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David Brownell8ae12a02006-01-08 13:34:19 -08001/*
Grant Likelyca632f52011-06-06 01:16:30 -06002 * SPI init/core code
David Brownell8ae12a02006-01-08 13:34:19 -08003 *
4 * Copyright (C) 2005 David Brownell
Grant Likelyd57a4282012-04-07 14:16:53 -06005 * Copyright (C) 2008 Secret Lab Technologies Ltd.
David Brownell8ae12a02006-01-08 13:34:19 -08006 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation; either version 2 of the License, or
10 * (at your option) any later version.
11 *
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
David Brownell8ae12a02006-01-08 13:34:19 -080016 */
17
David Brownell8ae12a02006-01-08 13:34:19 -080018#include <linux/kernel.h>
19#include <linux/device.h>
20#include <linux/init.h>
21#include <linux/cache.h>
Mark Brown99adef32014-01-16 12:22:43 +000022#include <linux/dma-mapping.h>
23#include <linux/dmaengine.h>
Matthias Kaehlcke94040822007-07-17 04:04:16 -070024#include <linux/mutex.h>
Sinan Akman2b7a32f2010-10-02 21:28:29 -060025#include <linux/of_device.h>
Grant Likelyd57a4282012-04-07 14:16:53 -060026#include <linux/of_irq.h>
Sylwester Nawrocki86be4082014-06-18 17:29:32 +020027#include <linux/clk/clk-conf.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090028#include <linux/slab.h>
Anton Vorontsove0626e32009-09-22 16:46:08 -070029#include <linux/mod_devicetable.h>
David Brownell8ae12a02006-01-08 13:34:19 -080030#include <linux/spi/spi.h>
Jean-Christophe PLAGNIOL-VILLARD74317982012-11-15 20:19:57 +010031#include <linux/of_gpio.h>
Mark Brown3ae22e82010-12-25 15:32:27 +010032#include <linux/pm_runtime.h>
Ulf Hanssonf48c7672014-09-29 13:58:47 +020033#include <linux/pm_domain.h>
Dmitry Torokhov826cf172017-02-28 14:25:18 -080034#include <linux/property.h>
Paul Gortmaker025ed132011-07-10 12:57:55 -040035#include <linux/export.h>
Clark Williams8bd75c72013-02-07 09:47:07 -060036#include <linux/sched/rt.h>
Ingo Molnarae7e81c2017-02-01 18:07:51 +010037#include <uapi/linux/sched/types.h>
Linus Walleijffbbdd212012-02-22 10:05:38 +010038#include <linux/delay.h>
39#include <linux/kthread.h>
Mika Westerberg64bee4d2012-11-30 12:37:53 +010040#include <linux/ioport.h>
41#include <linux/acpi.h>
Vignesh Rb1b81532016-08-17 15:22:36 +053042#include <linux/highmem.h>
Suniel Mahesh9b61e302017-08-03 10:05:57 +053043#include <linux/idr.h>
Lukas Wunner8a2e4872017-08-01 14:10:41 +020044#include <linux/platform_data/x86/apple.h>
David Brownell8ae12a02006-01-08 13:34:19 -080045
Mark Brown56ec1972013-10-07 19:33:53 +010046#define CREATE_TRACE_POINTS
47#include <trace/events/spi.h>
Suniel Mahesh9b61e302017-08-03 10:05:57 +053048
49static DEFINE_IDR(spi_master_idr);
Mark Brown56ec1972013-10-07 19:33:53 +010050
David Brownell8ae12a02006-01-08 13:34:19 -080051static void spidev_release(struct device *dev)
52{
Hans-Peter Nilsson0ffa0282007-02-12 00:52:45 -080053 struct spi_device *spi = to_spi_device(dev);
David Brownell8ae12a02006-01-08 13:34:19 -080054
Geert Uytterhoeven8caab752017-06-13 13:23:52 +020055 /* spi controllers may cleanup for released devices */
56 if (spi->controller->cleanup)
57 spi->controller->cleanup(spi);
David Brownell8ae12a02006-01-08 13:34:19 -080058
Geert Uytterhoeven8caab752017-06-13 13:23:52 +020059 spi_controller_put(spi->controller);
Roman Tereshonkov07a389f2010-04-12 09:56:35 +000060 kfree(spi);
David Brownell8ae12a02006-01-08 13:34:19 -080061}
62
63static ssize_t
64modalias_show(struct device *dev, struct device_attribute *a, char *buf)
65{
66 const struct spi_device *spi = to_spi_device(dev);
Zhang Rui8c4ff6d2014-01-14 16:46:37 +080067 int len;
68
69 len = acpi_device_modalias(dev, buf, PAGE_SIZE - 1);
70 if (len != -ENODEV)
71 return len;
David Brownell8ae12a02006-01-08 13:34:19 -080072
Grant Likelyd8e328b2012-05-20 00:08:13 -060073 return sprintf(buf, "%s%s\n", SPI_MODULE_PREFIX, spi->modalias);
David Brownell8ae12a02006-01-08 13:34:19 -080074}
Greg Kroah-Hartmanaa7da562013-10-07 18:27:38 -070075static DEVICE_ATTR_RO(modalias);
David Brownell8ae12a02006-01-08 13:34:19 -080076
Martin Sperleca2ebc2015-06-22 13:00:36 +000077#define SPI_STATISTICS_ATTRS(field, file) \
Geert Uytterhoeven8caab752017-06-13 13:23:52 +020078static ssize_t spi_controller_##field##_show(struct device *dev, \
79 struct device_attribute *attr, \
80 char *buf) \
Martin Sperleca2ebc2015-06-22 13:00:36 +000081{ \
Geert Uytterhoeven8caab752017-06-13 13:23:52 +020082 struct spi_controller *ctlr = container_of(dev, \
83 struct spi_controller, dev); \
84 return spi_statistics_##field##_show(&ctlr->statistics, buf); \
Martin Sperleca2ebc2015-06-22 13:00:36 +000085} \
Geert Uytterhoeven8caab752017-06-13 13:23:52 +020086static struct device_attribute dev_attr_spi_controller_##field = { \
Geert Uytterhoevenad25c922017-05-04 16:29:56 +020087 .attr = { .name = file, .mode = 0444 }, \
Geert Uytterhoeven8caab752017-06-13 13:23:52 +020088 .show = spi_controller_##field##_show, \
Martin Sperleca2ebc2015-06-22 13:00:36 +000089}; \
90static ssize_t spi_device_##field##_show(struct device *dev, \
91 struct device_attribute *attr, \
92 char *buf) \
93{ \
Geliang Tangd1eba932015-12-23 00:18:41 +080094 struct spi_device *spi = to_spi_device(dev); \
Martin Sperleca2ebc2015-06-22 13:00:36 +000095 return spi_statistics_##field##_show(&spi->statistics, buf); \
96} \
97static struct device_attribute dev_attr_spi_device_##field = { \
Geert Uytterhoevenad25c922017-05-04 16:29:56 +020098 .attr = { .name = file, .mode = 0444 }, \
Martin Sperleca2ebc2015-06-22 13:00:36 +000099 .show = spi_device_##field##_show, \
100}
101
102#define SPI_STATISTICS_SHOW_NAME(name, file, field, format_string) \
103static ssize_t spi_statistics_##name##_show(struct spi_statistics *stat, \
104 char *buf) \
105{ \
106 unsigned long flags; \
107 ssize_t len; \
108 spin_lock_irqsave(&stat->lock, flags); \
109 len = sprintf(buf, format_string, stat->field); \
110 spin_unlock_irqrestore(&stat->lock, flags); \
111 return len; \
112} \
113SPI_STATISTICS_ATTRS(name, file)
114
115#define SPI_STATISTICS_SHOW(field, format_string) \
116 SPI_STATISTICS_SHOW_NAME(field, __stringify(field), \
117 field, format_string)
118
119SPI_STATISTICS_SHOW(messages, "%lu");
120SPI_STATISTICS_SHOW(transfers, "%lu");
121SPI_STATISTICS_SHOW(errors, "%lu");
122SPI_STATISTICS_SHOW(timedout, "%lu");
123
124SPI_STATISTICS_SHOW(spi_sync, "%lu");
125SPI_STATISTICS_SHOW(spi_sync_immediate, "%lu");
126SPI_STATISTICS_SHOW(spi_async, "%lu");
127
128SPI_STATISTICS_SHOW(bytes, "%llu");
129SPI_STATISTICS_SHOW(bytes_rx, "%llu");
130SPI_STATISTICS_SHOW(bytes_tx, "%llu");
131
Martin Sperl6b7bc062015-06-22 13:02:04 +0000132#define SPI_STATISTICS_TRANSFER_BYTES_HISTO(index, number) \
133 SPI_STATISTICS_SHOW_NAME(transfer_bytes_histo##index, \
134 "transfer_bytes_histo_" number, \
135 transfer_bytes_histo[index], "%lu")
136SPI_STATISTICS_TRANSFER_BYTES_HISTO(0, "0-1");
137SPI_STATISTICS_TRANSFER_BYTES_HISTO(1, "2-3");
138SPI_STATISTICS_TRANSFER_BYTES_HISTO(2, "4-7");
139SPI_STATISTICS_TRANSFER_BYTES_HISTO(3, "8-15");
140SPI_STATISTICS_TRANSFER_BYTES_HISTO(4, "16-31");
141SPI_STATISTICS_TRANSFER_BYTES_HISTO(5, "32-63");
142SPI_STATISTICS_TRANSFER_BYTES_HISTO(6, "64-127");
143SPI_STATISTICS_TRANSFER_BYTES_HISTO(7, "128-255");
144SPI_STATISTICS_TRANSFER_BYTES_HISTO(8, "256-511");
145SPI_STATISTICS_TRANSFER_BYTES_HISTO(9, "512-1023");
146SPI_STATISTICS_TRANSFER_BYTES_HISTO(10, "1024-2047");
147SPI_STATISTICS_TRANSFER_BYTES_HISTO(11, "2048-4095");
148SPI_STATISTICS_TRANSFER_BYTES_HISTO(12, "4096-8191");
149SPI_STATISTICS_TRANSFER_BYTES_HISTO(13, "8192-16383");
150SPI_STATISTICS_TRANSFER_BYTES_HISTO(14, "16384-32767");
151SPI_STATISTICS_TRANSFER_BYTES_HISTO(15, "32768-65535");
152SPI_STATISTICS_TRANSFER_BYTES_HISTO(16, "65536+");
153
Martin Sperld9f12122015-12-14 15:20:20 +0000154SPI_STATISTICS_SHOW(transfers_split_maxsize, "%lu");
155
Greg Kroah-Hartmanaa7da562013-10-07 18:27:38 -0700156static struct attribute *spi_dev_attrs[] = {
157 &dev_attr_modalias.attr,
158 NULL,
David Brownell8ae12a02006-01-08 13:34:19 -0800159};
Martin Sperleca2ebc2015-06-22 13:00:36 +0000160
161static const struct attribute_group spi_dev_group = {
162 .attrs = spi_dev_attrs,
163};
164
165static struct attribute *spi_device_statistics_attrs[] = {
166 &dev_attr_spi_device_messages.attr,
167 &dev_attr_spi_device_transfers.attr,
168 &dev_attr_spi_device_errors.attr,
169 &dev_attr_spi_device_timedout.attr,
170 &dev_attr_spi_device_spi_sync.attr,
171 &dev_attr_spi_device_spi_sync_immediate.attr,
172 &dev_attr_spi_device_spi_async.attr,
173 &dev_attr_spi_device_bytes.attr,
174 &dev_attr_spi_device_bytes_rx.attr,
175 &dev_attr_spi_device_bytes_tx.attr,
Martin Sperl6b7bc062015-06-22 13:02:04 +0000176 &dev_attr_spi_device_transfer_bytes_histo0.attr,
177 &dev_attr_spi_device_transfer_bytes_histo1.attr,
178 &dev_attr_spi_device_transfer_bytes_histo2.attr,
179 &dev_attr_spi_device_transfer_bytes_histo3.attr,
180 &dev_attr_spi_device_transfer_bytes_histo4.attr,
181 &dev_attr_spi_device_transfer_bytes_histo5.attr,
182 &dev_attr_spi_device_transfer_bytes_histo6.attr,
183 &dev_attr_spi_device_transfer_bytes_histo7.attr,
184 &dev_attr_spi_device_transfer_bytes_histo8.attr,
185 &dev_attr_spi_device_transfer_bytes_histo9.attr,
186 &dev_attr_spi_device_transfer_bytes_histo10.attr,
187 &dev_attr_spi_device_transfer_bytes_histo11.attr,
188 &dev_attr_spi_device_transfer_bytes_histo12.attr,
189 &dev_attr_spi_device_transfer_bytes_histo13.attr,
190 &dev_attr_spi_device_transfer_bytes_histo14.attr,
191 &dev_attr_spi_device_transfer_bytes_histo15.attr,
192 &dev_attr_spi_device_transfer_bytes_histo16.attr,
Martin Sperld9f12122015-12-14 15:20:20 +0000193 &dev_attr_spi_device_transfers_split_maxsize.attr,
Martin Sperleca2ebc2015-06-22 13:00:36 +0000194 NULL,
195};
196
197static const struct attribute_group spi_device_statistics_group = {
198 .name = "statistics",
199 .attrs = spi_device_statistics_attrs,
200};
201
202static const struct attribute_group *spi_dev_groups[] = {
203 &spi_dev_group,
204 &spi_device_statistics_group,
205 NULL,
206};
207
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200208static struct attribute *spi_controller_statistics_attrs[] = {
209 &dev_attr_spi_controller_messages.attr,
210 &dev_attr_spi_controller_transfers.attr,
211 &dev_attr_spi_controller_errors.attr,
212 &dev_attr_spi_controller_timedout.attr,
213 &dev_attr_spi_controller_spi_sync.attr,
214 &dev_attr_spi_controller_spi_sync_immediate.attr,
215 &dev_attr_spi_controller_spi_async.attr,
216 &dev_attr_spi_controller_bytes.attr,
217 &dev_attr_spi_controller_bytes_rx.attr,
218 &dev_attr_spi_controller_bytes_tx.attr,
219 &dev_attr_spi_controller_transfer_bytes_histo0.attr,
220 &dev_attr_spi_controller_transfer_bytes_histo1.attr,
221 &dev_attr_spi_controller_transfer_bytes_histo2.attr,
222 &dev_attr_spi_controller_transfer_bytes_histo3.attr,
223 &dev_attr_spi_controller_transfer_bytes_histo4.attr,
224 &dev_attr_spi_controller_transfer_bytes_histo5.attr,
225 &dev_attr_spi_controller_transfer_bytes_histo6.attr,
226 &dev_attr_spi_controller_transfer_bytes_histo7.attr,
227 &dev_attr_spi_controller_transfer_bytes_histo8.attr,
228 &dev_attr_spi_controller_transfer_bytes_histo9.attr,
229 &dev_attr_spi_controller_transfer_bytes_histo10.attr,
230 &dev_attr_spi_controller_transfer_bytes_histo11.attr,
231 &dev_attr_spi_controller_transfer_bytes_histo12.attr,
232 &dev_attr_spi_controller_transfer_bytes_histo13.attr,
233 &dev_attr_spi_controller_transfer_bytes_histo14.attr,
234 &dev_attr_spi_controller_transfer_bytes_histo15.attr,
235 &dev_attr_spi_controller_transfer_bytes_histo16.attr,
236 &dev_attr_spi_controller_transfers_split_maxsize.attr,
Martin Sperleca2ebc2015-06-22 13:00:36 +0000237 NULL,
238};
239
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200240static const struct attribute_group spi_controller_statistics_group = {
Martin Sperleca2ebc2015-06-22 13:00:36 +0000241 .name = "statistics",
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200242 .attrs = spi_controller_statistics_attrs,
Martin Sperleca2ebc2015-06-22 13:00:36 +0000243};
244
245static const struct attribute_group *spi_master_groups[] = {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200246 &spi_controller_statistics_group,
Martin Sperleca2ebc2015-06-22 13:00:36 +0000247 NULL,
248};
249
250void spi_statistics_add_transfer_stats(struct spi_statistics *stats,
251 struct spi_transfer *xfer,
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200252 struct spi_controller *ctlr)
Martin Sperleca2ebc2015-06-22 13:00:36 +0000253{
254 unsigned long flags;
Martin Sperl6b7bc062015-06-22 13:02:04 +0000255 int l2len = min(fls(xfer->len), SPI_STATISTICS_HISTO_SIZE) - 1;
256
257 if (l2len < 0)
258 l2len = 0;
Martin Sperleca2ebc2015-06-22 13:00:36 +0000259
260 spin_lock_irqsave(&stats->lock, flags);
261
262 stats->transfers++;
Martin Sperl6b7bc062015-06-22 13:02:04 +0000263 stats->transfer_bytes_histo[l2len]++;
Martin Sperleca2ebc2015-06-22 13:00:36 +0000264
265 stats->bytes += xfer->len;
266 if ((xfer->tx_buf) &&
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200267 (xfer->tx_buf != ctlr->dummy_tx))
Martin Sperleca2ebc2015-06-22 13:00:36 +0000268 stats->bytes_tx += xfer->len;
269 if ((xfer->rx_buf) &&
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200270 (xfer->rx_buf != ctlr->dummy_rx))
Martin Sperleca2ebc2015-06-22 13:00:36 +0000271 stats->bytes_rx += xfer->len;
272
273 spin_unlock_irqrestore(&stats->lock, flags);
274}
275EXPORT_SYMBOL_GPL(spi_statistics_add_transfer_stats);
David Brownell8ae12a02006-01-08 13:34:19 -0800276
277/* modalias support makes "modprobe $MODALIAS" new-style hotplug work,
278 * and the sysfs version makes coldplug work too.
