I was trying to do a minimal build for ChibiOS V3.x by turning off all the option in the chconf.h file and all the perohperals in halconf.h and found that some options are mandatory:
#define CH_CFG_USE_MESSAGES TRUE
#define CH_CFG_USE_EVENTS TRUE
Setting CH_CFG_USE_MESSAGES -> FALSE
gives the following compile error in threads which seems fundamental
../libraries/ChibiOS-RT/os/rt/src/chthreads.c:501:25: error: 'struct thread' has no member named 'p_msg'
return chThdGetSelfX()->p_msg;
Setting CH_CFG_USE_EVENTS -> FALSE
Causes errors in the inline functions:
static inline void osalEventObjectInit(event_source_t *esp) {
static inline void osalEventBroadcastFlagsI(event_source_t *esp,
static inline void osalEventBroadcastFlags(event_source_t *esp,
in osal.h which is called from hal.h.
the #include "hal.h" is called for ADC and other HAL drivers regardless of the HAL_USE_XXX flag becuse it occurs before the #if HAL_USE_XXX
its also included in the file that includes the port SysTick handler which if I am not mistaken is mandatory for the OS to function.
Is this intentional or am I just doing somehting wrong ?
Minimal Build for 3.x
- Giovanni
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Re: Minimal Build for 3.x
Hi,
The issue with messages and events has already been fixed, please update your 3.0 tree from the repository. I will look into those HAL-related suggestions.
Giovanni
The issue with messages and events has already been fixed, please update your 3.0 tree from the repository. I will look into those HAL-related suggestions.
Giovanni
-
AndrewGoedhart
- Posts: 3
- Joined: Tue Nov 18, 2014 11:37 am
Re: Minimal Build for 3.x
Hi
Pulled what I assumed to be the latest from: https://github.com/ChibiOS/ChibiOS-RT
Just to make sure deleted my previous git repositiory and recloned.
Got the same problem. Then I looked at the git repository history and the last commit was 5 October.
Your SVN repo has its last commit as 2014/11/17
Looks like the Git synchronisation is down.
After I pulled the latest HEAD from the SVN archive we now no longer have a compiler error but I don't know if we are in a better situation.
It looks like there is no minimal configuration any more.
The smallest configuration that compiles is:
#define CH_CFG_USE_SEMAPHORES TRUE
#define CH_CFG_USE_MUTEXES TRUE
#define CH_CFG_USE_EVENTS TRUE
#define CH_CFG_USE_EVENTS_TIMEOUT TRUE
#define CH_CFG_USE_MAILBOXES TRUE
#define CH_CFG_USE_MEMCORE TRUE
#define CH_CFG_USE_MEMPOOLS TRUE
#define CH_CFG_USE_DYNAMIC TRUE
The last three are especially problematic for me because one of the reasons for looking at CHibiOS over FreeRTOS was that the kernel could be used with static allocation. Mainly because safety critical systems generally include phrases like "Dynamic memory allocation shall NOT be used ". Standards such as IEC 61508-7 are rather emphatic about this. With the updated IEC specifications safety critical systems typically now include a huge array of stuff including most home appliances so its not such a niche market any more. ChibiOS is compact, nice and clean with basic test coverage and good documentation making it ideal for that type of thing. Being able to exclude parts of the OS that aren't being used in the code base is actually quite important for this situation as it reduces test and compliance burdens.
It also doesn't help that one of the processors I need to run it on currently only has 16k of memory
.
What is the intention around the minimal build configurations and static allocation. Will it be supported and re-enabled in the future or is ChibiOS going in a different direction.
Andrew
Pulled what I assumed to be the latest from: https://github.com/ChibiOS/ChibiOS-RT
Just to make sure deleted my previous git repositiory and recloned.
Got the same problem. Then I looked at the git repository history and the last commit was 5 October.
Your SVN repo has its last commit as 2014/11/17
Looks like the Git synchronisation is down.
After I pulled the latest HEAD from the SVN archive we now no longer have a compiler error but I don't know if we are in a better situation.
It looks like there is no minimal configuration any more.
