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Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001/*
2 * SH RSPI driver
3 *
Geert Uytterhoeven93722202014-01-24 09:43:58 +01004 * Copyright (C) 2012, 2013 Renesas Solutions Corp.
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +01005 * Copyright (C) 2014 Glider bvba
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09006 *
7 * Based on spi-sh.c:
8 * Copyright (C) 2011 Renesas Solutions Corp.
9 *
10 * This program is free software; you can redistribute it and/or modify
11 * it under the terms of the GNU General Public License as published by
12 * the Free Software Foundation; version 2 of the License.
13 *
14 * This program is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 * GNU General Public License for more details.
18 *
19 * You should have received a copy of the GNU General Public License
20 * along with this program; if not, write to the Free Software
21 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
22 *
23 */
24
25#include <linux/module.h>
26#include <linux/kernel.h>
27#include <linux/sched.h>
28#include <linux/errno.h>
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +090029#include <linux/interrupt.h>
30#include <linux/platform_device.h>
31#include <linux/io.h>
32#include <linux/clk.h>
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +090033#include <linux/dmaengine.h>
34#include <linux/dma-mapping.h>
Geert Uytterhoeven426ef762014-01-28 10:21:38 +010035#include <linux/of_device.h>
Geert Uytterhoeven490c9772014-03-11 10:59:12 +010036#include <linux/pm_runtime.h>
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +090037#include <linux/sh_dma.h>
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +090038#include <linux/spi/spi.h>
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +090039#include <linux/spi/rspi.h>
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +090040
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +010041#define RSPI_SPCR 0x00 /* Control Register */
42#define RSPI_SSLP 0x01 /* Slave Select Polarity Register */
43#define RSPI_SPPCR 0x02 /* Pin Control Register */
44#define RSPI_SPSR 0x03 /* Status Register */
45#define RSPI_SPDR 0x04 /* Data Register */
46#define RSPI_SPSCR 0x08 /* Sequence Control Register */
47#define RSPI_SPSSR 0x09 /* Sequence Status Register */
48#define RSPI_SPBR 0x0a /* Bit Rate Register */
49#define RSPI_SPDCR 0x0b /* Data Control Register */
50#define RSPI_SPCKD 0x0c /* Clock Delay Register */
51#define RSPI_SSLND 0x0d /* Slave Select Negation Delay Register */
52#define RSPI_SPND 0x0e /* Next-Access Delay Register */
Geert Uytterhoeven862d3572014-01-24 09:43:59 +010053#define RSPI_SPCR2 0x0f /* Control Register 2 (SH only) */
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +010054#define RSPI_SPCMD0 0x10 /* Command Register 0 */
55#define RSPI_SPCMD1 0x12 /* Command Register 1 */
56#define RSPI_SPCMD2 0x14 /* Command Register 2 */
57#define RSPI_SPCMD3 0x16 /* Command Register 3 */
58#define RSPI_SPCMD4 0x18 /* Command Register 4 */
59#define RSPI_SPCMD5 0x1a /* Command Register 5 */
60#define RSPI_SPCMD6 0x1c /* Command Register 6 */
61#define RSPI_SPCMD7 0x1e /* Command Register 7 */
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +010062#define RSPI_SPCMD(i) (RSPI_SPCMD0 + (i) * 2)
63#define RSPI_NUM_SPCMD 8
64#define RSPI_RZ_NUM_SPCMD 4
65#define QSPI_NUM_SPCMD 4
Geert Uytterhoeven862d3572014-01-24 09:43:59 +010066
67/* RSPI on RZ only */
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +010068#define RSPI_SPBFCR 0x20 /* Buffer Control Register */
69#define RSPI_SPBFDR 0x22 /* Buffer Data Count Setting Register */
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +090070
Geert Uytterhoeven862d3572014-01-24 09:43:59 +010071/* QSPI only */
Geert Uytterhoevenfbe50722014-01-12 11:27:38 +010072#define QSPI_SPBFCR 0x18 /* Buffer Control Register */
73#define QSPI_SPBDCR 0x1a /* Buffer Data Count Register */
74#define QSPI_SPBMUL0 0x1c /* Transfer Data Length Multiplier Setting Register 0 */
75#define QSPI_SPBMUL1 0x20 /* Transfer Data Length Multiplier Setting Register 1 */
76#define QSPI_SPBMUL2 0x24 /* Transfer Data Length Multiplier Setting Register 2 */
77#define QSPI_SPBMUL3 0x28 /* Transfer Data Length Multiplier Setting Register 3 */
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +010078#define QSPI_SPBMUL(i) (QSPI_SPBMUL0 + (i) * 4)
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +090079
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +010080/* SPCR - Control Register */
81#define SPCR_SPRIE 0x80 /* Receive Interrupt Enable */
82#define SPCR_SPE 0x40 /* Function Enable */
83#define SPCR_SPTIE 0x20 /* Transmit Interrupt Enable */
84#define SPCR_SPEIE 0x10 /* Error Interrupt Enable */
85#define SPCR_MSTR 0x08 /* Master/Slave Mode Select */
86#define SPCR_MODFEN 0x04 /* Mode Fault Error Detection Enable */
87/* RSPI on SH only */
88#define SPCR_TXMD 0x02 /* TX Only Mode (vs. Full Duplex) */
89#define SPCR_SPMS 0x01 /* 3-wire Mode (vs. 4-wire) */
Geert Uytterhoevenfbe50722014-01-12 11:27:38 +010090/* QSPI on R-Car M2 only */
91#define SPCR_WSWAP 0x02 /* Word Swap of read-data for DMAC */
92#define SPCR_BSWAP 0x01 /* Byte Swap of read-data for DMAC */
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +090093
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +010094/* SSLP - Slave Select Polarity Register */
95#define SSLP_SSL1P 0x02 /* SSL1 Signal Polarity Setting */
96#define SSLP_SSL0P 0x01 /* SSL0 Signal Polarity Setting */
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +090097
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +010098/* SPPCR - Pin Control Register */
99#define SPPCR_MOIFE 0x20 /* MOSI Idle Value Fixing Enable */
100#define SPPCR_MOIFV 0x10 /* MOSI Idle Fixed Value */
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900101#define SPPCR_SPOM 0x04
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +0100102#define SPPCR_SPLP2 0x02 /* Loopback Mode 2 (non-inverting) */
103#define SPPCR_SPLP 0x01 /* Loopback Mode (inverting) */
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900104
Geert Uytterhoevenfbe50722014-01-12 11:27:38 +0100105#define SPPCR_IO3FV 0x04 /* Single-/Dual-SPI Mode IO3 Output Fixed Value */
106#define SPPCR_IO2FV 0x04 /* Single-/Dual-SPI Mode IO2 Output Fixed Value */
107
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +0100108/* SPSR - Status Register */
109#define SPSR_SPRF 0x80 /* Receive Buffer Full Flag */
110#define SPSR_TEND 0x40 /* Transmit End */
111#define SPSR_SPTEF 0x20 /* Transmit Buffer Empty Flag */
112#define SPSR_PERF 0x08 /* Parity Error Flag */
113#define SPSR_MODF 0x04 /* Mode Fault Error Flag */
114#define SPSR_IDLNF 0x02 /* RSPI Idle Flag */
Geert Uytterhoeven862d3572014-01-24 09:43:59 +0100115#define SPSR_OVRF 0x01 /* Overrun Error Flag (RSPI only) */
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900116
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +0100117/* SPSCR - Sequence Control Register */
118#define SPSCR_SPSLN_MASK 0x07 /* Sequence Length Specification */
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900119
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +0100120/* SPSSR - Sequence Status Register */
121#define SPSSR_SPECM_MASK 0x70 /* Command Error Mask */
122#define SPSSR_SPCP_MASK 0x07 /* Command Pointer Mask */
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900123
