11ec1e82fSSascha Hauer /* 21ec1e82fSSascha Hauer * drivers/dma/imx-sdma.c 31ec1e82fSSascha Hauer * 41ec1e82fSSascha Hauer * This file contains a driver for the Freescale Smart DMA engine 51ec1e82fSSascha Hauer * 61ec1e82fSSascha Hauer * Copyright 2010 Sascha Hauer, Pengutronix <s.hauer@pengutronix.de> 71ec1e82fSSascha Hauer * 81ec1e82fSSascha Hauer * Based on code from Freescale: 91ec1e82fSSascha Hauer * 101ec1e82fSSascha Hauer * Copyright 2004-2009 Freescale Semiconductor, Inc. All Rights Reserved. 111ec1e82fSSascha Hauer * 121ec1e82fSSascha Hauer * The code contained herein is licensed under the GNU General Public 131ec1e82fSSascha Hauer * License. You may obtain a copy of the GNU General Public License 141ec1e82fSSascha Hauer * Version 2 or later at the following locations: 151ec1e82fSSascha Hauer * 161ec1e82fSSascha Hauer * http://www.opensource.org/licenses/gpl-license.html 171ec1e82fSSascha Hauer * http://www.gnu.org/copyleft/gpl.html 181ec1e82fSSascha Hauer */ 191ec1e82fSSascha Hauer 201ec1e82fSSascha Hauer #include <linux/init.h> 21f8de8f4cSAxel Lin #include <linux/module.h> 221ec1e82fSSascha Hauer #include <linux/types.h> 230bbc1413SRichard Zhao #include <linux/bitops.h> 241ec1e82fSSascha Hauer #include <linux/mm.h> 251ec1e82fSSascha Hauer #include <linux/interrupt.h> 261ec1e82fSSascha Hauer #include <linux/clk.h> 272ccaef05SRichard Zhao #include <linux/delay.h> 281ec1e82fSSascha Hauer #include <linux/sched.h> 291ec1e82fSSascha Hauer #include <linux/semaphore.h> 301ec1e82fSSascha Hauer #include <linux/spinlock.h> 311ec1e82fSSascha Hauer #include <linux/device.h> 321ec1e82fSSascha Hauer #include <linux/dma-mapping.h> 331ec1e82fSSascha Hauer #include <linux/firmware.h> 341ec1e82fSSascha Hauer #include <linux/slab.h> 351ec1e82fSSascha Hauer #include <linux/platform_device.h> 361ec1e82fSSascha Hauer #include <linux/dmaengine.h> 37580975d7SShawn Guo #include <linux/of.h> 38580975d7SShawn Guo #include <linux/of_device.h> 399479e17cSShawn Guo #include <linux/of_dma.h> 401ec1e82fSSascha Hauer 411ec1e82fSSascha Hauer #include <asm/irq.h> 4282906b13SArnd Bergmann #include <linux/platform_data/dma-imx-sdma.h> 4382906b13SArnd Bergmann #include <linux/platform_data/dma-imx.h> 441ec1e82fSSascha Hauer 45d2ebfb33SRussell King - ARM Linux #include "dmaengine.h" 46d2ebfb33SRussell King - ARM Linux 471ec1e82fSSascha Hauer /* SDMA registers */ 481ec1e82fSSascha Hauer #define SDMA_H_C0PTR 0x000 491ec1e82fSSascha Hauer #define SDMA_H_INTR 0x004 501ec1e82fSSascha Hauer #define SDMA_H_STATSTOP 0x008 511ec1e82fSSascha Hauer #define SDMA_H_START 0x00c 521ec1e82fSSascha Hauer #define SDMA_H_EVTOVR 0x010 531ec1e82fSSascha Hauer #define SDMA_H_DSPOVR 0x014 541ec1e82fSSascha Hauer #define SDMA_H_HOSTOVR 0x018 551ec1e82fSSascha Hauer #define SDMA_H_EVTPEND 0x01c 561ec1e82fSSascha Hauer #define SDMA_H_DSPENBL 0x020 571ec1e82fSSascha Hauer #define SDMA_H_RESET 0x024 581ec1e82fSSascha Hauer #define SDMA_H_EVTERR 0x028 591ec1e82fSSascha Hauer #define SDMA_H_INTRMSK 0x02c 601ec1e82fSSascha Hauer #define SDMA_H_PSW 0x030 611ec1e82fSSascha Hauer #define SDMA_H_EVTERRDBG 0x034 621ec1e82fSSascha Hauer #define SDMA_H_CONFIG 0x038 631ec1e82fSSascha Hauer #define SDMA_ONCE_ENB 0x040 641ec1e82fSSascha Hauer #define SDMA_ONCE_DATA 0x044 651ec1e82fSSascha Hauer #define SDMA_ONCE_INSTR 0x048 661ec1e82fSSascha Hauer #define SDMA_ONCE_STAT 0x04c 671ec1e82fSSascha Hauer #define SDMA_ONCE_CMD 0x050 681ec1e82fSSascha Hauer #define SDMA_EVT_MIRROR 0x054 691ec1e82fSSascha Hauer #define SDMA_ILLINSTADDR 0x058 701ec1e82fSSascha Hauer #define SDMA_CHN0ADDR 0x05c 711ec1e82fSSascha Hauer #define SDMA_ONCE_RTB 0x060 721ec1e82fSSascha Hauer #define SDMA_XTRIG_CONF1 0x070 731ec1e82fSSascha Hauer #define SDMA_XTRIG_CONF2 0x074 7462550cd7SShawn Guo #define SDMA_CHNENBL0_IMX35 0x200 7562550cd7SShawn Guo #define SDMA_CHNENBL0_IMX31 0x080 761ec1e82fSSascha Hauer #define SDMA_CHNPRI_0 0x100 771ec1e82fSSascha Hauer 781ec1e82fSSascha Hauer /* 791ec1e82fSSascha Hauer * Buffer descriptor status values. 801ec1e82fSSascha Hauer */ 811ec1e82fSSascha Hauer #define BD_DONE 0x01 821ec1e82fSSascha Hauer #define BD_WRAP 0x02 831ec1e82fSSascha Hauer #define BD_CONT 0x04 841ec1e82fSSascha Hauer #define BD_INTR 0x08 851ec1e82fSSascha Hauer #define BD_RROR 0x10 861ec1e82fSSascha Hauer #define BD_LAST 0x20 871ec1e82fSSascha Hauer #define BD_EXTD 0x80 881ec1e82fSSascha Hauer 891ec1e82fSSascha Hauer /* 901ec1e82fSSascha Hauer * Data Node descriptor status values. 911ec1e82fSSascha Hauer */ 921ec1e82fSSascha Hauer #define DND_END_OF_FRAME 0x80 931ec1e82fSSascha Hauer #define DND_END_OF_XFER 0x40 941ec1e82fSSascha Hauer #define DND_DONE 0x20 951ec1e82fSSascha Hauer #define DND_UNUSED 0x01 961ec1e82fSSascha Hauer 971ec1e82fSSascha Hauer /* 981ec1e82fSSascha Hauer * IPCV2 descriptor status values. 991ec1e82fSSascha Hauer */ 1001ec1e82fSSascha Hauer #define BD_IPCV2_END_OF_FRAME 0x40 1011ec1e82fSSascha Hauer 1021ec1e82fSSascha Hauer #define IPCV2_MAX_NODES 50 1031ec1e82fSSascha Hauer /* 1041ec1e82fSSascha Hauer * Error bit set in the CCB status field by the SDMA, 1051ec1e82fSSascha Hauer * in setbd routine, in case of a transfer error 1061ec1e82fSSascha Hauer */ 1071ec1e82fSSascha Hauer #define DATA_ERROR 0x10000000 1081ec1e82fSSascha Hauer 1091ec1e82fSSascha Hauer /* 1101ec1e82fSSascha Hauer * Buffer descriptor commands. 1111ec1e82fSSascha Hauer */ 1121ec1e82fSSascha Hauer #define C0_ADDR 0x01 1131ec1e82fSSascha Hauer #define C0_LOAD 0x02 1141ec1e82fSSascha Hauer #define C0_DUMP 0x03 1151ec1e82fSSascha Hauer #define C0_SETCTX 0x07 1161ec1e82fSSascha Hauer #define C0_GETCTX 0x03 1171ec1e82fSSascha Hauer #define C0_SETDM 0x01 1181ec1e82fSSascha Hauer #define C0_SETPM 0x04 1191ec1e82fSSascha Hauer #define C0_GETDM 0x02 1201ec1e82fSSascha Hauer #define C0_GETPM 0x08 1211ec1e82fSSascha Hauer /* 1221ec1e82fSSascha Hauer * Change endianness indicator in the BD command field 1231ec1e82fSSascha Hauer */ 1241ec1e82fSSascha Hauer #define CHANGE_ENDIANNESS 0x80 1251ec1e82fSSascha Hauer 1261ec1e82fSSascha Hauer /* 1271ec1e82fSSascha Hauer * Mode/Count of data node descriptors - IPCv2 1281ec1e82fSSascha Hauer */ 1291ec1e82fSSascha Hauer struct sdma_mode_count { 1301ec1e82fSSascha Hauer u32 count : 16; /* size of the buffer pointed by this BD */ 1311ec1e82fSSascha Hauer u32 status : 8; /* E,R,I,C,W,D status bits stored here */ 1321ec1e82fSSascha Hauer u32 command : 8; /* command mostlky used for channel 0 */ 1331ec1e82fSSascha Hauer }; 1341ec1e82fSSascha Hauer 1351ec1e82fSSascha Hauer /* 1361ec1e82fSSascha Hauer * Buffer descriptor 1371ec1e82fSSascha Hauer */ 1381ec1e82fSSascha Hauer struct sdma_buffer_descriptor { 1391ec1e82fSSascha Hauer struct sdma_mode_count mode; 1401ec1e82fSSascha Hauer u32 buffer_addr; /* address of the buffer described */ 1411ec1e82fSSascha Hauer u32 ext_buffer_addr; /* extended buffer address */ 1421ec1e82fSSascha Hauer } __attribute__ ((packed)); 1431ec1e82fSSascha Hauer 1441ec1e82fSSascha Hauer /** 1451ec1e82fSSascha Hauer * struct sdma_channel_control - Channel control Block 1461ec1e82fSSascha Hauer * 1471ec1e82fSSascha Hauer * @current_bd_ptr current buffer descriptor processed 1481ec1e82fSSascha Hauer * @base_bd_ptr first element of buffer descriptor array 1491ec1e82fSSascha Hauer * @unused padding. The SDMA engine expects an array of 128 byte 1501ec1e82fSSascha Hauer * control blocks 1511ec1e82fSSascha Hauer */ 1521ec1e82fSSascha Hauer struct sdma_channel_control { 1531ec1e82fSSascha Hauer u32 current_bd_ptr; 1541ec1e82fSSascha Hauer u32 base_bd_ptr; 1551ec1e82fSSascha Hauer u32 unused[2]; 1561ec1e82fSSascha Hauer } __attribute__ ((packed)); 1571ec1e82fSSascha Hauer 1581ec1e82fSSascha Hauer /** 1591ec1e82fSSascha Hauer * struct sdma_state_registers - SDMA context for a channel 1601ec1e82fSSascha Hauer * 1611ec1e82fSSascha Hauer * @pc: program counter 1621ec1e82fSSascha Hauer * @t: test bit: status of arithmetic & test instruction 1631ec1e82fSSascha Hauer * @rpc: return program counter 1641ec1e82fSSascha Hauer * @sf: source fault while loading data 1651ec1e82fSSascha Hauer * @spc: loop start program counter 1661ec1e82fSSascha Hauer * @df: destination fault while storing data 1671ec1e82fSSascha Hauer * @epc: loop end program counter 1681ec1e82fSSascha Hauer * @lm: loop mode 1691ec1e82fSSascha Hauer */ 1701ec1e82fSSascha Hauer struct sdma_state_registers { 1711ec1e82fSSascha Hauer u32 pc :14; 1721ec1e82fSSascha Hauer u32 unused1: 1; 1731ec1e82fSSascha Hauer u32 t : 1; 1741ec1e82fSSascha Hauer u32 rpc :14; 1751ec1e82fSSascha Hauer u32 unused0: 1; 1761ec1e82fSSascha Hauer u32 sf : 1; 1771ec1e82fSSascha Hauer u32 spc :14; 1781ec1e82fSSascha Hauer u32 unused2: 1; 1791ec1e82fSSascha Hauer u32 df : 1; 1801ec1e82fSSascha Hauer u32 epc :14; 1811ec1e82fSSascha Hauer u32 lm : 2; 1821ec1e82fSSascha Hauer } __attribute__ ((packed)); 1831ec1e82fSSascha Hauer 1841ec1e82fSSascha Hauer /** 1851ec1e82fSSascha Hauer * struct sdma_context_data - sdma context specific to a channel 1861ec1e82fSSascha Hauer * 1871ec1e82fSSascha Hauer * @channel_state: channel state bits 1881ec1e82fSSascha Hauer * @gReg: general registers 1891ec1e82fSSascha Hauer * @mda: burst dma destination address register 1901ec1e82fSSascha Hauer * @msa: burst dma source address register 1911ec1e82fSSascha Hauer * @ms: burst dma status register 1921ec1e82fSSascha Hauer * @md: burst dma data register 1931ec1e82fSSascha Hauer * @pda: peripheral dma destination address register 1941ec1e82fSSascha Hauer * @psa: peripheral dma source address register 1951ec1e82fSSascha Hauer * @ps: peripheral dma status register 1961ec1e82fSSascha Hauer * @pd: peripheral dma data register 1971ec1e82fSSascha Hauer * @ca: CRC polynomial register 1981ec1e82fSSascha Hauer * @cs: CRC accumulator register 1991ec1e82fSSascha Hauer * @dda: dedicated core destination address register 2001ec1e82fSSascha Hauer * @dsa: dedicated core source address register 2011ec1e82fSSascha Hauer * @ds: dedicated core status register 2021ec1e82fSSascha Hauer * @dd: dedicated core data register 2031ec1e82fSSascha Hauer */ 2041ec1e82fSSascha Hauer struct sdma_context_data { 2051ec1e82fSSascha