279 */
280
Anton Vorontsov75368bf2009-09-22 16:46:04 -0700281static const struct spi_device_id *spi_match_id(const struct spi_device_id *id,
282 const struct spi_device *sdev)
283{
284 while (id->name[0]) {
285 if (!strcmp(sdev->modalias, id->name))
286 return id;
287 id++;
288 }
289 return NULL;
290}
291
292const struct spi_device_id *spi_get_device_id(const struct spi_device *sdev)
293{
294 const struct spi_driver *sdrv = to_spi_driver(sdev->dev.driver);
295
296 return spi_match_id(sdrv->id_table, sdev);
297}
298EXPORT_SYMBOL_GPL(spi_get_device_id);
299
David Brownell8ae12a02006-01-08 13:34:19 -0800300static int spi_match_device(struct device *dev, struct device_driver *drv)
301{
302 const struct spi_device *spi = to_spi_device(dev);
Anton Vorontsov75368bf2009-09-22 16:46:04 -0700303 const struct spi_driver *sdrv = to_spi_driver(drv);
304
Sinan Akman2b7a32f2010-10-02 21:28:29 -0600305 /* Attempt an OF style match */
306 if (of_driver_match_device(dev, drv))
307 return 1;
308
Mika Westerberg64bee4d2012-11-30 12:37:53 +0100309 /* Then try ACPI */
310 if (acpi_driver_match_device(dev, drv))
311 return 1;
312
Anton Vorontsov75368bf2009-09-22 16:46:04 -0700313 if (sdrv->id_table)
314 return !!spi_match_id(sdrv->id_table, spi);
David Brownell8ae12a02006-01-08 13:34:19 -0800315
Kay Sievers35f74fc2009-01-06 10:44:37 -0800316 return strcmp(spi->modalias, drv->name) == 0;
David Brownell8ae12a02006-01-08 13:34:19 -0800317}
318
Kay Sievers7eff2e72007-08-14 15:15:12 +0200319static int spi_uevent(struct device *dev, struct kobj_uevent_env *env)
David Brownell8ae12a02006-01-08 13:34:19 -0800320{
321 const struct spi_device *spi = to_spi_device(dev);
Zhang Rui8c4ff6d2014-01-14 16:46:37 +0800322 int rc;
323
324 rc = acpi_device_uevent_modalias(dev, env);
325 if (rc != -ENODEV)
326 return rc;
David Brownell8ae12a02006-01-08 13:34:19 -0800327
Andy Shevchenko28566702017-07-26 16:14:00 +0300328 return add_uevent_var(env, "MODALIAS=%s%s", SPI_MODULE_PREFIX, spi->modalias);
David Brownell8ae12a02006-01-08 13:34:19 -0800329}
330
David Brownell8ae12a02006-01-08 13:34:19 -0800331struct bus_type spi_bus_type = {
332 .name = "spi",
Greg Kroah-Hartmanaa7da562013-10-07 18:27:38 -0700333 .dev_groups = spi_dev_groups,
David Brownell8ae12a02006-01-08 13:34:19 -0800334 .match = spi_match_device,
335 .uevent = spi_uevent,
David Brownell8ae12a02006-01-08 13:34:19 -0800336};
337EXPORT_SYMBOL_GPL(spi_bus_type);
338
David Brownellb8852442006-01-08 13:34:23 -0800339
340static int spi_drv_probe(struct device *dev)
341{
342 const struct spi_driver *sdrv = to_spi_driver(dev->driver);
Jon Hunter44af7922015-10-09 15:45:55 +0100343 struct spi_device *spi = to_spi_device(dev);
Mika Westerberg33cf00e2013-10-10 13:28:48 +0300344 int ret;
David Brownellb8852442006-01-08 13:34:23 -0800345
Sylwester Nawrocki86be4082014-06-18 17:29:32 +0200346 ret = of_clk_set_defaults(dev->of_node, false);
347 if (ret)
348 return ret;
349
Jon Hunter44af7922015-10-09 15:45:55 +0100350 if (dev->of_node) {
351 spi->irq = of_irq_get(dev->of_node, 0);
352 if (spi->irq == -EPROBE_DEFER)
353 return -EPROBE_DEFER;
354 if (spi->irq < 0)
355 spi->irq = 0;
356 }
357
Ulf Hansson676e7c22014-09-19 20:27:41 +0200358 ret = dev_pm_domain_attach(dev, true);
359 if (ret != -EPROBE_DEFER) {
Jon Hunter44af7922015-10-09 15:45:55 +0100360 ret = sdrv->probe(spi);
Ulf Hansson676e7c22014-09-19 20:27:41 +0200361 if (ret)
362 dev_pm_domain_detach(dev, true);
363 }
Mika Westerberg33cf00e2013-10-10 13:28:48 +0300364
365 return ret;
David Brownellb8852442006-01-08 13:34:23 -0800366}
367
368static int spi_drv_remove(struct device *dev)
369{
370 const struct spi_driver *sdrv = to_spi_driver(dev->driver);
Mika Westerberg33cf00e2013-10-10 13:28:48 +0300371 int ret;
David Brownellb8852442006-01-08 13:34:23 -0800372
Jean Delvareaec35f42014-02-13 15:28:41 +0100373 ret = sdrv->remove(to_spi_device(dev));
Ulf Hansson676e7c22014-09-19 20:27:41 +0200374 dev_pm_domain_detach(dev, true);
Mika Westerberg33cf00e2013-10-10 13:28:48 +0300375
376 return ret;
David Brownellb8852442006-01-08 13:34:23 -0800377}
378
379static void spi_drv_shutdown(struct device *dev)
380{
381 const struct spi_driver *sdrv = to_spi_driver(dev->driver);
382
383 sdrv->shutdown(to_spi_device(dev));
384}
385
David Brownell33e34dc2007-05-08 00:32:21 -0700386/**
Andrew F. Davisca5d2482015-10-23 08:59:10 -0500387 * __spi_register_driver - register a SPI driver
Thierry Reding88c93212015-11-10 13:03:04 +0100388 * @owner: owner module of the driver to register
David Brownell33e34dc2007-05-08 00:32:21 -0700389 * @sdrv: the driver to register
390 * Context: can sleep
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +0200391 *
392 * Return: zero on success, else a negative error code.
David Brownell33e34dc2007-05-08 00:32:21 -0700393 */
Andrew F. Davisca5d2482015-10-23 08:59:10 -0500394int __spi_register_driver(struct module *owner, struct spi_driver *sdrv)
David Brownellb8852442006-01-08 13:34:23 -0800395{
Andrew F. Davisca5d2482015-10-23 08:59:10 -0500396 sdrv->driver.owner = owner;
David Brownellb8852442006-01-08 13:34:23 -0800397 sdrv->driver.bus = &spi_bus_type;
398 if (sdrv->probe)
399 sdrv->driver.probe = spi_drv_probe;
400 if (sdrv->remove)
401 sdrv->driver.remove = spi_drv_remove;
402 if (sdrv->shutdown)
403 sdrv->driver.shutdown = spi_drv_shutdown;
404 return driver_register(&sdrv->driver);
405}
Andrew F. Davisca5d2482015-10-23 08:59:10 -0500406EXPORT_SYMBOL_GPL(__spi_register_driver);
David Brownellb8852442006-01-08 13:34:23 -0800407
David Brownell8ae12a02006-01-08 13:34:19 -0800408/*-------------------------------------------------------------------------*/
409
410/* SPI devices should normally not be created by SPI device drivers; that
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200411 * would make them board-specific. Similarly with SPI controller drivers.
David Brownell8ae12a02006-01-08 13:34:19 -0800412 * Device registration normally goes into like arch/.../mach.../board-YYY.c
413 * with other readonly (flashable) information about mainboard devices.
414 */
415
416struct boardinfo {
417 struct list_head list;
Feng Tang2b9603a2010-08-02 15:52:15 +0800418 struct spi_board_info board_info;
David Brownell8ae12a02006-01-08 13:34:19 -0800419};
420
421static LIST_HEAD(board_list);
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200422static LIST_HEAD(spi_controller_list);
Feng Tang2b9603a2010-08-02 15:52:15 +0800423
424/*
425 * Used to protect add/del opertion for board_info list and
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200426 * spi_controller list, and their matching process
Suniel Mahesh9a9a0472017-08-17 18:18:22 +0530427 * also used to protect object of type struct idr
Feng Tang2b9603a2010-08-02 15:52:15 +0800428 */
Matthias Kaehlcke94040822007-07-17 04:04:16 -0700429static DEFINE_MUTEX(board_lock);
David Brownell8ae12a02006-01-08 13:34:19 -0800430
Grant Likelydc87c982008-05-15 16:50:22 -0600431/**
432 * spi_alloc_device - Allocate a new SPI device
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200433 * @ctlr: Controller to which device is connected
Grant Likelydc87c982008-05-15 16:50:22 -0600434 * Context: can sleep
435 *
436 * Allows a driver to allocate and initialize a spi_device without
437 * registering it immediately. This allows a driver to directly
438 * fill the spi_device with device parameters before calling
439 * spi_add_device() on it.
440 *
441 * Caller is responsible to call spi_add_device() on the returned
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200442 * spi_device structure to add it to the SPI controller. If the caller
Grant Likelydc87c982008-05-15 16:50:22 -0600443 * needs to discard the spi_device without adding it, then it should
444 * call spi_dev_put() on it.
445 *
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +0200446 * Return: a pointer to the new device, or NULL.
Grant Likelydc87c982008-05-15 16:50:22 -0600447 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200448struct spi_device *spi_alloc_device(struct spi_controller *ctlr)
Grant Likelydc87c982008-05-15 16:50:22 -0600449{
450 struct spi_device *spi;
Grant Likelydc87c982008-05-15 16:50:22 -0600451
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200452 if (!spi_controller_get(ctlr))
Grant Likelydc87c982008-05-15 16:50:22 -0600453 return NULL;
454
Jingoo Han5fe5f052013-10-14 10:31:51 +0900455 spi = kzalloc(sizeof(*spi), GFP_KERNEL);
Grant Likelydc87c982008-05-15 16:50:22 -0600456 if (!spi) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200457 spi_controller_put(ctlr);
Grant Likelydc87c982008-05-15 16:50:22 -0600458 return NULL;
459 }
460
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200461 spi->master = spi->controller = ctlr;
462 spi->dev.parent = &ctlr->dev;
Grant Likelydc87c982008-05-15 16:50:22 -0600463 spi->dev.bus = &spi_bus_type;
464 spi->dev.release = spidev_release;
Andreas Larsson446411e2013-02-13 14:20:25 +0100465 spi->cs_gpio = -ENOENT;
Martin Sperleca2ebc2015-06-22 13:00:36 +0000466
467 spin_lock_init(&spi->statistics.lock);
468
Grant Likelydc87c982008-05-15 16:50:22 -0600469 device_initialize(&spi->dev);
470 return spi;
471}
472EXPORT_SYMBOL_GPL(spi_alloc_device);
473
Jarkko Nikulae13ac472013-11-14 14:03:53 +0200474static void spi_dev_set_name(struct spi_device *spi)
475{
476 struct acpi_device *adev = ACPI_COMPANION(&spi->dev);
477
478 if (adev) {
479 dev_set_name(&spi->dev, "spi-%s", acpi_dev_name(adev));
480 return;
481 }
482
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200483 dev_set_name(&spi->dev, "%s.%u", dev_name(&spi->controller->dev),
Jarkko Nikulae13ac472013-11-14 14:03:53 +0200484 spi->chip_select);
485}
486
Mika Westerbergb6fb8d32014-01-09 15:23:55 +0200487static int spi_dev_check(struct device *dev, void *data)
488{
489 struct spi_device *spi = to_spi_device(dev);
490 struct spi_device *new_spi = data;
491
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200492 if (spi->controller == new_spi->controller &&
Mika Westerbergb6fb8d32014-01-09 15:23:55 +0200493 spi->chip_select == new_spi->chip_select)
494 return -EBUSY;
495 return 0;
496}
497
Grant Likelydc87c982008-05-15 16:50:22 -0600498/**
499 * spi_add_device - Add spi_device allocated with spi_alloc_device
500 * @spi: spi_device to register
501 *
502 * Companion function to spi_alloc_device. Devices allocated with
503 * spi_alloc_device can be added onto the spi bus with this function.
504 *
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +0200505 * Return: 0 on success; negative errno on failure
Grant Likelydc87c982008-05-15 16:50:22 -0600506 */
507int spi_add_device(struct spi_device *spi)
508{
David Brownelle48880e2008-08-15 00:40:44 -0700509 static DEFINE_MUTEX(spi_add_lock);
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200510 struct spi_controller *ctlr = spi->controller;
511 struct device *dev = ctlr->dev.parent;
Grant Likelydc87c982008-05-15 16:50:22 -0600512 int status;
513
514 /* Chipselects are numbered 0..max; validate. */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200515 if (spi->chip_select >= ctlr->num_chipselect) {
516 dev_err(dev, "cs%d >= max %d\n", spi->chip_select,
517 ctlr->num_chipselect);
Grant Likelydc87c982008-05-15 16:50:22 -0600518 return -EINVAL;
519 }
520
521 /* Set the bus ID string */
Jarkko Nikulae13ac472013-11-14 14:03:53 +0200522 spi_dev_set_name(spi);
David Brownelle48880e2008-08-15 00:40:44 -0700523
524 /* We need to make sure there's no other device with this
525 * chipselect **BEFORE** we call setup(), else we'll trash
526 * its configuration. Lock against concurrent add() calls.
527 */
528 mutex_lock(&spi_add_lock);
529
Mika Westerbergb6fb8d32014-01-09 15:23:55 +0200530 status = bus_for_each_dev(&spi_bus_type, NULL, spi, spi_dev_check);
531 if (status) {
David Brownelle48880e2008-08-15 00:40:44 -0700532 dev_err(dev, "chipselect %d already in use\n",
533 spi->chip_select);
David Brownelle48880e2008-08-15 00:40:44 -0700534 goto done;
535 }
536
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200537 if (ctlr->cs_gpios)
538 spi->cs_gpio = ctlr->cs_gpios[spi->chip_select];
Jean-Christophe PLAGNIOL-VILLARD74317982012-11-15 20:19:57 +0100539
David Brownelle48880e2008-08-15 00:40:44 -0700540 /* Drivers may modify this initial i/o setup, but will
541 * normally rely on the device being setup. Devices
542 * using SPI_CS_HIGH can't coexist well otherwise...
543 */
David Brownell7d077192009-06-17 16:26:03 -0700544 status = spi_setup(spi);
Grant Likelydc87c982008-05-15 16:50:22 -0600545 if (status < 0) {
Linus Walleijeb288a12010-10-21 21:06:44 +0200546 dev_err(dev, "can't setup %s, status %d\n",
547 dev_name(&spi->dev), status);
David Brownelle48880e2008-08-15 00:40:44 -0700548 goto done;
Grant Likelydc87c982008-05-15 16:50:22 -0600549 }
550
David Brownelle48880e2008-08-15 00:40:44 -0700551 /* Device may be bound to an active driver when this returns */
Grant Likelydc87c982008-05-15 16:50:22 -0600552 status = device_add(&spi->dev);
David Brownelle48880e2008-08-15 00:40:44 -0700553 if (status < 0)
Linus Walleijeb288a12010-10-21 21:06:44 +0200554 dev_err(dev, "can't add %s, status %d\n",
555 dev_name(&spi->dev), status);
David Brownelle48880e2008-08-15 00:40:44 -0700556 else
Kay Sievers35f74fc2009-01-06 10:44:37 -0800557 dev_dbg(dev, "registered child %s\n", dev_name(&spi->dev));
Grant Likelydc87c982008-05-15 16:50:22 -0600558
David Brownelle48880e2008-08-15 00:40:44 -0700559done:
560 mutex_unlock(&spi_add_lock);
561 return status;
Grant Likelydc87c982008-05-15 16:50:22 -0600562}
563EXPORT_SYMBOL_GPL(spi_add_device);
David Brownell8ae12a02006-01-08 13:34:19 -0800564
David Brownell33e34dc2007-05-08 00:32:21 -0700565/**
566 * spi_new_device - instantiate one new SPI device
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200567 * @ctlr: Controller to which device is connected
David Brownell33e34dc2007-05-08 00:32:21 -0700568 * @chip: Describes the SPI device
569 * Context: can sleep
570 *
571 * On typical mainboards, this is purely internal; and it's not needed
David Brownell8ae12a02006-01-08 13:34:19 -0800572 * after board init creates the hard-wired devices. Some development
573 * platforms may not be able to use spi_register_board_info though, and
574 * this is exported so that for example a USB or parport based adapter
575 * driver could add devices (which it would learn about out-of-band).
