1 1.59 andvar /* $NetBSD: zs.c,v 1.59 2023/09/24 10:59:24 andvar Exp $ */ 2 1.1 tsubai 3 1.1 tsubai /* 4 1.7 wrstuden * Copyright (c) 1996, 1998 Bill Studenmund 5 1.1 tsubai * Copyright (c) 1995 Gordon W. Ross 6 1.1 tsubai * All rights reserved. 7 1.1 tsubai * 8 1.1 tsubai * Redistribution and use in source and binary forms, with or without 9 1.1 tsubai * modification, are permitted provided that the following conditions 10 1.1 tsubai * are met: 11 1.1 tsubai * 1. Redistributions of source code must retain the above copyright 12 1.1 tsubai * notice, this list of conditions and the following disclaimer. 13 1.1 tsubai * 2. Redistributions in binary form must reproduce the above copyright 14 1.1 tsubai * notice, this list of conditions and the following disclaimer in the 15 1.1 tsubai * documentation and/or other materials provided with the distribution. 16 1.1 tsubai * 17 1.1 tsubai * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 18 1.1 tsubai * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 19 1.1 tsubai * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 20 1.1 tsubai * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 21 1.1 tsubai * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 22 1.1 tsubai * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 23 1.1 tsubai * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 24 1.1 tsubai * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 25 1.1 tsubai * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 26 1.1 tsubai * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 27 1.1 tsubai */ 28 1.1 tsubai 29 1.1 tsubai /* 30 1.1 tsubai * Zilog Z8530 Dual UART driver (machine-dependent part) 31 1.1 tsubai * 32 1.1 tsubai * Runs two serial lines per chip using slave drivers. 33 1.1 tsubai * Plain tty/async lines use the zs_async slave. 34 1.1 tsubai * Sun keyboard/mouse uses the zs_kbd/zs_ms slaves. 35 1.1 tsubai * Other ports use their own mice & keyboard slaves. 36 1.1 tsubai * 37 1.1 tsubai * Credits & history: 38 1.1 tsubai * 39 1.1 tsubai * With NetBSD 1.1, port-mac68k started using a port of the port-sparc 40 1.1 tsubai * (port-sun3?) zs.c driver (which was in turn based on code in the 41 1.1 tsubai * Berkeley 4.4 Lite release). Bill Studenmund did the port, with 42 1.28 keihan * help from Allen Briggs and Gordon Ross <gwr (at) NetBSD.org>. Noud de 43 1.1 tsubai * Brouwer field-tested the driver at a local ISP. 44 1.1 tsubai * 45 1.41 wiz * Bill Studenmund and Gordon Ross then ported the machine-independent 46 1.1 tsubai * z8530 driver to work with port-mac68k. NetBSD 1.2 contained an 47 1.1 tsubai * intermediate version (mac68k using a local, patched version of 48 1.1 tsubai * the m.i. drivers), with NetBSD 1.3 containing a full version. 49 1.1 tsubai */ 50 1.27 lukem 51 1.27 lukem #include <sys/cdefs.h> 52 1.59 andvar __KERNEL_RCSID(0, "$NetBSD: zs.c,v 1.59 2023/09/24 10:59:24 andvar Exp $"); 53 1.3 jonathan 54 1.3 jonathan #include "opt_ddb.h" 55 1.19 dbj #include "opt_kgdb.h" 56 1.1 tsubai 57 1.1 tsubai #include <sys/param.h> 58 1.1 tsubai #include <sys/systm.h> 59 1.1 tsubai #include <sys/proc.h> 60 1.1 tsubai #include <sys/device.h> 61 1.1 tsubai #include <sys/conf.h> 62 1.1 tsubai #include <sys/file.h> 63 1.1 tsubai #include <sys/ioctl.h> 64 1.1 tsubai #include <sys/tty.h> 65 1.1 tsubai #include <sys/time.h> 66 1.1 tsubai #include <sys/kernel.h> 67 1.1 tsubai #include <sys/syslog.h> 68 1.45 ad #include <sys/intr.h> 69 1.45 ad #include <sys/cpu.h> 70 1.19 dbj #ifdef KGDB 71 1.19 dbj #include <sys/kgdb.h> 72 1.19 dbj #endif 73 1.1 tsubai 74 1.1 tsubai #include <dev/cons.h> 75 1.1 tsubai #include <dev/ofw/openfirm.h> 76 1.55 martin #include <powerpc/ofw_cons.h> 77 1.1 tsubai #include <dev/ic/z8530reg.h> 78 1.1 tsubai 79 1.1 tsubai #include <machine/z8530var.h> 80 1.1 tsubai #include <machine/autoconf.h> 81 1.1 tsubai #include <machine/pio.h> 82 1.1 tsubai 83 1.1 tsubai /* Are these in a header file anywhere? */ 84 1.1 tsubai /* Booter flags interface */ 85 1.1 tsubai #define ZSMAC_RAW 0x01 86 1.1 tsubai #define ZSMAC_LOCALTALK 0x02 87 1.11 mycroft 88 1.1 tsubai /* 89 1.1 tsubai * Some warts needed by z8530tty.c - 90 1.1 tsubai */ 91 1.1 tsubai int zs_def_cflag = (CREAD | CS8 | HUPCL); 92 1.1 tsubai 93 1.1 tsubai /* 94 1.1 tsubai * abort detection on console will now timeout after iterating on a loop 95 1.1 tsubai * the following # of times. Cheep hack. Also, abort detection is turned 96 1.1 tsubai * off after a timeout (i.e. maybe there's not a terminal hooked up). 