The smallest configuration that compiles is:
#define CH_CFG_USE_SEMAPHORES TRUE
#define CH_CFG_USE_MUTEXES TRUE
#define CH_CFG_USE_EVENTS TRUE
#define CH_CFG_USE_EVENTS_TIMEOUT TRUE
#define CH_CFG_USE_MAILBOXES TRUE
#define CH_CFG_USE_MEMCORE TRUE
#define CH_CFG_USE_MEMPOOLS TRUE
#define CH_CFG_USE_DYNAMIC TRUE
The last three are especially problematic for me because one of the reasons for looking at CHibiOS over FreeRTOS was that the kernel could be used with static allocation. Mainly because safety critical systems generally include phrases like "Dynamic memory allocation shall NOT be used ". Standards such as IEC 61508-7 are rather emphatic about this. With the updated IEC specifications safety critical systems typically now include a huge array of stuff including most home appliances so its not such a niche market any more. ChibiOS is compact, nice and clean with basic test coverage and good documentation making it ideal for that type of thing. Being able to exclude parts of the OS that aren't being used in the code base is actually quite important for this situation as it reduces test and compliance burdens.
It also doesn't help that one of the processors I need to run it on currently only has 16k of memory
What is the intention around the minimal build configurations and static allocation. Will it be supported and re-enabled in the future or is ChibiOS going in a different direction.
Andrew
- Giovanni
- Site Admin
- Posts: 14891
- Joined: Wed May 27, 2009 8:48 am
- Has thanked: 1202 times
- Been thanked: 996 times
Re: Minimal Build for 3.x
Hi,
I just successfully compiled the RT-STM32F051-DISCOVERY demo with the following configuration:
The few options to TRUE are actually required by the HAL or by the test suite. I don't understand why you are experiencing that problem. Now there is also a test script that compiles the kernel flipping all switches in order to avoid this kind of errors, it is under: /test/rt/testbuild
Are you checking out from this URL? http://svn.code.sf.net/p/chibios/svn/trunk/
By the way, if you need a super compact kernel the you may also try NIL, it is included in ChibiOS 3.0, its maximum configuration is well below 1KB and it is fully static, see the various demos. The API is a subset of the ChibiOS/RT API.
Giovanni
I just successfully compiled the RT-STM32F051-DISCOVERY demo with the following configuration:
Code: Select all
/*
ChibiOS - Copyright (C) 2006-2014 Giovanni Di Sirio
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
/**
* @file templates/chconf.h
* @brief Configuration file template.
* @details A copy of this file must be placed in each project directory, it
* contains the application specific kernel settings.
*
* @addtogroup config
* @details Kernel related settings and hooks.
* @{
*/
#ifndef _CHCONF_H_
#define _CHCONF_H_
/*===========================================================================*/
/**
* @name System timers settings
* @{
*/
/*===========================================================================*/
/**
* @brief System time counter resolution.
* @note Allowed values are 16 or 32 bits.
*/
#define CH_CFG_ST_RESOLUTION 32
/**
* @brief System tick frequency.
* @details Frequency of the system timer that drives the system ticks. This
* setting also defines the system tick time unit.
*/
#define CH_CFG_ST_FREQUENCY 10000
/**
* @brief Time delta constant for the tick-less mode.
* @note If this value is zero then the system uses the classic
* periodic tick. This value represents the minimum number
* of ticks that is safe to specify in a timeout directive.
* The value one is not valid, timeouts are rounded up to
* this value.
*/
#define CH_CFG_ST_TIMEDELTA 2
/** @} */
/*===========================================================================*/
/**
* @name Kernel parameters and options
* @{
*/
/*===========================================================================*/
/**
* @brief Round robin interval.
* @details This constant is the number of system ticks allowed for the
* threads before preemption occurs. Setting this value to zero
* disables the preemption for threads with equal priority and the
* round robin becomes cooperative. Note that higher priority
* threads can still preempt, the kernel is always preemptive.
* @note Disabling the round robin preemption makes the kernel more compact
* and generally faster.
* @note The round robin preemption is not supported in tickless mode and
* must be set to zero in that case.
*/
#define CH_CFG_TIME_QUANTUM 0
/**
* @brief Managed RAM size.
