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-rw-r--r--lib/Kconfig.debug14
-rw-r--r--lib/Makefile2
-rw-r--r--lib/dma-debug.c43
-rw-r--r--lib/dynamic_debug.c4
-rw-r--r--lib/lcm.c8
-rw-r--r--lib/seq_buf.c359
6 files changed, 394 insertions, 36 deletions
diff --git a/lib/Kconfig.debug b/lib/Kconfig.debug
index 4e35a5d767ed..d780351835e9 100644
--- a/lib/Kconfig.debug
+++ b/lib/Kconfig.debug
@@ -1238,21 +1238,9 @@ config RCU_CPU_STALL_TIMEOUT
RCU grace period persists, additional CPU stall warnings are
printed at more widely spaced intervals.
-config RCU_CPU_STALL_VERBOSE
- bool "Print additional per-task information for RCU_CPU_STALL_DETECTOR"
- depends on TREE_PREEMPT_RCU
- default y
- help
- This option causes RCU to printk detailed per-task information
- for any tasks that are stalling the current RCU grace period.
-
- Say N if you are unsure.
-
- Say Y if you want to enable such checks.
-
config RCU_CPU_STALL_INFO
bool "Print additional diagnostics on RCU CPU stall"
- depends on (TREE_RCU || TREE_PREEMPT_RCU) && DEBUG_KERNEL
+ depends on (TREE_RCU || PREEMPT_RCU) && DEBUG_KERNEL
default n
help
For each stalled CPU that is aware of the current RCU grace
diff --git a/lib/Makefile b/lib/Makefile
index 4b9baa45a4d9..3c3b30b9e020 100644
--- a/lib/Makefile
+++ b/lib/Makefile
@@ -13,7 +13,7 @@ lib-y := ctype.o string.o vsprintf.o cmdline.o \
sha1.o md5.o irq_regs.o argv_split.o \
proportions.o flex_proportions.o ratelimit.o show_mem.o \
is_single_threaded.o plist.o decompress.o kobject_uevent.o \
- earlycpio.o
+ earlycpio.o seq_buf.o
obj-$(CONFIG_ARCH_HAS_DEBUG_STRICT_USER_COPY_CHECKS) += usercopy.o
lib-$(CONFIG_MMU) += ioremap.o
diff --git a/lib/dma-debug.c b/lib/dma-debug.c
index add80cc02dbe..9722bd2dbc9b 100644
--- a/lib/dma-debug.c
+++ b/lib/dma-debug.c
@@ -102,6 +102,14 @@ static DEFINE_SPINLOCK(free_entries_lock);
/* Global disable flag - will be set in case of an error */
static u32 global_disable __read_mostly;
+/* Early initialization disable flag, set at the end of dma_debug_init */
+static bool dma_debug_initialized __read_mostly;
+
+static inline bool dma_debug_disabled(void)
+{
+ return global_disable || !dma_debug_initialized;
+}
+
/* Global error count */
static u32 error_count;
@@ -945,7 +953,7 @@ static int dma_debug_device_change(struct notifier_block *nb, unsigned long acti
struct dma_debug_entry *uninitialized_var(entry);
int count;
- if (global_disable)
+ if (dma_debug_disabled())
return 0;
switch (action) {
@@ -973,7 +981,7 @@ void dma_debug_add_bus(struct bus_type *bus)
{
struct notifier_block *nb;
- if (global_disable)
+ if (dma_debug_disabled())
return;
nb = kzalloc(sizeof(struct notifier_block), GFP_KERNEL);
@@ -994,6 +1002,9 @@ void dma_debug_init(u32 num_entries)
{
int i;
+ /* Do not use dma_debug_initialized here, since we really want to be
+ * called to set dma_debug_initialized
+ */
if (global_disable)
return;
@@ -1021,6 +1032,8 @@ void dma_debug_init(u32 num_entries)
nr_total_entries = num_free_entries;
+ dma_debug_initialized = true;
+
pr_info("DMA-API: debugging enabled by kernel config\n");
}
@@ -1243,7 +1256,7 @@ void debug_dma_map_page(struct device *dev, struct page *page, size_t offset,
{
struct dma_debug_entry *entry;
- if (unlikely(global_disable))
+ if (unlikely(dma_debug_disabled()))
return;
if (dma_mapping_error(dev, dma_addr))
