Fix minor typos in docs and comments.

This commit is contained in:
Nathan Hartman
2019-09-29 12:52:20 -06:00
committed by Gregory Nutt
parent c1c36db37e
commit 46aaec7ba0
67 changed files with 104 additions and 104 deletions
+8 -8
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@@ -3335,7 +3335,7 @@
the UDP discovery utility. Contributed by Max Holtzberg. the UDP discovery utility. Contributed by Max Holtzberg.
* mm/README.txt: Add a new README file. * mm/README.txt: Add a new README file.
* include/nuttx/usb/usb.h, arch/*/src/*usb.c, and arch/*/src/*otg*.c: * include/nuttx/usb/usb.h, arch/*/src/*usb.c, and arch/*/src/*otg*.c:
Add hooks to to use common, external DMA buffer allocation Add hooks to use common, external DMA buffer allocation
implementation. implementation.
* net/recvfrom.c: Don't block in recvfrom if (1) read-ahead buffering * net/recvfrom.c: Don't block in recvfrom if (1) read-ahead buffering
is enabled and (2) some data was obtained from read-ahead buffers. is enabled and (2) some data was obtained from read-ahead buffers.
@@ -3924,7 +3924,7 @@
locking up the whole system. locking up the whole system.
* sched/sched_waitpid.c: Use SIGCHLD instead of a semaphore. This * sched/sched_waitpid.c: Use SIGCHLD instead of a semaphore. This
is a much more spec-compliant implementation. However, there are is a much more spec-compliant implementation. However, there are
some issues with overruning signals because NuttX does not support some issues with overrunning signals because NuttX does not support
queueing of signals (POSIX does not require it). I think it may queueing of signals (POSIX does not require it). I think it may
need to. need to.
* sched/sched_waitid.c and sched_wait.c: Add support for waitid() * sched/sched_waitid.c and sched_wait.c: Add support for waitid()
@@ -4442,7 +4442,7 @@
type as the second parameter (2013-03-23). type as the second parameter (2013-03-23).
* arch/arm/src/lm, kinetis, lpc43, and nuc1xx: Add kernel build * arch/arm/src/lm, kinetis, lpc43, and nuc1xx: Add kernel build
support to all ARMv7-M and ARMv6-M chips. There are no support to all ARMv7-M and ARMv6-M chips. There are no
configurations in place to to verify these additions! configurations in place to verify these additions!
(2013-03-24). (2013-03-24).
* arch/arm/src/lm/lm_gpio.h: Correct typos in alternate function * arch/arm/src/lm/lm_gpio.h: Correct typos in alternate function
definitions (2013-03-24). definitions (2013-03-24).
@@ -8429,7 +8429,7 @@
addresses to physical addresses, and vice versa (2104-9-7). addresses to physical addresses, and vice versa (2104-9-7).
* SAM3X/Arduino Due: Fix typo in sam3x_periphclks.h; add SCLK * SAM3X/Arduino Due: Fix typo in sam3x_periphclks.h; add SCLK
definitions to board.h header file. From Fabien Comte (2014-9-8). definitions to board.h header file. From Fabien Comte (2014-9-8).
* Several pthread interfaces: Add const storage class to to phthread * Several pthread interfaces: Add const storage class to the phthread
parameters. From Freddie Chopin (2014-9-8). parameters. From Freddie Chopin (2014-9-8).
* libc/math: Corrected atan2 implementations from Denis Arnst (2014-9-8). * libc/math: Corrected atan2 implementations from Denis Arnst (2014-9-8).
* sama5d4-ek/knsh: Rename the kernel configuration to knsh to better * sama5d4-ek/knsh: Rename the kernel configuration to knsh to better
@@ -12026,9 +12026,9 @@
* STM32F7: Add SPI, I2C, and ADC drivers. From Lok Tep (2016-06-15). * STM32F7: Add SPI, I2C, and ADC drivers. From Lok Tep (2016-06-15).
* err(), warn(), info(), and alert() renamed to include leading '_'. * err(), warn(), info(), and alert() renamed to include leading '_'.
This was done to avoid some naming collisions (2-06-16 This was done to avoid some naming collisions (2-06-16
* STM32: Move backup domain reset to to earlier in the initialization * STM32: Move backup domain reset to earlier in the initialization
sequence (stm32_rcc.c() in order to avoid disabling LSE during RTC sequence (stm32_rcc.c() in order to avoid disabling LSE during RTC
initialiation. From Alan Carvalho de Assis (2016-06-16). initialization. From Alan Carvalho de Assis (2016-06-16).
* SYSLOG: syslog() will now automatically redirect output to lowsyslog() * SYSLOG: syslog() will now automatically redirect output to lowsyslog()
if called from an interrupt handler (2016-06-16). if called from an interrupt handler (2016-06-16).
* STM32: When configuring a GPIO via stm32_configgpio() the function * STM32: When configuring a GPIO via stm32_configgpio() the function
@@ -16638,7 +16638,7 @@
because current data structures do not support it (2017-08-29). because current data structures do not support it (2017-08-29).
