common.c 19 KB

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  1. /*
  2. * arch/arm/mach-kirkwood/common.c
  3. *
  4. * Core functions for Marvell Kirkwood SoCs
  5. *
  6. * This file is licensed under the terms of the GNU General Public
  7. * License version 2. This program is licensed "as is" without any
  8. * warranty of any kind, whether express or implied.
  9. */
  10. #include <linux/kernel.h>
  11. #include <linux/init.h>
  12. #include <linux/platform_device.h>
  13. #include <linux/serial_8250.h>
  14. #include <linux/ata_platform.h>
  15. #include <linux/mtd/nand.h>
  16. #include <linux/dma-mapping.h>
  17. #include <linux/clk-provider.h>
  18. #include <linux/spinlock.h>
  19. #include <linux/mv643xx_i2c.h>
  20. #include <net/dsa.h>
  21. #include <asm/page.h>
  22. #include <asm/timex.h>
  23. #include <asm/kexec.h>
  24. #include <asm/mach/map.h>
  25. #include <asm/mach/time.h>
  26. #include <mach/kirkwood.h>
  27. #include <mach/bridge-regs.h>
  28. #include <linux/platform_data/asoc-kirkwood.h>
  29. #include <plat/cache-feroceon-l2.h>
  30. #include <linux/platform_data/mmc-mvsdio.h>
  31. #include <linux/platform_data/mtd-orion_nand.h>
  32. #include <linux/platform_data/usb-ehci-orion.h>
  33. #include <plat/common.h>
  34. #include <plat/time.h>
  35. #include <plat/addr-map.h>
  36. #include <linux/platform_data/dma-mv_xor.h>
  37. #include "common.h"
  38. /*****************************************************************************
  39. * I/O Address Mapping
  40. ****************************************************************************/
  41. static struct map_desc kirkwood_io_desc[] __initdata = {
  42. {
  43. .virtual = (unsigned long) KIRKWOOD_REGS_VIRT_BASE,
  44. .pfn = __phys_to_pfn(KIRKWOOD_REGS_PHYS_BASE),
  45. .length = KIRKWOOD_REGS_SIZE,
  46. .type = MT_DEVICE,
  47. },
  48. };
  49. void __init kirkwood_map_io(void)
  50. {
  51. iotable_init(kirkwood_io_desc, ARRAY_SIZE(kirkwood_io_desc));
  52. }
  53. /*****************************************************************************
  54. * CLK tree
  55. ****************************************************************************/
  56. static void enable_sata0(void)
  57. {
  58. /* Enable PLL and IVREF */
  59. writel(readl(SATA0_PHY_MODE_2) | 0xf, SATA0_PHY_MODE_2);
  60. /* Enable PHY */
  61. writel(readl(SATA0_IF_CTRL) & ~0x200, SATA0_IF_CTRL);
  62. }
  63. static void disable_sata0(void)
  64. {
  65. /* Disable PLL and IVREF */
  66. writel(readl(SATA0_PHY_MODE_2) & ~0xf, SATA0_PHY_MODE_2);
  67. /* Disable PHY */
  68. writel(readl(SATA0_IF_CTRL) | 0x200, SATA0_IF_CTRL);
  69. }
  70. static void enable_sata1(void)
  71. {
  72. /* Enable PLL and IVREF */
  73. writel(readl(SATA1_PHY_MODE_2) | 0xf, SATA1_PHY_MODE_2);
  74. /* Enable PHY */
  75. writel(readl(SATA1_IF_CTRL) & ~0x200, SATA1_IF_CTRL);
  76. }
  77. static void disable_sata1(void)
  78. {
  79. /* Disable PLL and IVREF */
  80. writel(readl(SATA1_PHY_MODE_2) & ~0xf, SATA1_PHY_MODE_2);
  81. /* Disable PHY */
  82. writel(readl(SATA1_IF_CTRL) | 0x200, SATA1_IF_CTRL);
