[S390] Remove ipldelay kernel parameter.
[safe/jmp/linux-2.6] / arch / s390 / kernel / setup.c
1 /*
2  *  arch/s390/kernel/setup.c
3  *
4  *  S390 version
5  *    Copyright (C) 1999,2000 IBM Deutschland Entwicklung GmbH, IBM Corporation
6  *    Author(s): Hartmut Penner (hp@de.ibm.com),
7  *               Martin Schwidefsky (schwidefsky@de.ibm.com)
8  *
9  *  Derived from "arch/i386/kernel/setup.c"
10  *    Copyright (C) 1995, Linus Torvalds
11  */
12
13 /*
14  * This file handles the architecture-dependent parts of initialization
15  */
16
17 #include <linux/errno.h>
18 #include <linux/module.h>
19 #include <linux/sched.h>
20 #include <linux/kernel.h>
21 #include <linux/mm.h>
22 #include <linux/stddef.h>
23 #include <linux/unistd.h>
24 #include <linux/ptrace.h>
25 #include <linux/slab.h>
26 #include <linux/user.h>
27 #include <linux/tty.h>
28 #include <linux/ioport.h>
29 #include <linux/delay.h>
30 #include <linux/init.h>
31 #include <linux/initrd.h>
32 #include <linux/bootmem.h>
33 #include <linux/root_dev.h>
34 #include <linux/console.h>
35 #include <linux/seq_file.h>
36 #include <linux/kernel_stat.h>
37 #include <linux/device.h>
38 #include <linux/notifier.h>
39 #include <linux/pfn.h>
40 #include <linux/ctype.h>
41 #include <linux/reboot.h>
42 #include <linux/topology.h>
43
44 #include <asm/ipl.h>
45 #include <asm/uaccess.h>
46 #include <asm/system.h>
47 #include <asm/smp.h>
48 #include <asm/mmu_context.h>
49 #include <asm/cpcmd.h>
50 #include <asm/lowcore.h>
51 #include <asm/irq.h>
52 #include <asm/page.h>
53 #include <asm/ptrace.h>
54 #include <asm/sections.h>
55 #include <asm/ebcdic.h>
56 #include <asm/compat.h>
57
58 long psw_kernel_bits    = (PSW_BASE_BITS | PSW_MASK_DAT | PSW_ASC_PRIMARY |
59                            PSW_MASK_MCHECK | PSW_DEFAULT_KEY);
60 long psw_user_bits      = (PSW_BASE_BITS | PSW_MASK_DAT | PSW_ASC_HOME |
61                            PSW_MASK_IO | PSW_MASK_EXT | PSW_MASK_MCHECK |
62                            PSW_MASK_PSTATE | PSW_DEFAULT_KEY);
63
64 /*
65  * User copy operations.
66  */
67 struct uaccess_ops uaccess;
68 EXPORT_SYMBOL(uaccess);
69
70 /*
71  * Machine setup..
72  */
73 unsigned int console_mode = 0;
74 unsigned int console_devno = -1;
75 unsigned int console_irq = -1;
76 unsigned long machine_flags;
77 unsigned long elf_hwcap = 0;
78 char elf_platform[ELF_PLATFORM_SIZE];
79
80 struct mem_chunk __meminitdata memory_chunk[MEMORY_CHUNKS];
81 volatile int __cpu_logical_map[NR_CPUS]; /* logical cpu to cpu address */
82 static unsigned long __initdata memory_end;
83
84 /*
85  * This is set up by the setup-routine at boot-time
86  * for S390 need to find out, what we have to setup
87  * using address 0x10400 ...
88  */
89
90 #include <asm/setup.h>
91
92 static struct resource code_resource = {
93         .name  = "Kernel code",
94         .flags = IORESOURCE_BUSY | IORESOURCE_MEM,
95 };
96
97 static struct resource data_resource = {
98         .name = "Kernel data",
99         .flags = IORESOURCE_BUSY | IORESOURCE_MEM,
100 };
101
102 /*
103  * cpu_init() initializes state that is per-CPU.
104  */
105 void __cpuinit cpu_init(void)
106 {
107         int addr = hard_smp_processor_id();
108
109         /*
110          * Store processor id in lowcore (used e.g. in timer_interrupt)
111          */
112         get_cpu_id(&S390_lowcore.cpu_data.cpu_id);
113         S390_lowcore.cpu_data.cpu_addr = addr;
114
115         /*
116          * Force FPU initialization:
117          */
118         clear_thread_flag(TIF_USEDFPU);
119         clear_used_math();
120
121         atomic_inc(&init_mm.mm_count);
122         current->active_mm = &init_mm;
123         if (current->mm)
124                 BUG();
125         enter_lazy_tlb(&init_mm, current);
126 }
127
128 /*
129  * condev= and conmode= setup parameter.