David Brownell082c8cb2007-07-31 00:39:45 -0700576 *
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +0200577 * Return: the new device, or NULL.
David Brownell8ae12a02006-01-08 13:34:19 -0800578 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200579struct spi_device *spi_new_device(struct spi_controller *ctlr,
Adrian Bunke9d5a462007-03-26 21:32:23 -0800580 struct spi_board_info *chip)
David Brownell8ae12a02006-01-08 13:34:19 -0800581{
582 struct spi_device *proxy;
David Brownell8ae12a02006-01-08 13:34:19 -0800583 int status;
584
David Brownell082c8cb2007-07-31 00:39:45 -0700585 /* NOTE: caller did any chip->bus_num checks necessary.
586 *
587 * Also, unless we change the return value convention to use
588 * error-or-pointer (not NULL-or-pointer), troubleshootability
589 * suggests syslogged diagnostics are best here (ugh).
590 */
591
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200592 proxy = spi_alloc_device(ctlr);
Grant Likelydc87c982008-05-15 16:50:22 -0600593 if (!proxy)
David Brownell8ae12a02006-01-08 13:34:19 -0800594 return NULL;
595
Grant Likely102eb972008-07-23 21:29:55 -0700596 WARN_ON(strlen(chip->modalias) >= sizeof(proxy->modalias));
597
David Brownell8ae12a02006-01-08 13:34:19 -0800598 proxy->chip_select = chip->chip_select;
599 proxy->max_speed_hz = chip->max_speed_hz;
David Brownell980a01c2006-06-28 07:47:15 -0700600 proxy->mode = chip->mode;
David Brownell8ae12a02006-01-08 13:34:19 -0800601 proxy->irq = chip->irq;
Grant Likely102eb972008-07-23 21:29:55 -0700602 strlcpy(proxy->modalias, chip->modalias, sizeof(proxy->modalias));
David Brownell8ae12a02006-01-08 13:34:19 -0800603 proxy->dev.platform_data = (void *) chip->platform_data;
604 proxy->controller_data = chip->controller_data;
605 proxy->controller_state = NULL;
David Brownell8ae12a02006-01-08 13:34:19 -0800606
Dmitry Torokhov826cf172017-02-28 14:25:18 -0800607 if (chip->properties) {
608 status = device_add_properties(&proxy->dev, chip->properties);
609 if (status) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200610 dev_err(&ctlr->dev,
Dmitry Torokhov826cf172017-02-28 14:25:18 -0800611 "failed to add properties to '%s': %d\n",
612 chip->modalias, status);
613 goto err_dev_put;
614 }
David Brownell8ae12a02006-01-08 13:34:19 -0800615 }
616
Dmitry Torokhov826cf172017-02-28 14:25:18 -0800617 status = spi_add_device(proxy);
618 if (status < 0)
619 goto err_remove_props;
620
David Brownell8ae12a02006-01-08 13:34:19 -0800621 return proxy;
Dmitry Torokhov826cf172017-02-28 14:25:18 -0800622
623err_remove_props:
624 if (chip->properties)
625 device_remove_properties(&proxy->dev);
626err_dev_put:
627 spi_dev_put(proxy);
628 return NULL;
David Brownell8ae12a02006-01-08 13:34:19 -0800629}
630EXPORT_SYMBOL_GPL(spi_new_device);
631
Geert Uytterhoeven3b1884c2015-11-30 15:28:06 +0100632/**
633 * spi_unregister_device - unregister a single SPI device
634 * @spi: spi_device to unregister
635 *
636 * Start making the passed SPI device vanish. Normally this would be handled
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200637 * by spi_unregister_controller().
Geert Uytterhoeven3b1884c2015-11-30 15:28:06 +0100638 */
639void spi_unregister_device(struct spi_device *spi)
640{
Geert Uytterhoevenbd6c1642015-11-30 15:28:07 +0100641 if (!spi)
642 return;
643
Johan Hovold83241472017-01-30 17:47:05 +0100644 if (spi->dev.of_node) {
Geert Uytterhoevenbd6c1642015-11-30 15:28:07 +0100645 of_node_clear_flag(spi->dev.of_node, OF_POPULATED);
Johan Hovold83241472017-01-30 17:47:05 +0100646 of_node_put(spi->dev.of_node);
647 }
Octavian Purdila7f244672016-07-08 19:13:11 +0300648 if (ACPI_COMPANION(&spi->dev))
649 acpi_device_clear_enumerated(ACPI_COMPANION(&spi->dev));
Geert Uytterhoevenbd6c1642015-11-30 15:28:07 +0100650 device_unregister(&spi->dev);
Geert Uytterhoeven3b1884c2015-11-30 15:28:06 +0100651}
652EXPORT_SYMBOL_GPL(spi_unregister_device);
653
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200654static void spi_match_controller_to_boardinfo(struct spi_controller *ctlr,
655 struct spi_board_info *bi)
Feng Tang2b9603a2010-08-02 15:52:15 +0800656{
657 struct spi_device *dev;
658
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200659 if (ctlr->bus_num != bi->bus_num)
Feng Tang2b9603a2010-08-02 15:52:15 +0800660 return;
661
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200662 dev = spi_new_device(ctlr, bi);
Feng Tang2b9603a2010-08-02 15:52:15 +0800663 if (!dev)
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200664 dev_err(ctlr->dev.parent, "can't create new device for %s\n",
Feng Tang2b9603a2010-08-02 15:52:15 +0800665 bi->modalias);
666}
667
David Brownell33e34dc2007-05-08 00:32:21 -0700668/**
669 * spi_register_board_info - register SPI devices for a given board
670 * @info: array of chip descriptors
671 * @n: how many descriptors are provided
672 * Context: can sleep
673 *
David Brownell8ae12a02006-01-08 13:34:19 -0800674 * Board-specific early init code calls this (probably during arch_initcall)
675 * with segments of the SPI device table. Any device nodes are created later,
676 * after the relevant parent SPI controller (bus_num) is defined. We keep
677 * this table of devices forever, so that reloading a controller driver will
678 * not make Linux forget about these hard-wired devices.
679 *
680 * Other code can also call this, e.g. a particular add-on board might provide
681 * SPI devices through its expansion connector, so code initializing that board
682 * would naturally declare its SPI devices.
683 *
684 * The board info passed can safely be __initdata ... but be careful of
685 * any embedded pointers (platform_data, etc), they're copied as-is.
Dmitry Torokhov826cf172017-02-28 14:25:18 -0800686 * Device properties are deep-copied though.
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +0200687 *
688 * Return: zero on success, else a negative error code.
David Brownell8ae12a02006-01-08 13:34:19 -0800689 */
Grant Likelyfd4a3192012-12-07 16:57:14 +0000690int spi_register_board_info(struct spi_board_info const *info, unsigned n)
David Brownell8ae12a02006-01-08 13:34:19 -0800691{
Feng Tang2b9603a2010-08-02 15:52:15 +0800692 struct boardinfo *bi;
693 int i;
David Brownell8ae12a02006-01-08 13:34:19 -0800694
Xiubo Lic7908a32014-09-24 14:30:29 +0800695 if (!n)
Dmitry Torokhovf974cf52017-02-28 14:25:19 -0800696 return 0;
Xiubo Lic7908a32014-09-24 14:30:29 +0800697
Markus Elfringf9bdb7f2017-01-13 12:28:04 +0100698 bi = kcalloc(n, sizeof(*bi), GFP_KERNEL);
David Brownell8ae12a02006-01-08 13:34:19 -0800699 if (!bi)
700 return -ENOMEM;
David Brownell8ae12a02006-01-08 13:34:19 -0800701
Feng Tang2b9603a2010-08-02 15:52:15 +0800702 for (i = 0; i < n; i++, bi++, info++) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200703 struct spi_controller *ctlr;
David Brownell8ae12a02006-01-08 13:34:19 -0800704
Feng Tang2b9603a2010-08-02 15:52:15 +0800705 memcpy(&bi->board_info, info, sizeof(*info));
Dmitry Torokhov826cf172017-02-28 14:25:18 -0800706 if (info->properties) {
707 bi->board_info.properties =
708 property_entries_dup(info->properties);
709 if (IS_ERR(bi->board_info.properties))
710 return PTR_ERR(bi->board_info.properties);
711 }
712
Feng Tang2b9603a2010-08-02 15:52:15 +0800713 mutex_lock(&board_lock);
714 list_add_tail(&bi->list, &board_list);
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200715 list_for_each_entry(ctlr, &spi_controller_list, list)
716 spi_match_controller_to_boardinfo(ctlr,
717 &bi->board_info);
Feng Tang2b9603a2010-08-02 15:52:15 +0800718 mutex_unlock(&board_lock);
David Brownell8ae12a02006-01-08 13:34:19 -0800719 }
Feng Tang2b9603a2010-08-02 15:52:15 +0800720
721 return 0;
David Brownell8ae12a02006-01-08 13:34:19 -0800722}
723
724/*-------------------------------------------------------------------------*/
725
Mark Brownb1589352013-10-05 11:50:40 +0100726static void spi_set_cs(struct spi_device *spi, bool enable)
727{
728 if (spi->mode & SPI_CS_HIGH)
729 enable = !enable;
730
Thor Thayer8eee6b92016-10-10 09:25:24 -0500731 if (gpio_is_valid(spi->cs_gpio)) {
Mark Brownb1589352013-10-05 11:50:40 +0100732 gpio_set_value(spi->cs_gpio, !enable);
Thor Thayer8eee6b92016-10-10 09:25:24 -0500733 /* Some SPI masters need both GPIO CS & slave_select */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200734 if ((spi->controller->flags & SPI_MASTER_GPIO_SS) &&
735 spi->controller->set_cs)
736 spi->controller->set_cs(spi, !enable);
737 } else if (spi->controller->set_cs) {
738 spi->controller->set_cs(spi, !enable);
Thor Thayer8eee6b92016-10-10 09:25:24 -0500739 }
Mark Brownb1589352013-10-05 11:50:40 +0100740}
741
Geert Uytterhoeven2de440f2014-05-02 06:29:34 +0200742#ifdef CONFIG_HAS_DMA
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200743static int spi_map_buf(struct spi_controller *ctlr, struct device *dev,
Mark Brown6ad45a22014-02-02 13:47:47 +0000744 struct sg_table *sgt, void *buf, size_t len,
745 enum dma_data_direction dir)
746{
747 const bool vmalloced_buf = is_vmalloc_addr(buf);
Andy Shevchenkodf88e912016-03-09 11:20:00 +0200748 unsigned int max_seg_size = dma_get_max_seg_size(dev);
Vignesh Rb1b81532016-08-17 15:22:36 +0530749#ifdef CONFIG_HIGHMEM
750 const bool kmap_buf = ((unsigned long)buf >= PKMAP_BASE &&
751 (unsigned long)buf < (PKMAP_BASE +
752 (LAST_PKMAP * PAGE_SIZE)));
753#else
754 const bool kmap_buf = false;
755#endif
Andrew Gabbasov65598c12015-06-30 10:48:37 -0500756 int desc_len;
757 int sgs;
Mark Brown6ad45a22014-02-02 13:47:47 +0000758 struct page *vm_page;
Juan Gutierrez8dd4a012016-11-21 16:50:03 -0600759 struct scatterlist *sg;
Mark Brown6ad45a22014-02-02 13:47:47 +0000760 void *sg_buf;
761 size_t min;
762 int i, ret;
763
Vignesh Rb1b81532016-08-17 15:22:36 +0530764 if (vmalloced_buf || kmap_buf) {
Andy Shevchenkodf88e912016-03-09 11:20:00 +0200765 desc_len = min_t(int, max_seg_size, PAGE_SIZE);
Andrew Gabbasov65598c12015-06-30 10:48:37 -0500766 sgs = DIV_ROUND_UP(len + offset_in_page(buf), desc_len);
Vignesh R0569a882016-04-25 15:14:00 +0530767 } else if (virt_addr_valid(buf)) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200768 desc_len = min_t(int, max_seg_size, ctlr->max_dma_len);
Andrew Gabbasov65598c12015-06-30 10:48:37 -0500769 sgs = DIV_ROUND_UP(len, desc_len);
Vignesh R0569a882016-04-25 15:14:00 +0530770 } else {
771 return -EINVAL;
Andrew Gabbasov65598c12015-06-30 10:48:37 -0500772 }
773
Mark Brown6ad45a22014-02-02 13:47:47 +0000774 ret = sg_alloc_table(sgt, sgs, GFP_KERNEL);
775 if (ret != 0)
776 return ret;
777
Juan Gutierrez8dd4a012016-11-21 16:50:03 -0600778 sg = &sgt->sgl[0];
Mark Brown6ad45a22014-02-02 13:47:47 +0000779 for (i = 0; i < sgs; i++) {
Mark Brown6ad45a22014-02-02 13:47:47 +0000780
Vignesh Rb1b81532016-08-17 15:22:36 +0530781 if (vmalloced_buf || kmap_buf) {
Andrew Gabbasov65598c12015-06-30 10:48:37 -0500782 min = min_t(size_t,
783 len, desc_len - offset_in_page(buf));
Vignesh Rb1b81532016-08-17 15:22:36 +0530784 if (vmalloced_buf)
785 vm_page = vmalloc_to_page(buf);
786 else
787 vm_page = kmap_to_page(buf);
Mark Brown6ad45a22014-02-02 13:47:47 +0000788 if (!vm_page) {
789 sg_free_table(sgt);
790 return -ENOMEM;
791 }
Juan Gutierrez8dd4a012016-11-21 16:50:03 -0600792 sg_set_page(sg, vm_page,
Charles Keepaxc1aefbd2014-11-17 09:14:31 +0000793 min, offset_in_page(buf));
Mark Brown6ad45a22014-02-02 13:47:47 +0000794 } else {
Andrew Gabbasov65598c12015-06-30 10:48:37 -0500795 min = min_t(size_t, len, desc_len);
Mark Brown6ad45a22014-02-02 13:47:47 +0000796 sg_buf = buf;
Juan Gutierrez8dd4a012016-11-21 16:50:03 -0600797 sg_set_buf(sg, sg_buf, min);
Mark Brown6ad45a22014-02-02 13:47:47 +0000798 }
799
Mark Brown6ad45a22014-02-02 13:47:47 +0000800 buf += min;
801 len -= min;
Juan Gutierrez8dd4a012016-11-21 16:50:03 -0600802 sg = sg_next(sg);
Mark Brown6ad45a22014-02-02 13:47:47 +0000803 }
804
805 ret = dma_map_sg(dev, sgt->sgl, sgt->nents, dir);
Geert Uytterhoeven89e4b662014-07-10 15:29:32 +0200806 if (!ret)
807 ret = -ENOMEM;
Mark Brown6ad45a22014-02-02 13:47:47 +0000808 if (ret < 0) {
809 sg_free_table(sgt);
810 return ret;
811 }
812
813 sgt->nents = ret;
814
815 return 0;
816}
817
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200818static void spi_unmap_buf(struct spi_controller *ctlr, struct device *dev,
Mark Brown6ad45a22014-02-02 13:47:47 +0000819 struct sg_table *sgt, enum dma_data_direction dir)
820{
821 if (sgt->orig_nents) {
822 dma_unmap_sg(dev, sgt->sgl, sgt->orig_nents, dir);
823 sg_free_table(sgt);
824 }
825}
826
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200827static int __spi_map_msg(struct spi_controller *ctlr, struct spi_message *msg)
Mark Brown99adef32014-01-16 12:22:43 +0000828{
Mark Brown99adef32014-01-16 12:22:43 +0000829 struct device *tx_dev, *rx_dev;
830 struct spi_transfer *xfer;
Mark Brown6ad45a22014-02-02 13:47:47 +0000831 int ret;
Mark Brown3a2eba92014-01-28 20:17:03 +0000832
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200833 if (!ctlr->can_dma)
Mark Brown99adef32014-01-16 12:22:43 +0000834 return 0;
835
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200836 if (ctlr->dma_tx)
837 tx_dev = ctlr->dma_tx->device->dev;
Leilk Liuc37f45b2015-07-23 17:10:40 +0800838 else
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200839 tx_dev = ctlr->dev.parent;
Leilk Liuc37f45b2015-07-23 17:10:40 +0800840
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200841 if (ctlr->dma_rx)
842 rx_dev = ctlr->dma_rx->device->dev;
Leilk Liuc37f45b2015-07-23 17:10:40 +0800843 else
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200844 rx_dev = ctlr->dev.parent;
Mark Brown99adef32014-01-16 12:22:43 +0000845
846 list_for_each_entry(xfer, &msg->transfers, transfer_list) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200847 if (!ctlr->can_dma(ctlr, msg->spi, xfer))
Mark Brown99adef32014-01-16 12:22:43 +0000848 continue;
849
850 if (xfer->tx_buf != NULL) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200851 ret = spi_map_buf(ctlr, tx_dev, &xfer->tx_sg,
Mark Brown6ad45a22014-02-02 13:47:47 +0000852 (void *)xfer->tx_buf, xfer->len,
853 DMA_TO_DEVICE);
854 if (ret != 0)
855 return ret;
Mark Brown99adef32014-01-16 12:22:43 +0000856 }
857
858 if (xfer->rx_buf != NULL) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200859 ret = spi_map_buf(ctlr, rx_dev, &xfer->rx_sg,
Mark Brown6ad45a22014-02-02 13:47:47 +0000860 xfer->rx_buf, xfer->len,
861 DMA_FROM_DEVICE);
862 if (ret != 0) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200863 spi_unmap_buf(ctlr, tx_dev, &xfer->tx_sg,
Mark Brown6ad45a22014-02-02 13:47:47 +0000864 DMA_TO_DEVICE);
865 return ret;
Mark Brown99adef32014-01-16 12:22:43 +0000866 }
867 }
868 }
869
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200870 ctlr->cur_msg_mapped = true;
Mark Brown99adef32014-01-16 12:22:43 +0000871
872 return 0;
873}
874
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200875static int __spi_unmap_msg(struct spi_controller *ctlr, struct spi_message *msg)
Mark Brown99adef32014-01-16 12:22:43 +0000876{
877 struct spi_transfer *xfer;
878 struct device *tx_dev, *rx_dev;
879
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200880 if (!ctlr->cur_msg_mapped || !ctlr->can_dma)
Mark Brown99adef32014-01-16 12:22:43 +0000881 return 0;
882
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200883 if (ctlr->dma_tx)
884 tx_dev = ctlr->dma_tx->device->dev;
Leilk Liuc37f45b2015-07-23 17:10:40 +0800885 else
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200886 tx_dev = ctlr->dev.parent;
Leilk Liuc37f45b2015-07-23 17:10:40 +0800887
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200888 if (ctlr->dma_rx)
889 rx_dev = ctlr->dma_rx->device->dev;
Leilk Liuc37f45b2015-07-23 17:10:40 +0800890 else
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200891 rx_dev = ctlr->dev.parent;
Mark Brown99adef32014-01-16 12:22:43 +0000892
893 list_for_each_entry(xfer, &msg->transfers, transfer_list) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200894 if (!ctlr->can_dma(ctlr, msg->spi, xfer))
Mark Brown99adef32014-01-16 12:22:43 +0000895 continue;
896
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200897 spi_unmap_buf(ctlr, rx_dev, &xfer->rx_sg, DMA_FROM_DEVICE);
898 spi_unmap_buf(ctlr, tx_dev, &xfer->tx_sg, DMA_TO_DEVICE);
Mark Brown99adef32014-01-16 12:22:43 +0000899 }
900
901 return 0;
902}
Geert Uytterhoeven2de440f2014-05-02 06:29:34 +0200903#else /* !CONFIG_HAS_DMA */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200904static inline int spi_map_buf(struct spi_controller *ctlr, struct device *dev,
905 struct sg_table *sgt, void *buf, size_t len,
Vignesh Rf4502dd2016-06-08 12:18:31 +0530906 enum dma_data_direction dir)
907{
908 return -EINVAL;
909}
910
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200911static inline void spi_unmap_buf(struct spi_controller *ctlr,
Vignesh Rf4502dd2016-06-08 12:18:31 +0530912 struct device *dev, struct sg_table *sgt,
913 enum dma_data_direction dir)
914{
915}
916
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200917static inline int __spi_map_msg(struct spi_controller *ctlr,
Geert Uytterhoeven2de440f2014-05-02 06:29:34 +0200918 struct spi_message *msg)
919{
920 return 0;
921}
922
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200923static inline int __spi_unmap_msg(struct spi_controller *ctlr,
Martin Sperl4b786452015-05-25 10:13:10 +0000924 struct spi_message *msg)
Geert Uytterhoeven2de440f2014-05-02 06:29:34 +0200925{
926 return 0;
927}
928#endif /* !CONFIG_HAS_DMA */
929
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200930static inline int spi_unmap_msg(struct spi_controller *ctlr,
Martin Sperl4b786452015-05-25 10:13:10 +0000931 struct spi_message *msg)
932{
933 struct spi_transfer *xfer;
934
935 list_for_each_entry(xfer, &msg->transfers, transfer_list) {
936 /*
937 * Restore the original value of tx_buf or rx_buf if they are
938 * NULL.
