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-rw-r--r--arch/powerpc/kernel/fadump.c547
1 files changed, 345 insertions, 202 deletions
diff --git a/arch/powerpc/kernel/fadump.c b/arch/powerpc/kernel/fadump.c
index d14eda1e8589..a612e7513a4f 100644
--- a/arch/powerpc/kernel/fadump.c
+++ b/arch/powerpc/kernel/fadump.c
@@ -53,8 +53,6 @@ static struct kobject *fadump_kobj;
static atomic_t cpus_in_fadump;
static DEFINE_MUTEX(fadump_mutex);
-static struct fadump_mrange_info crash_mrange_info = { "crash", NULL, 0, 0, 0, false };
-
#define RESERVED_RNGS_SZ 16384 /* 16K - 128 entries */
#define RESERVED_RNGS_CNT (RESERVED_RNGS_SZ / \
sizeof(struct fadump_memory_range))
@@ -133,6 +131,41 @@ static int __init fadump_cma_init(void)
static int __init fadump_cma_init(void) { return 1; }
#endif /* CONFIG_CMA */
+/*
+ * Additional parameters meant for capture kernel are placed in a dedicated area.
+ * If this is capture kernel boot, append these parameters to bootargs.
+ */
+void __init fadump_append_bootargs(void)
+{
+ char *append_args;
+ size_t len;
+
+ if (!fw_dump.dump_active || !fw_dump.param_area_supported || !fw_dump.param_area)
+ return;
+
+ if (fw_dump.param_area >= fw_dump.boot_mem_top) {
+ if (memblock_reserve(fw_dump.param_area, COMMAND_LINE_SIZE)) {
+ pr_warn("WARNING: Can't use additional parameters area!\n");
+ fw_dump.param_area = 0;
+ return;
+ }
+ }
+
+ append_args = (char *)fw_dump.param_area;
+ len = strlen(boot_command_line);
+
+ /*
+ * Too late to fail even if cmdline size exceeds. Truncate additional parameters
+ * to cmdline size and proceed anyway.
+ */
+ if (len + strlen(append_args) >= COMMAND_LINE_SIZE - 1)
+ pr_warn("WARNING: Appending parameters exceeds cmdline size. Truncating!\n");
+
+ pr_debug("Cmdline: %s\n", boot_command_line);
+ snprintf(boot_command_line + len, COMMAND_LINE_SIZE - len, " %s", append_args);
+ pr_info("Updated cmdline: %s\n", boot_command_line);
+}
+
/* Scan the Firmware Assisted dump configuration details. */
int __init early_init_dt_scan_fw_dump(unsigned long node, const char *uname,
int depth, void *data)
@@ -223,28 +256,6 @@ static bool is_fadump_mem_area_contiguous(u64 d_start, u64 d_end)
}
/*
- * Returns true, if there are no holes in boot memory area,
- * false otherwise.
- */
-bool is_fadump_boot_mem_contiguous(void)
-{
- unsigned long d_start, d_end;
- bool ret = false;
- int i;
-
- for (i = 0; i < fw_dump.boot_mem_regs_cnt; i++) {
- d_start = fw_dump.boot_mem_addr[i];
- d_end = d_start + fw_dump.boot_mem_sz[i];
-
- ret = is_fadump_mem_area_contiguous(d_start, d_end);
- if (!ret)
- break;
- }
-
- return ret;
-}
-
-/*
* Returns true, if there are no holes in reserved memory area,
* false otherwise.
*/
@@ -373,12 +384,6 @@ static unsigned long __init get_fadump_area_size(void)
size = PAGE_ALIGN(size);
size += fw_dump.boot_memory_size;
size += sizeof(struct fadump_crash_info_header);
- size += sizeof(struct elfhdr); /* ELF core header.*/
- size += sizeof(struct elf_phdr); /* place holder for cpu notes */
- /* Program headers for crash memory regions. */
- size += sizeof(struct elf_phdr) * (memblock_num_regions(memory) + 2);
-
- size = PAGE_ALIGN(size);
/* This is to hold kernel metadata on platforms that support it */
size += (fw_dump.ops->fadump_get_metadata_size ?
