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1 /*
2 * QEMU sPAPR VIO code
3 *
4 * Copyright (c) 2010 David Gibson, IBM Corporation <dwg@au1.ibm.com>
5 * Based on the s390 virtio bus code:
6 * Copyright (c) 2009 Alexander Graf <agraf@suse.de>
7 *
8 * This library is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU Lesser General Public
10 * License as published by the Free Software Foundation; either
11 * version 2 of the License, or (at your option) any later version.
12 *
13 * This library is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
16 * Lesser General Public License for more details.
17 *
18 * You should have received a copy of the GNU Lesser General Public
19 * License along with this library; if not, see <http://www.gnu.org/licenses/>.
20 */
21
22 #include "hw.h"
23 #include "sysemu.h"
24 #include "boards.h"
25 #include "monitor.h"
26 #include "loader.h"
27 #include "elf.h"
28 #include "hw/sysbus.h"
29 #include "kvm.h"
30 #include "device_tree.h"
31 #include "kvm_ppc.h"
32
33 #include "hw/spapr.h"
34 #include "hw/spapr_vio.h"
35 #include "hw/xics.h"
36
37 #ifdef CONFIG_FDT
38 #include <libfdt.h>
39 #endif /* CONFIG_FDT */
40
41 /* #define DEBUG_SPAPR */
42 /* #define DEBUG_TCE */
43
44 #ifdef DEBUG_SPAPR
45 #define dprintf(fmt, ...) \
46 do { fprintf(stderr, fmt, ## __VA_ARGS__); } while (0)
47 #else
48 #define dprintf(fmt, ...) \
49 do { } while (0)
50 #endif
51
52 static Property spapr_vio_props[] = {
53 DEFINE_PROP_UINT32("irq", VIOsPAPRDevice, vio_irq_num, 0), \
54 DEFINE_PROP_END_OF_LIST(),
55 };
56
57 static const TypeInfo spapr_vio_bus_info = {
58 .name = TYPE_SPAPR_VIO_BUS,
59 .parent = TYPE_BUS,
60 .instance_size = sizeof(VIOsPAPRBus),
61 };
62
63 VIOsPAPRDevice *spapr_vio_find_by_reg(VIOsPAPRBus *bus, uint32_t reg)
64 {
65 BusChild *kid;
66 VIOsPAPRDevice *dev = NULL;
67
68 QTAILQ_FOREACH(kid, &bus->bus.children, sibling) {
69 dev = (VIOsPAPRDevice *)kid->child;
70 if (dev->reg == reg) {
71 return dev;
72 }
73 }
74
75 return NULL;
76 }
77
78 static char *vio_format_dev_name(VIOsPAPRDevice *dev)
79 {
80 VIOsPAPRDeviceClass *pc = VIO_SPAPR_DEVICE_GET_CLASS(dev);
81 char *name;
82
83 /* Device tree style name device@reg */
84 if (asprintf(&name, "%s@%x", pc->dt_name, dev->reg) < 0) {
85 return NULL;
86 }
87
88 return name;
89 }
90
91 #ifdef CONFIG_FDT
92 static int vio_make_devnode(VIOsPAPRDevice *dev,
93 void *fdt)
94 {
95 VIOsPAPRDeviceClass *pc = VIO_SPAPR_DEVICE_GET_CLASS(dev);
96 int vdevice_off, node_off, ret;
97 char *dt_name;
98
99 vdevice_off = fdt_path_offset(fdt, "/vdevice");
100 if (vdevice_off < 0) {
101 return vdevice_off;
102 }
103
104 dt_name = vio_format_dev_name(dev);
105 if (!dt_name) {
106 return -ENOMEM;
107 }
108
109 node_off = fdt_add_subnode(fdt, vdevice_off, dt_name);
110 free(dt_name);
111 if (node_off < 0) {
