f46f12aebceb1adce854b76d962f90cb5dacc689
[linux-2.6-microblaze.git] / arch / s390 / kernel / setup.c
1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  *  S390 version
4  *    Copyright IBM Corp. 1999, 2012
5  *    Author(s): Hartmut Penner (hp@de.ibm.com),
6  *               Martin Schwidefsky (schwidefsky@de.ibm.com)
7  *
8  *  Derived from "arch/i386/kernel/setup.c"
9  *    Copyright (C) 1995, Linus Torvalds
10  */
11
12 /*
13  * This file handles the architecture-dependent parts of initialization
14  */
15
16 #define KMSG_COMPONENT "setup"
17 #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
18
19 #include <linux/errno.h>
20 #include <linux/export.h>
21 #include <linux/sched.h>
22 #include <linux/sched/task.h>
23 #include <linux/cpu.h>
24 #include <linux/kernel.h>
25 #include <linux/memblock.h>
26 #include <linux/mm.h>
27 #include <linux/stddef.h>
28 #include <linux/unistd.h>
29 #include <linux/ptrace.h>
30 #include <linux/random.h>
31 #include <linux/user.h>
32 #include <linux/tty.h>
33 #include <linux/ioport.h>
34 #include <linux/delay.h>
35 #include <linux/init.h>
36 #include <linux/initrd.h>
37 #include <linux/root_dev.h>
38 #include <linux/console.h>
39 #include <linux/kernel_stat.h>
40 #include <linux/dma-map-ops.h>
41 #include <linux/device.h>
42 #include <linux/notifier.h>
43 #include <linux/pfn.h>
44 #include <linux/ctype.h>
45 #include <linux/reboot.h>
46 #include <linux/topology.h>
47 #include <linux/kexec.h>
48 #include <linux/crash_dump.h>
49 #include <linux/memory.h>
50 #include <linux/compat.h>
51 #include <linux/start_kernel.h>
52 #include <linux/hugetlb.h>
53
54 #include <asm/boot_data.h>
55 #include <asm/ipl.h>
56 #include <asm/facility.h>
57 #include <asm/smp.h>
58 #include <asm/mmu_context.h>
59 #include <asm/cpcmd.h>
60 #include <asm/lowcore.h>
61 #include <asm/nmi.h>
62 #include <asm/irq.h>
63 #include <asm/page.h>
64 #include <asm/ptrace.h>
65 #include <asm/sections.h>
66 #include <asm/ebcdic.h>
67 #include <asm/diag.h>
68 #include <asm/os_info.h>
69 #include <asm/sclp.h>
70 #include <asm/stacktrace.h>
71 #include <asm/sysinfo.h>
72 #include <asm/numa.h>
73 #include <asm/alternative.h>
74 #include <asm/nospec-branch.h>
75 #include <asm/mem_detect.h>
76 #include <asm/uv.h>
77 #include <asm/asm-offsets.h>
78 #include "entry.h"
79
80 /*
81  * Machine setup..
82  */
83 unsigned int console_mode = 0;
84 EXPORT_SYMBOL(console_mode);
85
86 unsigned int console_devno = -1;
87 EXPORT_SYMBOL(console_devno);
88
89 unsigned int console_irq = -1;
90 EXPORT_SYMBOL(console_irq);
91
92 /*
93  * Some code and data needs to stay below 2 GB, even when the kernel would be
94  * relocated above 2 GB, because it has to use 31 bit addresses.
95  * Such code and data is part of the .amode31 section.
96  */
97 unsigned long __amode31_ref __samode31 = __pa(&_samode31);
98 unsigned long __amode31_ref __eamode31 = __pa(&_eamode31);
99 unsigned long __amode31_ref __stext_amode31 = __pa(&_stext_amode31);
100 unsigned long __amode31_ref __etext_amode31 = __pa(&_etext_amode31);
101 struct exception_table_entry __amode31_ref *__start_amode31_ex_table = _start_amode31_ex_table;
102 struct exception_table_entry __amode31_ref *__stop_amode31_ex_table = _stop_amode31_ex_table;
103
104 /*
105  * Control registers CR2, CR5 and CR15 are initialized with addresses
106  * of tables that must be placed below 2G which is handled by the AMODE31
107  * sections.
108  * Because the AMODE31 sections are relocated below 2G at startup,
109  * the content of control registers CR2, CR5 and CR15 must be updated
110  * with new addresses after the relocation. The initial initialization of
111  * control registers occurs in head64.S and then gets updated again after AMODE31
112  * relocation. We must access the relevant AMODE31 tables indirectly via
113  * pointers placed in the .amode31.refs linker section. Those pointers get
114  * updated automatically during AMODE31 relocation and always contain a valid
115  * address within AMODE31 sections.