  83. }
  84. static void disable_pcie0(void)
  85. {
  86. writel(readl(PCIE_LINK_CTRL) | 0x10, PCIE_LINK_CTRL);
  87. while (1)
  88. if (readl(PCIE_STATUS) & 0x1)
  89. break;
  90. writel(readl(PCIE_LINK_CTRL) & ~0x10, PCIE_LINK_CTRL);
  91. }
  92. static void disable_pcie1(void)
  93. {
  94. u32 dev, rev;
  95. kirkwood_pcie_id(&dev, &rev);
  96. if (dev == MV88F6282_DEV_ID) {
  97. writel(readl(PCIE1_LINK_CTRL) | 0x10, PCIE1_LINK_CTRL);
  98. while (1)
  99. if (readl(PCIE1_STATUS) & 0x1)
  100. break;
  101. writel(readl(PCIE1_LINK_CTRL) & ~0x10, PCIE1_LINK_CTRL);
  102. }
  103. }
  104. /* An extended version of the gated clk. This calls fn_en()/fn_dis
  105. * before enabling/disabling the clock. We use this to turn on/off
  106. * PHYs etc. */
  107. struct clk_gate_fn {
  108. struct clk_gate gate;
  109. void (*fn_en)(void);
  110. void (*fn_dis)(void);
  111. };
  112. #define to_clk_gate_fn(_gate) container_of(_gate, struct clk_gate_fn, gate)
  113. #define to_clk_gate(_hw) container_of(_hw, struct clk_gate, hw)
  114. static int clk_gate_fn_enable(struct clk_hw *hw)
  115. {
  116. struct clk_gate *gate = to_clk_gate(hw);
  117. struct clk_gate_fn *gate_fn = to_clk_gate_fn(gate);
  118. int ret;
  119. ret = clk_gate_ops.enable(hw);
  120. if (!ret && gate_fn->fn_en)
  121. gate_fn->fn_en();
  122. return ret;
  123. }
  124. static void clk_gate_fn_disable(struct clk_hw *hw)
  125. {
  126. struct clk_gate *gate = to_clk_gate(hw);
  127. struct clk_gate_fn *gate_fn = to_clk_gate_fn(gate);
  128. if (gate_fn->fn_dis)
  129. gate_fn->fn_dis();
  130. clk_gate_ops.disable(hw);
  131. }
  132. static struct clk_ops clk_gate_fn_ops;
  133. static struct clk __init *clk_register_gate_fn(struct device *dev,
  134. const char *name,
  135. const char *parent_name, unsigned long flags,
  136. void __iomem *reg, u8 bit_idx,
  137. u8 clk_gate_flags, spinlock_t *lock,
  138. void (*fn_en)(void), void (*fn_dis)(void))
  139. {
  140. struct clk_gate_fn *gate_fn;
  141. struct clk *clk;
  142. struct clk_init_data init;
  143. gate_fn = kzalloc(sizeof(struct clk_gate_fn), GFP_KERNEL);
  144. if (!gate_fn) {
  145. pr_err("%s: could not allocate gated clk\n", __func__);
  146. return ERR_PTR(-ENOMEM);
  147. }
  148. init.name = name;
  149. init.ops = &clk_gate_fn_ops;
  150. init.flags = flags;
  151. init.parent_names = (parent_name ? &parent_name : NULL);
  152. init.num_parents = (parent_name ? 1 : 0);
  153. /* struct clk_gate assignments */
  154. gate_fn->gate.reg = reg;
  155. gate_fn->gate.bit_idx = bit_idx;
  156. gate_fn->gate.flags = clk_gate_flags;
  157. gate_fn->gate.lock = lock;
  158. gate_fn->gate.hw.init = &init;
  159. gate_fn->fn_en = fn_en;
  160. gate_fn->fn_dis = fn_dis;
  161. /* ops is the gate ops, but with our enable/disable functions */
  162. if (clk_gate_fn_ops.enable != clk_gate_fn_enable ||
  163. clk_gate_fn_ops.disable != clk_gate_fn_disable) {
  164. clk_gate_fn_ops = clk_gate_ops;
  165. clk_gate_fn_ops.enable = clk_gate_fn_enable;
  166. clk_gate_fn_ops.disable = clk_gate_fn_disable;
  167. }
