Coverage Report

Created: 2025-07-11 06:32

/src/capstonenext/MCInst.c
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Source (jump to first uncovered line)
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/* Capstone Disassembly Engine */
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/* By Nguyen Anh Quynh <aquynh@gmail.com>, 2013-2019 */
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#if defined(CAPSTONE_HAS_OSXKERNEL)
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#include <Availability.h>
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#include <libkern/libkern.h>
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#else
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#include <stdio.h>
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#include <stdlib.h>
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#endif
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#include <string.h>
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#include <assert.h>
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#include "MCInstrDesc.h"
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#include "MCInst.h"
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#include "utils.h"
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3.21M
#define MCINST_CACHE (ARR_SIZE(mcInst->Operands) - 1)
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void MCInst_Init(MCInst *inst, cs_arch arch)
20
3.27M
{
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3.27M
  memset(inst, 0, sizeof(MCInst));
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  // unnecessary to initialize in loop . its expensive and inst->size should be honored
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3.27M
  inst->Operands[0].Kind = kInvalid;
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3.27M
  inst->Operands[0].ImmVal = 0;
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3.27M
  inst->Opcode = 0;
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3.27M
  inst->OpcodePub = 0;
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3.27M
  inst->size = 0;
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3.27M
  inst->has_imm = false;
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3.27M
  inst->op1_size = 0;
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3.27M
  inst->ac_idx = 0;
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3.27M
  inst->popcode_adjust = 0;
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3.27M
  inst->assembly[0] = '\0';
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3.27M
  inst->wasm_data.type = WASM_OP_INVALID;
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3.27M
  inst->xAcquireRelease = 0;
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160M
  for (int i = 0; i < MAX_MC_OPS; ++i)
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156M
    inst->tied_op_idx[i] = -1;
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3.27M
  inst->isAliasInstr = false;
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3.27M
  inst->fillDetailOps = false;
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3.27M
  memset(&inst->hppa_ext, 0, sizeof(inst->hppa_ext));
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  // Set default assembly dialect.
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3.27M
  switch (arch) {
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3.13M
  default:
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3.13M
    break;
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3.13M
  case CS_ARCH_SYSTEMZ:
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131k
    inst->MAI.assemblerDialect = SYSTEMZASMDIALECT_AD_HLASM;
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131k
    break;
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3.27M
  }
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3.27M
}
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void MCInst_clear(MCInst *inst)
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6.59M
{
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6.59M
  inst->size = 0;
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6.59M
}
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// does not free @Op
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void MCInst_insert0(MCInst *inst, int index, MCOperand *Op)
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2.04M
{
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2.04M
  CS_ASSERT_RET(index < MAX_MC_OPS);
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2.04M
  int i;
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3.59M
  for(i = inst->size; i > index; i--)
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    //memcpy(&(inst->Operands[i]), &(inst->Operands[i-1]), sizeof(MCOperand));
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1.55M
    inst->Operands[i] = inst->Operands[i-1];
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2.04M
  inst->Operands[index] = *Op;
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2.04M
  inst->size++;
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2.04M
}
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void MCInst_setOpcode(MCInst *inst, unsigned Op)
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6.12M
{
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6.12M
  inst->Opcode = Op;
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6.12M
}
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void MCInst_setOpcodePub(MCInst *inst, unsigned Op)
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206k
{
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206k
  inst->OpcodePub = Op;
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206k
}
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unsigned MCInst_getOpcode(const MCInst *inst)
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48.0M
{
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48.0M
  return inst->Opcode;
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48.0M
}
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unsigned MCInst_getOpcodePub(const MCInst *inst)
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6.34M
{
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6.34M
  return inst->OpcodePub;
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6.34M
}
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MCOperand *MCInst_getOperand(MCInst *inst, unsigned i)
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34.2M
{
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34.2M
  assert(i < MAX_MC_OPS);
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34.2M
  return &inst->Operands[i];
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34.2M
}
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unsigned MCInst_getNumOperands(const MCInst *inst)
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13.3M
{
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13.3M
  return inst->size;
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13.3M
}
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// This addOperand2 function doesn't free Op
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void MCInst_addOperand2(MCInst *inst, MCOperand *Op)
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1.21k
{
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1.21k
  CS_ASSERT_RET(inst->size < MAX_MC_OPS);
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1.21k
  inst->Operands[inst->size] = *Op;
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1.21k
  inst->size++;
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1.21k
}
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bool MCOperand_isValid(const MCOperand *op)
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0
{
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0
  return op->Kind != kInvalid;
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0
}
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bool MCOperand_isReg(const MCOperand *op)
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11.2M
{
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11.2M
  return op->Kind == kRegister || op->MachineOperandType == kRegister;
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11.2M
}
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bool MCOperand_isImm(const MCOperand *op)
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3.34M
{
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3.34M
  return op->Kind == kImmediate || op->MachineOperandType == kImmediate;
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3.34M
}
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bool MCOperand_isFPImm(const MCOperand *op)
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1.85k
{
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1.85k
  return op->Kind == kFPImmediate;
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1.85k
}
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bool MCOperand_isDFPImm(const MCOperand *op)
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1.39k
{
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1.39k
  return op->Kind == kDFPImmediate;
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1.39k
}
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bool MCOperand_isExpr(const MCOperand *op)
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146k
{
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146k
  return op->Kind == kExpr;
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146k
}
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bool MCOperand_isInst(const MCOperand *op)
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0
{
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0
  return op->Kind == kInst;
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0
}
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/// getReg - Returns the register number.
