1 1.4 chs /* $NetBSD: teliosio.c,v 1.4 2012/10/27 17:17:53 chs Exp $ */ 2 1.1 nakayama 3 1.1 nakayama /* 4 1.1 nakayama * Copyright (c) 2005 Takeshi Nakayama. 5 1.1 nakayama * All rights reserved. 6 1.1 nakayama * 7 1.1 nakayama * Redistribution and use in source and binary forms, with or without 8 1.1 nakayama * modification, are permitted provided that the following conditions 9 1.1 nakayama * are met: 10 1.1 nakayama * 1. Redistributions of source code must retain the above copyright 11 1.1 nakayama * notice, this list of conditions and the following disclaimer. 12 1.1 nakayama * 2. Redistributions in binary form must reproduce the above copyright 13 1.1 nakayama * notice, this list of conditions and the following disclaimer in the 14 1.1 nakayama * documentation and/or other materials provided with the distribution. 15 1.1 nakayama * 16 1.1 nakayama * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 17 1.1 nakayama * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 18 1.1 nakayama * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 19 1.1 nakayama * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 20 1.1 nakayama * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 21 1.1 nakayama * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 22 1.1 nakayama * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 23 1.1 nakayama * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 24 1.1 nakayama * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 25 1.1 nakayama * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 26 1.1 nakayama */ 27 1.1 nakayama 28 1.1 nakayama /* 29 1.1 nakayama * Sharp Telios machine dependent I/O (LCD backlight/Battery unit) driver 30 1.1 nakayama */ 31 1.1 nakayama 32 1.1 nakayama #include <sys/cdefs.h> 33 1.4 chs __KERNEL_RCSID(0, "$NetBSD: teliosio.c,v 1.4 2012/10/27 17:17:53 chs Exp $"); 34 1.1 nakayama 35 1.1 nakayama #include "apmdev.h" 36 1.1 nakayama 37 1.1 nakayama #include <sys/param.h> 38 1.1 nakayama #include <sys/systm.h> 39 1.1 nakayama #include <sys/device.h> 40 1.1 nakayama 41 1.1 nakayama #include <machine/bus.h> 42 1.1 nakayama #include <machine/config_hook.h> 43 1.1 nakayama 44 1.1 nakayama #include <hpcmips/tx/tx39var.h> 45 1.1 nakayama #include <hpcmips/tx/txcsbusvar.h> 46 1.1 nakayama 47 1.1 nakayama #if NAPMDEV > 0 48 1.1 nakayama #include <dev/apm/apmbios.h> 49 1.1 nakayama #define __TX39IO_PRIVATE 50 1.1 nakayama #include <hpcmips/tx/tx39ioreg.h> 51 1.1 nakayama #include <hpcmips/tx/tx39timerreg.h> 52 1.1 nakayama #endif 53 1.1 nakayama 54 1.1 nakayama #include <hpcmips/dev/teliosioreg.h> 55 1.1 nakayama 56 1.1 nakayama struct teliosio_softc { 57 1.1 nakayama tx_chipset_tag_t sc_tc; 58 1.1 nakayama bus_space_tag_t sc_regt; 59 1.1 nakayama bus_space_handle_t sc_regh; 60 1.1 nakayama 61 1.1 nakayama int sc_backlight; 62 1.1 nakayama int sc_brightness; 63 1.1 nakayama #define MAX_BRIGHTNESS 9 64 1.1 nakayama #define BRIGHTNESSVAL(n) \ 65 1.1 nakayama ((n) <= 0 ? 