112 return node_off;
113 }
114
115 ret = fdt_setprop_cell(fdt, node_off, "reg", dev->reg);
116 if (ret < 0) {
117 return ret;
118 }
119
120 if (pc->dt_type) {
121 ret = fdt_setprop_string(fdt, node_off, "device_type",
122 pc->dt_type);
123 if (ret < 0) {
124 return ret;
125 }
126 }
127
128 if (pc->dt_compatible) {
129 ret = fdt_setprop_string(fdt, node_off, "compatible",
130 pc->dt_compatible);
131 if (ret < 0) {
132 return ret;
133 }
134 }
135
136 if (dev->qirq) {
137 uint32_t ints_prop[] = {cpu_to_be32(dev->vio_irq_num), 0};
138
139 ret = fdt_setprop(fdt, node_off, "interrupts", ints_prop,
140 sizeof(ints_prop));
141 if (ret < 0) {
142 return ret;
143 }
144 }
145
146 if (dev->rtce_window_size) {
147 uint32_t dma_prop[] = {cpu_to_be32(dev->reg),
148 0, 0,
149 0, cpu_to_be32(dev->rtce_window_size)};
150
151 ret = fdt_setprop_cell(fdt, node_off, "ibm,#dma-address-cells", 2);
152 if (ret < 0) {
153 return ret;
154 }
155
156 ret = fdt_setprop_cell(fdt, node_off, "ibm,#dma-size-cells", 2);
157 if (ret < 0) {
158 return ret;
159 }
160
161 ret = fdt_setprop(fdt, node_off, "ibm,my-dma-window", dma_prop,
162 sizeof(dma_prop));
163 if (ret < 0) {
164 return ret;
165 }
166 }
167
168 if (pc->devnode) {
169 ret = (pc->devnode)(dev, fdt, node_off);
170 if (ret < 0) {
171 return ret;
172 }
173 }
174
175 return node_off;
176 }
177 #endif /* CONFIG_FDT */
178
179 /*
180 * RTCE handling
181 */
182
183 static void rtce_init(VIOsPAPRDevice *dev)
184 {
185 size_t size = (dev->rtce_window_size >> SPAPR_VIO_TCE_PAGE_SHIFT)
186 * sizeof(VIOsPAPR_RTCE);
187
188 if (size) {
189 dev->rtce_table = kvmppc_create_spapr_tce(dev->reg,
190 dev->rtce_window_size,
191 &dev->kvmtce_fd);
192
193 if (!dev->rtce_table) {
194 dev->rtce_table = g_malloc0(size);
195 }
196 }
197 }
198
199 static target_ulong h_put_tce(CPUPPCState *env, sPAPREnvironment *spapr,
200 target_ulong opcode, target_ulong *args)
201 {
202 target_ulong liobn = args[0];
203 target_ulong ioba = args[1];
204 target_ulong tce = args[2];
205 VIOsPAPRDevice *dev = spapr_vio_find_by_reg(spapr->vio_bus, liobn);
206 VIOsPAPR_RTCE *rtce;
207
208 if (!dev) {
209 hcall_dprintf("LIOBN 0x" TARGET_FMT_lx " does not exist\n", liobn);
210 return H_PARAMETER;
211 }
212
213 ioba &= ~(SPAPR_VIO_TCE_PAGE_SIZE - 1);
214
215 #ifdef DEBUG_TCE
216 fprintf(stderr, "spapr_vio_put_tce on %s ioba 0x" TARGET_FMT_lx
217 " TCE 0x" TARGET_FMT_lx "\n", dev->qdev.id, ioba, tce);
218 #endif
219
220 if (ioba >= dev->rtce_window_size) {
221 hcall_dprintf("Out-of-bounds IOBA 0x" TARGET_FMT_lx "\n", ioba);
222 return H_PARAMETER;
223 }
224
225 rtce = dev->rtce_table + (ioba >> SPAPR_VIO_TCE_PAGE_SHIFT);
226 rtce->tce = tce;
227
228 return H_SUCCESS;
229 }
230
231 int spapr_vio_check_tces(VIOsPAPRDevice *dev, target_ulong ioba,
232 target_ulong len, enum VIOsPAPR_TCEAccess access)
