mirror of https://gitee.com/openkylin/linux.git
[PATCH] spi: misc fixes
This collects some small SPI patches that seem to be missing from the MM tree: - spi_butterfly kbuild hooks got dropped somehow; this restores them - quick fix for a (theoretical?) m25p80_write() oops noted by Andrew - quick fix for a potential config-specific oops for mtd_dataflash() - minor doc tweaks Signed-off-by: David Brownell <dbrownell@users.sourceforge.net> Signed-off-by: Andrew Morton <akpm@osdl.org> Signed-off-by: Greg Kroah-Hartman <gregkh@suse.de>
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@ -115,6 +115,9 @@ shows up in sysfs in several locations:
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/sys/devices/.../CTLR/spiB.C ... spi_device for on bus "B",
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chipselect C, accessed through CTLR.
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/sys/devices/.../CTLR/spiB.C/modalias ... identifies the driver
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that should be used with this device (for hotplug/coldplug)
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/sys/bus/spi/devices/spiB.C ... symlink to the physical
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spiB-C device
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@ -247,6 +250,12 @@ driver is registered:
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Like with other static board-specific setup, you won't unregister those.
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The widely used "card" style computers bundle memory, cpu, and little else
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onto a card that's maybe just thirty square centimeters. On such systems,
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your arch/.../mach-.../board-*.c file would primarily provide information
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about the devices on the mainboard into which such a card is plugged. That
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certainly includes SPI devices hooked up through the card connectors!
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NON-STATIC CONFIGURATIONS
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@ -258,6 +267,10 @@ up the spi bus master, and will likely need spi_new_device() to provide the
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board info based on the board that was hotplugged. Of course, you'd later
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call at least spi_unregister_device() when that board is removed.
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When Linux includes support for MMC/SD/SDIO/DataFlash cards through SPI, those
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configurations will also be dynamic. Fortunately, those devices all support
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basic device identification probes, so that support should hotplug normally.
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How do I write an "SPI Protocol Driver"?
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----------------------------------------
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@ -378,7 +378,9 @@ static int m25p80_write(struct mtd_info *mtd, loff_t to, size_t len,
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spi_sync(flash->spi, &m);
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*retlen += m.actual_length - sizeof(flash->command);
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if (retlen)
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*retlen += m.actual_length
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- sizeof(flash->command);
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}
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}
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@ -508,7 +508,7 @@ add_dataflash(struct spi_device *spi, char *name,
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priv->partitioned = 1;
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return add_mtd_partitions(device, parts, nr_parts);
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}
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} else if (pdata->nr_parts)
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} else if (pdata && pdata->nr_parts)
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dev_warn(&spi->dev, "ignoring %d default partitions on %s\n",
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pdata->nr_parts, device->name);
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@ -65,6 +65,16 @@ config SPI_BITBANG
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need it. You only need to select this explicitly to support driver
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modules that aren't part of this kernel tree.
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config SPI_BUTTERFLY
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tristate "Parallel port adapter for AVR Butterfly (DEVELOPMENT)"
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depends on SPI_MASTER && PARPORT && EXPERIMENTAL
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select SPI_BITBANG
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help
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This uses a custom parallel port cable to connect to an AVR
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Butterfly <http://www.atmel.com/products/avr/butterfly>, an
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inexpensive battery powered microcontroller evaluation board.
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This same cable can be used to flash new firmware.
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#
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# Add new SPI master controllers in alphabetical order above this line
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#
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@ -12,6 +12,7 @@ obj-$(CONFIG_SPI_MASTER) += spi.o
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# SPI master controller drivers (bus)
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obj-$(CONFIG_SPI_BITBANG) += spi_bitbang.o
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obj-$(CONFIG_SPI_BUTTERFLY) += spi_butterfly.o
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# ... add above this line ...
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# SPI protocol drivers (device/link on bus)
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