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@@ -34,15 +34,26 @@
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#undef DEBUG_NVRAM
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-static struct nvram_partition * nvram_part;
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-static long nvram_error_log_index = -1;
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-static long nvram_error_log_size = 0;
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+#define NVRAM_HEADER_LEN sizeof(struct nvram_header)
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+#define NVRAM_BLOCK_LEN NVRAM_HEADER_LEN
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+
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+/* If change this size, then change the size of NVNAME_LEN */
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+struct nvram_header {
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+ unsigned char signature;
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+ unsigned char checksum;
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+ unsigned short length;
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+ /* Terminating null required only for names < 12 chars. */
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+ char name[12];
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+};
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-struct err_log_info {
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- int error_type;
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- unsigned int seq_num;
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+struct nvram_partition {
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+ struct list_head partition;
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+ struct nvram_header header;
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+ unsigned int index;
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};
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+static LIST_HEAD(nvram_partitions);
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+
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static loff_t dev_nvram_llseek(struct file *file, loff_t offset, int origin)
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{
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int size;
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@@ -186,14 +197,12 @@ static struct miscdevice nvram_dev = {
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#ifdef DEBUG_NVRAM
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static void __init nvram_print_partitions(char * label)
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{
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- struct list_head * p;
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struct nvram_partition * tmp_part;
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printk(KERN_WARNING "--------%s---------\n", label);
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printk(KERN_WARNING "indx\t\tsig\tchks\tlen\tname\n");
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- list_for_each(p, &nvram_part->partition) {
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- tmp_part = list_entry(p, struct nvram_partition, partition);
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- printk(KERN_WARNING "%4d \t%02x\t%02x\t%d\t%s\n",
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+ list_for_each_entry(tmp_part, &nvram_partitions, partition) {
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+ printk(KERN_WARNING "%4d \t%02x\t%02x\t%d\t%12s\n",
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tmp_part->index, tmp_part->header.signature,
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tmp_part->header.checksum, tmp_part->header.length,
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tmp_part->header.name);
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@@ -228,95 +237,113 @@ static unsigned char __init nvram_checksum(struct nvram_header *p)
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return c_sum;
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}
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-static int __init nvram_remove_os_partition(void)
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+/**
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+ * nvram_remove_partition - Remove one or more partitions in nvram
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+ * @name: name of the partition to remove, or NULL for a
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+ * signature only match
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+ * @sig: signature of the partition(s) to remove
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+ */
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+
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+int __init nvram_remove_partition(const char *name, int sig)
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{
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- struct list_head *i;
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- struct list_head *j;
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- struct nvram_partition * part;
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- struct nvram_partition * cur_part;
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+ struct nvram_partition *part, *prev, *tmp;
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int rc;
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- list_for_each(i, &nvram_part->partition) {
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- part = list_entry(i, struct nvram_partition, partition);
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- if (part->header.signature != NVRAM_SIG_OS)
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+ list_for_each_entry(part, &nvram_partitions, partition) {
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+ if (part->header.signature != sig)
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continue;
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-
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- /* Make os partition a free partition */
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+ if (name && strncmp(name, part->header.name, 12))
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+ continue;
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+
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+ /* Make partition a free partition */
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part->header.signature = NVRAM_SIG_FREE;
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- sprintf(part->header.name, "wwwwwwwwwwww");
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+ strncpy(part->header.name, "wwwwwwwwwwww", 12);
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part->header.checksum = nvram_checksum(&part->header);
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-
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- /* Merge contiguous free partitions backwards */
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- list_for_each_prev(j, &part->partition) {
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- cur_part = list_entry(j, struct nvram_partition, partition);
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- if (cur_part == nvram_part || cur_part->header.signature != NVRAM_SIG_FREE) {
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- break;
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- }
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-
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- part->header.length += cur_part->header.length;
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- part->header.checksum = nvram_checksum(&part->header);
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- part->index = cur_part->index;
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-
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- list_del(&cur_part->partition);
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- kfree(cur_part);
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- j = &part->partition; /* fixup our loop */
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- }
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-
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- /* Merge contiguous free partitions forwards */
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- list_for_each(j, &part->partition) {
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- cur_part = list_entry(j, struct nvram_partition, partition);
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- if (cur_part == nvram_part || cur_part->header.signature != NVRAM_SIG_FREE) {
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- break;
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- }
