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Mahesh Salgaonkareb39c882012-02-16 01:14:22 +00001/*
2 * Firmware Assisted dump: A robust mechanism to get reliable kernel crash
3 * dump with assistance from firmware. This approach does not use kexec,
4 * instead firmware assists in booting the kdump kernel while preserving
5 * memory contents. The most of the code implementation has been adapted
6 * from phyp assisted dump implementation written by Linas Vepstas and
7 * Manish Ahuja
8 *
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License as published by
11 * the Free Software Foundation; either version 2 of the License, or
12 * (at your option) any later version.
13 *
14 * This program is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 * GNU General Public License for more details.
18 *
19 * You should have received a copy of the GNU General Public License
20 * along with this program; if not, write to the Free Software
21 * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
22 *
23 * Copyright 2011 IBM Corporation
24 * Author: Mahesh Salgaonkar <mahesh@linux.vnet.ibm.com>
25 */
26
27#undef DEBUG
28#define pr_fmt(fmt) "fadump: " fmt
29
30#include <linux/string.h>
31#include <linux/memblock.h>
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +000032#include <linux/delay.h>
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +000033#include <linux/seq_file.h>
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +000034#include <linux/crash_dump.h>
Mahesh Salgaonkarb500aff2012-02-16 01:15:08 +000035#include <linux/kobject.h>
36#include <linux/sysfs.h>
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +000037
Michael Ellerman7644d582017-02-10 12:04:56 +110038#include <asm/debugfs.h>
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +000039#include <asm/page.h>
40#include <asm/prom.h>
41#include <asm/rtas.h>
42#include <asm/fadump.h>
Stephen Rothwellcad3c832012-03-30 14:01:07 +000043#include <asm/setup.h>
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +000044
45static struct fw_dump fw_dump;
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +000046static struct fadump_mem_struct fdm;
47static const struct fadump_mem_struct *fdm_active;
48
49static DEFINE_MUTEX(fadump_mutex);
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +000050struct fad_crash_memory_ranges crash_memory_ranges[INIT_CRASHMEM_RANGES];
51int crash_mem_ranges;
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +000052
53/* Scan the Firmware Assisted dump configuration details. */
54int __init early_init_dt_scan_fw_dump(unsigned long node,
55 const char *uname, int depth, void *data)
56{
Rob Herring9d0c4df2014-04-01 23:49:03 -050057 const __be32 *sections;
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +000058 int i, num_sections;
Rob Herring9d0c4df2014-04-01 23:49:03 -050059 int size;
Hari Bathini408cddd2014-10-01 12:32:30 +053060 const __be32 *token;
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +000061
62 if (depth != 1 || strcmp(uname, "rtas") != 0)
63 return 0;
64
65 /*
66 * Check if Firmware Assisted dump is supported. if yes, check
67 * if dump has been initiated on last reboot.
68 */
69 token = of_get_flat_dt_prop(node, "ibm,configure-kernel-dump", NULL);
70 if (!token)
Gavin Shana7d043172014-04-24 18:00:31 +100071 return 1;
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +000072
73 fw_dump.fadump_supported = 1;
Hari Bathini408cddd2014-10-01 12:32:30 +053074 fw_dump.ibm_configure_kernel_dump = be32_to_cpu(*token);
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +000075
76 /*
77 * The 'ibm,kernel-dump' rtas node is present only if there is
78 * dump data waiting for us.
79 */
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +000080 fdm_active = of_get_flat_dt_prop(node, "ibm,kernel-dump", NULL);
81 if (fdm_active)
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +000082 fw_dump.dump_active = 1;
83
84 /* Get the sizes required to store dump data for the firmware provided
85 * dump sections.
86 * For each dump section type supported, a 32bit cell which defines
87 * the ID of a supported section followed by two 32 bit cells which
88 * gives teh size of the section in bytes.
89 */
90 sections = of_get_flat_dt_prop(node, "ibm,configure-kernel-dump-sizes",
91 &size);
92
93 if (!sections)
Gavin Shana7d043172014-04-24 18:00:31 +100094 return 1;
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +000095
96 num_sections = size / (3 * sizeof(u32));
97
98 for (i = 0; i < num_sections; i++, sections += 3) {
99 u32 type = (u32)of_read_number(sections, 1);
100
101 switch (type) {
102 case FADUMP_CPU_STATE_DATA:
103 fw_dump.cpu_state_data_size =
104 of_read_ulong(&sections[1], 2);
105 break;
106 case FADUMP_HPTE_REGION:
107 fw_dump.hpte_region_size =
108 of_read_ulong(&sections[1], 2);
109 break;
110 }
111 }
Gavin Shana7d043172014-04-24 18:00:31 +1000112
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +0000113 return 1;
114}
115
Hari Bathinieae0dfc2017-06-01 22:51:26 +0530116/*
117 * If fadump is registered, check if the memory provided
118 * falls within boot memory area.
119 */
120int is_fadump_boot_memory_area(u64 addr, ulong size)
121{
122 if (!fw_dump.dump_registered)
123 return 0;
124
125 return (addr + size) > RMA_START && addr <= fw_dump.boot_memory_size;
126}
127
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000128int is_fadump_active(void)
129{
130 return fw_dump.dump_active;
131}
132
Hari Bathinia5a05b92017-06-01 22:52:10 +0530133/*
134 * Returns 1, if there are no holes in boot memory area,
135 * 0 otherwise.
136 */
137static int is_boot_memory_area_contiguous(void)
138{
139 struct memblock_region *reg;
140 unsigned long tstart, tend;
141 unsigned long start_pfn = PHYS_PFN(RMA_START);
142 unsigned long end_pfn = PHYS_PFN(RMA_START + fw_dump.boot_memory_size);
143 unsigned int ret = 0;
144
145 for_each_memblock(memory, reg) {
146 tstart = max(start_pfn, memblock_region_memory_base_pfn(reg));
147 tend = min(end_pfn, memblock_region_memory_end_pfn(reg));
148 if (tstart < tend) {
149 /* Memory hole from start_pfn to tstart */
150 if (tstart > start_pfn)
151 break;
152
153 if (tend == end_pfn) {
154 ret = 1;
155 break;
156 }
157
158 start_pfn = tend + 1;
159 }
160 }
161
162 return ret;
163}
164
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000165/* Print firmware assisted dump configurations for debugging purpose. */
166static void fadump_show_config(void)
167{
168 pr_debug("Support for firmware-assisted dump (fadump): %s\n",
169 (fw_dump.fadump_supported ? "present" : "no support"));
170
171 if (!fw_dump.fadump_supported)
172 return;
173
174 pr_debug("Fadump enabled : %s\n",
175 (fw_dump.fadump_enabled ? "yes" : "no"));
176 pr_debug("Dump Active : %s\n",
177 (fw_dump.dump_active ? "yes" : "no"));
178 pr_debug("Dump section sizes:\n");
179 pr_debug(" CPU state data size: %lx\n", fw_dump.cpu_state_data_size);
180 pr_debug(" HPTE region size : %lx\n", fw_dump.hpte_region_size);
181 pr_debug("Boot memory size : %lx\n", fw_dump.boot_memory_size);
182}
183
184static unsigned long init_fadump_mem_struct(struct fadump_mem_struct *fdm,
185 unsigned long addr)
186{
187 if (!fdm)
188 return 0;
189
190 memset(fdm, 0, sizeof(struct fadump_mem_struct));
191 addr = addr & PAGE_MASK;
192
Hari Bathini408cddd2014-10-01 12:32:30 +0530193 fdm->header.dump_format_version = cpu_to_be32(0x00000001);
194 fdm->header.dump_num_sections = cpu_to_be16(3);
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000195 fdm->header.dump_status_flag = 0;
196 fdm->header.offset_first_dump_section =
Hari Bathini408cddd2014-10-01 12:32:30 +0530197 cpu_to_be32((u32)offsetof(struct fadump_mem_struct, cpu_state_data));
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000198
199 /*
200 * Fields for disk dump option.
201 * We are not using disk dump option, hence set these fields to 0.