* Networking: Clean up some naming that has bothered me for a long * Networking: Clean up some naming that has bothered me for a long
time... There are no interrupts and no interrupt handlers in the time... There are no interrupts and no interrupt handlers in the
network. There are events and event handler (there used to to be network. There are events and event handler (there used to be
interrupt logic in there years ago but that is long, long gone) interrupt logic in there years ago but that is long, long gone)
(2017-08-29). (2017-08-29).
* configs: update STM32L4 configs for ADC changes. From Juha Niskanen * configs: update STM32L4 configs for ADC changes. From Juha Niskanen
@@ -24932,7 +24932,7 @@
* arch/arm/src/am335x/am335x_sysclk.c: Add a function to return a * arch/arm/src/am335x/am335x_sysclk.c: Add a function to return a
frequency of the system clock. From Gregory Nutt (2019-07-08). frequency of the system clock. From Gregory Nutt (2019-07-08).
* arch/arm/src/am335x/am335x_lcdc.c: Add logic to get/set the module * arch/arm/src/am335x/am335x_lcdc.c: Add logic to get/set the module
reference clock. Still one more clocking interface to to. From Gregory reference clock. Still one more clocking interface to do. From Gregory
Nutt (2019-07-08). Nutt (2019-07-08).
* configs/beaglebone-black/lcd/defconfig: Add a configuration for bringing * configs/beaglebone-black/lcd/defconfig: Add a configuration for bringing
up the LCDC driver. From Gregory Nutt (2019-07-08). up the LCDC driver. From Gregory Nutt (2019-07-08).
+2 -2
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@@ -1037,7 +1037,7 @@ int nxmu_start(int display, int plane);
</p> </p>
<p> <p>
<b>Returned Value:</b> <b>Returned Value:</b>
On success zero (<code>OK</code) is returned; -1 (<code>ERROR</code>) is returned on failure with the <code>errno</code> variable to to indicate the nature of the failure. On success zero (<code>OK</code) is returned; -1 (<code>ERROR</code>) is returned on failure with the <code>errno</code> variable set to indicate the nature of the failure.
</p> </p>
<h3>2.3.4 <a name="nxcallbacks">NX Server Callbacks</a></h3> <h3>2.3.4 <a name="nxcallbacks">NX Server Callbacks</a></h3>
@@ -4088,7 +4088,7 @@ enum nx_fontid_e
</ol> </ol>
<p> <p>
New Add the font to the NX build system. New Add the font to the NX build system.
There are several files that you have to modify to to this. There are several files that you have to modify to do this.
Look how the build system uses the font CONFIG_NXFONT_SANS23X27 for examaples: Look how the build system uses the font CONFIG_NXFONT_SANS23X27 for examaples:
</p> </p>
<ol start="5"> <ol start="5">
+3 -3
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@@ -3717,7 +3717,7 @@ void lpwork_restorepriority(uint8_t reqprio);
</ul> </ul>
<p><b>Description</b>:</p> <p><b>Description</b>:</p>
<ul> <ul>
After an address environment has been established for a task (via <code>up_addrenv_create())</code>, this function may be called to to instantiate that address environment in the virtual address space. After an address environment has been established for a task (via <code>up_addrenv_create())</code>, this function may be called to instantiate that address environment in the virtual address space.
This might be necessary, for example, to load the code for the task from a file or to access address environment private data. This might be necessary, for example, to load the code for the task from a file or to access address environment private data.
</ul> </ul>
<p><b>Input Parameters</b>:</p> <p><b>Input Parameters</b>:</p>
@@ -3742,7 +3742,7 @@ void lpwork_restorepriority(uint8_t reqprio);
<p><b>Description</b>:</p> <p><b>Description</b>:</p>
<ul> <ul>
After an address environment has been temporarily instantiated by <code>up_addrenv_select</code>, After an address environment has been temporarily instantiated by <code>up_addrenv_select</code>,
this function may be called to to restore the original address environment. this function may be called to restore the original address environment.
</ul> </ul>
<p><b>Input Parameters</b>:</p> <p><b>Input Parameters</b>:</p>
<ul> <ul>
@@ -4161,7 +4161,7 @@ void nxsched_timer_expiration(void);
<p><b>Returned Value</b>:</p> <p><b>Returned Value</b>:</p>
<ul> <ul>
On success zero (<code>OK</code>) is returned; On success zero (<code>OK</code>) is returned;
-1 (<code>ERROR</code>) is returned on failure with the <code>errno</code> variable to to indicate the nature of the failure. -1 (<code>ERROR</code>) is returned on failure with the <code>errno</code> variable set to indicate the nature of the failure.
</ul> </ul>
<h4><a name="boardsmp">4.10 Symmetric Multiprocessing (SMP) Application Interface</a></h4> <h4><a name="boardsmp">4.10 Symmetric Multiprocessing (SMP) Application Interface</a></h4>
+1 -1
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@@ -484,7 +484,7 @@ int task_delete(pid_t pid);
</p> </p>
<p> <p>
The logic in this function only deletes non-running tasks. The logic in this function only deletes non-running tasks.