@@ -389,10 +394,11 @@ static unsigned long __init get_fadump_area_size(void)
static int __init add_boot_mem_region(unsigned long rstart,
unsigned long rsize)
{
+ int max_boot_mem_rgns = fw_dump.ops->fadump_max_boot_mem_rgns();
int i = fw_dump.boot_mem_regs_cnt++;
- if (fw_dump.boot_mem_regs_cnt > FADUMP_MAX_MEM_REGS) {
- fw_dump.boot_mem_regs_cnt = FADUMP_MAX_MEM_REGS;
+ if (fw_dump.boot_mem_regs_cnt > max_boot_mem_rgns) {
+ fw_dump.boot_mem_regs_cnt = max_boot_mem_rgns;
return 0;
}
@@ -573,22 +579,6 @@ int __init fadump_reserve_mem(void)
}
}
- /*
- * Calculate the memory boundary.
- * If memory_limit is less than actual memory boundary then reserve
- * the memory for fadump beyond the memory_limit and adjust the
- * memory_limit accordingly, so that the running kernel can run with
- * specified memory_limit.
- */
- if (memory_limit && memory_limit < memblock_end_of_DRAM()) {
- size = get_fadump_area_size();
- if ((memory_limit + size) < memblock_end_of_DRAM())
- memory_limit += size;
- else
- memory_limit = memblock_end_of_DRAM();
- printk(KERN_INFO "Adjusted memory_limit for firmware-assisted"
- " dump, now %#016llx\n", memory_limit);
- }
if (memory_limit)
mem_boundary = memory_limit;
else
@@ -705,7 +695,7 @@ void crash_fadump(struct pt_regs *regs, const char *str)
* old_cpu == -1 means this is the first CPU which has come here,
* go ahead and trigger fadump.
*
- * old_cpu != -1 means some other CPU has already on it's way
+ * old_cpu != -1 means some other CPU has already on its way
* to trigger fadump, just keep looping here.
*/
this_cpu = smp_processor_id();
@@ -931,36 +921,6 @@ static inline int fadump_add_mem_range(struct fadump_mrange_info *mrange_info,
return 0;
}
-static int fadump_exclude_reserved_area(u64 start, u64 end)
-{
- u64 ra_start, ra_end;
- int ret = 0;
-
- ra_start = fw_dump.reserve_dump_area_start;
- ra_end = ra_start + fw_dump.reserve_dump_area_size;
-
- if ((ra_start < end) && (ra_end > start)) {
- if ((start < ra_start) && (end > ra_end)) {
- ret = fadump_add_mem_range(&crash_mrange_info,
- start, ra_start);
- if (ret)
- return ret;
-
- ret = fadump_add_mem_range(&crash_mrange_info,
- ra_end, end);
- } else if (start < ra_start) {
- ret = fadump_add_mem_range(&crash_mrange_info,
- start, ra_start);
- } else if (ra_end < end) {
- ret = fadump_add_mem_range(&crash_mrange_info,
- ra_end, end);
- }
- } else
- ret = fadump_add_mem_range(&crash_mrange_info, start, end);
-
- return ret;
-}
-
static int fadump_init_elfcore_header(char *bufp)
{
struct elfhdr *elf;
@@ -998,52 +958,6 @@ static int fadump_init_elfcore_header(char *bufp)
}
/*
- * Traverse through memblock structure and setup crash memory ranges. These
- * ranges will be used create PT_LOAD program headers in elfcore header.
- */
-static int fadump_setup_crash_memory_ranges(void)
-{
- u64 i, start, end;
- int ret;
-
- pr_debug("Setup crash memory ranges.\n");
- crash_mrange_info.mem_range_cnt = 0;
-
- /*
- * Boot memory region(s) registered with firmware are moved to
- * different location at the time of crash. Create separate program
- * header(s) for this memory chunk(s) with the correct offset.
- */
- for (i = 0; i < fw_dump.boot_mem_regs_cnt; i++) {
- start = fw_dump.boot_mem_addr[i];
- end = start + fw_dump.boot_mem_sz[i];
- ret = fadump_add_mem_range(&crash_mrange_info, start, end);
- if (ret)
- return ret;
- }
-
- for_each_mem_range(i, &start, &end) {
- /*
- * skip the memory chunk that is already added
- * (0 through boot_memory_top).