Hauer struct sdma_state_registers channel_state; 2061ec1e82fSSascha Hauer u32 gReg[8]; 2071ec1e82fSSascha Hauer u32 mda; 2081ec1e82fSSascha Hauer u32 msa; 2091ec1e82fSSascha Hauer u32 ms; 2101ec1e82fSSascha Hauer u32 md; 2111ec1e82fSSascha Hauer u32 pda; 2121ec1e82fSSascha Hauer u32 psa; 2131ec1e82fSSascha Hauer u32 ps; 2141ec1e82fSSascha Hauer u32 pd; 2151ec1e82fSSascha Hauer u32 ca; 2161ec1e82fSSascha Hauer u32 cs; 2171ec1e82fSSascha Hauer u32 dda; 2181ec1e82fSSascha Hauer u32 dsa; 2191ec1e82fSSascha Hauer u32 ds; 2201ec1e82fSSascha Hauer u32 dd; 2211ec1e82fSSascha Hauer u32 scratch0; 2221ec1e82fSSascha Hauer u32 scratch1; 2231ec1e82fSSascha Hauer u32 scratch2; 2241ec1e82fSSascha Hauer u32 scratch3; 2251ec1e82fSSascha Hauer u32 scratch4; 2261ec1e82fSSascha Hauer u32 scratch5; 2271ec1e82fSSascha Hauer u32 scratch6; 2281ec1e82fSSascha Hauer u32 scratch7; 2291ec1e82fSSascha Hauer } __attribute__ ((packed)); 2301ec1e82fSSascha Hauer 2311ec1e82fSSascha Hauer #define NUM_BD (int)(PAGE_SIZE / sizeof(struct sdma_buffer_descriptor)) 2321ec1e82fSSascha Hauer 2331ec1e82fSSascha Hauer struct sdma_engine; 2341ec1e82fSSascha Hauer 2351ec1e82fSSascha Hauer /** 2361ec1e82fSSascha Hauer * struct sdma_channel - housekeeping for a SDMA channel 2371ec1e82fSSascha Hauer * 2381ec1e82fSSascha Hauer * @sdma pointer to the SDMA engine for this channel 23923889c63SSascha Hauer * @channel the channel number, matches dmaengine chan_id + 1 2401ec1e82fSSascha Hauer * @direction transfer type. Needed for setting SDMA script 2411ec1e82fSSascha Hauer * @peripheral_type Peripheral type. Needed for setting SDMA script 2421ec1e82fSSascha Hauer * @event_id0 aka dma request line 2431ec1e82fSSascha Hauer * @event_id1 for channels that use 2 events 2441ec1e82fSSascha Hauer * @word_size peripheral access size 2451ec1e82fSSascha Hauer * @buf_tail ID of the buffer that was processed 2461ec1e82fSSascha Hauer * @num_bd max NUM_BD. number of descriptors currently handling 2471ec1e82fSSascha Hauer */ 2481ec1e82fSSascha Hauer struct sdma_channel { 2491ec1e82fSSascha Hauer struct sdma_engine *sdma; 2501ec1e82fSSascha Hauer unsigned int channel; 251db8196dfSVinod Koul enum dma_transfer_direction direction; 2521ec1e82fSSascha Hauer enum sdma_peripheral_type peripheral_type; 2531ec1e82fSSascha Hauer unsigned int event_id0; 2541ec1e82fSSascha Hauer unsigned int event_id1; 2551ec1e82fSSascha Hauer enum dma_slave_buswidth word_size; 2561ec1e82fSSascha Hauer unsigned int buf_tail; 2571ec1e82fSSascha Hauer unsigned int num_bd; 2581ec1e82fSSascha Hauer struct sdma_buffer_descriptor *bd; 2591ec1e82fSSascha Hauer dma_addr_t bd_phys; 2601ec1e82fSSascha Hauer unsigned int pc_from_device, pc_to_device; 2611ec1e82fSSascha Hauer unsigned long flags; 2621ec1e82fSSascha Hauer dma_addr_t per_address; 2630bbc1413SRichard Zhao unsigned long event_mask[2]; 2640bbc1413SRichard Zhao unsigned long watermark_level; 2651ec1e82fSSascha Hauer u32 shp_addr, per_addr; 2661ec1e82fSSascha Hauer struct dma_chan chan; 2671ec1e82fSSascha Hauer spinlock_t lock; 2681ec1e82fSSascha Hauer struct dma_async_tx_descriptor desc; 2691ec1e82fSSascha Hauer enum dma_status status; 270ab59a510SHuang Shijie unsigned int chn_count; 271ab59a510SHuang Shijie unsigned int chn_real_count; 272abd9ccc8SHuang Shijie struct tasklet_struct tasklet; 2731ec1e82fSSascha Hauer }; 2741ec1e82fSSascha Hauer 2750bbc1413SRichard Zhao #define IMX_DMA_SG_LOOP BIT(0) 2761ec1e82fSSascha Hauer 2771ec1e82fSSascha Hauer #define MAX_DMA_CHANNELS 32 2781ec1e82fSSascha Hauer #define MXC_SDMA_DEFAULT_PRIORITY 1 2791ec1e82fSSascha Hauer #define MXC_SDMA_MIN_PRIORITY 1 2801ec1e82fSSascha Hauer #define MXC_SDMA_MAX_PRIORITY 7 2811ec1e82fSSascha Hauer 2821ec1e82fSSascha Hauer #define SDMA_FIRMWARE_MAGIC 0x414d4453 2831ec1e82fSSascha Hauer 2841ec1e82fSSascha Hauer /** 2851ec1e82fSSascha Hauer * struct sdma_firmware_header - Layout of the firmware image 2861ec1e82fSSascha Hauer * 2871ec1e82fSSascha Hauer * @magic "SDMA" 2881ec1e82fSSascha Hauer * @version_major increased whenever layout of struct sdma_script_start_addrs 2891ec1e82fSSascha Hauer * changes. 2901ec1e82fSSascha Hauer * @version_minor firmware minor version (for binary compatible changes) 2911ec1e82fSSascha Hauer * @script_addrs_start offset of struct sdma_script_start_addrs in this image 2921ec1e82fSSascha Hauer * @num_script_addrs Number of script addresses in this image 2931ec1e82fSSascha Hauer * @ram_code_start offset of SDMA ram image in this firmware image 2941ec1e82fSSascha Hauer * @ram_code_size size of SDMA ram image 2951ec1e82fSSascha Hauer * @script_addrs Stores the start address of the SDMA scripts 2961ec1e82fSSascha Hauer * (in SDMA memory space) 2971ec1e82fSSascha Hauer */ 2981ec1e82fSSascha Hauer struct sdma_firmware_header { 2991ec1e82fSSascha Hauer u32 magic; 3001ec1e82fSSascha Hauer u32 version_major; 3011ec1e82fSSascha Hauer u32 version_minor; 3021ec1e82fSSascha Hauer u32 script_addrs_start; 3031ec1e82fSSascha Hauer u32 num_script_addrs; 3041ec1e82fSSascha Hauer u32 ram_code_start; 3051ec1e82fSSascha Hauer u32 ram_code_size; 3061ec1e82fSSascha Hauer }; 3071ec1e82fSSascha Hauer 30817bba72fSSascha Hauer struct sdma_driver_data { 30917bba72fSSascha Hauer int chnenbl0; 31017bba72fSSascha Hauer int num_events; 311dcfec3c0SSascha Hauer struct sdma_script_start_addrs *script_addrs; 31262550cd7SShawn Guo }; 31362550cd7SShawn Guo 3141ec1e82fSSascha Hauer struct sdma_engine { 3151ec1e82fSSascha Hauer struct device *dev; 316b9b3f82fSSascha Hauer struct device_dma_parameters dma_parms; 3171ec1e82fSSascha Hauer struct sdma_channel channel[MAX_DMA_CHANNELS]; 3181ec1e82fSSascha Hauer struct sdma_channel_control *channel_control; 3191ec1e82fSSascha Hauer void __iomem *regs; 3201ec1e82fSSascha Hauer struct sdma_context_data *context; 3211ec1e82fSSascha Hauer dma_addr_t context_phys; 3221ec1e82fSSascha Hauer struct dma_device dma_device; 3237560e3f3SSascha Hauer struct clk *clk_ipg; 3247560e3f3SSascha Hauer struct clk *clk_ahb; 3252ccaef05SRichard Zhao spinlock_t channel_0_lock; 326cd72b846SNicolin Chen u32 script_number; 3271ec1e82fSSascha Hauer struct sdma_script_start_addrs *script_addrs; 32817bba72fSSascha Hauer const struct sdma_driver_data *drvdata; 32917bba72fSSascha Hauer }; 33017bba72fSSascha Hauer 331e9fd58deSFabio Estevam static struct sdma_driver_data sdma_imx31 = { 33217bba72fSSascha Hauer .chnenbl0 = SDMA_CHNENBL0_IMX31, 33317bba72fSSascha Hauer .num_events = 32, 33417bba72fSSascha Hauer }; 33517bba72fSSascha Hauer 336dcfec3c0SSascha Hauer static struct sdma_script_start_addrs sdma_script_imx25 = { 337dcfec3c0SSascha Hauer .ap_2_ap_addr = 729, 338dcfec3c0SSascha Hauer .uart_2_mcu_addr = 904, 339dcfec3c0SSascha Hauer .per_2_app_addr = 1255, 340dcfec3c0SSascha Hauer .mcu_2_app_addr = 834, 341dcfec3c0SSascha Hauer .uartsh_2_mcu_addr = 1120, 342dcfec3c0SSascha Hauer .per_2_shp_addr = 1329, 343dcfec3c0SSascha Hauer .mcu_2_shp_addr = 1048, 344dcfec3c0SSascha Hauer .ata_2_mcu_addr = 1560, 345dcfec3c0SSascha Hauer .mcu_2_ata_addr = 1479, 346dcfec3c0SSascha Hauer .app_2_per_addr = 1189, 347dcfec3c0SSascha Hauer .app_2_mcu_addr = 770, 348dcfec3c0SSascha Hauer .shp_2_per_addr = 1407, 349dcfec3c0SSascha Hauer .shp_2_mcu_addr = 979, 350dcfec3c0SSascha Hauer }; 351dcfec3c0SSascha Hauer 352e9fd58deSFabio Estevam static struct sdma_driver_data sdma_imx25 = { 353dcfec3c0SSascha Hauer .chnenbl0 = SDMA_CHNENBL0_IMX35, 354dcfec3c0SSascha Hauer .num_events = 48, 355dcfec3c0SSascha Hauer .script_addrs = &sdma_script_imx25, 356dcfec3c0SSascha Hauer }; 357dcfec3c0SSascha Hauer 358e9fd58deSFabio Estevam static struct sdma_driver_data sdma_imx35 = { 35917bba72fSSascha Hauer .chnenbl0 = SDMA_CHNENBL0_IMX35, 36017bba72fSSascha Hauer .num_events = 48, 3611ec1e82fSSascha Hauer }; 3621ec1e82fSSascha Hauer 363dcfec3c0SSascha Hauer static struct sdma_script_start_addrs sdma_script_imx51 = { 364dcfec3c0SSascha Hauer .ap_2_ap_addr = 642, 365dcfec3c0SSascha Hauer .uart_2_mcu_addr = 817, 366dcfec3c0SSascha Hauer .mcu_2_app_addr = 747, 367dcfec3c0SSascha Hauer .mcu_2_shp_addr = 961, 368dcfec3c0SSascha Hauer .ata_2_mcu_addr = 1473, 369dcfec3c0SSascha Hauer .mcu_2_ata_addr = 1392, 370dcfec3c0SSascha Hauer .app_2_per_addr = 1033, 371dcfec3c0SSascha Hauer .app_2_mcu_addr = 683, 372dcfec3c0SSascha Hauer .shp_2_per_addr = 1251, 373dcfec3c0SSascha Hauer .shp_2_mcu_addr = 892, 374dcfec3c0SSascha Hauer }; 375dcfec3c0SSascha Hauer 376e9fd58deSFabio Estevam static struct sdma_driver_data sdma_imx51 = { 377dcfec3c0SSascha Hauer .chnenbl0 = SDMA_CHNENBL0_IMX35, 378dcfec3c0SSascha Hauer .num_events = 48, 379dcfec3c0SSascha Hauer .script_addrs = &sdma_script_imx51, 380dcfec3c0SSascha Hauer }; 381dcfec3c0SSascha Hauer 382dcfec3c0SSascha Hauer static struct sdma_script_start_addrs sdma_script_imx53 = { 383dcfec3c0SSascha Hauer .ap_2_ap_addr = 642, 384dcfec3c0SSascha Hauer .app_2_mcu_addr = 683, 385dcfec3c0SSascha Hauer .mcu_2_app_addr = 747, 386dcfec3c0SSascha Hauer .uart_2_mcu_addr = 817, 387dcfec3c0SSascha Hauer .shp_2_mcu_addr = 891, 388dcfec3c0SSascha Hauer .mcu_2_shp_addr = 960, 389dcfec3c0SSascha Hauer .uartsh_2_mcu_addr = 1032, 390dcfec3c0SSascha Hauer .spdif_2_mcu_addr = 1100, 391dcfec3c0SSascha Hauer .mcu_2_spdif_addr = 1134, 392dcfec3c0SSascha Hauer .firi_2_mcu_addr = 1193, 393dcfec3c0SSascha Hauer .mcu_2_firi_addr = 1290, 394dcfec3c0SSascha Hauer }; 395dcfec3c0SSascha Hauer 396e9fd58deSFabio Estevam static struct sdma_driver_data sdma_imx53 = { 397dcfec3c0SSascha Hauer .chnenbl0 = SDMA_CHNENBL0_IMX35, 398dcfec3c0SSascha Hauer .num_events = 48, 399dcfec3c0SSascha Hauer .script_addrs = &sdma_script_imx53, 400dcfec3c0SSascha Hauer }; 401dcfec3c0SSascha Hauer 402dcfec3c0SSascha Hauer static struct sdma_script_start_addrs sdma_script_imx6q = { 403dcfec3c0SSascha Hauer .ap_2_ap_addr = 642, 404dcfec3c0SSascha Hauer .uart_2_mcu_addr = 817, 405dcfec3c0SSascha Hauer .mcu_2_app_addr = 747, 406dcfec3c0SSascha Hauer .per_2_per_addr = 6331, 407dcfec3c0SSascha Hauer .uartsh_2_mcu_addr = 1032, 408dcfec3c0SSascha Hauer .mcu_2_shp_addr = 960, 409dcfec3c0SSascha Hauer .app_2_mcu_addr = 683, 410dcfec3c0SSascha Hauer .shp_2_mcu_addr = 891, 