blob: 9e7f657af6a56818bb22fc267d0c44effe187aeb [file] [log] [blame]
Huang Shijiee46ecda2014-02-24 18:37:42 +08001/*
2 * Freescale QuadSPI driver.
3 *
4 * Copyright (C) 2013 Freescale Semiconductor, Inc.
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
10 */
11#include <linux/kernel.h>
12#include <linux/module.h>
13#include <linux/interrupt.h>
14#include <linux/errno.h>
15#include <linux/platform_device.h>
16#include <linux/sched.h>
17#include <linux/delay.h>
18#include <linux/io.h>
19#include <linux/clk.h>
20#include <linux/err.h>
21#include <linux/of.h>
22#include <linux/of_device.h>
23#include <linux/timer.h>
24#include <linux/jiffies.h>
25#include <linux/completion.h>
26#include <linux/mtd/mtd.h>
27#include <linux/mtd/partitions.h>
28#include <linux/mtd/spi-nor.h>
Han Xu392d39c2015-05-13 14:40:57 -050029#include <linux/mutex.h>
Frank Li5cc66cb2015-08-04 10:26:04 -050030#include <linux/pm_qos.h>
Fabio Estevam01a3c622015-10-14 00:39:44 -030031#include <linux/sizes.h>
Huang Shijiee46ecda2014-02-24 18:37:42 +080032
Han Xu80d37722015-08-04 10:25:29 -050033/* Controller needs driver to swap endian */
34#define QUADSPI_QUIRK_SWAP_ENDIAN (1 << 0)
35/* Controller needs 4x internal clock */
36#define QUADSPI_QUIRK_4X_INT_CLK (1 << 1)
Frank Lid371cbf2015-08-04 10:25:35 -050037/*
38 * TKT253890, Controller needs driver to fill txfifo till 16 byte to
39 * trigger data transfer even though extern data will not transferred.
40 */
41#define QUADSPI_QUIRK_TKT253890 (1 << 2)
Frank Li5cc66cb2015-08-04 10:26:04 -050042/* Controller cannot wake up from wait mode, TKT245618 */
43#define QUADSPI_QUIRK_TKT245618 (1 << 3)
Han Xu80d37722015-08-04 10:25:29 -050044
Huang Shijiee46ecda2014-02-24 18:37:42 +080045/* The registers */
46#define QUADSPI_MCR 0x00
47#define QUADSPI_MCR_RESERVED_SHIFT 16
48#define QUADSPI_MCR_RESERVED_MASK (0xF << QUADSPI_MCR_RESERVED_SHIFT)
49#define QUADSPI_MCR_MDIS_SHIFT 14
50#define QUADSPI_MCR_MDIS_MASK (1 << QUADSPI_MCR_MDIS_SHIFT)
51#define QUADSPI_MCR_CLR_TXF_SHIFT 11
52#define QUADSPI_MCR_CLR_TXF_MASK (1 << QUADSPI_MCR_CLR_TXF_SHIFT)
53#define QUADSPI_MCR_CLR_RXF_SHIFT 10
54#define QUADSPI_MCR_CLR_RXF_MASK (1 << QUADSPI_MCR_CLR_RXF_SHIFT)
55#define QUADSPI_MCR_DDR_EN_SHIFT 7
56#define QUADSPI_MCR_DDR_EN_MASK (1 << QUADSPI_MCR_DDR_EN_SHIFT)
57#define QUADSPI_MCR_END_CFG_SHIFT 2
58#define QUADSPI_MCR_END_CFG_MASK (3 << QUADSPI_MCR_END_CFG_SHIFT)
59#define QUADSPI_MCR_SWRSTHD_SHIFT 1
60#define QUADSPI_MCR_SWRSTHD_MASK (1 << QUADSPI_MCR_SWRSTHD_SHIFT)
61#define QUADSPI_MCR_SWRSTSD_SHIFT 0
62#define QUADSPI_MCR_SWRSTSD_MASK (1 << QUADSPI_MCR_SWRSTSD_SHIFT)
63
64#define QUADSPI_IPCR 0x08
65#define QUADSPI_IPCR_SEQID_SHIFT 24
66#define QUADSPI_IPCR_SEQID_MASK (0xF << QUADSPI_IPCR_SEQID_SHIFT)
67
68#define QUADSPI_BUF0CR 0x10
69#define QUADSPI_BUF1CR 0x14
70#define QUADSPI_BUF2CR 0x18
71#define QUADSPI_BUFXCR_INVALID_MSTRID 0xe
72
73#define QUADSPI_BUF3CR 0x1c
74#define QUADSPI_BUF3CR_ALLMST_SHIFT 31
Allen Xu4e898ce2015-01-14 00:28:56 +080075#define QUADSPI_BUF3CR_ALLMST_MASK (1 << QUADSPI_BUF3CR_ALLMST_SHIFT)
76#define QUADSPI_BUF3CR_ADATSZ_SHIFT 8
77#define QUADSPI_BUF3CR_ADATSZ_MASK (0xFF << QUADSPI_BUF3CR_ADATSZ_SHIFT)
Huang Shijiee46ecda2014-02-24 18:37:42 +080078
79#define QUADSPI_BFGENCR 0x20
80#define QUADSPI_BFGENCR_PAR_EN_SHIFT 16
81#define QUADSPI_BFGENCR_PAR_EN_MASK (1 << (QUADSPI_BFGENCR_PAR_EN_SHIFT))
82#define QUADSPI_BFGENCR_SEQID_SHIFT 12
83#define QUADSPI_BFGENCR_SEQID_MASK (0xF << QUADSPI_BFGENCR_SEQID_SHIFT)
84
85#define QUADSPI_BUF0IND 0x30
86#define QUADSPI_BUF1IND 0x34
87#define QUADSPI_BUF2IND 0x38
88#define QUADSPI_SFAR 0x100
89
90#define QUADSPI_SMPR 0x108
91#define QUADSPI_SMPR_DDRSMP_SHIFT 16
92#define QUADSPI_SMPR_DDRSMP_MASK (7 << QUADSPI_SMPR_DDRSMP_SHIFT)
93#define QUADSPI_SMPR_FSDLY_SHIFT 6
94#define QUADSPI_SMPR_FSDLY_MASK (1 << QUADSPI_SMPR_FSDLY_SHIFT)
95#define QUADSPI_SMPR_FSPHS_SHIFT 5
96#define QUADSPI_SMPR_FSPHS_MASK (1 << QUADSPI_SMPR_FSPHS_SHIFT)
97#define QUADSPI_SMPR_HSENA_SHIFT 0
98#define QUADSPI_SMPR_HSENA_MASK (1 << QUADSPI_SMPR_HSENA_SHIFT)
99
100#define QUADSPI_RBSR 0x10c
101#define QUADSPI_RBSR_RDBFL_SHIFT 8
102#define QUADSPI_RBSR_RDBFL_MASK (0x3F << QUADSPI_RBSR_RDBFL_SHIFT)
103
104#define QUADSPI_RBCT 0x110
105#define QUADSPI_RBCT_WMRK_MASK 0x1F
106#define QUADSPI_RBCT_RXBRD_SHIFT 8
107#define QUADSPI_RBCT_RXBRD_USEIPS (0x1 << QUADSPI_RBCT_RXBRD_SHIFT)
108
109#define QUADSPI_TBSR 0x150
110#define QUADSPI_TBDR 0x154
111#define QUADSPI_SR 0x15c
112#define QUADSPI_SR_IP_ACC_SHIFT 1
113#define QUADSPI_SR_IP_ACC_MASK (0x1 << QUADSPI_SR_IP_ACC_SHIFT)
114#define QUADSPI_SR_AHB_ACC_SHIFT 2
115#define QUADSPI_SR_AHB_ACC_MASK (0x1 << QUADSPI_SR_AHB_ACC_SHIFT)
116
117#define QUADSPI_FR 0x160
118#define QUADSPI_FR_TFF_MASK 0x1
119
120#define QUADSPI_SFA1AD 0x180
121#define QUADSPI_SFA2AD 0x184
122#define QUADSPI_SFB1AD 0x188
123#define QUADSPI_SFB2AD 0x18c
124#define QUADSPI_RBDR 0x200
125
126#define QUADSPI_LUTKEY 0x300
127#define QUADSPI_LUTKEY_VALUE 0x5AF05AF0
128
129#define QUADSPI_LCKCR 0x304
130#define QUADSPI_LCKER_LOCK 0x1
131#define QUADSPI_LCKER_UNLOCK 0x2
132
133#define QUADSPI_RSER 0x164
134#define QUADSPI_RSER_TFIE (0x1 << 0)
135
136#define QUADSPI_LUT_BASE 0x310
137
138/*
139 * The definition of the LUT register shows below:
140 *
141 * ---------------------------------------------------
142 * | INSTR1 | PAD1 | OPRND1 | INSTR0 | PAD0 | OPRND0 |
143 * ---------------------------------------------------
144 */
145#define OPRND0_SHIFT 0
146#define PAD0_SHIFT 8
147#define INSTR0_SHIFT 10
148#define OPRND1_SHIFT 16
149
150/* Instruction set for the LUT register. */
151#define LUT_STOP 0
152#define LUT_CMD 1
153#define LUT_ADDR 2
154#define LUT_DUMMY 3
155#define LUT_MODE 4
156#define LUT_MODE2 5
157#define LUT_MODE4 6
Han Xu04850c42015-10-23 13:18:28 -0500158#define LUT_FSL_READ 7
159#define LUT_FSL_WRITE 8
Huang Shijiee46ecda2014-02-24 18:37:42 +0800160#define LUT_JMP_ON_CS 9
161#define LUT_ADDR_DDR 10
162#define LUT_MODE_DDR 11
163#define LUT_MODE2_DDR 12
164#define LUT_MODE4_DDR 13
Han Xu04850c42015-10-23 13:18:28 -0500165#define LUT_FSL_READ_DDR 14
166#define LUT_FSL_WRITE_DDR 15
Huang Shijiee46ecda2014-02-24 18:37:42 +0800167#define LUT_DATA_LEARN 16
168
169/*
170 * The PAD definitions for LUT register.
