11cb0ef41Sopenharmony_ci// Copyright 2014 the V8 project authors. All rights reserved. 21cb0ef41Sopenharmony_ci// Use of this source code is governed by a BSD-style license that can be 31cb0ef41Sopenharmony_ci// found in the LICENSE file. 41cb0ef41Sopenharmony_ci 51cb0ef41Sopenharmony_ci#ifndef V8_REGEXP_PPC_REGEXP_MACRO_ASSEMBLER_PPC_H_ 61cb0ef41Sopenharmony_ci#define V8_REGEXP_PPC_REGEXP_MACRO_ASSEMBLER_PPC_H_ 71cb0ef41Sopenharmony_ci 81cb0ef41Sopenharmony_ci#include "src/codegen/macro-assembler.h" 91cb0ef41Sopenharmony_ci#include "src/regexp/regexp-macro-assembler.h" 101cb0ef41Sopenharmony_ci 111cb0ef41Sopenharmony_cinamespace v8 { 121cb0ef41Sopenharmony_cinamespace internal { 131cb0ef41Sopenharmony_ci 141cb0ef41Sopenharmony_ciclass V8_EXPORT_PRIVATE RegExpMacroAssemblerPPC 151cb0ef41Sopenharmony_ci : public NativeRegExpMacroAssembler { 161cb0ef41Sopenharmony_ci public: 171cb0ef41Sopenharmony_ci RegExpMacroAssemblerPPC(Isolate* isolate, Zone* zone, Mode mode, 181cb0ef41Sopenharmony_ci int registers_to_save); 191cb0ef41Sopenharmony_ci ~RegExpMacroAssemblerPPC() override; 201cb0ef41Sopenharmony_ci int stack_limit_slack() override; 211cb0ef41Sopenharmony_ci void AdvanceCurrentPosition(int by) override; 221cb0ef41Sopenharmony_ci void AdvanceRegister(int reg, int by) override; 231cb0ef41Sopenharmony_ci void Backtrack() override; 241cb0ef41Sopenharmony_ci void Bind(Label* label) override; 251cb0ef41Sopenharmony_ci void CheckAtStart(int cp_offset, Label* on_at_start) override; 261cb0ef41Sopenharmony_ci void CheckCharacter(unsigned c, Label* on_equal) override; 271cb0ef41Sopenharmony_ci void CheckCharacterAfterAnd(unsigned c, unsigned mask, 281cb0ef41Sopenharmony_ci Label* on_equal) override; 291cb0ef41Sopenharmony_ci void CheckCharacterGT(base::uc16 limit, Label* on_greater) override; 301cb0ef41Sopenharmony_ci void CheckCharacterLT(base::uc16 limit, Label* on_less) override; 311cb0ef41Sopenharmony_ci 321cb0ef41Sopenharmony_ci // A "greedy loop" is a loop that is both greedy and with a simple 331cb0ef41Sopenharmony_ci // body. It has a particularly simple implementation. 341cb0ef41Sopenharmony_ci void CheckGreedyLoop(Label* on_tos_equals_current_position) override; 351cb0ef41Sopenharmony_ci void CheckNotAtStart(int cp_offset, Label* on_not_at_start) override; 361cb0ef41Sopenharmony_ci void CheckNotBackReference(int start_reg, bool read_backward, 371cb0ef41Sopenharmony_ci Label* on_no_match) override; 381cb0ef41Sopenharmony_ci void CheckNotBackReferenceIgnoreCase(int start_reg, bool read_backward, 391cb0ef41Sopenharmony_ci bool unicode, 401cb0ef41Sopenharmony_ci Label* on_no_match) override; 411cb0ef41Sopenharmony_ci void CheckNotCharacter(unsigned c, Label* on_not_equal) override; 421cb0ef41Sopenharmony_ci void CheckNotCharacterAfterAnd(unsigned c, unsigned mask, 431cb0ef41Sopenharmony_ci Label* on_not_equal) override; 441cb0ef41Sopenharmony_ci void CheckNotCharacterAfterMinusAnd(base::uc16 c, base::uc16 minus, 451cb0ef41Sopenharmony_ci base::uc16 mask, 461cb0ef41Sopenharmony_ci