97 1.1 tsubai */ 98 1.1 tsubai #define ZSABORT_DELAY 3000000 99 1.1 tsubai 100 1.1 tsubai struct zsdevice { 101 1.1 tsubai /* Yes, they are backwards. */ 102 1.1 tsubai struct zschan zs_chan_b; 103 1.1 tsubai struct zschan zs_chan_a; 104 1.1 tsubai }; 105 1.1 tsubai 106 1.31 chs static int zs_defspeed[2] = { 107 1.31 chs 38400, /* ttyZ0 */ 108 1.31 chs 38400, /* ttyZ1 */ 109 1.1 tsubai }; 110 1.15 tsubai 111 1.1 tsubai /* console stuff */ 112 1.1 tsubai void *zs_conschan = 0; 113 1.32 matt int zs_conschannel = -1; 114 1.1 tsubai #ifdef ZS_CONSOLE_ABORT 115 1.1 tsubai int zs_cons_canabort = 1; 116 1.1 tsubai #else 117 1.1 tsubai int zs_cons_canabort = 0; 118 1.1 tsubai #endif /* ZS_CONSOLE_ABORT*/ 119 1.55 martin #if PMAC_G5 120 1.55 martin static void zscn_delayed_init(struct zsdevice *zsd); 121 1.55 martin #endif 122 1.1 tsubai 123 1.1 tsubai /* device to which the console is attached--if serial. */ 124 1.1 tsubai /* Mac stuff */ 125 1.1 tsubai 126 1.30 chs static int zs_get_speed(struct zs_chanstate *); 127 1.55 martin void zscnprobe(struct consdev *cp); 128 1.55 martin void zscninit(struct consdev *cp); 129 1.55 martin int zscngetc(dev_t dev); 130 1.55 martin void zscnputc(dev_t dev, int c); 131 1.55 martin #define zscnpollc nullcnpollc 132 1.55 martin cons_decl(zs); 133 1.55 martin 134 1.55 martin struct consdev consdev_zs = { 135 1.55 martin zscnprobe, 136 1.55 martin zscninit, 137 1.55 martin zscngetc, 138 1.55 martin zscnputc, 139 1.55 martin zscnpollc, 140 1.55 martin }; 141 1.1 tsubai 142 1.1 tsubai /* 143 1.1 tsubai * Even though zsparam will set up the clock multiples, etc., we 144 1.1 tsubai * still set them here as: 1) mice & keyboards don't use zsparam, 145 1.1 tsubai * and 2) the console stuff uses these defaults before device 146 1.1 tsubai * attach. 147 1.1 tsubai */ 148 1.1 tsubai 149 1.46 tsutsui static uint8_t zs_init_reg[16] = { 150 1.1 tsubai 0, /* 0: CMD (reset, etc.) */ 151 1.1 tsubai 0, /* 1: No interrupts yet. */ 152 1.1 tsubai 0, /* IVECT */ 153 1.1 tsubai ZSWR3_RX_8 | ZSWR3_RX_ENABLE, 154 1.1 tsubai ZSWR4_CLK_X16 | ZSWR4_ONESB | ZSWR4_EVENP, 155 1.1 tsubai ZSWR5_TX_8 | ZSWR5_TX_ENABLE, 156 1.1 tsubai 0, /* 6: TXSYNC/SYNCLO */ 157 1.1 tsubai 0, /* 7: RXSYNC/SYNCHI */ 158 1.1 tsubai 0, /* 8: alias for data port */ 159 1.1 tsubai ZSWR9_MASTER_IE, 160 1.1 tsubai 0, /*10: Misc. TX/RX control bits */ 161 1.1 tsubai ZSWR11_TXCLK_BAUD | ZSWR11_RXCLK_BAUD, 162 1.11 mycroft ((PCLK/32)/38400)-2, /*12: BAUDLO (default=38400) */ 163 1.11 mycroft 0, /*13: BAUDHI (default=38400) */ 164 1.12 wrstuden ZSWR14_BAUD_ENA, 165 1.10 mycroft ZSWR15_BREAK_IE, 166 1.1 tsubai }; 167 1.1 tsubai 168 1.1 tsubai /**************************************************************** 169 1.1 tsubai * Autoconfig 170 1.1 tsubai ****************************************************************/ 171 1.1 tsubai 172 1.1 tsubai /* Definition of the driver for autoconfig. */ 173 1.46 tsutsui static int zsc_match(device_t, cfdata_t, void *); 174 1.46 tsutsui static void zsc_attach(device_t, device_t, void *); 175 1.30 chs static int zsc_print(void *, const char *); 176 1.1 tsubai 177 1.46 tsutsui CFATTACH_DECL_NEW(zsc, sizeof(struct zsc_softc), 178 1.23 thorpej zsc_match, zsc_attach, NULL, NULL); 179 1.1 tsubai 180 1.1 tsubai extern struct cfdriver zsc_cd; 181 1.1 tsubai 182 1.31 chs int zsc_attached; 183 1.31 chs 184 1.30 chs int zshard(void *); 185 1.1 tsubai #ifdef ZS_TXDMA 186 1.30 chs static int zs_txdma_int(void *); 187 1.1 tsubai #endif 188 1.1 tsubai 189 1.30 chs void zscnprobe(struct consdev *); 190 1.30 chs void zscninit(struct consdev *); 191 1.30 chs int zscngetc(dev_t); 192 1.30 chs void zscnputc(dev_t, int); 193 1.30 chs void zscnpollc(dev_t, int); 194 1.1 tsubai 195 1.1 tsubai /* 196 1.1 tsubai * Is the zs chip present? 197 1.1 tsubai */ 198 1.1 tsubai static int 199 1.46 tsutsui zsc_match(device_t parent, cfdata_t cf, void *aux) 200 1.1 tsubai { 201 1.1 tsubai struct confargs *ca = aux; 202 1.1 tsubai 203 1.1 tsubai if (strcmp(ca->ca_name, "escc") != 0) 204 1.1 tsubai return 0; 205 1.1 tsubai 206 1.31 chs if (zsc_attached) 207 1.1 tsubai return 0; 208 1.1 tsubai 209 1.1 tsubai return 1; 210 1.1 tsubai } 211 1.1 tsubai 212 1.1 tsubai /* 213 1.1 tsubai * Attach a found zs. 214 1.1 tsubai * 215 1.1 tsubai * Match slave number to zs unit number, so that misconfiguration will 216 1.1 tsubai * not set up the keyboard as ttya, etc. 217 1.1 tsubai */ 218 1.1 tsubai static void 219 1.46 tsutsui zsc_attach(device_t parent, device_t self, void *aux) 220 1.1 tsubai { 221 1.46 tsutsui struct zsc_softc *zsc = device_private(self); 222 1.1 tsubai struct confargs *ca = aux; 223 1.1 tsubai struct zsc_attach_args zsc_args; 224 1.1 tsubai volatile struct zschan *zc; 225 1.1 tsubai struct xzs_chanstate *xcs; 226 1.1 tsubai struct zs_chanstate *cs; 227 1.15 tsubai struct zsdevice *zsd; 228 1.31 chs int channel; 229 1.1 tsubai int s, chip, theflags; 230 1.1 tsubai int node, intr[2][3]; 231 1.1 tsubai u_int regs[6]; 232 1.51 rin char intr_xname[INTRDEVNAMEBUF]; 233 1.1 tsubai 234 1.31 chs zsc_attached = 1; 235 1.31 chs 236 1.46 tsutsui zsc->zsc_dev = self; 237 1.46 tsutsui 238 1.15 tsubai chip = 0; 239 1.8 tsubai ca->ca_reg[0] += ca->ca_baseaddr; 240 1.50 matt zsd = mapiodev(ca->ca_reg[0], ca->ca_reg[1], false); 241 1.8 tsubai 242 1.8 tsubai node = OF_child(ca->ca_node); /* ch-a */ 243 1.1 tsubai 244 1.1 tsubai for (channel = 0; channel < 2; channel++) { 245 1.8 tsubai if (OF_getprop(node, "AAPL,interrupts", 246 1.9 tsubai intr[channel], sizeof(intr[0])) == -1 && 247 1.8 tsubai OF_getprop(node, "interrupts", 248 1.9 tsubai intr[channel], sizeof(intr[0])) == -1) { 249 1.46 tsutsui aprint_error(": cannot find interrupt property\n"); 250 1.8 tsubai return; 251 1.8 tsubai } 252 1.8 tsubai 253 1.8 tsubai if (OF_getprop(node, "reg", regs, sizeof(regs)) < 24) { 254 1.46 tsutsui aprint_error(": cannot find reg