Commit 78f48506 authored by H Hartley Sweeten's avatar H Hartley Sweeten Committed by Greg Kroah-Hartman

staging: comedi: usbduxsigma: tidy up usbduxsigma_attach_common()

Rename the local variable used for the comedi_device private data.

Remove all the unnecessary comments and add some whitespace to the
subdevice init.

Use dev->class_dev for the dev_{level} messages.
Signed-off-by: default avatarH Hartley Sweeten <hsweeten@visionengravers.com>
Cc: Ian Abbott <abbotti@mev.co.uk>
Signed-off-by: default avatarGreg Kroah-Hartman <gregkh@linuxfoundation.org>
parent af87e188
...@@ -1647,108 +1647,86 @@ static void tidy_up(struct usbduxsigma_private *usbduxsub_tmp) ...@@ -1647,108 +1647,86 @@ static void tidy_up(struct usbduxsigma_private *usbduxsub_tmp)
static int usbduxsigma_attach_common(struct comedi_device *dev) static int usbduxsigma_attach_common(struct comedi_device *dev)
{ {
struct usbduxsigma_private *uds = dev->private; struct usbduxsigma_private *devpriv = dev->private;
int ret;
struct comedi_subdevice *s; struct comedi_subdevice *s;
int n_subdevs; int n_subdevs;
int offset; int offset;
int ret;
down(&uds->sem); down(&devpriv->sem);
/* set number of subdevices */ if (devpriv->high_speed)
if (uds->high_speed)
n_subdevs = 4; /* with pwm */ n_subdevs = 4; /* with pwm */
else else
n_subdevs = 3; /* without pwm */ n_subdevs = 3; /* without pwm */
ret = comedi_alloc_subdevices(dev, n_subdevs); ret = comedi_alloc_subdevices(dev, n_subdevs);
if (ret) { if (ret) {
up(&uds->sem); up(&devpriv->sem);
return ret; return ret;
} }
/* the first subdevice is the A/D converter */
/* Analog Input subdevice */
s = &dev->subdevices[0]; s = &dev->subdevices[0];
/* the URBs get the comedi subdevice */
/* which is responsible for reading */
/* this is the subdevice which reads data */
dev->read_subdev = s; dev->read_subdev = s;
/* the subdevice receives as private structure the */ s->type = COMEDI_SUBD_AI;
/* usb-structure */ s->subdev_flags = SDF_READABLE | SDF_GROUND | SDF_CMD_READ | SDF_LSAMPL;
s->private = NULL; s->n_chan = NUMCHANNELS;
/* analog input */ s->len_chanlist = NUMCHANNELS;
s->type = COMEDI_SUBD_AI; s->maxdata = 0x00ffffff;
/* readable and ref is to ground, 32 bit wide data! */ s->range_table = &range_usbdux_ai_range;
s->subdev_flags = SDF_READABLE | SDF_GROUND | s->insn_read = usbdux_ai_insn_read;
SDF_CMD_READ | SDF_LSAMPL; s->do_cmdtest = usbdux_ai_cmdtest;
/* 16 A/D channels */ s->do_cmd = usbdux_ai_cmd;
s->n_chan = NUMCHANNELS; s->cancel = usbdux_ai_cancel;
/* length of the channellist */
s->len_chanlist = NUMCHANNELS; /* Analog Output subdevice */
/* callback functions */
s->insn_read = usbdux_ai_insn_read;
s->do_cmdtest = usbdux_ai_cmdtest;
s->do_cmd = usbdux_ai_cmd;
s->cancel = usbdux_ai_cancel;
/* max value from the A/D converter (24bit) */
s->maxdata = 0x00FFFFFF;
/* range table to convert to physical units */
s->range_table = (&range_usbdux_ai_range);
/* analog output subdevice */
s = &dev->subdevices[1]; s = &dev->subdevices[1];