- */
- if (start < fw_dump.boot_mem_top) {
- if (end > fw_dump.boot_mem_top)
- start = fw_dump.boot_mem_top;
- else
- continue;
- }
-
- /* add this range excluding the reserved dump area. */
- ret = fadump_exclude_reserved_area(start, end);
- if (ret)
- return ret;
- }
-
- return 0;
-}
-
-/*
* If the given physical address falls within the boot memory region then
* return the relocated address that points to the dump region reserved
* for saving initial boot memory contents.
@@ -1073,36 +987,50 @@ static inline unsigned long fadump_relocate(unsigned long paddr)
return raddr;
}
-static int fadump_create_elfcore_headers(char *bufp)
+static void __init populate_elf_pt_load(struct elf_phdr *phdr, u64 start,
+ u64 size, unsigned long long offset)
{
- unsigned long long raddr, offset;
- struct elf_phdr *phdr;
+ phdr->p_align = 0;
+ phdr->p_memsz = size;
+ phdr->p_filesz = size;
+ phdr->p_paddr = start;
+ phdr->p_offset = offset;
+ phdr->p_type = PT_LOAD;
+ phdr->p_flags = PF_R|PF_W|PF_X;
+ phdr->p_vaddr = (unsigned long)__va(start);
+}
+
+static void __init fadump_populate_elfcorehdr(struct fadump_crash_info_header *fdh)
+{
+ char *bufp;
struct elfhdr *elf;
- int i, j;
+ struct elf_phdr *phdr;
+ u64 boot_mem_dest_offset;
+ unsigned long long i, ra_start, ra_end, ra_size, mstart, mend;
+ bufp = (char *) fw_dump.elfcorehdr_addr;
fadump_init_elfcore_header(bufp);
elf = (struct elfhdr *)bufp;
bufp += sizeof(struct elfhdr);
/*
- * setup ELF PT_NOTE, place holder for cpu notes info. The notes info
- * will be populated during second kernel boot after crash. Hence
- * this PT_NOTE will always be the first elf note.
+ * Set up ELF PT_NOTE, a placeholder for CPU notes information.
+ * The notes info will be populated later by platform-specific code.
+ * Hence, this PT_NOTE will always be the first ELF note.
*
* NOTE: Any new ELF note addition should be placed after this note.
*/
phdr = (struct elf_phdr *)bufp;
bufp += sizeof(struct elf_phdr);
phdr->p_type = PT_NOTE;
- phdr->p_flags = 0;
- phdr->p_vaddr = 0;
- phdr->p_align = 0;
-
- phdr->p_offset = 0;
- phdr->p_paddr = 0;
- phdr->p_filesz = 0;
- phdr->p_memsz = 0;
-
+ phdr->p_flags = 0;
+ phdr->p_vaddr = 0;
+ phdr->p_align = 0;
+ phdr->p_offset = 0;
+ phdr->p_paddr = 0;
+ phdr->p_filesz = 0;
+ phdr->p_memsz = 0;
+ /* Increment number of program headers. */
(elf->e_phnum)++;
/* setup ELF PT_NOTE for vmcoreinfo */
@@ -1112,55 +1040,66 @@ static int fadump_create_elfcore_headers(char *bufp)
phdr->p_flags = 0;
phdr->p_vaddr = 0;
phdr->p_align = 0;
-
- phdr->p_paddr = fadump_relocate(paddr_vmcoreinfo_note());
- phdr->p_offset = phdr->p_paddr;
- phdr->p_memsz = phdr->p_filesz = VMCOREINFO_NOTE_SIZE;
-
+ phdr->p_paddr = phdr->p_offset = fdh->vmcoreinfo_raddr;
+ phdr->p_memsz = phdr->p_filesz = fdh->vmcoreinfo_size;
/* Increment number of program headers. */
(elf->e_phnum)++;
- /* setup PT_LOAD sections. */
- j = 0;
- offset = 0;
- raddr = fw_dump.boot_mem_addr[0];
- for (i = 0; i < crash_mrange_info.mem_range_cnt; i++) {
- u64 mbase, msize;
-
- mbase = crash_mrange_info.mem_ranges[i].base;
- msize = crash_mrange_info.mem_ranges[i].size;
- if (!msize)
- continue;
-
+ /*
+ * Setup PT_LOAD sections. first include boot memory regions
+ * and then add rest of the memory regions.