property\n"); 255 1.8 tsubai return; 256 1.8 tsubai } 257 1.1 tsubai regs[2] += ca->ca_baseaddr; 258 1.1 tsubai regs[4] += ca->ca_baseaddr; 259 1.1 tsubai #ifdef ZS_TXDMA 260 1.50 matt zsc->zsc_txdmareg[channel] = mapiodev(regs[2], regs[3], false); 261 1.1 tsubai zsc->zsc_txdmacmd[channel] = 262 1.59 andvar dbdma_alloc(sizeof(dbdma_command_t) * 3, NULL); 263 1.18 wiz memset(zsc->zsc_txdmacmd[channel], 0, 264 1.18 wiz sizeof(dbdma_command_t) * 3); 265 1.1 tsubai dbdma_reset(zsc->zsc_txdmareg[channel]); 266 1.1 tsubai #endif 267 1.1 tsubai node = OF_peer(node); /* ch-b */ 268 1.1 tsubai } 269 1.1 tsubai 270 1.48 tsutsui aprint_normal(" irq %d,%d\n", intr[0][0], intr[1][0]); 271 1.1 tsubai 272 1.55 martin #if PMAC_G5 273 1.55 martin extern struct consdev failsafe_cons; 274 1.55 martin if (ofwoea_use_serial_console && cn_tab == &failsafe_cons) 275 1.55 martin zscn_delayed_init(zsd); 276 1.55 martin #endif 277 1.55 martin 278 1.1 tsubai /* 279 1.1 tsubai * Initialize software state for each channel. 280 1.1 tsubai */ 281 1.1 tsubai for (channel = 0; channel < 2; channel++) { 282 1.1 tsubai zsc_args.channel = channel; 283 1.31 chs zsc_args.hwflags = (channel == zs_conschannel ? 284 1.31 chs ZS_HWFLAG_CONSOLE : 0); 285 1.1 tsubai xcs = &zsc->xzsc_xcs_store[channel]; 286 1.1 tsubai cs = &xcs->xzs_cs; 287 1.1 tsubai zsc->zsc_cs[channel] = cs; 288 1.1 tsubai 289 1.44 ad zs_lock_init(cs); 290 1.1 tsubai cs->cs_channel = channel; 291 1.1 tsubai cs->cs_private = NULL; 292 1.1 tsubai cs->cs_ops = &zsops_null; 293 1.1 tsubai 294 1.15 tsubai zc = (channel == 0) ? &zsd->zs_chan_a : &zsd->zs_chan_b; 295 1.15 tsubai 296 1.1 tsubai cs->cs_reg_csr = &zc->zc_csr; 297 1.1 tsubai cs->cs_reg_data = &zc->zc_data; 298 1.1 tsubai 299 1.18 wiz memcpy(cs->cs_creg, zs_init_reg, 16); 300 1.18 wiz memcpy(cs->cs_preg, zs_init_reg, 16); 301 1.1 tsubai 302 1.1 tsubai /* Current BAUD rate generator clock. */ 303 1.11 mycroft cs->cs_brg_clk = PCLK / 16; /* RTxC is 230400*16, so use 230400 */ 304 1.13 tsubai if (zsc_args.hwflags & ZS_HWFLAG_CONSOLE) 305 1.13 tsubai cs->cs_defspeed = zs_get_speed(cs); 306 1.13 tsubai else 307 1.31 chs cs->cs_defspeed = zs_defspeed[channel]; 308 1.1 tsubai cs->cs_defcflag = zs_def_cflag; 309 1.1 tsubai 310 1.1 tsubai /* Make these correspond to cs_defcflag (-crtscts) */ 311 1.1 tsubai cs->cs_rr0_dcd = ZSRR0_DCD; 312 1.1 tsubai cs->cs_rr0_cts = 0; 313 1.1 tsubai cs->cs_wr5_dtr = ZSWR5_DTR; 314 1.1 tsubai cs->cs_wr5_rts = 0; 315 1.1 tsubai 316 1.1 tsubai #ifdef __notyet__ 317 1.1 tsubai cs->cs_slave_type = ZS_SLAVE_NONE; 318 1.1 tsubai #endif 319 1.1 tsubai 320 1.1 tsubai /* Define BAUD rate stuff. */ 321 1.11 mycroft xcs->cs_clocks[0].clk = PCLK; 322 1.7 wrstuden xcs->cs_clocks[0].flags = ZSC_RTXBRG | ZSC_RTXDIV; 323 1.1 tsubai xcs->cs_clocks[1].flags = 324 1.1 tsubai ZSC_RTXBRG | ZSC_RTXDIV | ZSC_VARIABLE | ZSC_EXTERN; 325 1.1 tsubai xcs->cs_clocks[2].flags = ZSC_TRXDIV | ZSC_VARIABLE; 326 1.1 tsubai xcs->cs_clock_count = 3; 327 1.1 tsubai if (channel == 0) { 328 1.1 tsubai theflags = 0; /*mac68k_machine.modem_flags;*/ 329 1.6 tsubai /*xcs->cs_clocks[1].clk = mac68k_machine.modem_dcd_clk;*/ 330 1.6 tsubai /*xcs->cs_clocks[2].clk = mac68k_machine.modem_cts_clk;*/ 331 1.6 tsubai xcs->cs_clocks[1].clk = 0; 332 1.1 tsubai xcs->cs_clocks[2].clk = 0; 333 1.1 tsubai } else { 334 1.1 tsubai theflags = 0; /*mac68k_machine.print_flags;*/ 335 1.1 tsubai xcs->cs_clocks[1].flags = ZSC_VARIABLE; 336 1.1 tsubai /* 337 1.1 tsubai * Yes, we aren't defining ANY clock source enables for the 338 1.1 tsubai * printer's DCD clock in. The hardware won't let us 339 1.1 tsubai * use it. But a clock will freak out the chip, so we 340 1.1 tsubai * let you set it, telling us to bar interrupts on the line. 341 1.1 tsubai */ 342 1.6 tsubai /*xcs->cs_clocks[1].clk = mac68k_machine.print_dcd_clk;*/ 343 1.6 tsubai /*xcs->cs_clocks[2].clk = mac68k_machine.print_cts_clk;*/ 344 1.6 tsubai xcs->cs_clocks[1].clk = 0; 345 1.1 tsubai xcs->cs_clocks[2].clk = 0; 346 1.1 tsubai } 347 1.1 tsubai if (xcs->cs_clocks[1].clk) 348 1.1 tsubai zsc_args.hwflags |= ZS_HWFLAG_NO_DCD; 349 1.1 tsubai if (xcs->cs_clocks[2].clk) 350 1.1 tsubai zsc_args.hwflags |= ZS_HWFLAG_NO_CTS; 351 1.1 tsubai 352 1.1 tsubai /* Set defaults in our "extended" chanstate. */ 353 1.1 tsubai xcs->cs_csource = 0; 354 1.1 tsubai xcs->cs_psource = 0; 355 1.1 tsubai xcs->cs_cclk_flag = 0; /* Nothing fancy by default */ 356 1.1 tsubai xcs->cs_pclk_flag = 0; 357 1.1 tsubai 358 1.1 tsubai if (theflags & ZSMAC_RAW) { 359 1.1 tsubai zsc_args.hwflags |= ZS_HWFLAG_RAW; 360 1.1 tsubai printf(" (raw defaults)"); 361 1.1 tsubai } 362 1.1 tsubai 363 1.1 tsubai /* 364 1.1 tsubai * XXX - This might be better done with a "stub" driver 365 1.1 tsubai * (to replace zstty) that ignores LocalTalk for now. 366 1.1 tsubai */ 367 1.1 tsubai if (theflags & ZSMAC_LOCALTALK) { 368 1.1 tsubai printf(" shielding from LocalTalk"); 369 1.1 tsubai cs->cs_defspeed = 1; 370 1.1 tsubai cs->cs_creg[ZSRR_BAUDLO] = cs->cs_preg[ZSRR_BAUDLO] = 0xff; 371 1.1 tsubai cs->cs_creg[ZSRR_BAUDHI] = cs->cs_preg[ZSRR_BAUDHI] = 0xff; 372 1.1 tsubai zs_write_reg(cs, ZSRR_BAUDLO, 0xff); 373 1.1 tsubai zs_write_reg(cs, ZSRR_BAUDHI, 0xff); 374 1.1 tsubai /* 375 1.1 tsubai * If we might have LocalTalk, then make sure we have the 376 1.1 tsubai * Baud rate low-enough to not do any damage. 