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +0100124/* SPDCR - Data Control Register */
125#define SPDCR_TXDMY 0x80 /* Dummy Data Transmission Enable */
126#define SPDCR_SPLW1 0x40 /* Access Width Specification (RZ) */
127#define SPDCR_SPLW0 0x20 /* Access Width Specification (RZ) */
128#define SPDCR_SPLLWORD (SPDCR_SPLW1 | SPDCR_SPLW0)
129#define SPDCR_SPLWORD SPDCR_SPLW1
130#define SPDCR_SPLBYTE SPDCR_SPLW0
131#define SPDCR_SPLW 0x20 /* Access Width Specification (SH) */
Geert Uytterhoeven862d3572014-01-24 09:43:59 +0100132#define SPDCR_SPRDTD 0x10 /* Receive Transmit Data Select (SH) */
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900133#define SPDCR_SLSEL1 0x08
134#define SPDCR_SLSEL0 0x04
Geert Uytterhoeven862d3572014-01-24 09:43:59 +0100135#define SPDCR_SLSEL_MASK 0x0c /* SSL1 Output Select (SH) */
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900136#define SPDCR_SPFC1 0x02
137#define SPDCR_SPFC0 0x01
Geert Uytterhoeven862d3572014-01-24 09:43:59 +0100138#define SPDCR_SPFC_MASK 0x03 /* Frame Count Setting (1-4) (SH) */
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900139
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +0100140/* SPCKD - Clock Delay Register */
141#define SPCKD_SCKDL_MASK 0x07 /* Clock Delay Setting (1-8) */
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900142
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +0100143/* SSLND - Slave Select Negation Delay Register */
144#define SSLND_SLNDL_MASK 0x07 /* SSL Negation Delay Setting (1-8) */
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900145
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +0100146/* SPND - Next-Access Delay Register */
147#define SPND_SPNDL_MASK 0x07 /* Next-Access Delay Setting (1-8) */
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900148
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +0100149/* SPCR2 - Control Register 2 */
150#define SPCR2_PTE 0x08 /* Parity Self-Test Enable */
151#define SPCR2_SPIE 0x04 /* Idle Interrupt Enable */
152#define SPCR2_SPOE 0x02 /* Odd Parity Enable (vs. Even) */
153#define SPCR2_SPPE 0x01 /* Parity Enable */
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900154
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +0100155/* SPCMDn - Command Registers */
156#define SPCMD_SCKDEN 0x8000 /* Clock Delay Setting Enable */
157#define SPCMD_SLNDEN 0x4000 /* SSL Negation Delay Setting Enable */
158#define SPCMD_SPNDEN 0x2000 /* Next-Access Delay Enable */
159#define SPCMD_LSBF 0x1000 /* LSB First */
160#define SPCMD_SPB_MASK 0x0f00 /* Data Length Setting */
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900161#define SPCMD_SPB_8_TO_16(bit) (((bit - 1) << 8) & SPCMD_SPB_MASK)
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100162#define SPCMD_SPB_8BIT 0x0000 /* QSPI only */
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900163#define SPCMD_SPB_16BIT 0x0100
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900164#define SPCMD_SPB_20BIT 0x0000
165#define SPCMD_SPB_24BIT 0x0100
166#define SPCMD_SPB_32BIT 0x0200
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +0100167#define SPCMD_SSLKP 0x0080 /* SSL Signal Level Keeping */
Geert Uytterhoevenfbe50722014-01-12 11:27:38 +0100168#define SPCMD_SPIMOD_MASK 0x0060 /* SPI Operating Mode (QSPI only) */
169#define SPCMD_SPIMOD1 0x0040
170#define SPCMD_SPIMOD0 0x0020
171#define SPCMD_SPIMOD_SINGLE 0
172#define SPCMD_SPIMOD_DUAL SPCMD_SPIMOD0
173#define SPCMD_SPIMOD_QUAD SPCMD_SPIMOD1
174#define SPCMD_SPRW 0x0010 /* SPI Read/Write Access (Dual/Quad) */
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +0100175#define SPCMD_SSLA_MASK 0x0030 /* SSL Assert Signal Setting (RSPI) */
176#define SPCMD_BRDV_MASK 0x000c /* Bit Rate Division Setting */
177#define SPCMD_CPOL 0x0002 /* Clock Polarity Setting */
178#define SPCMD_CPHA 0x0001 /* Clock Phase Setting */
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900179
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +0100180/* SPBFCR - Buffer Control Register */
Geert Uytterhoeven862d3572014-01-24 09:43:59 +0100181#define SPBFCR_TXRST 0x80 /* Transmit Buffer Data Reset */
182#define SPBFCR_RXRST 0x40 /* Receive Buffer Data Reset */
Geert Uytterhoeven6ab48652014-01-12 11:27:37 +0100183#define SPBFCR_TXTRG_MASK 0x30 /* Transmit Buffer Data Triggering Number */
184#define SPBFCR_RXTRG_MASK 0x07 /* Receive Buffer Data Triggering Number */
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900185
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900186struct rspi_data {
187 void __iomem *addr;
188 u32 max_speed_hz;
189 struct spi_master *master;
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900190 wait_queue_head_t wait;
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900191 struct clk *clk;
Geert Uytterhoeven348e5152014-01-12 11:27:43 +0100192 u16 spcmd;
Geert Uytterhoeven06a7a3c2014-01-24 09:44:00 +0100193 u8 spsr;
194 u8 sppcr;
Geert Uytterhoeven93722202014-01-24 09:43:58 +0100195 int rx_irq, tx_irq;
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900196 const struct spi_ops *ops;
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900197
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900198 unsigned dma_callbacked:1;
Geert Uytterhoeven74da7682014-01-24 09:43:53 +0100199 unsigned byte_access:1;
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900200};
201
Geert Uytterhoevenbaf588f2013-12-24 10:49:32 +0100202static void rspi_write8(const struct rspi_data *rspi, u8 data, u16 offset)
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900203{
204 iowrite8(data, rspi->addr + offset);
205}
206
Geert Uytterhoevenbaf588f2013-12-24 10:49:32 +0100207static void rspi_write16(const struct rspi_data *rspi, u16 data, u16 offset)
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900208{
209 iowrite16(data, rspi->addr + offset);
210}
211
Geert Uytterhoevenbaf588f2013-12-24 10:49:32 +0100212static void rspi_write32(const struct rspi_data *rspi, u32 data, u16 offset)
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900213{
214 iowrite32(data, rspi->addr + offset);
215}
216
Geert Uytterhoevenbaf588f2013-12-24 10:49:32 +0100217static u8 rspi_read8(const struct rspi_data *rspi, u16 offset)
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900218{
219 return ioread8(rspi->addr + offset);
220}
221
Geert Uytterhoevenbaf588f2013-12-24 10:49:32 +0100222static u16 rspi_read16(const struct rspi_data *rspi, u16 offset)
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900223{
224 return ioread16(rspi->addr + offset);
225}
226
Geert Uytterhoeven74da7682014-01-24 09:43:53 +0100227static void rspi_write_data(const struct rspi_data *rspi, u16 data)
228{
229 if (rspi->byte_access)
230 rspi_write8(rspi, data, RSPI_SPDR);
231 else /* 16 bit */
232 rspi_write16(rspi, data, RSPI_SPDR);
233}
234
235static u16 rspi_read_data(const struct rspi_data *rspi)
236{
237 if (rspi->byte_access)
238 return rspi_read8(rspi, RSPI_SPDR);
239 else /* 16 bit */
240 return rspi_read16(rspi, RSPI_SPDR);
241}
242
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900243/* optional functions */
244struct spi_ops {
Geert Uytterhoeven74da7682014-01-24 09:43:53 +0100245 int (*set_config_register)(struct rspi_data *rspi, int access_size);
Geert Uytterhoeveneb557f72014-01-24 09:43:55 +0100246 int (*transfer_one)(struct spi_master *master, struct spi_device *spi,