+ */
+ boot_mem_dest_offset = fw_dump.boot_mem_dest_addr;
+ for (i = 0; i < fw_dump.boot_mem_regs_cnt; i++) {
phdr = (struct elf_phdr *)bufp;
bufp += sizeof(struct elf_phdr);
- phdr->p_type = PT_LOAD;
- phdr->p_flags = PF_R|PF_W|PF_X;
- phdr->p_offset = mbase;
-
- if (mbase == raddr) {
- /*
- * The entire real memory region will be moved by
- * firmware to the specified destination_address.
- * Hence set the correct offset.
- */
- phdr->p_offset = fw_dump.boot_mem_dest_addr + offset;
- if (j < (fw_dump.boot_mem_regs_cnt - 1)) {
- offset += fw_dump.boot_mem_sz[j];
- raddr = fw_dump.boot_mem_addr[++j];
- }
+ populate_elf_pt_load(phdr, fw_dump.boot_mem_addr[i],
+ fw_dump.boot_mem_sz[i],
+ boot_mem_dest_offset);
+ /* Increment number of program headers. */
+ (elf->e_phnum)++;
+ boot_mem_dest_offset += fw_dump.boot_mem_sz[i];
+ }
+
+ /* Memory reserved for fadump in first kernel */
+ ra_start = fw_dump.reserve_dump_area_start;
+ ra_size = get_fadump_area_size();
+ ra_end = ra_start + ra_size;
+
+ phdr = (struct elf_phdr *)bufp;
+ for_each_mem_range(i, &mstart, &mend) {
+ /* Boot memory regions already added, skip them now */
+ if (mstart < fw_dump.boot_mem_top) {
+ if (mend > fw_dump.boot_mem_top)
+ mstart = fw_dump.boot_mem_top;
+ else
+ continue;
}
- phdr->p_paddr = mbase;
- phdr->p_vaddr = (unsigned long)__va(mbase);
- phdr->p_filesz = msize;
- phdr->p_memsz = msize;
- phdr->p_align = 0;
+ /* Handle memblock regions overlaps with fadump reserved area */
+ if ((ra_start < mend) && (ra_end > mstart)) {
+ if ((mstart < ra_start) && (mend > ra_end)) {
+ populate_elf_pt_load(phdr, mstart, ra_start - mstart, mstart);
+ /* Increment number of program headers. */
+ (elf->e_phnum)++;
+ bufp += sizeof(struct elf_phdr);
+ phdr = (struct elf_phdr *)bufp;
+ populate_elf_pt_load(phdr, ra_end, mend - ra_end, ra_end);
+ } else if (mstart < ra_start) {
+ populate_elf_pt_load(phdr, mstart, ra_start - mstart, mstart);
+ } else if (ra_end < mend) {
+ populate_elf_pt_load(phdr, ra_end, mend - ra_end, ra_end);
+ }
+ } else {
+ /* No overlap with fadump reserved memory region */
+ populate_elf_pt_load(phdr, mstart, mend - mstart, mstart);
+ }
/* Increment number of program headers. */
(elf->e_phnum)++;
+ bufp += sizeof(struct elf_phdr);
+ phdr = (struct elf_phdr *) bufp;
}
- return 0;
}
static unsigned long init_fadump_header(unsigned long addr)
@@ -1175,14 +1114,25 @@ static unsigned long init_fadump_header(unsigned long addr)
memset(fdh, 0, sizeof(struct fadump_crash_info_header));
fdh->magic_number = FADUMP_CRASH_INFO_MAGIC;
- fdh->elfcorehdr_addr = addr;
+ fdh->version = FADUMP_HEADER_VERSION;
/* We will set the crashing cpu id in crash_fadump() during crash. */
fdh->crashing_cpu = FADUMP_CPU_UNKNOWN;
+
+ /*
+ * The physical address and size of vmcoreinfo are required in the
+ * second kernel to prepare elfcorehdr.
