hw: ccid-card-emulated: cleanup resource when realize in error path
[qemu/ar7.git] / hw / ppc / ppc440_uc.c
blob09ccda548f36c180a2d40d84909fce4edf197963
1 /*
2 * QEMU PowerPC 440 embedded processors emulation
4 * Copyright (c) 2012 François Revol
5 * Copyright (c) 2016-2018 BALATON Zoltan
7 * This work is licensed under the GNU GPL license version 2 or later.
9 */
11 #include "qemu/osdep.h"
12 #include "qemu/units.h"
13 #include "qemu-common.h"
14 #include "qemu/error-report.h"
15 #include "qapi/error.h"
16 #include "qemu/log.h"
17 #include "cpu.h"
18 #include "hw/hw.h"
19 #include "exec/address-spaces.h"
20 #include "exec/memory.h"
21 #include "hw/ppc/ppc.h"
22 #include "hw/pci/pci.h"
23 #include "sysemu/block-backend.h"
24 #include "ppc440.h"
26 /*****************************************************************************/
27 /* L2 Cache as SRAM */
28 /* FIXME:fix names */
29 enum {
30 DCR_L2CACHE_BASE = 0x30,
31 DCR_L2CACHE_CFG = DCR_L2CACHE_BASE,
32 DCR_L2CACHE_CMD,
33 DCR_L2CACHE_ADDR,
34 DCR_L2CACHE_DATA,
35 DCR_L2CACHE_STAT,
36 DCR_L2CACHE_CVER,
37 DCR_L2CACHE_SNP0,
38 DCR_L2CACHE_SNP1,
39 DCR_L2CACHE_END = DCR_L2CACHE_SNP1,
42 /* base is 460ex-specific, cf. U-Boot, ppc4xx-isram.h */
43 enum {
44 DCR_ISRAM0_BASE = 0x20,
45 DCR_ISRAM0_SB0CR = DCR_ISRAM0_BASE,
46 DCR_ISRAM0_SB1CR,
47 DCR_ISRAM0_SB2CR,
48 DCR_ISRAM0_SB3CR,
49 DCR_ISRAM0_BEAR,
50 DCR_ISRAM0_BESR0,
51 DCR_ISRAM0_BESR1,
52 DCR_ISRAM0_PMEG,
53 DCR_ISRAM0_CID,
54 DCR_ISRAM0_REVID,
55 DCR_ISRAM0_DPC,
56 DCR_ISRAM0_END = DCR_ISRAM0_DPC
59 enum {
60 DCR_ISRAM1_BASE = 0xb0,
61 DCR_ISRAM1_SB0CR = DCR_ISRAM1_BASE,
62 /* single bank */
63 DCR_ISRAM1_BEAR = DCR_ISRAM1_BASE + 0x04,
64 DCR_ISRAM1_BESR0,
65 DCR_ISRAM1_BESR1,
66 DCR_ISRAM1_PMEG,
67 DCR_ISRAM1_CID,
68 DCR_ISRAM1_REVID,
69 DCR_ISRAM1_DPC,
70 DCR_ISRAM1_END = DCR_ISRAM1_DPC
73 typedef struct ppc4xx_l2sram_t {
74 MemoryRegion bank[4];
75 uint32_t l2cache[8];
76 uint32_t isram0[11];
77 } ppc4xx_l2sram_t;
79 #ifdef MAP_L2SRAM
80 static void l2sram_update_mappings(ppc4xx_l2sram_t *l2sram,
81 uint32_t isarc, uint32_t isacntl,
82 uint32_t dsarc, uint32_t dsacntl)
84 if (l2sram->isarc != isarc ||
85 (l2sram->isacntl & 0x80000000) != (isacntl & 0x80000000)) {
86 if (l2sram->isacntl & 0x80000000) {
87 /* Unmap previously assigned memory region */
88 memory_region_del_subregion(get_system_memory(),
89 &l2sram->isarc_ram);
91 if (isacntl & 0x80000000) {
92 /* Map new instruction memory region */
93 memory_region_add_subregion(get_system_memory(), isarc,
94 &l2sram->isarc_ram);
97 if (l2sram->dsarc != dsarc ||
98 (l2sram->dsacntl & 0x80000000) != (dsacntl & 0x80000000)) {
99 if (l2sram->dsacntl & 0x80000000) {
100 /* Beware not to unmap the region we just mapped */
101 if (!(isacntl & 0x80000000) || l2sram->dsarc != isarc) {
102 /* Unmap previously assigned memory region */
103 memory_region_del_subregion(get_system_memory(),
104 &l2sram->dsarc_ram);
107 if (dsacntl & 0x80000000) {
108 /* Beware not to remap the region we just mapped */
109 if (!(isacntl & 0x80000000) || dsarc != isarc) {
110 /* Map new data memory region */
111 memory_region_add_subregion(get_system_memory(), dsarc,
112 &l2sram->dsarc_ram);
117 #endif
119 static uint32_t dcr_read_l2sram(void *opaque, int dcrn)
121 ppc4xx_l2sram_t *l2sram = opaque;
122 uint32_t ret = 0;
124 switch (dcrn) {
125 case DCR_L2CACHE_CFG:
126 case DCR_L2CACHE_CMD:
127 case DCR_L2CACHE_ADDR:
128 case DCR_L2CACHE_DATA:
129 case DCR_L2CACHE_STAT:
130 case DCR_L2CACHE_CVER:
131 case DCR_L2CACHE_SNP0:
132 case DCR_L2CACHE_SNP1:
133 ret = l2sram->l2cache[dcrn - DCR_L2CACHE_BASE];
134 break;
136 case DCR_ISRAM0_SB0CR:
137 case DCR_ISRAM0_SB1CR:
138 case DCR_ISRAM0_SB2CR:
139 case DCR_ISRAM0_SB3CR:
140 case DCR_ISRAM0_BEAR:
141 case DCR_ISRAM0_BESR0:
142 case DCR_ISRAM0_BESR1:
143 case DCR_ISRAM0_PMEG:
144 case DCR_ISRAM0_CID:
145 case DCR_ISRAM0_REVID:
146 case DCR_ISRAM0_DPC:
147 ret = l2sram->isram0[dcrn - DCR_ISRAM0_BASE];
148 break;
150 default:
151 break;
154 return ret;
157 static void dcr_write_l2sram(void *opaque, int dcrn, uint32_t val)
159 /*ppc4xx_l2sram_t *l2sram = opaque;*/
160 /* FIXME: Actually handle L2 cache mapping */
162 switch (dcrn) {
163 case DCR_L2CACHE_CFG:
164 case DCR_L2CACHE_CMD:
165 case DCR_L2CACHE_ADDR:
166 case DCR_L2CACHE_DATA:
167 case DCR_L2CACHE_STAT:
168 case DCR_L2CACHE_CVER:
169 case DCR_L2CACHE_SNP0:
170 case DCR_L2CACHE_SNP1:
171 /*l2sram->l2cache[dcrn - DCR_L2CACHE_BASE] = val;*/
172 break;
174 case DCR_ISRAM0_SB0CR:
175 case DCR_ISRAM0_SB1CR:
176 case DCR_ISRAM0_SB2CR:
177 case DCR_ISRAM0_SB3CR:
178 case DCR_ISRAM0_BEAR:
179 case DCR_ISRAM0_BESR0:
180 case DCR_ISRAM0_BESR1:
181 case DCR_ISRAM0_PMEG:
182 case DCR_ISRAM0_CID:
183 case DCR_ISRAM0_REVID:
184 case DCR_ISRAM0_DPC:
185 /*l2sram->isram0[dcrn - DCR_L2CACHE_BASE] = val;*/
186 break;
188 case DCR_ISRAM1_SB0CR:
189 case DCR_ISRAM1_BEAR:
190 case DCR_ISRAM1_BESR0:
191 case DCR_ISRAM1_BESR1:
192 case DCR_ISRAM1_PMEG:
193 case DCR_ISRAM1_CID:
194 case DCR_ISRAM1_REVID:
195 case DCR_ISRAM1_DPC:
196 /*l2sram->isram1[dcrn - DCR_L2CACHE_BASE] = val;*/
197 break;
199 /*l2sram_update_mappings(l2sram, isarc, isacntl, dsarc, dsacntl);*/
202 static void l2sram_reset(void *opaque)
204 ppc4xx_l2sram_t *l2sram = opaque;
206 memset(l2sram->l2cache, 0, sizeof(l2sram->l2cache));
207 l2sram->l2cache[DCR_L2CACHE_STAT - DCR_L2CACHE_BASE] = 0x80000000;
208 memset(l2sram->isram0, 0, sizeof(l2sram->isram0));
209 /*l2sram_update_mappings(l2sram, isarc, isacntl, dsarc, dsacntl);*/
212 void ppc4xx_l2sram_init(CPUPPCState *env)
214 ppc4xx_l2sram_t *l2sram;
216 l2sram = g_malloc0(sizeof(*l2sram));
217 /* XXX: Size is 4*64kB for 460ex, cf. U-Boot, ppc4xx-isram.h */
218 memory_region_init_ram(&l2sram->bank[0], NULL, "ppc4xx.l2sram_bank0",
219 64 * KiB, &error_abort);
220 memory_region_init_ram(&l2sram->bank[1], NULL, "ppc4xx.l2sram_bank1",
221 64 * KiB, &error_abort);
222 memory_region_init_ram(&l2sram->bank[2], NULL, "ppc4xx.l2sram_bank2",
223 64 * KiB, &error_abort);
224 memory_region_init_ram(&l2sram->bank[3], NULL, "ppc4xx.l2sram_bank3",
225 64 * KiB, &error_abort);
226 qemu_register_reset(&l2sram_reset, l2sram);
227 ppc_dcr_register(env, DCR_L2CACHE_CFG,
228 l2sram, &dcr_read_l2sram, &dcr_write_l2sram);
229 ppc_dcr_register(env, DCR_L2CACHE_CMD,
230 l2sram, &dcr_read_l2sram, &dcr_write_l2sram);
231 ppc_dcr_register(env, DCR_L2CACHE_ADDR,
232 l2sram, &dcr_read_l2sram, &dcr_write_l2sram);
233 ppc_dcr_register(env, DCR_L2CACHE_DATA,
234 l2sram, &dcr_read_l2sram, &dcr_write_l2sram);
235 ppc_dcr_register(env, DCR_L2CACHE_STAT,
236 l2sram, &dcr_read_l2sram, &dcr_write_l2sram);
237 ppc_dcr_register(env, DCR_L2CACHE_CVER,
238 l2sram, &dcr_read_l2sram, &dcr_write_l2sram);
239 ppc_dcr_register(env, DCR_L2CACHE_SNP0,
240 l2sram, &dcr_read_l2sram, &dcr_write_l2sram);
241 ppc_dcr_register(env, DCR_L2CACHE_SNP1,
242 l2sram, &dcr_read_l2sram, &dcr_write_l2sram);
244 ppc_dcr_register(env, DCR_ISRAM0_SB0CR,
245 l2sram, &dcr_read_l2sram, &dcr_write_l2sram);
246 ppc_dcr_register(env, DCR_ISRAM0_SB1CR,
247 l2sram, &dcr_read_l2sram, &dcr_write_l2sram);
248 ppc_dcr_register(env, DCR_ISRAM0_SB2CR,
249 l2sram, &dcr_read_l2sram, &dcr_write_l2sram);
250 ppc_dcr_register(env, DCR_ISRAM0_SB3CR,
251 l2sram, &dcr_read_l2sram, &dcr_write_l2sram);
252 ppc_dcr_register(env, DCR_ISRAM0_PMEG,
253 l2sram, &dcr_read_l2sram, &dcr_write_l2sram);
254 ppc_dcr_register(env, DCR_ISRAM0_DPC,
255 l2sram, &dcr_read_l2sram, &dcr_write_l2sram);
257 ppc_dcr_register(env, DCR_ISRAM1_SB0CR,
258 l2sram, &dcr_read_l2sram, &dcr_write_l2sram);
259 ppc_dcr_register(env, DCR_ISRAM1_PMEG,
260 l2sram, &dcr_read_l2sram, &dcr_write_l2sram);
261 ppc_dcr_register(env, DCR_ISRAM1_DPC,
262 l2sram, &dcr_read_l2sram, &dcr_write_l2sram);
265 /*****************************************************************************/
266 /* Clocking Power on Reset */
267 enum {
268 CPR0_CFGADDR = 0xC,
269 CPR0_CFGDATA = 0xD,
271 CPR0_PLLD = 0x060,
272 CPR0_PLBED = 0x080,
273 CPR0_OPBD = 0x0C0,
274 CPR0_PERD = 0x0E0,
275 CPR0_AHBD = 0x100,
278 typedef struct ppc4xx_cpr_t {
279 uint32_t addr;
280 } ppc4xx_cpr_t;
282 static uint32_t dcr_read_cpr(void *opaque, int dcrn)
284 ppc4xx_cpr_t *cpr = opaque;
285 uint32_t ret = 0;
287 switch (dcrn) {
288 case CPR0_CFGADDR:
289 ret = cpr->addr;
290 break;
291 case CPR0_CFGDATA:
292 switch (cpr->addr) {
293 case CPR0_PLLD:
294 ret = (0xb5 << 24) | (1 << 16) | (9 << 8);
295 break;
296 case CPR0_PLBED:
297 ret = (5 << 24);
298 break;
299 case CPR0_OPBD:
300 ret = (2 << 24);
301 break;
302 case CPR0_PERD:
303 case CPR0_AHBD:
304 ret = (1 << 24);
305 break;
306 default:
307 break;
309 break;
310 default:
311 break;
314 return ret;
317 static void dcr_write_cpr(void *opaque, int dcrn, uint32_t val)
319 ppc4xx_cpr_t *cpr = opaque;
321 switch (dcrn) {
