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rk_tsadc.c revision 1.3
      1  1.3  mrg /*	$NetBSD: rk_tsadc.c,v 1.3 2019/04/26 10:27:49 mrg Exp $	*/
      2  1.1  mrg 
      3  1.1  mrg /*
      4  1.1  mrg  * Copyright (c) 2019 Matthew R. Green
      5  1.1  mrg  * All rights reserved.
      6  1.1  mrg  *
      7  1.1  mrg  * Redistribution and use in source and binary forms, with or without
      8  1.1  mrg  * modification, are permitted provided that the following conditions
      9  1.1  mrg  * are met:
     10  1.1  mrg  * 1. Redistributions of source code must retain the above copyright
     11  1.1  mrg  *    notice, this list of conditions and the following disclaimer.
     12  1.1  mrg  * 2. Redistributions in binary form must reproduce the above copyright
     13  1.1  mrg  *    notice, this list of conditions and the following disclaimer in the
     14  1.1  mrg  *    documentation and/or other materials provided with the distribution.
     15  1.1  mrg  * 3. The name of the author may not be used to endorse or promote products
     16  1.1  mrg  *    derived from this software without specific prior written permission.
     17  1.1  mrg  *
     18  1.1  mrg  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     19  1.1  mrg  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     20  1.1  mrg  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     21  1.1  mrg  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     22  1.1  mrg  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
     23  1.1  mrg  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
     24  1.1  mrg  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
     25  1.1  mrg  * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
     26  1.1  mrg  * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     27  1.1  mrg  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     28  1.1  mrg  * SUCH DAMAGE.
     29  1.1  mrg  */
     30  1.1  mrg 
     31  1.1  mrg #include <sys/cdefs.h>
     32  1.1  mrg 
     33  1.3  mrg __KERNEL_RCSID(0, "$NetBSD: rk_tsadc.c,v 1.3 2019/04/26 10:27:49 mrg Exp $");
     34  1.1  mrg 
     35  1.1  mrg /*
     36  1.1  mrg  * Driver for the TSADC temperature sensor monitor in RK3328 and RK3399.
     37  1.1  mrg  *
     38  1.1  mrg  * TODO:
     39  1.1  mrg  * - handle setting various temp values
     40  1.1  mrg  * - handle DT trips/temp value defaults
     41  1.1  mrg  * - interrupts aren't triggered (test by lowering warn/crit values), and
     42  1.1  mrg  *   once they work, make the interrupt do something
     43  1.1  mrg  * - test on RK3328, and port to other rockchips (will require moving some
     44  1.1  mrg  *   part into per-chipset sections, such as code<->temp tables)
     45  1.1  mrg  */
     46  1.1  mrg 
     47  1.1  mrg #include <sys/param.h>
     48  1.1  mrg #include <sys/bus.h>
     49  1.1  mrg #include <sys/device.h>
     50  1.1  mrg #include <sys/intr.h>
     51  1.1  mrg #include <sys/systm.h>
     52  1.1  mrg #include <sys/time.h>
     53  1.1  mrg #include <sys/kmem.h>
     54  1.1  mrg 
     55  1.1  mrg #include <dev/fdt/fdtvar.h>
     56  1.1  mrg #include <dev/fdt/syscon.h>
     57  1.1  mrg 
     58  1.1  mrg #include <dev/sysmon/sysmonvar.h>
     59  1.1  mrg 
     60  1.1  mrg //#define RKTSADC_DEBUG
     61  1.1  mrg #ifdef RKTSADC_DEBUG
     62  1.1  mrg #define DPRINTF(fmt, ...) \
     63  1.1  mrg 	printf("%s:%d: " fmt "\n", __func__, __LINE__, ## __VA_ARGS__)
     64  1.1  mrg #else
     65  1.1  mrg #define DPRINTF(fmt, ...)
     66  1.1  mrg #endif
     67  1.1  mrg 
     68  1.1  mrg /* Register definitions */
     69  1.1  mrg #define TSADC_USER_CON                          0x00
     70  1.1  mrg #define  TSADC_USER_CON_ADC_STATUS              __BIT(12)
     71  1.1  mrg #define  TSADC_USER_CON_INTER_PD_SOC            __BITS(11,6)
     72  1.1  mrg #define  TSADC_USER_CON_START                   __BIT(5)
     73  1.1  mrg #define  TSADC_USER_CON_START_MODE              __BIT(4)
     74  1.1  mrg #define  TSADC_USER_CON_ADC_POWER_CTRL          __BIT(3)
     75  1.1  mrg #define  TSADC_USER_CON_ADC_INPUT_SRC_SEL       __BITS(2,0)
     76  1.1  mrg #define TSADC_AUTO_CON                          0x04
     77  1.1  mrg #define  TSADC_AUTO_CON_LAST_TSHUT_2CRU         __BIT(25)
     78  1.1  mrg #define  TSADC_AUTO_CON_LAST_TSHUT_2GPIO        __BIT(24)
     79  1.1  mrg #define  TSADC_AUTO_CON_SAMPLE_DLY_SEL          __BIT(17)
     80  1.1  mrg #define  TSADC_AUTO_CON_AUTO_STATUS             __BIT(16)
     81  1.1  mrg #define  TSADC_AUTO_CON_SRC1_LT_EN              __BIT(13)
     82  1.1  mrg #define  TSADC_AUTO_CON_SRC0_LT_EN              __BIT(12)
     83  1.1  mrg #define  TSADC_AUTO_CON_TSHUT_POLARITY          __BIT(8)
     84  1.1  mrg #define  TSADC_AUTO_CON_SRC1_EN                 __BIT(5)
     85  1.1  mrg #define  TSADC_AUTO_CON_SRC0_EN                 __BIT(4)
