[PATCH] uml: Formatting changes

This patch makes a bunch of non-functional changes -
    return(foo); becomes return foo;
    some statements are broken across lines for readability
    some trailing whitespace is cleaned up
    open_one_chan took four arguments, three of which could be
       deduced from the first.  Accordingly, they were eliminated.
    some examples of "} else {" had a newline added
    some whitespace cleanup in the indentation
    lines_init got some control flow cleanup
    some long lines were broken
    removed another emacs-specific C formatting comment

Signed-off-by: Jeff Dike <jdike@addtoit.com>
Cc: Paolo 'Blaisorblade' Giarrusso <blaisorblade@yahoo.it>
Signed-off-by: Andrew Morton <akpm@osdl.org>
Signed-off-by: Linus Torvalds <torvalds@osdl.org>
diff --git a/arch/um/drivers/chan_kern.c b/arch/um/drivers/chan_kern.c
index 5b58fad..8b1262e 100644
--- a/arch/um/drivers/chan_kern.c
+++ b/arch/um/drivers/chan_kern.c
@@ -58,7 +58,7 @@
 {
 	my_puts("Using a channel type which is configured out of "
 	       "UML\n");
-	return(NULL);
+	return NULL;
 }
 
 static int not_configged_open(int input, int output, int primary, void *data,
@@ -66,7 +66,7 @@
 {
 	my_puts("Using a channel type which is configured out of "
 	       "UML\n");
-	return(-ENODEV);
+	return -ENODEV;
 }
 
 static void not_configged_close(int fd, void *data)
@@ -79,21 +79,21 @@
 {
 	my_puts("Using a channel type which is configured out of "
 	       "UML\n");
-	return(-EIO);
+	return -EIO;
 }
 
 static int not_configged_write(int fd, const char *buf, int len, void *data)
 {
 	my_puts("Using a channel type which is configured out of "
 	       "UML\n");
-	return(-EIO);
+	return -EIO;
 }
 
 static int not_configged_console_write(int fd, const char *buf, int len)
 {
 	my_puts("Using a channel type which is configured out of "
 	       "UML\n");
-	return(-EIO);
+	return -EIO;
 }
 
 static int not_configged_window_size(int fd, void *data, unsigned short *rows,
@@ -101,7 +101,7 @@
 {
 	my_puts("Using a channel type which is configured out of "
 	       "UML\n");
-	return(-ENODEV);
+	return -ENODEV;
 }
 
 static void not_configged_free(void *data)
@@ -135,17 +135,17 @@
 	n = os_read_file(fd, c_out, sizeof(*c_out));
 
 	if(n == -EAGAIN)
-		return(0);
+		return 0;
 	else if(n == 0)
-		return(-EIO);
-	return(n);
+		return -EIO;
+	return n;
 }
 
 /* XXX Trivial wrapper around os_write_file */
 
 int generic_write(int fd, const char *buf, int n, void *unused)
 {
-	return(os_write_file(fd, buf, n));
+	return os_write_file(fd, buf, n);
 }
 
 int generic_window_size(int fd, void *unused, unsigned short *rows_out,
@@ -156,14 +156,14 @@
 
 	ret = os_window_size(fd, &rows, &cols);
 	if(ret < 0)
-		return(ret);
+		return ret;
 
 	ret = ((*rows_out != rows) || (*cols_out != cols));
 
 	*rows_out = rows;
 	*cols_out = cols;
 
-	return(ret);
+	return ret;
 }
 
 void generic_free(void *data)
@@ -186,25 +186,29 @@
 		}
 	}
 
-	if((tty->flip.flag_buf_ptr == NULL) || 
+	if((tty->flip.flag_buf_ptr == NULL) ||
 	   (tty->flip.char_buf_ptr == NULL))
 		return;
 	tty_insert_flip_char(tty, ch, TTY_NORMAL);
 }
 