411dcfec3c0SSascha Hauer .spdif_2_mcu_addr = 1100, 412dcfec3c0SSascha Hauer .mcu_2_spdif_addr = 1134, 413dcfec3c0SSascha Hauer }; 414dcfec3c0SSascha Hauer 415e9fd58deSFabio Estevam static struct sdma_driver_data sdma_imx6q = { 416dcfec3c0SSascha Hauer .chnenbl0 = SDMA_CHNENBL0_IMX35, 417dcfec3c0SSascha Hauer .num_events = 48, 418dcfec3c0SSascha Hauer .script_addrs = &sdma_script_imx6q, 419dcfec3c0SSascha Hauer }; 420dcfec3c0SSascha Hauer 42162550cd7SShawn Guo static struct platform_device_id sdma_devtypes[] = { 42262550cd7SShawn Guo { 423dcfec3c0SSascha Hauer .name = "imx25-sdma", 424dcfec3c0SSascha Hauer .driver_data = (unsigned long)&sdma_imx25, 425dcfec3c0SSascha Hauer }, { 42662550cd7SShawn Guo .name = "imx31-sdma", 42717bba72fSSascha Hauer .driver_data = (unsigned long)&sdma_imx31, 42862550cd7SShawn Guo }, { 42962550cd7SShawn Guo .name = "imx35-sdma", 43017bba72fSSascha Hauer .driver_data = (unsigned long)&sdma_imx35, 43162550cd7SShawn Guo }, { 432dcfec3c0SSascha Hauer .name = "imx51-sdma", 433dcfec3c0SSascha Hauer .driver_data = (unsigned long)&sdma_imx51, 434dcfec3c0SSascha Hauer }, { 435dcfec3c0SSascha Hauer .name = "imx53-sdma", 436dcfec3c0SSascha Hauer .driver_data = (unsigned long)&sdma_imx53, 437dcfec3c0SSascha Hauer }, { 438dcfec3c0SSascha Hauer .name = "imx6q-sdma", 439dcfec3c0SSascha Hauer .driver_data = (unsigned long)&sdma_imx6q, 440dcfec3c0SSascha Hauer }, { 44162550cd7SShawn Guo /* sentinel */ 44262550cd7SShawn Guo } 44362550cd7SShawn Guo }; 44462550cd7SShawn Guo MODULE_DEVICE_TABLE(platform, sdma_devtypes); 44562550cd7SShawn Guo 446580975d7SShawn Guo static const struct of_device_id sdma_dt_ids[] = { 447dcfec3c0SSascha Hauer { .compatible = "fsl,imx6q-sdma", .data = &sdma_imx6q, }, 448dcfec3c0SSascha Hauer { .compatible = "fsl,imx53-sdma", .data = &sdma_imx53, }, 449dcfec3c0SSascha Hauer { .compatible = "fsl,imx51-sdma", .data = &sdma_imx51, }, 45017bba72fSSascha Hauer { .compatible = "fsl,imx35-sdma", .data = &sdma_imx35, }, 451dcfec3c0SSascha Hauer { .compatible = "fsl,imx31-sdma", .data = &sdma_imx31, }, 452580975d7SShawn Guo { /* sentinel */ } 453580975d7SShawn Guo }; 454580975d7SShawn Guo MODULE_DEVICE_TABLE(of, sdma_dt_ids); 455580975d7SShawn Guo 4560bbc1413SRichard Zhao #define SDMA_H_CONFIG_DSPDMA BIT(12) /* indicates if the DSPDMA is used */ 4570bbc1413SRichard Zhao #define SDMA_H_CONFIG_RTD_PINS BIT(11) /* indicates if Real-Time Debug pins are enabled */ 4580bbc1413SRichard Zhao #define SDMA_H_CONFIG_ACR BIT(4) /* indicates if AHB freq /core freq = 2 or 1 */ 4591ec1e82fSSascha Hauer #define SDMA_H_CONFIG_CSM (3) /* indicates which context switch mode is selected*/ 4601ec1e82fSSascha Hauer 4611ec1e82fSSascha Hauer static inline u32 chnenbl_ofs(struct sdma_engine *sdma, unsigned int event) 4621ec1e82fSSascha Hauer { 46317bba72fSSascha Hauer u32 chnenbl0 = sdma->drvdata->chnenbl0; 4641ec1e82fSSascha Hauer return chnenbl0 + event * 4; 4651ec1e82fSSascha Hauer } 4661ec1e82fSSascha Hauer 4671ec1e82fSSascha Hauer static int sdma_config_ownership(struct sdma_channel *sdmac, 4681ec1e82fSSascha Hauer bool event_override, bool mcu_override, bool dsp_override) 4691ec1e82fSSascha Hauer { 4701ec1e82fSSascha Hauer struct sdma_engine *sdma = sdmac->sdma; 4711ec1e82fSSascha Hauer int channel = sdmac->channel; 4720bbc1413SRichard Zhao unsigned long evt, mcu, dsp; 4731ec1e82fSSascha Hauer 4741ec1e82fSSascha Hauer if (event_override && mcu_override && dsp_override) 4751ec1e82fSSascha Hauer return -EINVAL; 4761ec1e82fSSascha Hauer 477c4b56857SRichard Zhao evt = readl_relaxed(sdma->regs + SDMA_H_EVTOVR); 478c4b56857SRichard Zhao mcu = readl_relaxed(sdma->regs + SDMA_H_HOSTOVR); 479c4b56857SRichard Zhao dsp = readl_relaxed(sdma->regs + SDMA_H_DSPOVR); 4801ec1e82fSSascha Hauer 4811ec1e82fSSascha Hauer if (dsp_override) 4820bbc1413SRichard Zhao __clear_bit(channel, &dsp); 4831ec1e82fSSascha Hauer else 4840bbc1413SRichard Zhao __set_bit(channel, &dsp); 4851ec1e82fSSascha Hauer 4861ec1e82fSSascha Hauer if (event_override) 4870bbc1413SRichard Zhao __clear_bit(channel, &evt); 4881ec1e82fSSascha Hauer else 4890bbc1413SRichard Zhao __set_bit(channel, &evt); 4901ec1e82fSSascha Hauer 4911ec1e82fSSascha Hauer if (mcu_override) 4920bbc1413SRichard Zhao __clear_bit(channel, &mcu); 4931ec1e82fSSascha Hauer else 4940bbc1413SRichard Zhao __set_bit(channel, &mcu); 4951ec1e82fSSascha Hauer 496c4b56857SRichard Zhao writel_relaxed(evt, sdma->regs + SDMA_H_EVTOVR); 497c4b56857SRichard Zhao writel_relaxed(mcu, sdma->regs + SDMA_H_HOSTOVR); 498c4b56857SRichard Zhao writel_relaxed(dsp, sdma->regs + SDMA_H_DSPOVR); 4991ec1e82fSSascha Hauer 5001ec1e82fSSascha Hauer return 0; 5011ec1e82fSSascha Hauer } 5021ec1e82fSSascha Hauer 503b9a59166SRichard Zhao static void sdma_enable_channel(struct sdma_engine *sdma, int channel) 504b9a59166SRichard Zhao { 5050bbc1413SRichard Zhao writel(BIT(channel), sdma->regs + SDMA_H_START); 506b9a59166SRichard Zhao } 507b9a59166SRichard Zhao 5081ec1e82fSSascha Hauer /* 5092ccaef05SRichard Zhao * sdma_run_channel0 - run a channel and wait till it's done 5101ec1e82fSSascha Hauer */ 5112ccaef05SRichard Zhao static int sdma_run_channel0(struct sdma_engine *sdma) 5121ec1e82fSSascha Hauer { 5131ec1e82fSSascha Hauer int ret; 5142ccaef05SRichard Zhao unsigned long timeout = 500; 5151ec1e82fSSascha Hauer 5162ccaef05SRichard Zhao sdma_enable_channel(sdma, 0); 5171ec1e82fSSascha Hauer 5182ccaef05SRichard Zhao while (!(ret = readl_relaxed(sdma->regs + SDMA_H_INTR) & 1)) { 5192ccaef05SRichard Zhao if (timeout-- <= 0) 5202ccaef05SRichard Zhao break; 5212ccaef05SRichard Zhao udelay(1); 5222ccaef05SRichard Zhao } 5231ec1e82fSSascha Hauer 5242ccaef05SRichard Zhao if (ret) { 5252ccaef05SRichard Zhao /* Clear the interrupt status */ 5262ccaef05SRichard Zhao writel_relaxed(ret, sdma->regs + SDMA_H_INTR); 5272ccaef05SRichard Zhao } else { 5282ccaef05SRichard Zhao dev_err(sdma->dev, "Timeout waiting for CH0 ready\n"); 5292ccaef05SRichard Zhao } 5301ec1e82fSSascha Hauer 5311ec1e82fSSascha Hauer return ret ? 0 : -ETIMEDOUT; 5321ec1e82fSSascha Hauer } 5331ec1e82fSSascha Hauer 5341ec1e82fSSascha Hauer static int sdma_load_script(struct sdma_engine *sdma, void *buf, int size, 5351ec1e82fSSascha Hauer u32 address) 5361ec1e82fSSascha Hauer { 5371ec1e82fSSascha Hauer struct sdma_buffer_descriptor *bd0 = sdma->channel[0].bd; 5381ec1e82fSSascha Hauer void *buf_virt; 5391ec1e82fSSascha Hauer dma_addr_t buf_phys; 5401ec1e82fSSascha Hauer int ret; 5412ccaef05SRichard Zhao unsigned long flags; 54273eab978SSascha Hauer 5431ec1e82fSSascha Hauer buf_virt = dma_alloc_coherent(NULL, 5441ec1e82fSSascha Hauer size, 5451ec1e82fSSascha Hauer &buf_phys, GFP_KERNEL); 54673eab978SSascha Hauer if (!buf_virt) { 5472ccaef05SRichard Zhao return -ENOMEM; 54873eab978SSascha Hauer } 5491ec1e82fSSascha Hauer 5502ccaef05SRichard Zhao spin_lock_irqsave(&sdma->channel_0_lock, flags); 5512ccaef05SRichard Zhao 5521ec1e82fSSascha Hauer bd0->mode.command = C0_SETPM; 5531ec1e82fSSascha Hauer bd0->mode.status = BD_DONE | BD_INTR | BD_WRAP | BD_EXTD; 5541ec1e82fSSascha Hauer bd0->mode.count = size / 2; 5551ec1e82fSSascha Hauer bd0->buffer_addr = buf_phys; 5561ec1e82fSSascha Hauer bd0->ext_buffer_addr = address; 5571ec1e82fSSascha Hauer 5581ec1e82fSSascha Hauer memcpy(buf_virt, buf, size); 5591ec1e82fSSascha Hauer 5602ccaef05SRichard Zhao ret = sdma_run_channel0(sdma); 5612ccaef05SRichard Zhao 5622ccaef05SRichard Zhao spin_unlock_irqrestore(&sdma->channel_0_lock, flags); 5631ec1e82fSSascha Hauer 5641ec1e82fSSascha Hauer dma_free_coherent(NULL, size, buf_virt, buf_phys); 5651ec1e82fSSascha Hauer 5661ec1e82fSSascha Hauer return ret; 5671ec1e82fSSascha Hauer } 5681ec1e82fSSascha Hauer 5691ec1e82fSSascha Hauer static void sdma_event_enable(struct sdma_channel *sdmac, unsigned int event) 5701ec1e82fSSascha Hauer { 5711ec1e82fSSascha Hauer struct sdma_engine *sdma = sdmac->sdma; 5721ec1e82fSSascha Hauer int channel = sdmac->channel; 5730bbc1413SRichard Zhao unsigned long val; 5741ec1e82fSSascha Hauer u32 chnenbl = chnenbl_ofs(sdma, event); 5751ec1e82fSSascha Hauer 576c4b56857SRichard Zhao val = readl_relaxed(sdma->regs + chnenbl); 5770bbc1413SRichard Zhao __set_bit(channel, &val); 578c4b56857SRichard Zhao writel_relaxed(val, sdma->regs + chnenbl); 5791ec1e82fSSascha Hauer } 5801ec1e82fSSascha Hauer 5811ec1e82fSSascha Hauer static void sdma_event_disable(struct sdma_channel *sdmac, unsigned int event) 5821ec1e82fSSascha Hauer { 5831ec1e82fSSascha Hauer struct sdma_engine *sdma = sdmac->sdma; 5841ec1e82fSSascha Hauer int channel = sdmac->channel; 5851ec1e82fSSascha Hauer u32 chnenbl = chnenbl_ofs(sdma, event); 5860bbc1413SRichard Zhao unsigned long val; 5871ec1e82fSSascha Hauer 588c4b56857SRichard Zhao val = readl_relaxed(sdma->regs + chnenbl); 5890bbc1413SRichard Zhao __clear_bit(channel, &val); 590c4b56857SRichard Zhao writel_relaxed(val, sdma->regs + chnenbl); 5911ec1e82fSSascha Hauer } 5921ec1e82fSSascha Hauer 5931ec1e82fSSascha Hauer static void sdma_handle_channel_loop(struct sdma_channel *sdmac) 5941ec1e82fSSascha Hauer { 5951ec1e82fSSascha Hauer struct sdma_buffer_descriptor *bd; 5961ec1e82fSSascha Hauer 5971ec1e82fSSascha Hauer /* 5981ec1e82fSSascha Hauer * loop mode. Iterate over descriptors, re-setup them and 5991ec1e82fSSascha Hauer * call callback function. 