提交 f741f938 编写于 作者: J Jimmy Assarsson 提交者: Marc Kleine-Budde

can: kvaser_usb: Rename message/msg to command/cmd

Rename message to command and msg to cmd, where appropriate. To make the
code more readable and to better match Kvaser's Linux drivers.
Signed-off-by: NJimmy Assarsson <extja@kvaser.com>
Signed-off-by: NMarc Kleine-Budde <mkl@pengutronix.de>
上级 23757222
...@@ -85,8 +85,8 @@ static inline bool kvaser_is_usbcan(const struct usb_device_id *id) ...@@ -85,8 +85,8 @@ static inline bool kvaser_is_usbcan(const struct usb_device_id *id)
#define KVASER_HAS_SILENT_MODE BIT(0) #define KVASER_HAS_SILENT_MODE BIT(0)
#define KVASER_HAS_TXRX_ERRORS BIT(1) #define KVASER_HAS_TXRX_ERRORS BIT(1)
/* Message header size */ /* Command header size */
#define MSG_HEADER_LEN 2 #define CMD_HEADER_LEN 2
/* Can message flags */ /* Can message flags */
#define MSG_FLAG_ERROR_FRAME BIT(0) #define MSG_FLAG_ERROR_FRAME BIT(0)
...@@ -104,7 +104,7 @@ static inline bool kvaser_is_usbcan(const struct usb_device_id *id) ...@@ -104,7 +104,7 @@ static inline bool kvaser_is_usbcan(const struct usb_device_id *id)
#define M16C_STATE_BUS_PASSIVE BIT(5) #define M16C_STATE_BUS_PASSIVE BIT(5)
#define M16C_STATE_BUS_OFF BIT(6) #define M16C_STATE_BUS_OFF BIT(6)
/* Can msg ids */ /* Leaf/usbcan command ids */
#define CMD_RX_STD_MESSAGE 12 #define CMD_RX_STD_MESSAGE 12
#define CMD_TX_STD_MESSAGE 13 #define CMD_TX_STD_MESSAGE 13
#define CMD_RX_EXT_MESSAGE 14 #define CMD_RX_EXT_MESSAGE 14
...@@ -177,12 +177,12 @@ enum kvaser_usb_family { ...@@ -177,12 +177,12 @@ enum kvaser_usb_family {
KVASER_USBCAN, KVASER_USBCAN,
}; };
struct kvaser_msg_simple { struct kvaser_cmd_simple {
u8 tid; u8 tid;
u8 channel; u8 channel;
} __packed; } __packed;
struct kvaser_msg_cardinfo { struct kvaser_cmd_cardinfo {
u8 tid; u8 tid;
u8 nchannels; u8 nchannels;
union { union {
...@@ -210,7 +210,7 @@ struct kvaser_msg_cardinfo { ...@@ -210,7 +210,7 @@ struct kvaser_msg_cardinfo {
__le16 padding; __le16 padding;
} __packed; } __packed;
struct leaf_msg_softinfo { struct leaf_cmd_softinfo {
u8 tid; u8 tid;
u8 padding0; u8 padding0;
__le32 sw_options; __le32 sw_options;
...@@ -219,7 +219,7 @@ struct leaf_msg_softinfo { ...@@ -219,7 +219,7 @@ struct leaf_msg_softinfo {
__le16 padding1[9]; __le16 padding1[9];
} __packed; } __packed;
struct usbcan_msg_softinfo { struct usbcan_cmd_softinfo {
u8 tid; u8 tid;
u8 fw_name[5]; u8 fw_name[5];
__le16 max_outstanding_tx; __le16 max_outstanding_tx;
...@@ -229,7 +229,7 @@ struct usbcan_msg_softinfo { ...@@ -229,7 +229,7 @@ struct usbcan_msg_softinfo {
__le16 sw_options; __le16 sw_options;
} __packed; } __packed;
struct kvaser_msg_busparams { struct kvaser_cmd_busparams {
u8 tid; u8 tid;
u8 channel; u8 channel;
__le32 bitrate; __le32 bitrate;
...@@ -239,10 +239,10 @@ struct kvaser_msg_busparams { ...@@ -239,10 +239,10 @@ struct kvaser_msg_busparams {
u8 no_samp; u8 no_samp;
} __packed; } __packed;
struct kvaser_msg_tx_can { struct kvaser_cmd_tx_can {
u8 channel; u8 channel;
u8 tid; u8 tid;
u8 msg[14]; u8 data[14];
union { union {
struct { struct {
u8 padding; u8 padding;
...@@ -255,28 +255,28 @@ struct kvaser_msg_tx_can { ...@@ -255,28 +255,28 @@ struct kvaser_msg_tx_can {
} __packed; } __packed;
} __packed; } __packed;
struct kvaser_msg_rx_can_header { struct kvaser_cmd_rx_can_header {
u8 channel; u8 channel;
u8 flag; u8 flag;
} __packed; } __packed;
struct leaf_msg_rx_can { struct leaf_cmd_rx_can {
u8 channel; u8 channel;
u8 flag; u8 flag;
__le16 time[3]; __le16 time[3];
u8 msg[14]; u8 data[14];
} __packed; } __packed;
struct usbcan_msg_rx_can { struct usbcan_cmd_rx_can {
u8 channel; u8 channel;
u8 flag; u8 flag;
u8 msg[14]; u8 data[14];
__le16 time; __le16 time;
} __packed; } __packed;
struct leaf_msg_chip_state_event { struct leaf_cmd_chip_state_event {
u8 tid; u8 tid;
u8 channel; u8 channel;
...@@ -288,7 +288,7 @@ struct leaf_msg_chip_state_event { ...@@ -288,7 +288,7 @@ struct leaf_msg_chip_state_event {
u8 padding[3]; u8 padding[3];
} __packed; } __packed;
struct usbcan_msg_chip_state_event { struct usbcan_cmd_chip_state_event {
u8 tid; u8 tid;
u8 channel; u8 channel;
...@@ -300,12 +300,12 @@ struct usbcan_msg_chip_state_event { ...@@ -300,12 +300,12 @@ struct usbcan_msg_chip_state_event {
u8 padding[3]; u8 padding[3];
} __packed; } __packed;
struct kvaser_msg_tx_acknowledge_header { struct kvaser_cmd_tx_acknowledge_header {
u8 channel; u8 channel;
u8 tid; u8 tid;
} __packed; } __packed;
struct leaf_msg_error_event { struct leaf_cmd_error_event {
u8 tid; u8 tid;
u8 flags; u8 flags;
__le16 time[3]; __le16 time[3];
...@@ -317,7 +317,7 @@ struct leaf_msg_error_event { ...@@ -317,7 +317,7 @@ struct leaf_msg_error_event {
u8 error_factor; u8 error_factor;
} __packed; } __packed;
struct usbcan_msg_error_event { struct usbcan_cmd_error_event {
u8 tid; u8 tid;
u8 padding; u8 padding;
u8 tx_errors_count_ch0; u8 tx_errors_count_ch0;
...@@ -329,21 +329,21 @@ struct usbcan_msg_error_event { ...@@ -329,21 +329,21 @@ struct usbcan_msg_error_event {
__le16 time; __le16 time;
} __packed; } __packed;
struct kvaser_msg_ctrl_mode { struct kvaser_cmd_ctrl_mode {
u8 tid; u8 tid;
u8 channel; u8 channel;
u8 ctrl_mode; u8 ctrl_mode;
u8 padding[3]; u8 padding[3];
} __packed; } __packed;
struct kvaser_msg_flush_queue { struct kvaser_cmd_flush_queue {
u8 tid; u8 tid;
u8 channel; u8 channel;
u8 flags; u8 flags;
u8 padding[3]; u8 padding[3];
} __packed; } __packed;
