2010-09-15 19:26:06 +00:00
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//===-- ARMBaseInfo.h - Top level definitions for ARM -------- --*- C++ -*-===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This file contains small standalone helper functions and enum definitions for
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// the ARM target useful for the compiler back-end and the MC libraries.
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// As such, it deliberately does not include references to LLVM core
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// code gen types, passes, etc..
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//
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//===----------------------------------------------------------------------===//
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#ifndef ARMBASEINFO_H
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#define ARMBASEINFO_H
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#include "llvm/Support/ErrorHandling.h"
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2010-09-15 20:26:25 +00:00
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// Note that the following auto-generated files only defined enum types, and
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// so are safe to include here.
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// Defines symbolic names for ARM registers. This defines a mapping from
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// register name to register number.
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//
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#include "ARMGenRegisterNames.inc"
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// Defines symbolic names for the ARM instructions.
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//
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#include "ARMGenInstrNames.inc"
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2010-09-15 19:26:06 +00:00
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namespace llvm {
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// Enums corresponding to ARM condition codes
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namespace ARMCC {
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// The CondCodes constants map directly to the 4-bit encoding of the
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// condition field for predicated instructions.
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enum CondCodes { // Meaning (integer) Meaning (floating-point)
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EQ, // Equal Equal
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NE, // Not equal Not equal, or unordered
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HS, // Carry set >, ==, or unordered
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LO, // Carry clear Less than
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MI, // Minus, negative Less than
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PL, // Plus, positive or zero >, ==, or unordered
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VS, // Overflow Unordered
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VC, // No overflow Not unordered
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HI, // Unsigned higher Greater than, or unordered
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LS, // Unsigned lower or same Less than or equal
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GE, // Greater than or equal Greater than or equal
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LT, // Less than Less than, or unordered
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GT, // Greater than Greater than
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LE, // Less than or equal <, ==, or unordered
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AL // Always (unconditional) Always (unconditional)
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};
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inline static CondCodes getOppositeCondition(CondCodes CC) {
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switch (CC) {
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default: llvm_unreachable("Unknown condition code");
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case EQ: return NE;
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case NE: return EQ;
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case HS: return LO;
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case LO: return HS;
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case MI: return PL;
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case PL: return MI;
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case VS: return VC;
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case VC: return VS;
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case HI: return LS;
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case LS: return HI;
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case GE: return LT;
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case LT: return GE;
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case GT: return LE;
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case LE: return GT;
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}
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}
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} // namespace ARMCC
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inline static const char *ARMCondCodeToString(ARMCC::CondCodes CC) {
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switch (CC) {
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default: llvm_unreachable("Unknown condition code");
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case ARMCC::EQ: return "eq";
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case ARMCC::NE: return "ne";
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case ARMCC::HS: return "hs";
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case ARMCC::LO: return "lo";
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case ARMCC::MI: return "mi";
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case ARMCC::PL: return "pl";
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case ARMCC::VS: return "vs";
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case ARMCC::VC: return "vc";
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case ARMCC::HI: return "hi";
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case ARMCC::LS: return "ls";
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case ARMCC::GE: return "ge";
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case ARMCC::LT: return "lt";
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case ARMCC::GT: return "gt";
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case ARMCC::LE: return "le";
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case ARMCC::AL: return "al";
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}
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}
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2011-02-14 13:09:44 +00:00
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namespace ARM_PROC {
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enum IMod {
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IE = 2,
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ID = 3
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};
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enum IFlags {
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F = 1,
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I = 2,
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A = 4
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};
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inline static const char *IFlagsToString(unsigned val) {
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switch (val) {
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default: llvm_unreachable("Unknown iflags operand");
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case F: return "f";
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case I: return "i";
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case A: return "a";
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}
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}
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inline static const char *IModToString(unsigned val) {
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switch (val) {
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default: llvm_unreachable("Unknown imod operand");
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case IE: return "ie";
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case ID: return "id";
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}
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}
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}
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2010-09-15 19:26:06 +00:00
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namespace ARM_MB {
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// The Memory Barrier Option constants map directly to the 4-bit encoding of
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// the option field for memory barrier operations.
