mirror of
https://github.com/TomHarte/CLK.git
synced 2024-12-27 01:31:42 +00:00
Move towards playfield decoding.
This commit is contained in:
parent
635c1eacd5
commit
52e375a985
@ -12,6 +12,7 @@
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#define LOG_PREFIX "[Amiga chipset] "
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#define LOG_PREFIX "[Amiga chipset] "
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#include "../../Outputs/Log.hpp"
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#include "../../Outputs/Log.hpp"
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#include <algorithm>
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#include <cassert>
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#include <cassert>
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using namespace Amiga;
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using namespace Amiga;
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@ -368,7 +369,7 @@ template <bool stop_on_cpu> Chipset::Changes Chipset::run(HalfCycles length) {
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y_ = 0;
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y_ = 0;
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// TODO: the manual is vague on when this happens. Try to find out.
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// TODO: the manual is vague on when this happens. Try to find out.
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copper_.reload(0);
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copper_.reload<0>();
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}
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}
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}
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}
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assert(line_cycle_ < line_length_ * 4);
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assert(line_cycle_ < line_length_ * 4);
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@ -379,8 +380,18 @@ template <bool stop_on_cpu> Chipset::Changes Chipset::run(HalfCycles length) {
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}
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}
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void Chipset::post_bitplanes(const BitplaneData &data) {
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void Chipset::post_bitplanes(const BitplaneData &data) {
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// TODO.
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// Convert to future pixels.
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(void)data;
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const int odd_offset = line_cycle_ + odd_delay_;
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const int even_offset = line_cycle_ + odd_delay_;
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for(int x = 0; x < 16; x++) {
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const uint16_t mask = uint16_t(1 << x);
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even_playfield_[x + even_offset] = uint8_t(
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((data[0] & mask) | ((data[2] & mask) << 1) | ((data[4] & mask) << 2)) >> x
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);
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odd_playfield_[x + odd_offset] = uint8_t(
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((data[1] & mask) | ((data[3] & mask) << 1) | ((data[5] & mask) << 2)) >> x
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);
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}
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}
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}
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void Chipset::update_interrupts() {
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void Chipset::update_interrupts() {
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@ -463,8 +474,8 @@ void Chipset::perform(const CPU::MC68000::Microcycle &cycle) {
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break;
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break;
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// Disk DMA.
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// Disk DMA.
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case Write(0x020): disk_.set_address<0, 16>(cycle.value16()); break;
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case Write(0x020): disk_.set_pointer<0, 16>(cycle.value16()); break;
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case Write(0x022): disk_.set_address<0, 0>(cycle.value16()); break;
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case Write(0x022): disk_.set_pointer<0, 0>(cycle.value16()); break;
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case Write(0x024): disk_.set_length(cycle.value16()); break;
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case Write(0x024): disk_.set_length(cycle.value16()); break;
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case Write(0x026):
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case Write(0x026):
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@ -540,21 +551,29 @@ void Chipset::perform(const CPU::MC68000::Microcycle &cycle) {
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break;
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break;
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// Bitplanes.
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// Bitplanes.