939 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200940 if (xfer->tx_buf == ctlr->dummy_tx)
Martin Sperl4b786452015-05-25 10:13:10 +0000941 xfer->tx_buf = NULL;
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200942 if (xfer->rx_buf == ctlr->dummy_rx)
Martin Sperl4b786452015-05-25 10:13:10 +0000943 xfer->rx_buf = NULL;
944 }
945
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200946 return __spi_unmap_msg(ctlr, msg);
Martin Sperl4b786452015-05-25 10:13:10 +0000947}
948
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200949static int spi_map_msg(struct spi_controller *ctlr, struct spi_message *msg)
Geert Uytterhoeven2de440f2014-05-02 06:29:34 +0200950{
951 struct spi_transfer *xfer;
952 void *tmp;
953 unsigned int max_tx, max_rx;
954
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200955 if (ctlr->flags & (SPI_CONTROLLER_MUST_RX | SPI_CONTROLLER_MUST_TX)) {
Geert Uytterhoeven2de440f2014-05-02 06:29:34 +0200956 max_tx = 0;
957 max_rx = 0;
958
959 list_for_each_entry(xfer, &msg->transfers, transfer_list) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200960 if ((ctlr->flags & SPI_CONTROLLER_MUST_TX) &&
Geert Uytterhoeven2de440f2014-05-02 06:29:34 +0200961 !xfer->tx_buf)
962 max_tx = max(xfer->len, max_tx);
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200963 if ((ctlr->flags & SPI_CONTROLLER_MUST_RX) &&
Geert Uytterhoeven2de440f2014-05-02 06:29:34 +0200964 !xfer->rx_buf)
965 max_rx = max(xfer->len, max_rx);
966 }
967
968 if (max_tx) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200969 tmp = krealloc(ctlr->dummy_tx, max_tx,
Geert Uytterhoeven2de440f2014-05-02 06:29:34 +0200970 GFP_KERNEL | GFP_DMA);
971 if (!tmp)
972 return -ENOMEM;
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200973 ctlr->dummy_tx = tmp;
Geert Uytterhoeven2de440f2014-05-02 06:29:34 +0200974 memset(tmp, 0, max_tx);
975 }
976
977 if (max_rx) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200978 tmp = krealloc(ctlr->dummy_rx, max_rx,
Geert Uytterhoeven2de440f2014-05-02 06:29:34 +0200979 GFP_KERNEL | GFP_DMA);
980 if (!tmp)
981 return -ENOMEM;
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200982 ctlr->dummy_rx = tmp;
Geert Uytterhoeven2de440f2014-05-02 06:29:34 +0200983 }
984
985 if (max_tx || max_rx) {
986 list_for_each_entry(xfer, &msg->transfers,
987 transfer_list) {
988 if (!xfer->tx_buf)
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200989 xfer->tx_buf = ctlr->dummy_tx;
Geert Uytterhoeven2de440f2014-05-02 06:29:34 +0200990 if (!xfer->rx_buf)
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200991 xfer->rx_buf = ctlr->dummy_rx;
Geert Uytterhoeven2de440f2014-05-02 06:29:34 +0200992 }
993 }
994 }
995
Geert Uytterhoeven8caab752017-06-13 13:23:52 +0200996 return __spi_map_msg(ctlr, msg);
Geert Uytterhoeven2de440f2014-05-02 06:29:34 +0200997}
Mark Brown99adef32014-01-16 12:22:43 +0000998
Mark Brownb1589352013-10-05 11:50:40 +0100999/*
1000 * spi_transfer_one_message - Default implementation of transfer_one_message()
1001 *
1002 * This is a standard implementation of transfer_one_message() for
Moritz Fischer8ba811a2016-05-03 11:59:30 -07001003 * drivers which implement a transfer_one() operation. It provides
Mark Brownb1589352013-10-05 11:50:40 +01001004 * standard handling of delays and chip select management.
1005 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001006static int spi_transfer_one_message(struct spi_controller *ctlr,
Mark Brownb1589352013-10-05 11:50:40 +01001007 struct spi_message *msg)
1008{
1009 struct spi_transfer *xfer;
Mark Brownb1589352013-10-05 11:50:40 +01001010 bool keep_cs = false;
1011 int ret = 0;
Sien Wud0716dd2016-09-01 18:24:29 -05001012 unsigned long long ms = 1;
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001013 struct spi_statistics *statm = &ctlr->statistics;
Martin Sperleca2ebc2015-06-22 13:00:36 +00001014 struct spi_statistics *stats = &msg->spi->statistics;
Mark Brownb1589352013-10-05 11:50:40 +01001015
1016 spi_set_cs(msg->spi, true);
1017
Martin Sperleca2ebc2015-06-22 13:00:36 +00001018 SPI_STATISTICS_INCREMENT_FIELD(statm, messages);
1019 SPI_STATISTICS_INCREMENT_FIELD(stats, messages);
1020
Mark Brownb1589352013-10-05 11:50:40 +01001021 list_for_each_entry(xfer, &msg->transfers, transfer_list) {
1022 trace_spi_transfer_start(msg, xfer);
1023
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001024 spi_statistics_add_transfer_stats(statm, xfer, ctlr);
1025 spi_statistics_add_transfer_stats(stats, xfer, ctlr);
Martin Sperleca2ebc2015-06-22 13:00:36 +00001026
Mark Brown38ec10f2014-08-16 16:27:41 +01001027 if (xfer->tx_buf || xfer->rx_buf) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001028 reinit_completion(&ctlr->xfer_completion);
Mark Brownb1589352013-10-05 11:50:40 +01001029
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001030 ret = ctlr->transfer_one(ctlr, msg->spi, xfer);
Mark Brown38ec10f2014-08-16 16:27:41 +01001031 if (ret < 0) {
Martin Sperleca2ebc2015-06-22 13:00:36 +00001032 SPI_STATISTICS_INCREMENT_FIELD(statm,
1033 errors);
1034 SPI_STATISTICS_INCREMENT_FIELD(stats,
1035 errors);
Mark Brown38ec10f2014-08-16 16:27:41 +01001036 dev_err(&msg->spi->dev,
1037 "SPI transfer failed: %d\n", ret);
1038 goto out;
1039 }
Mark Brownb1589352013-10-05 11:50:40 +01001040
Mark Brown38ec10f2014-08-16 16:27:41 +01001041 if (ret > 0) {
1042 ret = 0;
Sien Wud0716dd2016-09-01 18:24:29 -05001043 ms = 8LL * 1000LL * xfer->len;
1044 do_div(ms, xfer->speed_hz);
Hauke Mehrtens833bfad2017-04-17 01:38:05 +02001045 ms += ms + 200; /* some tolerance */
Mark Brown16a0ce42014-01-30 22:16:41 +00001046
Sien Wud0716dd2016-09-01 18:24:29 -05001047 if (ms > UINT_MAX)
1048 ms = UINT_MAX;
1049
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001050 ms = wait_for_completion_timeout(&ctlr->xfer_completion,
Mark Brown38ec10f2014-08-16 16:27:41 +01001051 msecs_to_jiffies(ms));
1052 }
Mark Brown16a0ce42014-01-30 22:16:41 +00001053
Mark Brown38ec10f2014-08-16 16:27:41 +01001054 if (ms == 0) {
Martin Sperleca2ebc2015-06-22 13:00:36 +00001055 SPI_STATISTICS_INCREMENT_FIELD(statm,
1056 timedout);
1057 SPI_STATISTICS_INCREMENT_FIELD(stats,
1058 timedout);
Mark Brown38ec10f2014-08-16 16:27:41 +01001059 dev_err(&msg->spi->dev,
1060 "SPI transfer timed out\n");
1061 msg->status = -ETIMEDOUT;
1062 }
1063 } else {
1064 if (xfer->len)
1065 dev_err(&msg->spi->dev,
1066 "Bufferless transfer has length %u\n",
1067 xfer->len);
Axel Lin13a42792014-01-18 22:05:22 +08001068 }
Mark Brownb1589352013-10-05 11:50:40 +01001069
1070 trace_spi_transfer_stop(msg, xfer);
1071
1072 if (msg->status != -EINPROGRESS)
1073 goto out;
1074
Daniel Kurtz8244bd32016-10-07 18:55:47 +08001075 if (xfer->delay_usecs) {
1076 u16 us = xfer->delay_usecs;
1077
1078 if (us <= 10)
1079 udelay(us);
1080 else
1081 usleep_range(us, us + DIV_ROUND_UP(us, 10));
1082 }
Mark Brownb1589352013-10-05 11:50:40 +01001083
1084 if (xfer->cs_change) {
1085 if (list_is_last(&xfer->transfer_list,
1086 &msg->transfers)) {
1087 keep_cs = true;
1088 } else {
Mark Brown0b73aa62014-03-29 23:48:07 +00001089 spi_set_cs(msg->spi, false);
1090 udelay(10);
1091 spi_set_cs(msg->spi, true);
Mark Brownb1589352013-10-05 11:50:40 +01001092 }
1093 }
1094
1095 msg->actual_length += xfer->len;
1096 }
1097
1098out:
1099 if (ret != 0 || !keep_cs)
1100 spi_set_cs(msg->spi, false);
1101
1102 if (msg->status == -EINPROGRESS)
1103 msg->status = ret;
1104
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001105 if (msg->status && ctlr->handle_err)
1106 ctlr->handle_err(ctlr, msg);
Andy Shevchenkob716c4f2015-02-27 17:34:15 +02001107
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001108 spi_res_release(ctlr, msg);
Martin Sperld780c372015-12-14 15:20:18 +00001109
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001110 spi_finalize_current_message(ctlr);
Mark Brownb1589352013-10-05 11:50:40 +01001111
1112 return ret;
1113}
1114
1115/**
1116 * spi_finalize_current_transfer - report completion of a transfer
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001117 * @ctlr: the controller reporting completion
Mark Brownb1589352013-10-05 11:50:40 +01001118 *
1119 * Called by SPI drivers using the core transfer_one_message()
1120 * implementation to notify it that the current interrupt driven
Geert Uytterhoeven9e8f4882014-01-21 16:10:05 +01001121 * transfer has finished and the next one may be scheduled.
Mark Brownb1589352013-10-05 11:50:40 +01001122 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001123void spi_finalize_current_transfer(struct spi_controller *ctlr)
Mark Brownb1589352013-10-05 11:50:40 +01001124{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001125 complete(&ctlr->xfer_completion);
Mark Brownb1589352013-10-05 11:50:40 +01001126}
1127EXPORT_SYMBOL_GPL(spi_finalize_current_transfer);
1128
Linus Walleijffbbdd212012-02-22 10:05:38 +01001129/**
Mark Brownfc9e0f72014-12-10 13:46:33 +00001130 * __spi_pump_messages - function which processes spi message queue
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001131 * @ctlr: controller to process queue for
Mark Brownfc9e0f72014-12-10 13:46:33 +00001132 * @in_kthread: true if we are in the context of the message pump thread
Linus Walleijffbbdd212012-02-22 10:05:38 +01001133 *
1134 * This function checks if there is any spi message in the queue that
1135 * needs processing and if so call out to the driver to initialize hardware
1136 * and transfer each message.
1137 *
Mark Brown0461a412014-12-09 21:38:05 +00001138 * Note that it is called both from the kthread itself and also from
1139 * inside spi_sync(); the queue extraction handling at the top of the
1140 * function should deal with this safely.