0 : ((n) <= MAX_BRIGHTNESS ? (n) : MAX_BRIGHTNESS) * 9 - 1) 66 1.1 nakayama }; 67 1.1 nakayama 68 1.4 chs static int teliosio_match(device_t, cfdata_t, void *); 69 1.4 chs static void teliosio_attach(device_t, device_t, void *); 70 1.1 nakayama static int teliosio_event(void *, int, long, void *); 71 1.1 nakayama 72 1.1 nakayama /* LCD backlight control */ 73 1.1 nakayama static void teliosio_backlight(struct teliosio_softc *, int); 74 1.1 nakayama static void teliosio_brightness(struct teliosio_softc *, int); 75 1.1 nakayama 76 1.1 nakayama /* Battery unit control */ 77 1.1 nakayama #if NAPMDEV > 0 78 1.1 nakayama static int teliosio_ac_state(struct teliosio_softc *); 79 1.1 nakayama static int teliosio_mbu_state(struct teliosio_softc *); 80 1.1 nakayama static void teliosio_mbu_write(tx_chipset_tag_t, int); 81 1.1 nakayama static int teliosio_mbu_read(tx_chipset_tag_t); 82 1.1 nakayama #endif 83 1.1 nakayama 84 1.4 chs CFATTACH_DECL_NEW(teliosio, sizeof(struct teliosio_softc), 85 1.1 nakayama teliosio_match, teliosio_attach, NULL, NULL); 86 1.1 nakayama 87 1.1 nakayama static int 88 1.4 chs teliosio_match(device_t parent, cfdata_t cf, void *aux) 89 1.1 nakayama { 90 1.1 nakayama 91 1.1 nakayama return 2; /* attach before plumvideo */ 92 1.1 nakayama } 93 1.1 nakayama 94 1.1 nakayama static void 95 1.4 chs teliosio_attach(device_t parent, device_t self, void *aux) 96 1.1 nakayama { 97 1.1 nakayama struct cs_attach_args *ca = aux; 98 1.4 chs struct teliosio_softc *sc = device_private(self); 99 1.1 nakayama 100 1.1 nakayama sc->sc_tc = ca->ca_tc; 101 1.1 nakayama sc->sc_regt = ca->ca_csreg.cstag; 102 1.1 nakayama 103 1.1 nakayama if (bus_space_map(sc->sc_regt, TELIOSIO_REGBASE, TELIOSIO_REGSIZE, 104 1.1 nakayama 0, &sc->sc_regh)) { 105 1.1 nakayama printf(": register map failed\n"); 106 1.1 nakayama return; 107 1.1 nakayama } 108 1.1 nakayama printf("\n"); 109 1.1 nakayama 110 1.1 nakayama sc->sc_backlight = 1; 111 1.1 nakayama sc->sc_brightness = MAX_BRIGHTNESS; 112 1.1 nakayama 113 1.1 nakayama config_hook(CONFIG_HOOK_SET, CONFIG_HOOK_POWER_LCDLIGHT, 114 1.1 nakayama CONFIG_HOOK_SHARE, teliosio_event, sc); 115 1.1 nakayama config_hook(CONFIG_HOOK_GET, CONFIG_HOOK_POWER_LCDLIGHT, 116 1.1 nakayama CONFIG_HOOK_SHARE, teliosio_event, sc); 117 1.1 nakayama config_hook(CONFIG_HOOK_SET, CONFIG_HOOK_BRIGHTNESS, 118 1.1 nakayama CONFIG_HOOK_SHARE, teliosio_event, sc); 119 1.1 nakayama config_hook(CONFIG_HOOK_GET, CONFIG_HOOK_BRIGHTNESS, 120 1.1 nakayama CONFIG_HOOK_SHARE, teliosio_event, sc); 121 1.1 nakayama config_hook(CONFIG_HOOK_GET, CONFIG_HOOK_BRIGHTNESS_MAX, 122 1.1 nakayama CONFIG_HOOK_SHARE, teliosio_event, sc); 123 1.1 nakayama #if NAPMDEV > 0 124 1.1 nakayama config_hook(CONFIG_HOOK_GET, CONFIG_HOOK_ACADAPTER, 125 1.1 nakayama CONFIG_HOOK_SHARE, teliosio_event, sc); 126 1.1 nakayama config_hook(CONFIG_HOOK_GET, CONFIG_HOOK_BATTERYVAL, 127 1.1 nakayama CONFIG_HOOK_SHARE, teliosio_event, sc); 128 1.1 nakayama #endif 129 1.1 nakayama } 130 1.1 nakayama 131 1.1 nakayama static int 132 1.1 nakayama teliosio_event(void *ctx, int type, long id, void *msg) 133 1.1 nakayama { 134 1.1 nakayama struct