xref: /aosp_15_r20/art/compiler/dex/inline_method_analyser.cc (revision 795d594fd825385562da6b089ea9b2033f3abf5a)
1 /*
2  * Copyright (C) 2014 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 
17 #include "inline_method_analyser.h"
18 
19 #include "art_field-inl.h"
20 #include "art_method-inl.h"
21 #include "base/pointer_size.h"
22 #include "class_linker-inl.h"
23 #include "dex/code_item_accessors-inl.h"
24 #include "dex/dex_file-inl.h"
25 #include "dex/dex_instruction-inl.h"
26 #include "dex/dex_instruction.h"
27 #include "dex/dex_instruction_utils.h"
28 #include "mirror/class-inl.h"
29 #include "mirror/dex_cache-inl.h"
30 
31 /*
32  * NOTE: This code is part of the quick compiler. It lives in the runtime
33  * only to allow the debugger to check whether a method has been inlined.
34  */
35 
36 namespace art HIDDEN {
37 
38 namespace {  // anonymous namespace
39 
40 // Helper class for matching a pattern.
41 class Matcher {
42  public:
43   // Match function type.
44   using MatchFn = bool(Matcher*);
45 
46   template <size_t size>
47   static bool Match(const CodeItemDataAccessor* code_item, MatchFn* const (&pattern)[size]);
48 
49   // Match and advance.
50 
51   static bool Mark(Matcher* matcher);
52 
53   template <bool (Matcher::*Fn)()>
54   static bool Required(Matcher* matcher);
55 
56   template <bool (Matcher::*Fn)()>
57   static bool Repeated(Matcher* matcher);  // On match, returns to the mark.
58 
59   // Match an individual instruction.
60 
61   template <Instruction::Code opcode> bool Opcode();
62   bool Const0();
63   bool IPutOnThis();
64 
65   // Match Fn1 or Fn2. This should be used in combination of e.g. Required.
66   template <bool (Matcher::*Fn1)(), bool (Matcher::*Fn2)()>
67   bool Or();
68 
69  private:
Matcher(const CodeItemDataAccessor * code_item)70   explicit Matcher(const CodeItemDataAccessor* code_item)
71       : code_item_(code_item),
72         instruction_(code_item->begin()) {}
73 
74   static bool DoMatch(const CodeItemDataAccessor* code_item, MatchFn* const* pattern, size_t size);
75 
76   const CodeItemDataAccessor* const code_item_;
77   DexInstructionIterator instruction_;
78   size_t pos_ = 0u;
79   size_t mark_ = 0u;
80 };
81 
82 template <size_t size>
Match(const CodeItemDataAccessor * code_item,MatchFn * const (& pattern)[size])83 bool Matcher::Match(const CodeItemDataAccessor* code_item, MatchFn* const (&pattern)[size]) {
84   return DoMatch(code_item, pattern, size);
85 }
86 
Mark(Matcher * matcher)87 bool Matcher::Mark(Matcher* matcher) {
88   matcher->pos_ += 1u;  // Advance to the next match function before marking.
89   matcher->mark_ = matcher->pos_;
90   return true;
91 }
92 
93 template <bool (Matcher::*Fn)()>
Required(Matcher * matcher)94 bool Matcher::Required(Matcher* matcher) {
95   if (!(matcher->*Fn)()) {
96     return false;
97   }
98   matcher->pos_ += 1u;
99   ++matcher->instruction_;
100   return true;
101 }
102 
103 template <bool (Matcher::*Fn)()>
Repeated(Matcher * matcher)104 bool Matcher::Repeated(Matcher* matcher) {
105   if (!(matcher->*Fn)()) {
106     // Didn't match optional instruction, try the next match function.
107     matcher->pos_ += 1u;
108     return true;
109   }
110   matcher->pos_ = matcher->mark_;
111   ++matcher->instruction_;
112   return true;
113 }
114 
115 template <Instruction::Code opcode>
Opcode()116 bool Matcher::Opcode() {
117   return instruction_->Opcode() == opcode;
118 }
119 
120 // Match const 0.