202 */
203 fdm->header.dd_block_size = 0;
204 fdm->header.dd_block_offset = 0;
205 fdm->header.dd_num_blocks = 0;
206 fdm->header.dd_offset_disk_path = 0;
207
208 /* set 0 to disable an automatic dump-reboot. */
209 fdm->header.max_time_auto = 0;
210
211 /* Kernel dump sections */
212 /* cpu state data section. */
Hari Bathini408cddd2014-10-01 12:32:30 +0530213 fdm->cpu_state_data.request_flag = cpu_to_be32(FADUMP_REQUEST_FLAG);
214 fdm->cpu_state_data.source_data_type = cpu_to_be16(FADUMP_CPU_STATE_DATA);
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000215 fdm->cpu_state_data.source_address = 0;
Hari Bathini408cddd2014-10-01 12:32:30 +0530216 fdm->cpu_state_data.source_len = cpu_to_be64(fw_dump.cpu_state_data_size);
217 fdm->cpu_state_data.destination_address = cpu_to_be64(addr);
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000218 addr += fw_dump.cpu_state_data_size;
219
220 /* hpte region section */
Hari Bathini408cddd2014-10-01 12:32:30 +0530221 fdm->hpte_region.request_flag = cpu_to_be32(FADUMP_REQUEST_FLAG);
222 fdm->hpte_region.source_data_type = cpu_to_be16(FADUMP_HPTE_REGION);
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000223 fdm->hpte_region.source_address = 0;
Hari Bathini408cddd2014-10-01 12:32:30 +0530224 fdm->hpte_region.source_len = cpu_to_be64(fw_dump.hpte_region_size);
225 fdm->hpte_region.destination_address = cpu_to_be64(addr);
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000226 addr += fw_dump.hpte_region_size;
227
228 /* RMA region section */
Hari Bathini408cddd2014-10-01 12:32:30 +0530229 fdm->rmr_region.request_flag = cpu_to_be32(FADUMP_REQUEST_FLAG);
230 fdm->rmr_region.source_data_type = cpu_to_be16(FADUMP_REAL_MODE_REGION);
231 fdm->rmr_region.source_address = cpu_to_be64(RMA_START);
232 fdm->rmr_region.source_len = cpu_to_be64(fw_dump.boot_memory_size);
233 fdm->rmr_region.destination_address = cpu_to_be64(addr);
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000234 addr += fw_dump.boot_memory_size;
235
236 return addr;
237}
238
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +0000239/**
240 * fadump_calculate_reserve_size(): reserve variable boot area 5% of System RAM
241 *
242 * Function to find the largest memory size we need to reserve during early
243 * boot process. This will be the size of the memory that is required for a
244 * kernel to boot successfully.
245 *
246 * This function has been taken from phyp-assisted dump feature implementation.
247 *
248 * returns larger of 256MB or 5% rounded down to multiples of 256MB.
249 *
250 * TODO: Come up with better approach to find out more accurate memory size
251 * that is required for a kernel to boot successfully.
252 *
253 */
254static inline unsigned long fadump_calculate_reserve_size(void)
255{
Hari Bathini11550dc2017-05-08 15:56:28 -0700256 int ret;
257 unsigned long long base, size;
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +0000258
Hari Bathini81d9eca2017-05-22 15:04:23 +0530259 if (fw_dump.reserve_bootvar)
260 pr_warn("'fadump_reserve_mem=' parameter is deprecated in favor of 'crashkernel=' parameter.\n");
261
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +0000262 /*
Hari Bathini11550dc2017-05-08 15:56:28 -0700263 * Check if the size is specified through crashkernel= cmdline
Hari Bathinie7467dc2017-05-22 15:04:47 +0530264 * option. If yes, then use that but ignore base as fadump reserves
265 * memory at a predefined offset.
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +0000266 */
Hari Bathini11550dc2017-05-08 15:56:28 -0700267 ret = parse_crashkernel(boot_command_line, memblock_phys_mem_size(),
268 &size, &base);
269 if (ret == 0 && size > 0) {
Hari Bathini48a316e2017-06-02 13:00:27 +0530270 unsigned long max_size;
271
Hari Bathini81d9eca2017-05-22 15:04:23 +0530272 if (fw_dump.reserve_bootvar)
273 pr_info("Using 'crashkernel=' parameter for memory reservation.\n");
274
Hari Bathini11550dc2017-05-08 15:56:28 -0700275 fw_dump.reserve_bootvar = (unsigned long)size;
Hari Bathini48a316e2017-06-02 13:00:27 +0530276
277 /*
278 * Adjust if the boot memory size specified is above
279 * the upper limit.
280 */
281 max_size = memblock_phys_mem_size() / MAX_BOOT_MEM_RATIO;
282 if (fw_dump.reserve_bootvar > max_size) {
283 fw_dump.reserve_bootvar = max_size;
284 pr_info("Adjusted boot memory size to %luMB\n",
285 (fw_dump.reserve_bootvar >> 20));
286 }
287
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +0000288 return fw_dump.reserve_bootvar;
Hari Bathini81d9eca2017-05-22 15:04:23 +0530289 } else if (fw_dump.reserve_bootvar) {
290 /*
291 * 'fadump_reserve_mem=' is being used to reserve memory
292 * for firmware-assisted dump.
293 */
294 return fw_dump.reserve_bootvar;
Hari Bathini11550dc2017-05-08 15:56:28 -0700295 }
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +0000296
297 /* divide by 20 to get 5% of value */
Hari Bathini48a316e2017-06-02 13:00:27 +0530298 size = memblock_phys_mem_size() / 20;
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +0000299
300 /* round it down in multiples of 256 */
301 size = size & ~0x0FFFFFFFUL;
302
303 /* Truncate to memory_limit. We don't want to over reserve the memory.*/
304 if (memory_limit && size > memory_limit)
305 size = memory_limit;
306
307 return (size > MIN_BOOT_MEM ? size : MIN_BOOT_MEM);
308}
309
310/*
311 * Calculate the total memory size required to be reserved for
312 * firmware-assisted dump registration.
313 */
314static unsigned long get_fadump_area_size(void)
315{
316 unsigned long size = 0;
317
318 size += fw_dump.cpu_state_data_size;
319 size += fw_dump.hpte_region_size;
320 size += fw_dump.boot_memory_size;
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +0000321 size += sizeof(struct fadump_crash_info_header);
322 size += sizeof(struct elfhdr); /* ELF core header.*/
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000323 size += sizeof(struct elf_phdr); /* place holder for cpu notes */
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +0000324 /* Program headers for crash memory regions. */
325 size += sizeof(struct elf_phdr) * (memblock_num_regions(memory) + 2);
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +0000326
327 size = PAGE_ALIGN(size);
328 return size;
329}
330
331int __init fadump_reserve_mem(void)
332{
333 unsigned long base, size, memory_boundary;
334
335 if (!fw_dump.fadump_enabled)
336 return 0;
337
338 if (!fw_dump.fadump_supported) {
339 printk(KERN_INFO "Firmware-assisted dump is not supported on"
340 " this hardware\n");
341 fw_dump.fadump_enabled = 0;
342 return 0;
343 }
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000344 /*
345 * Initialize boot memory size
346 * If dump is active then we have already calculated the size during
347 * first kernel.
348 */
349 if (fdm_active)
Hari Bathini408cddd2014-10-01 12:32:30 +0530350 fw_dump.boot_memory_size = be64_to_cpu(fdm_active->rmr_region.source_len);
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000351 else
352 fw_dump.boot_memory_size = fadump_calculate_reserve_size();
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +0000353
354 /*
355 * Calculate the memory boundary.
356 * If memory_limit is less than actual memory boundary then reserve
357 * the memory for fadump beyond the memory_limit and adjust the
358 * memory_limit accordingly, so that the running kernel can run with
359 * specified memory_limit.
