setup-sh7724.c 33 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /*
  3. * SH7724 Setup
  4. *
  5. * Copyright (C) 2009 Renesas Solutions Corp.
  6. *
  7. * Kuninori Morimoto <morimoto.kuninori@renesas.com>
  8. *
  9. * Based on SH7723 Setup
  10. * Copyright (C) 2008 Paul Mundt
  11. */
  12. #include <linux/platform_device.h>
  13. #include <linux/init.h>
  14. #include <linux/serial.h>
  15. #include <linux/mm.h>
  16. #include <linux/serial_sci.h>
  17. #include <linux/uio_driver.h>
  18. #include <linux/sh_dma.h>
  19. #include <linux/sh_timer.h>
  20. #include <linux/sh_intc.h>
  21. #include <linux/io.h>
  22. #include <linux/notifier.h>
  23. #include <asm/cacheflush.h>
  24. #include <asm/suspend.h>
  25. #include <asm/clock.h>
  26. #include <asm/mmzone.h>
  27. #include <asm/platform_early.h>
  28. #include <cpu/dma-register.h>
  29. #include <cpu/sh7724.h>
  30. /* DMA */
  31. static const struct sh_dmae_slave_config sh7724_dmae_slaves[] = {
  32. {
  33. .slave_id = SHDMA_SLAVE_SCIF0_TX,
  34. .addr = 0xffe0000c,
  35. .chcr = DM_FIX | SM_INC | RS_ERS | TS_INDEX2VAL(XMIT_SZ_8BIT),
  36. .mid_rid = 0x21,
  37. }, {
  38. .slave_id = SHDMA_SLAVE_SCIF0_RX,
  39. .addr = 0xffe00014,
  40. .chcr = DM_INC | SM_FIX | RS_ERS | TS_INDEX2VAL(XMIT_SZ_8BIT),
  41. .mid_rid = 0x22,
  42. }, {
  43. .slave_id = SHDMA_SLAVE_SCIF1_TX,
  44. .addr = 0xffe1000c,
  45. .chcr = DM_FIX | SM_INC | RS_ERS | TS_INDEX2VAL(XMIT_SZ_8BIT),
  46. .mid_rid = 0x25,
  47. }, {
  48. .slave_id = SHDMA_SLAVE_SCIF1_RX,
  49. .addr = 0xffe10014,
  50. .chcr = DM_INC | SM_FIX | RS_ERS | TS_INDEX2VAL(XMIT_SZ_8BIT),
  51. .mid_rid = 0x26,
  52. }, {
  53. .slave_id = SHDMA_SLAVE_SCIF2_TX,
  54. .addr = 0xffe2000c,
  55. .chcr = DM_FIX | SM_INC | RS_ERS | TS_INDEX2VAL(XMIT_SZ_8BIT),
  56. .mid_rid = 0x29,
  57. }, {
  58. .slave_id = SHDMA_SLAVE_SCIF2_RX,
  59. .addr = 0xffe20014,
  60. .chcr = DM_INC | SM_FIX | RS_ERS | TS_INDEX2VAL(XMIT_SZ_8BIT),
  61. .mid_rid = 0x2a,
  62. }, {
  63. .slave_id = SHDMA_SLAVE_SCIF3_TX,
  64. .addr = 0xa4e30020,
  65. .chcr = DM_FIX | SM_INC | RS_ERS | TS_INDEX2VAL(XMIT_SZ_8BIT),
  66. .mid_rid = 0x2d,
  67. }, {
  68. .slave_id = SHDMA_SLAVE_SCIF3_RX,
  69. .addr = 0xa4e30024,
  70. .chcr = DM_INC | SM_FIX | RS_ERS | TS_INDEX2VAL(XMIT_SZ_8BIT),
  71. .mid_rid = 0x2e,
  72. }, {
  73. .slave_id = SHDMA_SLAVE_SCIF4_TX,
  74. .addr = 0xa4e40020,
  75. .chcr = DM_FIX | SM_INC | RS_ERS | TS_INDEX2VAL(XMIT_SZ_8BIT),
  76. .mid_rid = 0x31,
  77. }, {
  78. .slave_id = SHDMA_SLAVE_SCIF4_RX,
  79. .addr = 0xa4e40024,
  80. .chcr = DM_INC | SM_FIX | RS_ERS | TS_INDEX2VAL(XMIT_SZ_8BIT),
  81. .mid_rid = 0x32,
  82. }, {
  83. .slave_id = SHDMA_SLAVE_SCIF5_TX,
  84. .addr = 0xa4e50020,
  85. .chcr = DM_FIX | SM_INC | RS_ERS | TS_INDEX2VAL(XMIT_SZ_8BIT),
  86. .mid_rid = 0x35,
  87. }, {
  88. .slave_id = SHDMA_SLAVE_SCIF5_RX,
  89. .addr = 0xa4e50024,
  90. .chcr = DM_INC | SM_FIX | RS_ERS | TS_INDEX2VAL(XMIT_SZ_8BIT),
  91. .mid_rid = 0x36,
  92. }, {
  93. .slave_id = SHDMA_SLAVE_USB0D0_TX,
  94. .addr = 0xA4D80100,
  95. .chcr = DM_FIX | SM_INC | RS_ERS | TS_INDEX2VAL(XMIT_SZ_32BIT),
  96. .mid_rid = 0x73,
  97. }, {
  98. .slave_id = SHDMA_SLAVE_USB0D0_RX,
  99. .addr = 0xA4D80100,
  100. .chcr = DM_INC | SM_FIX | RS_ERS | TS_INDEX2VAL(XMIT_SZ_32BIT),
  101. .mid_rid = 0x73,
  102. }, {
  103. .slave_id = SHDMA_SLAVE_USB0D1_TX,
  104. .addr = 0xA4D80120,
  105. .chcr = DM_FIX | SM_INC | RS_ERS | TS_INDEX2VAL(XMIT_SZ_32BIT),
  106. .mid_rid = 0x77,
  107. }, {
  108. .slave_id = SHDMA_SLAVE_USB0D1_RX,
  109. .addr = 0xA4D80120,
  110. .chcr = DM_INC | SM_FIX | RS_ERS | TS_INDEX2VAL(XMIT_SZ_32BIT),
  111. .mid_rid = 0x77,
  112. }, {
  113. .slave_id = SHDMA_SLAVE_USB1D0_TX,
  114. .addr = 0xA4D90100,
  115. .chcr = DM_FIX | SM_INC | RS_ERS | TS_INDEX2VAL(XMIT_SZ_32BIT),
  116. .mid_rid = 0xab,
  117. }, {
  118. .slave_id = SHDMA_SLAVE_USB1D0_RX,
  119. .addr = 0xA4D90100,
  120. .chcr = DM_INC | SM_FIX | RS_ERS | TS_INDEX2VAL(XMIT_SZ_32BIT),
  121. .mid_rid = 0xab,
  122. }, {
  123. .slave_id = SHDMA_SLAVE_USB1D1_TX,
  124. .addr = 0xA4D90120,
  125. .chcr = DM_FIX | SM_INC | RS_ERS | TS_INDEX2VAL(XMIT_SZ_32BIT),
  126. .mid_rid = 0xaf,
  127. }, {
  128. .slave_id = SHDMA_SLAVE_USB1D1_RX,
  129. .addr = 0xA4D90120,
  130. .chcr = DM_INC | SM_FIX | RS_ERS | TS_INDEX2VAL(XMIT_SZ_32BIT),
  131. .mid_rid = 0xaf,
  132. }, {
  133. .slave_id = SHDMA_SLAVE_SDHI0_TX,
  134. .addr = 0x04ce0030,
  135. .chcr = DM_FIX | SM_INC | RS_ERS | TS_INDEX2VAL(XMIT_SZ_16BIT),
  136. .mid_rid = 0xc1,
  137. }, {
  138. .slave_id = SHDMA_SLAVE_SDHI0_RX,
  139. .addr = 0x04ce0030,
  140. .chcr = DM_INC | SM_FIX | RS_ERS | TS_INDEX2VAL(XMIT_SZ_16BIT),
  141. .mid_rid = 0xc2,
  142. }, {
  143. .slave_id = SHDMA_SLAVE_SDHI1_TX,
  144. .addr = 0x04cf0030,
  145. .chcr = DM_FIX | SM_INC | RS_ERS | TS_INDEX2VAL(XMIT_SZ_16BIT),
  146. .mid_rid = 0xc9,
  147. }, {
  148. .slave_id = SHDMA_SLAVE_SDHI1_RX,
  149. .addr = 0x04cf0030,
  150. .chcr = DM_INC | SM_FIX | RS_ERS | TS_INDEX2VAL(XMIT_SZ_16BIT),
