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422 lines
12 KiB
C
422 lines
12 KiB
C
// SPDX-License-Identifier: GPL-2.0+
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/*
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* comedi/drivers/cb_pcidda.c
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* Driver for the ComputerBoards / MeasurementComputing PCI-DDA series.
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*
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* Copyright (C) 2001 Ivan Martinez <ivanmr@altavista.com>
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* Copyright (C) 2001 Frank Mori Hess <fmhess@users.sourceforge.net>
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*
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* COMEDI - Linux Control and Measurement Device Interface
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* Copyright (C) 1997-8 David A. Schleef <ds@schleef.org>
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*/
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/*
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* Driver: cb_pcidda
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* Description: MeasurementComputing PCI-DDA series
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* Devices: [Measurement Computing] PCI-DDA08/12 (pci-dda08/12),
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* PCI-DDA04/12 (pci-dda04/12), PCI-DDA02/12 (pci-dda02/12),
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* PCI-DDA08/16 (pci-dda08/16), PCI-DDA04/16 (pci-dda04/16),
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* PCI-DDA02/16 (pci-dda02/16)
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* Author: Ivan Martinez <ivanmr@altavista.com>
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* Frank Mori Hess <fmhess@users.sourceforge.net>
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* Status: works
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*
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* Configuration options: not applicable, uses PCI auto config
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*
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* Only simple analog output writing is supported.
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*/
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#include <linux/module.h>
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#include "../comedi_pci.h"
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#include "8255.h"
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#define EEPROM_SIZE 128 /* number of entries in eeprom */
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/* maximum number of ao channels for supported boards */
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#define MAX_AO_CHANNELS 8
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/* Digital I/O registers */
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#define CB_DDA_DIO0_8255_BASE 0x00
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#define CB_DDA_DIO1_8255_BASE 0x04
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/* DAC registers */
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#define CB_DDA_DA_CTRL_REG 0x00 /* D/A Control Register */
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#define CB_DDA_DA_CTRL_SU BIT(0) /* Simultaneous update */
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#define CB_DDA_DA_CTRL_EN BIT(1) /* Enable specified DAC */
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#define CB_DDA_DA_CTRL_DAC(x) ((x) << 2) /* Specify DAC channel */
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#define CB_DDA_DA_CTRL_RANGE2V5 (0 << 6) /* 2.5V range */
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#define CB_DDA_DA_CTRL_RANGE5V (2 << 6) /* 5V range */
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#define CB_DDA_DA_CTRL_RANGE10V (3 << 6) /* 10V range */
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#define CB_DDA_DA_CTRL_UNIP BIT(8) /* Unipolar range */
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#define DACALIBRATION1 4 /* D/A CALIBRATION REGISTER 1 */
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/* write bits */
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/* serial data input for eeprom, caldacs, reference dac */
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#define SERIAL_IN_BIT 0x1
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#define CAL_CHANNEL_MASK (0x7 << 1)
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#define CAL_CHANNEL_BITS(channel) (((channel) << 1) & CAL_CHANNEL_MASK)
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/* read bits */
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#define CAL_COUNTER_MASK 0x1f
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/* calibration counter overflow status bit */
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#define CAL_COUNTER_OVERFLOW_BIT 0x20
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/* analog output is less than reference dac voltage */
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#define AO_BELOW_REF_BIT 0x40
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#define SERIAL_OUT_BIT 0x80 /* serial data out, for reading from eeprom */
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#define DACALIBRATION2 6 /* D/A CALIBRATION REGISTER 2 */
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#define SELECT_EEPROM_BIT 0x1 /* send serial data in to eeprom */
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/* don't send serial data to MAX542 reference dac */
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#define DESELECT_REF_DAC_BIT 0x2
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/* don't send serial data to caldac n */
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#define DESELECT_CALDAC_BIT(n) (0x4 << (n))
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/* manual says to set this bit with no explanation */
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#define DUMMY_BIT 0x40
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#define CB_DDA_DA_DATA_REG(x) (0x08 + ((x) * 2))
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/* Offsets for the caldac channels */
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#define CB_DDA_CALDAC_FINE_GAIN 0
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#define CB_DDA_CALDAC_COURSE_GAIN 1
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#define CB_DDA_CALDAC_COURSE_OFFSET 2
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#define CB_DDA_CALDAC_FINE_OFFSET 3
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static const struct comedi_lrange cb_pcidda_ranges = {
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6, {
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BIP_RANGE(10),
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BIP_RANGE(5),
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BIP_RANGE(2.5),
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UNI_RANGE(10),
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UNI_RANGE(5),
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UNI_RANGE(2.5)
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}
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};
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enum cb_pcidda_boardid {
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BOARD_DDA02_12,
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BOARD_DDA04_12,
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BOARD_DDA08_12,
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BOARD_DDA02_16,