130  */
131
132 static int __init condev_setup(char *str)
133 {
134         int vdev;
135
136         vdev = simple_strtoul(str, &str, 0);
137         if (vdev >= 0 && vdev < 65536) {
138                 console_devno = vdev;
139                 console_irq = -1;
140         }
141         return 1;
142 }
143
144 __setup("condev=", condev_setup);
145
146 static int __init conmode_setup(char *str)
147 {
148 #if defined(CONFIG_SCLP_CONSOLE) || defined(CONFIG_SCLP_VT220_CONSOLE)
149         if (strncmp(str, "hwc", 4) == 0 || strncmp(str, "sclp", 5) == 0)
150                 SET_CONSOLE_SCLP;
151 #endif
152 #if defined(CONFIG_TN3215_CONSOLE)
153         if (strncmp(str, "3215", 5) == 0)
154                 SET_CONSOLE_3215;
155 #endif
156 #if defined(CONFIG_TN3270_CONSOLE)
157         if (strncmp(str, "3270", 5) == 0)
158                 SET_CONSOLE_3270;
159 #endif
160         return 1;
161 }
162
163 __setup("conmode=", conmode_setup);
164
165 static void __init conmode_default(void)
166 {
167         char query_buffer[1024];
168         char *ptr;
169
170         if (MACHINE_IS_VM) {
171                 cpcmd("QUERY CONSOLE", query_buffer, 1024, NULL);
172                 console_devno = simple_strtoul(query_buffer + 5, NULL, 16);
173                 ptr = strstr(query_buffer, "SUBCHANNEL =");
174                 console_irq = simple_strtoul(ptr + 13, NULL, 16);
175                 cpcmd("QUERY TERM", query_buffer, 1024, NULL);
176                 ptr = strstr(query_buffer, "CONMODE");
177                 /*
178                  * Set the conmode to 3215 so that the device recognition 
179                  * will set the cu_type of the console to 3215. If the
180                  * conmode is 3270 and we don't set it back then both
181                  * 3215 and the 3270 driver will try to access the console
182                  * device (3215 as console and 3270 as normal tty).
183                  */
184                 cpcmd("TERM CONMODE 3215", NULL, 0, NULL);
185                 if (ptr == NULL) {
186 #if defined(CONFIG_SCLP_CONSOLE) || defined(CONFIG_SCLP_VT220_CONSOLE)
187                         SET_CONSOLE_SCLP;
188 #endif
189                         return;
190                 }
191                 if (strncmp(ptr + 8, "3270", 4) == 0) {
192 #if defined(CONFIG_TN3270_CONSOLE)
193                         SET_CONSOLE_3270;
194 #elif defined(CONFIG_TN3215_CONSOLE)
195                         SET_CONSOLE_3215;
196 #elif defined(CONFIG_SCLP_CONSOLE) || defined(CONFIG_SCLP_VT220_CONSOLE)
197                         SET_CONSOLE_SCLP;
198 #endif
199                 } else if (strncmp(ptr + 8, "3215", 4) == 0) {
200 #if defined(CONFIG_TN3215_CONSOLE)
201                         SET_CONSOLE_3215;
202 #elif defined(CONFIG_TN3270_CONSOLE)
203                         SET_CONSOLE_3270;
204 #elif defined(CONFIG_SCLP_CONSOLE) || defined(CONFIG_SCLP_VT220_CONSOLE)
205                         SET_CONSOLE_SCLP;
206 #endif
207                 }
208         } else if (MACHINE_IS_P390) {
209 #if defined(CONFIG_TN3215_CONSOLE)
210                 SET_CONSOLE_3215;
211 #elif defined(CONFIG_TN3270_CONSOLE)
212                 SET_CONSOLE_3270;
213 #endif
214         } else {
215 #if defined(CONFIG_SCLP_CONSOLE) || defined(CONFIG_SCLP_VT220_CONSOLE)
216                 SET_CONSOLE_SCLP;
217 #endif
218         }
219 }
220
221 #if defined(CONFIG_ZFCPDUMP) || defined(CONFIG_ZFCPDUMP_MODULE)
222 static void __init setup_zfcpdump(unsigned int console_devno)
223 {
224         static char str[64];
225
226         if (ipl_info.type != IPL_TYPE_FCP_DUMP)
227                 return;
228         if (console_devno != -1)
229                 sprintf(str, "cio_ignore=all,!0.0.%04x,!0.0.%04x",
230                         ipl_info.data.fcp.dev_id.devno, console_devno);
231         else
232                 sprintf(str, "cio_ignore=all,!0.0.%04x",
233                         ipl_info.data.fcp.dev_id.devno);
234         strcat(COMMAND_LINE, " ");
235         strcat(COMMAND_LINE, str);
236         console_loglevel = 2;
237 }
238 #else
239 static inline void setup_zfcpdump(unsigned int console_devno) {}
240 #endif /* CONFIG_ZFCPDUMP */
241
242  /*
243  * Reboot, halt and power_off stubs. They just call _machine_restart,
244  * _machine_halt or _machine_power_off. 