/* analog out */
s->type = COMEDI_SUBD_AO;
/* backward pointer */
dev->write_subdev = s; dev->write_subdev = s;
/* the subdevice receives as private structure the */ s->type = COMEDI_SUBD_AO;
/* usb-structure */ s->subdev_flags = SDF_WRITABLE | SDF_GROUND | SDF_CMD_WRITE;
s->private = NULL; s->n_chan = 4;
/* are writable */ s->len_chanlist = 4;
s->subdev_flags = SDF_WRITABLE | SDF_GROUND | SDF_CMD_WRITE; s->maxdata = 0x00ff;
/* 4 channels */ s->range_table = &range_unipolar2_5;
s->n_chan = 4; s->insn_write = usbdux_ao_insn_write;
/* length of the channellist */ s->insn_read = usbdux_ao_insn_read;
s->len_chanlist = 4; s->do_cmdtest = usbdux_ao_cmdtest;
/* 8 bit resolution */ s->do_cmd = usbdux_ao_cmd;
s->maxdata = 0x00ff; s->cancel = usbdux_ao_cancel;
/* unipolar range */
s->range_table = &range_unipolar2_5; /* Digital I/O subdevice */
/* callback */
s->do_cmdtest = usbdux_ao_cmdtest;
s->do_cmd = usbdux_ao_cmd;
s->cancel = usbdux_ao_cancel;
s->insn_read = usbdux_ao_insn_read;
s->insn_write = usbdux_ao_insn_write;
/* digital I/O subdevice */
s = &dev->subdevices[2]; s = &dev->subdevices[2];
s->type = COMEDI_SUBD_DIO; s->type = COMEDI_SUBD_DIO;
s->subdev_flags = SDF_READABLE | SDF_WRITABLE; s->subdev_flags = SDF_READABLE | SDF_WRITABLE;
/* 8 external and 16 internal channels */ s->n_chan = 24;
s->n_chan = 24; s->maxdata = 1;
s->maxdata = 1; s->range_table = &range_digital;
s->range_table = (&range_digital); s->insn_bits = usbdux_dio_insn_bits;
s->insn_bits = usbdux_dio_insn_bits; s->insn_config = usbdux_dio_insn_config;
s->insn_config = usbdux_dio_insn_config;
/* we don't use it */ if (devpriv->high_speed) {
s->private = NULL; /* Timer / pwm subdevice */
if (uds->high_speed) {
/* timer / pwm subdevice */
s = &dev->subdevices[3]; s = &dev->subdevices[3];
s->type = COMEDI_SUBD_PWM; s->type = COMEDI_SUBD_PWM;
s->subdev_flags = SDF_WRITABLE | SDF_PWM_HBRIDGE; s->subdev_flags = SDF_WRITABLE | SDF_PWM_HBRIDGE;
s->n_chan = 8; s->n_chan = 8;
/* this defines the max duty cycle resolution */ s->maxdata = devpriv->sizePwmBuf;
s->maxdata = uds->sizePwmBuf; s->insn_write = usbdux_pwm_write;
s->insn_write = usbdux_pwm_write; s->insn_read = usbdux_pwm_read;
s->insn_read = usbdux_pwm_read; s->insn_config = usbdux_pwm_config;
s->insn_config = usbdux_pwm_config;
usbdux_pwm_period(dev, s, PWM_DEFAULT_PERIOD); usbdux_pwm_period(dev, s, PWM_DEFAULT_PERIOD);
} }
up(&uds->sem);
up(&devpriv->sem);
offset = usbdux_getstatusinfo(dev, 0); offset = usbdux_getstatusinfo(dev, 0);
if (offset < 0) if (offset < 0)
dev_err(&uds->interface->dev, dev_err(dev->class_dev,
"Communication to USBDUXSIGMA failed! Check firmware and cabling."); "Communication to USBDUXSIGMA failed! Check firmware and cabling\n");
dev_info(&uds->interface->dev,
"comedi%d: attached, ADC_zero = %x\n", dev->minor, offset); dev_info(dev->class_dev, "attached, ADC_zero = %x\n", offset);
return 0; return 0;
} }
......
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