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1 // Copyright 2012 the V8 project authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file.
4 
5 #ifndef V8_REGEXP_REGEXP_MACRO_ASSEMBLER_IRREGEXP_H_
6 #define V8_REGEXP_REGEXP_MACRO_ASSEMBLER_IRREGEXP_H_
7 
8 #ifdef V8_INTERPRETED_REGEXP
9 
10 #include "src/regexp/regexp-macro-assembler.h"
11 
12 namespace v8 {
13 namespace internal {
14 
15 // A light-weight assembler for the Irregexp byte code.
16 class RegExpMacroAssemblerIrregexp: public RegExpMacroAssembler {
17  public:
18   // Create an assembler. Instructions and relocation information are emitted
19   // into a buffer, with the instructions starting from the beginning and the
20   // relocation information starting from the end of the buffer. See CodeDesc
21   // for a detailed comment on the layout (globals.h).
22   //
23   // If the provided buffer is nullptr, the assembler allocates and grows its
24   // own buffer, and buffer_size determines the initial buffer size. The buffer
25   // is owned by the assembler and deallocated upon destruction of the
26   // assembler.
27   //
28   // If the provided buffer is not nullptr, the assembler uses the provided
29   // buffer for code generation and assumes its size to be buffer_size. If the
30   // buffer is too small, a fatal error occurs. No deallocation of the buffer is
31   // done upon destruction of the assembler.
32   RegExpMacroAssemblerIrregexp(Isolate* isolate, Vector<byte> buffer,
33                                Zone* zone);
34   virtual ~RegExpMacroAssemblerIrregexp();
35   // The byte-code interpreter checks on each push anyway.
stack_limit_slack()36   virtual int stack_limit_slack() { return 1; }
CanReadUnaligned()37   virtual bool CanReadUnaligned() { return false; }
38   virtual void Bind(Label* label);
39   virtual void AdvanceCurrentPosition(int by);  // Signed cp change.
40   virtual void PopCurrentPosition();
41   virtual void PushCurrentPosition();
42   virtual void Backtrack();
43   virtual void GoTo(Label* label);
44   virtual void PushBacktrack(Label* label);
45   virtual bool Succeed();
46   virtual void Fail();
47   virtual void PopRegister(int register_index);
48   virtual void PushRegister(int register_index,
49                             StackCheckFlag check_stack_limit);
50   virtual void AdvanceRegister(int reg, int by);  // r[reg] += by.
51   virtual void SetCurrentPositionFromEnd(int by);
52   virtual void SetRegister(int register_index, int to);
53   virtual void WriteCurrentPositionToRegister(int reg, int cp_offset);
54   virtual void ClearRegisters(int reg_from, int reg_to);
55   virtual void ReadCurrentPositionFromRegister(int reg);
56   virtual void WriteStackPointerToRegister(int reg);
57   virtual void ReadStackPointerFromRegister(int reg);
58   virtual void LoadCurrentCharacter(int cp_offset,
59                                     Label* on_end_of_input,
60                                     bool check_bounds = true,
61                                     int characters = 1);
62   virtual void CheckCharacter(unsigned c, Label* on_equal);
63   virtual void CheckCharacterAfterAnd(unsigned c,
64                                       unsigned mask,
65                                       Label* on_equal);
66   virtual void CheckCharacterGT(uc16 limit, Label* on_greater);
67   virtual void CheckCharacterLT(uc16 limit, Label* on_less);
68   virtual void CheckGreedyLoop(Label* on_tos_equals_current_position);
69   virtual void CheckAtStart(Label* on_at_start);
70   virtual void CheckNotAtStart(int cp_offset, Label* on_not_at_start);
71   virtual void CheckNotCharacter(unsigned c, Label* on_not_equal);
72   virtual void CheckNotCharacterAfterAnd(unsigned c,
73                                          unsigned mask,
74                                          Label* on_not_equal);
75   virtual void CheckNotCharacterAfterMinusAnd(uc16 c,
76                                               uc16 minus,
77                                               uc16 mask,
78                                               Label* on_not_equal);
79   virtual void CheckCharacterInRange(uc16 from,
80                                      uc16 to,
81                                      Label* on_in_range);
82   virtual void CheckCharacterNotInRange(uc16 from,
83                                         uc16 to,
84                                         Label* on_not_in_range);
85   virtual void CheckBitInTable(Handle<ByteArray> table, Label* on_bit_set);
86   virtual void CheckNotBackReference(int start_reg, bool read_backward,
87                                      Label* on_no_match);
88   virtual void CheckNotBackReferenceIgnoreCase(int start_reg,
89                                                bool read_backward, bool unicode,
90                                                Label* on_no_match);
91   virtual void IfRegisterLT(int register_index, int comparand, Label* if_lt);
92   virtual void IfRegisterGE(int register_index, int comparand, Label* if_ge);
93   virtual void IfRegisterEqPos(int register_index, Label* if_eq);
94 
95   virtual IrregexpImplementation Implementation();
96   virtual Handle<HeapObject> GetCode(Handle<String> source);
97 
98  private:
99   void Expand();
100   // Code and bitmap emission.
101   inline void EmitOrLink(Label* label);
102   inline void Emit32(uint32_t x);
103   inline void Emit16(uint32_t x);
104   inline void Emit8(uint32_t x);
105   inline void Emit(uint32_t bc, uint32_t arg);
106   // Bytecode buffer.
107   int length();
108   void Copy(byte* a);
109 
110   // The buffer into which code and relocation info are generated.
111   Vector<byte> buffer_;
112   // The program counter.
113   int pc_;
114   // True if the assembler owns the buffer, false if buffer is external.
115   bool own_buffer_;
116   Label backtrack_;
117 
118   int advance_current_start_;
119   int advance_current_offset_;
120   int advance_current_end_;
121 
122   Isolate* isolate_;
123 
124   static const int kInvalidPC = -1;
125 
126   DISALLOW_IMPLICIT_CONSTRUCTORS(RegExpMacroAssemblerIrregexp);
127 };
128 
129 }  // namespace internal
130 }  // namespace v8
131 
132 #endif  // V8_INTERPRETED_REGEXP
133 
134 #endif  // V8_REGEXP_REGEXP_MACRO_ASSEMBLER_IRREGEXP_H_
135