bhnd_subr.c revision 298943
1/*-
2 * Copyright (c) 2015 Landon Fuller <landon@landonf.org>
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 * 1. Redistributions of source code must retain the above copyright
9 *    notice, this list of conditions and the following disclaimer,
10 *    without modification.
11 * 2. Redistributions in binary form must reproduce at minimum a disclaimer
12 *    similar to the "NO WARRANTY" disclaimer below ("Disclaimer") and any
13 *    redistribution must be conditioned upon including a substantially
14 *    similar Disclaimer requirement for further binary redistribution.
15 *
16 * NO WARRANTY
17 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
18 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
19 * LIMITED TO, THE IMPLIED WARRANTIES OF NONINFRINGEMENT, MERCHANTIBILITY
20 * AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL
21 * THE COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY,
22 * OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
23 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
24 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
25 * IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
26 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
27 * THE POSSIBILITY OF SUCH DAMAGES.
28 */
29
30#include <sys/cdefs.h>
31__FBSDID("$FreeBSD: head/sys/dev/bhnd/bhnd_subr.c 298943 2016-05-02 21:01:08Z adrian $");
32
33#include <sys/types.h>
34#include <sys/param.h>
35#include <sys/bus.h>
36#include <sys/systm.h>
37
38#include <machine/bus.h>
39#include <sys/rman.h>
40#include <machine/resource.h>
41
42#include <dev/bhnd/cores/chipc/chipcreg.h>
43
44#include "bhndreg.h"
45#include "bhndvar.h"
46
47/* BHND core device description table. */
48static const struct bhnd_core_desc {
49	uint16_t	 vendor;
50	uint16_t	 device;
51	bhnd_devclass_t	 class;
52	const char	*desc;
53} bhnd_core_descs[] = {
54	#define	BHND_CDESC(_mfg, _cid, _cls, _desc)		\
55	    { BHND_MFGID_ ## _mfg, BHND_COREID_ ## _cid,	\
56		BHND_DEVCLASS_ ## _cls, _desc }
57
58	BHND_CDESC(BCM, CC,		CC,		"ChipCommon I/O Controller"),
59	BHND_CDESC(BCM, ILINE20,	OTHER,		"iLine20 HPNA"),
60	BHND_CDESC(BCM, SRAM,		RAM,		"SRAM"),
61	BHND_CDESC(BCM, SDRAM,		RAM,		"SDRAM"),
62	BHND_CDESC(BCM, PCI,		PCI,		"PCI Bridge"),
63	BHND_CDESC(BCM, MIPS,		CPU,		"MIPS Core"),
64	BHND_CDESC(BCM, ENET,		ENET_MAC,	"Fast Ethernet MAC"),
65	BHND_CDESC(BCM, CODEC,		OTHER,		"V.90 Modem Codec"),
66	BHND_CDESC(BCM, USB,		OTHER,		"USB 1.1 Device/Host Controller"),
67	BHND_CDESC(BCM, ADSL,		OTHER,		"ADSL Core"),
68	BHND_CDESC(BCM, ILINE100,	OTHER,		"iLine100 HPNA"),
69	BHND_CDESC(BCM, IPSEC,		OTHER,		"IPsec Accelerator"),
70	BHND_CDESC(BCM, UTOPIA,		OTHER,		"UTOPIA ATM Core"),
71	BHND_CDESC(BCM, PCMCIA,		PCCARD,		"PCMCIA Bridge"),
72	BHND_CDESC(BCM, SOCRAM,		RAM,		"Internal Memory"),
73	BHND_CDESC(BCM, MEMC,		MEMC,		"MEMC SDRAM Controller"),
74	BHND_CDESC(BCM, OFDM,		OTHER,		"OFDM PHY"),
75	BHND_CDESC(BCM, EXTIF,		OTHER,		"External Interface"),
