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tlsb.c revision 1.39.2.1
      1  1.39.2.1   thorpej /* $NetBSD: tlsb.c,v 1.39.2.1 2021/08/01 22:42:03 thorpej Exp $ */
      2       1.1       cgd /*
      3       1.2       cgd  * Copyright (c) 1997 by Matthew Jacob
      4       1.1       cgd  * NASA AMES Research Center.
      5       1.1       cgd  * All rights reserved.
      6       1.1       cgd  *
      7       1.1       cgd  * Based in part upon a prototype version by Jason Thorpe
      8      1.13   thorpej  * Copyright (c) 1996, 1998 by Jason Thorpe.
      9       1.1       cgd  *
     10       1.1       cgd  * Redistribution and use in source and binary forms, with or without
     11       1.1       cgd  * modification, are permitted provided that the following conditions
     12       1.1       cgd  * are met:
     13       1.1       cgd  * 1. Redistributions of source code must retain the above copyright
     14       1.1       cgd  *    notice immediately at the beginning of the file, without modification,
     15       1.1       cgd  *    this list of conditions, and the following disclaimer.
     16       1.1       cgd  * 2. Redistributions in binary form must reproduce the above copyright
     17       1.1       cgd  *    notice, this list of conditions and the following disclaimer in the
     18       1.1       cgd  *    documentation and/or other materials provided with the distribution.
     19       1.1       cgd  * 3. The name of the author may not be used to endorse or promote products
     20       1.1       cgd  *    derived from this software without specific prior written permission.
     21       1.1       cgd  *
     22       1.1       cgd  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
     23       1.1       cgd  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     24       1.1       cgd  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     25       1.1       cgd  * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR
     26       1.1       cgd  * ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     27       1.1       cgd  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     28       1.1       cgd  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     29       1.1       cgd  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     30       1.1       cgd  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     31       1.1       cgd  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     32       1.1       cgd  * SUCH DAMAGE.
     33       1.1       cgd  */
     34       1.1       cgd 
     35       1.1       cgd /*
     36       1.1       cgd  * Autoconfiguration and support routines for the TurboLaser System Bus
     37       1.1       cgd  * found on AlphaServer 8200 and 8400 systems.
     38       1.1       cgd  */
     39       1.3       cgd 
     40       1.4       cgd #include <sys/cdefs.h>			/* RCS ID & Copyright macro defns */
     41       1.4       cgd 
     42  1.39.2.1   thorpej __KERNEL_RCSID(0, "$NetBSD: tlsb.c,v 1.39.2.1 2021/08/01 22:42:03 thorpej Exp $");
     43      1.13   thorpej 
     44      1.13   thorpej #include "opt_multiprocessor.h"
     45       1.1       cgd 
     46       1.1       cgd #include <sys/param.h>
     47       1.1       cgd #include <sys/systm.h>
     48       1.1       cgd #include <sys/device.h>
     49       1.1       cgd 
     50       1.1       cgd #include <machine/autoconf.h>
     51      1.19   thorpej #include <machine/cpu.h>
     52      1.20   thorpej #include <machine/cpuvar.h>
     53       1.1       cgd #include <machine/rpb.h>
     54       1.1       cgd #include <machine/pte.h>
     55      1.15      ross #include <machine/alpha.h>
     56      1.13   thorpej 
     57       1.1       cgd #include <alpha/tlsb/tlsbreg.h>
     58       1.1       cgd #include <alpha/tlsb/tlsbvar.h>
     59       1.1       cgd 
     60       1.5       jtk #include "locators.h"
     61       1.1       cgd 
     62      1.32  christos #define KV(_addr)	((void *)ALPHA_PHYS_TO_K0SEG((_addr)))
     63       1.1       cgd 
     64      1.35      matt static int	tlsbmatch(device_t, cfdata_t, void *);
     65      1.35      matt static void	tlsbattach(device_t, device_t, void *);
     66       1.7   thorpej 
     67      1.35      matt CFATTACH_DECL_NEW(tlsb, 0,
     68      1.25   thorpej     tlsbmatch, tlsbattach, NULL, NULL);
     69       1.1       cgd 
     70       1.7   thorpej extern struct cfdriver tlsb_cd;
     71       1.1       cgd 
     72      1.33       dsl static int	tlsbprint(void *, const char *);
     73      1.37      matt static const char *tlsb_node_type_str(uint32_t);
     74       1.1       cgd 
     75      1.12    mjacob /*
     76      1.12    mjacob  * There can be only one TurboLaser, and we'll overload it
     77      1.12    mjacob  * with a bitmap of found turbo laser nodes. Note that
     78      1.12    mjacob  * these are just the actual hard TL node IDS that we
     79      1.12    mjacob  * discover here, not the virtual IDs that get assigned
     80      1.12    mjacob  * to CPUs. During TLSB specific error handling we
     81      1.12    mjacob  * only need to know which actual TLSB slots have boards
     82      1.12    mjacob  * in them (irrespective of how many CPUs they have).
