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qbitfield.c
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/*!
* @file qbitfield.c
* @author J. Camilo Gomez C.
* @note This file is part of the qLibs distribution.
**/
#include "qbitfield.h"
#include <string.h>
static const size_t qBitField_LBit = (size_t)( sizeof(uint32_t) * 8U );
static uint32_t qBitField_Mask( const size_t index );
static size_t qBitField_BitSlot( const size_t index );
static uint32_t qBitField_BitGet( const qBitField_t * const b,
const size_t index );
static void qBitField_BitSet( qBitField_t * const b,
size_t index );
static void qBitField_BitClear( qBitField_t *const b,
const size_t index );
static void qBitField_BitToggle( qBitField_t *const b,
const size_t index );
static uint32_t qBitField_SafeMask( const uint32_t val,
const size_t x,
const size_t nbits );
static size_t qBitField_Offset( const size_t index );
static uint32_t qBitField_Read_uint32( const qBitField_t * const b,
const size_t index );
static void qBitField_Write_uint32( qBitField_t *b,
const size_t index,
const uint32_t value );
/*============================================================================*/
static uint32_t qBitField_Mask( const size_t index )
{
return (uint32_t)1U << ( index % qBitField_LBit );
}
/*============================================================================*/
static size_t qBitField_BitSlot( const size_t index )
{
return index/qBitField_LBit;
}
/*============================================================================*/
static uint32_t qBitField_BitGet( const qBitField_t * const b,
const size_t index )
{
const size_t slot = qBitField_BitSlot( index );
return ( b->field[ slot ] >> ( index % qBitField_LBit ) ) & 1U;
}
/*============================================================================*/
static void qBitField_BitSet( qBitField_t * const b,
size_t index )
{
const size_t slot = qBitField_BitSlot( index );
b->field[ slot ] |= qBitField_Mask( index );
}
/*============================================================================*/
static void qBitField_BitClear( qBitField_t * const b,
const size_t index )
{
const size_t slot = qBitField_BitSlot( index );
b->field[ slot ] &= ~qBitField_Mask( index );
}
/*============================================================================*/
static void qBitField_BitToggle( qBitField_t * const b,
const size_t index )
{
const size_t slot = qBitField_BitSlot( index );
b->field[ slot ] ^= qBitField_Mask( index );
}
/*============================================================================*/
static uint32_t qBitField_SafeMask( const uint32_t val,
const size_t x,
const size_t nbits )
{
/*cstat -ATH-shift-bounds -MISRAC2012-Rule-12.2 -CERT-INT34-C_b*/
return val >> ( (uint32_t)( x - nbits ) );
/*cstat +ATH-shift-bounds -MISRAC2012-Rule-12.2 +CERT-INT34-C_b*/
}
/*============================================================================*/
static size_t qBitField_Offset( const size_t index )
{
return index & (size_t)31U;
}
/*============================================================================*/
static uint32_t qBitField_MaskMerge( const uint32_t w,
const uint32_t value,
const uint32_t mask )
{
return value ^ ( ( w ^ value ) & mask );
}
/*============================================================================*/
int qBitField_Setup( qBitField_t * const b,
void * const area,
const size_t area_size )
{
int retValue = 0;
if ( ( NULL != b ) && ( NULL != area ) && ( area_size > 0U ) ) {
/*cstat -MISRAC2012-Rule-11.5 -CERT-EXP36-C_b*/
/*cppcheck-suppress misra-c2012-11.5 */
b->field = (uint32_t *)area;
/*cstat +MISRAC2012-Rule-11.5 +CERT-EXP36-C_b*/
b->size = area_size*8U;
b->nSlots = area_size/sizeof(uint32_t);
retValue = 1;
}
return retValue;
}
/*============================================================================*/
int qBitField_ClearAll( qBitField_t * const b )
{
int retValue = 0;
if ( NULL != b ) {
(void)memset( b->field, 0, b->size/8U );
retValue = 1;
}
return retValue;
}
/*============================================================================*/
int qBitField_SetAll( qBitField_t * const b )
{
int retValue = 0;
if ( NULL != b ) {
(void)memset( b->field, 0xFF, b->size/8U );
retValue = 1;
}
return retValue;
}
/*============================================================================*/
int qBitField_SetBit( qBitField_t * const b,
const size_t index )
{
int retValue = 0;
if ( NULL != b ) {
qBitField_BitSet( b, index );
retValue = 1;
}
return retValue;
}
/*============================================================================*/
int qBitField_ClearBit( qBitField_t * const b,
const size_t index )