171 *
172 * The pad stands for the lines number of IO[0:3].
173 * For example, the Quad read need four IO lines, so you should
174 * set LUT_PAD4 which means we use four IO lines.
175 */
176#define LUT_PAD1 0
177#define LUT_PAD2 1
178#define LUT_PAD4 2
179
180/* Oprands for the LUT register. */
181#define ADDR24BIT 0x18
182#define ADDR32BIT 0x20
183
184/* Macros for constructing the LUT register. */
185#define LUT0(ins, pad, opr) \
186 (((opr) << OPRND0_SHIFT) | ((LUT_##pad) << PAD0_SHIFT) | \
187 ((LUT_##ins) << INSTR0_SHIFT))
188
189#define LUT1(ins, pad, opr) (LUT0(ins, pad, opr) << OPRND1_SHIFT)
190
191/* other macros for LUT register. */
192#define QUADSPI_LUT(x) (QUADSPI_LUT_BASE + (x) * 4)
193#define QUADSPI_LUT_NUM 64
194
195/* SEQID -- we can have 16 seqids at most. */
196#define SEQID_QUAD_READ 0
197#define SEQID_WREN 1
198#define SEQID_WRDI 2
199#define SEQID_RDSR 3
200#define SEQID_SE 4
201#define SEQID_CHIP_ERASE 5
202#define SEQID_PP 6
203#define SEQID_RDID 7
204#define SEQID_WRSR 8
205#define SEQID_RDCR 9
206#define SEQID_EN4B 10
207#define SEQID_BRWR 11
208
Han Xu49bd7062015-08-04 10:25:22 -0500209#define QUADSPI_MIN_IOMAP SZ_4M
210
Huang Shijiee46ecda2014-02-24 18:37:42 +0800211enum fsl_qspi_devtype {
212 FSL_QUADSPI_VYBRID,
213 FSL_QUADSPI_IMX6SX,
Frank Lid371cbf2015-08-04 10:25:35 -0500214 FSL_QUADSPI_IMX7D,
Frank Li74a081d12015-08-04 10:25:47 -0500215 FSL_QUADSPI_IMX6UL,
Huang Shijiee46ecda2014-02-24 18:37:42 +0800216};
217
218struct fsl_qspi_devtype_data {
219 enum fsl_qspi_devtype devtype;
220 int rxfifo;
221 int txfifo;
Allen Xu4e898ce2015-01-14 00:28:56 +0800222 int ahb_buf_size;
Han Xu80d37722015-08-04 10:25:29 -0500223 int driver_data;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800224};
225
226static struct fsl_qspi_devtype_data vybrid_data = {
227 .devtype = FSL_QUADSPI_VYBRID,
228 .rxfifo = 128,
Allen Xu4e898ce2015-01-14 00:28:56 +0800229 .txfifo = 64,
Han Xu80d37722015-08-04 10:25:29 -0500230 .ahb_buf_size = 1024,
231 .driver_data = QUADSPI_QUIRK_SWAP_ENDIAN,
Huang Shijiee46ecda2014-02-24 18:37:42 +0800232};
233
234static struct fsl_qspi_devtype_data imx6sx_data = {
235 .devtype = FSL_QUADSPI_IMX6SX,
236 .rxfifo = 128,
Allen Xu4e898ce2015-01-14 00:28:56 +0800237 .txfifo = 512,
Han Xu80d37722015-08-04 10:25:29 -0500238 .ahb_buf_size = 1024,
Frank Li5cc66cb2015-08-04 10:26:04 -0500239 .driver_data = QUADSPI_QUIRK_4X_INT_CLK
240 | QUADSPI_QUIRK_TKT245618,
Huang Shijiee46ecda2014-02-24 18:37:42 +0800241};
242
Frank Lid371cbf2015-08-04 10:25:35 -0500243static struct fsl_qspi_devtype_data imx7d_data = {
244 .devtype = FSL_QUADSPI_IMX7D,
245 .rxfifo = 512,
246 .txfifo = 512,
247 .ahb_buf_size = 1024,
248 .driver_data = QUADSPI_QUIRK_TKT253890
249 | QUADSPI_QUIRK_4X_INT_CLK,
250};
251
Frank Li74a081d12015-08-04 10:25:47 -0500252static struct fsl_qspi_devtype_data imx6ul_data = {
253 .devtype = FSL_QUADSPI_IMX6UL,
254 .rxfifo = 128,
255 .txfifo = 512,
256 .ahb_buf_size = 1024,
257 .driver_data = QUADSPI_QUIRK_TKT253890
258 | QUADSPI_QUIRK_4X_INT_CLK,
259};
260
Huang Shijiee46ecda2014-02-24 18:37:42 +0800261#define FSL_QSPI_MAX_CHIP 4
262struct fsl_qspi {
Huang Shijiee46ecda2014-02-24 18:37:42 +0800263 struct spi_nor nor[FSL_QSPI_MAX_CHIP];
264 void __iomem *iobase;
Han Xu49bd7062015-08-04 10:25:22 -0500265 void __iomem *ahb_addr;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800266 u32 memmap_phy;
Han Xu49bd7062015-08-04 10:25:22 -0500267 u32 memmap_offs;
268 u32 memmap_len;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800269 struct clk *clk, *clk_en;
270 struct device *dev;
271 struct completion c;
272 struct fsl_qspi_devtype_data *devtype_data;
273 u32 nor_size;
274 u32 nor_num;
275 u32 clk_rate;
276 unsigned int chip_base_addr; /* We may support two chips. */
Fabio Estevamcfe4af32015-01-13 20:14:15 -0200277 bool has_second_chip;
Han Xu392d39c2015-05-13 14:40:57 -0500278 struct mutex lock;
Frank Li5cc66cb2015-08-04 10:26:04 -0500279 struct pm_qos_request pm_qos_req;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800280};
281
Han Xu80d37722015-08-04 10:25:29 -0500282static inline int needs_swap_endian(struct fsl_qspi *q)
Huang Shijiee46ecda2014-02-24 18:37:42 +0800283{
Han Xu80d37722015-08-04 10:25:29 -0500284 return q->devtype_data->driver_data & QUADSPI_QUIRK_SWAP_ENDIAN;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800285}
286
Han Xu80d37722015-08-04 10:25:29 -0500287static inline int needs_4x_clock(struct fsl_qspi *q)
Huang Shijiee46ecda2014-02-24 18:37:42 +0800288{
Han Xu80d37722015-08-04 10:25:29 -0500289 return q->devtype_data->driver_data & QUADSPI_QUIRK_4X_INT_CLK;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800290}
291
Frank Lid371cbf2015-08-04 10:25:35 -0500292static inline int needs_fill_txfifo(struct fsl_qspi *q)
293{
294 return q->devtype_data->driver_data & QUADSPI_QUIRK_TKT253890;
295}
296
Frank Li5cc66cb2015-08-04 10:26:04 -0500297static inline int needs_wakeup_wait_mode(struct fsl_qspi *q)
298{
299 return q->devtype_data->driver_data & QUADSPI_QUIRK_TKT245618;
300}
301
Huang Shijiee46ecda2014-02-24 18:37:42 +0800302/*
303 * An IC bug makes us to re-arrange the 32-bit data.
