ka88.c revision 1.16
11.16Smatt/* $NetBSD: ka88.c,v 1.16 2011/06/05 16:59:21 matt Exp $ */ 21.1Sragge 31.1Sragge/* 41.1Sragge * Copyright (c) 2000 Ludd, University of Lule}, Sweden. All rights reserved. 51.1Sragge * 61.1Sragge * Redistribution and use in source and binary forms, with or without 71.1Sragge * modification, are permitted provided that the following conditions 81.1Sragge * are met: 91.1Sragge * 1. Redistributions of source code must retain the above copyright 101.1Sragge * notice, this list of conditions and the following disclaimer. 111.1Sragge * 2. Redistributions in binary form must reproduce the above copyright 121.1Sragge * notice, this list of conditions and the following disclaimer in the 131.1Sragge * documentation and/or other materials provided with the distribution. 141.1Sragge * 3. All advertising materials mentioning features or use of this software 151.1Sragge * must display the following acknowledgement: 161.1Sragge * This product includes software developed at Ludd, University of 171.1Sragge * Lule}, Sweden and its contributors. 181.1Sragge * 4. The name of the author may not be used to endorse or promote products 191.1Sragge * derived from this software without specific prior written permission 201.1Sragge * 211.1Sragge * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 221.1Sragge * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 231.1Sragge * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 241.1Sragge * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 251.1Sragge * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 261.1Sragge * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 271.1Sragge * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 281.1Sragge * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 291.1Sragge * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 301.1Sragge * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 311.1Sragge */ 321.1Sragge 331.1Sragge/* 341.1Sragge * KA88 specific CPU code. 351.1Sragge */ 361.1Sragge/* 371.1Sragge * TODO: 381.1Sragge * - Machine check code 391.1Sragge */ 401.6Slukem 411.6Slukem#include <sys/cdefs.h> 421.16Smatt__KERNEL_RCSID(0, "$NetBSD: ka88.c,v 1.16 2011/06/05 16:59:21 matt Exp $"); 431.1Sragge 441.1Sragge#include "opt_multiprocessor.h" 451.1Sragge 461.1Sragge#include <sys/param.h> 471.1Sragge#include <sys/systm.h> 481.15Smatt#include <sys/bus.h> 491.13Smatt#include <sys/cpu.h> 501.15Smatt#include <sys/device.h> 511.15Smatt#include <sys/kernel.h> 521.13Smatt#include <sys/malloc.h> 531.13Smatt#include <sys/lwp.h> 541.1Sragge 551.1Sragge#include <machine/nexus.h> 561.1Sragge#include <machine/clock.h> 571.1Sragge#include <machine/scb.h> 581.1Sragge#include <machine/sid.h> 591.1Sragge#include <machine/rpb.h> 601.1Sragge#include <machine/ka88.h> 611.1Sragge 621.13Smatt#include <dev/cons.h> 631.1Sragge#include <vax/vax/gencons.h> 641.1Sragge 651.1Sragge#include "ioconf.h" 661.1Sragge#include "locators.h" 671.1Sragge 681.1Sraggestatic void ka88_memerr(void); 691.1Sraggestatic void ka88_conf(void); 701.11Schristosstatic int ka88_mchk(void *); 711.1Sraggestatic void ka88_steal_pages(void); 721.10Smattstatic int ka88_gettime(volatile struct timeval *); 731.10Smattstatic void ka88_settime(volatile struct timeval *); 741.1Sraggestatic void ka88_badaddr(void); 751.13Smatt 761.13Smattstatic long *ka88_mcl; 771.13Smattstatic int mastercpu; 781.13Smatt 791.13Smattstatic const char * const ka88_devs[] = { "nmi", NULL }; 801.13Smatt 811.13Smattconst struct cpu_dep ka88_calls = { 821.13Smatt .cpu_steal_pages = ka88_steal_pages, 831.13Smatt .cpu_mchk = ka88_mchk, 841.13Smatt .cpu_memerr = ka88_memerr, 851.13Smatt .cpu_conf = ka88_conf, 861.13Smatt .cpu_gettime = ka88_gettime, 871.13Smatt .cpu_settime = ka88_settime, 881.13Smatt .cpu_vups = 6, /* ~VUPS */ 891.13Smatt .cpu_scbsz = 64, /* SCB pages */ 901.13Smatt .cpu_devs = ka88_devs, 911.13Smatt .cpu_badaddr = ka88_badaddr, 921.13Smatt}; 931.13Smatt 941.1Sragge#if defined(MULTIPROCESSOR) 951.13Smattstatic void ka88_startslave(struct cpu_info *); 961.7Shestatic void ka88_txrx(int, const char *, int); 971.7Shestatic void ka88_sendstr(int, const char *); 981.1Sraggestatic void ka88_sergeant(int); 991.1Sraggestatic int rxchar(void); 1001.1Sraggestatic void ka88_putc(int); 1011.1Sraggestatic void ka88_cnintr(void); 1021.1Sraggecons_decl(gen); 1031.1Sragge 1041.13Smattconst struct cpu_mp_dep ka88_mp_calls = { 1051.13Smatt .cpu_startslave = ka88_startslave, 1061.13Smatt .cpu_cnintr = ka88_cnintr, 1071.13Smatt}; 1081.1Sragge#endif 1091.1Sragge 1101.1Sraggestatic void 1111.1Sraggeka88_conf(void) 1121.1Sragge{ 1131.1Sragge ka88_mcl = (void *)vax_map_physmem(0x3e000000, 1); 1141.1Sragge printf("Serial number %d, rev %d\n", 1151.1Sragge mfpr(PR_SID) & 65535, (mfpr(PR_SID) >> 16) & 127); 1161.13Smatt#ifdef MULTIPROCESSOR 1171.13Smatt mp_dep_call = &ka88_mp_calls; 1181.13Smatt#endif 1191.1Sragge} 1201.1Sragge 1211.1Sraggestatic int 1221.13Smattka88_cpu_match(device_t parent, cfdata_t cf, void *aux) 1231.1Sragge{ 1241.13Smatt struct nmi_attach_args * const na = aux; 1251.1Sragge 1261.1Sragge if (cf->cf_loc[NMICF_SLOT] != NMICF_SLOT_DEFAULT && 1271.13Smatt cf->cf_loc[NMICF_SLOT] != na->na_slot) 1281.1Sragge return 0; 1291.13Smatt if (na->na_slot >= 20) 1301.1Sragge return 1; 1311.1Sragge return 0; 1321.1Sragge} 1331.1Sragge 1341.1Sraggestatic