#define LMI_ANSI_LENGTH 14
-typedef struct {
+struct fr_hdr {
#if defined(__LITTLE_ENDIAN_BITFIELD)
unsigned ea1: 1;
unsigned cr: 1;
unsigned de: 1;
unsigned ea2: 1;
#endif
-}__packed fr_hdr;
+} __packed;
-typedef struct pvc_device_struct {
+struct pvc_device {
struct net_device *frad;
struct net_device *main;
struct net_device *ether; /* bridged Ethernet interface */
- struct pvc_device_struct *next; /* Sorted in ascending DLCI order */
+ struct pvc_device *next; /* Sorted in ascending DLCI order */
int dlci;
int open_count;
unsigned int becn: 1;
unsigned int bandwidth; /* Cisco LMI reporting only */
}state;
-}pvc_device;
+};
struct frad_state {
fr_proto settings;
- pvc_device *first_pvc;
+ struct pvc_device *first_pvc;
int dce_pvc_count;
struct timer_list timer;
}
-static inline pvc_device* find_pvc(hdlc_device *hdlc, u16 dlci)
+static inline struct pvc_device *find_pvc(hdlc_device *hdlc, u16 dlci)
{
- pvc_device *pvc = state(hdlc)->first_pvc;
+ struct pvc_device *pvc = state(hdlc)->first_pvc;
while (pvc) {
if (pvc->dlci == dlci)
}
-static pvc_device* add_pvc(struct net_device *dev, u16 dlci)
+static struct pvc_device *add_pvc(struct net_device *dev, u16 dlci)
{
hdlc_device *hdlc = dev_to_hdlc(dev);
- pvc_device *pvc, **pvc_p = &state(hdlc)->first_pvc;
+ struct pvc_device *pvc, **pvc_p = &state(hdlc)->first_pvc;
while (*pvc_p) {
if ((*pvc_p)->dlci == dlci)
pvc_p = &(*pvc_p)->next;
}
- pvc = kzalloc(sizeof(pvc_device), GFP_ATOMIC);
+ pvc = kzalloc(sizeof(*pvc), GFP_ATOMIC);
#ifdef DEBUG_PVC
printk(KERN_DEBUG "add_pvc: allocated pvc %p, frad %p\n", pvc, dev);
#endif
}
-static inline int pvc_is_used(pvc_device *pvc)
+static inline int pvc_is_used(struct pvc_device *pvc)
{
return pvc->main || pvc->ether;
}
-static inline void pvc_carrier(int on, pvc_device *pvc)
+static inline void pvc_carrier(int on, struct pvc_device *pvc)
{
if (on) {
if (pvc->main)
static inline void delete_unused_pvcs(hdlc_device *hdlc)
{
- pvc_device **pvc_p = &state(hdlc)->first_pvc;
+ struct pvc_device **pvc_p = &state(hdlc)->first_pvc;
while (*pvc_p) {
if (!pvc_is_used(*pvc_p)) {
- pvc_device *pvc = *pvc_p;
+ struct pvc_device *pvc = *pvc_p;
#ifdef DEBUG_PVC
printk(KERN_DEBUG "freeing unused pvc: %p\n", pvc);
#endif
}
-static inline struct net_device** get_dev_p(pvc_device *pvc, int type)
+static inline struct net_device **get_dev_p(struct pvc_device *pvc,
+ int type)
{
if (type == ARPHRD_ETHER)
return &pvc->ether;
static int pvc_open(struct net_device *dev)
{
- pvc_device *pvc = dev->ml_priv;
+ struct pvc_device *pvc = dev->ml_priv;
if ((pvc->frad->flags & IFF_UP) == 0)
return -EIO; /* Frad must be UP in order to activate PVC */
static int pvc_close(struct net_device *dev)
{
- pvc_device *pvc = dev->ml_priv;
+ struct pvc_device *pvc = dev->ml_priv;
if (--pvc->open_count == 0) {
hdlc_device *hdlc = dev_to_hdlc(pvc->frad);