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-
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- part->header.length += cur_part->header.length;
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- part->header.checksum = nvram_checksum(&part->header);
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-
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- list_del(&cur_part->partition);
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- kfree(cur_part);
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- j = &part->partition; /* fixup our loop */
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- }
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-
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rc = nvram_write_header(part);
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if (rc <= 0) {
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- printk(KERN_ERR "nvram_remove_os_partition: nvram_write failed (%d)\n", rc);
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+ printk(KERN_ERR "nvram_remove_partition: nvram_write failed (%d)\n", rc);
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return rc;
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}
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+ }
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+ /* Merge contiguous ones */
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+ prev = NULL;
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+ list_for_each_entry_safe(part, tmp, &nvram_partitions, partition) {
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+ if (part->header.signature != NVRAM_SIG_FREE) {
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+ prev = NULL;
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+ continue;
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+ }
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+ if (prev) {
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+ prev->header.length += part->header.length;
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+ prev->header.checksum = nvram_checksum(&part->header);
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+ rc = nvram_write_header(part);
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+ if (rc <= 0) {
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+ printk(KERN_ERR "nvram_remove_partition: nvram_write failed (%d)\n", rc);
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+ return rc;
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+ }
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+ list_del(&part->partition);
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+ kfree(part);
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+ } else
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+ prev = part;
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}
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return 0;
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}
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-/* nvram_create_os_partition
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+/**
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+ * nvram_create_partition - Create a partition in nvram
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+ * @name: name of the partition to create
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+ * @sig: signature of the partition to create
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+ * @req_size: size of data to allocate in bytes
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+ * @min_size: minimum acceptable size (0 means req_size)
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*
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- * Create a OS linux partition to buffer error logs.
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- * Will create a partition starting at the first free
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- * space found if space has enough room.
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+ * Returns a negative error code or a positive nvram index
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+ * of the beginning of the data area of the newly created
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+ * partition. If you provided a min_size smaller than req_size
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+ * you need to query for the actual size yourself after the
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+ * call using nvram_partition_get_size().
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*/
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-static int __init nvram_create_os_partition(void)
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+loff_t __init nvram_create_partition(const char *name, int sig,
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+ int req_size, int min_size)
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{
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struct nvram_partition *part;
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struct nvram_partition *new_part;
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struct nvram_partition *free_part = NULL;
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- int seq_init[2] = { 0, 0 };
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+ static char nv_init_vals[16];
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loff_t tmp_index;
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long size = 0;
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int rc;
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-
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+
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+ /* Convert sizes from bytes to blocks */
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+ req_size = _ALIGN_UP(req_size, NVRAM_BLOCK_LEN) / NVRAM_BLOCK_LEN;
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+ min_size = _ALIGN_UP(min_size, NVRAM_BLOCK_LEN) / NVRAM_BLOCK_LEN;
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+
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+ /* If no minimum size specified, make it the same as the
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+ * requested size
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+ */
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+ if (min_size == 0)
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+ min_size = req_size;
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+ if (min_size > req_size)
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+ return -EINVAL;
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+
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+ /* Now add one block to each for the header */
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+ req_size += 1;
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+ min_size += 1;
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+
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/* Find a free partition that will give us the maximum needed size
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If can't find one that will give us the minimum size needed */
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- list_for_each_entry(part, &nvram_part->partition, partition) {
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+ list_for_each_entry(part, &nvram_partitions, partition) {
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if (part->header.signature != NVRAM_SIG_FREE)
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continue;
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- if (part->header.length >= NVRAM_MAX_REQ) {
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- size = NVRAM_MAX_REQ;
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+ if (part->header.length >= req_size) {
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+ size = req_size;
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free_part = part;
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break;
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}
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- if (!size && part->header.length >= NVRAM_MIN_REQ) {
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- size = NVRAM_MIN_REQ;
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+ if (part->header.length > size &&
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+ part->header.length >= min_size) {
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+ size = part->header.length;
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free_part = part;
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}
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}
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@@ -326,136 +353,95 @@ static int __init nvram_create_os_partition(void)