void 1351.13Smattka88_cpu_attach(device_t parent, device_t self, void *aux) 1361.1Sragge{ 1371.13Smatt struct cpu_info *ci; 1381.13Smatt struct nmi_attach_args * const na = aux; 1391.13Smatt const char *ms, *lr; 1401.13Smatt const bool master = (na->na_slot == mastercpu); 1411.1Sragge 1421.13Smatt if (((ka88_confdata & KA88_LEFTPRIM) && master) || 1431.13Smatt ((ka88_confdata & KA88_LEFTPRIM) == 0 && !master)) 1441.1Sragge lr = "left"; 1451.1Sragge else 1461.1Sragge lr = "right"; 1471.13Smatt ms = (master ? "master" : "slave"); 1481.1Sragge 1491.13Smatt aprint_normal(": KA88 %s %s\n", lr, ms); 1501.13Smatt if (!master) { 1511.1Sragge#if defined(MULTIPROCESSOR) 1521.1Sragge v_putc = ka88_putc; /* Need special console handling */ 1531.13Smatt cpu_slavesetup(self, na->na_slot); 1541.1Sragge#endif 1551.1Sragge return; 1561.1Sragge } 1571.13Smatt ci = curcpu(); 1581.13Smatt self->dv_private = ci; 1591.13Smatt ci->ci_dev = self; 1601.13Smatt ci->ci_cpuid = device_unit(self); 1611.13Smatt ci->ci_slotid = na->na_slot; 1621.1Sragge} 1631.1Sragge 1641.13SmattCFATTACH_DECL_NEW(cpu_nmi, 0, 1651.13Smatt ka88_cpu_match, ka88_cpu_attach, NULL, NULL); 1661.1Sragge 1671.1Sraggestruct mem_nmi_softc { 1681.16Smatt device_t sc_dev; 1691.1Sragge bus_space_tag_t sc_iot; 1701.1Sragge bus_space_handle_t sc_ioh; 1711.1Sragge}; 1721.1Sragge 1731.1Sraggestatic int 1741.13Smattms88_match(device_t parent, cfdata_t cf, void *aux) 1751.1Sragge{ 1761.13Smatt struct nmi_attach_args * const na = aux; 1771.1Sragge 1781.1Sragge if (cf->cf_loc[NMICF_SLOT] != NMICF_SLOT_DEFAULT && 1791.13Smatt cf->cf_loc[NMICF_SLOT] != na->na_slot) 1801.1Sragge return 0; 1811.13Smatt if (na->na_slot != 10) 1821.1Sragge return 0; 1831.1Sragge return 1; 1841.1Sragge} 1851.1Sragge 1861.1Sraggestatic void 1871.13Smattms88_attach(device_t parent, device_t self, void *aux) 1881.1Sragge{ 1891.13Smatt struct nmi_attach_args * const na = aux; 1901.13Smatt struct mem_nmi_softc * const sc = device_private(self); 1911.13Smatt 1921.13Smatt aprint_normal("\n"); 1931.13Smatt 1941.13Smatt sc->sc_dev = self; 1951.13Smatt sc->sc_iot = na->na_iot; 1961.1Sragge} 1971.1Sragge 1981.13SmattCFATTACH_DECL_NEW(mem_nmi, sizeof(struct mem_nmi_softc), 1991.5Sthorpej ms88_match, ms88_attach, NULL, NULL); 2001.1Sragge 2011.1Sraggestatic void 2021.1Sraggeka88_badaddr(void) 2031.1Sragge{ 2041.1Sragge volatile int hej; 2051.1Sragge /* 2061.1Sragge * This is some magic to clear the NMI faults, described 2071.1Sragge * in section 7.9 in the VAX 8800 System Maintenance Guide. 