blob: 7c782ebd0f312b49c2034d04ab11da75c837dda6 [file] [log] [blame]
Anton Vorontsov5c249c52008-03-11 22:33:13 +03001/*
2 * Freescale UPM NAND driver.
3 *
4 * Copyright © 2007-2008 MontaVista Software, Inc.
5 *
6 * Author: Anton Vorontsov <avorontsov@ru.mvista.com>
7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License as published by
10 * the Free Software Foundation; either version 2 of the License, or
11 * (at your option) any later version.
12 */
13
14#include <linux/kernel.h>
15#include <linux/module.h>
Wolfgang Grandegger13f53692008-06-09 10:19:08 +020016#include <linux/delay.h>
Anton Vorontsov5c249c52008-03-11 22:33:13 +030017#include <linux/mtd/nand.h>
18#include <linux/mtd/nand_ecc.h>
19#include <linux/mtd/partitions.h>
20#include <linux/mtd/mtd.h>
21#include <linux/of_platform.h>
22#include <linux/of_gpio.h>
23#include <linux/io.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090024#include <linux/slab.h>
Anton Vorontsov5c249c52008-03-11 22:33:13 +030025#include <asm/fsl_lbc.h>
26
Wolfgang Grandeggerade92a62009-03-30 12:02:43 +020027#define FSL_UPM_WAIT_RUN_PATTERN 0x1
28#define FSL_UPM_WAIT_WRITE_BYTE 0x2
29#define FSL_UPM_WAIT_WRITE_BUFFER 0x4
30
Anton Vorontsov5c249c52008-03-11 22:33:13 +030031struct fsl_upm_nand {
32 struct device *dev;
33 struct mtd_info mtd;
34 struct nand_chip chip;
35 int last_ctrl;
Anton Vorontsov5c249c52008-03-11 22:33:13 +030036 struct mtd_partition *parts;
Anton Vorontsov5c249c52008-03-11 22:33:13 +030037 struct fsl_upm upm;
38 uint8_t upm_addr_offset;
39 uint8_t upm_cmd_offset;
40 void __iomem *io_base;
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +020041 int rnb_gpio[NAND_MAX_CHIPS];
42 uint32_t mchip_offsets[NAND_MAX_CHIPS];
43 uint32_t mchip_count;
44 uint32_t mchip_number;
Wolfgang Grandegger13f53692008-06-09 10:19:08 +020045 int chip_delay;
Wolfgang Grandeggerade92a62009-03-30 12:02:43 +020046 uint32_t wait_flags;
Anton Vorontsov5c249c52008-03-11 22:33:13 +030047};
48
Ferenc Wagnerb92b5c42010-03-23 18:08:16 +010049static inline struct fsl_upm_nand *to_fsl_upm_nand(struct mtd_info *mtdinfo)
50{
51 return container_of(mtdinfo, struct fsl_upm_nand, mtd);
52}
Anton Vorontsov5c249c52008-03-11 22:33:13 +030053
54static int fun_chip_ready(struct mtd_info *mtd)
55{
56 struct fsl_upm_nand *fun = to_fsl_upm_nand(mtd);
57
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +020058 if (gpio_get_value(fun->rnb_gpio[fun->mchip_number]))
Anton Vorontsov5c249c52008-03-11 22:33:13 +030059 return 1;
60
61 dev_vdbg(fun->dev, "busy\n");
62 return 0;
63}
64
65static void fun_wait_rnb(struct fsl_upm_nand *fun)
66{
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +020067 if (fun->rnb_gpio[fun->mchip_number] >= 0) {
68 int cnt = 1000000;
Anton Vorontsov5c249c52008-03-11 22:33:13 +030069
Anton Vorontsov5c249c52008-03-11 22:33:13 +030070 while (--cnt && !fun_chip_ready(&fun->mtd))
71 cpu_relax();
Wolfgang Grandegger13f53692008-06-09 10:19:08 +020072 if (!cnt)
73 dev_err(fun->dev, "tired waiting for RNB\n");
74 } else {
75 ndelay(100);
Anton Vorontsov5c249c52008-03-11 22:33:13 +030076 }
Anton Vorontsov5c249c52008-03-11 22:33:13 +030077}
78
79static void fun_cmd_ctrl(struct mtd_info *mtd, int cmd, unsigned int ctrl)
80{
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +020081 struct nand_chip *chip = mtd->priv;
Anton Vorontsov5c249c52008-03-11 22:33:13 +030082 struct fsl_upm_nand *fun = to_fsl_upm_nand(mtd);
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +020083 u32 mar;
Anton Vorontsov5c249c52008-03-11 22:33:13 +030084
85 if (!(ctrl & fun->last_ctrl)) {
86 fsl_upm_end_pattern(&fun->upm);
87
88 if (cmd == NAND_CMD_NONE)
89 return;
90
91 fun->last_ctrl = ctrl & (NAND_ALE | NAND_CLE);
92 }
93
94 if (ctrl & NAND_CTRL_CHANGE) {
95 if (ctrl & NAND_ALE)
96 fsl_upm_start_pattern(&fun->upm, fun->upm_addr_offset);
97 else if (ctrl & NAND_CLE)
98 fsl_upm_start_pattern(&fun->upm, fun->upm_cmd_offset);
99 }
100
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +0200101 mar = (cmd << (32 - fun->upm.width)) |
