io_init.c 15 KB

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  1. /*
  2. * This file is subject to the terms and conditions of the GNU General Public
  3. * License. See the file "COPYING" in the main directory of this archive
  4. * for more details.
  5. *
  6. * Copyright (C) 1992 - 1997, 2000-2004 Silicon Graphics, Inc. All rights reserved.
  7. */
  8. #include <linux/bootmem.h>
  9. #include <linux/nodemask.h>
  10. #include <asm/sn/types.h>
  11. #include <asm/sn/addrs.h>
  12. #include <asm/sn/geo.h>
  13. #include <asm/sn/io.h>
  14. #include <asm/sn/pcibr_provider.h>
  15. #include <asm/sn/pcibus_provider_defs.h>
  16. #include <asm/sn/pcidev.h>
  17. #include <asm/sn/simulator.h>
  18. #include <asm/sn/sn_sal.h>
  19. #include <asm/sn/tioca_provider.h>
  20. #include <asm/sn/tioce_provider.h>
  21. #include "xtalk/hubdev.h"
  22. #include "xtalk/xwidgetdev.h"
  23. static struct list_head sn_sysdata_list;
  24. /* sysdata list struct */
  25. struct sysdata_el {
  26. struct list_head entry;
  27. void *sysdata;
  28. };
  29. struct slab_info {
  30. struct hubdev_info hubdev;
  31. };
  32. struct brick {
  33. moduleid_t id; /* Module ID of this module */
  34. struct slab_info slab_info[MAX_SLABS + 1];
  35. };
  36. int sn_ioif_inited = 0; /* SN I/O infrastructure initialized? */
  37. struct sn_pcibus_provider *sn_pci_provider[PCIIO_ASIC_MAX_TYPES]; /* indexed by asic type */
  38. static int max_segment_number = 0; /* Default highest segment number */
  39. static int max_pcibus_number = 255; /* Default highest pci bus number */
  40. /*
  41. * Hooks and struct for unsupported pci providers
  42. */
  43. static dma_addr_t
  44. sn_default_pci_map(struct pci_dev *pdev, unsigned long paddr, size_t size)
  45. {
  46. return 0;
  47. }
  48. static void
  49. sn_default_pci_unmap(struct pci_dev *pdev, dma_addr_t addr, int direction)
  50. {
  51. return;
  52. }
  53. static void *
  54. sn_default_pci_bus_fixup(struct pcibus_bussoft *soft, struct pci_controller *controller)
  55. {
  56. return NULL;
  57. }
  58. static struct sn_pcibus_provider sn_pci_default_provider = {
  59. .dma_map = sn_default_pci_map,
  60. .dma_map_consistent = sn_default_pci_map,
  61. .dma_unmap = sn_default_pci_unmap,
  62. .bus_fixup = sn_default_pci_bus_fixup,
  63. };
  64. /*
  65. * Retrieve the DMA Flush List given nasid. This list is needed
  66. * to implement the WAR - Flush DMA data on PIO Reads.
  67. */
  68. static inline uint64_t
  69. sal_get_widget_dmaflush_list(u64 nasid, u64 widget_num, u64 address)
  70. {
  71. struct ia64_sal_retval ret_stuff;
  72. ret_stuff.status = 0;
  73. ret_stuff.v0 = 0;
  74. SAL_CALL_NOLOCK(ret_stuff,
  75. (u64) SN_SAL_IOIF_GET_WIDGET_DMAFLUSH_LIST,
  76. (u64) nasid, (u64) widget_num, (u64) address, 0, 0, 0,
  77. 0);
  78. return ret_stuff.v0;
  79. }
  80. /*
  81. * Retrieve the hub device info structure for the given nasid.
  82. */
  83. static inline uint64_t sal_get_hubdev_info(u64 handle, u64 address)
  84. {
  85. struct ia64_sal_retval ret_stuff;
  86. ret_stuff.status = 0;
  87. ret_stuff.v0 = 0;
  88. SAL_CALL_NOLOCK(ret_stuff,
  89. (u64) SN_SAL_IOIF_GET_HUBDEV_INFO,
  90. (u64) handle, (u64) address, 0, 0, 0, 0, 0);
  91. return ret_stuff.v0;
  92. }
  93. /*
  94. * Retrieve the pci bus information given the bus number.