Label* on_not_equal) override; 471cb0ef41Sopenharmony_ci void CheckCharacterInRange(base::uc16 from, base::uc16 to, 481cb0ef41Sopenharmony_ci Label* on_in_range) override; 491cb0ef41Sopenharmony_ci void CheckCharacterNotInRange(base::uc16 from, base::uc16 to, 501cb0ef41Sopenharmony_ci Label* on_not_in_range) override; 511cb0ef41Sopenharmony_ci bool CheckCharacterInRangeArray(const ZoneList<CharacterRange>* ranges, 521cb0ef41Sopenharmony_ci Label* on_in_range) override; 531cb0ef41Sopenharmony_ci bool CheckCharacterNotInRangeArray(const ZoneList<CharacterRange>* ranges, 541cb0ef41Sopenharmony_ci Label* on_not_in_range) override; 551cb0ef41Sopenharmony_ci void CheckBitInTable(Handle<ByteArray> table, Label* on_bit_set) override; 561cb0ef41Sopenharmony_ci 571cb0ef41Sopenharmony_ci // Checks whether the given offset from the current position is before 581cb0ef41Sopenharmony_ci // the end of the string. 591cb0ef41Sopenharmony_ci void CheckPosition(int cp_offset, Label* on_outside_input) override; 601cb0ef41Sopenharmony_ci bool CheckSpecialCharacterClass(StandardCharacterSet type, 611cb0ef41Sopenharmony_ci Label* on_no_match) override; 621cb0ef41Sopenharmony_ci void Fail() override; 631cb0ef41Sopenharmony_ci Handle<HeapObject> GetCode(Handle<String> source) override; 641cb0ef41Sopenharmony_ci void GoTo(Label* label) override; 651cb0ef41Sopenharmony_ci void IfRegisterGE(int reg, int comparand, Label* if_ge) override; 661cb0ef41Sopenharmony_ci void IfRegisterLT(int reg, int comparand, Label* if_lt) override; 671cb0ef41Sopenharmony_ci void IfRegisterEqPos(int reg, Label* if_eq) override; 681cb0ef41Sopenharmony_ci IrregexpImplementation Implementation() override; 691cb0ef41Sopenharmony_ci void LoadCurrentCharacterUnchecked(int cp_offset, 701cb0ef41Sopenharmony_ci int character_count) override; 711cb0ef41Sopenharmony_ci void PopCurrentPosition() override; 721cb0ef41Sopenharmony_ci void PopRegister(int register_index) override; 731cb0ef41Sopenharmony_ci void PushBacktrack(Label* label) override; 741cb0ef41Sopenharmony_ci void PushCurrentPosition() override; 751cb0ef41Sopenharmony_ci void PushRegister(int register_index, 761cb0ef41Sopenharmony_ci StackCheckFlag check_stack_limit) override; 771cb0ef41Sopenharmony_ci void ReadCurrentPositionFromRegister(int reg) override; 781cb0ef41Sopenharmony_ci void ReadStackPointerFromRegister(int reg) override; 791cb0ef41Sopenharmony_ci void SetCurrentPositionFromEnd(int by) override; 801cb0ef41Sopenharmony_ci void SetRegister(int register_index, int to) override; 811cb0ef41Sopenharmony_ci bool Succeed() override; 821cb0ef41Sopenharmony_ci void WriteCurrentPositionToRegister(int reg, int cp_offset) override; 831cb0ef41Sopenharmony_ci void ClearRegisters(int reg_from, int reg_to) override; 841cb0ef41Sopenharmony_ci void WriteStackPointerToRegister(int reg) override; 851cb0ef41Sopenharmony_ci 861cb0ef41Sopenharmony_ci // Called from RegExp if the stack-guard is triggered. 871cb0ef41Sopenharmony_ci // If the code object is relocated, the return address is fixed before 881cb0ef41Sopenharmony_ci // returning. 