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/* Create our OS partition */
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new_part = kmalloc(sizeof(*new_part), GFP_KERNEL);
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if (!new_part) {
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- printk(KERN_ERR "nvram_create_os_partition: kmalloc failed\n");
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+ pr_err("nvram_create_os_partition: kmalloc failed\n");
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return -ENOMEM;
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}
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new_part->index = free_part->index;
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- new_part->header.signature = NVRAM_SIG_OS;
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+ new_part->header.signature = sig;
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new_part->header.length = size;
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- strcpy(new_part->header.name, "ppc64,linux");
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+ strncpy(new_part->header.name, name, 12);
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new_part->header.checksum = nvram_checksum(&new_part->header);
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rc = nvram_write_header(new_part);
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if (rc <= 0) {
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- printk(KERN_ERR "nvram_create_os_partition: nvram_write_header "
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- "failed (%d)\n", rc);
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- return rc;
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- }
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-
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- /* make sure and initialize to zero the sequence number and the error
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- type logged */
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- tmp_index = new_part->index + NVRAM_HEADER_LEN;
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- rc = ppc_md.nvram_write((char *)&seq_init, sizeof(seq_init), &tmp_index);
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- if (rc <= 0) {
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- printk(KERN_ERR "nvram_create_os_partition: nvram_write "
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+ pr_err("nvram_create_os_partition: nvram_write_header "
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"failed (%d)\n", rc);
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return rc;
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}
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-
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- nvram_error_log_index = new_part->index + NVRAM_HEADER_LEN;
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- nvram_error_log_size = ((part->header.length - 1) *
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- NVRAM_BLOCK_LEN) - sizeof(struct err_log_info);
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-
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list_add_tail(&new_part->partition, &free_part->partition);
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- if (free_part->header.length <= size) {
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+ /* Adjust or remove the partition we stole the space from */
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+ if (free_part->header.length > size) {
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+ free_part->index += size * NVRAM_BLOCK_LEN;
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+ free_part->header.length -= size;
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+ free_part->header.checksum = nvram_checksum(&free_part->header);
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+ rc = nvram_write_header(free_part);
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+ if (rc <= 0) {
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+ pr_err("nvram_create_os_partition: nvram_write_header "
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+ "failed (%d)\n", rc);
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+ return rc;
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+ }
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+ } else {
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list_del(&free_part->partition);
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kfree(free_part);
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- return 0;
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}
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- /* Adjust the partition we stole the space from */
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- free_part->index += size * NVRAM_BLOCK_LEN;
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- free_part->header.length -= size;
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- free_part->header.checksum = nvram_checksum(&free_part->header);
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-
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- rc = nvram_write_header(free_part);
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- if (rc <= 0) {
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- printk(KERN_ERR "nvram_create_os_partition: nvram_write_header "
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- "failed (%d)\n", rc);
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- return rc;
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+ /* Clear the new partition */
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+ for (tmp_index = new_part->index + NVRAM_HEADER_LEN;
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+ tmp_index < ((size - 1) * NVRAM_BLOCK_LEN);
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+ tmp_index += NVRAM_BLOCK_LEN) {
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+ rc = ppc_md.nvram_write(nv_init_vals, NVRAM_BLOCK_LEN, &tmp_index);
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+ if (rc <= 0) {
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+ pr_err("nvram_create_partition: nvram_write failed (%d)\n", rc);
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+ return rc;
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+ }
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}
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-
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- return 0;
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+
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+ return new_part->index + NVRAM_HEADER_LEN;
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}
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-
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-/* nvram_setup_partition
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- *
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- * This will setup the partition we need for buffering the
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- * error logs and cleanup partitions if needed.
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- *
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- * The general strategy is the following:
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- * 1.) If there is ppc64,linux partition large enough then use it.
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- * 2.) If there is not a ppc64,linux partition large enough, search
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- * for a free partition that is large enough.
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- * 3.) If there is not a free partition large enough remove
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- * _all_ OS partitions and consolidate the space.
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- * 4.) Will first try getting a chunk that will satisfy the maximum
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- * error log size (NVRAM_MAX_REQ).
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- * 5.) If the max chunk cannot be allocated then try finding a chunk
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- * that will satisfy the minum needed (NVRAM_MIN_REQ).
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+/**
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+ * nvram_get_partition_size - Get the data size of an nvram partition
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+ * @data_index: This is the offset of the start of the data of
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+ * the partition. The same value that is returned by
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+ * nvram_create_partition().