struct leaf_msg_log_message { struct leaf_cmd_log_message {
u8 channel; u8 channel;
u8 flags; u8 flags;
__le16 time[3]; __le16 time[3];
...@@ -353,35 +353,35 @@ struct leaf_msg_log_message { ...@@ -353,35 +353,35 @@ struct leaf_msg_log_message {
u8 data[8]; u8 data[8];
} __packed; } __packed;
struct kvaser_msg { struct kvaser_cmd {
u8 len; u8 len;
u8 id; u8 id;
union { union {
struct kvaser_msg_simple simple; struct kvaser_cmd_simple simple;
struct kvaser_msg_cardinfo cardinfo; struct kvaser_cmd_cardinfo cardinfo;
struct kvaser_msg_busparams busparams; struct kvaser_cmd_busparams busparams;
struct kvaser_msg_rx_can_header rx_can_header; struct kvaser_cmd_rx_can_header rx_can_header;
struct kvaser_msg_tx_acknowledge_header tx_acknowledge_header; struct kvaser_cmd_tx_acknowledge_header tx_acknowledge_header;
union { union {
struct leaf_msg_softinfo softinfo; struct leaf_cmd_softinfo softinfo;
struct leaf_msg_rx_can rx_can; struct leaf_cmd_rx_can rx_can;
struct leaf_msg_chip_state_event chip_state_event; struct leaf_cmd_chip_state_event chip_state_event;
struct leaf_msg_error_event error_event; struct leaf_cmd_error_event error_event;
struct leaf_msg_log_message log_message; struct leaf_cmd_log_message log_message;
} __packed leaf; } __packed leaf;
union { union {
struct usbcan_msg_softinfo softinfo; struct usbcan_cmd_softinfo softinfo;
struct usbcan_msg_rx_can rx_can; struct usbcan_cmd_rx_can rx_can;
struct usbcan_msg_chip_state_event chip_state_event; struct usbcan_cmd_chip_state_event chip_state_event;
struct usbcan_msg_error_event error_event; struct usbcan_cmd_error_event error_event;
} __packed usbcan; } __packed usbcan;
struct kvaser_msg_tx_can tx_can; struct kvaser_cmd_tx_can tx_can;
struct kvaser_msg_ctrl_mode ctrl_mode; struct kvaser_cmd_ctrl_mode ctrl_mode;
struct kvaser_msg_flush_queue flush_queue; struct kvaser_cmd_flush_queue flush_queue;
} u; } u;
} __packed; } __packed;
...@@ -521,22 +521,22 @@ static const struct usb_device_id kvaser_usb_table[] = { ...@@ -521,22 +521,22 @@ static const struct usb_device_id kvaser_usb_table[] = {
}; };
MODULE_DEVICE_TABLE(usb, kvaser_usb_table); MODULE_DEVICE_TABLE(usb, kvaser_usb_table);
static inline int kvaser_usb_send_msg(const struct kvaser_usb *dev, static inline int kvaser_usb_send_cmd(const struct kvaser_usb *dev,
struct kvaser_msg *msg) struct kvaser_cmd *cmd)
{ {
int actual_len; int actual_len;
return usb_bulk_msg(dev->udev, return usb_bulk_msg(dev->udev,
usb_sndbulkpipe(dev->udev, usb_sndbulkpipe(dev->udev,
dev->bulk_out->bEndpointAddress), dev->bulk_out->bEndpointAddress),
msg, msg->len, &actual_len, cmd, cmd->len, &actual_len,
USB_SEND_TIMEOUT); USB_SEND_TIMEOUT);
} }
static int kvaser_usb_wait_msg(const struct kvaser_usb *dev, u8 id, static int kvaser_usb_wait_cmd(const struct kvaser_usb *dev, u8 id,
struct kvaser_msg *msg) struct kvaser_cmd *cmd)
{ {
struct kvaser_msg *tmp; struct kvaser_cmd *tmp;
void *buf; void *buf;
int actual_len; int actual_len;
int err; int err;
...@@ -557,10 +557,10 @@ static int kvaser_usb_wait_msg(const struct kvaser_usb *dev, u8 id, ...@@ -557,10 +557,10 @@ static int kvaser_usb_wait_msg(const struct kvaser_usb *dev, u8 id,
goto end; goto end;
pos = 0; pos = 0;
while (pos <= actual_len - MSG_HEADER_LEN) { while (pos <= actual_len - CMD_HEADER_LEN) {
tmp = buf + pos; tmp = buf + pos;
/* Handle messages crossing the USB endpoint max packet /* Handle commands crossing the USB endpoint max packet
* size boundary. Check kvaser_usb_read_bulk_callback() * size boundary. Check kvaser_usb_read_bulk_callback()
* for further details. * for further details.
*/ */
...@@ -577,7 +577,7 @@ static int kvaser_usb_wait_msg(const struct kvaser_usb *dev, u8 id, ...@@ -577,7 +577,7 @@ static int kvaser_usb_wait_msg(const struct kvaser_usb *dev, u8 id,
} }
if (tmp->id == id) { if (tmp->id == id) {
memcpy(msg, tmp, tmp->len); memcpy(cmd, tmp, tmp->len);
goto end; goto end;
} }
...@@ -593,50 +593,50 @@ static int kvaser_usb_wait_msg(const struct kvaser_usb *dev, u8 id, ...@@ -593,50 +593,50 @@ static int kvaser_usb_wait_msg(const struct kvaser_usb *dev, u8 id,
return err; return err;
} }
static int kvaser_usb_send_simple_msg(const struct kvaser_usb *dev, static int kvaser_usb_send_simple_cmd(const struct kvaser_usb *dev,
u8 msg_id, int channel) u8 cmd_id, int channel)
{ {
struct kvaser_msg *msg; struct kvaser_cmd *cmd;
int rc; int rc;
msg = kmalloc(sizeof(*msg), GFP_KERNEL); cmd = kmalloc(sizeof(*cmd), GFP_KERNEL);
if (!msg) if (!cmd)
return -ENOMEM; return -ENOMEM;
msg->id = msg_id; cmd->id = cmd_id;
msg->len = MSG_HEADER_LEN + sizeof(struct kvaser_msg_simple); cmd->len = CMD_HEADER_LEN + sizeof(struct kvaser_cmd_simple);
msg->u.simple.channel = channel; cmd->u.simple.channel = channel;
msg->u.simple.tid = 0xff; cmd->u.simple.tid = 0xff;
rc = kvaser_usb_send_msg(dev, msg); rc = kvaser_usb_send_cmd(dev, cmd);
kfree(msg); kfree(cmd);
return rc; return rc;
} }
static int kvaser_usb_get_software_info(struct kvaser_usb *dev) static int kvaser_usb_get_software_info(struct kvaser_usb *dev)
{ {
struct kvaser_msg msg; struct kvaser_cmd cmd;
int err; int err;
err = kvaser_usb_send_simple_msg(dev, CMD_GET_SOFTWARE_INFO, 0); err = kvaser_usb_send_simple_cmd(dev, CMD_GET_SOFTWARE_INFO, 0);
if (err) if (err)
return err; return err;
err = kvaser_usb_wait_msg(dev, CMD_GET_SOFTWARE_INFO_REPLY, &msg); err = kvaser_usb_wait_cmd(dev, CMD_GET_SOFTWARE_INFO_REPLY, &cmd);
if (err) if (err)
return err; return err;