  95. */
  96. static inline uint64_t sal_get_pcibus_info(u64 segment, u64 busnum, u64 address)
  97. {
  98. struct ia64_sal_retval ret_stuff;
  99. ret_stuff.status = 0;
  100. ret_stuff.v0 = 0;
  101. SAL_CALL_NOLOCK(ret_stuff,
  102. (u64) SN_SAL_IOIF_GET_PCIBUS_INFO,
  103. (u64) segment, (u64) busnum, (u64) address, 0, 0, 0, 0);
  104. return ret_stuff.v0;
  105. }
  106. /*
  107. * Retrieve the pci device information given the bus and device|function number.
  108. */
  109. static inline uint64_t
  110. sal_get_pcidev_info(u64 segment, u64 bus_number, u64 devfn, u64 pci_dev,
  111. u64 sn_irq_info)
  112. {
  113. struct ia64_sal_retval ret_stuff;
  114. ret_stuff.status = 0;
  115. ret_stuff.v0 = 0;
  116. SAL_CALL_NOLOCK(ret_stuff,
  117. (u64) SN_SAL_IOIF_GET_PCIDEV_INFO,
  118. (u64) segment, (u64) bus_number, (u64) devfn,
  119. (u64) pci_dev,
  120. sn_irq_info, 0, 0);
  121. return ret_stuff.v0;
  122. }
  123. /*
  124. * sn_fixup_ionodes() - This routine initializes the HUB data strcuture for
  125. * each node in the system.
  126. */
  127. static void sn_fixup_ionodes(void)
  128. {
  129. struct sn_flush_device_list *sn_flush_device_list;
  130. struct hubdev_info *hubdev;
  131. uint64_t status;
  132. uint64_t nasid;
  133. int i, widget;
  134. /*
  135. * Get SGI Specific HUB chipset information.
  136. * Inform Prom that this kernel can support domain bus numbering.
  137. */
  138. for (i = 0; i < num_cnodes; i++) {
  139. hubdev = (struct hubdev_info *)(NODEPDA(i)->pdinfo);
  140. nasid = cnodeid_to_nasid(i);
  141. hubdev->max_segment_number = 0xffffffff;
  142. hubdev->max_pcibus_number = 0xff;
  143. status = sal_get_hubdev_info(nasid, (uint64_t) __pa(hubdev));
  144. if (status)
  145. continue;
  146. /* Save the largest Domain and pcibus numbers found. */
  147. if (hubdev->max_segment_number) {
  148. /*
  149. * Dealing with a Prom that supports segments.
  150. */
  151. max_segment_number = hubdev->max_segment_number;
  152. max_pcibus_number = hubdev->max_pcibus_number;
  153. }
  154. /* Attach the error interrupt handlers */
  155. if (nasid & 1)
  156. ice_error_init(hubdev);
  157. else
  158. hub_error_init(hubdev);
  159. for (widget = 0; widget <= HUB_WIDGET_ID_MAX; widget++)
  160. hubdev->hdi_xwidget_info[widget].xwi_hubinfo = hubdev;
  161. if (!hubdev->hdi_flush_nasid_list.widget_p)
  162. continue;
  163. hubdev->hdi_flush_nasid_list.widget_p =
  164. kmalloc((HUB_WIDGET_ID_MAX + 1) *
  165. sizeof(struct sn_flush_device_list *), GFP_KERNEL);
  166. memset(hubdev->hdi_flush_nasid_list.widget_p, 0x0,
  167. (HUB_WIDGET_ID_MAX + 1) *
  168. sizeof(struct sn_flush_device_list *));
  169. for (widget = 0; widget <= HUB_WIDGET_ID_MAX; widget++) {
  170. sn_flush_device_list = kmalloc(DEV_PER_WIDGET *
  171. sizeof(struct
  172. sn_flush_device_list),
  173. GFP_KERNEL);
  174. memset(sn_flush_device_list, 0x0,
  175. DEV_PER_WIDGET *
  176. sizeof(struct sn_flush_device_list));
  177. status =
  178. sal_get_widget_dmaflush_list(nasid, widget,
  179. (uint64_t)
  180. __pa
  181. (sn_flush_device_list));
  182. if (status) {
  183. kfree(sn_flush_device_list);
  184. continue;
  185. }
  186. spin_lock_init(&sn_flush_device_list->sfdl_flush_lock);
  187. hubdev->hdi_flush_nasid_list.widget_p[widget] =
  188. sn_flush_device_list;
  189. }
  190. }
  191. }
  192. void sn_pci_unfixup_slot(struct pci_dev *dev)
  193. {
  194. struct pci_dev *host_pci_dev = SN_PCIDEV_INFO(dev)->host_pci_dev;
  195. sn_irq_unfixup(dev);
  196. pci_dev_put(host_pci_dev);
  197. pci_dev_put(dev);
  198. }
  199. /*
  200. * sn_pci_fixup_slot() - This routine sets up a slot's resources
  201. * consistent with the Linux PCI abstraction layer. Resources acquired
  202. * from our PCI provider include PIO maps to BAR space and interrupt
  203. * objects.
