Add inter-operator whitespace. Improve existing documentation.
for (i = 0; i < len; i++)
{
for (i = 0; i < len; i++)
{
- if (((src[src_idx/8] >> (src_idx % 8)) & 1) == 1)
- dst[dst_idx/8] |= 1 << (dst_idx%8);
+ if (((src[src_idx / 8] >> (src_idx % 8)) & 1) == 1)
+ dst[dst_idx / 8] |= 1 << (dst_idx % 8);
- dst[dst_idx/8] &= ~(1 << (dst_idx%8));
+ dst[dst_idx / 8] &= ~(1 << (dst_idx % 8));
-/* support functions to access arbitrary bits in a byte array
- * flip_u32 inverses the bit order inside a 32-bit word (31..0 -> 0..31)
+/** @file
+ * Support functions to access arbitrary bits in a byte array
*/
/* inlining this will help show what fn that is taking time during profiling. */
static inline void buf_set_u32(uint8_t* buffer,
unsigned int first, unsigned int num, uint32_t value)
{
*/
/* inlining this will help show what fn that is taking time during profiling. */
static inline void buf_set_u32(uint8_t* buffer,
unsigned int first, unsigned int num, uint32_t value)
{
- if ((num == 32) && (first == 0))
- {
- buffer[3]=(value >> 24)&0xff;
- buffer[2]=(value >> 16)&0xff;
- buffer[1]=(value >> 8)&0xff;
- buffer[0]=(value >> 0)&0xff;
- } else
- {
+ if ((num == 32) && (first == 0)) {
+ buffer[3] = (value >> 24) & 0xff;
+ buffer[2] = (value >> 16) & 0xff;
+ buffer[1] = (value >> 8) & 0xff;
+ buffer[0] = (value >> 0) & 0xff;
+ } else {
for (i = first; i < first + num; i++)
{
for (i = first; i < first + num; i++)
{
- if (((value >> (i-first))&1) == 1)
- buffer[i/8] |= 1 << (i%8);
+ if (((value >> (i - first)) & 1) == 1)
+ buffer[i / 8] |= 1 << (i % 8);
- buffer[i/8] &= ~(1 << (i%8));
+ buffer[i / 8] &= ~(1 << (i % 8));
}
}
}
static inline uint32_t buf_get_u32(const uint8_t* buffer,
unsigned int first, unsigned int num)
{
}
}
}
static inline uint32_t buf_get_u32(const uint8_t* buffer,
unsigned int first, unsigned int num)
{
- if ((num == 32) && (first == 0))
- {
+ if ((num == 32) && (first == 0)) {
return (((uint32_t)buffer[3]) << 24) |
(((uint32_t)buffer[2]) << 16) |
(((uint32_t)buffer[1]) << 8) |
return (((uint32_t)buffer[3]) << 24) |
(((uint32_t)buffer[2]) << 16) |
(((uint32_t)buffer[1]) << 8) |
} else {
uint32_t result = 0;
unsigned int i;
} else {
uint32_t result = 0;
unsigned int i;
for (i = first; i < first + num; i++)
{
for (i = first; i < first + num; i++)
{
- if (((buffer[i/8]>>(i%8))&1) == 1)
- result |= 1 << (i-first);
+ if (((buffer[i / 8] >> (i % 8)) & 1) == 1)
+ result |= 1 << (i - first);
+/// flip_u32 inverts the bit order inside a 32-bit word (31..0 -> 0..31)
uint32_t flip_u32(uint32_t value, unsigned int num);
int buf_cmp(const uint8_t *buf1, const uint8_t *buf2, int size);
uint32_t flip_u32(uint32_t value, unsigned int num);
int buf_cmp(const uint8_t *buf1, const uint8_t *buf2, int size);
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