76	BHND_CDESC(BCM, D11,		WLAN,		"802.11 MAC/PHY/Radio"),
77	BHND_CDESC(BCM, APHY,		WLAN_PHY,	"802.11a PHY"),
78	BHND_CDESC(BCM, BPHY,		WLAN_PHY,	"802.11b PHY"),
79	BHND_CDESC(BCM, GPHY,		WLAN_PHY,	"802.11g PHY"),
80	BHND_CDESC(BCM, MIPS33,		CPU,		"MIPS 3302 Core"),
81	BHND_CDESC(BCM, USB11H,		OTHER,		"USB 1.1 Host Controller"),
82	BHND_CDESC(BCM, USB11D,		OTHER,		"USB 1.1 Device Core"),
83	BHND_CDESC(BCM, USB20H,		OTHER,		"USB 2.0 Host Controller"),
84	BHND_CDESC(BCM, USB20D,		OTHER,		"USB 2.0 Device Core"),
85	BHND_CDESC(BCM, SDIOH,		OTHER,		"SDIO Host Controller"),
86	BHND_CDESC(BCM, ROBO,		OTHER,		"RoboSwitch"),
87	BHND_CDESC(BCM, ATA100,		OTHER,		"Parallel ATA Controller"),
88	BHND_CDESC(BCM, SATAXOR,	OTHER,		"SATA DMA/XOR Controller"),
89	BHND_CDESC(BCM, GIGETH,		ENET_MAC,	"Gigabit Ethernet MAC"),
90	BHND_CDESC(BCM, PCIE,		PCIE,		"PCIe Bridge"),
91	BHND_CDESC(BCM, NPHY,		WLAN_PHY,	"802.11n 2x2 PHY"),
92	BHND_CDESC(BCM, SRAMC,		MEMC,		"SRAM Controller"),
93	BHND_CDESC(BCM, MINIMAC,	OTHER,		"MINI MAC/PHY"),
94	BHND_CDESC(BCM, ARM11,		CPU,		"ARM1176 CPU"),
95	BHND_CDESC(BCM, ARM7S,		CPU,		"ARM7TDMI-S CPU"),
96	BHND_CDESC(BCM, LPPHY,		WLAN_PHY,	"802.11a/b/g PHY"),
97	BHND_CDESC(BCM, PMU,		PMU,		"PMU"),
98	BHND_CDESC(BCM, SSNPHY,		WLAN_PHY,	"802.11n Single-Stream PHY"),
99	BHND_CDESC(BCM, SDIOD,		OTHER,		"SDIO Device Core"),
100	BHND_CDESC(BCM, ARMCM3,		CPU,		"ARM Cortex-M3 CPU"),
101	BHND_CDESC(BCM, HTPHY,		WLAN_PHY,	"802.11n 4x4 PHY"),
102	BHND_CDESC(BCM, MIPS74K,	CPU,		"MIPS74k CPU"),
103	BHND_CDESC(BCM, GMAC,		ENET_MAC,	"Gigabit MAC core"),
104	BHND_CDESC(BCM, DMEMC,		MEMC,		"DDR1/DDR2 Memory Controller"),
105	BHND_CDESC(BCM, PCIERC,		OTHER,		"PCIe Root Complex"),
106	BHND_CDESC(BCM, OCP,		SOC_BRIDGE,	"OCP to OCP Bridge"),
107	BHND_CDESC(BCM, SC,		OTHER,		"Shared Common Core"),
108	BHND_CDESC(BCM, AHB,		SOC_BRIDGE,	"OCP to AHB Bridge"),
109	BHND_CDESC(BCM, SPIH,		OTHER,		"SPI Host Controller"),
110	BHND_CDESC(BCM, I2S,		OTHER,		"I2S Digital Audio Interface"),
111	BHND_CDESC(BCM, DMEMS,		MEMC,		"SDR/DDR1 Memory Controller"),
112	BHND_CDESC(BCM, UBUS_SHIM,	OTHER,		"BCM6362/UBUS WLAN SHIM"),
113	BHND_CDESC(BCM, PCIE2,		PCIE,		"PCIe Bridge (Gen2)"),
114
115	BHND_CDESC(ARM, APB_BRIDGE,	SOC_BRIDGE,	"BP135 AMBA3 AXI to APB Bridge"),
116	BHND_CDESC(ARM, PL301,		SOC_ROUTER,	"PL301 AMBA3 Interconnect"),
117	BHND_CDESC(ARM, EROM,		EROM,		"PL366 Device Enumeration ROM"),
118	BHND_CDESC(ARM, OOB_ROUTER,	OTHER,		"PL367 OOB Interrupt Router"),
119	BHND_CDESC(ARM, AXI_UNMAPPED,	OTHER,		"Unmapped Address Ranges"),
120
121	BHND_CDESC(BCM, 4706_CC,	CC,		"ChipCommon I/O Controller"),
122	BHND_CDESC(BCM, NS_PCIE2,	PCIE,		"PCIe Bridge (Gen2)"),
123	BHND_CDESC(BCM, NS_DMA,		OTHER,		"DMA engine"),
124	BHND_CDESC(BCM, NS_SDIO,	OTHER,		"SDIO 3.0 Host Controller"),
125	BHND_CDESC(BCM, NS_USB20H,	OTHER,		"USB 2.0 Host Controller"),
126	BHND_CDESC(BCM, NS_USB30H,	OTHER,		"USB 3.0 Host Controller"),
127	BHND_CDESC(BCM, NS_A9JTAG,	OTHER,		"ARM Cortex A9 JTAG Interface"),
