xref: /freebsd/sys/dev/rtwn/rtl8192c/r92c_calib.c (revision 42249ef2)
1 /*	$OpenBSD: if_urtwn.c,v 1.16 2011/02/10 17:26:40 jakemsr Exp $	*/
2 
3 /*-
4  * Copyright (c) 2010 Damien Bergamini <damien.bergamini@free.fr>
5  * Copyright (c) 2014 Kevin Lo <kevlo@FreeBSD.org>
6  * Copyright (c) 2016 Andriy Voskoboinyk <avos@FreeBSD.org>
7  *
8  * Permission to use, copy, modify, and distribute this software for any
9  * purpose with or without fee is hereby granted, provided that the above
10  * copyright notice and this permission notice appear in all copies.
11  *
12  * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
13  * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
14  * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
15  * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
16  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
17  * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
18  * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
19  */
20 
21 #include <sys/cdefs.h>
22 __FBSDID("$FreeBSD$");
23 
24 #include "opt_wlan.h"
25 
26 #include <sys/param.h>
27 #include <sys/lock.h>
28 #include <sys/mutex.h>
29 #include <sys/mbuf.h>
30 #include <sys/kernel.h>
31 #include <sys/socket.h>
32 #include <sys/systm.h>
33 #include <sys/malloc.h>
34 #include <sys/queue.h>
35 #include <sys/taskqueue.h>
36 #include <sys/bus.h>
37 #include <sys/endian.h>
38 #include <sys/linker.h>
39 
40 #include <net/if.h>
41 #include <net/ethernet.h>
42 #include <net/if_media.h>
43 
44 #include <net80211/ieee80211_var.h>
45 #include <net80211/ieee80211_radiotap.h>
46 
47 #include <dev/rtwn/if_rtwnreg.h>
48 #include <dev/rtwn/if_rtwnvar.h>
49 #include <dev/rtwn/if_rtwn_debug.h>
50 
51 #include <dev/rtwn/rtl8192c/r92c.h>
52 #include <dev/rtwn/rtl8192c/r92c_reg.h>
53 
54 
55 /* Registers to save and restore during IQ calibration. */
56 struct r92c_iq_cal_reg_vals {
57 	uint32_t	adda[16];
58 	uint8_t		txpause;
59 	uint8_t		bcn_ctrl[2];
60 	uint32_t	gpio_muxcfg;
61 	uint32_t	cck0_afesetting;
62 	uint32_t	ofdm0_trxpathena;
63 	uint32_t	ofdm0_trmuxpar;
64 	uint32_t	fpga0_rfifacesw0;
65 	uint32_t	fpga0_rfifacesw1;
66 	uint32_t	fpga0_rfifaceoe0;
67 	uint32_t	fpga0_rfifaceoe1;
68 	uint32_t	config_ant0;
69 	uint32_t	config_ant1;
70 };
71 
72 /* XXX TODO: merge */
73 static int
74 r92c_iq_calib_chain(struct rtwn_softc *sc, int chain, uint16_t tx[2],
75     uint16_t rx[2])
76 {
77 	uint32_t status;
78 
79 	if (chain == 0) {	/* IQ calibration for chain 0. */
80 		/* IQ calibration settings for chain 0. */
81 		rtwn_bb_write(sc, R92C_TX_IQK_TONE(0), 0x10008c1f);
82 		rtwn_bb_write(sc, R92C_RX_IQK_TONE(0), 0x10008c1f);