247 struct spi_transfer *xfer);
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100248 u16 mode_bits;
Geert Uytterhoevenb42e0352014-06-02 15:38:06 +0200249 u16 flags;
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200250 u16 fifo_size;
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900251};
252
253/*
Geert Uytterhoeven862d3572014-01-24 09:43:59 +0100254 * functions for RSPI on legacy SH
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900255 */
Geert Uytterhoeven74da7682014-01-24 09:43:53 +0100256static int rspi_set_config_register(struct rspi_data *rspi, int access_size)
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900257{
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900258 int spbr;
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900259
Geert Uytterhoeven06a7a3c2014-01-24 09:44:00 +0100260 /* Sets output mode, MOSI signal, and (optionally) loopback */
261 rspi_write8(rspi, rspi->sppcr, RSPI_SPPCR);
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900262
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900263 /* Sets transfer bit rate */
Geert Uytterhoeven3beb61d2014-05-22 20:07:35 +0200264 spbr = DIV_ROUND_UP(clk_get_rate(rspi->clk),
265 2 * rspi->max_speed_hz) - 1;
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900266 rspi_write8(rspi, clamp(spbr, 0, 255), RSPI_SPBR);
267
Geert Uytterhoeven74da7682014-01-24 09:43:53 +0100268 /* Disable dummy transmission, set 16-bit word access, 1 frame */
269 rspi_write8(rspi, 0, RSPI_SPDCR);
270 rspi->byte_access = 0;
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900271
272 /* Sets RSPCK, SSL, next-access delay value */
273 rspi_write8(rspi, 0x00, RSPI_SPCKD);
274 rspi_write8(rspi, 0x00, RSPI_SSLND);
275 rspi_write8(rspi, 0x00, RSPI_SPND);
276
277 /* Sets parity, interrupt mask */
278 rspi_write8(rspi, 0x00, RSPI_SPCR2);
279
280 /* Sets SPCMD */
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100281 rspi->spcmd |= SPCMD_SPB_8_TO_16(access_size);
282 rspi_write16(rspi, rspi->spcmd, RSPI_SPCMD0);
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900283
284 /* Sets RSPI mode */
285 rspi_write8(rspi, SPCR_MSTR, RSPI_SPCR);
286
287 return 0;
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900288}
289
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900290/*
Geert Uytterhoeven862d3572014-01-24 09:43:59 +0100291 * functions for RSPI on RZ
292 */
293static int rspi_rz_set_config_register(struct rspi_data *rspi, int access_size)
294{
295 int spbr;
296
Geert Uytterhoeven06a7a3c2014-01-24 09:44:00 +0100297 /* Sets output mode, MOSI signal, and (optionally) loopback */
298 rspi_write8(rspi, rspi->sppcr, RSPI_SPPCR);
Geert Uytterhoeven862d3572014-01-24 09:43:59 +0100299
300 /* Sets transfer bit rate */
Geert Uytterhoeven3beb61d2014-05-22 20:07:35 +0200301 spbr = DIV_ROUND_UP(clk_get_rate(rspi->clk),
302 2 * rspi->max_speed_hz) - 1;
Geert Uytterhoeven862d3572014-01-24 09:43:59 +0100303 rspi_write8(rspi, clamp(spbr, 0, 255), RSPI_SPBR);
304
305 /* Disable dummy transmission, set byte access */
306 rspi_write8(rspi, SPDCR_SPLBYTE, RSPI_SPDCR);
307 rspi->byte_access = 1;
308
309 /* Sets RSPCK, SSL, next-access delay value */
310 rspi_write8(rspi, 0x00, RSPI_SPCKD);
311 rspi_write8(rspi, 0x00, RSPI_SSLND);
312 rspi_write8(rspi, 0x00, RSPI_SPND);
313
314 /* Sets SPCMD */
315 rspi->spcmd |= SPCMD_SPB_8_TO_16(access_size);
316 rspi_write16(rspi, rspi->spcmd, RSPI_SPCMD0);
317
318 /* Sets RSPI mode */
319 rspi_write8(rspi, SPCR_MSTR, RSPI_SPCR);
320
321 return 0;
322}
323
324/*
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900325 * functions for QSPI
326 */
Geert Uytterhoeven74da7682014-01-24 09:43:53 +0100327static int qspi_set_config_register(struct rspi_data *rspi, int access_size)
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900328{
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900329 int spbr;
330
Geert Uytterhoeven06a7a3c2014-01-24 09:44:00 +0100331 /* Sets output mode, MOSI signal, and (optionally) loopback */
332 rspi_write8(rspi, rspi->sppcr, RSPI_SPPCR);
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900333
334 /* Sets transfer bit rate */
Geert Uytterhoeven3beb61d2014-05-22 20:07:35 +0200335 spbr = DIV_ROUND_UP(clk_get_rate(rspi->clk), 2 * rspi->max_speed_hz);
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900336 rspi_write8(rspi, clamp(spbr, 0, 255), RSPI_SPBR);
337
Geert Uytterhoeven74da7682014-01-24 09:43:53 +0100338 /* Disable dummy transmission, set byte access */
339 rspi_write8(rspi, 0, RSPI_SPDCR);
340 rspi->byte_access = 1;
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900341
342 /* Sets RSPCK, SSL, next-access delay value */
343 rspi_write8(rspi, 0x00, RSPI_SPCKD);
344 rspi_write8(rspi, 0x00, RSPI_SSLND);
345 rspi_write8(rspi, 0x00, RSPI_SPND);
346
347 /* Data Length Setting */
348 if (access_size == 8)
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100349 rspi->spcmd |= SPCMD_SPB_8BIT;
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900350 else if (access_size == 16)
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100351 rspi->spcmd |= SPCMD_SPB_16BIT;
Laurent Pinchart8e1c8092013-11-27 01:41:44 +0100352 else
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100353 rspi->spcmd |= SPCMD_SPB_32BIT;
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900354
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100355 rspi->spcmd |= SPCMD_SCKDEN | SPCMD_SLNDEN | SPCMD_SPNDEN;
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900356
357 /* Resets transfer data length */
358 rspi_write32(rspi, 0, QSPI_SPBMUL0);
359
360 /* Resets transmit and receive buffer */
361 rspi_write8(rspi, SPBFCR_TXRST | SPBFCR_RXRST, QSPI_SPBFCR);
362 /* Sets buffer to allow normal operation */
363 rspi_write8(rspi, 0x00, QSPI_SPBFCR);
364
365 /* Sets SPCMD */
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100366 rspi_write16(rspi, rspi->spcmd, RSPI_SPCMD0);
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900367
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100368 /* Enables SPI function in master mode */
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900369 rspi_write8(rspi, SPCR_SPE | SPCR_MSTR, RSPI_SPCR);
370
371 return 0;
372}
373
374#define set_config_register(spi, n) spi->ops->set_config_register(spi, n)
375
Geert Uytterhoevenbaf588f2013-12-24 10:49:32 +0100376static void rspi_enable_irq(const struct rspi_data *rspi, u8 enable)
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900377{
378 rspi_write8(rspi, rspi_read8(rspi, RSPI_SPCR) | enable, RSPI_SPCR);
379}
380
Geert Uytterhoevenbaf588f2013-12-24 10:49:32 +0100381static void rspi_disable_irq(const struct rspi_data *rspi, u8 disable)
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900382{
383 rspi_write8(rspi, rspi_read8(rspi, RSPI_SPCR) & ~disable, RSPI_SPCR);
384}
385
386static int rspi_wait_for_interrupt(struct rspi_data *rspi, u8 wait_mask,
387 u8 enable_bit)
388{
389 int ret;
390
391 rspi->spsr = rspi_read8(rspi, RSPI_SPSR);
Geert Uytterhoeven5dd1ad22014-02-04 11:06:24 +0100392 if (rspi->spsr & wait_mask)
393 return 0;
394
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900395 rspi_enable_irq(rspi, enable_bit);
396 ret = wait_event_timeout(rspi->wait, rspi->spsr & wait_mask, HZ);
397 if (ret == 0 && !(rspi->spsr & wait_mask))
398 return -ETIMEDOUT;
399
400 return 0;
401}
402