     83      1.12    mjacob  */
     84       1.9   thorpej int	tlsb_found;
     85       1.9   thorpej 
     86       1.1       cgd static int
     87      1.34       dsl tlsbprint(void *aux, const char *pnp)
     88       1.1       cgd {
     89       1.1       cgd 	struct tlsb_dev_attach_args *tap = aux;
     90       1.9   thorpej 
     91       1.9   thorpej 	if (pnp)
     92      1.26   thorpej 		aprint_normal("%s at %s node %d",
     93      1.26   thorpej 		    tlsb_node_type_str(tap->ta_dtype), pnp, tap->ta_node);
     94       1.9   thorpej 	else
     95      1.26   thorpej 		aprint_normal(" node %d: %s", tap->ta_node,
     96       1.9   thorpej 		    tlsb_node_type_str(tap->ta_dtype));
     97       1.9   thorpej 
     98       1.1       cgd 	return (UNCONF);
     99       1.1       cgd }
    100       1.1       cgd 
    101       1.1       cgd static int
    102      1.35      matt tlsbmatch(device_t parent, cfdata_t cf, void *aux)
    103       1.1       cgd {
    104      1.10   thorpej 	struct mainbus_attach_args *ma = aux;
    105       1.1       cgd 
    106       1.1       cgd 	/* Make sure we're looking for a TurboLaser. */
    107      1.10   thorpej 	if (strcmp(ma->ma_name, tlsb_cd.cd_name) != 0)
    108       1.1       cgd 		return (0);
    109       1.1       cgd 
    110       1.1       cgd 	/*
    111       1.1       cgd 	 * Only one instance of TurboLaser allowed,
    112       1.1       cgd 	 * and only available on 21000 processor type
    113       1.1       cgd 	 * platforms.
    114       1.1       cgd 	 */
    115       1.9   thorpej 	if ((cputype != ST_DEC_21000) || tlsb_found)
    116       1.1       cgd 		return (0);
    117       1.1       cgd 
    118       1.1       cgd 	return (1);
    119       1.1       cgd }
    120       1.1       cgd 
    121       1.1       cgd static void
    122      1.35      matt tlsbattach(device_t parent, device_t self, void *aux)
    123       1.1       cgd {
    124       1.1       cgd 	struct tlsb_dev_attach_args ta;
    125      1.37      matt 	uint32_t tldev;
    126       1.1       cgd 	int node;
    127      1.29  drochner 	int locs[TLSBCF_NLOCS];
    128       1.1       cgd 
    129       1.1       cgd 	printf("\n");
    130       1.1       cgd 
    131       1.1       cgd 	/*
    132       1.1       cgd 	 * Attempt to find all devices on the bus, including
    133       1.1       cgd 	 * CPUs, memory modules, and I/O modules.
    134       1.1       cgd 	 */
    135       1.1       cgd 
    136       1.1       cgd 	/*
    137       1.1       cgd 	 * Sigh. I would like to just start off nicely,
    138       1.1       cgd 	 * but I need to treat I/O modules differently-
    139       1.1       cgd 	 * The highest priority I/O node has to be in
    140       1.1       cgd 	 * node #8, and I want to find it *first*, since
    141       1.1       cgd 	 * it will have the primary disks (most likely)
    142       1.1       cgd 	 * on it.