116  */
117
118 static __amode31_data u32 __ctl_duct_amode31[16] __aligned(64);
119
120 static __amode31_data u64 __ctl_aste_amode31[8] __aligned(64) = {
121         [1] = 0xffffffffffffffff
122 };
123
124 static __amode31_data u32 __ctl_duald_amode31[32] __aligned(128) = {
125         0x80000000, 0, 0, 0,
126         0x80000000, 0, 0, 0,
127         0x80000000, 0, 0, 0,
128         0x80000000, 0, 0, 0,
129         0x80000000, 0, 0, 0,
130         0x80000000, 0, 0, 0,
131         0x80000000, 0, 0, 0,
132         0x80000000, 0, 0, 0
133 };
134
135 static __amode31_data u32 __ctl_linkage_stack_amode31[8] __aligned(64) = {
136         0, 0, 0x89000000, 0,
137         0, 0, 0x8a000000, 0
138 };
139
140 static u64 __amode31_ref *__ctl_aste = __ctl_aste_amode31;
141 static u32 __amode31_ref *__ctl_duald = __ctl_duald_amode31;
142 static u32 __amode31_ref *__ctl_linkage_stack = __ctl_linkage_stack_amode31;
143 static u32 __amode31_ref *__ctl_duct = __ctl_duct_amode31;
144
145 int __bootdata(noexec_disabled);
146 unsigned long __bootdata(ident_map_size);
147 struct mem_detect_info __bootdata(mem_detect);
148 struct initrd_data __bootdata(initrd_data);
149
150 unsigned long __bootdata_preserved(__kaslr_offset);
151 unsigned int __bootdata_preserved(zlib_dfltcc_support);
152 EXPORT_SYMBOL(zlib_dfltcc_support);
153 u64 __bootdata_preserved(stfle_fac_list[16]);
154 EXPORT_SYMBOL(stfle_fac_list);
155 u64 __bootdata_preserved(alt_stfle_fac_list[16]);
156 struct oldmem_data __bootdata_preserved(oldmem_data);
157
158 unsigned long VMALLOC_START;
159 EXPORT_SYMBOL(VMALLOC_START);
160
161 unsigned long VMALLOC_END;
162 EXPORT_SYMBOL(VMALLOC_END);
163
164 struct page *vmemmap;
165 EXPORT_SYMBOL(vmemmap);
166 unsigned long vmemmap_size;
167
168 unsigned long MODULES_VADDR;
169 unsigned long MODULES_END;
170
171 /* An array with a pointer to the lowcore of every CPU. */
172 struct lowcore *lowcore_ptr[NR_CPUS];
173 EXPORT_SYMBOL(lowcore_ptr);
174
175 /*
176  * The Write Back bit position in the physaddr is given by the SLPC PCI.
177  * Leaving the mask zero always uses write through which is safe
178  */
179 unsigned long mio_wb_bit_mask __ro_after_init;
180
181 /*
182  * This is set up by the setup-routine at boot-time
183  * for S390 need to find out, what we have to setup
184  * using address 0x10400 ...
185  */
186
187 #include <asm/setup.h>
188
189 /*
190  * condev= and conmode= setup parameter.
191  */
192
193 static int __init condev_setup(char *str)
194 {
195         int vdev;
196
197         vdev = simple_strtoul(str, &str, 0);
198         if (vdev >= 0 && vdev < 65536) {
199                 console_devno = vdev;
200                 console_irq = -1;
201         }
202         return 1;
203 }
204
205 __setup("condev=", condev_setup);
206
207 static void __init set_preferred_console(void)
208 {
209         if (CONSOLE_IS_3215 || CONSOLE_IS_SCLP)
210                 add_preferred_console("ttyS", 0, NULL);
211         else if (CONSOLE_IS_3270)
212                 add_preferred_console("tty3270", 0, NULL);
213         else if (CONSOLE_IS_VT220)
214                 add_preferred_console("ttysclp", 0, NULL);
215         else if (CONSOLE_IS_HVC)
216                 add_preferred_console("hvc", 0, NULL);
217 }
218
219 static int __init conmode_setup(char *str)
220 {
221 #if defined(CONFIG_SCLP_CONSOLE) || defined(CONFIG_SCLP_VT220_CONSOLE)
222         if (!strcmp(str, "hwc") || !strcmp(str, "sclp"))
223                 SET_CONSOLE_SCLP;
224 #endif
225 #if defined(CONFIG_TN3215_CONSOLE)
226         if (!strcmp(str, "3215"))
227                 SET_CONSOLE_3215;
228 #endif
229 #if defined(CONFIG_TN3270_CONSOLE)
230         if (!strcmp(str, "3270"))
231                 SET_CONSOLE_3270;
232 #endif
233         set_preferred_console();
234         return 1;
235 }
236
237 __setup("conmode=", conmode_setup);
238
239 static void __init conmode_default(void)
240 {
241         char query_buffer[1024];
242         char *ptr;
243
244         if (MACHINE_IS_VM) {
245                 cpcmd("QUERY CONSOLE", query_buffer, 1024, NULL);
246                 console_devno = simple_strtoul(query_buffer + 5, NULL, 16);
247                 ptr = strstr(query_buffer, "SUBCHANNEL =");
248                 console_irq = simple_strtoul(ptr + 13, NULL, 16);
249                 cpcmd("QUERY TERM", query_buffer, 1024, NULL);
250                 ptr = strstr(query_buffer, "CONMODE");
251                 /*
252                  * Set the conmode to 3215 so that the device recognition 
253                  * will set the cu_type of the console to 3215. If the
254                  * conmode is 3270 and we don't set it back then both
255                  * 3215 and the 3270 driver will try to access the console
256                  * device (3215 as console and 3270 as normal tty).