360 */
361 if (memory_limit && memory_limit < memblock_end_of_DRAM()) {
362 size = get_fadump_area_size();
363 if ((memory_limit + size) < memblock_end_of_DRAM())
364 memory_limit += size;
365 else
366 memory_limit = memblock_end_of_DRAM();
367 printk(KERN_INFO "Adjusted memory_limit for firmware-assisted"
Suzuki Poulosea84fcd42012-08-21 01:42:33 +0000368 " dump, now %#016llx\n", memory_limit);
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +0000369 }
370 if (memory_limit)
371 memory_boundary = memory_limit;
372 else
373 memory_boundary = memblock_end_of_DRAM();
374
375 if (fw_dump.dump_active) {
376 printk(KERN_INFO "Firmware-assisted dump is active.\n");
377 /*
378 * If last boot has crashed then reserve all the memory
379 * above boot_memory_size so that we don't touch it until
380 * dump is written to disk by userspace tool. This memory
381 * will be released for general use once the dump is saved.
382 */
383 base = fw_dump.boot_memory_size;
384 size = memory_boundary - base;
385 memblock_reserve(base, size);
386 printk(KERN_INFO "Reserved %ldMB of memory at %ldMB "
387 "for saving crash dump\n",
388 (unsigned long)(size >> 20),
389 (unsigned long)(base >> 20));
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +0000390
391 fw_dump.fadumphdr_addr =
Hari Bathini408cddd2014-10-01 12:32:30 +0530392 be64_to_cpu(fdm_active->rmr_region.destination_address) +
393 be64_to_cpu(fdm_active->rmr_region.source_len);
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +0000394 pr_debug("fadumphdr_addr = %p\n",
395 (void *) fw_dump.fadumphdr_addr);
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +0000396 } else {
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +0000397 size = get_fadump_area_size();
Hari Bathinif6e6bed2017-03-17 02:35:26 +0530398
399 /*
400 * Reserve memory at an offset closer to bottom of the RAM to
401 * minimize the impact of memory hot-remove operation. We can't
402 * use memblock_find_in_range() here since it doesn't allocate
403 * from bottom to top.
404 */
405 for (base = fw_dump.boot_memory_size;
406 base <= (memory_boundary - size);
407 base += size) {
408 if (memblock_is_region_memory(base, size) &&
409 !memblock_is_region_reserved(base, size))
410 break;
411 }
412 if ((base > (memory_boundary - size)) ||
413 memblock_reserve(base, size)) {
414 pr_err("Failed to reserve memory\n");
415 return 0;
416 }
417
418 pr_info("Reserved %ldMB of memory at %ldMB for firmware-"
419 "assisted dump (System RAM: %ldMB)\n",
420 (unsigned long)(size >> 20),
421 (unsigned long)(base >> 20),
422 (unsigned long)(memblock_phys_mem_size() >> 20));
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +0000423 }
Hari Bathinif6e6bed2017-03-17 02:35:26 +0530424
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +0000425 fw_dump.reserve_dump_area_start = base;
426 fw_dump.reserve_dump_area_size = size;
427 return 1;
428}
429
Srikar Dronamraju1e76609c2016-10-07 16:59:21 -0700430unsigned long __init arch_reserved_kernel_pages(void)
431{
432 return memblock_reserved_size() / PAGE_SIZE;
433}
434
Mahesh Salgaonkareb39c882012-02-16 01:14:22 +0000435/* Look for fadump= cmdline option. */
436static int __init early_fadump_param(char *p)
437{
438 if (!p)
439 return 1;
440
441 if (strncmp(p, "on", 2) == 0)
442 fw_dump.fadump_enabled = 1;
443 else if (strncmp(p, "off", 3) == 0)
444 fw_dump.fadump_enabled = 0;
445
446 return 0;
447}
448early_param("fadump", early_fadump_param);
449
Hari Bathini81d9eca2017-05-22 15:04:23 +0530450/*
451 * Look for fadump_reserve_mem= cmdline option
452 * TODO: Remove references to 'fadump_reserve_mem=' parameter,
453 * the sooner 'crashkernel=' parameter is accustomed to.
454 */
455static int __init early_fadump_reserve_mem(char *p)
456{
457 if (p)
458 fw_dump.reserve_bootvar = memparse(p, &p);
459 return 0;
460}
461early_param("fadump_reserve_mem", early_fadump_reserve_mem);
462
Michal Suchanek98b8cd72017-05-27 17:46:15 +0200463static int register_fw_dump(struct fadump_mem_struct *fdm)
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000464{
Michal Suchanek98b8cd72017-05-27 17:46:15 +0200465 int rc, err;
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000466 unsigned int wait_time;
467
468 pr_debug("Registering for firmware-assisted kernel dump...\n");
469
470 /* TODO: Add upper time limit for the delay */
471 do {
472 rc = rtas_call(fw_dump.ibm_configure_kernel_dump, 3, 1, NULL,
473 FADUMP_REGISTER, fdm,
474 sizeof(struct fadump_mem_struct));
475
476 wait_time = rtas_busy_delay_time(rc);
477 if (wait_time)
478 mdelay(wait_time);
479
480 } while (wait_time);
481
Michal Suchanek98b8cd72017-05-27 17:46:15 +0200482 err = -EIO;
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000483 switch (rc) {
Michal Suchanek98b8cd72017-05-27 17:46:15 +0200484 default:
485 pr_err("Failed to register. Unknown Error(%d).\n", rc);
486 break;
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000487 case -1:
488 printk(KERN_ERR "Failed to register firmware-assisted kernel"
489 " dump. Hardware Error(%d).\n", rc);
490 break;
491 case -3:
Hari Bathinia5a05b92017-06-01 22:52:10 +0530492 if (!is_boot_memory_area_contiguous())
493 pr_err("Can't have holes in boot memory area while "
494 "registering fadump\n");
495
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000496 printk(KERN_ERR "Failed to register firmware-assisted kernel"
497 " dump. Parameter Error(%d).\n", rc);
Michal Suchanek98b8cd72017-05-27 17:46:15 +0200498 err = -EINVAL;
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000499 break;
500 case -9:
501 printk(KERN_ERR "firmware-assisted kernel dump is already "
502 " registered.");
503 fw_dump.dump_registered = 1;
Michal Suchanek98b8cd72017-05-27 17:46:15 +0200504 err = -EEXIST;
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000505 break;
506 case 0:
507 printk(KERN_INFO "firmware-assisted kernel dump registration"
508 " is successful\n");
509 fw_dump.dump_registered = 1;
Michal Suchanek98b8cd72017-05-27 17:46:15 +0200510 err = 0;
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000511 break;
512 }
Michal Suchanek98b8cd72017-05-27 17:46:15 +0200513 return err;
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +0000514}
515
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000516void crash_fadump(struct pt_regs *regs, const char *str)
517{
518 struct fadump_crash_info_header *fdh = NULL;
Mahesh Salgaonkarf2a5e8f2016-10-24 23:51:51 +0530519 int old_cpu, this_cpu;
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000520
521 if (!fw_dump.dump_registered || !fw_dump.fadumphdr_addr)
522 return;
523
Mahesh Salgaonkarf2a5e8f2016-10-24 23:51:51 +0530524 /*
525 * old_cpu == -1 means this is the first CPU which has come here,
526 * go ahead and trigger fadump.
527 *
528 * old_cpu != -1 means some other CPU has already on it's way
529 * to trigger fadump, just keep looping here.
530 */
531 this_cpu = smp_processor_id();
532 old_cpu = cmpxchg(&crashing_cpu, -1, this_cpu);
533
534 if (old_cpu != -1) {
535 /*
536 * We can't loop here indefinitely. Wait as long as fadump
537 * is in force. If we race with fadump un-registration this
538 * loop will break and then we go down to normal panic path
539 * and reboot. If fadump is in force the first crashing
540 * cpu will definitely trigger fadump.