     86  1.1  mrg #define  TSADC_AUTO_CON_Q_SEL                   __BIT(1)
     87  1.1  mrg #define  TSADC_AUTO_CON_AUTO_EN                 __BIT(0)
     88  1.1  mrg #define TSADC_INT_EN                            0x08
     89  1.1  mrg #define  TSADC_INT_EN_EOC_INT_EN                __BIT(16)
     90  1.1  mrg #define  TSADC_INT_EN_LT_INTEN_SRC1             __BIT(13)
     91  1.1  mrg #define  TSADC_INT_EN_LT_INTEN_SRC0             __BIT(12)
     92  1.1  mrg #define  TSADC_INT_EN_TSHUT_2CRU_EN_SRC1        __BIT(9)
     93  1.1  mrg #define  TSADC_INT_EN_TSHUT_2CRU_EN_SRC0        __BIT(8)
     94  1.1  mrg #define  TSADC_INT_EN_TSHUT_2GPIO_EN_SRC1       __BIT(5)
     95  1.1  mrg #define  TSADC_INT_EN_TSHUT_2GPIO_EN_SRC0       __BIT(4)
     96  1.1  mrg #define  TSADC_INT_EN_HT_INTEN_SRC1             __BIT(1)
     97  1.1  mrg #define  TSADC_INT_EN_HT_INTEN_SRC0             __BIT(0)
     98  1.1  mrg #define TSADC_INT_PD                            0x0c
     99  1.1  mrg #define  TSADC_INT_PD_EOC_INT_PD                __BIT(16)
    100  1.1  mrg #define  TSADC_INT_PD_LT_IRQ_SRC1               __BIT(13)
    101  1.1  mrg #define  TSADC_INT_PD_LT_IRQ_SRC0               __BIT(12)
    102  1.1  mrg #define  TSADC_INT_PD_TSHUT_O_SRC1              __BIT(5)
    103  1.1  mrg #define  TSADC_INT_PD_TSHUT_O_SRC0              __BIT(4)
    104  1.1  mrg #define  TSADC_INT_PD_HT_IRQ_SRC1               __BIT(1)
    105  1.1  mrg #define  TSADC_INT_PD_HT_IRQ_SRC0               __BIT(0)
    106  1.1  mrg #define TSADC_DATA0                             0x20
    107  1.1  mrg #define  TSADC_DATA0_ADC_DATA                   __BITS(11,0)
    108  1.1  mrg #define TSADC_DATA1                             0x24
    109  1.1  mrg #define  TSADC_DATA1_ADC_DATA                   __BITS(11,0)
    110  1.1  mrg #define TSADC_COMP0_INT                         0x30
    111  1.1  mrg #define  TSADC_COMP0_INT_COMP_SRC0              __BITS(11,0)
    112  1.1  mrg #define TSADC_COMP1_INT                         0x34
    113  1.1  mrg #define  TSADC_COMP1_INT_COMP_SRC1              __BITS(11,0)
    114  1.1  mrg #define TSADC_COMP0_SHUT                        0x40
    115  1.1  mrg #define  TSADC_COMP0_SHUT_COMP_SRC0             __BITS(11,0)
    116  1.1  mrg #define TSADC_COMP1_SHUT                        0x44
    117  1.1  mrg #define  TSADC_COMP1_SHUT_COMP_SRC1             __BITS(11,0)
    118  1.1  mrg #define TSADC_HIGH_INT_DEBOUNCE                 0x60
    119  1.1  mrg #define  TSADC_HIGH_INT_DEBOUNCE_TEMP           __BITS(7,0)
    120  1.1  mrg #define TSADC_HIGH_TSHUT_DEBOUNCE               0x64
    121  1.1  mrg #define  TSADC_HIGH_TSHUT_DEBOUNCE_TEMP         __BITS(7,0)
    122  1.1  mrg #define TSADC_AUTO_PERIOD                       0x68
    123  1.1  mrg #define  TSADC_AUTO_PERIOD_TEMP                 __BITS(31,0)
    124  1.1  mrg #define TSADC_AUTO_PERIOD_HT                    0x6c
    125  1.1  mrg #define  TSADC_AUTO_PERIOD_HT_TEMP              __BITS(31,0)
    126  1.1  mrg #define TSADC_COMP0_LOW_INT                     0x80
    127  1.1  mrg #define  TSADC_COMP0_LOW_INT_COMP_SRC0          __BITS(11,0)
    128  1.1  mrg #define TSADC_COMP1_LOW_INT                     0x84
    129  1.1  mrg #define  TSADC_COMP1_LOW_INT_COMP_SRC1          __BITS(11,0)
    130  1.1  mrg 
    131  1.1  mrg #define TSADC_AUTO_PERIOD_TIME                  1875 /* 2.5ms */
    132  1.1  mrg #define TSADC_HT_DEBOUNCE_COUNT                 4
    133  1.1  mrg 
    134  1.1  mrg /*
    135  1.1  mrg  * All this magic is taking from the Linux rockchip_thermal driver.
    136  1.1  mrg  *
    137  1.1  mrg  * VCM means "voltage common mode", but the documentation for RK3399
    138  1.1  mrg  * does not mention this and I don't know what any of this really
    139  1.1  mrg  * is for.
    140  1.1  mrg  */
    141  1.1  mrg #define RK3399_GRF_SARADC_TESTBIT               0xe644
    142  1.1  mrg #define  RK3399_GRF_SARADC_TESTBIT_ON           (0x10001 << 2)
    143  1.1  mrg #define RK3399_GRF_TSADC_TESTBIT_L              0xe648
    144  1.1  mrg #define  RK3399_GRF_TSADC_TESTBIT_VCM_EN_L      (0x10001 << 7)
    145  1.1  mrg #define RK3399_GRF_TSADC_TESTBIT_H              0xe64c
    146  1.1  mrg #define  RK3399_GRF_TSADC_TESTBIT_VCM_EN_H      (0x10001 << 7)
    147  1.1  mrg #define  RK3399_GRF_TSADC_TESTBIT_H_ON          (0x10001 << 2)
    148  1.1  mrg 
    149  1.1  mrg #define TEMP_uC_TO_uK             273150000
    150  1.1  mrg 
    151  1.1  mrg #define TSHUT_MODE_CPU    0
    152  1.1  mrg #define TSHUT_MODE_GPIO   1
    153  1.1  mrg 
    154  1.1  mrg #define TSHUT_LOW_ACTIVE  0
    155  1.1  mrg #define TSHUT_HIGH_ACTIVE 1
    156  1.1  mrg 
    157  1.1  mrg #define TSHUT_DEF_TEMP    95000
    158  1.1  mrg 
    159  1.1  mrg #define TSADC_DATA_MAX    0xfff
    160  1.1  mrg 
    161  1.1  mrg #define NUM_SENSORS       2
    162  1.1  mrg 
    163  1.1  mrg /* Table from RK3399 manual */
