Commit 14e0e4bf authored by Sylwester Nawrocki's avatar Sylwester Nawrocki Committed by Mauro Carvalho Chehab

[media] staging: as102: Whitespace and indentation cleanup

Remove some unnecessary braces. Replace spaces with tabs where
expected. Replace gcc specific __FUNCTION__ with  C99 __func__.
No functional changes.

Cc: Devin Heitmueller <dheitmueller@kernellabs.com>
Signed-off-by: default avatarSylwester Nawrocki <snjw23@gmail.com>
Signed-off-by: default avatarMauro Carvalho Chehab <mchehab@redhat.com>
parent 88010289
......@@ -121,22 +121,22 @@ static int as10x_pid_filter(struct as102_dev_t *dev,
switch (onoff) {
case 0:
ret = as10x_cmd_del_PID_filter(bus_adap, (uint16_t) pid);
dprintk(debug, "DEL_PID_FILTER([%02d] 0x%04x) ret = %d\n",
index, pid, ret);
break;
ret = as10x_cmd_del_PID_filter(bus_adap, (uint16_t) pid);
dprintk(debug, "DEL_PID_FILTER([%02d] 0x%04x) ret = %d\n",
index, pid, ret);
break;
case 1:
{
struct as10x_ts_filter filter;
struct as10x_ts_filter filter;
filter.type = TS_PID_TYPE_TS;
filter.idx = 0xFF;
filter.pid = pid;
filter.type = TS_PID_TYPE_TS;
filter.idx = 0xFF;
filter.pid = pid;
ret = as10x_cmd_add_PID_filter(bus_adap, &filter);
dprintk(debug, "ADD_PID_FILTER([%02d -> %02d], 0x%04x) ret = %d\n",
index, filter.idx, filter.pid, ret);
break;
ret = as10x_cmd_add_PID_filter(bus_adap, &filter);
dprintk(debug, "ADD_PID_FILTER([%02d -> %02d], 0x%04x) ret = %d\n",
index, filter.idx, filter.pid, ret);
break;
}
}
......@@ -157,10 +157,9 @@ static int as102_dvb_dmx_start_feed(struct dvb_demux_feed *dvbdmxfeed)
if (mutex_lock_interruptible(&as102_dev->sem))
return -ERESTARTSYS;
if (pid_filtering) {
as10x_pid_filter(as102_dev,
dvbdmxfeed->index, dvbdmxfeed->pid, 1);
}
if (pid_filtering)
as10x_pid_filter(as102_dev, dvbdmxfeed->index,
dvbdmxfeed->pid, 1);
if (as102_dev->streaming++ == 0)
ret = as102_start_stream(as102_dev);
......@@ -183,10 +182,9 @@ static int as102_dvb_dmx_stop_feed(struct dvb_demux_feed *dvbdmxfeed)
if (--as102_dev->streaming == 0)
as102_stop_stream(as102_dev);
if (pid_filtering) {
as10x_pid_filter(as102_dev,
dvbdmxfeed->index, dvbdmxfeed->pid, 0);
}
if (pid_filtering)
as10x_pid_filter(as102_dev, dvbdmxfeed->index,
dvbdmxfeed->pid, 0);
mutex_unlock(&as102_dev->sem);
LEAVE();
......
......@@ -32,13 +32,13 @@ extern struct usb_driver as102_usb_driver;
#define dprintk(debug, args...) \
do { if (debug) { \
printk(KERN_DEBUG "%s: ",__FUNCTION__); \
pr_debug("%s: ", __func__); \
printk(args); \
} } while (0)
#ifdef TRACE
#define ENTER() printk(">> enter %s\n", __FUNCTION__)
#define LEAVE() printk("<< leave %s\n", __FUNCTION__)
#define ENTER() pr_debug(">> enter %s\n", __func__)
#define LEAVE() pr_debug("<< leave %s\n", __func__)
#else
#define ENTER()
#define LEAVE()
......