245  */
246
247 void machine_restart(char *command)
248 {
249         if ((!in_interrupt() && !in_atomic()) || oops_in_progress)
250                 /*
251                  * Only unblank the console if we are called in enabled
252                  * context or a bust_spinlocks cleared the way for us.
253                  */
254                 console_unblank();
255         _machine_restart(command);
256 }
257
258 void machine_halt(void)
259 {
260         if (!in_interrupt() || oops_in_progress)
261                 /*
262                  * Only unblank the console if we are called in enabled
263                  * context or a bust_spinlocks cleared the way for us.
264                  */
265                 console_unblank();
266         _machine_halt();
267 }
268
269 void machine_power_off(void)
270 {
271         if (!in_interrupt() || oops_in_progress)
272                 /*
273                  * Only unblank the console if we are called in enabled
274                  * context or a bust_spinlocks cleared the way for us.
275                  */
276                 console_unblank();
277         _machine_power_off();
278 }
279
280 /*
281  * Dummy power off function.
282  */
283 void (*pm_power_off)(void) = machine_power_off;
284
285 static int __init early_parse_mem(char *p)
286 {
287         memory_end = memparse(p, &p);
288         return 0;
289 }
290 early_param("mem", early_parse_mem);
291
292 #ifdef CONFIG_S390_SWITCH_AMODE
293 #ifdef CONFIG_PGSTE
294 unsigned int switch_amode = 1;
295 #else
296 unsigned int switch_amode = 0;
297 #endif
298 EXPORT_SYMBOL_GPL(switch_amode);
299
300 static void set_amode_and_uaccess(unsigned long user_amode,
301                                   unsigned long user32_amode)
302 {
303         psw_user_bits = PSW_BASE_BITS | PSW_MASK_DAT | user_amode |
304                         PSW_MASK_IO | PSW_MASK_EXT | PSW_MASK_MCHECK |
305                         PSW_MASK_PSTATE | PSW_DEFAULT_KEY;
306 #ifdef CONFIG_COMPAT
307         psw_user32_bits = PSW_BASE32_BITS | PSW_MASK_DAT | user_amode |
308                           PSW_MASK_IO | PSW_MASK_EXT | PSW_MASK_MCHECK |
309                           PSW_MASK_PSTATE | PSW_DEFAULT_KEY;
310         psw32_user_bits = PSW32_BASE_BITS | PSW32_MASK_DAT | user32_amode |
311                           PSW32_MASK_IO | PSW32_MASK_EXT | PSW32_MASK_MCHECK |
312                           PSW32_MASK_PSTATE;
313 #endif
314         psw_kernel_bits = PSW_BASE_BITS | PSW_MASK_DAT | PSW_ASC_HOME |
315                           PSW_MASK_MCHECK | PSW_DEFAULT_KEY;
316
317         if (MACHINE_HAS_MVCOS) {
318                 printk("mvcos available.\n");
319                 memcpy(&uaccess, &uaccess_mvcos_switch, sizeof(uaccess));
320         } else {
321                 printk("mvcos not available.\n");
322                 memcpy(&uaccess, &uaccess_pt, sizeof(uaccess));
323         }
324 }
325
326 /*
327  * Switch kernel/user addressing modes?
328  */
329 static int __init early_parse_switch_amode(char *p)
330 {
331         switch_amode = 1;
332         return 0;
333 }
334 early_param("switch_amode", early_parse_switch_amode);
335
336 #else /* CONFIG_S390_SWITCH_AMODE */
337 static inline void set_amode_and_uaccess(unsigned long user_amode,
338                                          unsigned long user32_amode)
339 {
340 }
341 #endif /* CONFIG_S390_SWITCH_AMODE */
342
343 #ifdef CONFIG_S390_EXEC_PROTECT
344 unsigned int s390_noexec = 0;
345 EXPORT_SYMBOL_GPL(s390_noexec);
346
347 /*
348  * Enable execute protection?