    164  1.1  mrg static const struct {
    165  1.1  mrg 	uint32_t data;  /* register value */
    166  1.1  mrg 	int temp;       /* micro-degC */
    167  1.1  mrg } rk3399_data_table[] = {
    168  1.1  mrg #define ENTRY(d,C)	{ .data = (d), .temp = (C) * 1000 * 1000, }
    169  1.1  mrg 	ENTRY(0,   -40),
    170  1.1  mrg 	ENTRY(402, -40),
    171  1.1  mrg 	ENTRY(410, -35),
    172  1.1  mrg 	ENTRY(419, -30),
    173  1.1  mrg 	ENTRY(427, -25),
    174  1.1  mrg 	ENTRY(436, -20),
    175  1.1  mrg 	ENTRY(444, -15),
    176  1.1  mrg 	ENTRY(453, -10),
    177  1.1  mrg 	ENTRY(461,  -5),
    178  1.1  mrg 	ENTRY(470,   0),
    179  1.1  mrg 	ENTRY(478,   5),
    180  1.1  mrg 	ENTRY(487,  10),
    181  1.1  mrg 	ENTRY(496,  15),
    182  1.1  mrg 	ENTRY(504,  20),
    183  1.1  mrg 	ENTRY(513,  25),
    184  1.1  mrg 	ENTRY(521,  30),
    185  1.1  mrg 	ENTRY(530,  35),
    186  1.1  mrg 	ENTRY(538,  40),
    187  1.1  mrg 	ENTRY(547,  45),
    188  1.1  mrg 	ENTRY(555,  50),
    189  1.1  mrg 	ENTRY(564,  55),
    190  1.1  mrg 	ENTRY(573,  60),
    191  1.1  mrg 	ENTRY(581,  65),
    192  1.1  mrg 	ENTRY(590,  70),
    193  1.1  mrg 	ENTRY(599,  75),
    194  1.1  mrg 	ENTRY(607,  80),
    195  1.1  mrg 	ENTRY(616,  85),
    196  1.1  mrg 	ENTRY(624,  90),
    197  1.1  mrg 	ENTRY(633,  95),
    198  1.1  mrg 	ENTRY(642, 100),
    199  1.1  mrg 	ENTRY(650, 105),
    200  1.1  mrg 	ENTRY(659, 110),
    201  1.1  mrg 	ENTRY(668, 115),
    202  1.1  mrg 	ENTRY(677, 120),
    203  1.1  mrg 	ENTRY(685, 125),
    204  1.2  mrg 	ENTRY(TSADC_DATA_MAX, 125),
    205  1.1  mrg #undef ENTRY
    206  1.1  mrg };
    207  1.1  mrg 
    208  1.1  mrg /* Per-sensor data */
    209  1.1  mrg struct rk_tsadc_sensor {
    210  1.1  mrg 	envsys_data_t	s_data;
    211  1.1  mrg 	bool		s_attached;
    212  1.1  mrg 	/* TSADC register offsets for this sensor */
    213  1.1  mrg 	unsigned	s_data_reg;
    214  1.1  mrg 	unsigned	s_comp_tshut;
    215  1.1  mrg 	unsigned	s_comp_int;
    216  1.2  mrg 	/* enable bit in AUTO_CON register */
    217  1.1  mrg 	unsigned	s_comp_int_en;
    218  1.1  mrg 	/* warn/crit values in micro Kelvin */
    219  1.1  mrg 	int		s_warn;
    220  1.1  mrg 	int		s_tshut;
    221  1.1  mrg };
    222  1.1  mrg 
    223  1.1  mrg struct rk_tsadc_softc {
    224  1.1  mrg 	device_t		sc_dev;
    225  1.1  mrg 	int			sc_phandle;
    226  1.1  mrg 	bus_space_tag_t		sc_bst;
    227  1.1  mrg 	bus_space_handle_t	sc_bsh;
    228  1.1  mrg 	size_t			sc_size;
    229  1.1  mrg 	uint32_t		sc_data_mask;
    230  1.1  mrg 	void			*sc_ih;
    231  1.1  mrg 
    232  1.1  mrg 	struct sysmon_envsys	*sc_sme;
    233  1.1  mrg 	struct rk_tsadc_sensor	sc_sensors[NUM_SENSORS];
    234  1.1  mrg 
    235  1.1  mrg 	struct clk		*sc_clock;
    236  1.1  mrg 	struct clk		*sc_clockapb;
    237  1.1  mrg 	struct fdtbus_reset	*sc_reset;
    238  1.1  mrg 	struct syscon		*sc_syscon;
    239  1.1  mrg };
    240  1.1  mrg 
    241  1.1  mrg static int rk_tsadc_match(device_t, cfdata_t, void *);
    242  1.1  mrg static void rk_tsadc_attach(device_t, device_t, void *);
    243  1.1  mrg static int rk_tsadc_detach(device_t, int);
    244  1.1  mrg static int rk_tsadc_init_clocks(struct rk_tsadc_softc *);
    245  1.1  mrg static void rk_tsadc_init_counts(struct rk_tsadc_softc *);
    246  1.1  mrg static void rk_tsadc_tshut_set(struct rk_tsadc_softc *s);
    247  1.1  mrg static void rk_tsadc_init_tshut(struct rk_tsadc_softc *, int, int);
    248  1.1  mrg static void rk_tsadc_init_grf(struct rk_tsadc_softc *);
    249  1.1  mrg static void rk_tsadc_init_enable(struct rk_tsadc_softc *);
    250  1.1  mrg static void rk_tsadc_refresh(struct sysmon_envsys *, envsys_data_t *);
    251  1.1  mrg static void rk_tsadc_get_limits(struct sysmon_envsys *, envsys_data_t *,
    252  1.1  mrg                                 sysmon_envsys_lim_t *, uint32_t *);
    253  1.1  mrg 
    254  1.1  mrg static int rk_tsadc_intr(void *);
    255  1.1  mrg static int rk_tsadc_data_to_temp(struct rk_tsadc_softc *, uint32_t);
    256  1.1  mrg static uint32_t rk_tsadc_temp_to_data(struct rk_tsadc_softc *, int);
    257  1.1  mrg 
    258  1.1  mrg /* RK3328/RK3399 compatible sensors */
    259  1.1  mrg static const struct rk_tsadc_sensor rk_tsadc_sensors[] = {
    260  1.1  mrg 	{
    261  1.1  mrg 	  .s_data = { .desc = "CPU" },
    262  1.1  mrg 	  .s_data_reg = TSADC_DATA0,
    263  1.1  mrg 	  .s_comp_tshut = TSADC_COMP0_SHUT,
    264  1.1  mrg 	  .s_comp_int = TSADC_COMP0_INT,
    265  1.1  mrg 	  .s_comp_int_en = TSADC_AUTO_CON_SRC0_EN,
    266  1.1  mrg 	  /*
    267  1.1  mrg 	   * XXX DT has:
    268  1.1  mrg 	   * cpu_alert1: cpu_alert1 {
    269  1.1  mrg 	   *	temperature = <75000>;
    270  1.1  mrg 	   *	hysteresis = <2000>;
    271  1.1  mrg 	   * cpu_crit: cpu_crit {
    272  1.1  mrg 	   *    temperature = <95000>;
    273  1.1  mrg 	   *    hysteresis = <2000>;
    274  1.1  mrg 	   * pull out of here?