6001ec1e82fSSascha Hauer */ 6011ec1e82fSSascha Hauer while (1) { 6021ec1e82fSSascha Hauer bd = &sdmac->bd[sdmac->buf_tail]; 6031ec1e82fSSascha Hauer 6041ec1e82fSSascha Hauer if (bd->mode.status & BD_DONE) 6051ec1e82fSSascha Hauer break; 6061ec1e82fSSascha Hauer 6071ec1e82fSSascha Hauer if (bd->mode.status & BD_RROR) 6081ec1e82fSSascha Hauer sdmac->status = DMA_ERROR; 6091ec1e82fSSascha Hauer else 6101e9cebb4SShawn Guo sdmac->status = DMA_IN_PROGRESS; 6111ec1e82fSSascha Hauer 6121ec1e82fSSascha Hauer bd->mode.status |= BD_DONE; 6131ec1e82fSSascha Hauer sdmac->buf_tail++; 6141ec1e82fSSascha Hauer sdmac->buf_tail %= sdmac->num_bd; 6151ec1e82fSSascha Hauer 6161ec1e82fSSascha Hauer if (sdmac->desc.callback) 6171ec1e82fSSascha Hauer sdmac->desc.callback(sdmac->desc.callback_param); 6181ec1e82fSSascha Hauer } 6191ec1e82fSSascha Hauer } 6201ec1e82fSSascha Hauer 6211ec1e82fSSascha Hauer static void mxc_sdma_handle_channel_normal(struct sdma_channel *sdmac) 6221ec1e82fSSascha Hauer { 6231ec1e82fSSascha Hauer struct sdma_buffer_descriptor *bd; 6241ec1e82fSSascha Hauer int i, error = 0; 6251ec1e82fSSascha Hauer 626ab59a510SHuang Shijie sdmac->chn_real_count = 0; 6271ec1e82fSSascha Hauer /* 6281ec1e82fSSascha Hauer * non loop mode. Iterate over all descriptors, collect 6291ec1e82fSSascha Hauer * errors and call callback function 6301ec1e82fSSascha Hauer */ 6311ec1e82fSSascha Hauer for (i = 0; i < sdmac->num_bd; i++) { 6321ec1e82fSSascha Hauer bd = &sdmac->bd[i]; 6331ec1e82fSSascha Hauer 6341ec1e82fSSascha Hauer if (bd->mode.status & (BD_DONE | BD_RROR)) 6351ec1e82fSSascha Hauer error = -EIO; 636ab59a510SHuang Shijie sdmac->chn_real_count += bd->mode.count; 6371ec1e82fSSascha Hauer } 6381ec1e82fSSascha Hauer 6391ec1e82fSSascha Hauer if (error) 6401ec1e82fSSascha Hauer sdmac->status = DMA_ERROR; 6411ec1e82fSSascha Hauer else 642409bff6aSVinod Koul sdmac->status = DMA_COMPLETE; 6431ec1e82fSSascha Hauer 644f7fbce07SRussell King - ARM Linux dma_cookie_complete(&sdmac->desc); 6451ec1e82fSSascha Hauer if (sdmac->desc.callback) 6461ec1e82fSSascha Hauer sdmac->desc.callback(sdmac->desc.callback_param); 6471ec1e82fSSascha Hauer } 6481ec1e82fSSascha Hauer 649abd9ccc8SHuang Shijie static void sdma_tasklet(unsigned long data) 6501ec1e82fSSascha Hauer { 651abd9ccc8SHuang Shijie struct sdma_channel *sdmac = (struct sdma_channel *) data; 652abd9ccc8SHuang Shijie 6531ec1e82fSSascha Hauer if (sdmac->flags & IMX_DMA_SG_LOOP) 6541ec1e82fSSascha Hauer sdma_handle_channel_loop(sdmac); 6551ec1e82fSSascha Hauer else 6561ec1e82fSSascha Hauer mxc_sdma_handle_channel_normal(sdmac); 6571ec1e82fSSascha Hauer } 6581ec1e82fSSascha Hauer 6591ec1e82fSSascha Hauer static irqreturn_t sdma_int_handler(int irq, void *dev_id) 6601ec1e82fSSascha Hauer { 6611ec1e82fSSascha Hauer struct sdma_engine *sdma = dev_id; 6620bbc1413SRichard Zhao unsigned long stat; 6631ec1e82fSSascha Hauer 664c4b56857SRichard Zhao stat = readl_relaxed(sdma->regs + SDMA_H_INTR); 6652ccaef05SRichard Zhao /* not interested in channel 0 interrupts */ 6662ccaef05SRichard Zhao stat &= ~1; 667c4b56857SRichard Zhao writel_relaxed(stat, sdma->regs + SDMA_H_INTR); 6681ec1e82fSSascha Hauer 6691ec1e82fSSascha Hauer while (stat) { 6701ec1e82fSSascha Hauer int channel = fls(stat) - 1; 6711ec1e82fSSascha Hauer struct sdma_channel *sdmac = &sdma->channel[channel]; 6721ec1e82fSSascha Hauer 673abd9ccc8SHuang Shijie tasklet_schedule(&sdmac->tasklet); 6741ec1e82fSSascha Hauer 6750bbc1413SRichard Zhao __clear_bit(channel, &stat); 6761ec1e82fSSascha Hauer } 6771ec1e82fSSascha Hauer 6781ec1e82fSSascha Hauer return IRQ_HANDLED; 6791ec1e82fSSascha Hauer } 6801ec1e82fSSascha Hauer 6811ec1e82fSSascha Hauer /* 6821ec1e82fSSascha Hauer * sets the pc of SDMA script according to the peripheral type 6831ec1e82fSSascha Hauer */ 6841ec1e82fSSascha Hauer static void sdma_get_pc(struct sdma_channel *sdmac, 6851ec1e82fSSascha Hauer enum sdma_peripheral_type peripheral_type) 6861ec1e82fSSascha Hauer { 6871ec1e82fSSascha Hauer struct sdma_engine *sdma = sdmac->sdma; 6881ec1e82fSSascha Hauer int per_2_emi = 0, emi_2_per = 0; 6891ec1e82fSSascha Hauer /* 6901ec1e82fSSascha Hauer * These are needed once we start to support transfers between 6911ec1e82fSSascha Hauer * two peripherals or memory-to-memory transfers 6921ec1e82fSSascha Hauer */ 6931ec1e82fSSascha Hauer int per_2_per = 0, emi_2_emi = 0; 6941ec1e82fSSascha Hauer 6951ec1e82fSSascha Hauer sdmac->pc_from_device = 0; 6961ec1e82fSSascha Hauer sdmac->pc_to_device = 0; 6971ec1e82fSSascha Hauer 6981ec1e82fSSascha Hauer switch (peripheral_type) { 6991ec1e82fSSascha Hauer case IMX_DMATYPE_MEMORY: 7001ec1e82fSSascha Hauer emi_2_emi = sdma->script_addrs->ap_2_ap_addr; 7011ec1e82fSSascha Hauer break; 7021ec1e82fSSascha Hauer case IMX_DMATYPE_DSP: 7031ec1e82fSSascha Hauer emi_2_per = sdma->script_addrs->bp_2_ap_addr; 7041ec1e82fSSascha Hauer per_2_emi = sdma->script_addrs->ap_2_bp_addr; 7051ec1e82fSSascha Hauer break; 7061ec1e82fSSascha Hauer case IMX_DMATYPE_FIRI: 7071ec1e82fSSascha Hauer per_2_emi = sdma->script_addrs->firi_2_mcu_addr; 7081ec1e82fSSascha Hauer emi_2_per = sdma->script_addrs->mcu_2_firi_addr; 7091ec1e82fSSascha Hauer break; 7101ec1e82fSSascha Hauer case IMX_DMATYPE_UART: 7111ec1e82fSSascha Hauer per_2_emi = sdma->script_addrs->uart_2_mcu_addr; 7121ec1e82fSSascha Hauer emi_2_per = sdma->script_addrs->mcu_2_app_addr; 7131ec1e82fSSascha Hauer break; 7141ec1e82fSSascha Hauer case IMX_DMATYPE_UART_SP: 7151ec1e82fSSascha Hauer per_2_emi = sdma->script_addrs->uartsh_2_mcu_addr; 7161ec1e82fSSascha Hauer emi_2_per = sdma->script_addrs->mcu_2_shp_addr; 7171ec1e82fSSascha Hauer break; 7181ec1e82fSSascha Hauer case IMX_DMATYPE_ATA: 7191ec1e82fSSascha Hauer per_2_emi = sdma->script_addrs->ata_2_mcu_addr; 7201ec1e82fSSascha Hauer emi_2_per = sdma->script_addrs->mcu_2_ata_addr; 7211ec1e82fSSascha Hauer break; 7221ec1e82fSSascha Hauer case IMX_DMATYPE_CSPI: 7231ec1e82fSSascha Hauer case IMX_DMATYPE_EXT: 7241ec1e82fSSascha Hauer case IMX_DMATYPE_SSI: 7251ec1e82fSSascha Hauer per_2_emi = sdma->script_addrs->app_2_mcu_addr; 7261ec1e82fSSascha Hauer emi_2_per = sdma->script_addrs->mcu_2_app_addr; 7271ec1e82fSSascha Hauer break; 7281a895578SNicolin Chen case IMX_DMATYPE_SSI_DUAL: 7291a895578SNicolin Chen per_2_emi = sdma->script_addrs->ssish_2_mcu_addr; 7301a895578SNicolin Chen emi_2_per = sdma->script_addrs->mcu_2_ssish_addr; 7311a895578SNicolin Chen break; 7321ec1e82fSSascha Hauer case IMX_DMATYPE_SSI_SP: 7331ec1e82fSSascha Hauer case IMX_DMATYPE_MMC: 7341ec1e82fSSascha Hauer case IMX_DMATYPE_SDHC: 7351ec1e82fSSascha Hauer case IMX_DMATYPE_CSPI_SP: 7361ec1e82fSSascha Hauer case IMX_DMATYPE_ESAI: 7371ec1e82fSSascha Hauer case IMX_DMATYPE_MSHC_SP: 7381ec1e82fSSascha Hauer per_2_emi = sdma->script_addrs->shp_2_mcu_addr; 7391ec1e82fSSascha Hauer emi_2_per = sdma->script_addrs->mcu_2_shp_addr; 7401ec1e82fSSascha Hauer break; 7411ec1e82fSSascha Hauer case IMX_DMATYPE_ASRC: 7421ec1e82fSSascha Hauer per_2_emi = sdma->script_addrs->asrc_2_mcu_addr; 7431ec1e82fSSascha Hauer emi_2_per = sdma->script_addrs->asrc_2_mcu_addr; 7441ec1e82fSSascha Hauer per_2_per = sdma->script_addrs->per_2_per_addr; 7451ec1e82fSSascha Hauer break; 7461ec1e82fSSascha Hauer case IMX_DMATYPE_MSHC: 7471ec1e82fSSascha Hauer per_2_emi = sdma->script_addrs->mshc_2_mcu_addr; 7481ec1e82fSSascha Hauer emi_2_per = sdma->script_addrs->mcu_2_mshc_addr; 7491ec1e82fSSascha Hauer break; 7501ec1e82fSSascha Hauer case IMX_DMATYPE_CCM: 7511ec1e82fSSascha Hauer per_2_emi = sdma->script_addrs->dptc_dvfs_addr; 7521ec1e82fSSascha Hauer break; 7531ec1e82fSSascha Hauer case IMX_DMATYPE_SPDIF: 7541ec1e82fSSascha Hauer per_2_emi = sdma->script_addrs->spdif_2_mcu_addr; 7551ec1e82fSSascha Hauer emi_2_per = sdma->script_addrs->mcu_2_spdif_addr; 7561ec1e82fSSascha Hauer break; 7571ec1e82fSSascha Hauer case IMX_DMATYPE_IPU_MEMORY: 7581ec1e82fSSascha Hauer emi_2_per = sdma->script_addrs->ext_mem_2_ipu_addr; 7591ec1e82fSSascha Hauer break; 7601ec1e82fSSascha Hauer default: 7611ec1e82fSSascha Hauer break; 7621ec1e82fSSascha Hauer } 7631ec1e82fSSascha Hauer 7641ec1e82fSSascha Hauer sdmac->pc_from_device = per_2_emi; 7651ec1e82fSSascha Hauer sdmac->pc_to_device = emi_2_per; 7661ec1e82fSSascha Hauer } 7671ec1e82fSSascha Hauer 7681ec1e82fSSascha Hauer static int sdma_load_context(struct sdma_channel *sdmac) 7691ec1e82fSSascha Hauer { 7701ec1e82fSSascha Hauer struct sdma_engine *sdma = sdmac->sdma; 7711ec1e82fSSascha Hauer int channel = sdmac->channel; 7721ec1e82fSSascha Hauer int load_address; 7731ec1e82fSSascha Hauer struct sdma_context_data *context = sdma->context; 7741ec1e82fSSascha Hauer struct sdma_buffer_descriptor *bd0 = sdma->channel[0].bd; 7751ec1e82fSSascha Hauer int ret; 7762ccaef05SRichard Zhao unsigned long flags; 7771ec1e82fSSascha Hauer 778db8196dfSVinod Koul if (sdmac->direction == DMA_DEV_TO_MEM) { 7791ec1e82fSSascha Hauer load_address = sdmac->pc_from_device; 7801ec1e82fSSascha Hauer } else { 7811ec1e82fSSascha Hauer load_address = sdmac->pc_to_device; 7821ec1e82fSSascha Hauer } 7831ec1e82fSSascha Hauer 7841ec1e82fSSascha Hauer if (load_address < 0) 7851ec1e82fSSascha Hauer return load_address; 7861ec1e82fSSascha Hauer 7871ec1e82fSSascha Hauer dev_dbg(sdma->dev, "load_address = %d\n", load_address); 7880bbc1413SRichard Zhao dev_dbg(sdma->dev, "wml = 0x%08x\n", (u32)sdmac->watermark_level); 7891ec1e82fSSascha Hauer dev_dbg(sdma->dev, "shp_addr = 0x%08x\n", sdmac->shp_addr); 7901ec1e82fSSascha Hauer dev_dbg(sdma->dev, "per_addr = 0x%08x\n", sdmac->per_addr); 7910bbc1413SRichard Zhao dev_dbg(sdma->dev, "event_mask0 = 0x%08x\n", (u32)sdmac->event_mask[0]); 7920bbc1413SRichard Zhao dev_dbg(sdma->dev, "event_mask1 = 0x%08x\n", (u32)sdmac->event_mask[1]); 7931ec1e82fSSascha Hauer 7942ccaef05SRichard Zhao spin_lock_irqsave(&sdma->channel_0_lock, flags); 79573eab978SSascha Hauer 7961ec1e82fSSascha Hauer memset(context, 0, sizeof(*context)); 7971ec1e82fSSascha Hauer context->channel_state.pc = load_address; 7981ec1e82fSSascha Hauer 7991ec1e82fSSascha Hauer /* Send by context the event mask,base address for peripheral 8001ec1e82fSSascha Hauer * and watermark level 8011ec1e82fSSascha Hauer */ 8020bbc1413SRichard Zhao context->gReg[0] = sdmac->event_mask[1]; 8030bbc1413SRichard Zhao context->gReg[1] = sdmac->event_mask[0]; 8041ec1e82fSSascha Hauer context->gReg[2] = sdmac->per_addr; 8051ec1e82fSSascha Hauer context->gReg[6] = sdmac->shp_addr; 8061ec1e82fSSascha Hauer context->gReg[7] = sdmac->watermark_level; 8071ec1e82fSSascha Hauer 8081ec1e82fSSascha Hauer bd0->mode.command = C0_SETDM; 8091ec1e82fSSascha Hauer bd0->mode.status = BD_DONE | BD_INTR | BD_WRAP | BD_EXTD; 8101ec1e82fSSascha Hauer bd0->mode.count = sizeof(*context) / 4; 8111ec1e82fSSascha Hauer bd0->buffer_addr = sdma->context_phys; 8121ec1e82fSSascha Hauer bd0->ext_buffer_addr = 2048 + (sizeof(*context) / 4) * channel; 8132ccaef05SRichard Zhao ret = sdma_run_channel0(sdma); 8141ec1e82fSSascha Hauer 8152ccaef05SRichard Zhao