83 		rtwn_bb_write(sc, R92C_TX_IQK_PI(0), 0x82140102);
84 
85 		if (sc->ntxchains > 1) {
86 			rtwn_bb_write(sc, R92C_RX_IQK_PI(0), 0x28160202);
87 			/* IQ calibration settings for chain 1. */
88 			rtwn_bb_write(sc, R92C_TX_IQK_TONE(1), 0x10008c22);
89 			rtwn_bb_write(sc, R92C_RX_IQK_TONE(1), 0x10008c22);
90 			rtwn_bb_write(sc, R92C_TX_IQK_PI(1), 0x82140102);
91 			rtwn_bb_write(sc, R92C_RX_IQK_PI(1), 0x28160202);
92 		} else
93 			rtwn_bb_write(sc, R92C_RX_IQK_PI(0), 0x28160502);
94 
95 		/* LO calibration settings. */
96 		rtwn_bb_write(sc, R92C_IQK_AGC_RSP, 0x001028d1);
97 		/* We're doing LO and IQ calibration in one shot. */
98 		rtwn_bb_write(sc, R92C_IQK_AGC_PTS, 0xf9000000);
99 		rtwn_bb_write(sc, R92C_IQK_AGC_PTS, 0xf8000000);
100 
101 	} else {		/* IQ calibration for chain 1. */
102 		/* We're doing LO and IQ calibration in one shot. */
103 		rtwn_bb_write(sc, R92C_IQK_AGC_CONT, 2);
104 		rtwn_bb_write(sc, R92C_IQK_AGC_CONT, 0);
105 	}
106 
107 	/* Give LO and IQ calibrations the time to complete. */
108 	rtwn_delay(sc, 10000);
109 
110 	/* Read IQ calibration status. */
111 	status = rtwn_bb_read(sc, R92C_RX_POWER_IQK_AFTER(0));
112 
113 	if (status & (1 << (28 + chain * 3)))
114 		return (0);	/* Tx failed. */
115 	/* Read Tx IQ calibration results. */
116 	tx[0] = MS(rtwn_bb_read(sc, R92C_TX_POWER_IQK_BEFORE(chain)),
117 	    R92C_POWER_IQK_RESULT);
118 	tx[1] = MS(rtwn_bb_read(sc, R92C_TX_POWER_IQK_AFTER(chain)),
119 	    R92C_POWER_IQK_RESULT);
120 	if (tx[0] == 0x142 || tx[1] == 0x042)
121 		return (0);	/* Tx failed. */
122 
123 	if (status & (1 << (27 + chain * 3)))
124 		return (1);	/* Rx failed. */
125 	/* Read Rx IQ calibration results. */
126 	rx[0] = MS(rtwn_bb_read(sc, R92C_RX_POWER_IQK_BEFORE(chain)),
127 	    R92C_POWER_IQK_RESULT);
128 	rx[1] = MS(rtwn_bb_read(sc, R92C_RX_POWER_IQK_AFTER(chain)),
129 	    R92C_POWER_IQK_RESULT);
130 	if (rx[0] == 0x132 || rx[1] == 0x036)
131 		return (1);	/* Rx failed. */
132 
133 	return (3);	/* Both Tx and Rx succeeded. */
134 }
135 
136 static void
137 r92c_iq_calib_run(struct rtwn_softc *sc, int n, uint16_t tx[2][2],
138     uint16_t rx[2][2], struct r92c_iq_cal_reg_vals *vals)
139 {
140 	/* Registers to save and restore during IQ calibration. */
141 	static const uint16_t reg_adda[16] = {
142 		0x85c, 0xe6c, 0xe70, 0xe74,
143 		0xe78, 0xe7c, 0xe80, 0xe84,
144 		0xe88, 0xe8c, 0xed0, 0xed4,
145 		0xed8, 0xedc, 0xee0, 0xeec
146 	};
147 	int i, chain;
148 	uint32_t hssi_param1;
149 
150 	if (n == 0) {
151 		for (i = 0; i < nitems(reg_adda); i++)
152 			vals->adda[i] = rtwn_bb_read(sc, reg_adda[i]);
153 
154 		vals->txpause = rtwn_read_1(sc, R92C_TXPAUSE);
