blob: 04ccb274a6205bba58357d5897105ada90f81c0f [file] [log] [blame]
Andrew Scullb4b6d4a2019-01-02 15:54:55 +00001/*
2 * PowerPC version
3 * Copyright (C) 1995-1996 Gary Thomas (gdt@linuxppc.org)
4 *
5 * Modifications by Paul Mackerras (PowerMac) (paulus@cs.anu.edu.au)
6 * and Cort Dougan (PReP) (cort@cs.nmt.edu)
7 * Copyright (C) 1996 Paul Mackerras
8 * PPC44x/36-bit changes by Matt Porter (mporter@mvista.com)
9 *
10 * Derived from "arch/i386/mm/init.c"
11 * Copyright (C) 1991, 1992, 1993, 1994 Linus Torvalds
12 *
13 * This program is free software; you can redistribute it and/or
14 * modify it under the terms of the GNU General Public License
15 * as published by the Free Software Foundation; either version
16 * 2 of the License, or (at your option) any later version.
17 *
18 */
19
20#include <linux/export.h>
21#include <linux/sched.h>
22#include <linux/kernel.h>
23#include <linux/errno.h>
24#include <linux/string.h>
25#include <linux/gfp.h>
26#include <linux/types.h>
27#include <linux/mm.h>
28#include <linux/stddef.h>
29#include <linux/init.h>
30#include <linux/bootmem.h>
31#include <linux/highmem.h>
32#include <linux/initrd.h>
33#include <linux/pagemap.h>
34#include <linux/suspend.h>
35#include <linux/memblock.h>
36#include <linux/hugetlb.h>
37#include <linux/slab.h>
38#include <linux/vmalloc.h>
39#include <linux/memremap.h>
40
41#include <asm/pgalloc.h>
42#include <asm/prom.h>
43#include <asm/io.h>
44#include <asm/mmu_context.h>
45#include <asm/pgtable.h>
46#include <asm/mmu.h>
47#include <asm/smp.h>
48#include <asm/machdep.h>
49#include <asm/btext.h>
50#include <asm/tlb.h>
51#include <asm/sections.h>
52#include <asm/sparsemem.h>
53#include <asm/vdso.h>
54#include <asm/fixmap.h>
55#include <asm/swiotlb.h>
56#include <asm/rtas.h>
57
58#include "mmu_decl.h"
59
60#ifndef CPU_FTR_COHERENT_ICACHE
61#define CPU_FTR_COHERENT_ICACHE 0 /* XXX for now */
62#define CPU_FTR_NOEXECUTE 0
63#endif
64
65unsigned long long memory_limit;
66bool init_mem_is_free;
67
68#ifdef CONFIG_HIGHMEM
69pte_t *kmap_pte;
70EXPORT_SYMBOL(kmap_pte);
71pgprot_t kmap_prot;
72EXPORT_SYMBOL(kmap_prot);
73#define TOP_ZONE ZONE_HIGHMEM
74
75static inline pte_t *virt_to_kpte(unsigned long vaddr)
76{
77 return pte_offset_kernel(pmd_offset(pud_offset(pgd_offset_k(vaddr),
78 vaddr), vaddr), vaddr);
79}
80#else
81#define TOP_ZONE ZONE_NORMAL
82#endif
83
84int page_is_ram(unsigned long pfn)
85{
86 return memblock_is_memory(__pfn_to_phys(pfn));
87}
88
89pgprot_t phys_mem_access_prot(struct file *file, unsigned long pfn,
90 unsigned long size, pgprot_t vma_prot)
91{
92 if (ppc_md.phys_mem_access_prot)
93 return ppc_md.phys_mem_access_prot(file, pfn, size, vma_prot);
94
95 if (!page_is_ram(pfn))
96 vma_prot = pgprot_noncached(vma_prot);
97
98 return vma_prot;
99}
100EXPORT_SYMBOL(phys_mem_access_prot);
101
102#ifdef CONFIG_MEMORY_HOTPLUG
103
104#ifdef CONFIG_NUMA
105int memory_add_physaddr_to_nid(u64 start)
106{
107 return hot_add_scn_to_nid(start);
108}
109#endif
110
111int __weak create_section_mapping(unsigned long start, unsigned long end, int nid)
112{
113 return -ENODEV;
114}
115
116int __weak remove_section_mapping(unsigned long start, unsigned long end)
117{
118 return -ENODEV;
119}
120
121int __meminit arch_add_memory(int nid, u64 start, u64 size, struct vmem_altmap *altmap,
122 bool want_memblock)
123{
124 unsigned long start_pfn = start >> PAGE_SHIFT;
125 unsigned long nr_pages = size >> PAGE_SHIFT;
126 int rc;
127
128 resize_hpt_for_hotplug(memblock_phys_mem_size());
129
130 start = (unsigned long)__va(start);
131 rc = create_section_mapping(start, start + size, nid);
132 if (rc) {
133 pr_warn("Unable to create mapping for hot added memory 0x%llx..0x%llx: %d\n",
134 start, start + size, rc);
135 return -EFAULT;
136 }
137 flush_inval_dcache_range(start, start + size);
138
139 return __add_pages(nid, start_pfn, nr_pages, altmap, want_memblock);
140}
141
142#ifdef CONFIG_MEMORY_HOTREMOVE
143int __meminit arch_remove_memory(u64 start, u64 size, struct vmem_altmap *altmap)
144{
145 unsigned long start_pfn = start >> PAGE_SHIFT;
146 unsigned long nr_pages = size >> PAGE_SHIFT;
147 struct page *page;
148 int ret;
149
150 /*
151 * If we have an altmap then we need to skip over any reserved PFNs
152 * when querying the zone.
