Pull ARM DMA engine updates from Russell King:
"This looks scary at first glance, but what it is is:
- a rework of the sa11x0 DMA engine driver merged during the previous
cycle, to extract a common set of helper functions for DMA engine
implementations.
- conversion of amba-pl08x.c to use these helper functions.
- addition of OMAP DMA engine driver (using these helper functions),
and conversion of some of the OMAP DMA users to use DMA engine.
Nothing in the helper functions is ARM specific, so I hope that other
implementations can consolidate some of their code by making use of
these helpers.
This has been sitting in linux-next most of the merge cycle, and has
been tested by several OMAP folk. I've tested it on sa11x0 platforms,
and given it my best shot on my broken platforms which have the
amba-pl08x controller.
The last point is the addition to feature-removal-schedule.txt, which
will have a merge conflict. Between myself and TI, we're planning to
remove the old TI DMA implementation next year."
Fix up trivial add/add conflicts in Documentation/feature-removal-schedule.txt
and drivers/dma/{Kconfig,Makefile}
* 'dmaengine' of git://git.linaro.org/people/rmk/linux-arm: (53 commits)
ARM: 7481/1: OMAP2+: omap2plus_defconfig: enable OMAP DMA engine
ARM: 7464/1: mmc: omap_hsmmc: ensure probe returns error if DMA channel request fails
Add feature removal of old OMAP private DMA implementation
mtd: omap2: remove private DMA API implementation
mtd: omap2: add DMA engine support
spi: omap2-mcspi: remove private DMA API implementation
spi: omap2-mcspi: add DMA engine support
ARM: omap: remove mmc platform data dma_mask and initialization
mmc: omap: remove private DMA API implementation
mmc: omap: add DMA engine support
mmc: omap_hsmmc: remove private DMA API implementation
mmc: omap_hsmmc: add DMA engine support
dmaengine: omap: add support for cyclic DMA
dmaengine: omap: add support for setting fi
dmaengine: omap: add support for returning residue in tx_state method
dmaengine: add OMAP DMA engine driver
dmaengine: sa11x0-dma: add cyclic DMA support
dmaengine: sa11x0-dma: fix DMA residue support
dmaengine: PL08x: ensure all descriptors are freed when channel is released
dmaengine: PL08x: get rid of write only pool_ctr and free_txd locking
...
130 lines
3.4 KiB
C
130 lines
3.4 KiB
C
/*
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* arch/arm/mach-spear3xx/spear3xx.c
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*
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* SPEAr3XX machines common source file
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*
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* Copyright (C) 2009-2012 ST Microelectronics
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* Viresh Kumar <viresh.linux@gmail.com>
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*
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* This file is licensed under the terms of the GNU General Public
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* License version 2. This program is licensed "as is" without any
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* warranty of any kind, whether express or implied.
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*/
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#define pr_fmt(fmt) "SPEAr3xx: " fmt
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#include <linux/amba/pl022.h>
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#include <linux/amba/pl08x.h>
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#include <linux/of_irq.h>
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#include <linux/io.h>
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#include <asm/hardware/pl080.h>
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#include <asm/hardware/vic.h>
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#include <plat/pl080.h>
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#include <mach/generic.h>
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#include <mach/spear.h>
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/* ssp device registration */
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struct pl022_ssp_controller pl022_plat_data = {
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.bus_id = 0,
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.enable_dma = 1,
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.dma_filter = pl08x_filter_id,
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.dma_tx_param = "ssp0_tx",
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.dma_rx_param = "ssp0_rx",
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/*
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* This is number of spi devices that can be connected to spi. There are
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* two type of chipselects on which slave devices can work. One is chip
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* select provided by spi masters other is controlled through external
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* gpio's. We can't use chipselect provided from spi master (because as
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* soon as FIFO becomes empty, CS is disabled and transfer ends). So
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* this number now depends on number of gpios available for spi. each
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* slave on each master requires a separate gpio pin.
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*/
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.num_chipselect = 2,
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};
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/* dmac device registration */
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struct pl08x_platform_data pl080_plat_data = {
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.memcpy_channel = {
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.bus_id = "memcpy",
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.cctl_memcpy =
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(PL080_BSIZE_16 << PL080_CONTROL_SB_SIZE_SHIFT | \
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PL080_BSIZE_16 << PL080_CONTROL_DB_SIZE_SHIFT | \
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PL080_WIDTH_32BIT << PL080_CONTROL_SWIDTH_SHIFT | \
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PL080_WIDTH_32BIT << PL080_CONTROL_DWIDTH_SHIFT | \
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PL080_CONTROL_PROT_BUFF | PL080_CONTROL_PROT_CACHE | \
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PL080_CONTROL_PROT_SYS),
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},
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.lli_buses = PL08X_AHB1,
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.mem_buses = PL08X_AHB1,
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.get_signal = pl080_get_signal,
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.put_signal = pl080_put_signal,
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};
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/*
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* Following will create 16MB static virtual/physical mappings
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* PHYSICAL VIRTUAL
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* 0xD0000000 0xFD000000
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* 0xFC000000 0xFC000000
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*/
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struct map_desc spear3xx_io_desc[] __initdata = {
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{
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.virtual = VA_SPEAR3XX_ICM1_2_BASE,
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.pfn = __phys_to_pfn(SPEAR3XX_ICM1_2_BASE),
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.length = SZ_16M,
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.type = MT_DEVICE
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}, {
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.virtual = VA_SPEAR3XX_ICM3_SMI_CTRL_BASE,
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.pfn = __phys_to_pfn(SPEAR3XX_ICM3_SMI_CTRL_BASE),
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.length = SZ_16M,
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.type = MT_DEVICE
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},
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};
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/* This will create static memory mapping for selected devices */
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void __init spear3xx_map_io(void)
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{
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iotable_init(spear3xx_io_desc, ARRAY_SIZE(spear3xx_io_desc));
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}
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static void __init spear3xx_timer_init(void)
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{
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char pclk_name[] = "pll3_clk";
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struct clk *gpt_clk, *pclk;
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spear3xx_clk_init();
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/* get the system timer clock */
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gpt_clk = clk_get_sys("gpt0", NULL);
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if (IS_ERR(gpt_clk)) {
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pr_err("%s:couldn't get clk for gpt\n", __func__);
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BUG();
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}
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/* get the suitable parent clock for timer*/
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pclk = clk_get(NULL, pclk_name);
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if (IS_ERR(pclk)) {
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pr_err("%s:couldn't get %s as parent for gpt\n",
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__func__, pclk_name);
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BUG();
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}
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clk_set_parent(gpt_clk, pclk);
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clk_put(gpt_clk);
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clk_put(pclk);
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spear_setup_of_timer();
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}
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struct sys_timer spear3xx_timer = {
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.init = spear3xx_timer_init,
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};
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static const struct of_device_id vic_of_match[] __initconst = {
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{ .compatible = "arm,pl190-vic", .data = vic_of_init, },
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{ /* Sentinel */ }
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};
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void __init spear3xx_dt_init_irq(void)
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{
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of_irq_init(vic_of_match);
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}
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