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Since the following kernel commit: "32db401965f1 s390/mm: Pin identity mapping base to zero" we can have zero identity_base value in os_info. This makes zgetdump check for non-VR kernel in vm_info_get() incorrect what leads to missing data (e.g. UTS kernel version) in 'zgetdump -i' output. Check for zero kaslr_offset value instead (like crash and makedumpfile do) in order to identify non-VR kernel. Signed-off-by: Mikhail Zaslonko <zaslonko@linux.ibm.com> Acked-by: Alexander Gordeev <agordeev@linux.ibm.com> Signed-off-by: Jan Höppner <hoeppner@linux.ibm.com>
263 lines
6.1 KiB
C
263 lines
6.1 KiB
C
/*
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* zgetdump - Tool for copying and converting System z dumps
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*
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* vmcoreinfo access functions
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*
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* Copyright IBM Corp. 2011, 2017
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*
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* s390-tools is free software; you can redistribute it and/or modify
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* it under the terms of the MIT license. See LICENSE for details.
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*/
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#include <stdio.h>
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#include <string.h>
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#include <elf.h>
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#include "lib/zt_common.h"
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#include "lib/util_log.h"
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#include "zg.h"
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#include "dfi_mem_chunk.h"
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#include "dfi_vmcoreinfo.h"
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#include "boot/os_info.h"
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#ifdef __s390x__
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#define LC_VMCORE_INFO 0xe0c
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#else
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#define LC_VMCORE_INFO 0xe08
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#endif
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#define LC_OS_INFO 0xe18
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struct vm_info {
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u64 identity_base;
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u64 kaslr_offset;
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u64 kaslr_offset_phys;
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u64 amode31_start;
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u64 amode31_end;
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};
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/*
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* File local static data
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*/
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static struct {
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char *vmcoreinfo;
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struct os_info *os_info;
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struct vm_info *vm_info;
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} l;
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static u32 os_info_csum(struct os_info *os_info)
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{
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int size = sizeof(*os_info) - offsetof(struct os_info, version_major);
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return zg_csum_partial(&os_info->version_major, size, 0);
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}
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static struct os_info *os_info_get(void)
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{
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static struct os_info os_info;
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unsigned long addr;
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util_log_print(UTIL_LOG_TRACE, "DFI get osinfo\n");
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if (dfi_mem_virt_read(LC_OS_INFO, &addr, sizeof(addr)))
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return NULL;
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util_log_print(UTIL_LOG_DEBUG, "DFI osinfo addr: 0x%016lx\n", addr);
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if (addr % 0x1000)
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return NULL;
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if (dfi_mem_virt_read(addr, &os_info, sizeof(os_info)))
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return NULL;
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if (os_info.magic != OS_INFO_MAGIC)
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return NULL;
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if (os_info.csum != os_info_csum(&os_info))
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return NULL;
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util_log_print(UTIL_LOG_DEBUG, "DFI found valid osinfo!\n");
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return &os_info;
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}
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static struct vm_info *vm_info_get(void)
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{
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static struct vm_info vm_info = { 0 };
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util_log_print(UTIL_LOG_TRACE, "DFI read vm_info\n");
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vm_info.kaslr_offset = l.os_info->entry[OS_INFO_KASLR_OFFSET].val;
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if (vm_info.kaslr_offset == 0)
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return NULL;
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vm_info.kaslr_offset_phys = l.os_info->entry[OS_INFO_KASLR_OFF_PHYS].val;
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vm_info.identity_base = l.os_info->entry[OS_INFO_IDENTITY_BASE].val;
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vm_info.amode31_start = l.os_info->entry[OS_INFO_AMODE31_START].val;
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vm_info.amode31_end = l.os_info->entry[OS_INFO_AMODE31_END].val;
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return &vm_info;
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}
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/*
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* Convert virual address in the dump to the physical address using
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* vm_info data derived from os_info
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*/
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u64 dfi_vm_vtop(u64 vaddr)
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{
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if (!l.vm_info)
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return vaddr;
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if (vaddr < LOWCORE_SIZE)
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return vaddr;
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if ((vaddr < l.vm_info->amode31_end) &&
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(vaddr >= l.vm_info->amode31_start))
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return vaddr;
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if (vaddr < l.vm_info->kaslr_offset)
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return vaddr - l.vm_info->identity_base;
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return vaddr - l.vm_info->kaslr_offset + l.vm_info->kaslr_offset_phys;
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}
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/*
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* Initialize vmcoreinfo
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*/
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void dfi_vmcoreinfo_init(void)
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{
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unsigned long addr, size;
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Elf64_Nhdr note;
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char str[128];
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util_log_print(UTIL_LOG_TRACE, "DFI vmcoreinfo initialization\n");
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l.os_info = os_info_get();
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if (l.os_info)
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l.vm_info = vm_info_get();
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if (l.os_info && l.os_info->entry[OS_INFO_VMCOREINFO].size) {
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util_log_print(UTIL_LOG_DEBUG, "DFI found valid osinfo\n");
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addr = l.os_info->entry[OS_INFO_VMCOREINFO].addr;
