add scaling modes
This commit is contained in:
@@ -2,3 +2,4 @@ build
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uf2
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.pio
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.vscode
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*_bin.h
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+6
-5
@@ -6,23 +6,24 @@ platform = https://github.com/maxgerhardt/platform-raspberrypi.git#651837d09a1a5
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framework = arduino
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board_build.core = earlephilhower
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board_build.filesystem_size = 512k
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#board_build.filesystem_size = 512k
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#upload_protocol = mbed
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upload_protocol = cmsis-dap
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upload_protocol = mbed
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#upload_protocol = cmsis-dap
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debug_tool = cmsis-dap
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build_src_filter =
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+<*.cpp>
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#lib_ldf_mode = chain+
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lib_ldf_mode = chain+
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lib_deps =
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bodmer/TFT_eSPI@^2.5.43
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xreef/PCF8574 library@^2.3.7
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build_flags =
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-I.
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-Isrc/tft-espi-config/
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-Iinc
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-Iext
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-Iext/minigb_apu
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[env:pico]
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+10
-3
@@ -5,9 +5,17 @@
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#define GBCOLOR_HEADER_ONLY
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#include "gbcolors.h"
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enum class ScalingMode {
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NORMAL = 0,
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STRETCH,
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STRETCH_KEEP_ASPECT,
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COUNT
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};
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extern volatile ScalingMode scalingMode;
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/* Multicore command structure. */
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union core_cmd
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{
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union core_cmd {
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struct
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{
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/* Does nothing. */
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@@ -26,7 +34,6 @@ union core_cmd
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uint32_t full;
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};
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extern palette_t palette; // Colour palette
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void lcd_draw_line(struct gb_s* gb, const uint8_t* pixels, const uint_fast8_t line);
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+62
-16
@@ -16,16 +16,17 @@ static uint8_t pixels_buffer[LCD_WIDTH];
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palette_t palette; // Colour palette
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volatile ScalingMode scalingMode = ScalingMode::NORMAL;
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static int lcd_line_busy = 0;
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#define IS_LINE_REPEATED(line) ((line % 2) || (line % 6 == 0))
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// #define IS_LINE_REPEATED(line) 0
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#define IS_REPEATED(pos) ((pos % 2) || (pos % 6 == 0))
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static void calcExtraLineTable() {
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uint8_t offset = 0;
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for (uint8_t line = 0; line < LCD_HEIGHT; ++line) {
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scaledLineOffsetTable[line] = offset;
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offset += 1 + IS_LINE_REPEATED(line);
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offset += 1 + IS_REPEATED(line);
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}
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}
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@@ -54,21 +55,66 @@ void lcd_draw_line(struct gb_s* gb, const uint8_t pixels[LCD_WIDTH],
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multicore_fifo_push_blocking(cmd.full);
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}
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void lcd_write_pixels(const uint16_t* pixels, uint8_t line, uint_fast16_t nmemb) {
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static uint16_t doubledPixels[320];
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uint16_t pos = 0;
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for (int i = 0; i < nmemb; ++i) {
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doubledPixels[pos++] = pixels[i];
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doubledPixels[pos++] = pixels[i];
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void lcd_write_pixels_normal(const uint16_t* pixels, uint8_t line, uint_fast16_t nmemb) {
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const uint16_t colOffset = (tft.width() - nmemb) / 2;
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const uint16_t lineOffset = (tft.height() - LCD_HEIGHT) / 2;
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tft.setAddrWindow(colOffset, lineOffset + line, nmemb, 1);
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tft.pushColors((uint16_t*) pixels, nmemb, true);
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}
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uint8_t repeatedLines = IS_LINE_REPEATED(line);
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// tft.setAddrWindow(0, scaledLineOffsetTable[line], nmemb * 2, 1 + repeatedLines);
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tft.setAddrWindow(0, scaledLineOffsetTable[line], nmemb * 2, 1);
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tft.pushColors((uint16_t*)doubledPixels, nmemb * 2, true);
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void lcd_write_pixels_stretched(const uint16_t* pixels, uint8_t line, uint_fast16_t nmemb) {
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static uint16_t doubledPixels[320];
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uint16_t pos = 0;
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for (int col = 0; col < nmemb; ++col) {
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doubledPixels[pos++] = pixels[col];
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doubledPixels[pos++] = pixels[col];
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}
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const uint16_t stretchedWidth = pos;
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uint8_t repeatedLines = IS_REPEATED(line);
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tft.setAddrWindow(0, scaledLineOffsetTable[line], stretchedWidth, 1);
