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https://github.com/TomHarte/CLK.git
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Pipe further sound parameters; obey divider.
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@ -10,6 +10,7 @@
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#include "InputOutputController.hpp"
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#include "Video.hpp"
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#include "Sound.hpp"
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#include "../../../InstructionSets/ARM/Registers.hpp"
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#include "../../../Outputs/Log.hpp"
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@ -30,7 +31,8 @@ static_assert(BitMask<15, 14>::value == 49152);
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/// Models the MEMC, making this the Archimedes bus. Owns various other chips on the bus as a result.
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template <typename InterruptObserverT>
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struct MemoryController {
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MemoryController(InterruptObserverT &delegate) : ioc_(delegate) {}
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MemoryController(InterruptObserverT &observer) :
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ioc_(observer), vidc_(observer, ioc_.sound()) {}
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int interrupt_mask() const {
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return ioc_.interrupt_mask();
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@ -251,7 +253,7 @@ struct MemoryController {
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std::array<uint8_t, 4*1024*1024> ram_{};
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std::array<uint8_t, 2*1024*1024> rom_;
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InputOutputController<InterruptObserverT> ioc_;
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Video vidc_;
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Video<InterruptObserverT, Sound<InputOutputController<InterruptObserverT>>> vidc_;
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template <typename IntT>
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IntT &physical_ram(uint32_t address) {
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@ -8,8 +8,11 @@
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#pragma once
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#include <cstdint>
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namespace Archimedes {
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/// Models the Archimedes sound output; in a real machine this is a joint efort between the VIDC and the MEMC.
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template <typename InterruptObserverT>
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struct Sound {
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Sound(InterruptObserverT &observer) : observer_(observer) {}
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@ -34,11 +37,23 @@ struct Sound {
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halted_ = false;
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}
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void set_frequency(uint8_t frequency) {
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divider_ = reload_ = frequency;
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}
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void set_stereo_image([[maybe_unused]] uint8_t channel, [[maybe_unused]] uint8_t value) {
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// TODO.
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}
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void tick() {
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if(halted_) {
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return;
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}
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--divider_;
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if(divider_) return;
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divider_ = reload_;
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current_.start += 16;
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if(current_.start == current_.end) {
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if(next_buffer_valid_) {
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@ -50,6 +65,8 @@ struct Sound {
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}
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private:
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uint8_t divider_ = 0, reload_ = 0;
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void set_buffer_valid(bool valid) {
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next_buffer_valid_ = valid;
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observer_.update_sound_interrupt();
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@ -14,7 +14,11 @@
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namespace Archimedes {
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template <typename InterruptObserverT, typename SoundT>
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struct Video {
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Video(InterruptObserverT &observer, SoundT &sound) :
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observer_(observer), sound_(sound) {}
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void write(uint32_t value) {
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const auto target = (value >> 24) & 0xfc;
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@ -34,11 +38,6 @@ struct Video {
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logger.error().append("TODO: Cursor colour %d to %03x", (target - 0x44) >> 2, value & 0x1fff);
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break;
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case 0x60: case 0x64: case 0x68: case 0x6c:
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case 0x70: case 0x74: case 0x78: case 0x7c:
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logger.error().append("TODO: Stereo image register %d to %03x", (target - 0x60) >> 2, value & 0x7);
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break;
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case 0x80:
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logger.error().append("TODO: Video horizontal period: %d", (value >> 14) & 0x3ff);
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break;
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@ -89,14 +88,24 @@ struct Video {
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logger.error().append("TODO: Video vertical cursor end: %d", (value >> 14) & 0x3ff);
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break;
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case 0xc0:
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logger.error().append("TODO: Sound frequency: %d", value & 0x7f);
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break;
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case 0xe0:
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logger.error().append("TODO: video control: %08x", value);
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break;
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//
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// Sound parameters.
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//
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case 0x60: case 0x64: case 0x68: case 0x6c:
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case 0x70: case 0x74: case 0x78: case 0x7c: {
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const uint8_t channel = ((value >> 26) + 7) & 7;
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sound_.set_stereo_image(channel, value & 7);
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} break;
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case 0xc0:
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sound_.set_frequency(value & 0x7f);
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break;
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default:
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logger.error().append("TODO: unrecognised VIDC write of %08x", value);
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break;
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@ -105,6 +114,8 @@ struct Video {
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private:
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Log::Logger<Log::Source::ARMIOC> logger;
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InterruptObserverT &observer_;
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SoundT &sound_;
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};
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}
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