304 * The following chips, such as IMX6SLX, have fixed this bug.
305 */
306static inline u32 fsl_qspi_endian_xchg(struct fsl_qspi *q, u32 a)
307{
Han Xu80d37722015-08-04 10:25:29 -0500308 return needs_swap_endian(q) ? __swab32(a) : a;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800309}
310
311static inline void fsl_qspi_unlock_lut(struct fsl_qspi *q)
312{
313 writel(QUADSPI_LUTKEY_VALUE, q->iobase + QUADSPI_LUTKEY);
314 writel(QUADSPI_LCKER_UNLOCK, q->iobase + QUADSPI_LCKCR);
315}
316
317static inline void fsl_qspi_lock_lut(struct fsl_qspi *q)
318{
319 writel(QUADSPI_LUTKEY_VALUE, q->iobase + QUADSPI_LUTKEY);
320 writel(QUADSPI_LCKER_LOCK, q->iobase + QUADSPI_LCKCR);
321}
322
323static irqreturn_t fsl_qspi_irq_handler(int irq, void *dev_id)
324{
325 struct fsl_qspi *q = dev_id;
326 u32 reg;
327
328 /* clear interrupt */
329 reg = readl(q->iobase + QUADSPI_FR);
330 writel(reg, q->iobase + QUADSPI_FR);
331
332 if (reg & QUADSPI_FR_TFF_MASK)
333 complete(&q->c);
334
335 dev_dbg(q->dev, "QUADSPI_FR : 0x%.8x:0x%.8x\n", q->chip_base_addr, reg);
336 return IRQ_HANDLED;
337}
338
339static void fsl_qspi_init_lut(struct fsl_qspi *q)
340{
Brian Norrisa965d042014-04-10 15:49:38 -0700341 void __iomem *base = q->iobase;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800342 int rxfifo = q->devtype_data->rxfifo;
343 u32 lut_base;
344 u8 cmd, addrlen, dummy;
345 int i;
346
347 fsl_qspi_unlock_lut(q);
348
349 /* Clear all the LUT table */
350 for (i = 0; i < QUADSPI_LUT_NUM; i++)
351 writel(0, base + QUADSPI_LUT_BASE + i * 4);
352
353 /* Quad Read */
354 lut_base = SEQID_QUAD_READ * 4;
355
356 if (q->nor_size <= SZ_16M) {
Brian Norris58b89a12014-04-08 19:16:49 -0700357 cmd = SPINOR_OP_READ_1_1_4;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800358 addrlen = ADDR24BIT;
359 dummy = 8;
360 } else {
361 /* use the 4-byte address */
Brian Norris58b89a12014-04-08 19:16:49 -0700362 cmd = SPINOR_OP_READ_1_1_4;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800363 addrlen = ADDR32BIT;
364 dummy = 8;
365 }
366
367 writel(LUT0(CMD, PAD1, cmd) | LUT1(ADDR, PAD1, addrlen),
368 base + QUADSPI_LUT(lut_base));
Han Xu04850c42015-10-23 13:18:28 -0500369 writel(LUT0(DUMMY, PAD1, dummy) | LUT1(FSL_READ, PAD4, rxfifo),
Huang Shijiee46ecda2014-02-24 18:37:42 +0800370 base + QUADSPI_LUT(lut_base + 1));
371
372 /* Write enable */
373 lut_base = SEQID_WREN * 4;
Brian Norrisb02e7f32014-04-08 18:15:31 -0700374 writel(LUT0(CMD, PAD1, SPINOR_OP_WREN), base + QUADSPI_LUT(lut_base));
Huang Shijiee46ecda2014-02-24 18:37:42 +0800375
376 /* Page Program */
377 lut_base = SEQID_PP * 4;
378
379 if (q->nor_size <= SZ_16M) {
Brian Norrisb02e7f32014-04-08 18:15:31 -0700380 cmd = SPINOR_OP_PP;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800381 addrlen = ADDR24BIT;
382 } else {
383 /* use the 4-byte address */
Brian Norrisb02e7f32014-04-08 18:15:31 -0700384 cmd = SPINOR_OP_PP;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800385 addrlen = ADDR32BIT;
386 }
387
388 writel(LUT0(CMD, PAD1, cmd) | LUT1(ADDR, PAD1, addrlen),
389 base + QUADSPI_LUT(lut_base));
Han Xu04850c42015-10-23 13:18:28 -0500390 writel(LUT0(FSL_WRITE, PAD1, 0), base + QUADSPI_LUT(lut_base + 1));
Huang Shijiee46ecda2014-02-24 18:37:42 +0800391
392 /* Read Status */
393 lut_base = SEQID_RDSR * 4;
Han Xu04850c42015-10-23 13:18:28 -0500394 writel(LUT0(CMD, PAD1, SPINOR_OP_RDSR) | LUT1(FSL_READ, PAD1, 0x1),
Huang Shijiee46ecda2014-02-24 18:37:42 +0800395 base + QUADSPI_LUT(lut_base));
396
397 /* Erase a sector */
398 lut_base = SEQID_SE * 4;
399
Frank Li788a6cd2015-08-04 10:26:16 -0500400 cmd = q->nor[0].erase_opcode;
401 addrlen = q->nor_size <= SZ_16M ? ADDR24BIT : ADDR32BIT;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800402
403 writel(LUT0(CMD, PAD1, cmd) | LUT1(ADDR, PAD1, addrlen),
404 base + QUADSPI_LUT(lut_base));
405
406 /* Erase the whole chip */
407 lut_base = SEQID_CHIP_ERASE * 4;
Brian Norrisb02e7f32014-04-08 18:15:31 -0700408 writel(LUT0(CMD, PAD1, SPINOR_OP_CHIP_ERASE),
Huang Shijiee46ecda2014-02-24 18:37:42 +0800409 base + QUADSPI_LUT(lut_base));
410
411 /* READ ID */
412 lut_base = SEQID_RDID * 4;
Han Xu04850c42015-10-23 13:18:28 -0500413 writel(LUT0(CMD, PAD1, SPINOR_OP_RDID) | LUT1(FSL_READ, PAD1, 0x8),
Huang Shijiee46ecda2014-02-24 18:37:42 +0800414 base + QUADSPI_LUT(lut_base));
415
416 /* Write Register */
417 lut_base = SEQID_WRSR * 4;
Han Xu04850c42015-10-23 13:18:28 -0500418 writel(LUT0(CMD, PAD1, SPINOR_OP_WRSR) | LUT1(FSL_WRITE, PAD1, 0x2),
Huang Shijiee46ecda2014-02-24 18:37:42 +0800419 base + QUADSPI_LUT(lut_base));
420
421 /* Read Configuration Register */
422 lut_base = SEQID_RDCR * 4;
Han Xu04850c42015-10-23 13:18:28 -0500423 writel(LUT0(CMD, PAD1, SPINOR_OP_RDCR) | LUT1(FSL_READ, PAD1, 0x1),
Huang Shijiee46ecda2014-02-24 18:37:42 +0800424 base + QUADSPI_LUT(lut_base));
425
426 /* Write disable */
427 lut_base = SEQID_WRDI * 4;
Brian Norrisb02e7f32014-04-08 18:15:31 -0700428 writel(LUT0(CMD, PAD1, SPINOR_OP_WRDI), base + QUADSPI_LUT(lut_base));
