mirror of
https://github.com/RetroDECK/Supermodel.git
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191 lines
4.8 KiB
C++
191 lines
4.8 KiB
C++
/**
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** Supermodel
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** A Sega Model 3 Arcade Emulator.
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** Copyright 2011 Bart Trzynadlowski, Nik Henson
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**
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** This file is part of Supermodel.
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**
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** Supermodel is free software: you can redistribute it and/or modify it under
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** the terms of the GNU General Public License as published by the Free
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** Software Foundation, either version 3 of the License, or (at your option)
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** any later version.
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**
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** Supermodel is distributed in the hope that it will be useful, but WITHOUT
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** ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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** FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
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** more details.
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**
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** You should have received a copy of the GNU General Public License along
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** with Supermodel. If not, see <http://www.gnu.org/licenses/>.
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**/
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/*
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* IO.cpp
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*/
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#ifdef SUPERMODEL_DEBUGGER
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#include "CPUDebug.h"
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#include "IO.h"
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#include "Watch.h"
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namespace Debugger
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{
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CIO::CIO(CCPUDebug *ioCPU, const char *ioName, const char *ioGroup, unsigned ioDataSize) :
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cpu(ioCPU), name(ioName), group(ioGroup), dataSize(ioDataSize),
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watch(NULL), inCount(0), outCount(0), lastIn(0), lastOut(0), last(&lastIn)
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{
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//
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}
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bool CIO::CheckInput(UINT64 data)
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{
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inCount++;
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RecordInput(data);
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// Check watch, if any
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return watch != NULL && watch->CheckInput(this, data);
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}
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bool CIO::CheckOutput(UINT64 data)
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{
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outCount++;
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RecordOutput(data);
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// Check watch, if any
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return watch != NULL && watch->CheckOutput(this, data);
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}
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CSimpleWatch *CIO::AddSimpleWatch(bool trigInput, bool trigOutput)
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{
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CSimpleWatch *sWatch = new CSimpleWatch(cpu, this, trigInput, trigOutput);
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cpu->AddWatch(sWatch);
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return sWatch;
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}
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CCountWatch *CIO::AddCountWatch(bool trigInput, bool trigOutput, unsigned count)
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{
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CCountWatch *cWatch = new CCountWatch(cpu, this, trigInput, trigOutput, count);
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cpu->AddWatch(cWatch);
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return cWatch;
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}
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CMatchWatch *CIO::AddMatchWatch(bool trigInput, bool trigOutput, vector<UINT64> &dataSeq)
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{
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CMatchWatch *mWatch = new CMatchWatch(cpu, this, trigInput, trigOutput, dataSeq);
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cpu->AddWatch(mWatch);
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return mWatch;
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}
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CPrintWatch *CIO::AddPrintWatch(bool trigInput, bool trigOutput)
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{
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CPrintWatch *pWatch = new CPrintWatch(cpu, this, trigInput, trigOutput);
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cpu->AddWatch(pWatch);
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return pWatch;
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}
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CCaptureWatch *CIO::AddCaptureWatch(bool trigInput, bool trigOutput, unsigned maxLen)
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{
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CCaptureWatch *cWatch = new CCaptureWatch(cpu, this, trigInput, trigOutput, maxLen);
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cpu->AddWatch(cWatch);
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return cWatch;
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}
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bool CIO::RemoveWatch()
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{
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return watch != NULL && cpu->RemoveWatch(watch);
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}
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CPortIO::CPortIO(CCPUDebug *ioCPU, const char *ioName, const char *ioGroup, unsigned ioDataSize, UINT16 ioPortNum) :
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CIO(ioCPU, ioName, ioGroup, ioDataSize), portNum(ioPortNum), label(NULL)
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{
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//
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}
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void CPortIO::AddLabel(const char *pLabel)
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{
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strncpy(labelStr, pLabel, MAX_LABEL_LENGTH);
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labelStr[MAX_LABEL_LENGTH] = '\0';
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label = labelStr;
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}
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void CPortIO::RemoveLabel()
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{
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label = NULL;
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}
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void CPortIO::GetLocation(char *str)
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{
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if (name != NULL)
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strcpy(str, name);
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else
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sprintf(str, "port %u", portNum);
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}
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UINT64 CPortIO::Read()
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{
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UINT64 data = cpu->ReadPort(portNum);
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RecordInput(data);
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return data;
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}
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bool CPortIO::Write(UINT64 data)
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{
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if (!cpu->WritePort(portNum, data))
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return false;
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RecordOutput(data);
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return true;
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}
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CMappedIO::CMappedIO(CCPUDebug *ioCPU, const char *ioName, const char *ioGroup, unsigned ioDataSize, UINT32 ioAddr) :
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CIO(ioCPU, ioName, ioGroup, ioDataSize), CAddressRef(ioCPU, ioAddr, ioDataSize)
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{
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//
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}
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bool CMappedIO::CheckInput(UINT32 cAddr, unsigned cDataSize, UINT64 data)
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{
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// Take care with input that was not aligned with mapped I/O address and size
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UINT64 sData = CDebugger::GetSlottedData(cAddr, cDataSize, data, addr, dataSize);
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return CIO::CheckInput(sData);
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}
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bool CMappedIO::CheckOutput(UINT32 cAddr, unsigned cDataSize, UINT64 data)
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{
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// Take care with output that was not aligned with mapped I/O address and size
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UINT64 sData = CDebugger::GetSlottedData(cAddr, cDataSize, data, addr, dataSize);
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return CIO::CheckOutput(sData);
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}
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void CMappedIO::AddLabel(const char *label)
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{
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CIO::cpu->AddLabel(addr, label);
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}
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void CMappedIO::RemoveLabel()
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{
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CIO::cpu->RemoveLabel(addr);
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}
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void CMappedIO::GetLocation(char *str)
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{
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CIO::cpu->FormatAddress(str, addr);
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}
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UINT64 CMappedIO::Read()
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{
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UINT64 data = CIO::cpu->ReadMem(addr, dataSize);
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RecordInput(data);
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return data;
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}
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bool CMappedIO::Write(UINT64 data)
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{
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if (!CIO::cpu->WriteMem(addr, dataSize, data))
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return false;
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RecordOutput(data);
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return true;
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}
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}
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#endif // SUPERMODEL_DEBUGGER
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