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tft.pushColors((uint16_t*)doubledPixels, stretchedWidth, true);
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if (repeatedLines) {
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tft.setAddrWindow(0, scaledLineOffsetTable[line] + 1, nmemb * 2, 1);
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tft.pushColors((uint16_t*)doubledPixels, nmemb * 2, true);
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tft.setAddrWindow(0, scaledLineOffsetTable[line] + 1, stretchedWidth, 1);
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tft.pushColors((uint16_t*)doubledPixels, stretchedWidth, true);
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}
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}
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void lcd_write_pixels_stretched_keep_aspect(const uint16_t* pixels, uint8_t line, uint_fast16_t nmemb) {
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static uint16_t doubledPixels[320];
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uint16_t pos = 0;
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for (int col = 0; col < nmemb; ++col) {
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doubledPixels[pos++] = pixels[col];
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if (IS_REPEATED(col)) {
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doubledPixels[pos++] = pixels[col];
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}
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}
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const uint16_t stretchedWidth = pos;
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const uint16_t colOffset = (tft.width() - stretchedWidth) / 2;
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uint8_t repeatedLines = IS_REPEATED(line);
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tft.setAddrWindow(colOffset, scaledLineOffsetTable[line], stretchedWidth, 1);
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tft.pushColors((uint16_t*)doubledPixels, stretchedWidth, true);
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if (repeatedLines) {
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tft.setAddrWindow(colOffset, scaledLineOffsetTable[line] + 1, stretchedWidth, 1);
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tft.pushColors((uint16_t*)doubledPixels, stretchedWidth, true);
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}
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}
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void lcd_write_pixels(const uint16_t* pixels, uint8_t line, uint_fast16_t nmemb) {
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switch (scalingMode)
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{
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case ScalingMode::STRETCH:
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lcd_write_pixels_stretched(pixels, line, nmemb);
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break;
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case ScalingMode::STRETCH_KEEP_ASPECT:
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lcd_write_pixels_stretched_keep_aspect(pixels, line, nmemb);
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break;
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case ScalingMode::NORMAL:
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default:
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lcd_write_pixels_normal(pixels, line, nmemb);
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break;
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}
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}
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@@ -112,7 +158,7 @@ void core1DispatchLoop() {
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break;
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case CORE_CMD_IDLE_SET:
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lcd_display_control(true, cmd.data);
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lcd_fill(TFT_BLACK);
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break;
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case CORE_CMD_NOP:
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+116
-82
@@ -29,6 +29,8 @@
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/* RP2040 Headers */
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#include <hardware/vreg.h>
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#include <PCF8574.h>
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/* Project headers */
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#include "hedley.h"
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#include "minigb_apu.h"
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@@ -39,14 +41,25 @@
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#include "i2s.h"
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/* GPIO Connections. */
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#define GPIO_UP 16
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#define GPIO_DOWN 16
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#define GPIO_LEFT 16
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#define GPIO_RIGHT 16
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#define GPIO_A 16
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#define GPIO_B 16
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#define GPIO_SELECT 16
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#define GPIO_START 16
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#ifdef USE_PAD_GPIO
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#define PIN_UP 2
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#define PIN_DOWN 3
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#define PIN_LEFT 4
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#define PIN_RIGHT 5
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#define PIN_A 6
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#define PIN_B 7
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#define PIN_SELECT 8
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#define PIN_START 9
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#else
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#define PIN_UP 0
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#define PIN_DOWN 1
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#define PIN_LEFT 2
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#define PIN_RIGHT 3
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#define PIN_A 5
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#define PIN_B 4
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#define PIN_SELECT 6
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#define PIN_START 7
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#endif
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#if ENABLE_SOUND
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/**
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@@ -72,6 +85,9 @@ static unsigned char rom_bank0[65536];
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static uint8_t ram[32768];
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static uint8_t manual_palette_selected = 0;
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static PCF8574 pcf8574(0x20, 16, 17);
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static struct
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{
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unsigned a : 1;
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@@ -130,9 +146,9 @@ void gb_error(struct gb_s* gb, const enum gb_error_e gb_err, const uint16_t addr
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#endif
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}
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void stop();