    275  1.1  mrg 	   * do something with hysteresis?  put in debounce?
    276  1.1  mrg 	   *
    277  1.1  mrg 	   * Note that tshut may be overriden by the board specific DT.
    278  1.1  mrg 	   */
    279  1.1  mrg 	  .s_warn = 75000000,
    280  1.1  mrg 	  .s_tshut = 95000000,
    281  1.1  mrg 	}, {
    282  1.1  mrg 	  .s_data = { .desc = "GPU" },
    283  1.1  mrg 	  .s_data_reg = TSADC_DATA1,
    284  1.1  mrg 	  .s_comp_tshut = TSADC_COMP1_SHUT,
    285  1.1  mrg 	  .s_comp_int = TSADC_COMP1_INT,
    286  1.1  mrg 	  .s_comp_int_en = TSADC_AUTO_CON_SRC1_EN,
    287  1.1  mrg 	  .s_warn = 75000000,
    288  1.1  mrg 	  .s_tshut = 95000000,
    289  1.1  mrg 	},
    290  1.1  mrg };
    291  1.1  mrg 
    292  1.1  mrg static const char * const compatible[] = {
    293  1.1  mrg 	"rockchip,rk3328-tsadc",
    294  1.1  mrg 	"rockchip,rk3399-tsadc",
    295  1.1  mrg 	NULL
    296  1.1  mrg };
    297  1.1  mrg 
    298  1.1  mrg #define	TSADC_READ(sc, reg)		\
    299  1.1  mrg 	bus_space_read_4((sc)->sc_bst, (sc)->sc_bsh, (reg))
    300  1.1  mrg #define	TSADC_WRITE(sc, reg, val)	\
    301  1.1  mrg 	bus_space_write_4((sc)->sc_bst, (sc)->sc_bsh, (reg), (val))
    302  1.1  mrg 
    303  1.1  mrg CFATTACH_DECL3_NEW(rk_tsadc, sizeof(struct rk_tsadc_softc),
    304  1.1  mrg 	rk_tsadc_match, rk_tsadc_attach, rk_tsadc_detach, NULL, NULL, NULL,
    305  1.1  mrg 	DVF_DETACH_SHUTDOWN);
    306  1.1  mrg 
    307  1.1  mrg /* init/teardown support */
    308  1.1  mrg static int
    309  1.1  mrg rk_tsadc_match(device_t parent, cfdata_t cf, void *aux)
    310  1.1  mrg {
    311  1.1  mrg 	struct fdt_attach_args * const faa = aux;
    312  1.1  mrg 
    313  1.1  mrg 	return of_match_compatible(faa->faa_phandle, compatible);
    314  1.1  mrg }
    315  1.1  mrg 
    316  1.1  mrg static void
    317  1.1  mrg rk_tsadc_attach(device_t parent, device_t self, void *aux)
    318  1.1  mrg {
    319  1.1  mrg 	struct rk_tsadc_softc * const sc = device_private(self);
    320  1.1  mrg 	struct fdt_attach_args * const faa = aux;
    321  1.1  mrg 	char intrstr[128];
    322  1.1  mrg 	const int phandle = faa->faa_phandle;
    323  1.1  mrg 	bus_addr_t addr;
    324  1.1  mrg 	int mode, polarity, tshut_temp;
    325  1.1  mrg 
    326  1.1  mrg 	sc->sc_dev = self;
    327  1.1  mrg 	sc->sc_phandle = phandle;
    328  1.1  mrg 	sc->sc_bst = faa->faa_bst;
    329  1.1  mrg 
    330  1.1  mrg 	aprint_naive("\n");
    331  1.1  mrg 	aprint_normal(": RK3328/3399 Temperature Sensor ADC\n");
    332  1.1  mrg 
    333  1.1  mrg 	sc->sc_sme = sysmon_envsys_create();
    334  1.1  mrg 
    335  1.1  mrg 	sc->sc_sme->sme_name = device_xname(self);
    336  1.1  mrg 	sc->sc_sme->sme_cookie = sc;
    337  1.1  mrg 	sc->sc_sme->sme_refresh = rk_tsadc_refresh;
    338  1.1  mrg 	sc->sc_sme->sme_get_limits = rk_tsadc_get_limits;
    339  1.2  mrg 	sc->sc_data_mask = TSADC_DATA_MAX;
    340  1.1  mrg 
    341  1.1  mrg 	pmf_device_register(self, NULL, NULL);
    342  1.1  mrg 
    343  1.1  mrg 	/* Default to tshut via gpio and tshut low is active */
    344  1.1  mrg 	if (of_getprop_uint32(phandle, "rockchip,hw-tshut-mode",
    345  1.1  mrg 			      &mode) != 0) {
    346  1.1  mrg 		aprint_error(": could not get TSHUT mode, default to GPIO");
    347  1.1  mrg 		mode = TSHUT_MODE_GPIO;
    348  1.1  mrg 	}
    349  1.1  mrg 	if (mode != TSHUT_MODE_CPU && mode != TSHUT_MODE_GPIO) {
    350  1.1  mrg 		aprint_error(": TSHUT mode should be 0 or 1\n");
    351  1.1  mrg 		goto fail;
    352  1.1  mrg 	}
    353  1.1  mrg 
    354  1.1  mrg 	if (of_getprop_uint32(phandle, "rockchip,hw-tshut-polarity",
    355  1.1  mrg 			      &polarity) != 0) {
    356  1.1  mrg 		aprint_error(": could not get TSHUT polarity, default to low");
    357  1.1  mrg 		polarity = TSHUT_LOW_ACTIVE;
    358  1.1  mrg 	}
    359  1.1  mrg 	if (of_getprop_uint32(phandle,
    360  1.1  mrg 			      "rockchip,hw-tshut-temp", &tshut_temp) != 0) {
    361  1.1  mrg 		aprint_error(": could not get TSHUT temperature, default to %u",
    362  1.1  mrg 			     TSHUT_DEF_TEMP);
    363  1.1  mrg 		tshut_temp = TSHUT_DEF_TEMP;
    364  1.1  mrg 	}
    365  1.1  mrg 	tshut_temp *= 1000;	/* convert fdt ms -> us */
    366  1.1  mrg 