322 case CPR0_CFGADDR:
323 cpr->addr = val;
324 break;
325 case CPR0_CFGDATA:
326 break;
327 default:
328 break;
332 static void ppc4xx_cpr_reset(void *opaque)
334 ppc4xx_cpr_t *cpr = opaque;
336 cpr->addr = 0;
339 void ppc4xx_cpr_init(CPUPPCState *env)
341 ppc4xx_cpr_t *cpr;
343 cpr = g_malloc0(sizeof(*cpr));
344 ppc_dcr_register(env, CPR0_CFGADDR, cpr, &dcr_read_cpr, &dcr_write_cpr);
345 ppc_dcr_register(env, CPR0_CFGDATA, cpr, &dcr_read_cpr, &dcr_write_cpr);
346 qemu_register_reset(ppc4xx_cpr_reset, cpr);
349 /*****************************************************************************/
350 /* System DCRs */
351 typedef struct ppc4xx_sdr_t ppc4xx_sdr_t;
352 struct ppc4xx_sdr_t {
353 uint32_t addr;
356 enum {
357 SDR0_CFGADDR = 0x00e,
358 SDR0_CFGDATA,
359 SDR0_STRP0 = 0x020,
360 SDR0_STRP1,
361 SDR0_102 = 0x66,
362 SDR0_103,
363 SDR0_128 = 0x80,
364 SDR0_ECID3 = 0x083,
365 SDR0_DDR0 = 0x0e1,
366 SDR0_USB0 = 0x320,
369 enum {
370 PESDR0_LOOP = 0x303,
371 PESDR0_RCSSET,
372 PESDR0_RCSSTS,
373 PESDR0_RSTSTA = 0x310,
374 PESDR1_LOOP = 0x343,
375 PESDR1_RCSSET,
376 PESDR1_RCSSTS,
377 PESDR1_RSTSTA = 0x365,
380 #define SDR0_DDR0_DDRM_ENCODE(n) ((((unsigned long)(n)) & 0x03) << 29)
381 #define SDR0_DDR0_DDRM_DDR1 0x20000000
382 #define SDR0_DDR0_DDRM_DDR2 0x40000000
384 static uint32_t dcr_read_sdr(void *opaque, int dcrn)
386 ppc4xx_sdr_t *sdr = opaque;
387 uint32_t ret = 0;
389 switch (dcrn) {
390 case SDR0_CFGADDR:
391 ret = sdr->addr;
392 break;
393 case SDR0_CFGDATA:
394 switch (sdr->addr) {
395 case SDR0_STRP0:
396 ret = (0xb5 << 8) | (1 << 4) | 9;
397 break;
398 case SDR0_STRP1:
399 ret = (5 << 29) | (2 << 26) | (1 << 24);
400 break;
401 case SDR0_ECID3:
402 ret = 1 << 20; /* No Security/Kasumi support */
403 break;
404 case SDR0_DDR0:
405 ret = SDR0_DDR0_DDRM_ENCODE(1) | SDR0_DDR0_DDRM_DDR1;
406 break;
407 case PESDR0_RCSSET:
408 case PESDR1_RCSSET:
409 ret = (1 << 24) | (1 << 16);
410 break;
411 case PESDR0_RCSSTS:
412 case PESDR1_RCSSTS:
413 ret = (1 << 16) | (1 << 12);
414 break;
415 case PESDR0_RSTSTA:
416 case PESDR1_RSTSTA:
417 ret = 1;
418 break;
419 case PESDR0_LOOP:
420 case PESDR1_LOOP:
421 ret = 1 << 12;
422 break;
423 default:
424 break;
426 break;
427 default:
428 break;
431 return ret;
434 static void dcr_write_sdr(void *opaque, int dcrn, uint32_t val)
436 ppc4xx_sdr_t *sdr = opaque;
438 switch (dcrn) {
439 case SDR0_CFGADDR:
440 sdr->addr = val;
441 break;
442 case SDR0_CFGDATA:
443 switch (sdr->addr) {
444 case 0x00: /* B0CR */
445 break;
446 default:
447 break;
449 break;
450 default:
451 break;
455 static void sdr_reset(void *opaque)
457 ppc4xx_sdr_t *sdr = opaque;
459 sdr->addr = 0;
462 void ppc4xx_sdr_init(CPUPPCState *env)
464 ppc4xx_sdr_t *sdr;
466 sdr = g_malloc0(sizeof(*sdr));
467 qemu_register_reset(&sdr_reset, sdr);
468 ppc_dcr_register(env, SDR0_CFGADDR,
469 sdr, &dcr_read_sdr, &dcr_write_sdr);
470 ppc_dcr_register(env, SDR0_CFGDATA,
471 sdr, &dcr_read_sdr, &dcr_write_sdr);
472 ppc_dcr_register(env, SDR0_102,
473 sdr, &dcr_read_sdr, &dcr_write_sdr);
474 ppc_dcr_register(env, SDR0_103,
475 sdr, &dcr_read_sdr, &dcr_write_sdr);
476 ppc_dcr_register(env, SDR0_128,
477 sdr, &dcr_read_sdr, &dcr_write_sdr);
478 ppc_dcr_register(env, SDR0_USB0,
479 sdr, &dcr_read_sdr, &dcr_write_sdr);
482 /*****************************************************************************/
483 /* SDRAM controller */
484 typedef struct ppc4xx_sdram_t {
485 uint32_t addr;
486 int nbanks;
487 MemoryRegion containers[4]; /* used for clipping */
488 MemoryRegion *ram_memories;
489 hwaddr ram_bases[4];
490 hwaddr ram_sizes[4];
491 uint32_t bcr[4];
492 } ppc4xx_sdram_t;
494 enum {
495 SDRAM0_CFGADDR = 0x10,
496 SDRAM0_CFGDATA,
497 SDRAM_R0BAS = 0x40,
498 SDRAM_R1BAS,
499 SDRAM_R2BAS,
500 SDRAM_R3BAS,
501 SDRAM_CONF1HB = 0x45,
502 SDRAM_PLBADDULL = 0x4a,
503 SDRAM_CONF1LL = 0x4b,
504 SDRAM_CONFPATHB = 0x4f,
505 SDRAM_PLBADDUHB = 0x50,
508 /* XXX: TOFIX: some patches have made this code become inconsistent:
509 * there are type inconsistencies, mixing hwaddr, target_ulong
510 * and uint32_t
512 static uint32_t sdram_bcr(hwaddr ram_base, hwaddr ram_size)
514 uint32_t bcr;
516 switch (ram_size) {
517 case (8 * MiB):
518 bcr = 0xffc0;
519 break;
520 case (16 * MiB):
521 bcr = 0xff80;
522 break;
523 case (32 * MiB):
524 bcr = 0xff00;
525 break;
526 case (64 * MiB):
527 bcr = 0xfe00;
528 break;
529 case (128 * MiB):
530 bcr = 0xfc00;