* @details Size of the RAM area to be managed by the OS. If set to zero
* then the whole available RAM is used. The core memory is made
* available to the heap allocator and/or can be used directly through
* the simplified core memory allocator.
*
* @note In order to let the OS manage the whole RAM the linker script must
* provide the @p __heap_base__ and @p __heap_end__ symbols.
* @note Requires @p CH_CFG_USE_MEMCORE.
*/
#define CH_CFG_MEMCORE_SIZE 0
/**
* @brief Idle thread automatic spawn suppression.
* @details When this option is activated the function @p chSysInit()
* does not spawn the idle thread. The application @p main()
* function becomes the idle thread and must implement an
* infinite loop. */
#define CH_CFG_NO_IDLE_THREAD FALSE
/** @} */
/*===========================================================================*/
/**
* @name Performance options
* @{
*/
/*===========================================================================*/
/**
* @brief OS optimization.
* @details If enabled then time efficient rather than space efficient code
* is used when two possible implementations exist.
*
* @note This is not related to the compiler optimization options.
* @note The default is @p TRUE.
*/
#define CH_CFG_OPTIMIZE_SPEED TRUE
/** @} */
/*===========================================================================*/
/**
* @name Subsystem options
* @{
*/
/*===========================================================================*/
/**
* @brief Time Measurement APIs.
* @details If enabled then the time measurement APIs are included in
* the kernel.
*
* @note The default is @p TRUE.
*/
#define CH_CFG_USE_TM FALSE
/**
* @brief Threads registry APIs.
* @details If enabled then the registry APIs are included in the kernel.
*
* @note The default is @p TRUE.
*/
#define CH_CFG_USE_REGISTRY FALSE
/**
* @brief Threads synchronization APIs.
* @details If enabled then the @p chThdWait() function is included in
* the kernel.
*
* @note The default is @p TRUE.
*/
#define CH_CFG_USE_WAITEXIT TRUE
/**
* @brief Semaphores APIs.
* @details If enabled then the Semaphores APIs are included in the kernel.
*
* @note The default is @p TRUE.
*/
#define CH_CFG_USE_SEMAPHORES TRUE
/**
* @brief Semaphores queuing mode.
* @details If enabled then the threads are enqueued on semaphores by
* priority rather than in FIFO order.
*
* @note The default is @p FALSE. Enable this if you have special
* requirements.
* @note Requires @p CH_CFG_USE_SEMAPHORES.
*/
#define CH_CFG_USE_SEMAPHORES_PRIORITY FALSE
/**
* @brief Mutexes APIs.
* @details If enabled then the mutexes APIs are included in the kernel.
*
* @note The default is @p TRUE.
*/
#define CH_CFG_USE_MUTEXES FALSE
/**
* @brief Enables recursive behavior on mutexes.
* @note Recursive mutexes are heavier and have an increased
* memory footprint.
*
* @note The default is @p FALSE.
* @note Requires @p CH_CFG_USE_MUTEXES.
*/
#define CH_CFG_USE_MUTEXES_RECURSIVE FALSE
/**
* @brief Conditional Variables APIs.
* @details If enabled then the conditional variables APIs are included
* in the kernel.
*
* @note The default is @p TRUE.
* @note Requires @p CH_CFG_USE_MUTEXES.
*/
#define CH_CFG_USE_CONDVARS FALSE
/**
* @brief Conditional Variables APIs with timeout.
* @details If enabled then the conditional variables APIs with timeout
* specification are included in the kernel.
*
* @note The default is @p TRUE.
* @note Requires @p CH_CFG_USE_CONDVARS.
*/
#define CH_CFG_USE_CONDVARS_TIMEOUT FALSE
/**
* @brief Events Flags APIs.
* @details If enabled then the event flags APIs are included in the kernel.
*
* @note The default is @p TRUE.
*/
#define CH_CFG_USE_EVENTS FALSE
/**
* @brief Events Flags APIs with timeout.
* @details If enabled then the events APIs with timeout specification
* are included in the kernel.
*
* @note The default is @p TRUE.
* @note Requires @p CH_CFG_USE_EVENTS.
*/
#define CH_CFG_USE_EVENTS_TIMEOUT FALSE
/**
* @brief Synchronous Messages APIs.