377 1.1 tsubai */ 378 1.1 tsubai } 379 1.1 tsubai 380 1.1 tsubai /* 381 1.1 tsubai * We used to disable chip interrupts here, but we now 382 1.1 tsubai * do that in zscnprobe, just in case MacOS left the chip on. 383 1.1 tsubai */ 384 1.1 tsubai 385 1.1 tsubai xcs->cs_chip = chip; 386 1.1 tsubai 387 1.1 tsubai /* Stash away a copy of the final H/W flags. */ 388 1.1 tsubai xcs->cs_hwflags = zsc_args.hwflags; 389 1.1 tsubai 390 1.1 tsubai /* 391 1.1 tsubai * Look for a child driver for this channel. 392 1.1 tsubai * The child attach will setup the hardware. 393 1.1 tsubai */ 394 1.52 thorpej if (!config_found(self, (void *)&zsc_args, zsc_print, 395 1.53 thorpej CFARGS_NONE)) { 396 1.1 tsubai /* No sub-driver. Just reset it. */ 397 1.46 tsutsui uint8_t reset = (channel == 0) ? 398 1.1 tsubai ZSWR9_A_RESET : ZSWR9_B_RESET; 399 1.1 tsubai s = splzs(); 400 1.1 tsubai zs_write_reg(cs, 9, reset); 401 1.1 tsubai splx(s); 402 1.1 tsubai } 403 1.1 tsubai } 404 1.1 tsubai 405 1.1 tsubai /* XXX - Now safe to install interrupt handlers. */ 406 1.51 rin for (channel = 0; channel < 2; channel++) { 407 1.51 rin snprintf(intr_xname, sizeof(intr_xname), "%s pio%d", 408 1.51 rin device_xname(self), channel); 409 1.51 rin intr_establish_xname(intr[channel][0], IST_EDGE, IPL_TTY, 410 1.51 rin zshard, zsc, intr_xname); 411 1.1 tsubai #ifdef ZS_TXDMA 412 1.51 rin snprintf(intr_xname, sizeof(intr_xname), "%s dma%d", 413 1.51 rin device_xname(self), channel); 414 1.51 rin intr_establish_xname(intr[channel][1], IST_EDGE, IPL_TTY, 415 1.51 rin zs_txdma_int, (void *)channel, intr_xname); 416 1.1 tsubai #endif 417 1.51 rin } 418 1.1 tsubai 419 1.45 ad zsc->zsc_si = softint_establish(SOFTINT_SERIAL, 420 1.29 matt (void (*)(void *)) zsc_intr_soft, zsc); 421 1.29 matt 422 1.1 tsubai /* 423 1.1 tsubai * Set the master interrupt enable and interrupt vector. 424 1.1 tsubai * (common to both channels, do it on A) 425 1.1 tsubai */ 426 1.1 tsubai cs = zsc->zsc_cs[0]; 427 1.1 tsubai s = splzs(); 428 1.1 tsubai /* interrupt vector */ 429 1.1 tsubai zs_write_reg(cs, 2, zs_init_reg[2]); 430 1.1 tsubai /* master interrupt control (enable) */ 431 1.1 tsubai zs_write_reg(cs, 9, zs_init_reg[9]); 432 1.1 tsubai splx(s); 433 1.1 tsubai } 434 1.1 tsubai 435 1.1 tsubai static int 436 1.30 chs zsc_print(void *aux, const char *name) 437 1.1 tsubai { 438 1.1 tsubai struct zsc_attach_args *args = aux; 439 1.1 tsubai 440 1.1 tsubai if (name != NULL) 441 1.24 thorpej aprint_normal("%s: ", name); 442 1.1 tsubai 443 1.1 tsubai if (args->channel != -1) 444 1.24 thorpej aprint_normal(" channel %d", args->channel); 445 1.1 tsubai 446 1.1 tsubai return UNCONF; 447 1.6 tsubai } 448 1.6 tsubai 449 1.6 tsubai int 450 1.42 christos zsmdioctl(struct zs_chanstate *cs, u_long cmd, void *data) 451 1.6 tsubai { 452 1.6 tsubai switch (cmd) { 453 1.6 tsubai default: 454 1.20 atatat return (EPASSTHROUGH); 455 1.6 tsubai } 456 1.6 tsubai return (0); 457 1.6 tsubai } 458 1.6 tsubai 459 1.6 tsubai void 460 1.30 chs zsmd_setclock(struct zs_chanstate *cs) 461 1.6 tsubai { 462 1.16 matt #ifdef NOTYET 463 1.6 tsubai struct xzs_chanstate *xcs = (void *)cs; 464 1.6 tsubai 465 1.6 tsubai if (cs->cs_channel != 0) 466 1.6 tsubai return; 467 1.6 tsubai 468 1.6 tsubai /* 469 1.6 tsubai * If the new clock has the external bit set, then select the 470 1.6 tsubai * external source. 471 1.6 tsubai */ 472 1.16 matt via_set_modem((xcs->cs_pclk_flag & ZSC_EXTERN) ? 1 : 0); 473 1.16 matt #endif 474 1.1 tsubai } 475 1.1 tsubai 476 1.1 tsubai int 477 1.30 chs zshard(void *arg) 478 1.1 tsubai { 479 1.30 chs struct zsc_softc *zsc; 480 1.39 tsutsui int rval; 481 1.1 tsubai 482 1.39 tsutsui zsc = arg; 483 1.39 tsutsui rval = zsc_intr_hard(zsc); 484 1.39 tsutsui if ((zsc->zsc_cs[0]->cs_softreq) || (zsc->zsc_cs[1]->cs_softreq)) 485 1.45 ad softint_schedule(zsc->zsc_si); 486 1.39 tsutsui 487 1.39 tsutsui return rval; 488 1.1 tsubai } 489 1.1 tsubai 490 1.1 tsubai #ifdef ZS_TXDMA 491 1.1 tsubai int 492 1.30 chs zs_txdma_int(void *arg) 493 1.1 tsubai { 494 1.1 tsubai int ch = (int)arg; 495 1.1 tsubai struct zsc_softc *zsc; 496 1.1 tsubai struct zs_chanstate *cs; 497 1.1 tsubai 498 1.47 cegger zsc = device_lookup_private(&zsc_cd, ch); 499 1.1 tsubai if (zsc == NULL) 500 1.1 tsubai panic("zs_txdma_int"); 501 1.1 tsubai 502 1.1 tsubai cs = zsc->zsc_cs[ch]; 503 1.1 tsubai zstty_txdma_int(cs); 504 1.1 tsubai 505 1.38 tsutsui if (cs->cs_softreq) 506 1.45 ad softint_schedule(zsc->zsc_si); 507 1.38 tsutsui 508 1.1 tsubai return 1; 509 1.1 tsubai } 510 1.1 tsubai 511 1.1 tsubai void 512 1.42 christos zs_dma_setup(struct zs_chanstate *cs, void *pa, int len) 513 1.1 tsubai { 514 1.1 tsubai struct zsc_softc *zsc; 515 1.1 tsubai dbdma_command_t *cmdp; 516 1.1 tsubai int ch = cs->cs_channel; 517 1.1 tsubai 518 1.47 cegger zsc = device_lookup_private(&zsc_cd, ch); 519 1.1 tsubai cmdp = zsc->zsc_txdmacmd[ch]; 520 1.1 tsubai 521 1.1 tsubai DBDMA_BUILD(cmdp, DBDMA_CMD_OUT_LAST, 0, len, kvtop(pa), 522 1.1 tsubai DBDMA_INT_ALWAYS, DBDMA_WAIT_NEVER, DBDMA_BRANCH_NEVER); 523 1.1 tsubai cmdp++; 524 1.1 tsubai DBDMA_BUILD(cmdp, DBDMA_CMD_STOP, 0, 0, 0, 525 1.1 tsubai DBDMA_INT_NEVER, DBDMA_WAIT_NEVER, DBDMA_BRANCH_NEVER); 526 1.1 tsubai 527 1.56 riastrad __asm volatile("eieio" ::: "memory"); 528 1.1 tsubai 529 1.1 tsubai dbdma_start(zsc->zsc_txdmareg[ch], zsc->zsc_txdmacmd[ch]); 530 1.1 tsubai } 531 1.1 tsubai #endif 532 1.1 tsubai 533 1.1 tsubai /* 534 1.13 tsubai * Compute the current baud rate given a ZS channel. 