Const0()121 bool Matcher::Const0() {
122   return IsInstructionDirectConst(instruction_->Opcode()) &&
123       (instruction_->Opcode() == Instruction::CONST_WIDE ? instruction_->VRegB_51l() == 0
124                                                          : instruction_->VRegB() == 0);
125 }
126 
IPutOnThis()127 bool Matcher::IPutOnThis() {
128   DCHECK_NE(code_item_->InsSize(), 0u);
129   return IsInstructionIPut(instruction_->Opcode()) &&
130       instruction_->VRegB_22c() == code_item_->RegistersSize() - code_item_->InsSize();
131 }
132 
133 template <bool (Matcher::*Fn1)(), bool (Matcher::*Fn2)()>
Or()134 bool Matcher::Or() {
135   return (this->*Fn1)() || (this->*Fn2)();
136 }
137 
DoMatch(const CodeItemDataAccessor * code_item,MatchFn * const * pattern,size_t size)138 bool Matcher::DoMatch(const CodeItemDataAccessor* code_item, MatchFn* const* pattern, size_t size) {
139   Matcher matcher(code_item);
140   while (matcher.pos_ != size) {
141     if (!pattern[matcher.pos_](&matcher)) {
142       return false;
143     }
144   }
145   return true;
146 }
147 
148 // Used for a single invoke in a constructor. In that situation, the method verifier makes
149 // sure we invoke a constructor either in the same class or superclass with at least "this".
GetTargetConstructor(ArtMethod * method,const Instruction * invoke_direct)150 ArtMethod* GetTargetConstructor(ArtMethod* method, const Instruction* invoke_direct)
151     REQUIRES_SHARED(Locks::mutator_lock_) {
152   DCHECK(invoke_direct->Opcode() == Instruction::INVOKE_DIRECT ||
153          invoke_direct->Opcode() == Instruction::INVOKE_DIRECT_RANGE);
154   if (kIsDebugBuild) {
155     uint16_t vregc = invoke_direct->Opcode() == Instruction::INVOKE_DIRECT
156                          ? invoke_direct->VRegC_35c()
157                          : invoke_direct->VRegC_3rc();
158     CodeItemDataAccessor accessor(method->DexInstructionData());
159     DCHECK_EQ(vregc, accessor.RegistersSize() - accessor.InsSize());
160   }
161   uint32_t method_index = invoke_direct->Opcode() == Instruction::INVOKE_DIRECT
162                               ? invoke_direct->VRegB_35c()
163                               : invoke_direct->VRegB_3rc();
164   ArtMethod* target_method = Runtime::Current()->GetClassLinker()->LookupResolvedMethod(
165       method_index, method->GetDexCache(), method->GetClassLoader());
166   if (kIsDebugBuild && target_method != nullptr) {
167     CHECK(!target_method->IsStatic());
168     CHECK(target_method->IsConstructor());
169     CHECK(method->GetDeclaringClass()->IsSubClass(target_method->GetDeclaringClass()));
170   }
171   return target_method;
172 }
173 
174 // Return the forwarded arguments and check that all remaining arguments are zero.
175 // If the check fails, return static_cast<size_t>(-1).
CountForwardedConstructorArguments(const CodeItemDataAccessor * code_item,const Instruction * invoke_direct,uint16_t zero_vreg_mask)176 size_t CountForwardedConstructorArguments(const CodeItemDataAccessor* code_item,
177                                           const Instruction* invoke_direct,
178                                           uint16_t zero_vreg_mask) {
179   DCHECK(invoke_direct->Opcode() == Instruction::INVOKE_DIRECT ||
180          invoke_direct->Opcode() == Instruction::INVOKE_DIRECT_RANGE);
181   size_t number_of_args = invoke_direct->Opcode() == Instruction::INVOKE_DIRECT
182                               ? invoke_direct->VRegA_35c()
183                               : invoke_direct->VRegA_3rc();
184   DCHECK_NE(number_of_args, 0u);
185 
186   if (invoke_direct->Opcode() == Instruction::INVOKE_DIRECT) {
187     uint32_t args[Instruction::kMaxVarArgRegs];
188     invoke_direct->GetVarArgs(args);
189     uint16_t this_vreg = args[0];
190     DCHECK_EQ(this_vreg,
191               code_item->RegistersSize() - code_item->InsSize());  // Checked by verifier.
192     size_t forwarded = 1u;
193     while (forwarded < number_of_args &&
194         args[forwarded] == this_vreg + forwarded &&
195         (zero_vreg_mask & (1u << args[forwarded])) == 0) {
196       ++forwarded;
197     }
198     for (size_t i = forwarded; i != number_of_args; ++i) {
199       if ((zero_vreg_mask & (1u << args[i])) == 0) {
200         return static_cast<size_t>(-1);
201       }
202     }
203     return forwarded;
204   } else {
205     uint16_t this_vreg = invoke_direct->VRegC_3rc();
206     DCHECK_EQ(this_vreg,
207               code_item->RegistersSize() - code_item->InsSize());  // Checked by verifier.