    367  1.1  mrg 	memcpy(sc->sc_sensors, rk_tsadc_sensors, sizeof(sc->sc_sensors));
    368  1.1  mrg 	for (unsigned n = 0; n < NUM_SENSORS; n++) {
    369  1.1  mrg 		struct rk_tsadc_sensor *rks = &sc->sc_sensors[n];
    370  1.1  mrg 
    371  1.1  mrg 		rks->s_data.flags = ENVSYS_FMONLIMITS;
    372  1.1  mrg 		rks->s_data.units = ENVSYS_STEMP;
    373  1.1  mrg 		rks->s_data.state = ENVSYS_SINVALID;
    374  1.1  mrg 
    375  1.1  mrg 		if (sysmon_envsys_sensor_attach(sc->sc_sme, &rks->s_data))
    376  1.1  mrg 			goto fail;
    377  1.1  mrg 		rks->s_attached = true;
    378  1.1  mrg 		rks->s_tshut = tshut_temp;
    379  1.3  mrg #if 0
    380  1.1  mrg 		// testing
    381  1.2  mrg 		rks->s_tshut = 68000000;
    382  1.2  mrg 		rks->s_warn = 61000000;
    383  1.1  mrg #endif
    384  1.1  mrg 	}
    385  1.1  mrg 
    386  1.1  mrg 	sc->sc_syscon = fdtbus_syscon_acquire(phandle, "rockchip,grf");
    387  1.1  mrg 	if (sc->sc_syscon == NULL) {
    388  1.1  mrg 		aprint_error(": couldn't get grf syscon\n");
    389  1.1  mrg 		goto fail;
    390  1.1  mrg 	}
    391  1.1  mrg 	if (fdtbus_get_reg(phandle, 0, &addr, &sc->sc_size) != 0) {
    392  1.1  mrg 		aprint_error(": couldn't get registers\n");
    393  1.1  mrg 		sc->sc_size = 0;
    394  1.1  mrg 		goto fail;
    395  1.1  mrg 	}
    396  1.1  mrg 	if (bus_space_map(sc->sc_bst, addr, sc->sc_size, 0, &sc->sc_bsh) != 0) {
    397  1.1  mrg 		aprint_error(": couldn't map registers\n");
    398  1.1  mrg 		sc->sc_size = 0;
    399  1.1  mrg 		goto fail;
    400  1.1  mrg 	}
    401  1.1  mrg 
    402  1.1  mrg 	if (!fdtbus_intr_str(phandle, 0, intrstr, sizeof(intrstr))) {
    403  1.1  mrg 		aprint_error(": failed to decode interrupt\n");
    404  1.1  mrg 		goto fail;
    405  1.1  mrg 	}
    406  1.1  mrg 
    407  1.1  mrg 	sc->sc_ih = fdtbus_intr_establish(phandle, 0, IPL_VM, FDT_INTR_MPSAFE,
    408  1.1  mrg 	    rk_tsadc_intr, sc);
    409  1.1  mrg 	if (sc->sc_ih == NULL) {
    410  1.1  mrg 		aprint_error_dev(self, "couldn't establish interrupt on %s\n",
    411  1.1  mrg 		    intrstr);
    412  1.1  mrg 		goto fail;
    413  1.1  mrg 	}
    414  1.1  mrg 	aprint_normal_dev(self, "interrupting on %s\n", intrstr);
    415  1.1  mrg 
    416  1.1  mrg 	if (rk_tsadc_init_clocks(sc)) {
    417  1.1  mrg 		aprint_error(": couldn't enable clocks\n");
    418  1.1  mrg 		return;
    419  1.1  mrg 	}
    420  1.1  mrg 
    421  1.1  mrg 	/*
    422  1.1  mrg 	 * Manual says to setup auto period (both), high temp (interrupt),
    423  1.1  mrg 	 * high temp (shutdown), enable high temp resets (TSHUT to GPIO
    424  1.1  mrg 	 * or reset chip), set the debounce times, and, finally, enable the
    425  1.1  mrg 	 * controller iself.
    426  1.1  mrg 	 */
    427  1.1  mrg 	rk_tsadc_init_counts(sc);
    428  1.1  mrg 	rk_tsadc_init_tshut(sc, mode, polarity);
    429  1.1  mrg 	rk_tsadc_init_grf(sc);
    430  1.1  mrg 	rk_tsadc_init_enable(sc);
    431  1.1  mrg 
    432  1.1  mrg 	return;
    433  1.1  mrg 
    434  1.1  mrg fail:
    435  1.1  mrg 	rk_tsadc_detach(self, 0);
    436  1.1  mrg }
    437  1.1  mrg 
    438  1.1  mrg static int
    439  1.1  mrg rk_tsadc_detach(device_t self, int flags)
    440  1.1  mrg {
    441  1.1  mrg 	struct rk_tsadc_softc *sc = device_private(self);
    442  1.1  mrg 
    443  1.1  mrg 	pmf_device_deregister(self);
    444  1.1  mrg 
    445  1.1  mrg 	for (unsigned n = 0; n < NUM_SENSORS; n++) {
    446  1.1  mrg 		struct rk_tsadc_sensor *rks = &sc->sc_sensors[n];
    447  1.1  mrg 
    448  1.1  mrg 		if (rks->s_attached) {
    449  1.1  mrg 			sysmon_envsys_sensor_detach(sc->sc_sme, &rks->s_data);
    450  1.1  mrg 			rks->s_attached = false;
    451  1.1  mrg 		}
    452  1.1  mrg 	}
    453  1.1  mrg 
    454  1.1  mrg 	sysmon_envsys_unregister(sc->sc_sme);
    455  1.1  mrg 
    456  1.1  mrg 	if (sc->sc_clockapb)
    457  1.1  mrg 		clk_disable(sc->sc_clockapb);
    458  1.1  mrg 	if (sc->sc_clock)
    459  1.1  mrg 		clk_disable(sc->sc_clock);
    460  1.1  mrg 
    461  1.1  mrg 	if (sc->sc_ih)
    462  1.1  mrg 		fdtbus_intr_disestablish(sc->sc_phandle, sc->sc_ih);
    463  1.1  mrg 
    464  1.1  mrg 	if (sc->sc_size)
    465  1.1  mrg 		bus_space_unmap(sc->sc_bst, sc->sc_bsh, sc->sc_size);