* @details If enabled then the synchronous messages APIs are included
* in the kernel.
*
* @note The default is @p TRUE.
*/
#define CH_CFG_USE_MESSAGES FALSE
/**
* @brief Synchronous Messages queuing mode.
* @details If enabled then messages are served by priority rather than in
* FIFO order.
*
* @note The default is @p FALSE. Enable this if you have special
* requirements.
* @note Requires @p CH_CFG_USE_MESSAGES.
*/
#define CH_CFG_USE_MESSAGES_PRIORITY FALSE
/**
* @brief Mailboxes APIs.
* @details If enabled then the asynchronous messages (mailboxes) APIs are
* included in the kernel.
*
* @note The default is @p TRUE.
* @note Requires @p CH_CFG_USE_SEMAPHORES.
*/
#define CH_CFG_USE_MAILBOXES FALSE
/**
* @brief I/O Queues APIs.
* @details If enabled then the I/O queues APIs are included in the kernel.
*
* @note The default is @p TRUE.
*/
#define CH_CFG_USE_QUEUES FALSE
/**
* @brief Core Memory Manager APIs.
* @details If enabled then the core memory manager APIs are included
* in the kernel.
*
* @note The default is @p TRUE.
*/
#define CH_CFG_USE_MEMCORE FALSE
/**
* @brief Heap Allocator APIs.
* @details If enabled then the memory heap allocator APIs are included
* in the kernel.
*
* @note The default is @p TRUE.
* @note Requires @p CH_CFG_USE_MEMCORE and either @p CH_CFG_USE_MUTEXES or
* @p CH_CFG_USE_SEMAPHORES.
* @note Mutexes are recommended.
*/
#define CH_CFG_USE_HEAP FALSE
/**
* @brief Memory Pools Allocator APIs.
* @details If enabled then the memory pools allocator APIs are included
* in the kernel.
*
* @note The default is @p TRUE.
*/
#define CH_CFG_USE_MEMPOOLS FALSE
/**
* @brief Dynamic Threads APIs.
* @details If enabled then the dynamic threads creation APIs are included
* in the kernel.
*
* @note The default is @p TRUE.
* @note Requires @p CH_CFG_USE_WAITEXIT.
* @note Requires @p CH_CFG_USE_HEAP and/or @p CH_CFG_USE_MEMPOOLS.
*/
#define CH_CFG_USE_DYNAMIC FALSE
/** @} */
/*===========================================================================*/
/**
* @name Debug options
* @{
*/
/*===========================================================================*/
/**
* @brief Debug option, kernel statistics.
*
* @note The default is @p FALSE.
*/
#define CH_DBG_STATISTICS FALSE
/**
* @brief Debug option, system state check.
* @details If enabled the correct call protocol for system APIs is checked
* at runtime.
*
* @note The default is @p FALSE.
*/
#define CH_DBG_SYSTEM_STATE_CHECK FALSE
/**
* @brief Debug option, parameters checks.
* @details If enabled then the checks on the API functions input
* parameters are activated.
*
* @note The default is @p FALSE.
*/
#define CH_DBG_ENABLE_CHECKS FALSE
/**
* @brief Debug option, consistency checks.
* @details If enabled then all the assertions in the kernel code are
* activated. This includes consistency checks inside the kernel,
* runtime anomalies and port-defined checks.
*
* @note The default is @p FALSE.
*/
#define CH_DBG_ENABLE_ASSERTS FALSE
/**
* @brief Debug option, trace buffer.
* @details If enabled then the context switch circular trace buffer is
* activated.
*
* @note The default is @p FALSE.
*/
#define CH_DBG_ENABLE_TRACE FALSE
/**
* @brief Debug option, stack checks.
* @details If enabled then a runtime stack check is performed.
*
* @note The default is @p FALSE.
* @note The stack check is performed in a architecture/port dependent way.
* It may not be implemented or some ports.
* @note The default failure mode is to halt the system with the global
* @p panic_msg variable set to @p NULL.
*/
#define CH_DBG_ENABLE_STACK_CHECK FALSE
/**
* @brief Debug option, stacks initialization.
* @details If enabled then the threads working area is filled with a byte
* value when a thread is created. This can be useful for the
* runtime measurement of the used stack.