Huang Shijiee46ecda2014-02-24 18:37:42 +0800429
430 /* Enter 4 Byte Mode (Micron) */
431 lut_base = SEQID_EN4B * 4;
Brian Norrisb02e7f32014-04-08 18:15:31 -0700432 writel(LUT0(CMD, PAD1, SPINOR_OP_EN4B), base + QUADSPI_LUT(lut_base));
Huang Shijiee46ecda2014-02-24 18:37:42 +0800433
434 /* Enter 4 Byte Mode (Spansion) */
435 lut_base = SEQID_BRWR * 4;
Brian Norrisb02e7f32014-04-08 18:15:31 -0700436 writel(LUT0(CMD, PAD1, SPINOR_OP_BRWR), base + QUADSPI_LUT(lut_base));
Huang Shijiee46ecda2014-02-24 18:37:42 +0800437
438 fsl_qspi_lock_lut(q);
439}
440
441/* Get the SEQID for the command */
442static int fsl_qspi_get_seqid(struct fsl_qspi *q, u8 cmd)
443{
444 switch (cmd) {
Brian Norris58b89a12014-04-08 19:16:49 -0700445 case SPINOR_OP_READ_1_1_4:
Huang Shijiee46ecda2014-02-24 18:37:42 +0800446 return SEQID_QUAD_READ;
Brian Norrisb02e7f32014-04-08 18:15:31 -0700447 case SPINOR_OP_WREN:
Huang Shijiee46ecda2014-02-24 18:37:42 +0800448 return SEQID_WREN;
Brian Norrisb02e7f32014-04-08 18:15:31 -0700449 case SPINOR_OP_WRDI:
Huang Shijiee46ecda2014-02-24 18:37:42 +0800450 return SEQID_WRDI;
Brian Norrisb02e7f32014-04-08 18:15:31 -0700451 case SPINOR_OP_RDSR:
Huang Shijiee46ecda2014-02-24 18:37:42 +0800452 return SEQID_RDSR;
Brian Norrisb02e7f32014-04-08 18:15:31 -0700453 case SPINOR_OP_SE:
Huang Shijiee46ecda2014-02-24 18:37:42 +0800454 return SEQID_SE;
Brian Norrisb02e7f32014-04-08 18:15:31 -0700455 case SPINOR_OP_CHIP_ERASE:
Huang Shijiee46ecda2014-02-24 18:37:42 +0800456 return SEQID_CHIP_ERASE;
Brian Norrisb02e7f32014-04-08 18:15:31 -0700457 case SPINOR_OP_PP:
Huang Shijiee46ecda2014-02-24 18:37:42 +0800458 return SEQID_PP;
Brian Norrisb02e7f32014-04-08 18:15:31 -0700459 case SPINOR_OP_RDID:
Huang Shijiee46ecda2014-02-24 18:37:42 +0800460 return SEQID_RDID;
Brian Norrisb02e7f32014-04-08 18:15:31 -0700461 case SPINOR_OP_WRSR:
Huang Shijiee46ecda2014-02-24 18:37:42 +0800462 return SEQID_WRSR;
Brian Norrisb02e7f32014-04-08 18:15:31 -0700463 case SPINOR_OP_RDCR:
Huang Shijiee46ecda2014-02-24 18:37:42 +0800464 return SEQID_RDCR;
Brian Norrisb02e7f32014-04-08 18:15:31 -0700465 case SPINOR_OP_EN4B:
Huang Shijiee46ecda2014-02-24 18:37:42 +0800466 return SEQID_EN4B;
Brian Norrisb02e7f32014-04-08 18:15:31 -0700467 case SPINOR_OP_BRWR:
Huang Shijiee46ecda2014-02-24 18:37:42 +0800468 return SEQID_BRWR;
469 default:
Frank Li788a6cd2015-08-04 10:26:16 -0500470 if (cmd == q->nor[0].erase_opcode)
471 return SEQID_SE;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800472 dev_err(q->dev, "Unsupported cmd 0x%.2x\n", cmd);
473 break;
474 }
475 return -EINVAL;
476}
477
478static int
479fsl_qspi_runcmd(struct fsl_qspi *q, u8 cmd, unsigned int addr, int len)
480{
Brian Norrisa965d042014-04-10 15:49:38 -0700481 void __iomem *base = q->iobase;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800482 int seqid;
483 u32 reg, reg2;
484 int err;
485
486 init_completion(&q->c);
487 dev_dbg(q->dev, "to 0x%.8x:0x%.8x, len:%d, cmd:%.2x\n",
488 q->chip_base_addr, addr, len, cmd);
489
490 /* save the reg */
491 reg = readl(base + QUADSPI_MCR);
492
493 writel(q->memmap_phy + q->chip_base_addr + addr, base + QUADSPI_SFAR);
494 writel(QUADSPI_RBCT_WMRK_MASK | QUADSPI_RBCT_RXBRD_USEIPS,
495 base + QUADSPI_RBCT);
496 writel(reg | QUADSPI_MCR_CLR_RXF_MASK, base + QUADSPI_MCR);
497
498 do {
499 reg2 = readl(base + QUADSPI_SR);
500 if (reg2 & (QUADSPI_SR_IP_ACC_MASK | QUADSPI_SR_AHB_ACC_MASK)) {
501 udelay(1);
502 dev_dbg(q->dev, "The controller is busy, 0x%x\n", reg2);
503 continue;
504 }
505 break;
506 } while (1);
507
508 /* trigger the LUT now */
509 seqid = fsl_qspi_get_seqid(q, cmd);
510 writel((seqid << QUADSPI_IPCR_SEQID_SHIFT) | len, base + QUADSPI_IPCR);
511
512 /* Wait for the interrupt. */
Nicholas Mc Guire219a8d12015-02-01 06:15:46 -0500513 if (!wait_for_completion_timeout(&q->c, msecs_to_jiffies(1000))) {
Huang Shijiee46ecda2014-02-24 18:37:42 +0800514 dev_err(q->dev,
515 "cmd 0x%.2x timeout, addr@%.8x, FR:0x%.8x, SR:0x%.8x\n",
516 cmd, addr, readl(base + QUADSPI_FR),
517 readl(base + QUADSPI_SR));
518 err = -ETIMEDOUT;
519 } else {
520 err = 0;
521 }
522
523 /* restore the MCR */
524 writel(reg, base + QUADSPI_MCR);
525
526 return err;
527}
528
529/* Read out the data from the QUADSPI_RBDR buffer registers. */
530static void fsl_qspi_read_data(struct fsl_qspi *q, int len, u8 *rxbuf)
531{
532 u32 tmp;
533 int i = 0;
534
535 while (len > 0) {
536 tmp = readl(q->iobase + QUADSPI_RBDR + i * 4);
537 tmp = fsl_qspi_endian_xchg(q, tmp);
538 dev_dbg(q->dev, "chip addr:0x%.8x, rcv:0x%.8x\n",
539 q->chip_base_addr, tmp);
540
541 if (len >= 4) {
542 *((u32 *)rxbuf) = tmp;
543 rxbuf += 4;
544 } else {
545 memcpy(rxbuf, &tmp, len);
546 break;
547 }
548
549 len -= 4;
550 i++;
551 }
552}
553
554/*
555 * If we have changed the content of the flash by writing or erasing,
556 * we need to invalidate the AHB buffer. If we do not do so, we may read out
557 * the wrong data. The spec tells us reset the AHB domain and Serial Flash
558 * domain at the same time.