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enum MemBOpt {
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2010-10-30 00:54:37 +00:00
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SY = 15,
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2010-09-15 19:26:06 +00:00
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ST = 14,
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ISH = 11,
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ISHST = 10,
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NSH = 7,
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NSHST = 6,
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OSH = 3,
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OSHST = 2
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};
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inline static const char *MemBOptToString(unsigned val) {
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switch (val) {
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default: llvm_unreachable("Unknown memory operation");
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2010-10-30 00:54:37 +00:00
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case SY: return "sy";
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2010-09-15 19:26:06 +00:00
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case ST: return "st";
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case ISH: return "ish";
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case ISHST: return "ishst";
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case NSH: return "nsh";
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case NSHST: return "nshst";
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case OSH: return "osh";
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case OSHST: return "oshst";
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}
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}
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} // namespace ARM_MB
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2010-09-15 20:26:25 +00:00
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/// getARMRegisterNumbering - Given the enum value for some register, e.g.
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/// ARM::LR, return the number that it corresponds to (e.g. 14).
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inline static unsigned getARMRegisterNumbering(unsigned Reg) {
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using namespace ARM;
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switch (Reg) {
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default:
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llvm_unreachable("Unknown ARM register!");
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case R0: case S0: case D0: case Q0: return 0;
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2010-10-21 20:49:13 +00:00
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case R1: case S1: case D1: case Q1: return 1;
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case R2: case S2: case D2: case Q2: return 2;
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case R3: case S3: case D3: case Q3: return 3;
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case R4: case S4: case D4: case Q4: return 4;
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case R5: case S5: case D5: case Q5: return 5;
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case R6: case S6: case D6: case Q6: return 6;
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case R7: case S7: case D7: case Q7: return 7;
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case R8: case S8: case D8: case Q8: return 8;
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case R9: case S9: case D9: case Q9: return 9;
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case R10: case S10: case D10: case Q10: return 10;
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case R11: case S11: case D11: case Q11: return 11;
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case R12: case S12: case D12: case Q12: return 12;
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case SP: case S13: case D13: case Q13: return 13;
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case LR: case S14: case D14: case Q14: return 14;
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case PC: case S15: case D15: case Q15: return 15;
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case S16: case D16: return 16;
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case S17: case D17: return 17;
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case S18: case D18: return 18;
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case S19: case D19: return 19;
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case S20: case D20: return 20;
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case S21: case D21: return 21;
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case S22: case D22: return 22;
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case S23: case D23: return 23;
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case S24: case D24: return 24;
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case S25: case D25: return 25;
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case S26: case D26: return 26;
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case S27: case D27: return 27;
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2010-10-21 20:49:13 +00:00
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case S28: case D28: return 28;
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case S29: case D29: return 29;
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2010-10-21 20:49:13 +00:00
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case S30: case D30: return 30;
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2010-09-15 20:26:25 +00:00
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case S31: case D31: return 31;
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}
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}
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2010-09-15 19:26:06 +00:00
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2010-09-17 18:25:25 +00:00
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namespace ARMII {
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2011-03-31 23:26:08 +00:00
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/// ARM Index Modes
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enum IndexMode {
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IndexModeNone = 0,
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IndexModePre = 1,
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IndexModePost = 2,
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IndexModeUpd = 3
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};
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/// ARM Addressing Modes
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enum AddrMode {
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AddrModeNone = 0,
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AddrMode1 = 1,
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AddrMode2 = 2,
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AddrMode3 = 3,