Linus Walleijffbbdd212012-02-22 10:05:38 +01001141 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001142static void __spi_pump_messages(struct spi_controller *ctlr, bool in_kthread)
Linus Walleijffbbdd212012-02-22 10:05:38 +01001143{
Linus Walleijffbbdd212012-02-22 10:05:38 +01001144 unsigned long flags;
1145 bool was_busy = false;
1146 int ret;
1147
Mark Brown983aee52014-12-09 19:46:56 +00001148 /* Lock queue */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001149 spin_lock_irqsave(&ctlr->queue_lock, flags);
Mark Brown983aee52014-12-09 19:46:56 +00001150
1151 /* Make sure we are not already running a message */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001152 if (ctlr->cur_msg) {
1153 spin_unlock_irqrestore(&ctlr->queue_lock, flags);
Mark Brown983aee52014-12-09 19:46:56 +00001154 return;
1155 }
1156
Mark Brown0461a412014-12-09 21:38:05 +00001157 /* If another context is idling the device then defer */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001158 if (ctlr->idling) {
1159 kthread_queue_work(&ctlr->kworker, &ctlr->pump_messages);
1160 spin_unlock_irqrestore(&ctlr->queue_lock, flags);
Mark Brown0461a412014-12-09 21:38:05 +00001161 return;
1162 }
1163
Mark Brown983aee52014-12-09 19:46:56 +00001164 /* Check if the queue is idle */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001165 if (list_empty(&ctlr->queue) || !ctlr->running) {
1166 if (!ctlr->busy) {
1167 spin_unlock_irqrestore(&ctlr->queue_lock, flags);
Bryan Freedb0b36b82013-03-13 11:17:40 -07001168 return;
Linus Walleijffbbdd212012-02-22 10:05:38 +01001169 }
Mark Brownfc9e0f72014-12-10 13:46:33 +00001170
1171 /* Only do teardown in the thread */
1172 if (!in_kthread) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001173 kthread_queue_work(&ctlr->kworker,
1174 &ctlr->pump_messages);
1175 spin_unlock_irqrestore(&ctlr->queue_lock, flags);
Mark Brownfc9e0f72014-12-10 13:46:33 +00001176 return;
1177 }
1178
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001179 ctlr->busy = false;
1180 ctlr->idling = true;
1181 spin_unlock_irqrestore(&ctlr->queue_lock, flags);
Mark Brown0461a412014-12-09 21:38:05 +00001182
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001183 kfree(ctlr->dummy_rx);
1184 ctlr->dummy_rx = NULL;
1185 kfree(ctlr->dummy_tx);
1186 ctlr->dummy_tx = NULL;
1187 if (ctlr->unprepare_transfer_hardware &&
1188 ctlr->unprepare_transfer_hardware(ctlr))
1189 dev_err(&ctlr->dev,
Bryan Freedb0b36b82013-03-13 11:17:40 -07001190 "failed to unprepare transfer hardware\n");
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001191 if (ctlr->auto_runtime_pm) {
1192 pm_runtime_mark_last_busy(ctlr->dev.parent);
1193 pm_runtime_put_autosuspend(ctlr->dev.parent);
Mark Brown49834de2013-07-28 14:47:02 +01001194 }
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001195 trace_spi_controller_idle(ctlr);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001196
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001197 spin_lock_irqsave(&ctlr->queue_lock, flags);
1198 ctlr->idling = false;
1199 spin_unlock_irqrestore(&ctlr->queue_lock, flags);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001200 return;
1201 }
Linus Walleijffbbdd212012-02-22 10:05:38 +01001202
Linus Walleijffbbdd212012-02-22 10:05:38 +01001203 /* Extract head of queue */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001204 ctlr->cur_msg =
1205 list_first_entry(&ctlr->queue, struct spi_message, queue);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001206
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001207 list_del_init(&ctlr->cur_msg->queue);
1208 if (ctlr->busy)
Linus Walleijffbbdd212012-02-22 10:05:38 +01001209 was_busy = true;
1210 else
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001211 ctlr->busy = true;
1212 spin_unlock_irqrestore(&ctlr->queue_lock, flags);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001213
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001214 mutex_lock(&ctlr->io_mutex);
Mark Brownef4d96e2016-07-21 23:53:31 +01001215
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001216 if (!was_busy && ctlr->auto_runtime_pm) {
1217 ret = pm_runtime_get_sync(ctlr->dev.parent);
Mark Brown49834de2013-07-28 14:47:02 +01001218 if (ret < 0) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001219 dev_err(&ctlr->dev, "Failed to power device: %d\n",
Mark Brown49834de2013-07-28 14:47:02 +01001220 ret);
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001221 mutex_unlock(&ctlr->io_mutex);
Mark Brown49834de2013-07-28 14:47:02 +01001222 return;
1223 }
1224 }
1225
Mark Brown56ec1972013-10-07 19:33:53 +01001226 if (!was_busy)
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001227 trace_spi_controller_busy(ctlr);
Mark Brown56ec1972013-10-07 19:33:53 +01001228
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001229 if (!was_busy && ctlr->prepare_transfer_hardware) {
1230 ret = ctlr->prepare_transfer_hardware(ctlr);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001231 if (ret) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001232 dev_err(&ctlr->dev,
Linus Walleijffbbdd212012-02-22 10:05:38 +01001233 "failed to prepare transfer hardware\n");
Mark Brown49834de2013-07-28 14:47:02 +01001234
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001235 if (ctlr->auto_runtime_pm)
1236 pm_runtime_put(ctlr->dev.parent);
1237 mutex_unlock(&ctlr->io_mutex);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001238 return;
1239 }
1240 }
1241
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001242 trace_spi_message_start(ctlr->cur_msg);
Mark Brown56ec1972013-10-07 19:33:53 +01001243
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001244 if (ctlr->prepare_message) {
1245 ret = ctlr->prepare_message(ctlr, ctlr->cur_msg);
Mark Brown2841a5f2013-10-05 00:23:12 +01001246 if (ret) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001247 dev_err(&ctlr->dev, "failed to prepare message: %d\n",
1248 ret);
1249 ctlr->cur_msg->status = ret;
1250 spi_finalize_current_message(ctlr);
Jon Hunter49023d22016-03-08 12:28:20 +00001251 goto out;
Mark Brown2841a5f2013-10-05 00:23:12 +01001252 }
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001253 ctlr->cur_msg_prepared = true;
Mark Brown2841a5f2013-10-05 00:23:12 +01001254 }
1255
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001256 ret = spi_map_msg(ctlr, ctlr->cur_msg);
Mark Brown99adef32014-01-16 12:22:43 +00001257 if (ret) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001258 ctlr->cur_msg->status = ret;
1259 spi_finalize_current_message(ctlr);
Jon Hunter49023d22016-03-08 12:28:20 +00001260 goto out;
Mark Brown99adef32014-01-16 12:22:43 +00001261 }
1262
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001263 ret = ctlr->transfer_one_message(ctlr, ctlr->cur_msg);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001264 if (ret) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001265 dev_err(&ctlr->dev,
Geert Uytterhoeven1f802f82014-01-28 10:33:03 +01001266 "failed to transfer one message from queue\n");
Jon Hunter49023d22016-03-08 12:28:20 +00001267 goto out;
Linus Walleijffbbdd212012-02-22 10:05:38 +01001268 }
Jon Hunter49023d22016-03-08 12:28:20 +00001269
1270out:
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001271 mutex_unlock(&ctlr->io_mutex);
Mark Brown62826972016-02-15 18:28:02 +00001272
1273 /* Prod the scheduler in case transfer_one() was busy waiting */
Jon Hunter49023d22016-03-08 12:28:20 +00001274 if (!ret)
1275 cond_resched();
Linus Walleijffbbdd212012-02-22 10:05:38 +01001276}
1277
Mark Brownfc9e0f72014-12-10 13:46:33 +00001278/**
1279 * spi_pump_messages - kthread work function which processes spi message queue
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001280 * @work: pointer to kthread work struct contained in the controller struct
Mark Brownfc9e0f72014-12-10 13:46:33 +00001281 */
1282static void spi_pump_messages(struct kthread_work *work)
1283{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001284 struct spi_controller *ctlr =
1285 container_of(work, struct spi_controller, pump_messages);
Mark Brownfc9e0f72014-12-10 13:46:33 +00001286
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001287 __spi_pump_messages(ctlr, true);
Mark Brownfc9e0f72014-12-10 13:46:33 +00001288}
1289
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001290static int spi_init_queue(struct spi_controller *ctlr)
Linus Walleijffbbdd212012-02-22 10:05:38 +01001291{
1292 struct sched_param param = { .sched_priority = MAX_RT_PRIO - 1 };
1293
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001294 ctlr->running = false;
1295 ctlr->busy = false;
Linus Walleijffbbdd212012-02-22 10:05:38 +01001296
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001297 kthread_init_worker(&ctlr->kworker);
1298 ctlr->kworker_task = kthread_run(kthread_worker_fn, &ctlr->kworker,
1299 "%s", dev_name(&ctlr->dev));
1300 if (IS_ERR(ctlr->kworker_task)) {
1301 dev_err(&ctlr->dev, "failed to create message pump task\n");
1302 return PTR_ERR(ctlr->kworker_task);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001303 }
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001304 kthread_init_work(&ctlr->pump_messages, spi_pump_messages);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001305
1306 /*
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001307 * Controller config will indicate if this controller should run the
Linus Walleijffbbdd212012-02-22 10:05:38 +01001308 * message pump with high (realtime) priority to reduce the transfer
1309 * latency on the bus by minimising the delay between a transfer
1310 * request and the scheduling of the message pump thread. Without this
1311 * setting the message pump thread will remain at default priority.
1312 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001313 if (ctlr->rt) {
1314 dev_info(&ctlr->dev,
Linus Walleijffbbdd212012-02-22 10:05:38 +01001315 "will run message pump with realtime priority\n");
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001316 sched_setscheduler(ctlr->kworker_task, SCHED_FIFO, &param);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001317 }
1318
1319 return 0;
1320}
1321
1322/**
1323 * spi_get_next_queued_message() - called by driver to check for queued
1324 * messages
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001325 * @ctlr: the controller to check for queued messages
Linus Walleijffbbdd212012-02-22 10:05:38 +01001326 *
1327 * If there are more messages in the queue, the next message is returned from
1328 * this call.
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +02001329 *
1330 * Return: the next message in the queue, else NULL if the queue is empty.
Linus Walleijffbbdd212012-02-22 10:05:38 +01001331 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001332struct spi_message *spi_get_next_queued_message(struct spi_controller *ctlr)
Linus Walleijffbbdd212012-02-22 10:05:38 +01001333{
1334 struct spi_message *next;
1335 unsigned long flags;
1336
1337 /* get a pointer to the next message, if any */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001338 spin_lock_irqsave(&ctlr->queue_lock, flags);
1339 next = list_first_entry_or_null(&ctlr->queue, struct spi_message,
Axel Lin1cfd97f2014-01-02 15:16:40 +08001340 queue);
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001341 spin_unlock_irqrestore(&ctlr->queue_lock, flags);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001342
1343 return next;
1344}
1345EXPORT_SYMBOL_GPL(spi_get_next_queued_message);
1346
1347/**
1348 * spi_finalize_current_message() - the current message is complete
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001349 * @ctlr: the controller to return the message to
Linus Walleijffbbdd212012-02-22 10:05:38 +01001350 *
1351 * Called by the driver to notify the core that the message in the front of the
1352 * queue is complete and can be removed from the queue.
1353 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001354void spi_finalize_current_message(struct spi_controller *ctlr)
Linus Walleijffbbdd212012-02-22 10:05:38 +01001355{
1356 struct spi_message *mesg;
1357 unsigned long flags;
Mark Brown2841a5f2013-10-05 00:23:12 +01001358 int ret;
Linus Walleijffbbdd212012-02-22 10:05:38 +01001359
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001360 spin_lock_irqsave(&ctlr->queue_lock, flags);
1361 mesg = ctlr->cur_msg;
1362 spin_unlock_irqrestore(&ctlr->queue_lock, flags);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001363
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001364 spi_unmap_msg(ctlr, mesg);
Mark Brown99adef32014-01-16 12:22:43 +00001365
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001366 if (ctlr->cur_msg_prepared && ctlr->unprepare_message) {
1367 ret = ctlr->unprepare_message(ctlr, mesg);
Mark Brown2841a5f2013-10-05 00:23:12 +01001368 if (ret) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001369 dev_err(&ctlr->dev, "failed to unprepare message: %d\n",
1370 ret);
Mark Brown2841a5f2013-10-05 00:23:12 +01001371 }
1372 }
Uwe Kleine-König391949b2015-03-18 11:27:28 +01001373
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001374 spin_lock_irqsave(&ctlr->queue_lock, flags);
1375 ctlr->cur_msg = NULL;
1376 ctlr->cur_msg_prepared = false;
1377 kthread_queue_work(&ctlr->kworker, &ctlr->pump_messages);
1378 spin_unlock_irqrestore(&ctlr->queue_lock, flags);
Martin Sperl8e76ef82015-05-10 07:50:45 +00001379
1380 trace_spi_message_done(mesg);
Mark Brown2841a5f2013-10-05 00:23:12 +01001381
Linus Walleijffbbdd212012-02-22 10:05:38 +01001382 mesg->state = NULL;
1383 if (mesg->complete)
1384 mesg->complete(mesg->context);
1385}
1386EXPORT_SYMBOL_GPL(spi_finalize_current_message);
1387
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001388static int spi_start_queue(struct spi_controller *ctlr)
Linus Walleijffbbdd212012-02-22 10:05:38 +01001389{
1390 unsigned long flags;
1391
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001392 spin_lock_irqsave(&ctlr->queue_lock, flags);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001393
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001394 if (ctlr->running || ctlr->busy) {
1395 spin_unlock_irqrestore(&ctlr->queue_lock, flags);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001396 return -EBUSY;
1397 }
1398
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001399 ctlr->running = true;
1400 ctlr->cur_msg = NULL;
1401 spin_unlock_irqrestore(&ctlr->queue_lock, flags);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001402
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001403 kthread_queue_work(&ctlr->kworker, &ctlr->pump_messages);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001404
1405 return 0;
1406}
1407
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001408static int spi_stop_queue(struct spi_controller *ctlr)
Linus Walleijffbbdd212012-02-22 10:05:38 +01001409{
1410 unsigned long flags;
1411 unsigned limit = 500;
1412 int ret = 0;
1413
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001414 spin_lock_irqsave(&ctlr->queue_lock, flags);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001415
1416 /*
1417 * This is a bit lame, but is optimized for the common execution path.
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001418 * A wait_queue on the ctlr->busy could be used, but then the common
Linus Walleijffbbdd212012-02-22 10:05:38 +01001419 * execution path (pump_messages) would be required to call wake_up or
1420 * friends on every SPI message. Do this instead.
1421 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001422 while ((!list_empty(&ctlr->queue) || ctlr->busy) && limit--) {
1423 spin_unlock_irqrestore(&ctlr->queue_lock, flags);
Axel Linf97b26b2014-02-21 09:15:18 +08001424 usleep_range(10000, 11000);
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001425 spin_lock_irqsave(&ctlr->queue_lock, flags);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001426 }
1427
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001428 if (!list_empty(&ctlr->queue) || ctlr->busy)
Linus Walleijffbbdd212012-02-22 10:05:38 +01001429 ret = -EBUSY;
1430 else
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001431 ctlr->running = false;
Linus Walleijffbbdd212012-02-22 10:05:38 +01001432
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001433 spin_unlock_irqrestore(&ctlr->queue_lock, flags);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001434
1435 if (ret) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001436 dev_warn(&ctlr->dev, "could not stop message queue\n");
Linus Walleijffbbdd212012-02-22 10:05:38 +01001437 return ret;
1438 }
1439 return ret;
1440}
1441
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001442static int spi_destroy_queue(struct spi_controller *ctlr)
Linus Walleijffbbdd212012-02-22 10:05:38 +01001443{
1444 int ret;
1445
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001446 ret = spi_stop_queue(ctlr);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001447
1448 /*
Petr Mladek39891442016-10-11 13:55:20 -07001449 * kthread_flush_worker will block until all work is done.
Linus Walleijffbbdd212012-02-22 10:05:38 +01001450 * If the reason that stop_queue timed out is that the work will never
1451 * finish, then it does no good to call flush/stop thread, so
1452 * return anyway.
1453 */
1454 if (ret) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001455 dev_err(&ctlr->dev, "problem destroying queue\n");
Linus Walleijffbbdd212012-02-22 10:05:38 +01001456 return ret;
1457 }
1458
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001459 kthread_flush_worker(&ctlr->kworker);
1460 kthread_stop(ctlr->kworker_task);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001461
1462 return 0;
1463}
1464
Mark Brown0461a412014-12-09 21:38:05 +00001465static int __spi_queued_transfer(struct spi_device *spi,
1466 struct spi_message *msg,
1467 bool need_pump)
Linus Walleijffbbdd212012-02-22 10:05:38 +01001468{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001469 struct spi_controller *ctlr = spi->controller;
Linus Walleijffbbdd212012-02-22 10:05:38 +01001470 unsigned long flags;
1471
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001472 spin_lock_irqsave(&ctlr->queue_lock, flags);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001473
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001474 if (!ctlr->running) {
1475 spin_unlock_irqrestore(&ctlr->queue_lock, flags);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001476 return -ESHUTDOWN;
1477 }
1478 msg->actual_length = 0;
1479 msg->status = -EINPROGRESS;
1480
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001481 list_add_tail(&msg->queue, &ctlr->queue);
1482 if (!ctlr->busy && need_pump)
1483 kthread_queue_work(&ctlr->kworker, &ctlr->pump_messages);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001484
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001485 spin_unlock_irqrestore(&ctlr->queue_lock, flags);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001486 return 0;
1487}
1488
Mark Brown0461a412014-12-09 21:38:05 +00001489/**
1490 * spi_queued_transfer - transfer function for queued transfers
1491 * @spi: spi device which is requesting transfer
1492 * @msg: spi message which is to handled is queued to driver queue
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +02001493 *
1494 * Return: zero on success, else a negative error code.