  168. clk = clk_register(dev, &gate_fn->gate.hw);
  169. if (IS_ERR(clk))
  170. kfree(gate_fn);
  171. return clk;
  172. }
  173. static DEFINE_SPINLOCK(gating_lock);
  174. static struct clk *tclk;
  175. static struct clk __init *kirkwood_register_gate(const char *name, u8 bit_idx)
  176. {
  177. return clk_register_gate(NULL, name, "tclk", 0, CLOCK_GATING_CTRL,
  178. bit_idx, 0, &gating_lock);
  179. }
  180. static struct clk __init *kirkwood_register_gate_fn(const char *name,
  181. u8 bit_idx,
  182. void (*fn_en)(void),
  183. void (*fn_dis)(void))
  184. {
  185. return clk_register_gate_fn(NULL, name, "tclk", 0, CLOCK_GATING_CTRL,
  186. bit_idx, 0, &gating_lock, fn_en, fn_dis);
  187. }
  188. static struct clk *ge0, *ge1;
  189. void __init kirkwood_clk_init(void)
  190. {
  191. struct clk *runit, *sata0, *sata1, *usb0, *sdio;
  192. struct clk *crypto, *xor0, *xor1, *pex0, *pex1, *audio;
  193. tclk = clk_register_fixed_rate(NULL, "tclk", NULL,
  194. CLK_IS_ROOT, kirkwood_tclk);
  195. runit = kirkwood_register_gate("runit", CGC_BIT_RUNIT);
  196. ge0 = kirkwood_register_gate("ge0", CGC_BIT_GE0);
  197. ge1 = kirkwood_register_gate("ge1", CGC_BIT_GE1);
  198. sata0 = kirkwood_register_gate_fn("sata0", CGC_BIT_SATA0,
  199. enable_sata0, disable_sata0);
  200. sata1 = kirkwood_register_gate_fn("sata1", CGC_BIT_SATA1,
  201. enable_sata1, disable_sata1);
  202. usb0 = kirkwood_register_gate("usb0", CGC_BIT_USB0);
  203. sdio = kirkwood_register_gate("sdio", CGC_BIT_SDIO);
  204. crypto = kirkwood_register_gate("crypto", CGC_BIT_CRYPTO);
  205. xor0 = kirkwood_register_gate("xor0", CGC_BIT_XOR0);
  206. xor1 = kirkwood_register_gate("xor1", CGC_BIT_XOR1);
  207. pex0 = kirkwood_register_gate_fn("pex0", CGC_BIT_PEX0,
  208. NULL, disable_pcie0);
  209. pex1 = kirkwood_register_gate_fn("pex1", CGC_BIT_PEX1,
  210. NULL, disable_pcie1);
  211. audio = kirkwood_register_gate("audio", CGC_BIT_AUDIO);
  212. kirkwood_register_gate("tdm", CGC_BIT_TDM);
  213. kirkwood_register_gate("tsu", CGC_BIT_TSU);
  214. /* clkdev entries, mapping clks to devices */
  215. orion_clkdev_add(NULL, "orion_spi.0", runit);
  216. orion_clkdev_add(NULL, "orion_spi.1", runit);
  217. orion_clkdev_add(NULL, MV643XX_ETH_NAME ".0", ge0);
  218. orion_clkdev_add(NULL, MV643XX_ETH_NAME ".1", ge1);
  219. orion_clkdev_add(NULL, "orion_wdt", tclk);
  220. orion_clkdev_add("0", "sata_mv.0", sata0);
  221. orion_clkdev_add("1", "sata_mv.0", sata1);
  222. orion_clkdev_add(NULL, "orion-ehci.0", usb0);
  223. orion_clkdev_add(NULL, "orion_nand", runit);
  224. orion_clkdev_add(NULL, "mvsdio", sdio);
  225. orion_clkdev_add(NULL, "mv_crypto", crypto);
  226. orion_clkdev_add(NULL, MV_XOR_SHARED_NAME ".0", xor0);
  227. orion_clkdev_add(NULL, MV_XOR_SHARED_NAME ".1", xor1);
  228. orion_clkdev_add("0", "pcie", pex0);
  229. orion_clkdev_add("1", "pcie", pex1);
  230. orion_clkdev_add(NULL, "kirkwood-i2s", audio);
  231. orion_clkdev_add(NULL, MV64XXX_I2C_CTLR_NAME ".0", runit);
  232. /* Marvell says runit is used by SPI, UART, NAND, TWSI, ...,
  233. * so should never be gated.