@@ -1283,7 +1296,7 @@ void debug_dma_mapping_error(struct device *dev, dma_addr_t dma_addr)
struct hash_bucket *bucket;
unsigned long flags;
- if (unlikely(global_disable))
+ if (unlikely(dma_debug_disabled()))
return;
ref.dev = dev;
@@ -1325,7 +1338,7 @@ void debug_dma_unmap_page(struct device *dev, dma_addr_t addr,
.direction = direction,
};
- if (unlikely(global_disable))
+ if (unlikely(dma_debug_disabled()))
return;
if (map_single)
@@ -1342,7 +1355,7 @@ void debug_dma_map_sg(struct device *dev, struct scatterlist *sg,
struct scatterlist *s;
int i;
- if (unlikely(global_disable))
+ if (unlikely(dma_debug_disabled()))
return;
for_each_sg(sg, s, mapped_ents, i) {
@@ -1395,7 +1408,7 @@ void debug_dma_unmap_sg(struct device *dev, struct scatterlist *sglist,
struct scatterlist *s;
int mapped_ents = 0, i;
- if (unlikely(global_disable))
+ if (unlikely(dma_debug_disabled()))
return;
for_each_sg(sglist, s, nelems, i) {
@@ -1427,7 +1440,7 @@ void debug_dma_alloc_coherent(struct device *dev, size_t size,
{
struct dma_debug_entry *entry;
- if (unlikely(global_disable))
+ if (unlikely(dma_debug_disabled()))
return;
if (unlikely(virt == NULL))
@@ -1462,7 +1475,7 @@ void debug_dma_free_coherent(struct device *dev, size_t size,
.direction = DMA_BIDIRECTIONAL,
};
- if (unlikely(global_disable))
+ if (unlikely(dma_debug_disabled()))
return;
check_unmap(&ref);
@@ -1474,7 +1487,7 @@ void debug_dma_sync_single_for_cpu(struct device *dev, dma_addr_t dma_handle,
{
struct dma_debug_entry ref;
- if (unlikely(global_disable))
+ if (unlikely(dma_debug_disabled()))
return;
ref.type = dma_debug_single;
@@ -1494,7 +1507,7 @@ void debug_dma_sync_single_for_device(struct device *dev,
{
struct dma_debug_entry ref;
- if (unlikely(global_disable))
+ if (unlikely(dma_debug_disabled()))
return;
ref.type = dma_debug_single;
@@ -1515,7 +1528,7 @@ void debug_dma_sync_single_range_for_cpu(struct device *dev,
{
struct dma_debug_entry ref;
- if (unlikely(global_disable))
+ if (unlikely(dma_debug_disabled()))
return;
ref.type = dma_debug_single;
@@ -1536,7 +1549,7 @@ void debug_dma_sync_single_range_for_device(struct device *dev,
{
struct dma_debug_entry ref;
- if (unlikely(global_disable))
+ if (unlikely(dma_debug_disabled()))
return;
ref.type = dma_debug_single;
@@ -1556,7 +1569,7 @@ void debug_dma_sync_sg_for_cpu(struct device *dev, struct scatterlist *sg,
struct scatterlist *s;
int mapped_ents = 0, i;
- if (unlikely(global_disable))
+ if (unlikely(dma_debug_disabled()))
return;
for_each_sg(sg, s, nelems, i) {
@@ -1589,7 +1602,7 @@ void debug_dma_sync_sg_for_device(struct device *dev, struct scatterlist *sg,
struct scatterlist *s;
int mapped_ents = 0, i;
- if (unlikely(global_disable))
+ if (unlikely(dma_debug_disabled()))
return;
for_each_sg(sg, s, nelems, i) {
diff --git a/lib/dynamic_debug.c b/lib/dynamic_debug.c
index dfba05521748..527799d44476 100644
--- a/lib/dynamic_debug.c
+++ b/lib/dynamic_debug.c
@@ -576,7 +576,7 @@ void __dynamic_dev_dbg(struct _ddebug *descriptor,
} else {
char buf[PREFIX_SIZE];
- dev_printk_emit(7, dev, "%s%s %s: %pV",
+ dev_printk_emit(LOGLEVEL_DEBUG, dev, "%s%s %s: %pV",
dynamic_emit_prefix(descriptor, buf),
dev_driver_string(dev), dev_name(dev),
&vaf);
@@ -605,7 +605,7 @@ void __dynamic_netdev_dbg(struct _ddebug *descriptor,
if (dev && dev->dev.parent) {
char buf[PREFIX_SIZE];
- dev_printk_emit(7, dev->dev.parent,