Geert Uytterhoeven5f684c32014-06-02 15:38:03 +0200403static inline int rspi_wait_for_tx_empty(struct rspi_data *rspi)
404{
405 return rspi_wait_for_interrupt(rspi, SPSR_SPTEF, SPCR_SPTIE);
406}
407
408static inline int rspi_wait_for_rx_full(struct rspi_data *rspi)
409{
410 return rspi_wait_for_interrupt(rspi, SPSR_SPRF, SPCR_SPRIE);
411}
412
Geert Uytterhoeven35301c92014-01-24 09:43:54 +0100413static int rspi_data_out(struct rspi_data *rspi, u8 data)
414{
Geert Uytterhoeven5f684c32014-06-02 15:38:03 +0200415 int error = rspi_wait_for_tx_empty(rspi);
416 if (error < 0) {
Geert Uytterhoeven35301c92014-01-24 09:43:54 +0100417 dev_err(&rspi->master->dev, "transmit timeout\n");
Geert Uytterhoeven5f684c32014-06-02 15:38:03 +0200418 return error;
Geert Uytterhoeven35301c92014-01-24 09:43:54 +0100419 }
420 rspi_write_data(rspi, data);
421 return 0;
422}
423
424static int rspi_data_in(struct rspi_data *rspi)
425{
Geert Uytterhoeven5f684c32014-06-02 15:38:03 +0200426 int error;
Geert Uytterhoeven35301c92014-01-24 09:43:54 +0100427 u8 data;
428
Geert Uytterhoeven5f684c32014-06-02 15:38:03 +0200429 error = rspi_wait_for_rx_full(rspi);
430 if (error < 0) {
Geert Uytterhoeven35301c92014-01-24 09:43:54 +0100431 dev_err(&rspi->master->dev, "receive timeout\n");
Geert Uytterhoeven5f684c32014-06-02 15:38:03 +0200432 return error;
Geert Uytterhoeven35301c92014-01-24 09:43:54 +0100433 }
434 data = rspi_read_data(rspi);
435 return data;
436}
437
Geert Uytterhoeven6837b8e2014-06-02 15:38:07 +0200438static int rspi_pio_transfer(struct rspi_data *rspi, const u8 *tx, u8 *rx,
439 unsigned int n)
Geert Uytterhoeven35301c92014-01-24 09:43:54 +0100440{
Geert Uytterhoeven6837b8e2014-06-02 15:38:07 +0200441 while (n-- > 0) {
442 if (tx) {
443 int ret = rspi_data_out(rspi, *tx++);
444 if (ret < 0)
445 return ret;
446 }
447 if (rx) {
448 int ret = rspi_data_in(rspi);
449 if (ret < 0)
450 return ret;
451 *rx++ = ret;
452 }
453 }
Geert Uytterhoeven35301c92014-01-24 09:43:54 +0100454
Geert Uytterhoeven6837b8e2014-06-02 15:38:07 +0200455 return 0;
Geert Uytterhoeven35301c92014-01-24 09:43:54 +0100456}
457
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900458static void rspi_dma_complete(void *arg)
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900459{
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900460 struct rspi_data *rspi = arg;
461
462 rspi->dma_callbacked = 1;
463 wake_up_interruptible(&rspi->wait);
464}
465
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900466static int rspi_send_dma(struct rspi_data *rspi, struct spi_transfer *t)
467{
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900468 struct dma_async_tx_descriptor *desc;
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200469 int ret;
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900470
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200471 desc = dmaengine_prep_slave_sg(rspi->master->dma_tx, t->tx_sg.sgl,
472 t->tx_sg.nents, DMA_TO_DEVICE,
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900473 DMA_PREP_INTERRUPT | DMA_CTRL_ACK);
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200474 if (!desc)
475 return -EIO;
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900476
477 /*
478 * DMAC needs SPTIE, but if SPTIE is set, this IRQ routine will be
479 * called. So, this driver disables the IRQ while DMA transfer.
480 */
Geert Uytterhoeven93722202014-01-24 09:43:58 +0100481 disable_irq(rspi->tx_irq);
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900482
483 rspi_write8(rspi, rspi_read8(rspi, RSPI_SPCR) | SPCR_TXMD, RSPI_SPCR);
484 rspi_enable_irq(rspi, SPCR_SPTIE);
485 rspi->dma_callbacked = 0;
486
487 desc->callback = rspi_dma_complete;
488 desc->callback_param = rspi;
489 dmaengine_submit(desc);
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200490 dma_async_issue_pending(rspi->master->dma_tx);
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900491
492 ret = wait_event_interruptible_timeout(rspi->wait,
493 rspi->dma_callbacked, HZ);
494 if (ret > 0 && rspi->dma_callbacked)
495 ret = 0;
496 else if (!ret)
497 ret = -ETIMEDOUT;
498 rspi_disable_irq(rspi, SPCR_SPTIE);
499
Geert Uytterhoeven93722202014-01-24 09:43:58 +0100500 enable_irq(rspi->tx_irq);
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900501 return ret;
502}
503
Geert Uytterhoevenbaf588f2013-12-24 10:49:32 +0100504static void rspi_receive_init(const struct rspi_data *rspi)
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900505{
Geert Uytterhoeven97b95c12013-12-24 10:49:34 +0100506 u8 spsr;
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900507
508 spsr = rspi_read8(rspi, RSPI_SPSR);
509 if (spsr & SPSR_SPRF)
Geert Uytterhoeven74da7682014-01-24 09:43:53 +0100510 rspi_read_data(rspi); /* dummy read */
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900511 if (spsr & SPSR_OVRF)
512 rspi_write8(rspi, rspi_read8(rspi, RSPI_SPSR) & ~SPSR_OVRF,
Geert Uytterhoevendf900e62013-12-23 19:34:24 +0100513 RSPI_SPSR);
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900514}
515
Geert Uytterhoeven862d3572014-01-24 09:43:59 +0100516static void rspi_rz_receive_init(const struct rspi_data *rspi)
517{
518 rspi_receive_init(rspi);
519 rspi_write8(rspi, SPBFCR_TXRST | SPBFCR_RXRST, RSPI_SPBFCR);
520 rspi_write8(rspi, 0, RSPI_SPBFCR);
521}
522
Geert Uytterhoevenbaf588f2013-12-24 10:49:32 +0100523static void qspi_receive_init(const struct rspi_data *rspi)
Hiep Cao Minhcb52c672013-10-10 17:14:03 +0900524{
Geert Uytterhoeven97b95c12013-12-24 10:49:34 +0100525 u8 spsr;
Hiep Cao Minhcb52c672013-10-10 17:14:03 +0900526
527 spsr = rspi_read8(rspi, RSPI_SPSR);
528 if (spsr & SPSR_SPRF)
Geert Uytterhoeven74da7682014-01-24 09:43:53 +0100529 rspi_read_data(rspi); /* dummy read */
Hiep Cao Minhcb52c672013-10-10 17:14:03 +0900530 rspi_write8(rspi, SPBFCR_TXRST | SPBFCR_RXRST, QSPI_SPBFCR);
Geert Uytterhoeven340a15e2014-01-24 09:43:57 +0100531 rspi_write8(rspi, 0, QSPI_SPBFCR);
Hiep Cao Minhcb52c672013-10-10 17:14:03 +0900532}
533
Geert Uytterhoevenb42e0352014-06-02 15:38:06 +0200534static int rspi_send_receive_dma(struct rspi_data *rspi, struct spi_transfer *t)
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900535{
Geert Uytterhoevenb42e0352014-06-02 15:38:06 +0200536 struct dma_async_tx_descriptor *desc_tx, *desc_rx;
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200537 int ret;
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900538
Geert Uytterhoevenb42e0352014-06-02 15:38:06 +0200539 /* prepare transmit transfer */
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200540 desc_tx = dmaengine_prep_slave_sg(rspi->master->dma_tx, t->tx_sg.sgl,
541 t->tx_sg.nents, DMA_TO_DEVICE,
542 DMA_PREP_INTERRUPT | DMA_CTRL_ACK);
543 if (!desc_tx)
544 return -EIO;
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900545
546 /* prepare receive transfer */
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200547 desc_rx = dmaengine_prep_slave_sg(rspi->master->dma_rx, t->rx_sg.sgl,
548 t->rx_sg.nents, DMA_FROM_DEVICE,
Geert Uytterhoevenb42e0352014-06-02 15:38:06 +0200549 DMA_PREP_INTERRUPT | DMA_CTRL_ACK);
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200550 if (!desc_rx)
551 return -EIO;
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900552
553 rspi_receive_init(rspi);
554
555 /*
556 * DMAC needs SPTIE, but if SPTIE is set, this IRQ routine will be
557 * called. So, this driver disables the IRQ while DMA transfer.