    143       1.1       cgd 	 */
    144       1.1       cgd 	for (node = 0; node <= TLSB_NODE_MAX; ++node) {
    145       1.1       cgd 		/*
    146       1.1       cgd 		 * Check for invalid address.  This may not really
    147       1.1       cgd 		 * be necessary, but what the heck...
    148       1.1       cgd 		 */
    149      1.37      matt 		if (badaddr(TLSB_NODE_REG_ADDR(node, TLDEV), sizeof(uint32_t)))
    150       1.1       cgd 			continue;
    151       1.1       cgd 		tldev = TLSB_GET_NODEREG(node, TLDEV);
    152       1.1       cgd 		if (tldev == 0) {
    153       1.1       cgd 			/* Nothing at this node. */
    154       1.1       cgd 			continue;
    155       1.1       cgd 		}
    156      1.11    mjacob 		/*
    157      1.11    mjacob 		 * Store up that we found something at this node.
    158      1.11    mjacob 		 * We do this so that we don't have to do something
    159      1.11    mjacob 		 * silly at fault time like try a 'baddadr'...
    160      1.11    mjacob 		 */
    161      1.11    mjacob 		tlsb_found |= (1 << node);
    162       1.1       cgd 		if (TLDEV_ISIOPORT(tldev))
    163       1.1       cgd 			continue;	/* not interested right now */
    164       1.1       cgd 		ta.ta_node = node;
    165       1.1       cgd 		ta.ta_dtype = TLDEV_DTYPE(tldev);
    166       1.1       cgd 		ta.ta_swrev = TLDEV_SWREV(tldev);
    167       1.1       cgd 		ta.ta_hwrev = TLDEV_HWREV(tldev);
    168       1.1       cgd 
    169       1.1       cgd 		/*
    170       1.1       cgd 		 * Deal with hooking CPU instances to TurboLaser nodes.
    171       1.1       cgd 		 */
    172       1.1       cgd 		if (TLDEV_ISCPU(tldev)) {
    173      1.36      matt 			aprint_normal("%s node %d: %s\n", device_xname(self),
    174       1.1       cgd 			    node, tlsb_node_type_str(tldev));
    175       1.1       cgd 		}
    176       1.1       cgd 		/*
    177      1.13   thorpej 		 * Attach any children nodes, including a CPU's GBus
    178       1.1       cgd 		 */
    179      1.29  drochner 		locs[TLSBCF_NODE] = node;
    180      1.29  drochner 		locs[TLSBCF_OFFSET] = 0; /* XXX unused? */
    181      1.27  drochner 
    182      1.39   thorpej 		config_found(self, &ta, tlsbprint,
    183      1.39   thorpej 		    CFARG_SUBMATCH, config_stdsubmatch,
    184      1.39   thorpej 		    CFARG_LOCATORS, locs,
    185      1.39   thorpej 		    CFARG_EOL);
    186       1.1       cgd 	}
    187       1.1       cgd 	/*
    188       1.1       cgd 	 * *Now* search for I/O nodes (in descending order)
    189       1.1       cgd 	 */
    190       1.1       cgd 	while (--node > 0) {
    191      1.37      matt 		if (badaddr(TLSB_NODE_REG_ADDR(node, TLDEV), sizeof(uint32_t)))
    192       1.1       cgd 			continue;
    193       1.1       cgd 		tldev = TLSB_GET_NODEREG(node, TLDEV);
    194       1.1       cgd 		if (tldev == 0) {
    195       1.1       cgd 			continue;
    196       1.1       cgd 		}
    197       1.1       cgd 		if (TLDEV_ISIOPORT(tldev)) {
    198      1.13   thorpej #if defined(MULTIPROCESSOR)
    199      1.13   thorpej 			/*
    200      1.13   thorpej 			 * XXX Eventually, we want to select a secondary
    201      1.13   thorpej 			 * XXX processor on which to field interrupts for
    202      1.13   thorpej 			 * XXX this node.  However, we just send them to
    203      1.13   thorpej 			 * XXX the primary CPU for now.
    204      1.13   thorpej 			 *
    205      1.13   thorpej 			 * XXX Maybe multiple CPUs?  Does the hardware
    206      1.13   thorpej 			 * XXX round-robin, or check the length of the
    207      1.13   thorpej 			 * XXX per-CPU interrupt queue?