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void reset();
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void start() {
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void startEmulator() {
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#if ENABLE_LCD
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#if ENABLE_SDCARD
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/* ROM File selector */
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@@ -150,7 +166,7 @@ void start() {
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if (ret != GB_INIT_NO_ERROR) {
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Serial.printf("Error: %d\n", ret);
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stop();
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reset();
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}
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/* Automatically assign a colour palette to the game */
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@@ -182,38 +198,15 @@ void start() {
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Serial.print("\n> ");
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}
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void stop() {
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void reset() {
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Serial.println("\nEmulation Ended");
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/* stop lcd task running on core 1 */
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multicore_reset_core1();
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while (true)
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;
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watchdog_reboot(0,0,0);
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}
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void setup(void) {
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/* Overclock. */
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{
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const unsigned vco = 1596 * 1000 * 1000; /* 266MHz */
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const unsigned div1 = 6, div2 = 1;
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vreg_set_voltage(VREG_VOLTAGE_1_15);
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sleep_ms(2);
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set_sys_clock_pll(vco, div1, div2);
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sleep_ms(2);
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}
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/* Initialise USB serial connection for debugging. */
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Serial.begin(115200);
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while (!Serial)
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;
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#if ENABLE_SDCARD
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time_init();
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#endif
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// sleep_ms(5000);
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Serial.println("INIT: ");
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/* Initialise GPIO pins. */
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#ifdef USE_PAD_GPIO
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void initJoypad() {
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gpio_set_function(GPIO_UP, GPIO_FUNC_SIO);
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gpio_set_function(GPIO_DOWN, GPIO_FUNC_SIO);
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gpio_set_function(GPIO_LEFT, GPIO_FUNC_SIO);
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@@ -240,6 +233,49 @@ void setup(void) {
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gpio_pull_up(GPIO_B);
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gpio_pull_up(GPIO_SELECT);
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gpio_pull_up(GPIO_START);
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}
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#else
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void initJoypad() {
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for (int pin = 0; pin < 8; ++pin) {
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pcf8574.pinMode(pin, INPUT_PULLUP);
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}
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pcf8574.setLatency(5);
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if (pcf8574.begin()){
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Serial.println("PCF8574 initialized");
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}else{
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Serial.println("PCF8574 initialization failed");
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while (true) ;
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}
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}
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#endif
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void setup(void) {
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/* Overclock. */
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{
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const unsigned vco = 1596 * 1000 * 1000; /* 266MHz */
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const unsigned div1 = 6, div2 = 1;
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vreg_set_voltage(VREG_VOLTAGE_1_15);
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sleep_ms(2);
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set_sys_clock_pll(vco, div1, div2);
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sleep_ms(2);
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}
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/* Initialise USB serial connection for debugging. */
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Serial.begin(115200);
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//while (!Serial) ;
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//delay(2000);
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#if ENABLE_SDCARD
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time_init();
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#endif
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// sleep_ms(5000);
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Serial.println("INIT: ");
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/* Initialise joypad. */
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initJoypad();
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/* Set SPI clock to use high frequency. */
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#if 0
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@@ -264,7 +300,7 @@ void setup(void) {
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i2s_init(&i2s_config);
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#endif
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start();
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startEmulator();
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}
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void nextPalette() {
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@@ -277,7 +313,7 @@ void prevPalette() {
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manual_assign_palette(palette, manual_palette_selected);
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}
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void handleInput(uint_fast32_t& frames) {
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void handleSerial(uint_fast32_t& frames) {
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static uint64_t start_time = time_us_64();
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/* Serial monitor commands */