349  */
350 static int __init early_parse_noexec(char *p)
351 {
352         if (!strncmp(p, "off", 3))
353                 return 0;
354         switch_amode = 1;
355         s390_noexec = 1;
356         return 0;
357 }
358 early_param("noexec", early_parse_noexec);
359 #endif /* CONFIG_S390_EXEC_PROTECT */
360
361 static void setup_addressing_mode(void)
362 {
363         if (s390_noexec) {
364                 printk("S390 execute protection active, ");
365                 set_amode_and_uaccess(PSW_ASC_SECONDARY, PSW32_ASC_SECONDARY);
366         } else if (switch_amode) {
367                 printk("S390 address spaces switched, ");
368                 set_amode_and_uaccess(PSW_ASC_PRIMARY, PSW32_ASC_PRIMARY);
369         }
370 #ifdef CONFIG_TRACE_IRQFLAGS
371         sysc_restore_trace_psw.mask = psw_kernel_bits & ~PSW_MASK_MCHECK;
372         io_restore_trace_psw.mask = psw_kernel_bits & ~PSW_MASK_MCHECK;
373 #endif
374 }
375
376 static void __init
377 setup_lowcore(void)
378 {
379         struct _lowcore *lc;
380         int lc_pages;
381
382         /*
383          * Setup lowcore for boot cpu
384          */
385         lc_pages = sizeof(void *) == 8 ? 2 : 1;
386         lc = (struct _lowcore *)
387                 __alloc_bootmem(lc_pages * PAGE_SIZE, lc_pages * PAGE_SIZE, 0);
388         memset(lc, 0, lc_pages * PAGE_SIZE);
389         lc->restart_psw.mask = PSW_BASE_BITS | PSW_DEFAULT_KEY;
390         lc->restart_psw.addr =
391                 PSW_ADDR_AMODE | (unsigned long) restart_int_handler;
392         if (switch_amode)
393                 lc->restart_psw.mask |= PSW_ASC_HOME;
394         lc->external_new_psw.mask = psw_kernel_bits;
395         lc->external_new_psw.addr =
396                 PSW_ADDR_AMODE | (unsigned long) ext_int_handler;
397         lc->svc_new_psw.mask = psw_kernel_bits | PSW_MASK_IO | PSW_MASK_EXT;
398         lc->svc_new_psw.addr = PSW_ADDR_AMODE | (unsigned long) system_call;
399         lc->program_new_psw.mask = psw_kernel_bits;
400         lc->program_new_psw.addr =
401                 PSW_ADDR_AMODE | (unsigned long)pgm_check_handler;
402         lc->mcck_new_psw.mask =
403                 psw_kernel_bits & ~PSW_MASK_MCHECK & ~PSW_MASK_DAT;
404         lc->mcck_new_psw.addr =
405                 PSW_ADDR_AMODE | (unsigned long) mcck_int_handler;
406         lc->io_new_psw.mask = psw_kernel_bits;
407         lc->io_new_psw.addr = PSW_ADDR_AMODE | (unsigned long) io_int_handler;
408         lc->ipl_device = S390_lowcore.ipl_device;
409         lc->clock_comparator = -1ULL;
410         lc->kernel_stack = ((unsigned long) &init_thread_union) + THREAD_SIZE;
411         lc->async_stack = (unsigned long)
412                 __alloc_bootmem(ASYNC_SIZE, ASYNC_SIZE, 0) + ASYNC_SIZE;
413         lc->panic_stack = (unsigned long)
414                 __alloc_bootmem(PAGE_SIZE, PAGE_SIZE, 0) + PAGE_SIZE;
415         lc->current_task = (unsigned long) init_thread_union.thread_info.task;
416         lc->thread_info = (unsigned long) &init_thread_union;
417 #ifndef CONFIG_64BIT
418         if (MACHINE_HAS_IEEE) {
419                 lc->extended_save_area_addr = (__u32)
420                         __alloc_bootmem(PAGE_SIZE, PAGE_SIZE, 0);
421                 /* enable extended save area */
422                 __ctl_set_bit(14, 29);
423         }
424 #endif
425         set_prefix((u32)(unsigned long) lc);
426 }
427
428 static void __init
429 setup_resources(void)
430 {
431         struct resource *res, *sub_res;
432         int i;
433
434         code_resource.start = (unsigned long) &_text;
435         code_resource.end = (unsigned long) &_etext - 1;
436         data_resource.start = (unsigned long) &_etext;
437         data_resource.end = (unsigned long) &_edata - 1;
438
439         for (i = 0; i < MEMORY_CHUNKS; i++) {
440                 if (!memory_chunk[i].size)
441                         continue;
442                 res = alloc_bootmem_low(sizeof(struct resource));
443                 res->flags = IORESOURCE_BUSY | IORESOURCE_MEM;
444                 switch (memory_chunk[i].type) {
445                 case CHUNK_READ_WRITE:
446                         res->name = "System RAM";
447                         break;
448                 case CHUNK_READ_ONLY:
449                         res->name = "System ROM";
450                         res->flags |= IORESOURCE_READONLY;
451                         break;
452                 default:
453                         res->name = "reserved";
454                 }
455                 res->start = memory_chunk[i].addr;
