enlighten.c 11 KB

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  1. #include <xen/xen.h>
  2. #include <xen/events.h>
  3. #include <xen/grant_table.h>
  4. #include <xen/hvm.h>
  5. #include <xen/interface/vcpu.h>
  6. #include <xen/interface/xen.h>
  7. #include <xen/interface/memory.h>
  8. #include <xen/interface/hvm/params.h>
  9. #include <xen/features.h>
  10. #include <xen/platform_pci.h>
  11. #include <xen/xenbus.h>
  12. #include <xen/page.h>
  13. #include <xen/interface/sched.h>
  14. #include <xen/xen-ops.h>
  15. #include <asm/xen/hypervisor.h>
  16. #include <asm/xen/hypercall.h>
  17. #include <asm/xen/xen-ops.h>
  18. #include <asm/system_misc.h>
  19. #include <asm/efi.h>
  20. #include <linux/interrupt.h>
  21. #include <linux/irqreturn.h>
  22. #include <linux/module.h>
  23. #include <linux/of.h>
  24. #include <linux/of_fdt.h>
  25. #include <linux/of_irq.h>
  26. #include <linux/of_address.h>
  27. #include <linux/cpuidle.h>
  28. #include <linux/cpufreq.h>
  29. #include <linux/cpu.h>
  30. #include <linux/console.h>
  31. #include <linux/pvclock_gtod.h>
  32. #include <linux/time64.h>
  33. #include <linux/timekeeping.h>
  34. #include <linux/timekeeper_internal.h>
  35. #include <linux/acpi.h>
  36. #include <linux/mm.h>
  37. struct start_info _xen_start_info;
  38. struct start_info *xen_start_info = &_xen_start_info;
  39. EXPORT_SYMBOL(xen_start_info);
  40. enum xen_domain_type xen_domain_type = XEN_NATIVE;
  41. EXPORT_SYMBOL(xen_domain_type);
  42. struct shared_info xen_dummy_shared_info;
  43. struct shared_info *HYPERVISOR_shared_info = (void *)&xen_dummy_shared_info;
  44. DEFINE_PER_CPU(struct vcpu_info *, xen_vcpu);
  45. static struct vcpu_info __percpu *xen_vcpu_info;
  46. /* Linux <-> Xen vCPU id mapping */
  47. DEFINE_PER_CPU(uint32_t, xen_vcpu_id);
  48. EXPORT_PER_CPU_SYMBOL(xen_vcpu_id);
  49. /* These are unused until we support booting "pre-ballooned" */
  50. unsigned long xen_released_pages;
  51. struct xen_memory_region xen_extra_mem[XEN_EXTRA_MEM_MAX_REGIONS] __initdata;
  52. static __read_mostly unsigned int xen_events_irq;
  53. uint32_t xen_start_flags;
  54. EXPORT_SYMBOL(xen_start_flags);
  55. int xen_unmap_domain_gfn_range(struct vm_area_struct *vma,
  56. int nr, struct page **pages)
  57. {
  58. return xen_xlate_unmap_gfn_range(vma, nr, pages);
  59. }
  60. EXPORT_SYMBOL_GPL(xen_unmap_domain_gfn_range);
  61. static void xen_read_wallclock(struct timespec64 *ts)
  62. {
  63. u32 version;
  64. struct timespec64 now, ts_monotonic;
  65. struct shared_info *s = HYPERVISOR_shared_info;
  66. struct pvclock_wall_clock *wall_clock = &(s->wc);
  67. /* get wallclock at system boot */
  68. do {
  69. version = wall_clock->version;
  70. rmb(); /* fetch version before time */
  71. now.tv_sec = ((uint64_t)wall_clock->sec_hi << 32) | wall_clock->sec;
  72. now.tv_nsec = wall_clock->nsec;
  73. rmb(); /* fetch time before checking version */
  74. } while ((wall_clock->version & 1) || (version != wall_clock->version));
  75. /* time since system boot */
  76. ktime_get_ts64(&ts_monotonic);
  77. *ts = timespec64_add(now, ts_monotonic);
  78. }
  79. static int xen_pvclock_gtod_notify(struct notifier_block *nb,
  80. unsigned long was_set, void *priv)
  81. {
  82. /* Protected by the calling core code serialization */
  83. static struct timespec64 next_sync;
  84. struct xen_platform_op op;
  85. struct timespec64 now, system_time;
  86. struct timekeeper *tk = priv;
  87. now.tv_sec = tk->xtime_sec;
  88. now.tv_nsec = (long)(tk->tkr_mono.xtime_nsec >> tk->tkr_mono.shift);
  89. system_time = timespec64_add(now, tk->wall_to_monotonic);
  90. /*
  91. * We only take the expensive HV call when the clock was set
  92. * or when the 11 minutes RTC synchronization time elapsed.