  234. */
  235. clk_prepare_enable(runit);
  236. }
  237. /*****************************************************************************
  238. * EHCI0
  239. ****************************************************************************/
  240. void __init kirkwood_ehci_init(void)
  241. {
  242. orion_ehci_init(USB_PHYS_BASE, IRQ_KIRKWOOD_USB, EHCI_PHY_NA);
  243. }
  244. /*****************************************************************************
  245. * GE00
  246. ****************************************************************************/
  247. void __init kirkwood_ge00_init(struct mv643xx_eth_platform_data *eth_data)
  248. {
  249. orion_ge00_init(eth_data,
  250. GE00_PHYS_BASE, IRQ_KIRKWOOD_GE00_SUM,
  251. IRQ_KIRKWOOD_GE00_ERR, 1600);
  252. /* The interface forgets the MAC address assigned by u-boot if
  253. the clock is turned off, so claim the clk now. */
  254. clk_prepare_enable(ge0);
  255. }
  256. /*****************************************************************************
  257. * GE01
  258. ****************************************************************************/
  259. void __init kirkwood_ge01_init(struct mv643xx_eth_platform_data *eth_data)
  260. {
  261. orion_ge01_init(eth_data,
  262. GE01_PHYS_BASE, IRQ_KIRKWOOD_GE01_SUM,
  263. IRQ_KIRKWOOD_GE01_ERR, 1600);
  264. clk_prepare_enable(ge1);
  265. }
  266. /*****************************************************************************
  267. * Ethernet switch
  268. ****************************************************************************/
  269. void __init kirkwood_ge00_switch_init(struct dsa_platform_data *d, int irq)
  270. {
  271. orion_ge00_switch_init(d, irq);
  272. }
  273. /*****************************************************************************
  274. * NAND flash
  275. ****************************************************************************/
  276. static struct resource kirkwood_nand_resource = {
  277. .flags = IORESOURCE_MEM,
  278. .start = KIRKWOOD_NAND_MEM_PHYS_BASE,
  279. .end = KIRKWOOD_NAND_MEM_PHYS_BASE +
  280. KIRKWOOD_NAND_MEM_SIZE - 1,
  281. };
  282. static struct orion_nand_data kirkwood_nand_data = {
  283. .cle = 0,
  284. .ale = 1,
  285. .width = 8,
  286. };
  287. static struct platform_device kirkwood_nand_flash = {
  288. .name = "orion_nand",
  289. .id = -1,
  290. .dev = {
  291. .platform_data = &kirkwood_nand_data,
  292. },
  293. .resource = &kirkwood_nand_resource,
  294. .num_resources = 1,
  295. };
  296. void __init kirkwood_nand_init(struct mtd_partition *parts, int nr_parts,
  297. int chip_delay)
  298. {
  299. kirkwood_nand_data.parts = parts;
  300. kirkwood_nand_data.nr_parts = nr_parts;
  301. kirkwood_nand_data.chip_delay = chip_delay;
  302. platform_device_register(&kirkwood_nand_flash);
  303. }
  304. void __init kirkwood_nand_init_rnb(struct mtd_partition *parts, int nr_parts,
  305. int (*dev_ready)(struct mtd_info *))
  306. {
  307. kirkwood_nand_data.parts = parts;
  308. kirkwood_nand_data.nr_parts = nr_parts;
  309. kirkwood_nand_data.dev_ready = dev_ready;
  310. platform_device_register(&kirkwood_nand_flash);
  311. }
  312. /*****************************************************************************
  313. * SoC RTC
  314. ****************************************************************************/
  315. static void __init kirkwood_rtc_init(void)
  316. {
  317. orion_rtc_init(RTC_PHYS_BASE, IRQ_KIRKWOOD_RTC);
  318. }
