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pnpbus.c revision 1.7.18.1
      1 /*	$NetBSD: pnpbus.c,v 1.7.18.1 2008/05/18 12:32:39 yamt Exp $	*/
      2 
      3 /*-
      4  * Copyright (c) 1998 The NetBSD Foundation, Inc.
      5  * All rights reserved.
      6  *
      7  * This code is derived from software contributed to The NetBSD Foundation
      8  * by Tim Rightnour
      9  *
     10  * Redistribution and use in source and binary forms, with or without
     11  * modification, are permitted provided that the following conditions
     12  * are met:
     13  * 1. Redistributions of source code must retain the above copyright
     14  *    notice, this list of conditions and the following disclaimer.
     15  * 2. Redistributions in binary form must reproduce the above copyright
     16  *    notice, this list of conditions and the following disclaimer in the
     17  *    documentation and/or other materials provided with the distribution.
     18  *
     19  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29  * POSSIBILITY OF SUCH DAMAGE.
     30  */
     31 
     32 #include <sys/cdefs.h>
     33 __KERNEL_RCSID(0, "$NetBSD: pnpbus.c,v 1.7.18.1 2008/05/18 12:32:39 yamt Exp $");
     34 
     35 #include <sys/param.h>
     36 #include <sys/systm.h>
     37 #include <sys/device.h>
     38 #include <sys/extent.h>
     39 #include <sys/malloc.h>
     40 
     41 #include <machine/bus.h>
     42 #include <machine/pio.h>
     43 #include <machine/intr.h>
     44 #include <machine/platform.h>
     45 #include <machine/residual.h>
     46 #include <machine/pnp.h>
     47 #include <machine/isa_machdep.h>
     48 #include <machine/chpidpnp.h>
     49 
     50 #include <dev/isa/isareg.h>
     51 
     52 #include <prep/pnpbus/pnpbusvar.h>
     53 
     54 #include "isadma.h"
     55 
     56 static int	pnpbus_match(struct device *, struct cfdata *, void *);
     57 static void	pnpbus_attach(struct device *, struct device *, void *);
     58 static int	pnpbus_print(void *, const char *);
     59 static int	pnpbus_search(struct device *, struct cfdata *,
     60 			      const int *, void *);
     61 
     62 CFATTACH_DECL(pnpbus, sizeof(struct pnpbus_softc),
     63     pnpbus_match, pnpbus_attach, NULL, NULL);
     64 
     65 struct pnpbus_softc *pnpbus_softc;
     66 extern struct cfdriver pnpbus_cd;
     67 
     68 static int
     69 pnpbus_match(struct device *parent, struct cfdata *cf, void *aux)
     70 {
     71 	struct pnpbus_attach_args *paa = aux;
     72 
     73 	if (paa->paa_name != NULL && strcmp(paa->paa_name, "pnpbus") == 0)
     74 		return 1;
     75 	return 0;
     76 }
     77 
     78 static void
     79 pnpbus_attach(struct device *parent, struct device *self, void *aux)
     80 {
     81 	struct pnpbus_softc *sc = (struct pnpbus_softc *)self;
     82 	struct pnpbus_attach_args *paa = aux;
     83 
     84 	aprint_normal("\n");
     85 
     86 	pnpbus_softc = sc;
     87 	sc->sc_ic = paa->paa_ic;
     88 	sc->sc_iot = paa->paa_iot;
     89 	sc->sc_memt = paa->paa_memt;
     90 	sc->sc_dmat = paa->paa_dmat;
     91 
     92 #if NISADMA > 0
     93 	isa_dmainit(sc->sc_ic, sc->sc_iot, sc->sc_dmat, self);
     94 #endif
     95 
     96 	(void)config_search_ia(pnpbus_search, self, "pnpbus", aux);
     97 }
     98 
     99 static int
    100 pnp_newirq(void *v, struct pnpresources *r, int size)
    101 {
    102 	struct _S4_Pack *p = v;