535 1.13 tsubai * XXX Assume internal BRG. 536 1.1 tsubai */ 537 1.1 tsubai int 538 1.30 chs zs_get_speed(struct zs_chanstate *cs) 539 1.1 tsubai { 540 1.13 tsubai int tconst; 541 1.1 tsubai 542 1.13 tsubai tconst = zs_read_reg(cs, 12); 543 1.13 tsubai tconst |= zs_read_reg(cs, 13) << 8; 544 1.13 tsubai return TCONST_TO_BPS(cs->cs_brg_clk, tconst); 545 1.1 tsubai } 546 1.13 tsubai 547 1.13 tsubai #ifndef ZS_TOLERANCE 548 1.13 tsubai #define ZS_TOLERANCE 51 549 1.13 tsubai /* 5% in tenths of a %, plus 1 so that exactly 5% will be ok. */ 550 1.13 tsubai #endif 551 1.1 tsubai 552 1.1 tsubai /* 553 1.1 tsubai * Search through the signal sources in the channel, and 554 1.1 tsubai * pick the best one for the baud rate requested. Return 555 1.1 tsubai * a -1 if not achievable in tolerance. Otherwise return 0 556 1.1 tsubai * and fill in the values. 557 1.1 tsubai * 558 1.1 tsubai * This routine draws inspiration from the Atari port's zs.c 559 1.1 tsubai * driver in NetBSD 1.1 which did the same type of source switching. 560 1.1 tsubai * Tolerance code inspired by comspeed routine in isa/com.c. 561 1.1 tsubai * 562 1.1 tsubai * By Bill Studenmund, 1996-05-12 563 1.1 tsubai */ 564 1.1 tsubai int 565 1.30 chs zs_set_speed(struct zs_chanstate *cs, int bps) 566 1.1 tsubai { 567 1.1 tsubai struct xzs_chanstate *xcs = (void *) cs; 568 1.1 tsubai int i, tc, tc0 = 0, tc1, s, sf = 0; 569 1.1 tsubai int src, rate0, rate1, err, tol; 570 1.1 tsubai 571 1.1 tsubai if (bps == 0) 572 1.1 tsubai return (0); 573 1.1 tsubai 574 1.1 tsubai src = -1; /* no valid source yet */ 575 1.1 tsubai tol = ZS_TOLERANCE; 576 1.1 tsubai 577 1.1 tsubai /* 578 1.1 tsubai * Step through all the sources and see which one matches 579 1.1 tsubai * the best. A source has to match BETTER than tol to be chosen. 580 1.1 tsubai * Thus if two sources give the same error, the first one will be 581 1.54 andvar * chosen. Also, allow for the possibility that one source might run 582 1.1 tsubai * both the BRG and the direct divider (i.e. RTxC). 583 1.1 tsubai */ 584 1.1 tsubai for (i = 0; i < xcs->cs_clock_count; i++) { 585 1.1 tsubai if (xcs->cs_clocks[i].clk <= 0) 586 1.17 wiz continue; /* skip non-existent or bad clocks */ 587 1.1 tsubai if (xcs->cs_clocks[i].flags & ZSC_BRG) { 588 1.1 tsubai /* check out BRG at /16 */ 589 1.1 tsubai tc1 = BPS_TO_TCONST(xcs->cs_clocks[i].clk >> 4, bps); 590 1.1 tsubai if (tc1 >= 0) { 591 1.1 tsubai rate1 = TCONST_TO_BPS(xcs->cs_clocks[i].clk >> 4, tc1); 592 1.1 tsubai err = abs(((rate1 - bps)*1000)/bps); 593 1.1 tsubai if (err < tol) { 594 1.1 tsubai tol = err; 595 1.1 tsubai src = i; 596 1.1 tsubai sf = xcs->cs_clocks[i].flags & ~ZSC_DIV; 597 1.1 tsubai tc0 = tc1; 598 1.1 tsubai rate0 = rate1; 599 1.1 tsubai } 600 1.1 tsubai } 601 1.1 tsubai } 602 1.1 tsubai if (xcs->cs_clocks[i].flags & ZSC_DIV) { 603 1.1 tsubai /* 604 1.1 tsubai * Check out either /1, /16, /32, or /64 605 1.1 tsubai * Note: for /1, you'd better be using a synchronized 606 1.1 tsubai * clock! 607 1.1 tsubai */ 608 1.1 tsubai int b0 = xcs->cs_clocks[i].clk, e0 = abs(b0-bps); 609 1.1 tsubai int b1 = b0 >> 4, e1 = abs(b1-bps); 610 1.1 tsubai int b2 = b1 >> 1, e2 = abs(b2-bps); 611 1.1 tsubai int b3 = b2 >> 1, e3 = abs(b3-bps); 612 1.1 tsubai 613 1.1 tsubai if (e0 < e1 && e0 < e2 && e0 < e3) { 614 1.1 tsubai err = e0; 615 1.1 tsubai rate1 = b0; 616 1.1 tsubai tc1 = ZSWR4_CLK_X1; 617 1.1 tsubai } else if (e0 > e1 && e1 < e2 && e1 < e3) { 618 1.1 tsubai err = e1; 619 1.1 tsubai rate1 = b1; 620 1.1 tsubai tc1 = ZSWR4_CLK_X16; 621 1.1 tsubai } else if (e0 > e2 && e1 > e2 && e2 < e3) { 622 1.1 tsubai err = e2; 623 1.1 tsubai rate1 = b2; 624 1.1 tsubai tc1 = ZSWR4_CLK_X32; 625 1.1 tsubai } else { 626 1.1 tsubai err = e3; 627 1.1 tsubai rate1 = b3; 628 1.1 tsubai tc1 = ZSWR4_CLK_X64; 629 1.1 tsubai } 630 1.1 tsubai 631 1.1 tsubai err = (err * 1000)/bps; 632 1.1 tsubai if (err < tol) { 633 1.1 tsubai tol = err; 634 1.1 tsubai src = i; 635 1.1 tsubai sf = xcs->cs_clocks[i].flags & ~ZSC_BRG; 636 1.1 tsubai tc0 = tc1; 637 1.1 tsubai rate0 = rate1; 638 1.1 tsubai } 639 1.1 tsubai } 640 1.1 tsubai } 641 1.1 tsubai #ifdef ZSMACDEBUG 642 1.58 andvar printf("Checking for rate %d. Found source #%d.