+ dev_printk_emit(LOGLEVEL_DEBUG, dev->dev.parent,
"%s%s %s %s%s: %pV",
dynamic_emit_prefix(descriptor, buf),
dev_driver_string(dev->dev.parent),
diff --git a/lib/lcm.c b/lib/lcm.c
index b9c8de461e9e..51cc6b13cd52 100644
--- a/lib/lcm.c
+++ b/lib/lcm.c
@@ -7,10 +7,8 @@
unsigned long lcm(unsigned long a, unsigned long b)
{
if (a && b)
- return (a * b) / gcd(a, b);
- else if (b)
- return b;
-
- return a;
+ return (a / gcd(a, b)) * b;
+ else
+ return 0;
}
EXPORT_SYMBOL_GPL(lcm);
diff --git a/lib/seq_buf.c b/lib/seq_buf.c
new file mode 100644
index 000000000000..4eedfedb9e31
--- /dev/null
+++ b/lib/seq_buf.c
@@ -0,0 +1,359 @@
+/*
+ * seq_buf.c
+ *
+ * Copyright (C) 2014 Red Hat Inc, Steven Rostedt <srostedt@redhat.com>
+ *
+ * The seq_buf is a handy tool that allows you to pass a descriptor around
+ * to a buffer that other functions can write to. It is similar to the
+ * seq_file functionality but has some differences.
+ *
+ * To use it, the seq_buf must be initialized with seq_buf_init().
+ * This will set up the counters within the descriptor. You can call
+ * seq_buf_init() more than once to reset the seq_buf to start
+ * from scratch.
+ */
+#include <linux/uaccess.h>
+#include <linux/seq_file.h>
+#include <linux/seq_buf.h>
+
+/**
+ * seq_buf_can_fit - can the new data fit in the current buffer?
+ * @s: the seq_buf descriptor
+ * @len: The length to see if it can fit in the current buffer
+ *
+ * Returns true if there's enough unused space in the seq_buf buffer
+ * to fit the amount of new data according to @len.
+ */
+static bool seq_buf_can_fit(struct seq_buf *s, size_t len)
+{
+ return s->len + len <= s->size;
+}
+
+/**
+ * seq_buf_print_seq - move the contents of seq_buf into a seq_file
+ * @m: the seq_file descriptor that is the destination
+ * @s: the seq_buf descriptor that is the source.
+ *
+ * Returns zero on success, non zero otherwise
+ */
+int seq_buf_print_seq(struct seq_file *m, struct seq_buf *s)
+{
+ unsigned int len = seq_buf_used(s);
+
+ return seq_write(m, s->buffer, len);
+}
+
+/**
+ * seq_buf_vprintf - sequence printing of information.
+ * @s: seq_buf descriptor
+ * @fmt: printf format string
+ * @args: va_list of arguments from a printf() type function
+ *
+ * Writes a vnprintf() format into the sequencce buffer.
+ *
+ * Returns zero on success, -1 on overflow.
+ */
+int seq_buf_vprintf(struct seq_buf *s, const char *fmt, va_list args)
+{
+ int len;
+
+ WARN_ON(s->size == 0);
+
+ if (s->len < s->size) {
+ len = vsnprintf(s->buffer + s->len, s->size - s->len, fmt, args);
+ if (seq_buf_can_fit(s, len)) {
+ s->len += len;
+ return 0;
+ }
+ }
+ seq_buf_set_overflow(s);
+ return -1;
+}
+
+/**
+ * seq_buf_printf - sequence printing of information
+ * @s: seq_buf descriptor
+ * @fmt: printf format string
+ *
+ * Writes a printf() format into the sequence buffer.
+ *
+ * Returns zero on success, -1 on overflow.
+ */
+int seq_buf_printf(struct seq_buf *s, const char *fmt, ...)
+{
+ va_list ap;
+ int ret;
+
+ va_start(ap, fmt);
+ ret = seq_buf_vprintf(s, fmt, ap);
+ va_end(ap);
+
+ return ret;
+}
+
+/**
+ * seq_buf_bitmask - write a bitmask array in its ASCII representation
+ * @s: seq_buf descriptor
+ * @maskp: points to an array of unsigned longs that represent a bitmask
+ * @nmaskbits: The number of bits that are valid in @maskp
+ *
+ * Writes a ASCII representation of a bitmask string into @s.
