NUM_EDGES
HALASSERT(AR9287_NUM_CTLS <= sizeof(ee->ee_rdEdgesPower)/NUM_EDGES);
for (j = 0; j < NUM_EDGES; j ++) {
rep += NUM_EDGES;
#define NUM_EDGES 8
RD_EDGES_POWER ee_rdEdgesPower[NUM_EDGES*AR9287_NUM_CTLS];
HALASSERT(AR5416_NUM_CTLS <= sizeof(ee->ee_rdEdgesPower)/NUM_EDGES);
for (j = 0; j < NUM_EDGES; j ++) {
rep += NUM_EDGES;
#define NUM_EDGES 8
RD_EDGES_POWER ee_rdEdgesPower[NUM_EDGES*AR5416_NUM_CTLS];
rep += NUM_EDGES;
for (j = 0; j < NUM_EDGES; j += 2) {
for (j = 0; j < NUM_EDGES; j += 2) {
for (j = 0; j < NUM_EDGES; j++ ) {
rep += NUM_EDGES;
RD_EDGES_POWER ee_rdEdgesPower[NUM_EDGES*NUM_CTLS_MAX];
HALASSERT(AR5416_4K_NUM_CTLS <= sizeof(ee->ee_rdEdgesPower)/NUM_EDGES);
for (j = 0; j < NUM_EDGES; j ++) {
rep += NUM_EDGES;
#define NUM_EDGES 8
RD_EDGES_POWER ee_rdEdgesPower[NUM_EDGES*AR5416_4K_NUM_CTLS];
rep = &ee->ee_rdEdgesPower[i * NUM_EDGES];
uint16_t tempChannelList[NUM_EDGES]; /* temp array for holding edge channels */
for (i = 0; i < NUM_EDGES; i++) {
rep = &ee->ee_rdEdgesPower[i * NUM_EDGES];
rep = &ee->ee_rdEdgesPower[i * NUM_EDGES];
uint16_t tempChannelList[NUM_EDGES];
for (i = 0; i < NUM_EDGES; i++) {
for (i = 0; i < NUM_EDGES*eep->ee_numCtls; i++) {
i / NUM_EDGES, i % NUM_EDGES,
if (i % NUM_EDGES == (NUM_EDGES -1))
for (i = 0; i < NUM_EDGES*eep->ee_numCtls; i++) {
i / NUM_EDGES, i % NUM_EDGES,
if (i % NUM_EDGES == (NUM_EDGES -1))
for (i = 0; i < NUM_EDGES*eep->ee_numCtls; i++) {
i / NUM_EDGES, i % NUM_EDGES,
if (i % NUM_EDGES == (NUM_EDGES -1))
&eeprom.ee_rdEdgesPower[curctl*NUM_EDGES];
&eeprom.ee_rdEdgesPower[curctl*NUM_EDGES];
&eeprom.ee_rdEdgesPower[curctl*NUM_EDGES];
u_int16_t tempChannelList[NUM_EDGES];
for (i = 0; i < NUM_EDGES; i++) {
return &_rdEdgesPower[i * NUM_EDGES];
RD_EDGES_POWER _rdEdgesPower[NUM_EDGES*NUM_CTLS] = {