257                  */
258                 cpcmd("TERM CONMODE 3215", NULL, 0, NULL);
259                 if (ptr == NULL) {
260 #if defined(CONFIG_SCLP_CONSOLE) || defined(CONFIG_SCLP_VT220_CONSOLE)
261                         SET_CONSOLE_SCLP;
262 #endif
263                         return;
264                 }
265                 if (str_has_prefix(ptr + 8, "3270")) {
266 #if defined(CONFIG_TN3270_CONSOLE)
267                         SET_CONSOLE_3270;
268 #elif defined(CONFIG_TN3215_CONSOLE)
269                         SET_CONSOLE_3215;
270 #elif defined(CONFIG_SCLP_CONSOLE) || defined(CONFIG_SCLP_VT220_CONSOLE)
271                         SET_CONSOLE_SCLP;
272 #endif
273                 } else if (str_has_prefix(ptr + 8, "3215")) {
274 #if defined(CONFIG_TN3215_CONSOLE)
275                         SET_CONSOLE_3215;
276 #elif defined(CONFIG_TN3270_CONSOLE)
277                         SET_CONSOLE_3270;
278 #elif defined(CONFIG_SCLP_CONSOLE) || defined(CONFIG_SCLP_VT220_CONSOLE)
279                         SET_CONSOLE_SCLP;
280 #endif
281                 }
282         } else if (MACHINE_IS_KVM) {
283                 if (sclp.has_vt220 && IS_ENABLED(CONFIG_SCLP_VT220_CONSOLE))
284                         SET_CONSOLE_VT220;
285                 else if (sclp.has_linemode && IS_ENABLED(CONFIG_SCLP_CONSOLE))
286                         SET_CONSOLE_SCLP;
287                 else
288                         SET_CONSOLE_HVC;
289         } else {
290 #if defined(CONFIG_SCLP_CONSOLE) || defined(CONFIG_SCLP_VT220_CONSOLE)
291                 SET_CONSOLE_SCLP;
292 #endif
293         }
294 }
295
296 #ifdef CONFIG_CRASH_DUMP
297 static void __init setup_zfcpdump(void)
298 {
299         if (!is_ipl_type_dump())
300                 return;
301         if (oldmem_data.start)
302                 return;
303         strcat(boot_command_line, " cio_ignore=all,!ipldev,!condev");
304         console_loglevel = 2;
305 }
306 #else
307 static inline void setup_zfcpdump(void) {}
308 #endif /* CONFIG_CRASH_DUMP */
309
310  /*
311  * Reboot, halt and power_off stubs. They just call _machine_restart,
312  * _machine_halt or _machine_power_off. 
313  */
314
315 void machine_restart(char *command)
316 {
317         if ((!in_interrupt() && !in_atomic()) || oops_in_progress)
318                 /*
319                  * Only unblank the console if we are called in enabled
320                  * context or a bust_spinlocks cleared the way for us.
321                  */
322                 console_unblank();
323         _machine_restart(command);
324 }
325
326 void machine_halt(void)
327 {
328         if (!in_interrupt() || oops_in_progress)
329                 /*
330                  * Only unblank the console if we are called in enabled
331                  * context or a bust_spinlocks cleared the way for us.
332                  */
333                 console_unblank();
334         _machine_halt();
335 }
336
337 void machine_power_off(void)
338 {
339         if (!in_interrupt() || oops_in_progress)
340                 /*
341                  * Only unblank the console if we are called in enabled
342                  * context or a bust_spinlocks cleared the way for us.
343                  */
344                 console_unblank();
345         _machine_power_off();
346 }
347
348 /*
349  * Dummy power off function.
350  */
351 void (*pm_power_off)(void) = machine_power_off;
352 EXPORT_SYMBOL_GPL(pm_power_off);
353
354 void *restart_stack;
355
356 unsigned long stack_alloc(void)
357 {
358 #ifdef CONFIG_VMAP_STACK
359         return (unsigned long)__vmalloc_node(THREAD_SIZE, THREAD_SIZE,
360                         THREADINFO_GFP, NUMA_NO_NODE,
361                         __builtin_return_address(0));
362 #else
363         return __get_free_pages(GFP_KERNEL, THREAD_SIZE_ORDER);
364 #endif
365 }
366
367 void stack_free(unsigned long stack)
368 {
369 #ifdef CONFIG_VMAP_STACK
370         vfree((void *) stack);
371 #else