    103 	struct pnpbus_irq *irq;
    104 
    105 	irq = malloc(sizeof(struct pnpbus_irq), M_DEVBUF, M_NOWAIT);
    106 
    107 	irq->mask = le16dec(&p->IRQMask[0]);
    108 
    109 	if (size > 2)
    110 		irq->flags = p->IRQInfo;
    111 	else
    112 		irq->flags = 0x1;
    113 
    114 	SIMPLEQ_INSERT_TAIL(&r->irq, irq, next);
    115 	r->numirq++;
    116 
    117 	return 0;
    118 }
    119 
    120 static int
    121 pnp_newdma(void *v, struct pnpresources *r, int size)
    122 {
    123 	struct _S5_Pack *p = v;
    124 	struct pnpbus_dma *dma;
    125 
    126 	dma = malloc(sizeof(struct pnpbus_dma), M_DEVBUF, M_NOWAIT);
    127 
    128 	dma->mask = le16dec(&p->DMAMask);
    129 	if (size > 2)
    130 		dma->flags = p->DMAInfo;
    131 	else
    132 		dma->flags = 0x01;
    133 
    134 	SIMPLEQ_INSERT_TAIL(&r->dma, dma, next);
    135 	r->numdma++;
    136 
    137 	return 0;
    138 }
    139 
    140 static int
    141 pnp_newioport(void *v, struct pnpresources *r, int size)
    142 {
    143 	struct _S8_Pack *p = v;
    144 	struct pnpbus_io *io;
    145 	uint16_t mask;
    146 
    147 	io = malloc(sizeof(struct pnpbus_io), M_DEVBUF, M_NOWAIT);
    148 	mask = p->IOInfo & ISAAddr16bit ? 0xffff : 0x03ff;
    149 	io->minbase = (p->RangeMin[0] | (p->RangeMin[1] << 8)) & mask;
    150 	io->maxbase = (p->RangeMax[0] | (p->RangeMax[1] << 8)) & mask;
    151 	io->align = p->IOAlign;
    152 	io->len = p->IONum;
    153 	io->flags = p->IOInfo;
    154 
    155 	SIMPLEQ_INSERT_TAIL(&r->io, io, next);
    156 	r->numio++;
    157 
    158 	return 0;
    159 }
    160 
    161 static int
    162 pnp_newfixedioport(void *v, struct pnpresources *r, int size)
    163 {
    164 	struct _S9_Pack *p = v;
    165 	struct pnpbus_io *io;
    166 
    167 	io = malloc(sizeof(struct pnpbus_io), M_DEVBUF, M_NOWAIT);
    168 	io->minbase = (p->Range[0] | (p->Range[1] << 8)) & 0x3ff;
    169 	io->len = p->IONum;
    170 	io->maxbase = -1;
    171 	io->flags = 0;
    172 	io->align = 1;
    173 
    174 	SIMPLEQ_INSERT_TAIL(&r->io, io, next);
    175 	r->numio++;
    176 
    177 	return 0;
    178 }
    179 
    180 static int
    181 pnp_newiomem(void *v, struct pnpresources *r, int size)
    182 {
    183 	struct pnpbus_mem *mem;
    184 	struct _L1_Pack *pack = v;
    185 
    186 	if (pack->Count0 >= 0x9) {
    187 		mem = malloc(sizeof(struct pnpbus_mem), M_DEVBUF, M_NOWAIT);
    188 		mem->minbase = (pack->Data[2] << 16) | (pack->Data[1] << 8);
    189 		mem->maxbase = (pack->Data[4] << 16) | (pack->Data[3] << 8);
    190 		mem->align = (pack->Data[6] << 8) | pack->Data[5];
    191 		mem->len = (pack->Data[8] << 16) | (pack->Data[7] << 8);
    192 		mem->flags = pack->Data[0];
    193 		SIMPLEQ_INSERT_TAIL(&r->iomem, mem, next);
    194 		r->numiomem++;
    195 		return 0;
    196 	}
    197 	return -1;
    198 }
    199 
    200 static int
    201 pnp_newaddr(void *v, struct pnpresources *r, int size)
    202 {
    203 	struct pnpbus_io *io;
    204 	struct pnpbus_mem *mem;
    205 	struct _L4_Pack *pack = v;
    206 	struct _L4_PPCPack *p =  &pack->L4_Data.L4_PPCPack;
    207 
    208 	if (p->PPCData[0] == 1) {/* type IO */
    209 		io = malloc(sizeof(struct pnpbus_io), M_DEVBUF, M_NOWAIT);
    210 		io->minbase = (uint16_t)le64dec(&p->PPCData[4]);
    211 		io->maxbase = -1;
    212 		io->align = p->PPCData[1];
    213 		io->len = (uint16_t)le64dec(&p->PPCData[12]);
    214 		io->flags = 0;
