mirror of
https://github.com/openstenoproject/qmk
synced 2024-11-09 10:13:29 +00:00
Make solo half of split keyboards (more) usable. (#13523)
* Make solo half of split keyboards (more) usable. Using only one half of a split keyboard (that's using the split_common framework to communicate) is not a great experience, since several read timeouts per scan cycle cause an unusably slow scan rate. This change blocks all split communication attempts for 500 ms (configurable) after an error occurs, causing the scan rate to become at least _more_ usable, but might need some tweaking to work fully on most keyboards. One read timeout still needs to occur after the 500 ms has passed, and if that timeout isn't low enough, some scan cycles may still be too slow. * Fix lint complaint. * Require 25 consecutive comm errors to see comms as disconnected. The number of max errors can be overridden by defining `SPLIT_MAX_CONNECTION_ERRORS`. * Add comments to new defines, and ability to disable disconnection check. Also increase `SPLIT_MAX_CONNECTION_ERRORS` to 40, since it's divisible by most relevant numbers for the description. * Make lint happy ...again * Only update `connection_check_timer` when needed. * Add new defines to split keyboard documentation. * Move connection timeout logic to transport.c, add `is_transport_connected`. * Use split_common disconnection logic in matrix.c. Instead of doing more or less the same thing twice. * Move disconnection logic to `transport_master`. Is a cleaner implementation, and causes the scan rate while disconnected to increase instead of decrease. * Lint fixes. * Lower default `SERIAL_USART_TIMEOUT` to 20 ms. The read timeout must be low enough to not cause exessively long scan cycles when using a solo split half. 10 ms was determined from testing to work fine even with the slowest defined baudrate of 19200 (5 ms was too low for that case), so 20 ms should be fine for most cases. * Remove `SERIAL_USART_TIMEOUT` from ergodox_infinity/config.h Was somewhat mistakenly included in an earlier PR. * Fix building with `USE_I2C`. * Reduce built firmware size. Not really sure why this works, the idea was taken from tzarc's work on split disconnection. * Tweak and improve opt-out for split disconnection logic. There are now two ways to opt out from this feature: * Set `SPLIT_MAX_CONNECTION_ERRORS` to 0. This will completely disable the connection status checks (also affects the slave matrix reset logic in matrix.c, though). * Set `SPLIT_CONNECTION_CHECK_TIMEOUT` to 0. This will only disable the communication throttling while disconnected. Will make the firmware smaller. * Make split disconnection logic work with custom transports. Includes a fallback implementation for keyboards using a custom split_util.c but not a custom matrix.c (currently no such keyboard seems to be merged, though). * Remove unnecessary include of timer.h Co-authored-by: Joel Challis <git@zvecr.com> Co-authored-by: Joel Challis <git@zvecr.com>
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parent
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9 changed files with 143 additions and 78 deletions
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@ -203,6 +203,22 @@ If you're having issues with serial communication, you can change this value, as
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This sets the maximum number of milliseconds before forcing a synchronization of data from master to slave. Under normal circumstances this sync occurs whenever the data _changes_, for safety a data transfer occurs after this number of milliseconds if no change has been detected since the last sync.
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```c
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#define SPLIT_MAX_CONNECTION_ERRORS 10
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```
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This sets the maximum number of failed communication attempts (one per scan cycle) from the master part before it assumes that no slave part is connected. This makes it possible to use a master part without the slave part connected.
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Set to 0 to disable the disconnection check altogether.
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```c
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#define SPLIT_CONNECTION_CHECK_TIMEOUT 500
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```
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How long (in milliseconds) the master part should block all connection attempts to the slave after the communication has been flagged as disconnected (see `SPLIT_MAX_CONNECTION_ERRORS` above).
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One communication attempt will be allowed everytime this amount of time has passed since the last attempt. If that attempt succeeds, the communication is seen as working again.
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Set to 0 to disable this throttling of communications while disconnected. This can save you a couple of bytes of firmware size.