541 */
542 while (fw_dump.dump_registered)
543 cpu_relax();
544 return;
545 }
546
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000547 fdh = __va(fw_dump.fadumphdr_addr);
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000548 fdh->crashing_cpu = crashing_cpu;
549 crash_save_vmcoreinfo();
550
551 if (regs)
552 fdh->regs = *regs;
553 else
554 ppc_save_regs(&fdh->regs);
555
Rasmus Villemoesa0512162016-01-20 15:00:13 -0800556 fdh->online_mask = *cpu_online_mask;
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000557
558 /* Call ibm,os-term rtas call to trigger firmware assisted dump */
559 rtas_os_term((char *)str);
560}
561
562#define GPR_MASK 0xffffff0000000000
563static inline int fadump_gpr_index(u64 id)
564{
565 int i = -1;
566 char str[3];
567
568 if ((id & GPR_MASK) == REG_ID("GPR")) {
569 /* get the digits at the end */
570 id &= ~GPR_MASK;
571 id >>= 24;
572 str[2] = '\0';
573 str[1] = id & 0xff;
574 str[0] = (id >> 8) & 0xff;
575 sscanf(str, "%d", &i);
576 if (i > 31)
577 i = -1;
578 }
579 return i;
580}
581
582static inline void fadump_set_regval(struct pt_regs *regs, u64 reg_id,
583 u64 reg_val)
584{
585 int i;
586
587 i = fadump_gpr_index(reg_id);
588 if (i >= 0)
589 regs->gpr[i] = (unsigned long)reg_val;
590 else if (reg_id == REG_ID("NIA"))
591 regs->nip = (unsigned long)reg_val;
592 else if (reg_id == REG_ID("MSR"))
593 regs->msr = (unsigned long)reg_val;
594 else if (reg_id == REG_ID("CTR"))
595 regs->ctr = (unsigned long)reg_val;
596 else if (reg_id == REG_ID("LR"))
597 regs->link = (unsigned long)reg_val;
598 else if (reg_id == REG_ID("XER"))
599 regs->xer = (unsigned long)reg_val;
600 else if (reg_id == REG_ID("CR"))
601 regs->ccr = (unsigned long)reg_val;
602 else if (reg_id == REG_ID("DAR"))
603 regs->dar = (unsigned long)reg_val;
604 else if (reg_id == REG_ID("DSISR"))
605 regs->dsisr = (unsigned long)reg_val;
606}
607
608static struct fadump_reg_entry*
609fadump_read_registers(struct fadump_reg_entry *reg_entry, struct pt_regs *regs)
610{
611 memset(regs, 0, sizeof(struct pt_regs));
612
Hari Bathini408cddd2014-10-01 12:32:30 +0530613 while (be64_to_cpu(reg_entry->reg_id) != REG_ID("CPUEND")) {
614 fadump_set_regval(regs, be64_to_cpu(reg_entry->reg_id),
615 be64_to_cpu(reg_entry->reg_value));
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000616 reg_entry++;
617 }
618 reg_entry++;
619 return reg_entry;
620}
621
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000622static u32 *fadump_regs_to_elf_notes(u32 *buf, struct pt_regs *regs)
623{
624 struct elf_prstatus prstatus;
625
626 memset(&prstatus, 0, sizeof(prstatus));
627 /*
628 * FIXME: How do i get PID? Do I really need it?
629 * prstatus.pr_pid = ????
630 */
631 elf_core_copy_kernel_regs(&prstatus.pr_reg, regs);
Hari Bathini22bd0172017-05-08 15:56:24 -0700632 buf = append_elf_note(buf, CRASH_CORE_NOTE_NAME, NT_PRSTATUS,
633 &prstatus, sizeof(prstatus));
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000634 return buf;
635}
636
637static void fadump_update_elfcore_header(char *bufp)
638{
639 struct elfhdr *elf;
640 struct elf_phdr *phdr;
641
642 elf = (struct elfhdr *)bufp;
643 bufp += sizeof(struct elfhdr);
644
645 /* First note is a place holder for cpu notes info. */
646 phdr = (struct elf_phdr *)bufp;
647
648 if (phdr->p_type == PT_NOTE) {
649 phdr->p_paddr = fw_dump.cpu_notes_buf;
650 phdr->p_offset = phdr->p_paddr;
651 phdr->p_filesz = fw_dump.cpu_notes_buf_size;
652 phdr->p_memsz = fw_dump.cpu_notes_buf_size;
653 }
654 return;
655}
656
657static void *fadump_cpu_notes_buf_alloc(unsigned long size)
658{
659 void *vaddr;
660 struct page *page;
661 unsigned long order, count, i;
662
663 order = get_order(size);
664 vaddr = (void *)__get_free_pages(GFP_KERNEL|__GFP_ZERO, order);
665 if (!vaddr)
666 return NULL;
667
668 count = 1 << order;
669 page = virt_to_page(vaddr);
670 for (i = 0; i < count; i++)
671 SetPageReserved(page + i);
672 return vaddr;
673}
674
675static void fadump_cpu_notes_buf_free(unsigned long vaddr, unsigned long size)
676{
677 struct page *page;
678 unsigned long order, count, i;
679
680 order = get_order(size);
681 count = 1 << order;
682 page = virt_to_page(vaddr);
683 for (i = 0; i < count; i++)
684 ClearPageReserved(page + i);
685 __free_pages(page, order);
686}
687
688/*
689 * Read CPU state dump data and convert it into ELF notes.
690 * The CPU dump starts with magic number "REGSAVE". NumCpusOffset should be
691 * used to access the data to allow for additional fields to be added without
692 * affecting compatibility. Each list of registers for a CPU starts with
693 * "CPUSTRT" and ends with "CPUEND". Each register entry is of 16 bytes,
694 * 8 Byte ASCII identifier and 8 Byte register value. The register entry
695 * with identifier "CPUSTRT" and "CPUEND" contains 4 byte cpu id as part
696 * of register value. For more details refer to PAPR document.
697 *
698 * Only for the crashing cpu we ignore the CPU dump data and get exact
699 * state from fadump crash info structure populated by first kernel at the
700 * time of crash.
701 */
702static int __init fadump_build_cpu_notes(const struct fadump_mem_struct *fdm)
703{
704 struct fadump_reg_save_area_header *reg_header;
705 struct fadump_reg_entry *reg_entry;
706 struct fadump_crash_info_header *fdh = NULL;
707 void *vaddr;
708 unsigned long addr;
709 u32 num_cpus, *note_buf;
710 struct pt_regs regs;
711 int i, rc = 0, cpu = 0;
712
713 if (!fdm->cpu_state_data.bytes_dumped)
714 return -EINVAL;
715
Hari Bathini408cddd2014-10-01 12:32:30 +0530716 addr = be64_to_cpu(fdm->cpu_state_data.destination_address);
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000717 vaddr = __va(addr);
718
719 reg_header = vaddr;
Hari Bathini408cddd2014-10-01 12:32:30 +0530720 if (be64_to_cpu(reg_header->magic_number) != REGSAVE_AREA_MAGIC) {
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000721 printk(KERN_ERR "Unable to read register save area.\n");
722 return -ENOENT;
723 }
724 pr_debug("--------CPU State Data------------\n");
Hari Bathini408cddd2014-10-01 12:32:30 +0530725 pr_debug("Magic Number: %llx\n", be64_to_cpu(reg_header->magic_number));
726 pr_debug("NumCpuOffset: %x\n", be32_to_cpu(reg_header->num_cpu_offset));
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000727
Hari Bathini408cddd2014-10-01 12:32:30 +0530728 vaddr += be32_to_cpu(reg_header->num_cpu_offset);
729 num_cpus = be32_to_cpu(*((__be32 *)(vaddr)));
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000730 pr_debug("NumCpus : %u\n", num_cpus);
731 vaddr += sizeof(u32);
732 reg_entry = (struct fadump_reg_entry *)vaddr;
733
734 /* Allocate buffer to hold cpu crash notes. */
735 fw_dump.cpu_notes_buf_size = num_cpus * sizeof(note_buf_t);
736 fw_dump.cpu_notes_buf_size = PAGE_ALIGN(fw_dump.cpu_notes_buf_size);
737 note_buf = fadump_cpu_notes_buf_alloc(fw_dump.cpu_notes_buf_size);
738 if (!note_buf) {
739 printk(KERN_ERR "Failed to allocate 0x%lx bytes for "
740 "cpu notes buffer\n", fw_dump.cpu_notes_buf_size);