233 {
234 int start, end, i;
235
236 start = ioba >> SPAPR_VIO_TCE_PAGE_SHIFT;
237 end = (ioba + len - 1) >> SPAPR_VIO_TCE_PAGE_SHIFT;
238
239 for (i = start; i <= end; i++) {
240 if ((dev->rtce_table[i].tce & access) != access) {
241 #ifdef DEBUG_TCE
242 fprintf(stderr, "FAIL on %d\n", i);
243 #endif
244 return -1;
245 }
246 }
247
248 return 0;
249 }
250
251 int spapr_tce_dma_write(VIOsPAPRDevice *dev, uint64_t taddr, const void *buf,
252 uint32_t size)
253 {
254 #ifdef DEBUG_TCE
255 fprintf(stderr, "spapr_tce_dma_write taddr=0x%llx size=0x%x\n",
256 (unsigned long long)taddr, size);
257 #endif
258
259 /* Check for bypass */
260 if (dev->flags & VIO_PAPR_FLAG_DMA_BYPASS) {
261 cpu_physical_memory_write(taddr, buf, size);
262 return 0;
263 }
264
265 while (size) {
266 uint64_t tce;
267 uint32_t lsize;
268 uint64_t txaddr;
269
270 /* Check if we are in bound */
271 if (taddr >= dev->rtce_window_size) {
272 #ifdef DEBUG_TCE
273 fprintf(stderr, "spapr_tce_dma_write out of bounds\n");
274 #endif
275 return H_DEST_PARM;
276 }
277 tce = dev->rtce_table[taddr >> SPAPR_VIO_TCE_PAGE_SHIFT].tce;
278
279 /* How much til end of page ? */
280 lsize = MIN(size, ((~taddr) & SPAPR_VIO_TCE_PAGE_MASK) + 1);
281
282 /* Check TCE */
283 if (!(tce & 2)) {
284 return H_DEST_PARM;
285 }
286
287 /* Translate */
288 txaddr = (tce & ~SPAPR_VIO_TCE_PAGE_MASK) |
289 (taddr & SPAPR_VIO_TCE_PAGE_MASK);
290
291 #ifdef DEBUG_TCE
292 fprintf(stderr, " -> write to txaddr=0x%llx, size=0x%x\n",
293 (unsigned long long)txaddr, lsize);
294 #endif
295
296 /* Do it */
297 cpu_physical_memory_write(txaddr, buf, lsize);
298 buf += lsize;
299 taddr += lsize;
300 size -= lsize;
301 }
302 return 0;
303 }
304
305 int spapr_tce_dma_zero(VIOsPAPRDevice *dev, uint64_t taddr, uint32_t size)
306 {
307 /* FIXME: allocating a temp buffer is nasty, but just stepping
308 * through writing zeroes is awkward. This will do for now. */
309 uint8_t zeroes[size];
310
311 #ifdef DEBUG_TCE
312 fprintf(stderr, "spapr_tce_dma_zero taddr=0x%llx size=0x%x\n",
313 (unsigned long long)taddr, size);
314 #endif
315
316 memset(zeroes, 0, size);
317 return spapr_tce_dma_write(dev, taddr, zeroes, size);
318 }
319
320 void stb_tce(VIOsPAPRDevice *dev, uint64_t taddr, uint8_t val)
321 {
322 spapr_tce_dma_write(dev, taddr, &val, sizeof(val));
323 }
324
325 void sth_tce(VIOsPAPRDevice *dev, uint64_t taddr, uint16_t val)
326 {
327 val = tswap16(val);
328 spapr_tce_dma_write(dev, taddr, &val, sizeof(val));
329 }
330
331
332 void stw_tce(VIOsPAPRDevice *dev, uint64_t taddr, uint32_t val)
333 {
334 val = tswap32(val);
335 spapr_tce_dma_write(dev, taddr, &val, sizeof(val));
336 }
337
338 void stq_tce(VIOsPAPRDevice *dev, uint64_t taddr, uint64_t val)
339 {
340 val = tswap64(val);
341 spapr_tce_dma_write(dev, taddr, &val, sizeof(val));
342 }
343