  319. /*****************************************************************************
  320. * SATA
  321. ****************************************************************************/
  322. void __init kirkwood_sata_init(struct mv_sata_platform_data *sata_data)
  323. {
  324. orion_sata_init(sata_data, SATA_PHYS_BASE, IRQ_KIRKWOOD_SATA);
  325. }
  326. /*****************************************************************************
  327. * SD/SDIO/MMC
  328. ****************************************************************************/
  329. static struct resource mvsdio_resources[] = {
  330. [0] = {
  331. .start = SDIO_PHYS_BASE,
  332. .end = SDIO_PHYS_BASE + SZ_1K - 1,
  333. .flags = IORESOURCE_MEM,
  334. },
  335. [1] = {
  336. .start = IRQ_KIRKWOOD_SDIO,
  337. .end = IRQ_KIRKWOOD_SDIO,
  338. .flags = IORESOURCE_IRQ,
  339. },
  340. };
  341. static u64 mvsdio_dmamask = DMA_BIT_MASK(32);
  342. static struct platform_device kirkwood_sdio = {
  343. .name = "mvsdio",
  344. .id = -1,
  345. .dev = {
  346. .dma_mask = &mvsdio_dmamask,
  347. .coherent_dma_mask = DMA_BIT_MASK(32),
  348. },
  349. .num_resources = ARRAY_SIZE(mvsdio_resources),
  350. .resource = mvsdio_resources,
  351. };
  352. void __init kirkwood_sdio_init(struct mvsdio_platform_data *mvsdio_data)
  353. {
  354. u32 dev, rev;
  355. kirkwood_pcie_id(&dev, &rev);
  356. if (rev == 0 && dev != MV88F6282_DEV_ID) /* catch all Kirkwood Z0's */
  357. mvsdio_data->clock = 100000000;
  358. else
  359. mvsdio_data->clock = 200000000;
  360. kirkwood_sdio.dev.platform_data = mvsdio_data;
  361. platform_device_register(&kirkwood_sdio);
  362. }
  363. /*****************************************************************************
  364. * SPI
  365. ****************************************************************************/
  366. void __init kirkwood_spi_init()
  367. {
  368. orion_spi_init(SPI_PHYS_BASE);
  369. }
  370. /*****************************************************************************
  371. * I2C
  372. ****************************************************************************/
  373. void __init kirkwood_i2c_init(void)
  374. {
  375. orion_i2c_init(I2C_PHYS_BASE, IRQ_KIRKWOOD_TWSI, 8);
  376. }
  377. /*****************************************************************************
  378. * UART0
  379. ****************************************************************************/
  380. void __init kirkwood_uart0_init(void)
  381. {
  382. orion_uart0_init(UART0_VIRT_BASE, UART0_PHYS_BASE,
  383. IRQ_KIRKWOOD_UART_0, tclk);
  384. }
  385. /*****************************************************************************
  386. * UART1
  387. ****************************************************************************/
  388. void __init kirkwood_uart1_init(void)
  389. {
  390. orion_uart1_init(UART1_VIRT_BASE, UART1_PHYS_BASE,
  391. IRQ_KIRKWOOD_UART_1, tclk);
  392. }
  393. /*****************************************************************************
  394. * Cryptographic Engines and Security Accelerator (CESA)
  395. ****************************************************************************/
  396. void __init kirkwood_crypto_init(void)
  397. {
  398. orion_crypto_init(CRYPTO_PHYS_BASE, KIRKWOOD_SRAM_PHYS_BASE,
  399. KIRKWOOD_SRAM_SIZE, IRQ_KIRKWOOD_CRYPTO);
  400. }
  401. /*****************************************************************************
  402. * XOR0
  403. ****************************************************************************/