208     size_t forwarded = 1u;
209     while (forwarded < number_of_args &&
210            (zero_vreg_mask & (1u << (this_vreg + forwarded))) == 0) {
211       ++forwarded;
212     }
213     for (size_t i = forwarded; i != number_of_args; ++i) {
214       if ((zero_vreg_mask & (1u << (this_vreg + i))) == 0) {
215         return static_cast<size_t>(-1);
216       }
217     }
218     return forwarded;
219   }
220 }
221 
GetZeroVRegMask(const Instruction * const0)222 uint16_t GetZeroVRegMask(const Instruction* const0) {
223   DCHECK(IsInstructionDirectConst(const0->Opcode()));
224   DCHECK((const0->Opcode() == Instruction::CONST_WIDE) ? const0->VRegB_51l() == 0u
225                                                        : const0->VRegB() == 0);
226   uint16_t base_mask = IsInstructionConstWide(const0->Opcode()) ? 3u : 1u;
227   return base_mask << const0->VRegA();
228 }
229 
230 // We limit the number of IPUTs storing parameters. There can be any number
231 // of IPUTs that store the value 0 as they are useless in a constructor as
232 // the object always starts zero-initialized. We also eliminate all but the
233 // last store to any field as they are not observable; not even if the field
234 // is volatile as no reference to the object can escape from a constructor
235 // with this pattern.
236 static constexpr size_t kMaxConstructorIPuts = 3u;
237 
238 struct ConstructorIPutData {
ConstructorIPutDataart::__anon3e471f560111::ConstructorIPutData239   ConstructorIPutData() : field_index(DexFile::kDexNoIndex16), arg(0u) { }
240 
241   uint16_t field_index;
242   uint16_t arg;
243 };
244 
RecordConstructorIPut(ArtMethod * method,const Instruction * new_iput,uint16_t this_vreg,uint16_t zero_vreg_mask,ConstructorIPutData (& iputs)[kMaxConstructorIPuts],size_t & iput_count)245 bool RecordConstructorIPut(ArtMethod* method,
246                            const Instruction* new_iput,
247                            uint16_t this_vreg,
248                            uint16_t zero_vreg_mask,
249                            /*inout*/ ConstructorIPutData (&iputs)[kMaxConstructorIPuts],
250                            /*inout*/ size_t& iput_count)
251     REQUIRES_SHARED(Locks::mutator_lock_) {
252   DCHECK(IsInstructionIPut(new_iput->Opcode()));
253   uint32_t field_index = new_iput->VRegC_22c();
254   ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
255   ArtField* field = class_linker->LookupResolvedField(field_index, method, /* is_static= */ false);
256   if (UNLIKELY(field == nullptr)) {
257     return false;
258   }
259   // Remove previous IPUT to the same field, if any. Different field indexes may refer
260   // to the same field, so we need to compare resolved fields from the dex cache.
261   for (size_t old_pos = 0, end = iput_count; old_pos < end; ++old_pos) {
262     ArtField* f = class_linker->LookupResolvedField(iputs[old_pos].field_index,
263                                                     method,
264                                                     /* is_static= */ false);
265     DCHECK(f != nullptr);
266     if (f == field) {
267       auto back_it = std::copy(iputs + old_pos + 1, iputs + iput_count, iputs + old_pos);
268       *back_it = ConstructorIPutData();
269       --iput_count;
270       break;
271     }
272   }
273   // If the stored value isn't zero, record the IPUT.
274   if ((zero_vreg_mask & (1u << new_iput->VRegA_22c())) == 0u) {
275     size_t new_pos = iput_count;
276     if (new_pos == arraysize(iputs)) {
277       return false;  // Exceeded capacity of the output array.
278     }
279     iputs[new_pos].field_index = field_index;
280     iputs[new_pos].arg = new_iput->VRegA_22c() - this_vreg;
281     ++iput_count;
282   }
283   return true;
284 }
285 
DoAnalyseConstructor(const CodeItemDataAccessor * code_item,ArtMethod * method,ConstructorIPutData (& iputs)[kMaxConstructorIPuts],size_t & iput_count)286 bool DoAnalyseConstructor(const CodeItemDataAccessor* code_item,
287                           ArtMethod* method,
288                           /*inout*/ ConstructorIPutData (&iputs)[kMaxConstructorIPuts],
289                           /*inout*/ size_t &iput_count)
290     REQUIRES_SHARED(Locks::mutator_lock_) {
291   // On entry we should not have any IPUTs yet.
292   DCHECK_EQ(iput_count, 0u);
293 
294   // Limit the maximum number of code units we're willing to match.
295   static constexpr size_t kMaxCodeUnits = 16u;
296 
297   // Limit the number of registers that the constructor may use to 16.
298   // Given that IPUTs must use low 16 registers and we do not match MOVEs,
299   // this is a reasonable limitation.
