ETISS 0.8.0
Extendable Translating Instruction Set Simulator (version 0.8.0)
Variables
RV32IMACFD_ZifenceiInstr.cpp File Reference
#include "RV32IMACFDArch.h"
#include "RV32IMACFDFuncs.h"
Include dependency graph for RV32IMACFD_ZifenceiInstr.cpp:

Go to the source code of this file.

Variables

static InstructionDefinition fence_i_rd_rs1_imm (ISA32_RV32IMACFD, "fence_i",(uint32_t) 0x00100f,(uint32_t) 0x00707f, [](BitArray &ba, etiss::CodeSet &cs, InstructionContext &ic) { etiss_uint8 rd=0;static BitArrayRange R_rd_0(11, 7);rd+=R_rd_0.read(ba)<< 0;etiss_uint8 rs1=0;static BitArrayRange R_rs1_0(19, 15);rs1+=R_rs1_0.read(ba)<< 0;etiss_uint16 imm=0;static BitArrayRange R_imm_0(31, 20);imm+=R_imm_0.read(ba)<< 0;{ CodePart &cp=cs.append(CodePart::INITIALREQUIRED);cp.code()=std::string("//FENCE_I\n");cp.code()+="cpu->exception = ETISS_RETURNCODE_RELOADBLOCKS;\n";{ cp.code()+="{ // block\n";cp.code()+="cpu->nextPc = "+std::to_string(ic.current_address_+4)+"ULL;\n";cp.code()+="} // block\n";} cp.code()+="((RV32IMACFD*)cpu)->FENCE[1ULL] = "+std::to_string(imm)+"ULL;\n";cp.code()+="instr_exit_"+std::to_string(ic.current_address_)+":\n";cp.code()+="cpu->instructionPointer = cpu->nextPc;\n";cp.getAffectedRegisters().add("instructionPointer", 32);} { CodePart &cp=cs.append(CodePart::APPENDEDRETURNINGREQUIRED);cp.code()=std::string("//FENCE_I\n");cp.code()+="return cpu->exception;\n";} return true;}, 0, [](BitArray &ba, Instruction &instr) { etiss_uint8 rd=0;static BitArrayRange R_rd_0(11, 7);rd+=R_rd_0.read(ba)<< 0;etiss_uint8 rs1=0;static BitArrayRange R_rs1_0(19, 15);rs1+=R_rs1_0.read(ba)<< 0;etiss_uint16 imm=0;static BitArrayRange R_imm_0(31, 20);imm+=R_imm_0.read(ba)<< 0;std::stringstream ss;ss<< "fence_i"<< " # "<< ba<<(" [rd="+std::to_string(rd)+" | rs1="+std::to_string(rs1)+" | imm="+std::to_string(imm)+"]");return ss.str();})
 

Variable Documentation

◆ fence_i_rd_rs1_imm

InstructionDefinition fence_i_rd_rs1_imm(ISA32_RV32IMACFD, "fence_i",(uint32_t) 0x00100f,(uint32_t) 0x00707f,[](BitArray &ba, etiss::CodeSet &cs, InstructionContext &ic) { etiss_uint8 rd=0;static BitArrayRange R_rd_0(11, 7);rd+=R_rd_0.read(ba)<< 0;etiss_uint8 rs1=0;static BitArrayRange R_rs1_0(19, 15);rs1+=R_rs1_0.read(ba)<< 0;etiss_uint16 imm=0;static BitArrayRange R_imm_0(31, 20);imm+=R_imm_0.read(ba)<< 0; { CodePart &cp=cs.append(CodePart::INITIALREQUIRED);cp.code()=std::string("//FENCE_I\n"); cp.code()+="cpu->exception = ETISS_RETURNCODE_RELOADBLOCKS;\n";{ cp.code()+="{ // block\n";cp.code()+="cpu->nextPc = "+std::to_string(ic.current_address_+4)+"ULL;\n";cp.code()+="} // block\n";} cp.code()+="((RV32IMACFD*)cpu)->FENCE[1ULL] = "+std::to_string(imm)+"ULL;\n";cp.code()+="instr_exit_"+std::to_string(ic.current_address_)+":\n";cp.code()+="cpu->instructionPointer = cpu->nextPc;\n"; cp.getAffectedRegisters().add("instructionPointer", 32);} { CodePart &cp=cs.append(CodePart::APPENDEDRETURNINGREQUIRED);cp.code()=std::string("//FENCE_I\n"); cp.code()+="return cpu->exception;\n"; } return true;}, 0,[](BitArray &ba, Instruction &instr) { etiss_uint8 rd=0;static BitArrayRange R_rd_0(11, 7);rd+=R_rd_0.read(ba)<< 0;etiss_uint8 rs1=0;static BitArrayRange R_rs1_0(19, 15);rs1+=R_rs1_0.read(ba)<< 0;etiss_uint16 imm=0;static BitArrayRange R_imm_0(31, 20);imm+=R_imm_0.read(ba)<< 0; std::stringstream ss; ss<< "fence_i"<< " # "<< ba<<(" [rd="+std::to_string(rd)+" | rs1="+std::to_string(rs1)+" | imm="+std::to_string(imm)+"]"); return ss.str();}) ( ISA32_RV32IMACFD  ,
"fence_i"  ,
(uint32_t 0x00100f,
(uint32_t 0x00707f,
[] (BitArray &ba, etiss::CodeSet &cs, InstructionContext &ic) { etiss_uint8 rd=0;static BitArrayRange R_rd_0(11, 7);rd+=R_rd_0.read(ba)<< 0;etiss_uint8 rs1=0;static BitArrayRange R_rs1_0(19, 15);rs1+=R_rs1_0.read(ba)<< 0;etiss_uint16 imm=0;static BitArrayRange R_imm_0(31, 20);imm+=R_imm_0.read(ba)<< 0;{ CodePart &cp=cs.append(CodePart::INITIALREQUIRED);cp.code()=std::string("//FENCE_I\n");cp.code()+="cpu->exception = ETISS_RETURNCODE_RELOADBLOCKS;\n";{ cp.code()+="{ // block\n";cp.code()+="cpu->nextPc = "+std::to_string(ic.current_address_+4)+"ULL;\n";cp.code()+="} // block\n";} cp.code()+="((RV32IMACFD*)cpu)->FENCE[1ULL] = "+std::to_string(imm)+"ULL;\n";cp.code()+="instr_exit_"+std::to_string(ic.current_address_)+":\n";cp.code()+="cpu->instructionPointer = cpu->nextPc;\n";cp.getAffectedRegisters().add("instructionPointer", 32);} { CodePart &cp=cs.append(CodePart::APPENDEDRETURNINGREQUIRED);cp.code()=std::string("//FENCE_I\n");cp.code()+="return cpu->exception;\n";} return true;}  ,
,
[] (BitArray &ba, Instruction &instr) { etiss_uint8 rd=0;static BitArrayRange R_rd_0(11, 7);rd+=R_rd_0.read(ba)<< 0;etiss_uint8 rs1=0;static BitArrayRange R_rs1_0(19, 15);rs1+=R_rs1_0.read(ba)<< 0;etiss_uint16 imm=0;static BitArrayRange R_imm_0(31, 20);imm+=R_imm_0.read(ba)<< 0;std::stringstream ss;ss<< "fence_i"<< " # "<< ba<<(" [rd="+std::to_string(rd)+" | rs1="+std::to_string(rs1)+" | imm="+std::to_string(imm)+"]");return ss.str();}   
)
static