  93. */
  94. if (!was_set && timespec64_compare(&now, &next_sync) < 0)
  95. return NOTIFY_OK;
  96. op.cmd = XENPF_settime64;
  97. op.u.settime64.mbz = 0;
  98. op.u.settime64.secs = now.tv_sec;
  99. op.u.settime64.nsecs = now.tv_nsec;
  100. op.u.settime64.system_time = timespec64_to_ns(&system_time);
  101. (void)HYPERVISOR_platform_op(&op);
  102. /*
  103. * Move the next drift compensation time 11 minutes
  104. * ahead. That's emulating the sync_cmos_clock() update for
  105. * the hardware RTC.
  106. */
  107. next_sync = now;
  108. next_sync.tv_sec += 11 * 60;
  109. return NOTIFY_OK;
  110. }
  111. static struct notifier_block xen_pvclock_gtod_notifier = {
  112. .notifier_call = xen_pvclock_gtod_notify,
  113. };
  114. static int xen_starting_cpu(unsigned int cpu)
  115. {
  116. struct vcpu_register_vcpu_info info;
  117. struct vcpu_info *vcpup;
  118. int err;
  119. /*
  120. * VCPUOP_register_vcpu_info cannot be called twice for the same
  121. * vcpu, so if vcpu_info is already registered, just get out. This
  122. * can happen with cpu-hotplug.
  123. */
  124. if (per_cpu(xen_vcpu, cpu) != NULL)
  125. goto after_register_vcpu_info;
  126. pr_info("Xen: initializing cpu%d\n", cpu);
  127. vcpup = per_cpu_ptr(xen_vcpu_info, cpu);
  128. info.mfn = virt_to_gfn(vcpup);
  129. info.offset = xen_offset_in_page(vcpup);
  130. err = HYPERVISOR_vcpu_op(VCPUOP_register_vcpu_info, xen_vcpu_nr(cpu),
  131. &info);
  132. BUG_ON(err);
  133. per_cpu(xen_vcpu, cpu) = vcpup;
  134. xen_setup_runstate_info(cpu);
  135. after_register_vcpu_info:
  136. enable_percpu_irq(xen_events_irq, 0);
  137. return 0;
  138. }
  139. static int xen_dying_cpu(unsigned int cpu)
  140. {
  141. disable_percpu_irq(xen_events_irq);
  142. return 0;
  143. }
  144. void xen_reboot(int reason)
  145. {
  146. struct sched_shutdown r = { .reason = reason };
  147. int rc;
  148. rc = HYPERVISOR_sched_op(SCHEDOP_shutdown, &r);
  149. BUG_ON(rc);
  150. }
  151. static void xen_restart(enum reboot_mode reboot_mode, const char *cmd)
  152. {
  153. xen_reboot(SHUTDOWN_reboot);
  154. }
  155. static void xen_power_off(void)
  156. {
  157. xen_reboot(SHUTDOWN_poweroff);
  158. }
  159. static irqreturn_t xen_arm_callback(int irq, void *arg)
  160. {
  161. xen_hvm_evtchn_do_upcall();
  162. return IRQ_HANDLED;
  163. }
  164. static __initdata struct {
  165. const char *compat;
  166. const char *prefix;
  167. const char *version;
  168. bool found;
  169. } hyper_node = {"xen,xen", "xen,xen-", NULL, false};
  170. static int __init fdt_find_hyper_node(unsigned long node, const char *uname,
  171. int depth, void *data)
  172. {
  173. const void *s = NULL;
  174. int len;
  175. if (depth != 1 || strcmp(uname, "hypervisor") != 0)
  176. return 0;
  177. if (of_flat_dt_is_compatible(node, hyper_node.compat))
  178. hyper_node.found = true;
  179. s = of_get_flat_dt_prop(node, "compatible", &len);
  180. if (strlen(hyper_node.prefix) + 3 < len &&
  181. !strncmp(hyper_node.prefix, s, strlen(hyper_node.prefix)))
  182. hyper_node.version = s + strlen(hyper_node.prefix);
  183. /*
  184. * Check if Xen supports EFI by checking whether there is the
  185. * "/hypervisor/uefi" node in DT. If so, runtime services are available
  186. * through proxy functions (e.g. in case of Xen dom0 EFI implementation
  187. * they call special hypercall which executes relevant EFI functions)
  188. * and that is why they are always enabled.