372         free_pages(stack, THREAD_SIZE_ORDER);
373 #endif
374 }
375
376 int __init arch_early_irq_init(void)
377 {
378         unsigned long stack;
379
380         stack = __get_free_pages(GFP_KERNEL, THREAD_SIZE_ORDER);
381         if (!stack)
382                 panic("Couldn't allocate async stack");
383         S390_lowcore.async_stack = stack + STACK_INIT_OFFSET;
384         return 0;
385 }
386
387 void __init arch_call_rest_init(void)
388 {
389         unsigned long stack;
390
391         stack = stack_alloc();
392         if (!stack)
393                 panic("Couldn't allocate kernel stack");
394         current->stack = (void *) stack;
395 #ifdef CONFIG_VMAP_STACK
396         current->stack_vm_area = (void *) stack;
397 #endif
398         set_task_stack_end_magic(current);
399         stack += STACK_INIT_OFFSET;
400         S390_lowcore.kernel_stack = stack;
401         call_on_stack_noreturn(rest_init, stack);
402 }
403
404 static void __init setup_lowcore_dat_off(void)
405 {
406         unsigned long int_psw_mask = PSW_KERNEL_BITS;
407         unsigned long mcck_stack;
408         struct lowcore *lc;
409
410         if (IS_ENABLED(CONFIG_KASAN))
411                 int_psw_mask |= PSW_MASK_DAT;
412
413         /*
414          * Setup lowcore for boot cpu
415          */
416         BUILD_BUG_ON(sizeof(struct lowcore) != LC_PAGES * PAGE_SIZE);
417         lc = memblock_alloc_low(sizeof(*lc), sizeof(*lc));
418         if (!lc)
419                 panic("%s: Failed to allocate %zu bytes align=%zx\n",
420                       __func__, sizeof(*lc), sizeof(*lc));
421
422         lc->restart_psw.mask = PSW_KERNEL_BITS;
423         lc->restart_psw.addr = (unsigned long) restart_int_handler;
424         lc->external_new_psw.mask = int_psw_mask | PSW_MASK_MCHECK;
425         lc->external_new_psw.addr = (unsigned long) ext_int_handler;
426         lc->svc_new_psw.mask = int_psw_mask | PSW_MASK_MCHECK;
427         lc->svc_new_psw.addr = (unsigned long) system_call;
428         lc->program_new_psw.mask = int_psw_mask | PSW_MASK_MCHECK;
429         lc->program_new_psw.addr = (unsigned long) pgm_check_handler;
430         lc->mcck_new_psw.mask = PSW_KERNEL_BITS;
431         lc->mcck_new_psw.addr = (unsigned long) mcck_int_handler;
432         lc->io_new_psw.mask = int_psw_mask | PSW_MASK_MCHECK;
433         lc->io_new_psw.addr = (unsigned long) io_int_handler;
434         lc->clock_comparator = clock_comparator_max;
435         lc->nodat_stack = ((unsigned long) &init_thread_union)
436                 + THREAD_SIZE - STACK_FRAME_OVERHEAD - sizeof(struct pt_regs);
437         lc->current_task = (unsigned long)&init_task;
438         lc->lpp = LPP_MAGIC;
439         lc->machine_flags = S390_lowcore.machine_flags;
440         lc->preempt_count = S390_lowcore.preempt_count;
441         nmi_alloc_boot_cpu(lc);
442         lc->sys_enter_timer = S390_lowcore.sys_enter_timer;
443         lc->exit_timer = S390_lowcore.exit_timer;
444         lc->user_timer = S390_lowcore.user_timer;
445         lc->system_timer = S390_lowcore.system_timer;
446         lc->steal_timer = S390_lowcore.steal_timer;
447         lc->last_update_timer = S390_lowcore.last_update_timer;
448         lc->last_update_clock = S390_lowcore.last_update_clock;
449
450         /*
451          * Allocate the global restart stack which is the same for
452          * all CPUs in cast *one* of them does a PSW restart.
453          */
454         restart_stack = memblock_alloc(THREAD_SIZE, THREAD_SIZE);
455         if (!restart_stack)
456                 panic("%s: Failed to allocate %lu bytes align=0x%lx\n",
457                       __func__, THREAD_SIZE, THREAD_SIZE);
458         restart_stack += STACK_INIT_OFFSET;
459
460         /*
461          * Set up PSW restart to call ipl.c:do_restart(). Copy the relevant
462          * restart data to the absolute zero lowcore. This is necessary if
463          * PSW restart is done on an offline CPU that has lowcore zero.
