{
int retval = 0;
Tmq *tmq = NULL;
+ TmqhFlowCtx *fctx = NULL;
TmqResetQueues();
if (ctx == NULL)
goto end;
- TmqhFlowCtx *fctx = (TmqhFlowCtx *)ctx;
+ fctx = (TmqhFlowCtx *)ctx;
if (fctx->size != 4)
goto end;
{
int retval = 0;
Tmq *tmq = NULL;
+ TmqhFlowCtx *fctx = NULL;
TmqResetQueues();
if (ctx == NULL)
goto end;
- TmqhFlowCtx *fctx = (TmqhFlowCtx *)ctx;
+ fctx = (TmqhFlowCtx *)ctx;
if (fctx->size != 1)
goto end;
static int TmqhOutputFlowSetupCtxTest03(void)
{
int retval = 0;
+ TmqhFlowCtx *fctx = NULL;
TmqResetQueues();
if (ctx == NULL)
goto end;
- TmqhFlowCtx *fctx = (TmqhFlowCtx *)ctx;
+ fctx = (TmqhFlowCtx *)ctx;
if (fctx->size != 4)
goto end;
u.ptr = key;
if (HASH_LITTLE_ENDIAN && ((u.i & 0x3) == 0)) {
const uint32_t *k = (const uint32_t *)key; /* read 32-bit chunks */
- const uint8_t *k8;
/*------ all but last block: aligned reads and affect 32 bits of (a,b,c) */
while (length > 12)
#else /* make valgrind happy */
- k8 = (const uint8_t *)k;
+ const uint8_t *k8 = (const uint8_t *)k;
+
switch(length)
{
case 12: c+=k[2]; b+=k[1]; a+=k[0]; break;
u.ptr = key;
if (HASH_LITTLE_ENDIAN && ((u.i & 0x3) == 0)) {
const uint32_t *k = (const uint32_t *)key; /* read 32-bit chunks */
- const uint8_t *k8;
/*------ all but last block: aligned reads and affect 32 bits of (a,b,c) */
while (length > 12)
#else /* make valgrind happy */
- k8 = (const uint8_t *)k;
+ const uint8_t *k8 = (const uint8_t *)k;
switch(length)
{
case 12: c+=k[2]; b+=k[1]; a+=k[0]; break;
u.ptr = key;
if (HASH_BIG_ENDIAN && ((u.i & 0x3) == 0)) {
const uint32_t *k = (const uint32_t *)key; /* read 32-bit chunks */
- const uint8_t *k8;
/*------ all but last block: aligned reads and affect 32 bits of (a,b,c) */
while (length > 12)
#else /* make valgrind happy */
- k8 = (const uint8_t *)k;
+ const uint8_t *k8 = (const uint8_t *)k;
switch(length) /* all the case statements fall through */
{
case 12: c+=k[2]; b+=k[1]; a+=k[0]; break;