    215 		SIMPLEQ_INSERT_TAIL(&r->io, io, next);
    216 		r->numio++;
    217 
    218 		return 0;
    219 	} else if (p->PPCData[0] == 2) {
    220 		mem = malloc(sizeof(struct pnpbus_mem), M_DEVBUF, M_NOWAIT);
    221 		mem->minbase = (uint32_t)le64dec(&p->PPCData[4]);
    222 		mem->maxbase = -1;
    223 		mem->align = p->PPCData[1];
    224 		mem->len = (uint32_t)le64dec(&p->PPCData[12]);
    225 		mem->flags = 0;
    226 		SIMPLEQ_INSERT_TAIL(&r->mem, mem, next);
    227 		r->nummem++;
    228 
    229 		return 0;
    230 	} else
    231 		return -1;
    232 }
    233 
    234 static int
    235 pnp_newcompatid(void *v, struct pnpresources *r, int size)
    236 {
    237 	struct _S3_Pack *p = v;
    238 	struct pnpbus_compatid *id;
    239 	uint32_t cid;
    240 
    241 	id = malloc(sizeof(*id), M_DEVBUF, M_NOWAIT);
    242 	cid = le32dec(p->CompatId);
    243 	pnp_devid_to_string(cid, id->idstr);
    244 	id->next = r->compatids;
    245 	r->compatids = id;
    246 
    247 	return 0;
    248 }
    249 
    250 /*
    251  * Call if match succeeds.  This way we don't allocate lots of ram
    252  * for structures we never use if the device isn't attached.
    253  */
    254 
    255 int
    256 pnpbus_scan(struct pnpbus_dev_attach_args *pna, PPC_DEVICE *dev)
    257 {
    258 	struct pnpresources *r = &pna->pna_res;
    259 	uint32_t l;
    260 	uint8_t *p, *q;
    261 	void *v;
    262 	int tag, size, item;
    263 
    264 	l = be32toh(dev->AllocatedOffset);
    265 	p = res->DevicePnPHeap + l;
    266 
    267 	if (p == NULL)
    268 		return -1;
    269 
    270 	for (; p[0] != END_TAG; p += size) {
    271 		tag = *p;
    272 		v = p;
    273 		if (tag_type(p[0]) == PNP_SMALL) {
    274 			size = tag_small_count(tag) + 1;
    275 			item = tag_small_item_name(tag);
    276 			switch (item) {
    277 			case IRQFormat:
    278 				pnp_newirq(v, r, size);
    279 				break;
    280 			case DMAFormat:
    281 				pnp_newdma(v, r, size);
    282 				break;
    283 			case IOPort:
    284 				pnp_newioport(v, r, size);
    285 				break;
    286 			case FixedIOPort:
    287 				pnp_newfixedioport(v, r, size);
    288 				break;
    289 			}
    290 		} else {
    291 			struct _L4_Pack *pack = v;
    292 			struct _L4_PPCPack *pa = &pack->L4_Data.L4_PPCPack;
    293 
    294 			q = p;
    295 			size = (q[1] | (q[2] << 8)) + 3 /* tag + length */;
    296 			item = tag_large_item_name(tag);
    297 			if (item == LargeVendorItem &&
    298 			    pa->Type == LV_GenericAddress)
    299 				pnp_newaddr(v, r, size);
    300 			else if (item == MemoryRange)
    301 				pnp_newiomem(v, r, size);
    302 		}
    303 	}
    304 
    305 	/* scan for compatid's */
    306 
    307 	l = be32toh(dev->CompatibleOffset);
    308 	p = res->DevicePnPHeap + l;
    309 
    310 	if (p == NULL)
    311 		return -1;
    312 
    313 	for (; p[0] != END_TAG; p += size) {
    314 		tag = *p;
    315 		v = p;
    316 		if (tag_type(p[0]) == PNP_SMALL) {
    317 			size = tag_small_count(tag) + 1;
    318 			item = tag_small_item_name(tag);
    319 			switch (item) {
    320 			case CompatibleDevice:
    321 				pnp_newcompatid(v, r, size);
    322 				break;
    323 			}
    324 		} else {
    325 			q = p;
    326 			size = (q[1] | (q[2] << 8)) + 3 /* tag + length */;
    327 		}
    328 	}
    329 	return 0;
    330 }
    331 
    332 /*
    333  * Setup the basic pna structure.