344 int spapr_tce_dma_read(VIOsPAPRDevice *dev, uint64_t taddr, void *buf,
345 uint32_t size)
346 {
347 #ifdef DEBUG_TCE
348 fprintf(stderr, "spapr_tce_dma_write taddr=0x%llx size=0x%x\n",
349 (unsigned long long)taddr, size);
350 #endif
351
352 /* Check for bypass */
353 if (dev->flags & VIO_PAPR_FLAG_DMA_BYPASS) {
354 cpu_physical_memory_read(taddr, buf, size);
355 return 0;
356 }
357
358 while (size) {
359 uint64_t tce;
360 uint32_t lsize;
361 uint64_t txaddr;
362
363 /* Check if we are in bound */
364 if (taddr >= dev->rtce_window_size) {
365 #ifdef DEBUG_TCE
366 fprintf(stderr, "spapr_tce_dma_read out of bounds\n");
367 #endif
368 return H_DEST_PARM;
369 }
370 tce = dev->rtce_table[taddr >> SPAPR_VIO_TCE_PAGE_SHIFT].tce;
371
372 /* How much til end of page ? */
373 lsize = MIN(size, ((~taddr) & SPAPR_VIO_TCE_PAGE_MASK) + 1);
374
375 /* Check TCE */
376 if (!(tce & 1)) {
377 return H_DEST_PARM;
378 }
379
380 /* Translate */
381 txaddr = (tce & ~SPAPR_VIO_TCE_PAGE_MASK) |
382 (taddr & SPAPR_VIO_TCE_PAGE_MASK);
383
384 #ifdef DEBUG_TCE
385 fprintf(stderr, " -> write to txaddr=0x%llx, size=0x%x\n",
386 (unsigned long long)txaddr, lsize);
387 #endif
388 /* Do it */
389 cpu_physical_memory_read(txaddr, buf, lsize);
390 buf += lsize;
391 taddr += lsize;
392 size -= lsize;
393 }
394 return H_SUCCESS;
395 }
396
397 uint64_t ldq_tce(VIOsPAPRDevice *dev, uint64_t taddr)
398 {
399 uint64_t val;
400
401 spapr_tce_dma_read(dev, taddr, &val, sizeof(val));
402 return tswap64(val);
403 }
404
405 /*
406 * CRQ handling
407 */
408 static target_ulong h_reg_crq(CPUPPCState *env, sPAPREnvironment *spapr,
409 target_ulong opcode, target_ulong *args)
410 {
411 target_ulong reg = args[0];
412 target_ulong queue_addr = args[1];
413 target_ulong queue_len = args[2];
414 VIOsPAPRDevice *dev = spapr_vio_find_by_reg(spapr->vio_bus, reg);
415
416 if (!dev) {
417 hcall_dprintf("Unit 0x" TARGET_FMT_lx " does not exist\n", reg);
418 return H_PARAMETER;
419 }
420
421 /* We can't grok a queue size bigger than 256M for now */
422 if (queue_len < 0x1000 || queue_len > 0x10000000) {
423 hcall_dprintf("Queue size too small or too big (0x" TARGET_FMT_lx
424 ")\n", queue_len);
425 return H_PARAMETER;
426 }
427
428 /* Check queue alignment */
429 if (queue_addr & 0xfff) {
430 hcall_dprintf("Queue not aligned (0x" TARGET_FMT_lx ")\n", queue_addr);
431 return H_PARAMETER;
432 }
433
434 /* Check if device supports CRQs */
435 if (!dev->crq.SendFunc) {
436 hcall_dprintf("Device does not support CRQ\n");
437 return H_NOT_FOUND;
438 }
439
440 /* Already a queue ? */
441 if (dev->crq.qsize) {
442 hcall_dprintf("CRQ already registered\n");
443 return H_RESOURCE;
444 }
445 dev->crq.qladdr = queue_addr;
446 dev->crq.qsize = queue_len;
447 dev->crq.qnext = 0;
448
449 dprintf("CRQ for dev 0x" TARGET_FMT_lx " registered at 0x"