    466  1.1  mrg 
    467  1.1  mrg 	sysmon_envsys_destroy(sc->sc_sme);
    468  1.1  mrg 
    469  1.1  mrg 	return 0;
    470  1.1  mrg }
    471  1.1  mrg 
    472  1.1  mrg static int
    473  1.1  mrg rk_tsadc_init_clocks(struct rk_tsadc_softc *sc)
    474  1.1  mrg {
    475  1.1  mrg 	int error;
    476  1.1  mrg 
    477  1.1  mrg 	fdtbus_clock_assign(sc->sc_phandle);
    478  1.1  mrg 
    479  1.1  mrg 	sc->sc_reset = fdtbus_reset_get(sc->sc_phandle, "tsadc-apb");
    480  1.1  mrg 	sc->sc_clock = fdtbus_clock_get(sc->sc_phandle, "tsadc");
    481  1.1  mrg 	sc->sc_clockapb = fdtbus_clock_get(sc->sc_phandle, "apb_pclk");
    482  1.1  mrg 	if (sc->sc_reset == NULL ||
    483  1.1  mrg 	    sc->sc_clock == NULL ||
    484  1.1  mrg 	    sc->sc_clockapb == NULL)
    485  1.1  mrg 		return EINVAL;
    486  1.1  mrg 
    487  1.1  mrg 	fdtbus_reset_assert(sc->sc_reset);
    488  1.1  mrg 
    489  1.1  mrg 	error = clk_enable(sc->sc_clock);
    490  1.1  mrg 	if (error) {
    491  1.1  mrg 		fdtbus_reset_deassert(sc->sc_reset);
    492  1.1  mrg 		return error;
    493  1.1  mrg 	}
    494  1.1  mrg 
    495  1.1  mrg 	error = clk_enable(sc->sc_clockapb);
    496  1.1  mrg 
    497  1.1  mrg 	DELAY(20);
    498  1.1  mrg 	fdtbus_reset_deassert(sc->sc_reset);
    499  1.1  mrg 
    500  1.1  mrg 	return error;
    501  1.1  mrg }
    502  1.1  mrg 
    503  1.1  mrg static void
    504  1.1  mrg rk_tsadc_init_counts(struct rk_tsadc_softc *sc)
    505  1.1  mrg {
    506  1.1  mrg 
    507  1.1  mrg 	TSADC_WRITE(sc, TSADC_AUTO_PERIOD, TSADC_AUTO_PERIOD_TIME);
    508  1.1  mrg 	TSADC_WRITE(sc, TSADC_AUTO_PERIOD_HT, TSADC_AUTO_PERIOD_TIME);
    509  1.1  mrg 	TSADC_WRITE(sc, TSADC_HIGH_INT_DEBOUNCE, TSADC_HT_DEBOUNCE_COUNT);
    510  1.1  mrg 	TSADC_WRITE(sc, TSADC_HIGH_TSHUT_DEBOUNCE, TSADC_HT_DEBOUNCE_COUNT);
    511  1.1  mrg }
    512  1.1  mrg 
    513  1.1  mrg /* Configure the hardware with the tshut setup. */
    514  1.1  mrg static void
    515  1.1  mrg rk_tsadc_tshut_set(struct rk_tsadc_softc *sc)
    516  1.1  mrg {
    517  1.1  mrg 	uint32_t val = TSADC_READ(sc, TSADC_AUTO_CON);
    518  1.1  mrg 
    519  1.1  mrg 	for (unsigned n = 0; n < NUM_SENSORS; n++) {
    520  1.1  mrg 		struct rk_tsadc_sensor *rks = &sc->sc_sensors[n];
    521  1.1  mrg 		uint32_t data = rk_tsadc_temp_to_data(sc, rks->s_tshut);
    522  1.1  mrg 		uint32_t warndata = rk_tsadc_temp_to_data(sc, rks->s_warn);
    523  1.1  mrg 
    524  1.1  mrg 		DPRINTF("(%s:%s): tshut/data %d/%u warn/data %d/%u",
    525  1.1  mrg 			sc->sc_sme->sme_name, rks->s_data.desc,
    526  1.1  mrg 			rks->s_tshut, data,
    527  1.1  mrg 			rks->s_warn, warndata);
    528  1.1  mrg 
    529  1.1  mrg 		if (data == sc->sc_data_mask) {
    530  1.1  mrg 			aprint_error_dev(sc->sc_dev,
    531  1.1  mrg 			    "Failed converting critical temp %u.%06u to code",
    532  1.1  mrg 			    rks->s_tshut / 1000000, rks->s_tshut % 1000000);
    533  1.1  mrg 			continue;
    534  1.1  mrg 		}
    535  1.1  mrg 		if (warndata == sc->sc_data_mask) {
    536  1.1  mrg 			aprint_error_dev(sc->sc_dev,
    537  1.1  mrg 			    "Failed converting warn temp %u.%06u to code",
    538  1.1  mrg 			    rks->s_warn / 1000000, rks->s_warn % 1000000);
    539  1.1  mrg 			continue;
    540  1.1  mrg 		}
    541  1.1  mrg 
    542  1.1  mrg 		TSADC_WRITE(sc, rks->s_comp_tshut, data);
    543  1.1  mrg 		TSADC_WRITE(sc, rks->s_comp_int, warndata);
    544  1.1  mrg 
    545  1.1  mrg 		val |= rks->s_comp_int_en;
    546  1.1  mrg 	}
    547  1.1  mrg 	TSADC_WRITE(sc, TSADC_AUTO_CON, val);
    548  1.1  mrg }
    549  1.1  mrg 
    550  1.1  mrg static void
    551  1.1  mrg rk_tsadc_init_tshut(struct rk_tsadc_softc *sc, int mode, int polarity)
    552  1.1  mrg {
    553  1.1  mrg 	uint32_t val;
    554  1.1  mrg 
    555  1.1  mrg 	/* Handle TSHUT temp setting. */
    556  1.1  mrg 	rk_tsadc_tshut_set(sc);
    557  1.1  mrg 
    558  1.1  mrg 	/* Handle TSHUT mode setting. */
    559  1.1  mrg 	val = TSADC_READ(sc, TSADC_INT_EN);
    560  1.1  mrg 	if (mode == TSHUT_MODE_CPU) {
    561  1.1  mrg 		val |= TSADC_INT_EN_TSHUT_2CRU_EN_SRC1 |
    562  1.1  mrg 		       TSADC_INT_EN_TSHUT_2CRU_EN_SRC0;
    563  1.1  mrg 		val &= ~(TSADC_INT_EN_TSHUT_2GPIO_EN_SRC1 |
