Files
s390-tools/zdump/dfi_elf.c
Marc Hartmayer 7f09f0e4ad zdump: refactor pt_load_add
In an upcoming patch the refactored function `pt_load_add` is reused. While at
it, add a wrap-around check to `pt_load_add`, replace `g.opts.device` access
with `fh->path` (this makes this function easier testable) and improve the
documentation.

Signed-off-by: Marc Hartmayer <mhartmay@linux.ibm.com>
Reviewed-by: Steffen Eiden <seiden@linux.ibm.com>
Signed-off-by: Jan Höppner <hoeppner@linux.ibm.com>
2022-10-22 20:27:16 +02:00

301 lines
6.8 KiB
C

/*
* zgetdump - Tool for copying and converting System z dumps
*
* ELF core dump input format
*
* Copyright IBM Corp. 2001, 2018
*
* s390-tools is free software; you can redistribute it and/or modify
* it under the terms of the MIT license. See LICENSE for details.
*/
#include <assert.h>
#include <elf.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <unistd.h>
#include "lib/util_libc.h"
#include "lib/util_log.h"
#include "zgetdump.h"
#include "zg.h"
#include "df_elf.h"
#include "dfi.h"
#include "dfi_mem_chunk.h"
#include "dfi_elf_common.h"
/*
* Read memory for given memory chunk
*/
static void dfi_elf_mem_chunk_read_fn(struct dfi_mem_chunk *mem_chunk, u64 off,
void *buf, u64 cnt)
{
u64 elf_load_off = *((u64 *) mem_chunk->data);
zg_seek(g.fh, elf_load_off + off, ZG_CHECK);
zg_read(g.fh, buf, cnt, ZG_CHECK);
}
/*
* Ensure that CPU is already defined by prstatus note
*/
static void check_cpu(struct dfi_cpu *cpu, const char *note_str)
{
if (cpu)
return;
ERR_EXIT("Invalid ELF dump (%s before prstatus found)", note_str);
}
/*
* Read prstatus note and return new DFI CPU
*/
static struct dfi_cpu *nt_prstatus_read(const struct zg_fh *fh, const Elf64_Nhdr *note)
{
struct dfi_cpu *cpu = dfi_cpu_alloc();
struct nt_prstatus_64 nt_prstatus;
if (nt_read(fh, note, &nt_prstatus, sizeof(nt_prstatus)))
return NULL;
memcpy(cpu->gprs, &nt_prstatus.gprs, sizeof(cpu->gprs));
memcpy(cpu->psw, &nt_prstatus.psw, sizeof(cpu->psw));
memcpy(cpu->acrs, &nt_prstatus.acrs, sizeof(cpu->acrs));
dfi_cpu_add(cpu);
return cpu;
}
/*
* Read fpregset note
*/
static int nt_fpregset_read(const struct zg_fh *fh, struct dfi_cpu *cpu, const Elf64_Nhdr *note)
{
struct nt_fpregset_64 nt_fpregset;
check_cpu(cpu, "FPREGSET");
if (nt_read(fh, note, &nt_fpregset, sizeof(nt_fpregset)))
return -EINVAL;
memcpy(&cpu->fpc, &nt_fpregset.fpc, sizeof(cpu->fpc));
memcpy(cpu->fprs, &nt_fpregset.fprs, sizeof(cpu->fprs));
return 0;
}
/*
* Read s390 timer note
*/
static int nt_s390_timer_read(const struct zg_fh *fh, struct dfi_cpu *cpu, const Elf64_Nhdr *note)
{
check_cpu(cpu, "S390_TIMER");
return nt_read(fh, note, &cpu->timer, sizeof(cpu->timer));
}
/*
* Read s390 todcmp note
*/
static int nt_s390_todcmp_read(const struct zg_fh *fh, struct dfi_cpu *cpu, const Elf64_Nhdr *note)
{
check_cpu(cpu, "S390_TODCMP");
return nt_read(fh, note, &cpu->todcmp, sizeof(cpu->todcmp));
}
/*
* Read s390 todpreg note
*/
static int nt_s390_todpreg_read(const struct zg_fh *fh, struct dfi_cpu *cpu, const Elf64_Nhdr *note)
{
check_cpu(cpu, "S390_TODPREG");
return nt_read(fh, note, &cpu->todpreg, sizeof(cpu->todpreg));
}
/*
* Read s390 ctrs note
*/
static int nt_s390_ctrs_read(const struct zg_fh *fh, struct dfi_cpu *cpu, const Elf64_Nhdr *note)
{
check_cpu(cpu, "S390_CTRS");
return nt_read(fh, note, &cpu->ctrs, sizeof(cpu->ctrs));
}
/*
* Read s390 prefix note
*/
static int nt_s390_prefix_read(const struct zg_fh *fh, struct dfi_cpu *cpu, const Elf64_Nhdr *note)
{
check_cpu(cpu, "S390_PREFIX");
return nt_read(fh, note, &cpu->prefix, sizeof(cpu->prefix));