  151. .mid_rid = 0xca,
  152. },
  153. };
  154. static const struct sh_dmae_channel sh7724_dmae_channels[] = {
  155. {
  156. .offset = 0,
  157. .dmars = 0,
  158. .dmars_bit = 0,
  159. }, {
  160. .offset = 0x10,
  161. .dmars = 0,
  162. .dmars_bit = 8,
  163. }, {
  164. .offset = 0x20,
  165. .dmars = 4,
  166. .dmars_bit = 0,
  167. }, {
  168. .offset = 0x30,
  169. .dmars = 4,
  170. .dmars_bit = 8,
  171. }, {
  172. .offset = 0x50,
  173. .dmars = 8,
  174. .dmars_bit = 0,
  175. }, {
  176. .offset = 0x60,
  177. .dmars = 8,
  178. .dmars_bit = 8,
  179. }
  180. };
  181. static const unsigned int ts_shift[] = TS_SHIFT;
  182. static struct sh_dmae_pdata dma_platform_data = {
  183. .slave = sh7724_dmae_slaves,
  184. .slave_num = ARRAY_SIZE(sh7724_dmae_slaves),
  185. .channel = sh7724_dmae_channels,
  186. .channel_num = ARRAY_SIZE(sh7724_dmae_channels),
  187. .ts_low_shift = CHCR_TS_LOW_SHIFT,
  188. .ts_low_mask = CHCR_TS_LOW_MASK,
  189. .ts_high_shift = CHCR_TS_HIGH_SHIFT,
  190. .ts_high_mask = CHCR_TS_HIGH_MASK,
  191. .ts_shift = ts_shift,
  192. .ts_shift_num = ARRAY_SIZE(ts_shift),
  193. .dmaor_init = DMAOR_INIT,
  194. };
  195. /* Resource order important! */
  196. static struct resource sh7724_dmae0_resources[] = {
  197. {
  198. /* Channel registers and DMAOR */
  199. .start = 0xfe008020,
  200. .end = 0xfe00808f,
  201. .flags = IORESOURCE_MEM,
  202. },
  203. {
  204. /* DMARSx */
  205. .start = 0xfe009000,
  206. .end = 0xfe00900b,
  207. .flags = IORESOURCE_MEM,
  208. },
  209. {
  210. .name = "error_irq",
  211. .start = evt2irq(0xbc0),
  212. .end = evt2irq(0xbc0),
  213. .flags = IORESOURCE_IRQ,
  214. },
  215. {
  216. /* IRQ for channels 0-3 */
  217. .start = evt2irq(0x800),
  218. .end = evt2irq(0x860),
  219. .flags = IORESOURCE_IRQ,
  220. },
  221. {
  222. /* IRQ for channels 4-5 */
  223. .start = evt2irq(0xb80),
  224. .end = evt2irq(0xba0),
  225. .flags = IORESOURCE_IRQ,
  226. },
  227. };
  228. /* Resource order important! */
  229. static struct resource sh7724_dmae1_resources[] = {
  230. {
  231. /* Channel registers and DMAOR */
  232. .start = 0xfdc08020,
  233. .end = 0xfdc0808f,
  234. .flags = IORESOURCE_MEM,
  235. },
  236. {
  237. /* DMARSx */
  238. .start = 0xfdc09000,
  239. .end = 0xfdc0900b,
  240. .flags = IORESOURCE_MEM,
  241. },
  242. {
  243. .name = "error_irq",
  244. .start = evt2irq(0xb40),
  245. .end = evt2irq(0xb40),
  246. .flags = IORESOURCE_IRQ,
  247. },
  248. {
  249. /* IRQ for channels 0-3 */
  250. .start = evt2irq(0x700),
  251. .end = evt2irq(0x760),
  252. .flags = IORESOURCE_IRQ,
  253. },
  254. {
  255. /* IRQ for channels 4-5 */
  256. .start = evt2irq(0xb00),
  257. .end = evt2irq(0xb20),
  258. .flags = IORESOURCE_IRQ,
  259. },
  260. };
  261. static struct platform_device dma0_device = {
  262. .name = "sh-dma-engine",
  263. .id = 0,
  264. .resource = sh7724_dmae0_resources,
  265. .num_resources = ARRAY_SIZE(sh7724_dmae0_resources),
  266. .dev = {
  267. .platform_data = &dma_platform_data,
  268. },
  269. };
  270. static struct platform_device dma1_device = {
  271. .name = "sh-dma-engine",
  272. .id = 1,
  273. .resource = sh7724_dmae1_resources,
  274. .num_resources = ARRAY_SIZE(sh7724_dmae1_resources),
  275. .dev = {
  276. .platform_data = &dma_platform_data,
  277. },
  278. };
  279. /* Serial */
  280. static struct plat_sci_port scif0_platform_data = {
  281. .scscr = SCSCR_REIE,
  282. .type = PORT_SCIF,
  283. .regtype = SCIx_SH4_SCIF_NO_SCSPTR_REGTYPE,
  284. };
  285. static struct resource scif0_resources[] = {
  286. DEFINE_RES_MEM(0xffe00000, 0x100),
  287. DEFINE_RES_IRQ(evt2irq(0xc00)),
  288. };
  289. static struct platform_device scif0_device = {
  290. .name = "sh-sci",
  291. .id = 0,
  292. .resource = scif0_resources,
  293. .num_resources = ARRAY_SIZE(scif0_resources),
  294. .dev = {
  295. .platform_data = &scif0_platform_data,
  296. },
  297. };
  298. static struct plat_sci_port scif1_platform_data = {
  299. .scscr = SCSCR_REIE,
  300. .type = PORT_SCIF,
  301. .regtype = SCIx_SH4_SCIF_NO_SCSPTR_REGTYPE,
  302. };
  303. static struct resource scif1_resources[] = {
  304. DEFINE_RES_MEM(0xffe10000, 0x100),
  305. DEFINE_RES_IRQ(evt2irq(0xc20)),
  306. };
  307. static struct platform_device scif1_device = {
  308. .name = "sh-sci",
  309. .id = 1,
  310. .resource = scif1_resources,
  311. .num_resources = ARRAY_SIZE(scif1_resources),
  312. .dev = {
  313. .platform_data = &scif1_platform_data,
  314. },
  315. };
  316. static struct plat_sci_port scif2_platform_data = {
  317. .scscr = SCSCR_REIE,
  318. .type = PORT_SCIF,
  319. .regtype = SCIx_SH4_SCIF_NO_SCSPTR_REGTYPE,
  320. };
  321. static struct resource scif2_resources[] = {
  322. DEFINE_RES_MEM(0xffe20000, 0x100),
  323. DEFINE_RES_IRQ(evt2irq(0xc40)),
  324. };
  325. static struct platform_device scif2_device = {
  326. .name = "sh-sci",
  327. .id = 2,
  328. .resource = scif2_resources,
  329. .num_resources = ARRAY_SIZE(scif2_resources),
  330. .dev = {