+ */
+ fdh->vmcoreinfo_raddr = fadump_relocate(paddr_vmcoreinfo_note());
+ fdh->vmcoreinfo_size = VMCOREINFO_NOTE_SIZE;
+
+
+ fdh->pt_regs_sz = sizeof(struct pt_regs);
/*
* When LPAR is terminated by PYHP, ensure all possible CPUs'
* register data is processed while exporting the vmcore.
*/
fdh->cpu_mask = *cpu_possible_mask;
+ fdh->cpu_mask_sz = sizeof(struct cpumask);
return addr;
}
@@ -1190,8 +1140,6 @@ static unsigned long init_fadump_header(unsigned long addr)
static int register_fadump(void)
{
unsigned long addr;
- void *vaddr;
- int ret;
/*
* If no memory is reserved then we can not register for firmware-
@@ -1200,18 +1148,10 @@ static int register_fadump(void)
if (!fw_dump.reserve_dump_area_size)
return -ENODEV;
- ret = fadump_setup_crash_memory_ranges();
- if (ret)
- return ret;
-
addr = fw_dump.fadumphdr_addr;
/* Initialize fadump crash info header. */
addr = init_fadump_header(addr);
- vaddr = __va(addr);
-
- pr_debug("Creating ELF core headers at %#016lx\n", addr);
- fadump_create_elfcore_headers(vaddr);
/* register the future kernel dump with firmware. */
pr_debug("Registering for firmware-assisted kernel dump...\n");
@@ -1230,7 +1170,6 @@ void fadump_cleanup(void)
} else if (fw_dump.dump_registered) {
/* Un-register Firmware-assisted dump if it was registered. */
fw_dump.ops->fadump_unregister(&fw_dump);
- fadump_free_mem_ranges(&crash_mrange_info);
}
if (fw_dump.ops->fadump_cleanup)
@@ -1416,6 +1355,22 @@ static void fadump_release_memory(u64 begin, u64 end)
fadump_release_reserved_area(tstart, end);
}
+static void fadump_free_elfcorehdr_buf(void)
+{
+ if (fw_dump.elfcorehdr_addr == 0 || fw_dump.elfcorehdr_size == 0)
+ return;
+
+ /*
+ * Before freeing the memory of `elfcorehdr`, reset the global
+ * `elfcorehdr_addr` to prevent modules like `vmcore` from accessing
+ * invalid memory.
+ */
+ elfcorehdr_addr = ELFCORE_ADDR_ERR;
+ fadump_free_buffer(fw_dump.elfcorehdr_addr, fw_dump.elfcorehdr_size);
+ fw_dump.elfcorehdr_addr = 0;
+ fw_dump.elfcorehdr_size = 0;
+}
+
static void fadump_invalidate_release_mem(void)
{
mutex_lock(&fadump_mutex);
@@ -1427,6 +1382,7 @@ static void fadump_invalidate_release_mem(void)
fadump_cleanup();
mutex_unlock(&fadump_mutex);
+ fadump_free_elfcorehdr_buf();
fadump_release_memory(fw_dump.boot_mem_top, memblock_end_of_DRAM());
fadump_free_cpu_notes_buf();
@@ -1484,6 +1440,18 @@ static ssize_t enabled_show(struct kobject *kobj,
return sprintf(buf, "%d\n", fw_dump.fadump_enabled);
}
+/*
+ * /sys/kernel/fadump/hotplug_ready sysfs node returns 1, which inidcates
+ * to usersapce that fadump re-registration is not required on memory
+ * hotplug events.
+ */
+static ssize_t hotplug_ready_show(struct kobject *kobj,
+ struct kobj_attribute *attr,
+ char *buf)
+{
+ return sprintf(buf, "%d\n", 1);
+}
+
static ssize_t mem_reserved_show(struct kobject *kobj,
struct kobj_attribute *attr,
char *buf)
@@ -1498,6 +1466,43 @@ static ssize_t registered_show(struct kobject *kobj,
return sprintf(buf, "%d\n", fw_dump.dump_registered);
}
+static ssize_t bootargs_append_show(struct kobject *kobj,
+ struct kobj_attribute *attr,
+ char *buf)
+{
+ return sprintf(buf, "%s\n", (char *)__va(fw_dump.param_area));
+}
+
+static ssize_t bootargs_append_store(struct kobject *kobj,
+ struct kobj_attribute *attr,
+ const char *buf, size_t count)
+{
+ char *params;
+
+ if (!fw_dump.fadump_enabled || fw_dump.dump_active)
+ return -EPERM;
+
+ if (count >= COMMAND_LINE_SIZE)
+ return -EINVAL;
+
+ /*
+ * Fail here instead of handling this scenario with
+ * some silly workaround in capture kernel.