559 */
560static inline void fsl_qspi_invalid(struct fsl_qspi *q)
561{
562 u32 reg;
563
564 reg = readl(q->iobase + QUADSPI_MCR);
565 reg |= QUADSPI_MCR_SWRSTHD_MASK | QUADSPI_MCR_SWRSTSD_MASK;
566 writel(reg, q->iobase + QUADSPI_MCR);
567
568 /*
569 * The minimum delay : 1 AHB + 2 SFCK clocks.
570 * Delay 1 us is enough.
571 */
572 udelay(1);
573
574 reg &= ~(QUADSPI_MCR_SWRSTHD_MASK | QUADSPI_MCR_SWRSTSD_MASK);
575 writel(reg, q->iobase + QUADSPI_MCR);
576}
577
578static int fsl_qspi_nor_write(struct fsl_qspi *q, struct spi_nor *nor,
579 u8 opcode, unsigned int to, u32 *txbuf,
580 unsigned count, size_t *retlen)
581{
582 int ret, i, j;
583 u32 tmp;
584
585 dev_dbg(q->dev, "to 0x%.8x:0x%.8x, len : %d\n",
586 q->chip_base_addr, to, count);
587
588 /* clear the TX FIFO. */
589 tmp = readl(q->iobase + QUADSPI_MCR);
Alexander Stein038761d2015-07-02 11:37:56 +0200590 writel(tmp | QUADSPI_MCR_CLR_TXF_MASK, q->iobase + QUADSPI_MCR);
Huang Shijiee46ecda2014-02-24 18:37:42 +0800591
592 /* fill the TX data to the FIFO */
593 for (j = 0, i = ((count + 3) / 4); j < i; j++) {
594 tmp = fsl_qspi_endian_xchg(q, *txbuf);
595 writel(tmp, q->iobase + QUADSPI_TBDR);
596 txbuf++;
597 }
598
Frank Lid371cbf2015-08-04 10:25:35 -0500599 /* fill the TXFIFO upto 16 bytes for i.MX7d */
600 if (needs_fill_txfifo(q))
601 for (; i < 4; i++)
602 writel(tmp, q->iobase + QUADSPI_TBDR);
603
Huang Shijiee46ecda2014-02-24 18:37:42 +0800604 /* Trigger it */
605 ret = fsl_qspi_runcmd(q, opcode, to, count);
606
607 if (ret == 0 && retlen)
608 *retlen += count;
609
610 return ret;
611}
612
613static void fsl_qspi_set_map_addr(struct fsl_qspi *q)
614{
615 int nor_size = q->nor_size;
616 void __iomem *base = q->iobase;
617
618 writel(nor_size + q->memmap_phy, base + QUADSPI_SFA1AD);
619 writel(nor_size * 2 + q->memmap_phy, base + QUADSPI_SFA2AD);
620 writel(nor_size * 3 + q->memmap_phy, base + QUADSPI_SFB1AD);
621 writel(nor_size * 4 + q->memmap_phy, base + QUADSPI_SFB2AD);
622}
623
624/*
625 * There are two different ways to read out the data from the flash:
626 * the "IP Command Read" and the "AHB Command Read".
627 *
628 * The IC guy suggests we use the "AHB Command Read" which is faster
629 * then the "IP Command Read". (What's more is that there is a bug in
630 * the "IP Command Read" in the Vybrid.)
631 *
632 * After we set up the registers for the "AHB Command Read", we can use
633 * the memcpy to read the data directly. A "missed" access to the buffer
634 * causes the controller to clear the buffer, and use the sequence pointed
635 * by the QUADSPI_BFGENCR[SEQID] to initiate a read from the flash.
636 */
637static void fsl_qspi_init_abh_read(struct fsl_qspi *q)
638{
639 void __iomem *base = q->iobase;
640 int seqid;
641
642 /* AHB configuration for access buffer 0/1/2 .*/
643 writel(QUADSPI_BUFXCR_INVALID_MSTRID, base + QUADSPI_BUF0CR);
644 writel(QUADSPI_BUFXCR_INVALID_MSTRID, base + QUADSPI_BUF1CR);
645 writel(QUADSPI_BUFXCR_INVALID_MSTRID, base + QUADSPI_BUF2CR);
Allen Xu4e898ce2015-01-14 00:28:56 +0800646 /*
647 * Set ADATSZ with the maximum AHB buffer size to improve the
648 * read performance.
649 */
650 writel(QUADSPI_BUF3CR_ALLMST_MASK | ((q->devtype_data->ahb_buf_size / 8)
651 << QUADSPI_BUF3CR_ADATSZ_SHIFT), base + QUADSPI_BUF3CR);
Huang Shijiee46ecda2014-02-24 18:37:42 +0800652
653 /* We only use the buffer3 */
654 writel(0, base + QUADSPI_BUF0IND);
655 writel(0, base + QUADSPI_BUF1IND);
656 writel(0, base + QUADSPI_BUF2IND);
657
658 /* Set the default lut sequence for AHB Read. */
659 seqid = fsl_qspi_get_seqid(q, q->nor[0].read_opcode);
660 writel(seqid << QUADSPI_BFGENCR_SEQID_SHIFT,
661 q->iobase + QUADSPI_BFGENCR);
662}
663
Allen Xucacbef42015-08-04 10:25:58 -0500664/* This function was used to prepare and enable QSPI clock */
665static int fsl_qspi_clk_prep_enable(struct fsl_qspi *q)
666{
667 int ret;
668
669 ret = clk_prepare_enable(q->clk_en);
670 if (ret)
671 return ret;
672
673 ret = clk_prepare_enable(q->clk);
674 if (ret) {
675 clk_disable_unprepare(q->clk_en);
676 return ret;
677 }
678
Frank Li5cc66cb2015-08-04 10:26:04 -0500679 if (needs_wakeup_wait_mode(q))
680 pm_qos_add_request(&q->pm_qos_req, PM_QOS_CPU_DMA_LATENCY, 0);
681
Allen Xucacbef42015-08-04 10:25:58 -0500682 return 0;
683}
684
685/* This function was used to disable and unprepare QSPI clock */
686static void fsl_qspi_clk_disable_unprep(struct fsl_qspi *q)
687{
Frank Li5cc66cb2015-08-04 10:26:04 -0500688 if (needs_wakeup_wait_mode(q))
689 pm_qos_remove_request(&q->pm_qos_req);
690
Allen Xucacbef42015-08-04 10:25:58 -0500691 clk_disable_unprepare(q->clk);
692 clk_disable_unprepare(q->clk_en);
693
694}
695
Huang Shijiee46ecda2014-02-24 18:37:42 +0800696/* We use this function to do some basic init for spi_nor_scan(). */
697static int fsl_qspi_nor_setup(struct fsl_qspi *q)
698{
699 void __iomem *base = q->iobase;
700 u32 reg;
701 int ret;
702
Allen Xucacbef42015-08-04 10:25:58 -0500703 /* disable and unprepare clock to avoid glitch pass to controller */
704 fsl_qspi_clk_disable_unprep(q);
705
706 /* the default frequency, we will change it in the future. */
Huang Shijiee46ecda2014-02-24 18:37:42 +0800707 ret = clk_set_rate(q->clk, 66000000);
708 if (ret)
709 return ret;
710
Allen Xucacbef42015-08-04 10:25:58 -0500711 ret = fsl_qspi_clk_prep_enable(q);
712 if (ret)
713 return ret;
714
Frank Li8b8319c2015-08-04 10:26:10 -0500715 /* Reset the module */
716 writel(QUADSPI_MCR_SWRSTSD_MASK | QUADSPI_MCR_SWRSTHD_MASK,