741 return -ENOMEM;
742 }
743 fw_dump.cpu_notes_buf = __pa(note_buf);
744
745 pr_debug("Allocated buffer for cpu notes of size %ld at %p\n",
746 (num_cpus * sizeof(note_buf_t)), note_buf);
747
748 if (fw_dump.fadumphdr_addr)
749 fdh = __va(fw_dump.fadumphdr_addr);
750
751 for (i = 0; i < num_cpus; i++) {
Hari Bathini408cddd2014-10-01 12:32:30 +0530752 if (be64_to_cpu(reg_entry->reg_id) != REG_ID("CPUSTRT")) {
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000753 printk(KERN_ERR "Unable to read CPU state data\n");
754 rc = -ENOENT;
755 goto error_out;
756 }
757 /* Lower 4 bytes of reg_value contains logical cpu id */
Hari Bathini408cddd2014-10-01 12:32:30 +0530758 cpu = be64_to_cpu(reg_entry->reg_value) & FADUMP_CPU_ID_MASK;
Rasmus Villemoesa0512162016-01-20 15:00:13 -0800759 if (fdh && !cpumask_test_cpu(cpu, &fdh->online_mask)) {
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000760 SKIP_TO_NEXT_CPU(reg_entry);
761 continue;
762 }
763 pr_debug("Reading register data for cpu %d...\n", cpu);
764 if (fdh && fdh->crashing_cpu == cpu) {
765 regs = fdh->regs;
766 note_buf = fadump_regs_to_elf_notes(note_buf, &regs);
767 SKIP_TO_NEXT_CPU(reg_entry);
768 } else {
769 reg_entry++;
770 reg_entry = fadump_read_registers(reg_entry, &regs);
771 note_buf = fadump_regs_to_elf_notes(note_buf, &regs);
772 }
773 }
Hari Bathini22bd0172017-05-08 15:56:24 -0700774 final_note(note_buf);
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000775
Rickard Strandqvistb717d982014-05-23 00:03:16 +0200776 if (fdh) {
777 pr_debug("Updating elfcore header (%llx) with cpu notes\n",
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000778 fdh->elfcorehdr_addr);
Rickard Strandqvistb717d982014-05-23 00:03:16 +0200779 fadump_update_elfcore_header((char *)__va(fdh->elfcorehdr_addr));
780 }
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000781 return 0;
782
783error_out:
784 fadump_cpu_notes_buf_free((unsigned long)__va(fw_dump.cpu_notes_buf),
785 fw_dump.cpu_notes_buf_size);
786 fw_dump.cpu_notes_buf = 0;
787 fw_dump.cpu_notes_buf_size = 0;
788 return rc;
789
790}
791
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +0000792/*
793 * Validate and process the dump data stored by firmware before exporting
794 * it through '/proc/vmcore'.
795 */
796static int __init process_fadump(const struct fadump_mem_struct *fdm_active)
797{
798 struct fadump_crash_info_header *fdh;
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000799 int rc = 0;
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +0000800
801 if (!fdm_active || !fw_dump.fadumphdr_addr)
802 return -EINVAL;
803
804 /* Check if the dump data is valid. */
Hari Bathini408cddd2014-10-01 12:32:30 +0530805 if ((be16_to_cpu(fdm_active->header.dump_status_flag) == FADUMP_ERROR_FLAG) ||
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000806 (fdm_active->cpu_state_data.error_flags != 0) ||
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +0000807 (fdm_active->rmr_region.error_flags != 0)) {
808 printk(KERN_ERR "Dump taken by platform is not valid\n");
809 return -EINVAL;
810 }
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000811 if ((fdm_active->rmr_region.bytes_dumped !=
812 fdm_active->rmr_region.source_len) ||
813 !fdm_active->cpu_state_data.bytes_dumped) {
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +0000814 printk(KERN_ERR "Dump taken by platform is incomplete\n");
815 return -EINVAL;
816 }
817
818 /* Validate the fadump crash info header */
819 fdh = __va(fw_dump.fadumphdr_addr);
820 if (fdh->magic_number != FADUMP_CRASH_INFO_MAGIC) {
821 printk(KERN_ERR "Crash info header is not valid.\n");
822 return -EINVAL;
823 }
824
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000825 rc = fadump_build_cpu_notes(fdm_active);
826 if (rc)
827 return rc;
828
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +0000829 /*
830 * We are done validating dump info and elfcore header is now ready
831 * to be exported. set elfcorehdr_addr so that vmcore module will
832 * export the elfcore header through '/proc/vmcore'.
833 */
834 elfcorehdr_addr = fdh->elfcorehdr_addr;
835
836 return 0;
837}
838
839static inline void fadump_add_crash_memory(unsigned long long base,
840 unsigned long long end)
841{
842 if (base == end)
843 return;
844
845 pr_debug("crash_memory_range[%d] [%#016llx-%#016llx], %#llx bytes\n",
846 crash_mem_ranges, base, end - 1, (end - base));
847 crash_memory_ranges[crash_mem_ranges].base = base;
848 crash_memory_ranges[crash_mem_ranges].size = end - base;
849 crash_mem_ranges++;
850}
851
852static void fadump_exclude_reserved_area(unsigned long long start,
853 unsigned long long end)
854{
855 unsigned long long ra_start, ra_end;
856
857 ra_start = fw_dump.reserve_dump_area_start;
858 ra_end = ra_start + fw_dump.reserve_dump_area_size;
859
860 if ((ra_start < end) && (ra_end > start)) {
861 if ((start < ra_start) && (end > ra_end)) {
862 fadump_add_crash_memory(start, ra_start);
863 fadump_add_crash_memory(ra_end, end);
864 } else if (start < ra_start) {
865 fadump_add_crash_memory(start, ra_start);
866 } else if (ra_end < end) {
867 fadump_add_crash_memory(ra_end, end);
868 }
869 } else
870 fadump_add_crash_memory(start, end);
871}
872
873static int fadump_init_elfcore_header(char *bufp)
874{
875 struct elfhdr *elf;
876
877 elf = (struct elfhdr *) bufp;
878 bufp += sizeof(struct elfhdr);
879 memcpy(elf->e_ident, ELFMAG, SELFMAG);
880 elf->e_ident[EI_CLASS] = ELF_CLASS;
881 elf->e_ident[EI_DATA] = ELF_DATA;
882 elf->e_ident[EI_VERSION] = EV_CURRENT;
883 elf->e_ident[EI_OSABI] = ELF_OSABI;
884 memset(elf->e_ident+EI_PAD, 0, EI_NIDENT-EI_PAD);
885 elf->e_type = ET_CORE;
886 elf->e_machine = ELF_ARCH;
887 elf->e_version = EV_CURRENT;
888 elf->e_entry = 0;
889 elf->e_phoff = sizeof(struct elfhdr);
890 elf->e_shoff = 0;
Daniel Axtensd8bced22016-09-06 15:32:42 +1000891#if defined(_CALL_ELF)
892 elf->e_flags = _CALL_ELF;
893#else
894 elf->e_flags = 0;
895#endif
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +0000896 elf->e_ehsize = sizeof(struct elfhdr);
897 elf->e_phentsize = sizeof(struct elf_phdr);
898 elf->e_phnum = 0;
899 elf->e_shentsize = 0;
900 elf->e_shnum = 0;
901 elf->e_shstrndx = 0;
902
903 return 0;
904}
905
906/*
907 * Traverse through memblock structure and setup crash memory ranges. These
908 * ranges will be used create PT_LOAD program headers in elfcore header.
909 */
910static void fadump_setup_crash_memory_ranges(void)
911{
912 struct memblock_region *reg;
913 unsigned long long start, end;
914
915 pr_debug("Setup crash memory ranges.\n");
916 crash_mem_ranges = 0;
917 /*
918 * add the first memory chunk (RMA_START through boot_memory_size) as
919 * a separate memory chunk. The reason is, at the time crash firmware
920 * will move the content of this memory chunk to different location
921 * specified during fadump registration. We need to create a separate
922 * program header for this chunk with the correct offset.