switch (dev->family) { switch (dev->family) {
case KVASER_LEAF: case KVASER_LEAF:
dev->fw_version = le32_to_cpu(msg.u.leaf.softinfo.fw_version); dev->fw_version = le32_to_cpu(cmd.u.leaf.softinfo.fw_version);
dev->max_tx_urbs = dev->max_tx_urbs =
le16_to_cpu(msg.u.leaf.softinfo.max_outstanding_tx); le16_to_cpu(cmd.u.leaf.softinfo.max_outstanding_tx);
break; break;
case KVASER_USBCAN: case KVASER_USBCAN:
dev->fw_version = le32_to_cpu(msg.u.usbcan.softinfo.fw_version); dev->fw_version = le32_to_cpu(cmd.u.usbcan.softinfo.fw_version);
dev->max_tx_urbs = dev->max_tx_urbs =
le16_to_cpu(msg.u.usbcan.softinfo.max_outstanding_tx); le16_to_cpu(cmd.u.usbcan.softinfo.max_outstanding_tx);
break; break;
} }
...@@ -645,18 +645,18 @@ static int kvaser_usb_get_software_info(struct kvaser_usb *dev) ...@@ -645,18 +645,18 @@ static int kvaser_usb_get_software_info(struct kvaser_usb *dev)
static int kvaser_usb_get_card_info(struct kvaser_usb *dev) static int kvaser_usb_get_card_info(struct kvaser_usb *dev)
{ {
struct kvaser_msg msg; struct kvaser_cmd cmd;
int err; int err;
err = kvaser_usb_send_simple_msg(dev, CMD_GET_CARD_INFO, 0); err = kvaser_usb_send_simple_cmd(dev, CMD_GET_CARD_INFO, 0);
if (err) if (err)
return err; return err;
err = kvaser_usb_wait_msg(dev, CMD_GET_CARD_INFO_REPLY, &msg); err = kvaser_usb_wait_cmd(dev, CMD_GET_CARD_INFO_REPLY, &cmd);
if (err) if (err)
return err; return err;
dev->nchannels = msg.u.cardinfo.nchannels; dev->nchannels = cmd.u.cardinfo.nchannels;
if ((dev->nchannels > MAX_NET_DEVICES) || if ((dev->nchannels > MAX_NET_DEVICES) ||
(dev->family == KVASER_USBCAN && (dev->family == KVASER_USBCAN &&
dev->nchannels > MAX_USBCAN_NET_DEVICES)) dev->nchannels > MAX_USBCAN_NET_DEVICES))
...@@ -666,7 +666,7 @@ static int kvaser_usb_get_card_info(struct kvaser_usb *dev) ...@@ -666,7 +666,7 @@ static int kvaser_usb_get_card_info(struct kvaser_usb *dev)
} }
static void kvaser_usb_tx_acknowledge(const struct kvaser_usb *dev, static void kvaser_usb_tx_acknowledge(const struct kvaser_usb *dev,
const struct kvaser_msg *msg) const struct kvaser_cmd *cmd)
{ {
struct net_device_stats *stats; struct net_device_stats *stats;
struct kvaser_usb_tx_urb_context *context; struct kvaser_usb_tx_urb_context *context;
...@@ -676,8 +676,8 @@ static void kvaser_usb_tx_acknowledge(const struct kvaser_usb *dev, ...@@ -676,8 +676,8 @@ static void kvaser_usb_tx_acknowledge(const struct kvaser_usb *dev,
unsigned long flags; unsigned long flags;
u8 channel, tid; u8 channel, tid;
channel = msg->u.tx_acknowledge_header.channel; channel = cmd->u.tx_acknowledge_header.channel;
tid = msg->u.tx_acknowledge_header.tid; tid = cmd->u.tx_acknowledge_header.tid;
if (channel >= dev->nchannels) { if (channel >= dev->nchannels) {
dev_err(dev->udev->dev.parent, dev_err(dev->udev->dev.parent,
...@@ -728,7 +728,7 @@ static void kvaser_usb_tx_acknowledge(const struct kvaser_usb *dev, ...@@ -728,7 +728,7 @@ static void kvaser_usb_tx_acknowledge(const struct kvaser_usb *dev,
spin_unlock_irqrestore(&priv->tx_contexts_lock, flags); spin_unlock_irqrestore(&priv->tx_contexts_lock, flags);
} }
static void kvaser_usb_simple_msg_callback(struct urb *urb) static void kvaser_usb_simple_cmd_callback(struct urb *urb)
{ {
struct net_device *netdev = urb->context; struct net_device *netdev = urb->context;
...@@ -739,12 +739,12 @@ static void kvaser_usb_simple_msg_callback(struct urb *urb) ...@@ -739,12 +739,12 @@ static void kvaser_usb_simple_msg_callback(struct urb *urb)
urb->status); urb->status);
} }
static int kvaser_usb_simple_msg_async(struct kvaser_usb_net_priv *priv, static int kvaser_usb_simple_cmd_async(struct kvaser_usb_net_priv *priv,
u8 msg_id) u8 cmd_id)
{ {
struct kvaser_usb *dev = priv->dev; struct kvaser_usb *dev = priv->dev;
struct net_device *netdev = priv->netdev; struct net_device *netdev = priv->netdev;
struct kvaser_msg *msg; struct kvaser_cmd *cmd;
struct urb *urb; struct urb *urb;
void *buf; void *buf;
int err; int err;
...@@ -753,22 +753,22 @@ static int kvaser_usb_simple_msg_async(struct kvaser_usb_net_priv *priv, ...@@ -753,22 +753,22 @@ static int kvaser_usb_simple_msg_async(struct kvaser_usb_net_priv *priv,
if (!urb) if (!urb)
return -ENOMEM; return -ENOMEM;
buf = kmalloc(sizeof(struct kvaser_msg), GFP_ATOMIC); buf = kmalloc(sizeof(struct kvaser_cmd), GFP_ATOMIC);
if (!buf) { if (!buf) {
usb_free_urb(urb); usb_free_urb(urb);
return -ENOMEM; return -ENOMEM;
} }
msg = (struct kvaser_msg *)buf; cmd = (struct kvaser_cmd *)buf;
msg->len = MSG_HEADER_LEN + sizeof(struct kvaser_msg_simple); cmd->len = CMD_HEADER_LEN + sizeof(struct kvaser_cmd_simple);
msg->id = msg_id; cmd->id = cmd_id;
msg->u.simple.channel = priv->channel; cmd->u.simple.channel = priv->channel;
usb_fill_bulk_urb(urb, dev->udev, usb_fill_bulk_urb(urb, dev->udev,
usb_sndbulkpipe(dev->udev, usb_sndbulkpipe(dev->udev,
dev->bulk_out->bEndpointAddress), dev->bulk_out->bEndpointAddress),
buf, msg->len, buf, cmd->len,
kvaser_usb_simple_msg_callback, netdev); kvaser_usb_simple_cmd_callback, netdev);
usb_anchor_urb(urb, &priv->tx_submitted); usb_anchor_urb(urb, &priv->tx_submitted);
err = usb_submit_urb(urb, GFP_ATOMIC); err = usb_submit_urb(urb, GFP_ATOMIC);
...@@ -894,7 +894,7 @@ static void kvaser_usb_rx_error(const struct kvaser_usb *dev, ...@@ -894,7 +894,7 @@ static void kvaser_usb_rx_error(const struct kvaser_usb *dev,
if (es->status & if (es->status &
(M16C_STATE_BUS_OFF | M16C_STATE_BUS_RESET)) { (M16C_STATE_BUS_OFF | M16C_STATE_BUS_RESET)) {