464          */
465         lc->restart_stack = (unsigned long) restart_stack;
466         lc->restart_fn = (unsigned long) do_restart;
467         lc->restart_data = 0;
468         lc->restart_source = -1UL;
469
470         mcck_stack = (unsigned long)memblock_alloc(THREAD_SIZE, THREAD_SIZE);
471         if (!mcck_stack)
472                 panic("%s: Failed to allocate %lu bytes align=0x%lx\n",
473                       __func__, THREAD_SIZE, THREAD_SIZE);
474         lc->mcck_stack = mcck_stack + STACK_INIT_OFFSET;
475
476         /* Setup absolute zero lowcore */
477         mem_assign_absolute(S390_lowcore.restart_stack, lc->restart_stack);
478         mem_assign_absolute(S390_lowcore.restart_fn, lc->restart_fn);
479         mem_assign_absolute(S390_lowcore.restart_data, lc->restart_data);
480         mem_assign_absolute(S390_lowcore.restart_source, lc->restart_source);
481         mem_assign_absolute(S390_lowcore.restart_psw, lc->restart_psw);
482
483         lc->spinlock_lockval = arch_spin_lockval(0);
484         lc->spinlock_index = 0;
485         arch_spin_lock_setup(0);
486         lc->br_r1_trampoline = 0x07f1;  /* br %r1 */
487         lc->return_lpswe = gen_lpswe(__LC_RETURN_PSW);
488         lc->return_mcck_lpswe = gen_lpswe(__LC_RETURN_MCCK_PSW);
489         lc->preempt_count = PREEMPT_DISABLED;
490
491         set_prefix((u32)(unsigned long) lc);
492         lowcore_ptr[0] = lc;
493 }
494
495 static void __init setup_lowcore_dat_on(void)
496 {
497         __ctl_clear_bit(0, 28);
498         S390_lowcore.external_new_psw.mask |= PSW_MASK_DAT;
499         S390_lowcore.svc_new_psw.mask |= PSW_MASK_DAT;
500         S390_lowcore.program_new_psw.mask |= PSW_MASK_DAT;
501         S390_lowcore.io_new_psw.mask |= PSW_MASK_DAT;
502         __ctl_set_bit(0, 28);
503 }
504
505 static struct resource code_resource = {
506         .name  = "Kernel code",
507         .flags = IORESOURCE_BUSY | IORESOURCE_SYSTEM_RAM,
508 };
509
510 static struct resource data_resource = {
511         .name = "Kernel data",
512         .flags = IORESOURCE_BUSY | IORESOURCE_SYSTEM_RAM,
513 };
514
515 static struct resource bss_resource = {
516         .name = "Kernel bss",
517         .flags = IORESOURCE_BUSY | IORESOURCE_SYSTEM_RAM,
518 };
519
520 static struct resource __initdata *standard_resources[] = {
521         &code_resource,
522         &data_resource,
523         &bss_resource,
524 };
525
526 static void __init setup_resources(void)
527 {
528         struct resource *res, *std_res, *sub_res;
529         phys_addr_t start, end;
530         int j;
531         u64 i;
532
533         code_resource.start = (unsigned long) _text;
534         code_resource.end = (unsigned long) _etext - 1;
535         data_resource.start = (unsigned long) _etext;
536         data_resource.end = (unsigned long) _edata - 1;
537         bss_resource.start = (unsigned long) __bss_start;
538         bss_resource.end = (unsigned long) __bss_stop - 1;
539
540         for_each_mem_range(i, &start, &end) {
541                 res = memblock_alloc(sizeof(*res), 8);
542                 if (!res)
543                         panic("%s: Failed to allocate %zu bytes align=0x%x\n",
544                               __func__, sizeof(*res), 8);
545                 res->flags = IORESOURCE_BUSY | IORESOURCE_SYSTEM_RAM;
546
547                 res->name = "System RAM";
548                 res->start = start;
549                 /*
550                  * In memblock, end points to the first byte after the
551                  * range while in resourses, end points to the last byte in
552                  * the range.
553                  */
554                 res->end = end - 1;
555                 request_resource(&iomem_resource, res);
556
557                 for (j = 0; j < ARRAY_SIZE(standard_resources); j++) {
558                         std_res = standard_resources[j];
559                         if (std_res->start < res->start ||
560                             std_res->start > res->end)
561                                 continue;
562                         if (std_res->end > res->end) {
563                                 sub_res = memblock_alloc(sizeof(*sub_res), 8);
564                                 if (!sub_res)
565                                         panic("%s: Failed to allocate %zu bytes align=0x%x\n",
566                                               __func__, sizeof(*sub_res), 8);
567                                 *sub_res = *std_res;
568                                 sub_res->end = res->end;
569                                 std_res->start = res->end + 1;
570                                 request_resource(res, sub_res);
571                         } else {
572                                 request_resource(res, std_res);
573                         }
574                 }
575         }
576 #ifdef CONFIG_CRASH_DUMP
577         /*
578          * Re-add removed crash kernel memory as reserved memory. This makes
579          * sure it will be mapped with the identity mapping and struct pages
580          * will be created, so it can be resized later on.
581          * However add it later since the crash kernel resource should not be
582          * part of the System RAM resource.
583          */
584         if (crashk_res.end) {
585                 memblock_add_node(crashk_res.start, resource_size(&crashk_res), 0);
586                 memblock_reserve(crashk_res.start, resource_size(&crashk_res));
587                 insert_resource(&iomem_resource, &crashk_res);
588         }
589 #endif
590 }
591
592 static void __init setup_memory_end(void)
593 {
594         memblock_remove(ident_map_size, ULONG_MAX);
595         max_pfn = max_low_pfn = PFN_DOWN(ident_map_size);
596         pr_notice("The maximum memory size is %luMB\n", ident_map_size >> 20);
597 }
598
599 #ifdef CONFIG_CRASH_DUMP
600
601 /*
602  * When kdump is enabled, we have to ensure that no memory from the area
603  * [0 - crashkernel memory size] is set offline - it will be exchanged with
604  * the crashkernel memory region when kdump is triggered. The crashkernel
605  * memory region can never get offlined (pages are unmovable).
