}
/* outside interface: transmit */
-static int ene_transmit(struct rc_dev *rdev, int *buf, u32 n)
+static int ene_transmit(struct rc_dev *rdev, unsigned *buf, unsigned n)
{
struct ene_device *dev = rdev->priv;
unsigned long flags;
dev->tx_buffer = buf;
- dev->tx_len = n / sizeof(int);
+ dev->tx_len = n;
dev->tx_pos = 0;
dev->tx_reg = 0;
dev->tx_done = 0;
bool tx_sample_pulse; /* current sample is pulse */
/* TX buffer */
- int *tx_buffer; /* input samples buffer*/
+ unsigned *tx_buffer; /* input samples buffer*/
int tx_pos; /* position in that bufer */
int tx_len; /* current len of tx buffer */
int tx_done; /* done transmitting */
{
struct lirc_codec *lirc;
struct rc_dev *dev;
- int *txbuf; /* buffer with values to transmit */
- int ret = 0;
+ unsigned int *txbuf; /* buffer with values to transmit */
+ ssize_t ret = 0;
size_t count;
lirc = lirc_get_pdata(file);
if (!lirc)
return -EFAULT;
- if (n % sizeof(int))
+ if (n < sizeof(unsigned) || n % sizeof(unsigned))
return -EINVAL;
- count = n / sizeof(int);
- if (count > LIRCBUF_SIZE || count % 2 == 0 || n % sizeof(int) != 0)
+ count = n / sizeof(unsigned);
+ if (count > LIRCBUF_SIZE || count % 2 == 0)
return -EINVAL;
txbuf = memdup_user(buf, n);
}
if (dev->tx_ir)
- ret = dev->tx_ir(dev, txbuf, (u32)n);
+ ret = dev->tx_ir(dev, txbuf, count);
+
+ if (ret > 0)
+ ret *= sizeof(unsigned);
out:
kfree(txbuf);
/* transmit out IR pulses; what you get here is a batch of alternating
* pulse/space/pulse/space lengths that we should write out completely through
* the FIFO, blocking on a full FIFO */
-static int ite_tx_ir(struct rc_dev *rcdev, int *txbuf, u32 n)
+static int ite_tx_ir(struct rc_dev *rcdev, unsigned *txbuf, unsigned n)
{
unsigned long flags;
struct ite_dev *dev = rcdev->priv;
/* clear the array just in case */
memset(last_sent, 0, ARRAY_SIZE(last_sent));
- /* n comes in bytes; convert to ints */
- n /= sizeof(int);
-
spin_lock_irqsave(&dev->lock, flags);
/* let everybody know we're now transmitting */
}
/* Send data out the IR blaster port(s) */
-static int mceusb_tx_ir(struct rc_dev *dev, int *txbuf, u32 n)
+static int mceusb_tx_ir(struct rc_dev *dev, unsigned *txbuf, unsigned count)
{
struct mceusb_dev *ir = dev->priv;
int i, ret = 0;
- int count, cmdcount = 0;
+ int cmdcount = 0;
unsigned char *cmdbuf; /* MCE command buffer */
long signal_duration = 0; /* Singnal length in us */
struct timeval start_time, end_time;
do_gettimeofday(&start_time);
- count = n / sizeof(int);
-
- cmdbuf = kzalloc(sizeof(int) * MCE_CMDBUF_SIZE, GFP_KERNEL);
+ cmdbuf = kzalloc(sizeof(unsigned) * MCE_CMDBUF_SIZE, GFP_KERNEL);
if (!cmdbuf)
return -ENOMEM;
out:
kfree(cmdbuf);
- return ret ? ret : n;
+ return ret ? ret : count;
}
/* Sets active IR outputs -- mce devices typically have two */
* number may larger than TXFCONT (0xff). So in interrupt_handler, it has to
* set TXFCONT as 0xff, until buf_count less than 0xff.
*/
-static int nvt_tx_ir(struct rc_dev *dev, int *txbuf, u32 n)
+static int nvt_tx_ir(struct rc_dev *dev, unsigned *txbuf, unsigned n)
{
struct nvt_dev *nvt = dev->priv;
unsigned long flags;
- size_t cur_count;
unsigned int i;
u8 iren;
int ret;
spin_lock_irqsave(&nvt->tx.lock, flags);
- if (n >= TX_BUF_LEN) {
- nvt->tx.buf_count = cur_count = TX_BUF_LEN;
- ret = TX_BUF_LEN;
- } else {
- nvt->tx.buf_count = cur_count = n;
- ret = n;
- }
+ ret = min((unsigned)(TX_BUF_LEN / sizeof(unsigned)), n);
+ nvt->tx.buf_count = (ret * sizeof(unsigned));
memcpy(nvt->tx.buf, txbuf, nvt->tx.buf_count);
return 0;
}
-static int loop_tx_ir(struct rc_dev *dev, int *txbuf, u32 n)
+static int loop_tx_ir(struct rc_dev *dev, unsigned *txbuf, unsigned count)
{
struct loopback_dev *lodev = dev->priv;
u32 rxmask;
- unsigned count;
unsigned total_duration = 0;
unsigned i;
DEFINE_IR_RAW_EVENT(rawir);
- if (n == 0 || n % sizeof(int)) {
- dprintk("invalid tx buffer size\n");
- return -EINVAL;
- }
-
- count = n / sizeof(int);
for (i = 0; i < count; i++)
total_duration += abs(txbuf[i]);
for (i = 0; i < count; i++) {
rawir.pulse = i % 2 ? false : true;
- rawir.duration = abs(txbuf[i]) * 1000;
+ rawir.duration = txbuf[i] * 1000;
if (rawir.duration)
ir_raw_event_store_with_filter(dev, &rawir);
}
/* Lirc expects this function to take as long as the total duration */
set_current_state(TASK_INTERRUPTIBLE);
schedule_timeout(usecs_to_jiffies(total_duration));
- return n;
+ return count;
}
static void loop_set_idle(struct rc_dev *dev, bool enable)
}
static int
-wbcir_tx(struct rc_dev *dev, int *buf, u32 bufsize)
+wbcir_tx(struct rc_dev *dev, unsigned *buf, unsigned count)
{
struct wbcir_data *data = dev->priv;
- u32 count;
unsigned i;
unsigned long flags;
- /* bufsize has been sanity checked by the caller */
- count = bufsize / sizeof(int);
-
/* Not sure if this is possible, but better safe than sorry */
spin_lock_irqsave(&data->spinlock, flags);
if (data->txstate != WBCIR_TXSTATE_INACTIVE) {
int (*s_tx_carrier)(struct rc_dev *dev, u32 carrier);
int (*s_tx_duty_cycle)(struct rc_dev *dev, u32 duty_cycle);
int (*s_rx_carrier_range)(struct rc_dev *dev, u32 min, u32 max);
- int (*tx_ir)(struct rc_dev *dev, int *txbuf, u32 n);
+ int (*tx_ir)(struct rc_dev *dev, unsigned *txbuf, unsigned n);
void (*s_idle)(struct rc_dev *dev, bool enable);
int (*s_learning_mode)(struct rc_dev *dev, int enable);
int (*s_carrier_report) (struct rc_dev *dev, int enable);