450 TARGET_FMT_lx "/0x" TARGET_FMT_lx "\n",
451 reg, queue_addr, queue_len);
452 return H_SUCCESS;
453 }
454
455 static target_ulong free_crq(VIOsPAPRDevice *dev)
456 {
457 dev->crq.qladdr = 0;
458 dev->crq.qsize = 0;
459 dev->crq.qnext = 0;
460
461 dprintf("CRQ for dev 0x%" PRIx32 " freed\n", dev->reg);
462
463 return H_SUCCESS;
464 }
465
466 static target_ulong h_free_crq(CPUPPCState *env, sPAPREnvironment *spapr,
467 target_ulong opcode, target_ulong *args)
468 {
469 target_ulong reg = args[0];
470 VIOsPAPRDevice *dev = spapr_vio_find_by_reg(spapr->vio_bus, reg);
471
472 if (!dev) {
473 hcall_dprintf("Unit 0x" TARGET_FMT_lx " does not exist\n", reg);
474 return H_PARAMETER;
475 }
476
477 return free_crq(dev);
478 }
479
480 static target_ulong h_send_crq(CPUPPCState *env, sPAPREnvironment *spapr,
481 target_ulong opcode, target_ulong *args)
482 {
483 target_ulong reg = args[0];
484 target_ulong msg_hi = args[1];
485 target_ulong msg_lo = args[2];
486 VIOsPAPRDevice *dev = spapr_vio_find_by_reg(spapr->vio_bus, reg);
487 uint64_t crq_mangle[2];
488
489 if (!dev) {
490 hcall_dprintf("Unit 0x" TARGET_FMT_lx " does not exist\n", reg);
491 return H_PARAMETER;
492 }
493 crq_mangle[0] = cpu_to_be64(msg_hi);
494 crq_mangle[1] = cpu_to_be64(msg_lo);
495
496 if (dev->crq.SendFunc) {
497 return dev->crq.SendFunc(dev, (uint8_t *)crq_mangle);
498 }
499
500 return H_HARDWARE;
501 }
502
503 static target_ulong h_enable_crq(CPUPPCState *env, sPAPREnvironment *spapr,
504 target_ulong opcode, target_ulong *args)
505 {
506 target_ulong reg = args[0];
507 VIOsPAPRDevice *dev = spapr_vio_find_by_reg(spapr->vio_bus, reg);
508
509 if (!dev) {
510 hcall_dprintf("Unit 0x" TARGET_FMT_lx " does not exist\n", reg);
511 return H_PARAMETER;
512 }
513
514 return 0;
515 }
516
517 /* Returns negative error, 0 success, or positive: queue full */
518 int spapr_vio_send_crq(VIOsPAPRDevice *dev, uint8_t *crq)
519 {
520 int rc;
521 uint8_t byte;
522
523 if (!dev->crq.qsize) {
524 fprintf(stderr, "spapr_vio_send_creq on uninitialized queue\n");
525 return -1;
526 }
527
528 /* Maybe do a fast path for KVM just writing to the pages */
529 rc = spapr_tce_dma_read(dev, dev->crq.qladdr + dev->crq.qnext, &byte, 1);
530 if (rc) {
531 return rc;
532 }
533 if (byte != 0) {
534 return 1;
535 }
536
537 rc = spapr_tce_dma_write(dev, dev->crq.qladdr + dev->crq.qnext + 8,
538 &crq[8], 8);
539 if (rc) {
540 return rc;
541 }
542
543 kvmppc_eieio();
544
545 rc = spapr_tce_dma_write(dev, dev->crq.qladdr + dev->crq.qnext, crq, 8);
546 if (rc) {
547 return rc;
548 }
549
550 dev->crq.qnext = (dev->crq.qnext + 16) % dev->crq.qsize;
551
552 if (dev->signal_state & 1) {
553 qemu_irq_pulse(dev->qirq);
554 }
555
556 return 0;
557 }
558
559 /* "quiesce" handling */
560
561 static void spapr_vio_quiesce_one(VIOsPAPRDevice *dev)
562 {