if (!priv->can.restart_ms) if (!priv->can.restart_ms)
kvaser_usb_simple_msg_async(priv, CMD_STOP_CHIP); kvaser_usb_simple_cmd_async(priv, CMD_STOP_CHIP);
netif_carrier_off(priv->netdev); netif_carrier_off(priv->netdev);
} }
...@@ -981,27 +981,27 @@ static void kvaser_usbcan_conditionally_rx_error(const struct kvaser_usb *dev, ...@@ -981,27 +981,27 @@ static void kvaser_usbcan_conditionally_rx_error(const struct kvaser_usb *dev,
} }
static void kvaser_usbcan_rx_error(const struct kvaser_usb *dev, static void kvaser_usbcan_rx_error(const struct kvaser_usb *dev,
const struct kvaser_msg *msg) const struct kvaser_cmd *cmd)
{ {
struct kvaser_usb_error_summary es = { }; struct kvaser_usb_error_summary es = { };
switch (msg->id) { switch (cmd->id) {
/* Sometimes errors are sent as unsolicited chip state events */ /* Sometimes errors are sent as unsolicited chip state events */
case CMD_CHIP_STATE_EVENT: case CMD_CHIP_STATE_EVENT:
es.channel = msg->u.usbcan.chip_state_event.channel; es.channel = cmd->u.usbcan.chip_state_event.channel;
es.status = msg->u.usbcan.chip_state_event.status; es.status = cmd->u.usbcan.chip_state_event.status;
es.txerr = msg->u.usbcan.chip_state_event.tx_errors_count; es.txerr = cmd->u.usbcan.chip_state_event.tx_errors_count;
es.rxerr = msg->u.usbcan.chip_state_event.rx_errors_count; es.rxerr = cmd->u.usbcan.chip_state_event.rx_errors_count;
kvaser_usbcan_conditionally_rx_error(dev, &es); kvaser_usbcan_conditionally_rx_error(dev, &es);
break; break;
case CMD_CAN_ERROR_EVENT: case CMD_CAN_ERROR_EVENT:
es.channel = 0; es.channel = 0;
es.status = msg->u.usbcan.error_event.status_ch0; es.status = cmd->u.usbcan.error_event.status_ch0;
es.txerr = msg->u.usbcan.error_event.tx_errors_count_ch0; es.txerr = cmd->u.usbcan.error_event.tx_errors_count_ch0;
es.rxerr = msg->u.usbcan.error_event.rx_errors_count_ch0; es.rxerr = cmd->u.usbcan.error_event.rx_errors_count_ch0;
es.usbcan.other_ch_status = es.usbcan.other_ch_status =
msg->u.usbcan.error_event.status_ch1; cmd->u.usbcan.error_event.status_ch1;
kvaser_usbcan_conditionally_rx_error(dev, &es); kvaser_usbcan_conditionally_rx_error(dev, &es);
/* The USBCAN firmware supports up to 2 channels. /* The USBCAN firmware supports up to 2 channels.
...@@ -1009,51 +1009,51 @@ static void kvaser_usbcan_rx_error(const struct kvaser_usb *dev, ...@@ -1009,51 +1009,51 @@ static void kvaser_usbcan_rx_error(const struct kvaser_usb *dev,
*/ */
if (dev->nchannels == MAX_USBCAN_NET_DEVICES) { if (dev->nchannels == MAX_USBCAN_NET_DEVICES) {
es.channel = 1; es.channel = 1;
es.status = msg->u.usbcan.error_event.status_ch1; es.status = cmd->u.usbcan.error_event.status_ch1;
es.txerr = msg->u.usbcan.error_event.tx_errors_count_ch1; es.txerr = cmd->u.usbcan.error_event.tx_errors_count_ch1;
es.rxerr = msg->u.usbcan.error_event.rx_errors_count_ch1; es.rxerr = cmd->u.usbcan.error_event.rx_errors_count_ch1;
es.usbcan.other_ch_status = es.usbcan.other_ch_status =
msg->u.usbcan.error_event.status_ch0; cmd->u.usbcan.error_event.status_ch0;
kvaser_usbcan_conditionally_rx_error(dev, &es); kvaser_usbcan_conditionally_rx_error(dev, &es);
} }
break; break;
default: default:
dev_err(dev->udev->dev.parent, "Invalid msg id (%d)\n", dev_err(dev->udev->dev.parent, "Invalid cmd id (%d)\n",
msg->id); cmd->id);
} }
} }
static void kvaser_leaf_rx_error(const struct kvaser_usb *dev, static void kvaser_leaf_rx_error(const struct kvaser_usb *dev,
const struct kvaser_msg *msg) const struct kvaser_cmd *cmd)
{ {
struct kvaser_usb_error_summary es = { }; struct kvaser_usb_error_summary es = { };
switch (msg->id) { switch (cmd->id) {
case CMD_CAN_ERROR_EVENT: case CMD_CAN_ERROR_EVENT:
es.channel = msg->u.leaf.error_event.channel; es.channel = cmd->u.leaf.error_event.channel;
es.status = msg->u.leaf.error_event.status; es.status = cmd->u.leaf.error_event.status;
es.txerr = msg->u.leaf.error_event.tx_errors_count; es.txerr = cmd->u.leaf.error_event.tx_errors_count;
es.rxerr = msg->u.leaf.error_event.rx_errors_count; es.rxerr = cmd->u.leaf.error_event.rx_errors_count;
es.leaf.error_factor = msg->u.leaf.error_event.error_factor; es.leaf.error_factor = cmd->u.leaf.error_event.error_factor;
break; break;
case CMD_LEAF_LOG_MESSAGE: case CMD_LEAF_LOG_MESSAGE:
es.channel = msg->u.leaf.log_message.channel; es.channel = cmd->u.leaf.log_message.channel;
es.status = msg->u.leaf.log_message.data[0]; es.status = cmd->u.leaf.log_message.data[0];
es.txerr = msg->u.leaf.log_message.data[2]; es.txerr = cmd->u.leaf.log_message.data[2];
es.rxerr = msg->u.leaf.log_message.data[3]; es.rxerr = cmd->u.leaf.log_message.data[3];
es.leaf.error_factor = msg->u.leaf.log_message.data[1]; es.leaf.error_factor = cmd->u.leaf.log_message.data[1];
break; break;
case CMD_CHIP_STATE_EVENT: case CMD_CHIP_STATE_EVENT:
es.channel = msg->u.leaf.chip_state_event.channel; es.channel = cmd->u.leaf.chip_state_event.channel;
es.status = msg->u.leaf.chip_state_event.status; es.status = cmd->u.leaf.chip_state_event.status;
es.txerr = msg->u.leaf.chip_state_event.tx_errors_count; es.txerr = cmd->u.leaf.chip_state_event.tx_errors_count;
es.rxerr = msg->u.leaf.chip_state_event.rx_errors_count; es.rxerr = cmd->u.leaf.chip_state_event.rx_errors_count;
es.leaf.error_factor = 0; es.leaf.error_factor = 0;
break; break;
default: default:
dev_err(dev->udev->dev.parent, "Invalid msg id (%d)\n", dev_err(dev->udev->dev.parent, "Invalid cmd id (%d)\n",
msg->id); cmd->id);