spin_unlock_irqrestore(&sdma->channel_0_lock, flags); 81673eab978SSascha Hauer 8171ec1e82fSSascha Hauer return ret; 8181ec1e82fSSascha Hauer } 8191ec1e82fSSascha Hauer 8201ec1e82fSSascha Hauer static void sdma_disable_channel(struct sdma_channel *sdmac) 8211ec1e82fSSascha Hauer { 8221ec1e82fSSascha Hauer struct sdma_engine *sdma = sdmac->sdma; 8231ec1e82fSSascha Hauer int channel = sdmac->channel; 8241ec1e82fSSascha Hauer 8250bbc1413SRichard Zhao writel_relaxed(BIT(channel), sdma->regs + SDMA_H_STATSTOP); 8261ec1e82fSSascha Hauer sdmac->status = DMA_ERROR; 8271ec1e82fSSascha Hauer } 8281ec1e82fSSascha Hauer 8291ec1e82fSSascha Hauer static int sdma_config_channel(struct sdma_channel *sdmac) 8301ec1e82fSSascha Hauer { 8311ec1e82fSSascha Hauer int ret; 8321ec1e82fSSascha Hauer 8331ec1e82fSSascha Hauer sdma_disable_channel(sdmac); 8341ec1e82fSSascha Hauer 8350bbc1413SRichard Zhao sdmac->event_mask[0] = 0; 8360bbc1413SRichard Zhao sdmac->event_mask[1] = 0; 8371ec1e82fSSascha Hauer sdmac->shp_addr = 0; 8381ec1e82fSSascha Hauer sdmac->per_addr = 0; 8391ec1e82fSSascha Hauer 8401ec1e82fSSascha Hauer if (sdmac->event_id0) { 84117bba72fSSascha Hauer if (sdmac->event_id0 >= sdmac->sdma->drvdata->num_events) 8421ec1e82fSSascha Hauer return -EINVAL; 8431ec1e82fSSascha Hauer sdma_event_enable(sdmac, sdmac->event_id0); 8441ec1e82fSSascha Hauer } 8451ec1e82fSSascha Hauer 8461ec1e82fSSascha Hauer switch (sdmac->peripheral_type) { 8471ec1e82fSSascha Hauer case IMX_DMATYPE_DSP: 8481ec1e82fSSascha Hauer sdma_config_ownership(sdmac, false, true, true); 8491ec1e82fSSascha Hauer break; 8501ec1e82fSSascha Hauer case IMX_DMATYPE_MEMORY: 8511ec1e82fSSascha Hauer sdma_config_ownership(sdmac, false, true, false); 8521ec1e82fSSascha Hauer break; 8531ec1e82fSSascha Hauer default: 8541ec1e82fSSascha Hauer sdma_config_ownership(sdmac, true, true, false); 8551ec1e82fSSascha Hauer break; 8561ec1e82fSSascha Hauer } 8571ec1e82fSSascha Hauer 8581ec1e82fSSascha Hauer sdma_get_pc(sdmac, sdmac->peripheral_type); 8591ec1e82fSSascha Hauer 8601ec1e82fSSascha Hauer if ((sdmac->peripheral_type != IMX_DMATYPE_MEMORY) && 8611ec1e82fSSascha Hauer (sdmac->peripheral_type != IMX_DMATYPE_DSP)) { 8621ec1e82fSSascha Hauer /* Handle multiple event channels differently */ 8631ec1e82fSSascha Hauer if (sdmac->event_id1) { 8640bbc1413SRichard Zhao sdmac->event_mask[1] = BIT(sdmac->event_id1 % 32); 8651ec1e82fSSascha Hauer if (sdmac->event_id1 > 31) 8660bbc1413SRichard Zhao __set_bit(31, &sdmac->watermark_level); 8670bbc1413SRichard Zhao sdmac->event_mask[0] = BIT(sdmac->event_id0 % 32); 8681ec1e82fSSascha Hauer if (sdmac->event_id0 > 31) 8690bbc1413SRichard Zhao __set_bit(30, &sdmac->watermark_level); 8701ec1e82fSSascha Hauer } else { 8710bbc1413SRichard Zhao __set_bit(sdmac->event_id0, sdmac->event_mask); 8721ec1e82fSSascha Hauer } 8731ec1e82fSSascha Hauer /* Watermark Level */ 8741ec1e82fSSascha Hauer sdmac->watermark_level |= sdmac->watermark_level; 8751ec1e82fSSascha Hauer /* Address */ 8761ec1e82fSSascha Hauer sdmac->shp_addr = sdmac->per_address; 8771ec1e82fSSascha Hauer } else { 8781ec1e82fSSascha Hauer sdmac->watermark_level = 0; /* FIXME: M3_BASE_ADDRESS */ 8791ec1e82fSSascha Hauer } 8801ec1e82fSSascha Hauer 8811ec1e82fSSascha Hauer ret = sdma_load_context(sdmac); 8821ec1e82fSSascha Hauer 8831ec1e82fSSascha Hauer return ret; 8841ec1e82fSSascha Hauer } 8851ec1e82fSSascha Hauer 8861ec1e82fSSascha Hauer static int sdma_set_channel_priority(struct sdma_channel *sdmac, 8871ec1e82fSSascha Hauer unsigned int priority) 8881ec1e82fSSascha Hauer { 8891ec1e82fSSascha Hauer struct sdma_engine *sdma = sdmac->sdma; 8901ec1e82fSSascha Hauer int channel = sdmac->channel; 8911ec1e82fSSascha Hauer 8921ec1e82fSSascha Hauer if (priority < MXC_SDMA_MIN_PRIORITY 8931ec1e82fSSascha Hauer || priority > MXC_SDMA_MAX_PRIORITY) { 8941ec1e82fSSascha Hauer return -EINVAL; 8951ec1e82fSSascha Hauer } 8961ec1e82fSSascha Hauer 897c4b56857SRichard Zhao writel_relaxed(priority, sdma->regs + SDMA_CHNPRI_0 + 4 * channel); 8981ec1e82fSSascha Hauer 8991ec1e82fSSascha Hauer return 0; 9001ec1e82fSSascha Hauer } 9011ec1e82fSSascha Hauer 9021ec1e82fSSascha Hauer static int sdma_request_channel(struct sdma_channel *sdmac) 9031ec1e82fSSascha Hauer { 9041ec1e82fSSascha Hauer struct sdma_engine *sdma = sdmac->sdma; 9051ec1e82fSSascha Hauer int channel = sdmac->channel; 9061ec1e82fSSascha Hauer int ret = -EBUSY; 9071ec1e82fSSascha Hauer 9081ec1e82fSSascha Hauer sdmac->bd = dma_alloc_coherent(NULL, PAGE_SIZE, &sdmac->bd_phys, GFP_KERNEL); 9091ec1e82fSSascha Hauer if (!sdmac->bd) { 9101ec1e82fSSascha Hauer ret = -ENOMEM; 9111ec1e82fSSascha Hauer goto out; 9121ec1e82fSSascha Hauer } 9131ec1e82fSSascha Hauer 9141ec1e82fSSascha Hauer memset(sdmac->bd, 0, PAGE_SIZE); 9151ec1e82fSSascha Hauer 9161ec1e82fSSascha Hauer sdma->channel_control[channel].base_bd_ptr = sdmac->bd_phys; 9171ec1e82fSSascha Hauer sdma->channel_control[channel].current_bd_ptr = sdmac->bd_phys; 9181ec1e82fSSascha Hauer 9191ec1e82fSSascha Hauer sdma_set_channel_priority(sdmac, MXC_SDMA_DEFAULT_PRIORITY); 9201ec1e82fSSascha Hauer return 0; 9211ec1e82fSSascha Hauer out: 9221ec1e82fSSascha Hauer 9231ec1e82fSSascha Hauer return ret; 9241ec1e82fSSascha Hauer } 9251ec1e82fSSascha Hauer 9261ec1e82fSSascha Hauer static struct sdma_channel *to_sdma_chan(struct dma_chan *chan) 9271ec1e82fSSascha Hauer { 9281ec1e82fSSascha Hauer return container_of(chan, struct sdma_channel, chan); 9291ec1e82fSSascha Hauer } 9301ec1e82fSSascha Hauer 9311ec1e82fSSascha Hauer static dma_cookie_t sdma_tx_submit(struct dma_async_tx_descriptor *tx) 9321ec1e82fSSascha Hauer { 933f69f2e26SHaitao Zhang unsigned long flags; 9341ec1e82fSSascha Hauer struct sdma_channel *sdmac = to_sdma_chan(tx->chan); 9351ec1e82fSSascha Hauer dma_cookie_t cookie; 9361ec1e82fSSascha Hauer 937f69f2e26SHaitao Zhang spin_lock_irqsave(&sdmac->lock, flags); 9381ec1e82fSSascha Hauer 939884485e1SRussell King - ARM Linux cookie = dma_cookie_assign(tx); 9401ec1e82fSSascha Hauer 941f69f2e26SHaitao Zhang spin_unlock_irqrestore(&sdmac->lock, flags); 9421ec1e82fSSascha Hauer 9431ec1e82fSSascha Hauer return cookie; 9441ec1e82fSSascha Hauer } 9451ec1e82fSSascha Hauer 9461ec1e82fSSascha Hauer static int sdma_alloc_chan_resources(struct dma_chan *chan) 9471ec1e82fSSascha Hauer { 9481ec1e82fSSascha Hauer struct sdma_channel *sdmac = to_sdma_chan(chan); 9491ec1e82fSSascha Hauer struct imx_dma_data *data = chan->private; 9501ec1e82fSSascha Hauer int prio, ret; 9511ec1e82fSSascha Hauer 9521ec1e82fSSascha Hauer if (!data) 9531ec1e82fSSascha Hauer return -EINVAL; 9541ec1e82fSSascha Hauer 9551ec1e82fSSascha Hauer switch (data->priority) { 9561ec1e82fSSascha Hauer case DMA_PRIO_HIGH: 9571ec1e82fSSascha Hauer prio = 3; 9581ec1e82fSSascha Hauer break; 9591ec1e82fSSascha Hauer case DMA_PRIO_MEDIUM: 9601ec1e82fSSascha Hauer prio = 2; 9611ec1e82fSSascha Hauer break; 9621ec1e82fSSascha Hauer case DMA_PRIO_LOW: 9631ec1e82fSSascha Hauer default: 9641ec1e82fSSascha Hauer prio = 1; 9651ec1e82fSSascha Hauer break; 9661ec1e82fSSascha Hauer } 9671ec1e82fSSascha Hauer 9681ec1e82fSSascha Hauer sdmac->peripheral_type = data->peripheral_type; 9691ec1e82fSSascha Hauer sdmac->event_id0 = data->dma_request; 970c2c744d3SRichard Zhao 9717560e3f3SSascha Hauer clk_enable(sdmac->sdma->clk_ipg); 9727560e3f3SSascha Hauer clk_enable(sdmac->sdma->clk_ahb); 973c2c744d3SRichard Zhao 9743bb5e7caSRichard Zhao ret = sdma_request_channel(sdmac); 9751ec1e82fSSascha Hauer if (ret) 9761ec1e82fSSascha Hauer return ret; 9771ec1e82fSSascha Hauer 9783bb5e7caSRichard Zhao ret = sdma_set_channel_priority(sdmac, prio); 9791ec1e82fSSascha Hauer if (ret) 9801ec1e82fSSascha Hauer return ret; 9811ec1e82fSSascha Hauer 9821ec1e82fSSascha Hauer dma_async_tx_descriptor_init(&sdmac->desc, chan); 9831ec1e82fSSascha Hauer sdmac->desc.tx_submit = sdma_tx_submit; 9841ec1e82fSSascha Hauer /* txd.flags will be overwritten in prep funcs */ 9851ec1e82fSSascha Hauer sdmac->desc.flags = DMA_CTRL_ACK; 9861ec1e82fSSascha Hauer 9871ec1e82fSSascha Hauer return 0; 9881ec1e82fSSascha Hauer } 9891ec1e82fSSascha Hauer 9901ec1e82fSSascha Hauer static void sdma_free_chan_resources(struct dma_chan *chan) 9911ec1e82fSSascha Hauer { 9921ec1e82fSSascha Hauer struct sdma_channel *sdmac = to_sdma_chan(chan); 9931ec1e82fSSascha Hauer struct sdma_engine *sdma = sdmac->sdma; 9941ec1e82fSSascha Hauer 9951ec1e82fSSascha Hauer sdma_disable_channel(sdmac); 9961ec1e82fSSascha Hauer 9971ec1e82fSSascha Hauer if (sdmac->event_id0) 9981ec1e82fSSascha Hauer sdma_event_disable(sdmac, sdmac->event_id0); 9991ec1e82fSSascha Hauer if (sdmac->event_id1) 10001ec1e82fSSascha Hauer sdma_event_disable(sdmac, sdmac->event_id1); 10011ec1e82fSSascha Hauer 10021ec1e82fSSascha Hauer sdmac->event_id0 = 0; 10031ec1e82fSSascha Hauer sdmac->event_id1 = 0; 10041ec1e82fSSascha Hauer 10051ec1e82fSSascha Hauer sdma_set_channel_priority(sdmac, 0); 10061ec1e82fSSascha Hauer 10071ec1e82fSSascha Hauer dma_free_coherent(NULL, PAGE_SIZE, sdmac->bd, sdmac->bd_phys); 10081ec1e82fSSascha Hauer 10097560e3f3SSascha Hauer clk_disable(sdma->clk_ipg); 10107560e3f3SSascha Hauer clk_disable(sdma->clk_ahb); 10111ec1e82fSSascha Hauer } 10121ec1e82fSSascha Hauer 10131ec1e82fSSascha Hauer static struct dma_async_tx_descriptor *sdma_prep_slave_sg( 10141ec1e82fSSascha Hauer struct dma_chan *chan, struct scatterlist *sgl, 1015db8196dfSVinod Koul unsigned int sg_len, enum dma_transfer_direction direction, 1016185ecb5fSAlexandre Bounine unsigned long flags, void *context) 10171ec1e82fSSascha Hauer { 10181ec1e82fSSascha Hauer struct sdma_channel *sdmac = to_sdma_chan(chan); 10191ec1e82fSSascha Hauer struct sdma_engine *sdma = sdmac->sdma; 10201ec1e82fSSascha Hauer int ret, i, count; 102123889c63SSascha Hauer int channel = sdmac->channel; 10221ec1e82fSSascha Hauer struct scatterlist *sg; 10231ec1e82fSSascha Hauer 10241ec1e82fSSascha Hauer if (sdmac->status == DMA_IN_PROGRESS) 10251ec1e82fSSascha Hauer return NULL; 10261ec1e82fSSascha Hauer sdmac->status = DMA_IN_PROGRESS; 10271ec1e82fSSascha Hauer 10281ec1e82fSSascha Hauer sdmac->flags = 0; 10291ec1e82fSSascha Hauer 10308e2e27c7SRichard Zhao sdmac->buf_tail = 0; 10318e2e27c7SRichard Zhao 10321ec1e82fSSascha Hauer dev_dbg(sdma->dev, "setting up %d entries for channel %d.