558 */
Geert Uytterhoeven93722202014-01-24 09:43:58 +0100559 disable_irq(rspi->tx_irq);
560 if (rspi->rx_irq != rspi->tx_irq)
561 disable_irq(rspi->rx_irq);
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900562
563 rspi_write8(rspi, rspi_read8(rspi, RSPI_SPCR) & ~SPCR_TXMD, RSPI_SPCR);
564 rspi_enable_irq(rspi, SPCR_SPTIE | SPCR_SPRIE);
565 rspi->dma_callbacked = 0;
566
Geert Uytterhoevenb42e0352014-06-02 15:38:06 +0200567 desc_rx->callback = rspi_dma_complete;
568 desc_rx->callback_param = rspi;
569 dmaengine_submit(desc_rx);
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200570 dma_async_issue_pending(rspi->master->dma_rx);
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900571
Geert Uytterhoevenb42e0352014-06-02 15:38:06 +0200572 desc_tx->callback = NULL; /* No callback */
573 dmaengine_submit(desc_tx);
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200574 dma_async_issue_pending(rspi->master->dma_tx);
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900575
576 ret = wait_event_interruptible_timeout(rspi->wait,
577 rspi->dma_callbacked, HZ);
578 if (ret > 0 && rspi->dma_callbacked)
579 ret = 0;
580 else if (!ret)
581 ret = -ETIMEDOUT;
582 rspi_disable_irq(rspi, SPCR_SPTIE | SPCR_SPRIE);
583
Geert Uytterhoeven93722202014-01-24 09:43:58 +0100584 enable_irq(rspi->tx_irq);
585 if (rspi->rx_irq != rspi->tx_irq)
586 enable_irq(rspi->rx_irq);
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900587
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900588 return ret;
589}
590
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200591static bool __rspi_can_dma(const struct rspi_data *rspi,
592 const struct spi_transfer *xfer)
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900593{
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200594 return xfer->len > rspi->ops->fifo_size;
595}
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900596
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200597static bool rspi_can_dma(struct spi_master *master, struct spi_device *spi,
598 struct spi_transfer *xfer)
599{
600 struct rspi_data *rspi = spi_master_get_devdata(master);
601
602 return __rspi_can_dma(rspi, xfer);
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900603}
604
Geert Uytterhoeven8449fd72014-01-24 09:43:56 +0100605static int rspi_transfer_out_in(struct rspi_data *rspi,
606 struct spi_transfer *xfer)
607{
Geert Uytterhoevenb42e0352014-06-02 15:38:06 +0200608 u8 spcr;
Geert Uytterhoeven6837b8e2014-06-02 15:38:07 +0200609 int ret;
Geert Uytterhoeven8449fd72014-01-24 09:43:56 +0100610
Geert Uytterhoeven8449fd72014-01-24 09:43:56 +0100611 spcr = rspi_read8(rspi, RSPI_SPCR);
Geert Uytterhoeven6837b8e2014-06-02 15:38:07 +0200612 if (xfer->rx_buf) {
Geert Uytterhoeven32c64262014-06-02 15:38:04 +0200613 rspi_receive_init(rspi);
Geert Uytterhoeven8449fd72014-01-24 09:43:56 +0100614 spcr &= ~SPCR_TXMD;
Geert Uytterhoeven32c64262014-06-02 15:38:04 +0200615 } else {
Geert Uytterhoeven8449fd72014-01-24 09:43:56 +0100616 spcr |= SPCR_TXMD;
Geert Uytterhoeven32c64262014-06-02 15:38:04 +0200617 }
Geert Uytterhoeven8449fd72014-01-24 09:43:56 +0100618 rspi_write8(rspi, spcr, RSPI_SPCR);
619
Geert Uytterhoeven6837b8e2014-06-02 15:38:07 +0200620 ret = rspi_pio_transfer(rspi, xfer->tx_buf, xfer->rx_buf, xfer->len);
621 if (ret < 0)
622 return ret;
Geert Uytterhoeven8449fd72014-01-24 09:43:56 +0100623
624 /* Wait for the last transmission */
Geert Uytterhoeven5f684c32014-06-02 15:38:03 +0200625 rspi_wait_for_tx_empty(rspi);
Geert Uytterhoeven8449fd72014-01-24 09:43:56 +0100626
627 return 0;
628}
629
Geert Uytterhoeven79d23492014-01-24 09:43:52 +0100630static int rspi_transfer_one(struct spi_master *master, struct spi_device *spi,
631 struct spi_transfer *xfer)
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900632{
Geert Uytterhoeven79d23492014-01-24 09:43:52 +0100633 struct rspi_data *rspi = spi_master_get_devdata(master);
Geert Uytterhoeven8449fd72014-01-24 09:43:56 +0100634
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200635 if (!master->can_dma || !__rspi_can_dma(rspi, xfer))
Geert Uytterhoeven8449fd72014-01-24 09:43:56 +0100636 return rspi_transfer_out_in(rspi, xfer);
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900637
Geert Uytterhoeven8449fd72014-01-24 09:43:56 +0100638 if (xfer->rx_buf)
Geert Uytterhoevenb42e0352014-06-02 15:38:06 +0200639 return rspi_send_receive_dma(rspi, xfer);
640 else
641 return rspi_send_dma(rspi, xfer);
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900642}
643
Geert Uytterhoeven862d3572014-01-24 09:43:59 +0100644static int rspi_rz_transfer_out_in(struct rspi_data *rspi,
645 struct spi_transfer *xfer)
646{
Geert Uytterhoeven6837b8e2014-06-02 15:38:07 +0200647 int ret;
Geert Uytterhoeven862d3572014-01-24 09:43:59 +0100648
649 rspi_rz_receive_init(rspi);
650
Geert Uytterhoeven6837b8e2014-06-02 15:38:07 +0200651 ret = rspi_pio_transfer(rspi, xfer->tx_buf, xfer->rx_buf, xfer->len);
652 if (ret < 0)
653 return ret;
Geert Uytterhoeven862d3572014-01-24 09:43:59 +0100654
655 /* Wait for the last transmission */
Geert Uytterhoeven5f684c32014-06-02 15:38:03 +0200656 rspi_wait_for_tx_empty(rspi);
Geert Uytterhoeven862d3572014-01-24 09:43:59 +0100657
658 return 0;
659}
660
661static int rspi_rz_transfer_one(struct spi_master *master,
662 struct spi_device *spi,
663 struct spi_transfer *xfer)
664{
665 struct rspi_data *rspi = spi_master_get_devdata(master);
666
667 return rspi_rz_transfer_out_in(rspi, xfer);
668}
669
Geert Uytterhoeven340a15e2014-01-24 09:43:57 +0100670static int qspi_transfer_out_in(struct rspi_data *rspi,
671 struct spi_transfer *xfer)
672{
Geert Uytterhoeven6837b8e2014-06-02 15:38:07 +0200673 int ret;
Geert Uytterhoeven340a15e2014-01-24 09:43:57 +0100674
675 qspi_receive_init(rspi);
676
Geert Uytterhoeven6837b8e2014-06-02 15:38:07 +0200677 ret = rspi_pio_transfer(rspi, xfer->tx_buf, xfer->rx_buf, xfer->len);
678 if (ret < 0)
679 return ret;
Geert Uytterhoeven340a15e2014-01-24 09:43:57 +0100680
681 /* Wait for the last transmission */
Geert Uytterhoeven5f684c32014-06-02 15:38:03 +0200682 rspi_wait_for_tx_empty(rspi);
Geert Uytterhoeven340a15e2014-01-24 09:43:57 +0100683
684 return 0;
685}
686
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100687static int qspi_transfer_out(struct rspi_data *rspi, struct spi_transfer *xfer)
688{
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100689 int ret;
690
Geert Uytterhoeven6837b8e2014-06-02 15:38:07 +0200691 ret = rspi_pio_transfer(rspi, xfer->tx_buf, NULL, xfer->len);
692 if (ret < 0)
693 return ret;
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100694
695 /* Wait for the last transmission */
Geert Uytterhoeven5f684c32014-06-02 15:38:03 +0200696 rspi_wait_for_tx_empty(rspi);
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100697
698 return 0;
699}
700
701static int qspi_transfer_in(struct rspi_data *rspi, struct spi_transfer *xfer)
702{
Geert Uytterhoeven6837b8e2014-06-02 15:38:07 +0200703 return rspi_pio_transfer(rspi, NULL, xfer->rx_buf, xfer->len);
