mf_mode
u8 mf_mode;
#define IS_MF(bp) (bp->mf_mode != 0)
#define IS_MF_SI(bp) (bp->mf_mode == MULTI_FUNCTION_SI)
#define IS_MF_SD(bp) (bp->mf_mode == MULTI_FUNCTION_SD)
#define IS_MF_AFEX(bp) (bp->mf_mode == MULTI_FUNCTION_AFEX)
start_params->mf_mode = bp->mf_mode;
bp->mf_mode = MULTI_FUNCTION_SI;
bp->mf_mode = 0;
bp->mf_mode = MULTI_FUNCTION_AFEX;
bp->mf_mode = MULTI_FUNCTION_SD;
bp->mf_mode = MULTI_FUNCTION_SD;
bp->mf_mode = MULTI_FUNCTION_SD;
switch (bp->mf_mode) {
switch (bp->mf_mode) {
switch (bp->mf_mode) {
if (bp->mf_mode == SINGLE_FUNCTION) {
if (bp->mf_mode == SINGLE_FUNCTION) {
rdata->function_mode = (u8)start_params->mf_mode;
u16 mf_mode;
bp->mf_mode = 0;
u32 nvm_cfg1_offset, mf_mode, addr, generic_cont0, core_cfg;
mf_mode = (generic_cont0 & NVM_CFG1_GLOB_MF_MODE_MASK) >>
switch (mf_mode) {
u8 mf_mode;
p_ramrod->mf_mode = MF_OVLAN;
p_ramrod->mf_mode = MF_NPAR;