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BOARD_DDA04_16,
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BOARD_DDA08_16,
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};
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struct cb_pcidda_board {
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const char *name;
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int ao_chans;
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int ao_bits;
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};
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static const struct cb_pcidda_board cb_pcidda_boards[] = {
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[BOARD_DDA02_12] = {
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.name = "pci-dda02/12",
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.ao_chans = 2,
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.ao_bits = 12,
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},
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[BOARD_DDA04_12] = {
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.name = "pci-dda04/12",
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.ao_chans = 4,
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.ao_bits = 12,
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},
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[BOARD_DDA08_12] = {
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.name = "pci-dda08/12",
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.ao_chans = 8,
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.ao_bits = 12,
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},
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[BOARD_DDA02_16] = {
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.name = "pci-dda02/16",
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.ao_chans = 2,
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.ao_bits = 16,
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},
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[BOARD_DDA04_16] = {
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.name = "pci-dda04/16",
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.ao_chans = 4,
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.ao_bits = 16,
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},
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[BOARD_DDA08_16] = {
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.name = "pci-dda08/16",
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.ao_chans = 8,
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.ao_bits = 16,
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},
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};
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struct cb_pcidda_private {
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unsigned long daqio;
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/* bits last written to da calibration register 1 */
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unsigned int dac_cal1_bits;
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/* current range settings for output channels */
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unsigned int ao_range[MAX_AO_CHANNELS];
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u16 eeprom_data[EEPROM_SIZE]; /* software copy of board's eeprom */
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};
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/* lowlevel read from eeprom */
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static unsigned int cb_pcidda_serial_in(struct comedi_device *dev)
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{
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struct cb_pcidda_private *devpriv = dev->private;
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unsigned int value = 0;
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int i;
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const int value_width = 16; /* number of bits wide values are */
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for (i = 1; i <= value_width; i++) {
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/* read bits most significant bit first */
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if (inw_p(devpriv->daqio + DACALIBRATION1) & SERIAL_OUT_BIT)
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value |= 1 << (value_width - i);
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}
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return value;
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}
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/* lowlevel write to eeprom/dac */
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static void cb_pcidda_serial_out(struct comedi_device *dev, unsigned int value,
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unsigned int num_bits)
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{
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struct cb_pcidda_private *devpriv = dev->private;
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int i;
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for (i = 1; i <= num_bits; i++) {
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/* send bits most significant bit first */
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if (value & (1 << (num_bits - i)))
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devpriv->dac_cal1_bits |= SERIAL_IN_BIT;
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else
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devpriv->dac_cal1_bits &= ~SERIAL_IN_BIT;
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outw_p(devpriv->dac_cal1_bits, devpriv->daqio + DACALIBRATION1);
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}
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}
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/* reads a 16 bit value from board's eeprom */
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static unsigned int cb_pcidda_read_eeprom(struct comedi_device *dev,
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unsigned int address)
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{
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struct cb_pcidda_private *devpriv = dev->private;
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unsigned int i;
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unsigned int cal2_bits;
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unsigned int value;
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/* one caldac for every two dac channels */
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const int max_num_caldacs = 4;
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/* bits to send to tell eeprom we want to read */
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const int read_instruction = 0x6;
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const int instruction_length = 3;
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const int address_length = 8;
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/* send serial output stream to eeprom */
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cal2_bits = SELECT_EEPROM_BIT | DESELECT_REF_DAC_BIT | DUMMY_BIT;
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/* deactivate caldacs (one caldac for every two channels) */
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for (i = 0; i < max_num_caldacs; i++)
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cal2_bits |= DESELECT_CALDAC_BIT(i);
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outw_p(cal2_bits, devpriv->daqio + DACALIBRATION2);
