67 Commits

Author SHA1 Message Date
László Monda
f1ed699fa2 Bump version to 8.1.5, update changelog, package.json, versions.h 2018-04-04 15:44:35 +02:00
László Monda
43646beca8 Set key debounce timeout from 30ms to 60ms. This should eliminate key chattering. 2018-04-04 00:56:16 +02:00
László Monda
195f40949f Fix build warning. 2018-03-25 22:38:45 +02:00
Kristian Sloth Lauszus
1742437f8b Replace HID_KEYBOARD_SC_MENU scancode with HID_KEYBOARD_SC_APPLICATION (#95)
Fixes https://github.com/UltimateHackingKeyboard/agent/issues/563
2018-03-11 02:31:40 +01:00
László Monda
5093a0c0a6 Bump version to 8.1.4. Update changelog, package.json, and versions.h 2018-03-05 15:57:14 +01:00
László Monda
7e524d97b1 Don't read (the default 250ms) DoubleTapSwitchLayerTimeout from the user configuration but rather set it to 150ms which feels quite optimal. 2018-03-05 10:16:58 +01:00
László Monda
2e53331a0f Set KEY_DEBOUNCER_TIMEOUT_MSEC to 30. This looks like a safe bet to eliminate key chattering for every switch. 2018-02-27 23:01:39 +01:00
László Monda
c6d60780f4 Bump version to 8.1.3 and update package.json, versions.h and the changelog accordingly. 2018-02-18 00:46:17 +01:00
László Monda
8666a495d8 Set KEY_DEBOUNCER_TIMEOUT_MSEC from 15 to 20 ms. 2018-02-17 21:37:02 +01:00
Kristian Sloth Lauszus
33bbf44199 Fix system keyboard descriptor, so it is byte-aligned (#93)
I have verified that the descriptor shows up correctly on Windows 7 and macOS

The descriptor is based on the two following pages: https://github.com/Microsoft/Windows-driver-samples/tree/master/hid/hidusbfx2 and https://docs.microsoft.com/en-us/windows-hardware/drivers/gpiobtn/hid-button-report-descriptors

Fixes #76
2018-02-14 00:27:53 +01:00
László Monda
cc49118868 Bump version to 8.1.2. Update changelog, package.json, versions.h and reference the latest Agent repo. 2018-02-13 03:31:35 +01:00
László Monda
f8fd99f588 Set KEY_DEBOUNCER_TIMEOUT_MSEC from 10 to 15 msec. 2018-02-12 18:08:53 +01:00
Kristian Sloth Lauszus
fa8c9dc907 Logical maximum is wrongly assumed to be an unsigned integer, thus 0xFF is interpreted as -1 and not 255 (#92)
Simply setting the number of bits to 16 solves this
2018-02-12 04:51:59 +01:00
László Monda
0911e67bf6 Fix the coding style of usb_interface_basic_keyboard.c 2018-02-11 22:28:12 +01:00
László Monda
57a7cee62a Remove debug statements from updateActiveUsbReports() 2018-02-11 22:25:29 +01:00
Kristian Sloth Lauszus
1af28a79db Detect Caps Lock state and set the LED accordingly (#91)
Fixes #65
2018-02-11 12:45:46 +01:00
László Monda
6881f8e340 Update versions.h to 8.1.1 2018-02-11 04:23:31 +01:00
László Monda
00cd1f65e8 Bump version to 8.1.1. Update package.json and the changelog. 2018-02-11 04:21:49 +01:00
László Monda
2c9a6c0bd2 Add doubleTapSwitchLayerReleaseTimeout and set it to 100ms. Resolves #79. 2018-02-11 04:09:15 +01:00
László Monda
0c94cbb256 Make doubleTapSwitchLayerKey and doubleTapSwitchLayerStartTime static. 2018-02-11 03:29:15 +01:00
László Monda
275bfee860 Merge branch 'master' of github.com:UltimateHackingKeyboard/firmware 2018-02-10 23:55:48 +01:00
László Monda
8a655e3cfd Lock layers every time when double-tapping their layer switcher keys. Fixes #81. 2018-02-10 23:53:35 +01:00
László Monda
8521619783 Update README.md 2018-02-05 02:24:10 +01:00
László Monda
62184240df Update README.md 2018-02-05 02:03:56 +01:00
László Monda
0b210ac68e Update README.md 2018-02-01 18:39:20 +01:00
László Monda
56f7753afc Bump firmware version to 8.1.0 and update changelog, package.json, and versions.h 2018-01-15 10:35:22 +01:00
László Monda
a0803875c4 Make UsbCommand_GetModuleProperty() branch based on modulePropertyId 2018-01-15 00:04:22 +01:00
László Monda
f5716bdadc Rename some private functions in init_peripherals.c from upper to lower camel case. 2018-01-14 20:30:46 +01:00
László Monda
b76b3c0e4f Slow down main bus I2C baud rate to 30kHz when BusPal is on to make firmware transfer more robust. 2018-01-14 20:27:17 +01:00
László Monda
2661c3d909 Implement DevicePropertyId_Uptime 2018-01-14 18:32:18 +01:00
László Monda
c854e98d84 Implement DevicePropertyId_I2cMainBusBaudRate 2018-01-14 18:10:04 +01:00
László Monda
72d8e49717 Make UsbProtocolHandler() invoke UsbCommand_SetI2cBaudRate() when requested. 2018-01-13 19:54:48 +01:00
László Monda
0fd95b71b2 Add usb_command_set_i2c_baud_rate.[ch] 2018-01-13 03:54:06 +01:00
László Monda
4d83bc2e75 Add I2cMainBusBaudRateBps 2018-01-13 03:29:01 +01:00
László Monda
cf7b05ab72 Make InitI2cMainBus() private. 2018-01-13 03:21:12 +01:00
László Monda
055f1945d0 Include slave_scheduler.h from init_peripherals.c instead of i2c_watchdog.c which I forgot to do in the previous commit. 2018-01-13 03:19:24 +01:00
László Monda
fa4a3abf84 Extract ReinitI2cMainBus() 2018-01-13 03:14:42 +01:00
László Monda
96c7ccd758 Remove some dead code from PIT_I2C_WATCHDOG_HANDLER 2018-01-13 03:03:42 +01:00
László Monda
76d319ec19 Remove comment that says that 100 kHz works with a 20 meter long bridge cable. It was true for UART, not so much for I2C. 2018-01-11 23:44:59 +01:00
László Monda
aab0e8473f Enable left half I2C watchdog in reinit mode because it seems to improve things. 2018-01-11 23:43:34 +01:00
László Monda
4a4c471b9e Implement DevicePropertyId_CurrentKbootCommand 2018-01-10 02:58:31 +01:00
László Monda
fcd75b2af2 Use identifiers instead of the magic numbers of kboot_driver.[ch] 2018-01-06 21:21:36 +01:00
László Monda
f318c6872e Move the definition of previousSlave within the if (isFirstCycle) block. 2018-01-06 17:25:07 +01:00
László Monda
ae1240c103 Rename isFirstIteration to isFirstCycle and kStatus_Uhk_NoTransfer to kStatus_Uhk_IdleCycle. 2018-01-06 17:05:37 +01:00
László Monda
e75d366245 Update and log previous I2C status within the if (isFirstIteration) block. 2018-01-06 17:00:59 +01:00
László Monda
da20cdacc4 Only check currentSlaveId overrun after incrementing it. 2018-01-06 16:36:57 +01:00
László Monda
5a986d367e Only call LogI2cError() if the passed status is an actual I2C error, otherwise it slows the mouse pointer down. 2018-01-06 02:04:47 +01:00
László Monda
f6b66283a7 Only count I2C errors. 2018-01-06 01:37:58 +01:00
László Monda
6ad425cbf9 Log I2C error counts on a per slave and per error type basis and expose them via USB. 2018-01-05 03:23:48 +01:00
László Monda
33e501cd83 Add SLAVE_COUNT 2018-01-04 23:16:48 +01:00
László Monda
fa558abef3 Add LED_DRIVERS_ENABLED 2017-12-28 00:08:29 +01:00
László Monda
25a2b3af93 Convert tabs to spaces. 2017-12-27 17:21:28 +01:00
László Monda
43587c2e1f Define I2C_WATCHDOG_VALUE_REINIT and I2C_WATCHDOG_VALUE_REBOOT and make them work when assigned to I2C_WATCHDOG. 2017-12-27 17:07:04 +01:00
László Monda
c51542795f Bump version to 8.0.1 2017-12-25 23:16:27 +01:00
Erich Styger
7eb83173ed changed I2C watchdog timer implementation, as LPTMR was already used by key scanner 2017-12-25 17:15:41 +01:00
Erich Styger
5581dd26b5 fixed and enabled software watchdog timer 2017-12-24 12:06:46 +01:00
László Monda
1ac637af0f Rename the GetProperty command to GetDeviceProperty. 2017-12-23 16:11:47 +01:00
László Monda
36951d1a34 Minor cleanups regarding the previous rename. 2017-12-23 16:08:45 +01:00
László Monda
5190265a2c Rename get_module_properties.[ch] to get_module_property.[ch]. It seems that the header wasn't included in usb_protocol_handler.c possibly causing issues when using these commands. 2017-12-23 16:06:24 +01:00
László Monda
40bf252852 Bump version to 8.0.0. Update version numbers. Update changelog. 2017-12-15 04:03:51 +01:00
László Monda
85e92d21b4 Add new UsbCommand_GetModuleProperties() device protocol command. 2017-12-15 02:46:30 +01:00
László Monda
fd43e81e46 Query module key count and pointer count in separate messages instead of a combined message for better clarity. 2017-12-15 02:13:58 +01:00
László Monda
c994a97d03 Make the modules transfer their firmware version to the device. Fix the message length of the module protocol version. 2017-12-15 01:42:58 +01:00
László Monda
d59ba83d99 Make the modules transfer a module protocol version composed of a major, a minor and a patch number. 2017-12-15 01:28:13 +01:00
László Monda
c1b887cea8 Rename UhkModulePhase_*ProtocolVersion to UhkModulePhase_*ModuleProtocolVersion. 2017-12-15 01:16:27 +01:00
László Monda
bd53b73685 Rename usb_command_get_keyboard_state.[ch] to usb_command_get_device_state.[ch] 2017-12-14 23:10:13 +01:00
László Monda
beb7c3d4ee Forgot to update versions.h for the previous release. Updating now. 2017-12-14 23:08:34 +01:00
59 changed files with 675 additions and 239 deletions