891cb0ef41Sopenharmony_ci // {raw_code} is an Address because this is called via ExternalReference. 901cb0ef41Sopenharmony_ci static int CheckStackGuardState(Address* return_address, Address raw_code, 911cb0ef41Sopenharmony_ci Address re_frame); 921cb0ef41Sopenharmony_ci 931cb0ef41Sopenharmony_ci private: 941cb0ef41Sopenharmony_ci // Offsets from frame_pointer() of function parameters and stored registers. 951cb0ef41Sopenharmony_ci static const int kFramePointer = 0; 961cb0ef41Sopenharmony_ci 971cb0ef41Sopenharmony_ci // Above the frame pointer - Stored registers and stack passed parameters. 981cb0ef41Sopenharmony_ci static const int kStoredRegisters = kFramePointer; 991cb0ef41Sopenharmony_ci // Return address (stored from link register, read into pc on return). 1001cb0ef41Sopenharmony_ci static const int kReturnAddress = kStoredRegisters + 7 * kSystemPointerSize; 1011cb0ef41Sopenharmony_ci static const int kCallerFrame = kReturnAddress + kSystemPointerSize; 1021cb0ef41Sopenharmony_ci 1031cb0ef41Sopenharmony_ci // Below the frame pointer. 1041cb0ef41Sopenharmony_ci // Register parameters stored by setup code. 1051cb0ef41Sopenharmony_ci static const int kIsolate = kFramePointer - kSystemPointerSize; 1061cb0ef41Sopenharmony_ci static const int kDirectCall = kIsolate - kSystemPointerSize; 1071cb0ef41Sopenharmony_ci static const int kNumOutputRegisters = kDirectCall - kSystemPointerSize; 1081cb0ef41Sopenharmony_ci static const int kRegisterOutput = kNumOutputRegisters - kSystemPointerSize; 1091cb0ef41Sopenharmony_ci static const int kInputEnd = kRegisterOutput - kSystemPointerSize; 1101cb0ef41Sopenharmony_ci static const int kInputStart = kInputEnd - kSystemPointerSize; 1111cb0ef41Sopenharmony_ci static const int kStartIndex = kInputStart - kSystemPointerSize; 1121cb0ef41Sopenharmony_ci static const int kInputString = kStartIndex - kSystemPointerSize; 1131cb0ef41Sopenharmony_ci // When adding local variables remember to push space for them in 1141cb0ef41Sopenharmony_ci // the frame in GetCode. 1151cb0ef41Sopenharmony_ci static const int kSuccessfulCaptures = kInputString - kSystemPointerSize; 1161cb0ef41Sopenharmony_ci static const int kStringStartMinusOne = 1171cb0ef41Sopenharmony_ci kSuccessfulCaptures - kSystemPointerSize; 1181cb0ef41Sopenharmony_ci static const int kBacktrackCount = kStringStartMinusOne - kSystemPointerSize; 1191cb0ef41Sopenharmony_ci // Stores the initial value of the regexp stack pointer in a 1201cb0ef41Sopenharmony_ci // position-independent representation (in case the regexp stack grows and 1211cb0ef41Sopenharmony_ci // thus moves). 1221cb0ef41Sopenharmony_ci static const int kRegExpStackBasePointer = 1231cb0ef41Sopenharmony_ci kBacktrackCount - kSystemPointerSize; 1241cb0ef41Sopenharmony_ci 1251cb0ef41Sopenharmony_ci // First register address. Following registers are below it on the stack. 1261cb0ef41Sopenharmony_ci static const int kRegisterZero = kRegExpStackBasePointer - kSystemPointerSize; 1271cb0ef41Sopenharmony_ci 1281cb0ef41Sopenharmony_ci // Initial size of code buffer. 