return; return;
} }
...@@ -1061,22 +1061,22 @@ static void kvaser_leaf_rx_error(const struct kvaser_usb *dev, ...@@ -1061,22 +1061,22 @@ static void kvaser_leaf_rx_error(const struct kvaser_usb *dev,
} }
static void kvaser_usb_rx_can_err(const struct kvaser_usb_net_priv *priv, static void kvaser_usb_rx_can_err(const struct kvaser_usb_net_priv *priv,
const struct kvaser_msg *msg) const struct kvaser_cmd *cmd)
{ {
struct can_frame *cf; struct can_frame *cf;
struct sk_buff *skb; struct sk_buff *skb;
struct net_device_stats *stats = &priv->netdev->stats; struct net_device_stats *stats = &priv->netdev->stats;
if (msg->u.rx_can_header.flag & (MSG_FLAG_ERROR_FRAME | if (cmd->u.rx_can_header.flag & (MSG_FLAG_ERROR_FRAME |
MSG_FLAG_NERR)) { MSG_FLAG_NERR)) {
netdev_err(priv->netdev, "Unknown error (flags: 0x%02x)\n", netdev_err(priv->netdev, "Unknown error (flags: 0x%02x)\n",
msg->u.rx_can_header.flag); cmd->u.rx_can_header.flag);
stats->rx_errors++; stats->rx_errors++;
return; return;
} }
if (msg->u.rx_can_header.flag & MSG_FLAG_OVERRUN) { if (cmd->u.rx_can_header.flag & MSG_FLAG_OVERRUN) {
stats->rx_over_errors++; stats->rx_over_errors++;
stats->rx_errors++; stats->rx_errors++;
...@@ -1096,14 +1096,14 @@ static void kvaser_usb_rx_can_err(const struct kvaser_usb_net_priv *priv, ...@@ -1096,14 +1096,14 @@ static void kvaser_usb_rx_can_err(const struct kvaser_usb_net_priv *priv,
} }
static void kvaser_usb_rx_can_msg(const struct kvaser_usb *dev, static void kvaser_usb_rx_can_msg(const struct kvaser_usb *dev,
const struct kvaser_msg *msg) const struct kvaser_cmd *cmd)
{ {
struct kvaser_usb_net_priv *priv; struct kvaser_usb_net_priv *priv;
struct can_frame *cf; struct can_frame *cf;
struct sk_buff *skb; struct sk_buff *skb;
struct net_device_stats *stats; struct net_device_stats *stats;
u8 channel = msg->u.rx_can_header.channel; u8 channel = cmd->u.rx_can_header.channel;
const u8 *rx_msg = NULL; /* GCC */ const u8 *rx_data = NULL; /* GCC */
if (channel >= dev->nchannels) { if (channel >= dev->nchannels) {
dev_err(dev->udev->dev.parent, dev_err(dev->udev->dev.parent,
...@@ -1114,28 +1114,28 @@ static void kvaser_usb_rx_can_msg(const struct kvaser_usb *dev, ...@@ -1114,28 +1114,28 @@ static void kvaser_usb_rx_can_msg(const struct kvaser_usb *dev,
priv = dev->nets[channel]; priv = dev->nets[channel];
stats = &priv->netdev->stats; stats = &priv->netdev->stats;
if ((msg->u.rx_can_header.flag & MSG_FLAG_ERROR_FRAME) && if ((cmd->u.rx_can_header.flag & MSG_FLAG_ERROR_FRAME) &&
(dev->family == KVASER_LEAF && msg->id == CMD_LEAF_LOG_MESSAGE)) { (dev->family == KVASER_LEAF && cmd->id == CMD_LEAF_LOG_MESSAGE)) {
kvaser_leaf_rx_error(dev, msg); kvaser_leaf_rx_error(dev, cmd);
return; return;
} else if (msg->u.rx_can_header.flag & (MSG_FLAG_ERROR_FRAME | } else if (cmd->u.rx_can_header.flag & (MSG_FLAG_ERROR_FRAME |
MSG_FLAG_NERR | MSG_FLAG_NERR |
MSG_FLAG_OVERRUN)) { MSG_FLAG_OVERRUN)) {
kvaser_usb_rx_can_err(priv, msg); kvaser_usb_rx_can_err(priv, cmd);
return; return;
} else if (msg->u.rx_can_header.flag & ~MSG_FLAG_REMOTE_FRAME) { } else if (cmd->u.rx_can_header.flag & ~MSG_FLAG_REMOTE_FRAME) {
netdev_warn(priv->netdev, netdev_warn(priv->netdev,
"Unhandled frame (flags: 0x%02x)", "Unhandled frame (flags: 0x%02x)",
msg->u.rx_can_header.flag); cmd->u.rx_can_header.flag);
return; return;
} }
switch (dev->family) { switch (dev->family) {
case KVASER_LEAF: case KVASER_LEAF:
rx_msg = msg->u.leaf.rx_can.msg; rx_data = cmd->u.leaf.rx_can.data;
break; break;
case KVASER_USBCAN: case KVASER_USBCAN:
rx_msg = msg->u.usbcan.rx_can.msg; rx_data = cmd->u.usbcan.rx_can.data;
break; break;
} }
...@@ -1145,38 +1145,37 @@ static void kvaser_usb_rx_can_msg(const struct kvaser_usb *dev, ...@@ -1145,38 +1145,37 @@ static void kvaser_usb_rx_can_msg(const struct kvaser_usb *dev,
return; return;
} }
if (dev->family == KVASER_LEAF && msg->id == CMD_LEAF_LOG_MESSAGE) { if (dev->family == KVASER_LEAF && cmd->id == CMD_LEAF_LOG_MESSAGE) {
cf->can_id = le32_to_cpu(msg->u.leaf.log_message.id); cf->can_id = le32_to_cpu(cmd->u.leaf.log_message.id);
if (cf->can_id & KVASER_EXTENDED_FRAME) if (cf->can_id & KVASER_EXTENDED_FRAME)
cf->can_id &= CAN_EFF_MASK | CAN_EFF_FLAG; cf->can_id &= CAN_EFF_MASK | CAN_EFF_FLAG;
else else
cf->can_id &= CAN_SFF_MASK; cf->can_id &= CAN_SFF_MASK;
cf->can_dlc = get_can_dlc(msg->u.leaf.log_message.dlc); cf->can_dlc = get_can_dlc(cmd->u.leaf.log_message.dlc);
if (msg->u.leaf.log_message.flags & MSG_FLAG_REMOTE_FRAME) if (cmd->u.leaf.log_message.flags & MSG_FLAG_REMOTE_FRAME)
cf->can_id |= CAN_RTR_FLAG; cf->can_id |= CAN_RTR_FLAG;
else else
memcpy(cf->data, &msg->u.leaf.log_message.data, memcpy(cf->data, &cmd->u.leaf.log_message.data,
cf->can_dlc); cf->can_dlc);
} else { } else {
cf->can_id = ((rx_msg[0] & 0x1f) << 6) | (rx_msg[1] & 0x3f); cf->can_id = ((rx_data[0] & 0x1f) << 6) | (rx_data[1] & 0x3f);
if (msg->id == CMD_RX_EXT_MESSAGE) { if (cmd->id == CMD_RX_EXT_MESSAGE) {
cf->can_id <<= 18; cf->can_id <<= 18;
cf->can_id |= ((rx_msg[2] & 0x0f) << 14) | cf->can_id |= ((rx_data[2] & 0x0f) << 14) |
((rx_msg[3] & 0xff) << 6) | ((rx_data[3] & 0xff) << 6) |
(rx_msg[4] & 0x3f); (rx_data[4] & 0x3f);
cf->can_id |= CAN_EFF_FLAG; cf->can_id |= CAN_EFF_FLAG;
} }
cf->can_dlc = get_can_dlc(rx_msg[5]); cf->can_dlc = get_can_dlc(rx_data[5]);
if (msg->u.rx_can_header.flag & MSG_FLAG_REMOTE_FRAME) if (cmd->u.rx_can_header.flag & MSG_FLAG_REMOTE_FRAME)
cf->can_id |= CAN_RTR_FLAG; cf->can_id |= CAN_RTR_FLAG;