563 dev->flags &= ~VIO_PAPR_FLAG_DMA_BYPASS;
564
565 if (dev->rtce_table) {
566 size_t size = (dev->rtce_window_size >> SPAPR_VIO_TCE_PAGE_SHIFT)
567 * sizeof(VIOsPAPR_RTCE);
568 memset(dev->rtce_table, 0, size);
569 }
570
571 dev->crq.qladdr = 0;
572 dev->crq.qsize = 0;
573 dev->crq.qnext = 0;
574 }
575
576 static void rtas_set_tce_bypass(sPAPREnvironment *spapr, uint32_t token,
577 uint32_t nargs, target_ulong args,
578 uint32_t nret, target_ulong rets)
579 {
580 VIOsPAPRBus *bus = spapr->vio_bus;
581 VIOsPAPRDevice *dev;
582 uint32_t unit, enable;
583
584 if (nargs != 2) {
585 rtas_st(rets, 0, -3);
586 return;
587 }
588 unit = rtas_ld(args, 0);
589 enable = rtas_ld(args, 1);
590 dev = spapr_vio_find_by_reg(bus, unit);
591 if (!dev) {
592 rtas_st(rets, 0, -3);
593 return;
594 }
595 if (enable) {
596 dev->flags |= VIO_PAPR_FLAG_DMA_BYPASS;
597 } else {
598 dev->flags &= ~VIO_PAPR_FLAG_DMA_BYPASS;
599 }
600
601 rtas_st(rets, 0, 0);
602 }
603
604 static void rtas_quiesce(sPAPREnvironment *spapr, uint32_t token,
605 uint32_t nargs, target_ulong args,
606 uint32_t nret, target_ulong rets)
607 {
608 VIOsPAPRBus *bus = spapr->vio_bus;
609 BusChild *kid;
610 VIOsPAPRDevice *dev = NULL;
611
612 if (nargs != 0) {
613 rtas_st(rets, 0, -3);
614 return;
615 }
616
617 QTAILQ_FOREACH(kid, &bus->bus.children, sibling) {
618 dev = (VIOsPAPRDevice *)kid->child;
619 spapr_vio_quiesce_one(dev);
620 }
621
622 rtas_st(rets, 0, 0);
623 }
624
625 static VIOsPAPRDevice *reg_conflict(VIOsPAPRDevice *dev)
626 {
627 VIOsPAPRBus *bus = DO_UPCAST(VIOsPAPRBus, bus, dev->qdev.parent_bus);
628 BusChild *kid;
629 VIOsPAPRDevice *other;
630
631 /*
632 * Check for a device other than the given one which is already
633 * using the requested address. We have to open code this because
634 * the given dev might already be in the list.
635 */
636 QTAILQ_FOREACH(kid, &bus->bus.children, sibling) {
637 other = DO_UPCAST(VIOsPAPRDevice, qdev, kid->child);
638
639 if (other != dev && other->reg == dev->reg) {
640 return other;
641 }
642 }
643
644 return 0;
645 }
646
647 static void spapr_vio_busdev_reset(DeviceState *qdev)
648 {
649 VIOsPAPRDevice *dev = DO_UPCAST(VIOsPAPRDevice, qdev, qdev);
650 VIOsPAPRDeviceClass *pc = VIO_SPAPR_DEVICE_GET_CLASS(dev);
651
652 if (dev->crq.qsize) {
653 free_crq(dev);
654 }
655
656 if (pc->reset) {
657 pc->reset(dev);
658 }
659 }
660
661 static int spapr_vio_busdev_init(DeviceState *qdev)
662 {
663 VIOsPAPRDevice *dev = (VIOsPAPRDevice *)qdev;
664 VIOsPAPRDeviceClass *pc = VIO_SPAPR_DEVICE_GET_CLASS(dev);
665 char *id;
666
667 if (dev->reg != -1) {
668 /*
669 * Explicitly assigned address, just verify that no-one else
670 * is using it. other mechanism). We have to open code this
671 * rather than using spapr_vio_find_by_reg() because sdev
672 * itself is already in the list.