128	BHND_CDESC(BCM, NS_DDR23_MEMC,	MEMC,		"Denali DDR2/DD3 Memory Controller"),
129	BHND_CDESC(BCM, NS_ROM,		NVRAM,		"System ROM"),
130	BHND_CDESC(BCM, NS_NAND,	NVRAM,		"NAND Flash Controller"),
131	BHND_CDESC(BCM, NS_QSPI,	NVRAM,		"QSPI Flash Controller"),
132	BHND_CDESC(BCM, NS_CC_B,	CC_B,		"ChipCommon B Auxiliary I/O Controller"),
133	BHND_CDESC(BCM, 4706_SOCRAM,	RAM,		"Internal Memory"),
134	BHND_CDESC(BCM, IHOST_ARMCA9,	CPU,		"ARM Cortex A9 CPU"),
135	BHND_CDESC(BCM, 4706_GMAC_CMN,	ENET,		"Gigabit MAC (Common)"),
136	BHND_CDESC(BCM, 4706_GMAC,	ENET_MAC,	"Gigabit MAC"),
137	BHND_CDESC(BCM, AMEMC,		MEMC,		"Denali DDR1/DDR2 Memory Controller"),
138#undef	BHND_CDESC
139
140	/* Derived from inspection of the BCM4331 cores that provide PrimeCell
141	 * IDs. Due to lack of documentation, the surmised device name/purpose
142	 * provided here may be incorrect. */
143	{ BHND_MFGID_ARM,	BHND_PRIMEID_EROM,	BHND_DEVCLASS_OTHER,
144	    "PL364 Device Enumeration ROM" },
145	{ BHND_MFGID_ARM,	BHND_PRIMEID_SWRAP,	BHND_DEVCLASS_OTHER,
146	    "PL368 Device Management Interface" },
147	{ BHND_MFGID_ARM,	BHND_PRIMEID_MWRAP,	BHND_DEVCLASS_OTHER,
148	    "PL369 Device Management Interface" },
149
150	{ 0, 0, 0, NULL }
151};
152
153/**
154 * Return the name for a given JEP106 manufacturer ID.
155 *
156 * @param vendor A JEP106 Manufacturer ID, including the non-standard ARM 4-bit
157 * JEP106 continuation code.
158 */
159const char *
160bhnd_vendor_name(uint16_t vendor)
161{
162	switch (vendor) {
163	case BHND_MFGID_ARM:
164		return "ARM";
165	case BHND_MFGID_BCM:
166		return "Broadcom";
167	case BHND_MFGID_MIPS:
168		return "MIPS";
169	default:
170		return "unknown";
171	}
172}
173
174/**
175 * Return the name of a port type.
176 */
177const char *
178bhnd_port_type_name(bhnd_port_type port_type)
179{
180	switch (port_type) {
181	case BHND_PORT_DEVICE:
182		return ("device");
183	case BHND_PORT_BRIDGE:
184		return ("bridge");
185	case BHND_PORT_AGENT:
186		return ("agent");
187	}
188}
189
190
191static const struct bhnd_core_desc *
192bhnd_find_core_desc(uint16_t vendor, uint16_t device)
193{
194	for (u_int i = 0; bhnd_core_descs[i].desc != NULL; i++) {
195		if (bhnd_core_descs[i].vendor != vendor)
196			continue;
197
198		if (bhnd_core_descs[i].device != device)
199			continue;
200
201		return (&bhnd_core_descs[i]);
202	}
203
204	return (NULL);
205}
206
207/**
208 * Return a human-readable name for a BHND core.
209 *
210 * @param vendor The core designer's JEDEC-106 Manufacturer ID
211 * @param device The core identifier.
212 */
213const char *
214bhnd_find_core_name(uint16_t vendor, uint16_t device)
215{
216	const struct bhnd_core_desc *desc;
217
218	if ((desc = bhnd_find_core_desc(vendor, device)) == NULL)
219		return ("unknown");
220
221	return desc->desc;
222}
223
224/**
225 * Return the device class for a BHND core.
226 *
227 * @param vendor The core designer's JEDEC-106 Manufacturer ID
228 * @param device The core identifier.
