source: mainline/boot/genarch/src/ofw.c@ 7e752b2

lfn serial ticket/834-toolchain-update topic/msim-upgrade topic/simplify-dev-export
Last change on this file since 7e752b2 was 7e752b2, checked in by Martin Decky <martin@…>, 15 years ago
  • correct printf() formatting strings and corresponding arguments
  • minor cstyle changes and other small fixes
  • Property mode set to 100644
File size: 13.3 KB
Line 
1/*
2 * Copyright (c) 2005 Martin Decky
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 *
9 * - Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 * - Redistributions in binary form must reproduce the above copyright
12 * notice, this list of conditions and the following disclaimer in the
13 * documentation and/or other materials provided with the distribution.
14 * - The name of the author may not be used to endorse or promote products
15 * derived from this software without specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 */
28
29#include <arch/arch.h>
30#include <arch/ofw.h>
31#include <genarch/ofw.h>
32#include <printf.h>
33#include <typedefs.h>
34#include <str.h>
35#include <align.h>
36#include <halt.h>
37
38#define RED(i) (((i) >> 5) & ((1 << 3) - 1))
39#define GREEN(i) (((i) >> 3) & ((1 << 2) - 1))
40#define BLUE(i) ((i) & ((1 << 3) - 1))
41#define CLIP(i) ((i) <= 255 ? (i) : 255)
42
43uintptr_t ofw_cif;
44
45phandle ofw_chosen;
46ihandle ofw_stdout;
47phandle ofw_root;
48ihandle ofw_mmu;
49ihandle ofw_memory_prop;
50phandle ofw_memory;
51
52static char path[OFW_TREE_PATH_MAX_LEN + 1];
53
54static ihandle ofw_open(const char *name)
55{
56 return (ihandle) ofw_call("open", 1, 1, NULL, name);
57}
58
59void ofw_init(void)
60{
61 ofw_chosen = ofw_find_device("/chosen");
62 if (ofw_chosen == (phandle) -1)
63 halt();
64
65 if ((ofw_ret_t) ofw_get_property(ofw_chosen, "stdout", &ofw_stdout,
66 sizeof(ofw_stdout)) <= 0)
67 ofw_stdout = 0;
68
69 ofw_root = ofw_find_device("/");
70 if (ofw_root == (phandle) -1) {
71 printf("Error: Unable to find / device, halting.\n");
72 halt();
73 }
74
75 if ((ofw_ret_t) ofw_get_property(ofw_chosen, "mmu", &ofw_mmu,
76 sizeof(ofw_mmu)) <= 0) {
77 printf("Error: Unable to get mmu property, halting.\n");
78 halt();
79 }
80 if ((ofw_ret_t) ofw_get_property(ofw_chosen, "memory", &ofw_memory_prop,
81 sizeof(ofw_memory_prop)) <= 0) {
82 printf("Error: Unable to get memory property, halting.\n");
83 halt();
84 }
85
86 ofw_memory = ofw_find_device("/memory");
87 if (ofw_memory == (phandle) -1) {
88 printf("Error: Unable to find /memory device, halting.\n");
89 halt();
90 }
91}
92
93/** Perform a call to OpenFirmware client interface.
94 *
95 * @param service String identifying the service requested.
96 * @param nargs Number of input arguments.
97 * @param nret Number of output arguments. This includes the return
98 * value.
99 * @param rets Buffer for output arguments or NULL. The buffer must
100 * accommodate nret - 1 items.
101 *
102 * @return Return value returned by the client interface.
103 *
104 */
105ofw_arg_t ofw_call(const char *service, const size_t nargs,
106 const size_t nret, ofw_arg_t *rets, ...)