673 */
674 VIOsPAPRDevice *other = reg_conflict(dev);
675
676 if (other) {
677 fprintf(stderr, "vio: %s and %s devices conflict at address %#x\n",
678 object_get_typename(OBJECT(qdev)),
679 object_get_typename(OBJECT(&other->qdev)),
680 dev->reg);
681 return -1;
682 }
683 } else {
684 /* Need to assign an address */
685 VIOsPAPRBus *bus = DO_UPCAST(VIOsPAPRBus, bus, dev->qdev.parent_bus);
686
687 do {
688 dev->reg = bus->next_reg++;
689 } while (reg_conflict(dev));
690 }
691
692 /* Don't overwrite ids assigned on the command line */
693 if (!dev->qdev.id) {
694 id = vio_format_dev_name(dev);
695 if (!id) {
696 return -1;
697 }
698 dev->qdev.id = id;
699 }
700
701 dev->qirq = spapr_allocate_msi(dev->vio_irq_num, &dev->vio_irq_num);
702 if (!dev->qirq) {
703 return -1;
704 }
705
706 rtce_init(dev);
707
708 return pc->init(dev);
709 }
710
711 static target_ulong h_vio_signal(CPUPPCState *env, sPAPREnvironment *spapr,
712 target_ulong opcode,
713 target_ulong *args)
714 {
715 target_ulong reg = args[0];
716 target_ulong mode = args[1];
717 VIOsPAPRDevice *dev = spapr_vio_find_by_reg(spapr->vio_bus, reg);
718 VIOsPAPRDeviceClass *pc;
719
720 if (!dev) {
721 return H_PARAMETER;
722 }
723
724 pc = VIO_SPAPR_DEVICE_GET_CLASS(dev);
725
726 if (mode & ~pc->signal_mask) {
727 return H_PARAMETER;
728 }
729
730 dev->signal_state = mode;
731
732 return H_SUCCESS;
733 }
734
735 VIOsPAPRBus *spapr_vio_bus_init(void)
736 {
737 VIOsPAPRBus *bus;
738 BusState *qbus;
739 DeviceState *dev;
740
741 /* Create bridge device */
742 dev = qdev_create(NULL, "spapr-vio-bridge");
743 qdev_init_nofail(dev);
744
745 /* Create bus on bridge device */
746
747 qbus = qbus_create(TYPE_SPAPR_VIO_BUS, dev, "spapr-vio");
748 bus = DO_UPCAST(VIOsPAPRBus, bus, qbus);
749 bus->next_reg = 0x1000;
750
751 /* hcall-vio */
752 spapr_register_hypercall(H_VIO_SIGNAL, h_vio_signal);
753
754 /* hcall-tce */
755 spapr_register_hypercall(H_PUT_TCE, h_put_tce);
756
757 /* hcall-crq */
758 spapr_register_hypercall(H_REG_CRQ, h_reg_crq);
759 spapr_register_hypercall(H_FREE_CRQ, h_free_crq);
760 spapr_register_hypercall(H_SEND_CRQ, h_send_crq);
761 spapr_register_hypercall(H_ENABLE_CRQ, h_enable_crq);
762
763 /* RTAS calls */
764 spapr_rtas_register("ibm,set-tce-bypass", rtas_set_tce_bypass);
765 spapr_rtas_register("quiesce", rtas_quiesce);
766
767 return bus;
768 }
769
770 /* Represents sPAPR hcall VIO devices */
771
772 static int spapr_vio_bridge_init(SysBusDevice *dev)
773 {
774 /* nothing */
775 return 0;
776 }
777
778 static void spapr_vio_bridge_class_init(ObjectClass *klass, void *data)
779 {
780 DeviceClass *dc = DEVICE_CLASS(klass);
781 SysBusDeviceClass *k = SYS_BUS_DEVICE_CLASS(klass);
782
783 k->init = spapr_vio_bridge_init;
784 dc->no_user = 1;
785 }
786
787 static TypeInfo spapr_vio_bridge_info = {
788 .name = "spapr-vio-bridge",
789 .parent = TYPE_SYS_BUS_DEVICE,
790 .instance_size = sizeof(SysBusDevice),