If the <code>pid</code> parameter refers to to the currently runing task, then processing is redirected to <code>exit()</code>. If the <code>pid</code> parameter refers to the currently running task, then processing is redirected to <code>exit()</code>.
This can only happen if a task calls <code>task_delete()</code> in order to delete itself. This can only happen if a task calls <code>task_delete()</code> in order to delete itself.
</p> </p>
<p> <p>
+4 -4
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@@ -4295,8 +4295,8 @@ Additional new features and extended functionality:
* STM32: * STM32:
- Added an option to conditionally disable the "wfi" sleep mode. This - Added an option to conditionally disable the "wfi" sleep mode. This
is needed with certain JTAG debuggers to to prevent the debug is needed with certain JTAG debuggers to prevent the debug session
session from begin disconnected (from Ken Pettit). from being disconnected (from Ken Pettit).
- Added support for the STM32L (STM32L15X/STM32L16x) family. - Added support for the STM32L (STM32L15X/STM32L16x) family.
- Added STM32F103C4 and F103C8 chip support (from Laurent Latil). - Added STM32F103C4 and F103C8 chip support (from Laurent Latil).
- Added a new interface function, stm32_dmacapable() that can be used - Added a new interface function, stm32_dmacapable() that can be used
@@ -6060,7 +6060,7 @@ Bugfixes (see the ChangeLog for details). Some of these are very important:
* NuttShell (NSH): * NuttShell (NSH):
- Use strncpy vs strcpy in the Telnet console logic to avoid - Use strncpy vs strcpy in the Telnet console logic to avoid
overruning the username and password buffers (from Bertold Van den overrunning the username and password buffers (from Bertold Van den
Bergh). Bergh).
- Add a newline after printing the file in the 'cat' command. This - Add a newline after printing the file in the 'cat' command. This
prevents the NSH prompt from be in the same line as the final line prevents the NSH prompt from be in the same line as the final line
@@ -11651,7 +11651,7 @@ detailed bugfix information):
From Konstantin Berezenko. From Konstantin Berezenko.
- STM32 F1-F4: Correct the CAN2 RX IRQ number for stm32f10xx chips. - STM32 F1-F4: Correct the CAN2 RX IRQ number for stm32f10xx chips.
From Konstantin Berezenko. From Konstantin Berezenko.
- STM32 F1-F4: Move backup domain reset to to earlier in the - STM32 F1-F4: Move backup domain reset to earlier in the
initialization sequence (stm32_rcc.c() in order to avoid disabling initialization sequence (stm32_rcc.c() in order to avoid disabling
LSE during RTC initialiation. From Alan Carvalho de Assis. LSE during RTC initialiation. From Alan Carvalho de Assis.
- STM32 F1-F4: When configuring a GPIO via stm32_configgpio() the - STM32 F1-F4: When configuring a GPIO via stm32_configgpio() the
+2 -2
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@@ -789,7 +789,7 @@ o Signals (sched/signal, arch/)
up_schedule_sigaction()) up_schedule_sigaction())
- up_sigdeliver() is a trampoline function that performs the - up_sigdeliver() is a trampoline function that performs the
actual signal action as well as some housekeeping functions actual signal action as well as some housekeeping functions
then then
- up_sigdeliver() performs a context switch back to the normal, - up_sigdeliver() performs a context switch back to the normal,
uninterrupted thread instead of returning to nxsig_deliver(). uninterrupted thread instead of returning to nxsig_deliver().
@@ -1218,7 +1218,7 @@ o C++ Support
one task can effect another task. There can only one one task can effect another task. There can only one
uClibc++ state and it will be shared by all tasks. uClibc++ uClibc++ state and it will be shared by all tasks. uClibc++
apparently relies on global instances (at least for cin and apparently relies on global instances (at least for cin and
cout) there is no way to to have any unique state for any cout) there is no way to have any unique state for any
"task group". "task group".
[NuttX does not support processes because in order to have [NuttX does not support processes because in order to have
+1 -1
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@@ -186,6 +186,6 @@ ifeq ($(CONFIG_ARMV6M_TOOLCHAIN),GNU_EABIW)
endif endif
# Individual tools may limit the optimizatin level but, by default, the # Individual tools may limit the optimizatin level but, by default, the
# optimization level will be set to to -Os # optimization level will be set to -Os
MAXOPTIMIZATION ?= -Os MAXOPTIMIZATION ?= -Os
+1 -1
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@@ -222,7 +222,7 @@ int up_svcall(int irq, FAR void *context, FAR void *arg)
* *
* In this case, we do both: We save the context registers to the save * In this case, we do both: We save the context registers to the save
* register area reference by the saved contents of R1 and then set * register area reference by the saved contents of R1 and then set
* CURRENT_REGS to to the save register area referenced by the saved * CURRENT_REGS to the save register area referenced by the saved
* contents of R2. * contents of R2.