  331. .platform_data = &scif2_platform_data,
  332. },
  333. };
  334. static struct plat_sci_port scif3_platform_data = {
  335. .sampling_rate = 8,
  336. .type = PORT_SCIFA,
  337. };
  338. static struct resource scif3_resources[] = {
  339. DEFINE_RES_MEM(0xa4e30000, 0x100),
  340. DEFINE_RES_IRQ(evt2irq(0x900)),
  341. };
  342. static struct platform_device scif3_device = {
  343. .name = "sh-sci",
  344. .id = 3,
  345. .resource = scif3_resources,
  346. .num_resources = ARRAY_SIZE(scif3_resources),
  347. .dev = {
  348. .platform_data = &scif3_platform_data,
  349. },
  350. };
  351. static struct plat_sci_port scif4_platform_data = {
  352. .sampling_rate = 8,
  353. .type = PORT_SCIFA,
  354. };
  355. static struct resource scif4_resources[] = {
  356. DEFINE_RES_MEM(0xa4e40000, 0x100),
  357. DEFINE_RES_IRQ(evt2irq(0xd00)),
  358. };
  359. static struct platform_device scif4_device = {
  360. .name = "sh-sci",
  361. .id = 4,
  362. .resource = scif4_resources,
  363. .num_resources = ARRAY_SIZE(scif4_resources),
  364. .dev = {
  365. .platform_data = &scif4_platform_data,
  366. },
  367. };
  368. static struct plat_sci_port scif5_platform_data = {
  369. .sampling_rate = 8,
  370. .type = PORT_SCIFA,
  371. };
  372. static struct resource scif5_resources[] = {
  373. DEFINE_RES_MEM(0xa4e50000, 0x100),
  374. DEFINE_RES_IRQ(evt2irq(0xfa0)),
  375. };
  376. static struct platform_device scif5_device = {
  377. .name = "sh-sci",
  378. .id = 5,
  379. .resource = scif5_resources,
  380. .num_resources = ARRAY_SIZE(scif5_resources),
  381. .dev = {
  382. .platform_data = &scif5_platform_data,
  383. },
  384. };
  385. /* RTC */
  386. static struct resource rtc_resources[] = {
  387. [0] = {
  388. .start = 0xa465fec0,
  389. .end = 0xa465fec0 + 0x58 - 1,
  390. .flags = IORESOURCE_IO,
  391. },
  392. [1] = {
  393. /* Period IRQ */
  394. .start = evt2irq(0xaa0),
  395. .flags = IORESOURCE_IRQ,
  396. },
  397. [2] = {
  398. /* Carry IRQ */
  399. .start = evt2irq(0xac0),
  400. .flags = IORESOURCE_IRQ,
  401. },
  402. [3] = {
  403. /* Alarm IRQ */
  404. .start = evt2irq(0xa80),
  405. .flags = IORESOURCE_IRQ,
  406. },
  407. };
  408. static struct platform_device rtc_device = {
  409. .name = "sh-rtc",
  410. .id = -1,
  411. .num_resources = ARRAY_SIZE(rtc_resources),
  412. .resource = rtc_resources,
  413. };
  414. /* I2C0 */
  415. static struct resource iic0_resources[] = {
  416. [0] = {
  417. .name = "IIC0",
  418. .start = 0x04470000,
  419. .end = 0x04470018 - 1,
  420. .flags = IORESOURCE_MEM,
  421. },
  422. [1] = {
  423. .start = evt2irq(0xe00),
  424. .end = evt2irq(0xe60),
  425. .flags = IORESOURCE_IRQ,
  426. },
  427. };
  428. static struct platform_device iic0_device = {
  429. .name = "i2c-sh_mobile",
  430. .id = 0, /* "i2c0" clock */
  431. .num_resources = ARRAY_SIZE(iic0_resources),
  432. .resource = iic0_resources,
  433. };
  434. /* I2C1 */
  435. static struct resource iic1_resources[] = {
  436. [0] = {
  437. .name = "IIC1",
  438. .start = 0x04750000,
  439. .end = 0x04750018 - 1,
  440. .flags = IORESOURCE_MEM,
  441. },
  442. [1] = {
  443. .start = evt2irq(0xd80),
  444. .end = evt2irq(0xde0),
  445. .flags = IORESOURCE_IRQ,
  446. },
  447. };
  448. static struct platform_device iic1_device = {
  449. .name = "i2c-sh_mobile",
  450. .id = 1, /* "i2c1" clock */
  451. .num_resources = ARRAY_SIZE(iic1_resources),
  452. .resource = iic1_resources,
  453. };
  454. /* VPU */
  455. static struct uio_info vpu_platform_data = {
  456. .name = "VPU5F",
  457. .version = "0",
  458. .irq = evt2irq(0x980),
  459. };
  460. static struct resource vpu_resources[] = {
  461. [0] = {
  462. .name = "VPU",
  463. .start = 0xfe900000,
  464. .end = 0xfe902807,
  465. .flags = IORESOURCE_MEM,
  466. },
  467. [1] = {
  468. /* place holder for contiguous memory */
  469. },
  470. };
  471. static struct platform_device vpu_device = {
  472. .name = "uio_pdrv_genirq",
  473. .id = 0,
  474. .dev = {
  475. .platform_data = &vpu_platform_data,
  476. },
  477. .resource = vpu_resources,
  478. .num_resources = ARRAY_SIZE(vpu_resources),
  479. };
  480. /* VEU0 */
  481. static struct uio_info veu0_platform_data = {
  482. .name = "VEU3F0",
  483. .version = "0",
  484. .irq = evt2irq(0xc60),
  485. };
  486. static struct resource veu0_resources[] = {
  487. [0] = {
  488. .name = "VEU3F0",
  489. .start = 0xfe920000,
  490. .end = 0xfe9200cb,
  491. .flags = IORESOURCE_MEM,
  492. },
  493. [1] = {
  494. /* place holder for contiguous memory */
  495. },
  496. };
  497. static struct platform_device veu0_device = {
  498. .name = "uio_pdrv_genirq",
  499. .id = 1,
  500. .dev = {
  501. .platform_data = &veu0_platform_data,
  502. },
  503. .resource = veu0_resources,
  504. .num_resources = ARRAY_SIZE(veu0_resources),
  505. };
  506. /* VEU1 */
  507. static struct uio_info veu1_platform_data = {
  508. .name = "VEU3F1",
  509. .version = "0",
  510. .irq = evt2irq(0x8c0),
  511. };
  512. static struct resource veu1_resources[] = {