300   static constexpr size_t kMaxVRegs = 16u;
301 
302   // We try to match a constructor that calls another constructor (either in
303   // superclass or in the same class) with the same parameters, or with some
304   // parameters truncated (allowed only for calls to superclass constructor)
305   // or with extra parameters with value 0 (with any type, including null).
306   // This call can be followed by optional IPUTs on "this" storing either one
307   // of the parameters or 0 and the code must then finish with RETURN_VOID.
308   // The called constructor must be either java.lang.Object.<init>() or it
309   // must also match the same pattern.
310   static constexpr Matcher::MatchFn* const kConstructorPattern[] = {
311       &Matcher::Mark,
312       &Matcher::Repeated<&Matcher::Const0>,
313       // Either invoke-direct or invoke-direct/range works
314       &Matcher::Required<&Matcher::Or<&Matcher::Opcode<Instruction::INVOKE_DIRECT>,
315                                       &Matcher::Opcode<Instruction::INVOKE_DIRECT_RANGE>>>,
316       &Matcher::Mark,
317       &Matcher::Repeated<&Matcher::Const0>,
318       &Matcher::Repeated<&Matcher::IPutOnThis>,
319       &Matcher::Required<&Matcher::Opcode<Instruction::RETURN_VOID>>,
320   };
321 
322   DCHECK(method != nullptr);
323   DCHECK(!method->IsStatic());
324   DCHECK(method->IsConstructor());
325   DCHECK(code_item != nullptr);
326   if (!method->GetDeclaringClass()->IsVerified() ||
327       code_item->InsnsSizeInCodeUnits() > kMaxCodeUnits ||
328       code_item->RegistersSize() > kMaxVRegs ||
329       !Matcher::Match(code_item, kConstructorPattern)) {
330     return false;
331   }
332 
333   // Verify the invoke, prevent a few odd cases and collect IPUTs.
334   uint16_t this_vreg = code_item->RegistersSize() - code_item->InsSize();
335   uint16_t zero_vreg_mask = 0u;
336 
337   for (const DexInstructionPcPair& pair : *code_item) {
338     const Instruction& instruction = pair.Inst();
339     if (instruction.Opcode() == Instruction::RETURN_VOID) {
340       break;
341     } else if (instruction.Opcode() == Instruction::INVOKE_DIRECT ||
342                instruction.Opcode() == Instruction::INVOKE_DIRECT_RANGE) {
343       ArtMethod* target_method = GetTargetConstructor(method, &instruction);
344       if (target_method == nullptr) {
345         return false;
346       }
347       // We allow forwarding constructors only if they pass more arguments
348       // to prevent infinite recursion.
349       size_t number_of_args = instruction.Opcode() == Instruction::INVOKE_DIRECT
350                                   ? instruction.VRegA_35c()
351                                   : instruction.VRegA_3rc();
352       if (target_method->GetDeclaringClass() == method->GetDeclaringClass() &&
353           number_of_args <= code_item->InsSize()) {
354         return false;
355       }
356       size_t forwarded = CountForwardedConstructorArguments(code_item, &instruction, zero_vreg_mask);
357       if (forwarded == static_cast<size_t>(-1)) {
358         return false;
359       }
360       if (target_method->GetDeclaringClass()->IsObjectClass()) {
361         DCHECK_EQ(target_method->DexInstructionData().begin()->Opcode(), Instruction::RETURN_VOID);
362       } else {
363         CodeItemDataAccessor target_code_item(target_method->DexInstructionData());
364         if (!target_code_item.HasCodeItem()) {
365           return false;  // Native constructor?
366         }
367         if (!DoAnalyseConstructor(&target_code_item, target_method, iputs, iput_count)) {
368           return false;
369         }
370         // Prune IPUTs with zero input.
371         auto kept_end = std::remove_if(
372             iputs,
373             iputs + iput_count,
374             [forwarded](const ConstructorIPutData& iput_data) {
375               return iput_data.arg >= forwarded;
376             });
377         iput_count = std::distance(iputs, kept_end);
378         std::fill(kept_end, iputs + arraysize(iputs), ConstructorIPutData());
379         // If we have any IPUTs from the call, check that the target method is in the same
380         // dex file (compare DexCache references), otherwise field_indexes would be bogus.
381         if (iput_count > 0u && target_method->GetDexCache() != method->GetDexCache()) {
382           return false;
383         }
384       }
385     } else if (IsInstructionDirectConst(instruction.Opcode())) {
386       zero_vreg_mask |= GetZeroVRegMask(&instruction);
387       if ((zero_vreg_mask & (1u << this_vreg)) != 0u) {
388         return false;  // Overwriting `this` is unsupported.