155 		vals->bcn_ctrl[0] = rtwn_read_1(sc, R92C_BCN_CTRL(0));
156 		vals->bcn_ctrl[1] = rtwn_read_1(sc, R92C_BCN_CTRL(1));
157 		vals->gpio_muxcfg = rtwn_read_4(sc, R92C_GPIO_MUXCFG);
158 	}
159 
160 	if (sc->ntxchains == 1) {
161 		rtwn_bb_write(sc, reg_adda[0], 0x0b1b25a0);
162 		for (i = 1; i < nitems(reg_adda); i++)
163 			rtwn_bb_write(sc, reg_adda[i], 0x0bdb25a0);
164 	} else {
165 		for (i = 0; i < nitems(reg_adda); i++)
166 			rtwn_bb_write(sc, reg_adda[i], 0x04db25a4);
167 	}
168 
169 	hssi_param1 = rtwn_bb_read(sc, R92C_HSSI_PARAM1(0));
170 	if (!(hssi_param1 & R92C_HSSI_PARAM1_PI)) {
171 		rtwn_bb_write(sc, R92C_HSSI_PARAM1(0),
172 		    hssi_param1 | R92C_HSSI_PARAM1_PI);
173 		rtwn_bb_write(sc, R92C_HSSI_PARAM1(1),
174 		    hssi_param1 | R92C_HSSI_PARAM1_PI);
175 	}
176 
177 	if (n == 0) {
178 		vals->cck0_afesetting = rtwn_bb_read(sc, R92C_CCK0_AFESETTING);
179 		vals->ofdm0_trxpathena =
180 		    rtwn_bb_read(sc, R92C_OFDM0_TRXPATHENA);
181 		vals->ofdm0_trmuxpar = rtwn_bb_read(sc, R92C_OFDM0_TRMUXPAR);
182 		vals->fpga0_rfifacesw0 =
183 		    rtwn_bb_read(sc, R92C_FPGA0_RFIFACESW(0));
184 		vals->fpga0_rfifacesw1 =
185 		    rtwn_bb_read(sc, R92C_FPGA0_RFIFACESW(1));
186 		vals->fpga0_rfifaceoe0 =
187 		    rtwn_bb_read(sc, R92C_FPGA0_RFIFACEOE(0));
188 		vals->fpga0_rfifaceoe1 =
189 		    rtwn_bb_read(sc, R92C_FPGA0_RFIFACEOE(1));
190 		vals->config_ant0 = rtwn_bb_read(sc, R92C_CONFIG_ANT(0));
191 		vals->config_ant1 = rtwn_bb_read(sc, R92C_CONFIG_ANT(1));
192 	}
193 
194 	rtwn_bb_setbits(sc, R92C_CCK0_AFESETTING, 0, 0x0f000000);
195 	rtwn_bb_write(sc, R92C_OFDM0_TRXPATHENA, 0x03a05600);
196 	rtwn_bb_write(sc, R92C_OFDM0_TRMUXPAR, 0x000800e4);
197 	rtwn_bb_write(sc, R92C_FPGA0_RFIFACESW(1), 0x22204000);
198 	rtwn_bb_setbits(sc, R92C_FPGA0_RFIFACESW(0), 0, 0x04000400);
199 	rtwn_bb_setbits(sc, R92C_FPGA0_RFIFACEOE(0), 0x400, 0);
200 	rtwn_bb_setbits(sc, R92C_FPGA0_RFIFACEOE(1), 0x400, 0);
201 
202 	if (sc->ntxchains > 1) {
203 		rtwn_bb_write(sc, R92C_LSSI_PARAM(0), 0x00010000);
204 		rtwn_bb_write(sc, R92C_LSSI_PARAM(1), 0x00010000);
205 	}
206 
207 	rtwn_write_1(sc, R92C_TXPAUSE,
208 	    R92C_TX_QUEUE_AC | R92C_TX_QUEUE_MGT | R92C_TX_QUEUE_HIGH);
209 	rtwn_write_1(sc, R92C_BCN_CTRL(0),
210 	    vals->bcn_ctrl[0] & ~R92C_BCN_CTRL_EN_BCN);
211 	rtwn_write_1(sc, R92C_BCN_CTRL(1),
212 	    vals->bcn_ctrl[1] & ~R92C_BCN_CTRL_EN_BCN);
213 	rtwn_write_1(sc, R92C_GPIO_MUXCFG,
214 	    vals->gpio_muxcfg & ~R92C_GPIO_MUXCFG_ENBT);
215 
216 	rtwn_bb_write(sc, R92C_CONFIG_ANT(0), 0x00080000);
217 	if (sc->ntxchains > 1)
218 		rtwn_bb_write(sc, R92C_CONFIG_ANT(1), 0x00080000);