Mark Brown0461a412014-12-09 21:38:05 +00001495 */
1496static int spi_queued_transfer(struct spi_device *spi, struct spi_message *msg)
1497{
1498 return __spi_queued_transfer(spi, msg, true);
1499}
1500
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001501static int spi_controller_initialize_queue(struct spi_controller *ctlr)
Linus Walleijffbbdd212012-02-22 10:05:38 +01001502{
1503 int ret;
1504
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001505 ctlr->transfer = spi_queued_transfer;
1506 if (!ctlr->transfer_one_message)
1507 ctlr->transfer_one_message = spi_transfer_one_message;
Linus Walleijffbbdd212012-02-22 10:05:38 +01001508
1509 /* Initialize and start queue */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001510 ret = spi_init_queue(ctlr);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001511 if (ret) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001512 dev_err(&ctlr->dev, "problem initializing queue\n");
Linus Walleijffbbdd212012-02-22 10:05:38 +01001513 goto err_init_queue;
1514 }
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001515 ctlr->queued = true;
1516 ret = spi_start_queue(ctlr);
Linus Walleijffbbdd212012-02-22 10:05:38 +01001517 if (ret) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001518 dev_err(&ctlr->dev, "problem starting queue\n");
Linus Walleijffbbdd212012-02-22 10:05:38 +01001519 goto err_start_queue;
1520 }
1521
1522 return 0;
1523
1524err_start_queue:
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001525 spi_destroy_queue(ctlr);
Mark Brownc3676d52014-05-01 10:47:52 -07001526err_init_queue:
Linus Walleijffbbdd212012-02-22 10:05:38 +01001527 return ret;
1528}
1529
1530/*-------------------------------------------------------------------------*/
1531
Andreas Larsson7cb94362012-12-04 15:09:38 +01001532#if defined(CONFIG_OF)
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001533static int of_spi_parse_dt(struct spi_controller *ctlr, struct spi_device *spi,
Geert Uytterhoevenc2e51ac2016-09-12 22:50:41 +02001534 struct device_node *nc)
Pantelis Antoniouaff5e3f2014-10-29 10:40:37 +02001535{
Pantelis Antoniouaff5e3f2014-10-29 10:40:37 +02001536 u32 value;
Geert Uytterhoevenc2e51ac2016-09-12 22:50:41 +02001537 int rc;
Pantelis Antoniouaff5e3f2014-10-29 10:40:37 +02001538
Pantelis Antoniouaff5e3f2014-10-29 10:40:37 +02001539 /* Mode (clock phase/polarity/etc.) */
Sergei Shtylyove0bcb682017-08-06 23:15:31 +03001540 if (of_property_read_bool(nc, "spi-cpha"))
Pantelis Antoniouaff5e3f2014-10-29 10:40:37 +02001541 spi->mode |= SPI_CPHA;
Sergei Shtylyove0bcb682017-08-06 23:15:31 +03001542 if (of_property_read_bool(nc, "spi-cpol"))
Pantelis Antoniouaff5e3f2014-10-29 10:40:37 +02001543 spi->mode |= SPI_CPOL;
Sergei Shtylyove0bcb682017-08-06 23:15:31 +03001544 if (of_property_read_bool(nc, "spi-cs-high"))
Pantelis Antoniouaff5e3f2014-10-29 10:40:37 +02001545 spi->mode |= SPI_CS_HIGH;
Sergei Shtylyove0bcb682017-08-06 23:15:31 +03001546 if (of_property_read_bool(nc, "spi-3wire"))
Pantelis Antoniouaff5e3f2014-10-29 10:40:37 +02001547 spi->mode |= SPI_3WIRE;
Sergei Shtylyove0bcb682017-08-06 23:15:31 +03001548 if (of_property_read_bool(nc, "spi-lsb-first"))
Pantelis Antoniouaff5e3f2014-10-29 10:40:37 +02001549 spi->mode |= SPI_LSB_FIRST;
1550
1551 /* Device DUAL/QUAD mode */
1552 if (!of_property_read_u32(nc, "spi-tx-bus-width", &value)) {
1553 switch (value) {
1554 case 1:
1555 break;
1556 case 2:
1557 spi->mode |= SPI_TX_DUAL;
1558 break;
1559 case 4:
1560 spi->mode |= SPI_TX_QUAD;
1561 break;
1562 default:
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001563 dev_warn(&ctlr->dev,
Pantelis Antoniouaff5e3f2014-10-29 10:40:37 +02001564 "spi-tx-bus-width %d not supported\n",
1565 value);
1566 break;
1567 }
1568 }
1569
1570 if (!of_property_read_u32(nc, "spi-rx-bus-width", &value)) {
1571 switch (value) {
1572 case 1:
1573 break;
1574 case 2:
1575 spi->mode |= SPI_RX_DUAL;
1576 break;
1577 case 4:
1578 spi->mode |= SPI_RX_QUAD;
1579 break;
1580 default:
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001581 dev_warn(&ctlr->dev,
Pantelis Antoniouaff5e3f2014-10-29 10:40:37 +02001582 "spi-rx-bus-width %d not supported\n",
1583 value);
1584 break;
1585 }
1586 }
1587
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001588 if (spi_controller_is_slave(ctlr)) {
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02001589 if (strcmp(nc->name, "slave")) {
Rob Herring25c56c82017-07-18 16:43:31 -05001590 dev_err(&ctlr->dev, "%pOF is not called 'slave'\n",
1591 nc);
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02001592 return -EINVAL;
1593 }
1594 return 0;
1595 }
1596
1597 /* Device address */
1598 rc = of_property_read_u32(nc, "reg", &value);
1599 if (rc) {
Rob Herring25c56c82017-07-18 16:43:31 -05001600 dev_err(&ctlr->dev, "%pOF has no valid 'reg' property (%d)\n",
1601 nc, rc);
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02001602 return rc;
1603 }
1604 spi->chip_select = value;
1605
Pantelis Antoniouaff5e3f2014-10-29 10:40:37 +02001606 /* Device speed */
1607 rc = of_property_read_u32(nc, "spi-max-frequency", &value);
1608 if (rc) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001609 dev_err(&ctlr->dev,
Rob Herring25c56c82017-07-18 16:43:31 -05001610 "%pOF has no valid 'spi-max-frequency' property (%d)\n", nc, rc);
Geert Uytterhoevenc2e51ac2016-09-12 22:50:41 +02001611 return rc;
Pantelis Antoniouaff5e3f2014-10-29 10:40:37 +02001612 }
1613 spi->max_speed_hz = value;
1614
Geert Uytterhoevenc2e51ac2016-09-12 22:50:41 +02001615 return 0;
1616}
1617
1618static struct spi_device *
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001619of_register_spi_device(struct spi_controller *ctlr, struct device_node *nc)
Geert Uytterhoevenc2e51ac2016-09-12 22:50:41 +02001620{
1621 struct spi_device *spi;
1622 int rc;
1623
1624 /* Alloc an spi_device */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001625 spi = spi_alloc_device(ctlr);
Geert Uytterhoevenc2e51ac2016-09-12 22:50:41 +02001626 if (!spi) {
Rob Herring25c56c82017-07-18 16:43:31 -05001627 dev_err(&ctlr->dev, "spi_device alloc error for %pOF\n", nc);
Geert Uytterhoevenc2e51ac2016-09-12 22:50:41 +02001628 rc = -ENOMEM;
1629 goto err_out;
1630 }
1631
1632 /* Select device driver */
1633 rc = of_modalias_node(nc, spi->modalias,
1634 sizeof(spi->modalias));
1635 if (rc < 0) {
Rob Herring25c56c82017-07-18 16:43:31 -05001636 dev_err(&ctlr->dev, "cannot find modalias for %pOF\n", nc);
Geert Uytterhoevenc2e51ac2016-09-12 22:50:41 +02001637 goto err_out;
1638 }
1639
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001640 rc = of_spi_parse_dt(ctlr, spi, nc);
Geert Uytterhoevenc2e51ac2016-09-12 22:50:41 +02001641 if (rc)
1642 goto err_out;
1643
Pantelis Antoniouaff5e3f2014-10-29 10:40:37 +02001644 /* Store a pointer to the node in the device structure */
1645 of_node_get(nc);
1646 spi->dev.of_node = nc;
1647
1648 /* Register the new device */
Pantelis Antoniouaff5e3f2014-10-29 10:40:37 +02001649 rc = spi_add_device(spi);
1650 if (rc) {
Rob Herring25c56c82017-07-18 16:43:31 -05001651 dev_err(&ctlr->dev, "spi_device register error %pOF\n", nc);
Johan Hovold83241472017-01-30 17:47:05 +01001652 goto err_of_node_put;
Pantelis Antoniouaff5e3f2014-10-29 10:40:37 +02001653 }
1654
1655 return spi;
1656
Johan Hovold83241472017-01-30 17:47:05 +01001657err_of_node_put:
1658 of_node_put(nc);
Pantelis Antoniouaff5e3f2014-10-29 10:40:37 +02001659err_out:
1660 spi_dev_put(spi);
1661 return ERR_PTR(rc);
1662}
1663
Grant Likelyd57a4282012-04-07 14:16:53 -06001664/**
1665 * of_register_spi_devices() - Register child devices onto the SPI bus
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001666 * @ctlr: Pointer to spi_controller device
Grant Likelyd57a4282012-04-07 14:16:53 -06001667 *
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02001668 * Registers an spi_device for each child node of controller node which
1669 * represents a valid SPI slave.
Grant Likelyd57a4282012-04-07 14:16:53 -06001670 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001671static void of_register_spi_devices(struct spi_controller *ctlr)
Grant Likelyd57a4282012-04-07 14:16:53 -06001672{
1673 struct spi_device *spi;
1674 struct device_node *nc;
Grant Likelyd57a4282012-04-07 14:16:53 -06001675
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001676 if (!ctlr->dev.of_node)
Grant Likelyd57a4282012-04-07 14:16:53 -06001677 return;
1678
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001679 for_each_available_child_of_node(ctlr->dev.of_node, nc) {
Geert Uytterhoevenbd6c1642015-11-30 15:28:07 +01001680 if (of_node_test_and_set_flag(nc, OF_POPULATED))
1681 continue;
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001682 spi = of_register_spi_device(ctlr, nc);
Ralf Ramsauere0af98a2016-10-17 15:59:56 +02001683 if (IS_ERR(spi)) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001684 dev_warn(&ctlr->dev,
Rob Herring25c56c82017-07-18 16:43:31 -05001685 "Failed to create SPI device for %pOF\n", nc);
Ralf Ramsauere0af98a2016-10-17 15:59:56 +02001686 of_node_clear_flag(nc, OF_POPULATED);
1687 }
Grant Likelyd57a4282012-04-07 14:16:53 -06001688 }
1689}
1690#else
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001691static void of_register_spi_devices(struct spi_controller *ctlr) { }
Grant Likelyd57a4282012-04-07 14:16:53 -06001692#endif
1693
Mika Westerberg64bee4d2012-11-30 12:37:53 +01001694#ifdef CONFIG_ACPI
Lukas Wunner8a2e4872017-08-01 14:10:41 +02001695static void acpi_spi_parse_apple_properties(struct spi_device *spi)
1696{
1697 struct acpi_device *dev = ACPI_COMPANION(&spi->dev);
1698 const union acpi_object *obj;
1699
1700 if (!x86_apple_machine)
1701 return;
1702
1703 if (!acpi_dev_get_property(dev, "spiSclkPeriod", ACPI_TYPE_BUFFER, &obj)
1704 && obj->buffer.length >= 4)
1705 spi->max_speed_hz = NSEC_PER_SEC / *(u32 *)obj->buffer.pointer;
1706
1707 if (!acpi_dev_get_property(dev, "spiWordSize", ACPI_TYPE_BUFFER, &obj)
1708 && obj->buffer.length == 8)
1709 spi->bits_per_word = *(u64 *)obj->buffer.pointer;
1710
1711 if (!acpi_dev_get_property(dev, "spiBitOrder", ACPI_TYPE_BUFFER, &obj)
1712 && obj->buffer.length == 8 && !*(u64 *)obj->buffer.pointer)
1713 spi->mode |= SPI_LSB_FIRST;
1714
1715 if (!acpi_dev_get_property(dev, "spiSPO", ACPI_TYPE_BUFFER, &obj)
1716 && obj->buffer.length == 8 && *(u64 *)obj->buffer.pointer)
1717 spi->mode |= SPI_CPOL;
1718
1719 if (!acpi_dev_get_property(dev, "spiSPH", ACPI_TYPE_BUFFER, &obj)
1720 && obj->buffer.length == 8 && *(u64 *)obj->buffer.pointer)
1721 spi->mode |= SPI_CPHA;
1722}
1723
Mika Westerberg64bee4d2012-11-30 12:37:53 +01001724static int acpi_spi_add_resource(struct acpi_resource *ares, void *data)
1725{
1726 struct spi_device *spi = data;
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001727 struct spi_controller *ctlr = spi->controller;
Mika Westerberg64bee4d2012-11-30 12:37:53 +01001728
1729 if (ares->type == ACPI_RESOURCE_TYPE_SERIAL_BUS) {
1730 struct acpi_resource_spi_serialbus *sb;
1731
1732 sb = &ares->data.spi_serial_bus;
1733 if (sb->type == ACPI_RESOURCE_SERIAL_TYPE_SPI) {
Mika Westerberga0a90712016-02-08 17:14:28 +02001734 /*
1735 * ACPI DeviceSelection numbering is handled by the
1736 * host controller driver in Windows and can vary
1737 * from driver to driver. In Linux we always expect
1738 * 0 .. max - 1 so we need to ask the driver to
1739 * translate between the two schemes.
