o cleanup
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59
tools/bsnes/chip/dsp1/dsp1.cpp
Executable file
59
tools/bsnes/chip/dsp1/dsp1.cpp
Executable file
@@ -0,0 +1,59 @@
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#include <../base.hpp>
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#include <../cart/cart.hpp>
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#define DSP1_CPP
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#include "dsp1.hpp"
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#include "dsp1emu.cpp"
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void DSP1::init() {}
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void DSP1::enable() {}
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void DSP1::power() {
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reset();
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}
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void DSP1::reset() {
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dsp1.reset();
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}
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/*****
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* addr_decode()
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* determine whether address is accessing
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* data register (DR) or status register (SR)
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* -- 0 (false) = DR
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* -- 1 (true ) = SR
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*
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* note: there is no need to bounds check addresses,
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* as memory mapper will not allow DSP1 accesses outside
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* of expected ranges
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*****/
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bool DSP1::addr_decode(uint16 addr) {
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switch(cartridge.dsp1_mapper()) {
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case Cartridge::DSP1LoROM1MB: {
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//$[20-3f]:[8000-bfff] = DR, $[20-3f]:[c000-ffff] = SR
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return (addr >= 0xc000);
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}
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case Cartridge::DSP1LoROM2MB: {
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//$[60-6f]:[0000-3fff] = DR, $[60-6f]:[4000-7fff] = SR
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return (addr >= 0x4000);
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}
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case Cartridge::DSP1HiROM: {
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//$[00-1f]:[6000-6fff] = DR, $[00-1f]:[7000-7fff] = SR
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return (addr >= 0x7000);
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}
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}
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return 0;
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}
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uint8 DSP1::read(unsigned addr) {
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return (addr_decode(addr) == 0) ? dsp1.getDr() : dsp1.getSr();
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}
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void DSP1::write(unsigned addr, uint8 data) {
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if(addr_decode(addr) == 0) {
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dsp1.setDr(data);
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}
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}
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