  204. */
  205. void sn_pci_fixup_slot(struct pci_dev *dev)
  206. {
  207. int idx;
  208. int segment = pci_domain_nr(dev->bus);
  209. int status = 0;
  210. struct pcibus_bussoft *bs;
  211. struct pci_bus *host_pci_bus;
  212. struct pci_dev *host_pci_dev;
  213. struct sn_irq_info *sn_irq_info;
  214. unsigned long size;
  215. unsigned int bus_no, devfn;
  216. pci_dev_get(dev); /* for the sysdata pointer */
  217. dev->sysdata = kmalloc(sizeof(struct pcidev_info), GFP_KERNEL);
  218. if (SN_PCIDEV_INFO(dev) <= 0)
  219. BUG(); /* Cannot afford to run out of memory */
  220. memset(SN_PCIDEV_INFO(dev), 0, sizeof(struct pcidev_info));
  221. sn_irq_info = kmalloc(sizeof(struct sn_irq_info), GFP_KERNEL);
  222. if (sn_irq_info <= 0)
  223. BUG(); /* Cannot afford to run out of memory */
  224. memset(sn_irq_info, 0, sizeof(struct sn_irq_info));
  225. /* Call to retrieve pci device information needed by kernel. */
  226. status = sal_get_pcidev_info((u64) segment, (u64) dev->bus->number,
  227. dev->devfn,
  228. (u64) __pa(SN_PCIDEV_INFO(dev)),
  229. (u64) __pa(sn_irq_info));
  230. if (status)
  231. BUG(); /* Cannot get platform pci device information */
  232. /* Copy over PIO Mapped Addresses */
  233. for (idx = 0; idx <= PCI_ROM_RESOURCE; idx++) {
  234. unsigned long start, end, addr;
  235. if (!SN_PCIDEV_INFO(dev)->pdi_pio_mapped_addr[idx])
  236. continue;
  237. start = dev->resource[idx].start;
  238. end = dev->resource[idx].end;
  239. size = end - start;
  240. addr = SN_PCIDEV_INFO(dev)->pdi_pio_mapped_addr[idx];
  241. addr = ((addr << 4) >> 4) | __IA64_UNCACHED_OFFSET;
  242. dev->resource[idx].start = addr;
  243. dev->resource[idx].end = addr + size;
  244. if (dev->resource[idx].flags & IORESOURCE_IO)
  245. dev->resource[idx].parent = &ioport_resource;
  246. else
  247. dev->resource[idx].parent = &iomem_resource;
  248. }
  249. /*
  250. * Using the PROMs values for the PCI host bus, get the Linux
  251. * PCI host_pci_dev struct and set up host bus linkages
  252. */
  253. bus_no = (SN_PCIDEV_INFO(dev)->pdi_slot_host_handle >> 32) & 0xff;
  254. devfn = SN_PCIDEV_INFO(dev)->pdi_slot_host_handle & 0xffffffff;
  255. host_pci_bus = pci_find_bus(segment, bus_no);
  256. host_pci_dev = pci_get_slot(host_pci_bus, devfn);
  257. SN_PCIDEV_INFO(dev)->host_pci_dev = host_pci_dev;
  258. SN_PCIDEV_INFO(dev)->pdi_host_pcidev_info =
  259. SN_PCIDEV_INFO(host_pci_dev);
  260. SN_PCIDEV_INFO(dev)->pdi_linux_pcidev = dev;
  261. bs = SN_PCIBUS_BUSSOFT(dev->bus);
  262. SN_PCIDEV_INFO(dev)->pdi_pcibus_info = bs;
  263. if (bs && bs->bs_asic_type < PCIIO_ASIC_MAX_TYPES) {
  264. SN_PCIDEV_BUSPROVIDER(dev) = sn_pci_provider[bs->bs_asic_type];
  265. } else {
  266. SN_PCIDEV_BUSPROVIDER(dev) = &sn_pci_default_provider;
  267. }
  268. /* Only set up IRQ stuff if this device has a host bus context */
  269. if (bs && sn_irq_info->irq_irq) {
  270. SN_PCIDEV_INFO(dev)->pdi_sn_irq_info = sn_irq_info;
  271. dev->irq = SN_PCIDEV_INFO(dev)->pdi_sn_irq_info->irq_irq;
  272. sn_irq_fixup(dev, sn_irq_info);
  273. } else {
  274. SN_PCIDEV_INFO(dev)->pdi_sn_irq_info = NULL;
  275. kfree(sn_irq_info);
  276. }
  277. }
  278. /*
  279. * sn_pci_controller_fixup() - This routine sets up a bus's resources
  280. * consistent with the Linux PCI abstraction layer.