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unsigned MCOperand_getReg(const MCOperand *op)
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21.7M
{
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21.7M
  return op->RegVal;
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21.7M
}
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/// setReg - Set the register number.
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void MCOperand_setReg(MCOperand *op, unsigned Reg)
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29.5k
{
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29.5k
  op->RegVal = Reg;
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29.5k
}
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int64_t MCOperand_getImm(const MCOperand *op)
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11.5M
{
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11.5M
  return op->ImmVal;
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11.5M
}
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int64_t MCOperand_getExpr(const MCOperand *op)
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0
{
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0
  return op->ImmVal;
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0
}
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void MCOperand_setImm(MCOperand *op, int64_t Val)
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38.4k
{
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38.4k
  op->ImmVal = Val;
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38.4k
}
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double MCOperand_getFPImm(const MCOperand *op)
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0
{
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0
  return op->FPImmVal;
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0
}
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void MCOperand_setFPImm(MCOperand *op, double Val)
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0
{
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0
  op->FPImmVal = Val;
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0
}
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MCOperand *MCOperand_CreateReg1(MCInst *mcInst, unsigned Reg)
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1.84M
{
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1.84M
  MCOperand *op = &(mcInst->Operands[MCINST_CACHE]);
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1.84M
  op->MachineOperandType = kRegister;
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1.84M
  op->Kind = kRegister;
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1.84M
  op->RegVal = Reg;
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1.84M
  return op;
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1.84M
}
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void MCOperand_CreateReg0(MCInst *mcInst, unsigned Reg)
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11.9M
{
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11.9M
  MCOperand *op = &(mcInst->Operands[mcInst->size]);
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11.9M
  mcInst->size++;
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11.9M
  op->MachineOperandType = kRegister;
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11.9M
  op->Kind = kRegister;
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11.9M
  op->RegVal = Reg;
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11.9M
}
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MCOperand *MCOperand_CreateImm1(MCInst *mcInst, int64_t Val)
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1.37M
{
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1.37M
  MCOperand *op = &(mcInst->Operands[MCINST_CACHE]);
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1.37M
  op->MachineOperandType = kImmediate;
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1.37M
  op->Kind = kImmediate;
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1.37M
  op->ImmVal = Val;
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1.37M
  return op;
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1.37M
}
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void MCOperand_CreateImm0(MCInst *mcInst, int64_t Val)
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5.45M
{
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5.45M
  assert(mcInst->size < MAX_MC_OPS);
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5.45M
  MCOperand *op = &(mcInst->Operands[mcInst->size]);
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5.45M
  mcInst->size++;
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5.45M
  op->MachineOperandType = kImmediate;
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5.45M
  op->Kind = kImmediate;
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5.45M
  op->ImmVal = Val;
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5.45M
}
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/// Check if any operand of the MCInstrDesc is predicable
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bool MCInst_isPredicable(const MCInstrDesc *MIDesc)
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1.02M
{
229
1.02M
  const MCOperandInfo *OpInfo = MIDesc->OpInfo;
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1.02M
  unsigned NumOps = MIDesc->NumOperands;
231
4.49M
  for (unsigned i = 0; i < NumOps; ++i) {
232
4.42M
    if (MCOperandInfo_isPredicate(&OpInfo[i])) {
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955k
      return true;
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955k
    }
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4.42M
  }
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66.0k
  return false;
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1.02M
}
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/// Checks if tied operands exist in the instruction and sets
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/// - The writeback flag in detail
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/// - Saves the indices of the tied destination operands.