  513. [0] = {
  514. .name = "VEU3F1",
  515. .start = 0xfe924000,
  516. .end = 0xfe9240cb,
  517. .flags = IORESOURCE_MEM,
  518. },
  519. [1] = {
  520. /* place holder for contiguous memory */
  521. },
  522. };
  523. static struct platform_device veu1_device = {
  524. .name = "uio_pdrv_genirq",
  525. .id = 2,
  526. .dev = {
  527. .platform_data = &veu1_platform_data,
  528. },
  529. .resource = veu1_resources,
  530. .num_resources = ARRAY_SIZE(veu1_resources),
  531. };
  532. /* BEU0 */
  533. static struct uio_info beu0_platform_data = {
  534. .name = "BEU0",
  535. .version = "0",
  536. .irq = evt2irq(0x8A0),
  537. };
  538. static struct resource beu0_resources[] = {
  539. [0] = {
  540. .name = "BEU0",
  541. .start = 0xfe930000,
  542. .end = 0xfe933400,
  543. .flags = IORESOURCE_MEM,
  544. },
  545. [1] = {
  546. /* place holder for contiguous memory */
  547. },
  548. };
  549. static struct platform_device beu0_device = {
  550. .name = "uio_pdrv_genirq",
  551. .id = 6,
  552. .dev = {
  553. .platform_data = &beu0_platform_data,
  554. },
  555. .resource = beu0_resources,
  556. .num_resources = ARRAY_SIZE(beu0_resources),
  557. };
  558. /* BEU1 */
  559. static struct uio_info beu1_platform_data = {
  560. .name = "BEU1",
  561. .version = "0",
  562. .irq = evt2irq(0xA00),
  563. };
  564. static struct resource beu1_resources[] = {
  565. [0] = {
  566. .name = "BEU1",
  567. .start = 0xfe940000,
  568. .end = 0xfe943400,
  569. .flags = IORESOURCE_MEM,
  570. },
  571. [1] = {
  572. /* place holder for contiguous memory */
  573. },
  574. };
  575. static struct platform_device beu1_device = {
  576. .name = "uio_pdrv_genirq",
  577. .id = 7,
  578. .dev = {
  579. .platform_data = &beu1_platform_data,
  580. },
  581. .resource = beu1_resources,
  582. .num_resources = ARRAY_SIZE(beu1_resources),
  583. };
  584. static struct sh_timer_config cmt_platform_data = {
  585. .channels_mask = 0x20,
  586. };
  587. static struct resource cmt_resources[] = {
  588. DEFINE_RES_MEM(0x044a0000, 0x70),
  589. DEFINE_RES_IRQ(evt2irq(0xf00)),
  590. };
  591. static struct platform_device cmt_device = {
  592. .name = "sh-cmt-32",
  593. .id = 0,
  594. .dev = {
  595. .platform_data = &cmt_platform_data,
  596. },
  597. .resource = cmt_resources,
  598. .num_resources = ARRAY_SIZE(cmt_resources),
  599. };
  600. static struct sh_timer_config tmu0_platform_data = {
  601. .channels_mask = 7,
  602. };
  603. static struct resource tmu0_resources[] = {
  604. DEFINE_RES_MEM(0xffd80000, 0x2c),
  605. DEFINE_RES_IRQ(evt2irq(0x400)),
  606. DEFINE_RES_IRQ(evt2irq(0x420)),
  607. DEFINE_RES_IRQ(evt2irq(0x440)),
  608. };
  609. static struct platform_device tmu0_device = {
  610. .name = "sh-tmu",
  611. .id = 0,
  612. .dev = {
  613. .platform_data = &tmu0_platform_data,
  614. },
  615. .resource = tmu0_resources,
  616. .num_resources = ARRAY_SIZE(tmu0_resources),
  617. };
  618. static struct sh_timer_config tmu1_platform_data = {
  619. .channels_mask = 7,
  620. };
  621. static struct resource tmu1_resources[] = {
  622. DEFINE_RES_MEM(0xffd90000, 0x2c),
  623. DEFINE_RES_IRQ(evt2irq(0x920)),
  624. DEFINE_RES_IRQ(evt2irq(0x940)),
  625. DEFINE_RES_IRQ(evt2irq(0x960)),
  626. };
  627. static struct platform_device tmu1_device = {
  628. .name = "sh-tmu",
  629. .id = 1,
  630. .dev = {
  631. .platform_data = &tmu1_platform_data,
  632. },
  633. .resource = tmu1_resources,
  634. .num_resources = ARRAY_SIZE(tmu1_resources),
  635. };
  636. /* JPU */
  637. static struct uio_info jpu_platform_data = {
  638. .name = "JPU",
  639. .version = "0",
  640. .irq = evt2irq(0x560),
  641. };
  642. static struct resource jpu_resources[] = {
  643. [0] = {
  644. .name = "JPU",
  645. .start = 0xfe980000,
  646. .end = 0xfe9902d3,
  647. .flags = IORESOURCE_MEM,
  648. },
  649. [1] = {
  650. /* place holder for contiguous memory */
  651. },
  652. };
  653. static struct platform_device jpu_device = {
  654. .name = "uio_pdrv_genirq",
  655. .id = 3,
  656. .dev = {
  657. .platform_data = &jpu_platform_data,
  658. },
  659. .resource = jpu_resources,
  660. .num_resources = ARRAY_SIZE(jpu_resources),
  661. };
  662. /* SPU2DSP0 */
  663. static struct uio_info spu0_platform_data = {
  664. .name = "SPU2DSP0",
  665. .version = "0",
  666. .irq = evt2irq(0xcc0),
  667. };
  668. static struct resource spu0_resources[] = {
  669. [0] = {
  670. .name = "SPU2DSP0",
  671. .start = 0xFE200000,
  672. .end = 0xFE2FFFFF,
  673. .flags = IORESOURCE_MEM,
  674. },
  675. [1] = {
  676. /* place holder for contiguous memory */
  677. },
  678. };
  679. static struct platform_device spu0_device = {
  680. .name = "uio_pdrv_genirq",
  681. .id = 4,
  682. .dev = {
  683. .platform_data = &spu0_platform_data,
  684. },
  685. .resource = spu0_resources,
  686. .num_resources = ARRAY_SIZE(spu0_resources),
  687. };
  688. /* SPU2DSP1 */
  689. static struct uio_info spu1_platform_data = {
  690. .name = "SPU2DSP1",
  691. .version = "0",
  692. .irq = evt2irq(0xce0),