923 */
924 fadump_add_crash_memory(RMA_START, fw_dump.boot_memory_size);
925
926 for_each_memblock(memory, reg) {
927 start = (unsigned long long)reg->base;
928 end = start + (unsigned long long)reg->size;
Hari Bathinia77af5522017-06-01 22:50:38 +0530929
930 /*
931 * skip the first memory chunk that is already added (RMA_START
932 * through boot_memory_size). This logic needs a relook if and
933 * when RMA_START changes to a non-zero value.
934 */
935 BUILD_BUG_ON(RMA_START != 0);
936 if (start < fw_dump.boot_memory_size) {
937 if (end > fw_dump.boot_memory_size)
938 start = fw_dump.boot_memory_size;
939 else
940 continue;
941 }
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +0000942
943 /* add this range excluding the reserved dump area. */
944 fadump_exclude_reserved_area(start, end);
945 }
946}
947
Mahesh Salgaonkard34c5f22012-02-16 01:14:53 +0000948/*
949 * If the given physical address falls within the boot memory region then
950 * return the relocated address that points to the dump region reserved
951 * for saving initial boot memory contents.
952 */
953static inline unsigned long fadump_relocate(unsigned long paddr)
954{
955 if (paddr > RMA_START && paddr < fw_dump.boot_memory_size)
Hari Bathini408cddd2014-10-01 12:32:30 +0530956 return be64_to_cpu(fdm.rmr_region.destination_address) + paddr;
Mahesh Salgaonkard34c5f22012-02-16 01:14:53 +0000957 else
958 return paddr;
959}
960
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +0000961static int fadump_create_elfcore_headers(char *bufp)
962{
963 struct elfhdr *elf;
964 struct elf_phdr *phdr;
965 int i;
966
967 fadump_init_elfcore_header(bufp);
968 elf = (struct elfhdr *)bufp;
969 bufp += sizeof(struct elfhdr);
970
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +0000971 /*
972 * setup ELF PT_NOTE, place holder for cpu notes info. The notes info
973 * will be populated during second kernel boot after crash. Hence
974 * this PT_NOTE will always be the first elf note.
975 *
976 * NOTE: Any new ELF note addition should be placed after this note.
977 */
978 phdr = (struct elf_phdr *)bufp;
979 bufp += sizeof(struct elf_phdr);
980 phdr->p_type = PT_NOTE;
981 phdr->p_flags = 0;
982 phdr->p_vaddr = 0;
983 phdr->p_align = 0;
984
985 phdr->p_offset = 0;
986 phdr->p_paddr = 0;
987 phdr->p_filesz = 0;
988 phdr->p_memsz = 0;
989
990 (elf->e_phnum)++;
991
Mahesh Salgaonkard34c5f22012-02-16 01:14:53 +0000992 /* setup ELF PT_NOTE for vmcoreinfo */
993 phdr = (struct elf_phdr *)bufp;
994 bufp += sizeof(struct elf_phdr);
995 phdr->p_type = PT_NOTE;
996 phdr->p_flags = 0;
997 phdr->p_vaddr = 0;
998 phdr->p_align = 0;
999
1000 phdr->p_paddr = fadump_relocate(paddr_vmcoreinfo_note());
1001 phdr->p_offset = phdr->p_paddr;
1002 phdr->p_memsz = vmcoreinfo_max_size;
1003 phdr->p_filesz = vmcoreinfo_max_size;
1004
1005 /* Increment number of program headers. */
1006 (elf->e_phnum)++;
1007
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +00001008 /* setup PT_LOAD sections. */
1009
1010 for (i = 0; i < crash_mem_ranges; i++) {
1011 unsigned long long mbase, msize;
1012 mbase = crash_memory_ranges[i].base;
1013 msize = crash_memory_ranges[i].size;
1014
1015 if (!msize)
1016 continue;
1017
1018 phdr = (struct elf_phdr *)bufp;
1019 bufp += sizeof(struct elf_phdr);
1020 phdr->p_type = PT_LOAD;
1021 phdr->p_flags = PF_R|PF_W|PF_X;
1022 phdr->p_offset = mbase;
1023
1024 if (mbase == RMA_START) {
1025 /*
1026 * The entire RMA region will be moved by firmware
1027 * to the specified destination_address. Hence set
1028 * the correct offset.
1029 */
Hari Bathini408cddd2014-10-01 12:32:30 +05301030 phdr->p_offset = be64_to_cpu(fdm.rmr_region.destination_address);
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +00001031 }
1032
1033 phdr->p_paddr = mbase;
1034 phdr->p_vaddr = (unsigned long)__va(mbase);
1035 phdr->p_filesz = msize;
1036 phdr->p_memsz = msize;
1037 phdr->p_align = 0;
1038
1039 /* Increment number of program headers. */
1040 (elf->e_phnum)++;
1041 }
1042 return 0;
1043}
1044
1045static unsigned long init_fadump_header(unsigned long addr)
1046{
1047 struct fadump_crash_info_header *fdh;
1048
1049 if (!addr)
1050 return 0;
1051
1052 fw_dump.fadumphdr_addr = addr;
1053 fdh = __va(addr);
1054 addr += sizeof(struct fadump_crash_info_header);
1055
1056 memset(fdh, 0, sizeof(struct fadump_crash_info_header));
1057 fdh->magic_number = FADUMP_CRASH_INFO_MAGIC;
1058 fdh->elfcorehdr_addr = addr;
Mahesh Salgaonkarebaeb5a2012-02-16 01:14:45 +00001059 /* We will set the crashing cpu id in crash_fadump() during crash. */
1060 fdh->crashing_cpu = CPU_UNKNOWN;
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +00001061
1062 return addr;
1063}
1064
Michal Suchanek98b8cd72017-05-27 17:46:15 +02001065static int register_fadump(void)
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001066{
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +00001067 unsigned long addr;
1068 void *vaddr;
1069
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001070 /*
1071 * If no memory is reserved then we can not register for firmware-
1072 * assisted dump.
1073 */
1074 if (!fw_dump.reserve_dump_area_size)
Michal Suchanek98b8cd72017-05-27 17:46:15 +02001075 return -ENODEV;
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001076
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +00001077 fadump_setup_crash_memory_ranges();
1078
Hari Bathini408cddd2014-10-01 12:32:30 +05301079 addr = be64_to_cpu(fdm.rmr_region.destination_address) + be64_to_cpu(fdm.rmr_region.source_len);
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +00001080 /* Initialize fadump crash info header. */
1081 addr = init_fadump_header(addr);
1082 vaddr = __va(addr);
1083
1084 pr_debug("Creating ELF core headers at %#016lx\n", addr);
1085 fadump_create_elfcore_headers(vaddr);
1086
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001087 /* register the future kernel dump with firmware. */
Michal Suchanek98b8cd72017-05-27 17:46:15 +02001088 return register_fw_dump(&fdm);
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001089}
1090
1091static int fadump_unregister_dump(struct fadump_mem_struct *fdm)
1092{
1093 int rc = 0;
1094 unsigned int wait_time;
1095
1096 pr_debug("Un-register firmware-assisted dump\n");
1097
1098 /* TODO: Add upper time limit for the delay */
1099 do {
1100 rc = rtas_call(fw_dump.ibm_configure_kernel_dump, 3, 1, NULL,
1101 FADUMP_UNREGISTER, fdm,
1102 sizeof(struct fadump_mem_struct));
1103
1104 wait_time = rtas_busy_delay_time(rc);
1105 if (wait_time)
1106 mdelay(wait_time);
1107 } while (wait_time);
1108
1109 if (rc) {
1110 printk(KERN_ERR "Failed to un-register firmware-assisted dump."
