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hwmon: (lm70) Code streamlining and cleanup
This fixes a byteswap bug in the LM70 temperature sensor driver, which was previously covered up by a converse bug in the driver for the LM70EVAL-LLP board (which is also fixed). Other fixes: doc updates, remove an annoying msleep(), and improve three-wire protocol handling. Signed-off-by: Kaiwan N Billimoria <kaiwan@designergraphix.com> [ dbrownell@users.sourceforge.net: doc and whitespace tweaks ] Signed-off-by: David Brownell <dbrownell@users.sourceforge.net> Signed-off-by: Jean Delvare <khali@linux-fr.org>
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0589c2de64
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2b7300513b
4 changed files with 31 additions and 25 deletions
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@ -25,6 +25,10 @@ complement digital temperature (sent via the SIO line), is available in the
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driver for interpretation. This driver makes use of the kernel's in-core
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SPI support.
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As a real (in-tree) example of this "SPI protocol driver" interfacing
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with a "SPI master controller driver", see drivers/spi/spi_lm70llp.c
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and its associated documentation.
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Thanks to
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---------
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Jean Delvare <khali@linux-fr.org> for mentoring the hwmon-side driver
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@ -13,10 +13,20 @@ Description
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This driver provides glue code connecting a National Semiconductor LM70 LLP
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temperature sensor evaluation board to the kernel's SPI core subsystem.
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This is a SPI master controller driver. It can be used in conjunction with
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(layered under) the LM70 logical driver (a "SPI protocol driver").
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In effect, this driver turns the parallel port interface on the eval board
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into a SPI bus with a single device, which will be driven by the generic
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LM70 driver (drivers/hwmon/lm70.c).
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Hardware Interfacing
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--------------------
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The schematic for this particular board (the LM70EVAL-LLP) is
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available (on page 4) here:
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http://www.national.com/appinfo/tempsensors/files/LM70LLPEVALmanual.pdf
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The hardware interfacing on the LM70 LLP eval board is as follows:
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Parallel LM70 LLP
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@ -65,10 +65,9 @@ static ssize_t lm70_sense_temp(struct device *dev,
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"spi_write_then_read failed with status %d\n", status);
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goto out;
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}
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dev_dbg(dev, "rxbuf[1] : 0x%x rxbuf[0] : 0x%x\n", rxbuf[1], rxbuf[0]);
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raw = (rxbuf[1] << 8) + rxbuf[0];
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dev_dbg(dev, "raw=0x%x\n", raw);
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raw = (rxbuf[0] << 8) + rxbuf[1];
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dev_dbg(dev, "rxbuf[0] : 0x%02x rxbuf[1] : 0x%02x raw=0x%04x\n",
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rxbuf[0], rxbuf[1], raw);
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/*
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* The "raw" temperature read into rxbuf[] is a 16-bit signed 2's
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@ -109,6 +108,8 @@ static int __devinit lm70_probe(struct spi_device *spi)
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if ((spi->mode & (SPI_CPOL|SPI_CPHA)) || !(spi->mode & SPI_3WIRE))
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return -EINVAL;
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/* NOTE: we assume 8-bit words, and convert to 16 bits manually */
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p_lm70 = kzalloc(sizeof *p_lm70, GFP_KERNEL);
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if (!p_lm70)
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return -ENOMEM;
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@ -1,5 +1,5 @@
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/*
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* spi_lm70llp.c - driver for lm70llp eval board for the LM70 sensor
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* spi_lm70llp.c - driver for LM70EVAL-LLP board for the LM70 sensor
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*
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* Copyright (C) 2006 Kaiwan N Billimoria <kaiwan@designergraphix.com>
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*
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@ -40,8 +40,12 @@
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* master controller driver. The hwmon/lm70 driver is a "SPI protocol
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* driver", layered on top of this one and usable without the lm70llp.
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*
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* Datasheet and Schematic:
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* The LM70 is a temperature sensor chip from National Semiconductor; its
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* datasheet is available at http://www.national.com/pf/LM/LM70.html
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* The schematic for this particular board (the LM70EVAL-LLP) is
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* available (on page 4) here:
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* http://www.national.com/appinfo/tempsensors/files/LM70LLPEVALmanual.pdf
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*
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* Also see Documentation/spi/spi-lm70llp. The SPI<->parport code here is
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* (heavily) based on spi-butterfly by David Brownell.
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@ -64,7 +68,7 @@
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*
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* Note that parport pin 13 actually gets inverted by the transistor
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* arrangement which lets either the parport or the LM70 drive the
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* SI/SO signal.
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* SI/SO signal (see the schematic for details).
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*/
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#define DRVNAME "spi-lm70llp"
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@ -106,12 +110,16 @@ static inline struct spi_lm70llp *spidev_to_pp(struct spi_device *spi)
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static inline void deassertCS(struct spi_lm70llp *pp)
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{
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u8 data = parport_read_data(pp->port);
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data &= ~0x80; /* pull D7/SI-out low while de-asserted */
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parport_write_data(pp->port, data | nCS);
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}
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static inline void assertCS(struct spi_lm70llp *pp)
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{
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u8 data = parport_read_data(pp->port);
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data |= 0x80; /* pull D7/SI-out high so lm70 drives SO-in */
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parport_write_data(pp->port, data & ~nCS);
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}
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@ -184,22 +192,7 @@ static void lm70_chipselect(struct spi_device *spi, int value)
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*/
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static u32 lm70_txrx(struct spi_device *spi, unsigned nsecs, u32 word, u8 bits)
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{
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static u32 sio=0;
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static int first_time=1;
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/* First time: perform SPI bitbang and return the LSB of
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* the result of the SPI call.
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*/
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if (first_time) {
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sio = bitbang_txrx_be_cpha0(spi, nsecs, 0, word, bits);
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first_time=0;
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return (sio & 0x00ff);
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}
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/* Return the MSB of the result of the SPI call */
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else {
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first_time=1;
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return (sio >> 8);
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}
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return bitbang_txrx_be_cpha0(spi, nsecs, 0, word, bits);
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}
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static void spi_lm70llp_attach(struct parport *p)
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@ -293,10 +286,9 @@ static void spi_lm70llp_attach(struct parport *p)
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status = -ENODEV;
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goto out_bitbang_stop;
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}
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pp->spidev_lm70->bits_per_word = 16;
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pp->spidev_lm70->bits_per_word = 8;
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lm70llp = pp;
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return;
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out_bitbang_stop:
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@ -326,7 +318,6 @@ static void spi_lm70llp_detach(struct parport *p)
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/* power down */
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parport_write_data(pp->port, 0);
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msleep(10);
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parport_release(pp->pd);
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parport_unregister_device(pp->pd);
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