153 */
154 page = pfn_to_page(start_pfn);
155 if (altmap)
156 page += vmem_altmap_offset(altmap);
157
158 ret = __remove_pages(page_zone(page), start_pfn, nr_pages, altmap);
159 if (ret)
160 return ret;
161
162 /* Remove htab bolted mappings for this section of memory */
163 start = (unsigned long)__va(start);
164 flush_inval_dcache_range(start, start + size);
165 ret = remove_section_mapping(start, start + size);
166
167 /* Ensure all vmalloc mappings are flushed in case they also
168 * hit that section of memory
169 */
170 vm_unmap_aliases();
171
172 resize_hpt_for_hotplug(memblock_phys_mem_size());
173
174 return ret;
175}
176#endif
177#endif /* CONFIG_MEMORY_HOTPLUG */
178
179/*
180 * walk_memory_resource() needs to make sure there is no holes in a given
181 * memory range. PPC64 does not maintain the memory layout in /proc/iomem.
182 * Instead it maintains it in memblock.memory structures. Walk through the
183 * memory regions, find holes and callback for contiguous regions.
184 */
185int
186walk_system_ram_range(unsigned long start_pfn, unsigned long nr_pages,
187 void *arg, int (*func)(unsigned long, unsigned long, void *))
188{
189 struct memblock_region *reg;
190 unsigned long end_pfn = start_pfn + nr_pages;
191 unsigned long tstart, tend;
192 int ret = -1;
193
194 for_each_memblock(memory, reg) {
195 tstart = max(start_pfn, memblock_region_memory_base_pfn(reg));
196 tend = min(end_pfn, memblock_region_memory_end_pfn(reg));
197 if (tstart >= tend)
198 continue;
199 ret = (*func)(tstart, tend - tstart, arg);
200 if (ret)
201 break;
202 }
203 return ret;
204}
205EXPORT_SYMBOL_GPL(walk_system_ram_range);
206
207#ifndef CONFIG_NEED_MULTIPLE_NODES
208void __init mem_topology_setup(void)
209{
210 max_low_pfn = max_pfn = memblock_end_of_DRAM() >> PAGE_SHIFT;
211 min_low_pfn = MEMORY_START >> PAGE_SHIFT;
212#ifdef CONFIG_HIGHMEM
213 max_low_pfn = lowmem_end_addr >> PAGE_SHIFT;
214#endif
215
216 /* Place all memblock_regions in the same node and merge contiguous
217 * memblock_regions
218 */
219 memblock_set_node(0, PHYS_ADDR_MAX, &memblock.memory, 0);
220}
221
222void __init initmem_init(void)
223{
224 /* XXX need to clip this if using highmem? */
225 sparse_memory_present_with_active_regions(0);
226 sparse_init();
227}
228
229/* mark pages that don't exist as nosave */
230static int __init mark_nonram_nosave(void)
231{
232 struct memblock_region *reg, *prev = NULL;
233
234 for_each_memblock(memory, reg) {
235 if (prev &&
236 memblock_region_memory_end_pfn(prev) < memblock_region_memory_base_pfn(reg))
237 register_nosave_region(memblock_region_memory_end_pfn(prev),
238 memblock_region_memory_base_pfn(reg));
239 prev = reg;
240 }
241 return 0;
242}
243#else /* CONFIG_NEED_MULTIPLE_NODES */
244static int __init mark_nonram_nosave(void)
245{
246 return 0;
247}
248#endif
249
250static bool zone_limits_final;
251
252/*
253 * The memory zones past TOP_ZONE are managed by generic mm code.