1111 " unexpected error(%d).\n", rc);
1112 return rc;
1113 }
1114 fw_dump.dump_registered = 0;
1115 return 0;
1116}
1117
Mahesh Salgaonkarb500aff2012-02-16 01:15:08 +00001118static int fadump_invalidate_dump(struct fadump_mem_struct *fdm)
1119{
1120 int rc = 0;
1121 unsigned int wait_time;
1122
1123 pr_debug("Invalidating firmware-assisted dump registration\n");
1124
1125 /* TODO: Add upper time limit for the delay */
1126 do {
1127 rc = rtas_call(fw_dump.ibm_configure_kernel_dump, 3, 1, NULL,
1128 FADUMP_INVALIDATE, fdm,
1129 sizeof(struct fadump_mem_struct));
1130
1131 wait_time = rtas_busy_delay_time(rc);
1132 if (wait_time)
1133 mdelay(wait_time);
1134 } while (wait_time);
1135
1136 if (rc) {
Colin Ian King4a037492016-06-27 12:07:41 +01001137 pr_err("Failed to invalidate firmware-assisted dump registration. Unexpected error (%d).\n", rc);
Michael Ellermanb5b1cfc2016-07-05 23:45:56 +10001138 return rc;
Mahesh Salgaonkarb500aff2012-02-16 01:15:08 +00001139 }
1140 fw_dump.dump_active = 0;
1141 fdm_active = NULL;
1142 return 0;
1143}
1144
1145void fadump_cleanup(void)
1146{
1147 /* Invalidate the registration only if dump is active. */
1148 if (fw_dump.dump_active) {
1149 init_fadump_mem_struct(&fdm,
Hari Bathini408cddd2014-10-01 12:32:30 +05301150 be64_to_cpu(fdm_active->cpu_state_data.destination_address));
Mahesh Salgaonkarb500aff2012-02-16 01:15:08 +00001151 fadump_invalidate_dump(&fdm);
1152 }
1153}
1154
Hari Bathini68fa6472017-06-02 01:10:10 +05301155static void fadump_free_reserved_memory(unsigned long start_pfn,
1156 unsigned long end_pfn)
1157{
1158 unsigned long pfn;
1159 unsigned long time_limit = jiffies + HZ;
1160
1161 pr_info("freeing reserved memory (0x%llx - 0x%llx)\n",
1162 PFN_PHYS(start_pfn), PFN_PHYS(end_pfn));
1163
1164 for (pfn = start_pfn; pfn < end_pfn; pfn++) {
1165 free_reserved_page(pfn_to_page(pfn));
1166
1167 if (time_after(jiffies, time_limit)) {
1168 cond_resched();
1169 time_limit = jiffies + HZ;
1170 }
1171 }
1172}
1173
1174/*
1175 * Skip memory holes and free memory that was actually reserved.
1176 */
1177static void fadump_release_reserved_area(unsigned long start, unsigned long end)
1178{
1179 struct memblock_region *reg;
1180 unsigned long tstart, tend;
1181 unsigned long start_pfn = PHYS_PFN(start);
1182 unsigned long end_pfn = PHYS_PFN(end);
1183
1184 for_each_memblock(memory, reg) {
1185 tstart = max(start_pfn, memblock_region_memory_base_pfn(reg));
1186 tend = min(end_pfn, memblock_region_memory_end_pfn(reg));
1187 if (tstart < tend) {
1188 fadump_free_reserved_memory(tstart, tend);
1189
1190 if (tend == end_pfn)
1191 break;
1192
1193 start_pfn = tend + 1;
1194 }
1195 }
1196}
1197
Mahesh Salgaonkarb500aff2012-02-16 01:15:08 +00001198/*
1199 * Release the memory that was reserved in early boot to preserve the memory
1200 * contents. The released memory will be available for general use.
1201 */
1202static void fadump_release_memory(unsigned long begin, unsigned long end)
1203{
Mahesh Salgaonkarb500aff2012-02-16 01:15:08 +00001204 unsigned long ra_start, ra_end;
1205
1206 ra_start = fw_dump.reserve_dump_area_start;
1207 ra_end = ra_start + fw_dump.reserve_dump_area_size;
1208
Hari Bathini68fa6472017-06-02 01:10:10 +05301209 /*
1210 * exclude the dump reserve area. Will reuse it for next
1211 * fadump registration.
1212 */
1213 if (begin < ra_end && end > ra_start) {
1214 if (begin < ra_start)
1215 fadump_release_reserved_area(begin, ra_start);
1216 if (end > ra_end)
1217 fadump_release_reserved_area(ra_end, end);
1218 } else
1219 fadump_release_reserved_area(begin, end);
Mahesh Salgaonkarb500aff2012-02-16 01:15:08 +00001220}
1221
1222static void fadump_invalidate_release_mem(void)
1223{
1224 unsigned long reserved_area_start, reserved_area_end;
1225 unsigned long destination_address;
1226
1227 mutex_lock(&fadump_mutex);
1228 if (!fw_dump.dump_active) {
1229 mutex_unlock(&fadump_mutex);
1230 return;
1231 }
1232
Hari Bathini408cddd2014-10-01 12:32:30 +05301233 destination_address = be64_to_cpu(fdm_active->cpu_state_data.destination_address);
Mahesh Salgaonkarb500aff2012-02-16 01:15:08 +00001234 fadump_cleanup();
1235 mutex_unlock(&fadump_mutex);
1236
1237 /*
1238 * Save the current reserved memory bounds we will require them
1239 * later for releasing the memory for general use.
1240 */
1241 reserved_area_start = fw_dump.reserve_dump_area_start;
1242 reserved_area_end = reserved_area_start +
1243 fw_dump.reserve_dump_area_size;
1244 /*
1245 * Setup reserve_dump_area_start and its size so that we can
1246 * reuse this reserved memory for Re-registration.
1247 */
1248 fw_dump.reserve_dump_area_start = destination_address;
1249 fw_dump.reserve_dump_area_size = get_fadump_area_size();
1250
1251 fadump_release_memory(reserved_area_start, reserved_area_end);
1252 if (fw_dump.cpu_notes_buf) {
1253 fadump_cpu_notes_buf_free(
1254 (unsigned long)__va(fw_dump.cpu_notes_buf),
1255 fw_dump.cpu_notes_buf_size);
1256 fw_dump.cpu_notes_buf = 0;
1257 fw_dump.cpu_notes_buf_size = 0;
1258 }
1259 /* Initialize the kernel dump memory structure for FAD registration. */
1260 init_fadump_mem_struct(&fdm, fw_dump.reserve_dump_area_start);
1261}
1262
1263static ssize_t fadump_release_memory_store(struct kobject *kobj,
1264 struct kobj_attribute *attr,
1265 const char *buf, size_t count)
1266{
1267 if (!fw_dump.dump_active)
1268 return -EPERM;
1269
1270 if (buf[0] == '1') {
1271 /*
1272 * Take away the '/proc/vmcore'. We are releasing the dump
1273 * memory, hence it will not be valid anymore.