*
* @note The default is @p FALSE.
*/
#define CH_DBG_FILL_THREADS FALSE
/**
* @brief Debug option, threads profiling.
* @details If enabled then a field is added to the @p thread_t structure that
* counts the system ticks occurred while executing the thread.
*
* @note The default is @p FALSE.
* @note This debug option is not currently compatible with the
* tickless mode.
*/
#define CH_DBG_THREADS_PROFILING FALSE
/** @} */
/*===========================================================================*/
/**
* @name Kernel hooks
* @{
*/
/*===========================================================================*/
/**
* @brief Threads descriptor structure extension.
* @details User fields added to the end of the @p thread_t structure.
*/
#define CH_CFG_THREAD_EXTRA_FIELDS \
/* Add threads custom fields here.*/
/**
* @brief Threads initialization hook.
* @details User initialization code added to the @p chThdInit() API.
*
* @note It is invoked from within @p chThdInit() and implicitly from all
* the threads creation APIs.
*/
#define CH_CFG_THREAD_INIT_HOOK(tp) { \
/* Add threads initialization code here.*/ \
}
/**
* @brief Threads finalization hook.
* @details User finalization code added to the @p chThdExit() API.
*
* @note It is inserted into lock zone.
* @note It is also invoked when the threads simply return in order to
* terminate.
*/
#define CH_CFG_THREAD_EXIT_HOOK(tp) { \
/* Add threads finalization code here.*/ \
}
/**
* @brief Context switch hook.
* @details This hook is invoked just before switching between threads.
*/
#define CH_CFG_CONTEXT_SWITCH_HOOK(ntp, otp) { \
/* System halt code here.*/ \
}
/**
* @brief Idle thread enter hook.
* @note This hook is invoked within a critical zone, no OS functions
* should be invoked from here.
* @note This macro can be used to activate a power saving mode.
*/
#define CH_CFG_IDLE_ENTER_HOOK() { \
}
/**
* @brief Idle thread leave hook.
* @note This hook is invoked within a critical zone, no OS functions
* should be invoked from here.
* @note This macro can be used to deactivate a power saving mode.
*/
#define CH_CFG_IDLE_LEAVE_HOOK() { \
}
/**
* @brief Idle Loop hook.
* @details This hook is continuously invoked by the idle thread loop.
*/
#define CH_CFG_IDLE_LOOP_HOOK() { \
/* Idle loop code here.*/ \
}
/**
* @brief System tick event hook.
* @details This hook is invoked in the system tick handler immediately
* after processing the virtual timers queue.
*/
#define CH_CFG_SYSTEM_TICK_HOOK() { \
/* System tick event code here.*/ \
}
/**
* @brief System halt hook.
* @details This hook is invoked in case to a system halting error before
* the system is halted.
*/
#define CH_CFG_SYSTEM_HALT_HOOK(reason) { \
/* System halt code here.*/ \
}
/** @} */
/*===========================================================================*/
/* Port-specific settings (override port settings defaulted in chcore.h). */
/*===========================================================================*/
#endif /* _CHCONF_H_ */
/** @} */
The few options to TRUE are actually required by the HAL or by the test suite. I don't understand why you are experiencing that problem. Now there is also a test script that compiles the kernel flipping all switches in order to avoid this kind of errors, it is under: /test/rt/testbuild
Are you checking out from this URL? http://svn.code.sf.net/p/chibios/svn/trunk/
By the way, if you need a super compact kernel the you may also try NIL, it is included in ChibiOS 3.0, its maximum configuration is well below 1KB and it is fully static, see the various demos. The API is a subset of the ChibiOS/RT API.
Giovanni
-
AndrewGoedhart
- Posts: 3
- Joined: Tue Nov 18, 2014 11:37 am
Re: Minimal Build for 3.x
Hi
My build script was including ports/cmsis_os which was requiring the configuaration flags
Fixed it and we are now building minimal.
Will look at your nil looks very interesting
Thanks
Andrew
My build script was including ports/cmsis_os which was requiring the configuaration flags
Fixed it and we are now building minimal.
Will look at your nil looks very interesting
Thanks
Andrew