229 */
230bhnd_devclass_t
231bhnd_find_core_class(uint16_t vendor, uint16_t device)
232{
233	const struct bhnd_core_desc *desc;
234
235	if ((desc = bhnd_find_core_desc(vendor, device)) == NULL)
236		return (BHND_DEVCLASS_OTHER);
237
238	return desc->class;
239}
240
241/**
242 * Return a human-readable name for a BHND core.
243 *
244 * @param ci The core's info record.
245 */
246const char *
247bhnd_core_name(const struct bhnd_core_info *ci)
248{
249	return bhnd_find_core_name(ci->vendor, ci->device);
250}
251
252/**
253 * Return the device class for a BHND core.
254 *
255 * @param ci The core's info record.
256 */
257bhnd_devclass_t
258bhnd_core_class(const struct bhnd_core_info *ci)
259{
260	return bhnd_find_core_class(ci->vendor, ci->device);
261}
262
263/**
264 * Initialize a core info record with data from from a bhnd-attached @p dev.
265 *
266 * @param dev A bhnd device.
267 * @param core The record to be initialized.
268 */
269struct bhnd_core_info
270bhnd_get_core_info(device_t dev) {
271	return (struct bhnd_core_info) {
272		.vendor		= bhnd_get_vendor(dev),
273		.device		= bhnd_get_device(dev),
274		.hwrev		= bhnd_get_hwrev(dev),
275		.core_idx	= bhnd_get_core_index(dev),
276		.unit		= bhnd_get_core_unit(dev)
277	};
278}
279
280/**
281 * Find a @p class child device with @p unit on @p dev.
282 *
283 * @param parent The bhnd-compatible bus to be searched.
284 * @param class The device class to match on.
285 * @param unit The device unit number; specify -1 to return the first match
286 * regardless of unit number.
287 *
288 * @retval device_t if a matching child device is found.
289 * @retval NULL if no matching child device is found.
290 */
291device_t
292bhnd_find_child(device_t dev, bhnd_devclass_t class, int unit)
293{
294	struct bhnd_core_match md = {
295		.vendor = BHND_MFGID_INVALID,
296		.device = BHND_COREID_INVALID,
297		.hwrev.start = BHND_HWREV_INVALID,
298		.hwrev.end = BHND_HWREV_INVALID,
299		.class = class,
300		.unit = unit
301	};
302
303	return bhnd_match_child(dev, &md);
304}
305
306/**
307 * Find the first child device on @p dev that matches @p desc.
308 *
309 * @param parent The bhnd-compatible bus to be searched.
310 * @param desc A match descriptor.
311 *
312 * @retval device_t if a matching child device is found.
313 * @retval NULL if no matching child device is found.
314 */
315device_t
316bhnd_match_child(device_t dev, const struct bhnd_core_match *desc)
317{
318	device_t	*devlistp;
319	device_t	 match;
320	int		 devcnt;
321	int		 error;
322
323	error = device_get_children(dev, &devlistp, &devcnt);
324	if (error != 0)
325		return (NULL);
326
327	match = NULL;
328	for (int i = 0; i < devcnt; i++) {
329		device_t dev = devlistp[i];
330		if (bhnd_device_matches(dev, desc)) {
331			match = dev;
332			goto done;
333		}
334	}
335
336done:
337	free(devlistp, M_TEMP);
338	return match;
339}
340
341/**
342 * Find the first core in @p cores that matches @p desc.
343 *
344 * @param cores The table to search.
345 * @param num_cores The length of @p cores.
346 * @param desc A match descriptor.
347 *
348 * @retval bhnd_core_info if a matching core is found.
349 * @retval NULL if no matching core is found.
350 */
351const struct bhnd_core_info *
352bhnd_match_core(const struct bhnd_core_info *cores, u_int num_cores,
353    const struct bhnd_core_match *desc)
354{
355	for (u_int i = 0; i < num_cores; i++) {
356		if (bhnd_core_matches(&cores[i], desc))
357			return &cores[i];
358	}
359
360	return (NULL);
361}
362
363
364/**
365 * Find the first core in @p cores with the given @p class.
366 *
367 * @param cores The table to search.
368 * @param num_cores The length of @p cores.
369 * @param desc A match descriptor.
370 *
371 * @retval bhnd_core_info if a matching core is found.
372 * @retval NULL if no matching core is found.