107{
108 ofw_args_t args;
109 args.service = (ofw_arg_t) service;
110 args.nargs = nargs;
111 args.nret = nret;
112
113 va_list list;
114 va_start(list, rets);
115
116 size_t i;
117 for (i = 0; i < nargs; i++)
118 args.args[i] = va_arg(list, ofw_arg_t);
119
120 va_end(list);
121
122 for (i = 0; i < nret; i++)
123 args.args[i + nargs] = 0;
124
125 (void) ofw(&args);
126
127 for (i = 1; i < nret; i++)
128 rets[i - 1] = args.args[i + nargs];
129
130 return args.args[nargs];
131}
132
133phandle ofw_find_device(const char *name)
134{
135 return (phandle) ofw_call("finddevice", 1, 1, NULL, name);
136}
137
138ofw_arg_t ofw_get_property(const phandle device, const char *name, void *buf,
139 const size_t buflen)
140{
141 return ofw_call("getprop", 4, 1, NULL, device, name, buf, buflen);
142}
143
144ofw_arg_t ofw_get_proplen(const phandle device, const char *name)
145{
146 return ofw_call("getproplen", 2, 1, NULL, device, name);
147}
148
149ofw_arg_t ofw_next_property(const phandle device, char *previous, char *buf)
150{
151 return ofw_call("nextprop", 3, 1, NULL, device, previous, buf);
152}
153
154ofw_arg_t ofw_package_to_path(const phandle device, char *buf,
155 const size_t buflen)
156{
157 return ofw_call("package-to-path", 3, 1, NULL, device, buf, buflen);
158}
159
160size_t ofw_get_address_cells(const phandle device)
161{
162 ofw_prop_t ret = 1;
163
164 if ((ofw_ret_t) ofw_get_property(device, "#address-cells", &ret,
165 sizeof(ret)) <= 0)
166 if ((ofw_ret_t) ofw_get_property(ofw_root, "#address-cells", &ret,
167 sizeof(ret)) <= 0)
168 ret = OFW_ADDRESS_CELLS;
169
170 return (size_t) ret;
171}
172
173size_t ofw_get_size_cells(const phandle device)
174{
175 ofw_prop_t ret = 1;
176
177 if ((ofw_ret_t) ofw_get_property(device, "#size-cells", &ret,
178 sizeof(ret)) <= 0)
179 if ((ofw_ret_t) ofw_get_property(ofw_root, "#size-cells", &ret,
180 sizeof(ret)) <= 0)
181 ret = OFW_SIZE_CELLS;
182
183 return (size_t) ret;
184}
185
186phandle ofw_get_child_node(const phandle node)
187{
188 return (phandle) ofw_call("child", 1, 1, NULL, node);
189}
190
191phandle ofw_get_peer_node(const phandle node)
192{
193 return (phandle) ofw_call("peer", 1, 1, NULL, node);
194}
195
196void ofw_putchar(const char ch)
197{
198 if (ofw_stdout == 0)
199 return;
200
201 ofw_call("write", 3, 1, NULL, ofw_stdout, &ch, 1);
202}
203
204void *ofw_translate(const void *virt)
205{
206 ofw_arg_t result[4];
207 if (ofw_call("call-method", 4, 5, result, "translate", ofw_mmu,
208 virt, 0) != 0) {
209 printf("Error: mmu method translate failed, halting.\n");
210 halt();
211 }
212
213 if (result[0] == false) {
214 printf("Error: Unable to translate virtual address %p, halting.\n",
215 virt);
216 halt();
217 }
218
219#ifdef __32_BITS__
220 return (void *) result[2];
221#endif
222
223#ifdef __64_BITS__
224 return (void *) ((result[2] << 32) | result[3]);
225#endif
226}
227
228static void *ofw_claim_virt_internal(const void *virt, const size_t len,
229 const size_t alignment)
230{
231 ofw_arg_t addr;
232 if ((ofw_ret_t) ofw_call("call-method", 5, 2, &addr, "claim", ofw_mmu,
233 alignment, len, (ofw_arg_t) virt) != 0) {
234 printf("Error: mmu method claim failed, halting.\n");
235 halt();
236 }
237
238 return (void *) addr;
239}
240
241void ofw_claim_virt(const void *virt, const size_t len)
242{
243 void *addr = ofw_claim_virt_internal(virt, len, 0);
244 if (addr != virt) {
245 printf("Error: Unable to claim virtual memory %p (size %zu), halting.\n",
246 virt, len);
247 halt();
248 }
249}
250
251void *ofw_claim_virt_any(const size_t len, const size_t alignment)
252{
253 void *addr = ofw_claim_virt_internal(NULL, len, alignment);
254
255 if (addr == NULL) {
256 printf("Error: Unable to claim %zu bytes in virtual memory, halting.\n",
257 len);
258 halt();
259 }
260
261 return addr;
262}
263
264static void *ofw_claim_phys_internal(const void *phys, const size_t len,
265 const size_t alignment)
266{
267 /*
268 * Note that the return value check will help
269 * us to discover conflicts between OpenFirmware
270 * allocations and our use of physical memory.