\n", bps, src); 643 1.1 tsubai #endif 644 1.1 tsubai if (src == -1) 645 1.1 tsubai return (EINVAL); /* no can do */ 646 1.1 tsubai 647 1.1 tsubai /* 648 1.1 tsubai * The M.I. layer likes to keep cs_brg_clk current, even though 649 1.1 tsubai * we are the only ones who should be touching the BRG's rate. 650 1.1 tsubai * 651 1.1 tsubai * Note: we are assuming that any ZSC_EXTERN signal source comes in 652 1.1 tsubai * on the RTxC pin. Correct for the mac68k obio zsc. 653 1.1 tsubai */ 654 1.1 tsubai if (sf & ZSC_EXTERN) 655 1.1 tsubai cs->cs_brg_clk = xcs->cs_clocks[i].clk >> 4; 656 1.1 tsubai else 657 1.11 mycroft cs->cs_brg_clk = PCLK / 16; 658 1.1 tsubai 659 1.1 tsubai /* 660 1.1 tsubai * Now we have a source, so set it up. 661 1.1 tsubai */ 662 1.1 tsubai s = splzs(); 663 1.1 tsubai xcs->cs_psource = src; 664 1.1 tsubai xcs->cs_pclk_flag = sf; 665 1.1 tsubai bps = rate0; 666 1.1 tsubai if (sf & ZSC_BRG) { 667 1.1 tsubai cs->cs_preg[4] = ZSWR4_CLK_X16; 668 1.1 tsubai cs->cs_preg[11]= ZSWR11_RXCLK_BAUD | ZSWR11_TXCLK_BAUD; 669 1.1 tsubai if (sf & ZSC_PCLK) { 670 1.1 tsubai cs->cs_preg[14] = ZSWR14_BAUD_ENA | ZSWR14_BAUD_FROM_PCLK; 671 1.1 tsubai } else { 672 1.1 tsubai cs->cs_preg[14] = ZSWR14_BAUD_ENA; 673 1.1 tsubai } 674 1.1 tsubai tc = tc0; 675 1.1 tsubai } else { 676 1.1 tsubai cs->cs_preg[4] = tc0; 677 1.1 tsubai if (sf & ZSC_RTXDIV) { 678 1.1 tsubai cs->cs_preg[11] = ZSWR11_RXCLK_RTXC | ZSWR11_TXCLK_RTXC; 679 1.1 tsubai } else { 680 1.1 tsubai cs->cs_preg[11] = ZSWR11_RXCLK_TRXC | ZSWR11_TXCLK_TRXC; 681 1.1 tsubai } 682 1.1 tsubai cs->cs_preg[14]= 0; 683 1.1 tsubai tc = 0xffff; 684 1.1 tsubai } 685 1.1 tsubai /* Set the BAUD rate divisor. */ 686 1.1 tsubai cs->cs_preg[12] = tc; 687 1.1 tsubai cs->cs_preg[13] = tc >> 8; 688 1.1 tsubai splx(s); 689 1.1 tsubai 690 1.1 tsubai #ifdef ZSMACDEBUG 691 1.58 andvar printf("Rate is %7d, tc is %7d, source no. %2d, flags %4x\n", 692 1.1 tsubai bps, tc, src, sf); 693 1.57 andvar printf("Registers are: 4 %x, 11 %x, 14 %x\n\n", 694 1.58 andvar cs->cs_preg[4], cs->cs_preg[11], cs->cs_preg[14]); 695 1.1 tsubai #endif 696 1.1 tsubai 697 1.1 tsubai cs->cs_preg[5] |= ZSWR5_RTS; /* Make sure the drivers are on! */ 698 1.1 tsubai 699 1.1 tsubai /* Caller will stuff the pending registers. */ 700 1.1 tsubai return (0); 701 1.1 tsubai } 702 1.1 tsubai 703 1.1 tsubai int 704 1.30 chs zs_set_modes(struct zs_chanstate *cs, int cflag) 705 1.1 tsubai { 706 1.1 tsubai struct xzs_chanstate *xcs = (void*)cs; 707 1.1 tsubai int s; 708 1.1 tsubai 709 1.1 tsubai /* 710 1.1 tsubai * Make sure we don't enable hfc on a signal line we're ignoring. 711 1.1 tsubai * As we enable CTS interrupts only if we have CRTSCTS or CDTRCTS, 712 1.54 andvar * this code also effectively turns off ZSWR15_CTS_IE. 713 1.1 tsubai * 714 1.1 tsubai * Also, disable DCD interrupts if we've been told to ignore 715 1.1 tsubai * the DCD pin. Happens on mac68k because the input line for 716 1.1 tsubai * DCD can also be used as a clock input. (Just set CLOCAL.) 717 1.1 tsubai * 718 1.1 tsubai * If someone tries to turn an invalid flow mode on, Just Say No 719 1.1 tsubai * (Suggested by gwr) 720 1.1 tsubai */ 721 1.1 tsubai if ((cflag & CDTRCTS) && (cflag & (CRTSCTS | MDMBUF))) 722 1.1 tsubai return (EINVAL); 723 1.1 tsubai if (xcs->cs_hwflags & ZS_HWFLAG_NO_DCD) { 724 1.1 tsubai if (cflag & MDMBUF) 725 1.1 tsubai return (EINVAL); 726 1.1 tsubai cflag |= CLOCAL; 727 1.1 tsubai } 728 1.1 tsubai if ((xcs->cs_hwflags & ZS_HWFLAG_NO_CTS) && (cflag & (CRTSCTS | CDTRCTS))) 729 1.1 tsubai return (EINVAL); 730 1.1 tsubai 731 1.1 tsubai /* 732 1.1 tsubai * Output hardware flow control on the chip is horrendous: 733 1.1 tsubai * if carrier detect drops, the receiver is disabled, and if 734 1.54 andvar * CTS drops, the transmitter is stopped IN MID CHARACTER! 735 1.1 tsubai * Therefore, NEVER set the HFC bit, and instead use the 736 1.1 tsubai * status interrupt to detect CTS changes. 737 1.1 tsubai */ 738 1.1 tsubai s = splzs(); 739 1.1 tsubai if ((cflag & (CLOCAL | MDMBUF)) != 0) 740 1.1 tsubai cs->cs_rr0_dcd = 0; 741 1.1 tsubai else 742 1.1 tsubai cs->cs_rr0_dcd = ZSRR0_DCD; 743 1.1 tsubai /* 744 1.1 tsubai * The mac hardware only has one output, DTR (HSKo in Mac 745 1.1 tsubai * parlance). In HFC mode, we use it for the functions 746 1.1 tsubai * typically served by RTS and DTR on other ports, so we 747 1.1 tsubai * have to fake the upper layer out some. 748 1.1 tsubai * 749 1.1 tsubai * CRTSCTS we use CTS as an input which tells us when to shut up. 750 1.1 tsubai * We make no effort to shut up the other side of the connection. 751 1.1 tsubai * DTR is used to hang up the modem. 752 1.1 tsubai * 753 1.1 tsubai * In CDTRCTS, we use CTS to tell us to stop, but we use DTR to 754 1.1 tsubai * shut up the other side. 755 1.1 tsubai */ 756 1.1 tsubai if ((cflag & CRTSCTS) != 0) { 757 1.1 tsubai cs->cs_wr5_dtr = ZSWR5_DTR; 758 1.1 tsubai cs->cs_wr5_rts = 0; 759 1.1 tsubai cs->cs_rr0_cts = ZSRR0_CTS; 760 1.1 tsubai } else if ((cflag & CDTRCTS) != 0) { 761 1.1 tsubai cs->cs_wr5_dtr = 0; 762 1.1 tsubai cs->cs_wr5_rts = ZSWR5_DTR; 763 1.1 tsubai cs->cs_rr0_cts = ZSRR0_CTS; 764 1.1 tsubai } else if ((cflag & MDMBUF) != 0) { 765 1.1 tsubai cs->cs_wr5_dtr = 0; 766 1.1 tsubai cs->cs_wr5_rts = ZSWR5_DTR; 767 1.1 tsubai cs->cs_rr0_cts = ZSRR0_DCD; 768 1.1 tsubai } else { 769 1.1 tsubai cs->cs_wr5_dtr = ZSWR5_DTR; 770 1.1 tsubai cs->cs_wr5_rts = 0; 771 1.1 tsubai cs->cs_rr0_cts = 0; 772 1.1 tsubai } 773 1.1 tsubai splx(s); 774 1.1 tsubai 775 1.1 tsubai /* Caller will stuff the pending registers. */ 776 1.1 tsubai return (0); 777 1.1 tsubai } 778 1.1 tsubai 779 1.1 tsubai 780 1.1 tsubai /* 781 1.1 tsubai * Read or write the chip with suitable delays. 