    564  1.1  mrg 			 TSADC_INT_EN_TSHUT_2GPIO_EN_SRC0);
    565  1.1  mrg 	} else {
    566  1.1  mrg 		KASSERT(mode == TSHUT_MODE_GPIO);
    567  1.1  mrg 		val &= ~(TSADC_INT_EN_TSHUT_2CRU_EN_SRC1 |
    568  1.1  mrg 			 TSADC_INT_EN_TSHUT_2CRU_EN_SRC0);
    569  1.1  mrg 		val &= TSADC_INT_EN_TSHUT_2GPIO_EN_SRC1 |
    570  1.1  mrg 		       TSADC_INT_EN_TSHUT_2GPIO_EN_SRC0;
    571  1.1  mrg 	}
    572  1.1  mrg 	TSADC_WRITE(sc, TSADC_INT_EN, val);
    573  1.1  mrg 
    574  1.1  mrg 	/* Handle TSHUT polarity setting. */
    575  1.1  mrg 	val = TSADC_READ(sc, TSADC_AUTO_CON);
    576  1.1  mrg 	if (polarity == TSHUT_HIGH_ACTIVE)
    577  1.1  mrg 		val |= TSADC_AUTO_CON_TSHUT_POLARITY;
    578  1.1  mrg 	else
    579  1.1  mrg 		val &= ~TSADC_AUTO_CON_TSHUT_POLARITY;
    580  1.1  mrg 	TSADC_WRITE(sc, TSADC_AUTO_CON, val);
    581  1.1  mrg }
    582  1.1  mrg 
    583  1.1  mrg static void
    584  1.1  mrg rk_tsadc_init_grf(struct rk_tsadc_softc *sc)
    585  1.1  mrg {
    586  1.1  mrg 
    587  1.1  mrg 	syscon_lock(sc->sc_syscon);
    588  1.1  mrg 	syscon_write_4(sc->sc_syscon, RK3399_GRF_TSADC_TESTBIT_L,
    589  1.1  mrg 				      RK3399_GRF_TSADC_TESTBIT_VCM_EN_L);
    590  1.1  mrg 	syscon_write_4(sc->sc_syscon, RK3399_GRF_TSADC_TESTBIT_H,
    591  1.1  mrg 				      RK3399_GRF_TSADC_TESTBIT_VCM_EN_H);
    592  1.1  mrg 
    593  1.1  mrg 	DELAY(20);
    594  1.1  mrg 	syscon_write_4(sc->sc_syscon, RK3399_GRF_SARADC_TESTBIT,
    595  1.1  mrg 				      RK3399_GRF_SARADC_TESTBIT_ON);
    596  1.1  mrg 	syscon_write_4(sc->sc_syscon, RK3399_GRF_TSADC_TESTBIT_H,
    597  1.1  mrg 				      RK3399_GRF_TSADC_TESTBIT_H_ON);
    598  1.1  mrg 	DELAY(100);
    599  1.1  mrg 	syscon_unlock(sc->sc_syscon);
    600  1.1  mrg }
    601  1.1  mrg 
    602  1.1  mrg static void
    603  1.1  mrg rk_tsadc_init_enable(struct rk_tsadc_softc *sc)
    604  1.1  mrg {
    605  1.1  mrg 	uint32_t val;
    606  1.1  mrg 
    607  1.1  mrg 	val = TSADC_READ(sc, TSADC_AUTO_CON);
    608  1.1  mrg 	val |= TSADC_AUTO_CON_AUTO_STATUS |
    609  1.2  mrg 	       TSADC_AUTO_CON_SRC1_LT_EN | TSADC_AUTO_CON_SRC0_LT_EN;
    610  1.1  mrg 	TSADC_WRITE(sc, TSADC_AUTO_CON, val);
    611  1.1  mrg 
    612  1.1  mrg 	/* Finally, register & enable the controller */
    613  1.1  mrg 	sysmon_envsys_register(sc->sc_sme);
    614  1.1  mrg 
    615  1.1  mrg 	val = TSADC_READ(sc, TSADC_AUTO_CON);
    616  1.1  mrg 	val |= TSADC_AUTO_CON_AUTO_EN | TSADC_AUTO_CON_Q_SEL;
    617  1.1  mrg 	TSADC_WRITE(sc, TSADC_AUTO_CON, val);
    618  1.1  mrg }
    619  1.1  mrg 
    620  1.1  mrg /* run time support */
    621  1.1  mrg 
    622  1.1  mrg static struct rk_tsadc_sensor *
    623  1.1  mrg rk_tsadc_edata_to_sensor(struct rk_tsadc_softc * const sc, envsys_data_t *edata)
    624  1.1  mrg {
    625  1.1  mrg 	for (unsigned n = 0; n < NUM_SENSORS; n++) {
    626  1.1  mrg 		struct rk_tsadc_sensor *rks = &sc->sc_sensors[n];
    627  1.1  mrg 
    628  1.1  mrg 		if (&rks->s_data == edata)
    629  1.1  mrg 			return rks;
    630  1.1  mrg 	}
    631  1.1  mrg 	return NULL;
    632  1.1  mrg }
    633  1.1  mrg 
    634  1.1  mrg static void
    635  1.1  mrg rk_tsadc_refresh(struct sysmon_envsys *sme, envsys_data_t *edata)
    636  1.1  mrg {
    637  1.1  mrg 	struct rk_tsadc_softc * const sc = sme->sme_cookie;
    638  1.1  mrg 	struct rk_tsadc_sensor *rks = rk_tsadc_edata_to_sensor(sc, edata);
    639  1.1  mrg 	unsigned data;
    640  1.1  mrg 	int temp;
    641  1.1  mrg 
    642  1.1  mrg 	if (rks == NULL)
    643  1.1  mrg 		return;
    644  1.1  mrg 
    645  1.1  mrg 	data = TSADC_READ(sc, rks->s_data_reg) & sc->sc_data_mask;
    646  1.1  mrg 	temp = rk_tsadc_data_to_temp(sc, data);
    647  1.1  mrg 
    648  1.1  mrg 	if (temp == sc->sc_data_mask) {
    649  1.1  mrg 		edata->state = ENVSYS_SINVALID;
    650  1.1  mrg 	} else {
    651  1.1  mrg 		edata->value_cur = temp + TEMP_uC_TO_uK;
    652  1.1  mrg 		edata->state = ENVSYS_SVALID;
    653  1.1  mrg 	}
    654  1.1  mrg }
    655  1.1  mrg 
    656  1.1  mrg static void
    657  1.1  mrg rk_tsadc_get_limits(struct sysmon_envsys *sme,
    658  1.1  mrg 		    envsys_data_t *edata,
    659  1.1  mrg 		    sysmon_envsys_lim_t *lim,