else else
memcpy(cf->data, &rx_msg[6], memcpy(cf->data, &rx_data[6], cf->can_dlc);
cf->can_dlc);
} }
stats->rx_packets++; stats->rx_packets++;
...@@ -1185,10 +1184,10 @@ static void kvaser_usb_rx_can_msg(const struct kvaser_usb *dev, ...@@ -1185,10 +1184,10 @@ static void kvaser_usb_rx_can_msg(const struct kvaser_usb *dev,
} }
static void kvaser_usb_start_chip_reply(const struct kvaser_usb *dev, static void kvaser_usb_start_chip_reply(const struct kvaser_usb *dev,
const struct kvaser_msg *msg) const struct kvaser_cmd *cmd)
{ {
struct kvaser_usb_net_priv *priv; struct kvaser_usb_net_priv *priv;
u8 channel = msg->u.simple.channel; u8 channel = cmd->u.simple.channel;
if (channel >= dev->nchannels) { if (channel >= dev->nchannels) {
dev_err(dev->udev->dev.parent, dev_err(dev->udev->dev.parent,
...@@ -1208,10 +1207,10 @@ static void kvaser_usb_start_chip_reply(const struct kvaser_usb *dev, ...@@ -1208,10 +1207,10 @@ static void kvaser_usb_start_chip_reply(const struct kvaser_usb *dev,
} }
static void kvaser_usb_stop_chip_reply(const struct kvaser_usb *dev, static void kvaser_usb_stop_chip_reply(const struct kvaser_usb *dev,
const struct kvaser_msg *msg) const struct kvaser_cmd *cmd)
{ {
struct kvaser_usb_net_priv *priv; struct kvaser_usb_net_priv *priv;
u8 channel = msg->u.simple.channel; u8 channel = cmd->u.simple.channel;
if (channel >= dev->nchannels) { if (channel >= dev->nchannels) {
dev_err(dev->udev->dev.parent, dev_err(dev->udev->dev.parent,
...@@ -1224,42 +1223,42 @@ static void kvaser_usb_stop_chip_reply(const struct kvaser_usb *dev, ...@@ -1224,42 +1223,42 @@ static void kvaser_usb_stop_chip_reply(const struct kvaser_usb *dev,
complete(&priv->stop_comp); complete(&priv->stop_comp);
} }
static void kvaser_usb_handle_message(const struct kvaser_usb *dev, static void kvaser_usb_handle_cmd(const struct kvaser_usb *dev,
const struct kvaser_msg *msg) const struct kvaser_cmd *cmd)
{ {
switch (msg->id) { switch (cmd->id) {
case CMD_START_CHIP_REPLY: case CMD_START_CHIP_REPLY:
kvaser_usb_start_chip_reply(dev, msg); kvaser_usb_start_chip_reply(dev, cmd);
break; break;
case CMD_STOP_CHIP_REPLY: case CMD_STOP_CHIP_REPLY:
kvaser_usb_stop_chip_reply(dev, msg); kvaser_usb_stop_chip_reply(dev, cmd);
break; break;
case CMD_RX_STD_MESSAGE: case CMD_RX_STD_MESSAGE:
case CMD_RX_EXT_MESSAGE: case CMD_RX_EXT_MESSAGE:
kvaser_usb_rx_can_msg(dev, msg); kvaser_usb_rx_can_msg(dev, cmd);
break; break;
case CMD_LEAF_LOG_MESSAGE: case CMD_LEAF_LOG_MESSAGE:
if (dev->family != KVASER_LEAF) if (dev->family != KVASER_LEAF)
goto warn; goto warn;
kvaser_usb_rx_can_msg(dev, msg); kvaser_usb_rx_can_msg(dev, cmd);
break; break;
case CMD_CHIP_STATE_EVENT: case CMD_CHIP_STATE_EVENT:
case CMD_CAN_ERROR_EVENT: case CMD_CAN_ERROR_EVENT:
if (dev->family == KVASER_LEAF) if (dev->family == KVASER_LEAF)
kvaser_leaf_rx_error(dev, msg); kvaser_leaf_rx_error(dev, cmd);
else else
kvaser_usbcan_rx_error(dev, msg); kvaser_usbcan_rx_error(dev, cmd);
break; break;
case CMD_TX_ACKNOWLEDGE: case CMD_TX_ACKNOWLEDGE:
kvaser_usb_tx_acknowledge(dev, msg); kvaser_usb_tx_acknowledge(dev, cmd);
break; break;
/* Ignored messages */ /* Ignored commands */
case CMD_USBCAN_CLOCK_OVERFLOW_EVENT: case CMD_USBCAN_CLOCK_OVERFLOW_EVENT:
if (dev->family != KVASER_USBCAN) if (dev->family != KVASER_USBCAN)
goto warn; goto warn;
...@@ -1272,7 +1271,7 @@ static void kvaser_usb_handle_message(const struct kvaser_usb *dev, ...@@ -1272,7 +1271,7 @@ static void kvaser_usb_handle_message(const struct kvaser_usb *dev,
default: default:
warn: dev_warn(dev->udev->dev.parent, warn: dev_warn(dev->udev->dev.parent,
"Unhandled message (%d)\n", msg->id); "Unhandled command (%d)\n", cmd->id);
break; break;
} }
} }
...@@ -1280,7 +1279,7 @@ warn: dev_warn(dev->udev->dev.parent, ...@@ -1280,7 +1279,7 @@ warn: dev_warn(dev->udev->dev.parent,
static void kvaser_usb_read_bulk_callback(struct urb *urb) static void kvaser_usb_read_bulk_callback(struct urb *urb)
{ {
struct kvaser_usb *dev = urb->context; struct kvaser_usb *dev = urb->context;
struct kvaser_msg *msg; struct kvaser_cmd *cmd;
int pos = 0; int pos = 0;
int err, i; int err, i;
...@@ -1298,10 +1297,10 @@ static void kvaser_usb_read_bulk_callback(struct urb *urb) ...@@ -1298,10 +1297,10 @@ static void kvaser_usb_read_bulk_callback(struct urb *urb)
goto resubmit_urb; goto resubmit_urb;
} }
while (pos <= (int)(urb->actual_length - MSG_HEADER_LEN)) { while (pos <= (int)(urb->actual_length - CMD_HEADER_LEN)) {
msg = urb->transfer_buffer + pos; cmd = urb->transfer_buffer + pos;
/* The Kvaser firmware can only read and write messages that /* The Kvaser firmware can only read and write commands that
* does not cross the USB's endpoint wMaxPacketSize boundary. * does not cross the USB's endpoint wMaxPacketSize boundary.
* If a follow-up command crosses such boundary, firmware puts * If a follow-up command crosses such boundary, firmware puts
* a placeholder zero-length command in its place then aligns * a placeholder zero-length command in its place then aligns
...@@ -1310,20 +1309,20 @@ static void kvaser_usb_read_bulk_callback(struct urb *urb) ...@@ -1310,20 +1309,20 @@ static void kvaser_usb_read_bulk_callback(struct urb *urb)
* Handle such cases or we're going to miss a significant * Handle such cases or we're going to miss a significant
* number of events in case of a heavy rx load on the bus. * number of events in case of a heavy rx load on the bus.
