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@@ -273,11 +273,11 @@ static lk_keycode_t lkkbd_keycode[LK_NUM_KEYCODES] = {
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[0xfb] = KEY_APOSTROPHE,
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};
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-#define CHECK_LED(LED, BITS) do { \
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- if (test_bit (LED, lk->dev->led)) \
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- leds_on |= BITS; \
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- else \
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- leds_off |= BITS; \
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+#define CHECK_LED(LK, VAR_ON, VAR_OFF, LED, BITS) do { \
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+ if (test_bit (LED, (LK)->dev->led)) \
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+ VAR_ON |= BITS; \
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+ else \
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+ VAR_OFF |= BITS; \
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} while (0)
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/*
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@@ -298,6 +298,42 @@ struct lkkbd {
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int ctrlclick_volume;
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};
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+#ifdef LKKBD_DEBUG
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+/*
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+ * Responses from the keyboard and mapping back to their names.
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+ */
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+static struct {
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+ unsigned char value;
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+ unsigned char *name;
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+} lk_response[] = {
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+#define RESPONSE(x) { .value = (x), .name = #x, }
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+ RESPONSE (LK_STUCK_KEY),
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+ RESPONSE (LK_SELFTEST_FAILED),
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+ RESPONSE (LK_ALL_KEYS_UP),
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+ RESPONSE (LK_METRONOME),
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+ RESPONSE (LK_OUTPUT_ERROR),
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+ RESPONSE (LK_INPUT_ERROR),
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+ RESPONSE (LK_KBD_LOCKED),
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+ RESPONSE (LK_KBD_TEST_MODE_ACK),
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+ RESPONSE (LK_PREFIX_KEY_DOWN),
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+ RESPONSE (LK_MODE_CHANGE_ACK),
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+ RESPONSE (LK_RESPONSE_RESERVED),
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+#undef RESPONSE
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+};
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+
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+static unsigned char *
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+response_name (unsigned char value)
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+{
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+ int i;
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+
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+ for (i = 0; i < ARRAY_SIZE (lk_response); i++)
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+ if (lk_response[i].value == value)
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+ return lk_response[i].name;
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+
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+ return "<unknown>";
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+}
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+#endif /* LKKBD_DEBUG */
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+
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/*
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* Calculate volume parameter byte for a given volume.
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*/
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@@ -440,43 +476,24 @@ lkkbd_interrupt (struct serio *serio, unsigned char data, unsigned int flags,
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input_report_key (lk->dev, lk->keycode[i], 0);
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input_sync (lk->dev);
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break;
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- case LK_METRONOME:
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- DBG (KERN_INFO "Got LK_METRONOME and don't "
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- "know how to handle...\n");
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+
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+ case 0x01:
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+ DBG (KERN_INFO "Got 0x01, scheduling re-initialization\n");
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+ lk->ignore_bytes = LK_NUM_IGNORE_BYTES;
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+ lk->id[LK_NUM_IGNORE_BYTES - lk->ignore_bytes--] = data;
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+ schedule_work (&lk->tq);
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break;
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+
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+ case LK_METRONOME:
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case LK_OUTPUT_ERROR:
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- DBG (KERN_INFO "Got LK_OUTPUT_ERROR and don't "
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- "know how to handle...\n");
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- break;
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case LK_INPUT_ERROR:
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- DBG (KERN_INFO "Got LK_INPUT_ERROR and don't "
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- "know how to handle...\n");
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- break;
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case LK_KBD_LOCKED:
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- DBG (KERN_INFO "Got LK_KBD_LOCKED and don't "
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- "know how to handle...\n");
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- break;
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case LK_KBD_TEST_MODE_ACK:
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- DBG (KERN_INFO "Got LK_KBD_TEST_MODE_ACK and don't "
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- "know how to handle...\n");
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- break;
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case LK_PREFIX_KEY_DOWN:
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- DBG (KERN_INFO "Got LK_PREFIX_KEY_DOWN and don't "
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- "know how to handle...\n");
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- break;
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case LK_MODE_CHANGE_ACK:
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- DBG (KERN_INFO "Got LK_MODE_CHANGE_ACK and ignored "
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- "it properly...\n");
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- break;
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case LK_RESPONSE_RESERVED:
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- DBG (KERN_INFO "Got LK_RESPONSE_RESERVED and don't "
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- "know how to handle...\n");
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- break;
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- case 0x01:
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- DBG (KERN_INFO "Got 0x01, scheduling re-initialization\n");
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- lk->ignore_bytes = LK_NUM_IGNORE_BYTES;
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- lk->id[LK_NUM_IGNORE_BYTES - lk->ignore_bytes--] = data;
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- schedule_work (&lk->tq);
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+ DBG (KERN_INFO "Got %s and don't know how to handle...\n",
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+ response_name (data));
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break;
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default:
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@@ -509,10 +526,10 @@ lkkbd_event (struct input_dev *dev, unsigned int type, unsigned int code,
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switch (type) {
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case EV_LED:
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- CHECK_LED (LED_CAPSL, LK_LED_SHIFTLOCK);
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- CHECK_LED (LED_COMPOSE, LK_LED_COMPOSE);
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- CHECK_LED (LED_SCROLLL, LK_LED_SCROLLLOCK);
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- CHECK_LED (LED_SLEEP, LK_LED_WAIT);
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+ CHECK_LED (lk, leds_on, leds_off, LED_CAPSL, LK_LED_SHIFTLOCK);
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+ CHECK_LED (lk, leds_on, leds_off, LED_COMPOSE, LK_LED_COMPOSE);
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+ CHECK_LED (lk, leds_on, leds_off, LED_SCROLLL, LK_LED_SCROLLLOCK);
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+ CHECK_LED (lk, leds_on, leds_off, LED_SLEEP, LK_LED_WAIT);
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if (leds_on != 0) {
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lk->serio->write (lk->serio, LK_CMD_LED_ON);
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lk->serio->write (lk->serio, leds_on);
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@@ -574,10 +591,10 @@ lkkbd_reinit (void *data)
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lk->serio->write (lk->serio, LK_CMD_SET_DEFAULTS);
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/* Set LEDs */
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- CHECK_LED (LED_CAPSL, LK_LED_SHIFTLOCK);
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- CHECK_LED (LED_COMPOSE, LK_LED_COMPOSE);
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- CHECK_LED (LED_SCROLLL, LK_LED_SCROLLLOCK);
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- CHECK_LED (LED_SLEEP, LK_LED_WAIT);
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+ CHECK_LED (lk, leds_on, leds_off, LED_CAPSL, LK_LED_SHIFTLOCK);
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+ CHECK_LED (lk, leds_on, leds_off, LED_COMPOSE, LK_LED_COMPOSE);
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+ CHECK_LED (lk, leds_on, leds_off, LED_SCROLLL, LK_LED_SCROLLLOCK);
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+ CHECK_LED (lk, leds_on, leds_off, LED_SLEEP, LK_LED_WAIT);
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if (leds_on != 0) {
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lk->serio->write (lk->serio, LK_CMD_LED_ON);
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lk->serio->write (lk->serio, leds_on);
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