static int pvc_ioctl(struct net_device *dev, struct ifreq *ifr, int cmd)
{
- pvc_device *pvc = dev->ml_priv;
+ struct pvc_device *pvc = dev->ml_priv;
fr_proto_pvc_info info;
if (ifr->ifr_settings.type == IF_GET_PROTO) {
static netdev_tx_t pvc_xmit(struct sk_buff *skb, struct net_device *dev)
{
- pvc_device *pvc = dev->ml_priv;
+ struct pvc_device *pvc = dev->ml_priv;
if (pvc->state.active) {
if (dev->type == ARPHRD_ETHER) {
return NETDEV_TX_OK;
}
-static inline void fr_log_dlci_active(pvc_device *pvc)
+static inline void fr_log_dlci_active(struct pvc_device *pvc)
{
netdev_info(pvc->frad, "DLCI %d [%s%s%s]%s %s\n",
pvc->dlci,
{
hdlc_device *hdlc = dev_to_hdlc(dev);
struct sk_buff *skb;
- pvc_device *pvc = state(hdlc)->first_pvc;
+ struct pvc_device *pvc = state(hdlc)->first_pvc;
int lmi = state(hdlc)->settings.lmi;
int dce = state(hdlc)->settings.dce;
int len = lmi == LMI_ANSI ? LMI_ANSI_LENGTH : LMI_CCITT_CISCO_LENGTH;
static void fr_set_link_state(int reliable, struct net_device *dev)
{
hdlc_device *hdlc = dev_to_hdlc(dev);
- pvc_device *pvc = state(hdlc)->first_pvc;
+ struct pvc_device *pvc = state(hdlc)->first_pvc;
state(hdlc)->reliable = reliable;
if (reliable) {
static int fr_lmi_recv(struct net_device *dev, struct sk_buff *skb)
{
hdlc_device *hdlc = dev_to_hdlc(dev);
- pvc_device *pvc;
+ struct pvc_device *pvc;
u8 rxseq, txseq;
int lmi = state(hdlc)->settings.lmi;
int dce = state(hdlc)->settings.dce;
{
struct net_device *frad = skb->dev;
hdlc_device *hdlc = dev_to_hdlc(frad);
- fr_hdr *fh = (fr_hdr*)skb->data;
+ struct fr_hdr *fh = (struct fr_hdr *)skb->data;
u8 *data = skb->data;
u16 dlci;
- pvc_device *pvc;
+ struct pvc_device *pvc;
struct net_device *dev = NULL;
if (skb->len <= 4 || fh->ea1 || data[2] != FR_UI)
static void fr_close(struct net_device *dev)
{
hdlc_device *hdlc = dev_to_hdlc(dev);
- pvc_device *pvc = state(hdlc)->first_pvc;
+ struct pvc_device *pvc = state(hdlc)->first_pvc;
while (pvc) { /* Shutdown all PVCs for this FRAD */
if (pvc->main)
static int fr_add_pvc(struct net_device *frad, unsigned int dlci, int type)
{
hdlc_device *hdlc = dev_to_hdlc(frad);
- pvc_device *pvc;
+ struct pvc_device *pvc;
struct net_device *dev;
int used;
static int fr_del_pvc(hdlc_device *hdlc, unsigned int dlci, int type)
{
- pvc_device *pvc;
+ struct pvc_device *pvc;
struct net_device *dev;
if ((pvc = find_pvc(hdlc, dlci)) == NULL)
static void fr_destroy(struct net_device *frad)
{
hdlc_device *hdlc = dev_to_hdlc(frad);
- pvc_device *pvc = state(hdlc)->first_pvc;
+ struct pvc_device *pvc = state(hdlc)->first_pvc;
state(hdlc)->first_pvc = NULL; /* All PVCs destroyed */
state(hdlc)->dce_pvc_count = 0;
state(hdlc)->dce_changed = 1;
while (pvc) {
- pvc_device *next = pvc->next;
+ struct pvc_device *next = pvc->next;
/* destructors will free_netdev() main and ether */
if (pvc->main)
unregister_netdevice(pvc->main);