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@@ -5,6 +5,67 @@ All notable changes to this project will be documented in this file.
The format is loosely based on [Keep a Changelog](http://keepachangelog.com/en/1.0.0/)
and this project adheres to the [UHK Versioning](VERSIONING.md) conventions.
## [8.1.5] - 2018-04-04
Device Protocol: 4.2.0 | Module Protocol: 4.0.0 | User Config: 4.0.0 | Hardware Config: 1.0.0
- Set key debounce timeout from 30ms to 60ms. This should eliminate key chattering.
- Use the correct scancode for the menu key of the factory keymap.
## [8.1.4] - 2018-03-05
Device Protocol: 4.2.0 | Module Protocol: 4.0.0 | User Config: 4.0.0 | Hardware Config: 1.0.0
- Set key debounce timeout from 20ms to 30ms. This should eliminate key chattering.
- Set double tap lock layer timeout from 250ms to 150ms. This should minimize the chance of locking layers accidentally by double tapping their keys.
## [8.1.3] - 2018-02-18
Device Protocol: 4.2.0 | Module Protocol: 4.0.0 | User Config: 4.0.0 | Hardware Config: 1.0.0
- Fix system keyboard descriptor, so it is byte-aligned.
- Set key debounce timeout from 15ms to 20ms. This should at least reduce and hopefully eliminate key chattering.
## [8.1.2] - 2018-02-13
Device Protocol: 4.2.0 | Module Protocol: 4.0.0 | User Config: 4.0.0 | Hardware Config: 1.0.0
- Detect Caps Lock USB state and light up the Caps Lock icon of the LED display accordingly.
- Set key debounce timeout from 10ms to 15ms. This should at least reduce and hopefully eliminate key chattering.
## [8.1.1] - 2018-02-11
Device Protocol: 4.2.0 | Module Protocol: 4.0.0 | User Config: 4.0.0 | Hardware Config: 1.0.0
- Lock layers every time when double-tapping their layer switcher keys, regardless of how many times the layer switcher key was tapped before.
- Only lock layers via double-tapping if the second tap gets released within 100ms.
## [8.1.0] - 2018-01-15
Device Protocol: 4.**2**.0 | Module Protocol: 4.0.0 | User Config: 4.0.0 | Hardware Config: 1.0.0
- Enable left-half watchdog in reinit mode which seems to prevent freezes.
- Slow down main bus I2C baud rate to 30kHz when BusPal is on to make firmware transfer more robust.
- Implement UsbCommandId_GetSlaveI2cErrors. `DEVICEPROTOCOL:MINOR`
- Implement UsbCommandId_SetI2cBaudRate. `DEVICEPROTOCOL:MINOR`
- Implement DevicePropertyId_CurrentKbootCommand. `DEVICEPROTOCOL:MINOR`
- Implement DevicePropertyId_I2cMainBusBaudRate. `DEVICEPROTOCOL:MINOR`
- Implement DevicePropertyId_Uptime. `DEVICEPROTOCOL:MINOR`
## [8.0.1] - 2017-12-25
Device Protocol: 4.1.0 | Module Protocol: 4.0.0 | User Config: 4.0.0 | Hardware Config: 1.0.0
- Implement I2C watchdog for the left keyboard half which should resolve the occasional hangs of the left keyboard half.
## [8.0.0] - 2017-12-15
Device Protocol: 4.**1.0** | Module Protocol: **4.0.0** | User Config: 4.0.0 | Hardware Config: 1.0.0
- Make the modules transfer the module protocol version and firmware version composed of a major, a minor and a patch number. `MODULEPROTOCOL:MAJOR`
- Query module key count and pointer count in separate messages instead of a combined message for improved clarity. `MODULEPROTOCOL:MAJOR`
- Add new UsbCommand_GetModuleProperties() device protocol command. `DEVICEPROTOCOL:MINOR`
## [7.0.0] - 2017-12-14
Device Protocol: **4.0.0** | Module Protocol: 3.0.0 | User Config: 4.0.0 | Hardware Config: 1.0.0
@@ -42,7 +103,7 @@ Device Protocol: 2.0.0 | Module Protocol: 3.0.0 | User Config: **3.0.0** | Hardw
- Implement mouse movement and scrolling deceleration and acceleration.
- Toggle layers upon double tapping their keys. Make the double tap timeout configurable.
- Make the parser read additional user configuration properties: USERCONFIGMajorVersion, USERCONFIGMinorVersion, USERCONFIGPatchVersion, doubleTapSwitchLayerTimeout, iconsAndLayerTextsBrightness, alphanumericSegmentsBrightness, keyBacklightBrightness, mouseMoveInitialSpeed, mouseMoveAcceleration, mouseMoveDeceleratedSpeed, mouseMoveBaseSpeed, mouseMoveAcceleratedSpeed, mouseScrollInitialSpeed, mouseScrollAcceleration, mouseScrollDeceleratedSpeed, mouseScrollBaseSpeed, mouseScrollAcceleratedSpeed. `USERCONFIG:MAJOR`
- Make the parser read additional user configuration properties: userConfigMajorVersion, userConfigMinorVersion, userConfigPatchVersion, doubleTapSwitchLayerTimeout, iconsAndLayerTextsBrightness, alphanumericSegmentsBrightness, keyBacklightBrightness, mouseMoveInitialSpeed, mouseMoveAcceleration, mouseMoveDeceleratedSpeed, mouseMoveBaseSpeed, mouseMoveAcceleratedSpeed, mouseScrollInitialSpeed, mouseScrollAcceleration, mouseScrollDeceleratedSpeed, mouseScrollBaseSpeed, mouseScrollAcceleratedSpeed. `USERCONFIG:MAJOR`
## [3.0.0] - 2017-11-15

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@@ -4,6 +4,10 @@
This repository hosts the firmware of the [Ultimate Hacking Keyboard](https://ultimatehackingkeyboard.com/).
## Updating to the latest firmware
Want to update your UHK to the latest firmware version? Simply download the [latest release of Agent](https://github.com/UltimateHackingKeyboard/agent/releases/latest) which includes the latest firmware version. You'll be easily able to update the firmware within Agent.
## Cloning the repository
Please make sure to clone this repo with:
@@ -18,9 +22,13 @@ Install [Kinetis Design Studio](http://www.nxp.com/products/software-and-tools/r
## Building and flashing the firmware
For the left keyboard half, make sure to power it via the right keyboard half (which must be powered via USB). Also connect the left keyboard half to your SEGGER J-Link USB debug probe (which must also be connected via USB). Then in KDS, click on *Run -> Run Configurations*, select *GDB SEGGER J-Link Debugging -> uhk-left release jlink*, and click on the *Debug* button.
For the left keyboard half, make sure to power it via the right keyboard half (which must be powered via USB). Also connect the left keyboard half to your SEGGER J-Link USB debug probe (which must also be connected via USB). Then in KDS, click on *Run -> Run Configurations*, select *GDB SEGGER J-Link Debugging -> uhk60-left_release_jlink*, and click on the *Debug* button.
For the right keyboard half, flash [the bootloader](https://github.com/UltimateHackingKeyboard/bootloader) first. Then in KDS, click on *Run -> Run Configurations*, select *C/C++ Application -> uhk-right release blhost*, and click on the *Debug* button. Please note that this update method only works on Linux out of the box. On other operating systems, you have to execute the relevant commands of the [blhost-unix.sh](right/build/kds/blhost-unix.sh) script.
For the right keyboard half, flash [the bootloader](https://github.com/UltimateHackingKeyboard/bootloader) first.
At this point, you can flash the right firmware via USB from KDS. To achieve this, you must build [Agent](https://github.com/UltimateHackingKeyboard/agent) that is Git submodule of the this repo and located in the `lib/agent` directory. Then in KDS, click on *Run -> Run Configurations*, select *C/C++ Application -> uhk60-right_release_kboot*, and click on the *Run* button.
From this point on, you can upgrade the firmwares of both halves via USB by using the uhk60-left_release_kboot and uhk60-right_release_kboot run configurations. Alternatively, you can use your SEGGER J-Link probe.
## Contributing

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@@ -1,3 +1,4 @@
/.settings/
/uhk60-left_debug/
/uhk60-left_release/
/uhk60-left_release/

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@@ -50,7 +50,7 @@
<intAttribute key="org.eclipse.cdt.debug.gdbjtag.core.portNumber" value="2331"/>
<booleanAttribute key="org.eclipse.cdt.debug.gdbjtag.core.setPcRegister" value="false"/>
<booleanAttribute key="org.eclipse.cdt.debug.gdbjtag.core.setResume" value="false"/>
<booleanAttribute key="org.eclipse.cdt.debug.gdbjtag.core.setStopAt" value="false"/>
<booleanAttribute key="org.eclipse.cdt.debug.gdbjtag.core.setStopAt" value="true"/>
<stringAttribute key="org.eclipse.cdt.debug.gdbjtag.core.stopAt" value="main"/>
<stringAttribute key="org.eclipse.cdt.debug.gdbjtag.core.symbolsFileName" value=""/>
<stringAttribute key="org.eclipse.cdt.debug.gdbjtag.core.symbolsOffset" value=""/>
@@ -77,6 +77,6 @@
<listAttribute key="org.eclipse.debug.core.MAPPED_RESOURCE_TYPES">
<listEntry value="4"/>
</listAttribute>
<stringAttribute key="org.eclipse.dsf.launch.MEMORY_BLOCKS" value="&lt;?xml version=&quot;1.0&quot; encoding=&quot;UTF-8&quot; standalone=&quot;no&quot;?&gt;&#10;&lt;memoryBlockExpressionList context=&quot;Context string&quot;/&gt;&#10;"/>
<stringAttribute key="org.eclipse.dsf.launch.MEMORY_BLOCKS" value="&lt;?xml version=&quot;1.0&quot; encoding=&quot;UTF-8&quot; standalone=&quot;no&quot;?&gt;&#13;&#10;&lt;memoryBlockExpressionList context=&quot;Context string&quot;/&gt;&#13;&#10;"/>
<stringAttribute key="process_factory_id" value="org.eclipse.cdt.dsf.gdb.GdbProcessFactory"/>
</launchConfiguration>

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@@ -77,6 +77,6 @@
<listAttribute key="org.eclipse.debug.core.MAPPED_RESOURCE_TYPES">
<listEntry value="4"/>
</listAttribute>
<stringAttribute key="org.eclipse.dsf.launch.MEMORY_BLOCKS" value="&lt;?xml version=&quot;1.0&quot; encoding=&quot;UTF-8&quot; standalone=&quot;no&quot;?&gt;&#10;&lt;memoryBlockExpressionList context=&quot;Context string&quot;/&gt;&#10;"/>
<stringAttribute key="org.eclipse.dsf.launch.MEMORY_BLOCKS" value="&lt;?xml version=&quot;1.0&quot; encoding=&quot;UTF-8&quot; standalone=&quot;no&quot;?&gt;&#13;&#10;&lt;memoryBlockExpressionList context=&quot;Context string&quot;/&gt;&#13;&#10;"/>
<stringAttribute key="process_factory_id" value="org.eclipse.cdt.dsf.gdb.GdbProcessFactory"/>
</launchConfiguration>

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@@ -3,6 +3,11 @@
// Macros:
#define I2C_WATCHDOG_VALUE_REINIT 1
#define I2C_WATCHDOG_VALUE_REBOOT 2
// #define DEBUG_OVER_SPI
#define I2C_WATCHDOG I2C_WATCHDOG_VALUE_REINIT
// #define I2C_WATCHDOG I2C_WATCHDOG_VALUE_REBOOT
#endif