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100704}
705
Geert Uytterhoeveneb557f72014-01-24 09:43:55 +0100706static int qspi_transfer_one(struct spi_master *master, struct spi_device *spi,
707 struct spi_transfer *xfer)
708{
709 struct rspi_data *rspi = spi_master_get_devdata(master);
Geert Uytterhoeveneb557f72014-01-24 09:43:55 +0100710
Geert Uytterhoevenba824d42014-02-21 17:29:18 +0100711 if (spi->mode & SPI_LOOP) {
712 return qspi_transfer_out_in(rspi, xfer);
Geert Uytterhoevenb42e0352014-06-02 15:38:06 +0200713 } else if (xfer->tx_nbits > SPI_NBITS_SINGLE) {
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100714 /* Quad or Dual SPI Write */
715 return qspi_transfer_out(rspi, xfer);
Geert Uytterhoevenb42e0352014-06-02 15:38:06 +0200716 } else if (xfer->rx_nbits > SPI_NBITS_SINGLE) {
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100717 /* Quad or Dual SPI Read */
718 return qspi_transfer_in(rspi, xfer);
719 } else {
720 /* Single SPI Transfer */
721 return qspi_transfer_out_in(rspi, xfer);
722 }
Geert Uytterhoeveneb557f72014-01-24 09:43:55 +0100723}
724
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900725static int rspi_setup(struct spi_device *spi)
726{
727 struct rspi_data *rspi = spi_master_get_devdata(spi->master);
728
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900729 rspi->max_speed_hz = spi->max_speed_hz;
730
Geert Uytterhoeven348e5152014-01-12 11:27:43 +0100731 rspi->spcmd = SPCMD_SSLKP;
732 if (spi->mode & SPI_CPOL)
733 rspi->spcmd |= SPCMD_CPOL;
734 if (spi->mode & SPI_CPHA)
735 rspi->spcmd |= SPCMD_CPHA;
736
Geert Uytterhoeven06a7a3c2014-01-24 09:44:00 +0100737 /* CMOS output mode and MOSI signal from previous transfer */
738 rspi->sppcr = 0;
739 if (spi->mode & SPI_LOOP)
740 rspi->sppcr |= SPPCR_SPLP;
741
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +0900742 set_config_register(rspi, 8);
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900743
744 return 0;
745}
746
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100747static u16 qspi_transfer_mode(const struct spi_transfer *xfer)
748{
749 if (xfer->tx_buf)
750 switch (xfer->tx_nbits) {
751 case SPI_NBITS_QUAD:
752 return SPCMD_SPIMOD_QUAD;
753 case SPI_NBITS_DUAL:
754 return SPCMD_SPIMOD_DUAL;
755 default:
756 return 0;
757 }
758 if (xfer->rx_buf)
759 switch (xfer->rx_nbits) {
760 case SPI_NBITS_QUAD:
761 return SPCMD_SPIMOD_QUAD | SPCMD_SPRW;
762 case SPI_NBITS_DUAL:
763 return SPCMD_SPIMOD_DUAL | SPCMD_SPRW;
764 default:
765 return 0;
766 }
767
768 return 0;
769}
770
771static int qspi_setup_sequencer(struct rspi_data *rspi,
772 const struct spi_message *msg)
773{
774 const struct spi_transfer *xfer;
775 unsigned int i = 0, len = 0;
776 u16 current_mode = 0xffff, mode;
777
778 list_for_each_entry(xfer, &msg->transfers, transfer_list) {
779 mode = qspi_transfer_mode(xfer);
780 if (mode == current_mode) {
781 len += xfer->len;
782 continue;
783 }
784
785 /* Transfer mode change */
786 if (i) {
787 /* Set transfer data length of previous transfer */
788 rspi_write32(rspi, len, QSPI_SPBMUL(i - 1));
789 }
790
791 if (i >= QSPI_NUM_SPCMD) {
792 dev_err(&msg->spi->dev,
793 "Too many different transfer modes");
794 return -EINVAL;
795 }
796
797 /* Program transfer mode for this transfer */
798 rspi_write16(rspi, rspi->spcmd | mode, RSPI_SPCMD(i));
799 current_mode = mode;
800 len = xfer->len;
801 i++;
802 }
803 if (i) {
804 /* Set final transfer data length and sequence length */
805 rspi_write32(rspi, len, QSPI_SPBMUL(i - 1));
806 rspi_write8(rspi, i - 1, RSPI_SPSCR);
807 }
808
809 return 0;
810}
811
Geert Uytterhoeven79d23492014-01-24 09:43:52 +0100812static int rspi_prepare_message(struct spi_master *master,
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100813 struct spi_message *msg)
Geert Uytterhoeven79d23492014-01-24 09:43:52 +0100814{
815 struct rspi_data *rspi = spi_master_get_devdata(master);
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100816 int ret;
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900817
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100818 if (msg->spi->mode &
819 (SPI_TX_DUAL | SPI_TX_QUAD | SPI_RX_DUAL | SPI_RX_QUAD)) {
820 /* Setup sequencer for messages with multiple transfer modes */
821 ret = qspi_setup_sequencer(rspi, msg);
822 if (ret < 0)
823 return ret;
824 }
825
826 /* Enable SPI function in master mode */
Geert Uytterhoeven79d23492014-01-24 09:43:52 +0100827 rspi_write8(rspi, rspi_read8(rspi, RSPI_SPCR) | SPCR_SPE, RSPI_SPCR);
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900828 return 0;
829}
830
Geert Uytterhoeven79d23492014-01-24 09:43:52 +0100831static int rspi_unprepare_message(struct spi_master *master,
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100832 struct spi_message *msg)
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900833{
Geert Uytterhoeven79d23492014-01-24 09:43:52 +0100834 struct rspi_data *rspi = spi_master_get_devdata(master);
835
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100836 /* Disable SPI function */
Geert Uytterhoeven79d23492014-01-24 09:43:52 +0100837 rspi_write8(rspi, rspi_read8(rspi, RSPI_SPCR) & ~SPCR_SPE, RSPI_SPCR);
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +0100838
839 /* Reset sequencer for Single SPI Transfers */
840 rspi_write16(rspi, rspi->spcmd, RSPI_SPCMD0);
841 rspi_write8(rspi, 0, RSPI_SPSCR);
Geert Uytterhoeven79d23492014-01-24 09:43:52 +0100842 return 0;
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900843}
844
Geert Uytterhoeven93722202014-01-24 09:43:58 +0100845static irqreturn_t rspi_irq_mux(int irq, void *_sr)
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900846{
Geert Uytterhoevenc132f092013-12-24 10:49:31 +0100847 struct rspi_data *rspi = _sr;
Geert Uytterhoeven97b95c12013-12-24 10:49:34 +0100848 u8 spsr;
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900849 irqreturn_t ret = IRQ_NONE;
Geert Uytterhoeven97b95c12013-12-24 10:49:34 +0100850 u8 disable_irq = 0;
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900851
852 rspi->spsr = spsr = rspi_read8(rspi, RSPI_SPSR);
853 if (spsr & SPSR_SPRF)
854 disable_irq |= SPCR_SPRIE;
855 if (spsr & SPSR_SPTEF)
856 disable_irq |= SPCR_SPTIE;
857
858 if (disable_irq) {
859 ret = IRQ_HANDLED;
860 rspi_disable_irq(rspi, disable_irq);
861 wake_up(&rspi->wait);
862 }
863
864 return ret;
865}
866
Geert Uytterhoeven93722202014-01-24 09:43:58 +0100867static irqreturn_t rspi_irq_rx(int irq, void *_sr)
868{
869 struct rspi_data *rspi = _sr;
870 u8 spsr;
871
872 rspi->spsr = spsr = rspi_read8(rspi, RSPI_SPSR);
873 if (spsr & SPSR_SPRF) {
874 rspi_disable_irq(rspi, SPCR_SPRIE);
875 wake_up(&rspi->wait);
876 return IRQ_HANDLED;
877 }
878
879 return 0;
880}
881
882static irqreturn_t rspi_irq_tx(int irq, void *_sr)
883{
884 struct rspi_data *rspi = _sr;
885 u8 spsr;
886
887 rspi->spsr = spsr = rspi_read8(rspi, RSPI_SPSR);
888 if (spsr & SPSR_SPTEF) {
889 rspi_disable_irq(rspi, SPCR_SPTIE);
890 wake_up(&rspi->wait);
891 return IRQ_HANDLED;
892 }
893
894 return 0;
895}
896