219 
220 	rtwn_bb_write(sc, R92C_FPGA0_IQK, 0x80800000);
221 	rtwn_bb_write(sc, R92C_TX_IQK, 0x01007c00);
222 	rtwn_bb_write(sc, R92C_RX_IQK, 0x01004800);
223 
224 	for (chain = 0; chain < sc->ntxchains; chain++) {
225 		if (chain > 0) {
226 			/* Put chain 0 on standby. */
227 			rtwn_bb_write(sc, R92C_FPGA0_IQK, 0);
228 			rtwn_bb_write(sc, R92C_LSSI_PARAM(0), 0x00010000);
229 			rtwn_bb_write(sc, R92C_FPGA0_IQK, 0x80800000);
230 
231 			/* Enable chain 1. */
232 			for (i = 0; i < nitems(reg_adda); i++)
233 				rtwn_bb_write(sc, reg_adda[i], 0x0b1b25a4);
234 		}
235 
236 		/* Run IQ calibration twice. */
237 		for (i = 0; i < 2; i++) {
238 			int ret;
239 
240 			ret = r92c_iq_calib_chain(sc, chain,
241 			    tx[chain], rx[chain]);
242 			if (ret == 0) {
243 				RTWN_DPRINTF(sc, RTWN_DEBUG_CALIB,
244 				    "%s: chain %d: Tx failed.\n",
245 				    __func__, chain);
246 				tx[chain][0] = 0xff;
247 				tx[chain][1] = 0xff;
248 				rx[chain][0] = 0xff;
249 				rx[chain][1] = 0xff;
250 			} else if (ret == 1) {
251 				RTWN_DPRINTF(sc, RTWN_DEBUG_CALIB,
252 				    "%s: chain %d: Rx failed.\n",
253 				    __func__, chain);
254 				rx[chain][0] = 0xff;
255 				rx[chain][1] = 0xff;
256 			} else if (ret == 3) {
257 				RTWN_DPRINTF(sc, RTWN_DEBUG_CALIB,
258 				    "%s: chain %d: Both Tx and Rx "
259 				    "succeeded.\n", __func__, chain);
260 			}
261 		}
262 
263 		RTWN_DPRINTF(sc, RTWN_DEBUG_CALIB,
264 		    "%s: results for run %d chain %d: tx[0] 0x%x, "
265 		    "tx[1] 0x%x, rx[0] 0x%x, rx[1] 0x%x\n", __func__, n, chain,
266 		    tx[chain][0], tx[chain][1], rx[chain][0], rx[chain][1]);
267 	}
268 
269 	rtwn_bb_write(sc, R92C_CCK0_AFESETTING, vals->cck0_afesetting);
270 	rtwn_bb_write(sc, R92C_OFDM0_TRXPATHENA, vals->ofdm0_trxpathena);
271 	rtwn_bb_write(sc, R92C_FPGA0_RFIFACESW(0), vals->fpga0_rfifacesw0);
272 	rtwn_bb_write(sc, R92C_FPGA0_RFIFACESW(1), vals->fpga0_rfifacesw1);
273 	rtwn_bb_write(sc, R92C_OFDM0_TRMUXPAR, vals->ofdm0_trmuxpar);
274 	rtwn_bb_write(sc, R92C_FPGA0_RFIFACEOE(0), vals->fpga0_rfifaceoe0);
275 	rtwn_bb_write(sc, R92C_FPGA0_RFIFACEOE(1), vals->fpga0_rfifaceoe1);
276 	rtwn_bb_write(sc, R92C_CONFIG_ANT(0), vals->config_ant0);
277 	rtwn_bb_write(sc, R92C_CONFIG_ANT(1), vals->config_ant1);
278 
279 	rtwn_bb_write(sc, R92C_FPGA0_IQK, 0);
280 	rtwn_bb_write(sc, R92C_LSSI_PARAM(0), 0x00032ed3);
281 	if (sc->ntxchains > 1)
282 		rtwn_bb_write(sc, R92C_LSSI_PARAM(1), 0x00032ed3);
283 
284 	if (n != 0) {
285 		if (!(hssi_param1 & R92C_HSSI_PARAM1_PI)) {
286 			rtwn_bb_write(sc, R92C_HSSI_PARAM1(0), hssi_param1);
287 			rtwn_bb_write(sc, R92C_HSSI_PARAM1(1), hssi_param1);
