301 lines
8.3 KiB
C++
301 lines
8.3 KiB
C++
#include <cstdint>
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#include <bit>
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#include "sh7091/sh7091.hpp"
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#include "sh7091/sh7091_bits.hpp"
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#include "sh7091/serial.hpp"
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#include "maple/maple.hpp"
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#include "maple/maple_bus_commands.hpp"
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#include "maple/maple_bus_bits.hpp"
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#include "maple/maple_host_command_writer.hpp"
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#include "maple/maple_port.hpp"
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#include "maple/maple_display.hpp"
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#include "serial_load.hpp"
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extern uint32_t _binary_font_portfolio_6x8 __asm("_binary_font_portfolio_6x8_portfolio_6x8_data_start");
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template <typename T>
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inline void copy(T * dst, const T * src, const int32_t n) noexcept
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{
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int32_t n_t = n / (sizeof (T));
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while (n_t > 0) {
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*dst++ = *src++;
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n_t--;
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}
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}
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static uint8_t * framebuffer;
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static uint32_t send_buf[1024 / 4] __attribute__((aligned(32)));
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static uint32_t recv_buf[1024 / 4] __attribute__((aligned(32)));
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enum struct step {
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IDLE = 0,
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DEVICE_STATUS,
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EXTENSION_DEVICE_STATUS,
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EXTENSION_DEVICE_REPLY,
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};
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struct maple_display_poll_state {
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bool want_start;
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enum step step;
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struct {
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uint8_t ap__lm;
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} port[4];
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};
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void send_vmu_framebuffer(maple::host_command_writer& writer, uint8_t port, uint8_t lm)
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{
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using command_type = maple::block_write<uint8_t[0]>;
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using response_type = maple::device_reply;
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uint32_t host_port_select = host_instruction_port_select(port);
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uint32_t destination_ap = ap_port_select(port) | ap::de::expansion_device | lm;
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auto [host_command, host_response]
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= writer.append_command<command_type, response_type>(host_port_select,
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destination_ap,
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false, // end_flag
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maple::display::vmu::framebuffer_size, // send_trailing
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0 // recv_trailing
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);
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auto& data_fields = host_command->bus_data.data_fields;
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data_fields.function_type = std::byteswap(function_type::bw_lcd);
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data_fields.pt = 0;
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data_fields.phase = 0;
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data_fields.block_number = std::byteswap<uint16_t>(0x0000);
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copy<uint8_t>(data_fields.written_data,
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reinterpret_cast<uint8_t *>(framebuffer),
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maple::display::vmu::framebuffer_size);
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}
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void recv_extension_device_status(struct maple_display_poll_state &state)
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{
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auto writer = maple::host_command_writer(send_buf, recv_buf);
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using response_type = maple::host_response<maple::device_status::data_fields>;
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auto host_response = reinterpret_cast<response_type *>(recv_buf);
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uint32_t last_send_offset = 0;
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int response_index = 0;
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for (int port = 0; port < 4; port++) {
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uint32_t bit = ap::lm_bus::_0;
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uint8_t lm = state.port[port].ap__lm;
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for (int i = 0; i < 5; i++) {
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if (lm == 0)
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break;
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if ((lm & bit) == 0)
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continue;
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lm &= ~bit;
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auto& bus_data = host_response[response_index++].bus_data;
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auto& data_fields = bus_data.data_fields;
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if ((bus_data.command_code == maple::device_status::command_code) &&
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(std::byteswap(data_fields.device_id.ft) & function_type::bw_lcd)) {
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last_send_offset = writer.send_offset;
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send_vmu_framebuffer(writer, port, bit);
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} else {
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// this extension device is not a bw_lcd; remove it
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state.port[port].ap__lm &= ~bit;
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}
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bit <<= 1;
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}
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}
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{
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using command_type = maple::host_command<maple::block_write<uint8_t[0]>::data_fields>;
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auto host_command = reinterpret_cast<command_type *>(&send_buf[last_send_offset / 4]);
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host_command->host_instruction |= host_instruction::end_flag;
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maple::dma_start(send_buf, writer.send_offset,
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recv_buf, writer.recv_offset);
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}
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}
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void send_extension_device_request(maple::host_command_writer& writer, uint8_t port, uint8_t lm)
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{
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uint32_t host_port_select = host_instruction_port_select(port);
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uint32_t destination_ap = ap_port_select(port) | ap::de::expansion_device | lm;
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using command_type = maple::device_request;
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using response_type = maple::device_status;
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writer.append_command<command_type, response_type>(host_port_select,
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destination_ap,
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false); // end_flag
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}
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typedef void (* func_t)(maple::host_command_writer& writer, uint8_t port, uint8_t lm);
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void do_lm_requests(maple::host_command_writer& writer, uint8_t port, uint8_t lm, func_t func)
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{
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uint32_t bit = ap::lm_bus::_0;
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for (int i = 0; i < 5; i++) {
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if (lm & bit) {
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lm &= ~bit;
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func(writer, port, bit);
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}
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bit <<= 1;
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}
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}
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void recv_device_status(struct maple_display_poll_state &state)
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{
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auto writer = maple::host_command_writer(send_buf, recv_buf);