}
/*
* Read s390 vxrs_low note
*/
static int nt_s390_vxrs_low_read(const struct zg_fh *fh, struct dfi_cpu *cpu,
const Elf64_Nhdr *note)
{
check_cpu(cpu, "S390_VXRS_LOW");
return nt_read(fh, note, &cpu->vxrs_low, sizeof(cpu->vxrs_low));
}
/*
* Read s390 vxrs_high note
*/
static int nt_s390_vxrs_high_read(const struct zg_fh *fh, struct dfi_cpu *cpu,
const Elf64_Nhdr *note)
{
check_cpu(cpu, "S390_VXRS_HIGH");
return nt_read(fh, note, &cpu->vxrs_high, sizeof(cpu->vxrs_high));
}
/*
* Read s390 gs_cb note
*/
static int nt_s390_gs_cb_read(const struct zg_fh *fh, struct dfi_cpu *cpu, const Elf64_Nhdr *note)
{
check_cpu(cpu, "S390_GSCB");
return nt_read(fh, note, &cpu->gscb, sizeof(cpu->gscb));
}
/*
* Add all notes for notes phdr
*/
static int pt_notes_add(const Elf64_Phdr *phdr)
{
struct dfi_cpu *cpu_current = NULL;
const struct zg_fh *fh = g.fh;
int rc;
zg_seek(fh, phdr->p_offset, ZG_CHECK);
while (zg_tell(fh, ZG_CHECK) - phdr->p_offset < phdr->p_filesz) {
Elf64_Nhdr note;
rc = zg_read(fh, &note, sizeof(note), ZG_CHECK_ERR);
if (rc != sizeof(note))
return -EINVAL;
util_log_print(UTIL_LOG_DEBUG, "DFI ELF n_type 0x%x\n",
note.n_type);
switch (note.n_type) {
case NT_PRSTATUS:
cpu_current = nt_prstatus_read(fh, &note);
if (!cpu_current)
return -EINVAL;
break;
case NT_FPREGSET:
if (nt_fpregset_read(fh, cpu_current, &note))
return -EINVAL;
break;
case NT_S390_TIMER:
if (nt_s390_timer_read(fh, cpu_current, &note))
return -EINVAL;
break;
case NT_S390_TODCMP:
if (nt_s390_todcmp_read(fh, cpu_current, &note))
return -EINVAL;
break;
case NT_S390_TODPREG:
if (nt_s390_todpreg_read(fh, cpu_current, &note))
return -EINVAL;
break;
case NT_S390_CTRS:
if (nt_s390_ctrs_read(fh, cpu_current, &note))
return -EINVAL;
break;
case NT_S390_PREFIX:
if (nt_s390_prefix_read(fh, cpu_current, &note))
return -EINVAL;
break;
case NT_S390_VXRS_LOW:
if (nt_s390_vxrs_low_read(fh, cpu_current, &note))
return -EINVAL;
dfi_cpu_content_fac_add(DFI_CPU_CONTENT_FAC_VX);
break;
case NT_S390_VXRS_HIGH:
if (nt_s390_vxrs_high_read(fh, cpu_current, &note))
return -EINVAL;
dfi_cpu_content_fac_add(DFI_CPU_CONTENT_FAC_VX);
break;
case NT_S390_GS_CB:
if (nt_s390_gs_cb_read(fh, cpu_current, &note))
return -EINVAL;
dfi_cpu_content_fac_add(DFI_CPU_CONTENT_FAC_GS);
break;
default:
nt_skip(fh, &note);
break;
}
}
return 0;
}
/*
* Initialize ELF input dump format
*/
static int dfi_elf_init(void)
{
unsigned int phnum, i;
Elf64_Phdr *phdrs;
Elf64_Ehdr *ehdr;
int rc = -ENODEV;
util_log_print(UTIL_LOG_DEBUG, "DFI ELF initialization\n");
ehdr = read_elf_hdr(g.fh);
if (!ehdr)
return -ENODEV;
if (ehdr_check_s390x(ehdr) < 0)
goto free_ehdr;
df_elf_ensure_s390x();
dfi_arch_set(DFI_ARCH_64);
dfi_cpu_info_init(DFI_CPU_CONTENT_ALL);
phdrs = read_elf_phdrs(g.fh, ehdr, &phnum);
util_log_print(UTIL_LOG_DEBUG, "DFI ELF e_phnum %u\n", phnum);
for (i = 0; i < phnum; i++) {
const Elf64_Phdr *phdr = &phdrs[i];
util_log_print(UTIL_LOG_DEBUG, "DFI ELF p_type[%d] 0x%lx\n", i, phdr->p_type);
switch (phdr->p_type) {
case PT_LOAD: {
u64 *off_ptr = zg_alloc(sizeof(*off_ptr));
*off_ptr = phdr->p_offset;
if (pt_load_add(g.fh, phdr, (void **)&off_ptr, dfi_elf_mem_chunk_read_fn,
free) < 0) {
free(off_ptr);
rc = -EINVAL;
goto free_phdrs;
}
} break;
case PT_NOTE:
if (pt_notes_add(phdr)) {
rc = -EINVAL;
goto free_phdrs;
}
break;
default:
break;
}
}
dfi_attr_version_set(ehdr->e_ident[EI_VERSION]);
rc = 0;
free_phdrs:
free(phdrs);
free_ehdr:
free(ehdr);
return rc;
}
/*
* ELF DFI operations
*/
struct dfi dfi_elf = {
.name = "elf",
.init = dfi_elf_init,
.feat_bits = DFI_FEAT_COPY | DFI_FEAT_SEEK,
};