717 base + QUADSPI_MCR);
718 udelay(1);
719
Huang Shijiee46ecda2014-02-24 18:37:42 +0800720 /* Init the LUT table. */
721 fsl_qspi_init_lut(q);
722
723 /* Disable the module */
724 writel(QUADSPI_MCR_MDIS_MASK | QUADSPI_MCR_RESERVED_MASK,
725 base + QUADSPI_MCR);
726
727 reg = readl(base + QUADSPI_SMPR);
728 writel(reg & ~(QUADSPI_SMPR_FSDLY_MASK
729 | QUADSPI_SMPR_FSPHS_MASK
730 | QUADSPI_SMPR_HSENA_MASK
731 | QUADSPI_SMPR_DDRSMP_MASK), base + QUADSPI_SMPR);
732
733 /* Enable the module */
734 writel(QUADSPI_MCR_RESERVED_MASK | QUADSPI_MCR_END_CFG_MASK,
735 base + QUADSPI_MCR);
736
Frank Li8b8319c2015-08-04 10:26:10 -0500737 /* clear all interrupt status */
738 writel(0xffffffff, q->iobase + QUADSPI_FR);
739
Huang Shijiee46ecda2014-02-24 18:37:42 +0800740 /* enable the interrupt */
741 writel(QUADSPI_RSER_TFIE, q->iobase + QUADSPI_RSER);
742
743 return 0;
744}
745
746static int fsl_qspi_nor_setup_last(struct fsl_qspi *q)
747{
748 unsigned long rate = q->clk_rate;
749 int ret;
750
Han Xu80d37722015-08-04 10:25:29 -0500751 if (needs_4x_clock(q))
Huang Shijiee46ecda2014-02-24 18:37:42 +0800752 rate *= 4;
753
Allen Xucacbef42015-08-04 10:25:58 -0500754 /* disable and unprepare clock to avoid glitch pass to controller */
755 fsl_qspi_clk_disable_unprep(q);
756
Huang Shijiee46ecda2014-02-24 18:37:42 +0800757 ret = clk_set_rate(q->clk, rate);
758 if (ret)
759 return ret;
760
Allen Xucacbef42015-08-04 10:25:58 -0500761 ret = fsl_qspi_clk_prep_enable(q);
762 if (ret)
763 return ret;
764
Huang Shijiee46ecda2014-02-24 18:37:42 +0800765 /* Init the LUT table again. */
766 fsl_qspi_init_lut(q);
767
768 /* Init for AHB read */
769 fsl_qspi_init_abh_read(q);
770
771 return 0;
772}
773
Fabian Frederick66610442015-03-16 20:20:28 +0100774static const struct of_device_id fsl_qspi_dt_ids[] = {
Huang Shijiee46ecda2014-02-24 18:37:42 +0800775 { .compatible = "fsl,vf610-qspi", .data = (void *)&vybrid_data, },
776 { .compatible = "fsl,imx6sx-qspi", .data = (void *)&imx6sx_data, },
Frank Lid371cbf2015-08-04 10:25:35 -0500777 { .compatible = "fsl,imx7d-qspi", .data = (void *)&imx7d_data, },
Frank Li74a081d12015-08-04 10:25:47 -0500778 { .compatible = "fsl,imx6ul-qspi", .data = (void *)&imx6ul_data, },
Huang Shijiee46ecda2014-02-24 18:37:42 +0800779 { /* sentinel */ }
780};
781MODULE_DEVICE_TABLE(of, fsl_qspi_dt_ids);
782
783static void fsl_qspi_set_base_addr(struct fsl_qspi *q, struct spi_nor *nor)
784{
785 q->chip_base_addr = q->nor_size * (nor - q->nor);
786}
787
788static int fsl_qspi_read_reg(struct spi_nor *nor, u8 opcode, u8 *buf, int len)
789{
790 int ret;
791 struct fsl_qspi *q = nor->priv;
792
793 ret = fsl_qspi_runcmd(q, opcode, 0, len);
794 if (ret)
795 return ret;
796
797 fsl_qspi_read_data(q, len, buf);
798 return 0;
799}
800
Jagan Tekif9f3ce82015-08-19 15:26:44 +0530801static int fsl_qspi_write_reg(struct spi_nor *nor, u8 opcode, u8 *buf, int len)
Huang Shijiee46ecda2014-02-24 18:37:42 +0800802{
803 struct fsl_qspi *q = nor->priv;
804 int ret;
805
806 if (!buf) {
807 ret = fsl_qspi_runcmd(q, opcode, 0, 1);
808 if (ret)
809 return ret;
810
Brian Norrisb02e7f32014-04-08 18:15:31 -0700811 if (opcode == SPINOR_OP_CHIP_ERASE)
Huang Shijiee46ecda2014-02-24 18:37:42 +0800812 fsl_qspi_invalid(q);
813
814 } else if (len > 0) {
815 ret = fsl_qspi_nor_write(q, nor, opcode, 0,
816 (u32 *)buf, len, NULL);
817 } else {
818 dev_err(q->dev, "invalid cmd %d\n", opcode);
819 ret = -EINVAL;
820 }
821
822 return ret;
823}
824
825static void fsl_qspi_write(struct spi_nor *nor, loff_t to,
826 size_t len, size_t *retlen, const u_char *buf)
827{
828 struct fsl_qspi *q = nor->priv;
829
830 fsl_qspi_nor_write(q, nor, nor->program_opcode, to,
831 (u32 *)buf, len, retlen);
832
833 /* invalid the data in the AHB buffer. */
834 fsl_qspi_invalid(q);
835}
836
837static int fsl_qspi_read(struct spi_nor *nor, loff_t from,
838 size_t len, size_t *retlen, u_char *buf)
839{
840 struct fsl_qspi *q = nor->priv;
841 u8 cmd = nor->read_opcode;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800842
Han Xu49bd7062015-08-04 10:25:22 -0500843 /* if necessary,ioremap buffer before AHB read, */
844 if (!q->ahb_addr) {
845 q->memmap_offs = q->chip_base_addr + from;
846 q->memmap_len = len > QUADSPI_MIN_IOMAP ? len : QUADSPI_MIN_IOMAP;
847
848 q->ahb_addr = ioremap_nocache(
849 q->memmap_phy + q->memmap_offs,
850 q->memmap_len);
851 if (!q->ahb_addr) {
852 dev_err(q->dev, "ioremap failed\n");
853 return -ENOMEM;
854 }
855 /* ioremap if the data requested is out of range */
856 } else if (q->chip_base_addr + from < q->memmap_offs
857 || q->chip_base_addr + from + len >
858 q->memmap_offs + q->memmap_len) {
859 iounmap(q->ahb_addr);
860
861 q->memmap_offs = q->chip_base_addr + from;
862 q->memmap_len = len > QUADSPI_MIN_IOMAP ? len : QUADSPI_MIN_IOMAP;
863 q->ahb_addr = ioremap_nocache(
864 q->memmap_phy + q->memmap_offs,
865 q->memmap_len);
866 if (!q->ahb_addr) {
867 dev_err(q->dev, "ioremap failed\n");
868 return -ENOMEM;
869 }
870 }
871
Brian Norrisa5c603a2015-10-12 13:35:15 -0700872 dev_dbg(q->dev, "cmd [%x],read from %p, len:%zd\n",
Han Xu49bd7062015-08-04 10:25:22 -0500873 cmd, q->ahb_addr + q->chip_base_addr + from - q->memmap_offs,
874 len);
Huang Shijiee46ecda2014-02-24 18:37:42 +0800875
Huang Shijiee46ecda2014-02-24 18:37:42 +0800876 /* Read out the data directly from the AHB buffer.*/
Han Xu49bd7062015-08-04 10:25:22 -0500877 memcpy(buf, q->ahb_addr + q->chip_base_addr + from - q->memmap_offs,
