Merge ../linus
[pandora-kernel.git] / arch / sparc / kernel / ebus.c
1 /* $Id: ebus.c,v 1.20 2002/01/05 01:13:43 davem Exp $
2  * ebus.c: PCI to EBus bridge device.
3  *
4  * Copyright (C) 1997  Eddie C. Dost  (ecd@skynet.be)
5  *
6  * Adopted for sparc by V. Roganov and G. Raiko.
7  * Fixes for different platforms by Pete Zaitcev.
8  */
9
10 #include <linux/config.h>
11 #include <linux/kernel.h>
12 #include <linux/types.h>
13 #include <linux/init.h>
14 #include <linux/slab.h>
15 #include <linux/string.h>
16
17 #include <asm/system.h>
18 #include <asm/page.h>
19 #include <asm/pbm.h>
20 #include <asm/ebus.h>
21 #include <asm/io.h>
22 #include <asm/oplib.h>
23 #include <asm/prom.h>
24 #include <asm/bpp.h>
25
26 struct linux_ebus *ebus_chain = NULL;
27
28 /* We are together with pcic.c under CONFIG_PCI. */
29 extern unsigned int pcic_pin_to_irq(unsigned int, char *name);
30
31 /*
32  * IRQ Blacklist
33  * Here we list PROMs and systems that are known to supply crap as IRQ numbers.
34  */
35 struct ebus_device_irq {
36         char *name;
37         unsigned int pin;
38 };
39
40 struct ebus_system_entry {
41         char *esname;
42         struct ebus_device_irq *ipt;
43 };
44
45 static struct ebus_device_irq je1_1[] = {
46         { "8042",                3 },
47         { "SUNW,CS4231",         0 },
48         { "parallel",            0 },
49         { "se",                  2 },
50         { NULL, 0 }
51 };
52
53 /*
54  * Gleb's JE1 supplied reasonable pin numbers, but mine did not (OBP 2.32).
55  * Blacklist the sucker... Note that Gleb's system will work.
56  */
57 static struct ebus_system_entry ebus_blacklist[] = {
58         { "SUNW,JavaEngine1", je1_1 },
59         { NULL, NULL }
60 };
61
62 static struct ebus_device_irq *ebus_blackp = NULL;
63
64 /*
65  */
66 static inline unsigned long ebus_alloc(size_t size)
67 {
68         return (unsigned long)kmalloc(size, GFP_ATOMIC);
69 }
70
71 /*
72  */
73 int __init ebus_blacklist_irq(char *name)
74 {
75         struct ebus_device_irq *dp;
76
77         if ((dp = ebus_blackp) != NULL) {
78                 for (; dp->name != NULL; dp++) {
79                         if (strcmp(name, dp->name) == 0) {
80                                 return pcic_pin_to_irq(dp->pin, name);
81                         }
82                 }
83         }
84         return 0;
85 }
86
87 void __init fill_ebus_child(struct device_node *dp,
88                             struct linux_ebus_child *dev)
89 {
90         int *regs;
91         int *irqs;
92         int i, len;
93
94         dev->prom_node = dp;
95         regs = of_get_property(dp, "reg", &len);
96         if (!regs)
97                 len = 0;
98         dev->num_addrs = len / sizeof(regs[0]);
99
100         for (i = 0; i < dev->num_addrs; i++) {
101                 if (regs[i] >= dev->parent->num_addrs) {
102                         prom_printf("UGH: property for %s was %d, need < %d\n",
103                                     dev->prom_node->name, len,
104                                     dev->parent->num_addrs);
105                         panic(__FUNCTION__);
106                 }
107
108                 /* XXX resource */
109                 dev->resource[i].start =
110                         dev->parent->resource[regs[i]].start;
111         }
112
113         for (i = 0; i < PROMINTR_MAX; i++)
114                 dev->irqs[i] = PCI_IRQ_NONE;
115
116         if ((dev->irqs[0] = ebus_blacklist_irq(dev->prom_node->name)) != 0) {
117                 dev->num_irqs = 1;
118         } else {
119                 irqs = of_get_property(dp, "interrupts", &len);
120                 if (!irqs) {
121                         dev->num_irqs = 0;
122                         dev->irqs[0] = 0;
123                         if (dev->parent->num_irqs != 0) {
124                                 dev->num_irqs = 1;
125                                 dev->irqs[0] = dev->parent->irqs[0];
126                         }
127                 } else {
128                         dev->num_irqs = len / sizeof(irqs[0]);
129                         if (irqs[0] == 0 || irqs[0] >= 8) {
130                                 /*
131                                  * XXX Zero is a valid pin number...
132                                  * This works as long as Ebus is not wired
133                                  * to INTA#.