+ *
+ * Returns zero on success, -1 on overflow.
+ */
+int seq_buf_bitmask(struct seq_buf *s, const unsigned long *maskp,
+ int nmaskbits)
+{
+ unsigned int len = seq_buf_buffer_left(s);
+ int ret;
+
+ WARN_ON(s->size == 0);
+
+ /*
+ * Note, because bitmap_scnprintf() only returns the number of bytes
+ * written and not the number that would be written, we use the last
+ * byte of the buffer to let us know if we overflowed. There's a small
+ * chance that the bitmap could have fit exactly inside the buffer, but
+ * it's not that critical if that does happen.
+ */
+ if (len > 1) {
+ ret = bitmap_scnprintf(s->buffer + s->len, len, maskp, nmaskbits);
+ if (ret < len) {
+ s->len += ret;
+ return 0;
+ }
+ }
+ seq_buf_set_overflow(s);
+ return -1;
+}
+
+#ifdef CONFIG_BINARY_PRINTF
+/**
+ * seq_buf_bprintf - Write the printf string from binary arguments
+ * @s: seq_buf descriptor
+ * @fmt: The format string for the @binary arguments
+ * @binary: The binary arguments for @fmt.
+ *
+ * When recording in a fast path, a printf may be recorded with just
+ * saving the format and the arguments as they were passed to the
+ * function, instead of wasting cycles converting the arguments into
+ * ASCII characters. Instead, the arguments are saved in a 32 bit
+ * word array that is defined by the format string constraints.
+ *
+ * This function will take the format and the binary array and finish
+ * the conversion into the ASCII string within the buffer.
+ *
+ * Returns zero on success, -1 on overflow.
+ */
+int seq_buf_bprintf(struct seq_buf *s, const char *fmt, const u32 *binary)
+{
+ unsigned int len = seq_buf_buffer_left(s);
+ int ret;
+
+ WARN_ON(s->size == 0);
+
+ if (s->len < s->size) {
+ ret = bstr_printf(s->buffer + s->len, len, fmt, binary);
+ if (seq_buf_can_fit(s, ret)) {
+ s->len += ret;
+ return 0;
+ }
+ }
+ seq_buf_set_overflow(s);
+ return -1;
+}
+#endif /* CONFIG_BINARY_PRINTF */
+
+/**
+ * seq_buf_puts - sequence printing of simple string
+ * @s: seq_buf descriptor
+ * @str: simple string to record
+ *
+ * Copy a simple string into the sequence buffer.
+ *
+ * Returns zero on success, -1 on overflow
+ */
+int seq_buf_puts(struct seq_buf *s, const char *str)
+{
+ unsigned int len = strlen(str);
+
+ WARN_ON(s->size == 0);
+
+ if (seq_buf_can_fit(s, len)) {
+ memcpy(s->buffer + s->len, str, len);
+ s->len += len;
+ return 0;
+ }
+ seq_buf_set_overflow(s);
+ return -1;
+}
+
+/**
+ * seq_buf_putc - sequence printing of simple character
+ * @s: seq_buf descriptor
+ * @c: simple character to record
+ *
+ * Copy a single character into the sequence buffer.
+ *
+ * Returns zero on success, -1 on overflow
+ */
+int seq_buf_putc(struct seq_buf *s, unsigned char c)
+{
+ WARN_ON(s->size == 0);
+
+ if (seq_buf_can_fit(s, 1)) {
+ s->buffer[s->len++] = c;
+ return 0;
+ }
+ seq_buf_set_overflow(s);
+ return -1;
+}
+
+/**
+ * seq_buf_putmem - write raw data into the sequenc buffer
+ * @s: seq_buf descriptor
+ * @mem: The raw memory to copy into the buffer
+ * @len: The length of the raw memory to copy (in bytes)
+ *
+ * There may be cases where raw memory needs to be written into the
+ * buffer and a strcpy() would not work. Using this function allows
+ * for such cases.