......@@ -56,16 +56,16 @@ static const char *as102_device_names[] = {
};
struct usb_driver as102_usb_driver = {
.name = DRIVER_FULL_NAME,
.probe = as102_usb_probe,
.disconnect = as102_usb_disconnect,
.id_table = as102_usb_id_table
.name = DRIVER_FULL_NAME,
.probe = as102_usb_probe,
.disconnect = as102_usb_disconnect,
.id_table = as102_usb_id_table
};
static const struct file_operations as102_dev_fops = {
.owner = THIS_MODULE,
.open = as102_open,
.release = as102_release,
.owner = THIS_MODULE,
.open = as102_open,
.release = as102_release,
};
static struct usb_class_driver as102_usb_class_driver = {
......
......@@ -232,7 +232,7 @@ int as10x_cmd_get_tune_status(as10x_handle_t *phandle,
}
/**
* send get TPS command to AS10x
* as10x_cmd_get_tps - send get TPS command to AS10x
* @phandle: pointer to AS10x handle
* @ptps: pointer to TPS parameters structure
*
......
This diff is collapsed.
......@@ -24,9 +24,9 @@ struct as102_dev_t;
#include "as10x_cmd.h"
/* values for "mode" field */
#define REGMODE8 8
#define REGMODE16 16
#define REGMODE32 32
#define REGMODE8 8
#define REGMODE16 16
#define REGMODE32 32
struct as102_priv_ops_t {
int (*upload_fw_pkt) (struct as102_bus_adapter_t *bus_adap,
......
......@@ -26,170 +26,169 @@
/*********************************/
/* bandwidth constant values */
#define BW_5_MHZ 0x00
#define BW_6_MHZ 0x01
#define BW_7_MHZ 0x02
#define BW_8_MHZ 0x03
#define BW_5_MHZ 0x00
#define BW_6_MHZ 0x01
#define BW_7_MHZ 0x02
#define BW_8_MHZ 0x03
/* hierarchy priority selection values */
#define HIER_NO_PRIORITY 0x00
#define HIER_LOW_PRIORITY 0x01
#define HIER_HIGH_PRIORITY 0x02
#define HIER_NO_PRIORITY 0x00
#define HIER_LOW_PRIORITY 0x01
#define HIER_HIGH_PRIORITY 0x02
/* constellation available values */
#define CONST_QPSK 0x00
#define CONST_QAM16 0x01
#define CONST_QAM64 0x02
#define CONST_UNKNOWN 0xFF
#define CONST_QPSK 0x00
#define CONST_QAM16 0x01
#define CONST_QAM64 0x02
#define CONST_UNKNOWN 0xFF
/* hierarchy available values */
#define HIER_NONE 0x00
#define HIER_ALPHA_1 0x01
#define HIER_ALPHA_2 0x02
#define HIER_ALPHA_4 0x03
#define HIER_UNKNOWN 0xFF
#define HIER_NONE 0x00
#define HIER_ALPHA_1 0x01
#define HIER_ALPHA_2 0x02
#define HIER_ALPHA_4 0x03
#define HIER_UNKNOWN 0xFF
/* interleaving available values */
#define INTLV_NATIVE 0x00
#define INTLV_IN_DEPTH 0x01
#define INTLV_UNKNOWN 0xFF
#define INTLV_NATIVE 0x00
#define INTLV_IN_DEPTH 0x01
#define INTLV_UNKNOWN 0xFF
/* code rate available values */
#define CODE_RATE_1_2 0x00
#define CODE_RATE_2_3 0x01
#define CODE_RATE_3_4 0x02
#define CODE_RATE_5_6 0x03
#define CODE_RATE_7_8 0x04
#define CODE_RATE_UNKNOWN 0xFF
#define CODE_RATE_1_2 0x00
#define CODE_RATE_2_3 0x01
#define CODE_RATE_3_4 0x02
#define CODE_RATE_5_6 0x03