1291cb0ef41Sopenharmony_ci static const int kRegExpCodeSize = 1024; 1301cb0ef41Sopenharmony_ci 1311cb0ef41Sopenharmony_ci // Check whether preemption has been requested. 1321cb0ef41Sopenharmony_ci void CheckPreemption(); 1331cb0ef41Sopenharmony_ci 1341cb0ef41Sopenharmony_ci // Check whether we are exceeding the stack limit on the backtrack stack. 1351cb0ef41Sopenharmony_ci void CheckStackLimit(); 1361cb0ef41Sopenharmony_ci 1371cb0ef41Sopenharmony_ci void CallCheckStackGuardState(Register scratch); 1381cb0ef41Sopenharmony_ci void CallIsCharacterInRangeArray(const ZoneList<CharacterRange>* ranges); 1391cb0ef41Sopenharmony_ci 1401cb0ef41Sopenharmony_ci // The ebp-relative location of a regexp register. 1411cb0ef41Sopenharmony_ci MemOperand register_location(int register_index); 1421cb0ef41Sopenharmony_ci 1431cb0ef41Sopenharmony_ci // Register holding the current input position as negative offset from 1441cb0ef41Sopenharmony_ci // the end of the string. 1451cb0ef41Sopenharmony_ci static constexpr Register current_input_offset() { return r27; } 1461cb0ef41Sopenharmony_ci 1471cb0ef41Sopenharmony_ci // The register containing the current character after LoadCurrentCharacter. 1481cb0ef41Sopenharmony_ci static constexpr Register current_character() { return r28; } 1491cb0ef41Sopenharmony_ci 1501cb0ef41Sopenharmony_ci // Register holding address of the end of the input string. 1511cb0ef41Sopenharmony_ci static constexpr Register end_of_input_address() { return r30; } 1521cb0ef41Sopenharmony_ci 1531cb0ef41Sopenharmony_ci // Register holding the frame address. Local variables, parameters and 1541cb0ef41Sopenharmony_ci // regexp registers are addressed relative to this. 1551cb0ef41Sopenharmony_ci static constexpr Register frame_pointer() { return fp; } 1561cb0ef41Sopenharmony_ci 1571cb0ef41Sopenharmony_ci // The register containing the backtrack stack top. Provides a meaningful 1581cb0ef41Sopenharmony_ci // name to the register. 1591cb0ef41Sopenharmony_ci static constexpr Register backtrack_stackpointer() { return r29; } 1601cb0ef41Sopenharmony_ci 1611cb0ef41Sopenharmony_ci // Register holding pointer to the current code object. 1621cb0ef41Sopenharmony_ci static constexpr Register code_pointer() { return r26; } 1631cb0ef41Sopenharmony_ci 1641cb0ef41Sopenharmony_ci // Byte size of chars in the string to match (decided by the Mode argument) 1651cb0ef41Sopenharmony_ci inline int char_size() const { return static_cast<int>(mode_); } 1661cb0ef41Sopenharmony_ci 1671cb0ef41Sopenharmony_ci // Equivalent to a conditional branch to the label, unless the label 1681cb0ef41Sopenharmony_ci // is nullptr, in which case it is a conditional Backtrack. 