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@@ -3,36 +3,40 @@
#include "i2c_watchdog.h"
#include "test_led.h"
#include "init_peripherals.h"
#include "config.h"
//static uint32_t prevWatchdogCounter = 0;
uint32_t I2cWatchdog_RecoveryCounter;
volatile uint32_t I2cWatchdog_WatchCounter;
/* NOTE: Because of a bug in the ROM bootloader of the KL03Z, the watchdog timer is disabled and cannot be re-enabled.
* See https://community.nxp.com/thread/457893
* Therefore the hardware watchdog timer cannot be used without an extra way to enter bootloader or application mode.
*/
#ifdef I2C_WATCHDOG
static uint32_t prevWatchdogCounter = 0;
static uint32_t I2cWatchdog_RecoveryCounter; /* counter for how many times we had to recover and restart */
void InitI2cWatchdog(void)
{
lptmr_config_t lptmrConfig;
LPTMR_GetDefaultConfig(&lptmrConfig);
LPTMR_Init(LPTMR0, &lptmrConfig);
LPTMR_SetTimerPeriod(LPTMR0, USEC_TO_COUNT(LPTMR_USEC_COUNT, LPTMR_SOURCE_CLOCK));
LPTMR_EnableInterrupts(LPTMR0, kLPTMR_TimerInterruptEnable);
EnableIRQ(LPTMR0_IRQn);
LPTMR_StartTimer(LPTMR0);
}
/*
void I2C_WATCHDOG_LPTMR_HANDLER(void)
void RunWatchdog(void)
{
static volatile uint32_t I2cWatchdog_WatchCounter = 0; /* counter for timer */
static int cntr = 0;
cntr++;
if (cntr==100) { /* we get called from KEY_SCANNER_HANDLER() which runs at 1ms, thus scaling down by 100 here to get 100 ms period */
cntr=0;
TEST_LED_TOGGLE();
I2cWatchdog_WatchCounter++;
if (I2C_Watchdog == prevWatchdogCounter) { // Restart I2C if there hasn't been any interrupt during 100 ms
// NVIC_SystemReset();
if (I2cWatchdog_WatchCounter>10) { /* do not check within the first 1000 ms, as I2C might not be running yet */
if (I2C_Watchdog == prevWatchdogCounter) { // Restart I2C if there hasn't been any interrupt during 100 ms. I2C_Watchdog gets incremented for every I2C transaction
I2cWatchdog_RecoveryCounter++;
#if I2C_WATCHDOG == I2C_WATCHDOG_VALUE_REBOOT
NVIC_SystemReset();
#endif
#if I2C_WATCHDOG == I2C_WATCHDOG_VALUE_REINIT
I2C_SlaveDeinit(I2C_BUS_BASEADDR);
InitI2c();
initI2c();
#endif
}
}
prevWatchdogCounter = I2C_Watchdog; /* remember previous counter */
}
prevWatchdogCounter = I2C_Watchdog;
LPTMR_ClearStatusFlags(LPTMR0, kLPTMR_TimerCompareFlag);
}
*/
#endif

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@@ -13,7 +13,6 @@
// Functions:
void InitI2cWatchdog(void);
void RunWatchdog(void);
#endif

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@@ -10,6 +10,7 @@
#include "slave_protocol_handler.h"
#include "i2c_watchdog.h"
#include "debug_over_spi.h"
#include "main.h"
i2c_slave_config_t slaveConfig;
i2c_slave_handle_t slaveHandle;
@@ -44,14 +45,14 @@ static void i2cSlaveCallback(I2C_Type *base, i2c_slave_transfer_t *xfer, void *u
}
}
void InitInterruptPriorities(void)
void initInterruptPriorities(void)
{
NVIC_SetPriority(I2C0_IRQn, 1);
NVIC_SetPriority(TPM1_IRQn, 1);
NVIC_SetPriority(SPI0_IRQn, 1);
}
void InitI2c(void)
void initI2c(void)
{
port_pin_config_t pinConfig = {
.pullSelect = kPORT_PullUp,
@@ -81,11 +82,10 @@ void InitLedDriver(void)
void InitPeripherals(void)
{
InitInterruptPriorities();
initInterruptPriorities();
InitLedDriver();
InitTestLed();
LedPwm_Init();
// InitI2cWatchdog();
DebugOverSpi_Init();
InitI2c();
initI2c();
}

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@@ -11,6 +11,6 @@
// Functions:
void InitPeripherals(void);
void InitI2c(void);
void initI2c(void);
#endif

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@@ -1,10 +1,14 @@
#include "fsl_lptmr.h"
#include "key_scanner.h"
#include "main.h"
#include "config.h"
#include "i2c_watchdog.h"
void KEY_SCANNER_HANDLER(void)
{
KeyMatrix_ScanRow(&keyMatrix);
#ifdef I2C_WATCHDOG
RunWatchdog();
#endif
LPTMR_ClearStatusFlags(KEY_SCANNER_LPTMR_BASEADDR, kLPTMR_TimerCompareFlag);
}

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@@ -6,6 +6,6 @@
#define MODULE_PROTOCOL_VERSION 1
#define MODULE_ID ModuleId_LeftKeyboardHalf
#define MODULE_KEY_COUNT (KEYBOARD_MATRIX_ROWS_NUM * KEYBOARD_MATRIX_COLS_NUM)
#define MODULE_HAS_POINTER false
#define MODULE_POINTER_COUNT 0
#endif

View File

@@ -10,10 +10,23 @@
#include "bool_array_converter.h"
#include "bootloader.h"
#include "module.h"
#include "versions.h"
i2c_message_t RxMessage;
i2c_message_t TxMessage;
static version_t moduleProtocolVersion = {
MODULE_PROTOCOL_MAJOR_VERSION,
MODULE_PROTOCOL_MINOR_VERSION,
MODULE_PROTOCOL_PATCH_VERSION,
};
static version_t firmwareVersion = {
FIRMWARE_MAJOR_VERSION,
FIRMWARE_MINOR_VERSION,
FIRMWARE_PATCH_VERSION,
};
void SlaveRxHandler(void)
{
if (!CRC16_IsMessageValid(&RxMessage)) {
@@ -51,21 +64,29 @@ void SlaveTxHandler(void)
TxMessage.length = SLAVE_SYNC_STRING_LENGTH;
break;
}
case SlaveProperty_ModuleProtocolVersion: {
memcpy(TxMessage.data, &moduleProtocolVersion, sizeof(version_t));
TxMessage.length = sizeof(version_t);
break;
}
case SlaveProperty_FirmwareVersion: {
memcpy(TxMessage.data, &firmwareVersion, sizeof(version_t));
TxMessage.length = sizeof(version_t);
break;
}
case SlaveProperty_ModuleId: {
TxMessage.data[0] = MODULE_ID;
TxMessage.length = 1;
break;
}
case SlaveProperty_ProtocolVersion: {
TxMessage.data[0] = MODULE_PROTOCOL_VERSION;
case SlaveProperty_KeyCount: {
TxMessage.data[0] = MODULE_KEY_COUNT;
TxMessage.length = 1;
break;
}
case SlaveProperty_Features: {
uhk_module_features_t *moduleFeatures = (uhk_module_features_t*)&TxMessage.data;
moduleFeatures->keyCount = MODULE_KEY_COUNT;
moduleFeatures->hasPointer = MODULE_HAS_POINTER;
TxMessage.length = sizeof(uhk_module_features_t);
case SlaveProperty_PointerCount: {
TxMessage.data[0] = MODULE_POINTER_COUNT;
TxMessage.length = 1;
break;
}
}

View File

@@ -64,10 +64,10 @@
<intAttribute key="org.eclipse.cdt.launch.ATTR_BUILD_BEFORE_LAUNCH_ATTR" value="2"/>
<stringAttribute key="org.eclipse.cdt.launch.COREFILE_PATH" value=""/>
<stringAttribute key="org.eclipse.cdt.launch.DEBUGGER_REGISTER_GROUPS" value=""/>
<stringAttribute key="org.eclipse.cdt.launch.PROGRAM_NAME" value="uhk60-right_debug/uhk-right.elf"/>
<stringAttribute key="org.eclipse.cdt.launch.PROGRAM_NAME" value="uhk60-right_debug_standalone/uhk-right.elf"/>
<stringAttribute key="org.eclipse.cdt.launch.PROJECT_ATTR" value="uhk-right"/>
<booleanAttribute key="org.eclipse.cdt.launch.PROJECT_BUILD_CONFIG_AUTO_ATTR" value="false"/>
<stringAttribute key="org.eclipse.cdt.launch.PROJECT_BUILD_CONFIG_ID_ATTR" value="ilg.gnuarmeclipse.managedbuild.cross.config.elf.release.1939339834.1692217331.1297236062.2081695142"/>
<stringAttribute key="org.eclipse.cdt.launch.PROJECT_BUILD_CONFIG_ID_ATTR" value=""/>
<listAttribute key="org.eclipse.debug.core.MAPPED_RESOURCE_PATHS">
<listEntry value="/uhk-right"/>
</listAttribute>
@@ -77,6 +77,6 @@
<listAttribute key="org.eclipse.debug.ui.favoriteGroups">
<listEntry value="org.eclipse.debug.ui.launchGroup.debug"/>
</listAttribute>
<stringAttribute key="org.eclipse.dsf.launch.MEMORY_BLOCKS" value="&lt;?xml version=&quot;1.0&quot; encoding=&quot;UTF-8&quot; standalone=&quot;no&quot;?&gt;&#10;&lt;memoryBlockExpressionList context=&quot;Context string&quot;/&gt;&#10;"/>
<stringAttribute key="org.eclipse.dsf.launch.MEMORY_BLOCKS" value="&lt;?xml version=&quot;1.0&quot; encoding=&quot;UTF-8&quot; standalone=&quot;no&quot;?&gt;&#13;&#10;&lt;memoryBlockExpressionList context=&quot;Context string&quot;/&gt;&#13;&#10;"/>
<stringAttribute key="process_factory_id" value="org.eclipse.cdt.dsf.gdb.GdbProcessFactory"/>
</launchConfiguration>

View File

@@ -4,6 +4,7 @@
// Macros:
#define I2C_WATCHDOG
#define LED_DRIVERS_ENABLED
// #define LED_DRIVER_STRESS_TEST
#endif

View File

@@ -8,6 +8,7 @@
#include "led_display.h"
#include "slave_scheduler.h"
#include "slave_drivers/is31fl3731_driver.h"
#include "config.h"
static parser_error_t parseModuleConfiguration(config_buffer_t *buffer)
{
@@ -55,6 +56,7 @@ parser_error_t ParseConfig(config_buffer_t *buffer)
(void)dataModelMinorVersion;
(void)dataModelPatchVersion;
(void)deviceName;
(void)doubleTapSwitchLayerTimeout;
// LED brightness
@@ -135,16 +137,17 @@ parser_error_t ParseConfig(config_buffer_t *buffer)
// If parsing succeeded then apply the parsed values.
if (!ParserRunDry) {
DoubleTapSwitchLayerTimeout = doubleTapSwitchLayerTimeout;
// DoubleTapSwitchLayerTimeout = doubleTapSwitchLayerTimeout;
// Update LED brightnesses and reinitialize LED drivers
IconsAndLayerTextsBrightness = iconsAndLayerTextsBrightness;
AlphanumericSegmentsBrightness = alphanumericSegmentsBrightness;
KeyBacklightBrightness = keyBacklightBrightness;
#ifdef LED_DRIVERS_ENABLED
Slaves[SlaveId_LeftLedDriver].isConnected = false;
Slaves[SlaveId_RightLedDriver].isConnected = false;
#endif
// Update mouse key speeds
MouseMoveState.initialSpeed = mouseMoveInitialSpeed;