{
int retValue = 0;
if ( NULL != b ) {
qBitField_BitClear( b, index );
retValue = 1;
}
return retValue;
}
/*============================================================================*/
int qBitField_ToggleBit( qBitField_t * const b,
const size_t index )
{
int retValue = 0;
if ( NULL != b ) {
qBitField_BitToggle( b, index );
retValue = 1;
}
return retValue;
}
/*============================================================================*/
uint8_t qBitField_ReadBit( const qBitField_t * const b,
const size_t index )
{
uint8_t retValue = 0U;
if ( NULL != b ) {
retValue = ( 0U != qBitField_BitGet( b, index ) )? 1U : 0U;
}
return retValue;
}
/*============================================================================*/
int qBitField_WriteBit( qBitField_t * const b,
const size_t index,
uint8_t value )
{
int retValue = 0;
if ( NULL != b ) {
if ( 0U != value ) {
qBitField_BitSet( b, index );
}
else {
qBitField_BitClear( b, index );
}
retValue = 1;
}
return retValue;
}
/*============================================================================*/
uint32_t qBitField_ReadUINTn( const qBitField_t * const b,
const size_t index,
size_t xBits )
{
uint32_t retValue = 0U;
if ( ( NULL != b ) && ( xBits <= 32U ) ) {
if ( 1U == xBits ) {
retValue = (uint32_t)qBitField_ReadBit( b, index );
}
else if ( 32U == xBits ) {
retValue = qBitField_Read_uint32( b, index );
}
else {
retValue = qBitField_Read_uint32( b, index );
retValue &= qBitField_SafeMask( 0xFFFFFFFFU, 32U, xBits );
}
}
return retValue;
}
/*============================================================================*/
int qBitField_WriteUINTn( qBitField_t * const b,
const size_t index,
uint32_t value,
size_t xBits )
{
int retValue = 0;
if ( ( NULL != b ) && ( xBits <= 32U ) ) {
uint32_t w, mask;
if ( 1U == xBits ) {
(void)qBitField_WriteBit( b, index, (uint8_t)value );
}
else if ( 32U == xBits ) {
qBitField_Write_uint32( b, index, value );
}
else {
w = qBitField_Read_uint32( b, index );
value &= qBitField_SafeMask( 0xFFFFFFFFU, 32U, xBits );
/*cstat -ATH-overflow*/
mask = (uint32_t)0xFFFFFFFFU << (uint32_t)xBits;
/*cstat +ATH-overflow*/
qBitField_Write_uint32( b, index, qBitField_MaskMerge( w, value, mask ) );
}
retValue = 1;
}
return retValue;
}
/*============================================================================*/
float qBitField_ReadFloat( const qBitField_t * const b,
const size_t index )
{
float retValue = 0.0F;
if ( NULL != b ) {
uint32_t rval;
rval = qBitField_Read_uint32( b, index );
/*cppcheck-suppress misra-c2012-21.15 */
(void)memcpy( &retValue, &rval, sizeof(float) );
}
return retValue;
}
/*============================================================================*/
int qBitField_WriteFloat( qBitField_t * const b,
const size_t index,
float value )
{
int retValue = 0;
if ( NULL != b ) {
uint32_t fval = 0U;
/*cppcheck-suppress misra-c2012-21.15 */
(void)memcpy( &fval, &value, sizeof(float) );
qBitField_Write_uint32( b, index, fval );
retValue = 1;
}
return retValue;
}
/*============================================================================*/
void* qBitField_Dump( const qBitField_t * const b,
void * const dst,
size_t n )
{
void *retValue = NULL;
if ( ( NULL != b ) && ( NULL != dst ) ) {
if ( n <= ( b->size/8U ) ) {
retValue = memcpy( dst, (const void*)b->field, n );
}
}
return retValue;
}
/*============================================================================*/
static uint32_t qBitField_Read_uint32( const qBitField_t * const b,
const size_t index )
{
size_t slot, of, bits_taken;
uint32_t result;
slot = qBitField_BitSlot( index );
of = qBitField_Offset( index );
result = b->field[ slot ] >> of;
bits_taken = 32U - of;
if ( ( 0U != of ) && ( ( index + bits_taken ) < b->size ) ) {
/*cstat -CERT-INT30-C_a -ATH-shift-bounds -MISRAC2012-Rule-12.2 -CERT-INT34-C_b*/
result |= b->field[ slot + 1U ] << (uint32_t)bits_taken;
/*cstat +CERT-INT30-C_a +ATH-shift-bounds +MISRAC2012-Rule-12.2 +CERT-INT34-C_b*/
}
return result;
}
/*============================================================================*/
static void qBitField_Write_uint32( qBitField_t *b,
const size_t index,
const uint32_t value )
{
uint32_t mask;
size_t slot, of;
slot = qBitField_BitSlot( index );
of = qBitField_Offset( index );
if ( 0U == of ) {
b->field[ slot ] = value;
}
else {
mask = qBitField_SafeMask( 0xFFFFFFFFU, qBitField_LBit, of );
b->field[ slot ] = ( value << of ) | ( b->field[ slot ] & mask );
if ( ++slot < b->nSlots ) {
b->field[ slot ] = qBitField_SafeMask( value, 32U, of ) |
( b->field[ slot ] & ( ~mask ) );
}
}
}
/*============================================================================*/