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b43: N-PHY: implement RSSI calibration for rev3+
Signed-off-by: Rafał Miłecki <zajec5@gmail.com> Signed-off-by: John W. Linville <linville@tuxdriver.com>
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@ -85,6 +85,13 @@ static inline bool b43_nphy_ipa(struct b43_wldev *dev)
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(dev->phy.n->ipa5g_on && band == IEEE80211_BAND_5GHZ));
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}
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/* http://bcm-v4.sipsolutions.net/802.11/PHY/N/RxCoreGetState */
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static u8 b43_nphy_get_rx_core_state(struct b43_wldev *dev)
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{
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return (b43_phy_read(dev, B43_NPHY_RFSEQCA) & B43_NPHY_RFSEQCA_RXEN) >>
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B43_NPHY_RFSEQCA_RXEN_SHIFT;
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}
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/**************************************************
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* RF (just without b43_nphy_rf_control_intc_override)
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**************************************************/
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@ -1290,6 +1297,186 @@ static int b43_nphy_poll_rssi(struct b43_wldev *dev, u8 type, s32 *buf,
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return out;
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}
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/* http://bcm-v4.sipsolutions.net/802.11/PHY/N/RSSICalRev3 */
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static void b43_nphy_rev3_rssi_cal(struct b43_wldev *dev)
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{
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struct b43_phy_n *nphy = dev->phy.n;
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u16 saved_regs_phy_rfctl[2];
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u16 saved_regs_phy[13];
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u16 regs_to_store[] = {
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B43_NPHY_AFECTL_OVER1, B43_NPHY_AFECTL_OVER,
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B43_NPHY_AFECTL_C1, B43_NPHY_AFECTL_C2,
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B43_NPHY_TXF_40CO_B1S1, B43_NPHY_RFCTL_OVER,
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B43_NPHY_TXF_40CO_B1S0, B43_NPHY_TXF_40CO_B32S1,
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B43_NPHY_RFCTL_CMD,
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B43_NPHY_RFCTL_LUT_TRSW_UP1, B43_NPHY_RFCTL_LUT_TRSW_UP2,
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B43_NPHY_RFCTL_RSSIO1, B43_NPHY_RFCTL_RSSIO2
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};
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u16 class;
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u16 clip_state[2];
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u16 clip_off[2] = { 0xFFFF, 0xFFFF };
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u8 vcm_final = 0;
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s8 offset[4];
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s32 results[8][4] = { };
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s32 results_min[4] = { };
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s32 poll_results[4] = { };
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u16 *rssical_radio_regs = NULL;
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u16 *rssical_phy_regs = NULL;
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u16 r; /* routing */
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u8 rx_core_state;
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u8 core, i, j;
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class = b43_nphy_classifier(dev, 0, 0);
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b43_nphy_classifier(dev, 7, 4);
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b43_nphy_read_clip_detection(dev, clip_state);
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b43_nphy_write_clip_detection(dev, clip_off);
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saved_regs_phy_rfctl[0] = b43_phy_read(dev, B43_NPHY_RFCTL_INTC1);
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saved_regs_phy_rfctl[1] = b43_phy_read(dev, B43_NPHY_RFCTL_INTC2);
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for (i = 0; i < ARRAY_SIZE(regs_to_store); i++)
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saved_regs_phy[i] = b43_phy_read(dev, regs_to_store[i]);
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b43_nphy_rf_control_intc_override(dev, 0, 0, 7);
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b43_nphy_rf_control_intc_override(dev, 1, 1, 7);
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b43_nphy_rf_control_override(dev, 0x1, 0, 0, false);
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b43_nphy_rf_control_override(dev, 0x2, 1, 0, false);
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b43_nphy_rf_control_override(dev, 0x80, 1, 0, false);
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b43_nphy_rf_control_override(dev, 0x40, 1, 0, false);
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if (b43_current_band(dev->wl) == IEEE80211_BAND_5GHZ) {
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b43_nphy_rf_control_override(dev, 0x20, 0, 0, false);
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b43_nphy_rf_control_override(dev, 0x10, 1, 0, false);