+ */
+ if (saved_command_line_len + count >= COMMAND_LINE_SIZE) {
+ pr_err("Appending parameters exceeds cmdline size!\n");
+ return -ENOSPC;
+ }
+
+ params = __va(fw_dump.param_area);
+ strscpy_pad(params, buf, COMMAND_LINE_SIZE);
+ /* Remove newline character at the end. */
+ if (params[count-1] == '\n')
+ params[count-1] = '\0';
+
+ return count;
+}
+
static ssize_t registered_store(struct kobject *kobj,
struct kobj_attribute *attr,
const char *buf, size_t count)
@@ -1556,11 +1561,14 @@ static struct kobj_attribute release_attr = __ATTR_WO(release_mem);
static struct kobj_attribute enable_attr = __ATTR_RO(enabled);
static struct kobj_attribute register_attr = __ATTR_RW(registered);
static struct kobj_attribute mem_reserved_attr = __ATTR_RO(mem_reserved);
+static struct kobj_attribute hotplug_ready_attr = __ATTR_RO(hotplug_ready);
+static struct kobj_attribute bootargs_append_attr = __ATTR_RW(bootargs_append);
static struct attribute *fadump_attrs[] = {
&enable_attr.attr,
&register_attr.attr,
&mem_reserved_attr.attr,
+ &hotplug_ready_attr.attr,
NULL,
};
@@ -1632,6 +1640,150 @@ static void __init fadump_init_files(void)
return;
}
+static int __init fadump_setup_elfcorehdr_buf(void)
+{
+ int elf_phdr_cnt;
+ unsigned long elfcorehdr_size;
+
+ /*
+ * Program header for CPU notes comes first, followed by one for
+ * vmcoreinfo, and the remaining program headers correspond to
+ * memory regions.
+ */
+ elf_phdr_cnt = 2 + fw_dump.boot_mem_regs_cnt + memblock_num_regions(memory);
+ elfcorehdr_size = sizeof(struct elfhdr) + (elf_phdr_cnt * sizeof(struct elf_phdr));
+ elfcorehdr_size = PAGE_ALIGN(elfcorehdr_size);
+
+ fw_dump.elfcorehdr_addr = (u64)fadump_alloc_buffer(elfcorehdr_size);
+ if (!fw_dump.elfcorehdr_addr) {
+ pr_err("Failed to allocate %lu bytes for elfcorehdr\n",
+ elfcorehdr_size);
+ return -ENOMEM;
+ }
+ fw_dump.elfcorehdr_size = elfcorehdr_size;
+ return 0;
+}
+
+/*
+ * Check if the fadump header of crashed kernel is compatible with fadump kernel.
+ *
+ * It checks the magic number, endianness, and size of non-primitive type
+ * members of fadump header to ensure safe dump collection.
+ */
+static bool __init is_fadump_header_compatible(struct fadump_crash_info_header *fdh)
+{
+ if (fdh->magic_number == FADUMP_CRASH_INFO_MAGIC_OLD) {
+ pr_err("Old magic number, can't process the dump.\n");
+ return false;
+ }
+
+ if (fdh->magic_number != FADUMP_CRASH_INFO_MAGIC) {
+ if (fdh->magic_number == swab64(FADUMP_CRASH_INFO_MAGIC))
+ pr_err("Endianness mismatch between the crashed and fadump kernels.\n");
+ else
+ pr_err("Fadump header is corrupted.\n");
+
+ return false;
+ }
+
+ /*
+ * Dump collection is not safe if the size of non-primitive type members
+ * of the fadump header do not match between crashed and fadump kernel.