\n", 10331ec1e82fSSascha Hauer sg_len, channel); 10341ec1e82fSSascha Hauer 10351ec1e82fSSascha Hauer sdmac->direction = direction; 10361ec1e82fSSascha Hauer ret = sdma_load_context(sdmac); 10371ec1e82fSSascha Hauer if (ret) 10381ec1e82fSSascha Hauer goto err_out; 10391ec1e82fSSascha Hauer 10401ec1e82fSSascha Hauer if (sg_len > NUM_BD) { 10411ec1e82fSSascha Hauer dev_err(sdma->dev, "SDMA channel %d: maximum number of sg exceeded: %d > %d\n", 10421ec1e82fSSascha Hauer channel, sg_len, NUM_BD); 10431ec1e82fSSascha Hauer ret = -EINVAL; 10441ec1e82fSSascha Hauer goto err_out; 10451ec1e82fSSascha Hauer } 10461ec1e82fSSascha Hauer 1047ab59a510SHuang Shijie sdmac->chn_count = 0; 10481ec1e82fSSascha Hauer for_each_sg(sgl, sg, sg_len, i) { 10491ec1e82fSSascha Hauer struct sdma_buffer_descriptor *bd = &sdmac->bd[i]; 10501ec1e82fSSascha Hauer int param; 10511ec1e82fSSascha Hauer 1052d2f5c276SAnatolij Gustschin bd->buffer_addr = sg->dma_address; 10531ec1e82fSSascha Hauer 1054fdaf9c4bSLars-Peter Clausen count = sg_dma_len(sg); 10551ec1e82fSSascha Hauer 10561ec1e82fSSascha Hauer if (count > 0xffff) { 10571ec1e82fSSascha Hauer dev_err(sdma->dev, "SDMA channel %d: maximum bytes for sg entry exceeded: %d > %d\n", 10581ec1e82fSSascha Hauer channel, count, 0xffff); 10591ec1e82fSSascha Hauer ret = -EINVAL; 10601ec1e82fSSascha Hauer goto err_out; 10611ec1e82fSSascha Hauer } 10621ec1e82fSSascha Hauer 10631ec1e82fSSascha Hauer bd->mode.count = count; 1064ab59a510SHuang Shijie sdmac->chn_count += count; 10651ec1e82fSSascha Hauer 10661ec1e82fSSascha Hauer if (sdmac->word_size > DMA_SLAVE_BUSWIDTH_4_BYTES) { 10671ec1e82fSSascha Hauer ret = -EINVAL; 10681ec1e82fSSascha Hauer goto err_out; 10691ec1e82fSSascha Hauer } 10701fa81c27SSascha Hauer 10711fa81c27SSascha Hauer switch (sdmac->word_size) { 10721fa81c27SSascha Hauer case DMA_SLAVE_BUSWIDTH_4_BYTES: 10731ec1e82fSSascha Hauer bd->mode.command = 0; 10741fa81c27SSascha Hauer if (count & 3 || sg->dma_address & 3) 10751fa81c27SSascha Hauer return NULL; 10761fa81c27SSascha Hauer break; 10771fa81c27SSascha Hauer case DMA_SLAVE_BUSWIDTH_2_BYTES: 10781fa81c27SSascha Hauer bd->mode.command = 2; 10791fa81c27SSascha Hauer if (count & 1 || sg->dma_address & 1) 10801fa81c27SSascha Hauer return NULL; 10811fa81c27SSascha Hauer break; 10821fa81c27SSascha Hauer case DMA_SLAVE_BUSWIDTH_1_BYTE: 10831fa81c27SSascha Hauer bd->mode.command = 1; 10841fa81c27SSascha Hauer break; 10851fa81c27SSascha Hauer default: 10861fa81c27SSascha Hauer return NULL; 10871fa81c27SSascha Hauer } 10881ec1e82fSSascha Hauer 10891ec1e82fSSascha Hauer param = BD_DONE | BD_EXTD | BD_CONT; 10901ec1e82fSSascha Hauer 1091341b9419SShawn Guo if (i + 1 == sg_len) { 10921ec1e82fSSascha Hauer param |= BD_INTR; 1093341b9419SShawn Guo param |= BD_LAST; 1094341b9419SShawn Guo param &= ~BD_CONT; 10951ec1e82fSSascha Hauer } 10961ec1e82fSSascha Hauer 1097c3cc74b2SOlof Johansson dev_dbg(sdma->dev, "entry %d: count: %d dma: %#llx %s%s\n", 1098c3cc74b2SOlof Johansson i, count, (u64)sg->dma_address, 10991ec1e82fSSascha Hauer param & BD_WRAP ? "wrap" : "", 11001ec1e82fSSascha Hauer param & BD_INTR ? " intr" : ""); 11011ec1e82fSSascha Hauer 11021ec1e82fSSascha Hauer bd->mode.status = param; 11031ec1e82fSSascha Hauer } 11041ec1e82fSSascha Hauer 11051ec1e82fSSascha Hauer sdmac->num_bd = sg_len; 11061ec1e82fSSascha Hauer sdma->channel_control[channel].current_bd_ptr = sdmac->bd_phys; 11071ec1e82fSSascha Hauer 11081ec1e82fSSascha Hauer return &sdmac->desc; 11091ec1e82fSSascha Hauer err_out: 11104b2ce9ddSShawn Guo sdmac->status = DMA_ERROR; 11111ec1e82fSSascha Hauer return NULL; 11121ec1e82fSSascha Hauer } 11131ec1e82fSSascha Hauer 11141ec1e82fSSascha Hauer static struct dma_async_tx_descriptor *sdma_prep_dma_cyclic( 11151ec1e82fSSascha Hauer struct dma_chan *chan, dma_addr_t dma_addr, size_t buf_len, 1116185ecb5fSAlexandre Bounine size_t period_len, enum dma_transfer_direction direction, 1117ec8b5e48SPeter Ujfalusi unsigned long flags, void *context) 11181ec1e82fSSascha Hauer { 11191ec1e82fSSascha Hauer struct sdma_channel *sdmac = to_sdma_chan(chan); 11201ec1e82fSSascha Hauer struct sdma_engine *sdma = sdmac->sdma; 11211ec1e82fSSascha Hauer int num_periods = buf_len / period_len; 112223889c63SSascha Hauer int channel = sdmac->channel; 11231ec1e82fSSascha Hauer int ret, i = 0, buf = 0; 11241ec1e82fSSascha Hauer 11251ec1e82fSSascha Hauer dev_dbg(sdma->dev, "%s channel: %d\n", __func__, channel); 11261ec1e82fSSascha Hauer 11271ec1e82fSSascha Hauer if (sdmac->status == DMA_IN_PROGRESS) 11281ec1e82fSSascha Hauer return NULL; 11291ec1e82fSSascha Hauer 11301ec1e82fSSascha Hauer sdmac->status = DMA_IN_PROGRESS; 11311ec1e82fSSascha Hauer 11328e2e27c7SRichard Zhao sdmac->buf_tail = 0; 11338e2e27c7SRichard Zhao 11341ec1e82fSSascha Hauer sdmac->flags |= IMX_DMA_SG_LOOP; 11351ec1e82fSSascha Hauer sdmac->direction = direction; 11361ec1e82fSSascha Hauer ret = sdma_load_context(sdmac); 11371ec1e82fSSascha Hauer if (ret) 11381ec1e82fSSascha Hauer goto err_out; 11391ec1e82fSSascha Hauer 11401ec1e82fSSascha Hauer if (num_periods > NUM_BD) { 11411ec1e82fSSascha Hauer dev_err(sdma->dev, "SDMA channel %d: maximum number of sg exceeded: %d > %d\n", 11421ec1e82fSSascha Hauer channel, num_periods, NUM_BD); 11431ec1e82fSSascha Hauer goto err_out; 11441ec1e82fSSascha Hauer } 11451ec1e82fSSascha Hauer 11461ec1e82fSSascha Hauer if (period_len > 0xffff) { 11471ec1e82fSSascha Hauer dev_err(sdma->dev, "SDMA channel %d: maximum period size exceeded: %d > %d\n", 11481ec1e82fSSascha Hauer channel, period_len, 0xffff); 11491ec1e82fSSascha Hauer goto err_out; 11501ec1e82fSSascha Hauer } 11511ec1e82fSSascha Hauer 11521ec1e82fSSascha Hauer while (buf < buf_len) { 11531ec1e82fSSascha Hauer struct sdma_buffer_descriptor *bd = &sdmac->bd[i]; 11541ec1e82fSSascha Hauer int param; 11551ec1e82fSSascha Hauer 11561ec1e82fSSascha Hauer bd->buffer_addr = dma_addr; 11571ec1e82fSSascha Hauer 11581ec1e82fSSascha Hauer bd->mode.count = period_len; 11591ec1e82fSSascha Hauer 11601ec1e82fSSascha Hauer if (sdmac->word_size > DMA_SLAVE_BUSWIDTH_4_BYTES) 11611ec1e82fSSascha Hauer goto err_out; 11621ec1e82fSSascha Hauer if (sdmac->word_size == DMA_SLAVE_BUSWIDTH_4_BYTES) 11631ec1e82fSSascha Hauer bd->mode.command = 0; 11641ec1e82fSSascha Hauer else 11651ec1e82fSSascha Hauer bd->mode.command = sdmac->word_size; 11661ec1e82fSSascha Hauer 11671ec1e82fSSascha Hauer param = BD_DONE | BD_EXTD | BD_CONT | BD_INTR; 11681ec1e82fSSascha Hauer if (i + 1 == num_periods) 11691ec1e82fSSascha Hauer param |= BD_WRAP; 11701ec1e82fSSascha Hauer 1171c3cc74b2SOlof Johansson dev_dbg(sdma->dev, "entry %d: count: %d dma: %#llx %s%s\n", 1172c3cc74b2SOlof Johansson i, period_len, (u64)dma_addr, 11731ec1e82fSSascha Hauer param & BD_WRAP ? "wrap" : "", 11741ec1e82fSSascha Hauer param & BD_INTR ? " intr" : ""); 11751ec1e82fSSascha Hauer 11761ec1e82fSSascha Hauer bd->mode.status = param; 11771ec1e82fSSascha Hauer 11781ec1e82fSSascha Hauer dma_addr += period_len; 11791ec1e82fSSascha Hauer buf += period_len; 11801ec1e82fSSascha Hauer 11811ec1e82fSSascha Hauer i++; 11821ec1e82fSSascha Hauer } 11831ec1e82fSSascha Hauer 11841ec1e82fSSascha Hauer sdmac->num_bd = num_periods; 11851ec1e82fSSascha Hauer sdma->channel_control[channel].current_bd_ptr = sdmac->bd_phys; 11861ec1e82fSSascha Hauer 11871ec1e82fSSascha Hauer return &sdmac->desc; 11881ec1e82fSSascha Hauer err_out: 11891ec1e82fSSascha Hauer sdmac->status = DMA_ERROR; 11901ec1e82fSSascha Hauer return NULL; 11911ec1e82fSSascha Hauer } 11921ec1e82fSSascha Hauer 11931ec1e82fSSascha Hauer static int sdma_control(struct dma_chan *chan, enum dma_ctrl_cmd cmd, 11941ec1e82fSSascha Hauer unsigned long arg) 11951ec1e82fSSascha Hauer { 11961ec1e82fSSascha Hauer struct sdma_channel *sdmac = to_sdma_chan(chan); 11971ec1e82fSSascha Hauer struct dma_slave_config *dmaengine_cfg = (void *)arg; 11981ec1e82fSSascha Hauer 11991ec1e82fSSascha Hauer switch (cmd) { 12001ec1e82fSSascha Hauer case DMA_TERMINATE_ALL: 12011ec1e82fSSascha Hauer sdma_disable_channel(sdmac); 12021ec1e82fSSascha Hauer return 0; 12031ec1e82fSSascha Hauer case DMA_SLAVE_CONFIG: 1204db8196dfSVinod Koul if (dmaengine_cfg->direction == DMA_DEV_TO_MEM) { 12051ec1e82fSSascha Hauer sdmac->per_address = dmaengine_cfg->src_addr; 120694ac27a5SPhilippe Rétornaz sdmac->watermark_level = dmaengine_cfg->src_maxburst * 120794ac27a5SPhilippe Rétornaz dmaengine_cfg->src_addr_width; 12081ec1e82fSSascha Hauer sdmac->word_size = dmaengine_cfg->src_addr_width; 12091ec1e82fSSascha Hauer } else { 12101ec1e82fSSascha Hauer sdmac->per_address = dmaengine_cfg->dst_addr; 121194ac27a5SPhilippe Rétornaz sdmac->watermark_level = dmaengine_cfg->dst_maxburst * 121294ac27a5SPhilippe Rétornaz dmaengine_cfg->dst_addr_width; 12131ec1e82fSSascha Hauer sdmac->word_size = dmaengine_cfg->dst_addr_width; 12141ec1e82fSSascha Hauer } 1215e6966433SHuang Shijie sdmac->direction = dmaengine_cfg->direction; 12161ec1e82fSSascha Hauer return sdma_config_channel(sdmac); 12171ec1e82fSSascha Hauer default: 12181ec1e82fSSascha Hauer return -ENOSYS; 12191ec1e82fSSascha Hauer } 12201ec1e82fSSascha Hauer 12211ec1e82fSSascha Hauer return -EINVAL; 12221ec1e82fSSascha Hauer } 12231ec1e82fSSascha Hauer 12241ec1e82fSSascha Hauer static enum dma_status sdma_tx_status(struct dma_chan *chan, 12251ec1e82fSSascha Hauer dma_cookie_t cookie, 12261ec1e82fSSascha Hauer struct dma_tx_state *txstate) 12271ec1e82fSSascha Hauer { 12281ec1e82fSSascha Hauer struct sdma_channel *sdmac = to_sdma_chan(chan); 12291ec1e82fSSascha Hauer 1230e8e3a790SAndy Shevchenko dma_set_tx_state(txstate, chan->completed_cookie, chan->cookie, 1231ab59a510SHuang Shijie sdmac->chn_count - sdmac->chn_real_count); 12321ec1e82fSSascha Hauer 12338a965911SShawn Guo return sdmac->status; 12341ec1e82fSSascha Hauer } 12351ec1e82fSSascha Hauer 12361ec1e82fSSascha Hauer static void sdma_issue_pending(struct dma_chan *chan) 12371ec1e82fSSascha Hauer { 12382b4f130eSSascha Hauer struct sdma_channel *sdmac = to_sdma_chan(chan); 