456                 res->end = memory_chunk[i].addr +  memory_chunk[i].size - 1;
457                 request_resource(&iomem_resource, res);
458
459                 if (code_resource.start >= res->start  &&
460                         code_resource.start <= res->end &&
461                         code_resource.end > res->end) {
462                         sub_res = alloc_bootmem_low(sizeof(struct resource));
463                         memcpy(sub_res, &code_resource,
464                                 sizeof(struct resource));
465                         sub_res->end = res->end;
466                         code_resource.start = res->end + 1;
467                         request_resource(res, sub_res);
468                 }
469
470                 if (code_resource.start >= res->start &&
471                         code_resource.start <= res->end &&
472                         code_resource.end <= res->end)
473                         request_resource(res, &code_resource);
474
475                 if (data_resource.start >= res->start &&
476                         data_resource.start <= res->end &&
477                         data_resource.end > res->end) {
478                         sub_res = alloc_bootmem_low(sizeof(struct resource));
479                         memcpy(sub_res, &data_resource,
480                                 sizeof(struct resource));
481                         sub_res->end = res->end;
482                         data_resource.start = res->end + 1;
483                         request_resource(res, sub_res);
484                 }
485
486                 if (data_resource.start >= res->start &&
487                         data_resource.start <= res->end &&
488                         data_resource.end <= res->end)
489                         request_resource(res, &data_resource);
490         }
491 }
492
493 unsigned long real_memory_size;
494 EXPORT_SYMBOL_GPL(real_memory_size);
495
496 static void __init setup_memory_end(void)
497 {
498         unsigned long memory_size;
499         unsigned long max_mem;
500         int i;
501
502 #if defined(CONFIG_ZFCPDUMP) || defined(CONFIG_ZFCPDUMP_MODULE)
503         if (ipl_info.type == IPL_TYPE_FCP_DUMP)
504                 memory_end = ZFCPDUMP_HSA_SIZE;
505 #endif
506         memory_size = 0;
507         memory_end &= PAGE_MASK;
508
509         max_mem = memory_end ? min(VMEM_MAX_PHYS, memory_end) : VMEM_MAX_PHYS;
510         memory_end = min(max_mem, memory_end);
511
512         /*
513          * Make sure all chunks are MAX_ORDER aligned so we don't need the
514          * extra checks that HOLES_IN_ZONE would require.
515          */
516         for (i = 0; i < MEMORY_CHUNKS; i++) {
517                 unsigned long start, end;
518                 struct mem_chunk *chunk;
519                 unsigned long align;
520
521                 chunk = &memory_chunk[i];
522                 align = 1UL << (MAX_ORDER + PAGE_SHIFT - 1);
523                 start = (chunk->addr + align - 1) & ~(align - 1);
524                 end = (chunk->addr + chunk->size) & ~(align - 1);
525                 if (start >= end)
526                         memset(chunk, 0, sizeof(*chunk));
527                 else {
528                         chunk->addr = start;
529                         chunk->size = end - start;
530                 }
531         }
532
533         for (i = 0; i < MEMORY_CHUNKS; i++) {
534                 struct mem_chunk *chunk = &memory_chunk[i];
535
536                 real_memory_size = max(real_memory_size,
537                                        chunk->addr + chunk->size);
538                 if (chunk->addr >= max_mem) {
539                         memset(chunk, 0, sizeof(*chunk));
540                         continue;
541                 }
542                 if (chunk->addr + chunk->size > max_mem)
543                         chunk->size = max_mem - chunk->addr;
544                 memory_size = max(memory_size, chunk->addr + chunk->size);
545         }
546         if (!memory_end)
547                 memory_end = memory_size;
548 }
549
550 static void __init
551 setup_memory(void)
552 {
553         unsigned long bootmap_size;
554         unsigned long start_pfn, end_pfn;
555         int i;
556
557         /*
558          * partially used pages are not usable - thus
559          * we are rounding upwards:
560          */
561         start_pfn = PFN_UP(__pa(&_end));
562         end_pfn = max_pfn = PFN_DOWN(memory_end);
563
564 #ifdef CONFIG_BLK_DEV_INITRD
565         /*
566          * Move the initrd in case the bitmap of the bootmem allocater
567          * would overwrite it.
