fix fatal bugs, ready to inspect value processing
This commit is contained in:
@ -1,7 +1,7 @@
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#include "tools.h"
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#include <iostream>
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#include <unordered_map>
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unsigned int global_clock=0;
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// RISC-V
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enum class Opcode : dark::max_size_t {
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ADD,
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@ -1,6 +1,6 @@
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#include "tools.h"
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#include <iostream>
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unsigned int global_clock=0;
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struct RegFile_Input {
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Wire <5> rs1_index; // Read
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Wire <5> rs2_index; // Read
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@ -23,6 +23,8 @@ struct ALU : public dark::Module<ALU_Input, ALU_Output> {
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// Constructor
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}
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void work() {
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std::cerr << "ALU: cur request_full_id=" << std::hex << std::setw(8) << std::setfill('0') << std::uppercase
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<< static_cast<max_size_t>(request_full_id) << std::endl;
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switch (static_cast<max_size_t>(request_full_id)) {
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case 0: {
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alu_status <= 0b01;
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@ -39,6 +41,7 @@ struct ALU : public dark::Module<ALU_Input, ALU_Output> {
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alu_status <= 0b10;
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result_ROB_index <= request_ROB_index;
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result <= imm;
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std::cerr << "lui: imm=" << std::hex << static_cast<max_size_t>(imm) << std::endl;
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completed_alu_resulting_PC <= static_cast<max_size_t>(request_PC) + 4;
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return;
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}
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@ -5,7 +5,7 @@
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#include <memory>
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#include <random>
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#include <vector>
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extern unsigned int global_clock;
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namespace dark {
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@ -64,12 +64,14 @@ public:
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auto func = shuffle ? &CPU::run_once_shuffle : &CPU::run_once;
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reset_signal=true;
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while (max_cycles == 0 || cycles < max_cycles) {
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std::cerr<<"clock: "<<std::dec<<global_clock<<std::endl;
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(this->*func)();
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reset_signal=false;
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uint32_t halt_signal_value = max_size_t(halt_signal);
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if(halt_signal_value &(1<<9)) {
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return halt_signal_value&0xff;
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}
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global_clock++;
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}
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return 255;
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}
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@ -1,6 +1,7 @@
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#pragma once
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#include <sys/types.h>
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#include <cstdint>
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#include <iostream>
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#include "concept.h"
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#ifndef CSU_H
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#include <array>
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@ -139,7 +140,8 @@ struct CentralScheduleUnit
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decoded_imm = static_cast<uint32_t>(decoded_imm) | 0xFFFFF000;
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}
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uint8_t funct3 = ins >> 12 & 0x7;
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uint8_t funct7 = ins >> 25 & 0x7F;
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uint8_t funct7 = 0;
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if (opcode == 0b0010011 && funct3 == 0b101) funct7 = ins >> 25 & 0x7F;
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full_ins_id = opcode | (funct3 << 7) | (((funct7 >> 5) & 1) << 10);
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decoded_shamt = ins >> 20 & 0x3F;
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} else if (opcode == 0b0100011) {
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@ -177,7 +179,7 @@ struct CentralScheduleUnit
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has_decoded_rs1 = 0;
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has_decoded_rs2 = 0;
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decoded_rd = ins >> 7 & 0x1F;
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decoded_imm = ins >> 12;
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decoded_imm = (ins >> 12) << 12;
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full_ins_id = opcode;
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} else if (opcode == 0b1101111) {
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// J-type
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@ -218,6 +220,7 @@ struct CentralScheduleUnit
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}
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has_instruction_issued_last_cycle <= 0;
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is_issuing <= 0;
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is_committing <= 0;
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return;
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}
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if (bool(force_clear_announcer)) {
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@ -233,17 +236,21 @@ struct CentralScheduleUnit
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has_predicted_PC <= 1;
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has_instruction_issued_last_cycle <= 0;
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is_issuing <= 0;
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is_committing <= 0;
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return;
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}
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// STEP1: try to commit and see if we need to rollback
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uint32_t ROB_next_remain_space = static_cast<max_size_t>(ROB_remain_space);
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bool has_committed = false;
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{
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uint32_t i = -1;
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for (auto &record : ROB_records) {
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++i;
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if (static_cast<max_size_t>(record.state) != 3) continue;
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uint32_t i = static_cast<max_size_t>(ROB_head);
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auto &record = ROB_records[i];
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if (static_cast<max_size_t>(record.state) == 3) {
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ROB_head <= (static_cast<max_size_t>(ROB_head) + 1) % kROBSize;