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case Write(0x0e0): bitplanes_.set_address<0, 16>(cycle.value16()); break;
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case Write(0x0e0): bitplanes_.set_pointer<0, 16>(cycle.value16()); break;
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case Write(0x0e2): bitplanes_.set_address<0, 0>(cycle.value16()); break;
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case Write(0x0e2): bitplanes_.set_pointer<0, 0>(cycle.value16()); break;
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case Write(0x0e4): bitplanes_.set_address<1, 16>(cycle.value16()); break;
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case Write(0x0e4): bitplanes_.set_pointer<1, 16>(cycle.value16()); break;
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case Write(0x0e6): bitplanes_.set_address<1, 0>(cycle.value16()); break;
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case Write(0x0e6): bitplanes_.set_pointer<1, 0>(cycle.value16()); break;
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case Write(0x0e8): bitplanes_.set_address<2, 16>(cycle.value16()); break;
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case Write(0x0e8): bitplanes_.set_pointer<2, 16>(cycle.value16()); break;
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case Write(0x0ea): bitplanes_.set_address<2, 0>(cycle.value16()); break;
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case Write(0x0ea): bitplanes_.set_pointer<2, 0>(cycle.value16()); break;
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case Write(0x0ec): bitplanes_.set_address<3, 16>(cycle.value16()); break;
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case Write(0x0ec): bitplanes_.set_pointer<3, 16>(cycle.value16()); break;
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case Write(0x0ee): bitplanes_.set_address<3, 0>(cycle.value16()); break;
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case Write(0x0ee): bitplanes_.set_pointer<3, 0>(cycle.value16()); break;
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case Write(0x0f0): bitplanes_.set_address<4, 16>(cycle.value16()); break;
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case Write(0x0f0): bitplanes_.set_pointer<4, 16>(cycle.value16()); break;
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case Write(0x0f2): bitplanes_.set_address<4, 0>(cycle.value16()); break;
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case Write(0x0f2): bitplanes_.set_pointer<4, 0>(cycle.value16()); break;
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case Write(0x0f4): bitplanes_.set_address<5, 16>(cycle.value16()); break;
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case Write(0x0f4): bitplanes_.set_pointer<5, 16>(cycle.value16()); break;
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case Write(0x0f6): bitplanes_.set_address<5, 0>(cycle.value16()); break;
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case Write(0x0f6): bitplanes_.set_pointer<5, 0>(cycle.value16()); break;
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case Write(0x102): {
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const uint8_t delay = cycle.value8_low();
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odd_delay_ = delay & 0x0f;
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even_delay_ = delay >> 4;
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} break;
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case Write(0x100):
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case Write(0x100):
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case Write(0x102):
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bitplanes_.set_control(cycle.value16());
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break;
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case Write(0x104):
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case Write(0x104):
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case Write(0x106):
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case Write(0x106):
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LOG("TODO: Bitplane control; " << PADHEX(4) << cycle.value16() << " to " << *cycle.address);
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LOG("TODO: Bitplane control; " << PADHEX(4) << cycle.value16() << " to " << *cycle.address);
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@ -629,27 +648,27 @@ void Chipset::perform(const CPU::MC68000::Microcycle &cycle) {
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break;
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break;
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case Write(0x080):
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case Write(0x080):
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LOG("Coprocessor first location register high " << PADHEX(4) << cycle.value16());
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LOG("Coprocessor first location register high " << PADHEX(4) << cycle.value16());
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copper_.set_address<0, 16>(cycle.value16());
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copper_.set_pointer<0, 16>(cycle.value16());
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break;
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break;
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case Write(0x082):
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case Write(0x082):
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LOG("Coprocessor first location register low " << PADHEX(4) << cycle.value16());
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LOG("Coprocessor first location register low " << PADHEX(4) << cycle.value16());
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copper_.set_address<0, 0>(cycle.value16());
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copper_.set_pointer<0, 0>(cycle.value16());
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break;
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break;
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case Write(0x084):
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case Write(0x084):
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LOG("Coprocessor second location register high " << PADHEX(4) << cycle.value16());
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LOG("Coprocessor second location register high " << PADHEX(4) << cycle.value16());
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copper_.set_address<1, 16>(cycle.value16());
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copper_.set_pointer<1, 16>(cycle.value16());
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break;
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break;
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case Write(0x086):
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case Write(0x086):
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LOG("Coprocessor second location register low " << PADHEX(4) << cycle.value16());
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LOG("Coprocessor second location register low " << PADHEX(4) << cycle.value16());
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copper_.set_address<1, 0>(cycle.value16());
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copper_.set_pointer<1, 0>(cycle.value16());
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break;
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break;