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@@ -287,37 +323,6 @@ void handleInput(uint_fast32_t& frames) {
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}
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switch (input) {
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#if 0
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static bool invert = false;
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static bool sleep = false;
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static uint8_t freq = 1;
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static ili9225_color_mode_e colour = ILI9225_COLOR_MODE_FULL;
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case 'i':
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invert = !invert;
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mk_ili9225_display_control(invert, colour);
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break;
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case 'f':
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freq++;
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freq &= 0x0F;
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mk_ili9225_set_drive_freq(freq);
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Serial.printf("Freq %u\n", freq);
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break;
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#endif
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case 'c': {
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#if 0
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static ili9225_color_mode_e mode = ILI9225_COLOR_MODE_FULL;
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union core_cmd cmd;
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mode = !mode;
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cmd.cmd = CORE_CMD_IDLE_SET;
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cmd.data = mode;
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multicore_fifo_push_blocking(cmd.full);
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#endif
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break;
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}
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case 'i':
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gb.direct.interlace = !gb.direct.interlace;
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break;
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@@ -387,7 +392,7 @@ void handleInput(uint_fast32_t& frames) {
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}
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case 'q':
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stop();
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reset();
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case 'p':
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nextPalette();
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@@ -407,14 +412,35 @@ void handlePad() {
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prev_joypad_bits.b = gb.direct.joypad_bits.b;
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prev_joypad_bits.select = gb.direct.joypad_bits.select;
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prev_joypad_bits.start = gb.direct.joypad_bits.start;
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gb.direct.joypad_bits.up = gpio_get(GPIO_UP);
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gb.direct.joypad_bits.down = gpio_get(GPIO_DOWN);
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gb.direct.joypad_bits.left = gpio_get(GPIO_LEFT);
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gb.direct.joypad_bits.right = gpio_get(GPIO_RIGHT);
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gb.direct.joypad_bits.a = gpio_get(GPIO_A);
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gb.direct.joypad_bits.b = gpio_get(GPIO_B);
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gb.direct.joypad_bits.select = gpio_get(GPIO_SELECT);
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gb.direct.joypad_bits.start = gpio_get(GPIO_START);
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#ifdef USE_PAD_GPIO
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gb.direct.joypad_bits.up = gpio_get(PIN_UP);
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gb.direct.joypad_bits.down = gpio_get(PIN_DOWN);
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gb.direct.joypad_bits.left = gpio_get(PIN_LEFT);
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gb.direct.joypad_bits.right = gpio_get(PIN_RIGHT);
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gb.direct.joypad_bits.a = gpio_get(PIN_A);
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gb.direct.joypad_bits.b = gpio_get(PIN_B);
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gb.direct.joypad_bits.select = gpio_get(PIN_SELECT);
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gb.direct.joypad_bits.start = gpio_get(PIN_START);
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#else
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#if 0
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Serial.printf("pins:\n");
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for (int i = 0; i < 8; ++i) {
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int in = pcf8574.digitalRead(i);
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Serial.printf(" %d", in);
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}
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Serial.printf("\n");
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#endif
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gb.direct.joypad_bits.up = pcf8574.digitalRead(PIN_UP);
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gb.direct.joypad_bits.down = pcf8574.digitalRead(PIN_DOWN);
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gb.direct.joypad_bits.left = pcf8574.digitalRead(PIN_LEFT);
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gb.direct.joypad_bits.right = pcf8574.digitalRead(PIN_RIGHT);
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gb.direct.joypad_bits.a = pcf8574.digitalRead(PIN_A);
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gb.direct.joypad_bits.b = pcf8574.digitalRead(PIN_B);
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||||
gb.direct.joypad_bits.select = pcf8574.digitalRead(PIN_SELECT);
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||||
gb.direct.joypad_bits.start = pcf8574.digitalRead(PIN_START);
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||||
#endif
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||||
|
||||
/* hotkeys (select + * combo)*/
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||||
if (!gb.direct.joypad_bits.select) {
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||||
@@ -441,13 +467,21 @@ void handlePad() {
|
||||
#if ENABLE_SDCARD
|
||||
write_cart_ram_file(&gb);
|
||||
#endif
|
||||
stop();
|
||||
reset();
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||||
}
|
||||
if (!gb.direct.joypad_bits.a && prev_joypad_bits.a) {
|
||||
/* select + A: enable/disable frame-skip => fast-forward */
|
||||
gb.direct.frame_skip = !gb.direct.frame_skip;
|
||||
Serial.printf("I gb.direct.frame_skip = %d\n", gb.direct.frame_skip);
|
||||
}
|
||||
if (!gb.direct.joypad_bits.b && prev_joypad_bits.b) {
|
||||
/* select + B: change scaling mode */
|
||||
scalingMode = (ScalingMode)(((int) scalingMode + 1) % ((int) ScalingMode::COUNT));
|
||||
union core_cmd cmd;
|
||||
cmd.cmd = CORE_CMD_IDLE_SET;
|
||||
multicore_fifo_push_blocking(cmd.full);
|
||||
Serial.printf("I Scaling mode: = %d\n", scalingMode);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
@@ -470,5 +504,5 @@ void loop() {
|
||||
#endif
|
||||
|
||||
handlePad();
|
||||
handleInput(frames);
|
||||
handleSerial(frames);
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user