12392b4f130eSSascha Hauer struct sdma_engine *sdma = sdmac->sdma; 12402b4f130eSSascha Hauer 12412b4f130eSSascha Hauer if (sdmac->status == DMA_IN_PROGRESS) 12422b4f130eSSascha Hauer sdma_enable_channel(sdma, sdmac->channel); 12431ec1e82fSSascha Hauer } 12441ec1e82fSSascha Hauer 12455b28aa31SSascha Hauer #define SDMA_SCRIPT_ADDRS_ARRAY_SIZE_V1 34 1246cd72b846SNicolin Chen #define SDMA_SCRIPT_ADDRS_ARRAY_SIZE_V2 38 12475b28aa31SSascha Hauer 12485b28aa31SSascha Hauer static void sdma_add_scripts(struct sdma_engine *sdma, 12495b28aa31SSascha Hauer const struct sdma_script_start_addrs *addr) 12505b28aa31SSascha Hauer { 12515b28aa31SSascha Hauer s32 *addr_arr = (u32 *)addr; 12525b28aa31SSascha Hauer s32 *saddr_arr = (u32 *)sdma->script_addrs; 12535b28aa31SSascha Hauer int i; 12545b28aa31SSascha Hauer 1255*70dabaedSNicolin Chen /* use the default firmware in ROM if missing external firmware */ 1256*70dabaedSNicolin Chen if (!sdma->script_number) 1257*70dabaedSNicolin Chen sdma->script_number = SDMA_SCRIPT_ADDRS_ARRAY_SIZE_V1; 1258*70dabaedSNicolin Chen 1259cd72b846SNicolin Chen for (i = 0; i < sdma->script_number; i++) 12605b28aa31SSascha Hauer if (addr_arr[i] > 0) 12615b28aa31SSascha Hauer saddr_arr[i] = addr_arr[i]; 12625b28aa31SSascha Hauer } 12635b28aa31SSascha Hauer 12647b4b88e0SSascha Hauer static void sdma_load_firmware(const struct firmware *fw, void *context) 12655b28aa31SSascha Hauer { 12667b4b88e0SSascha Hauer struct sdma_engine *sdma = context; 12675b28aa31SSascha Hauer const struct sdma_firmware_header *header; 12685b28aa31SSascha Hauer const struct sdma_script_start_addrs *addr; 12695b28aa31SSascha Hauer unsigned short *ram_code; 12705b28aa31SSascha Hauer 12717b4b88e0SSascha Hauer if (!fw) { 12727b4b88e0SSascha Hauer dev_err(sdma->dev, "firmware not found\n"); 12737b4b88e0SSascha Hauer return; 12747b4b88e0SSascha Hauer } 12755b28aa31SSascha Hauer 12765b28aa31SSascha Hauer if (fw->size < sizeof(*header)) 12775b28aa31SSascha Hauer goto err_firmware; 12785b28aa31SSascha Hauer 12795b28aa31SSascha Hauer header = (struct sdma_firmware_header *)fw->data; 12805b28aa31SSascha Hauer 12815b28aa31SSascha Hauer if (header->magic != SDMA_FIRMWARE_MAGIC) 12825b28aa31SSascha Hauer goto err_firmware; 12835b28aa31SSascha Hauer if (header->ram_code_start + header->ram_code_size > fw->size) 12845b28aa31SSascha Hauer goto err_firmware; 1285cd72b846SNicolin Chen switch (header->version_major) { 1286cd72b846SNicolin Chen case 1: 1287cd72b846SNicolin Chen sdma->script_number = SDMA_SCRIPT_ADDRS_ARRAY_SIZE_V1; 1288cd72b846SNicolin Chen break; 1289cd72b846SNicolin Chen case 2: 1290cd72b846SNicolin Chen sdma->script_number = SDMA_SCRIPT_ADDRS_ARRAY_SIZE_V2; 1291cd72b846SNicolin Chen break; 1292cd72b846SNicolin Chen default: 1293cd72b846SNicolin Chen dev_err(sdma->dev, "unknown firmware version\n"); 1294cd72b846SNicolin Chen goto err_firmware; 1295cd72b846SNicolin Chen } 12965b28aa31SSascha Hauer 12975b28aa31SSascha Hauer addr = (void *)header + header->script_addrs_start; 12985b28aa31SSascha Hauer ram_code = (void *)header + header->ram_code_start; 12995b28aa31SSascha Hauer 13007560e3f3SSascha Hauer clk_enable(sdma->clk_ipg); 13017560e3f3SSascha Hauer clk_enable(sdma->clk_ahb); 13025b28aa31SSascha Hauer /* download the RAM image for SDMA */ 13035b28aa31SSascha Hauer sdma_load_script(sdma, ram_code, 13045b28aa31SSascha Hauer header->ram_code_size, 13056866fd3bSSascha Hauer addr->ram_code_start_addr); 13067560e3f3SSascha Hauer clk_disable(sdma->clk_ipg); 13077560e3f3SSascha Hauer clk_disable(sdma->clk_ahb); 13085b28aa31SSascha Hauer 13095b28aa31SSascha Hauer sdma_add_scripts(sdma, addr); 13105b28aa31SSascha Hauer 13115b28aa31SSascha Hauer dev_info(sdma->dev, "loaded firmware %d.%d\n", 13125b28aa31SSascha Hauer header->version_major, 13135b28aa31SSascha Hauer header->version_minor); 13145b28aa31SSascha Hauer 13155b28aa31SSascha Hauer err_firmware: 13165b28aa31SSascha Hauer release_firmware(fw); 13177b4b88e0SSascha Hauer } 13187b4b88e0SSascha Hauer 13197b4b88e0SSascha Hauer static int __init sdma_get_firmware(struct sdma_engine *sdma, 13207b4b88e0SSascha Hauer const char *fw_name) 13217b4b88e0SSascha Hauer { 13227b4b88e0SSascha Hauer int ret; 13237b4b88e0SSascha Hauer 13247b4b88e0SSascha Hauer ret = request_firmware_nowait(THIS_MODULE, 13257b4b88e0SSascha Hauer FW_ACTION_HOTPLUG, fw_name, sdma->dev, 13267b4b88e0SSascha Hauer GFP_KERNEL, sdma, sdma_load_firmware); 13275b28aa31SSascha Hauer 13285b28aa31SSascha Hauer return ret; 13295b28aa31SSascha Hauer } 13305b28aa31SSascha Hauer 13315b28aa31SSascha Hauer static int __init sdma_init(struct sdma_engine *sdma) 13321ec1e82fSSascha Hauer { 13331ec1e82fSSascha Hauer int i, ret; 13341ec1e82fSSascha Hauer dma_addr_t ccb_phys; 13351ec1e82fSSascha Hauer 13367560e3f3SSascha Hauer clk_enable(sdma->clk_ipg); 13377560e3f3SSascha Hauer clk_enable(sdma->clk_ahb); 13381ec1e82fSSascha Hauer 13391ec1e82fSSascha Hauer /* Be sure SDMA has not started yet */ 1340c4b56857SRichard Zhao writel_relaxed(0, sdma->regs + SDMA_H_C0PTR); 13411ec1e82fSSascha Hauer 13421ec1e82fSSascha Hauer sdma->channel_control = dma_alloc_coherent(NULL, 13431ec1e82fSSascha Hauer MAX_DMA_CHANNELS * sizeof (struct sdma_channel_control) + 13441ec1e82fSSascha Hauer sizeof(struct sdma_context_data), 13451ec1e82fSSascha Hauer &ccb_phys, GFP_KERNEL); 13461ec1e82fSSascha Hauer 13471ec1e82fSSascha Hauer if (!sdma->channel_control) { 13481ec1e82fSSascha Hauer ret = -ENOMEM; 13491ec1e82fSSascha Hauer goto err_dma_alloc; 13501ec1e82fSSascha Hauer } 13511ec1e82fSSascha Hauer 13521ec1e82fSSascha Hauer sdma->context = (void *)sdma->channel_control + 13531ec1e82fSSascha Hauer MAX_DMA_CHANNELS * sizeof (struct sdma_channel_control); 13541ec1e82fSSascha Hauer sdma->context_phys = ccb_phys + 13551ec1e82fSSascha Hauer MAX_DMA_CHANNELS * sizeof (struct sdma_channel_control); 13561ec1e82fSSascha Hauer 13571ec1e82fSSascha Hauer /* Zero-out the CCB structures array just allocated */ 13581ec1e82fSSascha Hauer memset(sdma->channel_control, 0, 13591ec1e82fSSascha Hauer MAX_DMA_CHANNELS * sizeof (struct sdma_channel_control)); 13601ec1e82fSSascha Hauer 13611ec1e82fSSascha Hauer /* disable all channels */ 136217bba72fSSascha Hauer for (i = 0; i < sdma->drvdata->num_events; i++) 1363c4b56857SRichard Zhao writel_relaxed(0, sdma->regs + chnenbl_ofs(sdma, i)); 13641ec1e82fSSascha Hauer 13651ec1e82fSSascha Hauer /* All channels have priority 0 */ 13661ec1e82fSSascha Hauer for (i = 0; i < MAX_DMA_CHANNELS; i++) 1367c4b56857SRichard Zhao writel_relaxed(0, sdma->regs + SDMA_CHNPRI_0 + i * 4); 13681ec1e82fSSascha Hauer 13691ec1e82fSSascha Hauer ret = sdma_request_channel(&sdma->channel[0]); 13701ec1e82fSSascha Hauer if (ret) 13711ec1e82fSSascha Hauer goto err_dma_alloc; 13721ec1e82fSSascha Hauer 13731ec1e82fSSascha Hauer sdma_config_ownership(&sdma->channel[0], false, true, false); 13741ec1e82fSSascha Hauer 13751ec1e82fSSascha Hauer /* Set Command Channel (Channel Zero) */ 1376c4b56857SRichard Zhao writel_relaxed(0x4050, sdma->regs + SDMA_CHN0ADDR); 13771ec1e82fSSascha Hauer 13781ec1e82fSSascha Hauer /* Set bits of CONFIG register but with static context switching */ 13791ec1e82fSSascha Hauer /* FIXME: Check whether to set ACR bit depending on clock ratios */ 1380c4b56857SRichard Zhao writel_relaxed(0, sdma->regs + SDMA_H_CONFIG); 13811ec1e82fSSascha Hauer 1382c4b56857SRichard Zhao writel_relaxed(ccb_phys, sdma->regs + SDMA_H_C0PTR); 13831ec1e82fSSascha Hauer 13841ec1e82fSSascha Hauer /* Set bits of CONFIG register with given context switching mode */ 1385c4b56857SRichard Zhao writel_relaxed(SDMA_H_CONFIG_CSM, sdma->regs + SDMA_H_CONFIG); 13861ec1e82fSSascha Hauer 13871ec1e82fSSascha Hauer /* Initializes channel's priorities */ 13881ec1e82fSSascha Hauer sdma_set_channel_priority(&sdma->channel[0], 7); 13891ec1e82fSSascha Hauer 13907560e3f3SSascha Hauer clk_disable(sdma->clk_ipg); 13917560e3f3SSascha Hauer clk_disable(sdma->clk_ahb); 13921ec1e82fSSascha Hauer 13931ec1e82fSSascha Hauer return 0; 13941ec1e82fSSascha Hauer 13951ec1e82fSSascha Hauer err_dma_alloc: 13967560e3f3SSascha Hauer clk_disable(sdma->clk_ipg); 13977560e3f3SSascha Hauer clk_disable(sdma->clk_ahb); 13981ec1e82fSSascha Hauer dev_err(sdma->dev, "initialisation failed with %d\n", ret); 13991ec1e82fSSascha Hauer return ret; 14001ec1e82fSSascha Hauer } 14011ec1e82fSSascha Hauer 14029479e17cSShawn Guo static bool sdma_filter_fn(struct dma_chan *chan, void *fn_param) 14039479e17cSShawn Guo { 14049479e17cSShawn Guo struct imx_dma_data *data = fn_param; 14059479e17cSShawn Guo 14069479e17cSShawn Guo if (!imx_dma_is_general_purpose(chan)) 14079479e17cSShawn Guo return false; 14089479e17cSShawn Guo 14099479e17cSShawn Guo chan->private = data; 14109479e17cSShawn Guo 14119479e17cSShawn Guo return true; 14129479e17cSShawn Guo } 14139479e17cSShawn Guo 14149479e17cSShawn Guo static struct dma_chan *sdma_xlate(struct of_phandle_args *dma_spec, 14159479e17cSShawn Guo struct of_dma *ofdma) 14169479e17cSShawn Guo { 14179479e17cSShawn Guo struct sdma_engine *sdma = ofdma->of_dma_data; 14189479e17cSShawn Guo dma_cap_mask_t mask = sdma->dma_device.cap_mask; 14199479e17cSShawn Guo struct imx_dma_data data; 14209479e17cSShawn Guo 14219479e17cSShawn Guo if (dma_spec->args_count != 3) 14229479e17cSShawn Guo return NULL; 14239479e17cSShawn Guo 14249479e17cSShawn Guo data.dma_request = dma_spec->args[0]; 14259479e17cSShawn Guo data.peripheral_type = dma_spec->args[1]; 14269479e17cSShawn Guo data.priority = dma_spec->args[2]; 14279479e17cSShawn Guo 14289479e17cSShawn Guo return dma_request_channel(mask, sdma_filter_fn, &data); 14299479e17cSShawn Guo } 14309479e17cSShawn Guo 14311ec1e82fSSascha Hauer static int __init sdma_probe(struct platform_device *pdev) 14321ec1e82fSSascha Hauer { 1433580975d7SShawn Guo const struct of_device_id *of_id = 1434580975d7SShawn Guo of_match_device(sdma_dt_ids, &pdev->dev); 1435580975d7SShawn Guo struct device_node *np = pdev->dev.of_node; 1436580975d7SShawn Guo const char *fw_name; 14371ec1e82fSSascha Hauer int ret; 14381ec1e82fSSascha Hauer int irq; 14391ec1e82fSSascha Hauer struct resource *iores; 1440d4adcc01SJingoo Han