#define CODE_RATE_7_8 0x04
#define CODE_RATE_UNKNOWN 0xFF
/* guard interval available values */
#define GUARD_INT_1_32 0x00
#define GUARD_INT_1_16 0x01
#define GUARD_INT_1_8 0x02
#define GUARD_INT_1_4 0x03
#define GUARD_UNKNOWN 0xFF
#define GUARD_INT_1_32 0x00
#define GUARD_INT_1_16 0x01
#define GUARD_INT_1_8 0x02
#define GUARD_INT_1_4 0x03
#define GUARD_UNKNOWN 0xFF
/* transmission mode available values */
#define TRANS_MODE_2K 0x00
#define TRANS_MODE_8K 0x01
#define TRANS_MODE_4K 0x02
#define TRANS_MODE_UNKNOWN 0xFF
#define TRANS_MODE_2K 0x00
#define TRANS_MODE_8K 0x01
#define TRANS_MODE_4K 0x02
#define TRANS_MODE_UNKNOWN 0xFF
/* DVBH signalling available values */
#define TIMESLICING_PRESENT 0x01
#define MPE_FEC_PRESENT 0x02
#define TIMESLICING_PRESENT 0x01
#define MPE_FEC_PRESENT 0x02
/* tune state available */
#define TUNE_STATUS_NOT_TUNED 0x00
#define TUNE_STATUS_IDLE 0x01
#define TUNE_STATUS_LOCKING 0x02
#define TUNE_STATUS_SIGNAL_DVB_OK 0x03
#define TUNE_STATUS_STREAM_DETECTED 0x04
#define TUNE_STATUS_STREAM_TUNED 0x05
#define TUNE_STATUS_ERROR 0xFF
#define TUNE_STATUS_NOT_TUNED 0x00
#define TUNE_STATUS_IDLE 0x01
#define TUNE_STATUS_LOCKING 0x02
#define TUNE_STATUS_SIGNAL_DVB_OK 0x03
#define TUNE_STATUS_STREAM_DETECTED 0x04
#define TUNE_STATUS_STREAM_TUNED 0x05
#define TUNE_STATUS_ERROR 0xFF
/* available TS FID filter types */
#define TS_PID_TYPE_TS 0
#define TS_PID_TYPE_PSI_SI 1
#define TS_PID_TYPE_MPE 2
#define TS_PID_TYPE_TS 0
#define TS_PID_TYPE_PSI_SI 1
#define TS_PID_TYPE_MPE 2
/* number of echos available */
#define MAX_ECHOS 15
#define MAX_ECHOS 15
/* Context types */
#define CONTEXT_LNA 1010
#define CONTEXT_ELNA_HYSTERESIS 4003
#define CONTEXT_ELNA_GAIN 4004
#define CONTEXT_MER_THRESHOLD 5005
#define CONTEXT_MER_OFFSET 5006
#define CONTEXT_IR_STATE 7000
#define CONTEXT_TSOUT_MSB_FIRST 7004
#define CONTEXT_TSOUT_FALLING_EDGE 7005
#define CONTEXT_LNA 1010
#define CONTEXT_ELNA_HYSTERESIS 4003
#define CONTEXT_ELNA_GAIN 4004
#define CONTEXT_MER_THRESHOLD 5005
#define CONTEXT_MER_OFFSET 5006
#define CONTEXT_IR_STATE 7000
#define CONTEXT_TSOUT_MSB_FIRST 7004
#define CONTEXT_TSOUT_FALLING_EDGE 7005
/* Configuration modes */
#define CFG_MODE_ON 0
#define CFG_MODE_OFF 1
#define CFG_MODE_AUTO 2
#define CFG_MODE_ON 0
#define CFG_MODE_OFF 1
#define CFG_MODE_AUTO 2
struct as10x_tps {
uint8_t constellation;
uint8_t hierarchy;
uint8_t interleaving_mode;
uint8_t code_rate_HP;
uint8_t code_rate_LP;
uint8_t guard_interval;
uint8_t transmission_mode;
uint8_t DVBH_mask_HP;
uint8_t DVBH_mask_LP;
uint16_t cell_ID;
uint8_t constellation;
uint8_t hierarchy;
uint8_t interleaving_mode;
uint8_t code_rate_HP;
uint8_t code_rate_LP;
uint8_t guard_interval;
uint8_t transmission_mode;