389       }
390     } else {
391       DCHECK(IsInstructionIPut(instruction.Opcode()));
392       DCHECK_EQ(instruction.VRegB_22c(), this_vreg);
393       if (!RecordConstructorIPut(method,
394                                  &instruction,
395                                  this_vreg,
396                                  zero_vreg_mask,
397                                  iputs,
398                                  iput_count)) {
399         return false;
400       }
401     }
402   }
403   return true;
404 }
405 
406 }  // anonymous namespace
407 
AnalyseConstructor(const CodeItemDataAccessor * code_item,ArtMethod * method,InlineMethod * result)408 bool AnalyseConstructor(const CodeItemDataAccessor* code_item,
409                         ArtMethod* method,
410                         InlineMethod* result)
411     REQUIRES_SHARED(Locks::mutator_lock_) {
412   size_t iput_count(0u);
413   ConstructorIPutData iputs[kMaxConstructorIPuts];
414   if (!DoAnalyseConstructor(code_item, method, iputs, iput_count)) {
415     return false;
416   }
417   static_assert(kMaxConstructorIPuts == 3, "Unexpected limit");  // Code below depends on this.
418   DCHECK_LE(iput_count, kMaxConstructorIPuts);
419 
420 #define STORE_IPUT(n)                                                         \
421   do {                                                                        \
422     result->d.constructor_data.iput##n##_field_index = iputs[n].field_index;  \
423     result->d.constructor_data.iput##n##_arg = iputs[n].arg;                  \
424   } while (false)
425 
426   STORE_IPUT(0);
427   STORE_IPUT(1);
428   STORE_IPUT(2);
429 #undef STORE_IPUT
430 
431   result->opcode = kInlineOpConstructor;
432   result->d.constructor_data.iput_count = static_cast<uint16_t>(iput_count);
433   return true;
434 }
435 
436 static_assert(IsInstructionIGet(Instruction::IGET));
437 static_assert(IsInstructionIGet(Instruction::IGET_WIDE));
438 static_assert(IsInstructionIGet(Instruction::IGET_OBJECT));
439 static_assert(IsInstructionIGet(Instruction::IGET_BOOLEAN));
440 static_assert(IsInstructionIGet(Instruction::IGET_BYTE));
441 static_assert(IsInstructionIGet(Instruction::IGET_CHAR));
442 static_assert(IsInstructionIGet(Instruction::IGET_SHORT));
443 static_assert(IsInstructionIPut(Instruction::IPUT));
444 static_assert(IsInstructionIPut(Instruction::IPUT_WIDE));
445 static_assert(IsInstructionIPut(Instruction::IPUT_OBJECT));
446 static_assert(IsInstructionIPut(Instruction::IPUT_BOOLEAN));
447 static_assert(IsInstructionIPut(Instruction::IPUT_BYTE));
448 static_assert(IsInstructionIPut(Instruction::IPUT_CHAR));
449 static_assert(IsInstructionIPut(Instruction::IPUT_SHORT));
450 static_assert(IGetMemAccessType(Instruction::IGET) == IPutMemAccessType(Instruction::IPUT));
451 static_assert(
452     IGetMemAccessType(Instruction::IGET_WIDE) == IPutMemAccessType(Instruction::IPUT_WIDE));
453 static_assert(
454     IGetMemAccessType(Instruction::IGET_OBJECT) == IPutMemAccessType(Instruction::IPUT_OBJECT));
455 static_assert(
456     IGetMemAccessType(Instruction::IGET_BOOLEAN) == IPutMemAccessType(Instruction::IPUT_BOOLEAN));
457 static_assert(
458     IGetMemAccessType(Instruction::IGET_BYTE) == IPutMemAccessType(Instruction::IPUT_BYTE));
459 static_assert(
460     IGetMemAccessType(Instruction::IGET_CHAR) == IPutMemAccessType(Instruction::IPUT_CHAR));
461 static_assert(
462     IGetMemAccessType(Instruction::IGET_SHORT) == IPutMemAccessType(Instruction::IPUT_SHORT));
463 
AnalyseMethodCode(ArtMethod * method,const CodeItemDataAccessor * code_item,InlineMethod * result)464 bool InlineMethodAnalyser::AnalyseMethodCode(ArtMethod* method,
465                                              const CodeItemDataAccessor* code_item,
466                                              InlineMethod* result) {
467   // We currently support only plain return or 2-instruction methods.
