Fix spaces around parentheses
This commit deletes spaces after open parentheses '(' and spaces before
close paratheses ')'.
This modification were done with the following script:
checkpatch_script="$VXMICRO_BASE/scripts/checkpatch.pl --mailback --no-tree -f --emacs --summary-file --show-types --ignore BRACES,PRINTK_WITHOUT_KERN_LEVEL,SPLIT_STRING --max-line-length=100 "
cd $VXMICRO_BASE;
for file in $(find ./ -name "*.[ch]" ! -path "./scripts/*" ! -path "./host/src/wrsconfig/*");
do
# fixing spaces after open parethesis
for line in $(eval $checkpatch_script $file | grep "ERROR:SPACING: space prohibited after that open parenthesis '('" | cut -d":" -f2)
do
sed -i -r -e ''$line' { s/\([ \t]*/\(/g }' $file;
done;
# fixing spaces before close parethesis
for line in $(eval $checkpatch_script $file | grep "ERROR:SPACING: space prohibited before that close parenthesis ')'" | cut -d":" -f2)
do
sed -i -r -e ''$line' { s/[ \t]*\)/\)/g }' $file;
done;
done;
Signed-off-by: Yonattan Louise <yonattan.a.louise.mendoza@intel.com>
Change-Id: I4482fc50ec45542afa2e60c5f2fef4e75fb24dd3
Signed-off-by: Anas Nashif <anas.nashif@intel.com>
This commit is contained in:
parent
16a2c5800d
commit
f7df273f8c
7 changed files with 23 additions and 23 deletions
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@ -178,14 +178,14 @@ static void _FpCtxSave(tCCS *ccs)
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__asm volatile void _FpCtxSave(tCCS *ccs)
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{
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% mem ccs !"ax", "cx" movl ccs,
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% eax leal __tCCS_preempFloatReg_OFFSET( % eax),
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% eax leal __tCCS_preempFloatReg_OFFSET(% eax),
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% ecx /* &preempFloatReg */
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#ifdef CONFIG_SSE
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testl $0x20,
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__tCCS_flags_OFFSET( % eax) jz 0f fxsave( % ecx) jmp 1f 0
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: fnsave( % ecx)1 :
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__tCCS_flags_OFFSET(% eax) jz 0f fxsave(% ecx) jmp 1f 0
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: fnsave(% ecx)1 :
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#else
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fnsave( % ecx)
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fnsave(% ecx)
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#endif /* CONFIG_SSE */
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}
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#endif
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@ -227,7 +227,7 @@ __asm volatile void _FpCtxInit(tCCS *ccs)
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#ifdef CONFIG_SSE
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movl ccs,
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% eax testl $0x20,
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__tCCS_flags_OFFSET( % eax) jz 0f
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__tCCS_flags_OFFSET(% eax) jz 0f
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/* initialize SSE (since context uses it) */
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ldmxcsr _Mxcsr
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@ -218,7 +218,7 @@ static inline uint64_t _NanoTscRead(void)
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} rv;
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/* rdtsc & cpuid clobbers eax, ebx, ecx and edx registers */
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__asm__ volatile ( /* serialize */
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__asm__ volatile (/* serialize */
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"xorl %%eax,%%eax;\n\t"
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"cpuid;\n\t"
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:
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@ -58,7 +58,7 @@ done:
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#endif /* CONFIG_UNALIGNED_WRITE_UNSUPPORTED */
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}
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__asm volatile void k_memset( void *_d, int _v, size_t _n)
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__asm volatile void k_memset(void *_d, int _v, size_t _n)
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{
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#ifndef CONFIG_UNALIGNED_WRITE_UNSUPPORTED
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% mem _d, _v, _n; lab unaligned, done
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@ -99,7 +99,7 @@ static inline uint32_t TIME_STAMP_DELTA_GET (uint32_t ts)
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/* serialize so OS_GET_TIME() is not reordered */
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#if defined(__GNUC__)
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__asm__ __volatile__ ( /* serialize */ \
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__asm__ __volatile__ (/* serialize */ \
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"xorl %%eax,%%eax \n cpuid" \
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::: "%eax", "%ebx", "%ecx", "%edx");
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#elif defined(__DCC__)
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@ -153,7 +153,7 @@ int fillFIFO(kfifo_t queue, int numElements)
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int result = TC_PASS; /* TC_PASS or TC_FAIL for this function */
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int retValue; /* return value from task_fifo_xxx APIs */
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for (int i = 0; i < numElements; i++ ) {
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for (int i = 0; i < numElements; i++) {
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retValue = task_fifo_put(queue, &myData[i]);
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switch (retValue) {
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case RC_OK:
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@ -229,10 +229,10 @@ void fiber1(void)
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TC_PRINT("Test Fiber FIFO Get\n\n");
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/* Get all FIFOs */
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while ( (pData = nano_fiber_fifo_get(&nanoFifoObj)) != NULL )
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while ((pData = nano_fiber_fifo_get(&nanoFifoObj)) != NULL)
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{
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TC_PRINT("FIBER FIFO Get: count = %d, ptr is %p\n", count, pData);
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if( (count >= NUM_FIFO_ELEMENT) || (pData != pPutList1[count]) )
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if((count >= NUM_FIFO_ELEMENT) || (pData != pPutList1[count]))
