kernel/kexec_file.c: allow archs to set purgatory load address
For s390 new kernels are loaded to fixed addresses in memory before they are booted. With the current code this is a problem as it assumes the kernel will be loaded to an 'arbitrary' address. In particular, kexec_locate_mem_hole searches for a large enough memory region and sets the load address (kexec_bufer->mem) to it. Luckily there is a simple workaround for this problem. By returning 1 in arch_kexec_walk_mem, kexec_locate_mem_hole is turned off. This allows the architecture to set kbuf->mem by hand. While the trick works fine for the kernel it does not for the purgatory as here the architectures don't have access to its kexec_buffer. Give architectures access to the purgatories kexec_buffer by changing kexec_load_purgatory to take a pointer to it. With this change architectures have access to the buffer and can edit it as they need. A nice side effect of this change is that we can get rid of the purgatory_info->purgatory_load_address field. As now the information stored there can directly be accessed from kbuf->mem. Link: http://lkml.kernel.org/r/20180321112751.22196-11-prudo@linux.vnet.ibm.com Signed-off-by: Philipp Rudo <prudo@linux.vnet.ibm.com> Reviewed-by: Martin Schwidefsky <schwidefsky@de.ibm.com> Acked-by: Dave Young <dyoung@redhat.com> Cc: AKASHI Takahiro <takahiro.akashi@linaro.org> Cc: Eric Biederman <ebiederm@xmission.com> Cc: Heiko Carstens <heiko.carstens@de.ibm.com> Cc: Ingo Molnar <mingo@kernel.org> Cc: Michael Ellerman <mpe@ellerman.id.au> Cc: Thiago Jung Bauermann <bauerman@linux.vnet.ibm.com> Cc: Vivek Goyal <vgoyal@redhat.com> Signed-off-by: Andrew Morton <akpm@linux-foundation.org> Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
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@ -572,7 +572,7 @@ static void *elf64_load(struct kimage *image, char *kernel_buf,
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{
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{
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int ret;
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int ret;
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unsigned int fdt_size;
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unsigned int fdt_size;
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unsigned long kernel_load_addr, purgatory_load_addr;
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unsigned long kernel_load_addr;
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unsigned long initrd_load_addr = 0, fdt_load_addr;
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unsigned long initrd_load_addr = 0, fdt_load_addr;
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void *fdt;
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void *fdt;
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const void *slave_code;
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const void *slave_code;
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@ -580,6 +580,8 @@ static void *elf64_load(struct kimage *image, char *kernel_buf,
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struct elf_info elf_info;
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struct elf_info elf_info;
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struct kexec_buf kbuf = { .image = image, .buf_min = 0,
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struct kexec_buf kbuf = { .image = image, .buf_min = 0,
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.buf_max = ppc64_rma_size };
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.buf_max = ppc64_rma_size };
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struct kexec_buf pbuf = { .image = image, .buf_min = 0,
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.buf_max = ppc64_rma_size, .top_down = true };
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ret = build_elf_exec_info(kernel_buf, kernel_len, &ehdr, &elf_info);
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ret = build_elf_exec_info(kernel_buf, kernel_len, &ehdr, &elf_info);
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if (ret)
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if (ret)
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@ -591,14 +593,13 @@ static void *elf64_load(struct kimage *image, char *kernel_buf,
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pr_debug("Loaded the kernel at 0x%lx\n", kernel_load_addr);
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pr_debug("Loaded the kernel at 0x%lx\n", kernel_load_addr);
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ret = kexec_load_purgatory(image, 0, ppc64_rma_size, true,
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ret = kexec_load_purgatory(image, &pbuf);
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&purgatory_load_addr);
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if (ret) {
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if (ret) {
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pr_err("Loading purgatory failed.\n");
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pr_err("Loading purgatory failed.\n");
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goto out;
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goto out;
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}
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}
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pr_debug("Loaded purgatory at 0x%lx\n", purgatory_load_addr);
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pr_debug("Loaded purgatory at 0x%lx\n", pbuf.mem);
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if (initrd != NULL) {
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if (initrd != NULL) {
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kbuf.buffer = initrd;
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kbuf.buffer = initrd;
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@ -334,7 +334,6 @@ static void *bzImage64_load(struct kimage *image, char *kernel,
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unsigned long setup_header_size, params_cmdline_sz;
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unsigned long setup_header_size, params_cmdline_sz;
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struct boot_params *params;
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struct boot_params *params;
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unsigned long bootparam_load_addr, kernel_load_addr, initrd_load_addr;
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unsigned long bootparam_load_addr, kernel_load_addr, initrd_load_addr;
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unsigned long purgatory_load_addr;
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struct bzimage64_data *ldata;
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struct bzimage64_data *ldata;
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struct kexec_entry64_regs regs64;
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struct kexec_entry64_regs regs64;
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void *stack;
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void *stack;