View File

@@ -13,7 +13,8 @@
#define I2C_MAIN_BUS_BASEADDR I2C0
#define I2C_MAIN_BUS_IRQ_ID I2C0_IRQn
#define I2C_MAIN_BUS_CLK_SRC I2C0_CLK_SRC
#define I2C_MAIN_BUS_BAUD_RATE 100000 // 100 kHz works even with a 20 meter long bridge cable.
#define I2C_MAIN_BUS_NORMAL_BAUD_RATE 100000
#define I2C_MAIN_BUS_BUSPAL_BAUD_RATE 30000
#define I2C_MAIN_BUS_MUX kPORT_MuxAlt7
#define I2C_MAIN_BUS_SDA_GPIO GPIOD

View File

@@ -0,0 +1,25 @@
#include "fsl_i2c.h"
#include "i2c_error_logger.h"
i2c_slave_error_counter_t I2cSlaveErrorCounters[MAX_SLAVE_COUNT];
void LogI2cError(uint8_t slaveId, status_t status)
{
i2c_slave_error_counter_t *i2cSlaveErrorCounter = I2cSlaveErrorCounters + slaveId;
uint8_t errorIdx;
for (errorIdx=0; errorIdx<i2cSlaveErrorCounter->errorTypeCount; errorIdx++) {
i2c_error_count_t *currentI2cError = i2cSlaveErrorCounter->errors + errorIdx;
if (currentI2cError->status == status) {
currentI2cError->count++;
break;
}
}
if (errorIdx == i2cSlaveErrorCounter->errorTypeCount && errorIdx < MAX_LOGGED_I2C_ERROR_TYPES_PER_SLAVE) {
i2cSlaveErrorCounter->errorTypeCount++;
i2c_error_count_t *currentI2cError = i2cSlaveErrorCounter->errors + errorIdx;
currentI2cError->status = status;
currentI2cError->count = 1;
}
}

View File

@@ -0,0 +1,33 @@
#ifndef __I2C_ERROR_LOGGER_H__
#define __I2C_ERROR_LOGGER_H__
// Includes:
#include "fsl_common.h"
#include "slave_scheduler.h"
// Macros:
#define MAX_LOGGED_I2C_ERROR_TYPES_PER_SLAVE 7
// Typedefs:
typedef struct {
status_t status;
uint32_t count;
} i2c_error_count_t;
typedef struct {
uint8_t errorTypeCount;
i2c_error_count_t errors[MAX_LOGGED_I2C_ERROR_TYPES_PER_SLAVE];
} i2c_slave_error_counter_t;
// Variables:
extern i2c_slave_error_counter_t I2cSlaveErrorCounters[MAX_SLAVE_COUNT];
// Functions:
void LogI2cError(uint8_t slaveId, status_t status);
#endif

View File

@@ -5,7 +5,6 @@
#include "fsl_gpio.h"
#include "i2c.h"
#include "i2c_watchdog.h"
#include "slave_scheduler.h"
#include "init_peripherals.h"
uint32_t I2cWatchdog_WatchCounter;
@@ -19,17 +18,13 @@ static uint32_t prevWatchdogCounter;
void PIT_I2C_WATCHDOG_HANDLER(void)
{
I2cWatchdog_WatchCounter++;
if (I2C_Watchdog == prevWatchdogCounter) { // Restart I2C if there haven't been any interrupts recently
I2cWatchdog_RecoveryCounter++;
i2c_master_config_t masterConfig;
I2C_MasterGetDefaultConfig(&masterConfig);
I2C_MasterDeinit(I2C_MAIN_BUS_BASEADDR);
InitI2cMainBus();
InitSlaveScheduler();
ReinitI2cMainBus();
}
prevWatchdogCounter = I2C_Watchdog;
PIT_ClearStatusFlags(PIT, PIT_I2C_WATCHDOG_CHANNEL, PIT_TFLG_TIF_MASK);
}

View File

@@ -14,8 +14,22 @@
#include "timer.h"
#include "key_debouncer.h"
#include "usb_api.h"
#include "slave_scheduler.h"
#include "bootloader/wormhole.h"
void InitInterruptPriorities(void)
bool IsBusPalOn;
uint32_t I2cMainBusRequestedBaudRateBps = I2C_MAIN_BUS_NORMAL_BAUD_RATE;
uint32_t I2cMainBusActualBaudRateBps;
void initBusPalState(void) {
IsBusPalOn = Wormhole.magicNumber == WORMHOLE_MAGIC_NUMBER && Wormhole.enumerationMode == EnumerationMode_BusPal;
if (IsBusPalOn) {
Wormhole.magicNumber = 0;
I2cMainBusRequestedBaudRateBps = I2C_MAIN_BUS_BUSPAL_BAUD_RATE;
}
}
void initInterruptPriorities(void)
{
NVIC_SetPriority(PIT_I2C_WATCHDOG_IRQ_ID, 1);
NVIC_SetPriority(PIT_TIMER_IRQ_ID, 2);
@@ -60,7 +74,7 @@ void recoverI2c(void)
delay();
}
void InitI2cMainBus(void)
void initI2cMainBus(void)
{
CLOCK_EnableClock(I2C_MAIN_BUS_SDA_CLOCK);
CLOCK_EnableClock(I2C_MAIN_BUS_SCL_CLOCK);
@@ -78,9 +92,17 @@ void InitI2cMainBus(void)
i2c_master_config_t masterConfig;
I2C_MasterGetDefaultConfig(&masterConfig);
masterConfig.baudRate_Bps = I2C_MAIN_BUS_BAUD_RATE;
masterConfig.baudRate_Bps = I2cMainBusRequestedBaudRateBps;
uint32_t sourceClock = CLOCK_GetFreq(I2C_MAIN_BUS_CLK_SRC);
I2C_MasterInit(I2C_MAIN_BUS_BASEADDR, &masterConfig, sourceClock);
I2cMainBusActualBaudRateBps = I2C_ActualBaudRate;
}
void ReinitI2cMainBus(void)
{
I2C_MasterDeinit(I2C_MAIN_BUS_BASEADDR);
initI2cMainBus();
InitSlaveScheduler();
}
void initI2cEepromBus(void)
@@ -91,7 +113,6 @@ void initI2cEepromBus(void)
.mux = I2C_EEPROM_BUS_MUX,
};
CLOCK_EnableClock(I2C_EEPROM_BUS_SDA_CLOCK);
CLOCK_EnableClock(I2C_EEPROM_BUS_SCL_CLOCK);
@@ -105,21 +126,22 @@ void initI2cEepromBus(void)
I2C_MasterInit(I2C_EEPROM_BUS_BASEADDR, &masterConfig, sourceClock);
}
void InitI2c(void)
void initI2c(void)
{
InitI2cMainBus();
initI2cMainBus();
initI2cEepromBus();
}
void InitPeripherals(void)
{
InitInterruptPriorities();
initBusPalState();
initInterruptPriorities();
Timer_Init();
InitLedDriver();
InitResetButton();
InitMergeSensor();
ADC_Init();
InitI2c();
initI2c();
InitTestLed();
LedPwm_Init();
#ifdef I2C_WATCHDOG

View File

@@ -5,9 +5,15 @@
#include "fsl_common.h"
// Variables:
extern bool IsBusPalOn;
extern uint32_t I2cMainBusRequestedBaudRateBps;
extern uint32_t I2cMainBusActualBaudRateBps;
// Functions:
void InitPeripherals(void);
void InitI2cMainBus(void);
void ReinitI2cMainBus(void);
#endif

View File

@@ -9,7 +9,7 @@
// Macros:
#define KEY_DEBOUNCER_INTERVAL_MSEC 1
#define KEY_DEBOUNCER_TIMEOUT_MSEC 10
#define KEY_DEBOUNCER_TIMEOUT_MSEC 60
// Functions:

View File

@@ -157,7 +157,7 @@ key_action_t CurrentKeymap[LAYER_COUNT][SLOT_COUNT][MAX_KEY_COUNT_PER_MODULE] =
{ .type = KeyActionType_None },
{ .type = KeyActionType_None },
{ .type = KeyActionType_None },
{ .type = HID_KEYBOARD_SC_MENU },
{ .type = KeyActionType_Keystroke, .keystroke = { .scancode = HID_KEYBOARD_SC_APPLICATION }},
{ .type = KeyActionType_Keystroke, .keystroke = { .scancode = HID_KEYBOARD_SC_RIGHT_SHIFT }},
{ .type = KeyActionType_None },

View File

@@ -5,7 +5,6 @@
#include "slave_scheduler.h"
#include "bus_pal_hardware.h"
#include "command.h"
#include "bootloader/wormhole.h"
#include "eeprom.h"
#include "key_scanner.h"
#include "usb_commands/usb_command_apply_config.h"
@@ -34,8 +33,7 @@ void main(void)
EEPROM_LaunchTransfer(EepromOperation_Read, ConfigBufferId_HardwareConfig, hardwareConfigurationReadFinished);
}
if (Wormhole.magicNumber == WORMHOLE_MAGIC_NUMBER && Wormhole.enumerationMode == EnumerationMode_BusPal) {
Wormhole.magicNumber = 0;
if (IsBusPalOn) {
init_hardware();
handleUsbBusPalCommand();
} else {

View File

@@ -4,7 +4,7 @@
kboot_driver_state_t KbootDriverState;
static uint8_t rxBuffer[MAX_KBOOT_COMMAND_LENGTH];
static uint8_t rxBuffer[KBOOT_PACKAGE_MAX_LENGTH];
static uint8_t pingCommand[] = {0x5a, 0xa6};
static uint8_t resetCommand[] = {0x5a, 0xa4, 0x04, 0x00, 0x6f, 0x46, 0x0b, 0x00, 0x00, 0x00};
static uint8_t ackMessage[] = {0x5a, 0xa1};
@@ -27,50 +27,52 @@ status_t KbootSlaveDriver_Update(uint8_t kbootInstanceId)
{
status_t status = kStatus_Uhk_IdleSlave;
switch (KbootDriverState.commandType) {
switch (KbootDriverState.command) {
case KbootCommand_Idle:
break;
case KbootCommand_Ping:
switch (KbootDriverState.phase) {
case 0:
case KbootPhase_SendPing:
status = tx(pingCommand, sizeof(pingCommand));
KbootDriverState.phase++;
KbootDriverState.phase = KbootPhase_CheckPingStatus;
break;
case 1:
case KbootPhase_CheckPingStatus:
KbootDriverState.status = Slaves[SlaveId_KbootDriver].previousStatus;
KbootDriverState.phase = KbootDriverState.status == kStatus_Success ? 2 : 0;
return kStatus_Uhk_NoTransfer;
case 2:
status = rx(10);
KbootDriverState.phase++;
KbootDriverState.phase = KbootDriverState.status == kStatus_Success
? KbootPhase_ReceivePingResponse
: KbootPhase_SendPing;
return kStatus_Uhk_IdleCycle;
case KbootPhase_ReceivePingResponse:
status = rx(KBOOT_PACKAGE_LENGTH_PING_RESPONSE);
KbootDriverState.phase = KbootPhase_CheckPingResponseStatus;
break;
case 3:
case KbootPhase_CheckPingResponseStatus:
KbootDriverState.status = Slaves[SlaveId_KbootDriver].previousStatus;
if (KbootDriverState.status == kStatus_Success) {
KbootDriverState.commandType = KbootCommand_Idle;
KbootDriverState.command = KbootCommand_Idle;
} else {
KbootDriverState.phase = 0;
return kStatus_Uhk_NoTransfer;
KbootDriverState.phase = KbootPhase_SendPing;
return kStatus_Uhk_IdleCycle;
}
}
break;
case KbootCommand_Reset:
switch (KbootDriverState.phase) {
case 0:
case KbootPhase_SendReset:
status = tx(resetCommand, sizeof(resetCommand));
KbootDriverState.phase++;
KbootDriverState.phase = KbootPhase_ReceiveResetAck;
break;
case 1:
status = rx(2);
KbootDriverState.phase++;
case KbootPhase_ReceiveResetAck:
status = rx(KBOOT_PACKAGE_LENGTH_ACK);
KbootDriverState.phase = KbootPhase_ReceiveResetGenericResponse;
break;
case 2:
status = rx(18);
KbootDriverState.phase++;
case KbootPhase_ReceiveResetGenericResponse:
status = rx(KBOOT_PACKAGE_LENGTH_GENERIC_RESPONSE);
KbootDriverState.phase = KbootPhase_CheckResetSendAck;
break;
case 3:
case KbootPhase_CheckResetSendAck:
status = tx(ackMessage, sizeof(ackMessage));
KbootDriverState.commandType = KbootCommand_Idle;
KbootDriverState.command = KbootCommand_Idle;
break;
}
break;