606  */
607 static int kdump_mem_notifier(struct notifier_block *nb,
608                               unsigned long action, void *data)
609 {
610         struct memory_notify *arg = data;
611
612         if (action != MEM_GOING_OFFLINE)
613                 return NOTIFY_OK;
614         if (arg->start_pfn < PFN_DOWN(resource_size(&crashk_res)))
615                 return NOTIFY_BAD;
616         return NOTIFY_OK;
617 }
618
619 static struct notifier_block kdump_mem_nb = {
620         .notifier_call = kdump_mem_notifier,
621 };
622
623 #endif
624
625 /*
626  * Make sure that the area above identity mapping is protected
627  */
628 static void __init reserve_above_ident_map(void)
629 {
630         memblock_reserve(ident_map_size, ULONG_MAX);
631 }
632
633 /*
634  * Reserve memory for kdump kernel to be loaded with kexec
635  */
636 static void __init reserve_crashkernel(void)
637 {
638 #ifdef CONFIG_CRASH_DUMP
639         unsigned long long crash_base, crash_size;
640         phys_addr_t low, high;
641         int rc;
642
643         rc = parse_crashkernel(boot_command_line, ident_map_size, &crash_size,
644                                &crash_base);
645
646         crash_base = ALIGN(crash_base, KEXEC_CRASH_MEM_ALIGN);
647         crash_size = ALIGN(crash_size, KEXEC_CRASH_MEM_ALIGN);
648         if (rc || crash_size == 0)
649                 return;
650
651         if (memblock.memory.regions[0].size < crash_size) {
652                 pr_info("crashkernel reservation failed: %s\n",
653                         "first memory chunk must be at least crashkernel size");
654                 return;
655         }
656
657         low = crash_base ?: oldmem_data.start;
658         high = low + crash_size;
659         if (low >= oldmem_data.start && high <= oldmem_data.start + oldmem_data.size) {
660                 /* The crashkernel fits into OLDMEM, reuse OLDMEM */
661                 crash_base = low;
662         } else {
663                 /* Find suitable area in free memory */
664                 low = max_t(unsigned long, crash_size, sclp.hsa_size);
665                 high = crash_base ? crash_base + crash_size : ULONG_MAX;
666
667                 if (crash_base && crash_base < low) {
668                         pr_info("crashkernel reservation failed: %s\n",
669                                 "crash_base too low");
670                         return;
671                 }
672                 low = crash_base ?: low;
673                 crash_base = memblock_find_in_range(low, high, crash_size,
674                                                     KEXEC_CRASH_MEM_ALIGN);
675         }
676
677         if (!crash_base) {
678                 pr_info("crashkernel reservation failed: %s\n",
679                         "no suitable area found");
680                 return;
681         }
682
683         if (register_memory_notifier(&kdump_mem_nb))
684                 return;
685
686         if (!oldmem_data.start && MACHINE_IS_VM)
687                 diag10_range(PFN_DOWN(crash_base), PFN_DOWN(crash_size));
688         crashk_res.start = crash_base;
689         crashk_res.end = crash_base + crash_size - 1;
690         memblock_remove(crash_base, crash_size);
691         pr_info("Reserving %lluMB of memory at %lluMB "
692                 "for crashkernel (System RAM: %luMB)\n",
693                 crash_size >> 20, crash_base >> 20,
694                 (unsigned long)memblock.memory.total_size >> 20);
695         os_info_crashkernel_add(crash_base, crash_size);
696 #endif
697 }
698
699 /*
700  * Reserve the initrd from being used by memblock
701  */
702 static void __init reserve_initrd(void)
703 {
704 #ifdef CONFIG_BLK_DEV_INITRD
705         if (!initrd_data.start || !initrd_data.size)
706                 return;
707         initrd_start = initrd_data.start;
708         initrd_end = initrd_start + initrd_data.size;
709         memblock_reserve(initrd_data.start, initrd_data.size);
710 #endif
711 }
712
713 /*
714  * Reserve the memory area used to pass the certificate lists
715  */
716 static void __init reserve_certificate_list(void)
717 {
718         if (ipl_cert_list_addr)
719                 memblock_reserve(ipl_cert_list_addr, ipl_cert_list_size);
720 }
721
722 static void __init reserve_mem_detect_info(void)
723 {
724         unsigned long start, size;
725
726         get_mem_detect_reserved(&start, &size);
727         if (size)
728                 memblock_reserve(start, size);
729 }
730
731 static void __init free_mem_detect_info(void)
732 {
733         unsigned long start, size;
734
735         get_mem_detect_reserved(&start, &size);
736         if (size)
737                 memblock_free(start, size);
738 }
739
740 static const char * __init get_mem_info_source(void)
741 {
742         switch (mem_detect.info_source) {
743         case MEM_DETECT_SCLP_STOR_INFO:
744                 return "sclp storage info";
745         case MEM_DETECT_DIAG260:
746                 return "diag260";
747         case MEM_DETECT_SCLP_READ_INFO:
748                 return "sclp read info";
749         case MEM_DETECT_BIN_SEARCH:
750                 return "binary search";
751         }
752         return "none";
753 }
754
755 static void __init memblock_add_mem_detect_info(void)
756 {
757         unsigned long start, end;
758         int i;
759
760         pr_debug("physmem info source: %s (%hhd)\n",
761                  get_mem_info_source(), mem_detect.info_source);
762         /* keep memblock lists close to the kernel */
763         memblock_set_bottom_up(true);
764         for_each_mem_detect_block(i, &start, &end) {
765                 memblock_add(start, end - start);
766                 memblock_physmem_add(start, end - start);
767         }
768         memblock_set_bottom_up(false);
769         memblock_set_node(0, ULONG_MAX, &memblock.memory, 0);
770         memblock_dump_all();
771 }
772
773 /*
774  * Check for initrd being in usable memory
775  */
776 static void __init check_initrd(void)
777 {
778 #ifdef CONFIG_BLK_DEV_INITRD
779         if (initrd_data.start && initrd_data.size &&
780             !memblock_is_region_memory(initrd_data.start, initrd_data.size)) {
781                 pr_err("The initial RAM disk does not fit into the memory\n");
782                 memblock_free(initrd_data.start, initrd_data.size);
783                 initrd_start = initrd_end = 0;
784         }
785 #endif
786 }
787
788 /*
789  * Reserve memory used for lowcore/command line/kernel image.