468 
469   DCHECK_NE(code_item->InsnsSizeInCodeUnits(), 0u);
470   Instruction::Code opcode = code_item->begin()->Opcode();
471 
472   switch (opcode) {
473     case Instruction::RETURN_VOID:
474       if (result != nullptr) {
475         result->opcode = kInlineOpNop;
476         result->d.data = 0u;
477       }
478       return true;
479     case Instruction::RETURN:
480     case Instruction::RETURN_OBJECT:
481     case Instruction::RETURN_WIDE:
482       return AnalyseReturnMethod(code_item, result);
483     case Instruction::CONST:
484     case Instruction::CONST_4:
485     case Instruction::CONST_16:
486     case Instruction::CONST_HIGH16:
487       // TODO: Support wide constants (RETURN_WIDE).
488       if (AnalyseConstMethod(code_item, result)) {
489         return true;
490       }
491       FALLTHROUGH_INTENDED;
492     case Instruction::CONST_WIDE:
493     case Instruction::CONST_WIDE_16:
494     case Instruction::CONST_WIDE_32:
495     case Instruction::CONST_WIDE_HIGH16:
496     case Instruction::INVOKE_DIRECT:
497     case Instruction::INVOKE_DIRECT_RANGE:
498       if (method != nullptr && !method->IsStatic() && method->IsConstructor()) {
499         return AnalyseConstructor(code_item, method, result);
500       }
501       return false;
502     case Instruction::IGET:
503     case Instruction::IGET_OBJECT:
504     case Instruction::IGET_BOOLEAN:
505     case Instruction::IGET_BYTE:
506     case Instruction::IGET_CHAR:
507     case Instruction::IGET_SHORT:
508     case Instruction::IGET_WIDE:
509       return AnalyseIGetMethod(method, code_item, result);
510     case Instruction::IPUT:
511     case Instruction::IPUT_OBJECT:
512     case Instruction::IPUT_BOOLEAN:
513     case Instruction::IPUT_BYTE:
514     case Instruction::IPUT_CHAR:
515     case Instruction::IPUT_SHORT:
516     case Instruction::IPUT_WIDE:
517       return AnalyseIPutMethod(method, code_item, result);
518     default:
519       return false;
520   }
521 }
522 
IsSyntheticAccessor(ArtMethod * method)523 bool InlineMethodAnalyser::IsSyntheticAccessor(ArtMethod* method) {
524   const DexFile* dex_file = method->GetDexFile();
525   const dex::MethodId& method_id = dex_file->GetMethodId(method->GetDexMethodIndex());
526   const char* method_name = dex_file->GetMethodName(method_id);
527   // javac names synthetic accessors "access$nnn",
528   // jack names them "-getN", "-putN", "-wrapN".
529   return strncmp(method_name, "access$", strlen("access$")) == 0 ||
530       strncmp(method_name, "-", strlen("-")) == 0;
531 }
532 
AnalyseReturnMethod(const CodeItemDataAccessor * code_item,InlineMethod * result)533 bool InlineMethodAnalyser::AnalyseReturnMethod(const CodeItemDataAccessor* code_item,
534                                                InlineMethod* result) {
535   DexInstructionIterator return_instruction = code_item->begin();
536   Instruction::Code return_opcode = return_instruction->Opcode();
537   uint32_t reg = return_instruction->VRegA_11x();
538   uint32_t arg_start = code_item->RegistersSize() - code_item->InsSize();
539   DCHECK_GE(reg, arg_start);
540   DCHECK_LT((return_opcode == Instruction::RETURN_WIDE) ? reg + 1 : reg,
541       code_item->RegistersSize());
542 
543   if (result != nullptr) {
544     result->opcode = kInlineOpReturnArg;
545     InlineReturnArgData* data = &result->d.return_data;
546     data->arg = reg - arg_start;
547     data->is_wide = (return_opcode == Instruction::RETURN_WIDE) ? 1u : 0u;
548     data->is_object = (return_opcode == Instruction::RETURN_OBJECT) ? 1u : 0u;
549     data->reserved = 0u;
550     data->reserved2 = 0u;
551   }
552   return true;
553 }
554 
AnalyseConstMethod(const CodeItemDataAccessor * code_item,InlineMethod * result)555 bool InlineMethodAnalyser::AnalyseConstMethod(const CodeItemDataAccessor* code_item,
556                                               InlineMethod* result) {
557   DexInstructionIterator instruction = code_item->begin();
558   const Instruction* return_instruction = instruction->Next();
559   Instruction::Code return_opcode = return_instruction->Opcode();
560   if (return_opcode != Instruction::RETURN &&
561       return_opcode != Instruction::RETURN_OBJECT) {
562     return false;
563   }
564 
565   int32_t return_reg = return_instruction->VRegA_11x();
566   DCHECK_LT(return_reg, code_item->RegistersSize());
567 
568   int32_t const_value = instruction->VRegB();
569   if (instruction->Opcode() == Instruction::CONST_HIGH16) {
570     const_value <<= 16;
571   }
572   DCHECK_LT(instruction->VRegA(), code_item->RegistersSize());
573   if (instruction->VRegA() != return_reg) {
574     return false;  // Not returning the value set by const?