102 fun->mchip_offsets[fun->mchip_number];
103 fsl_upm_run_pattern(&fun->upm, chip->IO_ADDR_R, mar);
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300104
Wolfgang Grandeggerade92a62009-03-30 12:02:43 +0200105 if (fun->wait_flags & FSL_UPM_WAIT_RUN_PATTERN)
106 fun_wait_rnb(fun);
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300107}
108
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +0200109static void fun_select_chip(struct mtd_info *mtd, int mchip_nr)
110{
111 struct nand_chip *chip = mtd->priv;
112 struct fsl_upm_nand *fun = to_fsl_upm_nand(mtd);
113
114 if (mchip_nr == -1) {
115 chip->cmd_ctrl(mtd, NAND_CMD_NONE, 0 | NAND_CTRL_CHANGE);
Roel Kluin35016dd2009-11-03 20:49:18 +0100116 } else if (mchip_nr >= 0 && mchip_nr < NAND_MAX_CHIPS) {
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +0200117 fun->mchip_number = mchip_nr;
118 chip->IO_ADDR_R = fun->io_base + fun->mchip_offsets[mchip_nr];
119 chip->IO_ADDR_W = chip->IO_ADDR_R;
120 } else {
121 BUG();
122 }
123}
124
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300125static uint8_t fun_read_byte(struct mtd_info *mtd)
126{
127 struct fsl_upm_nand *fun = to_fsl_upm_nand(mtd);
128
129 return in_8(fun->chip.IO_ADDR_R);
130}
131
132static void fun_read_buf(struct mtd_info *mtd, uint8_t *buf, int len)
133{
134 struct fsl_upm_nand *fun = to_fsl_upm_nand(mtd);
135 int i;
136
137 for (i = 0; i < len; i++)
138 buf[i] = in_8(fun->chip.IO_ADDR_R);
139}
140
141static void fun_write_buf(struct mtd_info *mtd, const uint8_t *buf, int len)
142{
143 struct fsl_upm_nand *fun = to_fsl_upm_nand(mtd);
144 int i;
145
146 for (i = 0; i < len; i++) {
147 out_8(fun->chip.IO_ADDR_W, buf[i]);
Wolfgang Grandeggerade92a62009-03-30 12:02:43 +0200148 if (fun->wait_flags & FSL_UPM_WAIT_WRITE_BYTE)
149 fun_wait_rnb(fun);
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300150 }
Wolfgang Grandeggerade92a62009-03-30 12:02:43 +0200151 if (fun->wait_flags & FSL_UPM_WAIT_WRITE_BUFFER)
152 fun_wait_rnb(fun);
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300153}
154
Anton Vorontsov95ebffd2008-09-18 20:50:26 +0400155static int __devinit fun_chip_init(struct fsl_upm_nand *fun,
156 const struct device_node *upm_np,
157 const struct resource *io_res)
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300158{
159 int ret;
Anton Vorontsov95ebffd2008-09-18 20:50:26 +0400160 struct device_node *flash_np;
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300161
162 fun->chip.IO_ADDR_R = fun->io_base;
163 fun->chip.IO_ADDR_W = fun->io_base;
164 fun->chip.cmd_ctrl = fun_cmd_ctrl;
Wolfgang Grandegger13f53692008-06-09 10:19:08 +0200165 fun->chip.chip_delay = fun->chip_delay;
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300166 fun->chip.read_byte = fun_read_byte;
167 fun->chip.read_buf = fun_read_buf;
168 fun->chip.write_buf = fun_write_buf;
169 fun->chip.ecc.mode = NAND_ECC_SOFT;
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +0200170 if (fun->mchip_count > 1)
171 fun->chip.select_chip = fun_select_chip;
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300172
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +0200173 if (fun->rnb_gpio[0] >= 0)
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300174 fun->chip.dev_ready = fun_chip_ready;
175
176 fun->mtd.priv = &fun->chip;
177 fun->mtd.owner = THIS_MODULE;
178
Anton Vorontsov95ebffd2008-09-18 20:50:26 +0400179 flash_np = of_get_next_child(upm_np, NULL);
180 if (!flash_np)
181 return -ENODEV;
182
Roy Zang0eecf4b2010-09-08 16:47:55 +0800183 fun->mtd.name = kasprintf(GFP_KERNEL, "0x%llx.%s", (u64)io_res->start,
Anton Vorontsov95ebffd2008-09-18 20:50:26 +0400184 flash_np->name);
185 if (!fun->mtd.name) {
186 ret = -ENOMEM;
187 goto err;
188 }
189
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +0200190 ret = nand_scan(&fun->mtd, fun->mchip_count);
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300191 if (ret)
Anton Vorontsov95ebffd2008-09-18 20:50:26 +0400192 goto err;
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300193