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@ -342,6 +341,8 @@ static void *bzImage64_load(struct kimage *image, char *kernel,
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unsigned int efi_map_offset, efi_map_sz, efi_setup_data_offset;
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unsigned int efi_map_offset, efi_map_sz, efi_setup_data_offset;
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struct kexec_buf kbuf = { .image = image, .buf_max = ULONG_MAX,
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struct kexec_buf kbuf = { .image = image, .buf_max = ULONG_MAX,
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.top_down = true };
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.top_down = true };
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struct kexec_buf pbuf = { .image = image, .buf_min = MIN_PURGATORY_ADDR,
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.buf_max = ULONG_MAX, .top_down = true };
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header = (struct setup_header *)(kernel + setup_hdr_offset);
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header = (struct setup_header *)(kernel + setup_hdr_offset);
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setup_sects = header->setup_sects;
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setup_sects = header->setup_sects;
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@ -379,14 +380,13 @@ static void *bzImage64_load(struct kimage *image, char *kernel,
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* Load purgatory. For 64bit entry point, purgatory code can be
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* Load purgatory. For 64bit entry point, purgatory code can be
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* anywhere.
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* anywhere.
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*/
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*/
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ret = kexec_load_purgatory(image, MIN_PURGATORY_ADDR, ULONG_MAX, 1,
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ret = kexec_load_purgatory(image, &pbuf);
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&purgatory_load_addr);
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if (ret) {
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if (ret) {
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pr_err("Loading purgatory failed\n");
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pr_err("Loading purgatory failed\n");
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return ERR_PTR(ret);
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return ERR_PTR(ret);
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}
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}
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pr_debug("Loaded purgatory at 0x%lx\n", purgatory_load_addr);
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pr_debug("Loaded purgatory at 0x%lx\n", pbuf.mem);
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/*
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/*
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@ -114,9 +114,6 @@ struct purgatory_info {
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* relocation. This memory can be freed post image load.
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* relocation. This memory can be freed post image load.
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*/
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*/
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void *purgatory_buf;
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void *purgatory_buf;
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/* Address where purgatory is finally loaded and is executed from */
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unsigned long purgatory_load_addr;
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};
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};
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struct kimage;
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struct kimage;
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@ -171,6 +168,12 @@ struct kexec_buf {
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bool top_down;
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bool top_down;
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};
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};
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int kexec_load_purgatory(struct kimage *image, struct kexec_buf *kbuf);
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int kexec_purgatory_get_set_symbol(struct kimage *image, const char *name,
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void *buf, unsigned int size,
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bool get_value);
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void *kexec_purgatory_get_symbol_addr(struct kimage *image, const char *name);
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int __weak arch_kexec_apply_relocations_add(struct purgatory_info *pi,
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int __weak arch_kexec_apply_relocations_add(struct purgatory_info *pi,
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Elf_Shdr *section,
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Elf_Shdr *section,
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const Elf_Shdr *relsec,
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const Elf_Shdr *relsec,
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@ -266,14 +269,6 @@ extern void machine_kexec_cleanup(struct kimage *image);
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extern int kernel_kexec(void);
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extern int kernel_kexec(void);
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extern struct page *kimage_alloc_control_pages(struct kimage *image,
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extern struct page *kimage_alloc_control_pages(struct kimage *image,
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unsigned int order);
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unsigned int order);
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extern int kexec_load_purgatory(struct kimage *image, unsigned long min,
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unsigned long max, int top_down,
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unsigned long *load_addr);
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extern int kexec_purgatory_get_set_symbol(struct kimage *image,
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const char *name, void *buf,
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unsigned int size, bool get_value);
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extern void *kexec_purgatory_get_symbol_addr(struct kimage *image,
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const char *name);
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extern void __crash_kexec(struct pt_regs *);
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extern void __crash_kexec(struct pt_regs *);