568          */
569
570         if (INITRD_START && INITRD_SIZE) {
571                 unsigned long bmap_size;
572                 unsigned long start;
573
574                 bmap_size = bootmem_bootmap_pages(end_pfn - start_pfn + 1);
575                 bmap_size = PFN_PHYS(bmap_size);
576
577                 if (PFN_PHYS(start_pfn) + bmap_size > INITRD_START) {
578                         start = PFN_PHYS(start_pfn) + bmap_size + PAGE_SIZE;
579
580                         if (start + INITRD_SIZE > memory_end) {
581                                 printk("initrd extends beyond end of memory "
582                                        "(0x%08lx > 0x%08lx)\n"
583                                        "disabling initrd\n",
584                                        start + INITRD_SIZE, memory_end);
585                                 INITRD_START = INITRD_SIZE = 0;
586                         } else {
587                                 printk("Moving initrd (0x%08lx -> 0x%08lx, "
588                                        "size: %ld)\n",
589                                        INITRD_START, start, INITRD_SIZE);
590                                 memmove((void *) start, (void *) INITRD_START,
591                                         INITRD_SIZE);
592                                 INITRD_START = start;
593                         }
594                 }
595         }
596 #endif
597
598         /*
599          * Initialize the boot-time allocator
600          */
601         bootmap_size = init_bootmem(start_pfn, end_pfn);
602
603         /*
604          * Register RAM areas with the bootmem allocator.
605          */
606
607         for (i = 0; i < MEMORY_CHUNKS && memory_chunk[i].size > 0; i++) {
608                 unsigned long start_chunk, end_chunk, pfn;
609
610                 if (memory_chunk[i].type != CHUNK_READ_WRITE)
611                         continue;
612                 start_chunk = PFN_DOWN(memory_chunk[i].addr);
613                 end_chunk = start_chunk + PFN_DOWN(memory_chunk[i].size) - 1;
614                 end_chunk = min(end_chunk, end_pfn);
615                 if (start_chunk >= end_chunk)
616                         continue;
617                 add_active_range(0, start_chunk, end_chunk);
618                 pfn = max(start_chunk, start_pfn);
619                 for (; pfn <= end_chunk; pfn++)
620                         page_set_storage_key(PFN_PHYS(pfn), PAGE_DEFAULT_KEY);
621         }
622
623         psw_set_key(PAGE_DEFAULT_KEY);
624
625         free_bootmem_with_active_regions(0, max_pfn);
626
627         /*
628          * Reserve memory used for lowcore/command line/kernel image.
629          */
630         reserve_bootmem(0, (unsigned long)_ehead, BOOTMEM_DEFAULT);
631         reserve_bootmem((unsigned long)_stext,
632                         PFN_PHYS(start_pfn) - (unsigned long)_stext,
633                         BOOTMEM_DEFAULT);
634         /*
635          * Reserve the bootmem bitmap itself as well. We do this in two
636          * steps (first step was init_bootmem()) because this catches
637          * the (very unlikely) case of us accidentally initializing the
638          * bootmem allocator with an invalid RAM area.
639          */
640         reserve_bootmem(start_pfn << PAGE_SHIFT, bootmap_size,
641                         BOOTMEM_DEFAULT);
642
643 #ifdef CONFIG_BLK_DEV_INITRD
644         if (INITRD_START && INITRD_SIZE) {
645                 if (INITRD_START + INITRD_SIZE <= memory_end) {
646                         reserve_bootmem(INITRD_START, INITRD_SIZE,
647                                         BOOTMEM_DEFAULT);
648                         initrd_start = INITRD_START;
649                         initrd_end = initrd_start + INITRD_SIZE;
650                 } else {
651                         printk("initrd extends beyond end of memory "
652                                "(0x%08lx > 0x%08lx)\ndisabling initrd\n",
653                                initrd_start + INITRD_SIZE, memory_end);
654                         initrd_start = initrd_end = 0;
655                 }
656         }
657 #endif
658 }
659
660 static int __init __stfle(unsigned long long *list, int doublewords)
661 {
662         typedef struct { unsigned long long _[doublewords]; } addrtype;
663         register unsigned long __nr asm("0") = doublewords - 1;
664
665         asm volatile(".insn s,0xb2b00000,%0" /* stfle */
666                      : "=m" (*(addrtype *) list), "+d" (__nr) : : "cc");
667         return __nr + 1;
668 }
669
670 int __init stfle(unsigned long long *list, int doublewords)
671 {
672         if (!(stfl() & (1UL << 24)))
673                 return -EOPNOTSUPP;
674         return __stfle(list, doublewords);
675 }
676
677 /*
678  * Setup hardware capabilities.