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*/
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-static int __init nvram_setup_partition(void)
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+int nvram_get_partition_size(loff_t data_index)
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{
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- struct list_head * p;
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- struct nvram_partition * part;
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- int rc;
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-
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- /* For now, we don't do any of this on pmac, until I
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- * have figured out if it's worth killing some unused stuffs
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- * in our nvram, as Apple defined partitions use pretty much
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- * all of the space
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- */
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- if (machine_is(powermac))
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- return -ENOSPC;
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-
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- /* see if we have an OS partition that meets our needs.
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- will try getting the max we need. If not we'll delete
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- partitions and try again. */
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- list_for_each(p, &nvram_part->partition) {
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- part = list_entry(p, struct nvram_partition, partition);
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- if (part->header.signature != NVRAM_SIG_OS)
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- continue;
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+ struct nvram_partition *part;
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+
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+ list_for_each_entry(part, &nvram_partitions, partition) {
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+ if (part->index + NVRAM_HEADER_LEN == data_index)
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+ return (part->header.length - 1) * NVRAM_BLOCK_LEN;
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+ }
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+ return -1;
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+}
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- if (strcmp(part->header.name, "ppc64,linux"))
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- continue;
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- if (part->header.length >= NVRAM_MIN_REQ) {
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- /* found our partition */
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- nvram_error_log_index = part->index + NVRAM_HEADER_LEN;
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- nvram_error_log_size = ((part->header.length - 1) *
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- NVRAM_BLOCK_LEN) - sizeof(struct err_log_info);
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- return 0;
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+/**
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+ * nvram_find_partition - Find an nvram partition by signature and name
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+ * @name: Name of the partition or NULL for any name
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+ * @sig: Signature to test against
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+ * @out_size: if non-NULL, returns the size of the data part of the partition
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+ */
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+loff_t nvram_find_partition(const char *name, int sig, int *out_size)
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+{
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+ struct nvram_partition *p;
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+
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+ list_for_each_entry(p, &nvram_partitions, partition) {
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+ if (p->header.signature == sig &&