    334  */
    335 
    336 static void
    337 pnp_getpna(struct pnpbus_dev_attach_args *pna, struct pnpbus_attach_args *paa,
    338 	PPC_DEVICE *dev)
    339 {
    340 	DEVICE_ID *id = &dev->DeviceId;
    341 	struct pnpresources *r = &pna->pna_res;
    342 	ChipIDPack *pack;
    343 	uint32_t l;
    344 	uint8_t *p;
    345 	void *v;
    346 	int tag, size, item;
    347 
    348 	l = be32toh(dev->AllocatedOffset);
    349 	p = res->DevicePnPHeap + l;
    350 
    351 	pna->pna_iot = paa->paa_iot;
    352 	pna->pna_memt = paa->paa_memt;
    353 	pna->pna_ic = paa->paa_ic;
    354 	pna->pna_dmat = paa->paa_dmat;
    355 	pnp_devid_to_string(id->DevId, pna->pna_devid);
    356 	pna->basetype = id->BaseType;
    357 	pna->subtype = id->SubType;
    358 	pna->interface = id->Interface;
    359 	pna->pna_ppc_dev = dev;
    360 	memset(r, 0, sizeof(*r));
    361 	SIMPLEQ_INIT(&r->mem);
    362 	SIMPLEQ_INIT(&r->io);
    363 	SIMPLEQ_INIT(&r->irq);
    364 	SIMPLEQ_INIT(&r->dma);
    365 	SIMPLEQ_INIT(&r->iomem);
    366 	if (p == NULL)
    367 		return;
    368 	/* otherwise, we start looking for chipid's */
    369 	for (; p[0] != END_TAG; p += size) {
    370 		tag = *p;
    371 		v = p;
    372 		if (tag_type(p[0]) == PNP_SMALL) {
    373 			size = tag_small_count(tag) + 1;
    374 			item = tag_small_item_name(tag);
    375 			if (item != SmallVendorItem || p[1] != 1)
    376 				continue;
    377 			pack = v;
    378 			pna->chipid = le16dec(&pack->Name[0]);
    379 			pna->chipmfg0 = pack->VendorID0;
    380 			pna->chipmfg1 = pack->VendorID1;
    381 			break;
    382 		} else {
    383 			/* Large */
    384 			size = (p[1] | (p[2] << 8)) + 3 /* tag + length */;
    385 		}
    386 	}
    387 }
    388 
    389 static int
    390 pnpbus_search(struct device *parent, struct cfdata *cf,
    391 	    const int *ldesc, void *aux)
    392 {
    393 	struct pnpbus_dev_attach_args pna;
    394 	struct pnpbus_attach_args *paa = aux;
    395 	PPC_DEVICE *ppc_dev;
    396 	int i;
    397 	uint32_t ndev;
    398 
    399 	ndev = be32toh(res->ActualNumDevices);
    400 	ppc_dev = res->Devices;
    401 
    402 	for (i = 0; i < ((ndev > MAX_DEVICES) ? MAX_DEVICES : ndev); i++) {
    403 		pnp_getpna(&pna, paa, &ppc_dev[i]);
    404 		if (config_match(parent, cf, &pna) > 0)
    405 			config_attach(parent, cf, &pna, pnpbus_print);
    406 	}
    407 
    408 	return 0;
    409 }
    410 
    411 static void
    412 pnpbus_printres(struct pnpresources *r)
    413 {
    414 	struct pnpbus_io *io;
    415 	struct pnpbus_mem *mem;
    416 	struct pnpbus_irq *irq;
    417 	struct pnpbus_dma *dma;
    418 	int p = 0;
    419 
    420 	if (!SIMPLEQ_EMPTY(&r->mem)) {