Dmitry Eremin-Solenikova8e08322011-05-29 20:16:56 +0400194 ret = parse_mtd_partitions(&fun->mtd, NULL, &fun->parts, 0);
Anton Vorontsov95ebffd2008-09-18 20:50:26 +0400195
196#ifdef CONFIG_MTD_OF_PARTS
Wolfgang Grandegger29b65862008-11-27 09:46:13 +0000197 if (ret == 0) {
198 ret = of_mtd_parse_partitions(fun->dev, flash_np, &fun->parts);
199 if (ret < 0)
200 goto err;
201 }
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300202#endif
Jamie Iles13c41db2011-05-23 10:23:22 +0100203 ret = mtd_device_register(&fun->mtd, fun->parts, ret);
Anton Vorontsov95ebffd2008-09-18 20:50:26 +0400204err:
205 of_node_put(flash_np);
206 return ret;
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300207}
208
Grant Likely1c48a5c2011-02-17 02:43:24 -0700209static int __devinit fun_probe(struct platform_device *ofdev)
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300210{
211 struct fsl_upm_nand *fun;
212 struct resource io_res;
Ian Munsie766f2712010-10-01 17:06:08 +1000213 const __be32 *prop;
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +0200214 int rnb_gpio;
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300215 int ret;
216 int size;
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +0200217 int i;
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300218
219 fun = kzalloc(sizeof(*fun), GFP_KERNEL);
220 if (!fun)
221 return -ENOMEM;
222
Anatolij Gustschinc8a4d0f2010-06-03 02:37:17 +0200223 ret = of_address_to_resource(ofdev->dev.of_node, 0, &io_res);
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300224 if (ret) {
225 dev_err(&ofdev->dev, "can't get IO base\n");
226 goto err1;
227 }
228
229 ret = fsl_upm_find(io_res.start, &fun->upm);
230 if (ret) {
231 dev_err(&ofdev->dev, "can't find UPM\n");
232 goto err1;
233 }
234
Anatolij Gustschinc8a4d0f2010-06-03 02:37:17 +0200235 prop = of_get_property(ofdev->dev.of_node, "fsl,upm-addr-offset",
236 &size);
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300237 if (!prop || size != sizeof(uint32_t)) {
238 dev_err(&ofdev->dev, "can't get UPM address offset\n");
239 ret = -EINVAL;
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +0200240 goto err1;
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300241 }
242 fun->upm_addr_offset = *prop;
243
Anatolij Gustschinc8a4d0f2010-06-03 02:37:17 +0200244 prop = of_get_property(ofdev->dev.of_node, "fsl,upm-cmd-offset", &size);
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300245 if (!prop || size != sizeof(uint32_t)) {
246 dev_err(&ofdev->dev, "can't get UPM command offset\n");
247 ret = -EINVAL;
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +0200248 goto err1;
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300249 }
250 fun->upm_cmd_offset = *prop;
251
Anatolij Gustschinc8a4d0f2010-06-03 02:37:17 +0200252 prop = of_get_property(ofdev->dev.of_node,
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +0200253 "fsl,upm-addr-line-cs-offsets", &size);
254 if (prop && (size / sizeof(uint32_t)) > 0) {
255 fun->mchip_count = size / sizeof(uint32_t);
256 if (fun->mchip_count >= NAND_MAX_CHIPS) {
257 dev_err(&ofdev->dev, "too much multiple chips\n");
258 goto err1;
259 }
260 for (i = 0; i < fun->mchip_count; i++)
Ian Munsie766f2712010-10-01 17:06:08 +1000261 fun->mchip_offsets[i] = be32_to_cpu(prop[i]);
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +0200262 } else {
263 fun->mchip_count = 1;
264 }
265
266 for (i = 0; i < fun->mchip_count; i++) {
267 fun->rnb_gpio[i] = -1;
Anatolij Gustschinc8a4d0f2010-06-03 02:37:17 +0200268 rnb_gpio = of_get_gpio(ofdev->dev.of_node, i);
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +0200269 if (rnb_gpio >= 0) {
270 ret = gpio_request(rnb_gpio, dev_name(&ofdev->dev));
271 if (ret) {
272 dev_err(&ofdev->dev,
273 "can't request RNB gpio #%d\n", i);
274 goto err2;
275 }
276 gpio_direction_input(rnb_gpio);
277 fun->rnb_gpio[i] = rnb_gpio;
278 } else if (rnb_gpio == -EINVAL) {
279 dev_err(&ofdev->dev, "RNB gpio #%d is invalid\n", i);
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300280 goto err2;