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case Write(0x088): case Read(0x088):
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case Write(0x088): case Read(0x088):
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LOG("Coprocessor restart at first location");
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LOG("Coprocessor restart at first location");
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copper_.reload(0);
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copper_.reload<0>();
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break;
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break;
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case Write(0x08a): case Read(0x08a):
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case Write(0x08a): case Read(0x08a):
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LOG("Coprocessor restart at second location");
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LOG("Coprocessor restart at second location");
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copper_.reload(1);
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copper_.reload<1>();
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break;
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break;
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case Write(0x08c):
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case Write(0x08c):
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LOG("TODO: coprocessor instruction fetch identity " << PADHEX(4) << cycle.value16());
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LOG("TODO: coprocessor instruction fetch identity " << PADHEX(4) << cycle.value16());
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@ -686,9 +705,26 @@ void Chipset::perform(const CPU::MC68000::Microcycle &cycle) {
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case Write(0x1b8): case Write(0x1ba): case Write(0x1bc): case Write(0x1be): {
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case Write(0x1b8): case Write(0x1ba): case Write(0x1bc): case Write(0x1be): {
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LOG("Colour palette; " << PADHEX(4) << cycle.value16() << " to " << *cycle.address);
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LOG("Colour palette; " << PADHEX(4) << cycle.value16() << " to " << *cycle.address);
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uint8_t *const entry = reinterpret_cast<uint8_t *>(&palette_[(register_address - 0x180) >> 1]);
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// Store once in regular, linear order.
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const auto entry_address = (register_address - 0x180) >> 1;
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uint8_t *const entry = reinterpret_cast<uint8_t *>(&palette_[entry_address]);
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entry[0] = cycle.value8_high();
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entry[0] = cycle.value8_high();
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entry[1] = cycle.value8_low();
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entry[1] = cycle.value8_low();
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// Also store in bit-swizzled order. In this array,
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// instead of being indexed as [b4 b3 b2 b1 b0], index
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// as [b3 b1 b4 b2 b0]. This is related to the dual/single-playfield
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// decision being made relatively late in the planar -> chunky
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// conversion performed by this implementation.
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const auto swizzled_address =
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(entry_address&0x01) |
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((entry_address&0x02) << 2) |
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((entry_address&0x04) >> 1) |
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((entry_address&0x08) << 1) |
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((entry_address&0x10) >> 2);
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uint8_t *const swizzled_entry = reinterpret_cast<uint8_t *>(&swizzled_palette_[swizzled_address]);
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swizzled_entry[0] = cycle.value8_high();
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swizzled_entry[1] = cycle.value8_low();
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} break;
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} break;
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}
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}
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@ -714,8 +750,8 @@ template <bool is_odd> bool Chipset::Bitplanes::advance() {
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#define BIND_CYCLE(offset, plane) \
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#define BIND_CYCLE(offset, plane) \
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case (offset + 1)&7: \
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case (offset + 1)&7: \
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if(plane_count_ > plane) { \
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if(plane_count_ > plane) { \
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next[plane] = ram_[addresses_[plane] & ram_mask_]; \
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next[plane] = ram_[pointer_[plane] & ram_mask_]; \
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++addresses_[plane]; \
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++pointer_[plane]; \
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if constexpr (!plane) { \
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if constexpr (!plane) { \
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chipset_.post_bitplanes(next); \
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chipset_.post_bitplanes(next); \
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} \
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} \
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@ -762,6 +798,19 @@ void Chipset::Bitplanes::do_end_of_line() {
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collection_offset_ = 0;
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collection_offset_ = 0;
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}
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}
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void Chipset::Bitplanes::set_control(uint16_t control) {
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is_high_res_ = control & 0x8000;
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plane_count_ = (control >> 12) & 7;
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// TODO: who really has responsibility for clearing the other
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// bit plane fields?
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std::fill(next.begin() + plane_count_, next.end(), 0);
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if(plane_count_ == 7) {
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plane_count_ = 4;
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}
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}
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// MARK: - Sprites.
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// MARK: - Sprites.