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{
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TCERR1(count);
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retCode = TC_FAIL;
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@ -396,10 +396,10 @@ void testIsrFifoFromTask(void)
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_trigger_nano_isr_fifo_get();
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pGetData = isrFifoInfo.data;
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while ( pGetData != NULL )
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while (pGetData != NULL)
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{
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TC_PRINT("Get from queue1: count = %d, ptr is %p\n", count, pGetData);
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if ( (count >= NUM_FIFO_ELEMENT) || (pGetData != pPutList1[count]) )
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if ((count >= NUM_FIFO_ELEMENT) || (pGetData != pPutList1[count]))
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{
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TCERR1(count);
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retCode = TC_FAIL;
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@ -432,7 +432,7 @@ void testIsrFifoFromTask(void)
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else
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{
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TC_PRINT("\nTest ISR FIFO (invoked from Task) - put %p and get back %p\n",
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pPutData, pGetData );
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pPutData, pGetData);
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}
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TC_END(retCode, "%s - %s.\n", retCode == TC_PASS ? PASS : FAIL, __func__);
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@ -729,10 +729,10 @@ void main(void)
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TC_PRINT("Test Task FIFO Get\n");
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/* Get all FIFOs */
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while ( (pData = nano_task_fifo_get(&nanoFifoObj)) != NULL )
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while ((pData = nano_task_fifo_get(&nanoFifoObj)) != NULL)
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{
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TC_PRINT("TASK FIFO Get: count = %d, ptr is %p\n", count, pData);
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if ( (count >= NUM_FIFO_ELEMENT) || (pData != pPutList2[count]) )
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if ((count >= NUM_FIFO_ELEMENT) || (pData != pPutList2[count]))
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{
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TCERR1(count);
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retCode = TC_FAIL;
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@ -193,7 +193,7 @@ void isr_stack_pop(void *parameter)
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{
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ISR_STACK_INFO * pInfo = (ISR_STACK_INFO *) parameter;
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if ( nano_isr_stack_pop (pInfo->channel, &(pInfo->data)) == 0 )
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if (nano_isr_stack_pop (pInfo->channel, &(pInfo->data)) == 0)
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{
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/* the stack is empty, set data to INVALID_DATA */
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pInfo->data = INVALID_DATA;
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@ -220,10 +220,10 @@ void fiber1(void)
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TC_PRINT("Test Fiber STACK Pop\n\n");
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/* Get all data */
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while ( nano_fiber_stack_pop(&nanoStackObj, &data) != 0 )
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while (nano_fiber_stack_pop(&nanoStackObj, &data) != 0)
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{
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TC_PRINT("FIBER STACK Pop: count = %d, data is %d\n", count, data);
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if( (count >= NUM_STACK_ELEMENT) || (data != myData[NUM_STACK_ELEMENT - 1 - count]) )
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if((count >= NUM_STACK_ELEMENT) || (data != myData[NUM_STACK_ELEMENT - 1 - count]))
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{
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TCERR1(count);
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retCode = TC_FAIL;
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@ -383,10 +383,10 @@ void testIsrStackFromTask(void)
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_trigger_nano_isr_stack_pop();
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result = isrStackInfo.data;
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while ( result != INVALID_DATA )
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while (result != INVALID_DATA)
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{
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TC_PRINT(" Pop from queue1: count = %d, data is %d\n", count, result);
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if ( (count >= NUM_STACK_ELEMENT) || ( result != myIsrData[NUM_STACK_ELEMENT - count - 1] ) )
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if ((count >= NUM_STACK_ELEMENT) || (result != myIsrData[NUM_STACK_ELEMENT - count - 1]))
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{
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TCERR1(count);
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retCode = TC_FAIL;
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@ -594,10 +594,10 @@ void main(void)
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TC_PRINT("Test Task STACK Pop\n");
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/* Get all data */
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while ( nano_task_stack_pop(&nanoStackObj, &data) != 0 )
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while (nano_task_stack_pop(&nanoStackObj, &data) != 0)
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{
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TC_PRINT("TASK STACK Pop: count = %d, data is %d\n", count, data);
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if ( (count >= NUM_STACK_ELEMENT) || ( data != myData[count] ) )
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if ((count >= NUM_STACK_ELEMENT) || (data != myData[count]))
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{
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TCERR1(count);
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retCode = TC_FAIL;
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