*/ */
if (msg->len == 0) { if (cmd->len == 0) {
pos = round_up(pos, le16_to_cpu(dev->bulk_in-> pos = round_up(pos, le16_to_cpu(dev->bulk_in->
wMaxPacketSize)); wMaxPacketSize));
continue; continue;
} }
if (pos + msg->len > urb->actual_length) { if (pos + cmd->len > urb->actual_length) {
dev_err_ratelimited(dev->udev->dev.parent, dev_err_ratelimited(dev->udev->dev.parent,
"Format error\n"); "Format error\n");
break; break;
} }
kvaser_usb_handle_message(dev, msg); kvaser_usb_handle_cmd(dev, cmd);
pos += msg->len; pos += cmd->len;
} }
resubmit_urb: resubmit_urb:
...@@ -1416,26 +1415,26 @@ static int kvaser_usb_setup_rx_urbs(struct kvaser_usb *dev) ...@@ -1416,26 +1415,26 @@ static int kvaser_usb_setup_rx_urbs(struct kvaser_usb *dev)
static int kvaser_usb_set_opt_mode(const struct kvaser_usb_net_priv *priv) static int kvaser_usb_set_opt_mode(const struct kvaser_usb_net_priv *priv)
{ {
struct kvaser_msg *msg; struct kvaser_cmd *cmd;
int rc; int rc;
msg = kmalloc(sizeof(*msg), GFP_KERNEL); cmd = kmalloc(sizeof(*cmd), GFP_KERNEL);
if (!msg) if (!cmd)
return -ENOMEM; return -ENOMEM;
msg->id = CMD_SET_CTRL_MODE; cmd->id = CMD_SET_CTRL_MODE;
msg->len = MSG_HEADER_LEN + sizeof(struct kvaser_msg_ctrl_mode); cmd->len = CMD_HEADER_LEN + sizeof(struct kvaser_cmd_ctrl_mode);
msg->u.ctrl_mode.tid = 0xff; cmd->u.ctrl_mode.tid = 0xff;
msg->u.ctrl_mode.channel = priv->channel; cmd->u.ctrl_mode.channel = priv->channel;
if (priv->can.ctrlmode & CAN_CTRLMODE_LISTENONLY) if (priv->can.ctrlmode & CAN_CTRLMODE_LISTENONLY)
msg->u.ctrl_mode.ctrl_mode = KVASER_CTRL_MODE_SILENT; cmd->u.ctrl_mode.ctrl_mode = KVASER_CTRL_MODE_SILENT;
else else
msg->u.ctrl_mode.ctrl_mode = KVASER_CTRL_MODE_NORMAL; cmd->u.ctrl_mode.ctrl_mode = KVASER_CTRL_MODE_NORMAL;
rc = kvaser_usb_send_msg(priv->dev, msg); rc = kvaser_usb_send_cmd(priv->dev, cmd);
kfree(msg); kfree(cmd);
return rc; return rc;
} }
...@@ -1445,7 +1444,7 @@ static int kvaser_usb_start_chip(struct kvaser_usb_net_priv *priv) ...@@ -1445,7 +1444,7 @@ static int kvaser_usb_start_chip(struct kvaser_usb_net_priv *priv)
init_completion(&priv->start_comp); init_completion(&priv->start_comp);
err = kvaser_usb_send_simple_msg(priv->dev, CMD_START_CHIP, err = kvaser_usb_send_simple_cmd(priv->dev, CMD_START_CHIP,
priv->channel); priv->channel);
if (err) if (err)
return err; return err;
...@@ -1535,7 +1534,7 @@ static int kvaser_usb_stop_chip(struct kvaser_usb_net_priv *priv) ...@@ -1535,7 +1534,7 @@ static int kvaser_usb_stop_chip(struct kvaser_usb_net_priv *priv)
init_completion(&priv->stop_comp); init_completion(&priv->stop_comp);
err = kvaser_usb_send_simple_msg(priv->dev, CMD_STOP_CHIP, err = kvaser_usb_send_simple_cmd(priv->dev, CMD_STOP_CHIP,
priv->channel); priv->channel);
if (err) if (err)
return err; return err;
...@@ -1549,21 +1548,21 @@ static int kvaser_usb_stop_chip(struct kvaser_usb_net_priv *priv) ...@@ -1549,21 +1548,21 @@ static int kvaser_usb_stop_chip(struct kvaser_usb_net_priv *priv)
static int kvaser_usb_flush_queue(struct kvaser_usb_net_priv *priv) static int kvaser_usb_flush_queue(struct kvaser_usb_net_priv *priv)
{ {
struct kvaser_msg *msg; struct kvaser_cmd *cmd;
int rc; int rc;
msg = kmalloc(sizeof(*msg), GFP_KERNEL); cmd = kmalloc(sizeof(*cmd), GFP_KERNEL);
if (!msg) if (!cmd)
return -ENOMEM; return -ENOMEM;
msg->id = CMD_FLUSH_QUEUE; cmd->id = CMD_FLUSH_QUEUE;
msg->len = MSG_HEADER_LEN + sizeof(struct kvaser_msg_flush_queue); cmd->len = CMD_HEADER_LEN + sizeof(struct kvaser_cmd_flush_queue);
msg->u.flush_queue.channel = priv->channel; cmd->u.flush_queue.channel = priv->channel;
msg->u.flush_queue.flags = 0x00; cmd->u.flush_queue.flags = 0x00;
rc = kvaser_usb_send_msg(priv->dev, msg); rc = kvaser_usb_send_cmd(priv->dev, cmd);
kfree(msg); kfree(cmd);
return rc; return rc;
} }
...@@ -1579,7 +1578,7 @@ static int kvaser_usb_close(struct net_device *netdev) ...@@ -1579,7 +1578,7 @@ static int kvaser_usb_close(struct net_device *netdev)
if (err) if (err)
netdev_warn(netdev, "Cannot flush queue, error %d\n", err); netdev_warn(netdev, "Cannot flush queue, error %d\n", err);
err = kvaser_usb_send_simple_msg(dev, CMD_RESET_CHIP, priv->channel); err = kvaser_usb_send_simple_cmd(dev, CMD_RESET_CHIP, priv->channel);
if (err) if (err)
netdev_warn(netdev, "Cannot reset card, error %d\n", err); netdev_warn(netdev, "Cannot reset card, error %d\n", err);
...@@ -1627,9 +1626,9 @@ static netdev_tx_t kvaser_usb_start_xmit(struct sk_buff *skb, ...@@ -1627,9 +1626,9 @@ static netdev_tx_t kvaser_usb_start_xmit(struct sk_buff *skb,
struct kvaser_usb_tx_urb_context *context = NULL; struct kvaser_usb_tx_urb_context *context = NULL;
struct urb *urb; struct urb *urb;
void *buf; void *buf;
struct kvaser_msg *msg; struct kvaser_cmd *cmd;
int i, err, ret = NETDEV_TX_OK; int i, err, ret = NETDEV_TX_OK;
u8 *msg_tx_can_flags = NULL; /* GCC */ u8 *cmd_tx_can_flags = NULL; /* GCC */
unsigned long flags; unsigned long flags;
if (can_dropped_invalid_skb(netdev, skb)) if (can_dropped_invalid_skb(netdev, skb))
...@@ -1642,46 +1641,46 @@ static netdev_tx_t kvaser_usb_start_xmit(struct sk_buff *skb, ...@@ -1642,46 +1641,46 @@ static netdev_tx_t kvaser_usb_start_xmit(struct sk_buff *skb,
return NETDEV_TX_OK; return NETDEV_TX_OK;
} }
buf = kmalloc(sizeof(struct kvaser_msg), GFP_ATOMIC); buf = kmalloc(sizeof(struct kvaser_cmd), GFP_ATOMIC);
if (!buf) { if (!buf) {
stats->tx_dropped++; stats->tx_dropped++;
dev_kfree_skb(skb); dev_kfree_skb(skb);