878 len);
Huang Shijiee46ecda2014-02-24 18:37:42 +0800879
880 *retlen += len;
881 return 0;
882}
883
884static int fsl_qspi_erase(struct spi_nor *nor, loff_t offs)
885{
886 struct fsl_qspi *q = nor->priv;
887 int ret;
888
889 dev_dbg(nor->dev, "%dKiB at 0x%08x:0x%08x\n",
Brian Norris19763672015-08-13 15:46:05 -0700890 nor->mtd.erasesize / 1024, q->chip_base_addr, (u32)offs);
Huang Shijiee46ecda2014-02-24 18:37:42 +0800891
Huang Shijiee46ecda2014-02-24 18:37:42 +0800892 ret = fsl_qspi_runcmd(q, nor->erase_opcode, offs, 0);
893 if (ret)
894 return ret;
895
896 fsl_qspi_invalid(q);
897 return 0;
898}
899
900static int fsl_qspi_prep(struct spi_nor *nor, enum spi_nor_ops ops)
901{
902 struct fsl_qspi *q = nor->priv;
903 int ret;
904
Han Xu392d39c2015-05-13 14:40:57 -0500905 mutex_lock(&q->lock);
Allen Xucacbef42015-08-04 10:25:58 -0500906
907 ret = fsl_qspi_clk_prep_enable(q);
Huang Shijiee46ecda2014-02-24 18:37:42 +0800908 if (ret)
Han Xu392d39c2015-05-13 14:40:57 -0500909 goto err_mutex;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800910
Huang Shijiee46ecda2014-02-24 18:37:42 +0800911 fsl_qspi_set_base_addr(q, nor);
912 return 0;
Han Xu392d39c2015-05-13 14:40:57 -0500913
Han Xu392d39c2015-05-13 14:40:57 -0500914err_mutex:
915 mutex_unlock(&q->lock);
Han Xu392d39c2015-05-13 14:40:57 -0500916 return ret;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800917}
918
919static void fsl_qspi_unprep(struct spi_nor *nor, enum spi_nor_ops ops)
920{
921 struct fsl_qspi *q = nor->priv;
922
Allen Xucacbef42015-08-04 10:25:58 -0500923 fsl_qspi_clk_disable_unprep(q);
Han Xu392d39c2015-05-13 14:40:57 -0500924 mutex_unlock(&q->lock);
Huang Shijiee46ecda2014-02-24 18:37:42 +0800925}
926
927static int fsl_qspi_probe(struct platform_device *pdev)
928{
929 struct device_node *np = pdev->dev.of_node;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800930 struct device *dev = &pdev->dev;
931 struct fsl_qspi *q;
932 struct resource *res;
933 struct spi_nor *nor;
934 struct mtd_info *mtd;
935 int ret, i = 0;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800936 const struct of_device_id *of_id =
937 of_match_device(fsl_qspi_dt_ids, &pdev->dev);
938
939 q = devm_kzalloc(dev, sizeof(*q), GFP_KERNEL);
940 if (!q)
941 return -ENOMEM;
942
943 q->nor_num = of_get_child_count(dev->of_node);
944 if (!q->nor_num || q->nor_num > FSL_QSPI_MAX_CHIP)
945 return -ENODEV;
946
Frank Li5cc66cb2015-08-04 10:26:04 -0500947 q->dev = dev;
948 q->devtype_data = (struct fsl_qspi_devtype_data *)of_id->data;
949 platform_set_drvdata(pdev, q);
950
Huang Shijiee46ecda2014-02-24 18:37:42 +0800951 /* find the resources */
952 res = platform_get_resource_byname(pdev, IORESOURCE_MEM, "QuadSPI");
953 q->iobase = devm_ioremap_resource(dev, res);
Fabio Estevamb1ab4742015-01-22 22:43:07 -0200954 if (IS_ERR(q->iobase))
955 return PTR_ERR(q->iobase);
Huang Shijiee46ecda2014-02-24 18:37:42 +0800956
957 res = platform_get_resource_byname(pdev, IORESOURCE_MEM,
958 "QuadSPI-memory");
Han Xu49bd7062015-08-04 10:25:22 -0500959 if (!devm_request_mem_region(dev, res->start, resource_size(res),
960 res->name)) {
961 dev_err(dev, "can't request region for resource %pR\n", res);
962 return -EBUSY;
963 }
Fabio Estevamb1ab4742015-01-22 22:43:07 -0200964
Huang Shijiee46ecda2014-02-24 18:37:42 +0800965 q->memmap_phy = res->start;
966
967 /* find the clocks */
968 q->clk_en = devm_clk_get(dev, "qspi_en");
Fabio Estevamb1ab4742015-01-22 22:43:07 -0200969 if (IS_ERR(q->clk_en))
970 return PTR_ERR(q->clk_en);
Huang Shijiee46ecda2014-02-24 18:37:42 +0800971
972 q->clk = devm_clk_get(dev, "qspi");
Fabio Estevamb1ab4742015-01-22 22:43:07 -0200973 if (IS_ERR(q->clk))
974 return PTR_ERR(q->clk);
Huang Shijiee46ecda2014-02-24 18:37:42 +0800975
Allen Xucacbef42015-08-04 10:25:58 -0500976 ret = fsl_qspi_clk_prep_enable(q);
Huang Shijiee46ecda2014-02-24 18:37:42 +0800977 if (ret) {
Allen Xucacbef42015-08-04 10:25:58 -0500978 dev_err(dev, "can not enable the clock\n");
Fabio Estevam77adc082014-10-17 17:14:01 -0300979 goto clk_failed;
Huang Shijiee46ecda2014-02-24 18:37:42 +0800980 }
981
982 /* find the irq */
983 ret = platform_get_irq(pdev, 0);
984 if (ret < 0) {
Fabio Estevamdc6525c2015-02-09 10:07:19 -0200985 dev_err(dev, "failed to get the irq: %d\n", ret);
Huang Shijiee46ecda2014-02-24 18:37:42 +0800986 goto irq_failed;
987 }
988
989 ret = devm_request_irq(dev, ret,
990 fsl_qspi_irq_handler, 0, pdev->name, q);
991 if (ret) {
Fabio Estevamdc6525c2015-02-09 10:07:19 -0200992 dev_err(dev, "failed to request irq: %d\n", ret);
Huang Shijiee46ecda2014-02-24 18:37:42 +0800993 goto irq_failed;
994 }
995
Huang Shijiee46ecda2014-02-24 18:37:42 +0800996 ret = fsl_qspi_nor_setup(q);
997 if (ret)
998 goto irq_failed;
999
1000 if (of_get_property(np, "fsl,qspi-has-second-chip", NULL))
Fabio Estevamcfe4af32015-01-13 20:14:15 -02001001 q->has_second_chip = true;
Huang Shijiee46ecda2014-02-24 18:37:42 +08001002
Han Xu392d39c2015-05-13 14:40:57 -05001003 mutex_init(&q->lock);
1004
Huang Shijiee46ecda2014-02-24 18:37:42 +08001005 /* iterate the subnodes. */
1006 for_each_available_child_of_node(dev->of_node, np) {
Huang Shijiee46ecda2014-02-24 18:37:42 +08001007 /* skip the holes */
Fabio Estevamcfe4af32015-01-13 20:14:15 -02001008 if (!q->has_second_chip)
Huang Shijiee46ecda2014-02-24 18:37:42 +08001009 i *= 2;
1010
1011 nor = &q->nor[i];
Brian Norris19763672015-08-13 15:46:05 -07001012 mtd = &nor->mtd;