  281. */
  282. void sn_pci_controller_fixup(int segment, int busnum, struct pci_bus *bus)
  283. {
  284. int status = 0;
  285. int nasid, cnode;
  286. struct pci_controller *controller;
  287. struct pcibus_bussoft *prom_bussoft_ptr;
  288. struct hubdev_info *hubdev_info;
  289. void *provider_soft = NULL;
  290. struct sn_pcibus_provider *provider;
  291. status = sal_get_pcibus_info((u64) segment, (u64) busnum,
  292. (u64) ia64_tpa(&prom_bussoft_ptr));
  293. if (status > 0)
  294. return; /*bus # does not exist */
  295. prom_bussoft_ptr = __va(prom_bussoft_ptr);
  296. controller = kcalloc(1,sizeof(struct pci_controller), GFP_KERNEL);
  297. controller->segment = segment;
  298. if (!controller)
  299. BUG();
  300. if (bus == NULL) {
  301. bus = pci_scan_bus(busnum, &pci_root_ops, controller);
  302. if (bus == NULL)
  303. goto error_return; /* error, or bus already scanned */
  304. bus->sysdata = NULL;
  305. }
  306. if (bus->sysdata)
  307. goto error_return; /* sysdata already alloc'd */
  308. /*
  309. * Per-provider fixup. Copies the contents from prom to local
  310. * area and links SN_PCIBUS_BUSSOFT().
  311. */
  312. if (prom_bussoft_ptr->bs_asic_type >= PCIIO_ASIC_MAX_TYPES)
  313. goto error_return; /* unsupported asic type */
  314. if (prom_bussoft_ptr->bs_asic_type == PCIIO_ASIC_TYPE_PPB)
  315. goto error_return; /* no further fixup necessary */
  316. provider = sn_pci_provider[prom_bussoft_ptr->bs_asic_type];
  317. if (provider == NULL)
  318. goto error_return; /* no provider registerd for this asic */
  319. bus->sysdata = controller;
  320. if (provider->bus_fixup)
  321. provider_soft = (*provider->bus_fixup) (prom_bussoft_ptr, controller);
  322. if (provider_soft == NULL) {
  323. /* fixup failed or not applicable */
  324. bus->sysdata = NULL;
  325. goto error_return;
  326. }
  327. /*
  328. * Generic bus fixup goes here. Don't reference prom_bussoft_ptr
  329. * after this point.
  330. */
  331. PCI_CONTROLLER(bus)->platform_data = provider_soft;
  332. nasid = NASID_GET(SN_PCIBUS_BUSSOFT(bus)->bs_base);
  333. cnode = nasid_to_cnodeid(nasid);
  334. hubdev_info = (struct hubdev_info *)(NODEPDA(cnode)->pdinfo);
  335. SN_PCIBUS_BUSSOFT(bus)->bs_xwidget_info =
  336. &(hubdev_info->hdi_xwidget_info[SN_PCIBUS_BUSSOFT(bus)->bs_xid]);
  337. /*
  338. * If the node information we obtained during the fixup phase is invalid
  339. * then set controller->node to -1 (undetermined)
  340. */
  341. if (controller->node >= num_online_nodes()) {
  342. struct pcibus_bussoft *b = SN_PCIBUS_BUSSOFT(bus);
  343. printk(KERN_WARNING "Device ASIC=%u XID=%u PBUSNUM=%u"
  344. "L_IO=%lx L_MEM=%lx BASE=%lx\n",
  345. b->bs_asic_type, b->bs_xid, b->bs_persist_busnum,
  346. b->bs_legacy_io, b->bs_legacy_mem, b->bs_base);
  347. printk(KERN_WARNING "on node %d but only %d nodes online."
