This commit introduces a software-based fake capture driver that simulates
a 10Hz square wave with 50% duty cycle, enabling development and testing
of capture-related applications without requiring real hardware.
Background:
The capture driver subsystem requires hardware support (timers with input
capture functionality) to measure external signal frequency and duty cycle.
During development, testing, or on platforms without capture hardware, it's
difficult to develop and test applications that use the capture API.
Problem:
Without a fake/simulator driver:
- Developers cannot test capture applications without specific hardware
- Continuous Integration (CI) systems cannot run capture-related tests
- Applications cannot be developed on platforms lacking capture hardware
- Testing edge notification features requires complex hardware setup
- Difficult to reproduce specific timing scenarios for debugging
Solution:
This commit provides a software-simulated capture driver that generates
predictable capture events using a watchdog timer. The fake driver
produces a square wave signal at 10Hz frequency with 50% duty cycle,
allowing applications to test the full capture API without hardware.
Signed-off-by: dongjiuzhu1 <dongjiuzhu1@xiaomi.com>
This commit adds comprehensive signal notification support to the capture
driver, enabling applications to be asynchronously notified when capture
edge events occur on any channel, rather than having to poll for events.
Background:
The capture driver is used to measure frequency and duty cycle of external
signals by detecting edges (rising/falling). Previously, applications could
only retrieve captured values through periodic polling via CAPIOC_GETDUTY
and CAPIOC_GETFREQ ioctl commands, which is inefficient for event-driven
applications.
Problem:
Without event notification, applications must:
- Continuously poll the capture device to check for new events
- Waste CPU cycles in polling loops
- Experience higher latency in responding to capture events
- Cannot efficiently handle multiple capture channels simultaneously
Solution:
This commit adds a signal-based notification mechanism that allows
applications to register callbacks for specific capture channels and
edge types (rising, falling, or both). When the hardware detects the
configured edge, a signal is sent to the registered task.
Signed-off-by: dongjiuzhu1 <dongjiuzhu1@xiaomi.com>
This patch adds a dummy PTP clock driver implementation that provides
a software-based PTP clock for testing and development purposes.
Key changes include:
1. Dummy PTP clock driver implementation:
- Added drivers/timers/ptp_clock_dummy.c
- Provides software-based PTP clock using system monotonic clock
- Implements all required lower-half driver operations
2. Lower-half driver operations:
- adjfine: Frequency adjustment (stores adjustment value)
- adjtime: Time offset adjustment (applies delta to base time)
- gettime: Returns current PTP clock time
- settime: Sets PTP clock time
- getcaps: Reports clock capabilities (1 billion PPB max adjustment)
- getcrosststamp: Provides system/device cross-timestamp
3. Driver initialization:
- Added ptp_clock_dummy_init() in drivers/drivers_initialize.c
- Auto-registration under CONFIG_PTP_CLOCK_DUMMY configuration
- Creates /dev/ptp0 character device node
4. Build system integration:
- Added CONFIG_PTP_CLOCK_DUMMY Kconfig option (depends on PTP_CLOCK)
- Updated CMakeLists.txt and Make.defs
- Added include/nuttx/timers/ptp_clock_dummy.h header
5. Implementation details:
- Uses clock_gettime(CLOCK_MONOTONIC) as time base
- Tracks time offset and frequency adjustment internally
- Suitable for testing PTP clock applications without hardware
This dummy driver enables development and testing of PTP clock applications
on platforms without dedicated PTP hardware support.
Signed-off-by: dongjiuzhu1 <dongjiuzhu1@xiaomi.com>
This patch introduces the foundational PTP (Precision Time Protocol) clock
driver framework for NuttX, enabling precise time synchronization support
based on IEEE 1588 standard.
Key changes include:
1. New PTP clock driver infrastructure:
- Added drivers/timers/ptp_clock.c implementing upper-half driver
- Created include/nuttx/timers/ptp_clock.h with PTP clock interfaces
- Implemented upper/lower half driver architecture for hardware abstraction
2. Core functionality:
- Clock time get/set operations (gettime, settime)
- Frequency adjustment support (adjtime, adjfine)
- Phase adjustment capabilities
- System-device cross-timestamping for precise synchronization
3. IOCTL commands:
- PTP_CLOCK_SETTIME/GETTIME for time manipulation
- PTP_CLOCK_GETRES for resolution queries
- PTP_CLOCK_ADJTIME for time adjustment
- PTP_CLOCK_GETCAPS for capability queries
- PTP_SYS_OFFSET* for system offset measurements
4. Supporting structures:
- struct ptp_lowerhalf_s: lower-half driver interface
- struct ptp_clock_caps: clock capabilities descriptor
- struct ptp_sys_offset: system time offset measurement
- Added timex structures in include/sys/timex.h for ADJ_* operations
5. Build system integration:
- Added CONFIG_PTP_CLOCK Kconfig option
- Updated CMakeLists.txt and Make.defs
- Added PTPCLK debug macros in include/debug.h
This framework provides the base for PTP clock implementations, allowing
hardware-specific drivers to register and provide precise time services
through a standardized interface.
Signed-off-by: dongjiuzhu1 <dongjiuzhu1@xiaomi.com>
This commit introduce new clockdevice interfaces for oneshot.
- It can represent both `timer` and `alarm`.
- It simplifies the implementation of timer driver. Timer driver do not need considering the time conversion between clock count, tick and timespec.
- It sets timer align to the tick boundary to improve timer accuracy.
- It can avoid using 64-bit division during timer expiration interrupt, improves performance and reduces interrupt latency.
