 first_dest_reg = num_regs - code_item->ins_size_;
1071 num_input_regs = code_item->ins_size_;
1072 // Parameter registers go at the end of the shadow frame.
1073 DCHECK_NE(first_dest_reg, (size_t)-1);
1074 } else {
1075 // No local regs for proxy and native methods.
1076 DCHECK(called_method->IsNative() || called_method->IsProxyMethod());
1077 num_regs = num_input_regs = GetInsForProxyOrNativeMethod(called_method);
1078 first_dest_reg = 0;
1079 }
1080
1081 // Allocate shadow frame on the stack.
1082 const char* old_cause = self->StartAssertNoThreadSuspension("DoCallCommon");
1083 ShadowFrameAllocaUniquePtr shadow_frame_unique_ptr =
1084 CREATE_SHADOW_FRAME(num_regs, &shadow_frame, called_method, /* dex pc */ 0);
1085 ShadowFrame* new_shadow_frame = shadow_frame_unique_ptr.get();
1086 CopyArgumentsFromCallerFrame<is_range>(shadow_frame,
1087 new_shadow_frame,
1088 args,
1089 first_arg,
1090 first_dest_reg,
1091 num_input_regs);
1092 self->EndAssertNoThreadSuspension(old_cause);
1093
1094 PerformCall(self, code_item, shadow_frame.GetMethod(), first_dest_reg, new_shadow_frame, result);
1095 if (self->IsExceptionPending()) {
1096 return false;
1097 }
1098 return true;
Orion Hodson811bd5f2016-12-07 11:35:37 +00001099}
1100
1101} // namespace
1102
Orion Hodsonc069a302017-01-18 09:23:12 +00001103template <bool is_range>
Orion Hodson811bd5f2016-12-07 11:35:37 +00001104bool DoInvokePolymorphic(Thread* self,
1105 ArtMethod* invoke_method,
1106 ShadowFrame& shadow_frame,
Orion Hodsonc069a302017-01-18 09:23:12 +00001107 Handle<mirror::MethodHandle> method_handle,
Orion Hodson811bd5f2016-12-07 11:35:37 +00001108 Handle<mirror::MethodType> callsite_type,
1109 const uint32_t (&args)[Instruction::kMaxVarArgRegs],
1110 uint32_t first_arg,
1111 JValue* result)
1112 REQUIRES_SHARED(Locks::mutator_lock_) {
Orion Hodsona1be7132017-03-21 10:04:12 +00001113 ObjPtr<mirror::MethodType> method_handle_type = method_handle->GetMethodType();
Orion Hodson811bd5f2016-12-07 11:35:37 +00001114 if (IsMethodHandleInvokeExact(invoke_method)) {
Orion Hodsona1be7132017-03-21 10:04:12 +00001115 // We need to check the nominal type of the handle in addition to the
1116 // real type. The "nominal" type is present when MethodHandle.asType is
1117 // called any handle, and results in the declared type of the handle
1118 // changing.
1119 ObjPtr<mirror::MethodType> nominal_type(method_handle->GetNominalType());
1120 if (UNLIKELY(nominal_type != nullptr)) {
1121 if (UNLIKELY(!callsite_type->IsExactMatch(nominal_type.Ptr()))) {
1122 ThrowWrongMethodTypeException(nominal_type.Ptr(), callsite_type.Get());
1123 return false;
1124 }
1125
1126 if (LIKELY(!nominal_type->IsExactMatch(method_handle_type.Ptr()))) {
1127 // Different nominal type means we have to treat as non-exact.
1128 return DoInvokePolymorphicNonExact<is_range>(self,
1129 shadow_frame,
1130 method_handle,
1131 callsite_type,
1132 args,
1133 first_arg,
1134 result);
1135 }
1136 }
1137
1138 if (!callsite_type->IsExactMatch(method_handle_type.Ptr())) {
1139 ThrowWrongMethodTypeException(method_handle_type.Ptr(), callsite_type.Get());
1140 return false;
1141 }
Orion Hodsonc069a302017-01-18 09:23:12 +00001142 return DoInvokePolymorphicExact<is_range>(self,
1143 shadow_frame,
1144 method_handle,
1145 callsite_type,
1146 args,
1147 first_arg,
1148 result);
Orion Hodson811bd5f2016-12-07 11:35:37 +00001149 } else {
Orion Hodsona1be7132017-03-21 10:04:12 +00001150 if (UNLIKELY(callsite_type->IsExactMatch(method_handle_type.Ptr()))) {
1151 // A non-exact invoke that can be invoked exactly.
1152 return DoInvokePolymorphicExact<is_range>(self,
1153 shadow_frame,
1154 method_handle,
1155 callsite_type,
1156 args,
1157 first_arg,
1158 result);
1159 }
Orion Hodsonc069a302017-01-18 09:23:12 +00001160 return DoInvokePolymorphicNonExact<is_range>(self,
1161 shadow_frame,
1162 method_handle,
1163 callsite_type,
1164 args,
1165 first_arg,
1166 result);
Orion Hodson811bd5f2016-12-07 11:35:37 +00001167 }
1168}
1169
Orion Hodsonc069a302017-01-18 09:23:12 +00001170#define EXPLICIT_DO_INVOKE_POLYMORPHIC_TEMPLATE_DECL(_is_range) \
1171 template REQUIRES_SHARED(Locks::mutator_lock_) \
1172 bool DoInvokePolymorphic<_is_range>( \
1173 Thread* self, \
1174 ArtMethod* invoke_method, \
1175 ShadowFrame& shadow_frame, \
1176 Handle<mirror::MethodHandle> method_handle, \
1177 Handle<mirror::MethodType> callsite_type, \
1178 const uint32_t (&args)[Instruction::kMaxVarArgRegs], \
1179 uint32_t first_arg, \
1180 JValue* result)
Orion Hodson811bd5f2016-12-07 11:35:37 +00001181
Orion Hodsonc069a302017-01-18 09:23:12 +00001182EXPLICIT_DO_INVOKE_POLYMORPHIC_TEMPLATE_DECL(true);
1183EXPLICIT_DO_INVOKE_POLYMORPHIC_TEMPLATE_DECL(false);
Orion Hodson811bd5f2016-12-07 11:35:37 +00001184#undef EXPLICIT_DO_INVOKE_POLYMORPHIC_TEMPLATE_DECL
1185
Orion Hodsonba28f9f2016-10-26 10:56:25 +01001186} // namespace art