Geert Uytterhoeven65bf2202014-06-02 15:38:09 +0200897static struct dma_chan *rspi_request_dma_chan(struct device *dev,
898 enum dma_transfer_direction dir,
899 unsigned int id,
900 dma_addr_t port_addr)
901{
902 dma_cap_mask_t mask;
903 struct dma_chan *chan;
904 struct dma_slave_config cfg;
905 int ret;
906
907 dma_cap_zero(mask);
908 dma_cap_set(DMA_SLAVE, mask);
909
910 chan = dma_request_channel(mask, shdma_chan_filter,
911 (void *)(unsigned long)id);
912 if (!chan) {
913 dev_warn(dev, "dma_request_channel failed\n");
914 return NULL;
915 }
916
917 memset(&cfg, 0, sizeof(cfg));
918 cfg.slave_id = id;
919 cfg.direction = dir;
920 if (dir == DMA_MEM_TO_DEV)
921 cfg.dst_addr = port_addr;
922 else
923 cfg.src_addr = port_addr;
924
925 ret = dmaengine_slave_config(chan, &cfg);
926 if (ret) {
927 dev_warn(dev, "dmaengine_slave_config failed %d\n", ret);
928 dma_release_channel(chan);
929 return NULL;
930 }
931
932 return chan;
933}
934
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200935static int rspi_request_dma(struct device *dev, struct spi_master *master,
Geert Uytterhoevenfcdc49a2014-06-02 15:38:10 +0200936 const struct resource *res)
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900937{
Geert Uytterhoevenfcdc49a2014-06-02 15:38:10 +0200938 const struct rspi_plat_data *rspi_pd = dev_get_platdata(dev);
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900939
Geert Uytterhoeven5f338d02014-06-02 15:38:11 +0200940 if (!rspi_pd || !rspi_pd->dma_rx_id || !rspi_pd->dma_tx_id)
Shimoda, Yoshihiro0243c532012-08-02 17:17:33 +0900941 return 0; /* The driver assumes no error. */
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900942
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200943 master->dma_rx = rspi_request_dma_chan(dev, DMA_DEV_TO_MEM,
944 rspi_pd->dma_rx_id,
945 res->start + RSPI_SPDR);
946 if (!master->dma_rx)
Geert Uytterhoeven5f338d02014-06-02 15:38:11 +0200947 return -ENODEV;
Geert Uytterhoeven65bf2202014-06-02 15:38:09 +0200948
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200949 master->dma_tx = rspi_request_dma_chan(dev, DMA_MEM_TO_DEV,
950 rspi_pd->dma_tx_id,
951 res->start + RSPI_SPDR);
952 if (!master->dma_tx) {
953 dma_release_channel(master->dma_rx);
954 master->dma_rx = NULL;
Geert Uytterhoeven5f338d02014-06-02 15:38:11 +0200955 return -ENODEV;
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900956 }
Shimoda, Yoshihiro0243c532012-08-02 17:17:33 +0900957
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200958 master->can_dma = rspi_can_dma;
Geert Uytterhoeven5f338d02014-06-02 15:38:11 +0200959 dev_info(dev, "DMA available");
Shimoda, Yoshihiro0243c532012-08-02 17:17:33 +0900960 return 0;
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900961}
962
Grant Likelyfd4a3192012-12-07 16:57:14 +0000963static void rspi_release_dma(struct rspi_data *rspi)
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900964{
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200965 if (rspi->master->dma_tx)
966 dma_release_channel(rspi->master->dma_tx);
967 if (rspi->master->dma_rx)
968 dma_release_channel(rspi->master->dma_rx);
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900969}
970
Grant Likelyfd4a3192012-12-07 16:57:14 +0000971static int rspi_remove(struct platform_device *pdev)
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900972{
Laurent Pinchart5ffbe2d2013-11-27 01:41:45 +0100973 struct rspi_data *rspi = platform_get_drvdata(pdev);
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900974
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +0900975 rspi_release_dma(rspi);
Geert Uytterhoeven490c9772014-03-11 10:59:12 +0100976 pm_runtime_disable(&pdev->dev);
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +0900977
978 return 0;
979}
980
Geert Uytterhoeven426ef762014-01-28 10:21:38 +0100981static const struct spi_ops rspi_ops = {
Geert Uytterhoevenb42e0352014-06-02 15:38:06 +0200982 .set_config_register = rspi_set_config_register,
983 .transfer_one = rspi_transfer_one,
984 .mode_bits = SPI_CPHA | SPI_CPOL | SPI_LOOP,
985 .flags = SPI_MASTER_MUST_TX,
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200986 .fifo_size = 8,
Geert Uytterhoeven426ef762014-01-28 10:21:38 +0100987};
988
989static const struct spi_ops rspi_rz_ops = {
Geert Uytterhoevenb42e0352014-06-02 15:38:06 +0200990 .set_config_register = rspi_rz_set_config_register,
991 .transfer_one = rspi_rz_transfer_one,
992 .mode_bits = SPI_CPHA | SPI_CPOL | SPI_LOOP,
993 .flags = SPI_MASTER_MUST_RX | SPI_MASTER_MUST_TX,
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +0200994 .fifo_size = 8, /* 8 for TX, 32 for RX */
Geert Uytterhoeven426ef762014-01-28 10:21:38 +0100995};
996
997static const struct spi_ops qspi_ops = {
Geert Uytterhoevenb42e0352014-06-02 15:38:06 +0200998 .set_config_register = qspi_set_config_register,
999 .transfer_one = qspi_transfer_one,
1000 .mode_bits = SPI_CPHA | SPI_CPOL | SPI_LOOP |
1001 SPI_TX_DUAL | SPI_TX_QUAD |
1002 SPI_RX_DUAL | SPI_RX_QUAD,
1003 .flags = SPI_MASTER_MUST_RX | SPI_MASTER_MUST_TX,
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +02001004 .fifo_size = 32,
Geert Uytterhoeven426ef762014-01-28 10:21:38 +01001005};
1006
1007#ifdef CONFIG_OF
1008static const struct of_device_id rspi_of_match[] = {
1009 /* RSPI on legacy SH */
1010 { .compatible = "renesas,rspi", .data = &rspi_ops },
1011 /* RSPI on RZ/A1H */
1012 { .compatible = "renesas,rspi-rz", .data = &rspi_rz_ops },
1013 /* QSPI on R-Car Gen2 */
1014 { .compatible = "renesas,qspi", .data = &qspi_ops },
1015 { /* sentinel */ }
1016};
1017
1018MODULE_DEVICE_TABLE(of, rspi_of_match);
1019
1020static int rspi_parse_dt(struct device *dev, struct spi_master *master)
1021{
1022 u32 num_cs;
1023 int error;
1024
1025 /* Parse DT properties */
1026 error = of_property_read_u32(dev->of_node, "num-cs", &num_cs);
1027 if (error) {
1028 dev_err(dev, "of_property_read_u32 num-cs failed %d\n", error);
1029 return error;
1030 }
1031
1032 master->num_chipselect = num_cs;
1033 return 0;
1034}
1035#else
Shimoda, Yoshihiro64b67de2014-02-03 10:43:46 +09001036#define rspi_of_match NULL
Geert Uytterhoeven426ef762014-01-28 10:21:38 +01001037static inline int rspi_parse_dt(struct device *dev, struct spi_master *master)
1038{
1039 return -EINVAL;
1040}
1041#endif /* CONFIG_OF */
1042
Geert Uytterhoeven93722202014-01-24 09:43:58 +01001043static int rspi_request_irq(struct device *dev, unsigned int irq,
1044 irq_handler_t handler, const char *suffix,
1045 void *dev_id)
1046{
1047 const char *base = dev_name(dev);
1048 size_t len = strlen(base) + strlen(suffix) + 2;
1049 char *name = devm_kzalloc(dev, len, GFP_KERNEL);
1050 if (!name)
1051 return -ENOMEM;
1052 snprintf(name, len, "%s:%s", base, suffix);
1053 return devm_request_irq(dev, irq, handler, 0, name, dev_id);
1054}
1055
Grant Likelyfd4a3192012-12-07 16:57:14 +00001056static int rspi_probe(struct platform_device *pdev)
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001057{
1058 struct resource *res;
1059 struct spi_master *master;
1060 struct rspi_data *rspi;
Geert Uytterhoeven93722202014-01-24 09:43:58 +01001061 int ret;