679  */
680 static void __init setup_hwcaps(void)
681 {
682         static const int stfl_bits[6] = { 0, 2, 7, 17, 19, 21 };
683         struct cpuinfo_S390 *cpuinfo = &S390_lowcore.cpu_data;
684         unsigned long long facility_list_extended;
685         unsigned int facility_list;
686         int i;
687
688         facility_list = stfl();
689         /*
690          * The store facility list bits numbers as found in the principles
691          * of operation are numbered with bit 1UL<<31 as number 0 to
692          * bit 1UL<<0 as number 31.
693          *   Bit 0: instructions named N3, "backported" to esa-mode
694          *   Bit 2: z/Architecture mode is active
695          *   Bit 7: the store-facility-list-extended facility is installed
696          *   Bit 17: the message-security assist is installed
697          *   Bit 19: the long-displacement facility is installed
698          *   Bit 21: the extended-immediate facility is installed
699          * These get translated to:
700          *   HWCAP_S390_ESAN3 bit 0, HWCAP_S390_ZARCH bit 1,
701          *   HWCAP_S390_STFLE bit 2, HWCAP_S390_MSA bit 3,
702          *   HWCAP_S390_LDISP bit 4, and HWCAP_S390_EIMM bit 5.
703          */
704         for (i = 0; i < 6; i++)
705                 if (facility_list & (1UL << (31 - stfl_bits[i])))
706                         elf_hwcap |= 1UL << i;
707
708         /*
709          * Check for additional facilities with store-facility-list-extended.
710          * stfle stores doublewords (8 byte) with bit 1ULL<<63 as bit 0
711          * and 1ULL<<0 as bit 63. Bits 0-31 contain the same information
712          * as stored by stfl, bits 32-xxx contain additional facilities.
713          * How many facility words are stored depends on the number of
714          * doublewords passed to the instruction. The additional facilites
715          * are:
716          *   Bit 43: decimal floating point facility is installed
717          * translated to:
718          *   HWCAP_S390_DFP bit 6.
719          */
720         if ((elf_hwcap & (1UL << 2)) &&
721             __stfle(&facility_list_extended, 1) > 0) {
722                 if (facility_list_extended & (1ULL << (64 - 43)))
723                         elf_hwcap |= 1UL << 6;
724         }
725
726         if (MACHINE_HAS_HPAGE)
727                 elf_hwcap |= 1UL << 7;
728
729         switch (cpuinfo->cpu_id.machine) {
730         case 0x9672:
731 #if !defined(CONFIG_64BIT)
732         default:        /* Use "g5" as default for 31 bit kernels. */
733 #endif
734                 strcpy(elf_platform, "g5");
735                 break;
736         case 0x2064:
737         case 0x2066:
738 #if defined(CONFIG_64BIT)
739         default:        /* Use "z900" as default for 64 bit kernels. */
740 #endif
741                 strcpy(elf_platform, "z900");
742                 break;
743         case 0x2084:
744         case 0x2086:
745                 strcpy(elf_platform, "z990");
746                 break;
747         case 0x2094:
748                 strcpy(elf_platform, "z9-109");
749                 break;
750         }
751 }
752
753 /*
754  * Setup function called from init/main.c just after the banner
755  * was printed.
756  */
757
758 void __init
759 setup_arch(char **cmdline_p)
760 {
761         /*
762          * print what head.S has found out about the machine
763          */
764 #ifndef CONFIG_64BIT
765         printk((MACHINE_IS_VM) ?
766                "We are running under VM (31 bit mode)\n" :
767                "We are running native (31 bit mode)\n");
768         printk((MACHINE_HAS_IEEE) ?