271 * It is better to detect collisions here
272 * than to cope with weird errors later.
273 *
274 * So this is really not to make the loader
275 * more generic; it is here for debugging
276 * purposes.
277 */
278
279#ifdef __32_BITS__
280 ofw_arg_t retaddr[1];
281 if (ofw_call("call-method", 5, 2, retaddr, "claim",
282 ofw_memory_prop, alignment, len, (ofw_arg_t) phys) != 0) {
283 printf("Error: memory method claim failed, halting.\n");
284 halt();
285 }
286
287 return (void *) retaddr[0];
288#endif
289
290#ifdef __64_BITS__
291 ofw_arg_t retaddr[2];
292 if (ofw_call("call-method", 6, 3, retaddr, "claim",
293 ofw_memory_prop, alignment, len, ((ofw_arg_t) phys) >> 32,
294 ((ofw_arg_t) phys) & 0xffffffff) != 0) {
295 printf("Error: memory method claim failed, halting.\n");
296 halt();
297 }
298
299 return (void *) ((retaddr[0] << 32) | retaddr[1]);
300#endif
301}
302
303void ofw_claim_phys(const void *phys, const size_t len)
304{
305 void *addr = ofw_claim_phys_internal(phys, len, 0);
306 if (addr != phys) {
307 printf("Error: Unable to claim physical memory %p (size %zu), halting.\n",
308 phys, len);
309 halt();
310 }
311}
312
313void *ofw_claim_phys_any(const size_t len, const size_t alignment)
314{
315 void *addr = ofw_claim_phys_internal(NULL, len, alignment);
316 if (addr == NULL) {
317 printf("Error: Unable to claim %zu bytes in physical memory, halting.\n",
318 len);
319 halt();
320 }
321
322 return addr;
323}
324
325void ofw_map(const void *phys, const void *virt, const size_t size,
326 const ofw_arg_t mode)
327{
328 ofw_arg_t phys_hi;
329 ofw_arg_t phys_lo;
330
331#ifdef __32_BITS__
332 phys_hi = (ofw_arg_t) phys;
333 phys_lo = 0;
334#endif
335
336#ifdef __64_BITS__
337 phys_hi = (ofw_arg_t) phys >> 32;
338 phys_lo = (ofw_arg_t) phys & 0xffffffff;
339#endif
340
341 ofw_arg_t ret = ofw_call("call-method", 7, 1, NULL, "map", ofw_mmu, mode,
342 ALIGN_UP(size, PAGE_SIZE), virt, phys_hi, phys_lo);
343
344 if (ret != 0) {
345 printf("Error: Unable to map %p to %p (size %zu), halting.\n",
346 virt, phys, size);
347 halt();
348 }
349}
350
351/** Save OpenFirmware physical memory map.
352 *
353 * @param map Memory map structure where the map will be saved.
354 *
355 */
356void ofw_memmap(memmap_t *map)
357{
358 size_t ac = ofw_get_address_cells(ofw_memory) /
359 (sizeof(uintptr_t) / sizeof(uint32_t));
360 size_t sc = ofw_get_size_cells(ofw_memory) /
361 (sizeof(uintptr_t) / sizeof(uint32_t));
362
363 uintptr_t buf[((ac + sc) * MEMMAP_MAX_RECORDS)];
364
365 /* The number of bytes read */
366 ofw_ret_t ret = (ofw_ret_t) ofw_get_property(ofw_memory, "reg", buf,
367 sizeof(buf));
368 if (ret <= 0) {
369 printf("Error: Unable to get physical memory information, halting.\n");
370 halt();
371 }
372
373 size_t pos;
374 map->total = 0;
375 map->cnt = 0;
376 for (pos = 0; (pos < ret / sizeof(uintptr_t)) &&
377 (map->cnt < MEMMAP_MAX_RECORDS); pos += ac + sc) {
378 void *start = (void *) (buf[pos + ac - 1]);
379 uint32_t size = buf[pos + ac + sc - 1];
380
381 /*
382 * This is a hot fix of the issue which occurs on machines
383 * where there are holes in the physical memory (such as
384 * SunBlade 1500). Should we detect a hole in the physical
385 * memory, we will ignore any memory detected behind
386 * the hole and pretend the hole does not exist.