1691cb0ef41Sopenharmony_ci void BranchOrBacktrack(Condition condition, Label* to, CRegister cr = cr7); 1701cb0ef41Sopenharmony_ci 1711cb0ef41Sopenharmony_ci // Call and return internally in the generated code in a way that 1721cb0ef41Sopenharmony_ci // is GC-safe (i.e., doesn't leave absolute code addresses on the stack) 1731cb0ef41Sopenharmony_ci inline void SafeCall(Label* to, Condition cond = al, CRegister cr = cr7); 1741cb0ef41Sopenharmony_ci inline void SafeReturn(); 1751cb0ef41Sopenharmony_ci inline void SafeCallTarget(Label* name); 1761cb0ef41Sopenharmony_ci 1771cb0ef41Sopenharmony_ci // Pushes the value of a register on the backtrack stack. Decrements the 1781cb0ef41Sopenharmony_ci // stack pointer by a word size and stores the register's value there. 1791cb0ef41Sopenharmony_ci inline void Push(Register source); 1801cb0ef41Sopenharmony_ci 1811cb0ef41Sopenharmony_ci // Pops a value from the backtrack stack. Reads the word at the stack pointer 1821cb0ef41Sopenharmony_ci // and increments it by a word size. 1831cb0ef41Sopenharmony_ci inline void Pop(Register target); 1841cb0ef41Sopenharmony_ci 1851cb0ef41Sopenharmony_ci void LoadRegExpStackPointerFromMemory(Register dst); 1861cb0ef41Sopenharmony_ci void StoreRegExpStackPointerToMemory(Register src, Register scratch); 1871cb0ef41Sopenharmony_ci void PushRegExpBasePointer(Register stack_pointer, Register scratch); 1881cb0ef41Sopenharmony_ci void PopRegExpBasePointer(Register stack_pointer_out, Register scratch); 1891cb0ef41Sopenharmony_ci 1901cb0ef41Sopenharmony_ci Isolate* isolate() const { return masm_->isolate(); } 1911cb0ef41Sopenharmony_ci 1921cb0ef41Sopenharmony_ci const std::unique_ptr<MacroAssembler> masm_; 1931cb0ef41Sopenharmony_ci const NoRootArrayScope no_root_array_scope_; 1941cb0ef41Sopenharmony_ci 1951cb0ef41Sopenharmony_ci // Which mode to generate code for (Latin1 or UC16). 1961cb0ef41Sopenharmony_ci const Mode mode_; 1971cb0ef41Sopenharmony_ci 1981cb0ef41Sopenharmony_ci // One greater than maximal register index actually used. 1991cb0ef41Sopenharmony_ci int num_registers_; 2001cb0ef41Sopenharmony_ci 2011cb0ef41Sopenharmony_ci // Number of registers to output at the end (the saved registers 2021cb0ef41Sopenharmony_ci // are always 0..num_saved_registers_-1) 2031cb0ef41Sopenharmony_ci const int num_saved_registers_; 2041cb0ef41Sopenharmony_ci 2051cb0ef41Sopenharmony_ci // Labels used internally. 2061cb0ef41Sopenharmony_ci Label entry_label_; 2071cb0ef41Sopenharmony_ci Label start_label_; 2081cb0ef41Sopenharmony_ci Label success_label_; 2091cb0ef41Sopenharmony_ci Label backtrack_label_; 2101cb0ef41Sopenharmony_ci Label exit_label_; 2111cb0ef41Sopenharmony_ci Label check_preempt_label_; 2121cb0ef41Sopenharmony_ci Label stack_overflow_label_; 2131cb0ef41Sopenharmony_ci Label internal_failure_label_; 2141cb0ef41Sopenharmony_ci Label fallback_label_; 2151cb0ef41Sopenharmony_ci}; 2161cb0ef41Sopenharmony_ci 2171cb0ef41Sopenharmony_ci// Set of non-volatile registers saved/restored by generated regexp code. 2181cb0ef41Sopenharmony_ciconst RegList kRegExpCalleeSaved = {r25, r26, r27, r28, r29, r30, fp}; 2191cb0ef41Sopenharmony_ci 2201cb0ef41Sopenharmony_ci} // namespace internal 2211cb0ef41Sopenharmony_ci} // namespace v8 2221cb0ef41Sopenharmony_ci 2231cb0ef41Sopenharmony_ci#endif // V8_REGEXP_PPC_REGEXP_MACRO_ASSEMBLER_PPC_H_ 224