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size = l.os_info->entry[OS_INFO_VMCOREINFO].size;
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} else {
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if (dfi_mem_virt_read(LC_VMCORE_INFO, &addr, sizeof(addr)))
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return;
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if (addr == 0)
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return;
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if (dfi_mem_virt_read(addr, ¬e, sizeof(note)))
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return;
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if (note.n_namesz == 0 || note.n_namesz > sizeof(str))
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return;
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memset(str, 0, sizeof(str));
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if (dfi_mem_virt_read(addr + sizeof(note), str, note.n_namesz))
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return;
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if (memcmp(str, "VMCOREINFO", sizeof("VMCOREINFO")) != 0)
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return;
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size = note.n_descsz;
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addr += 24;
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}
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util_log_print(UTIL_LOG_DEBUG,
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"DFI vmcoreinfo addr 0x%016lx size 0x%016lx\n",
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addr, size);
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l.vmcoreinfo = zg_alloc(size + 1);
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if (dfi_mem_virt_read(addr, l.vmcoreinfo, size)) {
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zg_free(l.vmcoreinfo);
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l.vmcoreinfo = NULL;
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return;
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}
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l.vmcoreinfo[size] = 0;
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util_log_print(UTIL_LOG_INFO, "DFI found valid vmcoreinfo\n");
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}
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/*
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* Return vmcoreinfo data
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*/
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const char *dfi_vmcoreinfo_get(void)
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{
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return l.vmcoreinfo;
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}
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/*
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* Generic function: Return vmcoreinfo item (-1 on failure)
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*/
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static int vmcoreinfo_item(char *buf, int UNUSED(len), const char *fmt,
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const char *sym)
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{
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char str[1024], *sym_str, *sym_str_end;
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if (!l.vmcoreinfo)
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return -1;
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if (fmt)
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snprintf(str, sizeof(str), "%s(%s)=", fmt, sym);
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else
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snprintf(str, sizeof(str), "%s=", sym);
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sym_str = strstr(l.vmcoreinfo, str);
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if (!sym_str)
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return -1;
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sym_str += strlen(str);
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sym_str_end = strchr(sym_str, '\n');
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if (!sym_str_end)
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sym_str_end = strchr(sym_str, '\0');
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memset(str, 0, sizeof(str));
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memcpy(str, sym_str, (unsigned long) (sym_str_end - sym_str));
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strcpy(buf, str);
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return 0;
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}
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/*
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* Generic function: Return vmcoreinfo ulong item (-1 on failure)
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*/
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static int vmcoreinfo_item_ulong(unsigned long *val, const char *fmt,
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const char *sym, unsigned long base)
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{
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char str[1024];
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int rc;
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rc = vmcoreinfo_item(str, sizeof(str), fmt, sym);
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util_log_print(UTIL_LOG_DEBUG, "DFI vmcoreinfo symbol %s : %s\n", sym, str);
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if (rc)
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return rc;
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*val = strtoul(str, NULL, base);
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return 0;
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}
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/*
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* Return vmcoreinfo tag (-1 on failure)
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*/
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int dfi_vmcoreinfo_tag(char *str, int len, const char *sym)
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{
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return vmcoreinfo_item(str, len, NULL, sym);
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}
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/*
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* Return vmcoreinfo symbol address (-1 on failure)
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*/
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int dfi_vmcoreinfo_symbol(unsigned long *addr, const char *sym)
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{
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return vmcoreinfo_item_ulong(addr, "SYMBOL", sym, 16);
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}
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/*
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* Return vmcoreinfo offset of a member of a datastructure (-1 on failure)
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*/
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int dfi_vmcoreinfo_offset(unsigned long *off, const char *sym)
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{
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return vmcoreinfo_item_ulong(off, "OFFSET", sym, 10);
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}
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/*
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* Return vmcoreinfo datatype size (-1 on failure)
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*/
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int dfi_vmcoreinfo_size(unsigned long *size, const char *sym)
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{
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return vmcoreinfo_item_ulong(size, "SIZE", sym, 10);
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}
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/*
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* Return vmcoreinfo symbol length (-1 on failure)
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*/
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int dfi_vmcoreinfo_length(unsigned long *len, const char *sym)
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{
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return vmcoreinfo_item_ulong(len, "LENGTH", sym, 10);
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}
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/*
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* Return vmcoreinfo number (-1 on failure)
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*/
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int dfi_vmcoreinfo_val(unsigned long *val, const char *sym)
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{
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return vmcoreinfo_item_ulong(val, NULL, sym, 10);
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}
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