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/* tell eeprom we want to read */
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cb_pcidda_serial_out(dev, read_instruction, instruction_length);
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/* send address we want to read from */
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cb_pcidda_serial_out(dev, address, address_length);
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value = cb_pcidda_serial_in(dev);
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/* deactivate eeprom */
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cal2_bits &= ~SELECT_EEPROM_BIT;
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outw_p(cal2_bits, devpriv->daqio + DACALIBRATION2);
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return value;
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}
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/* writes to 8 bit calibration dacs */
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static void cb_pcidda_write_caldac(struct comedi_device *dev,
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unsigned int caldac, unsigned int channel,
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unsigned int value)
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{
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struct cb_pcidda_private *devpriv = dev->private;
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unsigned int cal2_bits;
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unsigned int i;
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/* caldacs use 3 bit channel specification */
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const int num_channel_bits = 3;
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const int num_caldac_bits = 8; /* 8 bit calibration dacs */
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/* one caldac for every two dac channels */
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const int max_num_caldacs = 4;
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/* write 3 bit channel */
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cb_pcidda_serial_out(dev, channel, num_channel_bits);
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/* write 8 bit caldac value */
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cb_pcidda_serial_out(dev, value, num_caldac_bits);
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/*
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* latch stream into appropriate caldac deselect reference dac
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*/
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cal2_bits = DESELECT_REF_DAC_BIT | DUMMY_BIT;
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/* deactivate caldacs (one caldac for every two channels) */
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for (i = 0; i < max_num_caldacs; i++)
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cal2_bits |= DESELECT_CALDAC_BIT(i);
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/* activate the caldac we want */
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cal2_bits &= ~DESELECT_CALDAC_BIT(caldac);
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outw_p(cal2_bits, devpriv->daqio + DACALIBRATION2);
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/* deactivate caldac */
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cal2_bits |= DESELECT_CALDAC_BIT(caldac);
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outw_p(cal2_bits, devpriv->daqio + DACALIBRATION2);
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}
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/* set caldacs to eeprom values for given channel and range */
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static void cb_pcidda_calibrate(struct comedi_device *dev, unsigned int channel,
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unsigned int range)
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{
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struct cb_pcidda_private *devpriv = dev->private;
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unsigned int caldac = channel / 2; /* two caldacs per channel */
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unsigned int chan = 4 * (channel % 2); /* caldac channel base */
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unsigned int index = 2 * range + 12 * channel;
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unsigned int offset;
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unsigned int gain;
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/* save range so we can tell when we need to readjust calibration */
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devpriv->ao_range[channel] = range;
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/* get values from eeprom data */
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offset = devpriv->eeprom_data[0x7 + index];
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gain = devpriv->eeprom_data[0x8 + index];
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/* set caldacs */
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cb_pcidda_write_caldac(dev, caldac, chan + CB_DDA_CALDAC_COURSE_OFFSET,
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(offset >> 8) & 0xff);
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cb_pcidda_write_caldac(dev, caldac, chan + CB_DDA_CALDAC_FINE_OFFSET,
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offset & 0xff);
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cb_pcidda_write_caldac(dev, caldac, chan + CB_DDA_CALDAC_COURSE_GAIN,
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(gain >> 8) & 0xff);
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cb_pcidda_write_caldac(dev, caldac, chan + CB_DDA_CALDAC_FINE_GAIN,
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gain & 0xff);
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}
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static int cb_pcidda_ao_insn_write(struct comedi_device *dev,
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struct comedi_subdevice *s,
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struct comedi_insn *insn,
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unsigned int *data)
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{
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struct cb_pcidda_private *devpriv = dev->private;
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unsigned int channel = CR_CHAN(insn->chanspec);
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unsigned int range = CR_RANGE(insn->chanspec);
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unsigned int ctrl;
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unsigned int i;
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if (range != devpriv->ao_range[channel])
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cb_pcidda_calibrate(dev, channel, range);
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ctrl = CB_DDA_DA_CTRL_EN | CB_DDA_DA_CTRL_DAC(channel);
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switch (range) {
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case 0:
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case 3:
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ctrl |= CB_DDA_DA_CTRL_RANGE10V;
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break;
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case 1:
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case 4:
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ctrl |= CB_DDA_DA_CTRL_RANGE5V;
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break;