  693. };
  694. static struct resource spu1_resources[] = {
  695. [0] = {
  696. .name = "SPU2DSP1",
  697. .start = 0xFE300000,
  698. .end = 0xFE3FFFFF,
  699. .flags = IORESOURCE_MEM,
  700. },
  701. [1] = {
  702. /* place holder for contiguous memory */
  703. },
  704. };
  705. static struct platform_device spu1_device = {
  706. .name = "uio_pdrv_genirq",
  707. .id = 5,
  708. .dev = {
  709. .platform_data = &spu1_platform_data,
  710. },
  711. .resource = spu1_resources,
  712. .num_resources = ARRAY_SIZE(spu1_resources),
  713. };
  714. static struct platform_device *sh7724_devices[] __initdata = {
  715. &scif0_device,
  716. &scif1_device,
  717. &scif2_device,
  718. &scif3_device,
  719. &scif4_device,
  720. &scif5_device,
  721. &cmt_device,
  722. &tmu0_device,
  723. &tmu1_device,
  724. &dma0_device,
  725. &dma1_device,
  726. &rtc_device,
  727. &iic0_device,
  728. &iic1_device,
  729. &vpu_device,
  730. &veu0_device,
  731. &veu1_device,
  732. &beu0_device,
  733. &beu1_device,
  734. &jpu_device,
  735. &spu0_device,
  736. &spu1_device,
  737. };
  738. static int __init sh7724_devices_setup(void)
  739. {
  740. platform_resource_setup_memory(&vpu_device, "vpu", 2 << 20);
  741. platform_resource_setup_memory(&veu0_device, "veu0", 2 << 20);
  742. platform_resource_setup_memory(&veu1_device, "veu1", 2 << 20);
  743. platform_resource_setup_memory(&jpu_device, "jpu", 2 << 20);
  744. platform_resource_setup_memory(&spu0_device, "spu0", 2 << 20);
  745. platform_resource_setup_memory(&spu1_device, "spu1", 2 << 20);
  746. return platform_add_devices(sh7724_devices,
  747. ARRAY_SIZE(sh7724_devices));
  748. }
  749. arch_initcall(sh7724_devices_setup);
  750. static struct platform_device *sh7724_early_devices[] __initdata = {
  751. &scif0_device,
  752. &scif1_device,
  753. &scif2_device,
  754. &scif3_device,
  755. &scif4_device,
  756. &scif5_device,
  757. &cmt_device,
  758. &tmu0_device,
  759. &tmu1_device,
  760. };
  761. void __init plat_early_device_setup(void)
  762. {
  763. sh_early_platform_add_devices(sh7724_early_devices,
  764. ARRAY_SIZE(sh7724_early_devices));
  765. }
  766. #define RAMCR_CACHE_L2FC 0x0002
  767. #define RAMCR_CACHE_L2E 0x0001
  768. #define L2_CACHE_ENABLE (RAMCR_CACHE_L2E|RAMCR_CACHE_L2FC)
  769. void l2_cache_init(void)
  770. {
  771. /* Enable L2 cache */
  772. __raw_writel(L2_CACHE_ENABLE, RAMCR);
  773. }
  774. enum {
  775. UNUSED = 0,
  776. ENABLED,
  777. DISABLED,
  778. /* interrupt sources */
  779. IRQ0, IRQ1, IRQ2, IRQ3, IRQ4, IRQ5, IRQ6, IRQ7,
  780. HUDI,
  781. DMAC1A_DEI0, DMAC1A_DEI1, DMAC1A_DEI2, DMAC1A_DEI3,
  782. _2DG_TRI, _2DG_INI, _2DG_CEI,
  783. DMAC0A_DEI0, DMAC0A_DEI1, DMAC0A_DEI2, DMAC0A_DEI3,
  784. VIO_CEU0, VIO_BEU0, VIO_VEU1, VIO_VOU,
  785. SCIFA3,
  786. VPU,
  787. TPU,
  788. CEU1,
  789. BEU1,
  790. USB0, USB1,
  791. ATAPI,
  792. RTC_ATI, RTC_PRI, RTC_CUI,
  793. DMAC1B_DEI4, DMAC1B_DEI5, DMAC1B_DADERR,
  794. DMAC0B_DEI4, DMAC0B_DEI5, DMAC0B_DADERR,
  795. KEYSC,
  796. SCIF_SCIF0, SCIF_SCIF1, SCIF_SCIF2,
  797. VEU0,
  798. MSIOF_MSIOFI0, MSIOF_MSIOFI1,
  799. SPU_SPUI0, SPU_SPUI1,
  800. SCIFA4,
  801. ICB,
  802. ETHI,
  803. I2C1_ALI, I2C1_TACKI, I2C1_WAITI, I2C1_DTEI,
  804. I2C0_ALI, I2C0_TACKI, I2C0_WAITI, I2C0_DTEI,
  805. CMT,
  806. TSIF,
  807. FSI,
  808. SCIFA5,
  809. TMU0_TUNI0, TMU0_TUNI1, TMU0_TUNI2,
  810. IRDA,
  811. JPU,
  812. _2DDMAC,
  813. MMC_MMC2I, MMC_MMC3I,
  814. LCDC,
  815. TMU1_TUNI0, TMU1_TUNI1, TMU1_TUNI2,
  816. /* interrupt groups */
  817. DMAC1A, _2DG, DMAC0A, VIO, USB, RTC,
  818. DMAC1B, DMAC0B, I2C0, I2C1, SDHI0, SDHI1, SPU, MMCIF,
  819. };
  820. static struct intc_vect vectors[] __initdata = {
  821. INTC_VECT(IRQ0, 0x600), INTC_VECT(IRQ1, 0x620),
  822. INTC_VECT(IRQ2, 0x640), INTC_VECT(IRQ3, 0x660),
  823. INTC_VECT(IRQ4, 0x680), INTC_VECT(IRQ5, 0x6a0),
  824. INTC_VECT(IRQ6, 0x6c0), INTC_VECT(IRQ7, 0x6e0),
  825. INTC_VECT(DMAC1A_DEI0, 0x700),
  826. INTC_VECT(DMAC1A_DEI1, 0x720),
  827. INTC_VECT(DMAC1A_DEI2, 0x740),
  828. INTC_VECT(DMAC1A_DEI3, 0x760),
  829. INTC_VECT(_2DG_TRI, 0x780),
  830. INTC_VECT(_2DG_INI, 0x7A0),
  831. INTC_VECT(_2DG_CEI, 0x7C0),
  832. INTC_VECT(DMAC0A_DEI0, 0x800),
  833. INTC_VECT(DMAC0A_DEI1, 0x820),
  834. INTC_VECT(DMAC0A_DEI2, 0x840),
  835. INTC_VECT(DMAC0A_DEI3, 0x860),
  836. INTC_VECT(VIO_CEU0, 0x880),
  837. INTC_VECT(VIO_BEU0, 0x8A0),
  838. INTC_VECT(VIO_VEU1, 0x8C0),
  839. INTC_VECT(VIO_VOU, 0x8E0),
  840. INTC_VECT(SCIFA3, 0x900),
  841. INTC_VECT(VPU, 0x980),
  842. INTC_VECT(TPU, 0x9A0),
  843. INTC_VECT(CEU1, 0x9E0),
  844. INTC_VECT(BEU1, 0xA00),
  845. INTC_VECT(USB0, 0xA20),
  846. INTC_VECT(USB1, 0xA40),
  847. INTC_VECT(ATAPI, 0xA60),
  848. INTC_VECT(RTC_ATI, 0xA80),
  849. INTC_VECT(RTC_PRI, 0xAA0),
  850. INTC_VECT(RTC_CUI, 0xAC0),
  851. INTC_VECT(DMAC1B_DEI4, 0xB00),
  852. INTC_VECT(DMAC1B_DEI5, 0xB20),
  853. INTC_VECT(DMAC1B_DADERR, 0xB40),
  854. INTC_VECT(DMAC0B_DEI4, 0xB80),
  855. INTC_VECT(DMAC0B_DEI5, 0xBA0),
  856. INTC_VECT(DMAC0B_DADERR, 0xBC0),