    660  1.1  mrg 		    uint32_t *props)
    661  1.1  mrg {
    662  1.1  mrg 	struct rk_tsadc_softc *sc = sme->sme_cookie;
    663  1.1  mrg 	struct rk_tsadc_sensor *rks = rk_tsadc_edata_to_sensor(sc, edata);
    664  1.1  mrg 
    665  1.1  mrg 	if (rks == NULL)
    666  1.1  mrg 		return;
    667  1.1  mrg 
    668  1.1  mrg 	lim->sel_critmax = rks->s_tshut + TEMP_uC_TO_uK;
    669  1.1  mrg 	lim->sel_warnmax = rks->s_warn + TEMP_uC_TO_uK;
    670  1.1  mrg 
    671  1.1  mrg 	*props = PROP_CRITMAX | PROP_WARNMAX;
    672  1.1  mrg }
    673  1.1  mrg 
    674  1.1  mrg /* XXX do something with interrupts that don't happen yet.  */
    675  1.1  mrg static int
    676  1.1  mrg rk_tsadc_intr(void *arg)
    677  1.1  mrg {
    678  1.1  mrg 	struct rk_tsadc_softc * const sc = arg;
    679  1.1  mrg 	uint32_t val;
    680  1.1  mrg 
    681  1.1  mrg 	/* XXX */
    682  1.1  mrg 	DPRINTF("(%s): interrupted", sc->sc_sme->sme_name);
    683  1.1  mrg 	for (unsigned n; n < __arraycount(rk_tsadc_sensors); n++) {
    684  1.1  mrg 		struct rk_tsadc_sensor *rks = &sc->sc_sensors[n];
    685  1.1  mrg 
    686  1.1  mrg 		rk_tsadc_refresh(sc->sc_sme, (envsys_data_t *)rks);
    687  1.1  mrg 	}
    688  1.1  mrg 
    689  1.1  mrg 	/* ack interrupt */
    690  1.1  mrg 	val = TSADC_READ(sc, TSADC_INT_PD);
    691  1.1  mrg 	TSADC_WRITE(sc, TSADC_INT_PD, val & ~TSADC_INT_PD_EOC_INT_PD);
    692  1.1  mrg 
    693  1.1  mrg 	return 1;
    694  1.1  mrg }
    695  1.1  mrg 
    696  1.1  mrg /*
    697  1.1  mrg  * Convert TDASC data codes to temp and reverse.  The manual only has codes
    698  1.1  mrg  * and temperature values in 5 degC intervals, but says that interpolation
    699  1.1  mrg  * can be done to achieve better resolution between these values, and that
    700  1.1  mrg  * the spacing is linear.
    701  1.1  mrg  */
    702  1.1  mrg static int
    703  1.1  mrg rk_tsadc_data_to_temp(struct rk_tsadc_softc *sc, uint32_t data)
    704  1.1  mrg {
    705  1.1  mrg 	unsigned i;
    706  1.1  mrg 
    707  1.2  mrg 	for (i = 1; i < __arraycount(rk3399_data_table) - 1; i++) {
    708  1.1  mrg 		if (rk3399_data_table[i].data >= data) {
    709  1.2  mrg 			int temprange, offset;
    710  1.2  mrg 			uint32_t datarange, datadiff;
    711  1.2  mrg 
    712  1.1  mrg 			if (rk3399_data_table[i].data == data)
    713  1.1  mrg 				return rk3399_data_table[i].temp;
    714  1.2  mrg 
    715  1.2  mrg 			/* must interpolate */
    716  1.2  mrg 			temprange = rk3399_data_table[i].temp -
    717  1.2  mrg 				    rk3399_data_table[i-1].temp;
    718  1.2  mrg 			datarange = rk3399_data_table[i].data -
    719  1.2  mrg 				    rk3399_data_table[i-1].data;
    720  1.2  mrg 			datadiff = data - rk3399_data_table[i-1].data;
    721  1.2  mrg 
    722  1.2  mrg 			offset = (temprange * datadiff) / datarange;
    723  1.2  mrg 			return rk3399_data_table[i-1].temp + offset;
    724  1.1  mrg 		}
    725  1.1  mrg 	}
    726  1.1  mrg 
    727  1.2  mrg 	return rk3399_data_table[i].temp;
    728  1.1  mrg }
    729  1.1  mrg 
    730  1.1  mrg static uint32_t
    731  1.1  mrg rk_tsadc_temp_to_data(struct rk_tsadc_softc *sc, int temp)
    732  1.1  mrg {
    733  1.1  mrg 	unsigned i;
    734  1.1  mrg 
    735  1.1  mrg 	for (i = 1; i < __arraycount(rk3399_data_table); i++) {
    736  1.1  mrg 		if (rk3399_data_table[i].temp >= temp) {
    737  1.2  mrg 			int temprange, tempdiff;
    738  1.2  mrg 			uint32_t datarange, offset;
    739  1.2  mrg 
    740  1.1  mrg 			if (rk3399_data_table[i].temp == temp)
    741  1.1  mrg 				return rk3399_data_table[i].data;
    742  1.2  mrg 
    743  1.2  mrg 			/* must interpolate */
    744  1.2  mrg 			datarange = rk3399_data_table[i].data -
    745  1.2  mrg 				    rk3399_data_table[i-1].data;
    746  1.2  mrg 			temprange = rk3399_data_table[i].temp -
    747  1.2  mrg 				    rk3399_data_table[i-1].temp;
    748  1.2  mrg 			tempdiff = temp - rk3399_data_table[i-1].temp;
    749  1.2  mrg 
    750  1.2  mrg 			offset = (datarange * tempdiff) / temprange;
    751  1.2  mrg 			return rk3399_data_table[i-1].data + offset;
    752  1.1  mrg 		}
    753  1.1  mrg 	}
    754  1.1  mrg 
    755  1.1  mrg 	return sc->sc_data_mask;
    756  1.1  mrg }
    757