1740 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001741 if (ctlr->fw_translate_cs) {
1742 int cs = ctlr->fw_translate_cs(ctlr,
Mika Westerberga0a90712016-02-08 17:14:28 +02001743 sb->device_selection);
1744 if (cs < 0)
1745 return cs;
1746 spi->chip_select = cs;
1747 } else {
1748 spi->chip_select = sb->device_selection;
1749 }
1750
Mika Westerberg64bee4d2012-11-30 12:37:53 +01001751 spi->max_speed_hz = sb->connection_speed;
1752
1753 if (sb->clock_phase == ACPI_SPI_SECOND_PHASE)
1754 spi->mode |= SPI_CPHA;
1755 if (sb->clock_polarity == ACPI_SPI_START_HIGH)
1756 spi->mode |= SPI_CPOL;
1757 if (sb->device_polarity == ACPI_SPI_ACTIVE_HIGH)
1758 spi->mode |= SPI_CS_HIGH;
1759 }
1760 } else if (spi->irq < 0) {
1761 struct resource r;
1762
1763 if (acpi_dev_resource_interrupt(ares, 0, &r))
1764 spi->irq = r.start;
1765 }
1766
1767 /* Always tell the ACPI core to skip this resource */
1768 return 1;
1769}
1770
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001771static acpi_status acpi_register_spi_device(struct spi_controller *ctlr,
Octavian Purdila7f244672016-07-08 19:13:11 +03001772 struct acpi_device *adev)
Mika Westerberg64bee4d2012-11-30 12:37:53 +01001773{
Mika Westerberg64bee4d2012-11-30 12:37:53 +01001774 struct list_head resource_list;
Mika Westerberg64bee4d2012-11-30 12:37:53 +01001775 struct spi_device *spi;
1776 int ret;
1777
Octavian Purdila7f244672016-07-08 19:13:11 +03001778 if (acpi_bus_get_status(adev) || !adev->status.present ||
1779 acpi_device_enumerated(adev))
Mika Westerberg64bee4d2012-11-30 12:37:53 +01001780 return AE_OK;
1781
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001782 spi = spi_alloc_device(ctlr);
Mika Westerberg64bee4d2012-11-30 12:37:53 +01001783 if (!spi) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001784 dev_err(&ctlr->dev, "failed to allocate SPI device for %s\n",
Mika Westerberg64bee4d2012-11-30 12:37:53 +01001785 dev_name(&adev->dev));
1786 return AE_NO_MEMORY;
1787 }
1788
Rafael J. Wysocki7b199812013-11-11 22:41:56 +01001789 ACPI_COMPANION_SET(&spi->dev, adev);
Mika Westerberg64bee4d2012-11-30 12:37:53 +01001790 spi->irq = -1;
1791
1792 INIT_LIST_HEAD(&resource_list);
1793 ret = acpi_dev_get_resources(adev, &resource_list,
1794 acpi_spi_add_resource, spi);
1795 acpi_dev_free_resource_list(&resource_list);
1796
Lukas Wunner8a2e4872017-08-01 14:10:41 +02001797 acpi_spi_parse_apple_properties(spi);
1798
Mika Westerberg64bee4d2012-11-30 12:37:53 +01001799 if (ret < 0 || !spi->max_speed_hz) {
1800 spi_dev_put(spi);
1801 return AE_OK;
1802 }
1803
Dan O'Donovan0c6543f2017-02-05 16:30:14 +00001804 acpi_set_modalias(adev, acpi_device_hid(adev), spi->modalias,
1805 sizeof(spi->modalias));
1806
Christophe RICARD33ada672015-12-23 23:25:35 +01001807 if (spi->irq < 0)
1808 spi->irq = acpi_dev_gpio_irq_get(adev, 0);
1809
Octavian Purdila7f244672016-07-08 19:13:11 +03001810 acpi_device_set_enumerated(adev);
1811
Mika Westerberg33cf00e2013-10-10 13:28:48 +03001812 adev->power.flags.ignore_parent = true;
Mika Westerberg64bee4d2012-11-30 12:37:53 +01001813 if (spi_add_device(spi)) {
Mika Westerberg33cf00e2013-10-10 13:28:48 +03001814 adev->power.flags.ignore_parent = false;
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001815 dev_err(&ctlr->dev, "failed to add SPI device %s from ACPI\n",
Mika Westerberg64bee4d2012-11-30 12:37:53 +01001816 dev_name(&adev->dev));
1817 spi_dev_put(spi);
1818 }
1819
1820 return AE_OK;
1821}
1822
Octavian Purdila7f244672016-07-08 19:13:11 +03001823static acpi_status acpi_spi_add_device(acpi_handle handle, u32 level,
1824 void *data, void **return_value)
1825{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001826 struct spi_controller *ctlr = data;
Octavian Purdila7f244672016-07-08 19:13:11 +03001827 struct acpi_device *adev;
1828
1829 if (acpi_bus_get_device(handle, &adev))
1830 return AE_OK;
1831
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001832 return acpi_register_spi_device(ctlr, adev);
Octavian Purdila7f244672016-07-08 19:13:11 +03001833}
1834
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001835static void acpi_register_spi_devices(struct spi_controller *ctlr)
Mika Westerberg64bee4d2012-11-30 12:37:53 +01001836{
1837 acpi_status status;
1838 acpi_handle handle;
1839
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001840 handle = ACPI_HANDLE(ctlr->dev.parent);
Mika Westerberg64bee4d2012-11-30 12:37:53 +01001841 if (!handle)
1842 return;
1843
1844 status = acpi_walk_namespace(ACPI_TYPE_DEVICE, handle, 1,
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001845 acpi_spi_add_device, NULL, ctlr, NULL);
Mika Westerberg64bee4d2012-11-30 12:37:53 +01001846 if (ACPI_FAILURE(status))
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001847 dev_warn(&ctlr->dev, "failed to enumerate SPI slaves\n");
Mika Westerberg64bee4d2012-11-30 12:37:53 +01001848}
1849#else
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001850static inline void acpi_register_spi_devices(struct spi_controller *ctlr) {}
Mika Westerberg64bee4d2012-11-30 12:37:53 +01001851#endif /* CONFIG_ACPI */
1852
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001853static void spi_controller_release(struct device *dev)
David Brownell8ae12a02006-01-08 13:34:19 -08001854{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001855 struct spi_controller *ctlr;
David Brownell8ae12a02006-01-08 13:34:19 -08001856
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001857 ctlr = container_of(dev, struct spi_controller, dev);
1858 kfree(ctlr);
David Brownell8ae12a02006-01-08 13:34:19 -08001859}
1860
1861static struct class spi_master_class = {
1862 .name = "spi_master",
1863 .owner = THIS_MODULE,
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001864 .dev_release = spi_controller_release,
Martin Sperleca2ebc2015-06-22 13:00:36 +00001865 .dev_groups = spi_master_groups,
David Brownell8ae12a02006-01-08 13:34:19 -08001866};
1867
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02001868#ifdef CONFIG_SPI_SLAVE
1869/**
1870 * spi_slave_abort - abort the ongoing transfer request on an SPI slave
1871 * controller
1872 * @spi: device used for the current transfer
1873 */
1874int spi_slave_abort(struct spi_device *spi)
1875{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001876 struct spi_controller *ctlr = spi->controller;
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02001877
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001878 if (spi_controller_is_slave(ctlr) && ctlr->slave_abort)
1879 return ctlr->slave_abort(ctlr);
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02001880
1881 return -ENOTSUPP;
1882}
1883EXPORT_SYMBOL_GPL(spi_slave_abort);
1884
1885static int match_true(struct device *dev, void *data)
1886{
1887 return 1;
1888}
1889
1890static ssize_t spi_slave_show(struct device *dev,
1891 struct device_attribute *attr, char *buf)
1892{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001893 struct spi_controller *ctlr = container_of(dev, struct spi_controller,
1894 dev);
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02001895 struct device *child;
1896
1897 child = device_find_child(&ctlr->dev, NULL, match_true);
1898 return sprintf(buf, "%s\n",
1899 child ? to_spi_device(child)->modalias : NULL);
1900}
1901
1902static ssize_t spi_slave_store(struct device *dev,
1903 struct device_attribute *attr, const char *buf,
1904 size_t count)
1905{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001906 struct spi_controller *ctlr = container_of(dev, struct spi_controller,
1907 dev);
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02001908 struct spi_device *spi;
1909 struct device *child;
1910 char name[32];
1911 int rc;
1912
1913 rc = sscanf(buf, "%31s", name);
1914 if (rc != 1 || !name[0])
1915 return -EINVAL;
1916
1917 child = device_find_child(&ctlr->dev, NULL, match_true);
1918 if (child) {
1919 /* Remove registered slave */
1920 device_unregister(child);
1921 put_device(child);
1922 }
1923
1924 if (strcmp(name, "(null)")) {
1925 /* Register new slave */
1926 spi = spi_alloc_device(ctlr);
1927 if (!spi)
1928 return -ENOMEM;
1929
1930 strlcpy(spi->modalias, name, sizeof(spi->modalias));
1931
1932 rc = spi_add_device(spi);
1933 if (rc) {
1934 spi_dev_put(spi);
1935 return rc;
1936 }
1937 }
1938
1939 return count;
1940}
1941
1942static DEVICE_ATTR(slave, 0644, spi_slave_show, spi_slave_store);
1943
1944static struct attribute *spi_slave_attrs[] = {
1945 &dev_attr_slave.attr,
1946 NULL,
1947};
1948
1949static const struct attribute_group spi_slave_group = {
1950 .attrs = spi_slave_attrs,
1951};
1952
1953static const struct attribute_group *spi_slave_groups[] = {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001954 &spi_controller_statistics_group,
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02001955 &spi_slave_group,
1956 NULL,
1957};
1958
1959static struct class spi_slave_class = {
1960 .name = "spi_slave",
1961 .owner = THIS_MODULE,
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001962 .dev_release = spi_controller_release,
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02001963 .dev_groups = spi_slave_groups,
1964};
1965#else
1966extern struct class spi_slave_class; /* dummy */
1967#endif
David Brownell8ae12a02006-01-08 13:34:19 -08001968
1969/**
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02001970 * __spi_alloc_controller - allocate an SPI master or slave controller
David Brownell8ae12a02006-01-08 13:34:19 -08001971 * @dev: the controller, possibly using the platform_bus
David Brownell33e34dc2007-05-08 00:32:21 -07001972 * @size: how much zeroed driver-private data to allocate; the pointer to this
Tony Jones49dce682007-10-16 01:27:48 -07001973 * memory is in the driver_data field of the returned device,
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001974 * accessible with spi_controller_get_devdata().
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02001975 * @slave: flag indicating whether to allocate an SPI master (false) or SPI
1976 * slave (true) controller
David Brownell33e34dc2007-05-08 00:32:21 -07001977 * Context: can sleep
David Brownell8ae12a02006-01-08 13:34:19 -08001978 *
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02001979 * This call is used only by SPI controller drivers, which are the
David Brownell8ae12a02006-01-08 13:34:19 -08001980 * only ones directly touching chip registers. It's how they allocate
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001981 * an spi_controller structure, prior to calling spi_register_controller().
David Brownell8ae12a02006-01-08 13:34:19 -08001982 *
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +02001983 * This must be called from context that can sleep.
David Brownell8ae12a02006-01-08 13:34:19 -08001984 *
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02001985 * The caller is responsible for assigning the bus number and initializing the
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001986 * controller's methods before calling spi_register_controller(); and (after
1987 * errors adding the device) calling spi_controller_put() to prevent a memory
1988 * leak.
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +02001989 *
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02001990 * Return: the SPI controller structure on success, else NULL.
David Brownell8ae12a02006-01-08 13:34:19 -08001991 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001992struct spi_controller *__spi_alloc_controller(struct device *dev,
1993 unsigned int size, bool slave)
David Brownell8ae12a02006-01-08 13:34:19 -08001994{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02001995 struct spi_controller *ctlr;
David Brownell8ae12a02006-01-08 13:34:19 -08001996
David Brownell0c868462006-01-08 13:34:25 -08001997 if (!dev)
1998 return NULL;
1999
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002000 ctlr = kzalloc(size + sizeof(*ctlr), GFP_KERNEL);
2001 if (!ctlr)
David Brownell8ae12a02006-01-08 13:34:19 -08002002 return NULL;
2003
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002004 device_initialize(&ctlr->dev);
2005 ctlr->bus_num = -1;
2006 ctlr->num_chipselect = 1;
2007 ctlr->slave = slave;
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02002008 if (IS_ENABLED(CONFIG_SPI_SLAVE) && slave)
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002009 ctlr->dev.class = &spi_slave_class;
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02002010 else
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002011 ctlr->dev.class = &spi_master_class;
2012 ctlr->dev.parent = dev;
2013 pm_suspend_ignore_children(&ctlr->dev, true);
2014 spi_controller_set_devdata(ctlr, &ctlr[1]);
David Brownell8ae12a02006-01-08 13:34:19 -08002015
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002016 return ctlr;
David Brownell8ae12a02006-01-08 13:34:19 -08002017}
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02002018EXPORT_SYMBOL_GPL(__spi_alloc_controller);
David Brownell8ae12a02006-01-08 13:34:19 -08002019
Jean-Christophe PLAGNIOL-VILLARD74317982012-11-15 20:19:57 +01002020#ifdef CONFIG_OF
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002021static int of_spi_register_master(struct spi_controller *ctlr)
Jean-Christophe PLAGNIOL-VILLARD74317982012-11-15 20:19:57 +01002022{
Grant Likelye80beb22013-02-12 17:48:37 +00002023 int nb, i, *cs;
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002024 struct device_node *np = ctlr->dev.of_node;
Jean-Christophe PLAGNIOL-VILLARD74317982012-11-15 20:19:57 +01002025
2026 if (!np)
2027 return 0;
2028
2029 nb = of_gpio_named_count(np, "cs-gpios");
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002030 ctlr->num_chipselect = max_t(int, nb, ctlr->num_chipselect);
Jean-Christophe PLAGNIOL-VILLARD74317982012-11-15 20:19:57 +01002031
Andreas Larsson8ec5d842013-02-13 14:23:24 +01002032 /* Return error only for an incorrectly formed cs-gpios property */
2033 if (nb == 0 || nb == -ENOENT)
Jean-Christophe PLAGNIOL-VILLARD74317982012-11-15 20:19:57 +01002034 return 0;
Andreas Larsson8ec5d842013-02-13 14:23:24 +01002035 else if (nb < 0)
2036 return nb;
Jean-Christophe PLAGNIOL-VILLARD74317982012-11-15 20:19:57 +01002037
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002038 cs = devm_kzalloc(&ctlr->dev, sizeof(int) * ctlr->num_chipselect,
Jean-Christophe PLAGNIOL-VILLARD74317982012-11-15 20:19:57 +01002039 GFP_KERNEL);
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002040 ctlr->cs_gpios = cs;
Jean-Christophe PLAGNIOL-VILLARD74317982012-11-15 20:19:57 +01002041
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002042 if (!ctlr->cs_gpios)
Jean-Christophe PLAGNIOL-VILLARD74317982012-11-15 20:19:57 +01002043 return -ENOMEM;
2044
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002045 for (i = 0; i < ctlr->num_chipselect; i++)
Andreas Larsson446411e2013-02-13 14:20:25 +01002046 cs[i] = -ENOENT;
Jean-Christophe PLAGNIOL-VILLARD74317982012-11-15 20:19:57 +01002047
2048 for (i = 0; i < nb; i++)
2049 cs[i] = of_get_named_gpio(np, "cs-gpios", i);
2050
2051 return 0;
2052}
2053#else
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002054static int of_spi_register_master(struct spi_controller *ctlr)
Jean-Christophe PLAGNIOL-VILLARD74317982012-11-15 20:19:57 +01002055{
2056 return 0;
2057}
2058#endif
2059
David Brownell8ae12a02006-01-08 13:34:19 -08002060/**
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002061 * spi_register_controller - register SPI master or slave controller
2062 * @ctlr: initialized master, originally from spi_alloc_master() or
2063 * spi_alloc_slave()
David Brownell33e34dc2007-05-08 00:32:21 -07002064 * Context: can sleep
David Brownell8ae12a02006-01-08 13:34:19 -08002065 *
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002066 * SPI controllers connect to their drivers using some non-SPI bus,
David Brownell8ae12a02006-01-08 13:34:19 -08002067 * such as the platform bus. The final stage of probe() in that code
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002068 * includes calling spi_register_controller() to hook up to this SPI bus glue.
David Brownell8ae12a02006-01-08 13:34:19 -08002069 *
2070 * SPI controllers use board specific (often SOC specific) bus numbers,
2071 * and board-specific addressing for SPI devices combines those numbers
2072 * with chip select numbers. Since SPI does not directly support dynamic
2073 * device identification, boards need configuration tables telling which
2074 * chip is at which address.
2075 *
2076 * This must be called from context that can sleep. It returns zero on
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002077 * success, else a negative error code (dropping the controller's refcount).
David Brownell0c868462006-01-08 13:34:25 -08002078 * After a successful return, the caller is responsible for calling
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002079 * spi_unregister_controller().
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +02002080 *
2081 * Return: zero on success, else a negative error code.
David Brownell8ae12a02006-01-08 13:34:19 -08002082 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002083int spi_register_controller(struct spi_controller *ctlr)
David Brownell8ae12a02006-01-08 13:34:19 -08002084{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002085 struct device *dev = ctlr->dev.parent;
Feng Tang2b9603a2010-08-02 15:52:15 +08002086 struct boardinfo *bi;
David Brownell8ae12a02006-01-08 13:34:19 -08002087 int status = -ENODEV;
Lucas Stach42bdd702017-10-16 12:27:58 +02002088 int id, first_dynamic;
David Brownell8ae12a02006-01-08 13:34:19 -08002089
David Brownell0c868462006-01-08 13:34:25 -08002090 if (!dev)
2091 return -ENODEV;
2092
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002093 if (!spi_controller_is_slave(ctlr)) {
2094 status = of_spi_register_master(ctlr);
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02002095 if (status)
2096 return status;
2097 }
Jean-Christophe PLAGNIOL-VILLARD74317982012-11-15 20:19:57 +01002098
David Brownell082c8cb2007-07-31 00:39:45 -07002099 /* even if it's just one always-selected device, there must
2100 * be at least one chipselect
2101 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002102 if (ctlr->num_chipselect == 0)
David Brownell082c8cb2007-07-31 00:39:45 -07002103 return -EINVAL;
Suniel Mahesh9b61e302017-08-03 10:05:57 +05302104 /* allocate dynamic bus number using Linux idr */
2105 if ((ctlr->bus_num < 0) && ctlr->dev.of_node) {
2106 id = of_alias_get_id(ctlr->dev.of_node, "spi");
2107 if (id >= 0) {
2108 ctlr->bus_num = id;
2109 mutex_lock(&board_lock);
2110 id = idr_alloc(&spi_master_idr, ctlr, ctlr->bus_num,
2111 ctlr->bus_num + 1, GFP_KERNEL);
2112 mutex_unlock(&board_lock);
2113 if (WARN(id < 0, "couldn't get idr"))
2114 return id == -ENOSPC ? -EBUSY : id;
2115 }
2116 }
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002117 if (ctlr->bus_num < 0) {
Lucas Stach42bdd702017-10-16 12:27:58 +02002118 first_dynamic = of_alias_get_highest_id("spi");
2119 if (first_dynamic < 0)
2120 first_dynamic = 0;
2121 else
2122 first_dynamic++;
2123
Suniel Mahesh9a9a0472017-08-17 18:18:22 +05302124 mutex_lock(&board_lock);
Lucas Stach42bdd702017-10-16 12:27:58 +02002125 id = idr_alloc(&spi_master_idr, ctlr, first_dynamic,
2126 0, GFP_KERNEL);
Suniel Mahesh9a9a0472017-08-17 18:18:22 +05302127 mutex_unlock(&board_lock);
2128 if (WARN(id < 0, "couldn't get idr"))
2129 return id;
2130 ctlr->bus_num = id;
David Brownell8ae12a02006-01-08 13:34:19 -08002131 }
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002132 INIT_LIST_HEAD(&ctlr->queue);
2133 spin_lock_init(&ctlr->queue_lock);
2134 spin_lock_init(&ctlr->bus_lock_spinlock);
2135 mutex_init(&ctlr->bus_lock_mutex);
2136 mutex_init(&ctlr->io_mutex);
2137 ctlr->bus_lock_flag = 0;
2138 init_completion(&ctlr->xfer_completion);
2139 if (!ctlr->max_dma_len)
2140 ctlr->max_dma_len = INT_MAX;
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07002141
David Brownell8ae12a02006-01-08 13:34:19 -08002142 /* register the device, then userspace will see it.
2143 * registration fails if the bus ID is in use.