    421 		aprint_normal("mem");
    422 		SIMPLEQ_FOREACH(mem, &r->mem, next) {
    423 			aprint_normal(" 0x%x", mem->minbase);
    424 			if (mem->len > 1)
    425 				aprint_normal("-0x%x",
    426 				    mem->minbase + mem->len - 1);
    427 		}
    428 		p++;
    429 	}
    430 	if (!SIMPLEQ_EMPTY(&r->io)) {
    431 		if (p++)
    432 			aprint_normal(", ");
    433 		aprint_normal("port");
    434 		SIMPLEQ_FOREACH(io, &r->io, next) {
    435 			aprint_normal(" 0x%x", io->minbase);
    436 			if (io->len > 1)
    437 				aprint_normal("-0x%x",
    438 				    io->minbase + io->len - 1);
    439 		}
    440 	}
    441 	if (!SIMPLEQ_EMPTY(&r->iomem)) {
    442 		if (p++)
    443 			aprint_normal(", ");
    444 		aprint_normal("iomem");
    445 		SIMPLEQ_FOREACH(mem, &r->iomem, next) {
    446 			aprint_normal(" 0x%x", mem->minbase);
    447 			if (mem->len > 1)
    448 				aprint_normal("-0x%x",
    449 				    mem->minbase + mem->len - 1);
    450 		}
    451 		p++;
    452 	}
    453 	if (!SIMPLEQ_EMPTY(&r->irq)) {
    454 		if (p++)
    455 			aprint_normal(", ");
    456 		aprint_normal("irq");
    457 		SIMPLEQ_FOREACH(irq, &r->irq, next) {
    458 			aprint_normal(" %d", ffs(irq->mask) - 1);
    459 		}
    460 	}
    461 	if (!SIMPLEQ_EMPTY(&r->dma)) {
    462 		if (p++)
    463 			aprint_normal(", ");
    464 		aprint_normal("DMA");
    465 		SIMPLEQ_FOREACH(dma, &r->dma, next) {
    466 			aprint_normal(" %d", ffs(dma->mask) - 1);
    467 		}
    468 	}
    469 }
    470 
    471 void
    472 pnpbus_print_devres(struct pnpbus_dev_attach_args *pna)
    473 {
    474 	aprint_normal(": ");
    475 	pnpbus_printres(&pna->pna_res);
    476 }
    477 
    478 static int
    479 pnpbus_print(void *args, const char *name)
    480 {
    481 	struct pnpbus_dev_attach_args *pna = args;
    482 
    483 	pnpbus_print_devres(pna);
    484 	return (UNCONF);
    485 }
    486 
    487 /*
    488  * Set up an interrupt handler to start being called.
    489  */
    490 void *
    491 pnpbus_intr_establish(int idx, int level, int tover, int (*ih_fun)(void *),
    492     void *ih_arg, struct pnpresources *r)
    493 {
    494 	struct pnpbus_irq *irq;
    495 	int irqnum, type;
    496 
    497 	if (idx >= r->numirq)
    498 		return 0;
    499 
    500 	irq = SIMPLEQ_FIRST(&r->irq);
    501 	while (idx--)
    502 		irq = SIMPLEQ_NEXT(irq, next);
    503 
    504 	irqnum = ffs(irq->mask) - 1;
    505 	type = (irq->flags & 0x0c) ? IST_LEVEL : IST_EDGE;
    506 	if (tover != IST_PNP)
    507 		type = tover;
    508 
    509 	return (void *)intr_establish(irqnum, type, level, ih_fun, ih_arg);
    510 }
    511 
    512 /*
    513  * Deregister an interrupt handler.