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void MCInst_handleWriteback(MCInst *MI, const MCInstrDesc *InstDescTable, unsigned tbl_size)
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1.45M
{
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1.45M
  const MCInstrDesc *InstDesc = NULL;
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1.45M
  const MCOperandInfo *OpInfo = NULL;
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1.45M
  unsigned short NumOps = 0;
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1.45M
  InstDesc = MCInstrDesc_get(MCInst_getOpcode(MI), InstDescTable, tbl_size);
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1.45M
  OpInfo = InstDesc->OpInfo;
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1.45M
  NumOps = InstDesc->NumOperands;
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8.33M
  for (unsigned i = 0; i < NumOps; ++i) {
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6.88M
    if (MCOperandInfo_isTiedToOp(&OpInfo[i])) {
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341k
      int idx = MCOperandInfo_getOperandConstraint(
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341k
        InstDesc, i,
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341k
        MCOI_TIED_TO);
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341k
      if (idx == -1)
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0
        continue;
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341k
      if (i >= MAX_MC_OPS) {
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0
        assert(0 &&
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0
               "Maximum number of MC operands reached.");
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0
      }
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341k
      MI->tied_op_idx[i] = idx;
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341k
      if (MI->flat_insn->detail)
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341k
        MI->flat_insn->detail->writeback = true;
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341k
    }
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6.88M
  }
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1.45M
}
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/// Check if operand with OpNum is tied by another operand
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/// (operand is tying destination).
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bool MCInst_opIsTied(const MCInst *MI, unsigned OpNum)
275
5.79M
{
276
5.79M
  assert(OpNum < MAX_MC_OPS && "Maximum number of MC operands exceeded.");
277
273M
  for (int i = 0; i < MAX_MC_OPS; ++i) {
278
267M
    if (MI->tied_op_idx[i] == OpNum)
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236k
      return true;
280
267M
  }
281
5.56M
  return false;
282
5.79M
}
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/// Check if operand with OpNum is tying another operand
285
/// (operand is tying src).
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bool MCInst_opIsTying(const MCInst *MI, unsigned OpNum)
287
5.77M
{
288
5.77M
  assert(OpNum < MAX_MC_OPS && "Maximum number of MC operands exceeded.");
289
5.77M
  return MI->tied_op_idx[OpNum] != -1;
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5.77M
}
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292
/// Returns the value of the @MCInst operand at index @OpNum.
293
uint64_t MCInst_getOpVal(MCInst *MI, unsigned OpNum)
294
5.53M
{
295
5.53M
  assert(OpNum < MAX_MC_OPS);
296
5.53M
  MCOperand *op = MCInst_getOperand(MI, OpNum);
297
5.53M
  if (MCOperand_isReg(op))
298
3.92M
    return MCOperand_getReg(op);
299
1.61M
  else if (MCOperand_isImm(op))
300
1.61M
    return MCOperand_getImm(op);
301
0
  else
302
0
    assert(0 && "Operand type not handled in this getter.");
303
0
  return MCOperand_getImm(op);
304
5.53M
}
305
306
1.53M
void MCInst_setIsAlias(MCInst *MI, bool Flag) {
307
1.53M
  assert(MI);
308
1.53M
  MI->isAliasInstr = Flag;
309
1.53M
  MI->flat_insn->is_alias = Flag;
310
1.53M
}
311
312
/// @brief Copies the relevant members of a temporary MCInst to
313
/// the main MCInst. This is used if TryDecode was run on a temporary MCInst.
314
/// @param MI The main MCInst
315
/// @param TmpMI The temporary MCInst.
316
0
void MCInst_updateWithTmpMI(MCInst *MI, MCInst *TmpMI) {
317
0
  MI->size = TmpMI->size;
318
0
  MI->Opcode = TmpMI->Opcode;
319
0
  assert(MI->size < MAX_MC_OPS);
320
0
  memcpy(MI->Operands, TmpMI->Operands, sizeof(MI->Operands[0]) * MI->size);
321
0
}
322
323
/// @brief Sets the softfail/illegal flag in the cs_insn.
324
/// Setting it indicates the instruction can be decoded, but is invalid
325
/// due to not allowed operands or an illegal context.
326
///
327
/// @param MI The MCInst holding the cs_insn currently decoded.
328
108k
void MCInst_setSoftFail(MCInst *MI) {
329
108k
  assert(MI && MI->flat_insn);
330
108k
  MI->flat_insn->illegal = true;
331
108k
}