531 break;
532 case (256 * MiB):
533 bcr = 0xf800;
534 break;
535 case (512 * MiB):
536 bcr = 0xf000;
537 break;
538 case (1 * GiB):
539 bcr = 0xe000;
540 break;
541 default:
542 error_report("invalid RAM size " TARGET_FMT_plx, ram_size);
543 return 0;
545 bcr |= ram_base & 0xFF800000;
546 bcr |= 1;
548 return bcr;
551 static inline hwaddr sdram_base(uint32_t bcr)
553 return bcr & 0xFF800000;
556 static target_ulong sdram_size(uint32_t bcr)
558 target_ulong size;
559 int sh;
561 sh = 1024 - ((bcr >> 6) & 0x3ff);
562 if (sh == 0) {
563 size = -1;
564 } else {
565 size = 8 * MiB * sh;
568 return size;
571 static void sdram_set_bcr(ppc4xx_sdram_t *sdram,
572 uint32_t *bcrp, uint32_t bcr, int enabled)
574 unsigned n = bcrp - sdram->bcr;
576 if (*bcrp & 1) {
577 /* Unmap RAM */
578 memory_region_del_subregion(get_system_memory(),
579 &sdram->containers[n]);
580 memory_region_del_subregion(&sdram->containers[n],
581 &sdram->ram_memories[n]);
582 object_unparent(OBJECT(&sdram->containers[n]));
584 *bcrp = bcr & 0xFFDEE001;
585 if (enabled && (bcr & 1)) {
586 memory_region_init(&sdram->containers[n], NULL, "sdram-containers",
587 sdram_size(bcr));
588 memory_region_add_subregion(&sdram->containers[n], 0,
589 &sdram->ram_memories[n]);
590 memory_region_add_subregion(get_system_memory(),
591 sdram_base(bcr),
592 &sdram->containers[n]);
596 static void sdram_map_bcr(ppc4xx_sdram_t *sdram)
598 int i;
600 for (i = 0; i < sdram->nbanks; i++) {
601 if (sdram->ram_sizes[i] != 0) {
602 sdram_set_bcr(sdram,
603 &sdram->bcr[i],
604 sdram_bcr(sdram->ram_bases[i], sdram->ram_sizes[i]),
606 } else {
607 sdram_set_bcr(sdram, &sdram->bcr[i], 0, 0);
612 static uint32_t dcr_read_sdram(void *opaque, int dcrn)
614 ppc4xx_sdram_t *sdram = opaque;
615 uint32_t ret = 0;
617 switch (dcrn) {
618 case SDRAM_R0BAS:
619 case SDRAM_R1BAS:
620 case SDRAM_R2BAS:
621 case SDRAM_R3BAS:
622 ret = sdram_bcr(sdram->ram_bases[dcrn - SDRAM_R0BAS],
623 sdram->ram_sizes[dcrn - SDRAM_R0BAS]);
624 break;
625 case SDRAM_CONF1HB:
626 case SDRAM_CONF1LL:
627 case SDRAM_CONFPATHB:
628 case SDRAM_PLBADDULL:
629 case SDRAM_PLBADDUHB:
630 break;
631 case SDRAM0_CFGADDR:
632 ret = sdram->addr;
633 break;
634 case SDRAM0_CFGDATA:
635 switch (sdram->addr) {
636 case 0x14: /* SDRAM_MCSTAT (405EX) */
637 case 0x1F:
638 ret = 0x80000000;
639 break;
640 case 0x21: /* SDRAM_MCOPT2 */
641 ret = 0x08000000;
642 break;
643 case 0x40: /* SDRAM_MB0CF */
644 ret = 0x00008001;
645 break;
646 case 0x7A: /* SDRAM_DLCR */
647 ret = 0x02000000;
648 break;
649 case 0xE1: /* SDR0_DDR0 */
650 ret = SDR0_DDR0_DDRM_ENCODE(1) | SDR0_DDR0_DDRM_DDR1;
651 break;
652 default:
653 break;
655 break;
656 default:
657 break;
660 return ret;
663 static void dcr_write_sdram(void *opaque, int dcrn, uint32_t val)
665 ppc4xx_sdram_t *sdram = opaque;
667 switch (dcrn) {
668 case SDRAM_R0BAS:
669 case SDRAM_R1BAS:
670 case SDRAM_R2BAS:
671 case SDRAM_R3BAS:
672 case SDRAM_CONF1HB:
673 case SDRAM_CONF1LL:
674 case SDRAM_CONFPATHB:
675 case SDRAM_PLBADDULL:
676 case SDRAM_PLBADDUHB:
677 break;
678 case SDRAM0_CFGADDR:
679 sdram->addr = val;
680 break;
681 case SDRAM0_CFGDATA:
682 switch (sdram->addr) {
683 case 0x00: /* B0CR */
684 break;
685 default:
686 break;
688 break;
689 default:
690 break;
694 static void sdram_reset(void *opaque)
696 ppc4xx_sdram_t *sdram = opaque;
698 sdram->addr = 0;
701 void ppc440_sdram_init(CPUPPCState *env, int nbanks,
702 MemoryRegion *ram_memories,
703 hwaddr *ram_bases, hwaddr *ram_sizes,
704 int do_init)
706 ppc4xx_sdram_t *sdram;
708 sdram = g_malloc0(sizeof(*sdram));
709 sdram->nbanks = nbanks;
710 sdram->ram_memories = ram_memories;
711 memcpy(sdram->ram_bases, ram_bases, nbanks * sizeof(hwaddr));
712 memcpy(sdram->ram_sizes, ram_sizes, nbanks * sizeof(hwaddr));
713 qemu_register_reset(&sdram_reset, sdram);
714 ppc_dcr_register(env, SDRAM0_CFGADDR,
715 sdram, &dcr_read_sdram, &dcr_write_sdram);
716 ppc_dcr_register(env, SDRAM0_CFGDATA,
717 sdram, &dcr_read_sdram, &dcr_write_sdram);
718 if (do_init) {
719 sdram_map_bcr(sdram);
722 ppc_dcr_register(env, SDRAM_R0BAS,
723 sdram, &dcr_read_sdram, &dcr_write_sdram);
724 ppc_dcr_register(env, SDRAM_R1BAS,
725 sdram, &dcr_read_sdram, &dcr_write_sdram);
726 ppc_dcr_register(env, SDRAM_R2BAS,
727 sdram, &dcr_read_sdram, &dcr_write_sdram);
728 ppc_dcr_register(env, SDRAM_R3BAS,
729 sdram, &dcr_read_sdram, &dcr_write_sdram);