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std::cerr << "csu is committing instruct " << std::hex << std::setw(8) << std::setfill('0') << std::uppercase
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<< static_cast<max_size_t>(record.instruction) << std::endl;
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is_committing <= 1;
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has_committed = true;
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commit_has_resulting_register <= record.has_resulting_register;
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commit_reg_index <= record.resulting_register_idx;
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commit_reg_value <= record.resulting_register_value;
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@ -251,11 +258,15 @@ struct CentralScheduleUnit
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actual_PC <= static_cast<max_size_t>(record.resulting_PC);
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if (static_cast<max_size_t>(record.PC_mismatch_mark) == 1) {
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force_clear_announcer <= 1;
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std::cerr << "[warning] csu is announcing rolling back due to PC mismatch" << std::endl;
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}
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ROB_next_remain_space++;
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break;
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if (record.instruction == 0x0ff00513) {
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halt_signal <= 0b100000000;
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}
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}
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}
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if (!has_committed) is_committing <= 0;
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if (force_clear_announcer.peek()) {
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ROB_remain_space <= ROB_next_remain_space;
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return;
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@ -311,6 +322,9 @@ struct CentralScheduleUnit
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static_cast<max_size_t>(has_instruction_issued_last_cycle);
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if (ROB_next_remain_space > 0 && actual_remain_space > 0) {
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// can issue
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std::cerr << "csu is issuing mem instruct " << std::hex << std::setw(8) << std::setfill('0') << std::uppercase
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<< instruction << " full_ins_id= " << std::hex << std::setw(8) << std::setfill('0')
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<< std::uppercase << full_ins_id << std::endl;
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is_issuing <= 1;
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has_instruction_issued_last_cycle <= 1;
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uint32_t tail = static_cast<max_size_t>(ROB_tail);
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@ -347,6 +361,9 @@ struct CentralScheduleUnit
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static_cast<max_size_t>(has_instruction_issued_last_cycle);
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if (ROB_next_remain_space > 0 && actual_remain_space > 0) {
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// can issue
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std::cerr << "csu is issuing alu instruct " << std::hex << std::setw(8) << std::setfill('0') << std::uppercase
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<< instruction << " full_ins_id= " << std::hex << std::setw(8) << std::setfill('0')
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<< std::uppercase << full_ins_id << std::endl;
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is_issuing <= 1;
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has_instruction_issued_last_cycle <= 1;
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uint32_t tail = static_cast<max_size_t>(ROB_tail);
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@ -366,6 +383,7 @@ struct CentralScheduleUnit
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break;
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case 0b1100111:
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// jalr
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std::cerr<<"encounter jalr"<<std::endl;
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ROB_records[tail].resulting_PC_ready <= 0;
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has_predicted_PC <= 0;
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break;
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@ -383,7 +401,11 @@ struct CentralScheduleUnit
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ROB_records[tail].PC_mismatch_mark <= 0;
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this->issue_type <= 0;
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this->issue_ROB_index <= tail;
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this->full_ins_id <= full_ins_id;
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if (instruction == 0x0ff00513) {
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this->full_ins_id <= 1;
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has_predicted_PC <= 0;
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} else
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this->full_ins_id <= full_ins_id;
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this->full_ins <= instruction;
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this->issuing_PC <= static_cast<max_size_t>(predicted_PC);
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this->decoded_rd <= decoded_rd;
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@ -431,6 +453,11 @@ struct CentralScheduleUnit
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}
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// other data
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ROB_remain_space <= ROB_next_remain_space;
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for (auto &record : ROB_records) {
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if (static_cast<max_size_t>(record.state) == 1) {
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record.state <= 2;
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}
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}
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}
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};
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} // namespace ZYM
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@ -43,7 +43,8 @@ struct assert {
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std::cerr << "Message: ";
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((std::cerr << args), ...) << std::endl;
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}
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std::exit(EXIT_FAILURE);
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// std::exit(EXIT_FAILURE);
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throw std::runtime_error("Assertion failed");
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}
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#else
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explicit assert(_Tp &&, _Args &&...) {}
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@ -197,7 +197,7 @@ struct LoadStoreQueue : public dark::Module<LoadStoreQueue_Input, LoadStoreQueue
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static_cast<max_size_t>(completed_memins_read_data));
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}
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// if (static_cast<max_size_t>(cache_hit) == 1) {
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// process_listend_data(static_cast<max_size_t>(cache_hit_ROB_index), static_cast<max_size_t>(cache_hit_data));
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// process_listend_data(static_cast<max_size_t>(cache_hit_ROB_index), static_cast<max_size_t>(cache_hit_data));
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// }
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if (should_monitor_V1) {
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LSQ_queue[last_idx].D1 <= 0;
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@ -211,15 +211,14 @@ struct LoadStoreQueue : public dark::Module<LoadStoreQueue_Input, LoadStoreQueue
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// other data
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if (bool(has_accepted_ins_last_cycle)) LSQ_queue[last_idx].state <= 2;
