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Add a functionless PIC.
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@ -24,6 +24,9 @@
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namespace PCCompatible {
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namespace PCCompatible {
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class PIC {
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};
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class i8255PortHandler : public Intel::i8255::PortHandler {
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class i8255PortHandler : public Intel::i8255::PortHandler {
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// Likely to be helpful: https://github.com/tmk/tmk_keyboard/wiki/IBM-PC-XT-Keyboard-Protocol
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// Likely to be helpful: https://github.com/tmk/tmk_keyboard/wiki/IBM-PC-XT-Keyboard-Protocol
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public:
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public:
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@ -566,7 +569,7 @@ struct Memory {
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class IO {
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class IO {
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public:
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public:
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IO(PIT<false> &pit, DMA &dma, PPI &ppi) : pit_(pit), dma_(dma), ppi_(ppi) {}
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IO(PIT<false> &pit, DMA &dma, PPI &ppi, PIC &pic) : pit_(pit), dma_(dma), ppi_(ppi), pic_(pic) {}
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template <typename IntT> void out(uint16_t port, IntT value) {
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template <typename IntT> void out(uint16_t port, IntT value) {
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switch(port) {
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switch(port) {
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@ -673,6 +676,7 @@ class IO {
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PIT<false> &pit_;
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PIT<false> &pit_;
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DMA &dma_;
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DMA &dma_;
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PPI &ppi_;
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PPI &ppi_;
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PIC &pic_;
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};
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};
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class FlowController {
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class FlowController {
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@ -724,7 +728,7 @@ class ConcreteMachine:
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ConcreteMachine(
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ConcreteMachine(
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[[maybe_unused]] const Analyser::Static::Target &target,
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[[maybe_unused]] const Analyser::Static::Target &target,
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const ROMMachine::ROMFetcher &rom_fetcher
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const ROMMachine::ROMFetcher &rom_fetcher
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) : ppi_(ppi_handler_), context(pit_, dma_, ppi_) {
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) : ppi_(ppi_handler_), context(pit_, dma_, ppi_, pic_) {
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// Use clock rate as a MIPS count; keeping it as a multiple or divisor of the PIT frequency is easy.
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// Use clock rate as a MIPS count; keeping it as a multiple or divisor of the PIT frequency is easy.
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static constexpr int pit_frequency = 1'193'182;
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static constexpr int pit_frequency = 1'193'182;
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set_clock_rate(double(pit_frequency) * double(PitMultiplier) / double(PitDivisor)); // i.e. almost 0.4 MIPS for an XT.
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set_clock_rate(double(pit_frequency) * double(PitMultiplier) / double(PitDivisor)); // i.e. almost 0.4 MIPS for an XT.
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@ -786,13 +790,14 @@ class ConcreteMachine:
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DMA dma_;
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DMA dma_;
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i8255PortHandler ppi_handler_;
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i8255PortHandler ppi_handler_;
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PPI ppi_;
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PPI ppi_;
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PIC pic_;
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struct Context {
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struct Context {
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Context(PIT<false> &pit, DMA &dma, PPI &ppi) :
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Context(PIT<false> &pit, DMA &dma, PPI &ppi, PIC &pic) :
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segments(registers),
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segments(registers),
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memory(registers, segments),
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memory(registers, segments),
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flow_controller(registers, segments),
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flow_controller(registers, segments),
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io(pit, dma, ppi)
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io(pit, dma, ppi, pic)
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{
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{
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reset();
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reset();
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}
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}
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