View File

@@ -7,7 +7,10 @@
// Macros:
#define MAX_KBOOT_COMMAND_LENGTH 32
#define KBOOT_PACKAGE_MAX_LENGTH 32
#define KBOOT_PACKAGE_LENGTH_PING_RESPONSE 10
#define KBOOT_PACKAGE_LENGTH_ACK 2
#define KBOOT_PACKAGE_LENGTH_GENERIC_RESPONSE 18
// Typedefs:
@@ -21,8 +24,22 @@
KbootCommand_Reset,
} kboot_command_t;
typedef enum {
KbootPhase_SendPing,
KbootPhase_CheckPingStatus,
KbootPhase_ReceivePingResponse,
KbootPhase_CheckPingResponseStatus,
} kboot_ping_phase_t;
typedef enum {
KbootPhase_SendReset,
KbootPhase_ReceiveResetAck,
KbootPhase_ReceiveResetGenericResponse,
KbootPhase_CheckResetSendAck,
} kboot_reset_phase_t;
typedef struct {
kboot_command_t commandType;
kboot_command_t command;
uint8_t i2cAddress;
uint8_t phase;
uint32_t status;

View File

@@ -91,32 +91,54 @@ status_t UhkModuleSlaveDriver_Update(uint8_t uhkModuleDriverId)
case UhkModulePhase_ProcessSync: {
bool isMessageValid = CRC16_IsMessageValid(rxMessage);
bool isSyncValid = memcmp(rxMessage->data, SlaveSyncString, SLAVE_SYNC_STRING_LENGTH) == 0;
status = kStatus_Uhk_NoTransfer;
status = kStatus_Uhk_IdleCycle;
*uhkModulePhase = isSyncValid && isMessageValid
? UhkModulePhase_RequestProtocolVersion
? UhkModulePhase_RequestModuleProtocolVersion
: UhkModulePhase_RequestSync;
break;
}
// Get protocol version
case UhkModulePhase_RequestProtocolVersion:
// Get module protocol version
case UhkModulePhase_RequestModuleProtocolVersion:
txMessage.data[0] = SlaveCommand_RequestProperty;
txMessage.data[1] = SlaveProperty_ProtocolVersion;
txMessage.data[1] = SlaveProperty_ModuleProtocolVersion;
txMessage.length = 2;
status = tx(i2cAddress);
*uhkModulePhase = UhkModulePhase_ReceiveProtocolVersion;
*uhkModulePhase = UhkModulePhase_ReceiveModuleProtocolVersion;
break;
case UhkModulePhase_ReceiveProtocolVersion:
case UhkModulePhase_ReceiveModuleProtocolVersion:
status = rx(rxMessage, i2cAddress);
*uhkModulePhase = UhkModulePhase_ProcessProtocolVersion;
*uhkModulePhase = UhkModulePhase_ProcessModuleProtocolVersion;
break;
case UhkModulePhase_ProcessProtocolVersion: {
case UhkModulePhase_ProcessModuleProtocolVersion: {
bool isMessageValid = CRC16_IsMessageValid(rxMessage);
if (isMessageValid) {
uhkModuleState->protocolVersion = rxMessage->data[0];
memcpy(&uhkModuleState->moduleProtocolVersion, rxMessage->data, sizeof(version_t));
}
status = kStatus_Uhk_NoTransfer;
*uhkModulePhase = isMessageValid ? UhkModulePhase_RequestModuleId : UhkModulePhase_RequestProtocolVersion;
status = kStatus_Uhk_IdleCycle;
*uhkModulePhase = isMessageValid ? UhkModulePhase_RequestFirmwareVersion : UhkModulePhase_RequestModuleProtocolVersion;
break;
}
// Get firmware version
case UhkModulePhase_RequestFirmwareVersion:
txMessage.data[0] = SlaveCommand_RequestProperty;
txMessage.data[1] = SlaveProperty_FirmwareVersion;
txMessage.length = 2;
status = tx(i2cAddress);
*uhkModulePhase = UhkModulePhase_ReceiveFirmwareVersion;
break;
case UhkModulePhase_ReceiveFirmwareVersion:
status = rx(rxMessage, i2cAddress);
*uhkModulePhase = UhkModulePhase_ProcessFirmwareVersion;
break;
case UhkModulePhase_ProcessFirmwareVersion: {
bool isMessageValid = CRC16_IsMessageValid(rxMessage);
if (isMessageValid) {
memcpy(&uhkModuleState->firmwareVersion, rxMessage->data, sizeof(version_t));
}
status = kStatus_Uhk_IdleCycle;
*uhkModulePhase = isMessageValid ? UhkModulePhase_RequestModuleId : UhkModulePhase_RequestFirmwareVersion;
break;
}
@@ -137,30 +159,52 @@ status_t UhkModuleSlaveDriver_Update(uint8_t uhkModuleDriverId)
if (isMessageValid) {
uhkModuleState->moduleId = rxMessage->data[0];
}
status = kStatus_Uhk_NoTransfer;
*uhkModulePhase = isMessageValid ? UhkModulePhase_RequestModuleFeatures : UhkModulePhase_RequestModuleId;
status = kStatus_Uhk_IdleCycle;
*uhkModulePhase = isMessageValid ? UhkModulePhase_RequestModuleKeyCount : UhkModulePhase_RequestModuleId;
break;
}
// Get module features
case UhkModulePhase_RequestModuleFeatures:
// Get module key count
case UhkModulePhase_RequestModuleKeyCount:
txMessage.data[0] = SlaveCommand_RequestProperty;
txMessage.data[1] = SlaveProperty_Features;
txMessage.data[1] = SlaveProperty_KeyCount;
txMessage.length = 2;
status = tx(i2cAddress);
*uhkModulePhase = UhkModulePhase_ReceiveModuleFeatures;
*uhkModulePhase = UhkModulePhase_ReceiveModuleKeyCount;
break;
case UhkModulePhase_ReceiveModuleFeatures:
case UhkModulePhase_ReceiveModuleKeyCount:
status = rx(rxMessage, i2cAddress);
*uhkModulePhase = UhkModulePhase_ProcessModuleFeatures;
*uhkModulePhase = UhkModulePhase_ProcessModuleKeyCount;
break;
case UhkModulePhase_ProcessModuleFeatures: {
case UhkModulePhase_ProcessModuleKeyCount: {
bool isMessageValid = CRC16_IsMessageValid(rxMessage);
if (isMessageValid) {
memcpy(&uhkModuleState->features, rxMessage->data, sizeof(uhk_module_features_t));
uhkModuleState->keyCount = rxMessage->data[0];
}
status = kStatus_Uhk_NoTransfer;
*uhkModulePhase = isMessageValid ? UhkModulePhase_RequestKeyStates : UhkModulePhase_RequestModuleFeatures;
status = kStatus_Uhk_IdleCycle;
*uhkModulePhase = isMessageValid ? UhkModulePhase_RequestModulePointerCount : UhkModulePhase_RequestModuleKeyCount;
break;
}
// Get module pointer count
case UhkModulePhase_RequestModulePointerCount:
txMessage.data[0] = SlaveCommand_RequestProperty;
txMessage.data[1] = SlaveProperty_PointerCount;
txMessage.length = 2;
status = tx(i2cAddress);
*uhkModulePhase = UhkModulePhase_ReceiveModulePointerCount;
break;
case UhkModulePhase_ReceiveModulePointerCount:
status = rx(rxMessage, i2cAddress);
*uhkModulePhase = UhkModulePhase_ProcessModulePointerCount;
break;
case UhkModulePhase_ProcessModulePointerCount: {
bool isMessageValid = CRC16_IsMessageValid(rxMessage);
if (isMessageValid) {
uhkModuleState->pointerCount = rxMessage->data[0];
}
status = kStatus_Uhk_IdleCycle;
*uhkModulePhase = isMessageValid ? UhkModulePhase_RequestKeyStates : UhkModulePhase_RequestModulePointerCount;
break;
}
@@ -178,19 +222,19 @@ status_t UhkModuleSlaveDriver_Update(uint8_t uhkModuleDriverId)
case UhkModulePhase_ProcessKeystates:
if (CRC16_IsMessageValid(rxMessage)) {
uint8_t slotId = uhkModuleDriverId + 1;
BoolBitsToBytes(rxMessage->data, keyStatesBuffer, uhkModuleState->features.keyCount);
for (uint8_t keyId=0; keyId<uhkModuleState->features.keyCount; keyId++) {
BoolBitsToBytes(rxMessage->data, keyStatesBuffer, uhkModuleState->keyCount);
for (uint8_t keyId=0; keyId<uhkModuleState->keyCount; keyId++) {
KeyStates[slotId][keyId].current = keyStatesBuffer[keyId];
}
}
status = kStatus_Uhk_NoTransfer;
status = kStatus_Uhk_IdleCycle;
*uhkModulePhase = UhkModulePhase_SetTestLed;
break;
// Set test LED
case UhkModulePhase_SetTestLed:
if (uhkModuleSourceVars->isTestLedOn == uhkModuleTargetVars->isTestLedOn) {
status = kStatus_Uhk_NoTransfer;
status = kStatus_Uhk_IdleCycle;
} else {
txMessage.data[0] = SlaveCommand_SetTestLed;
txMessage.data[1] = uhkModuleSourceVars->isTestLedOn;
@@ -204,7 +248,7 @@ status_t UhkModuleSlaveDriver_Update(uint8_t uhkModuleDriverId)
// Set PWM brightness
case UhkModulePhase_SetLedPwmBrightness:
if (uhkModuleSourceVars->ledPwmBrightness == uhkModuleTargetVars->ledPwmBrightness) {
status = kStatus_Uhk_NoTransfer;
status = kStatus_Uhk_IdleCycle;
} else {
txMessage.data[0] = SlaveCommand_SetLedPwmBrightness;
txMessage.data[1] = uhkModuleSourceVars->ledPwmBrightness;
@@ -221,8 +265,10 @@ status_t UhkModuleSlaveDriver_Update(uint8_t uhkModuleDriverId)
void UhkModuleSlaveDriver_Disconnect(uint8_t uhkModuleDriverId)
{
#ifdef LED_DRIVERS_ENABLED
if (uhkModuleDriverId == SlaveId_LeftKeyboardHalf) {
Slaves[SlaveId_LeftLedDriver].isConnected = false;
}
UhkModuleStates[uhkModuleDriverId].moduleId = 0;
#endif
}