288 		}
289 
290 		for (i = 0; i < nitems(reg_adda); i++)
291 			rtwn_bb_write(sc, reg_adda[i], vals->adda[i]);
292 
293 		rtwn_write_1(sc, R92C_TXPAUSE, vals->txpause);
294 		rtwn_write_1(sc, R92C_BCN_CTRL(0), vals->bcn_ctrl[0]);
295 		rtwn_write_1(sc, R92C_BCN_CTRL(1), vals->bcn_ctrl[1]);
296 		rtwn_write_4(sc, R92C_GPIO_MUXCFG, vals->gpio_muxcfg);
297 
298 		rtwn_bb_write(sc, R92C_TX_IQK_TONE(0), 0x01008c00);
299 		rtwn_bb_write(sc, R92C_RX_IQK_TONE(0), 0x01008c00);
300 	}
301 }
302 
303 #define RTWN_IQ_CAL_MAX_TOLERANCE 5
304 static int
305 r92c_iq_calib_compare_results(struct rtwn_softc *sc, uint16_t tx1[2][2],
306     uint16_t rx1[2][2], uint16_t tx2[2][2], uint16_t rx2[2][2])
307 {
308 	int chain, i, tx_ok[2], rx_ok[2];
309 
310 	tx_ok[0] = tx_ok[1] = rx_ok[0] = rx_ok[1] = 0;
311 	for (chain = 0; chain < sc->ntxchains; chain++) {
312 		for (i = 0; i < 2; i++)	{
313 			if (tx1[chain][i] == 0xff || tx2[chain][i] == 0xff ||
314 			    rx1[chain][i] == 0xff || rx2[chain][i] == 0xff)
315 				continue;
316 
317 			tx_ok[chain] = (abs(tx1[chain][i] - tx2[chain][i]) <=
318 			    RTWN_IQ_CAL_MAX_TOLERANCE);
319 
320 			rx_ok[chain] = (abs(rx1[chain][i] - rx2[chain][i]) <=
321 			    RTWN_IQ_CAL_MAX_TOLERANCE);
322 		}
323 	}
324 
325 	if (sc->ntxchains > 1)
326 		return (tx_ok[0] && tx_ok[1] && rx_ok[0] && rx_ok[1]);
327 	else
328 		return (tx_ok[0] && rx_ok[0]);
329 }
330 #undef RTWN_IQ_CAL_MAX_TOLERANCE
331 
332 static void
333 r92c_iq_calib_write_results(struct rtwn_softc *sc, uint16_t tx[2],
334     uint16_t rx[2], int chain)
335 {
336 	uint32_t reg, val, x;
337 	long y, tx_c;
338 
339 	if (tx[0] == 0xff || tx[1] == 0xff)
340 		return;
341 
342 	reg = rtwn_bb_read(sc, R92C_OFDM0_TXIQIMBALANCE(chain));
343 	val = ((reg >> 22) & 0x3ff);
344 	x = tx[0];
345 	if (x & 0x00000200)
346 		x |= 0xfffffc00;
347 	reg = (((x * val) >> 8) & 0x3ff);
348 	rtwn_bb_setbits(sc, R92C_OFDM0_TXIQIMBALANCE(chain), 0x3ff, reg);
349 	rtwn_bb_setbits(sc, R92C_OFDM0_ECCATHRESHOLD, 0x80000000,
350 	    ((x * val) & 0x80) << 24);
351 
352 	y = tx[1];
353 	if (y & 0x00000200)
354 		y |= 0xfffffc00;
355 	tx_c = (y * val) >> 8;
356 	rtwn_bb_setbits(sc, R92C_OFDM0_TXAFE(chain), 0xf0000000,
357 	    (tx_c & 0x3c0) << 22);
358 	rtwn_bb_setbits(sc, R92C_OFDM0_TXIQIMBALANCE(chain), 0x003f0000,
359 	    (tx_c & 0x3f) << 16);
360 	rtwn_bb_setbits(sc, R92C_OFDM0_ECCATHRESHOLD, 0x20000000,
361 	    ((y * val) & 0x80) << 22);
362 
363 	if (rx[0] == 0xff || rx[1] == 0xff)
364 		return;
365 
366 	rtwn_bb_setbits(sc, R92C_OFDM0_RXIQIMBALANCE(chain), 0x3ff,
367 	    rx[0] & 0x3ff);
368 	rtwn_bb_setbits(sc, R92C_OFDM0_RXIQIMBALANCE(chain), 0xfc00,