730 ppc_dcr_register(env, SDRAM_CONF1HB,
731 sdram, &dcr_read_sdram, &dcr_write_sdram);
732 ppc_dcr_register(env, SDRAM_PLBADDULL,
733 sdram, &dcr_read_sdram, &dcr_write_sdram);
734 ppc_dcr_register(env, SDRAM_CONF1LL,
735 sdram, &dcr_read_sdram, &dcr_write_sdram);
736 ppc_dcr_register(env, SDRAM_CONFPATHB,
737 sdram, &dcr_read_sdram, &dcr_write_sdram);
738 ppc_dcr_register(env, SDRAM_PLBADDUHB,
739 sdram, &dcr_read_sdram, &dcr_write_sdram);
742 /*****************************************************************************/
743 /* PLB to AHB bridge */
744 enum {
745 AHB_TOP = 0xA4,
746 AHB_BOT = 0xA5,
749 typedef struct ppc4xx_ahb_t {
750 uint32_t top;
751 uint32_t bot;
752 } ppc4xx_ahb_t;
754 static uint32_t dcr_read_ahb(void *opaque, int dcrn)
756 ppc4xx_ahb_t *ahb = opaque;
757 uint32_t ret = 0;
759 switch (dcrn) {
760 case AHB_TOP:
761 ret = ahb->top;
762 break;
763 case AHB_BOT:
764 ret = ahb->bot;
765 break;
766 default:
767 break;
770 return ret;
773 static void dcr_write_ahb(void *opaque, int dcrn, uint32_t val)
775 ppc4xx_ahb_t *ahb = opaque;
777 switch (dcrn) {
778 case AHB_TOP:
779 ahb->top = val;
780 break;
781 case AHB_BOT:
782 ahb->bot = val;
783 break;
787 static void ppc4xx_ahb_reset(void *opaque)
789 ppc4xx_ahb_t *ahb = opaque;
791 /* No error */
792 ahb->top = 0;
793 ahb->bot = 0;
796 void ppc4xx_ahb_init(CPUPPCState *env)
798 ppc4xx_ahb_t *ahb;
800 ahb = g_malloc0(sizeof(*ahb));
801 ppc_dcr_register(env, AHB_TOP, ahb, &dcr_read_ahb, &dcr_write_ahb);
802 ppc_dcr_register(env, AHB_BOT, ahb, &dcr_read_ahb, &dcr_write_ahb);
803 qemu_register_reset(ppc4xx_ahb_reset, ahb);
806 /*****************************************************************************/
807 /* DMA controller */
809 #define DMA0_CR_CE (1 << 31)
810 #define DMA0_CR_PW (1 << 26 | 1 << 25)
811 #define DMA0_CR_DAI (1 << 24)
812 #define DMA0_CR_SAI (1 << 23)
813 #define DMA0_CR_DEC (1 << 2)
815 enum {
816 DMA0_CR = 0x00,
817 DMA0_CT,
818 DMA0_SAH,
819 DMA0_SAL,
820 DMA0_DAH,
821 DMA0_DAL,
822 DMA0_SGH,
823 DMA0_SGL,
825 DMA0_SR = 0x20,
826 DMA0_SGC = 0x23,
827 DMA0_SLP = 0x25,
828 DMA0_POL = 0x26,
831 typedef struct {
832 uint32_t cr;
833 uint32_t ct;
834 uint64_t sa;
835 uint64_t da;
836 uint64_t sg;
837 } PPC4xxDmaChnl;
839 typedef struct {
840 int base;
841 PPC4xxDmaChnl ch[4];
842 uint32_t sr;
843 } PPC4xxDmaState;
845 static uint32_t dcr_read_dma(void *opaque, int dcrn)
847 PPC4xxDmaState *dma = opaque;
848 uint32_t val = 0;
849 int addr = dcrn - dma->base;
850 int chnl = addr / 8;
852 switch (addr) {
853 case 0x00 ... 0x1f:
854 switch (addr % 8) {
855 case DMA0_CR:
856 val = dma->ch[chnl].cr;
857 break;
858 case DMA0_CT:
859 val = dma->ch[chnl].ct;
860 break;
861 case DMA0_SAH:
862 val = dma->ch[chnl].sa >> 32;
863 break;
864 case DMA0_SAL:
865 val = dma->ch[chnl].sa;
866 break;
867 case DMA0_DAH:
868 val = dma->ch[chnl].da >> 32;
869 break;
870 case DMA0_DAL:
871 val = dma->ch[chnl].da;
872 break;
873 case DMA0_SGH:
874 val = dma->ch[chnl].sg >> 32;
875 break;
876 case DMA0_SGL:
877 val = dma->ch[chnl].sg;
878 break;
880 break;
881 case DMA0_SR:
882 val = dma->sr;
883 break;
884 default:
885 qemu_log_mask(LOG_UNIMP, "%s: unimplemented register %x (%d, %x)\n",
886 __func__, dcrn, chnl, addr);
889 return val;
892 static void dcr_write_dma(void *opaque, int dcrn, uint32_t val)
894 PPC4xxDmaState *dma = opaque;
895 int addr = dcrn - dma->base;
896 int chnl = addr / 8;
898 switch (addr) {
899 case 0x00 ... 0x1f:
900 switch (addr % 8) {
901 case DMA0_CR:
902 dma->ch[chnl].cr = val;
903 if (val & DMA0_CR_CE) {
904 int count = dma->ch[chnl].ct & 0xffff;
906 if (count) {
907 int width, i, sidx, didx;
908 uint8_t *rptr, *wptr;
909 hwaddr rlen, wlen;
911 sidx = didx = 0;
912 width = 1 << ((val & DMA0_CR_PW) >> 25);
913 rptr = cpu_physical_memory_map(dma->ch[chnl].sa, &rlen, 0);
914 wptr = cpu_physical_memory_map(dma->ch[chnl].da, &wlen, 1);
915 if (rptr && wptr) {
916 if (!(val & DMA0_CR_DEC) &&
917 val & DMA0_CR_SAI && val & DMA0_CR_DAI) {
918 /* optimise common case */
919 memmove(wptr, rptr, count * width);
920 sidx = didx = count * width;
921 } else {
922 /* do it the slow way */
923 for (sidx = didx = i = 0; i < count; i++) {
924 uint64_t v = ldn_le_p(rptr + sidx, width);
925 stn_le_p(wptr + didx, width, v);
926 if (val & DMA0_CR_SAI) {
927 sidx += width;
929 if (val & DMA0_CR_DAI) {
930 didx += width;
935 if (wptr) {
936 cpu_physical_memory_unmap(wptr, wlen, 1, didx);