  348. "Association set to undetermined.\n",
  349. controller->node, num_online_nodes());
  350. controller->node = -1;
  351. }
  352. return;
  353. error_return:
  354. kfree(controller);
  355. return;
  356. }
  357. void sn_bus_store_sysdata(struct pci_dev *dev)
  358. {
  359. struct sysdata_el *element;
  360. element = kzalloc(sizeof(struct sysdata_el), GFP_KERNEL);
  361. if (!element) {
  362. dev_dbg(dev, "%s: out of memory!\n", __FUNCTION__);
  363. return;
  364. }
  365. element->sysdata = dev->sysdata;
  366. list_add(&element->entry, &sn_sysdata_list);
  367. }
  368. void sn_bus_free_sysdata(void)
  369. {
  370. struct sysdata_el *element;
  371. struct list_head *list;
  372. sn_sysdata_free_start:
  373. list_for_each(list, &sn_sysdata_list) {
  374. element = list_entry(list, struct sysdata_el, entry);
  375. list_del(&element->entry);
  376. kfree(element->sysdata);
  377. kfree(element);
  378. goto sn_sysdata_free_start;
  379. }
  380. return;
  381. }
  382. /*
  383. * Ugly hack to get PCI setup until we have a proper ACPI namespace.
  384. */
  385. #define PCI_BUSES_TO_SCAN 256
  386. static int __init sn_pci_init(void)
  387. {
  388. int i = 0;
  389. int j = 0;
  390. struct pci_dev *pci_dev = NULL;
  391. extern void sn_init_cpei_timer(void);
  392. #ifdef CONFIG_PROC_FS
  393. extern void register_sn_procfs(void);
  394. #endif
  395. if (!ia64_platform_is("sn2") || IS_RUNNING_ON_FAKE_PROM())
  396. return 0;
  397. /*
  398. * prime sn_pci_provider[]. Individial provider init routines will
  399. * override their respective default entries.
  400. */
  401. for (i = 0; i < PCIIO_ASIC_MAX_TYPES; i++)
  402. sn_pci_provider[i] = &sn_pci_default_provider;
  403. pcibr_init_provider();
  404. tioca_init_provider();
  405. tioce_init_provider();
  406. /*
  407. * This is needed to avoid bounce limit checks in the blk layer
  408. */
  409. ia64_max_iommu_merge_mask = ~PAGE_MASK;
  410. sn_fixup_ionodes();
  411. sn_irq_lh_init();
  412. INIT_LIST_HEAD(&sn_sysdata_list);
  413. sn_init_cpei_timer();
  414. #ifdef CONFIG_PROC_FS
  415. register_sn_procfs();
  416. #endif
  417. /* busses are not known yet ... */
  418. for (i = 0; i <= max_segment_number; i++)
  419. for (j = 0; j <= max_pcibus_number; j++)
  420. sn_pci_controller_fixup(i, j, NULL);
  421. /*
  422. * Generic Linux PCI Layer has created the pci_bus and pci_dev
  423. * structures - time for us to add our SN PLatform specific
  424. * information.
  425. */
  426. while ((pci_dev =
  427. pci_get_device(PCI_ANY_ID, PCI_ANY_ID, pci_dev)) != NULL)
  428. sn_pci_fixup_slot(pci_dev);
  429. sn_ioif_inited = 1; /* sn I/O infrastructure now initialized */
  430. return 0;
  431. }
  432. /*
  433. * hubdev_init_node() - Creates the HUB data structure and link them to it's
  434. * own NODE specific data area.
  435. */
  436. void hubdev_init_node(nodepda_t * npda, cnodeid_t node)
  437. {
  438. struct hubdev_info *hubdev_info;
  439. if (node >= num_online_nodes()) /* Headless/memless IO nodes */
  440. hubdev_info =
  441. (struct hubdev_info *)alloc_bootmem_node(NODE_DATA(0),
  442. sizeof(struct
  443. hubdev_info));
  444. else
  445. hubdev_info =
  446. (struct hubdev_info *)alloc_bootmem_node(NODE_DATA(node),
  447. sizeof(struct
  448. hubdev_info));
  449. npda->pdinfo = (void *)hubdev_info;
  450. }
  451. geoid_t
  452. cnodeid_get_geoid(cnodeid_t cnode)
  453. {
  454. struct hubdev_info *hubdev;
  455. hubdev = (struct hubdev_info *)(NODEPDA(cnode)->pdinfo);
  456. return hubdev->hdi_geoid;
  457. }
  458. subsys_initcall(sn_pci_init);
  459. EXPORT_SYMBOL(sn_pci_fixup_slot);
  460. EXPORT_SYMBOL(sn_pci_unfixup_slot);
  461. EXPORT_SYMBOL(sn_pci_controller_fixup);
  462. EXPORT_SYMBOL(sn_bus_store_sysdata);
  463. EXPORT_SYMBOL(sn_bus_free_sysdata);