  857. INTC_VECT(KEYSC, 0xBE0),
  858. INTC_VECT(SCIF_SCIF0, 0xC00),
  859. INTC_VECT(SCIF_SCIF1, 0xC20),
  860. INTC_VECT(SCIF_SCIF2, 0xC40),
  861. INTC_VECT(VEU0, 0xC60),
  862. INTC_VECT(MSIOF_MSIOFI0, 0xC80),
  863. INTC_VECT(MSIOF_MSIOFI1, 0xCA0),
  864. INTC_VECT(SPU_SPUI0, 0xCC0),
  865. INTC_VECT(SPU_SPUI1, 0xCE0),
  866. INTC_VECT(SCIFA4, 0xD00),
  867. INTC_VECT(ICB, 0xD20),
  868. INTC_VECT(ETHI, 0xD60),
  869. INTC_VECT(I2C1_ALI, 0xD80),
  870. INTC_VECT(I2C1_TACKI, 0xDA0),
  871. INTC_VECT(I2C1_WAITI, 0xDC0),
  872. INTC_VECT(I2C1_DTEI, 0xDE0),
  873. INTC_VECT(I2C0_ALI, 0xE00),
  874. INTC_VECT(I2C0_TACKI, 0xE20),
  875. INTC_VECT(I2C0_WAITI, 0xE40),
  876. INTC_VECT(I2C0_DTEI, 0xE60),
  877. INTC_VECT(SDHI0, 0xE80),
  878. INTC_VECT(SDHI0, 0xEA0),
  879. INTC_VECT(SDHI0, 0xEC0),
  880. INTC_VECT(SDHI0, 0xEE0),
  881. INTC_VECT(CMT, 0xF00),
  882. INTC_VECT(TSIF, 0xF20),
  883. INTC_VECT(FSI, 0xF80),
  884. INTC_VECT(SCIFA5, 0xFA0),
  885. INTC_VECT(TMU0_TUNI0, 0x400),
  886. INTC_VECT(TMU0_TUNI1, 0x420),
  887. INTC_VECT(TMU0_TUNI2, 0x440),
  888. INTC_VECT(IRDA, 0x480),
  889. INTC_VECT(SDHI1, 0x4E0),
  890. INTC_VECT(SDHI1, 0x500),
  891. INTC_VECT(SDHI1, 0x520),
  892. INTC_VECT(JPU, 0x560),
  893. INTC_VECT(_2DDMAC, 0x4A0),
  894. INTC_VECT(MMC_MMC2I, 0x5A0),
  895. INTC_VECT(MMC_MMC3I, 0x5C0),
  896. INTC_VECT(LCDC, 0xF40),
  897. INTC_VECT(TMU1_TUNI0, 0x920),
  898. INTC_VECT(TMU1_TUNI1, 0x940),
  899. INTC_VECT(TMU1_TUNI2, 0x960),
  900. };
  901. static struct intc_group groups[] __initdata = {
  902. INTC_GROUP(DMAC1A, DMAC1A_DEI0, DMAC1A_DEI1, DMAC1A_DEI2, DMAC1A_DEI3),
  903. INTC_GROUP(_2DG, _2DG_TRI, _2DG_INI, _2DG_CEI),
  904. INTC_GROUP(DMAC0A, DMAC0A_DEI0, DMAC0A_DEI1, DMAC0A_DEI2, DMAC0A_DEI3),
  905. INTC_GROUP(VIO, VIO_CEU0, VIO_BEU0, VIO_VEU1, VIO_VOU),
  906. INTC_GROUP(USB, USB0, USB1),
  907. INTC_GROUP(RTC, RTC_ATI, RTC_PRI, RTC_CUI),
  908. INTC_GROUP(DMAC1B, DMAC1B_DEI4, DMAC1B_DEI5, DMAC1B_DADERR),
  909. INTC_GROUP(DMAC0B, DMAC0B_DEI4, DMAC0B_DEI5, DMAC0B_DADERR),
  910. INTC_GROUP(I2C0, I2C0_ALI, I2C0_TACKI, I2C0_WAITI, I2C0_DTEI),
  911. INTC_GROUP(I2C1, I2C1_ALI, I2C1_TACKI, I2C1_WAITI, I2C1_DTEI),
  912. INTC_GROUP(SPU, SPU_SPUI0, SPU_SPUI1),
  913. INTC_GROUP(MMCIF, MMC_MMC2I, MMC_MMC3I),
  914. };
  915. static struct intc_mask_reg mask_registers[] __initdata = {
  916. { 0xa4080080, 0xa40800c0, 8, /* IMR0 / IMCR0 */
  917. { 0, TMU1_TUNI2, TMU1_TUNI1, TMU1_TUNI0,
  918. 0, ENABLED, ENABLED, ENABLED } },
  919. { 0xa4080084, 0xa40800c4, 8, /* IMR1 / IMCR1 */
  920. { VIO_VOU, VIO_VEU1, VIO_BEU0, VIO_CEU0,
  921. DMAC0A_DEI3, DMAC0A_DEI2, DMAC0A_DEI1, DMAC0A_DEI0 } },
  922. { 0xa4080088, 0xa40800c8, 8, /* IMR2 / IMCR2 */
  923. { 0, 0, 0, VPU, ATAPI, ETHI, 0, SCIFA3 } },
  924. { 0xa408008c, 0xa40800cc, 8, /* IMR3 / IMCR3 */
  925. { DMAC1A_DEI3, DMAC1A_DEI2, DMAC1A_DEI1, DMAC1A_DEI0,
  926. SPU_SPUI1, SPU_SPUI0, BEU1, IRDA } },
  927. { 0xa4080090, 0xa40800d0, 8, /* IMR4 / IMCR4 */
  928. { 0, TMU0_TUNI2, TMU0_TUNI1, TMU0_TUNI0,
  929. JPU, 0, 0, LCDC } },
  930. { 0xa4080094, 0xa40800d4, 8, /* IMR5 / IMCR5 */
  931. { KEYSC, DMAC0B_DADERR, DMAC0B_DEI5, DMAC0B_DEI4,
  932. VEU0, SCIF_SCIF2, SCIF_SCIF1, SCIF_SCIF0 } },
  933. { 0xa4080098, 0xa40800d8, 8, /* IMR6 / IMCR6 */
  934. { 0, 0, ICB, SCIFA4,
  935. CEU1, 0, MSIOF_MSIOFI1, MSIOF_MSIOFI0 } },
  936. { 0xa408009c, 0xa40800dc, 8, /* IMR7 / IMCR7 */
  937. { I2C0_DTEI, I2C0_WAITI, I2C0_TACKI, I2C0_ALI,
  938. I2C1_DTEI, I2C1_WAITI, I2C1_TACKI, I2C1_ALI } },
  939. { 0xa40800a0, 0xa40800e0, 8, /* IMR8 / IMCR8 */
  940. { DISABLED, ENABLED, ENABLED, ENABLED,
  941. 0, 0, SCIFA5, FSI } },
  942. { 0xa40800a4, 0xa40800e4, 8, /* IMR9 / IMCR9 */
  943. { 0, 0, 0, CMT, 0, USB1, USB0, 0 } },
  944. { 0xa40800a8, 0xa40800e8, 8, /* IMR10 / IMCR10 */
  945. { 0, DMAC1B_DADERR, DMAC1B_DEI5, DMAC1B_DEI4,
  946. 0, RTC_CUI, RTC_PRI, RTC_ATI } },
  947. { 0xa40800ac, 0xa40800ec, 8, /* IMR11 / IMCR11 */
  948. { 0, _2DG_CEI, _2DG_INI, _2DG_TRI,
  949. 0, TPU, 0, TSIF } },
  950. { 0xa40800b0, 0xa40800f0, 8, /* IMR12 / IMCR12 */
  951. { 0, 0, MMC_MMC3I, MMC_MMC2I, 0, 0, 0, _2DDMAC } },
  952. { 0xa4140044, 0xa4140064, 8, /* INTMSK00 / INTMSKCLR00 */
  953. { IRQ0, IRQ1, IRQ2, IRQ3, IRQ4, IRQ5, IRQ6, IRQ7 } },
  954. };
  955. static struct intc_prio_reg prio_registers[] __initdata = {
  956. { 0xa4080000, 0, 16, 4, /* IPRA */ { TMU0_TUNI0, TMU0_TUNI1,
  957. TMU0_TUNI2, IRDA } },
  958. { 0xa4080004, 0, 16, 4, /* IPRB */ { JPU, LCDC, DMAC1A, BEU1 } },
  959. { 0xa4080008, 0, 16, 4, /* IPRC */ { TMU1_TUNI0, TMU1_TUNI1,
  960. TMU1_TUNI2, SPU } },
  961. { 0xa408000c, 0, 16, 4, /* IPRD */ { 0, MMCIF, 0, ATAPI } },
  962. { 0xa4080010, 0, 16, 4, /* IPRE */ { DMAC0A, VIO, SCIFA3, VPU } },
  963. { 0xa4080014, 0, 16, 4, /* IPRF */ { KEYSC, DMAC0B, USB, CMT } },
  964. { 0xa4080018, 0, 16, 4, /* IPRG */ { SCIF_SCIF0, SCIF_SCIF1,
  965. SCIF_SCIF2, VEU0 } },
  966. { 0xa408001c, 0, 16, 4, /* IPRH */ { MSIOF_MSIOFI0, MSIOF_MSIOFI1,
  967. I2C1, I2C0 } },
  968. { 0xa4080020, 0, 16, 4, /* IPRI */ { SCIFA4, ICB, TSIF, _2DG } },
