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@ -4,16 +4,12 @@
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#include <avr/io.h>
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#include <avr/wdt.h>
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#define SERIAL_DEBUG 0
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cRGB red;
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cRGB blue;
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cRGB green;
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cRGB white;
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TestMode_::chatter_test_state_t TestMode_::chatter_test_state_[ROWS][COLS];
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TestMode_::TestMode_(void) {
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}
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@ -22,9 +18,6 @@ void TestMode_::begin(void) {
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red.r = 201;
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blue.b = 201;
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green.g = 201;
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white.r = 160;
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white.g = 160;
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white.b = 160;
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Kaleidoscope.useLoopHook(this->loopHook);
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}
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@ -77,7 +70,6 @@ void TestMode_::test_leds(void) {
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void TestMode_::testMatrix() {
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LEDControl.set_all_leds_to(200, 0, 0);
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memset(chatter_test_state_, 0, sizeof(chatter_test_state_));
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while (1) {
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KeyboardHardware.readMatrix();
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if (KeyboardHardware.leftHandState.all == TEST_MODE_KEY_COMBO) {
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@ -90,92 +82,19 @@ void TestMode_::testMatrix() {
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uint8_t keyState = (bitRead(KeyboardHardware.previousLeftHandState.all, keynum) << 0) |
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(bitRead(KeyboardHardware.leftHandState.all, keynum) << 1);
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if (keyState == 2 && chatter_test_state_[row][col].scan_count < 8) {
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bitSet(chatter_test_state_[row][col].scan_map,
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chatter_test_state_[row][col].scan_count);
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}
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if (chatter_test_state_[row][col].scan_map != 0 &&
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chatter_test_state_[row][col].scan_count < 8) {
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chatter_test_state_[row][col].scan_count++;
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}
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if (keyState == 3) {
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// Serial.print(" Key: ");
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// Serial.print(keynum);
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// Serial.print(" value ");
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// Serial.println(keyState);
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KeyboardHardware.setCrgbAt(row, 7 - col, green);
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} else if (keyState == 1) {
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bitSet(chatter_test_state_[row][col].scan_map,
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chatter_test_state_[row][col].scan_count);
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uint8_t toggle_count = 0;
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for (uint8_t i = 1; i < 8; i++) {
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if (bitRead(chatter_test_state_[row][col].scan_map, i - 1) == 1 &&
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bitRead(chatter_test_state_[row][col].scan_map, i) == 0)
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toggle_count++;
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}
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#if SERIAL_DEBUG
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Serial.print(" key: ");
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Serial.print(keynum);
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Serial.print(" toggle_count: ");
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Serial.print(toggle_count);
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Serial.print(" state#: ");
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Serial.print(chatter_test_state_[row][col].scan_count);
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Serial.print(" state: ");
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Serial.println(chatter_test_state_[row][col].scan_map, BIN);
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#endif
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if (toggle_count > 2)
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KeyboardHardware.setCrgbAt(row, 7 - col, white);
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else
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KeyboardHardware.setCrgbAt(row, 7 - col, blue);
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KeyboardHardware.setCrgbAt(row, 7 - col, blue);
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}
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keyState = (bitRead(KeyboardHardware.previousRightHandState.all, keynum) << 0) |
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(bitRead(KeyboardHardware.rightHandState.all, keynum) << 1);
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if (keyState == 2 && chatter_test_state_[row][col + 8].scan_count < 8) {
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bitSet(chatter_test_state_[row][col + 8].scan_map,
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chatter_test_state_[row][col + 8].scan_count);
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}
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if (chatter_test_state_[row][col + 8].scan_map != 0 &&
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chatter_test_state_[row][col + 8].scan_count < 8) {
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chatter_test_state_[row][col + 8].scan_count++;
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}
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if (keyState == 3) {
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// Serial.print(" Key: ");
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// Serial.print(keynum);
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// Serial.print(" value ");
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// Serial.println(keyState);
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KeyboardHardware.setCrgbAt(row, 15 - col, green);
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} else if (keyState == 1) {
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bitSet(chatter_test_state_[row][col + 8].scan_map,
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chatter_test_state_[row][col + 8].scan_count);
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uint8_t toggle_count = 0;
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for (uint8_t i = 1; i < 8; i++) {
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if (bitRead(chatter_test_state_[row][col + 8].scan_map, i - 1) == 1 &&
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bitRead(chatter_test_state_[row][col + 8].scan_map, i) == 0)
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toggle_count++;
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}
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#if SERIAL_DEBUG
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Serial.print(" key: ");
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Serial.print(keynum);
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Serial.print(" toggle_count: ");
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Serial.print(toggle_count);
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Serial.print(" state#: ");
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Serial.print(chatter_test_state_[row][col + 8].scan_count);
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Serial.print(" state: ");
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Serial.println(chatter_test_state_[row][col + 8].scan_map, BIN);
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#endif
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if (toggle_count > 2)
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KeyboardHardware.setCrgbAt(row, 15 - col, white);
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else
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KeyboardHardware.setCrgbAt(row, 15 - col, blue);
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KeyboardHardware.setCrgbAt(row, 15 - col, blue);
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}
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}
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}
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