791 .class_init = spapr_vio_bridge_class_init,
792 };
793
794 static void vio_spapr_device_class_init(ObjectClass *klass, void *data)
795 {
796 DeviceClass *k = DEVICE_CLASS(klass);
797 k->init = spapr_vio_busdev_init;
798 k->reset = spapr_vio_busdev_reset;
799 k->bus_type = TYPE_SPAPR_VIO_BUS;
800 k->props = spapr_vio_props;
801 }
802
803 static TypeInfo spapr_vio_type_info = {
804 .name = TYPE_VIO_SPAPR_DEVICE,
805 .parent = TYPE_DEVICE,
806 .instance_size = sizeof(VIOsPAPRDevice),
807 .abstract = true,
808 .class_size = sizeof(VIOsPAPRDeviceClass),
809 .class_init = vio_spapr_device_class_init,
810 };
811
812 static void spapr_vio_register_types(void)
813 {
814 type_register_static(&spapr_vio_bus_info);
815 type_register_static(&spapr_vio_bridge_info);
816 type_register_static(&spapr_vio_type_info);
817 }
818
819 type_init(spapr_vio_register_types)
820
821 #ifdef CONFIG_FDT
822 static int compare_reg(const void *p1, const void *p2)
823 {
824 VIOsPAPRDevice const *dev1, *dev2;
825
826 dev1 = (VIOsPAPRDevice *)*(DeviceState **)p1;
827 dev2 = (VIOsPAPRDevice *)*(DeviceState **)p2;
828
829 if (dev1->reg < dev2->reg) {
830 return -1;
831 }
832 if (dev1->reg == dev2->reg) {
833 return 0;
834 }
835
836 /* dev1->reg > dev2->reg */
837 return 1;
838 }
839
840 int spapr_populate_vdevice(VIOsPAPRBus *bus, void *fdt)
841 {
842 DeviceState *qdev, **qdevs;
843 BusChild *kid;
844 int i, num, ret = 0;
845
846 /* Count qdevs on the bus list */
847 num = 0;
848 QTAILQ_FOREACH(kid, &bus->bus.children, sibling) {
849 num++;
850 }
851
852 /* Copy out into an array of pointers */
853 qdevs = g_malloc(sizeof(qdev) * num);
854 num = 0;
855 QTAILQ_FOREACH(kid, &bus->bus.children, sibling) {
856 qdevs[num++] = kid->child;
857 }
858
859 /* Sort the array */
860 qsort(qdevs, num, sizeof(qdev), compare_reg);
861
862 /* Hack alert. Give the devices to libfdt in reverse order, we happen
863 * to know that will mean they are in forward order in the tree. */
864 for (i = num - 1; i >= 0; i--) {
865 VIOsPAPRDevice *dev = (VIOsPAPRDevice *)(qdevs[i]);
866
867 ret = vio_make_devnode(dev, fdt);
868
869 if (ret < 0) {
870 goto out;
871 }
872 }
873
874 ret = 0;
875 out:
876 free(qdevs);
877
878 return ret;
879 }
880
881 int spapr_populate_chosen_stdout(void *fdt, VIOsPAPRBus *bus)
882 {
883 VIOsPAPRDevice *dev;
884 char *name, *path;
885 int ret, offset;
886
887 dev = spapr_vty_get_default(bus);
888 if (!dev)
889 return 0;
890
891 offset = fdt_path_offset(fdt, "/chosen");
892 if (offset < 0) {
893 return offset;
894 }
895
896 name = vio_format_dev_name(dev);
897 if (!name) {
898 return -ENOMEM;
899 }
900
901 if (asprintf(&path, "/vdevice/%s", name) < 0) {
902 path = NULL;
903 ret = -ENOMEM;
904 goto out;
905 }
906
907 ret = fdt_setprop_string(fdt, offset, "linux,stdout-path", path);
908 out:
909 free(name);
910 free(path);
911
912 return ret;
913 }
914 #endif /* CONFIG_FDT */