View File

@@ -5,6 +5,7 @@
#include "fsl_common.h"
#include "crc16.h"
#include "versions.h"
// Macros:
@@ -29,19 +30,29 @@
UhkModulePhase_ProcessSync,
// Get protocol version
UhkModulePhase_RequestProtocolVersion,
UhkModulePhase_ReceiveProtocolVersion,
UhkModulePhase_ProcessProtocolVersion,
UhkModulePhase_RequestModuleProtocolVersion,
UhkModulePhase_ReceiveModuleProtocolVersion,
UhkModulePhase_ProcessModuleProtocolVersion,
// Get firmware version
UhkModulePhase_RequestFirmwareVersion,
UhkModulePhase_ReceiveFirmwareVersion,
UhkModulePhase_ProcessFirmwareVersion,
// Get module id
UhkModulePhase_RequestModuleId,
UhkModulePhase_ReceiveModuleId,
UhkModulePhase_ProcessModuleId,
// Get module features
UhkModulePhase_RequestModuleFeatures,
UhkModulePhase_ReceiveModuleFeatures,
UhkModulePhase_ProcessModuleFeatures,
// Get module key count
UhkModulePhase_RequestModuleKeyCount,
UhkModulePhase_ReceiveModuleKeyCount,
UhkModulePhase_ProcessModuleKeyCount,
// Get module key count
UhkModulePhase_RequestModulePointerCount,
UhkModulePhase_ReceiveModulePointerCount,
UhkModulePhase_ProcessModulePointerCount,
// Get key states
UhkModulePhase_RequestKeyStates,
@@ -62,14 +73,16 @@
typedef struct {
uint8_t moduleId;
uint8_t protocolVersion;
version_t moduleProtocolVersion;
version_t firmwareVersion;
uhk_module_phase_t phase;
uhk_module_vars_t sourceVars;
uhk_module_vars_t targetVars;
i2c_message_t rxMessage;
uint8_t firmwareI2cAddress;
uint8_t bootloaderI2cAddress;
uhk_module_features_t features;
uint8_t keyCount;
uint8_t pointerCount;
} uhk_module_state_t;
typedef struct {

View File

@@ -6,6 +6,8 @@
#include "slave_drivers/kboot_driver.h"
#include "i2c.h"
#include "i2c_addresses.h"
#include "config.h"
#include "i2c_error_logger.h"
uint32_t I2cSlaveScheduler_Counter;
@@ -29,6 +31,7 @@ uhk_slave_t Slaves[] = {
.update = UhkModuleSlaveDriver_Update,
.perDriverId = UhkModuleDriverId_RightAddon,
},
#ifdef LED_DRIVERS_ENABLED
{
.init = LedSlaveDriver_Init,
.update = LedSlaveDriver_Update,
@@ -39,6 +42,7 @@ uhk_slave_t Slaves[] = {
.update = LedSlaveDriver_Update,
.perDriverId = LedDriverId_Left,
},
#endif
{
.init = KbootSlaveDriver_Init,
.update = KbootSlaveDriver_Update,
@@ -48,23 +52,27 @@ uhk_slave_t Slaves[] = {
static void slaveSchedulerCallback(I2C_Type *base, i2c_master_handle_t *handle, status_t previousStatus, void *userData)
{
bool isFirstIteration = true;
bool isFirstCycle = true;
bool isTransferScheduled = false;
I2cSlaveScheduler_Counter++;
do {
uhk_slave_t *previousSlave = Slaves + previousSlaveId;
uhk_slave_t *currentSlave = Slaves + currentSlaveId;
if (isFirstCycle) {
uhk_slave_t *previousSlave = Slaves + previousSlaveId;
previousSlave->previousStatus = previousStatus;
if (IS_STATUS_I2C_ERROR(previousStatus)) {
LogI2cError(previousSlaveId, previousStatus);
}
if (isFirstIteration) {
bool wasPreviousSlaveConnected = previousSlave->isConnected;
previousSlave->isConnected = previousStatus == kStatus_Success;
if (wasPreviousSlaveConnected && !previousSlave->isConnected && previousSlave->disconnect) {
previousSlave->disconnect(previousSlaveId);
}
isFirstIteration = false;
isFirstCycle = false;
}
if (!currentSlave->isConnected) {
@@ -72,18 +80,21 @@ static void slaveSchedulerCallback(I2C_Type *base, i2c_master_handle_t *handle,
}
status_t currentStatus = currentSlave->update(currentSlave->perDriverId);
isTransferScheduled = currentStatus != kStatus_Uhk_IdleSlave && currentStatus != kStatus_Uhk_NoTransfer;
if (IS_STATUS_I2C_ERROR(currentStatus)) {
LogI2cError(currentSlaveId, currentStatus);
}
isTransferScheduled = currentStatus != kStatus_Uhk_IdleSlave && currentStatus != kStatus_Uhk_IdleCycle;
if (isTransferScheduled) {
currentSlave->isConnected = true;
}
if (currentStatus != kStatus_Uhk_NoTransfer) {
if (currentStatus != kStatus_Uhk_IdleCycle) {
previousSlaveId = currentSlaveId++;
}
if (currentSlaveId >= (sizeof(Slaves) / sizeof(uhk_slave_t))) {
if (currentSlaveId >= SLAVE_COUNT) {
currentSlaveId = 0;
}
}
} while (!isTransferScheduled);
}
@@ -92,7 +103,7 @@ void InitSlaveScheduler(void)
previousSlaveId = 0;
currentSlaveId = 0;
for (uint8_t i=0; i<sizeof(Slaves) / sizeof(uhk_slave_t); i++) {
for (uint8_t i=0; i<SLAVE_COUNT; i++) {
uhk_slave_t *currentSlave = Slaves + i;
currentSlave->isConnected = false;
}

View File

@@ -4,6 +4,14 @@
// Includes:
#include "fsl_common.h"
#include "config.h"
// Macros:
#define SLAVE_COUNT (sizeof(Slaves) / sizeof(uhk_slave_t))
#define MAX_SLAVE_COUNT 6
#define IS_VALID_SLAVE_ID(slaveId) (0 <= slaveId && slaveId <= MAX_SLAVE_COUNT)
#define IS_STATUS_I2C_ERROR(status) (kStatus_I2C_Busy <= status && status <= kStatus_I2C_Timeout)
// Typedefs:
@@ -11,8 +19,10 @@
SlaveId_LeftKeyboardHalf,
SlaveId_LeftAddon,
SlaveId_RightAddon,
#ifdef LED_DRIVERS_ENABLED
SlaveId_RightLedDriver,
SlaveId_LeftLedDriver,
#endif
SlaveId_KbootDriver,
} slave_id_t;
@@ -30,12 +40,12 @@
} uhk_slave_t;
typedef enum {
kStatusGroup_Uhk = -1,
kStatusGroup_Uhk = 200,
} uhk_status_group_t;
typedef enum {
kStatus_Uhk_IdleSlave = MAKE_STATUS(kStatusGroup_Uhk, 0), // Another slave should be scheduled
kStatus_Uhk_NoTransfer = MAKE_STATUS(kStatusGroup_Uhk, 1), // The same slave should be rescheduled
kStatus_Uhk_IdleCycle = MAKE_STATUS(kStatusGroup_Uhk, 1), // The same slave should be rescheduled
} uhk_status_t;
// Variables:

View File

@@ -13,7 +13,7 @@
// Macros:
#define SLOT_COUNT 4
#define IS_VALID_SLAVE_SLOT(slotId) (SlotId_LeftKeyboardHalf <= (slotId) && (slotId) <= SlotId_RightModule)
#define IS_VALID_MODULE_SLOT(slotId) (SlotId_LeftKeyboardHalf <= (slotId) && (slotId) <= SlotId_RightModule)
// Typedefs:

View File

@@ -1,8 +1,13 @@
#include "fsl_common.h"
#include "usb_commands/usb_command_get_property.h"
#include "usb_commands/usb_command_get_device_property.h"
#include "usb_protocol_handler.h"
#include "eeprom.h"
#include "versions.h"
#include "slave_drivers/kboot_driver.h"
#include "i2c.h"
#include "init_peripherals.h"
#include "fsl_i2c.h"
#include "timer.h"
version_t deviceProtocolVersion = {
DEVICE_PROTOCOL_MAJOR_VERSION,
@@ -41,7 +46,7 @@ version_t protocolVersions[] =
uint16_t configSizes[] = {HARDWARE_CONFIG_SIZE, USER_CONFIG_SIZE};
void UsbCommand_GetProperty(void)
void UsbCommand_GetDeviceProperty(void)
{
uint8_t propertyId = GetUsbRxBufferUint8(1);
@@ -55,8 +60,19 @@ void UsbCommand_GetProperty(void)
case DevicePropertyId_ConfigSizes:
memcpy(GenericHidOutBuffer+1, (uint8_t*)&configSizes, sizeof(configSizes));
break;
case DevicePropertyId_CurrentKbootCommand:
GenericHidOutBuffer[1] = KbootDriverState.command;
break;
case DevicePropertyId_I2cMainBusBaudRate:
GenericHidOutBuffer[1] = I2C_MAIN_BUS_BASEADDR->F;
SetUsbTxBufferUint32(2, I2cMainBusRequestedBaudRateBps);
SetUsbTxBufferUint32(6, I2cMainBusActualBaudRateBps);
break;
case DevicePropertyId_Uptime:
SetUsbTxBufferUint32(1, CurrentTime);
break;
default:
SetUsbTxBufferUint8(0, UsbStatusCode_GetProperty_InvalidProperty);
SetUsbTxBufferUint8(0, UsbStatusCode_GetDeviceProperty_InvalidProperty);
break;
}
}

View File

@@ -0,0 +1,23 @@
#ifndef __USB_COMMAND_GET_DEVICE_PROPERTY_H__
#define __USB_COMMAND_GET_DEVICE_PROPERTY_H__
// Typedefs:
typedef enum {
DevicePropertyId_DeviceProtocolVersion = 0,
DevicePropertyId_ProtocolVersions = 1,
DevicePropertyId_ConfigSizes = 2,
DevicePropertyId_CurrentKbootCommand = 3,
DevicePropertyId_I2cMainBusBaudRate = 4,
DevicePropertyId_Uptime = 5,
} device_property_t;
typedef enum {
UsbStatusCode_GetDeviceProperty_InvalidProperty = 2,
} usb_status_code_get_device_property_t;
// Functions:
void UsbCommand_GetDeviceProperty(void);
#endif