790  */
791 static void __init reserve_kernel(void)
792 {
793         unsigned long start_pfn = PFN_UP(__pa(_end));
794
795         memblock_reserve(0, STARTUP_NORMAL_OFFSET);
796         memblock_reserve((unsigned long)sclp_early_sccb, EXT_SCCB_READ_SCP);
797         memblock_reserve((unsigned long)_stext, PFN_PHYS(start_pfn)
798                          - (unsigned long)_stext);
799 }
800
801 static void __init setup_memory(void)
802 {
803         phys_addr_t start, end;
804         u64 i;
805
806         /*
807          * Init storage key for present memory
808          */
809         for_each_mem_range(i, &start, &end)
810                 storage_key_init_range(start, end);
811
812         psw_set_key(PAGE_DEFAULT_KEY);
813
814         /* Only cosmetics */
815         memblock_enforce_memory_limit(memblock_end_of_DRAM());
816 }
817
818 static void __init relocate_amode31_section(void)
819 {
820         unsigned long amode31_addr, amode31_size;
821         long amode31_offset;
822         long *ptr;
823
824         /* Allocate a new AMODE31 capable memory region */
825         amode31_size = __eamode31 - __samode31;
826         pr_info("Relocating AMODE31 section of size 0x%08lx\n", amode31_size);
827         amode31_addr = (unsigned long)memblock_alloc_low(amode31_size, PAGE_SIZE);
828         if (!amode31_addr)
829                 panic("Failed to allocate memory for AMODE31 section\n");
830         amode31_offset = amode31_addr - __samode31;
831
832         /* Move original AMODE31 section to the new one */
833         memmove((void *)amode31_addr, (void *)__samode31, amode31_size);
834         /* Zero out the old AMODE31 section to catch invalid accesses within it */
835         memset((void *)__samode31, 0, amode31_size);
836
837         /* Update all AMODE31 region references */
838         for (ptr = _start_amode31_refs; ptr != _end_amode31_refs; ptr++)
839                 *ptr += amode31_offset;
840 }
841
842 /* This must be called after AMODE31 relocation */
843 static void __init setup_cr(void)
844 {
845         union ctlreg2 cr2;
846         union ctlreg5 cr5;
847         union ctlreg15 cr15;
848
849         __ctl_duct[1] = (unsigned long)__ctl_aste;
850         __ctl_duct[2] = (unsigned long)__ctl_aste;
851         __ctl_duct[4] = (unsigned long)__ctl_duald;
852
853         /* Update control registers CR2, CR5 and CR15 */
854         __ctl_store(cr2.val, 2, 2);
855         __ctl_store(cr5.val, 5, 5);
856         __ctl_store(cr15.val, 15, 15);
857         cr2.ducto = (unsigned long)__ctl_duct >> 6;
858         cr5.pasteo = (unsigned long)__ctl_duct >> 6;
859         cr15.lsea = (unsigned long)__ctl_linkage_stack >> 3;
860         __ctl_load(cr2.val, 2, 2);
861         __ctl_load(cr5.val, 5, 5);
862         __ctl_load(cr15.val, 15, 15);
863 }
864
865 /*
866  * Add system information as device randomness
867  */
868 static void __init setup_randomness(void)
869 {
870         struct sysinfo_3_2_2 *vmms;
871
872         vmms = (struct sysinfo_3_2_2 *) memblock_phys_alloc(PAGE_SIZE,
873                                                             PAGE_SIZE);
874         if (!vmms)
875                 panic("Failed to allocate memory for sysinfo structure\n");
876
877         if (stsi(vmms, 3, 2, 2) == 0 && vmms->count)
878                 add_device_randomness(&vmms->vm, sizeof(vmms->vm[0]) * vmms->count);
879         memblock_free((unsigned long) vmms, PAGE_SIZE);
880 }
881
882 /*
883  * Find the correct size for the task_struct. This depends on
884  * the size of the struct fpu at the end of the thread_struct
885  * which is embedded in the task_struct.
886  */
887 static void __init setup_task_size(void)
888 {
889         int task_size = sizeof(struct task_struct);
890
891         if (!MACHINE_HAS_VX) {
892                 task_size -= sizeof(__vector128) * __NUM_VXRS;
893                 task_size += sizeof(freg_t) * __NUM_FPRS;
894         }
895         arch_task_struct_size = task_size;
896 }
897
898 /*
899  * Issue diagnose 318 to set the control program name and
900  * version codes.