Huang Shijiee46ecda2014-02-24 18:37:42 +08001013
Huang Shijiee46ecda2014-02-24 18:37:42 +08001014 nor->dev = dev;
Brian Norris9c7d7872015-10-30 20:33:24 -07001015 spi_nor_set_flash_node(nor, np);
Huang Shijiee46ecda2014-02-24 18:37:42 +08001016 nor->priv = q;
Huang Shijiee46ecda2014-02-24 18:37:42 +08001017
1018 /* fill the hooks */
1019 nor->read_reg = fsl_qspi_read_reg;
1020 nor->write_reg = fsl_qspi_write_reg;
1021 nor->read = fsl_qspi_read;
1022 nor->write = fsl_qspi_write;
1023 nor->erase = fsl_qspi_erase;
1024
1025 nor->prepare = fsl_qspi_prep;
1026 nor->unprepare = fsl_qspi_unprep;
1027
Huang Shijiee46ecda2014-02-24 18:37:42 +08001028 ret = of_property_read_u32(np, "spi-max-frequency",
1029 &q->clk_rate);
1030 if (ret < 0)
Han Xu392d39c2015-05-13 14:40:57 -05001031 goto mutex_failed;
Huang Shijiee46ecda2014-02-24 18:37:42 +08001032
1033 /* set the chip address for READID */
1034 fsl_qspi_set_base_addr(q, nor);
1035
Brian Norrise747dbe2015-08-13 15:46:02 -07001036 ret = spi_nor_scan(nor, NULL, SPI_NOR_QUAD);
Huang Shijiee46ecda2014-02-24 18:37:42 +08001037 if (ret)
Han Xu392d39c2015-05-13 14:40:57 -05001038 goto mutex_failed;
Huang Shijiee46ecda2014-02-24 18:37:42 +08001039
Brian Norrisdf02c882015-10-30 20:33:26 -07001040 ret = mtd_device_register(mtd, NULL, 0);
Huang Shijiee46ecda2014-02-24 18:37:42 +08001041 if (ret)
Han Xu392d39c2015-05-13 14:40:57 -05001042 goto mutex_failed;
Huang Shijiee46ecda2014-02-24 18:37:42 +08001043
1044 /* Set the correct NOR size now. */
1045 if (q->nor_size == 0) {
1046 q->nor_size = mtd->size;
1047
1048 /* Map the SPI NOR to accessiable address */
1049 fsl_qspi_set_map_addr(q);
1050 }
1051
1052 /*
1053 * The TX FIFO is 64 bytes in the Vybrid, but the Page Program
1054 * may writes 265 bytes per time. The write is working in the
1055 * unit of the TX FIFO, not in the unit of the SPI NOR's page
1056 * size.
1057 *
1058 * So shrink the spi_nor->page_size if it is larger then the
1059 * TX FIFO.
1060 */
1061 if (nor->page_size > q->devtype_data->txfifo)
1062 nor->page_size = q->devtype_data->txfifo;
1063
1064 i++;
1065 }
1066
1067 /* finish the rest init. */
1068 ret = fsl_qspi_nor_setup_last(q);
1069 if (ret)
1070 goto last_init_failed;
1071
Allen Xucacbef42015-08-04 10:25:58 -05001072 fsl_qspi_clk_disable_unprep(q);
Huang Shijiee46ecda2014-02-24 18:37:42 +08001073 return 0;
1074
1075last_init_failed:
Fabio Estevamcfe4af32015-01-13 20:14:15 -02001076 for (i = 0; i < q->nor_num; i++) {
1077 /* skip the holes */
1078 if (!q->has_second_chip)
1079 i *= 2;
Brian Norris19763672015-08-13 15:46:05 -07001080 mtd_device_unregister(&q->nor[i].mtd);
Fabio Estevamcfe4af32015-01-13 20:14:15 -02001081 }
Han Xu392d39c2015-05-13 14:40:57 -05001082mutex_failed:
1083 mutex_destroy(&q->lock);
Huang Shijiee46ecda2014-02-24 18:37:42 +08001084irq_failed:
Allen Xucacbef42015-08-04 10:25:58 -05001085 fsl_qspi_clk_disable_unprep(q);
Fabio Estevam77adc082014-10-17 17:14:01 -03001086clk_failed:
Allen Xucacbef42015-08-04 10:25:58 -05001087 dev_err(dev, "Freescale QuadSPI probe failed\n");
Huang Shijiee46ecda2014-02-24 18:37:42 +08001088 return ret;
1089}
1090
1091static int fsl_qspi_remove(struct platform_device *pdev)
1092{
1093 struct fsl_qspi *q = platform_get_drvdata(pdev);
1094 int i;
1095
Fabio Estevamcfe4af32015-01-13 20:14:15 -02001096 for (i = 0; i < q->nor_num; i++) {
1097 /* skip the holes */
1098 if (!q->has_second_chip)
1099 i *= 2;
Brian Norris19763672015-08-13 15:46:05 -07001100 mtd_device_unregister(&q->nor[i].mtd);
Fabio Estevamcfe4af32015-01-13 20:14:15 -02001101 }
Huang Shijiee46ecda2014-02-24 18:37:42 +08001102
1103 /* disable the hardware */
1104 writel(QUADSPI_MCR_MDIS_MASK, q->iobase + QUADSPI_MCR);
1105 writel(0x0, q->iobase + QUADSPI_RSER);
1106
Han Xu392d39c2015-05-13 14:40:57 -05001107 mutex_destroy(&q->lock);
Han Xu49bd7062015-08-04 10:25:22 -05001108
1109 if (q->ahb_addr)
1110 iounmap(q->ahb_addr);
1111
Huang Shijiee46ecda2014-02-24 18:37:42 +08001112 return 0;
1113}
1114
Allen Xu45c6a0c2015-01-13 04:56:40 +08001115static int fsl_qspi_suspend(struct platform_device *pdev, pm_message_t state)
1116{
1117 return 0;
1118}
1119
1120static int fsl_qspi_resume(struct platform_device *pdev)
1121{
Allen Xucacbef42015-08-04 10:25:58 -05001122 int ret;
Allen Xu45c6a0c2015-01-13 04:56:40 +08001123 struct fsl_qspi *q = platform_get_drvdata(pdev);
1124
Allen Xucacbef42015-08-04 10:25:58 -05001125 ret = fsl_qspi_clk_prep_enable(q);
1126 if (ret)
1127 return ret;
1128
Allen Xu45c6a0c2015-01-13 04:56:40 +08001129 fsl_qspi_nor_setup(q);
1130 fsl_qspi_set_map_addr(q);
1131 fsl_qspi_nor_setup_last(q);
1132
Allen Xucacbef42015-08-04 10:25:58 -05001133 fsl_qspi_clk_disable_unprep(q);
1134
Allen Xu45c6a0c2015-01-13 04:56:40 +08001135 return 0;
1136}
1137
Huang Shijiee46ecda2014-02-24 18:37:42 +08001138static struct platform_driver fsl_qspi_driver = {
1139 .driver = {
1140 .name = "fsl-quadspi",
1141 .bus = &platform_bus_type,
Huang Shijiee46ecda2014-02-24 18:37:42 +08001142 .of_match_table = fsl_qspi_dt_ids,
1143 },
1144 .probe = fsl_qspi_probe,
1145 .remove = fsl_qspi_remove,
Allen Xu45c6a0c2015-01-13 04:56:40 +08001146 .suspend = fsl_qspi_suspend,
1147 .resume = fsl_qspi_resume,
Huang Shijiee46ecda2014-02-24 18:37:42 +08001148};
1149module_platform_driver(fsl_qspi_driver);
1150
1151MODULE_DESCRIPTION("Freescale QuadSPI Controller Driver");
1152MODULE_AUTHOR("Freescale Semiconductor Inc.");
1153MODULE_LICENSE("GPL v2");