Geert Uytterhoeven426ef762014-01-28 10:21:38 +01001062 const struct of_device_id *of_id;
1063 const struct rspi_plat_data *rspi_pd;
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +09001064 const struct spi_ops *ops;
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001065
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001066 master = spi_alloc_master(&pdev->dev, sizeof(struct rspi_data));
1067 if (master == NULL) {
1068 dev_err(&pdev->dev, "spi_alloc_master error.\n");
1069 return -ENOMEM;
1070 }
1071
Geert Uytterhoeven426ef762014-01-28 10:21:38 +01001072 of_id = of_match_device(rspi_of_match, &pdev->dev);
1073 if (of_id) {
1074 ops = of_id->data;
1075 ret = rspi_parse_dt(&pdev->dev, master);
1076 if (ret)
1077 goto error1;
1078 } else {
1079 ops = (struct spi_ops *)pdev->id_entry->driver_data;
1080 rspi_pd = dev_get_platdata(&pdev->dev);
1081 if (rspi_pd && rspi_pd->num_chipselect)
1082 master->num_chipselect = rspi_pd->num_chipselect;
1083 else
1084 master->num_chipselect = 2; /* default */
1085 };
1086
1087 /* ops parameter check */
1088 if (!ops->set_config_register) {
1089 dev_err(&pdev->dev, "there is no set_config_register\n");
1090 ret = -ENODEV;
1091 goto error1;
1092 }
1093
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001094 rspi = spi_master_get_devdata(master);
Jingoo Han24b5a822013-05-23 19:20:40 +09001095 platform_set_drvdata(pdev, rspi);
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +09001096 rspi->ops = ops;
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001097 rspi->master = master;
Laurent Pinchart5d79e9a2013-11-27 01:41:46 +01001098
1099 res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
1100 rspi->addr = devm_ioremap_resource(&pdev->dev, res);
1101 if (IS_ERR(rspi->addr)) {
1102 ret = PTR_ERR(rspi->addr);
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001103 goto error1;
1104 }
1105
Geert Uytterhoeven29f397b2014-01-24 09:44:02 +01001106 rspi->clk = devm_clk_get(&pdev->dev, NULL);
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001107 if (IS_ERR(rspi->clk)) {
1108 dev_err(&pdev->dev, "cannot get clock\n");
1109 ret = PTR_ERR(rspi->clk);
Laurent Pinchart5d79e9a2013-11-27 01:41:46 +01001110 goto error1;
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001111 }
Geert Uytterhoeven17fe0d92014-01-24 09:44:01 +01001112
Geert Uytterhoeven490c9772014-03-11 10:59:12 +01001113 pm_runtime_enable(&pdev->dev);
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001114
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001115 init_waitqueue_head(&rspi->wait);
1116
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001117 master->bus_num = pdev->id;
1118 master->setup = rspi_setup;
Geert Uytterhoeven490c9772014-03-11 10:59:12 +01001119 master->auto_runtime_pm = true;
Geert Uytterhoeveneb557f72014-01-24 09:43:55 +01001120 master->transfer_one = ops->transfer_one;
Geert Uytterhoeven79d23492014-01-24 09:43:52 +01001121 master->prepare_message = rspi_prepare_message;
1122 master->unprepare_message = rspi_unprepare_message;
Geert Uytterhoeven880c6d12014-01-30 09:43:50 +01001123 master->mode_bits = ops->mode_bits;
Geert Uytterhoevenb42e0352014-06-02 15:38:06 +02001124 master->flags = ops->flags;
Geert Uytterhoeven426ef762014-01-28 10:21:38 +01001125 master->dev.of_node = pdev->dev.of_node;
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001126
Geert Uytterhoeven93722202014-01-24 09:43:58 +01001127 ret = platform_get_irq_byname(pdev, "rx");
1128 if (ret < 0) {
1129 ret = platform_get_irq_byname(pdev, "mux");
1130 if (ret < 0)
1131 ret = platform_get_irq(pdev, 0);
1132 if (ret >= 0)
1133 rspi->rx_irq = rspi->tx_irq = ret;
1134 } else {
1135 rspi->rx_irq = ret;
1136 ret = platform_get_irq_byname(pdev, "tx");
1137 if (ret >= 0)
1138 rspi->tx_irq = ret;
1139 }
1140 if (ret < 0) {
1141 dev_err(&pdev->dev, "platform_get_irq error\n");
1142 goto error2;
1143 }
1144
1145 if (rspi->rx_irq == rspi->tx_irq) {
1146 /* Single multiplexed interrupt */
1147 ret = rspi_request_irq(&pdev->dev, rspi->rx_irq, rspi_irq_mux,
1148 "mux", rspi);
1149 } else {
1150 /* Multi-interrupt mode, only SPRI and SPTI are used */
1151 ret = rspi_request_irq(&pdev->dev, rspi->rx_irq, rspi_irq_rx,
1152 "rx", rspi);
1153 if (!ret)
1154 ret = rspi_request_irq(&pdev->dev, rspi->tx_irq,
1155 rspi_irq_tx, "tx", rspi);
1156 }
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001157 if (ret < 0) {
1158 dev_err(&pdev->dev, "request_irq error\n");
Geert Uytterhoevenfcb4ed72014-01-14 10:20:33 +01001159 goto error2;
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001160 }
1161
Geert Uytterhoeven2f777ec2014-06-02 15:38:12 +02001162 ret = rspi_request_dma(&pdev->dev, master, res);
Geert Uytterhoeven27e105a2014-06-02 15:38:08 +02001163 if (ret < 0)
1164 dev_warn(&pdev->dev, "DMA not available, using PIO\n");
Shimoda, Yoshihiroa3633fe2012-04-20 14:50:36 +09001165
Jingoo Han9e03d052013-12-04 14:13:50 +09001166 ret = devm_spi_register_master(&pdev->dev, master);
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001167 if (ret < 0) {
1168 dev_err(&pdev->dev, "spi_register_master error.\n");
Geert Uytterhoevenfcb4ed72014-01-14 10:20:33 +01001169 goto error3;
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001170 }
1171
1172 dev_info(&pdev->dev, "probed\n");
1173
1174 return 0;
1175
Geert Uytterhoevenfcb4ed72014-01-14 10:20:33 +01001176error3:
Laurent Pinchart5d79e9a2013-11-27 01:41:46 +01001177 rspi_release_dma(rspi);
Geert Uytterhoevenfcb4ed72014-01-14 10:20:33 +01001178error2:
Geert Uytterhoeven490c9772014-03-11 10:59:12 +01001179 pm_runtime_disable(&pdev->dev);
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001180error1:
1181 spi_master_put(master);
1182
1183 return ret;
1184}
1185
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +09001186static struct platform_device_id spi_driver_ids[] = {
1187 { "rspi", (kernel_ulong_t)&rspi_ops },
Geert Uytterhoeven862d3572014-01-24 09:43:59 +01001188 { "rspi-rz", (kernel_ulong_t)&rspi_rz_ops },
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +09001189 { "qspi", (kernel_ulong_t)&qspi_ops },
1190 {},
1191};
1192
1193MODULE_DEVICE_TABLE(platform, spi_driver_ids);
1194
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001195static struct platform_driver rspi_driver = {
1196 .probe = rspi_probe,
Grant Likelyfd4a3192012-12-07 16:57:14 +00001197 .remove = rspi_remove,
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +09001198 .id_table = spi_driver_ids,
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001199 .driver = {
Hiep Cao Minh5ce0ba82013-09-03 13:10:26 +09001200 .name = "renesas_spi",
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001201 .owner = THIS_MODULE,
Geert Uytterhoeven426ef762014-01-28 10:21:38 +01001202 .of_match_table = of_match_ptr(rspi_of_match),
Shimoda, Yoshihiro0b2182d2012-03-07 14:46:25 +09001203 },
1204};
1205module_platform_driver(rspi_driver);
1206
1207MODULE_DESCRIPTION("Renesas RSPI bus driver");
1208MODULE_LICENSE("GPL v2");
1209MODULE_AUTHOR("Yoshihiro Shimoda");
1210MODULE_ALIAS("platform:rspi");