2081.1Sragge */ 2091.1Sragge hej = ka88_mcl[5]; 2101.1Sragge hej = ka88_mcl[0]; 2111.1Sragge ka88_mcl[0] = 0x04000000; 2121.1Sragge mtpr(1, 0x88); 2131.1Sragge} 2141.1Sragge 2151.1Sraggestatic void 2161.13Smattka88_memerr(void) 2171.1Sragge{ 2181.1Sragge printf("ka88_memerr\n"); 2191.1Sragge} 2201.1Sragge 2211.1Sraggestruct mc88frame { 2221.1Sragge int mc64_summary; /* summary parameter */ 2231.1Sragge int mc64_va; /* va register */ 2241.1Sragge int mc64_vb; /* memory address */ 2251.1Sragge int mc64_sisr; /* status word */ 2261.1Sragge int mc64_state; /* error pc */ 2271.1Sragge int mc64_sc; /* micro pc */ 2281.1Sragge int mc64_pc; /* current pc */ 2291.1Sragge int mc64_psl; /* current psl */ 2301.1Sragge}; 2311.1Sragge 2321.1Sraggestatic int 2331.11Schristoska88_mchk(void *cmcf) 2341.1Sragge{ 2351.1Sragge return (MCHK_PANIC); 2361.1Sragge} 2371.1Sragge 2381.1Sragge#if defined(MULTIPROCESSOR) 2391.1Sragge#define RXBUF 80 2401.1Sraggestatic char rxbuf[RXBUF]; 2411.1Sraggestatic int got = 0, taken = 0; 2421.1Sraggestatic int expect = 0; 2431.1Sragge#endif 2441.1Sragge#if 0 2451.1Sragge/* 2461.1Sragge * Receive a character from logical console. 2471.1Sragge */ 2481.1Sraggestatic void 2491.1Sraggerxcdintr(void *arg) 2501.1Sragge{ 2511.1Sragge int c = mfpr(PR_RXCD); 2521.1Sragge 2531.1Sragge if (c == 0) 2541.1Sragge return; 2551.1Sragge 2561.1Sragge#if defined(MULTIPROCESSOR) 2571.1Sragge if ((c & 0xff) == 0) { 2581.1Sragge if (curcpu()->ci_flags & CI_MASTERCPU) 2591.1Sragge ka88_cnintr(); 2601.1Sragge return; 2611.1Sragge } 2621.1Sragge 2631.1Sragge if (expect == ((c >> 8) & 0xf)) 2641.1Sragge rxbuf[got++] = c & 0xff; 2651.1Sragge 2661.1Sragge if (got == RXBUF) 2671.1Sragge got = 0; 2681.1Sragge#endif 2691.1Sragge} 2701.1Sragge#endif 2711.1Sragge 2721.1Sraggestatic void 2731.1Sraggetocons(int val) 2741.1Sragge{ 2751.2Sthorpej int s = splhigh(); 2761.1Sragge 2771.1Sragge while ((mfpr(PR_TXCS) & GC_RDY) == 0) /* Wait until xmit ready */ 2781.1Sragge ; 2791.1Sragge mtpr(val, PR_TXDB); /* xmit character */ 2801.1Sragge splx(s); 2811.1Sragge} 2821.1Sragge 2831.1Sraggestatic int 2841.1Sraggefromcons(int func) 2851.1Sragge{ 2861.2Sthorpej int ret, s = splhigh(); 2871.1Sragge 2881.1Sragge while (1) { 2891.1Sragge while ((mfpr(PR_RXCS) & GC_DON) == 0) 2901.1Sragge ; 2911.1Sragge ret = mfpr(PR_RXDB); 2921.1Sragge if ((ret & 0xf00) == func) 2931.1Sragge break; 2941.1Sragge } 2951.1Sragge splx(s); 2961.1Sragge return ret; 2971.1Sragge} 2981.1Sragge 2991.1Sraggestatic int 3001.10Smattka88_gettime(volatile struct timeval *tvp) 3011.1Sragge{ 3021.1Sragge union {u_int ret;u_char r[4];} u; 3031.2Sthorpej int i, s = splhigh(); 3041.1Sragge 3051.1Sragge tocons(KA88_COMM|KA88_TOYREAD); 3061.1Sragge for (i = 0; i < 4; i++) { 3071.1Sragge u.r[i] = fromcons(KA88_TOY) & 255; 3081.1Sragge } 3091.1Sragge splx(s); 