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```c
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#define SPLIT_TRANSPORT_MIRROR
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```
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@ -63,7 +63,7 @@ Configure the hardware via your config.h:
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// 5: about 19200 baud
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#define SERIAL_USART_DRIVER SD1 // USART driver of TX pin. default: SD1
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#define SERIAL_USART_TX_PAL_MODE 7 // Pin "alternate function", see the respective datasheet for the appropriate values for your MCU. default: 7
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#define SERIAL_USART_TIMEOUT 100 // USART driver timeout. default 100
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#define SERIAL_USART_TIMEOUT 20 // USART driver timeout. default 20
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```
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You must also enable the ChibiOS `SERIAL` feature:
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@ -105,10 +105,10 @@ Next configure the hardware via your config.h:
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// 3: 57600 baud
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// 4: 38400 baud
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// 5: 19200 baud
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#define SERIAL_USART_DRIVER SD1 // USART driver of TX and RX pin. default: SD1
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#define SERIAL_USART_DRIVER SD1 // USART driver of TX and RX pin. default: SD1
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#define SERIAL_USART_TX_PAL_MODE 7 // Pin "alternate function", see the respective datasheet for the appropriate values for your MCU. default: 7
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#define SERIAL_USART_RX_PAL_MODE 7 // Pin "alternate function", see the respective datasheet for the appropriate values for your MCU. default: 7
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#define SERIAL_USART_TIMEOUT 100 // USART driver timeout. default 100
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#define SERIAL_USART_TIMEOUT 20 // USART driver timeout. default 20
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```
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You must also enable the ChibiOS `SERIAL` feature:
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@ -67,7 +67,6 @@ along with this program. If not, see <http://www.gnu.org/licenses/>.
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#define SERIAL_USART_DRIVER SD1 // Only true for the master half
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#define SERIAL_USART_CONFIG { (SERIAL_USART_SPEED), } // Only field is speed
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#define SERIAL_USART_FULL_DUPLEX
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#define SERIAL_USART_TIMEOUT 50
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/* number of backlight levels */
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#define BACKLIGHT_LEVELS 3
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@ -110,7 +110,7 @@
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#endif
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#if !defined(SERIAL_USART_TIMEOUT)
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# define SERIAL_USART_TIMEOUT 100
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# define SERIAL_USART_TIMEOUT 20
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#endif
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#define HANDSHAKE_MAGIC 7
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@ -25,10 +25,6 @@ along with this program. If not, see <http://www.gnu.org/licenses/>.
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# include "split_common/split_util.h"
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# include "split_common/transactions.h"
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# ifndef ERROR_DISCONNECT_COUNT
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# define ERROR_DISCONNECT_COUNT 5
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# endif // ERROR_DISCONNECT_COUNT
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# define ROWS_PER_HAND (MATRIX_ROWS / 2)
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#else
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# define ROWS_PER_HAND (MATRIX_ROWS)
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@ -307,33 +303,31 @@ void matrix_init(void) {
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}
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#ifdef SPLIT_KEYBOARD
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// Fallback implementation for keyboards not using the standard split_util.c
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__attribute__((weak)) bool transport_master_if_connected(matrix_row_t master_matrix[], matrix_row_t slave_matrix[]) {
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transport_master(master_matrix, slave_matrix);
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return true; // Treat the transport as always connected
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}
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bool matrix_post_scan(void) {
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bool changed = false;
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if (is_keyboard_master()) {
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static uint8_t error_count;
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matrix_row_t slave_matrix[ROWS_PER_HAND] = {0};
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if (!transport_master(matrix + thisHand, slave_matrix)) {
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error_count++;
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if (error_count > ERROR_DISCONNECT_COUNT) {
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// reset other half if disconnected
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for (int i = 0; i < ROWS_PER_HAND; ++i) {
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matrix[thatHand + i] = 0;
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slave_matrix[i] = 0;
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}
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changed = true;
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}
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} else {
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error_count = 0;
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if (transport_master_if_connected(matrix + thisHand, slave_matrix)) {
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for (int i = 0; i < ROWS_PER_HAND; ++i) {
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if (matrix[thatHand + i] != slave_matrix[i]) {
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matrix[thatHand + i] = slave_matrix[i];
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changed = true;
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}
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}
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} else {
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// reset other half if disconnected
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for (int i = 0; i < ROWS_PER_HAND; ++i) {
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matrix[thatHand + i] = 0;
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slave_matrix[i] = 0;
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}
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changed = true;
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}
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matrix_scan_quantum();
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@ -39,6 +39,21 @@
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# define SPLIT_USB_TIMEOUT_POLL 10
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#endif
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// Max number of consecutive failed communications (one per scan cycle) before the communication is seen as disconnected.
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// Set to 0 to disable the disconnection check altogether.