387 */
388 if ((map->cnt > 0) && (map->zones[map->cnt - 1].start +
389 map->zones[map->cnt - 1].size < start))
390 break;
391
392 if (size > 0) {
393 map->zones[map->cnt].start = start;
394 map->zones[map->cnt].size = size;
395 map->cnt++;
396 map->total += size;
397 }
398 }
399
400 if (map->total == 0) {
401 printf("Error: No physical memory detected, halting.\n");
402 halt();
403 }
404}
405
406/** Allocate physical and virtual memory area and map it
407 *
408 * The allocated memory is always page-aligned.
409 *
410 * @param name Description of the memory area.
411 * @param base Virtual memory area address.
412 * @param base_pa Physical memory area address.
413 * @param size Requested size in bytes.
414 * @param min_pa Minimal allowed physical address.
415 *
416 */
417void ofw_alloc(const char *name, void **base, void **base_pa, const size_t size,
418 void *min_pa)
419{
420 do {
421 *base_pa = ofw_claim_phys_any(size, PAGE_SIZE);
422 } while (*base_pa <= min_pa);
423
424 *base = ofw_claim_virt_any(size, PAGE_SIZE);
425 ofw_map(*base_pa, *base, ALIGN_UP(size, PAGE_SIZE), (ofw_arg_t) -1);
426}
427
428static void ofw_setup_screen(phandle handle)
429{
430 /* Check for device type */
431 char device_type[OFW_TREE_PROPERTY_MAX_VALUELEN];
432 if ((ofw_ret_t) ofw_get_property(handle, "device_type", device_type,
433 OFW_TREE_PROPERTY_MAX_VALUELEN) <= 0)
434 return;
435
436 device_type[OFW_TREE_PROPERTY_MAX_VALUELEN - 1] = '\0';
437 if (str_cmp(device_type, "display") != 0)
438 return;
439
440 /* Check for 8 bit depth */
441 ofw_prop_t depth;
442 if ((ofw_ret_t) ofw_get_property(handle, "depth", &depth,
443 sizeof(depth)) <= 0)
444 depth = 0;
445
446 /* Get device path */
447 ofw_arg_t len = ofw_package_to_path(handle, path, OFW_TREE_PATH_MAX_LEN);
448 if (len == (ofw_arg_t) -1)
449 return;
450
451 path[len] = '\0';
452
453 /* Open the display to initialize it */
454 ihandle screen = ofw_open(path);
455 if (screen == (ihandle) -1)
456 return;
457
458 if (depth == 8) {
459 /* Setup the palette so that the (inverted) 3:2:3 scheme is usable */
460 size_t i;
461 for (i = 0; i < 256; i++) {
462 ofw_call("call-method", 6, 1, NULL, "color!", screen,
463 255 - i, CLIP(BLUE(i) * 37), GREEN(i) * 85, CLIP(RED(i) * 37));
464 }
465 }
466}
467
468static void ofw_setup_screens_internal(phandle current)
469{
470 while ((current != 0) && (current != (phandle) -1)) {
471 ofw_setup_screen(current);
472
473 /*
474 * Recursively process the potential child node.
475 */
476 phandle child = ofw_get_child_node(current);
477 if ((child != 0) && (child != (phandle) -1))
478 ofw_setup_screens_internal(child);
479
480 /*
481 * Iteratively process the next peer node.
482 * Note that recursion is a bad idea here.
483 * Due to the topology of the OpenFirmware device tree,
484 * the nesting of peer nodes could be to wide and the
485 * risk of overflowing the stack is too real.
486 */
487 phandle peer = ofw_get_peer_node(current);
488 if ((peer != 0) && (peer != (phandle) -1)) {
489 current = peer;
490 /*
491 * Process the peer in next iteration.
492 */
493 continue;
494 }
495
496 /*
497 * No more peers on this level.
498 */
499 break;
500 }
501}
502
503/** Setup all screens which can be detected.
504 *
505 * Open all screens which can be detected and set up the palette for the 8-bit
506 * color depth configuration so that the 3:2:3 color scheme can be used.
507 * Check that setting the palette makes sense (the color depth is not greater
508 * than 8).
509 *
510 */
511void ofw_setup_screens(void)
512{
513 ofw_setup_screens_internal(ofw_root);
514}
515
516void ofw_quiesce(void)
517{
518 ofw_call("quiesce", 0, 0, NULL);
519}
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