brcm43xx: update SSB driver * files/ now contains the wireless-dev tree version ...
[librecmc/librecmc.git] / target / linux / brcm47xx-2.6 / files / drivers / ssb / scan.c
1 /*
2  * Sonics Silicon Backplane
3  * Bus scanning
4  *
5  * Copyright (C) 2005-2007 Michael Buesch <mb@bu3sch.de>
6  * Copyright (C) 2005 Martin Langer <martin-langer@gmx.de>
7  * Copyright (C) 2005 Stefano Brivio <st3@riseup.net>
8  * Copyright (C) 2005 Danny van Dyk <kugelfang@gentoo.org>
9  * Copyright (C) 2005 Andreas Jaggi <andreas.jaggi@waterwave.ch>
10  * Copyright (C) 2006 Broadcom Corporation.
11  *
12  * Licensed under the GNU/GPL. See COPYING for details.
13  */
14
15 #include <linux/ssb/ssb.h>
16 #include <linux/ssb/ssb_regs.h>
17 #include <linux/pci.h>
18 #include <asm/io.h>
19
20 #ifdef CONFIG_SSB_PCMCIAHOST
21 # include <pcmcia/cs_types.h>
22 # include <pcmcia/cs.h>
23 # include <pcmcia/cistpl.h>
24 # include <pcmcia/ds.h>
25 #endif
26
27 #include "ssb_private.h"
28
29
30 const char * ssb_core_name(u16 coreid)
31 {
32         switch (coreid) {
33         case SSB_DEV_CHIPCOMMON:
34                 return "ChipCommon";
35         case SSB_DEV_ILINE20:
36                 return "ILine 20";
37         case SSB_DEV_SDRAM:
38                 return "SDRAM";
39         case SSB_DEV_PCI:
40                 return "PCI";
41         case SSB_DEV_MIPS:
42                 return "MIPS";
43         case SSB_DEV_ETHERNET:
44                 return "Fast Ethernet";
45         case SSB_DEV_V90:
46                 return "V90";
47         case SSB_DEV_USB11_HOSTDEV:
48                 return "USB 1.1 Hostdev";
49         case SSB_DEV_ADSL:
50                 return "ADSL";
51         case SSB_DEV_ILINE100:
52                 return "ILine 100";
53         case SSB_DEV_IPSEC:
54                 return "IPSEC";
55         case SSB_DEV_PCMCIA:
56                 return "PCMCIA";
57         case SSB_DEV_INTERNAL_MEM:
58                 return "Internal Memory";
59         case SSB_DEV_MEMC_SDRAM:
60                 return "MEMC SDRAM";
61         case SSB_DEV_EXTIF:
62                 return "EXTIF";
63         case SSB_DEV_80211:
64                 return "IEEE 802.11";
65         case SSB_DEV_MIPS_3302:
66                 return "MIPS 3302";
67         case SSB_DEV_USB11_HOST:
68                 return "USB 1.1 Host";
69         case SSB_DEV_USB11_DEV:
70                 return "USB 1.1 Device";
71         case SSB_DEV_USB20_HOST:
72                 return "USB 2.0 Host";
73         case SSB_DEV_USB20_DEV:
74                 return "USB 2.0 Device";
75         case SSB_DEV_SDIO_HOST:
76                 return "SDIO Host";
77         case SSB_DEV_ROBOSWITCH:
78                 return "Roboswitch";
79         case SSB_DEV_PARA_ATA:
80                 return "PATA";
81         case SSB_DEV_SATA_XORDMA:
82                 return "SATA XOR-DMA";
83         case SSB_DEV_ETHERNET_GBIT:
84                 return "GBit Ethernet";
85         case SSB_DEV_PCIE:
86                 return "PCI-E";
87         case SSB_DEV_MIMO_PHY:
88                 return "MIMO PHY";
89         case SSB_DEV_SRAM_CTRLR:
90                 return "SRAM Controller";
91         case SSB_DEV_MINI_MACPHY:
92                 return "Mini MACPHY";
93         case SSB_DEV_ARM_1176:
94                 return "ARM 1176";
95         case SSB_DEV_ARM_7TDMI:
96                 return "ARM 7TDMI";
97         }
98         return "UNKNOWN";
99 }
100
101 static u16 pcidev_to_chipid(struct pci_dev *pci_dev)
102 {
103         u16 chipid_fallback = 0;
104
105         switch (pci_dev->device) {
106         case 0x4301:
107                 chipid_fallback = 0x4301;
108                 break;
109         case 0x4305 ... 0x4307:
110                 chipid_fallback = 0x4307;
111                 break;
112         case 0x4403:
113                 chipid_fallback = 0x4402;
114                 break;
115         case 0x4610 ... 0x4615:
116                 chipid_fallback = 0x4610;
117                 break;
118         case 0x4710 ... 0x4715:
119                 chipid_fallback = 0x4710;
120                 break;
121         case 0x4320 ... 0x4325:
122                 chipid_fallback = 0x4309;
123                 break;
124         case PCI_DEVICE_ID_BCM4401:
125         case PCI_DEVICE_ID_BCM4401B0:
126         case PCI_DEVICE_ID_BCM4401B1:
127                 chipid_fallback = 0x4401;
128                 break;
129         default:
130                 ssb_printk(KERN_ERR PFX
131                            "PCI-ID not in fallback list\n");
132         }
133
134         return chipid_fallback;
135 }
136
137 static u8 chipid_to_nrcores(u16 chipid)
138 {
139         switch (chipid) {
140         case 0x5365:
141                 return 7;
142         case 0x4306:
143                 return 6;
144         case 0x4310:
145                 return 8;
146         case 0x4307:
147         case 0x4301:
148                 return 5;
149         case 0x4401:
150         case 0x4402:
151                 return 3;
152         case 0x4710:
153         case 0x4610:
154         case 0x4704:
155                 return 9;
156         default:
157                 ssb_printk(KERN_ERR PFX
158                            "CHIPID not in nrcores fallback list\n");
159         }
160
161         return 1;
162 }
163
164 static u32 scan_read32(struct ssb_bus *bus, u8 current_coreidx,
165                        u16 offset)
166 {
167         switch (bus->bustype) {
168         case SSB_BUSTYPE_SSB:
169                 offset += current_coreidx * SSB_CORE_SIZE;
170                 break;
171         case SSB_BUSTYPE_PCI:
172                 break;
173         case SSB_BUSTYPE_PCMCIA:
174                 if (offset >= 0x800) {
175                         ssb_pcmcia_switch_segment(bus, 1);
176                         offset -= 0x800;
177                 } else
178                         ssb_pcmcia_switch_segment(bus, 0);
179                 break;
180         }
181         return readl(bus->mmio + offset);
182 }
183
184 static int scan_switchcore(struct ssb_bus *bus, u8 coreidx)
185 {
186         switch (bus->bustype) {
187         case SSB_BUSTYPE_SSB:
188                 break;
189         case SSB_BUSTYPE_PCI:
190                 return ssb_pci_switch_coreidx(bus, coreidx);
191         case SSB_BUSTYPE_PCMCIA:
192                 return ssb_pcmcia_switch_coreidx(bus, coreidx);
193         }
194         return 0;
195 }
196
197 void ssb_iounmap(struct ssb_bus *bus)
198 {
199         switch (bus->bustype) {
200         case SSB_BUSTYPE_SSB:
201         case SSB_BUSTYPE_PCMCIA:
202                 iounmap(bus->mmio);
203                 break;
204         case SSB_BUSTYPE_PCI:
205                 pci_iounmap(bus->host_pci, bus->mmio);
206                 break;
207         }
208         bus->mmio = NULL;
209         bus->mapped_device = NULL;
210 }
211
212 static void __iomem * ssb_ioremap(struct ssb_bus *bus,
213                                   unsigned long baseaddr)
214 {
215         void __iomem *mmio = NULL;
216
217         switch (bus->bustype) {
218         case SSB_BUSTYPE_SSB:
219                 /* Only map the first core for now. */
220                 /* fallthrough... */
221         case SSB_BUSTYPE_PCMCIA:
222                 mmio = ioremap(baseaddr, SSB_CORE_SIZE);
223                 break;
224         case SSB_BUSTYPE_PCI:
225                 mmio = pci_iomap(bus->host_pci, 0, ~0UL);
226                 break;
227         }
228
229         return mmio;
230 }
231
232 static int we_support_multiple_80211_cores(struct ssb_bus *bus)
233 {
234         /* More than one 802.11 core is only supported by special chips.