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AddrMode4 = 4,
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AddrMode5 = 5,
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AddrMode6 = 6,
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AddrModeT1_1 = 7,
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AddrModeT1_2 = 8,
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AddrModeT1_4 = 9,
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AddrModeT1_s = 10, // i8 * 4 for pc and sp relative data
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AddrModeT2_i12 = 11,
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AddrModeT2_i8 = 12,
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AddrModeT2_so = 13,
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AddrModeT2_pc = 14, // +/- i12 for pc relative data
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AddrModeT2_i8s4 = 15, // i8 * 4
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AddrMode_i12 = 16
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};
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inline static const char *AddrModeToString(AddrMode addrmode) {
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switch (addrmode) {
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default: llvm_unreachable("Unknown memory operation");
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case AddrModeNone: return "AddrModeNone";
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case AddrMode1: return "AddrMode1";
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case AddrMode2: return "AddrMode2";
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case AddrMode3: return "AddrMode3";
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case AddrMode4: return "AddrMode4";
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case AddrMode5: return "AddrMode5";
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case AddrMode6: return "AddrMode6";
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case AddrModeT1_1: return "AddrModeT1_1";
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case AddrModeT1_2: return "AddrModeT1_2";
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case AddrModeT1_4: return "AddrModeT1_4";
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case AddrModeT1_s: return "AddrModeT1_s";
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case AddrModeT2_i12: return "AddrModeT2_i12";
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case AddrModeT2_i8: return "AddrModeT2_i8";
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case AddrModeT2_so: return "AddrModeT2_so";
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case AddrModeT2_pc: return "AddrModeT2_pc";
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case AddrModeT2_i8s4: return "AddrModeT2_i8s4";
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case AddrMode_i12: return "AddrMode_i12";
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}
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}
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2010-09-17 18:25:25 +00:00
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/// Target Operand Flag enum.
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enum TOF {
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//===------------------------------------------------------------------===//
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// ARM Specific MachineOperand flags.
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MO_NO_FLAG,
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/// MO_LO16 - On a symbol operand, this represents a relocation containing
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/// lower 16 bit of the address. Used only via movw instruction.
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MO_LO16,
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/// MO_HI16 - On a symbol operand, this represents a relocation containing
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/// higher 16 bit of the address. Used only via movt instruction.
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2010-09-22 23:27:36 +00:00
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MO_HI16,
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2011-01-21 18:55:51 +00:00
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/// MO_LO16_NONLAZY - On a symbol operand "FOO", this represents a
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/// relocation containing lower 16 bit of the non-lazy-ptr indirect symbol,
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/// i.e. "FOO$non_lazy_ptr".
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/// Used only via movw instruction.
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MO_LO16_NONLAZY,
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/// MO_HI16_NONLAZY - On a symbol operand "FOO", this represents a
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/// relocation containing lower 16 bit of the non-lazy-ptr indirect symbol,
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/// i.e. "FOO$non_lazy_ptr". Used only via movt instruction.
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MO_HI16_NONLAZY,
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2011-01-17 08:03:18 +00:00
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/// MO_LO16_NONLAZY_PIC - On a symbol operand "FOO", this represents a
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/// relocation containing lower 16 bit of the PC relative address of the
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/// non-lazy-ptr indirect symbol, i.e. "FOO$non_lazy_ptr - LABEL".
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/// Used only via movw instruction.
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MO_LO16_NONLAZY_PIC,
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/// MO_HI16_NONLAZY_PIC - On a symbol operand "FOO", this represents a
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/// relocation containing lower 16 bit of the PC relative address of the
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/// non-lazy-ptr indirect symbol, i.e. "FOO$non_lazy_ptr - LABEL".
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/// Used only via movt instruction.
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MO_HI16_NONLAZY_PIC,
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2010-09-22 23:27:36 +00:00
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/// MO_PLT - On a symbol operand, this represents an ELF PLT reference on a
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/// call operand.
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MO_PLT
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2010-09-17 18:25:25 +00:00
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};
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} // end namespace ARMII
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2010-09-15 20:26:25 +00:00
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} // end namespace llvm;
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2010-09-15 19:26:06 +00:00
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#endif
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