  404. void __init kirkwood_xor0_init(void)
  405. {
  406. orion_xor0_init(XOR0_PHYS_BASE, XOR0_HIGH_PHYS_BASE,
  407. IRQ_KIRKWOOD_XOR_00, IRQ_KIRKWOOD_XOR_01);
  408. }
  409. /*****************************************************************************
  410. * XOR1
  411. ****************************************************************************/
  412. void __init kirkwood_xor1_init(void)
  413. {
  414. orion_xor1_init(XOR1_PHYS_BASE, XOR1_HIGH_PHYS_BASE,
  415. IRQ_KIRKWOOD_XOR_10, IRQ_KIRKWOOD_XOR_11);
  416. }
  417. /*****************************************************************************
  418. * Watchdog
  419. ****************************************************************************/
  420. void __init kirkwood_wdt_init(void)
  421. {
  422. orion_wdt_init();
  423. }
  424. /*****************************************************************************
  425. * Time handling
  426. ****************************************************************************/
  427. void __init kirkwood_init_early(void)
  428. {
  429. orion_time_set_base(TIMER_VIRT_BASE);
  430. /*
  431. * Some Kirkwood devices allocate their coherent buffers from atomic
  432. * context. Increase size of atomic coherent pool to make sure such
  433. * the allocations won't fail.
  434. */
  435. init_dma_coherent_pool_size(SZ_1M);
  436. }
  437. int kirkwood_tclk;
  438. static int __init kirkwood_find_tclk(void)
  439. {
  440. u32 dev, rev;
  441. kirkwood_pcie_id(&dev, &rev);
  442. if (dev == MV88F6281_DEV_ID || dev == MV88F6282_DEV_ID)
  443. if (((readl(SAMPLE_AT_RESET) >> 21) & 1) == 0)
  444. return 200000000;
  445. return 166666667;
  446. }
  447. static void __init kirkwood_timer_init(void)
  448. {
  449. kirkwood_tclk = kirkwood_find_tclk();
  450. orion_time_init(BRIDGE_VIRT_BASE, BRIDGE_INT_TIMER1_CLR,
  451. IRQ_KIRKWOOD_BRIDGE, kirkwood_tclk);
  452. }
  453. struct sys_timer kirkwood_timer = {
  454. .init = kirkwood_timer_init,
  455. };
  456. /*****************************************************************************
  457. * Audio
  458. ****************************************************************************/
  459. static struct resource kirkwood_i2s_resources[] = {
  460. [0] = {
  461. .start = AUDIO_PHYS_BASE,
  462. .end = AUDIO_PHYS_BASE + SZ_16K - 1,
  463. .flags = IORESOURCE_MEM,
  464. },
  465. [1] = {
  466. .start = IRQ_KIRKWOOD_I2S,
  467. .end = IRQ_KIRKWOOD_I2S,
  468. .flags = IORESOURCE_IRQ,
  469. },
  470. };
  471. static struct kirkwood_asoc_platform_data kirkwood_i2s_data = {
  472. .burst = 128,
  473. };
  474. static struct platform_device kirkwood_i2s_device = {
  475. .name = "kirkwood-i2s",
  476. .id = -1,
  477. .num_resources = ARRAY_SIZE(kirkwood_i2s_resources),
  478. .resource = kirkwood_i2s_resources,
  479. .dev = {
  480. .platform_data = &kirkwood_i2s_data,
  481. },
  482. };
  483. static struct platform_device kirkwood_pcm_device = {
  484. .name = "kirkwood-pcm-audio",
  485. .id = -1,
  486. };
  487. void __init kirkwood_audio_init(void)
  488. {
  489. platform_device_register(&kirkwood_i2s_device);
  490. platform_device_register(&kirkwood_pcm_device);
  491. }
  492. /*****************************************************************************
  493. * General
  494. ****************************************************************************/
  495. /*
  496. * Identify device ID and revision.