901  */
902 static void __init setup_control_program_code(void)
903 {
904         union diag318_info diag318_info = {
905                 .cpnc = CPNC_LINUX,
906                 .cpvc = 0,
907         };
908
909         if (!sclp.has_diag318)
910                 return;
911
912         diag_stat_inc(DIAG_STAT_X318);
913         asm volatile("diag %0,0,0x318\n" : : "d" (diag318_info.val));
914 }
915
916 /*
917  * Print the component list from the IPL report
918  */
919 static void __init log_component_list(void)
920 {
921         struct ipl_rb_component_entry *ptr, *end;
922         char *str;
923
924         if (!early_ipl_comp_list_addr)
925                 return;
926         if (ipl_block.hdr.flags & IPL_PL_FLAG_SIPL)
927                 pr_info("Linux is running with Secure-IPL enabled\n");
928         else
929                 pr_info("Linux is running with Secure-IPL disabled\n");
930         ptr = (void *) early_ipl_comp_list_addr;
931         end = (void *) ptr + early_ipl_comp_list_size;
932         pr_info("The IPL report contains the following components:\n");
933         while (ptr < end) {
934                 if (ptr->flags & IPL_RB_COMPONENT_FLAG_SIGNED) {
935                         if (ptr->flags & IPL_RB_COMPONENT_FLAG_VERIFIED)
936                                 str = "signed, verified";
937                         else
938                                 str = "signed, verification failed";
939                 } else {
940                         str = "not signed";
941                 }
942                 pr_info("%016llx - %016llx (%s)\n",
943                         ptr->addr, ptr->addr + ptr->len, str);
944                 ptr++;
945         }
946 }
947
948 /*
949  * Setup function called from init/main.c just after the banner
950  * was printed.
951  */
952
953 void __init setup_arch(char **cmdline_p)
954 {
955         /*
956          * print what head.S has found out about the machine
957          */
958         if (MACHINE_IS_VM)
959                 pr_info("Linux is running as a z/VM "
960                         "guest operating system in 64-bit mode\n");
961         else if (MACHINE_IS_KVM)
962                 pr_info("Linux is running under KVM in 64-bit mode\n");
963         else if (MACHINE_IS_LPAR)
964                 pr_info("Linux is running natively in 64-bit mode\n");
965         else
966                 pr_info("Linux is running as a guest in 64-bit mode\n");
967
968         log_component_list();
969
970         /* Have one command line that is parsed and saved in /proc/cmdline */
971         /* boot_command_line has been already set up in early.c */
972         *cmdline_p = boot_command_line;
973
974         ROOT_DEV = Root_RAM0;
975
976         setup_initial_init_mm(_text, _etext, _edata, _end);
977
978         if (IS_ENABLED(CONFIG_EXPOLINE_AUTO))
979                 nospec_auto_detect();
980
981         jump_label_init();
982         parse_early_param();
983 #ifdef CONFIG_CRASH_DUMP
984         /* Deactivate elfcorehdr= kernel parameter */
985         elfcorehdr_addr = ELFCORE_ADDR_MAX;
986 #endif
987
988         os_info_init();
989         setup_ipl();
990         setup_task_size();
991         setup_control_program_code();
992
993         /* Do some memory reservations *before* memory is added to memblock */
994         reserve_above_ident_map();
995         reserve_kernel();
996         reserve_initrd();
997         reserve_certificate_list();
998         reserve_mem_detect_info();
999         memblock_allow_resize();
1000
1001         /* Get information about *all* installed memory */
1002         memblock_add_mem_detect_info();
1003
1004         free_mem_detect_info();
1005
1006         relocate_amode31_section();
1007         setup_cr();
1008
1009         setup_uv();
1010         setup_memory_end();
1011         setup_memory();
1012         dma_contiguous_reserve(ident_map_size);
1013         vmcp_cma_reserve();
1014         if (MACHINE_HAS_EDAT2)
1015                 hugetlb_cma_reserve(PUD_SHIFT - PAGE_SHIFT);
1016
1017         check_initrd();
1018         reserve_crashkernel();
1019 #ifdef CONFIG_CRASH_DUMP
1020         /*
1021          * Be aware that smp_save_dump_cpus() triggers a system reset.
1022          * Therefore CPU and device initialization should be done afterwards.
1023          */
1024         smp_save_dump_cpus();
1025 #endif
1026
1027         setup_resources();
1028         setup_lowcore_dat_off();
1029         smp_fill_possible_mask();
1030         cpu_detect_mhz_feature();
1031         cpu_init();
1032         numa_setup();
1033         smp_detect_cpus();
1034         topology_init_early();
1035
1036         /*
1037          * Create kernel page tables and switch to virtual addressing.
1038          */
1039         paging_init();
1040
1041         /*
1042          * After paging_init created the kernel page table, the new PSWs
1043          * in lowcore can now run with DAT enabled.
1044          */
1045         setup_lowcore_dat_on();
1046
1047         /* Setup default console */
1048         conmode_default();
1049         set_preferred_console();
1050
1051         apply_alternative_instructions();
1052         if (IS_ENABLED(CONFIG_EXPOLINE))
1053                 nospec_init_branches();
1054
1055         /* Setup zfcp/nvme dump support */
1056         setup_zfcpdump();
1057
1058         /* Add system specific data to the random pool */
1059         setup_randomness();
1060 }