  969. { 0xa4080024, 0, 16, 4, /* IPRJ */ { CEU1, ETHI, FSI, SDHI1 } },
  970. { 0xa4080028, 0, 16, 4, /* IPRK */ { RTC, DMAC1B, 0, SDHI0 } },
  971. { 0xa408002c, 0, 16, 4, /* IPRL */ { SCIFA5, 0, TPU, _2DDMAC } },
  972. { 0xa4140010, 0, 32, 4, /* INTPRI00 */
  973. { IRQ0, IRQ1, IRQ2, IRQ3, IRQ4, IRQ5, IRQ6, IRQ7 } },
  974. };
  975. static struct intc_sense_reg sense_registers[] __initdata = {
  976. { 0xa414001c, 16, 2, /* ICR1 */
  977. { IRQ0, IRQ1, IRQ2, IRQ3, IRQ4, IRQ5, IRQ6, IRQ7 } },
  978. };
  979. static struct intc_mask_reg ack_registers[] __initdata = {
  980. { 0xa4140024, 0, 8, /* INTREQ00 */
  981. { IRQ0, IRQ1, IRQ2, IRQ3, IRQ4, IRQ5, IRQ6, IRQ7 } },
  982. };
  983. static struct intc_desc intc_desc __initdata = {
  984. .name = "sh7724",
  985. .force_enable = ENABLED,
  986. .force_disable = DISABLED,
  987. .hw = INTC_HW_DESC(vectors, groups, mask_registers,
  988. prio_registers, sense_registers, ack_registers),
  989. };
  990. void __init plat_irq_setup(void)
  991. {
  992. register_intc_controller(&intc_desc);
  993. }
  994. static struct {
  995. /* BSC */
  996. unsigned long mmselr;
  997. unsigned long cs0bcr;
  998. unsigned long cs4bcr;
  999. unsigned long cs5abcr;
  1000. unsigned long cs5bbcr;
  1001. unsigned long cs6abcr;
  1002. unsigned long cs6bbcr;
  1003. unsigned long cs4wcr;
  1004. unsigned long cs5awcr;
  1005. unsigned long cs5bwcr;
  1006. unsigned long cs6awcr;
  1007. unsigned long cs6bwcr;
  1008. /* INTC */
  1009. unsigned short ipra;
  1010. unsigned short iprb;
  1011. unsigned short iprc;
  1012. unsigned short iprd;
  1013. unsigned short ipre;
  1014. unsigned short iprf;
  1015. unsigned short iprg;
  1016. unsigned short iprh;
  1017. unsigned short ipri;
  1018. unsigned short iprj;
  1019. unsigned short iprk;
  1020. unsigned short iprl;
  1021. unsigned char imr0;
  1022. unsigned char imr1;
  1023. unsigned char imr2;
  1024. unsigned char imr3;
  1025. unsigned char imr4;
  1026. unsigned char imr5;
  1027. unsigned char imr6;
  1028. unsigned char imr7;
  1029. unsigned char imr8;
  1030. unsigned char imr9;
  1031. unsigned char imr10;
  1032. unsigned char imr11;
  1033. unsigned char imr12;
  1034. /* RWDT */
  1035. unsigned short rwtcnt;
  1036. unsigned short rwtcsr;
  1037. /* CPG */
  1038. unsigned long irdaclk;
  1039. unsigned long spuclk;
  1040. } sh7724_rstandby_state;
  1041. static int sh7724_pre_sleep_notifier_call(struct notifier_block *nb,
  1042. unsigned long flags, void *unused)
  1043. {
  1044. if (!(flags & SUSP_SH_RSTANDBY))
  1045. return NOTIFY_DONE;
  1046. /* BCR */
  1047. sh7724_rstandby_state.mmselr = __raw_readl(0xff800020); /* MMSELR */
  1048. sh7724_rstandby_state.mmselr |= 0xa5a50000;
  1049. sh7724_rstandby_state.cs0bcr = __raw_readl(0xfec10004); /* CS0BCR */
  1050. sh7724_rstandby_state.cs4bcr = __raw_readl(0xfec10010); /* CS4BCR */
  1051. sh7724_rstandby_state.cs5abcr = __raw_readl(0xfec10014); /* CS5ABCR */
  1052. sh7724_rstandby_state.cs5bbcr = __raw_readl(0xfec10018); /* CS5BBCR */
  1053. sh7724_rstandby_state.cs6abcr = __raw_readl(0xfec1001c); /* CS6ABCR */
  1054. sh7724_rstandby_state.cs6bbcr = __raw_readl(0xfec10020); /* CS6BBCR */
  1055. sh7724_rstandby_state.cs4wcr = __raw_readl(0xfec10030); /* CS4WCR */
  1056. sh7724_rstandby_state.cs5awcr = __raw_readl(0xfec10034); /* CS5AWCR */
  1057. sh7724_rstandby_state.cs5bwcr = __raw_readl(0xfec10038); /* CS5BWCR */
  1058. sh7724_rstandby_state.cs6awcr = __raw_readl(0xfec1003c); /* CS6AWCR */
  1059. sh7724_rstandby_state.cs6bwcr = __raw_readl(0xfec10040); /* CS6BWCR */
  1060. /* INTC */
  1061. sh7724_rstandby_state.ipra = __raw_readw(0xa4080000); /* IPRA */
  1062. sh7724_rstandby_state.iprb = __raw_readw(0xa4080004); /* IPRB */
  1063. sh7724_rstandby_state.iprc = __raw_readw(0xa4080008); /* IPRC */
  1064. sh7724_rstandby_state.iprd = __raw_readw(0xa408000c); /* IPRD */
  1065. sh7724_rstandby_state.ipre = __raw_readw(0xa4080010); /* IPRE */
  1066. sh7724_rstandby_state.iprf = __raw_readw(0xa4080014); /* IPRF */
  1067. sh7724_rstandby_state.iprg = __raw_readw(0xa4080018); /* IPRG */
  1068. sh7724_rstandby_state.iprh = __raw_readw(0xa408001c); /* IPRH */
  1069. sh7724_rstandby_state.ipri = __raw_readw(0xa4080020); /* IPRI */
  1070. sh7724_rstandby_state.iprj = __raw_readw(0xa4080024); /* IPRJ */
  1071. sh7724_rstandby_state.iprk = __raw_readw(0xa4080028); /* IPRK */
  1072. sh7724_rstandby_state.iprl = __raw_readw(0xa408002c); /* IPRL */
  1073. sh7724_rstandby_state.imr0 = __raw_readb(0xa4080080); /* IMR0 */
  1074. sh7724_rstandby_state.imr1 = __raw_readb(0xa4080084); /* IMR1 */
  1075. sh7724_rstandby_state.imr2 = __raw_readb(0xa4080088); /* IMR2 */
  1076. sh7724_rstandby_state.imr3 = __raw_readb(0xa408008c); /* IMR3 */
  1077. sh7724_rstandby_state.imr4 = __raw_readb(0xa4080090); /* IMR4 */
  1078. sh7724_rstandby_state.imr5 = __raw_readb(0xa4080094); /* IMR5 */
  1079. sh7724_rstandby_state.imr6 = __raw_readb(0xa4080098); /* IMR6 */
  1080. sh7724_rstandby_state.imr7 = __raw_readb(0xa408009c); /* IMR7 */