  189. */
  190. if (IS_ENABLED(CONFIG_XEN_EFI)) {
  191. if ((of_get_flat_dt_subnode_by_name(node, "uefi") > 0) &&
  192. !efi_runtime_disabled())
  193. set_bit(EFI_RUNTIME_SERVICES, &efi.flags);
  194. }
  195. return 0;
  196. }
  197. /*
  198. * see Documentation/devicetree/bindings/arm/xen.txt for the
  199. * documentation of the Xen Device Tree format.
  200. */
  201. #define GRANT_TABLE_PHYSADDR 0
  202. void __init xen_early_init(void)
  203. {
  204. of_scan_flat_dt(fdt_find_hyper_node, NULL);
  205. if (!hyper_node.found) {
  206. pr_debug("No Xen support\n");
  207. return;
  208. }
  209. if (hyper_node.version == NULL) {
  210. pr_debug("Xen version not found\n");
  211. return;
  212. }
  213. pr_info("Xen %s support found\n", hyper_node.version);
  214. xen_domain_type = XEN_HVM_DOMAIN;
  215. xen_setup_features();
  216. if (xen_feature(XENFEAT_dom0))
  217. xen_start_flags |= SIF_INITDOMAIN|SIF_PRIVILEGED;
  218. if (!console_set_on_cmdline && !xen_initial_domain())
  219. add_preferred_console("hvc", 0, NULL);
  220. }
  221. static void __init xen_acpi_guest_init(void)
  222. {
  223. #ifdef CONFIG_ACPI
  224. struct xen_hvm_param a;
  225. int interrupt, trigger, polarity;
  226. a.domid = DOMID_SELF;
  227. a.index = HVM_PARAM_CALLBACK_IRQ;
  228. if (HYPERVISOR_hvm_op(HVMOP_get_param, &a)
  229. || (a.value >> 56) != HVM_PARAM_CALLBACK_TYPE_PPI) {
  230. xen_events_irq = 0;
  231. return;
  232. }
  233. interrupt = a.value & 0xff;
  234. trigger = ((a.value >> 8) & 0x1) ? ACPI_EDGE_SENSITIVE
  235. : ACPI_LEVEL_SENSITIVE;
  236. polarity = ((a.value >> 8) & 0x2) ? ACPI_ACTIVE_LOW
  237. : ACPI_ACTIVE_HIGH;
  238. xen_events_irq = acpi_register_gsi(NULL, interrupt, trigger, polarity);
  239. #endif
  240. }
  241. static void __init xen_dt_guest_init(void)
  242. {
  243. struct device_node *xen_node;
  244. xen_node = of_find_compatible_node(NULL, NULL, "xen,xen");
  245. if (!xen_node) {
  246. pr_err("Xen support was detected before, but it has disappeared\n");
  247. return;
  248. }
  249. xen_events_irq = irq_of_parse_and_map(xen_node, 0);
  250. }
  251. static int __init xen_guest_init(void)
  252. {
  253. struct xen_add_to_physmap xatp;
  254. struct shared_info *shared_info_page = NULL;
  255. int cpu;
  256. if (!xen_domain())
  257. return 0;
  258. if (!acpi_disabled)
  259. xen_acpi_guest_init();
  260. else
  261. xen_dt_guest_init();
  262. if (!xen_events_irq) {
  263. pr_err("Xen event channel interrupt not found\n");
  264. return -ENODEV;
  265. }
  266. /*
  267. * The fdt parsing codes have set EFI_RUNTIME_SERVICES if Xen EFI
  268. * parameters are found. Force enable runtime services.
  269. */
  270. if (efi_enabled(EFI_RUNTIME_SERVICES))
  271. xen_efi_runtime_setup();
  272. shared_info_page = (struct shared_info *)get_zeroed_page(GFP_KERNEL);
  273. if (!shared_info_page) {
  274. pr_err("not enough memory\n");
  275. return -ENOMEM;
  276. }
  277. xatp.domid = DOMID_SELF;
  278. xatp.idx = 0;
  279. xatp.space = XENMAPSPACE_shared_info;
  280. xatp.gpfn = virt_to_gfn(shared_info_page);
  281. if (HYPERVISOR_memory_op(XENMEM_add_to_physmap, &xatp))
  282. BUG();
  283. HYPERVISOR_shared_info = (struct shared_info *)shared_info_page;
  284. /* xen_vcpu is a pointer to the vcpu_info struct in the shared_info
  285. * page, we use it in the event channel upcall and in some pvclock
  286. * related functions.