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+ (!name || !strncmp(p->header.name, name, 12))) {
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+ if (out_size)
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+ *out_size = (p->header.length - 1) *
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+ NVRAM_BLOCK_LEN;
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+ return p->index + NVRAM_HEADER_LEN;
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}
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}
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-
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- /* try creating a partition with the free space we have */
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- rc = nvram_create_os_partition();
|
|
|
- if (!rc) {
|
|
|
- return 0;
|
|
|
- }
|
|
|
-
|
|
|
- /* need to free up some space */
|
|
|
- rc = nvram_remove_os_partition();
|
|
|
- if (rc) {
|
|
|
- return rc;
|
|
|
- }
|
|
|
-
|
|
|
- /* create a partition in this new space */
|
|
|
- rc = nvram_create_os_partition();
|
|
|
- if (rc) {
|
|
|
- printk(KERN_ERR "nvram_create_os_partition: Could not find a "
|
|
|
- "NVRAM partition large enough\n");
|
|
|
- return rc;
|
|
|
- }
|
|
|
-
|
|
|
return 0;
|
|
|
}
|
|
|
|
|
|
-
|
|
|
-static int __init nvram_scan_partitions(void)
|
|
|
+int __init nvram_scan_partitions(void)
|
|
|
{
|
|
|
loff_t cur_index = 0;
|
|
|
struct nvram_header phead;
|
|
@@ -465,7 +451,7 @@ static int __init nvram_scan_partitions(void)
|
|
|
int total_size;
|
|
|
int err;
|
|
|
|
|
|
- if (ppc_md.nvram_size == NULL)
|
|
|
+ if (ppc_md.nvram_size == NULL || ppc_md.nvram_size() <= 0)
|
|
|
return -ENODEV;
|
|
|
total_size = ppc_md.nvram_size();
|
|
|
|
|
@@ -512,12 +498,16 @@ static int __init nvram_scan_partitions(void)
|
|
|
|
|
|
memcpy(&tmp_part->header, &phead, NVRAM_HEADER_LEN);
|
|
|
tmp_part->index = cur_index;
|
|
|
- list_add_tail(&tmp_part->partition, &nvram_part->partition);
|
|
|
+ list_add_tail(&tmp_part->partition, &nvram_partitions);
|
|
|
|
|
|
cur_index += phead.length * NVRAM_BLOCK_LEN;
|
|
|
}
|
|
|
err = 0;
|
|
|
|
|
|
+#ifdef DEBUG_NVRAM
|
|
|
+ nvram_print_partitions("NVRAM Partitions");
|
|
|
+#endif
|
|
|
+
|
|
|
out:
|
|
|
kfree(header);
|
|
|
return err;
|
|
@@ -525,9 +515,10 @@ static int __init nvram_scan_partitions(void)
|
|
|
|
|
|
static int __init nvram_init(void)
|
|
|
{
|
|
|
- int error;
|
|
|
int rc;
|
|
|
|
|
|
+ BUILD_BUG_ON(NVRAM_BLOCK_LEN != 16);
|
|
|
+
|
|
|
if (ppc_md.nvram_size == NULL || ppc_md.nvram_size() <= 0)
|
|
|
return -ENODEV;
|
|
|
|
|
@@ -537,29 +528,6 @@ static int __init nvram_init(void)
|
|
|
return rc;
|
|
|
}
|
|
|
|
|
|
- /* initialize our anchor for the nvram partition list */
|
|
|
- nvram_part = kmalloc(sizeof(struct nvram_partition), GFP_KERNEL);
|
|
|
- if (!nvram_part) {
|
|
|
- printk(KERN_ERR "nvram_init: Failed kmalloc\n");
|
|
|
- return -ENOMEM;
|
|
|
- }
|
|
|
- INIT_LIST_HEAD(&nvram_part->partition);
|
|
|
-
|
|
|
- /* Get all the NVRAM partitions */
|
|
|
- error = nvram_scan_partitions();
|
|
|
- if (error) {
|
|
|
- printk(KERN_ERR "nvram_init: Failed nvram_scan_partitions\n");
|
|
|
- return error;
|
|
|
- }
|
|
|
-
|
|
|
- if(nvram_setup_partition())
|
|
|
- printk(KERN_WARNING "nvram_init: Could not find nvram partition"
|
|
|
- " for nvram buffered error logging.\n");
|
|
|
-
|
|
|
-#ifdef DEBUG_NVRAM
|
|
|
- nvram_print_partitions("NVRAM Partitions");
|
|
|
-#endif
|
|
|
-
|
|
|
return rc;
|
|
|
}
|
|
|
|
|
@@ -568,135 +536,6 @@ void __exit nvram_cleanup(void)
|
|
|
misc_deregister( &nvram_dev );
|
|
|
}
|
|
|
|
|
|
-
|
|
|
-#ifdef CONFIG_PPC_PSERIES
|
|
|
-
|
|
|
-/* nvram_write_error_log
|
|
|
- *
|
|
|
- * We need to buffer the error logs into nvram to ensure that we have
|
|
|
- * the failure information to decode. If we have a severe error there
|
|
|
- * is no way to guarantee that the OS or the machine is in a state to
|
|
|
- * get back to user land and write the error to disk. For example if
|
|
|
- * the SCSI device driver causes a Machine Check by writing to a bad
|
|
|
- * IO address, there is no way of guaranteeing that the device driver
|
|
|
- * is in any state that is would also be able to write the error data
|
|
|
- * captured to disk, thus we buffer it in NVRAM for analysis on the
|
|
|
- * next boot.