254 * These should be set to zero since that's what every other
255 * architecture does.
256 */
257static unsigned long max_zone_pfns[MAX_NR_ZONES] = {
258 [0 ... TOP_ZONE ] = ~0UL,
259 [TOP_ZONE + 1 ... MAX_NR_ZONES - 1] = 0
260};
261
262/*
263 * Restrict the specified zone and all more restrictive zones
264 * to be below the specified pfn. May not be called after
265 * paging_init().
266 */
267void __init limit_zone_pfn(enum zone_type zone, unsigned long pfn_limit)
268{
269 int i;
270
271 if (WARN_ON(zone_limits_final))
272 return;
273
274 for (i = zone; i >= 0; i--) {
275 if (max_zone_pfns[i] > pfn_limit)
276 max_zone_pfns[i] = pfn_limit;
277 }
278}
279
280/*
281 * Find the least restrictive zone that is entirely below the
282 * specified pfn limit. Returns < 0 if no suitable zone is found.
283 *
284 * pfn_limit must be u64 because it can exceed 32 bits even on 32-bit
285 * systems -- the DMA limit can be higher than any possible real pfn.
286 */
287int dma_pfn_limit_to_zone(u64 pfn_limit)
288{
289 int i;
290
291 for (i = TOP_ZONE; i >= 0; i--) {
292 if (max_zone_pfns[i] <= pfn_limit)
293 return i;
294 }
295
296 return -EPERM;
297}
298
299/*
300 * paging_init() sets up the page tables - in fact we've already done this.
301 */
302void __init paging_init(void)
303{
304 unsigned long long total_ram = memblock_phys_mem_size();
305 phys_addr_t top_of_ram = memblock_end_of_DRAM();
306
307#ifdef CONFIG_PPC32
308 unsigned long v = __fix_to_virt(__end_of_fixed_addresses - 1);
309 unsigned long end = __fix_to_virt(FIX_HOLE);
310
311 for (; v < end; v += PAGE_SIZE)
312 map_kernel_page(v, 0, 0); /* XXX gross */
313#endif
314
315#ifdef CONFIG_HIGHMEM
316 map_kernel_page(PKMAP_BASE, 0, 0); /* XXX gross */
317 pkmap_page_table = virt_to_kpte(PKMAP_BASE);
318
319 kmap_pte = virt_to_kpte(__fix_to_virt(FIX_KMAP_BEGIN));
320 kmap_prot = PAGE_KERNEL;
321#endif /* CONFIG_HIGHMEM */
322
323 printk(KERN_DEBUG "Top of RAM: 0x%llx, Total RAM: 0x%llx\n",
324 (unsigned long long)top_of_ram, total_ram);
325 printk(KERN_DEBUG "Memory hole size: %ldMB\n",
326 (long int)((top_of_ram - total_ram) >> 20));
327
328#ifdef CONFIG_HIGHMEM
329 limit_zone_pfn(ZONE_NORMAL, lowmem_end_addr >> PAGE_SHIFT);
330#endif
331 limit_zone_pfn(TOP_ZONE, top_of_ram >> PAGE_SHIFT);
332 zone_limits_final = true;
333 free_area_init_nodes(max_zone_pfns);
334
335 mark_nonram_nosave();
336}
337
338void __init mem_init(void)
339{
340 /*
341 * book3s is limited to 16 page sizes due to encoding this in
342 * a 4-bit field for slices.
343 */
344 BUILD_BUG_ON(MMU_PAGE_COUNT > 16);
345
346#ifdef CONFIG_SWIOTLB
347 swiotlb_init(0);
348#endif
349
350 high_memory = (void *) __va(max_low_pfn * PAGE_SIZE);
351 set_max_mapnr(max_pfn);
352 free_all_bootmem();
353
354#ifdef CONFIG_HIGHMEM
355 {
356 unsigned long pfn, highmem_mapnr;
357
358 highmem_mapnr = lowmem_end_addr >> PAGE_SHIFT;
359 for (pfn = highmem_mapnr; pfn < max_mapnr; ++pfn) {
360 phys_addr_t paddr = (phys_addr_t)pfn << PAGE_SHIFT;
361 struct page *page = pfn_to_page(pfn);
362 if (!memblock_is_reserved(paddr))
363 free_highmem_page(page);
364 }
365 }
366#endif /* CONFIG_HIGHMEM */
367
368#if defined(CONFIG_PPC_FSL_BOOK3E) && !defined(CONFIG_SMP)
369 /*
370 * If smp is enabled, next_tlbcam_idx is initialized in the cpu up
371 * functions.... do it here for the non-smp case.