*/ */
+2 -2
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@@ -482,7 +482,7 @@ ssize_t up_addrenv_heapsize(FAR const group_addrenv_t *addrenv)
* *
* Description: * Description:
* After an address environment has been established for a task group (via * After an address environment has been established for a task group (via
* up_addrenv_create(). This function may be called to to instantiate * up_addrenv_create(). This function may be called to instantiate
* that address environment in the virtual address space. this might be * that address environment in the virtual address space. this might be
* necessary, for example, to load the code for the task group from a file or * necessary, for example, to load the code for the task group from a file or
* to access address environment private data. * to access address environment private data.
@@ -620,7 +620,7 @@ int up_addrenv_select(FAR const group_addrenv_t *addrenv,
* *
* Description: * Description:
* After an address environment has been temporarily instantiated by * After an address environment has been temporarily instantiated by
* up_addrenv_select(), this function may be called to to restore the * up_addrenv_select(), this function may be called to restore the
* original address environment. * original address environment.
* *
* Input Parameters: * Input Parameters:
+1 -1
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@@ -219,7 +219,7 @@ int up_svcall(int irq, FAR void *context, FAR void *arg)
* *
* In this case, we do both: We save the context registers to the save * In this case, we do both: We save the context registers to the save
* register area reference by the saved contents of R1 and then set * register area reference by the saved contents of R1 and then set
* CURRENT_REGS to to the save register area referenced by the saved * CURRENT_REGS to the save register area referenced by the saved
* contents of R2. * contents of R2.
*/ */
+1 -1
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@@ -76,7 +76,7 @@
#define CLOCK_KHZ 47500 #define CLOCK_KHZ 47500
#define CLOCK_MHZx2 95 #define CLOCK_MHZx2 95
/* Macros to manage access to to watchdog timer macros */ /* Macros to manage access to the watchdog timer */
#define c5471_wdt_cntl (*(volatile uint32_t*)C5471_TIMER0_CTRL) #define c5471_wdt_cntl (*(volatile uint32_t*)C5471_TIMER0_CTRL)
#define c5471_wdt_count (*(volatile uint32_t*)C5471_TIMER0_CNT) #define c5471_wdt_count (*(volatile uint32_t*)C5471_TIMER0_CNT)
+1 -1
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@@ -82,7 +82,7 @@
/* System Timer /* System Timer
* *
* Timer0 is dedicated as the system timer. The rate of system timer * Timer0 is dedicated as the system timer. The rate of system timer
* interrupts is assumed to to 10MS per tick / 100Hz. The following * interrupts is assumed to be 10MS per tick / 100Hz. The following
* register settings are used for timer 0 * register settings are used for timer 0
* *
* System clock formula: * System clock formula:
+1 -1
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@@ -395,7 +395,7 @@ static int spi_performtx(struct imx_spidev_s *priv)
priv->txword(priv); priv->txword(priv);
} }
/* Update the count of words to to transferred */ /* Update the count of words to be transferred */
priv->ntxwords -= ntxd; priv->ntxwords -= ntxd;
} }
+1 -1
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@@ -520,7 +520,7 @@ static int spi_performtx(struct imx_spidev_s *priv)
priv->txword(priv); priv->txword(priv);
} }
/* Update the count of words to to transferred */ /* Update the count of words to be transferred */
priv->ntxwords -= ntxd; priv->ntxwords -= ntxd;
} }
+1 -1
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@@ -320,7 +320,7 @@ int up_rtc_initialize(void)
#ifdef KINETIS_RTC_GEN2 #ifdef KINETIS_RTC_GEN2
/* Check if the one-time initialization of the RTC has already been /* Check if the one-time initialization of the RTC has already been
* performed. We can determine this by checking if the magic number * performed. We can determine this by checking if the magic number
* has been writing to to back-up date register DR0. * has been written to the back-up date register DR0.
*/ */
regval = getreg32(KINETIS_RTC_MCLR); regval = getreg32(KINETIS_RTC_MCLR);
+1 -1
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@@ -870,7 +870,7 @@ static inline uint8_t *lpc43_allocbuffer(FAR struct lpc43_ethmac_s *priv)
static inline void lpc43_freebuffer(FAR struct lpc43_ethmac_s *priv, uint8_t *buffer) static inline void lpc43_freebuffer(FAR struct lpc43_ethmac_s *priv, uint8_t *buffer)
{ {
/* Free the buffer by adding it to to the end of the free buffer list */ /* Free the buffer by adding it to the end of the free buffer list */
sq_addlast((FAR sq_entry_t *)buffer, &priv->freeb); sq_addlast((FAR sq_entry_t *)buffer, &priv->freeb);
} }
+1 -1
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@@ -332,7 +332,7 @@ void nuc_lowputc(uint32_t ch)
nuc_console_ready(); nuc_console_ready();
/* Then write the character to to the TX FIFO */ /* Then write the character to the TX FIFO */
putreg32(ch, NUC_CONSOLE_BASE + NUC_UART_THR_OFFSET); putreg32(ch, NUC_CONSOLE_BASE + NUC_UART_THR_OFFSET);
#endif /* HAVE_SERIAL_CONSOLE */ #endif /* HAVE_SERIAL_CONSOLE */
+1 -1
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@@ -582,7 +582,7 @@ static void sam_tsd_bottomhalf(void *arg)
{ {
/* If we have not yet processed the last pen up event, then we /* If we have not yet processed the last pen up event, then we
* cannot handle this pen down event. We will have to discard it. That * cannot handle this pen down event. We will have to discard it. That
* should be okay because we will set the timer to to sample again * should be okay because we will set the timer to sample again
* a little later. NOTE that pen interrupts are not re-enabled in * a little later. NOTE that pen interrupts are not re-enabled in
* this case; we rely on the timer expiry to get us going again. * this case; we rely on the timer expiry to get us going again.