+ */
+ if (fdh->pt_regs_sz != sizeof(struct pt_regs) ||
+ fdh->cpu_mask_sz != sizeof(struct cpumask)) {
+ pr_err("Fadump header size mismatch.\n");
+ return false;
+ }
+
+ return true;
+}
+
+static void __init fadump_process(void)
+{
+ struct fadump_crash_info_header *fdh;
+
+ fdh = (struct fadump_crash_info_header *) __va(fw_dump.fadumphdr_addr);
+ if (!fdh) {
+ pr_err("Crash info header is empty.\n");
+ goto err_out;
+ }
+
+ /* Avoid processing the dump if fadump header isn't compatible */
+ if (!is_fadump_header_compatible(fdh))
+ goto err_out;
+
+ /* Allocate buffer for elfcorehdr */
+ if (fadump_setup_elfcorehdr_buf())
+ goto err_out;
+
+ fadump_populate_elfcorehdr(fdh);
+
+ /* Let platform update the CPU notes in elfcorehdr */
+ if (fw_dump.ops->fadump_process(&fw_dump) < 0)
+ goto err_out;
+
+ /*
+ * elfcorehdr is now ready to be exported.
+ *
+ * set elfcorehdr_addr so that vmcore module will export the
+ * elfcorehdr through '/proc/vmcore'.
+ */
+ elfcorehdr_addr = virt_to_phys((void *)fw_dump.elfcorehdr_addr);
+ return;
+
+err_out:
+ fadump_invalidate_release_mem();
+}
+
+/*
+ * Reserve memory to store additional parameters to be passed
+ * for fadump/capture kernel.
+ */
+static void __init fadump_setup_param_area(void)
+{
+ phys_addr_t range_start, range_end;
+
+ if (!fw_dump.param_area_supported || fw_dump.dump_active)
+ return;
+
+ /* This memory can't be used by PFW or bootloader as it is shared across kernels */
+ if (radix_enabled()) {
+ /*
+ * Anywhere in the upper half should be good enough as all memory
+ * is accessible in real mode.
+ */
+ range_start = memblock_end_of_DRAM() / 2;
+ range_end = memblock_end_of_DRAM();
+ } else {
+ /*
+ * Passing additional parameters is supported for hash MMU only
+ * if the first memory block size is 768MB or higher.
+ */
+ if (ppc64_rma_size < 0x30000000)
+ return;
+
+ /*
+ * 640 MB to 768 MB is not used by PFW/bootloader. So, try reserving
+ * memory for passing additional parameters in this range to avoid
+ * being stomped on by PFW/bootloader.
+ */
+ range_start = 0x2A000000;
+ range_end = range_start + 0x4000000;
+ }
+
+ fw_dump.param_area = memblock_phys_alloc_range(COMMAND_LINE_SIZE,
+ COMMAND_LINE_SIZE,
+ range_start,
+ range_end);
+ if (!fw_dump.param_area || sysfs_create_file(fadump_kobj, &bootargs_append_attr.attr)) {
+ pr_warn("WARNING: Could not setup area to pass additional parameters!\n");
+ return;
+ }
+
+ memset(phys_to_virt(fw_dump.param_area), 0, COMMAND_LINE_SIZE);
+}
+
/*
* Prepare for firmware-assisted dump.
*/
@@ -1651,15 +1803,11 @@ int __init setup_fadump(void)
* saving it to the disk.
*/
if (fw_dump.dump_active) {
- /*
- * if dump process fails then invalidate the registration
- * and release memory before proceeding for re-registration.
- */
- if (fw_dump.ops->fadump_process(&fw_dump) < 0)
- fadump_invalidate_release_mem();
+ fadump_process();
}
/* Initialize the kernel dump memory structure and register with f/w */
else if (fw_dump.reserve_dump_area_size) {
+ fadump_setup_param_area();
fw_dump.ops->fadump_init_mem_struct(&fw_dump);
register_fadump();
}
@@ -1735,8 +1883,3 @@ static void __init fadump_reserve_crash_area(u64 base)
memblock_reserve(mstart, msize);
}
}
-
-unsigned long __init arch_reserved_kernel_pages(void)
-{
- return memblock_reserved_size() / PAGE_SIZE;
-}