3101.10Smatt tvp->tv_sec = u.ret; 3111.10Smatt return 0; 3121.1Sragge} 3131.1Sragge 3141.1Sraggestatic void 3151.10Smattka88_settime(volatile struct timeval *tvp) 3161.1Sragge{ 3171.1Sragge union {u_int ret;u_char r[4];} u; 3181.2Sthorpej int i, s = splhigh(); 3191.1Sragge 3201.10Smatt u.ret = tvp->tv_sec - yeartonum(numtoyear(tvp->tv_sec)); 3211.1Sragge tocons(KA88_COMM|KA88_TOYWRITE); 3221.1Sragge for (i = 0; i < 4; i++) 3231.1Sragge tocons(KA88_TOY|u.r[i]); 3241.1Sragge splx(s); 3251.1Sragge} 3261.1Sragge 3271.1Sraggevoid 3281.1Sraggeka88_steal_pages(void) 3291.1Sragge{ 3301.1Sragge mtpr(1, PR_COR); /* Cache on */ 3311.1Sragge strcpy(cpu_model, "VAX 8800"); 3321.1Sragge tocons(KA88_COMM|KA88_GETCONF); 3331.1Sragge ka88_confdata = fromcons(KA88_CONFDATA); 3341.1Sragge ka88_confdata = mfpr(PR_RXDB); 3351.1Sragge mastercpu = 20; 3361.1Sragge if (vax_cputype == VAX_TYP_8NN) { 3371.1Sragge if (ka88_confdata & KA88_SMALL) { 3381.1Sragge cpu_model[5] = '5'; 3391.1Sragge if (ka88_confdata & KA88_SLOW) { 3401.1Sragge vax_boardtype = VAX_BTYP_8500; 3411.1Sragge cpu_model[6] = '3'; 3421.1Sragge } else { 3431.1Sragge vax_boardtype = VAX_BTYP_8550; 3441.1Sragge cpu_model[6] = '5'; 3451.1Sragge } 3461.1Sragge } else if (ka88_confdata & KA88_SINGLE) { 3471.1Sragge vax_boardtype = VAX_BTYP_8700; 3481.1Sragge cpu_model[5] = '7'; 3491.1Sragge } 3501.1Sragge } 3511.1Sragge} 3521.1Sragge 3531.1Sragge 3541.13Smatt#if defined(MULTIPROCESSOR) 3551.1Sraggeint 3561.13Smattrxchar(void) 3571.1Sragge{ 3581.1Sragge int ret; 3591.1Sragge 3601.1Sragge if (got == taken) 3611.1Sragge return 0; 3621.1Sragge 3631.1Sragge ret = rxbuf[taken++]; 3641.1Sragge if (taken == RXBUF) 3651.1Sragge taken = 0; 3661.1Sragge return ret; 3671.1Sragge} 3681.1Sragge 3691.1Sraggestatic void 3701.13Smattka88_startslave(struct cpu_info *ci) 3711.1Sragge{ 3721.14Srmind const struct pcb *pcb = lwp_getpcb(ci->ci_data.cpu_onproc); 3731.13Smatt const int id = ci->ci_slotid; 3741.1Sragge int i; 3751.1Sragge 3761.13Smatt expect = id; 3771.1Sragge /* First empty queue */ 3781.1Sragge for (i = 0; i < 10000; i++) 3791.1Sragge if (rxchar()) 3801.1Sragge i = 0; 3811.1Sragge ka88_txrx(id, "\020", 0); /* Send ^P to get attention */ 3821.1Sragge ka88_txrx(id, "I\r", 0); /* Init other end */ 3831.1Sragge ka88_txrx(id, "D/I 4 %x\r", ci->ci_istack); /* Interrupt stack */ 3841.1Sragge ka88_txrx(id, "D/I C %x\r", mfpr(PR_SBR)); /* SBR */ 3851.1Sragge ka88_txrx(id, "D/I D %x\r", mfpr(PR_SLR)); /* SLR */ 3861.14Srmind ka88_txrx(id, "D/I 10 %x\r", pcb->pcb_paddr); /* PCB for idle proc */ 3871.1Sragge ka88_txrx(id, "D/I 11 %x\r", mfpr(PR_SCBB)); /* SCB */ 3881.1Sragge ka88_txrx(id, "D/I 38 %x\r", mfpr(PR_MAPEN)); /* Enable MM */ 3891.7She ka88_txrx(id, "S %x\r", (int)&vax_mp_tramp); /* Start! */ 3901.1Sragge expect = 0; 3911.1Sragge for (i = 0; i < 10000; i++) 3921.13Smatt if (ci->ci_flags & CI_RUNNING) 3931.1Sragge break; 3941.1Sragge if (i == 10000) 3951.13Smatt aprint_error_dev(ci->ci_dev, "(ID %d) failed starting!!