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#ifndef SPLIT_MAX_CONNECTION_ERRORS
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# define SPLIT_MAX_CONNECTION_ERRORS 10
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#endif // SPLIT_MAX_CONNECTION_ERRORS
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// How long (in milliseconds) to block all connection attempts after the communication has been flagged as disconnected.
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// One communication attempt will be allowed everytime this amount of time has passed since the last attempt. If that attempt succeeds, the communication is seen as working again.
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// Set to 0 to disable communication throttling while disconnected
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#ifndef SPLIT_CONNECTION_CHECK_TIMEOUT
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# define SPLIT_CONNECTION_CHECK_TIMEOUT 500
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#endif // SPLIT_CONNECTION_CHECK_TIMEOUT
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static uint8_t connection_errors = 0;
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volatile bool isLeftHand = true;
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#if defined(SPLIT_USB_DETECT)
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transport_slave_init();
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}
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}
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bool is_transport_connected(void) { return connection_errors < SPLIT_MAX_CONNECTION_ERRORS; }
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bool transport_master_if_connected(matrix_row_t master_matrix[], matrix_row_t slave_matrix[]) {
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#if SPLIT_MAX_CONNECTION_ERRORS > 0 && SPLIT_CONNECTION_CHECK_TIMEOUT > 0
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// Throttle transaction attempts if target doesn't seem to be connected
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// Without this, a solo half becomes unusable due to constant read timeouts
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static uint16_t connection_check_timer = 0;
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const bool is_disconnected = !is_transport_connected();
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if (is_disconnected && timer_elapsed(connection_check_timer) < SPLIT_CONNECTION_CHECK_TIMEOUT) {
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return false;
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}
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#endif // SPLIT_MAX_CONNECTION_ERRORS > 0 && SPLIT_CONNECTION_CHECK_TIMEOUT > 0
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__attribute__((unused)) bool okay = transport_master(master_matrix, slave_matrix);
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#if SPLIT_MAX_CONNECTION_ERRORS > 0
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if (!okay) {
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if (connection_errors < UINT8_MAX) {
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connection_errors++;
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}
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# if SPLIT_CONNECTION_CHECK_TIMEOUT > 0
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bool connected = is_transport_connected();
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if (!connected) {
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connection_check_timer = timer_read();
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dprintln("Target disconnected, throttling connection attempts");
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}
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return connected;
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} else if (is_disconnected) {
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dprintln("Target connected");
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# endif // SPLIT_CONNECTION_CHECK_TIMEOUT > 0
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}
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connection_errors = 0;
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#endif // SPLIT_MAX_CONNECTION_ERRORS > 0
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return true;
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}
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#include <stdio.h>
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#include <stdlib.h>
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#include "matrix.h"
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extern volatile bool isLeftHand;
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void matrix_master_OLED_init(void);
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void split_pre_init(void);