373 */
374const struct bhnd_core_info *
375bhnd_find_core(const struct bhnd_core_info *cores, u_int num_cores,
376    bhnd_devclass_t class)
377{
378	struct bhnd_core_match md = {
379		.vendor = BHND_MFGID_INVALID,
380		.device = BHND_COREID_INVALID,
381		.hwrev.start = BHND_HWREV_INVALID,
382		.hwrev.end = BHND_HWREV_INVALID,
383		.class = class,
384		.unit = -1
385	};
386
387	return bhnd_match_core(cores, num_cores, &md);
388}
389
390/**
391 * Return true if the @p core matches @p desc.
392 *
393 * @param core A bhnd core descriptor.
394 * @param desc A match descriptor to compare against @p core.
395 *
396 * @retval true if @p core matches @p match
397 * @retval false if @p core does not match @p match.
398 */
399bool
400bhnd_core_matches(const struct bhnd_core_info *core,
401    const struct bhnd_core_match *desc)
402{
403	if (desc->vendor != BHND_MFGID_INVALID &&
404	    desc->vendor != core->vendor)
405		return (false);
406
407	if (desc->device != BHND_COREID_INVALID &&
408	    desc->device != core->device)
409		return (false);
410
411	if (desc->unit != -1 && desc->unit != core->unit)
412		return (false);
413
414	if (!bhnd_hwrev_matches(core->hwrev, &desc->hwrev))
415		return (false);
416
417	if (desc->hwrev.end != BHND_HWREV_INVALID &&
418	    desc->hwrev.end < core->hwrev)
419		return (false);
420
421	if (desc->class != BHND_DEVCLASS_INVALID &&
422	    desc->class != bhnd_core_class(core))
423		return (false);
424
425	return true;
426}
427
428/**
429 * Return true if the @p hwrev matches @p desc.
430 *
431 * @param hwrev A bhnd hardware revision.
432 * @param desc A match descriptor to compare against @p core.
433 *
434 * @retval true if @p hwrev matches @p match
435 * @retval false if @p hwrev does not match @p match.
436 */
437bool
438bhnd_hwrev_matches(uint16_t hwrev, const struct bhnd_hwrev_match *desc)
439{
440	if (desc->start != BHND_HWREV_INVALID &&
441	    desc->start > hwrev)
442		return false;
443
444	if (desc->end != BHND_HWREV_INVALID &&
445	    desc->end < hwrev)
446		return false;
447
448	return true;
449}
450
451/**
452 * Return true if the @p dev matches @p desc.
453 *
454 * @param dev A bhnd device.
455 * @param desc A match descriptor to compare against @p dev.
456 *
457 * @retval true if @p dev matches @p match
458 * @retval false if @p dev does not match @p match.
459 */
460bool
461bhnd_device_matches(device_t dev, const struct bhnd_core_match *desc)
462{
463	struct bhnd_core_info ci = {
464		.vendor = bhnd_get_vendor(dev),
465		.device = bhnd_get_device(dev),
466		.unit = bhnd_get_core_unit(dev),
467		.hwrev = bhnd_get_hwrev(dev)
468	};
469
470	return bhnd_core_matches(&ci, desc);
471}
472
473/**
474 * Search @p table for an entry matching @p dev.
475 *
476 * @param dev A bhnd device to match against @p table.
477 * @param table The device table to search.
478 * @param entry_size The @p table entry size, in bytes.
479 *
480 * @retval bhnd_device the first matching device, if any.
481 * @retval NULL if no matching device is found in @p table.
482 */
483const struct bhnd_device *
484bhnd_device_lookup(device_t dev, const struct bhnd_device *table,
485    size_t entry_size)
486{
487	const struct bhnd_device *entry;
488
489	for (entry = table; entry->desc != NULL; entry =
490	    (const struct bhnd_device *) ((const char *) entry + entry_size))
491	{
492		/* match core info */
493		if (!bhnd_device_matches(dev, &entry->core))
494			continue;
495
496		/* match device flags */
497		if (entry->device_flags & BHND_DF_HOSTB) {
498			if (!bhnd_is_hostb_device(dev))
499				continue;
500		}
501
502		/* device found */
503		return (entry);
504	}
505
506	/* not found */
507	return (NULL);
508}
509
510/**
511 * Scan @p table for all quirk flags applicable to @p dev.
512 *
513 * @param dev A bhnd device to match against @p table.
514 * @param table The device table to search.
515 * @param entry_size The @p table entry size, in bytes.
516 *
517 * @return returns all matching quirk flags.
