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https://github.com/TomHarte/CLK.git
synced 2024-11-28 21:49:27 +00:00
Resolves inability of ADB microcontroller to read its own ROM (!)
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2ab3bba695
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c284b34003
@ -38,7 +38,9 @@ Executor::Executor(PortHandler &port_handler) : port_handler_(port_handler) {
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}
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}
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// Fuzz RAM; then set anything that may be replaced by ROM to FF.
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Memory::Fuzz(memory_);
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memset(&memory_[0x100], 0xff, memory_.size() - 0x100);
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}
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void Executor::set_rom(const std::vector<uint8_t> &rom) {
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@ -63,8 +65,8 @@ void Executor::reset() {
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uint8_t Executor::read(uint16_t address) {
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address &= 0x1fff;
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// Deal with a RAM access quickly.
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if(address < 0x60) return memory_[address];
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// Deal with RAM and ROM accesses quickly.
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if(address < 0x60 || address >= 0x100) return memory_[address];
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port_handler_.run_ports_for(cycles_since_port_handler_.flush<Cycles>());
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switch(address) {
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@ -118,6 +120,12 @@ void Executor::write(uint16_t address, uint8_t value) {
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return;
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}
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// ROM 'writes' are almost as easy (albeit unexpected).
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if(address >= 0x100) {
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LOG("Attempted ROM write of " << PADHEX(2) << value << " to " << PADHEX(4) << address);
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return;
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}
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// Push time to the port handler.
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port_handler_.run_ports_for(cycles_since_port_handler_.flush<Cycles>());
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@ -8,27 +8,9 @@
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#include "Mouse.hpp"
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#define LOG_PREFIX "[Mouse] "
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#include "../../../Outputs/Log.hpp"
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using namespace Apple::ADB;
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Mouse::Mouse(Bus &bus) : ReactiveDevice(bus) {}
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Mouse::Mouse(Bus &bus) : ReactiveDevice(bus, 3) {}
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void Mouse::adb_bus_did_observe_event(Bus::Event event, uint8_t value) {
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if(!next_is_command_ && event != Bus::Event::Attention) {
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return;
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}
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if(next_is_command_ && event == Bus::Event::Byte) {
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next_is_command_ = false;
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const auto command = decode_command(value);
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LOG(command);
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if(command.device != 3) {
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return;
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}
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} else if(event == Bus::Event::Attention) {
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next_is_command_ = true;
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}
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void Mouse::perform_command(const Command &) {
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}
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@ -18,10 +18,7 @@ class Mouse: public ReactiveDevice {
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public:
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Mouse(Bus &);
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void adb_bus_did_observe_event(Bus::Event event, uint8_t value) override;
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private:
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bool next_is_command_ = false;
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void perform_command(const Command &command) override;
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};
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}
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@ -8,9 +8,15 @@
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#include "ReactiveDevice.hpp"
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#define LOG_PREFIX "[ADB device] "
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#include "../../../Outputs/Log.hpp"
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using namespace Apple::ADB;
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ReactiveDevice::ReactiveDevice(Apple::ADB::Bus &bus) : bus_(bus), device_id_(bus.add_device(this)) {}
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ReactiveDevice::ReactiveDevice(Apple::ADB::Bus &bus, uint8_t adb_device_id) :
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bus_(bus),
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device_id_(bus.add_device(this)),
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adb_device_id_(adb_device_id) {}
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void ReactiveDevice::post_response(const std::vector<uint8_t> &&response) {
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response_ = std::move(response);
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@ -53,3 +59,22 @@ void ReactiveDevice::advance_state(double microseconds) {
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constexpr double low_periods[] = {66, 33};
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bus_.set_device_output(device_id_, microseconds_at_bit_ > low_periods[bit]);
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}
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void ReactiveDevice::adb_bus_did_observe_event(Bus::Event event, uint8_t value) {
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if(!next_is_command_ && event != Bus::Event::Attention) {
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return;
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}
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if(next_is_command_ && event == Bus::Event::Byte) {
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next_is_command_ = false;
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const auto command = decode_command(value);
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LOG(command);
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if(command.device == adb_device_id_) {
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// TODO: handle fixed commands here (like register 3?)
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perform_command(command);
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}
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} else if(event == Bus::Event::Attention) {
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next_is_command_ = true;
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}
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}
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@ -19,10 +19,14 @@ namespace ADB {
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class ReactiveDevice: public Bus::Device {
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protected:
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ReactiveDevice(Bus &bus);
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ReactiveDevice(Bus &bus, uint8_t adb_device_id);
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void post_response(const std::vector<uint8_t> &&response);
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virtual void perform_command(const Command &command) = 0;
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private:
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void advance_state(double microseconds) override;
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void adb_bus_did_observe_event(Bus::Event event, uint8_t value) override;
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private:
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Bus &bus_;
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@ -31,6 +35,9 @@ class ReactiveDevice: public Bus::Device {
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std::vector<uint8_t> response_;
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int bit_offset_ = 0;
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double microseconds_at_bit_ = 0;
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bool next_is_command_ = false;
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uint8_t adb_device_id_;
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};
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}
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