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void split_post_init(void);
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bool transport_master_if_connected(matrix_row_t master_matrix[], matrix_row_t slave_matrix[]);
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bool is_transport_connected(void);
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#include "quantum.h"
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#include "transactions.h"
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#include "transport.h"
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#include "split_util.h"
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#include "transaction_id_define.h"
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#define SYNC_TIMER_OFFSET 2
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////////////////////////////////////////////////////
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// Helpers
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bool transaction_handler_master(bool okay, matrix_row_t master_matrix[], matrix_row_t slave_matrix[], const char *prefix, bool (*handler)(matrix_row_t master_matrix[], matrix_row_t slave_matrix[])) {
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if (okay) {
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bool this_okay = true;
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for (int iter = 1; iter <= 10; ++iter) {
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if (!this_okay) {
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for (int i = 0; i < iter * iter; ++i) {
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wait_us(10);
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}
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static bool transaction_handler_master(matrix_row_t master_matrix[], matrix_row_t slave_matrix[], const char *prefix, bool (*handler)(matrix_row_t master_matrix[], matrix_row_t slave_matrix[])) {
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int num_retries = is_transport_connected() ? 10 : 1;
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for (int iter = 1; iter <= num_retries; ++iter) {
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if (iter > 1) {
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for (int i = 0; i < iter * iter; ++i) {
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wait_us(10);
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}
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ATOMIC_BLOCK_FORCEON { this_okay = handler(master_matrix, slave_matrix); };
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if (this_okay) break;
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}
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okay &= this_okay;
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if (!okay) {
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dprintf("Failed to execute %s\n", prefix);
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}
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bool this_okay = true;
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ATOMIC_BLOCK_FORCEON { this_okay = handler(master_matrix, slave_matrix); };
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if (this_okay) return true;
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}
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return okay;
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dprintf("Failed to execute %s\n", prefix);
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return false;
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}
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#define TRANSACTION_HANDLER_MASTER(prefix) \
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do { \
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okay &= transaction_handler_master(okay, master_matrix, slave_matrix, #prefix, &prefix##_master); \
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#define TRANSACTION_HANDLER_MASTER(prefix) \
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do { \
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if (!transaction_handler_master(master_matrix, slave_matrix, #prefix, &prefix##_handlers_master)) return false; \
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} while (0)
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#define TRANSACTION_HANDLER_SLAVE(prefix) \
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do { \
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ATOMIC_BLOCK_FORCEON { prefix##_slave(master_matrix, slave_matrix); }; \
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#define TRANSACTION_HANDLER_SLAVE(prefix) \
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do { \
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ATOMIC_BLOCK_FORCEON { prefix##_handlers_slave(master_matrix, slave_matrix); }; \
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} while (0)