*/ */
+1 -1
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@@ -828,7 +828,7 @@ static void sam_dfll_gclkready(const struct sam_dfll_config_s *config)
{ {
} }
/* Set the source of GCLK0 to to the configured source. */ /* Set the source of GCLK0 to the configured source. */
regval32 = getreg32(SAM_GCLK_GENCTRL(0)); regval32 = getreg32(SAM_GCLK_GENCTRL(0));
regval32 &= ~GCLK_GENCTRL_SRC_MASK; regval32 &= ~GCLK_GENCTRL_SRC_MASK;
+1 -1
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@@ -978,7 +978,7 @@ static inline uint8_t *stm32_allocbuffer(FAR struct stm32_ethmac_s *priv)
static inline void stm32_freebuffer(FAR struct stm32_ethmac_s *priv, uint8_t *buffer) static inline void stm32_freebuffer(FAR struct stm32_ethmac_s *priv, uint8_t *buffer)
{ {
/* Free the buffer by adding it to to the end of the free buffer list */ /* Free the buffer by adding it to the end of the free buffer list */
sq_addlast((FAR sq_entry_t *)buffer, &priv->freeb); sq_addlast((FAR sq_entry_t *)buffer, &priv->freeb);
} }
+1 -1
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@@ -2001,7 +2001,7 @@ static ssize_t stm32_in_transfer(FAR struct stm32_usbhost_s *priv, int chidx,
else else
{ {
/* Successfully received another chunk of data... add that to the /* Successfully received another chunk of data... add that to the
* runing total. Then continue reading until we read 'buflen' * running total. Then continue reading until we read 'buflen'
* bytes of data or until the devices NAKs (implying a short * bytes of data or until the devices NAKs (implying a short
* packet). * packet).
*/ */
+1 -1
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@@ -2006,7 +2006,7 @@ static ssize_t stm32_in_transfer(FAR struct stm32_usbhost_s *priv, int chidx,
else else
{ {
/* Successfully received another chunk of data... add that to the /* Successfully received another chunk of data... add that to the
* runing total. Then continue reading until we read 'buflen' * running total. Then continue reading until we read 'buflen'
* bytes of data or until the devices NAKs (implying a short * bytes of data or until the devices NAKs (implying a short
* packet). * packet).
*/ */
+1 -1
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@@ -638,7 +638,7 @@ int up_rtc_initialize(void)
/* Check if the one-time initialization of the RTC has already been /* Check if the one-time initialization of the RTC has already been
* performed. We can determine this by checking if the magic number * performed. We can determine this by checking if the magic number
* has been writing to to back-up date register DR0. * has been written to the back-up date register DR0.
*/ */
if (regval != RTC_MAGIC && regval != RTC_MAGIC_TIME_SET) if (regval != RTC_MAGIC && regval != RTC_MAGIC_TIME_SET)
+1 -1
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@@ -1035,7 +1035,7 @@ int up_rtc_initialize(void)
/* Check if the one-time initialization of the RTC has already been /* Check if the one-time initialization of the RTC has already been
* performed. We can determine this by checking if the magic number * performed. We can determine this by checking if the magic number
* has been writing to to back-up date register DR0. * has been written to the back-up date register DR0.
*/ */
if (regval != RTC_MAGIC && regval != RTC_MAGIC_TIME_SET) if (regval != RTC_MAGIC && regval != RTC_MAGIC_TIME_SET)
+1 -1
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@@ -993,7 +993,7 @@ static inline uint8_t *stm32_allocbuffer(struct stm32_ethmac_s *priv)
static inline void stm32_freebuffer(struct stm32_ethmac_s *priv, uint8_t *buffer) static inline void stm32_freebuffer(struct stm32_ethmac_s *priv, uint8_t *buffer)
{ {
/* Free the buffer by adding it to to the end of the free buffer list */ /* Free the buffer by adding it to the end of the free buffer list */
sq_addlast((sq_entry_t *)buffer, &priv->freeb); sq_addlast((sq_entry_t *)buffer, &priv->freeb);
} }
+1 -1
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@@ -1999,7 +1999,7 @@ static ssize_t stm32_in_transfer(FAR struct stm32_usbhost_s *priv, int chidx,
else else
{ {
/* Successfully received another chunk of data... add that to the /* Successfully received another chunk of data... add that to the
* runing total. Then continue reading until we read 'buflen' * running total. Then continue reading until we read 'buflen'
* bytes of data or until the devices NAKs (implying a short * bytes of data or until the devices NAKs (implying a short
* packet). * packet).