-static int open_one_chan(struct chan *chan, int input, int output, int primary)
+static int open_one_chan(struct chan *chan)
 {
 	int fd;
 
-	if(chan->opened) return(0);
-	if(chan->ops->open == NULL) fd = 0;
-	else fd = (*chan->ops->open)(input, output, primary, chan->data,
-				     &chan->dev);
-	if(fd < 0) return(fd);
+	if(chan->opened)
+		return 0;
+
+	if(chan->ops->open == NULL)
+		fd = 0;
+	else fd = (*chan->ops->open)(chan->input, chan->output, chan->primary,
+				     chan->data, &chan->dev);
+	if(fd < 0)
+		return fd;
 	chan->fd = fd;
 
 	chan->opened = 1;
-	return(0);
+	return 0;
 }
 
 int open_chan(struct list_head *chans)
@@ -215,11 +219,11 @@
 
 	list_for_each(ele, chans){
 		chan = list_entry(ele, struct chan, list);
-		ret = open_one_chan(chan, chan->input, chan->output,
-				    chan->primary);
-		if(chan->primary) err = ret;
+		ret = open_one_chan(chan);
+		if(chan->primary)
+			err = ret;
 	}
-	return(err);
+	return err;
 }
 
 void chan_enable_winch(struct list_head *chans, struct tty_struct *tty)
@@ -267,7 +271,7 @@
 	}
 }
 
-int write_chan(struct list_head *chans, const char *buf, int len, 
+int write_chan(struct list_head *chans, const char *buf, int len,
 	       int write_irq)
 {
 	struct list_head *ele;
@@ -285,7 +289,7 @@
 				reactivate_fd(chan->fd, write_irq);
 		}
 	}
-	return(ret);
+	return ret;
 }
 
 int console_write_chan(struct list_head *chans, const char *buf, int len)
@@ -301,10 +305,11 @@
 		n = chan->ops->console_write(chan->fd, buf, len);
 		if(chan->primary) ret = n;
 	}
-	return(ret);
+	return ret;
 }
 
-int console_open_chan(struct line *line, struct console *co, struct chan_opts *opts)
+int console_open_chan(struct line *line, struct console *co,
+		      struct chan_opts *opts)
 {
 	if (!list_empty(&line->chan_list))
 		return 0;
@@ -327,12 +332,13 @@
 	list_for_each(ele, chans){
 		chan = list_entry(ele, struct chan, list);
 		if(chan->primary){
-			if(chan->ops->window_size == NULL) return(0);
-			return(chan->ops->window_size(chan->fd, chan->data,
-						      rows_out, cols_out));
+			if(chan->ops->window_size == NULL)
+				return 0;
+			return chan->ops->window_size(chan->fd, chan->data,
+						      rows_out, cols_out);
 		}
 	}
-	return(0);
+	return 0;
 }
 
 void free_one_chan(struct chan *chan)
@@ -363,23 +369,23 @@
 
 	if(chan == NULL){
 		CONFIG_CHUNK(str, size, n, "none", 1);
-		return(n);
+		return n;
 	}
 
 	CONFIG_CHUNK(str, size, n, chan->ops->type, 0);
 
 	if(chan->dev == NULL){
 		CONFIG_CHUNK(str, size, n, "", 1);
-		return(n);
+		return n;
 	}
 
 	CONFIG_CHUNK(str, size, n, ":", 0);
 	CONFIG_CHUNK(str, size, n, chan->dev, 0);
 
-	return(n);
+	return n;
 }
 
-static int chan_pair_config_string(struct chan *in, struct chan *out, 
+static int chan_pair_config_string(struct chan *in, struct chan *out,
 				   char *str, int size, char **error_out)
 {
 	int n;
@@ -390,7 +396,7 @@
 
 	if(in == out){
 		CONFIG_CHUNK(str, size, n, "", 1);
-		return(n);
+		return n;
 	}
 