782 1.1 tsubai * MacII hardware has the delay built in. 783 1.1 tsubai * No need for extra delay. :-) However, some clock-chirped 784 1.1 tsubai * macs, or zsc's on serial add-on boards might need it. 785 1.1 tsubai */ 786 1.1 tsubai #define ZS_DELAY() 787 1.1 tsubai 788 1.46 tsutsui uint8_t 789 1.46 tsutsui zs_read_reg(struct zs_chanstate *cs, uint8_t reg) 790 1.1 tsubai { 791 1.46 tsutsui uint8_t val; 792 1.1 tsubai 793 1.1 tsubai out8(cs->cs_reg_csr, reg); 794 1.1 tsubai ZS_DELAY(); 795 1.1 tsubai val = in8(cs->cs_reg_csr); 796 1.1 tsubai ZS_DELAY(); 797 1.1 tsubai return val; 798 1.1 tsubai } 799 1.1 tsubai 800 1.1 tsubai void 801 1.46 tsutsui zs_write_reg(struct zs_chanstate *cs, uint8_t reg, uint8_t val) 802 1.1 tsubai { 803 1.1 tsubai out8(cs->cs_reg_csr, reg); 804 1.1 tsubai ZS_DELAY(); 805 1.1 tsubai out8(cs->cs_reg_csr, val); 806 1.1 tsubai ZS_DELAY(); 807 1.1 tsubai } 808 1.1 tsubai 809 1.46 tsutsui uint8_t 810 1.30 chs zs_read_csr(struct zs_chanstate *cs) 811 1.1 tsubai { 812 1.46 tsutsui uint8_t val; 813 1.1 tsubai 814 1.1 tsubai val = in8(cs->cs_reg_csr); 815 1.1 tsubai ZS_DELAY(); 816 1.1 tsubai /* make up for the fact CTS is wired backwards */ 817 1.1 tsubai val ^= ZSRR0_CTS; 818 1.1 tsubai return val; 819 1.1 tsubai } 820 1.1 tsubai 821 1.30 chs void 822 1.46 tsutsui zs_write_csr(struct zs_chanstate *cs, uint8_t val) 823 1.1 tsubai { 824 1.1 tsubai /* Note, the csr does not write CTS... */ 825 1.1 tsubai out8(cs->cs_reg_csr, val); 826 1.1 tsubai ZS_DELAY(); 827 1.1 tsubai } 828 1.1 tsubai 829 1.46 tsutsui uint8_t 830 1.30 chs zs_read_data(struct zs_chanstate *cs) 831 1.1 tsubai { 832 1.46 tsutsui uint8_t val; 833 1.1 tsubai 834 1.1 tsubai val = in8(cs->cs_reg_data); 835 1.1 tsubai ZS_DELAY(); 836 1.1 tsubai return val; 837 1.1 tsubai } 838 1.1 tsubai 839 1.30 chs void 840 1.46 tsutsui zs_write_data(struct zs_chanstate *cs, uint8_t val) 841 1.1 tsubai { 842 1.1 tsubai out8(cs->cs_reg_data, val); 843 1.1 tsubai ZS_DELAY(); 844 1.1 tsubai } 845 1.1 tsubai 846 1.1 tsubai /**************************************************************** 847 1.1 tsubai * Console support functions (powermac specific!) 848 1.1 tsubai * Note: this code is allowed to know about the layout of 849 1.1 tsubai * the chip registers, and uses that to keep things simple. 850 1.1 tsubai * XXX - I think I like the mvme167 code better. -gwr 851 1.1 tsubai * XXX - Well :-P :-) -wrs 852 1.1 tsubai ****************************************************************/ 853 1.1 tsubai 854 1.4 tsubai static int stdin, stdout; 855 1.4 tsubai 856 1.1 tsubai /* 857 1.1 tsubai * Console functions. 858 1.1 tsubai */ 859 1.1 tsubai 860 1.1 tsubai /* 861 1.1 tsubai * zscnprobe is the routine which gets called as the kernel is trying to 862 1.1 tsubai * figure out where the console should be. Each io driver which might 863 1.1 tsubai * be the console (as defined in mac68k/conf.c) gets probed. The probe 864 1.1 tsubai * fills in the consdev structure. Important parts are the device #, 865 1.1 tsubai * and the console priority. Values are CN_DEAD (don't touch me), 866 1.1 tsubai * CN_NORMAL (I'm here, but elsewhere might be better), CN_INTERNAL 867 1.1 tsubai * (the video, better than CN_NORMAL), and CN_REMOTE (pick me!) 868 1.1 tsubai * 869 1.1 tsubai * As the mac's a bit different, we do extra work here. We mainly check 870 1.1 tsubai * to see if we have serial echo going on. Also chould check for default 871 1.1 tsubai * speeds. 872 1.1 tsubai */ 873 1.1 tsubai 874 1.1 tsubai /* 875 1.1 tsubai * Polled input char. 876 1.1 tsubai */ 877 1.1 tsubai int 878 1.30 chs zs_getc(void *v) 879 1.1 tsubai { 880 1.30 chs volatile struct zschan *zc = v; 881 1.30 chs int s, c, rr0; 882 1.1 tsubai 883 1.1 tsubai s = splhigh(); 884 1.1 tsubai /* Wait for a character to arrive. */ 885 1.1 tsubai do { 886 1.1 tsubai rr0 = in8(&zc->zc_csr); 887 1.1 tsubai ZS_DELAY(); 888 1.1 tsubai } while ((rr0 & ZSRR0_RX_READY) == 0); 889 1.1 tsubai 890 1.1 tsubai c = in8(&zc->zc_data); 891 1.1 tsubai ZS_DELAY(); 892 1.1 tsubai splx(s); 893 1.1 tsubai 894 1.1 tsubai /* 895 1.1 tsubai * This is used by the kd driver to read scan codes, 896 1.1 tsubai * so don't translate '\r' ==> '\n' here... 897 1.1 tsubai */ 898 1.1 tsubai return (c); 899 1.1 tsubai } 900 1.1 tsubai 901 1.1 tsubai /* 902 1.1 tsubai * Polled output char. 903 1.1 tsubai */ 904 1.1 tsubai void 905 1.30 chs zs_putc(void *v, int c) 906 1.1 tsubai { 907 1.30 chs volatile struct zschan *zc = v; 908 1.30 chs int s, rr0; 909 1.30 chs long wait = 0; 910 1.1 tsubai 911 1.1 tsubai s = splhigh(); 912 1.1 tsubai /* Wait for transmitter to become ready. */ 913 1.1 tsubai do { 914 1.1 tsubai rr0 = in8(&zc->zc_csr); 915 1.1 tsubai ZS_DELAY(); 916 1.1 tsubai } while (((rr0 & ZSRR0_TX_READY) == 0) && (wait++ < 1000000)); 917 1.1 tsubai 918 1.1 tsubai if ((rr0 & ZSRR0_TX_READY) != 0) { 919 1.1 tsubai out8(&zc->zc_data, c); 920 1.1 tsubai ZS_DELAY(); 921 1.1 tsubai } 922 1.1 tsubai splx(s); 923 1.1 tsubai } 924 1.1 tsubai 925 1.1 tsubai 926 1.1 tsubai /* 927 1.1 tsubai * Polled console input putchar. 