235          * There are chips with two 802.11 cores, but with dangling
236          * pins on the second core. Be careful and reject them here.
237          */
238
239 #ifdef CONFIG_SSB_PCIHOST
240         if (bus->bustype == SSB_BUSTYPE_PCI) {
241                 if (bus->host_pci->vendor == PCI_VENDOR_ID_BROADCOM &&
242                     bus->host_pci->device == 0x4324)
243                         return 1;
244         }
245 #endif /* CONFIG_SSB_PCIHOST */
246         return 0;
247 }
248
249 int ssb_bus_scan(struct ssb_bus *bus,
250                  unsigned long baseaddr)
251 {
252         int err = -ENOMEM;
253         void __iomem *mmio;
254         u32 idhi, cc, rev, tmp;
255         int dev_i, i;
256         struct ssb_device *dev;
257         int nr_80211_cores = 0;
258
259         mmio = ssb_ioremap(bus, baseaddr);
260         if (!mmio)
261                 goto out;
262         bus->mmio = mmio;
263
264         err = scan_switchcore(bus, 0); /* Switch to first core */
265         if (err)
266                 goto err_unmap;
267
268         idhi = scan_read32(bus, 0, SSB_IDHIGH);
269         cc = (idhi & SSB_IDHIGH_CC) >> SSB_IDHIGH_CC_SHIFT;
270         rev = (idhi & SSB_IDHIGH_RCLO);
271         rev |= (idhi & SSB_IDHIGH_RCHI) >> SSB_IDHIGH_RCHI_SHIFT;
272
273         bus->nr_devices = 0;
274         if (cc == SSB_DEV_CHIPCOMMON) {
275                 tmp = scan_read32(bus, 0, SSB_CHIPCO_CHIPID);
276
277                 bus->chip_id = (tmp & SSB_CHIPCO_IDMASK);
278                 bus->chip_rev = (tmp & SSB_CHIPCO_REVMASK) >>
279                                 SSB_CHIPCO_REVSHIFT;
280                 bus->chip_package = (tmp & SSB_CHIPCO_PACKMASK) >>
281                                     SSB_CHIPCO_PACKSHIFT;
282                 if (rev >= 4) {
283                         bus->nr_devices = (tmp & SSB_CHIPCO_NRCORESMASK) >>
284                                           SSB_CHIPCO_NRCORESSHIFT;
285                 }
286                 tmp = scan_read32(bus, 0, SSB_CHIPCO_CAP);
287                 bus->chipco.capabilities = tmp;
288         } else {
289                 if (bus->bustype == SSB_BUSTYPE_PCI) {
290                         bus->chip_id = pcidev_to_chipid(bus->host_pci);
291                         pci_read_config_word(bus->host_pci, PCI_REVISION_ID,
292                                              &bus->chip_rev);
293                         bus->chip_package = 0;
294                 } else {
295                         bus->chip_id = 0x4710;
296                         bus->chip_rev = 0;
297                         bus->chip_package = 0;
298                 }
299         }
300         if (!bus->nr_devices)
301                 bus->nr_devices = chipid_to_nrcores(bus->chip_id);
302         if (bus->nr_devices > ARRAY_SIZE(bus->devices)) {
303                 ssb_printk(KERN_ERR PFX
304                            "More than %d ssb cores found (%d)\n",
305                            SSB_MAX_NR_CORES, bus->nr_devices);
306                 goto err_unmap;
307         }
308         if (bus->bustype == SSB_BUSTYPE_SSB) {
309                 /* Now that we know the number of cores,
310                  * remap the whole IO space for all cores.