  497. */
  498. char * __init kirkwood_id(void)
  499. {
  500. u32 dev, rev;
  501. kirkwood_pcie_id(&dev, &rev);
  502. if (dev == MV88F6281_DEV_ID) {
  503. if (rev == MV88F6281_REV_Z0)
  504. return "MV88F6281-Z0";
  505. else if (rev == MV88F6281_REV_A0)
  506. return "MV88F6281-A0";
  507. else if (rev == MV88F6281_REV_A1)
  508. return "MV88F6281-A1";
  509. else
  510. return "MV88F6281-Rev-Unsupported";
  511. } else if (dev == MV88F6192_DEV_ID) {
  512. if (rev == MV88F6192_REV_Z0)
  513. return "MV88F6192-Z0";
  514. else if (rev == MV88F6192_REV_A0)
  515. return "MV88F6192-A0";
  516. else if (rev == MV88F6192_REV_A1)
  517. return "MV88F6192-A1";
  518. else
  519. return "MV88F6192-Rev-Unsupported";
  520. } else if (dev == MV88F6180_DEV_ID) {
  521. if (rev == MV88F6180_REV_A0)
  522. return "MV88F6180-Rev-A0";
  523. else if (rev == MV88F6180_REV_A1)
  524. return "MV88F6180-Rev-A1";
  525. else
  526. return "MV88F6180-Rev-Unsupported";
  527. } else if (dev == MV88F6282_DEV_ID) {
  528. if (rev == MV88F6282_REV_A0)
  529. return "MV88F6282-Rev-A0";
  530. else if (rev == MV88F6282_REV_A1)
  531. return "MV88F6282-Rev-A1";
  532. else
  533. return "MV88F6282-Rev-Unsupported";
  534. } else {
  535. return "Device-Unknown";
  536. }
  537. }
  538. void __init kirkwood_l2_init(void)
  539. {
  540. #ifdef CONFIG_CACHE_FEROCEON_L2
  541. #ifdef CONFIG_CACHE_FEROCEON_L2_WRITETHROUGH
  542. writel(readl(L2_CONFIG_REG) | L2_WRITETHROUGH, L2_CONFIG_REG);
  543. feroceon_l2_init(1);
  544. #else
  545. writel(readl(L2_CONFIG_REG) & ~L2_WRITETHROUGH, L2_CONFIG_REG);
  546. feroceon_l2_init(0);
  547. #endif
  548. #endif
  549. }
  550. void __init kirkwood_init(void)
  551. {
  552. printk(KERN_INFO "Kirkwood: %s, TCLK=%d.\n",
  553. kirkwood_id(), kirkwood_tclk);
  554. /*
  555. * Disable propagation of mbus errors to the CPU local bus,
  556. * as this causes mbus errors (which can occur for example
  557. * for PCI aborts) to throw CPU aborts, which we're not set
  558. * up to deal with.
  559. */
  560. writel(readl(CPU_CONFIG) & ~CPU_CONFIG_ERROR_PROP, CPU_CONFIG);
  561. kirkwood_setup_cpu_mbus();
  562. kirkwood_l2_init();
  563. /* Setup root of clk tree */
  564. kirkwood_clk_init();
  565. /* internal devices that every board has */
  566. kirkwood_rtc_init();
  567. kirkwood_wdt_init();
  568. kirkwood_xor0_init();
  569. kirkwood_xor1_init();
  570. kirkwood_crypto_init();
  571. #ifdef CONFIG_KEXEC
  572. kexec_reinit = kirkwood_enable_pcie;
  573. #endif
  574. }
  575. void kirkwood_restart(char mode, const char *cmd)
  576. {
  577. /*
  578. * Enable soft reset to assert RSTOUTn.
  579. */
  580. writel(SOFT_RESET_OUT_EN, RSTOUTn_MASK);
  581. /*
  582. * Assert soft reset.
  583. */
  584. writel(SOFT_RESET, SYSTEM_SOFT_RESET);
  585. while (1)
  586. ;
  587. }