+ *
+ * Returns zero on success, -1 on overflow
+ */
+int seq_buf_putmem(struct seq_buf *s, const void *mem, unsigned int len)
+{
+ WARN_ON(s->size == 0);
+
+ if (seq_buf_can_fit(s, len)) {
+ memcpy(s->buffer + s->len, mem, len);
+ s->len += len;
+ return 0;
+ }
+ seq_buf_set_overflow(s);
+ return -1;
+}
+
+#define MAX_MEMHEX_BYTES 8U
+#define HEX_CHARS (MAX_MEMHEX_BYTES*2 + 1)
+
+/**
+ * seq_buf_putmem_hex - write raw memory into the buffer in ASCII hex
+ * @s: seq_buf descriptor
+ * @mem: The raw memory to write its hex ASCII representation of
+ * @len: The length of the raw memory to copy (in bytes)
+ *
+ * This is similar to seq_buf_putmem() except instead of just copying the
+ * raw memory into the buffer it writes its ASCII representation of it
+ * in hex characters.
+ *
+ * Returns zero on success, -1 on overflow
+ */
+int seq_buf_putmem_hex(struct seq_buf *s, const void *mem,
+ unsigned int len)
+{
+ unsigned char hex[HEX_CHARS];
+ const unsigned char *data = mem;
+ unsigned int start_len;
+ int i, j;
+
+ WARN_ON(s->size == 0);
+
+ while (len) {
+ start_len = min(len, HEX_CHARS - 1);
+#ifdef __BIG_ENDIAN
+ for (i = 0, j = 0; i < start_len; i++) {
+#else
+ for (i = start_len-1, j = 0; i >= 0; i--) {
+#endif
+ hex[j++] = hex_asc_hi(data[i]);
+ hex[j++] = hex_asc_lo(data[i]);
+ }
+ if (WARN_ON_ONCE(j == 0 || j/2 > len))
+ break;
+
+ /* j increments twice per loop */
+ len -= j / 2;
+ hex[j++] = ' ';
+
+ seq_buf_putmem(s, hex, j);
+ if (seq_buf_has_overflowed(s))
+ return -1;
+ }
+ return 0;
+}
+
+/**
+ * seq_buf_path - copy a path into the sequence buffer
+ * @s: seq_buf descriptor
+ * @path: path to write into the sequence buffer.
+ * @esc: set of characters to escape in the output
+ *
+ * Write a path name into the sequence buffer.
+ *
+ * Returns the number of written bytes on success, -1 on overflow
+ */
+int seq_buf_path(struct seq_buf *s, const struct path *path, const char *esc)
+{
+ char *buf;
+ size_t size = seq_buf_get_buf(s, &buf);
+ int res = -1;
+
+ WARN_ON(s->size == 0);
+
+ if (size) {
+ char *p = d_path(path, buf, size);
+ if (!IS_ERR(p)) {
+ char *end = mangle_path(buf, p, esc);
+ if (end)
+ res = end - buf;
+ }
+ }
+ seq_buf_commit(s, res);
+
+ return res;
+}
+
+/**
+ * seq_buf_to_user - copy the squence buffer to user space
+ * @s: seq_buf descriptor
+ * @ubuf: The userspace memory location to copy to
+ * @cnt: The amount to copy
+ *
+ * Copies the sequence buffer into the userspace memory pointed to
+ * by @ubuf. It starts from the last read position (@s->readpos)
+ * and writes up to @cnt characters or till it reaches the end of
+ * the content in the buffer (@s->len), which ever comes first.
+ *
+ * On success, it returns a positive number of the number of bytes
+ * it copied.
+ *
+ * On failure it returns -EBUSY if all of the content in the
+ * sequence has been already read, which includes nothing in the
+ * sequence (@s->len == @s->readpos).
+ *
+ * Returns -EFAULT if the copy to userspace fails.
+ */
+int seq_buf_to_user(struct seq_buf *s, char __user *ubuf, int cnt)
+{
+ int len;
+ int ret;
+
+ if (!cnt)
+ return 0;
+
+ if (s->len <= s->readpos)
+ return -EBUSY;
+
+ len = seq_buf_used(s) - s->readpos;
+ if (cnt > len)
+ cnt = len;
+ ret = copy_to_user(ubuf, s->buffer + s->readpos, cnt);
+ if (ret == cnt)
+ return -EFAULT;
+
+ cnt -= ret;
+
+ s->readpos += cnt;
+ return cnt;
+}