938 if (rptr) {
939 cpu_physical_memory_unmap(rptr, rlen, 0, sidx);
943 break;
944 case DMA0_CT:
945 dma->ch[chnl].ct = val;
946 break;
947 case DMA0_SAH:
948 dma->ch[chnl].sa &= 0xffffffffULL;
949 dma->ch[chnl].sa |= (uint64_t)val << 32;
950 break;
951 case DMA0_SAL:
952 dma->ch[chnl].sa &= 0xffffffff00000000ULL;
953 dma->ch[chnl].sa |= val;
954 break;
955 case DMA0_DAH:
956 dma->ch[chnl].da &= 0xffffffffULL;
957 dma->ch[chnl].da |= (uint64_t)val << 32;
958 break;
959 case DMA0_DAL:
960 dma->ch[chnl].da &= 0xffffffff00000000ULL;
961 dma->ch[chnl].da |= val;
962 break;
963 case DMA0_SGH:
964 dma->ch[chnl].sg &= 0xffffffffULL;
965 dma->ch[chnl].sg |= (uint64_t)val << 32;
966 break;
967 case DMA0_SGL:
968 dma->ch[chnl].sg &= 0xffffffff00000000ULL;
969 dma->ch[chnl].sg |= val;
970 break;
972 break;
973 case DMA0_SR:
974 dma->sr &= ~val;
975 break;
976 default:
977 qemu_log_mask(LOG_UNIMP, "%s: unimplemented register %x (%d, %x)\n",
978 __func__, dcrn, chnl, addr);
982 static void ppc4xx_dma_reset(void *opaque)
984 PPC4xxDmaState *dma = opaque;
985 int dma_base = dma->base;
987 memset(dma, 0, sizeof(*dma));
988 dma->base = dma_base;
991 void ppc4xx_dma_init(CPUPPCState *env, int dcr_base)
993 PPC4xxDmaState *dma;
994 int i;
996 dma = g_malloc0(sizeof(*dma));
997 dma->base = dcr_base;
998 qemu_register_reset(&ppc4xx_dma_reset, dma);
999 for (i = 0; i < 4; i++) {
1000 ppc_dcr_register(env, dcr_base + i * 8 + DMA0_CR,
1001 dma, &dcr_read_dma, &dcr_write_dma);
1002 ppc_dcr_register(env, dcr_base + i * 8 + DMA0_CT,
1003 dma, &dcr_read_dma, &dcr_write_dma);
1004 ppc_dcr_register(env, dcr_base + i * 8 + DMA0_SAH,
1005 dma, &dcr_read_dma, &dcr_write_dma);
1006 ppc_dcr_register(env, dcr_base + i * 8 + DMA0_SAL,
1007 dma, &dcr_read_dma, &dcr_write_dma);
1008 ppc_dcr_register(env, dcr_base + i * 8 + DMA0_DAH,
1009 dma, &dcr_read_dma, &dcr_write_dma);
1010 ppc_dcr_register(env, dcr_base + i * 8 + DMA0_DAL,
1011 dma, &dcr_read_dma, &dcr_write_dma);
1012 ppc_dcr_register(env, dcr_base + i * 8 + DMA0_SGH,
1013 dma, &dcr_read_dma, &dcr_write_dma);
1014 ppc_dcr_register(env, dcr_base + i * 8 + DMA0_SGL,
1015 dma, &dcr_read_dma, &dcr_write_dma);
1017 ppc_dcr_register(env, dcr_base + DMA0_SR,
1018 dma, &dcr_read_dma, &dcr_write_dma);
1019 ppc_dcr_register(env, dcr_base + DMA0_SGC,
1020 dma, &dcr_read_dma, &dcr_write_dma);
1021 ppc_dcr_register(env, dcr_base + DMA0_SLP,
1022 dma, &dcr_read_dma, &dcr_write_dma);
1023 ppc_dcr_register(env, dcr_base + DMA0_POL,
1024 dma, &dcr_read_dma, &dcr_write_dma);
1027 /*****************************************************************************/
1028 /* PCI Express controller */
1029 /* FIXME: This is not complete and does not work, only implemented partially
1030 * to allow firmware and guests to find an empty bus. Cards should use PCI.
1032 #include "hw/pci/pcie_host.h"
1034 #define TYPE_PPC460EX_PCIE_HOST "ppc460ex-pcie-host"
1035 #define PPC460EX_PCIE_HOST(obj) \
1036 OBJECT_CHECK(PPC460EXPCIEState, (obj), TYPE_PPC460EX_PCIE_HOST)
1038 typedef struct PPC460EXPCIEState {
1039 PCIExpressHost host;
1041 MemoryRegion iomem;
1042 qemu_irq irq[4];
1043 int32_t dcrn_base;
1045 uint64_t cfg_base;
1046 uint32_t cfg_mask;
1047 uint64_t msg_base;
1048 uint32_t msg_mask;
1049 uint64_t omr1_base;
1050 uint64_t omr1_mask;
1051 uint64_t omr2_base;
1052 uint64_t omr2_mask;
1053 uint64_t omr3_base;
1054 uint64_t omr3_mask;
1055 uint64_t reg_base;
1056 uint32_t reg_mask;
1057 uint32_t special;
1058 uint32_t cfg;
1059 } PPC460EXPCIEState;
1061 #define DCRN_PCIE0_BASE 0x100
1062 #define DCRN_PCIE1_BASE 0x120
1064 enum {
1065 PEGPL_CFGBAH = 0x0,
1066 PEGPL_CFGBAL,
1067 PEGPL_CFGMSK,
1068 PEGPL_MSGBAH,
1069 PEGPL_MSGBAL,
1070 PEGPL_MSGMSK,
1071 PEGPL_OMR1BAH,
1072 PEGPL_OMR1BAL,
1073 PEGPL_OMR1MSKH,
1074 PEGPL_OMR1MSKL,
1075 PEGPL_OMR2BAH,
1076 PEGPL_OMR2BAL,
1077 PEGPL_OMR2MSKH,
1078 PEGPL_OMR2MSKL,
1079 PEGPL_OMR3BAH,
1080 PEGPL_OMR3BAL,
1081 PEGPL_OMR3MSKH,
1082 PEGPL_OMR3MSKL,
1083 PEGPL_REGBAH,
1084 PEGPL_REGBAL,
1085 PEGPL_REGMSK,
1086 PEGPL_SPECIAL,
1087 PEGPL_CFG,
1090 static uint32_t dcr_read_pcie(void *opaque, int dcrn)
1092 PPC460EXPCIEState *state = opaque;
1093 uint32_t ret = 0;
1095 switch (dcrn - state->dcrn_base) {
1096 case PEGPL_CFGBAH:
1097 ret = state->cfg_base >> 32;
1098 break;
1099 case PEGPL_CFGBAL:
1100 ret = state->cfg_base;
1101 break;
1102 case PEGPL_CFGMSK:
1103 ret = state->cfg_mask;
1104 break;
1105 case PEGPL_MSGBAH:
1106 ret = state->msg_base >> 32;
1107 break;
1108 case PEGPL_MSGBAL:
1109 ret = state->msg_base;
1110 break;
1111 case PEGPL_MSGMSK:
1112 ret = state->msg_mask;
1113 break;
1114 case PEGPL_OMR1BAH:
1115 ret = state->omr1_base >> 32;
1116 break;
1117 case PEGPL_OMR1BAL:
1118 ret = state->omr1_base;
1119 break;
1120 case PEGPL_OMR1MSKH:
1121 ret = state->omr1_mask >> 32;
1122 break;
1123 case PEGPL_OMR1MSKL:
1124 ret = state->omr1_mask;
1125 break;
1126 case PEGPL_OMR2BAH:
1127 ret = state->omr2_base >> 32;
1128 break;
1129 case PEGPL_OMR2BAL:
1130 ret = state->omr2_base;
1131 break;
1132 case PEGPL_OMR2MSKH:
1133 ret = state->omr2_mask >> 32;
1134 break;
1135 case PEGPL_OMR2MSKL:
1136 ret = state->omr3_mask;
1137 break;
1138 case PEGPL_OMR3BAH:
1139 ret = state->omr3_base >> 32;
1140 break;
1141 case PEGPL_OMR3BAL:
1142 ret = state->omr3_base;
1143 break;
1144 case PEGPL_OMR3MSKH:
1145 ret = state->omr3_mask >> 32;
1146 break;
1147 case PEGPL_OMR3MSKL:
1148 ret = state->omr3_mask;
1149 break;
1150 case PEGPL_REGBAH:
1151 ret = state->reg_base >> 32;
1152 break;
1153 case PEGPL_REGBAL:
1154 ret = state->reg_base;
1155 break;
1156 case PEGPL_REGMSK:
1157 ret = state->reg_mask;
1158 break;
1159 case PEGPL_SPECIAL:
1160 ret = state->special;
1161 break;
1162 case PEGPL_CFG:
1163 ret = state->cfg;
1164 break;
1167 return ret;
1170 static void dcr_write_pcie(void *opaque, int dcrn, uint32_t val)
1172 PPC460EXPCIEState *s = opaque;
1173 uint64_t size;
1175 switch (dcrn - s->dcrn_base) {
1176 case PEGPL_CFGBAH:
1177 s->cfg_base = ((uint64_t)val << 32) | (s->cfg_base & 0xffffffff);
1178 break;
1179 case PEGPL_CFGBAL:
1180 s->cfg_base = (s->cfg_base & 0xffffffff00000000ULL) | val;
1181 break;
1182 case PEGPL_CFGMSK:
1183 s->cfg_mask = val;
1184 size = ~(val & 0xfffffffe) + 1;
1185 qemu_mutex_lock_iothread();
1186 pcie_host_mmcfg_update(PCIE_HOST_BRIDGE(s), val & 1, s->cfg_base, size);
1187 qemu_mutex_unlock_iothread();
1188 break;
1189 case PEGPL_MSGBAH:
1190 s->msg_base = ((uint64_t)val << 32) | (s->msg_base & 0xffffffff);
1191 break;
1192 case PEGPL_MSGBAL:
1193 s->msg_base = (s->msg_base & 0xffffffff00000000ULL) | val;
1194 break;
1195 case PEGPL_MSGMSK:
1196 s->msg_mask = val;
1197 break;
1198 case PEGPL_OMR1BAH:
1199 s->omr1_base = ((uint64_t)val << 32) | (s->omr1_base & 0xffffffff);
1200 break;
1201 case PEGPL_OMR1BAL:
1202 s->omr1_base = (s->omr1_base & 0xffffffff00000000ULL) | val;
1203 break;
1204 case PEGPL_OMR1MSKH:
1205 s->omr1_mask = ((uint64_t)val << 32) | (s->omr1_mask & 0xffffffff);
1206 break;
1207 case PEGPL_OMR1MSKL:
1208 s->omr1_mask = (s->omr1_mask & 0xffffffff00000000ULL) | val;
1209 break;
1210 case PEGPL_OMR2BAH:
1211 s->omr2_base = ((uint64_t)val << 32) | (s->omr2_base & 0xffffffff);
1212 break;
1213 case PEGPL_OMR2BAL:
1214 s->omr2_base = (s->omr2_base & 0xffffffff00000000ULL) | val;
1215 break;
1216 case PEGPL_OMR2MSKH:
1217 s->omr2_mask = ((uint64_t)val << 32) | (s->omr2_mask & 0xffffffff);
1218 break;
1219 case PEGPL_OMR2MSKL:
1220 s->omr2_mask = (s->omr2_mask & 0xffffffff00000000ULL) | val;
1221 break;
1222 case PEGPL_OMR3BAH:
1223 s->omr3_base = ((uint64_t)val << 32) | (s->omr3_base & 0xffffffff);
1224 break;
1225 case PEGPL_OMR3BAL:
1226 s->omr3_base = (s->omr3_base & 0xffffffff00000000ULL) | val;
1227 break;
1228 case PEGPL_OMR3MSKH:
1229 s->omr3_mask = ((uint64_t)val << 32) | (s->omr3_mask & 0xffffffff);
1230 break;
1231 case PEGPL_OMR3MSKL:
1232 s->omr3_mask = (s->omr3_mask & 0xffffffff00000000ULL) | val;
1233 break;
1234 case PEGPL_REGBAH:
1235 s->reg_base = ((uint64_t)val << 32) | (s->reg_base & 0xffffffff);
1236 break;
1237 case PEGPL_REGBAL:
1238 s->reg_base = (s->reg_base & 0xffffffff00000000ULL) | val;
1239 break;
1240 case PEGPL_REGMSK:
1241 s->reg_mask = val;
1242 /* FIXME: how is size encoded? */
1243 size = (val == 0x7001 ? 4096 : ~(val & 0xfffffffe) + 1);
1244 break;
1245 case PEGPL_SPECIAL:
1246 s->special = val;
1247 break;
1248 case PEGPL_CFG:
1249 s->cfg = val;
1250 break;
1254 static void ppc460ex_set_irq(void *opaque, int irq_num, int level)
1256 PPC460EXPCIEState *s = opaque;
1257 qemu_set_irq(s->irq[irq_num], level);
1260 static void ppc460ex_pcie_realize(DeviceState *dev, Error **errp)
1262 PPC460EXPCIEState *s = PPC460EX_PCIE_HOST(dev);
1263 PCIHostState *pci = PCI_HOST_BRIDGE(dev);
1264 int i, id;
1265 char buf[16];