  287. * The shared info contains exactly 1 CPU (the boot CPU). The guest
  288. * is required to use VCPUOP_register_vcpu_info to place vcpu info
  289. * for secondary CPUs as they are brought up.
  290. * For uniformity we use VCPUOP_register_vcpu_info even on cpu0.
  291. */
  292. xen_vcpu_info = alloc_percpu(struct vcpu_info);
  293. if (xen_vcpu_info == NULL)
  294. return -ENOMEM;
  295. /* Direct vCPU id mapping for ARM guests. */
  296. for_each_possible_cpu(cpu)
  297. per_cpu(xen_vcpu_id, cpu) = cpu;
  298. xen_auto_xlat_grant_frames.count = gnttab_max_grant_frames();
  299. if (xen_xlate_map_ballooned_pages(&xen_auto_xlat_grant_frames.pfn,
  300. &xen_auto_xlat_grant_frames.vaddr,
  301. xen_auto_xlat_grant_frames.count)) {
  302. free_percpu(xen_vcpu_info);
  303. return -ENOMEM;
  304. }
  305. gnttab_init();
  306. if (!xen_initial_domain())
  307. xenbus_probe(NULL);
  308. /*
  309. * Making sure board specific code will not set up ops for
  310. * cpu idle and cpu freq.
  311. */
  312. disable_cpuidle();
  313. disable_cpufreq();
  314. xen_init_IRQ();
  315. if (request_percpu_irq(xen_events_irq, xen_arm_callback,
  316. "events", &xen_vcpu)) {
  317. pr_err("Error request IRQ %d\n", xen_events_irq);
  318. return -EINVAL;
  319. }
  320. xen_time_setup_guest();
  321. if (xen_initial_domain())
  322. pvclock_gtod_register_notifier(&xen_pvclock_gtod_notifier);
  323. return cpuhp_setup_state(CPUHP_AP_ARM_XEN_STARTING,
  324. "arm/xen:starting", xen_starting_cpu,
  325. xen_dying_cpu);
  326. }
  327. early_initcall(xen_guest_init);
  328. static int __init xen_pm_init(void)
  329. {
  330. if (!xen_domain())
  331. return -ENODEV;
  332. pm_power_off = xen_power_off;
  333. arm_pm_restart = xen_restart;
  334. if (!xen_initial_domain()) {
  335. struct timespec64 ts;
  336. xen_read_wallclock(&ts);
  337. do_settimeofday64(&ts);
  338. }
  339. return 0;
  340. }
  341. late_initcall(xen_pm_init);
  342. /* empty stubs */
  343. void xen_arch_pre_suspend(void) { }
  344. void xen_arch_post_suspend(int suspend_cancelled) { }
  345. void xen_timer_resume(void) { }
  346. void xen_arch_resume(void) { }
  347. void xen_arch_suspend(void) { }
  348. /* In the hypercall.S file. */
  349. EXPORT_SYMBOL_GPL(HYPERVISOR_event_channel_op);
  350. EXPORT_SYMBOL_GPL(HYPERVISOR_grant_table_op);
  351. EXPORT_SYMBOL_GPL(HYPERVISOR_xen_version);
  352. EXPORT_SYMBOL_GPL(HYPERVISOR_console_io);
  353. EXPORT_SYMBOL_GPL(HYPERVISOR_sched_op);
  354. EXPORT_SYMBOL_GPL(HYPERVISOR_hvm_op);
  355. EXPORT_SYMBOL_GPL(HYPERVISOR_memory_op);
  356. EXPORT_SYMBOL_GPL(HYPERVISOR_physdev_op);
  357. EXPORT_SYMBOL_GPL(HYPERVISOR_vcpu_op);
  358. EXPORT_SYMBOL_GPL(HYPERVISOR_tmem_op);
  359. EXPORT_SYMBOL_GPL(HYPERVISOR_platform_op);
  360. EXPORT_SYMBOL_GPL(HYPERVISOR_multicall);
  361. EXPORT_SYMBOL_GPL(HYPERVISOR_vm_assist);
  362. EXPORT_SYMBOL_GPL(HYPERVISOR_dm_op);
  363. EXPORT_SYMBOL_GPL(privcmd_call);