1274 */
Michael Ellerman2685f822016-09-30 10:51:46 +10001275#ifdef CONFIG_PROC_VMCORE
Mahesh Salgaonkarb500aff2012-02-16 01:15:08 +00001276 vmcore_cleanup();
Michael Ellerman2685f822016-09-30 10:51:46 +10001277#endif
Mahesh Salgaonkarb500aff2012-02-16 01:15:08 +00001278 fadump_invalidate_release_mem();
1279
1280 } else
1281 return -EINVAL;
1282 return count;
1283}
1284
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001285static ssize_t fadump_enabled_show(struct kobject *kobj,
1286 struct kobj_attribute *attr,
1287 char *buf)
1288{
1289 return sprintf(buf, "%d\n", fw_dump.fadump_enabled);
1290}
1291
1292static ssize_t fadump_register_show(struct kobject *kobj,
1293 struct kobj_attribute *attr,
1294 char *buf)
1295{
1296 return sprintf(buf, "%d\n", fw_dump.dump_registered);
1297}
1298
1299static ssize_t fadump_register_store(struct kobject *kobj,
1300 struct kobj_attribute *attr,
1301 const char *buf, size_t count)
1302{
1303 int ret = 0;
1304
1305 if (!fw_dump.fadump_enabled || fdm_active)
1306 return -EPERM;
1307
1308 mutex_lock(&fadump_mutex);
1309
1310 switch (buf[0]) {
1311 case '0':
1312 if (fw_dump.dump_registered == 0) {
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001313 goto unlock_out;
1314 }
1315 /* Un-register Firmware-assisted dump */
1316 fadump_unregister_dump(&fdm);
1317 break;
1318 case '1':
1319 if (fw_dump.dump_registered == 1) {
Michal Suchanek98b8cd72017-05-27 17:46:15 +02001320 ret = -EEXIST;
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001321 goto unlock_out;
1322 }
1323 /* Register Firmware-assisted dump */
Michal Suchanek98b8cd72017-05-27 17:46:15 +02001324 ret = register_fadump();
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001325 break;
1326 default:
1327 ret = -EINVAL;
1328 break;
1329 }
1330
1331unlock_out:
1332 mutex_unlock(&fadump_mutex);
1333 return ret < 0 ? ret : count;
1334}
1335
1336static int fadump_region_show(struct seq_file *m, void *private)
1337{
1338 const struct fadump_mem_struct *fdm_ptr;
1339
1340 if (!fw_dump.fadump_enabled)
1341 return 0;
1342
Mahesh Salgaonkarb500aff2012-02-16 01:15:08 +00001343 mutex_lock(&fadump_mutex);
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001344 if (fdm_active)
1345 fdm_ptr = fdm_active;
Mahesh Salgaonkarb500aff2012-02-16 01:15:08 +00001346 else {
1347 mutex_unlock(&fadump_mutex);
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001348 fdm_ptr = &fdm;
Mahesh Salgaonkarb500aff2012-02-16 01:15:08 +00001349 }
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001350
1351 seq_printf(m,
1352 "CPU : [%#016llx-%#016llx] %#llx bytes, "
1353 "Dumped: %#llx\n",
Hari Bathini408cddd2014-10-01 12:32:30 +05301354 be64_to_cpu(fdm_ptr->cpu_state_data.destination_address),
1355 be64_to_cpu(fdm_ptr->cpu_state_data.destination_address) +
1356 be64_to_cpu(fdm_ptr->cpu_state_data.source_len) - 1,
1357 be64_to_cpu(fdm_ptr->cpu_state_data.source_len),
1358 be64_to_cpu(fdm_ptr->cpu_state_data.bytes_dumped));
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001359 seq_printf(m,
1360 "HPTE: [%#016llx-%#016llx] %#llx bytes, "
1361 "Dumped: %#llx\n",
Hari Bathini408cddd2014-10-01 12:32:30 +05301362 be64_to_cpu(fdm_ptr->hpte_region.destination_address),
1363 be64_to_cpu(fdm_ptr->hpte_region.destination_address) +
1364 be64_to_cpu(fdm_ptr->hpte_region.source_len) - 1,
1365 be64_to_cpu(fdm_ptr->hpte_region.source_len),
1366 be64_to_cpu(fdm_ptr->hpte_region.bytes_dumped));
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001367 seq_printf(m,
1368 "DUMP: [%#016llx-%#016llx] %#llx bytes, "
1369 "Dumped: %#llx\n",
Hari Bathini408cddd2014-10-01 12:32:30 +05301370 be64_to_cpu(fdm_ptr->rmr_region.destination_address),
1371 be64_to_cpu(fdm_ptr->rmr_region.destination_address) +
1372 be64_to_cpu(fdm_ptr->rmr_region.source_len) - 1,
1373 be64_to_cpu(fdm_ptr->rmr_region.source_len),
1374 be64_to_cpu(fdm_ptr->rmr_region.bytes_dumped));
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001375
1376 if (!fdm_active ||
1377 (fw_dump.reserve_dump_area_start ==
Hari Bathini408cddd2014-10-01 12:32:30 +05301378 be64_to_cpu(fdm_ptr->cpu_state_data.destination_address)))
Mahesh Salgaonkarb500aff2012-02-16 01:15:08 +00001379 goto out;
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001380
1381 /* Dump is active. Show reserved memory region. */
1382 seq_printf(m,
1383 " : [%#016llx-%#016llx] %#llx bytes, "
1384 "Dumped: %#llx\n",
1385 (unsigned long long)fw_dump.reserve_dump_area_start,
Hari Bathini408cddd2014-10-01 12:32:30 +05301386 be64_to_cpu(fdm_ptr->cpu_state_data.destination_address) - 1,
1387 be64_to_cpu(fdm_ptr->cpu_state_data.destination_address) -
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001388 fw_dump.reserve_dump_area_start,
Hari Bathini408cddd2014-10-01 12:32:30 +05301389 be64_to_cpu(fdm_ptr->cpu_state_data.destination_address) -
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001390 fw_dump.reserve_dump_area_start);
Mahesh Salgaonkarb500aff2012-02-16 01:15:08 +00001391out:
1392 if (fdm_active)
1393 mutex_unlock(&fadump_mutex);
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001394 return 0;
1395}
1396
Mahesh Salgaonkarb500aff2012-02-16 01:15:08 +00001397static struct kobj_attribute fadump_release_attr = __ATTR(fadump_release_mem,
1398 0200, NULL,
1399 fadump_release_memory_store);
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001400static struct kobj_attribute fadump_attr = __ATTR(fadump_enabled,
1401 0444, fadump_enabled_show,
1402 NULL);
1403static struct kobj_attribute fadump_register_attr = __ATTR(fadump_registered,
1404 0644, fadump_register_show,
1405 fadump_register_store);
1406
1407static int fadump_region_open(struct inode *inode, struct file *file)
1408{
1409 return single_open(file, fadump_region_show, inode->i_private);
1410}
1411
1412static const struct file_operations fadump_region_fops = {
1413 .open = fadump_region_open,
1414 .read = seq_read,
1415 .llseek = seq_lseek,
1416 .release = single_release,
1417};
1418
1419static void fadump_init_files(void)
1420{
1421 struct dentry *debugfs_file;
1422 int rc = 0;
1423
1424 rc = sysfs_create_file(kernel_kobj, &fadump_attr.attr);
1425 if (rc)
1426 printk(KERN_ERR "fadump: unable to create sysfs file"
1427 " fadump_enabled (%d)\n", rc);
1428
1429 rc = sysfs_create_file(kernel_kobj, &fadump_register_attr.attr);
1430 if (rc)
1431 printk(KERN_ERR "fadump: unable to create sysfs file"
1432 " fadump_registered (%d)\n", rc);
1433
1434 debugfs_file = debugfs_create_file("fadump_region", 0444,
1435 powerpc_debugfs_root, NULL,
1436 &fadump_region_fops);
1437 if (!debugfs_file)
1438 printk(KERN_ERR "fadump: unable to create debugfs file"
1439 " fadump_region\n");
Mahesh Salgaonkarb500aff2012-02-16 01:15:08 +00001440
1441 if (fw_dump.dump_active) {
1442 rc = sysfs_create_file(kernel_kobj, &fadump_release_attr.attr);
1443 if (rc)
1444 printk(KERN_ERR "fadump: unable to create sysfs file"
1445 " fadump_release_mem (%d)\n", rc);
1446 }
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001447 return;
1448}
1449
1450/*
1451 * Prepare for firmware-assisted dump.
1452 */
1453int __init setup_fadump(void)
1454{
1455 if (!fw_dump.fadump_enabled)
1456 return 0;
1457
1458 if (!fw_dump.fadump_supported) {
1459 printk(KERN_ERR "Firmware-assisted dump is not supported on"
1460 " this hardware\n");
1461 return 0;
1462 }
1463
1464 fadump_show_config();
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +00001465 /*
1466 * If dump data is available then see if it is valid and prepare for
1467 * saving it to the disk.
1468 */
Mahesh Salgaonkarb500aff2012-02-16 01:15:08 +00001469 if (fw_dump.dump_active) {
1470 /*
1471 * if dump process fails then invalidate the registration
1472 * and release memory before proceeding for re-registration.
1473 */
1474 if (process_fadump(fdm_active) < 0)
1475 fadump_invalidate_release_mem();
1476 }
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001477 /* Initialize the kernel dump memory structure for FAD registration. */
Mahesh Salgaonkar2df173d2012-02-16 01:14:37 +00001478 else if (fw_dump.reserve_dump_area_size)
Mahesh Salgaonkar3ccc00a2012-02-20 02:15:03 +00001479 init_fadump_mem_struct(&fdm, fw_dump.reserve_dump_area_start);
1480 fadump_init_files();
1481
1482 return 1;
1483}
1484subsys_initcall(setup_fadump);