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extern void crash_kexec(struct pt_regs *);
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extern void crash_kexec(struct pt_regs *);
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int kexec_should_crash(struct task_struct *);
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int kexec_should_crash(struct task_struct *);
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@ -730,8 +730,8 @@ static int kexec_purgatory_setup_kbuf(struct purgatory_info *pi,
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int i, ret;
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int i, ret;
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sechdrs = (void *)pi->ehdr + pi->ehdr->e_shoff;
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sechdrs = (void *)pi->ehdr + pi->ehdr->e_shoff;
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bss_align = 1;
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kbuf->buf_align = bss_align = 1;
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bss_sz = 0;
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kbuf->bufsz = bss_sz = 0;
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for (i = 0; i < pi->ehdr->e_shnum; i++) {
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for (i = 0; i < pi->ehdr->e_shnum; i++) {
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if (!(sechdrs[i].sh_flags & SHF_ALLOC))
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if (!(sechdrs[i].sh_flags & SHF_ALLOC))
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@ -763,7 +763,6 @@ static int kexec_purgatory_setup_kbuf(struct purgatory_info *pi,
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ret = kexec_add_buffer(kbuf);
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ret = kexec_add_buffer(kbuf);
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if (ret)
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if (ret)
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goto out;
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goto out;
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pi->purgatory_load_addr = kbuf->mem;
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return 0;
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return 0;
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out:
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out:
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@ -901,27 +900,32 @@ static int kexec_apply_relocations(struct kimage *image)
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return 0;
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return 0;
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}
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}
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/* Load relocatable purgatory object and relocate it appropriately */
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/*
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int kexec_load_purgatory(struct kimage *image, unsigned long min,
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* kexec_load_purgatory - Load and relocate the purgatory object.
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unsigned long max, int top_down,
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* @image: Image to add the purgatory to.
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unsigned long *load_addr)
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* @kbuf: Memory parameters to use.
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*
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* Allocates the memory needed for image->purgatory_info.sechdrs and
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* image->purgatory_info.purgatory_buf/kbuf->buffer. Caller is responsible
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* to free the memory after use.
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*
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* Return: 0 on success, negative errno on error.
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*/
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int kexec_load_purgatory(struct kimage *image, struct kexec_buf *kbuf)
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{
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{
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struct purgatory_info *pi = &image->purgatory_info;
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struct purgatory_info *pi = &image->purgatory_info;
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int ret;
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int ret;
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struct kexec_buf kbuf = { .image = image, .bufsz = 0, .buf_align = 1,
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.buf_min = min, .buf_max = max,
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.top_down = top_down };
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if (kexec_purgatory_size <= 0)
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if (kexec_purgatory_size <= 0)
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return -EINVAL;
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return -EINVAL;
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pi->ehdr = (const Elf_Ehdr *)kexec_purgatory;
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pi->ehdr = (const Elf_Ehdr *)kexec_purgatory;
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ret = kexec_purgatory_setup_kbuf(pi, &kbuf);
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ret = kexec_purgatory_setup_kbuf(pi, kbuf);
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if (ret)
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if (ret)
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return ret;
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return ret;
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ret = kexec_purgatory_setup_sechdrs(pi, &kbuf);
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ret = kexec_purgatory_setup_sechdrs(pi, kbuf);
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if (ret)
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if (ret)
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goto out_free_kbuf;
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goto out_free_kbuf;
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if (ret)
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if (ret)
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goto out;
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goto out;
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*load_addr = pi->purgatory_load_addr;
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return 0;
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return 0;
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out:
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out:
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vfree(pi->sechdrs);
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vfree(pi->sechdrs);
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