teliosio_softc *sc = ctx; 135 1.1 nakayama 136 1.1 nakayama switch (type) { 137 1.1 nakayama case CONFIG_HOOK_SET: 138 1.1 nakayama switch (id) { 139 1.1 nakayama case CONFIG_HOOK_POWER_LCDLIGHT: 140 1.1 nakayama teliosio_backlight(sc, (int)msg); 141 1.1 nakayama break; 142 1.1 nakayama case CONFIG_HOOK_BRIGHTNESS: 143 1.1 nakayama teliosio_brightness(sc, *(int *)msg + 1); 144 1.1 nakayama break; 145 1.1 nakayama default: 146 1.1 nakayama return 1; 147 1.1 nakayama } 148 1.1 nakayama break; 149 1.1 nakayama case CONFIG_HOOK_GET: 150 1.1 nakayama switch (id) { 151 1.1 nakayama case CONFIG_HOOK_POWER_LCDLIGHT: 152 1.1 nakayama *(int *)msg = sc->sc_backlight; 153 1.1 nakayama break; 154 1.1 nakayama case CONFIG_HOOK_BRIGHTNESS: 155 1.1 nakayama *(int *)msg = sc->sc_brightness - 1; 156 1.1 nakayama break; 157 1.1 nakayama case CONFIG_HOOK_BRIGHTNESS_MAX: 158 1.1 nakayama *(int *)msg = MAX_BRIGHTNESS - 1; 159 1.1 nakayama break; 160 1.1 nakayama #if NAPMDEV > 0 161 1.1 nakayama case CONFIG_HOOK_ACADAPTER: 162 1.1 nakayama *(int *)msg = teliosio_ac_state(sc); 163 1.1 nakayama break; 164 1.1 nakayama case CONFIG_HOOK_BATTERYVAL: 165 1.1 nakayama *(int *)msg = teliosio_mbu_state(sc) / 2; 166 1.1 nakayama break; 167 1.1 nakayama #endif 168 1.1 nakayama default: 169 1.1 nakayama return 1; 170 1.1 nakayama } 171 1.1 nakayama break; 172 1.1 nakayama default: 173 1.1 nakayama return 1; 174 1.1 nakayama } 175 1.1 nakayama 176 1.1 nakayama return 0; 177 1.1 nakayama } 178 1.1 nakayama 179 1.1 nakayama /* 180 1.1 nakayama * LCD backlight control 181 1.1 nakayama */ 182 1.1 nakayama static void 183 1.1 nakayama teliosio_backlight(struct teliosio_softc *sc, int on) 184 1.1 nakayama { 185 1.1 nakayama int brightness; 186 1.1 nakayama 187 1.1 nakayama sc->sc_backlight = on; 188 1.1 nakayama if (on) { 189 1.1 nakayama teliosio_brightness(sc, sc->sc_brightness); 190 1.1 nakayama } else { 191 1.1 nakayama brightness = sc->sc_brightness; 192 1.1 nakayama teliosio_brightness(sc, 0); 193 1.1 nakayama sc->sc_brightness = brightness; 194 1.1 nakayama } 195 1.1 nakayama } 196 1.1 nakayama 197 1.1 nakayama static void 198 1.1 nakayama teliosio_brightness(struct teliosio_softc *sc, int val) 199 1.1 nakayama { 200 1.1 nakayama bus_space_tag_t regt = sc->sc_regt; 201 1.1 nakayama bus_space_handle_t regh = sc->sc_regh; 202 1.1 nakayama u_int16_t period; 203 1.1 nakayama 204 1.1 nakayama if (val < 0) 205 1.1 nakayama val = 0; 206 1.1 nakayama else if (val > MAX_BRIGHTNESS) 207 1.1 nakayama val = MAX_BRIGHTNESS; 208 1.1 nakayama sc->sc_brightness = val; 209 1.1 nakayama 210 1.1 nakayama period = bus_space_read_2(regt, regh, TELIOSIO_BACKLIGHT_PERIOD); 211 1.1 nakayama if (val) 212 1.1 nakayama period |= TELIOSIO_BACKLIGHT_PERIOD_EN; 213 1.1 nakayama else 214 1.1 nakayama period &= ~TELIOSIO_BACKLIGHT_PERIOD_EN; 215 1.1 nakayama bus_space_write_2(regt, regh, TELIOSIO_BACKLIGHT_PERIOD, period); 216 1.1 nakayama bus_space_write_2(regt, regh, TELIOSIO_BACKLIGHT_RESET, 217 1.1 nakayama BRIGHTNESSVAL(val)); 218 1.1 nakayama } 219 1.1 nakayama 220 1.1 