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inline static bool read_if_checksum_mismatch(int8_t trans_id_checksum, int8_t trans_id_retrieve, uint32_t *last_update, void *destination, const void *equiv_shmem, size_t length) {
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}
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// clang-format off
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#define TRANSACTIONS_SLAVE_MATRIX_MASTER() TRANSACTION_HANDLER_MASTER(slave_matrix_handlers)
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#define TRANSACTIONS_SLAVE_MATRIX_SLAVE() TRANSACTION_HANDLER_SLAVE(slave_matrix_handlers)
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#define TRANSACTIONS_SLAVE_MATRIX_MASTER() TRANSACTION_HANDLER_MASTER(slave_matrix)
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#define TRANSACTIONS_SLAVE_MATRIX_SLAVE() TRANSACTION_HANDLER_SLAVE(slave_matrix)
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#define TRANSACTIONS_SLAVE_MATRIX_REGISTRATIONS \
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[GET_SLAVE_MATRIX_CHECKSUM] = trans_target2initiator_initializer(smatrix.checksum), \
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[GET_SLAVE_MATRIX_DATA] = trans_target2initiator_initializer(smatrix.matrix),
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memcpy(master_matrix, split_shmem->mmatrix.matrix, sizeof(split_shmem->mmatrix.matrix));
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}
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# define TRANSACTIONS_MASTER_MATRIX_MASTER() TRANSACTION_HANDLER_MASTER(master_matrix_handlers)
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# define TRANSACTIONS_MASTER_MATRIX_SLAVE() TRANSACTION_HANDLER_SLAVE(master_matrix_handlers)
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# define TRANSACTIONS_MASTER_MATRIX_MASTER() TRANSACTION_HANDLER_MASTER(master_matrix)
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# define TRANSACTIONS_MASTER_MATRIX_SLAVE() TRANSACTION_HANDLER_SLAVE(master_matrix)
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# define TRANSACTIONS_MASTER_MATRIX_REGISTRATIONS [PUT_MASTER_MATRIX] = trans_initiator2target_initializer(mmatrix.matrix),
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#else // SPLIT_TRANSPORT_MIRROR
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}
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// clang-format off
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# define TRANSACTIONS_ENCODERS_MASTER() TRANSACTION_HANDLER_MASTER(encoder_handlers)
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# define TRANSACTIONS_ENCODERS_SLAVE() TRANSACTION_HANDLER_SLAVE(encoder_handlers)
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# define TRANSACTIONS_ENCODERS_MASTER() TRANSACTION_HANDLER_MASTER(encoder)
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# define TRANSACTIONS_ENCODERS_SLAVE() TRANSACTION_HANDLER_SLAVE(encoder)
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# define TRANSACTIONS_ENCODERS_REGISTRATIONS \
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[GET_ENCODERS_CHECKSUM] = trans_target2initiator_initializer(encoders.checksum), \
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[GET_ENCODERS_DATA] = trans_target2initiator_initializer(encoders.state),
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}
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}
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# define TRANSACTIONS_SYNC_TIMER_MASTER() TRANSACTION_HANDLER_MASTER(sync_timer_handlers)
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# define TRANSACTIONS_SYNC_TIMER_SLAVE() TRANSACTION_HANDLER_SLAVE(sync_timer_handlers)
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# define TRANSACTIONS_SYNC_TIMER_MASTER() TRANSACTION_HANDLER_MASTER(sync_timer)
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# define TRANSACTIONS_SYNC_TIMER_SLAVE() TRANSACTION_HANDLER_SLAVE(sync_timer)
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# define TRANSACTIONS_SYNC_TIMER_REGISTRATIONS [PUT_SYNC_TIMER] = trans_initiator2target_initializer(sync_timer),
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#else // DISABLE_SYNC_TIMER
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}
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// clang-format off
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# define TRANSACTIONS_LAYER_STATE_MASTER() TRANSACTION_HANDLER_MASTER(layer_state_handlers)
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# define TRANSACTIONS_LAYER_STATE_SLAVE() TRANSACTION_HANDLER_SLAVE(layer_state_handlers)
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# define TRANSACTIONS_LAYER_STATE_MASTER() TRANSACTION_HANDLER_MASTER(layer_state)
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# define TRANSACTIONS_LAYER_STATE_SLAVE() TRANSACTION_HANDLER_SLAVE(layer_state)
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# define TRANSACTIONS_LAYER_STATE_REGISTRATIONS \