struct sdma_platform_data *pdata = dev_get_platdata(&pdev->dev); 14411ec1e82fSSascha Hauer int i; 14421ec1e82fSSascha Hauer struct sdma_engine *sdma; 144336e2f21aSSascha Hauer s32 *saddr_arr; 144417bba72fSSascha Hauer const struct sdma_driver_data *drvdata = NULL; 144517bba72fSSascha Hauer 144617bba72fSSascha Hauer if (of_id) 144717bba72fSSascha Hauer drvdata = of_id->data; 144817bba72fSSascha Hauer else if (pdev->id_entry) 144917bba72fSSascha Hauer drvdata = (void *)pdev->id_entry->driver_data; 145017bba72fSSascha Hauer 145117bba72fSSascha Hauer if (!drvdata) { 145217bba72fSSascha Hauer dev_err(&pdev->dev, "unable to find driver data\n"); 145317bba72fSSascha Hauer return -EINVAL; 145417bba72fSSascha Hauer } 14551ec1e82fSSascha Hauer 145642536b9fSPhilippe Retornaz ret = dma_coerce_mask_and_coherent(&pdev->dev, DMA_BIT_MASK(32)); 145742536b9fSPhilippe Retornaz if (ret) 145842536b9fSPhilippe Retornaz return ret; 145942536b9fSPhilippe Retornaz 14601ec1e82fSSascha Hauer sdma = kzalloc(sizeof(*sdma), GFP_KERNEL); 14611ec1e82fSSascha Hauer if (!sdma) 14621ec1e82fSSascha Hauer return -ENOMEM; 14631ec1e82fSSascha Hauer 14642ccaef05SRichard Zhao spin_lock_init(&sdma->channel_0_lock); 146573eab978SSascha Hauer 14661ec1e82fSSascha Hauer sdma->dev = &pdev->dev; 146717bba72fSSascha Hauer sdma->drvdata = drvdata; 14681ec1e82fSSascha Hauer 14691ec1e82fSSascha Hauer iores = platform_get_resource(pdev, IORESOURCE_MEM, 0); 14701ec1e82fSSascha Hauer irq = platform_get_irq(pdev, 0); 1471580975d7SShawn Guo if (!iores || irq < 0) { 14721ec1e82fSSascha Hauer ret = -EINVAL; 14731ec1e82fSSascha Hauer goto err_irq; 14741ec1e82fSSascha Hauer } 14751ec1e82fSSascha Hauer 14761ec1e82fSSascha Hauer if (!request_mem_region(iores->start, resource_size(iores), pdev->name)) { 14771ec1e82fSSascha Hauer ret = -EBUSY; 14781ec1e82fSSascha Hauer goto err_request_region; 14791ec1e82fSSascha Hauer } 14801ec1e82fSSascha Hauer 14817560e3f3SSascha Hauer sdma->clk_ipg = devm_clk_get(&pdev->dev, "ipg"); 14827560e3f3SSascha Hauer if (IS_ERR(sdma->clk_ipg)) { 14837560e3f3SSascha Hauer ret = PTR_ERR(sdma->clk_ipg); 14841ec1e82fSSascha Hauer goto err_clk; 14851ec1e82fSSascha Hauer } 14861ec1e82fSSascha Hauer 14877560e3f3SSascha Hauer sdma->clk_ahb = devm_clk_get(&pdev->dev, "ahb"); 14887560e3f3SSascha Hauer if (IS_ERR(sdma->clk_ahb)) { 14897560e3f3SSascha Hauer ret = PTR_ERR(sdma->clk_ahb); 14907560e3f3SSascha Hauer goto err_clk; 14917560e3f3SSascha Hauer } 14927560e3f3SSascha Hauer 14937560e3f3SSascha Hauer clk_prepare(sdma->clk_ipg); 14947560e3f3SSascha Hauer clk_prepare(sdma->clk_ahb); 14957560e3f3SSascha Hauer 14961ec1e82fSSascha Hauer sdma->regs = ioremap(iores->start, resource_size(iores)); 14971ec1e82fSSascha Hauer if (!sdma->regs) { 14981ec1e82fSSascha Hauer ret = -ENOMEM; 14991ec1e82fSSascha Hauer goto err_ioremap; 15001ec1e82fSSascha Hauer } 15011ec1e82fSSascha Hauer 15021ec1e82fSSascha Hauer ret = request_irq(irq, sdma_int_handler, 0, "sdma", sdma); 15031ec1e82fSSascha Hauer if (ret) 15041ec1e82fSSascha Hauer goto err_request_irq; 15051ec1e82fSSascha Hauer 15065b28aa31SSascha Hauer sdma->script_addrs = kzalloc(sizeof(*sdma->script_addrs), GFP_KERNEL); 15071c1d9547SAxel Lin if (!sdma->script_addrs) { 15081c1d9547SAxel Lin ret = -ENOMEM; 15095b28aa31SSascha Hauer goto err_alloc; 15101c1d9547SAxel Lin } 15111ec1e82fSSascha Hauer 151236e2f21aSSascha Hauer /* initially no scripts available */ 151336e2f21aSSascha Hauer saddr_arr = (s32 *)sdma->script_addrs; 151436e2f21aSSascha Hauer for (i = 0; i < SDMA_SCRIPT_ADDRS_ARRAY_SIZE_V1; i++) 151536e2f21aSSascha Hauer saddr_arr[i] = -EINVAL; 151636e2f21aSSascha Hauer 15177214a8b1SSascha Hauer dma_cap_set(DMA_SLAVE, sdma->dma_device.cap_mask); 15187214a8b1SSascha Hauer dma_cap_set(DMA_CYCLIC, sdma->dma_device.cap_mask); 15197214a8b1SSascha Hauer 15201ec1e82fSSascha Hauer INIT_LIST_HEAD(&sdma->dma_device.channels); 15211ec1e82fSSascha Hauer /* Initialize channel parameters */ 15221ec1e82fSSascha Hauer for (i = 0; i < MAX_DMA_CHANNELS; i++) { 15231ec1e82fSSascha Hauer struct sdma_channel *sdmac = &sdma->channel[i]; 15241ec1e82fSSascha Hauer 15251ec1e82fSSascha Hauer sdmac->sdma = sdma; 15261ec1e82fSSascha Hauer spin_lock_init(&sdmac->lock); 15271ec1e82fSSascha Hauer 15281ec1e82fSSascha Hauer sdmac->chan.device = &sdma->dma_device; 15298ac69546SRussell King - ARM Linux dma_cookie_init(&sdmac->chan); 15301ec1e82fSSascha Hauer sdmac->channel = i; 15311ec1e82fSSascha Hauer 1532abd9ccc8SHuang Shijie tasklet_init(&sdmac->tasklet, sdma_tasklet, 1533abd9ccc8SHuang Shijie (unsigned long) sdmac); 153423889c63SSascha Hauer /* 153523889c63SSascha Hauer * Add the channel to the DMAC list. Do not add channel 0 though 153623889c63SSascha Hauer * because we need it internally in the SDMA driver. This also means 153723889c63SSascha Hauer * that channel 0 in dmaengine counting matches sdma channel 1. 153823889c63SSascha Hauer */ 153923889c63SSascha Hauer if (i) 154023889c63SSascha Hauer list_add_tail(&sdmac->chan.device_node, 154123889c63SSascha Hauer &sdma->dma_device.channels); 15421ec1e82fSSascha Hauer } 15431ec1e82fSSascha Hauer 15445b28aa31SSascha Hauer ret = sdma_init(sdma); 15451ec1e82fSSascha Hauer if (ret) 15461ec1e82fSSascha Hauer goto err_init; 15471ec1e82fSSascha Hauer 1548dcfec3c0SSascha Hauer if (sdma->drvdata->script_addrs) 1549dcfec3c0SSascha Hauer sdma_add_scripts(sdma, sdma->drvdata->script_addrs); 1550580975d7SShawn Guo if (pdata && pdata->script_addrs) 15515b28aa31SSascha Hauer sdma_add_scripts(sdma, pdata->script_addrs); 15525b28aa31SSascha Hauer 1553580975d7SShawn Guo if (pdata) { 15546d0d7e2dSFabio Estevam ret = sdma_get_firmware(sdma, pdata->fw_name); 15556d0d7e2dSFabio Estevam if (ret) 1556ad1122e5SFabio Estevam dev_warn(&pdev->dev, "failed to get firmware from platform data\n"); 1557580975d7SShawn Guo } else { 1558580975d7SShawn Guo /* 1559580975d7SShawn Guo * Because that device tree does not encode ROM script address, 1560580975d7SShawn Guo * the RAM script in firmware is mandatory for device tree 1561580975d7SShawn Guo * probe, otherwise it fails. 1562580975d7SShawn Guo */ 1563580975d7SShawn Guo ret = of_property_read_string(np, "fsl,sdma-ram-script-name", 1564580975d7SShawn Guo &fw_name); 15656602b0ddSFabio Estevam if (ret) 1566ad1122e5SFabio Estevam dev_warn(&pdev->dev, "failed to get firmware name\n"); 15676602b0ddSFabio Estevam else { 1568580975d7SShawn Guo ret = sdma_get_firmware(sdma, fw_name); 15696602b0ddSFabio Estevam if (ret) 1570ad1122e5SFabio Estevam dev_warn(&pdev->dev, "failed to get firmware from device tree\n"); 1571580975d7SShawn Guo } 1572580975d7SShawn Guo } 15735b28aa31SSascha Hauer 15741ec1e82fSSascha Hauer sdma->dma_device.dev = &pdev->dev; 15751ec1e82fSSascha Hauer 15761ec1e82fSSascha Hauer sdma->dma_device.device_alloc_chan_resources = sdma_alloc_chan_resources; 15771ec1e82fSSascha Hauer sdma->dma_device.device_free_chan_resources = sdma_free_chan_resources; 15781ec1e82fSSascha Hauer sdma->dma_device.device_tx_status = sdma_tx_status; 15791ec1e82fSSascha Hauer sdma->dma_device.device_prep_slave_sg = sdma_prep_slave_sg; 15801ec1e82fSSascha Hauer sdma->dma_device.device_prep_dma_cyclic = sdma_prep_dma_cyclic; 15811ec1e82fSSascha Hauer sdma->dma_device.device_control = sdma_control; 15821ec1e82fSSascha Hauer sdma->dma_device.device_issue_pending = sdma_issue_pending; 1583b9b3f82fSSascha Hauer sdma->dma_device.dev->dma_parms = &sdma->dma_parms; 1584b9b3f82fSSascha Hauer dma_set_max_seg_size(sdma->dma_device.dev, 65535); 15851ec1e82fSSascha Hauer 15861ec1e82fSSascha Hauer ret = dma_async_device_register(&sdma->dma_device); 15871ec1e82fSSascha Hauer if (ret) { 15881ec1e82fSSascha Hauer dev_err(&pdev->dev, "unable to register\n"); 15891ec1e82fSSascha Hauer goto err_init; 15901ec1e82fSSascha Hauer } 15911ec1e82fSSascha Hauer 15929479e17cSShawn Guo if (np) { 15939479e17cSShawn Guo ret = of_dma_controller_register(np, sdma_xlate, sdma); 15949479e17cSShawn Guo if (ret) { 15959479e17cSShawn Guo dev_err(&pdev->dev, "failed to register controller\n"); 15969479e17cSShawn Guo goto err_register; 15979479e17cSShawn Guo } 15989479e17cSShawn Guo } 15999479e17cSShawn Guo 16005b28aa31SSascha Hauer dev_info(sdma->dev, "initialized\n"); 16011ec1e82fSSascha Hauer 16021ec1e82fSSascha Hauer return 0; 16031ec1e82fSSascha Hauer 16049479e17cSShawn Guo err_register: 16059479e17cSShawn Guo dma_async_device_unregister(&sdma->dma_device); 16061ec1e82fSSascha Hauer err_init: 16071ec1e82fSSascha Hauer kfree(sdma->script_addrs); 16085b28aa31SSascha Hauer err_alloc: 16091ec1e82fSSascha Hauer free_irq(irq, sdma); 16101ec1e82fSSascha Hauer err_request_irq: 16111ec1e82fSSascha Hauer iounmap(sdma->regs); 16121ec1e82fSSascha Hauer err_ioremap: 16131ec1e82fSSascha Hauer err_clk: 16141ec1e82fSSascha Hauer release_mem_region(iores->start, resource_size(iores)); 16151ec1e82fSSascha Hauer err_request_region: 16161ec1e82fSSascha Hauer err_irq: 16171ec1e82fSSascha Hauer kfree(sdma); 1618939fd4f0SShawn Guo return ret; 16191ec1e82fSSascha Hauer } 16201ec1e82fSSascha Hauer 16211d1bbd30SMaxin B. John static int sdma_remove(struct platform_device *pdev) 16221ec1e82fSSascha Hauer { 16231ec1e82fSSascha Hauer return -EBUSY; 16241ec1e82fSSascha Hauer } 16251ec1e82fSSascha Hauer 16261ec1e82fSSascha Hauer static struct platform_driver sdma_driver = { 16271ec1e82fSSascha Hauer .driver = { 16281ec1e82fSSascha Hauer .name = "imx-sdma", 1629580975d7SShawn Guo .of_match_table = sdma_dt_ids, 16301ec1e82fSSascha Hauer }, 163162550cd7SShawn Guo .id_table = sdma_devtypes, 16321d1bbd30SMaxin B. John .remove = sdma_remove, 16331ec1e82fSSascha Hauer }; 16341ec1e82fSSascha Hauer 16351ec1e82fSSascha Hauer static int __init sdma_module_init(void) 16361ec1e82fSSascha Hauer { 16371ec1e82fSSascha Hauer return platform_driver_probe(&sdma_driver, sdma_probe); 16381ec1e82fSSascha Hauer } 1639c989a7fcSSascha Hauer module_init(sdma_module_init); 16401ec1e82fSSascha Hauer 16411ec1e82fSSascha Hauer MODULE_AUTHOR("Sascha Hauer, Pengutronix <s.hauer@pengutronix.de>"); 16421ec1e82fSSascha Hauer MODULE_DESCRIPTION("i.MX SDMA driver"); 16431ec1e82fSSascha Hauer MODULE_LICENSE("GPL"); 1644