nakayama /* 221 1.1 nakayama * Battery unit control 222 1.1 nakayama */ 223 1.1 nakayama #if NAPMDEV > 0 224 1.1 nakayama static int 225 1.1 nakayama teliosio_ac_state(struct teliosio_softc *sc) 226 1.1 nakayama { 227 1.1 nakayama tx_chipset_tag_t tc = sc->sc_tc; 228 1.1 nakayama txreg_t reg; 229 1.1 nakayama 230 1.1 nakayama reg = tx_conf_read(tc, TX392X_IODATAINOUT_REG); 231 1.1 nakayama return (reg & TELIOSIO_AC_STATE) ? APM_AC_OFF : APM_AC_ON; 232 1.1 nakayama } 233 1.1 nakayama 234 1.1 nakayama static int 235 1.1 nakayama teliosio_mbu_state(struct teliosio_softc *sc) 236 1.1 nakayama { 237 1.1 nakayama tx_chipset_tag_t tc = sc->sc_tc; 238 1.1 nakayama int val; 239 1.1 nakayama 240 1.1 nakayama teliosio_mbu_write(tc, 0x00); 241 1.1 nakayama delay(7000); 242 1.1 nakayama val = teliosio_mbu_read(tc); 243 1.1 nakayama delay(7000); 244 1.1 nakayama 245 1.1 nakayama return val; 246 1.1 nakayama } 247 1.1 nakayama 248 1.1 nakayama #define WAIT (1000000 / TELIOSIO_BMU_CLOCK_FREQ / 2) 249 1.1 nakayama 250 1.1 nakayama static void 251 1.1 nakayama teliosio_mbu_write(tx_chipset_tag_t tc, int val) 252 1.1 nakayama { 253 1.1 nakayama txreg_t reg; 254 1.1 nakayama int s; 255 1.1 nakayama int mask; 256 1.1 nakayama 257 1.1 nakayama for (mask = 0x80; mask != 0; mask >>= 1) { 258 1.1 nakayama s = splhigh(); 259 1.1 nakayama reg = tx_conf_read(tc, TX392X_IODATAINOUT_REG); 260 1.1 nakayama reg |= TELIOSIO_BMU_CLOCK; 261 1.1 nakayama if (val & mask) 262 1.1 nakayama reg |= TELIOSIO_BMU_DATAOUT; 263 1.1 nakayama else 264 1.1 nakayama reg &= ~TELIOSIO_BMU_DATAOUT; 265 1.1 nakayama tx_conf_write(tc, TX392X_IODATAINOUT_REG, reg); 266 1.1 nakayama splx(s); 267 1.1 nakayama delay(WAIT); 268 1.1 nakayama 269 1.1 nakayama s = splhigh(); 270 1.1 nakayama reg = tx_conf_read(tc, TX392X_IODATAINOUT_REG); 271 1.1 nakayama reg &= ~TELIOSIO_BMU_CLOCK; 272 1.1 nakayama tx_conf_write(tc, TX392X_IODATAINOUT_REG, reg); 273 1.1 nakayama splx(s); 274 1.1 nakayama delay(WAIT); 275 1.1 nakayama } 276 1.1 nakayama } 277 1.1 nakayama 278 1.1 nakayama static int 279 1.1 nakayama teliosio_mbu_read(tx_chipset_tag_t tc) 280 1.1 nakayama { 281 1.1 nakayama txreg_t reg; 282 1.1 nakayama int s; 283 1.1 nakayama int mask, val; 284 1.1 nakayama 285 1.1 nakayama val = 0; 286 1.1 nakayama for (mask = 0x80; mask != 0; mask >>= 1) { 287 1.1 nakayama s = splhigh(); 288 1.1 nakayama reg = tx_conf_read(tc, TX392X_IODATAINOUT_REG); 289 1.1 nakayama reg |= TELIOSIO_BMU_CLOCK; 290 1.1 nakayama tx_conf_write(tc, TX392X_IODATAINOUT_REG, reg); 291 1.1 nakayama splx(s); 292 1.1 nakayama delay(WAIT); 293 1.1 nakayama 294 1.1 nakayama s = splhigh(); 295 1.1 nakayama reg = tx_conf_read(tc, TX392X_IODATAINOUT_REG); 296 1.1 nakayama if (!(reg & TELIOSIO_BMU_DATAIN)) 297 1.1 nakayama val |= mask; 298 1.1 nakayama reg &= ~TELIOSIO_BMU_CLOCK; 299 1.1 nakayama tx_conf_write(tc, TX392X_IODATAINOUT_REG, reg); 300 1.1 nakayama splx(s); 301 1.1 nakayama delay(WAIT); 302 1.1 nakayama } 303 1.1 nakayama 304 1.1 nakayama return val; 305 1.1 nakayama } 306 1.1 nakayama #endif /* NAPMDEV */ 307