134                                  */
135                                 printk("EBUS: %s got bad irq %d from PROM\n",
136                                        dev->prom_node->name, irqs[0]);
137                                 dev->num_irqs = 0;
138                                 dev->irqs[0] = 0;
139                         } else {
140                                 dev->irqs[0] =
141                                         pcic_pin_to_irq(irqs[0],
142                                                         dev->prom_node->name);
143                         }
144                 }
145         }
146 }
147
148 void __init fill_ebus_device(struct device_node *dp, struct linux_ebus_device *dev)
149 {
150         struct linux_prom_registers *regs;
151         struct linux_ebus_child *child;
152         int *irqs;
153         int i, n, len;
154         unsigned long baseaddr;
155
156         dev->prom_node = dp;
157
158         regs = of_get_property(dp, "reg", &len);
159         if (len % sizeof(struct linux_prom_registers)) {
160                 prom_printf("UGH: proplen for %s was %d, need multiple of %d\n",
161                             dev->prom_node->name, len,
162                             (int)sizeof(struct linux_prom_registers));
163                 panic(__FUNCTION__);
164         }
165         dev->num_addrs = len / sizeof(struct linux_prom_registers);
166
167         for (i = 0; i < dev->num_addrs; i++) {
168                 /*
169                  * XXX Collect JE-1 PROM
170                  * 
171                  * Example - JS-E with 3.11:
172                  *  /ebus
173                  *      regs 
174                  *        0x00000000, 0x0, 0x00000000, 0x0, 0x00000000,
175                  *        0x82000010, 0x0, 0xf0000000, 0x0, 0x01000000,
176                  *        0x82000014, 0x0, 0x38800000, 0x0, 0x00800000,
177                  *      ranges
178                  *        0x00, 0x00000000, 0x02000010, 0x0, 0x0, 0x01000000,
179                  *        0x01, 0x01000000, 0x02000014, 0x0, 0x0, 0x00800000,
180                  *  /ebus/8042
181                  *      regs
182                  *        0x00000001, 0x00300060, 0x00000008,
183                  *        0x00000001, 0x00300060, 0x00000008,
184                  */
185                 n = regs[i].which_io;
186                 if (n >= 4) {
187                         /* XXX This is copied from old JE-1 by Gleb. */
188                         n = (regs[i].which_io - 0x10) >> 2;
189                 } else {
190                         ;
191                 }
192
193 /*
194  * XXX Now as we have regions, why don't we make an on-demand allocation...
195  */
196                 dev->resource[i].start = 0;
197                 if ((baseaddr = dev->bus->self->resource[n].start +
198                     regs[i].phys_addr) != 0) {
199                         /* dev->resource[i].name = dev->prom_name; */
200                         if ((baseaddr = (unsigned long) ioremap(baseaddr,
201                             regs[i].reg_size)) == 0) {
202                                 panic("ebus: unable to remap dev %s",
203                                       dev->prom_node->name);
204                         }
205                 }
206                 dev->resource[i].start = baseaddr;      /* XXX Unaligned */
207         }
208
209         for (i = 0; i < PROMINTR_MAX; i++)
210                 dev->irqs[i] = PCI_IRQ_NONE;
211
212         if ((dev->irqs[0] = ebus_blacklist_irq(dev->prom_node->name)) != 0) {
213                 dev->num_irqs = 1;
214         } else {
215                 irqs = of_get_property(dp, "interrupts", &len);
216                 if (!irqs) {
217                         dev->num_irqs = 0;
218                         if ((dev->irqs[0] = dev->bus->self->irq) != 0) {
219                                 dev->num_irqs = 1;
220 /* P3 */ /* printk("EBUS: child %s irq %d from parent\n", dev->prom_name, dev->irqs[0]); */
221                         }
222                 } else {
223                         dev->num_irqs = 1;  /* dev->num_irqs = len / sizeof(irqs[0]); */
224                         if (irqs[0] == 0 || irqs[0] >= 8) {
225                                 /* See above for the parent. XXX */
226                                 printk("EBUS: %s got bad irq %d from PROM\n",
227                                        dev->prom_node->name, irqs[0]);
228                                 dev->num_irqs = 0;
229                                 dev->irqs[0] = 0;
230                         } else {
231                                 dev->irqs[0] =
232                                         pcic_pin_to_irq(irqs[0],
233                                                         dev->prom_node->name);
234                         }
235                 }
236         }
237
238         dev->ofdev.node = dp;
239         dev->ofdev.dev.parent = &dev->bus->ofdev.dev;
240         dev->ofdev.dev.bus = &ebus_bus_type;
241         strcpy(dev->ofdev.dev.bus_id, dp->path_component_name);
242
243         /* Register with core */
244         if (of_device_register(&dev->ofdev) != 0)
245                 printk(KERN_DEBUG "ebus: device registration error for %s!\n",
246                        dev->ofdev.dev.bus_id);
247
248         if ((dp = dp->child) != NULL) {