281 }
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300282 }
283
Anatolij Gustschinc8a4d0f2010-06-03 02:37:17 +0200284 prop = of_get_property(ofdev->dev.of_node, "chip-delay", NULL);
Wolfgang Grandegger13f53692008-06-09 10:19:08 +0200285 if (prop)
Ian Munsie766f2712010-10-01 17:06:08 +1000286 fun->chip_delay = be32_to_cpup(prop);
Wolfgang Grandegger13f53692008-06-09 10:19:08 +0200287 else
288 fun->chip_delay = 50;
289
Anatolij Gustschinc8a4d0f2010-06-03 02:37:17 +0200290 prop = of_get_property(ofdev->dev.of_node, "fsl,upm-wait-flags", &size);
Wolfgang Grandeggerade92a62009-03-30 12:02:43 +0200291 if (prop && size == sizeof(uint32_t))
Ian Munsie766f2712010-10-01 17:06:08 +1000292 fun->wait_flags = be32_to_cpup(prop);
Wolfgang Grandeggerade92a62009-03-30 12:02:43 +0200293 else
294 fun->wait_flags = FSL_UPM_WAIT_RUN_PATTERN |
295 FSL_UPM_WAIT_WRITE_BYTE;
296
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300297 fun->io_base = devm_ioremap_nocache(&ofdev->dev, io_res.start,
H Hartley Sweeten58e6a842009-12-14 16:22:49 -0500298 resource_size(&io_res));
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300299 if (!fun->io_base) {
300 ret = -ENOMEM;
301 goto err2;
302 }
303
304 fun->dev = &ofdev->dev;
305 fun->last_ctrl = NAND_CLE;
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300306
Anatolij Gustschinc8a4d0f2010-06-03 02:37:17 +0200307 ret = fun_chip_init(fun, ofdev->dev.of_node, &io_res);
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300308 if (ret)
309 goto err2;
310
311 dev_set_drvdata(&ofdev->dev, fun);
312
313 return 0;
314err2:
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +0200315 for (i = 0; i < fun->mchip_count; i++) {
316 if (fun->rnb_gpio[i] < 0)
317 break;
318 gpio_free(fun->rnb_gpio[i]);
319 }
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300320err1:
321 kfree(fun);
322
323 return ret;
324}
325
Grant Likely2dc11582010-08-06 09:25:50 -0600326static int __devexit fun_remove(struct platform_device *ofdev)
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300327{
328 struct fsl_upm_nand *fun = dev_get_drvdata(&ofdev->dev);
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +0200329 int i;
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300330
331 nand_release(&fun->mtd);
Anton Vorontsov95ebffd2008-09-18 20:50:26 +0400332 kfree(fun->mtd.name);
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300333
Wolfgang Grandeggerb6e0e8c2009-03-30 12:02:42 +0200334 for (i = 0; i < fun->mchip_count; i++) {
335 if (fun->rnb_gpio[i] < 0)
336 break;
337 gpio_free(fun->rnb_gpio[i]);
338 }
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300339
340 kfree(fun);
341
342 return 0;
343}
344
Márton Némethb2d4fba2010-01-09 15:10:46 +0100345static const struct of_device_id of_fun_match[] = {
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300346 { .compatible = "fsl,upm-nand" },
347 {},
348};
349MODULE_DEVICE_TABLE(of, of_fun_match);
350
Grant Likely1c48a5c2011-02-17 02:43:24 -0700351static struct platform_driver of_fun_driver = {
Grant Likely40182942010-04-13 16:13:02 -0700352 .driver = {
353 .name = "fsl,upm-nand",
354 .owner = THIS_MODULE,
355 .of_match_table = of_fun_match,
356 },
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300357 .probe = fun_probe,
358 .remove = __devexit_p(fun_remove),
359};
360
361static int __init fun_module_init(void)
362{
Grant Likely1c48a5c2011-02-17 02:43:24 -0700363 return platform_driver_register(&of_fun_driver);
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300364}
365module_init(fun_module_init);
366
367static void __exit fun_module_exit(void)
368{
Grant Likely1c48a5c2011-02-17 02:43:24 -0700369 platform_driver_unregister(&of_fun_driver);
Anton Vorontsov5c249c52008-03-11 22:33:13 +0300370}
371module_exit(fun_module_exit);
372
373MODULE_LICENSE("GPL");
374MODULE_AUTHOR("Anton Vorontsov <avorontsov@ru.mvista.com>");
375MODULE_DESCRIPTION("Driver for NAND chips working through Freescale "
376 "LocalBus User-Programmable Machine");