*/ */
+1 -1
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@@ -1047,7 +1047,7 @@ int up_rtc_initialize(void)
/* Check if the one-time initialization of the RTC has already been /* Check if the one-time initialization of the RTC has already been
* performed. We can determine this by checking if the magic number * performed. We can determine this by checking if the magic number
* has been writing to to back-up date register DR0. * has been written to the back-up date register DR0.
*/ */
if (regval != RTC_MAGIC && regval != RTC_MAGIC_TIME_SET) if (regval != RTC_MAGIC && regval != RTC_MAGIC_TIME_SET)
+1 -1
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@@ -994,7 +994,7 @@ static inline uint8_t *stm32_allocbuffer(struct stm32_ethmac_s *priv)
static inline void stm32_freebuffer(struct stm32_ethmac_s *priv, static inline void stm32_freebuffer(struct stm32_ethmac_s *priv,
uint8_t *buffer) uint8_t *buffer)
{ {
/* Free the buffer by adding it to to the end of the free buffer list */ /* Free the buffer by adding it to the end of the free buffer list */
sq_addlast((sq_entry_t *)buffer, &priv->freeb); sq_addlast((sq_entry_t *)buffer, &priv->freeb);
} }
+1 -1
View File
@@ -2004,7 +2004,7 @@ static ssize_t stm32_in_transfer(FAR struct stm32_usbhost_s *priv, int chidx,
else else
{ {
/* Successfully received another chunk of data... add that to the /* Successfully received another chunk of data... add that to the
* runing total. Then continue reading until we read 'buflen' * running total. Then continue reading until we read 'buflen'
* bytes of data or until the devices NAKs (implying a short * bytes of data or until the devices NAKs (implying a short
* packet). * packet).
*/ */
+1 -1
View File
@@ -1047,7 +1047,7 @@ int up_rtc_initialize(void)
/* Check if the one-time initialization of the RTC has already been /* Check if the one-time initialization of the RTC has already been
* performed. We can determine this by checking if the magic number * performed. We can determine this by checking if the magic number
* has been writing to to back-up date register DR0. * has been written to back-up date register DR0.
*/ */
if (regval != RTC_MAGIC && regval != RTC_MAGIC_TIME_SET) if (regval != RTC_MAGIC && regval != RTC_MAGIC_TIME_SET)
+1 -1
View File
@@ -2005,7 +2005,7 @@ static ssize_t stm32l4_in_transfer(FAR struct stm32l4_usbhost_s *priv,
else else
{ {
/* Successfully received another chunk of data... add that to the /* Successfully received another chunk of data... add that to the
* runing total. Then continue reading until we read 'buflen' * running total. Then continue reading until we read 'buflen'
* bytes of data or until the devices NAKs (implying a short * bytes of data or until the devices NAKs (implying a short
* packet). * packet).
*/ */
+1 -1
View File
@@ -950,7 +950,7 @@ static inline void rcc_enableperipherals(void)
rcc_enableapb2(); rcc_enableapb2();
#ifdef STM32L4_USE_HSI48 #ifdef STM32L4_USE_HSI48
/* Enable HSI48 clocking to to support USB transfers or RNG */ /* Enable HSI48 clocking to support USB transfers or RNG */
stm32l4_enable_hsi48(STM32L4_HSI48_SYNCSRC); stm32l4_enable_hsi48(STM32L4_HSI48_SYNCSRC);
#endif #endif
+1 -1
View File
@@ -1018,7 +1018,7 @@ static inline void rcc_enableperipherals(void)
rcc_enableapb2(); rcc_enableapb2();
#ifdef STM32L4_USE_HSI48 #ifdef STM32L4_USE_HSI48
/* Enable HSI48 clocking to to support USB transfers or RNG */ /* Enable HSI48 clocking to support USB transfers or RNG */
stm32l4_enable_hsi48(STM32L4_HSI48_SYNCSRC); stm32l4_enable_hsi48(STM32L4_HSI48_SYNCSRC);
#endif #endif
+1 -1
View File
@@ -995,7 +995,7 @@ static inline void rcc_enableperipherals(void)
rcc_enableapb2(); rcc_enableapb2();
#ifdef STM32L4_USE_HSI48 #ifdef STM32L4_USE_HSI48
/* Enable HSI48 clocking to to support USB transfers or RNG */ /* Enable HSI48 clocking to support USB transfers or RNG */
stm32l4_enable_hsi48(STM32L4_HSI48_SYNCSRC); stm32l4_enable_hsi48(STM32L4_HSI48_SYNCSRC);
#endif #endif
+2 -2
View File
@@ -260,7 +260,7 @@
* Description: * Description:
* The EIC is initialized for use with NuttX. This initialization does not * The EIC is initialized for use with NuttX. This initialization does not
* take advantage of the high performance capabilities of the EIC. Instead, * take advantage of the high performance capabilities of the EIC. Instead,
* The EIC is only used to to provide NuttX IRQ numbers. Here is what is * The EIC is only used to provide NuttX IRQ numbers. Here is what is