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void Chipset::Sprite::set_pointer(int shift, uint16_t value) {
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void Chipset::Sprite::set_pointer(int shift, uint16_t value) {
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@ -788,8 +837,8 @@ bool Chipset::DiskDMA::advance() {
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if(!write_) {
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if(!write_) {
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// TODO: run an actual PLL, collect actual disk data.
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// TODO: run an actual PLL, collect actual disk data.
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if(length_) {
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if(length_) {
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ram_[addresses_[0] & ram_mask_] = 0xffff;
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ram_[pointer_[0] & ram_mask_] = 0xffff;
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++addresses_[0];
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++pointer_[0];
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--length_;
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--length_;
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if(!length_) {
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if(!length_) {
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@ -112,14 +112,14 @@ class Chipset {
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using DMADeviceBase::DMADeviceBase;
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using DMADeviceBase::DMADeviceBase;
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/// Writes the word @c value to the address register @c id, shifting it by @c shift (0 or 16) first.
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/// Writes the word @c value to the address register @c id, shifting it by @c shift (0 or 16) first.
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template <int id, int shift> void set_address(uint16_t value) {
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template <int id, int shift> void set_pointer(uint16_t value) {
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static_assert(id < num_addresses);
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static_assert(id < num_addresses);
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static_assert(shift == 0 || shift == 16);
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static_assert(shift == 0 || shift == 16);
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addresses_[id] = (addresses_[id] & (0xffff'0000 >> shift)) | uint32_t(value << shift);
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pointer_[id] = (pointer_[id] & (0xffff'0000 >> shift)) | uint32_t(value << shift);
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}
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}
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protected:
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protected:
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std::array<uint32_t, num_addresses> addresses_{};
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std::array<uint32_t, num_addresses> pointer_{};
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};
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};
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// MARK: - Interrupts.
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// MARK: - Interrupts.
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@ -179,6 +179,7 @@ class Chipset {
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template <bool is_odd> bool advance();
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template <bool is_odd> bool advance();
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void do_end_of_line();
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void do_end_of_line();
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void set_control(uint16_t);
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private:
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private:
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bool is_high_res_ = false;
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bool is_high_res_ = false;
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@ -190,6 +191,10 @@ class Chipset {
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void post_bitplanes(const BitplaneData &data);
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void post_bitplanes(const BitplaneData &data);
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uint8_t even_playfield_[912];
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uint8_t odd_playfield_[912];
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int odd_delay_ = 0, even_delay_ = 0;
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// MARK: - Copper.
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// MARK: - Copper.
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class Copper: public DMADevice<2> {
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class Copper: public DMADevice<2> {
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@ -202,8 +207,8 @@ class Chipset {
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bool advance(uint16_t position);
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bool advance(uint16_t position);
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/// Forces a reload of address @c id (i.e. 0 or 1) and restarts the Copper.
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/// Forces a reload of address @c id (i.e. 0 or 1) and restarts the Copper.
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void reload(int id) {
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template <int id> void reload() {
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address_ = addresses_[id] >> 1;
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address_ = pointer_[id] >> 1;
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state_ = State::FetchFirstWord;
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state_ = State::FetchFirstWord;
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}
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}
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@ -253,7 +258,7 @@ class Chipset {
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length_ = value & 0x3fff;
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length_ = value & 0x3fff;
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if(dma_enable_) {
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if(dma_enable_) {
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printf("Not yet implemented: disk DMA [%s of %d to %06x]\n", write_ ? "write" : "read", length_, addresses_[0]);
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printf("Not yet implemented: disk DMA [%s of %d to %06x]\n", write_ ? "write" : "read", length_, pointer_[0]);
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}
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}
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}
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}
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@ -269,6 +274,7 @@ class Chipset {
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Outputs::CRT::CRT crt_;
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Outputs::CRT::CRT crt_;
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uint16_t palette_[32]{};
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uint16_t palette_[32]{};
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uint16_t swizzled_palette_[32]{};
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};
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};
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}
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}
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Block a user