View File

@@ -1,5 +1,5 @@
#include "fsl_common.h"
#include "usb_commands/usb_command_get_keyboard_state.h"
#include "usb_commands/usb_command_get_device_state.h"
#include "usb_protocol_handler.h"
#include "eeprom.h"
#include "peripherals/merge_sensor.h"

View File

@@ -0,0 +1,26 @@
#include "fsl_common.h"
#include "usb_commands/usb_command_get_module_property.h"
#include "usb_protocol_handler.h"
#include "slot.h"
#include "slave_drivers/uhk_module_driver.h"
void UsbCommand_GetModuleProperty()
{
slot_t slotId = GetUsbRxBufferUint8(1);
if (!IS_VALID_MODULE_SLOT(slotId)) {
SetUsbTxBufferUint8(0, UsbStatusCode_GetModuleProperty_InvalidModuleSlotId);
}
module_property_id_t modulePropertyId = GetUsbRxBufferUint8(2);
switch (modulePropertyId) {
case ModulePropertyId_VersionNumbers: {
uint8_t moduleDriverId = SLOT_ID_TO_UHK_MODULE_DRIVER_ID(slotId);
uhk_module_state_t *moduleState = UhkModuleStates + moduleDriverId;
GenericHidOutBuffer[1] = moduleState->moduleId;
memcpy(GenericHidOutBuffer + 2, &moduleState->moduleProtocolVersion, sizeof(version_t));
memcpy(GenericHidOutBuffer + 8, &moduleState->firmwareVersion, sizeof(version_t));
break;
}
}
}

View File

@@ -0,0 +1,18 @@
#ifndef __USB_COMMAND_GET_MODULE_PROPERTY_H__
#define __USB_COMMAND_GET_MODULE_PROPERTY_H__
// Functions:
void UsbCommand_GetModuleProperty();
// Typedefs:
typedef enum {
ModulePropertyId_VersionNumbers = 0,
} module_property_id_t;
typedef enum {
UsbStatusCode_GetModuleProperty_InvalidModuleSlotId = 2,
} usb_status_code_get_module_property_t;
#endif

View File

@@ -1,20 +0,0 @@
#ifndef __USB_COMMAND_GET_PROPERTY_H__
#define __USB_COMMAND_GET_PROPERTY_H__
// Typedefs:
typedef enum {
DevicePropertyId_DeviceProtocolVersion = 0,
DevicePropertyId_ProtocolVersions = 1,
DevicePropertyId_ConfigSizes = 2,
} system_property_t;
typedef enum {
UsbStatusCode_GetProperty_InvalidProperty = 2,
} usb_status_code_get_property_t;
// Functions:
void UsbCommand_GetProperty(void);
#endif

View File

@@ -0,0 +1,19 @@
#include "fsl_common.h"
#include "usb_commands/usb_command_get_slave_i2c_errors.h"
#include "usb_protocol_handler.h"
#include "slave_scheduler.h"
#include "i2c_error_logger.h"
void UsbCommand_GetSlaveI2cErrors()
{
uint8_t slaveId = GetUsbRxBufferUint8(1);
if (!IS_VALID_SLAVE_ID(slaveId)) {
SetUsbTxBufferUint8(0, UsbStatusCode_GetModuleProperty_InvalidSlaveId);
}
i2c_slave_error_counter_t *i2cSlaveErrorCounter = I2cSlaveErrorCounters + slaveId;
GenericHidOutBuffer[1] = i2cSlaveErrorCounter->errorTypeCount;
memcpy(GenericHidOutBuffer + 2, i2cSlaveErrorCounter->errors, sizeof(i2c_error_count_t) * MAX_LOGGED_I2C_ERROR_TYPES_PER_SLAVE);
}

View File

@@ -0,0 +1,14 @@
#ifndef __USB_COMMAND_GET_SLAVE_I2C_ERRORS_H__
#define __USB_COMMAND_GET_SLAVE_I2C_ERRORS_H__
// Functions:
void UsbCommand_GetSlaveI2cErrors();
// Typedefs:
typedef enum {
UsbStatusCode_GetModuleProperty_InvalidSlaveId = 2,
} usb_status_code_get_slave_i2c_errors_t;
#endif

View File

@@ -7,7 +7,7 @@ void UsbCommand_JumpToModuleBootloader(void)
{
uint8_t slotId = GetUsbRxBufferUint8(1);
if (!IS_VALID_SLAVE_SLOT(slotId)) {
if (!IS_VALID_MODULE_SLOT(slotId)) {
SetUsbTxBufferUint8(0, UsbStatusCode_JumpToModuleBootloader_InvalidSlaveSlotId);
return;
}

View File

@@ -6,5 +6,5 @@ void UsbCommand_SendKbootCommandToModule(void)
{
KbootDriverState.phase = 0;
KbootDriverState.i2cAddress = GetUsbRxBufferUint8(2);
KbootDriverState.commandType = GetUsbRxBufferUint8(1); // Command should be set last.
KbootDriverState.command = GetUsbRxBufferUint8(1); // Command should be set last.
}

View File

@@ -0,0 +1,11 @@
#include "usb_protocol_handler.h"
#include "usb_commands/usb_command_set_i2c_baud_rate.h"
#include "init_peripherals.h"
#include "fsl_i2c.h"
void UsbCommand_SetI2cBaudRate(void)
{
uint32_t i2cBaudRate = GetUsbRxBufferUint32(1);
I2cMainBusRequestedBaudRateBps = i2cBaudRate;
ReinitI2cMainBus();
}

View File

@@ -0,0 +1,8 @@
#ifndef __USB_COMMAND_SET_I2C_BAUD_RATE__
#define __USB_COMMAND_SET_I2C_BAUD_RATE__
// Functions:
void UsbCommand_SetI2cBaudRate(void);
#endif

View File

@@ -36,7 +36,7 @@ uint8_t UsbBasicKeyboardReportDescriptor[USB_BASIC_KEYBOARD_REPORT_DESCRIPTOR_LE
// Scancodes
HID_RI_LOGICAL_MINIMUM(8, 0x00),
HID_RI_LOGICAL_MAXIMUM(8, 0xFF),
HID_RI_LOGICAL_MAXIMUM(16, 0xFF),
HID_RI_USAGE_PAGE(8, HID_RI_USAGE_PAGE_KEY_CODES),
HID_RI_USAGE_MINIMUM(8, 0x00),
HID_RI_USAGE_MAXIMUM(8, 0xFF),

View File

@@ -3,7 +3,7 @@
// Macros:
#define USB_BASIC_KEYBOARD_REPORT_DESCRIPTOR_LENGTH 63
#define USB_BASIC_KEYBOARD_REPORT_DESCRIPTOR_LENGTH 64
#define USB_BASIC_KEYBOARD_MAX_KEYS 6
// Variables:

View File

@@ -10,7 +10,7 @@ uint8_t UsbGenericHidReportDescriptor[USB_GENERIC_HID_REPORT_DESCRIPTOR_LENGTH]
// Input flowing from device to host
HID_RI_USAGE(8, USB_GENERIC_HID_REPORT_DESCRIPTOR_VENDOR_USAGE_DATA_IN),
HID_RI_LOGICAL_MINIMUM(8, 0x00),
HID_RI_LOGICAL_MAXIMUM(8, 0xFF),
HID_RI_LOGICAL_MAXIMUM(16, 0xFF),
HID_RI_REPORT_SIZE(8, 0x08),
HID_RI_REPORT_COUNT(8, USB_GENERIC_HID_INTERRUPT_IN_PACKET_SIZE),
HID_RI_INPUT(8, HID_IOF_DATA | HID_IOF_VARIABLE | HID_IOF_ABSOLUTE),
@@ -18,7 +18,7 @@ uint8_t UsbGenericHidReportDescriptor[USB_GENERIC_HID_REPORT_DESCRIPTOR_LENGTH]
// Output flowing from host to device
HID_RI_USAGE(8, USB_GENERIC_HID_REPORT_DESCRIPTOR_VENDOR_USAGE_DATA_OUT),
HID_RI_LOGICAL_MINIMUM(8, 0x00),
HID_RI_LOGICAL_MAXIMUM(8, 0xFF),
HID_RI_LOGICAL_MAXIMUM(16, 0xFF),
HID_RI_REPORT_SIZE(8, 0x08),
HID_RI_REPORT_COUNT(8, USB_GENERIC_HID_INTERRUPT_OUT_PACKET_SIZE),
HID_RI_OUTPUT(8, HID_IOF_DATA | HID_IOF_VARIABLE | HID_IOF_ABSOLUTE | HID_IOF_NON_VOLATILE),

View File

@@ -3,7 +3,7 @@
// Macros:
#define USB_GENERIC_HID_REPORT_DESCRIPTOR_LENGTH 31
#define USB_GENERIC_HID_REPORT_DESCRIPTOR_LENGTH 33
#define USB_GENERIC_HID_REPORT_DESCRIPTOR_VENDOR_USAGE_PAGE_INDEX 0x80
#define USB_GENERIC_HID_REPORT_DESCRIPTOR_VENDOR_USAGE_COLLECTION 0x81

View File

@@ -5,14 +5,16 @@ uint8_t UsbSystemKeyboardReportDescriptor[USB_SYSTEM_KEYBOARD_REPORT_DESCRIPTOR_
HID_RI_USAGE_PAGE(8, HID_RI_USAGE_PAGE_GENERIC_DESKTOP),
HID_RI_USAGE(8, HID_RI_USAGE_GENERIC_DESKTOP_SYSTEM_CONTROL),
HID_RI_COLLECTION(8, HID_RI_COLLECTION_APPLICATION),
// System key
HID_RI_REPORT_SIZE(8, 2),
HID_RI_REPORT_COUNT(8, USB_SYSTEM_KEYBOARD_MAX_KEYS),
HID_RI_LOGICAL_MINIMUM(8, 1),
HID_RI_LOGICAL_MAXIMUM(8, 3),
HID_RI_USAGE(8, 0x82),
HID_RI_USAGE(8, 0x81),
HID_RI_USAGE(8, 0x83),
HID_RI_INPUT(8, HID_IOF_NO_PREFERRED_STATE | HID_IOF_NULLSTATE),
// System keys
HID_RI_USAGE_MINIMUM(8, 0x81), // SYSTEM_POWER_DOWN, SYSTEM_SLEEP and SYSTEM_WAKE_UP
HID_RI_USAGE_MAXIMUM(8, 0x83),
HID_RI_REPORT_SIZE(8, 1),
HID_RI_REPORT_COUNT(8, 3),
HID_RI_INPUT(8, HID_IOF_DATA | HID_IOF_VARIABLE | HID_IOF_ABSOLUTE),
// Padding
HID_RI_REPORT_SIZE(8, 1),
HID_RI_REPORT_COUNT(8, 5),
HID_RI_INPUT(8, HID_IOF_CONSTANT | HID_IOF_VARIABLE | HID_IOF_ABSOLUTE),
HID_RI_END_COLLECTION(0),
};