  1081. sh7724_rstandby_state.imr8 = __raw_readb(0xa40800a0); /* IMR8 */
  1082. sh7724_rstandby_state.imr9 = __raw_readb(0xa40800a4); /* IMR9 */
  1083. sh7724_rstandby_state.imr10 = __raw_readb(0xa40800a8); /* IMR10 */
  1084. sh7724_rstandby_state.imr11 = __raw_readb(0xa40800ac); /* IMR11 */
  1085. sh7724_rstandby_state.imr12 = __raw_readb(0xa40800b0); /* IMR12 */
  1086. /* RWDT */
  1087. sh7724_rstandby_state.rwtcnt = __raw_readb(0xa4520000); /* RWTCNT */
  1088. sh7724_rstandby_state.rwtcnt |= 0x5a00;
  1089. sh7724_rstandby_state.rwtcsr = __raw_readb(0xa4520004); /* RWTCSR */
  1090. sh7724_rstandby_state.rwtcsr |= 0xa500;
  1091. __raw_writew(sh7724_rstandby_state.rwtcsr & 0x07, 0xa4520004);
  1092. /* CPG */
  1093. sh7724_rstandby_state.irdaclk = __raw_readl(0xa4150018); /* IRDACLKCR */
  1094. sh7724_rstandby_state.spuclk = __raw_readl(0xa415003c); /* SPUCLKCR */
  1095. return NOTIFY_DONE;
  1096. }
  1097. static int sh7724_post_sleep_notifier_call(struct notifier_block *nb,
  1098. unsigned long flags, void *unused)
  1099. {
  1100. if (!(flags & SUSP_SH_RSTANDBY))
  1101. return NOTIFY_DONE;
  1102. /* BCR */
  1103. __raw_writel(sh7724_rstandby_state.mmselr, 0xff800020); /* MMSELR */
  1104. __raw_writel(sh7724_rstandby_state.cs0bcr, 0xfec10004); /* CS0BCR */
  1105. __raw_writel(sh7724_rstandby_state.cs4bcr, 0xfec10010); /* CS4BCR */
  1106. __raw_writel(sh7724_rstandby_state.cs5abcr, 0xfec10014); /* CS5ABCR */
  1107. __raw_writel(sh7724_rstandby_state.cs5bbcr, 0xfec10018); /* CS5BBCR */
  1108. __raw_writel(sh7724_rstandby_state.cs6abcr, 0xfec1001c); /* CS6ABCR */
  1109. __raw_writel(sh7724_rstandby_state.cs6bbcr, 0xfec10020); /* CS6BBCR */
  1110. __raw_writel(sh7724_rstandby_state.cs4wcr, 0xfec10030); /* CS4WCR */
  1111. __raw_writel(sh7724_rstandby_state.cs5awcr, 0xfec10034); /* CS5AWCR */
  1112. __raw_writel(sh7724_rstandby_state.cs5bwcr, 0xfec10038); /* CS5BWCR */
  1113. __raw_writel(sh7724_rstandby_state.cs6awcr, 0xfec1003c); /* CS6AWCR */
  1114. __raw_writel(sh7724_rstandby_state.cs6bwcr, 0xfec10040); /* CS6BWCR */
  1115. /* INTC */
  1116. __raw_writew(sh7724_rstandby_state.ipra, 0xa4080000); /* IPRA */
  1117. __raw_writew(sh7724_rstandby_state.iprb, 0xa4080004); /* IPRB */
  1118. __raw_writew(sh7724_rstandby_state.iprc, 0xa4080008); /* IPRC */
  1119. __raw_writew(sh7724_rstandby_state.iprd, 0xa408000c); /* IPRD */
  1120. __raw_writew(sh7724_rstandby_state.ipre, 0xa4080010); /* IPRE */
  1121. __raw_writew(sh7724_rstandby_state.iprf, 0xa4080014); /* IPRF */
  1122. __raw_writew(sh7724_rstandby_state.iprg, 0xa4080018); /* IPRG */
  1123. __raw_writew(sh7724_rstandby_state.iprh, 0xa408001c); /* IPRH */
  1124. __raw_writew(sh7724_rstandby_state.ipri, 0xa4080020); /* IPRI */
  1125. __raw_writew(sh7724_rstandby_state.iprj, 0xa4080024); /* IPRJ */
  1126. __raw_writew(sh7724_rstandby_state.iprk, 0xa4080028); /* IPRK */
  1127. __raw_writew(sh7724_rstandby_state.iprl, 0xa408002c); /* IPRL */
  1128. __raw_writeb(sh7724_rstandby_state.imr0, 0xa4080080); /* IMR0 */
  1129. __raw_writeb(sh7724_rstandby_state.imr1, 0xa4080084); /* IMR1 */
  1130. __raw_writeb(sh7724_rstandby_state.imr2, 0xa4080088); /* IMR2 */
  1131. __raw_writeb(sh7724_rstandby_state.imr3, 0xa408008c); /* IMR3 */
  1132. __raw_writeb(sh7724_rstandby_state.imr4, 0xa4080090); /* IMR4 */
  1133. __raw_writeb(sh7724_rstandby_state.imr5, 0xa4080094); /* IMR5 */
  1134. __raw_writeb(sh7724_rstandby_state.imr6, 0xa4080098); /* IMR6 */
  1135. __raw_writeb(sh7724_rstandby_state.imr7, 0xa408009c); /* IMR7 */
  1136. __raw_writeb(sh7724_rstandby_state.imr8, 0xa40800a0); /* IMR8 */
  1137. __raw_writeb(sh7724_rstandby_state.imr9, 0xa40800a4); /* IMR9 */
  1138. __raw_writeb(sh7724_rstandby_state.imr10, 0xa40800a8); /* IMR10 */
  1139. __raw_writeb(sh7724_rstandby_state.imr11, 0xa40800ac); /* IMR11 */
  1140. __raw_writeb(sh7724_rstandby_state.imr12, 0xa40800b0); /* IMR12 */
  1141. /* RWDT */
  1142. __raw_writew(sh7724_rstandby_state.rwtcnt, 0xa4520000); /* RWTCNT */
  1143. __raw_writew(sh7724_rstandby_state.rwtcsr, 0xa4520004); /* RWTCSR */
  1144. /* CPG */
  1145. __raw_writel(sh7724_rstandby_state.irdaclk, 0xa4150018); /* IRDACLKCR */
  1146. __raw_writel(sh7724_rstandby_state.spuclk, 0xa415003c); /* SPUCLKCR */
  1147. return NOTIFY_DONE;
  1148. }
  1149. static struct notifier_block sh7724_pre_sleep_notifier = {
  1150. .notifier_call = sh7724_pre_sleep_notifier_call,
  1151. .priority = SH_MOBILE_PRE(SH_MOBILE_SLEEP_CPU),
  1152. };
  1153. static struct notifier_block sh7724_post_sleep_notifier = {
  1154. .notifier_call = sh7724_post_sleep_notifier_call,
  1155. .priority = SH_MOBILE_POST(SH_MOBILE_SLEEP_CPU),
  1156. };
  1157. static int __init sh7724_sleep_setup(void)
  1158. {
  1159. atomic_notifier_chain_register(&sh_mobile_pre_sleep_notifier_list,
  1160. &sh7724_pre_sleep_notifier);
  1161. atomic_notifier_chain_register(&sh_mobile_post_sleep_notifier_list,
  1162. &sh7724_post_sleep_notifier);
  1163. return 0;
  1164. }
  1165. arch_initcall(sh7724_sleep_setup);