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bool can_execute = false;
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if (static_cast<uint32_t>(mem_data_sign) > 0) {
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if (static_cast<uint32_t>(mem_data_sign) > 0 && static_cast<max_size_t>(request_type_output) == 0) {
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if (static_cast<uint32_t>(LSQ_head) != static_cast<uint32_t>(LSQ_tail)) {
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uint32_t head = static_cast<uint32_t>(LSQ_head);
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if (LSQ_queue[head].state.peek() == 2) {
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if (((LSQ_queue[head].E1.peek() == 0) ||
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(LSQ_queue[head].E1.peek() == 1 && LSQ_queue[head].D1.peek() == 1)) &&
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((LSQ_queue[head].E2.peek() == 0) ||
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(LSQ_queue[head].E2.peek() == 1 && LSQ_queue[head].D2.peek() == 1))) {
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if (LSQ_queue[head].state == 2) {
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if (((LSQ_queue[head].E1 == 0) || (LSQ_queue[head].E1 == 1 && LSQ_queue[head].D1 == 1)) &&
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((LSQ_queue[head].E2 == 0) || (LSQ_queue[head].E2 == 1 && LSQ_queue[head].D2 == 1))) {
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// now we can execute the instruction
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std::cerr << "Load Store queue is executing instruction" << std::endl;
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next_remain_space--;
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can_execute = true;
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LSQ_head <= (head + 1) % 32;
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@ -218,7 +218,7 @@ struct Memory : dark::Module<Memory_Input, Memory_Output, Memory_Private> {
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int addr, tmp;
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std::vector<uint8_t> buf;
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fin >> addr;
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DEBUG_CERR << "begin:" << std::hex << addr << std::endl;
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// DEBUG_CERR << "begin:" << std::hex << addr << std::endl;
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while (fin >> tmp) {
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buf.push_back(tmp);
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}
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@ -227,8 +227,8 @@ struct Memory : dark::Module<Memory_Input, Memory_Output, Memory_Private> {
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}
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for (int i = 0; i < buf.size(); i++) {
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memory_data[addr + i] = buf[i];
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DEBUG_CERR << std::hex << addr + i << ' ' << std::uppercase << std::setw(2) << std::setfill('0') << std::hex
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<< (int)buf[i] << std::endl;
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// DEBUG_CERR << std::hex << addr + i << ' ' << std::uppercase << std::setw(2) << std::setfill('0') << std::hex
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// << (int)buf[i] << std::endl;
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}
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fin.clear();
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} while (!fin.eof());
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@ -212,18 +212,18 @@ struct ReserveStation : public dark::Module<ReserveStation_Input, ReserveStation
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if (bool(has_accepted_ins_last_cycle)) RS_records[last_idx].state <= 2;
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bool can_execute = false;
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for (int i = 0; i < 32; i++) {
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if (RS_records[last_idx].state.peek() != 2) continue;
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if (RS_records[last_idx].E1.peek() == 1 && RS_records[last_idx].D1.peek() == 0) continue;
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if (RS_records[last_idx].E2.peek() == 1 && RS_records[last_idx].D2.peek() == 0) continue;
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if (RS_records[i].state != 2) continue;
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if (RS_records[i].E1 == 1 && RS_records[i].D1 == 0) continue;
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if (RS_records[i].E2 == 1 && RS_records[i].D2 == 0) continue;
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can_execute = true;
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request_full_id <= RS_records[last_idx].full_ins_id;
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operand1 <= RS_records[last_idx].V1;
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operand2 <= RS_records[last_idx].V2;
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op_imm <= RS_records[last_idx].ins_imm;
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op_shamt <= RS_records[last_idx].ins_shamt;
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alu_ins_PC <= RS_records[last_idx].ins_self_PC;
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request_ROB_index <= RS_records[last_idx].ins_ROB_index;
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RS_records[last_idx].state <= 0;
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request_full_id <= RS_records[i].full_ins_id;
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operand1 <= RS_records[i].V1;
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operand2 <= RS_records[i].V2;
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op_imm <= RS_records[i].ins_imm;
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op_shamt <= RS_records[i].ins_shamt;
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alu_ins_PC <= RS_records[i].ins_self_PC;
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request_ROB_index <= RS_records[i].ins_ROB_index;
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RS_records[i].state <= 0;
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next_remain_space++;
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break;
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}
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@ -7,8 +7,10 @@
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#include "wire.h"
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#include "module.h"
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#include "cpu.h"
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#include<iostream>
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#include<iomanip>
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extern unsigned int global_clock;
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using dark::Bit;
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using dark::sign_extend;
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using dark::zero_extend;
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@ -6,6 +6,7 @@
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#include "registerfile.h"
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#include "reservestation.h"
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#include "tools.h"
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unsigned int global_clock = 0;
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template <std::size_t N>
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inline static void RWConnect(dark::Register<N> &src, dark::Wire<N> &dest) {
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dest.assign([&]() -> auto & { return src; });
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@ -168,6 +169,6 @@ int main(int argc, char **argv) {
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RWConnect(rf.rs2_deps, rs.rs2_deps);
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RWConnect(rf.rs2_value, rs.rs2_value);
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// now start running
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std::cout << cpu.run(0, true) << std::endl;
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std::cout << cpu.run(100, false) << std::endl;
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return 0;
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}
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