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case 2:
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case 5:
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ctrl |= CB_DDA_DA_CTRL_RANGE2V5;
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break;
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}
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if (range > 2)
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ctrl |= CB_DDA_DA_CTRL_UNIP;
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outw(ctrl, devpriv->daqio + CB_DDA_DA_CTRL_REG);
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for (i = 0; i < insn->n; i++)
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outw(data[i], devpriv->daqio + CB_DDA_DA_DATA_REG(channel));
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return insn->n;
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}
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static int cb_pcidda_auto_attach(struct comedi_device *dev,
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unsigned long context)
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{
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struct pci_dev *pcidev = comedi_to_pci_dev(dev);
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const struct cb_pcidda_board *board = NULL;
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struct cb_pcidda_private *devpriv;
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struct comedi_subdevice *s;
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int i;
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int ret;
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if (context < ARRAY_SIZE(cb_pcidda_boards))
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board = &cb_pcidda_boards[context];
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if (!board)
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return -ENODEV;
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dev->board_ptr = board;
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dev->board_name = board->name;
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devpriv = comedi_alloc_devpriv(dev, sizeof(*devpriv));
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if (!devpriv)
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return -ENOMEM;
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ret = comedi_pci_enable(dev);
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if (ret)
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return ret;
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dev->iobase = pci_resource_start(pcidev, 2);
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devpriv->daqio = pci_resource_start(pcidev, 3);
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ret = comedi_alloc_subdevices(dev, 3);
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if (ret)
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return ret;
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s = &dev->subdevices[0];
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/* analog output subdevice */
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s->type = COMEDI_SUBD_AO;
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s->subdev_flags = SDF_WRITABLE;
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s->n_chan = board->ao_chans;
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s->maxdata = (1 << board->ao_bits) - 1;
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s->range_table = &cb_pcidda_ranges;
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s->insn_write = cb_pcidda_ao_insn_write;
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/* two 8255 digital io subdevices */
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for (i = 0; i < 2; i++) {
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s = &dev->subdevices[1 + i];
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ret = subdev_8255_init(dev, s, NULL, i * I8255_SIZE);
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if (ret)
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return ret;
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}
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/* Read the caldac eeprom data */
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for (i = 0; i < EEPROM_SIZE; i++)
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devpriv->eeprom_data[i] = cb_pcidda_read_eeprom(dev, i);
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/* set calibrations dacs */
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for (i = 0; i < board->ao_chans; i++)
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cb_pcidda_calibrate(dev, i, devpriv->ao_range[i]);
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return 0;
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}
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static struct comedi_driver cb_pcidda_driver = {
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.driver_name = "cb_pcidda",
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.module = THIS_MODULE,
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.auto_attach = cb_pcidda_auto_attach,
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.detach = comedi_pci_detach,
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};
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static int cb_pcidda_pci_probe(struct pci_dev *dev,
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const struct pci_device_id *id)
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{
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return comedi_pci_auto_config(dev, &cb_pcidda_driver,
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id->driver_data);
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}
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static const struct pci_device_id cb_pcidda_pci_table[] = {
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{ PCI_VDEVICE(CB, 0x0020), BOARD_DDA02_12 },
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{ PCI_VDEVICE(CB, 0x0021), BOARD_DDA04_12 },
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{ PCI_VDEVICE(CB, 0x0022), BOARD_DDA08_12 },
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{ PCI_VDEVICE(CB, 0x0023), BOARD_DDA02_16 },
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{ PCI_VDEVICE(CB, 0x0024), BOARD_DDA04_16 },
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{ PCI_VDEVICE(CB, 0x0025), BOARD_DDA08_16 },
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{ 0 }
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};
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MODULE_DEVICE_TABLE(pci, cb_pcidda_pci_table);
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static struct pci_driver cb_pcidda_pci_driver = {
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.name = "cb_pcidda",
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.id_table = cb_pcidda_pci_table,
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.probe = cb_pcidda_pci_probe,
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.remove = comedi_pci_auto_unconfig,
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};
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module_comedi_pci_driver(cb_pcidda_driver, cb_pcidda_pci_driver);
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MODULE_AUTHOR("Comedi https://www.comedi.org");
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MODULE_DESCRIPTION("Comedi low-level driver");
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MODULE_LICENSE("GPL");
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