- It considers almost all multiplication overflow problems in time conversion without processing at the driver.
Signed-off-by: ouyangxiangzhen <ouyangxiangzhen@xiaomi.com>
Add support for watchdog timer notifer chain so that users
can customize the callback function when the watchdog timer
times out which enabled by Auto-monitor
Signed-off-by: yaojiaqi <yaojiaqi@lixiang.com>
In some areas with high security requirements such as vehicle control, in order to meet functional safety requirements, the timeout and feeding interval of the watchdog need to be configured in milliseconds
Signed-off-by: yaojiaqi <yaojiaqi@lixiang.com>
This commit adds configuration option CONFIG_MCP794XX_DATETIME_UTC.
If set, the datetime is stored in UTC instead of local time. The
default value is kept at local time to keep backwards compatibility
with devices currently using the RTC.
Signed-off-by: Michal Lenc <michallenc@seznam.cz>
Previous adjtime() implementation was limited to adjusting system
timer tick period. This commit reimplements the internals to use
a kernel watchdog timer. Platform-independent part of the code now
works also for adjusting hires RTC and tickless timer rate.
User code facing API is unchanged. Architecture code API has changed:
up_adj_timer_period() is replaced by up_adjtime().
Other improvements:
- Support query of remaining adjustment by passing NULL to first
argument of adjtime(). This matches Linux behavior.
- Improve resolution available for architecture driver, previously
limited to 1 microsecond per tick. Now 1 nanosecond per second.
wdog_notifier() will be called in _assert to keep the crash scene
as mush as possible, which is useful for debug.
But once disable the watchdog, the hardware watchdog can not reboot
the system too. If a crash happened in the _assert (e.g. the tcb sp
has been corrupted, system will crash again in tack stack dump),
system will crashing forever and can not reboot.
So add a config to disable this feature by default and can be enable
if anyone need it.
Signed-off-by: Bowen Wang <wangbowen6@xiaomi.com>
PWM drivers usually supports dead time generators that automatically
insert output activation delay for complementary PWM outputs. This
is usefull for some control purposes as control of H bridge for example.
This commit adds an application to driver interface that can be used
to set up those delays (if supported by the selected architecture)
directly from the application. The set up remains the same as for duty
cycle value.
The whole addition is by default disabled. It can be enabled by config
option PWM_DEADTIME.
Signed-off-by: Michal Lenc <michallenc@seznam.cz>
Generic drivers shoud not use architecture related config options like
CONFIG_SAMV7_PWM. This commit adds PWM pin overwrite under generic
configuration option CONFIG_PWM_OVERWRITE.
Now the overwrite can be used on other architectures as well or can be
completely disabled for SAMv7.
Signed-off-by: Michal Lenc <michallenc@seznam.cz>
specified the name of remote proc(rpmsg server)
Change-Id: I0086bb43727a2bbb5e68f88907b5e4608182ef9c
Signed-off-by: Jiuzhu Dong <dongjiuzhu1@xiaomi.com>
This port was effort of a number of people, I rather arbitrarily gave authorship to Guiding Li because he has the largest number of fundamental quashed commits from the Xiamoi repository.
Squashed commit of the following:
Author: Xiang Xiao <xiaoxiang@pinecone.net>
include/nuttx/b2c.h and libx/libc/string: Add non-standard string functions to deal with cases where there are more than 8-bits in a type char.
Author: Gregory Nutt <gnutt@nuttx.org>
Fix several build issues/missing definitiona needed for OpenAMP build in drivers/.
Add OpenAMP code has been reviewed and ran through tools/nxstyle (with all reports accounted for).
Author: Xiang Xiao <xiaoxiang@xiaomi.com>
tools/: Fix the minor issue in Makefile
Author: Gregory Nutt <gnutt@nuttx.org>
drivers/rptun/rptun.c: Review for coding standard. Run against tools/nxstyle.
tools/LibTargets.mk: Fix some TABs that were turned into spaces by a copy-paste.
fs/hostfs: Add configure and build support for hostfs RPC.
drivers/timer: Add configure and build support for syslog RTC.
drivers/syslog: Add configure and build support for syslog RPC.
drivers/serial: Add configure and build support for serial RPC.
Kconfig, tools/*.mk. openamp/: Add basic OpenAMP build support.
drivers/rptun: Add configure and build support for OpenAMP tunnel drivers.
drivers/net: Update Make.defs and Kconfig for OpenSDA support.
Remove drivers/clk/clk-rpmsg.c drivers/power/rpmsg_regulator.c. These depend on upstreaming support for a new subsystem based on the clk/regulator is model from Linux. Removed because we want to separate the activities. We will just try to get the basic OpenAMP support in place for now.
Remove drivers/misc/misc_rpmsg.c and include/nuttx/misc/misc_rpmsg.h. These are specific to the Xiaomi application.
Author: zhuyanlin <zhuyanlin@pinecone.net>
This commit brings in the OpenAMP OS driver/RPC components from https://github.com/FishsemiCode/nuttx. Initial commit is source files only. Additional changes to Kconfig and Make.defs files still needed.
Author: Jianli Dong <dongjianli@pinecone.net>
This commit brings in the OpenAMP OS driver/RPC components from https://github.com/FishsemiCode/nuttx. Initial commit is source files only. Additional changes to Kconfig and Make.defs files still needed.
Author: Guiding Li <liguiding@pinecone.net>
This commit brings in the OpenAMP OS driver/RPC components from https://github.com/FishsemiCode/nuttx. Initial commit is source files only. Additional changes to Kconfig and Make.defs files still needed.