|
|
|
- *
|
|
|
- * In NVRAM the partition containing the error log buffer will looks like:
|
|
|
- * Header (in bytes):
|
|
|
- * +-----------+----------+--------+------------+------------------+
|
|
|
- * | signature | checksum | length | name | data |
|
|
|
- * |0 |1 |2 3|4 15|16 length-1|
|
|
|
- * +-----------+----------+--------+------------+------------------+
|
|
|
- *
|
|
|
- * The 'data' section would look like (in bytes):
|
|
|
- * +--------------+------------+-----------------------------------+
|
|
|
- * | event_logged | sequence # | error log |
|
|
|
- * |0 3|4 7|8 nvram_error_log_size-1|
|
|
|
- * +--------------+------------+-----------------------------------+
|
|
|
- *
|
|
|
- * event_logged: 0 if event has not been logged to syslog, 1 if it has
|
|
|
- * sequence #: The unique sequence # for each event. (until it wraps)
|
|
|
- * error log: The error log from event_scan
|
|
|
- */
|
|
|
-int nvram_write_error_log(char * buff, int length,
|
|
|
- unsigned int err_type, unsigned int error_log_cnt)
|
|
|
-{
|
|
|
- int rc;
|
|
|
- loff_t tmp_index;
|
|
|
- struct err_log_info info;
|
|
|
-
|
|
|
- if (nvram_error_log_index == -1) {
|
|
|
- return -ESPIPE;
|
|
|
- }
|
|
|
-
|
|
|
- if (length > nvram_error_log_size) {
|
|
|
- length = nvram_error_log_size;
|
|
|
- }
|
|
|
-
|
|
|
- info.error_type = err_type;
|
|
|
- info.seq_num = error_log_cnt;
|
|
|
-
|
|
|
- tmp_index = nvram_error_log_index;
|
|
|
-
|
|
|
- rc = ppc_md.nvram_write((char *)&info, sizeof(struct err_log_info), &tmp_index);
|
|
|
- if (rc <= 0) {
|
|
|
- printk(KERN_ERR "nvram_write_error_log: Failed nvram_write (%d)\n", rc);
|
|
|
- return rc;
|
|
|
- }
|
|
|
-
|
|
|
- rc = ppc_md.nvram_write(buff, length, &tmp_index);
|
|
|
- if (rc <= 0) {
|
|
|
- printk(KERN_ERR "nvram_write_error_log: Failed nvram_write (%d)\n", rc);
|
|
|
- return rc;
|
|
|
- }
|
|
|
-
|
|
|
- return 0;
|
|
|
-}
|
|
|
-
|
|
|
-/* nvram_read_error_log
|
|
|
- *
|
|
|
- * Reads nvram for error log for at most 'length'
|
|
|
- */
|
|
|
-int nvram_read_error_log(char * buff, int length,
|
|
|
- unsigned int * err_type, unsigned int * error_log_cnt)
|
|
|
-{
|
|
|
- int rc;
|
|
|
- loff_t tmp_index;
|
|
|
- struct err_log_info info;
|
|
|
-
|
|
|
- if (nvram_error_log_index == -1)
|
|
|
- return -1;
|
|
|
-
|
|
|
- if (length > nvram_error_log_size)
|
|
|
- length = nvram_error_log_size;
|
|
|
-
|
|
|
- tmp_index = nvram_error_log_index;
|
|
|
-
|
|
|
- rc = ppc_md.nvram_read((char *)&info, sizeof(struct err_log_info), &tmp_index);
|
|
|
- if (rc <= 0) {
|
|
|
- printk(KERN_ERR "nvram_read_error_log: Failed nvram_read (%d)\n", rc);
|
|
|
- return rc;
|
|
|
- }
|
|
|
-
|
|
|
- rc = ppc_md.nvram_read(buff, length, &tmp_index);
|
|
|
- if (rc <= 0) {
|
|
|
- printk(KERN_ERR "nvram_read_error_log: Failed nvram_read (%d)\n", rc);
|
|
|
- return rc;
|
|
|
- }
|
|
|
-
|
|
|
- *error_log_cnt = info.seq_num;
|
|
|
- *err_type = info.error_type;
|
|
|
-
|
|
|
- return 0;
|
|
|
-}
|
|
|
-
|
|
|
-/* This doesn't actually zero anything, but it sets the event_logged
|
|
|
- * word to tell that this event is safely in syslog.
|
|
|
- */
|
|
|
-int nvram_clear_error_log(void)
|
|
|
-{
|
|
|
- loff_t tmp_index;
|
|
|
- int clear_word = ERR_FLAG_ALREADY_LOGGED;
|
|
|
- int rc;
|
|
|
-
|
|
|
- if (nvram_error_log_index == -1)
|
|
|
- return -1;
|
|
|
-
|
|
|
- tmp_index = nvram_error_log_index;
|
|
|
-
|
|
|
- rc = ppc_md.nvram_write((char *)&clear_word, sizeof(int), &tmp_index);
|
|
|
- if (rc <= 0) {
|
|
|
- printk(KERN_ERR "nvram_clear_error_log: Failed nvram_write (%d)\n", rc);
|
|
|
- return rc;
|
|
|
- }
|
|
|
-
|
|
|
- return 0;
|
|
|
-}
|
|
|
-
|
|
|
-#endif /* CONFIG_PPC_PSERIES */
|
|
|
-
|
|
|
module_init(nvram_init);
|
|
|
module_exit(nvram_cleanup);
|
|
|
MODULE_LICENSE("GPL");
|