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[PUT_LAYER_STATE] = trans_initiator2target_initializer(layers.layer_state), \
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[PUT_DEFAULT_LAYER_STATE] = trans_initiator2target_initializer(layers.default_layer_state),
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set_split_host_keyboard_leds(split_shmem->led_state);
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}
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# define TRANSACTIONS_LED_STATE_MASTER() TRANSACTION_HANDLER_MASTER(led_state_handlers)
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# define TRANSACTIONS_LED_STATE_SLAVE() TRANSACTION_HANDLER_SLAVE(led_state_handlers)
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# define TRANSACTIONS_LED_STATE_MASTER() TRANSACTION_HANDLER_MASTER(led_state)
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# define TRANSACTIONS_LED_STATE_SLAVE() TRANSACTION_HANDLER_SLAVE(led_state)
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# define TRANSACTIONS_LED_STATE_REGISTRATIONS [PUT_LED_STATE] = trans_initiator2target_initializer(led_state),
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#else // SPLIT_LED_STATE_ENABLE
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# endif
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}
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# define TRANSACTIONS_MODS_MASTER() TRANSACTION_HANDLER_MASTER(mods_handlers)
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# define TRANSACTIONS_MODS_SLAVE() TRANSACTION_HANDLER_SLAVE(mods_handlers)
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# define TRANSACTIONS_MODS_MASTER() TRANSACTION_HANDLER_MASTER(mods)
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# define TRANSACTIONS_MODS_SLAVE() TRANSACTION_HANDLER_SLAVE(mods)
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# define TRANSACTIONS_MODS_REGISTRATIONS [PUT_MODS] = trans_initiator2target_initializer(mods),
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#else // SPLIT_MODS_ENABLE
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@ -385,8 +382,8 @@ static bool backlight_handlers_master(matrix_row_t master_matrix[], matrix_row_t
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static void backlight_handlers_slave(matrix_row_t master_matrix[], matrix_row_t slave_matrix[]) { backlight_set(split_shmem->backlight_level); }
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# define TRANSACTIONS_BACKLIGHT_MASTER() TRANSACTION_HANDLER_MASTER(backlight_handlers)
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# define TRANSACTIONS_BACKLIGHT_SLAVE() TRANSACTION_HANDLER_SLAVE(backlight_handlers)
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# define TRANSACTIONS_BACKLIGHT_MASTER() TRANSACTION_HANDLER_MASTER(backlight)
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# define TRANSACTIONS_BACKLIGHT_SLAVE() TRANSACTION_HANDLER_SLAVE(backlight)
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# define TRANSACTIONS_BACKLIGHT_REGISTRATIONS [PUT_BACKLIGHT] = trans_initiator2target_initializer(backlight_level),
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#else // BACKLIGHT_ENABLE
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@ -422,8 +419,8 @@ static void rgblight_handlers_slave(matrix_row_t master_matrix[], matrix_row_t s
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}
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}
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# define TRANSACTIONS_RGBLIGHT_MASTER() TRANSACTION_HANDLER_MASTER(rgblight_handlers)
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# define TRANSACTIONS_RGBLIGHT_SLAVE() TRANSACTION_HANDLER_SLAVE(rgblight_handlers)
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# define TRANSACTIONS_RGBLIGHT_MASTER() TRANSACTION_HANDLER_MASTER(rgblight)
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# define TRANSACTIONS_RGBLIGHT_SLAVE() TRANSACTION_HANDLER_SLAVE(rgblight)
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# define TRANSACTIONS_RGBLIGHT_REGISTRATIONS [PUT_RGBLIGHT] = trans_initiator2target_initializer(rgblight_sync),
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#else // defined(RGBLIGHT_ENABLE) && defined(RGBLIGHT_SPLIT)
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@ -452,8 +449,8 @@ static void led_matrix_handlers_slave(matrix_row_t master_matrix[], matrix_row_t
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led_matrix_set_suspend_state(split_shmem->led_matrix_sync.led_suspend_state);
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}
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# define TRANSACTIONS_LED_MATRIX_MASTER() TRANSACTION_HANDLER_MASTER(led_matrix_handlers)
|
||||
# define TRANSACTIONS_LED_MATRIX_SLAVE() TRANSACTION_HANDLER_SLAVE(led_matrix_handlers)
|
||||
# define TRANSACTIONS_LED_MATRIX_MASTER() TRANSACTION_HANDLER_MASTER(led_matrix)
|
||||