    514  */
    515 void
    516 pnpbus_intr_disestablish(void *arg)
    517 {
    518 
    519 	intr_disestablish(arg);
    520 }
    521 
    522 int
    523 pnpbus_getirqnum(struct pnpresources *r, int idx, int *irqp, int *istp)
    524 {
    525 	struct pnpbus_irq *irq;
    526 
    527 	if (idx >= r->numirq)
    528 		return EINVAL;
    529 
    530 	irq = SIMPLEQ_FIRST(&r->irq);
    531 	while (idx--)
    532 		irq = SIMPLEQ_NEXT(irq, next);
    533 
    534 	if (irqp != NULL)
    535 		*irqp = ffs(irq->mask) - 1;
    536 	if (istp != NULL)
    537 		*istp = (irq->flags &0x0c) ? IST_LEVEL : IST_EDGE;
    538 	return 0;
    539 }
    540 
    541 int
    542 pnpbus_getdmachan(struct pnpresources *r, int idx, int *chanp)
    543 {
    544 	struct pnpbus_dma *dma;
    545 
    546 	if (idx >= r->numdma)
    547 		return EINVAL;
    548 
    549 	dma = SIMPLEQ_FIRST(&r->dma);
    550 	while (idx--)
    551 		dma = SIMPLEQ_NEXT(dma, next);
    552 
    553 	if (chanp != NULL)
    554 		*chanp = ffs(dma->mask) - 1;
    555 	return 0;
    556 }
    557 
    558 int
    559 pnpbus_getioport(struct pnpresources *r, int idx, int *basep, int *sizep)
    560 {
    561 	struct pnpbus_io *io;
    562 
    563 	if (idx >= r->numio)
    564 		return EINVAL;
    565 
    566 	io = SIMPLEQ_FIRST(&r->io);
    567 	while (idx--)
    568 		io = SIMPLEQ_NEXT(io, next);
    569 
    570 	if (basep)
    571 		*basep = io->minbase;
    572 	if (sizep)
    573 		*sizep = io->len;
    574 	return 0;
    575 }
    576 
    577 int
    578 pnpbus_io_map(struct pnpresources *r, int idx, bus_space_tag_t *tagp,
    579     bus_space_handle_t *hdlp)
    580 {
    581 	struct pnpbus_io *io;
    582 
    583 	if (idx >= r->numio)
    584 		return EINVAL;
    585 
    586 	io = SIMPLEQ_FIRST(&r->io);
    587 	while (idx--)
    588 		io = SIMPLEQ_NEXT(io, next);
    589 
    590 	*tagp = &genppc_isa_io_space_tag;
    591 	return (bus_space_map(&genppc_isa_io_space_tag, io->minbase, io->len,
    592 	    0, hdlp));
    593 }
    594 
    595 void
    596 pnpbus_io_unmap(struct pnpresources *r, int idx, bus_space_tag_t tag,
    597     bus_space_handle_t hdl)
    598 {
    599 	struct pnpbus_io *io;
    600 
    601 	if (idx >= r->numio)
    602 		return;
    603 
    604 	io = SIMPLEQ_FIRST(&r->io);
    605 	while (idx--)
    606 		io = SIMPLEQ_NEXT(io, next);
    607 
    608 	bus_space_unmap(tag, hdl, io->len);
    609 }
    610 
    611 int
    612 pnpbus_getiomem(struct pnpresources *r, int idx, int *basep, int *sizep)
    613 {
    614 	struct pnpbus_mem *mem;
    615 
    616 	if (idx >= r->numiomem)
    617 		return EINVAL;
    618 
    619 	mem = SIMPLEQ_FIRST(&r->iomem);
    620 	while (idx--)
    621 		mem = SIMPLEQ_NEXT(mem, next);
    622 
    623 	if (basep)
    624 		*basep = mem->minbase;
    625 	if (sizep)
    626 		*sizep = mem->len;
    627 	return 0;
    628 }
    629 
    630 int
    631 pnpbus_iomem_map(struct pnpresources *r, int idx, bus_space_tag_t *tagp,
    632     bus_space_handle_t *hdlp)
    633 {
    634 	struct pnpbus_mem *mem;
    635 
    636 	if (idx >= r->numiomem)
    637 		return EINVAL;
    638 
    639 	mem = SIMPLEQ_FIRST(&r->iomem);
    640 	while (idx--)
    641 		mem = SIMPLEQ_NEXT(mem, next);
    642 
    643 	*tagp = &genppc_isa_mem_space_tag;
    644 	return (bus_space_map(&genppc_isa_mem_space_tag, mem->minbase, mem->len,
    645 	    0, hdlp));
    646 }
    647 
    648 void
    649 pnpbus_iomem_unmap(struct pnpresources *r, int idx, bus_space_tag_t tag,
    650     bus_space_handle_t hdl)
    651 {
    652 	struct pnpbus_mem *mem;
    653 
    654 	if (idx >= r->numiomem)
    655 		return;
    656 
    657 	mem = SIMPLEQ_FIRST(&r->mem);
    658 	while (idx--)
    659 		mem = SIMPLEQ_NEXT(mem, next);
    660 
    661 	bus_space_unmap(tag, hdl, mem->len);
    662 }
    663