* done: * done:
* *
* IRQs and FIQs are disabled * IRQs and FIQs are disabled
@@ -340,7 +340,7 @@ eicloop:
*/ */
cmp \irqno, #STR71X_EIC_NCHANNELS cmp \irqno, #STR71X_EIC_NCHANNELS
blt eicloop blt eicloop
.endm .endm
/***************************************************************************** /*****************************************************************************
+1 -1
View File
@@ -699,7 +699,7 @@ static int ssi_performtx(struct tiva_ssidev_s *priv)
priv->txword(priv); priv->txword(priv);
} }
/* Update the count of words to to transferred */ /* Update the count of words to be transferred */
priv->ntxwords -= ntxd; priv->ntxwords -= ntxd;
} }
+1 -1
View File
@@ -978,7 +978,7 @@ static inline uint8_t *tiva_allocbuffer(FAR struct tiva_ethmac_s *priv)
static inline void tiva_freebuffer(FAR struct tiva_ethmac_s *priv, uint8_t *buffer) static inline void tiva_freebuffer(FAR struct tiva_ethmac_s *priv, uint8_t *buffer)
{ {
/* Free the buffer by adding it to to the end of the free buffer list */ /* Free the buffer by adding it to the end of the free buffer list */
sq_addlast((FAR sq_entry_t *)buffer, &priv->freeb); sq_addlast((FAR sq_entry_t *)buffer, &priv->freeb);
} }
+2 -2
View File
@@ -183,8 +183,8 @@ int up_swint0(int irq, FAR void *context, FAR void *arg)
* R6 = restoreregs * R6 = restoreregs
* *
* In this case, we save the context registers to the save register * In this case, we save the context registers to the save register
* area reference by the saved contents of R5 and then set * area referenced by the saved contents of R5 and then set
* g_current_regs to to the save register area referenced by the saved * g_current_regs to the save register area referenced by the saved
* contents of R6. * contents of R6.
*/ */
+2 -2
View File
@@ -184,8 +184,8 @@ int lm32_swint(int irq, FAR void *context, FAR void *arg)
* A2 = restoreregs * A2 = restoreregs
* *
* In this case, we save the context registers to the save register * In this case, we save the context registers to the save register
* area reference by the saved contents of R5 and then set * area referenced by the saved contents of R5 and then set
* g_current_regs to to the save register area referenced by the saved * g_current_regs to the save register area referenced by the saved
* contents of R6. * contents of R6.
*/ */
+3 -3
View File
@@ -176,9 +176,9 @@ int minerva_swint(int irq, FAR void *context, FAR void *arg)
/* A0=SYS_switch_context: This a switch context command: void /* A0=SYS_switch_context: This a switch context command: void
* up_switchcontext(uint32_t *saveregs, uint32_t *restoreregs); At this * up_switchcontext(uint32_t *saveregs, uint32_t *restoreregs); At this
* point, the following values are saved in context: A0 = * point, the following values are saved in context: A0 =
* SYS_switch_context A1 = saveregs A2 = restoreregs In this case, we * SYS_switch_context A1 = saveregs A2 = restoreregs. In this case, we
* save the context registers to the save register area reference by the * save the context registers to the save register area referenced by
* saved contents of R5 and then set g_current_regs to to the save * the saved contents of R5 and then set g_current_regs to the save
* register area referenced by the saved contents of R6. * register area referenced by the saved contents of R6.
*/ */
+2 -2
View File
@@ -105,8 +105,8 @@ ifeq ($(CONFIG_RISCV_TOOLCHAIN),GNU_RISCY)
ARCHCPUFLAGS = -march=rv32imcxgap8 -mPE=8 -mFC=1 -D__riscv__ -D__pulp__ -D__GAP8__ ARCHCPUFLAGS = -march=rv32imcxgap8 -mPE=8 -mFC=1 -D__riscv__ -D__pulp__ -D__GAP8__
endif endif
# Individual tools may limit the optimizatin level but, by default, the # Individual tools may limit the optimization level but, by default, the
# optimization level will be set to to -Os # optimization level will be set to -Os
ifeq ($(CONFIG_DEBUG_SYMBOLS),) ifeq ($(CONFIG_DEBUG_SYMBOLS),)
MAXOPTIMIZATION ?= -Os MAXOPTIMIZATION ?= -Os
+2 -2
View File
@@ -181,8 +181,8 @@ int up_swint(int irq, FAR void *context, FAR void *arg)
* A2 = restoreregs * A2 = restoreregs
* *
* In this case, we save the context registers to the save register * In this case, we save the context registers to the save register
* area reference by the saved contents of R5 and then set * area referenced by the saved contents of R5 and then set
* g_current_regs to to the save register area referenced by the saved * g_current_regs to the save register area referenced by the saved
* contents of R6. * contents of R6.