 	CONFIG_CHUNK(str, size, n, ",", 1);
@@ -399,10 +405,10 @@
 	size -= n;
 	CONFIG_CHUNK(str, size, n, "", 1);
 
-	return(n);
+	return n;
 }
 
-int chan_config_string(struct list_head *chans, char *str, int size, 
+int chan_config_string(struct list_head *chans, char *str, int size,
 		       char **error_out)
 {
 	struct list_head *ele;
@@ -418,7 +424,7 @@
 			out = chan;
 	}
 
-	return(chan_pair_config_string(in, out, str, size, error_out));
+	return chan_pair_config_string(in, out, str, size, error_out);
 }
 
 struct chan_type {
@@ -462,7 +468,7 @@
 #endif
 };
 
-static struct chan *parse_chan(char *str, int pri, int device, 
+static struct chan *parse_chan(char *str, int pri, int device,
 			       struct chan_opts *opts)
 {
 	struct chan_type *entry;
@@ -484,14 +490,17 @@
 	if(ops == NULL){
 		my_printf("parse_chan couldn't parse \"%s\"\n",
 		       str);
-		return(NULL);
+		return NULL;
 	}
-	if(ops->init == NULL) return(NULL); 
+	if(ops->init == NULL)
+		return NULL;
 	data = (*ops->init)(str, device, opts);
-	if(data == NULL) return(NULL);
+	if(data == NULL)
+		return NULL;
 
 	chan = kmalloc(sizeof(*chan), GFP_ATOMIC);
-	if(chan == NULL) return(NULL);
+	if(chan == NULL)
+		return NULL;
 	*chan = ((struct chan) { .list	 	= LIST_HEAD_INIT(chan->list),
 				 .primary	= 1,
 				 .input		= 0,
@@ -501,7 +510,7 @@
 				 .pri 		= pri,
 				 .ops 		= ops,
 				 .data 		= data });
-	return(chan);
+	return chan;
 }
 
 int parse_chan_pair(char *str, struct list_head *chans, int pri, int device,
@@ -512,7 +521,8 @@
 
 	if(!list_empty(chans)){
 		chan = list_entry(chans->next, struct chan, list);
-		if(chan->pri >= pri) return(0);
+		if(chan->pri >= pri)
+			return 0;
 		free_chan(chans);
 		INIT_LIST_HEAD(chans);
 	}
@@ -523,23 +533,29 @@
 		*out = '\0';
 		out++;
 		new = parse_chan(in, pri, device, opts);
-		if(new == NULL) return(-1);
+		if(new == NULL)
+			return -1;
+
 		new->input = 1;
 		list_add(&new->list, chans);
 
 		new = parse_chan(out, pri, device, opts);
-		if(new == NULL) return(-1);
+		if(new == NULL)
+			return -1;
+
 		list_add(&new->list, chans);
 		new->output = 1;
 	}
 	else {
 		new = parse_chan(str, pri, device, opts);
-		if(new == NULL) return(-1);
+		if(new == NULL)
+			return -1;
+
 		list_add(&new->list, chans);
 		new->input = 1;
 		new->output = 1;
 	}
-	return(0);
+	return 0;
 }
 
 int chan_out_fd(struct list_head *chans)
@@ -550,9 +566,9 @@
 	list_for_each(ele, chans){
 		chan = list_entry(ele, struct chan, list);
 		if(chan->primary && chan->output)
-			return(chan->fd);
+			return chan->fd;
 	}
-	return(-1);
+	return -1;
 }
 
 void chan_interrupt(struct list_head *chans, struct work_struct *task,
@@ -567,7 +583,7 @@
 		chan = list_entry(ele, struct chan, list);
 		if(!chan->input || (chan->ops->read == NULL)) continue;
 		do {
-			if((tty != NULL) && 
+			if((tty != NULL) &&
 			   (tty->flip.count >= TTY_FLIPBUF_SIZE)){
 				schedule_work(task);
 				goto out;