uint8_t DVBH_mask_HP;
uint8_t DVBH_mask_LP;
uint16_t cell_ID;
} __packed;
struct as10x_tune_args {
/* frequency */
uint32_t freq;
/* bandwidth */
uint8_t bandwidth;
/* hierarchy selection */
uint8_t hier_select;
/* constellation */
uint8_t constellation;
/* hierarchy */
uint8_t hierarchy;
/* interleaving mode */
uint8_t interleaving_mode;
/* code rate */
uint8_t code_rate;
/* guard interval */
uint8_t guard_interval;
/* transmission mode */
uint8_t transmission_mode;
/* frequency */
uint32_t freq;
/* bandwidth */
uint8_t bandwidth;
/* hierarchy selection */
uint8_t hier_select;
/* constellation */
uint8_t constellation;
/* hierarchy */
uint8_t hierarchy;
/* interleaving mode */
uint8_t interleaving_mode;
/* code rate */
uint8_t code_rate;
/* guard interval */
uint8_t guard_interval;
/* transmission mode */
uint8_t transmission_mode;
} __packed;
struct as10x_tune_status {
/* tune status */
uint8_t tune_state;
/* signal strength */
int16_t signal_strength;
/* packet error rate 10^-4 */
uint16_t PER;
/* bit error rate 10^-4 */
uint16_t BER;
/* tune status */
uint8_t tune_state;
/* signal strength */
int16_t signal_strength;
/* packet error rate 10^-4 */
uint16_t PER;
/* bit error rate 10^-4 */
uint16_t BER;
} __packed;
struct as10x_demod_stats {
/* frame counter */
uint32_t frame_count;
/* Bad frame counter */
uint32_t bad_frame_count;
/* Number of wrong bytes fixed by Reed-Solomon */
uint32_t bytes_fixed_by_rs;
/* Averaged MER */
uint16_t mer;
/* statistics calculation state indicator (started or not) */
uint8_t has_started;
/* frame counter */
uint32_t frame_count;
/* Bad frame counter */
uint32_t bad_frame_count;
/* Number of wrong bytes fixed by Reed-Solomon */
uint32_t bytes_fixed_by_rs;
/* Averaged MER */
uint16_t mer;
/* statistics calculation state indicator (started or not) */
uint8_t has_started;
} __packed;
struct as10x_ts_filter {
uint16_t pid; /** valid PID value 0x00 : 0x2000 */
uint8_t type; /** Red TS_PID_TYPE_<N> values */
uint8_t idx; /** index in filtering table */
uint16_t pid; /* valid PID value 0x00 : 0x2000 */
uint8_t type; /* Red TS_PID_TYPE_<N> values */
uint8_t idx; /* index in filtering table */
} __packed;
struct as10x_register_value {
uint8_t mode;
union {
uint8_t value8; /* 8 bit value */
uint16_t value16; /* 16 bit value */
uint32_t value32; /* 32 bit value */
}u;
uint8_t mode;
union {
uint8_t value8; /* 8 bit value */
uint16_t value16; /* 16 bit value */
uint32_t value32; /* 32 bit value */
} u;
} __packed;
struct as10x_register_addr {
/* register addr */
uint32_t addr;
/* register mode access */
uint8_t mode;
/* register addr */
uint32_t addr;
/* register mode access */
uint8_t mode;
};
#endif
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