249                 dev->children = (struct linux_ebus_child *)
250                         ebus_alloc(sizeof(struct linux_ebus_child));
251
252                 child = dev->children;
253                 child->next = NULL;
254                 child->parent = dev;
255                 child->bus = dev->bus;
256                 fill_ebus_child(dp, child);
257
258                 while ((dp = dp->sibling) != NULL) {
259                         child->next = (struct linux_ebus_child *)
260                                 ebus_alloc(sizeof(struct linux_ebus_child));
261
262                         child = child->next;
263                         child->next = NULL;
264                         child->parent = dev;
265                         child->bus = dev->bus;
266                         fill_ebus_child(dp, child);
267                 }
268         }
269 }
270
271 void __init ebus_init(void)
272 {
273         struct linux_prom_pci_registers *regs;
274         struct linux_pbm_info *pbm;
275         struct linux_ebus_device *dev;
276         struct linux_ebus *ebus;
277         struct ebus_system_entry *sp;
278         struct pci_dev *pdev;
279         struct pcidev_cookie *cookie;
280         struct device_node *dp;
281         unsigned long addr, *base;
282         unsigned short pci_command;
283         int len, reg, nreg;
284         int num_ebus = 0;
285
286         dp = of_find_node_by_path("/");
287         for (sp = ebus_blacklist; sp->esname != NULL; sp++) {
288                 if (strcmp(dp->name, sp->esname) == 0) {
289                         ebus_blackp = sp->ipt;
290                         break;
291                 }
292         }
293
294         pdev = pci_get_device(PCI_VENDOR_ID_SUN, PCI_DEVICE_ID_SUN_EBUS, NULL);
295         if (!pdev)
296                 return;
297
298         cookie = pdev->sysdata;
299         dp = cookie->prom_node;
300
301         ebus_chain = ebus = (struct linux_ebus *)
302                         ebus_alloc(sizeof(struct linux_ebus));
303         ebus->next = NULL;
304
305         while (dp) {
306                 struct device_node *nd;
307
308                 ebus->prom_node = dp;
309                 ebus->self = pdev;
310                 ebus->parent = pbm = cookie->pbm;
311
312                 /* Enable BUS Master. */
313                 pci_read_config_word(pdev, PCI_COMMAND, &pci_command);
314                 pci_command |= PCI_COMMAND_MASTER;
315                 pci_write_config_word(pdev, PCI_COMMAND, pci_command);
316
317                 regs = of_get_property(dp, "reg", &len);
318                 if (!regs) {
319                         prom_printf("%s: can't find reg property\n",
320                                     __FUNCTION__);
321                         prom_halt();
322                 }
323                 nreg = len / sizeof(struct linux_prom_pci_registers);
324
325                 base = &ebus->self->resource[0].start;
326                 for (reg = 0; reg < nreg; reg++) {
327                         if (!(regs[reg].which_io & 0x03000000))
328                                 continue;
329
330                         addr = regs[reg].phys_lo;
331                         *base++ = addr;
332                 }
333
334                 ebus->ofdev.node = dp;
335                 ebus->ofdev.dev.parent = &pdev->dev;
336                 ebus->ofdev.dev.bus = &ebus_bus_type;
337                 strcpy(ebus->ofdev.dev.bus_id, dp->path_component_name);
338
339                 /* Register with core */
340                 if (of_device_register(&ebus->ofdev) != 0)
341                         printk(KERN_DEBUG "ebus: device registration error for %s!\n",
342                                ebus->ofdev.dev.bus_id);
343
344
345                 nd = dp->child;
346                 if (!nd)
347                         goto next_ebus;
348
349                 ebus->devices = (struct linux_ebus_device *)
350                                 ebus_alloc(sizeof(struct linux_ebus_device));
351
352                 dev = ebus->devices;
353                 dev->next = NULL;
354                 dev->children = NULL;
355                 dev->bus = ebus;
356                 fill_ebus_device(nd, dev);
357
358                 while ((nd = nd->sibling) != NULL) {
359                         dev->next = (struct linux_ebus_device *)
360                                 ebus_alloc(sizeof(struct linux_ebus_device));
361
362                         dev = dev->next;
363                         dev->next = NULL;
364                         dev->children = NULL;
365                         dev->bus = ebus;
366                         fill_ebus_device(nd, dev);
367                 }
368
369         next_ebus:
370                 pdev = pci_get_device(PCI_VENDOR_ID_SUN,
371                                        PCI_DEVICE_ID_SUN_EBUS, pdev);
372                 if (!pdev)
373                         break;
374
375                 cookie = pdev->sysdata;
376                 dp = cookie->prom_node;
377
378                 ebus->next = (struct linux_ebus *)
379                         ebus_alloc(sizeof(struct linux_ebus));
380                 ebus = ebus->next;
381                 ebus->next = NULL;
382                 ++num_ebus;
383         }
384         if (pdev)
385                 pci_dev_put(pdev);
386 }