\n", id); 3961.1Sragge} 3971.1Sragge 3981.1Sraggevoid 3991.7Sheka88_txrx(int id, const char *fmt, int arg) 4001.1Sragge{ 4011.1Sragge char buf[20]; 4021.1Sragge 4031.1Sragge sprintf(buf, fmt, arg); 4041.1Sragge ka88_sendstr(id, buf); 4051.1Sragge ka88_sergeant(id); 4061.1Sragge} 4071.1Sragge 4081.1Sraggevoid 4091.7Sheka88_sendstr(int id, const char *buf) 4101.1Sragge{ 4111.13Smatt u_int utchr; /* Ends up in R11 with PCC */ 4121.1Sragge int ch, i; 4131.1Sragge 4141.1Sragge while (*buf) { 4151.1Sragge utchr = *buf | id << 8; 4161.1Sragge 4171.1Sragge /* 4181.1Sragge * It seems like mtpr to TXCD sets the V flag if it fails. 4191.1Sragge * Cannot check that flag in C... 4201.1Sragge */ 4211.1Sragge#ifdef __GNUC__ 4221.9Sperry __asm("1:;mtpr %0,$92;bvs 1b" :: "g"(utchr)); 4231.1Sragge#else 4241.9Sperry __asm("1:;mtpr r11,$92;bvs 1b"); 4251.1Sragge#endif 4261.1Sragge buf++; 4271.1Sragge i = 30000; 4281.1Sragge while ((ch = rxchar()) == 0 && --i) 4291.1Sragge ; 4301.1Sragge if (ch == 0) 4311.1Sragge continue; /* failed */ 4321.1Sragge } 4331.1Sragge} 4341.1Sragge 4351.1Sraggevoid 4361.1Sraggeka88_sergeant(int id) 4371.1Sragge{ 4381.1Sragge int i, ch, nserg; 4391.1Sragge 4401.1Sragge nserg = 0; 4411.1Sragge for (i = 0; i < 30000; i++) { 4421.1Sragge if ((ch = rxchar()) == 0) 4431.1Sragge continue; 4441.1Sragge if (ch == '>') 4451.1Sragge nserg++; 4461.1Sragge else 4471.1Sragge nserg = 0; 4481.1Sragge i = 0; 4491.1Sragge if (nserg == 3) 4501.1Sragge break; 4511.1Sragge } 4521.1Sragge /* What to do now??? */ 4531.1Sragge} 4541.1Sragge 4551.1Sragge/* 4561.1Sragge * Write to master console. 4571.1Sragge * Need no locking here; done in the print functions. 4581.1Sragge */ 4591.1Sraggestatic volatile int ch = 0; 4601.1Sragge 4611.1Sraggevoid 4621.1Sraggeka88_putc(int c) 4631.1Sragge{ 4641.1Sragge if (curcpu()->ci_flags & CI_MASTERCPU) { 4651.1Sragge gencnputc(0, c); 4661.1Sragge return; 4671.1Sragge } 4681.1Sragge ch = c; 4691.1Sragge mtpr(mastercpu << 8, PR_RXCD); /* Send IPI to mastercpu */ 4701.1Sragge while (ch != 0) 4711.1Sragge ; /* Wait for master to handle */ 4721.1Sragge} 4731.1Sragge 4741.1Sragge/* 4751.1Sragge * Got character IPI. 4761.1Sragge */ 4771.1Sraggevoid 4781.13Smattka88_cnintr(void) 4791.1Sragge{ 4801.1Sragge if (ch != 0) 4811.1Sragge gencnputc(0, ch); 4821.1Sragge ch = 0; /* Release slavecpu */ 4831.1Sragge} 4841.1Sragge#endif 485