311                  */
312                 err = -ENOMEM;
313                 iounmap(mmio);
314                 mmio = ioremap(baseaddr, SSB_CORE_SIZE * bus->nr_devices);
315                 if (!mmio)
316                         goto out;
317                 bus->mmio = mmio;
318         }
319
320         /* Fetch basic information about each core/device */
321         for (i = 0, dev_i = 0; i < bus->nr_devices; i++) {
322                 err = scan_switchcore(bus, i);
323                 if (err)
324                         goto err_unmap;
325                 dev = &(bus->devices[dev_i]);
326
327                 idhi = scan_read32(bus, i, SSB_IDHIGH);
328                 dev->id.coreid = (idhi & SSB_IDHIGH_CC) >> SSB_IDHIGH_CC_SHIFT;
329                 dev->id.revision = (idhi & SSB_IDHIGH_RCLO);
330                 dev->id.revision |= (idhi & SSB_IDHIGH_RCHI) >> SSB_IDHIGH_RCHI_SHIFT;
331                 dev->id.vendor = (idhi & SSB_IDHIGH_VC) >> SSB_IDHIGH_VC_SHIFT;
332                 dev->core_index = i;
333                 dev->bus = bus;
334                 dev->ops = bus->ops;
335
336                 ssb_dprintk(KERN_INFO PFX
337                             "Core %d found: %s "
338                             "(cc 0x%03X, rev 0x%02X, vendor 0x%04X)\n",
339                             i, ssb_core_name(dev->id.coreid),
340                             dev->id.coreid, dev->id.revision, dev->id.vendor);
341
342                 switch (dev->id.coreid) {
343                 case SSB_DEV_80211:
344                         nr_80211_cores++;
345                         if (nr_80211_cores > 1) {
346                                 if (!we_support_multiple_80211_cores(bus)) {
347                                         ssb_dprintk(KERN_INFO PFX "Ignoring additional "
348                                                     "802.11 core\n");
349                                         continue;
350                                 }
351                         }
352                         break;
353                 case SSB_DEV_EXTIF:
354 #ifdef CONFIG_SSB_DRIVER_EXTIF
355                         if (bus->extif.dev) {
356                                 ssb_printk(KERN_WARNING PFX
357                                            "WARNING: Multiple EXTIFs found\n");
358                                 break;
359                         }
360                         bus->extif.dev = dev;
361 #endif /* CONFIG_SSB_DRIVER_EXTIF */
362                         break;
363                 case SSB_DEV_CHIPCOMMON:
364                         if (bus->chipco.dev) {
365                                 ssb_printk(KERN_WARNING PFX
366                                            "WARNING: Multiple ChipCommon found\n");
367                                 break;
368                         }
369                         bus->chipco.dev = dev;
370                         break;
371                 case SSB_DEV_MIPS:
372                 case SSB_DEV_MIPS_3302:
373 #ifdef CONFIG_SSB_DRIVER_MIPS
374                         if (bus->mipscore.dev) {
375                                 ssb_printk(KERN_WARNING PFX
376                                            "WARNING: Multiple MIPS cores found\n");
377                                 break;
378                         }
379                         bus->mipscore.dev = dev;
380 #endif /* CONFIG_SSB_DRIVER_MIPS */
381                         break;
382                 case SSB_DEV_PCI:
383                 case SSB_DEV_PCIE:
384 #ifdef CONFIG_SSB_DRIVER_PCICORE
385                         if (bus->pcicore.dev) {
386                                 ssb_printk(KERN_WARNING PFX
387                                            "WARNING: Multiple PCI(E) cores found\n");
388                                 break;
389                         }
390                         bus->pcicore.dev = dev;
391 #endif /* CONFIG_SSB_DRIVER_PCICORE */
392                         break;
393                 default:
394                         break;
395                 }
396
397                 dev_i++;
398         }
399         bus->nr_devices = dev_i;
400
401         err = 0;
402 out:
403         return err;
404 err_unmap:
405         ssb_iounmap(bus);
406         goto out;
407 }