372 */
373 per_cpu(next_tlbcam_idx, smp_processor_id()) =
374 (mfspr(SPRN_TLB1CFG) & TLBnCFG_N_ENTRY) - 1;
375#endif
376
377 mem_init_print_info(NULL);
378#ifdef CONFIG_PPC32
379 pr_info("Kernel virtual memory layout:\n");
380 pr_info(" * 0x%08lx..0x%08lx : fixmap\n", FIXADDR_START, FIXADDR_TOP);
381#ifdef CONFIG_HIGHMEM
382 pr_info(" * 0x%08lx..0x%08lx : highmem PTEs\n",
383 PKMAP_BASE, PKMAP_ADDR(LAST_PKMAP));
384#endif /* CONFIG_HIGHMEM */
385#ifdef CONFIG_NOT_COHERENT_CACHE
386 pr_info(" * 0x%08lx..0x%08lx : consistent mem\n",
387 IOREMAP_TOP, IOREMAP_TOP + CONFIG_CONSISTENT_SIZE);
388#endif /* CONFIG_NOT_COHERENT_CACHE */
389 pr_info(" * 0x%08lx..0x%08lx : early ioremap\n",
390 ioremap_bot, IOREMAP_TOP);
391 pr_info(" * 0x%08lx..0x%08lx : vmalloc & ioremap\n",
392 VMALLOC_START, VMALLOC_END);
393#endif /* CONFIG_PPC32 */
394}
395
396void free_initmem(void)
397{
398 ppc_md.progress = ppc_printk_progress;
399 mark_initmem_nx();
400 init_mem_is_free = true;
401 free_initmem_default(POISON_FREE_INITMEM);
402}
403
404#ifdef CONFIG_BLK_DEV_INITRD
405void __init free_initrd_mem(unsigned long start, unsigned long end)
406{
407 free_reserved_area((void *)start, (void *)end, -1, "initrd");
408}
409#endif
410
411/*
412 * This is called when a page has been modified by the kernel.
413 * It just marks the page as not i-cache clean. We do the i-cache
414 * flush later when the page is given to a user process, if necessary.
415 */
416void flush_dcache_page(struct page *page)
417{
418 if (cpu_has_feature(CPU_FTR_COHERENT_ICACHE))
419 return;
420 /* avoid an atomic op if possible */
421 if (test_bit(PG_arch_1, &page->flags))
422 clear_bit(PG_arch_1, &page->flags);
423}
424EXPORT_SYMBOL(flush_dcache_page);
425
426void flush_dcache_icache_page(struct page *page)
427{
428#ifdef CONFIG_HUGETLB_PAGE
429 if (PageCompound(page)) {
430 flush_dcache_icache_hugepage(page);
431 return;
432 }
433#endif
434#if defined(CONFIG_PPC_8xx) || defined(CONFIG_PPC64)
435 /* On 8xx there is no need to kmap since highmem is not supported */
436 __flush_dcache_icache(page_address(page));
437#else
438 if (IS_ENABLED(CONFIG_BOOKE) || sizeof(phys_addr_t) > sizeof(void *)) {
439 void *start = kmap_atomic(page);
440 __flush_dcache_icache(start);
441 kunmap_atomic(start);
442 } else {
443 __flush_dcache_icache_phys(page_to_pfn(page) << PAGE_SHIFT);
444 }
445#endif
446}
447EXPORT_SYMBOL(flush_dcache_icache_page);
448
449void clear_user_page(void *page, unsigned long vaddr, struct page *pg)
450{
451 clear_page(page);
452
453 /*
454 * We shouldn't have to do this, but some versions of glibc
455 * require it (ld.so assumes zero filled pages are icache clean)
456 * - Anton
457 */
458 flush_dcache_page(pg);
459}
460EXPORT_SYMBOL(clear_user_page);
461
462void copy_user_page(void *vto, void *vfrom, unsigned long vaddr,
463 struct page *pg)
464{
465 copy_page(vto, vfrom);
466
467 /*
468 * We should be able to use the following optimisation, however
469 * there are two problems.