769                "This machine has an IEEE fpu\n" :
770                "This machine has no IEEE fpu\n");
771 #else /* CONFIG_64BIT */
772         if (MACHINE_IS_VM)
773                 printk("We are running under VM (64 bit mode)\n");
774         else if (MACHINE_IS_KVM) {
775                 printk("We are running under KVM (64 bit mode)\n");
776                 add_preferred_console("ttyS", 1, NULL);
777         } else
778                 printk("We are running native (64 bit mode)\n");
779 #endif /* CONFIG_64BIT */
780
781         /* Save unparsed command line copy for /proc/cmdline */
782         strlcpy(boot_command_line, COMMAND_LINE, COMMAND_LINE_SIZE);
783
784         *cmdline_p = COMMAND_LINE;
785         *(*cmdline_p + COMMAND_LINE_SIZE - 1) = '\0';
786
787         ROOT_DEV = Root_RAM0;
788
789         init_mm.start_code = PAGE_OFFSET;
790         init_mm.end_code = (unsigned long) &_etext;
791         init_mm.end_data = (unsigned long) &_edata;
792         init_mm.brk = (unsigned long) &_end;
793
794         if (MACHINE_HAS_MVCOS)
795                 memcpy(&uaccess, &uaccess_mvcos, sizeof(uaccess));
796         else
797                 memcpy(&uaccess, &uaccess_std, sizeof(uaccess));
798
799         parse_early_param();
800
801         setup_ipl();
802         setup_memory_end();
803         setup_addressing_mode();
804         setup_memory();
805         setup_resources();
806         setup_lowcore();
807
808         cpu_init();
809         __cpu_logical_map[0] = S390_lowcore.cpu_data.cpu_addr;
810         s390_init_cpu_topology();
811
812         /*
813          * Setup capabilities (ELF_HWCAP & ELF_PLATFORM).
814          */
815         setup_hwcaps();
816
817         /*
818          * Create kernel page tables and switch to virtual addressing.
819          */
820         paging_init();
821
822         /* Setup default console */
823         conmode_default();
824
825         /* Setup zfcpdump support */
826         setup_zfcpdump(console_devno);
827 }
828
829 void __cpuinit print_cpu_info(struct cpuinfo_S390 *cpuinfo)
830 {
831    printk(KERN_INFO "cpu %d "
832 #ifdef CONFIG_SMP
833            "phys_idx=%d "
834 #endif
835            "vers=%02X ident=%06X machine=%04X unused=%04X\n",
836            cpuinfo->cpu_nr,
837 #ifdef CONFIG_SMP
838            cpuinfo->cpu_addr,
839 #endif
840            cpuinfo->cpu_id.version,
841            cpuinfo->cpu_id.ident,
842            cpuinfo->cpu_id.machine,
843            cpuinfo->cpu_id.unused);
844 }
845
846 /*
847  * show_cpuinfo - Get information on one CPU for use by procfs.
848  */
849
850 static int show_cpuinfo(struct seq_file *m, void *v)
851 {
852         static const char *hwcap_str[8] = {
853                 "esan3", "zarch", "stfle", "msa", "ldisp", "eimm", "dfp",
854                 "edat"
855         };
856         struct cpuinfo_S390 *cpuinfo;
857         unsigned long n = (unsigned long) v - 1;
858         int i;
859
860         s390_adjust_jiffies();
861         preempt_disable();
862         if (!n) {
863                 seq_printf(m, "vendor_id       : IBM/S390\n"
864                                "# processors    : %i\n"
865                                "bogomips per cpu: %lu.%02lu\n",
866                                num_online_cpus(), loops_per_jiffy/(500000/HZ),
867                                (loops_per_jiffy/(5000/HZ))%100);
868                 seq_puts(m, "features\t: ");
869                 for (i = 0; i < 8; i++)
870                         if (hwcap_str[i] && (elf_hwcap & (1UL << i)))
871                                 seq_printf(m, "%s ", hwcap_str[i]);
872                 seq_puts(m, "\n");
873         }
874
875         if (cpu_online(n)) {
876 #ifdef CONFIG_SMP
877                 if (smp_processor_id() == n)
878                         cpuinfo = &S390_lowcore.cpu_data;
879                 else
880                         cpuinfo = &lowcore_ptr[n]->cpu_data;
881 #else
882                 cpuinfo = &S390_lowcore.cpu_data;
883 #endif
884                 seq_printf(m, "processor %li: "
885                                "version = %02X,  "
886                                "identification = %06X,  "
887                                "machine = %04X\n",
888                                n, cpuinfo->cpu_id.version,
889                                cpuinfo->cpu_id.ident,
890                                cpuinfo->cpu_id.machine);
891         }
892         preempt_enable();
893         return 0;
894 }
895
896 static void *c_start(struct seq_file *m, loff_t *pos)
897 {
898         return *pos < NR_CPUS ? (void *)((unsigned long) *pos + 1) : NULL;
899 }
900 static void *c_next(struct seq_file *m, void *v, loff_t *pos)
901 {
902         ++*pos;
903         return c_start(m, pos);
904 }
905 static void c_stop(struct seq_file *m, void *v)
906 {
907 }
908 const struct seq_operations cpuinfo_op = {
909         .start  = c_start,
910         .next   = c_next,
911         .stop   = c_stop,
912         .show   = show_cpuinfo,
913 };
914