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} else {
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b43_nphy_rf_control_override(dev, 0x10, 0, 0, false);
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b43_nphy_rf_control_override(dev, 0x20, 1, 0, false);
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}
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rx_core_state = b43_nphy_get_rx_core_state(dev);
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for (core = 0; core < 2; core++) {
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if (!(rx_core_state & (1 << core)))
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continue;
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r = core ? B2056_RX1 : B2056_RX0;
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b43_nphy_scale_offset_rssi(dev, 0, 0, core + 1, 0, 2);
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b43_nphy_scale_offset_rssi(dev, 0, 0, core + 1, 1, 2);
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for (i = 0; i < 8; i++) {
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b43_radio_maskset(dev, r | B2056_RX_RSSI_MISC, 0xE3,
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i << 2);
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b43_nphy_poll_rssi(dev, 2, results[i], 8);
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}
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for (i = 0; i < 4; i++) {
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s32 curr;
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s32 mind = 40;
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s32 minpoll = 249;
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u8 minvcm = 0;
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if (2 * core != i)
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continue;
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for (j = 0; j < 8; j++) {
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curr = results[j][i] * results[j][i] +
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results[j][i + 1] * results[j][i];
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if (curr < mind) {
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mind = curr;
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minvcm = j;
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}
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if (results[j][i] < minpoll)
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minpoll = results[j][i];
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}
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vcm_final = minvcm;
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results_min[i] = minpoll;
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}
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b43_radio_maskset(dev, r | B2056_RX_RSSI_MISC, 0xE3,
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vcm_final << 2);
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for (i = 0; i < 4; i++) {
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if (core != i / 2)
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continue;
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offset[i] = -results[vcm_final][i];
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if (offset[i] < 0)
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offset[i] = -((abs(offset[i]) + 4) / 8);
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else
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offset[i] = (offset[i] + 4) / 8;
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if (results_min[i] == 248)
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offset[i] = -32;
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b43_nphy_scale_offset_rssi(dev, 0, offset[i],
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(i / 2 == 0) ? 1 : 2,
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(i % 2 == 0) ? 0 : 1,
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2);
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}
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}
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for (core = 0; core < 2; core++) {
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if (!(rx_core_state & (1 << core)))
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continue;
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for (i = 0; i < 2; i++) {
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b43_nphy_scale_offset_rssi(dev, 0, 0, core + 1, 0, i);
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b43_nphy_scale_offset_rssi(dev, 0, 0, core + 1, 1, i);
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b43_nphy_poll_rssi(dev, i, poll_results, 8);
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for (j = 0; j < 4; j++) {
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if (j / 2 == core)
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offset[j] = 232 - poll_results[j];
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if (offset[j] < 0)
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offset[j] = -(abs(offset[j] + 4) / 8);
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else
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offset[j] = (offset[j] + 4) / 8;
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b43_nphy_scale_offset_rssi(dev, 0,
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offset[2 * core], core + 1, j % 2, i);
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}
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}
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}