goto freeurb; goto freeurb;
} }
msg = buf; cmd = buf;
msg->len = MSG_HEADER_LEN + sizeof(struct kvaser_msg_tx_can); cmd->len = CMD_HEADER_LEN + sizeof(struct kvaser_cmd_tx_can);
msg->u.tx_can.channel = priv->channel; cmd->u.tx_can.channel = priv->channel;
switch (dev->family) { switch (dev->family) {
case KVASER_LEAF: case KVASER_LEAF:
msg_tx_can_flags = &msg->u.tx_can.leaf.flags; cmd_tx_can_flags = &cmd->u.tx_can.leaf.flags;
break; break;
case KVASER_USBCAN: case KVASER_USBCAN:
msg_tx_can_flags = &msg->u.tx_can.usbcan.flags; cmd_tx_can_flags = &cmd->u.tx_can.usbcan.flags;
break; break;
} }
*msg_tx_can_flags = 0; *cmd_tx_can_flags = 0;
if (cf->can_id & CAN_EFF_FLAG) { if (cf->can_id & CAN_EFF_FLAG) {
msg->id = CMD_TX_EXT_MESSAGE; cmd->id = CMD_TX_EXT_MESSAGE;
msg->u.tx_can.msg[0] = (cf->can_id >> 24) & 0x1f; cmd->u.tx_can.data[0] = (cf->can_id >> 24) & 0x1f;
msg->u.tx_can.msg[1] = (cf->can_id >> 18) & 0x3f; cmd->u.tx_can.data[1] = (cf->can_id >> 18) & 0x3f;
msg->u.tx_can.msg[2] = (cf->can_id >> 14) & 0x0f; cmd->u.tx_can.data[2] = (cf->can_id >> 14) & 0x0f;
msg->u.tx_can.msg[3] = (cf->can_id >> 6) & 0xff; cmd->u.tx_can.data[3] = (cf->can_id >> 6) & 0xff;
msg->u.tx_can.msg[4] = cf->can_id & 0x3f; cmd->u.tx_can.data[4] = cf->can_id & 0x3f;
} else { } else {
msg->id = CMD_TX_STD_MESSAGE; cmd->id = CMD_TX_STD_MESSAGE;
msg->u.tx_can.msg[0] = (cf->can_id >> 6) & 0x1f; cmd->u.tx_can.data[0] = (cf->can_id >> 6) & 0x1f;
msg->u.tx_can.msg[1] = cf->can_id & 0x3f; cmd->u.tx_can.data[1] = cf->can_id & 0x3f;
} }
msg->u.tx_can.msg[5] = cf->can_dlc; cmd->u.tx_can.data[5] = cf->can_dlc;
memcpy(&msg->u.tx_can.msg[6], cf->data, cf->can_dlc); memcpy(&cmd->u.tx_can.data[6], cf->data, cf->can_dlc);
if (cf->can_id & CAN_RTR_FLAG) if (cf->can_id & CAN_RTR_FLAG)
*msg_tx_can_flags |= MSG_FLAG_REMOTE_FRAME; *cmd_tx_can_flags |= MSG_FLAG_REMOTE_FRAME;
spin_lock_irqsave(&priv->tx_contexts_lock, flags); spin_lock_irqsave(&priv->tx_contexts_lock, flags);
for (i = 0; i < dev->max_tx_urbs; i++) { for (i = 0; i < dev->max_tx_urbs; i++) {
...@@ -1711,12 +1710,12 @@ static netdev_tx_t kvaser_usb_start_xmit(struct sk_buff *skb, ...@@ -1711,12 +1710,12 @@ static netdev_tx_t kvaser_usb_start_xmit(struct sk_buff *skb,
context->priv = priv; context->priv = priv;
context->dlc = cf->can_dlc; context->dlc = cf->can_dlc;
msg->u.tx_can.tid = context->echo_index; cmd->u.tx_can.tid = context->echo_index;
usb_fill_bulk_urb(urb, dev->udev, usb_fill_bulk_urb(urb, dev->udev,
usb_sndbulkpipe(dev->udev, usb_sndbulkpipe(dev->udev,
dev->bulk_out->bEndpointAddress), dev->bulk_out->bEndpointAddress),
buf, msg->len, buf, cmd->len,
kvaser_usb_write_bulk_callback, context); kvaser_usb_write_bulk_callback, context);
usb_anchor_urb(urb, &priv->tx_submitted); usb_anchor_urb(urb, &priv->tx_submitted);
...@@ -1775,30 +1774,30 @@ static int kvaser_usb_set_bittiming(struct net_device *netdev) ...@@ -1775,30 +1774,30 @@ static int kvaser_usb_set_bittiming(struct net_device *netdev)
struct kvaser_usb_net_priv *priv = netdev_priv(netdev); struct kvaser_usb_net_priv *priv = netdev_priv(netdev);
struct can_bittiming *bt = &priv->can.bittiming; struct can_bittiming *bt = &priv->can.bittiming;
struct kvaser_usb *dev = priv->dev; struct kvaser_usb *dev = priv->dev;
struct kvaser_msg *msg; struct kvaser_cmd *cmd;
int rc; int rc;
msg = kmalloc(sizeof(*msg), GFP_KERNEL); cmd = kmalloc(sizeof(*cmd), GFP_KERNEL);
if (!msg) if (!cmd)
return -ENOMEM; return -ENOMEM;
msg->id = CMD_SET_BUS_PARAMS; cmd->id = CMD_SET_BUS_PARAMS;
msg->len = MSG_HEADER_LEN + sizeof(struct kvaser_msg_busparams); cmd->len = CMD_HEADER_LEN + sizeof(struct kvaser_cmd_busparams);
msg->u.busparams.channel = priv->channel; cmd->u.busparams.channel = priv->channel;
msg->u.busparams.tid = 0xff; cmd->u.busparams.tid = 0xff;
msg->u.busparams.bitrate = cpu_to_le32(bt->bitrate); cmd->u.busparams.bitrate = cpu_to_le32(bt->bitrate);
msg->u.busparams.sjw = bt->sjw; cmd->u.busparams.sjw = bt->sjw;
msg->u.busparams.tseg1 = bt->prop_seg + bt->phase_seg1; cmd->u.busparams.tseg1 = bt->prop_seg + bt->phase_seg1;
msg->u.busparams.tseg2 = bt->phase_seg2; cmd->u.busparams.tseg2 = bt->phase_seg2;
if (priv->can.ctrlmode & CAN_CTRLMODE_3_SAMPLES) if (priv->can.ctrlmode & CAN_CTRLMODE_3_SAMPLES)
msg->u.busparams.no_samp = 3; cmd->u.busparams.no_samp = 3;
else else
msg->u.busparams.no_samp = 1; cmd->u.busparams.no_samp = 1;
rc = kvaser_usb_send_msg(dev, msg); rc = kvaser_usb_send_cmd(dev, cmd);
kfree(msg); kfree(cmd);
return rc; return rc;
} }
...@@ -1810,7 +1809,7 @@ static int kvaser_usb_set_mode(struct net_device *netdev, ...@@ -1810,7 +1809,7 @@ static int kvaser_usb_set_mode(struct net_device *netdev,
switch (mode) { switch (mode) {
case CAN_MODE_START: case CAN_MODE_START:
err = kvaser_usb_simple_msg_async(priv, CMD_START_CHIP); err = kvaser_usb_simple_cmd_async(priv, CMD_START_CHIP);
if (err) if (err)
return err; return err;
break; break;
...@@ -1860,7 +1859,7 @@ static int kvaser_usb_init_one(struct usb_interface *intf, ...@@ -1860,7 +1859,7 @@ static int kvaser_usb_init_one(struct usb_interface *intf,
struct kvaser_usb_net_priv *priv; struct kvaser_usb_net_priv *priv;
int err; int err;
err = kvaser_usb_send_simple_msg(dev, CMD_RESET_CHIP, channel); err = kvaser_usb_send_simple_cmd(dev, CMD_RESET_CHIP, channel);
if (err) if (err)
return err; return err;
......
Markdown is supported
0% .
You are about to add 0 people to the discussion. Proceed with caution.
先完成此消息的编辑!
想要评论请 注册