518 */
519uint32_t
520bhnd_device_quirks(device_t dev, const struct bhnd_device *table,
521    size_t entry_size)
522{
523	const struct bhnd_device	*dent;
524	const struct bhnd_device_quirk	*qtable, *qent;
525	uint32_t			 quirks;
526	uint16_t			 hwrev;
527
528	hwrev = bhnd_get_hwrev(dev);
529	quirks = 0;
530
531	/* Find the quirk table */
532	if ((dent = bhnd_device_lookup(dev, table, entry_size)) == NULL) {
533		/* This is almost certainly a (caller) implementation bug */
534		device_printf(dev, "quirk lookup did not match any device\n");
535		return (0);
536	}
537
538	/* Quirks aren't a mandatory field */
539	if ((qtable = dent->quirks_table) == NULL)
540		return (0);
541
542	/* Collect matching quirk entries */
543	for (qent = qtable; !BHND_DEVICE_QUIRK_IS_END(qent); qent++) {
544		if (bhnd_hwrev_matches(hwrev, &qent->hwrev))
545			quirks |= qent->quirks;
546	}
547
548	return (quirks);
549}
550
551
552/**
553 * Allocate bhnd(4) resources defined in @p rs from a parent bus.
554 *
555 * @param dev The device requesting ownership of the resources.
556 * @param rs A standard bus resource specification. This will be updated
557 * with the allocated resource's RIDs.
558 * @param res On success, the allocated bhnd resources.
559 *
560 * @retval 0 success
561 * @retval non-zero if allocation of any non-RF_OPTIONAL resource fails,
562 * 		    all allocated resources will be released and a regular
563 * 		    unix error code will be returned.
564 */
565int
566bhnd_alloc_resources(device_t dev, struct resource_spec *rs,
567    struct bhnd_resource **res)
568{
569	/* Initialize output array */
570	for (u_int i = 0; rs[i].type != -1; i++)
571		res[i] = NULL;
572
573	for (u_int i = 0; rs[i].type != -1; i++) {
574		res[i] = bhnd_alloc_resource_any(dev, rs[i].type, &rs[i].rid,
575		    rs[i].flags);
576
577		/* Clean up all allocations on failure */
578		if (res[i] == NULL && !(rs[i].flags & RF_OPTIONAL)) {
579			bhnd_release_resources(dev, rs, res);
580			return (ENXIO);
581		}
582	}
583
584	return (0);
585};
586
587/**
588 * Release bhnd(4) resources defined in @p rs from a parent bus.
589 *
590 * @param dev The device that owns the resources.
591 * @param rs A standard bus resource specification previously initialized
592 * by @p bhnd_alloc_resources.
593 * @param res The bhnd resources to be released.
594 */
595void
596bhnd_release_resources(device_t dev, const struct resource_spec *rs,
597    struct bhnd_resource **res)
598{
599	for (u_int i = 0; rs[i].type != -1; i++) {
600		if (res[i] == NULL)
601			continue;
602
603		bhnd_release_resource(dev, rs[i].type, rs[i].rid, res[i]);
604		res[i] = NULL;
605	}
606}
607
608/**
609 * Parse the CHIPC_ID_* fields from the ChipCommon CHIPC_ID
610 * register, returning its bhnd_chipid representation.
611 *
612 * @param idreg The CHIPC_ID register value.
613 * @param enum_addr The enumeration address to include in the result.
614 *
615 * @warning
616 * On early siba(4) devices, the ChipCommon core does not provide
617 * a valid CHIPC_ID_NUMCORE field. On these ChipCommon revisions
618 * (see CHIPC_NCORES_MIN_HWREV()), this function will parse and return
619 * an invalid `ncores` value.
620 */
621struct bhnd_chipid
622bhnd_parse_chipid(uint32_t idreg, bhnd_addr_t enum_addr)
623{
624	struct bhnd_chipid result;
625
626	/* Fetch the basic chip info */
627	result.chip_id = CHIPC_GET_ATTR(idreg, ID_CHIP);
628	result.chip_pkg = CHIPC_GET_ATTR(idreg, ID_PKG);
629	result.chip_rev = CHIPC_GET_ATTR(idreg, ID_REV);
630	result.chip_type = CHIPC_GET_ATTR(idreg, ID_BUS);
631	result.ncores = CHIPC_GET_ATTR(idreg, ID_NUMCORE);
632
633	result.enum_addr = enum_addr;
634
635	return (result);
636}
637
638/**
639 * Allocate the resource defined by @p rs via @p dev, use it
640 * to read the ChipCommon ID register relative to @p chipc_offset,
641 * then release the resource.