470 * Firstly a bug in some versions of binutils meant PLT sections
471 * were not marked executable.
472 * Secondly the first word in the GOT section is blrl, used
473 * to establish the GOT address. Until recently the GOT was
474 * not marked executable.
475 * - Anton
476 */
477#if 0
478 if (!vma->vm_file && ((vma->vm_flags & VM_EXEC) == 0))
479 return;
480#endif
481
482 flush_dcache_page(pg);
483}
484
485void flush_icache_user_range(struct vm_area_struct *vma, struct page *page,
486 unsigned long addr, int len)
487{
488 unsigned long maddr;
489
490 maddr = (unsigned long) kmap(page) + (addr & ~PAGE_MASK);
491 flush_icache_range(maddr, maddr + len);
492 kunmap(page);
493}
494EXPORT_SYMBOL(flush_icache_user_range);
495
496/*
497 * This is called at the end of handling a user page fault, when the
498 * fault has been handled by updating a PTE in the linux page tables.
499 * We use it to preload an HPTE into the hash table corresponding to
500 * the updated linux PTE.
501 *
502 * This must always be called with the pte lock held.
503 */
504void update_mmu_cache(struct vm_area_struct *vma, unsigned long address,
505 pte_t *ptep)
506{
507#ifdef CONFIG_PPC_STD_MMU
508 /*
509 * We don't need to worry about _PAGE_PRESENT here because we are
510 * called with either mm->page_table_lock held or ptl lock held
511 */
512 unsigned long access, trap;
513
514 if (radix_enabled()) {
515 prefetch((void *)address);
516 return;
517 }
518
519 /* We only want HPTEs for linux PTEs that have _PAGE_ACCESSED set */
520 if (!pte_young(*ptep) || address >= TASK_SIZE)
521 return;
522
523 /* We try to figure out if we are coming from an instruction
524 * access fault and pass that down to __hash_page so we avoid
525 * double-faulting on execution of fresh text. We have to test
526 * for regs NULL since init will get here first thing at boot
527 *
528 * We also avoid filling the hash if not coming from a fault
529 */
530
531 trap = current->thread.regs ? TRAP(current->thread.regs) : 0UL;
532 switch (trap) {
533 case 0x300:
534 access = 0UL;
535 break;
536 case 0x400:
537 access = _PAGE_EXEC;
538 break;
539 default:
540 return;
541 }
542
543 hash_preload(vma->vm_mm, address, access, trap);
544#endif /* CONFIG_PPC_STD_MMU */
545#if (defined(CONFIG_PPC_BOOK3E_64) || defined(CONFIG_PPC_FSL_BOOK3E)) \
546 && defined(CONFIG_HUGETLB_PAGE)
547 if (is_vm_hugetlb_page(vma))
548 book3e_hugetlb_preload(vma, address, *ptep);
549#endif
550}
551
552/*
553 * System memory should not be in /proc/iomem but various tools expect it
554 * (eg kdump).
555 */
556static int __init add_system_ram_resources(void)
557{
558 struct memblock_region *reg;
559
560 for_each_memblock(memory, reg) {
561 struct resource *res;
562 unsigned long base = reg->base;
563 unsigned long size = reg->size;
564
565 res = kzalloc(sizeof(struct resource), GFP_KERNEL);
566 WARN_ON(!res);
567
568 if (res) {
569 res->name = "System RAM";
570 res->start = base;
571 res->end = base + size - 1;
572 res->flags = IORESOURCE_SYSTEM_RAM | IORESOURCE_BUSY;
573 WARN_ON(request_resource(&iomem_resource, res) < 0);
574 }
575 }
576
577 return 0;
578}
579subsys_initcall(add_system_ram_resources);
580
581#ifdef CONFIG_STRICT_DEVMEM
582/*
583 * devmem_is_allowed(): check to see if /dev/mem access to a certain address
584 * is valid. The argument is a physical page number.
585 *
586 * Access has to be given to non-kernel-ram areas as well, these contain the
587 * PCI mmio resources as well as potential bios/acpi data regions.
588 */
589int devmem_is_allowed(unsigned long pfn)
590{
591 if (page_is_rtas_user_buf(pfn))
592 return 1;
593 if (iomem_is_exclusive(PFN_PHYS(pfn)))
594 return 0;
595 if (!page_is_ram(pfn))
596 return 1;
597 return 0;
598}
599#endif /* CONFIG_STRICT_DEVMEM */