575   }
576   if (return_opcode == Instruction::RETURN_OBJECT && const_value != 0) {
577     return false;  // Returning non-null reference constant?
578   }
579   if (result != nullptr) {
580     result->opcode = kInlineOpNonWideConst;
581     result->d.data = static_cast<uint64_t>(const_value);
582   }
583   return true;
584 }
585 
AnalyseIGetMethod(ArtMethod * method,const CodeItemDataAccessor * code_item,InlineMethod * result)586 bool InlineMethodAnalyser::AnalyseIGetMethod(ArtMethod* method,
587                                              const CodeItemDataAccessor* code_item,
588                                              InlineMethod* result) {
589   DexInstructionIterator instruction = code_item->begin();
590   Instruction::Code opcode = instruction->Opcode();
591   DCHECK(IsInstructionIGet(opcode));
592 
593   const Instruction* return_instruction = instruction->Next();
594   Instruction::Code return_opcode = return_instruction->Opcode();
595   if (!(return_opcode == Instruction::RETURN_WIDE && opcode == Instruction::IGET_WIDE) &&
596       !(return_opcode == Instruction::RETURN_OBJECT && opcode == Instruction::IGET_OBJECT) &&
597       !(return_opcode == Instruction::RETURN && opcode != Instruction::IGET_WIDE &&
598           opcode != Instruction::IGET_OBJECT)) {
599     return false;
600   }
601 
602   uint32_t return_reg = return_instruction->VRegA_11x();
603   DCHECK_LT(return_opcode == Instruction::RETURN_WIDE ? return_reg + 1 : return_reg,
604             code_item->RegistersSize());
605 
606   uint32_t dst_reg = instruction->VRegA_22c();
607   uint32_t object_reg = instruction->VRegB_22c();
608   uint32_t field_idx = instruction->VRegC_22c();
609   uint32_t arg_start = code_item->RegistersSize() - code_item->InsSize();
610   DCHECK_GE(object_reg, arg_start);
611   DCHECK_LT(object_reg, code_item->RegistersSize());
612   uint32_t object_arg = object_reg - arg_start;
613 
614   DCHECK_LT(opcode == Instruction::IGET_WIDE ? dst_reg + 1 : dst_reg, code_item->RegistersSize());
615   if (dst_reg != return_reg) {
616     return false;  // Not returning the value retrieved by IGET?
617   }
618 
619   // InlineIGetIPutData::object_arg is only 4 bits wide.
620   static constexpr uint16_t kMaxObjectArg = 15u;
621   if (object_arg > kMaxObjectArg) {
622     return false;
623   }
624 
625   bool is_static = method->IsStatic();
626   if (is_static || object_arg != 0u) {
627     // TODO: Implement inlining of IGET on non-"this" registers (needs correct stack trace for NPE).
628     // Allow synthetic accessors. We don't care about losing their stack frame in NPE.
629     if (!IsSyntheticAccessor(method)) {
630       return false;
631     }
632   }
633 
634   DCHECK(result != nullptr);
635   InlineIGetIPutData* data = &result->d.ifield_data;
636   if (!ComputeSpecialAccessorInfo(method, field_idx, false, data)) {
637     return false;
638   }
639   result->opcode = kInlineOpIGet;
640   data->op_variant = enum_cast<uint16_t>(IGetMemAccessType(opcode));
641   data->method_is_static = is_static ? 1u : 0u;
642   data->object_arg = object_arg;  // Allow IGET on any register, not just "this".
643   data->src_arg = 0u;
644   data->return_arg_plus1 = 0u;
645   return true;
646 }
647 
AnalyseIPutMethod(ArtMethod * method,const CodeItemDataAccessor * code_item,InlineMethod * result)648 bool InlineMethodAnalyser::AnalyseIPutMethod(ArtMethod* method,
649                                              const CodeItemDataAccessor* code_item,
650                                              InlineMethod* result) {
651   DexInstructionIterator instruction = code_item->begin();
652   Instruction::Code opcode = instruction->Opcode();
653   DCHECK(IsInstructionIPut(opcode));
654 
655   const Instruction* return_instruction = instruction->Next();
656   Instruction::Code return_opcode = return_instruction->Opcode();
657   uint32_t arg_start = code_item->RegistersSize() - code_item->InsSize();
658   uint16_t return_arg_plus1 = 0u;
659   if (return_opcode != Instruction::RETURN_VOID) {
660     if (return_opcode != Instruction::RETURN &&
661         return_opcode != Instruction::RETURN_OBJECT &&
662         return_opcode != Instruction::RETURN_WIDE) {
663       return false;
664     }
665     // Returning an argument.