642 *
643 * @param dev The device owning @p rs.
644 * @param rs A resource spec that encompasses the ChipCommon register block.
645 * @param chipc_offset The offset of the ChipCommon registers within @p rs.
646 * @param[out] result the chip identification data.
647 *
648 * @retval 0 success
649 * @retval non-zero if the ChipCommon identification data could not be read.
650 */
651int
652bhnd_read_chipid(device_t dev, struct resource_spec *rs,
653    bus_size_t chipc_offset, struct bhnd_chipid *result)
654{
655	struct resource			*res;
656	uint32_t			 reg;
657	int				 error, rid, rtype;
658
659	/* Allocate the ChipCommon window resource and fetch the chipid data */
660	rid = rs->rid;
661	rtype = rs->type;
662	res = bus_alloc_resource_any(dev, rtype, &rid, RF_ACTIVE);
663	if (res == NULL) {
664		device_printf(dev,
665		    "failed to allocate bhnd chipc resource\n");
666		return (ENXIO);
667	}
668
669	/* Fetch the basic chip info */
670	reg = bus_read_4(res, chipc_offset + CHIPC_ID);
671	*result = bhnd_parse_chipid(reg, 0x0);
672
673	/* Fetch the enum base address */
674	error = 0;
675	switch (result->chip_type) {
676	case BHND_CHIPTYPE_SIBA:
677		result->enum_addr = BHND_DEFAULT_CHIPC_ADDR;
678		break;
679	case BHND_CHIPTYPE_BCMA:
680	case BHND_CHIPTYPE_BCMA_ALT:
681		result->enum_addr = bus_read_4(res, chipc_offset +
682		    CHIPC_EROMPTR);
683		break;
684	case BHND_CHIPTYPE_UBUS:
685		device_printf(dev, "unsupported ubus/bcm63xx chip type");
686		error = ENODEV;
687		goto cleanup;
688	default:
689		device_printf(dev, "unknown chip type %hhu\n",
690		    result->chip_type);
691		error = ENODEV;
692		goto cleanup;
693	}
694
695cleanup:
696	/* Clean up */
697	bus_release_resource(dev, rtype, rid, res);
698	return (error);
699}
700
701/**
702 * Using the bhnd(4) bus-level core information and a custom core name,
703 * populate @p dev's device description.
704 *
705 * @param dev A bhnd-bus attached device.
706 * @param dev_name The core's name (e.g. "SDIO Device Core")
707 */
708void
709bhnd_set_custom_core_desc(device_t dev, const char *dev_name)
710{
711	const char *vendor_name;
712	char *desc;
713
714	vendor_name = bhnd_get_vendor_name(dev);
715	asprintf(&desc, M_BHND, "%s %s, rev %hhu", vendor_name, dev_name,
716	    bhnd_get_hwrev(dev));
717
718	if (desc != NULL) {
719		device_set_desc_copy(dev, desc);
720		free(desc, M_BHND);
721	} else {
722		device_set_desc(dev, dev_name);
723	}
724}
725
726/**
727 * Using the bhnd(4) bus-level core information, populate @p dev's device
728 * description.
729 *
730 * @param dev A bhnd-bus attached device.
731 */
732void
733bhnd_set_default_core_desc(device_t dev)
734{
735	bhnd_set_custom_core_desc(dev, bhnd_get_device_name(dev));
736}
737
738/**
739 * Helper function for implementing BHND_BUS_IS_HOSTB_DEVICE().
740 *
741 * If a parent device is available, this implementation delegates the
742 * request to the BHND_BUS_IS_HOSTB_DEVICE() method on the parent of @p dev.
743 *
744 * If no parent device is available (i.e. on a the bus root), false
745 * is returned.
746 */
747bool
748bhnd_bus_generic_is_hostb_device(device_t dev, device_t child) {
749	if (device_get_parent(dev) != NULL)
750		return (BHND_BUS_IS_HOSTB_DEVICE(device_get_parent(dev),
751		    child));
752
753	return (false);
754}
755
756/**
757 * Helper function for implementing BHND_BUS_IS_HW_DISABLED().
758 *
759 * If a parent device is available, this implementation delegates the
760 * request to the BHND_BUS_IS_HW_DISABLED() method on the parent of @p dev.
761 *
762 * If no parent device is available (i.e. on a the bus root), the hardware
763 * is assumed to be usable and false is returned.