View File

@@ -1,9 +1,11 @@
#include "led_display.h"
#include "usb_composite_device.h"
static usb_basic_keyboard_report_t usbBasicKeyboardReports[2];
uint32_t UsbBasicKeyboardActionCounter;
usb_basic_keyboard_report_t* ActiveUsbBasicKeyboardReport = usbBasicKeyboardReports;
bool IsUsbBasicKeyboardReportSent = false;
static uint8_t usbBasicKeyboardInBuffer[USB_BASIC_KEYBOARD_REPORT_LENGTH];
usb_basic_keyboard_report_t* getInactiveUsbBasicKeyboardReport(void)
{
@@ -41,10 +43,28 @@ usb_status_t UsbBasicKeyboardCallback(class_handle_t handle, uint32_t event, voi
}
break;
case kUSB_DeviceHidEventGetReport:
case kUSB_DeviceHidEventSetReport:
case kUSB_DeviceHidEventRequestReportBuffer:
error = kStatus_USB_InvalidRequest;
break;
case kUSB_DeviceHidEventSetReport: {
usb_device_hid_report_struct_t *report = (usb_device_hid_report_struct_t*)param;
if (report->reportType == USB_DEVICE_HID_REQUEST_GET_REPORT_TYPE_OUPUT && report->reportId == 0 && report->reportLength == 1) {
LedDisplay_SetIcon(LedDisplayIcon_CapsLock, report->reportBuffer[0] & HID_KEYBOARD_LED_CAPSLOCK);
error = kStatus_USB_Success;
} else {
error = kStatus_USB_InvalidRequest;
}
break;
}
case kUSB_DeviceHidEventRequestReportBuffer: {
usb_device_hid_report_struct_t *report = (usb_device_hid_report_struct_t*)param;
if (report->reportLength <= USB_BASIC_KEYBOARD_REPORT_LENGTH) {
report->reportBuffer = usbBasicKeyboardInBuffer;
error = kStatus_USB_Success;
} else {
error = kStatus_USB_InvalidRequest;
}
break;
}
case kUSB_DeviceHidEventGetIdle:
case kUSB_DeviceHidEventGetProtocol:
case kUSB_DeviceHidEventSetIdle:

View File

@@ -1,6 +1,7 @@
#include "usb_protocol_handler.h"
#include "buffer.h"
#include "usb_commands/usb_command_get_property.h"
#include "usb_commands/usb_command_get_device_property.h"
#include "usb_commands/usb_command_get_module_property.h"
#include "usb_commands/usb_command_reenumerate.h"
#include "usb_commands/usb_command_set_test_led.h"
#include "usb_commands/usb_command_write_config.h"
@@ -9,18 +10,20 @@
#include "usb_commands/usb_command_get_adc_value.h"
#include "usb_commands/usb_command_launch_eeprom_transfer.h"
#include "usb_commands/usb_command_read_config.h"
#include "usb_commands/usb_command_get_keyboard_state.h"
#include "usb_commands/usb_command_get_device_state.h"
#include "usb_commands/usb_command_get_debug_buffer.h"
#include "usb_commands/usb_command_jump_to_module_bootloader.h"
#include "usb_commands/usb_command_send_kboot_command_to_module.h"
#include "usb_commands/usb_command_get_slave_i2c_errors.h"
#include "usb_commands/usb_command_set_i2c_baud_rate.h"
void UsbProtocolHandler(void)
{
bzero(GenericHidOutBuffer, USB_GENERIC_HID_OUT_BUFFER_LENGTH);
uint8_t command = GetUsbRxBufferUint8(0);
switch (command) {
case UsbCommandId_GetProperty:
UsbCommand_GetProperty();
case UsbCommandId_GetDeviceProperty:
UsbCommand_GetDeviceProperty();
break;
case UsbCommandId_Reenumerate:
UsbCommand_Reenumerate();
@@ -61,6 +64,15 @@ void UsbProtocolHandler(void)
case UsbCommandId_SetLedPwmBrightness:
UsbCommand_SetLedPwmBrightness();
break;
case UsbCommandId_GetModuleProperty:
UsbCommand_GetModuleProperty();
break;
case UsbCommandId_GetSlaveI2cErrors:
UsbCommand_GetSlaveI2cErrors();
break;
case UsbCommandId_SetI2cBaudRate:
UsbCommand_SetI2cBaudRate();
break;
default:
SetUsbTxBufferUint8(0, UsbStatusCode_InvalidCommand);
break;

View File

@@ -13,7 +13,7 @@
// Typedefs:
typedef enum {
UsbCommandId_GetProperty = 0x00,
UsbCommandId_GetDeviceProperty = 0x00,
UsbCommandId_Reenumerate = 0x01,
UsbCommandId_JumpToModuleBootloader = 0x02,
@@ -30,6 +30,9 @@
UsbCommandId_GetDebugBuffer = 0x0b,
UsbCommandId_GetAdcValue = 0x0c,
UsbCommandId_SetLedPwmBrightness = 0x0d,
UsbCommandId_GetModuleProperty = 0x0e,
UsbCommandId_GetSlaveI2cErrors = 0x0f,
UsbCommandId_SetI2cBaudRate = 0x10,
} usb_command_id_t;
typedef enum {

View File

@@ -20,7 +20,8 @@
uint32_t UsbReportUpdateTime = 0;
static uint32_t elapsedTime;
uint16_t DoubleTapSwitchLayerTimeout = 250;
uint16_t DoubleTapSwitchLayerTimeout = 150;
uint16_t DoubleTapSwitchLayerReleaseTimeout = 100;
static bool activeMouseStates[ACTIVE_MOUSE_STATES_COUNT];
@@ -191,11 +192,13 @@ static layer_id_t previousLayer = LayerId_Base;
static uint8_t basicScancodeIndex = 0;
static uint8_t mediaScancodeIndex = 0;
static uint8_t systemScancodeIndex = 0;
key_state_t *doubleTapSwitchLayerKey;
uint32_t doubleTapSwitchLayerStartTime;
void applyKeyAction(key_state_t *keyState, key_action_t *action)
{
static key_state_t *doubleTapSwitchLayerKey;
static uint32_t doubleTapSwitchLayerStartTime;
static uint32_t doubleTapSwitchLayerTriggerTime;
if (keyState->suppressed) {
return;
}
@@ -233,16 +236,20 @@ void applyKeyAction(key_state_t *keyState, key_action_t *action)
activeMouseStates[action->mouseAction] = true;
break;
case KeyActionType_SwitchLayer:
if (!keyState->previous && previousLayer == LayerId_Base && action->switchLayer.mode == SwitchLayerMode_HoldAndDoubleTapToggle) {
if (doubleTapSwitchLayerKey) {
if (Timer_GetElapsedTimeAndSetCurrent(&doubleTapSwitchLayerStartTime) < DoubleTapSwitchLayerTimeout) {
ToggledLayer = action->switchLayer.layer;
if (keyState->previous && doubleTapSwitchLayerKey == keyState &&
Timer_GetElapsedTime(&doubleTapSwitchLayerTriggerTime) > DoubleTapSwitchLayerReleaseTimeout)
{
ToggledLayer = LayerId_Base;
}
doubleTapSwitchLayerKey = NULL;
if (!keyState->previous && previousLayer == LayerId_Base && action->switchLayer.mode == SwitchLayerMode_HoldAndDoubleTapToggle) {
if (doubleTapSwitchLayerKey && Timer_GetElapsedTimeAndSetCurrent(&doubleTapSwitchLayerStartTime) < DoubleTapSwitchLayerTimeout) {
ToggledLayer = action->switchLayer.layer;
doubleTapSwitchLayerTriggerTime = CurrentTime;
} else {
doubleTapSwitchLayerKey = keyState;
doubleTapSwitchLayerStartTime = CurrentTime;
}
doubleTapSwitchLayerStartTime = CurrentTime;
}
break;
case KeyActionType_SwitchKeymap:
@@ -258,10 +265,8 @@ static uint8_t secondaryRoleSlotId;
static uint8_t secondaryRoleKeyId;
static secondary_role_t secondaryRole;
#define pos 35
void updateActiveUsbReports(void)
{
SetDebugBufferUint32(pos, 1);
memset(activeMouseStates, 0, ACTIVE_MOUSE_STATES_COUNT);
static uint8_t previousModifiers = 0;
@@ -293,7 +298,6 @@ void updateActiveUsbReports(void)
memcpy(&ActiveUsbSystemKeyboardReport, &MacroSystemKeyboardReport, sizeof MacroSystemKeyboardReport);
return;
}
SetDebugBufferUint32(pos, 2);
for (uint8_t slotId=0; slotId<SLOT_COUNT; slotId++) {
for (uint8_t keyId=0; keyId<MAX_KEY_COUNT_PER_MODULE; keyId++) {
@@ -347,10 +351,8 @@ void updateActiveUsbReports(void)
keyState->previous = keyState->current;
}
}
SetDebugBufferUint32(pos, 4);
processMouseActions();
SetDebugBufferUint32(pos, 5);
// When a layer switcher key gets pressed along with another key that produces some modifiers
// and the accomanying key gets released then keep the related modifiers active a long as the
@@ -365,7 +367,6 @@ void updateActiveUsbReports(void)
previousModifiers = ActiveUsbBasicKeyboardReport->modifiers;
previousLayer = activeLayer;
SetDebugBufferUint32(pos, 7);
}
bool UsbBasicKeyboardReportEverSent = false;

View File

@@ -15,9 +15,9 @@
"commander": "^2.11.0",
"shelljs": "^0.7.8"
},
"firmwareVersion": "7.0.0",
"deviceProtocolVersion": "4.0.0",
"moduleProtocolVersion": "3.0.0",
"firmwareVersion": "8.1.5",
"deviceProtocolVersion": "4.2.0",
"moduleProtocolVersion": "4.0.0",
"userConfigVersion": "4.0.0",
"hardwareConfigVersion": "1.0.0",
"devices": [

View File

@@ -27,9 +27,11 @@
typedef enum {
SlaveProperty_Sync,
SlaveProperty_ProtocolVersion,
SlaveProperty_ModuleProtocolVersion,
SlaveProperty_FirmwareVersion,
SlaveProperty_ModuleId,
SlaveProperty_Features,
SlaveProperty_KeyCount,
SlaveProperty_PointerCount,
} slave_property_t;
typedef enum {
@@ -40,11 +42,6 @@
ModuleId_TouchpadRight = 5,
} module_id_t;
typedef struct {
uint8_t keyCount;
bool hasPointer;
} uhk_module_features_t;
typedef struct {
uint8_t length;
uint16_t crc;

View File

@@ -18,15 +18,15 @@
// Variables:
#define FIRMWARE_MAJOR_VERSION 6
#define FIRMWARE_MINOR_VERSION 0
#define FIRMWARE_PATCH_VERSION 0
#define FIRMWARE_MAJOR_VERSION 8
#define FIRMWARE_MINOR_VERSION 1
#define FIRMWARE_PATCH_VERSION 5
#define DEVICE_PROTOCOL_MAJOR_VERSION 3
#define DEVICE_PROTOCOL_MINOR_VERSION 0
#define DEVICE_PROTOCOL_MAJOR_VERSION 4
#define DEVICE_PROTOCOL_MINOR_VERSION 2
#define DEVICE_PROTOCOL_PATCH_VERSION 0
#define MODULE_PROTOCOL_MAJOR_VERSION 3
#define MODULE_PROTOCOL_MAJOR_VERSION 4
#define MODULE_PROTOCOL_MINOR_VERSION 0
#define MODULE_PROTOCOL_PATCH_VERSION 0