}
void
-wlc_phy_txpower_get_current(struct brcms_phy_pub *ppi, tx_power_t *power,
+wlc_phy_txpower_get_current(struct brcms_phy_pub *ppi, struct tx_power *power,
uint channel)
{
struct brcms_phy *pi = (struct brcms_phy *) ppi;
u8 min_pwr, max_pwr;
#if WL_TX_POWER_RATES != TXP_NUM_RATES
-#error "tx_power_t struct out of sync with this fn"
+#error "struct tx_power out of sync with this fn"
#endif
if (ISNPHY(pi)) {
extern void wlc_phy_antsel_type_set(struct brcms_phy_pub *ppi, u8 antsel_type);
extern void wlc_phy_txpower_get_current(struct brcms_phy_pub *ppi,
- tx_power_t *power, uint channel);
+ struct tx_power *power, uint channel);
extern void wlc_phy_initcal_enable(struct brcms_phy_pub *pih, bool initcal);
extern bool wlc_phy_test_ison(struct brcms_phy_pub *ppi);
/* sslpnphy specifics */
#define WL_TX_POWER_MCS20_SISO_FIRST_SSN 12 /* Index for first 20MHz MCS SISO rate */
-/* tx_power_t.flags bits */
+/* struct tx_power::flags bits */
#define WL_TX_POWER_F_ENABLED 1
#define WL_TX_POWER_F_HW 2
#define WL_TX_POWER_F_MIMO 4
brcms_c_stf_ss_algo_channel_get(struct brcms_c_info *wlc, u16 *ss_algo_channel,
chanspec_t chanspec)
{
- tx_power_t power;
+ struct tx_power power;
u8 siso_mcs_id, cdd_mcs_id, stbc_mcs_id;
/* Clear previous settings */
typedef volatile struct dma64regs dma64regs_t;
typedef struct brcms_rateset wlc_rateset_t;
typedef u32 ratespec_t;
-typedef struct tx_power tx_power_t;
typedef struct chanvec chanvec_t;
typedef s32 fixed;
typedef struct _cs32 cs32;