1267 switch (s->dcrn_base) {
1268 case DCRN_PCIE0_BASE:
1269 id = 0;
1270 break;
1271 case DCRN_PCIE1_BASE:
1272 id = 1;
1273 break;
1274 default:
1275 error_setg(errp, "invalid PCIe DCRN base");
1276 return;
1278 snprintf(buf, sizeof(buf), "pcie%d-io", id);
1279 memory_region_init(&s->iomem, OBJECT(s), buf, UINT64_MAX);
1280 for (i = 0; i < 4; i++) {
1281 sysbus_init_irq(SYS_BUS_DEVICE(dev), &s->irq[i]);
1283 snprintf(buf, sizeof(buf), "pcie.%d", id);
1284 pci->bus = pci_register_root_bus(DEVICE(s), buf, ppc460ex_set_irq,
1285 pci_swizzle_map_irq_fn, s, &s->iomem,
1286 get_system_io(), 0, 4, TYPE_PCIE_BUS);
1289 static Property ppc460ex_pcie_props[] = {
1290 DEFINE_PROP_INT32("dcrn-base", PPC460EXPCIEState, dcrn_base, -1),
1291 DEFINE_PROP_END_OF_LIST(),
1294 static void ppc460ex_pcie_class_init(ObjectClass *klass, void *data)
1296 DeviceClass *dc = DEVICE_CLASS(klass);
1298 set_bit(DEVICE_CATEGORY_BRIDGE, dc->categories);
1299 dc->realize = ppc460ex_pcie_realize;
1300 dc->props = ppc460ex_pcie_props;
1301 dc->hotpluggable = false;
1304 static const TypeInfo ppc460ex_pcie_host_info = {
1305 .name = TYPE_PPC460EX_PCIE_HOST,
1306 .parent = TYPE_PCIE_HOST_BRIDGE,
1307 .instance_size = sizeof(PPC460EXPCIEState),
1308 .class_init = ppc460ex_pcie_class_init,
1311 static void ppc460ex_pcie_register(void)
1313 type_register_static(&ppc460ex_pcie_host_info);
1316 type_init(ppc460ex_pcie_register)
1318 static void ppc460ex_pcie_register_dcrs(PPC460EXPCIEState *s, CPUPPCState *env)
1320 ppc_dcr_register(env, s->dcrn_base + PEGPL_CFGBAH, s,
1321 &dcr_read_pcie, &dcr_write_pcie);
1322 ppc_dcr_register(env, s->dcrn_base + PEGPL_CFGBAL, s,
1323 &dcr_read_pcie, &dcr_write_pcie);
1324 ppc_dcr_register(env, s->dcrn_base + PEGPL_CFGMSK, s,
1325 &dcr_read_pcie, &dcr_write_pcie);
1326 ppc_dcr_register(env, s->dcrn_base + PEGPL_MSGBAH, s,
1327 &dcr_read_pcie, &dcr_write_pcie);
1328 ppc_dcr_register(env, s->dcrn_base + PEGPL_MSGBAL, s,
1329 &dcr_read_pcie, &dcr_write_pcie);
1330 ppc_dcr_register(env, s->dcrn_base + PEGPL_MSGMSK, s,
1331 &dcr_read_pcie, &dcr_write_pcie);
1332 ppc_dcr_register(env, s->dcrn_base + PEGPL_OMR1BAH, s,
1333 &dcr_read_pcie, &dcr_write_pcie);
1334 ppc_dcr_register(env, s->dcrn_base + PEGPL_OMR1BAL, s,
1335 &dcr_read_pcie, &dcr_write_pcie);
1336 ppc_dcr_register(env, s->dcrn_base + PEGPL_OMR1MSKH, s,
1337 &dcr_read_pcie, &dcr_write_pcie);
1338 ppc_dcr_register(env, s->dcrn_base + PEGPL_OMR1MSKL, s,
1339 &dcr_read_pcie, &dcr_write_pcie);
1340 ppc_dcr_register(env, s->dcrn_base + PEGPL_OMR2BAH, s,
1341 &dcr_read_pcie, &dcr_write_pcie);
1342 ppc_dcr_register(env, s->dcrn_base + PEGPL_OMR2BAL, s,
1343 &dcr_read_pcie, &dcr_write_pcie);
1344 ppc_dcr_register(env, s->dcrn_base + PEGPL_OMR2MSKH, s,
1345 &dcr_read_pcie, &dcr_write_pcie);
1346 ppc_dcr_register(env, s->dcrn_base + PEGPL_OMR2MSKL, s,
1347 &dcr_read_pcie, &dcr_write_pcie);
1348 ppc_dcr_register(env, s->dcrn_base + PEGPL_OMR3BAH, s,
1349 &dcr_read_pcie, &dcr_write_pcie);
1350 ppc_dcr_register(env, s->dcrn_base + PEGPL_OMR3BAL, s,
1351 &dcr_read_pcie, &dcr_write_pcie);
1352 ppc_dcr_register(env, s->dcrn_base + PEGPL_OMR3MSKH, s,
1353 &dcr_read_pcie, &dcr_write_pcie);
1354 ppc_dcr_register(env, s->dcrn_base + PEGPL_OMR3MSKL, s,
1355 &dcr_read_pcie, &dcr_write_pcie);
1356 ppc_dcr_register(env, s->dcrn_base + PEGPL_REGBAH, s,
1357 &dcr_read_pcie, &dcr_write_pcie);
1358 ppc_dcr_register(env, s->dcrn_base + PEGPL_REGBAL, s,
1359 &dcr_read_pcie, &dcr_write_pcie);
1360 ppc_dcr_register(env, s->dcrn_base + PEGPL_REGMSK, s,
1361 &dcr_read_pcie, &dcr_write_pcie);
1362 ppc_dcr_register(env, s->dcrn_base + PEGPL_SPECIAL, s,
1363 &dcr_read_pcie, &dcr_write_pcie);
1364 ppc_dcr_register(env, s->dcrn_base + PEGPL_CFG, s,
1365 &dcr_read_pcie, &dcr_write_pcie);
1368 void ppc460ex_pcie_init(CPUPPCState *env)
1370 DeviceState *dev;
1372 dev = qdev_create(NULL, TYPE_PPC460EX_PCIE_HOST);
1373 qdev_prop_set_int32(dev, "dcrn-base", DCRN_PCIE0_BASE);
1374 qdev_init_nofail(dev);
1375 object_property_set_bool(OBJECT(dev), true, "realized", NULL);
1376 ppc460ex_pcie_register_dcrs(PPC460EX_PCIE_HOST(dev), env);
1378 dev = qdev_create(NULL, TYPE_PPC460EX_PCIE_HOST);
1379 qdev_prop_set_int32(dev, "dcrn-base", DCRN_PCIE1_BASE);
1380 qdev_init_nofail(dev);
1381 object_property_set_bool(OBJECT(dev), true, "realized", NULL);
1382 ppc460ex_pcie_register_dcrs(PPC460EX_PCIE_HOST(dev), env);