666     uint32_t return_reg = return_instruction->VRegA_11x();
667     DCHECK_GE(return_reg, arg_start);
668     DCHECK_LT(return_opcode == Instruction::RETURN_WIDE ? return_reg + 1u : return_reg,
669               code_item->RegistersSize());
670     return_arg_plus1 = return_reg - arg_start + 1u;
671   }
672 
673   uint32_t src_reg = instruction->VRegA_22c();
674   uint32_t object_reg = instruction->VRegB_22c();
675   uint32_t field_idx = instruction->VRegC_22c();
676   DCHECK_GE(object_reg, arg_start);
677   DCHECK_LT(object_reg, code_item->RegistersSize());
678   DCHECK_GE(src_reg, arg_start);
679   DCHECK_LT(opcode == Instruction::IPUT_WIDE ? src_reg + 1 : src_reg, code_item->RegistersSize());
680   uint32_t object_arg = object_reg - arg_start;
681   uint32_t src_arg = src_reg - arg_start;
682 
683   // InlineIGetIPutData::object_arg/src_arg/return_arg_plus1 are each only 4 bits wide.
684   static constexpr uint16_t kMaxObjectArg = 15u;
685   static constexpr uint16_t kMaxSrcArg = 15u;
686   static constexpr uint16_t kMaxReturnArgPlus1 = 15u;
687   if (object_arg > kMaxObjectArg || src_arg > kMaxSrcArg || return_arg_plus1 > kMaxReturnArgPlus1) {
688     return false;
689   }
690 
691   bool is_static = method->IsStatic();
692   if (is_static || object_arg != 0u) {
693     // TODO: Implement inlining of IPUT on non-"this" registers (needs correct stack trace for NPE).
694     // Allow synthetic accessors. We don't care about losing their stack frame in NPE.
695     if (!IsSyntheticAccessor(method)) {
696       return false;
697     }
698   }
699 
700   DCHECK(result != nullptr);
701   InlineIGetIPutData* data = &result->d.ifield_data;
702   if (!ComputeSpecialAccessorInfo(method, field_idx, true, data)) {
703     return false;
704   }
705   result->opcode = kInlineOpIPut;
706   data->op_variant = enum_cast<uint16_t>(IPutMemAccessType(opcode));
707   data->method_is_static = is_static ? 1u : 0u;
708   data->object_arg = object_arg;  // Allow IPUT on any register, not just "this".
709   data->src_arg = src_arg;
710   data->return_arg_plus1 = return_arg_plus1;
711   return true;
712 }
713 
ComputeSpecialAccessorInfo(ArtMethod * method,uint32_t field_idx,bool is_put,InlineIGetIPutData * result)714 bool InlineMethodAnalyser::ComputeSpecialAccessorInfo(ArtMethod* method,
715                                                       uint32_t field_idx,
716                                                       bool is_put,
717                                                       InlineIGetIPutData* result) {
718   if (method == nullptr) {
719     return false;
720   }
721   ObjPtr<mirror::DexCache> dex_cache = method->GetDexCache();
722   ClassLinker* class_linker = Runtime::Current()->GetClassLinker();
723   ArtField* field = class_linker->LookupResolvedField(field_idx, method, /* is_static= */ false);
724   if (field == nullptr || field->IsStatic()) {
725     return false;
726   }
727   ObjPtr<mirror::Class> method_class = method->GetDeclaringClass();
728   ObjPtr<mirror::Class> field_class = field->GetDeclaringClass();
729   if (!method_class->CanAccessResolvedField(field_class, field, dex_cache, field_idx) ||
730       (is_put && field->IsFinal() && method_class != field_class)) {
731     return false;
732   }
733   DCHECK_GE(field->GetOffset().Int32Value(), 0);
734   // Historical note: We made sure not to interleave function calls with bit field writes to
735   // placate Valgrind. Bug: 27552451.
736   uint32_t field_offset = field->GetOffset().Uint32Value();
737   bool is_volatile = field->IsVolatile();
738   result->field_idx = field_idx;
739   result->field_offset = field_offset;
740   result->is_volatile = is_volatile ? 1u : 0u;
741   return true;
742 }
743 
744 }  // namespace art
745