928 1.1 tsubai */ 929 1.1 tsubai int 930 1.30 chs zscngetc(dev_t dev) 931 1.1 tsubai { 932 1.30 chs volatile struct zschan *zc = zs_conschan; 933 1.30 chs int c; 934 1.1 tsubai 935 1.4 tsubai if (zc) { 936 1.33 matt c = zs_getc(__UNVOLATILE(zc)); 937 1.4 tsubai } else { 938 1.4 tsubai char ch = 0; 939 1.4 tsubai OF_read(stdin, &ch, 1); 940 1.4 tsubai c = ch; 941 1.4 tsubai } 942 1.4 tsubai return c; 943 1.1 tsubai } 944 1.1 tsubai 945 1.1 tsubai /* 946 1.1 tsubai * Polled console output putchar. 947 1.1 tsubai */ 948 1.1 tsubai void 949 1.30 chs zscnputc(dev_t dev, int c) 950 1.1 tsubai { 951 1.30 chs volatile struct zschan *zc = zs_conschan; 952 1.1 tsubai 953 1.4 tsubai if (zc) { 954 1.33 matt zs_putc(__UNVOLATILE(zc), c); 955 1.4 tsubai } else { 956 1.4 tsubai char ch = c; 957 1.4 tsubai OF_write(stdout, &ch, 1); 958 1.4 tsubai } 959 1.1 tsubai } 960 1.1 tsubai 961 1.1 tsubai /* 962 1.1 tsubai * Handle user request to enter kernel debugger. 963 1.1 tsubai */ 964 1.1 tsubai void 965 1.30 chs zs_abort(struct zs_chanstate *cs) 966 1.1 tsubai { 967 1.1 tsubai volatile struct zschan *zc = zs_conschan; 968 1.1 tsubai int rr0; 969 1.30 chs long wait = 0; 970 1.1 tsubai 971 1.1 tsubai if (zs_cons_canabort == 0) 972 1.1 tsubai return; 973 1.1 tsubai 974 1.1 tsubai /* Wait for end of break to avoid PROM abort. */ 975 1.1 tsubai do { 976 1.1 tsubai rr0 = in8(&zc->zc_csr); 977 1.1 tsubai ZS_DELAY(); 978 1.1 tsubai } while ((rr0 & ZSRR0_BREAK) && (wait++ < ZSABORT_DELAY)); 979 1.1 tsubai 980 1.1 tsubai if (wait > ZSABORT_DELAY) { 981 1.1 tsubai zs_cons_canabort = 0; 982 1.1 tsubai /* If we time out, turn off the abort ability! */ 983 1.1 tsubai } 984 1.1 tsubai 985 1.19 dbj #if defined(KGDB) 986 1.19 dbj kgdb_connect(1); 987 1.19 dbj #elif defined(DDB) 988 1.1 tsubai Debugger(); 989 1.1 tsubai #endif 990 1.1 tsubai } 991 1.1 tsubai 992 1.1 tsubai void 993 1.30 chs zscnprobe(struct consdev *cp) 994 1.1 tsubai { 995 1.4 tsubai int chosen, pkg; 996 1.4 tsubai char name[16]; 997 1.4 tsubai 998 1.4 tsubai if ((chosen = OF_finddevice("/chosen")) == -1) 999 1.4 tsubai return; 1000 1.4 tsubai 1001 1.4 tsubai if (OF_getprop(chosen, "stdin", &stdin, sizeof(stdin)) == -1) 1002 1.4 tsubai return; 1003 1.4 tsubai if (OF_getprop(chosen, "stdout", &stdout, sizeof(stdout)) == -1) 1004 1.4 tsubai return; 1005 1.4 tsubai 1006 1.4 tsubai if ((pkg = OF_instance_to_package(stdin)) == -1) 1007 1.4 tsubai return; 1008 1.1 tsubai 1009 1.18 wiz memset(name, 0, sizeof(name)); 1010 1.4 tsubai if (OF_getprop(pkg, "device_type", name, sizeof(name)) == -1) 1011 1.1 tsubai return; 1012 1.1 tsubai 1013 1.4 tsubai if (strcmp(name, "serial") != 0) 1014 1.4 tsubai return; 1015 1.4 tsubai 1016 1.18 wiz memset(name, 0, sizeof(name)); 1017 1.4 tsubai if (OF_getprop(pkg, "name", name, sizeof(name)) == -1) 1018 1.1 tsubai return; 1019 1.1 tsubai 1020 1.4 tsubai cp->cn_pri = CN_REMOTE; 1021 1.1 tsubai } 1022 1.1 tsubai 1023 1.1 tsubai void 1024 1.30 chs zscninit(struct consdev *cp) 1025 1.1 tsubai { 1026 1.15 tsubai int escc, escc_ch, obio, zs_offset; 1027 1.15 tsubai u_int32_t reg[5]; 1028 1.4 tsubai char name[16]; 1029 1.1 tsubai 1030 1.15 tsubai if ((escc_ch = OF_instance_to_package(stdin)) == -1) 1031 1.1 tsubai return; 1032 1.1 tsubai 1033 1.18 wiz memset(name, 0, sizeof(name)); 1034 1.15 tsubai if (OF_getprop(escc_ch, "name", name, sizeof(name)) == -1) 1035 1.1 tsubai return; 1036 1.1 tsubai 1037 1.37 macallan zs_conschannel = strcmp(name, "ch-b") == 0; 1038 1.15 tsubai 1039 1.15 tsubai if (OF_getprop(escc_ch, "reg", reg, sizeof(reg)) < 4) 1040 1.15 tsubai return; 1041 1.15 tsubai zs_offset = reg[0]; 1042 1.15 tsubai 1043 1.15 tsubai escc = OF_parent(escc_ch); 1044 1.15 tsubai obio = OF_parent(escc); 1045 1.15 tsubai 1046 1.15 tsubai if (OF_getprop(obio, "assigned-addresses", reg, sizeof(reg)) < 12) 1047 1.15 tsubai return; 1048 1.15 tsubai zs_conschan = (void *)(reg[2] + zs_offset); 1049 1.1 tsubai } 1050 1.55 martin 1051 1.55 martin #if PMAC_G5 1052 1.55 martin /* 1053 1.55 martin * Do a delayed (now that the device is properly mapped) init of the 1054 1.55 martin * global zs console state, basically the equivalent of calling 1055 1.55 martin * zscnprobe(&consdev_zs); zscninit(&consdev_zs); 1056 1.55 martin * but with the mapped address of the device passed in as zsd. 1057 1.55 martin */ 1058 1.55 martin static void 1059 1.55 martin zscn_delayed_init(struct zsdevice *zsd) 1060 1.55 martin { 1061 1.55 martin int chosen, escc_ch; 1062 1.55 martin char name[16]; 1063 1.55 martin 1064 1.55 martin if ((chosen = OF_finddevice("/chosen")) == -1) 1065 1.55 martin return; 1066 1.55 martin 1067 1.55 martin if (OF_getprop(chosen, "stdin", &stdin, sizeof(stdin)) == -1) 1068 1.55 martin return; 1069 1.55 martin 1070 1.55 martin if (OF_getprop(chosen, "stdout", &stdout, sizeof(stdout)) == -1) 1071 1.55 martin return; 1072 1.55 martin 1073 1.55 martin if ((escc_ch = OF_instance_to_package(stdin)) == -1) 1074 1.55 martin return; 1075 1.55 martin 1076 1.55 martin memset(name, 0, sizeof(name)); 1077 1.55 martin if (OF_getprop(escc_ch, "name", name, sizeof(name)) == -1) 1078 1.55 martin return; 1079 1.55 martin 1080 1.55 martin zs_conschannel = strcmp(name, "ch-b") == 0; 1081 1.55 martin zs_conschan = (zs_conschannel == 0) ? 1082 1.55 martin &zsd->zs_chan_a : 1083 1.55 martin &zsd->zs_chan_b; 1084 1.55 martin cn_tab = &consdev_zs; 1085 1.55 martin } 1086 1.55 martin #endif 1087