*/ */
+1 -1
View File
@@ -148,7 +148,7 @@ void z16_timer_initialize(void)
* scaledfreq = 20,000,000 / 100 * scaledfreq = 20,000,000 / 100
* = 200,000 * = 200,000
* divisor = ((18,432,000 / 100) >> 16) + 1 * divisor = ((18,432,000 / 100) >> 16) + 1
* = 3 -> 4 (need to to up to next power of two) * = 3 -> 4 (need to go up to next power of two)
* reload_value = 20,000,000 / 100 / 4 * reload_value = 20,000,000 / 100 / 4
* = 56,080 * = 56,080
*/ */
+3 -3
View File
@@ -419,7 +419,7 @@ ssize_t up_addrenv_heapsize(FAR const group_addrenv_t *addrenv)
* *
* Description: * Description:
* After an address environment has been established for a task (via * After an address environment has been established for a task (via
* up_addrenv_create()), this function may be called to to instantiate * up_addrenv_create()), this function may be called to instantiate
* that address environment in the virtual address space. This might be * that address environment in the virtual address space. This might be
* necessary, for example, to load the code for the task from a file or * necessary, for example, to load the code for the task from a file or
* to access address environment private data. * to access address environment private data.
@@ -463,8 +463,8 @@ int up_addrenv_select(FAR const group_addrenv_t *addrenv,
* Name: up_addrenv_restore * Name: up_addrenv_restore
* *
* Description: * Description:
* After an address environment has been temporarilty instantiated by * After an address environment has been temporarily instantiated by
* up_addrenv_select, this function may be called to to restore the * up_addrenv_select, this function may be called to restore the
* original address environment. * original address environment.
* *
* Input Parameters: * Input Parameters:
+1 -1
View File
@@ -1335,7 +1335,7 @@ static void pcm_callback(FAR void *arg, uint16_t reason,
DEBUGASSERT(priv && priv->export.upper); DEBUGASSERT(priv && priv->export.upper);
/* The buffer belongs to to an upper level. Just forward the event to /* The buffer belongs to an upper level. Just forward the event to
* the next level up. * the next level up.
*/ */
+1 -1
View File
@@ -1871,7 +1871,7 @@ config ARCH_BOARD_CUSTOM_DIR
to also tell the build system where it can find the board directory to also tell the build system where it can find the board directory
for the custom board. for the custom board.
In this case, the board directory is assume to lie outside the In this case, the board directory is assumed to lie outside the
NuttX directory. The provided path must then be a full, absolute NuttX directory. The provided path must then be a full, absolute
path to some location outside of the NuttX source tree (like path to some location outside of the NuttX source tree (like
"~/projects/myboard"). "~/projects/myboard").
@@ -80,7 +80,7 @@
* *
* Returned Value: * Returned Value:
* On success zero (OK) is returned; -1 (ERROR) is returned on failure * On success zero (OK) is returned; -1 (ERROR) is returned on failure
* with the errno variable to to indicate the nature of the failure. * with the errno variable to indicate the nature of the failure.
* *
****************************************************************************/ ****************************************************************************/
@@ -677,7 +677,7 @@ static int tc_waitsample(FAR struct tc_dev_s *priv,
{ {
int ret; int ret;
/* Pre-emption must be disabled when this is called to to prevent sampled /* Pre-emption must be disabled when this is called to prevent sampled
* data from changing until it has been reported. * data from changing until it has been reported.
*/ */
+2 -2
View File
@@ -1383,7 +1383,7 @@ Configuration Sub-directories
executable in PATH variable (see apps/examples/README.txt) executable in PATH variable (see apps/examples/README.txt)
5. This configuration can be extended to use the hello++4 example and to 5. This configuration can be extended to use the hello++4 example and to
build uClibc with the following additions to to the configuration file build uClibc with the following additions to the configuration file
(from Leo aloe3132): (from Leo aloe3132):
CONFIG_C99_BOOL8=y CONFIG_C99_BOOL8=y
@@ -1439,7 +1439,7 @@ Configuration Sub-directories
You may also want to reconfigure the serial console to USART1. You may also want to reconfigure the serial console to USART1.
2. The HCI UART is assume to connect to the UART3 on the following pins: 2. The HCI UART is assumed to connect to the UART3 on the following pins:
USART3 TX : PB10 USART3 TX : PB10
USART3 RX : PB11 USART3 RX : PB11
+2 -2
View File
@@ -89,7 +89,7 @@
* *
* Returned Value: * Returned Value:
* On success zero (OK) is returned; -1 (ERROR) is returned on failure * On success zero (OK) is returned; -1 (ERROR) is returned on failure
* with the errno variable to to indicate the nature of the failure. * with the errno variable to indicate the nature of the failure.
* *
****************************************************************************/ ****************************************************************************/
@@ -258,7 +258,7 @@ static inline int boardctl_usbdevctrl(FAR struct boardioc_usbdev_ctrl_s *ctrl)
* *
* Returned Value: * Returned Value:
* On success zero (OK) is returned; -1 (ERROR) is returned on failure * On success zero (OK) is returned; -1 (ERROR) is returned on failure
* with the errno variable to to indicate the nature of the failure. * with the errno variable to indicate the nature of the failure.
* *
****************************************************************************/ ****************************************************************************/

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