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using response_type = maple::host_response<maple::device_status::data_fields>;
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auto host_response = reinterpret_cast<response_type *>(recv_buf);
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for (int port = 0; port < 4; port++) {
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auto& bus_data = host_response[port].bus_data;
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if (bus_data.command_code != maple::device_status::command_code) {
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state.port[port].ap__lm = 0;
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} else {
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auto& data_fields = bus_data.data_fields;
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uint8_t lm = bus_data.source_ap & ap::lm_bus::bit_mask;
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state.port[port].ap__lm = lm;
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do_lm_requests(writer, port, lm, &send_extension_device_request);
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}
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}
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maple::dma_start(send_buf, writer.send_offset,
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recv_buf, writer.recv_offset);
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}
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void send_device_request()
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{
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auto writer = maple::host_command_writer(send_buf, recv_buf);
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using command_type = maple::device_request;
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using response_type = maple::device_status;
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writer.append_command_all_ports<command_type, response_type>();
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maple::dma_start(send_buf, writer.send_offset,
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recv_buf, writer.recv_offset);
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}
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void handle_maple(struct maple_display_poll_state& state)
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{
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switch (state.step) {
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case step::IDLE:
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if (state.want_start) {
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// always send to all ports
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send_device_request();
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state.step = step::DEVICE_STATUS;
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state.want_start = 0;
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}
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break;
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case step::DEVICE_STATUS:
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if (maple::dma_poll_complete()) {
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recv_device_status(state);
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state.step = step::EXTENSION_DEVICE_STATUS;
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}
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break;
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case step::EXTENSION_DEVICE_STATUS:
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if (maple::dma_poll_complete()) {
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recv_extension_device_status(state);
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state.step = step::EXTENSION_DEVICE_REPLY;
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}
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break;
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case step::EXTENSION_DEVICE_REPLY:
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if (maple::dma_poll_complete()) {
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state.step = step::IDLE;
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}
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break;
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}
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}
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void render_glyphs(maple::display::font_renderer& renderer, char * s)
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{
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for (int i = 0; i < 8 * 4; i++) {
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int x = i % 8;
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int y = i / 8;
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renderer.glyph(s[i], x, y);
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}
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}
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void render_serial_state(maple::display::font_renderer& renderer, char * s, const char * msg)
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{
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bool end = false;
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for (int i = 0; i < 8; i++) {
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if (end || msg[i] == 0) {
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s[0 + i] = ' ';
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end = true;
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} else {
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s[0 + i] = msg[i];
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}
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}
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char num_buf[8];
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string::hex(num_buf, 8, sh7091.SCIF.SCFSR2);
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for (int i = 0; i < 8; i++) s[8 + i] = num_buf[i];
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string::hex(num_buf, 8, sh7091.SCIF.SCFDR2);
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for (int i = 0; i < 8; i++) s[16 + i] = num_buf[i];
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render_glyphs(renderer, s);
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}
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void main() __attribute__((section(".text.main")));
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void main()
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{
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serial::init(0);
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struct maple_display_poll_state state = {0};
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const uint8_t * font = reinterpret_cast<const uint8_t *>(&_binary_font_portfolio_6x8);
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auto renderer = maple::display::font_renderer(font);
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framebuffer = renderer.fb;
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char s[33] =
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"1562500 " // 0
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" " // 8
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" " // 16
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" "; // 24
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render_glyphs(renderer, s);
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state.want_start = 1;
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serial_load::init();
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// reset serial status
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sh7091.SCIF.SCFSR2 = 0;
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// reset line status
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sh7091.SCIF.SCLSR2 = 0;
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serial::string("ready\n");
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while (1) {
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using namespace scif;
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const uint16_t scfsr2 = sh7091.SCIF.SCFSR2;
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if (scfsr2 & scfsr2::brk::bit_mask) {
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render_serial_state(renderer, s, "brk");
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// clear framing error and break
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} else if (scfsr2 & scfsr2::er::bit_mask) {
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render_serial_state(renderer, s, "er");
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} else if (scfsr2 & scfsr2::dr::bit_mask) {
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render_serial_state(renderer, s, "dr");
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} else if (sh7091.SCIF.SCLSR2 & sclsr2::orer::bit_mask) {
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render_serial_state(renderer, s, "orer");
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} else if (scfsr2 & scfsr2::rdf::bit_mask) {
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render_serial_state(renderer, s, "rdf");
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const uint8_t c = sh7091.SCIF.SCFRDR2;
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serial_load::recv(c);
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} else {
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render_serial_state(renderer, s, "idle");
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}
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state.want_start = 1;
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handle_maple(state);
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uint16_t error_bits = scfsr2::er::bit_mask | scfsr2::brk::bit_mask;
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if (sh7091.SCIF.SCFSR2 & error_bits) {
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sh7091.SCIF.SCFSR2 = ~error_bits;
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}
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}
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}
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