369 	    (rx[1] & 0x3f) << 10);
370 
371 	if (chain == 0) {
372 		rtwn_bb_setbits(sc, R92C_OFDM0_RXIQEXTANTA, 0xf0000000,
373 		    (rx[1] & 0x3c0) << 22);
374 	} else {
375 		rtwn_bb_setbits(sc, R92C_OFDM0_AGCRSSITABLE, 0xf000,
376 		    (rx[1] & 0x3c0) << 6);
377 	}
378 }
379 
380 #define RTWN_IQ_CAL_NRUN	3
381 void
382 r92c_iq_calib(struct rtwn_softc *sc)
383 {
384 	struct r92c_iq_cal_reg_vals vals;
385 	uint16_t tx[RTWN_IQ_CAL_NRUN][2][2], rx[RTWN_IQ_CAL_NRUN][2][2];
386 	int n, valid;
387 
388 	valid = 0;
389 	for (n = 0; n < RTWN_IQ_CAL_NRUN; n++) {
390 		r92c_iq_calib_run(sc, n, tx[n], rx[n], &vals);
391 
392 		if (n == 0)
393 			continue;
394 
395 		/* Valid results remain stable after consecutive runs. */
396 		valid = r92c_iq_calib_compare_results(sc, tx[n - 1],
397 		    rx[n - 1], tx[n], rx[n]);
398 		if (valid)
399 			break;
400 	}
401 
402 	if (valid) {
403 		r92c_iq_calib_write_results(sc, tx[n][0], rx[n][0], 0);
404 		if (sc->ntxchains > 1)
405 			r92c_iq_calib_write_results(sc, tx[n][1], rx[n][1], 1);
406 	}
407 }
408 #undef RTWN_IQ_CAL_NRUN
409 
410 void
411 r92c_lc_calib(struct rtwn_softc *sc)
412 {
413 	uint32_t rf_ac[2];
414 	uint8_t txmode;
415 	int i;
416 
417 	txmode = rtwn_read_1(sc, R92C_OFDM1_LSTF + 3);
418 	if ((txmode & 0x70) != 0) {
419 		/* Disable all continuous Tx. */
420 		rtwn_write_1(sc, R92C_OFDM1_LSTF + 3, txmode & ~0x70);
421 
422 		/* Set RF mode to standby mode. */
423 		for (i = 0; i < sc->nrxchains; i++) {
424 			rf_ac[i] = rtwn_rf_read(sc, i, R92C_RF_AC);
425 			rtwn_rf_write(sc, i, R92C_RF_AC,
426 			    RW(rf_ac[i], R92C_RF_AC_MODE,
427 				R92C_RF_AC_MODE_STANDBY));
428 		}
429 	} else {
430 		/* Block all Tx queues. */
431 		rtwn_write_1(sc, R92C_TXPAUSE, R92C_TX_QUEUE_ALL);
432 	}
433 	/* Start calibration. */
434 	rtwn_rf_setbits(sc, 0, R92C_RF_CHNLBW, 0, R92C_RF_CHNLBW_LCSTART);
435 
436 	/* Give calibration the time to complete. */
437 	rtwn_delay(sc, 100000);	/* 100ms */
438 
439 	/* Restore configuration. */
440 	if ((txmode & 0x70) != 0) {
441 		/* Restore Tx mode. */
442 		rtwn_write_1(sc, R92C_OFDM1_LSTF + 3, txmode);
443 		/* Restore RF mode. */
444 		for (i = 0; i < sc->nrxchains; i++)
445 			rtwn_rf_write(sc, i, R92C_RF_AC, rf_ac[i]);
446 	} else {
447 		/* Unblock all Tx queues. */
448 		rtwn_write_1(sc, R92C_TXPAUSE, 0x00);
449 	}
450 }
451 
452 void
453 r92c_temp_measure(struct rtwn_softc *sc)
454 {
455 	rtwn_rf_write(sc, 0, R92C_RF_T_METER, R92C_RF_T_METER_START);
456 }
457 
458 uint8_t
459 r92c_temp_read(struct rtwn_softc *sc)
460 {
461 	return (MS(rtwn_rf_read(sc, 0, R92C_RF_T_METER),
462 	    R92C_RF_T_METER_VAL));
463 }
464