764 */
765bool
766bhnd_bus_generic_is_hw_disabled(device_t dev, device_t child)
767{
768	if (device_get_parent(dev) != NULL)
769		return (BHND_BUS_IS_HW_DISABLED(device_get_parent(dev), child));
770
771	return (false);
772}
773
774/**
775 * Helper function for implementing BHND_BUS_GET_CHIPID().
776 *
777 * This implementation delegates the request to the BHND_BUS_GET_CHIPID()
778 * method on the parent of @p dev. If no parent exists, the implementation
779 * will panic.
780 */
781const struct bhnd_chipid *
782bhnd_bus_generic_get_chipid(device_t dev, device_t child)
783{
784	if (device_get_parent(dev) != NULL)
785		return (BHND_BUS_GET_CHIPID(device_get_parent(dev), child));
786
787	panic("missing BHND_BUS_GET_CHIPID()");
788}
789
790/**
791 * Helper function for implementing BHND_BUS_ALLOC_RESOURCE().
792 *
793 * This implementation of BHND_BUS_ALLOC_RESOURCE() delegates allocation
794 * of the underlying resource to BUS_ALLOC_RESOURCE(), and activation
795 * to @p dev's BHND_BUS_ACTIVATE_RESOURCE().
796 */
797struct bhnd_resource *
798bhnd_bus_generic_alloc_resource(device_t dev, device_t child, int type,
799	int *rid, rman_res_t start, rman_res_t end, rman_res_t count,
800	u_int flags)
801{
802	struct bhnd_resource	*br;
803	struct resource		*res;
804	int			 error;
805
806	br = NULL;
807	res = NULL;
808
809	/* Allocate the real bus resource (without activating it) */
810	res = BUS_ALLOC_RESOURCE(dev, child, type, rid, start, end, count,
811	    (flags & ~RF_ACTIVE));
812	if (res == NULL)
813		return (NULL);
814
815	/* Allocate our bhnd resource wrapper. */
816	br = malloc(sizeof(struct bhnd_resource), M_BHND, M_NOWAIT);
817	if (br == NULL)
818		goto failed;
819
820	br->direct = false;
821	br->res = res;
822
823	/* Attempt activation */
824	if (flags & RF_ACTIVE) {
825		error = BHND_BUS_ACTIVATE_RESOURCE(dev, child, type, *rid, br);
826		if (error)
827			goto failed;
828	}
829
830	return (br);
831
832failed:
833	if (res != NULL)
834		BUS_RELEASE_RESOURCE(dev, child, type, *rid, res);
835
836	free(br, M_BHND);
837	return (NULL);
838}
839
840/**
841 * Helper function for implementing BHND_BUS_RELEASE_RESOURCE().
842 *
843 * This implementation of BHND_BUS_RELEASE_RESOURCE() delegates release of
844 * the backing resource to BUS_RELEASE_RESOURCE().
845 */
846int
847bhnd_bus_generic_release_resource(device_t dev, device_t child, int type,
848    int rid, struct bhnd_resource *r)
849{
850	int error;
851
852	if ((error = BUS_RELEASE_RESOURCE(dev, child, type, rid, r->res)))
853		return (error);
854
855	free(r, M_BHND);
856	return (0);
857}
858
859
860/**
861 * Helper function for implementing BHND_BUS_ACTIVATE_RESOURCE().
862 *
863 * This implementation of BHND_BUS_ACTIVATE_RESOURCE() simply calls the
864 * BHND_BUS_ACTIVATE_RESOURCE() method of the parent of @p dev.
865 */
866int
867bhnd_bus_generic_activate_resource(device_t dev, device_t child, int type,
868    int rid, struct bhnd_resource *r)
869{
870	/* Try to delegate to the parent */
871	if (device_get_parent(dev) != NULL)
872		return (BHND_BUS_ACTIVATE_RESOURCE(device_get_parent(dev),
873		    child, type, rid, r));
874
875	return (EINVAL);
876};
877
878/**
879 * Helper function for implementing BHND_BUS_DEACTIVATE_RESOURCE().
880 *
881 * This implementation of BHND_BUS_ACTIVATE_RESOURCE() simply calls the
882 * BHND_BUS_ACTIVATE_RESOURCE() method of the parent of @p dev.
883 */
884int
885bhnd_bus_generic_deactivate_resource(device_t dev, device_t child,
886    int type, int rid, struct bhnd_resource *r)
887{
888	if (device_get_parent(dev) != NULL)
889		return (BHND_BUS_DEACTIVATE_RESOURCE(device_get_parent(dev),
890		    child, type, rid, r));
891
892	return (EINVAL);
893};
894