    208      1.13   thorpej 			 */
    209      1.13   thorpej 			printf("%s node %d: routing interrupts to %s\n",
    210      1.36      matt 			  device_xname(self), node,
    211      1.36      matt 			  device_xname(cpu_info[hwrpb->rpb_primary_cpu_id]->ci_softc->sc_dev));
    212      1.13   thorpej 			TLSB_PUT_NODEREG(node, TLCPUMASK,
    213      1.13   thorpej 			    (1UL << hwrpb->rpb_primary_cpu_id));
    214      1.13   thorpej #else
    215      1.13   thorpej 			/*
    216      1.17   thorpej 			 * Make sure interrupts are sent to the primary CPU.
    217      1.13   thorpej 			 */
    218      1.13   thorpej 			TLSB_PUT_NODEREG(node, TLCPUMASK,
    219      1.13   thorpej 			    (1UL << hwrpb->rpb_primary_cpu_id));
    220      1.13   thorpej #endif /* MULTIPROCESSOR */
    221      1.13   thorpej 
    222       1.1       cgd 			ta.ta_node = node;
    223       1.1       cgd 			ta.ta_dtype = TLDEV_DTYPE(tldev);
    224       1.1       cgd 			ta.ta_swrev = TLDEV_SWREV(tldev);
    225       1.1       cgd 			ta.ta_hwrev = TLDEV_HWREV(tldev);
    226      1.27  drochner 
    227      1.29  drochner 			locs[TLSBCF_NODE] = node;
    228      1.29  drochner 			locs[TLSBCF_OFFSET] = 0; /* XXX unused? */
    229      1.27  drochner 
    230      1.39   thorpej 			config_found(self, &ta, tlsbprint,
    231      1.39   thorpej 			    CFARG_SUBMATCH, config_stdsubmatch,
    232      1.39   thorpej 			    CFARG_LOCATORS, locs,
    233      1.39   thorpej 			    CFARG_EOL);
    234       1.1       cgd 		}
    235       1.1       cgd 	}
    236       1.1       cgd }
    237       1.1       cgd 
    238      1.28  drochner static const char *
    239      1.37      matt tlsb_node_type_str(uint32_t dtype)
    240       1.1       cgd {
    241       1.1       cgd 	static char	tlsb_line[64];
    242       1.1       cgd 
    243       1.1       cgd 	switch (dtype & TLDEV_DTYPE_MASK) {
    244       1.1       cgd 	case TLDEV_DTYPE_KFTHA:
    245       1.1       cgd 		return ("KFTHA I/O interface");
    246       1.1       cgd 
    247       1.1       cgd 	case TLDEV_DTYPE_KFTIA:
    248       1.1       cgd 		return ("KFTIA I/O interface");
    249       1.1       cgd 
    250       1.1       cgd 	case TLDEV_DTYPE_MS7CC:
    251       1.1       cgd 		return ("MS7CC Memory Module");
    252       1.1       cgd 
    253       1.1       cgd 	case TLDEV_DTYPE_SCPU4:
    254       1.1       cgd 		return ("Single CPU, 4MB cache");
    255       1.1       cgd 
    256       1.1       cgd 	case TLDEV_DTYPE_SCPU16:
    257       1.1       cgd 		return ("Single CPU, 16MB cache");
    258       1.1       cgd 
    259       1.1       cgd 	case TLDEV_DTYPE_DCPU4:
    260       1.1       cgd 		return ("Dual CPU, 4MB cache");
    261       1.1       cgd 
    262       1.1       cgd 	case TLDEV_DTYPE_DCPU16:
    263       1.1       cgd 		return ("Dual CPU, 16MB cache");
    264       1.1       cgd 
    265       1.1       cgd 	default:
    266      1.38  christos 		snprintf(tlsb_line, sizeof(tlsb_line), "unknown, dtype 0x%x",
    267      1.38  christos 		    dtype);
    268       1.1       cgd 		return (tlsb_line);
    269       1.1       cgd 	}
    270       1.1       cgd 	/* NOTREACHED */
    271       1.1       cgd }
    272