# define TRANSACTIONS_LED_MATRIX_SLAVE() TRANSACTION_HANDLER_SLAVE(led_matrix)
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# define TRANSACTIONS_LED_MATRIX_REGISTRATIONS [PUT_LED_MATRIX] = trans_initiator2target_initializer(led_matrix_sync),
|
||||
|
||||
#else // defined(LED_MATRIX_ENABLE) && defined(LED_MATRIX_SPLIT)
|
||||
|
@ -482,8 +479,8 @@ static void rgb_matrix_handlers_slave(matrix_row_t master_matrix[], matrix_row_t
|
|||
rgb_matrix_set_suspend_state(split_shmem->rgb_matrix_sync.rgb_suspend_state);
|
||||
}
|
||||
|
||||
# define TRANSACTIONS_RGB_MATRIX_MASTER() TRANSACTION_HANDLER_MASTER(rgb_matrix_handlers)
|
||||
# define TRANSACTIONS_RGB_MATRIX_SLAVE() TRANSACTION_HANDLER_SLAVE(rgb_matrix_handlers)
|
||||
# define TRANSACTIONS_RGB_MATRIX_MASTER() TRANSACTION_HANDLER_MASTER(rgb_matrix)
|
||||
# define TRANSACTIONS_RGB_MATRIX_SLAVE() TRANSACTION_HANDLER_SLAVE(rgb_matrix)
|
||||
# define TRANSACTIONS_RGB_MATRIX_REGISTRATIONS [PUT_RGB_MATRIX] = trans_initiator2target_initializer(rgb_matrix_sync),
|
||||
|
||||
#else // defined(RGB_MATRIX_ENABLE) && defined(RGB_MATRIX_SPLIT)
|
||||
|
@ -507,8 +504,8 @@ static bool wpm_handlers_master(matrix_row_t master_matrix[], matrix_row_t slave
|
|||
|
||||
static void wpm_handlers_slave(matrix_row_t master_matrix[], matrix_row_t slave_matrix[]) { set_current_wpm(split_shmem->current_wpm); }
|
||||
|
||||
# define TRANSACTIONS_WPM_MASTER() TRANSACTION_HANDLER_MASTER(wpm_handlers)
|
||||
# define TRANSACTIONS_WPM_SLAVE() TRANSACTION_HANDLER_SLAVE(wpm_handlers)
|
||||
# define TRANSACTIONS_WPM_MASTER() TRANSACTION_HANDLER_MASTER(wpm)
|
||||
# define TRANSACTIONS_WPM_SLAVE() TRANSACTION_HANDLER_SLAVE(wpm)
|
||||
# define TRANSACTIONS_WPM_REGISTRATIONS [PUT_WPM] = trans_initiator2target_initializer(current_wpm),
|
||||
|
||||
#else // defined(WPM_ENABLE) && defined(SPLIT_WPM_ENABLE)
|
||||
|
@ -538,8 +535,8 @@ static void oled_handlers_slave(matrix_row_t master_matrix[], matrix_row_t slave
|
|||
}
|
||||
}
|
||||
|
||||
# define TRANSACTIONS_OLED_MASTER() TRANSACTION_HANDLER_MASTER(oled_handlers)
|
||||
# define TRANSACTIONS_OLED_SLAVE() TRANSACTION_HANDLER_SLAVE(oled_handlers)
|
||||
# define TRANSACTIONS_OLED_MASTER() TRANSACTION_HANDLER_MASTER(oled)
|
||||
# define TRANSACTIONS_OLED_SLAVE() TRANSACTION_HANDLER_SLAVE(oled)
|
||||
# define TRANSACTIONS_OLED_REGISTRATIONS [PUT_OLED] = trans_initiator2target_initializer(current_oled_state),
|
||||
|
||||
#else // defined(OLED_DRIVER_ENABLE) && defined(SPLIT_OLED_ENABLE)
|
||||
|
@ -569,8 +566,8 @@ static void st7565_handlers_slave(matrix_row_t master_matrix[], matrix_row_t sla
|
|||
}
|
||||
}
|
||||
|
||||
# define TRANSACTIONS_ST7565_MASTER() TRANSACTION_HANDLER_MASTER(st7565_handlers)
|
||||
# define TRANSACTIONS_ST7565_SLAVE() TRANSACTION_HANDLER_SLAVE(st7565_handlers)
|
||||
# define TRANSACTIONS_ST7565_MASTER() TRANSACTION_HANDLER_MASTER(st7565)
|
||||
# define TRANSACTIONS_ST7565_SLAVE() TRANSACTION_HANDLER_SLAVE(st7565)
|
||||
# define TRANSACTIONS_ST7565_REGISTRATIONS [PUT_ST7565] = trans_initiator2target_initializer(current_st7565_state),
|
||||
|
||||
#else // defined(ST7565_ENABLE) && defined(SPLIT_ST7565_ENABLE)
|
||||
|
@ -618,7 +615,6 @@ split_transaction_desc_t split_transaction_table[NUM_TOTAL_TRANSACTIONS] = {
|
|||
};
|
||||
|
||||
bool transactions_master(matrix_row_t master_matrix[], matrix_row_t slave_matrix[]) {
|
||||
bool okay = true;
|
||||
TRANSACTIONS_SLAVE_MATRIX_MASTER();
|
||||
TRANSACTIONS_MASTER_MATRIX_MASTER();
|
||||
TRANSACTIONS_ENCODERS_MASTER();
|
||||
|
@ -633,7 +629,7 @@ bool transactions_master(matrix_row_t master_matrix[], matrix_row_t slave_matrix
|
|||
TRANSACTIONS_WPM_MASTER();
|
||||
TRANSACTIONS_OLED_MASTER();
|
||||
TRANSACTIONS_ST7565_MASTER();
|
||||
return okay;
|
||||
return true;
|
||||
}
|
||||
|
||||
void transactions_slave(matrix_row_t master_matrix[], matrix_row_t slave_matrix[]) {
|
||||
|
@ -666,6 +662,10 @@ void transaction_register_rpc(int8_t transaction_id, slave_callback_t callback)
|
|||
}
|
||||
|
||||
bool transaction_rpc_exec(int8_t transaction_id, uint8_t initiator2target_buffer_size, const void *initiator2target_buffer, uint8_t target2initiator_buffer_size, void *target2initiator_buffer) {
|
||||
// Prevent transaction attempts while transport is disconnected
|
||||
if (!is_transport_connected()) {
|
||||
return false;
|
||||
}
|
||||
// Prevent invoking RPC on QMK core sync data
|
||||
if (transaction_id <= GET_RPC_RESP_DATA) return false;
|
||||
// Prevent sizing issues
|
||||
|
|
|
@ -115,4 +115,4 @@ bool transport_execute_transaction(int8_t id, const void *initiator2target_buf,
|
|||
|
||||
bool transport_master(matrix_row_t master_matrix[], matrix_row_t slave_matrix[]) { return transactions_master(master_matrix, slave_matrix); }
|
||||
|
||||
void transport_slave(matrix_row_t master_matrix[], matrix_row_t slave_matrix[]) { transactions_slave(master_matrix, slave_matrix); }
|
||||
void transport_slave(matrix_row_t master_matrix[], matrix_row_t slave_matrix[]) { transactions_slave(master_matrix, slave_matrix); }
|
||||
|
|
Loading…
Reference in a new issue