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b43_phy_write(dev, B43_NPHY_RFCTL_INTC1, saved_regs_phy_rfctl[0]);
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b43_phy_write(dev, B43_NPHY_RFCTL_INTC2, saved_regs_phy_rfctl[1]);
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b43_nphy_force_rf_sequence(dev, B43_RFSEQ_RESET2RX);
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b43_phy_set(dev, B43_NPHY_TXF_40CO_B1S1, 0x1);
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b43_phy_set(dev, B43_NPHY_RFCTL_CMD, B43_NPHY_RFCTL_CMD_START);
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b43_phy_mask(dev, B43_NPHY_TXF_40CO_B1S1, ~0x1);
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b43_phy_set(dev, B43_NPHY_RFCTL_OVER, 0x1);
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b43_phy_set(dev, B43_NPHY_RFCTL_CMD, B43_NPHY_RFCTL_CMD_RXTX);
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b43_phy_mask(dev, B43_NPHY_TXF_40CO_B1S1, ~0x1);
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for (i = 0; i < ARRAY_SIZE(regs_to_store); i++)
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b43_phy_write(dev, regs_to_store[i], saved_regs_phy[i]);
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/* Store for future configuration */
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if (b43_current_band(dev->wl) == IEEE80211_BAND_2GHZ) {
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rssical_radio_regs = nphy->rssical_cache.rssical_radio_regs_2G;
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rssical_phy_regs = nphy->rssical_cache.rssical_phy_regs_2G;
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} else {
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rssical_radio_regs = nphy->rssical_cache.rssical_radio_regs_5G;
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rssical_phy_regs = nphy->rssical_cache.rssical_phy_regs_5G;
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}
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rssical_radio_regs[0] = b43_radio_read(dev, 0x602B);
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rssical_radio_regs[0] = b43_radio_read(dev, 0x702B);
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rssical_phy_regs[0] = b43_phy_read(dev, B43_NPHY_RSSIMC_0I_RSSI_Z);
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rssical_phy_regs[1] = b43_phy_read(dev, B43_NPHY_RSSIMC_0Q_RSSI_Z);
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rssical_phy_regs[2] = b43_phy_read(dev, B43_NPHY_RSSIMC_1I_RSSI_Z);
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rssical_phy_regs[3] = b43_phy_read(dev, B43_NPHY_RSSIMC_1Q_RSSI_Z);
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rssical_phy_regs[4] = b43_phy_read(dev, B43_NPHY_RSSIMC_0I_RSSI_X);
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rssical_phy_regs[5] = b43_phy_read(dev, B43_NPHY_RSSIMC_0Q_RSSI_X);
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rssical_phy_regs[6] = b43_phy_read(dev, B43_NPHY_RSSIMC_1I_RSSI_X);
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rssical_phy_regs[7] = b43_phy_read(dev, B43_NPHY_RSSIMC_1Q_RSSI_X);
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rssical_phy_regs[8] = b43_phy_read(dev, B43_NPHY_RSSIMC_0I_RSSI_Y);
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rssical_phy_regs[9] = b43_phy_read(dev, B43_NPHY_RSSIMC_0Q_RSSI_Y);
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rssical_phy_regs[10] = b43_phy_read(dev, B43_NPHY_RSSIMC_1I_RSSI_Y);
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rssical_phy_regs[11] = b43_phy_read(dev, B43_NPHY_RSSIMC_1Q_RSSI_Y);
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/* Remember for which channel we store configuration */
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if (b43_current_band(dev->wl) == IEEE80211_BAND_2GHZ)
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nphy->rssical_chanspec_2G.center_freq = dev->phy.channel_freq;
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else
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nphy->rssical_chanspec_5G.center_freq = dev->phy.channel_freq;
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/* End of calibration, restore configuration */
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b43_nphy_classifier(dev, 7, class);
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b43_nphy_write_clip_detection(dev, clip_state);
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}
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/* http://bcm-v4.sipsolutions.net/802.11/PHY/N/RSSICal */
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static void b43_nphy_rev2_rssi_cal(struct b43_wldev *dev, u8 type)
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{
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@ -1454,12 +1641,6 @@ static void b43_nphy_rev2_rssi_cal(struct b43_wldev *dev, u8 type)
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b43_nphy_reset_cca(dev);
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}
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/* http://bcm-v4.sipsolutions.net/802.11/PHY/N/RSSICalRev3 */
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static void b43_nphy_rev3_rssi_cal(struct b43_wldev *dev)
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{
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/* TODO */
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}
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/*
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* RSSI Calibration
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* http://bcm-v4.sipsolutions.net/802.11/PHY/N/RSSICal
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