2144 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002145 dev_set_name(&ctlr->dev, "spi%u", ctlr->bus_num);
2146 status = device_add(&ctlr->dev);
Suniel Mahesh9b61e302017-08-03 10:05:57 +05302147 if (status < 0) {
2148 /* free bus id */
2149 mutex_lock(&board_lock);
2150 idr_remove(&spi_master_idr, ctlr->bus_num);
2151 mutex_unlock(&board_lock);
David Brownell8ae12a02006-01-08 13:34:19 -08002152 goto done;
Suniel Mahesh9b61e302017-08-03 10:05:57 +05302153 }
2154 dev_dbg(dev, "registered %s %s\n",
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002155 spi_controller_is_slave(ctlr) ? "slave" : "master",
Suniel Mahesh9b61e302017-08-03 10:05:57 +05302156 dev_name(&ctlr->dev));
David Brownell8ae12a02006-01-08 13:34:19 -08002157
Linus Walleijffbbdd212012-02-22 10:05:38 +01002158 /* If we're using a queued driver, start the queue */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002159 if (ctlr->transfer)
2160 dev_info(dev, "controller is unqueued, this is deprecated\n");
Linus Walleijffbbdd212012-02-22 10:05:38 +01002161 else {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002162 status = spi_controller_initialize_queue(ctlr);
Linus Walleijffbbdd212012-02-22 10:05:38 +01002163 if (status) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002164 device_del(&ctlr->dev);
Suniel Mahesh9b61e302017-08-03 10:05:57 +05302165 /* free bus id */
2166 mutex_lock(&board_lock);
2167 idr_remove(&spi_master_idr, ctlr->bus_num);
2168 mutex_unlock(&board_lock);
Linus Walleijffbbdd212012-02-22 10:05:38 +01002169 goto done;
2170 }
2171 }
Martin Sperleca2ebc2015-06-22 13:00:36 +00002172 /* add statistics */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002173 spin_lock_init(&ctlr->statistics.lock);
Linus Walleijffbbdd212012-02-22 10:05:38 +01002174
Feng Tang2b9603a2010-08-02 15:52:15 +08002175 mutex_lock(&board_lock);
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002176 list_add_tail(&ctlr->list, &spi_controller_list);
Feng Tang2b9603a2010-08-02 15:52:15 +08002177 list_for_each_entry(bi, &board_list, list)
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002178 spi_match_controller_to_boardinfo(ctlr, &bi->board_info);
Feng Tang2b9603a2010-08-02 15:52:15 +08002179 mutex_unlock(&board_lock);
2180
Mika Westerberg64bee4d2012-11-30 12:37:53 +01002181 /* Register devices from the device tree and ACPI */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002182 of_register_spi_devices(ctlr);
2183 acpi_register_spi_devices(ctlr);
David Brownell8ae12a02006-01-08 13:34:19 -08002184done:
2185 return status;
2186}
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002187EXPORT_SYMBOL_GPL(spi_register_controller);
David Brownell8ae12a02006-01-08 13:34:19 -08002188
Mark Brown666d5b42013-08-31 18:50:52 +01002189static void devm_spi_unregister(struct device *dev, void *res)
2190{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002191 spi_unregister_controller(*(struct spi_controller **)res);
Mark Brown666d5b42013-08-31 18:50:52 +01002192}
2193
2194/**
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002195 * devm_spi_register_controller - register managed SPI master or slave
2196 * controller
2197 * @dev: device managing SPI controller
2198 * @ctlr: initialized controller, originally from spi_alloc_master() or
2199 * spi_alloc_slave()
Mark Brown666d5b42013-08-31 18:50:52 +01002200 * Context: can sleep
2201 *
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002202 * Register a SPI device as with spi_register_controller() which will
Mark Brown666d5b42013-08-31 18:50:52 +01002203 * automatically be unregister
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +02002204 *
2205 * Return: zero on success, else a negative error code.
Mark Brown666d5b42013-08-31 18:50:52 +01002206 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002207int devm_spi_register_controller(struct device *dev,
2208 struct spi_controller *ctlr)
Mark Brown666d5b42013-08-31 18:50:52 +01002209{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002210 struct spi_controller **ptr;
Mark Brown666d5b42013-08-31 18:50:52 +01002211 int ret;
2212
2213 ptr = devres_alloc(devm_spi_unregister, sizeof(*ptr), GFP_KERNEL);
2214 if (!ptr)
2215 return -ENOMEM;
2216
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002217 ret = spi_register_controller(ctlr);
Stephen Warren4b928942013-11-21 16:11:15 -07002218 if (!ret) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002219 *ptr = ctlr;
Mark Brown666d5b42013-08-31 18:50:52 +01002220 devres_add(dev, ptr);
2221 } else {
2222 devres_free(ptr);
2223 }
2224
2225 return ret;
2226}
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002227EXPORT_SYMBOL_GPL(devm_spi_register_controller);
Mark Brown666d5b42013-08-31 18:50:52 +01002228
David Lamparter34860082010-08-30 23:54:17 +02002229static int __unregister(struct device *dev, void *null)
David Brownell8ae12a02006-01-08 13:34:19 -08002230{
David Lamparter34860082010-08-30 23:54:17 +02002231 spi_unregister_device(to_spi_device(dev));
David Brownell8ae12a02006-01-08 13:34:19 -08002232 return 0;
2233}
2234
2235/**
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002236 * spi_unregister_controller - unregister SPI master or slave controller
2237 * @ctlr: the controller being unregistered
David Brownell33e34dc2007-05-08 00:32:21 -07002238 * Context: can sleep
David Brownell8ae12a02006-01-08 13:34:19 -08002239 *
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002240 * This call is used only by SPI controller drivers, which are the
David Brownell8ae12a02006-01-08 13:34:19 -08002241 * only ones directly touching chip registers.
2242 *
2243 * This must be called from context that can sleep.
2244 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002245void spi_unregister_controller(struct spi_controller *ctlr)
David Brownell8ae12a02006-01-08 13:34:19 -08002246{
Suniel Mahesh9b61e302017-08-03 10:05:57 +05302247 struct spi_controller *found;
Johan Hovold67f7b272017-10-30 11:35:25 +01002248 int id = ctlr->bus_num;
Jeff Garzik89fc9a12006-12-06 20:35:35 -08002249 int dummy;
2250
Suniel Mahesh9b61e302017-08-03 10:05:57 +05302251 /* First make sure that this controller was ever added */
2252 mutex_lock(&board_lock);
Johan Hovold67f7b272017-10-30 11:35:25 +01002253 found = idr_find(&spi_master_idr, id);
Suniel Mahesh9b61e302017-08-03 10:05:57 +05302254 mutex_unlock(&board_lock);
Suniel Mahesh9a9a0472017-08-17 18:18:22 +05302255 if (found != ctlr) {
2256 dev_dbg(&ctlr->dev,
Suniel Mahesh9b61e302017-08-03 10:05:57 +05302257 "attempting to delete unregistered controller [%s]\n",
2258 dev_name(&ctlr->dev));
Suniel Mahesh9a9a0472017-08-17 18:18:22 +05302259 return;
2260 }
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002261 if (ctlr->queued) {
2262 if (spi_destroy_queue(ctlr))
2263 dev_err(&ctlr->dev, "queue remove failed\n");
Linus Walleijffbbdd212012-02-22 10:05:38 +01002264 }
Feng Tang2b9603a2010-08-02 15:52:15 +08002265 mutex_lock(&board_lock);
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002266 list_del(&ctlr->list);
Feng Tang2b9603a2010-08-02 15:52:15 +08002267 mutex_unlock(&board_lock);
2268
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002269 dummy = device_for_each_child(&ctlr->dev, NULL, __unregister);
2270 device_unregister(&ctlr->dev);
Suniel Mahesh9b61e302017-08-03 10:05:57 +05302271 /* free bus id */
2272 mutex_lock(&board_lock);
Johan Hovold67f7b272017-10-30 11:35:25 +01002273 idr_remove(&spi_master_idr, id);
Suniel Mahesh9b61e302017-08-03 10:05:57 +05302274 mutex_unlock(&board_lock);
David Brownell8ae12a02006-01-08 13:34:19 -08002275}
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002276EXPORT_SYMBOL_GPL(spi_unregister_controller);
David Brownell8ae12a02006-01-08 13:34:19 -08002277
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002278int spi_controller_suspend(struct spi_controller *ctlr)
Linus Walleijffbbdd212012-02-22 10:05:38 +01002279{
2280 int ret;
2281
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002282 /* Basically no-ops for non-queued controllers */
2283 if (!ctlr->queued)
Linus Walleijffbbdd212012-02-22 10:05:38 +01002284 return 0;
2285
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002286 ret = spi_stop_queue(ctlr);
Linus Walleijffbbdd212012-02-22 10:05:38 +01002287 if (ret)
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002288 dev_err(&ctlr->dev, "queue stop failed\n");
Linus Walleijffbbdd212012-02-22 10:05:38 +01002289
2290 return ret;
2291}
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002292EXPORT_SYMBOL_GPL(spi_controller_suspend);
Linus Walleijffbbdd212012-02-22 10:05:38 +01002293
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002294int spi_controller_resume(struct spi_controller *ctlr)
Linus Walleijffbbdd212012-02-22 10:05:38 +01002295{
2296 int ret;
2297
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002298 if (!ctlr->queued)
Linus Walleijffbbdd212012-02-22 10:05:38 +01002299 return 0;
2300
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002301 ret = spi_start_queue(ctlr);
Linus Walleijffbbdd212012-02-22 10:05:38 +01002302 if (ret)
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002303 dev_err(&ctlr->dev, "queue restart failed\n");
Linus Walleijffbbdd212012-02-22 10:05:38 +01002304
2305 return ret;
2306}
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002307EXPORT_SYMBOL_GPL(spi_controller_resume);
Linus Walleijffbbdd212012-02-22 10:05:38 +01002308
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002309static int __spi_controller_match(struct device *dev, const void *data)
Dave Young5ed2c832008-01-22 15:14:18 +08002310{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002311 struct spi_controller *ctlr;
Michał Mirosław9f3b7952013-02-01 20:40:17 +01002312 const u16 *bus_num = data;
Dave Young5ed2c832008-01-22 15:14:18 +08002313
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002314 ctlr = container_of(dev, struct spi_controller, dev);
2315 return ctlr->bus_num == *bus_num;
Dave Young5ed2c832008-01-22 15:14:18 +08002316}
2317
David Brownell8ae12a02006-01-08 13:34:19 -08002318/**
2319 * spi_busnum_to_master - look up master associated with bus_num
2320 * @bus_num: the master's bus number
David Brownell33e34dc2007-05-08 00:32:21 -07002321 * Context: can sleep
David Brownell8ae12a02006-01-08 13:34:19 -08002322 *
2323 * This call may be used with devices that are registered after
2324 * arch init time. It returns a refcounted pointer to the relevant
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002325 * spi_controller (which the caller must release), or NULL if there is
David Brownell8ae12a02006-01-08 13:34:19 -08002326 * no such master registered.
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +02002327 *
2328 * Return: the SPI master structure on success, else NULL.
David Brownell8ae12a02006-01-08 13:34:19 -08002329 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002330struct spi_controller *spi_busnum_to_master(u16 bus_num)
David Brownell8ae12a02006-01-08 13:34:19 -08002331{
Tony Jones49dce682007-10-16 01:27:48 -07002332 struct device *dev;
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002333 struct spi_controller *ctlr = NULL;
David Brownell8ae12a02006-01-08 13:34:19 -08002334
Greg Kroah-Hartman695794a2008-05-22 17:21:08 -04002335 dev = class_find_device(&spi_master_class, NULL, &bus_num,
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002336 __spi_controller_match);
Dave Young5ed2c832008-01-22 15:14:18 +08002337 if (dev)
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002338 ctlr = container_of(dev, struct spi_controller, dev);
Dave Young5ed2c832008-01-22 15:14:18 +08002339 /* reference got in class_find_device */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002340 return ctlr;
David Brownell8ae12a02006-01-08 13:34:19 -08002341}
2342EXPORT_SYMBOL_GPL(spi_busnum_to_master);
2343
Martin Sperld780c372015-12-14 15:20:18 +00002344/*-------------------------------------------------------------------------*/
2345
2346/* Core methods for SPI resource management */
2347
2348/**
2349 * spi_res_alloc - allocate a spi resource that is life-cycle managed
2350 * during the processing of a spi_message while using
2351 * spi_transfer_one
2352 * @spi: the spi device for which we allocate memory
2353 * @release: the release code to execute for this resource
2354 * @size: size to alloc and return
2355 * @gfp: GFP allocation flags
2356 *
2357 * Return: the pointer to the allocated data
2358 *
2359 * This may get enhanced in the future to allocate from a memory pool
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002360 * of the @spi_device or @spi_controller to avoid repeated allocations.
Martin Sperld780c372015-12-14 15:20:18 +00002361 */
2362void *spi_res_alloc(struct spi_device *spi,
2363 spi_res_release_t release,
2364 size_t size, gfp_t gfp)
2365{
2366 struct spi_res *sres;
2367
2368 sres = kzalloc(sizeof(*sres) + size, gfp);
2369 if (!sres)
2370 return NULL;
2371
2372 INIT_LIST_HEAD(&sres->entry);
2373 sres->release = release;
2374
2375 return sres->data;
2376}
2377EXPORT_SYMBOL_GPL(spi_res_alloc);
2378
2379/**
2380 * spi_res_free - free an spi resource
2381 * @res: pointer to the custom data of a resource
2382 *
2383 */
2384void spi_res_free(void *res)
2385{
2386 struct spi_res *sres = container_of(res, struct spi_res, data);
2387
2388 if (!res)
2389 return;
2390
2391 WARN_ON(!list_empty(&sres->entry));
2392 kfree(sres);
2393}
2394EXPORT_SYMBOL_GPL(spi_res_free);
2395
2396/**
2397 * spi_res_add - add a spi_res to the spi_message
2398 * @message: the spi message
2399 * @res: the spi_resource
2400 */
2401void spi_res_add(struct spi_message *message, void *res)
2402{
2403 struct spi_res *sres = container_of(res, struct spi_res, data);
2404
2405 WARN_ON(!list_empty(&sres->entry));
2406 list_add_tail(&sres->entry, &message->resources);
2407}
2408EXPORT_SYMBOL_GPL(spi_res_add);
2409
2410/**
2411 * spi_res_release - release all spi resources for this message
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002412 * @ctlr: the @spi_controller
Martin Sperld780c372015-12-14 15:20:18 +00002413 * @message: the @spi_message
2414 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002415void spi_res_release(struct spi_controller *ctlr, struct spi_message *message)
Martin Sperld780c372015-12-14 15:20:18 +00002416{
2417 struct spi_res *res;
2418
2419 while (!list_empty(&message->resources)) {
2420 res = list_last_entry(&message->resources,
2421 struct spi_res, entry);
2422
2423 if (res->release)
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002424 res->release(ctlr, message, res->data);
Martin Sperld780c372015-12-14 15:20:18 +00002425
2426 list_del(&res->entry);
2427
2428 kfree(res);
2429 }
2430}
2431EXPORT_SYMBOL_GPL(spi_res_release);
David Brownell8ae12a02006-01-08 13:34:19 -08002432
2433/*-------------------------------------------------------------------------*/
2434
Martin Sperl523baf5a2015-12-14 15:20:19 +00002435/* Core methods for spi_message alterations */
2436
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002437static void __spi_replace_transfers_release(struct spi_controller *ctlr,
Martin Sperl523baf5a2015-12-14 15:20:19 +00002438 struct spi_message *msg,
2439 void *res)
2440{
2441 struct spi_replaced_transfers *rxfer = res;
2442 size_t i;
2443
2444 /* call extra callback if requested */
2445 if (rxfer->release)
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002446 rxfer->release(ctlr, msg, res);
Martin Sperl523baf5a2015-12-14 15:20:19 +00002447
2448 /* insert replaced transfers back into the message */
2449 list_splice(&rxfer->replaced_transfers, rxfer->replaced_after);
2450
2451 /* remove the formerly inserted entries */
2452 for (i = 0; i < rxfer->inserted; i++)
2453 list_del(&rxfer->inserted_transfers[i].transfer_list);
2454}
2455
2456/**
2457 * spi_replace_transfers - replace transfers with several transfers
2458 * and register change with spi_message.resources
2459 * @msg: the spi_message we work upon
2460 * @xfer_first: the first spi_transfer we want to replace
2461 * @remove: number of transfers to remove
2462 * @insert: the number of transfers we want to insert instead
2463 * @release: extra release code necessary in some circumstances
2464 * @extradatasize: extra data to allocate (with alignment guarantees
2465 * of struct @spi_transfer)
Martin Sperl05885392016-02-18 15:53:11 +00002466 * @gfp: gfp flags
Martin Sperl523baf5a2015-12-14 15:20:19 +00002467 *
2468 * Returns: pointer to @spi_replaced_transfers,
2469 * PTR_ERR(...) in case of errors.
2470 */
2471struct spi_replaced_transfers *spi_replace_transfers(
2472 struct spi_message *msg,
2473 struct spi_transfer *xfer_first,
2474 size_t remove,
2475 size_t insert,
2476 spi_replaced_release_t release,
2477 size_t extradatasize,
2478 gfp_t gfp)
2479{
2480 struct spi_replaced_transfers *rxfer;
2481 struct spi_transfer *xfer;
2482 size_t i;
2483
2484 /* allocate the structure using spi_res */
2485 rxfer = spi_res_alloc(msg->spi, __spi_replace_transfers_release,
2486 insert * sizeof(struct spi_transfer)
2487 + sizeof(struct spi_replaced_transfers)
2488 + extradatasize,
2489 gfp);
2490 if (!rxfer)
2491 return ERR_PTR(-ENOMEM);
2492
2493 /* the release code to invoke before running the generic release */
2494 rxfer->release = release;
2495
2496 /* assign extradata */
2497 if (extradatasize)
2498 rxfer->extradata =
2499 &rxfer->inserted_transfers[insert];
2500
2501 /* init the replaced_transfers list */
2502 INIT_LIST_HEAD(&rxfer->replaced_transfers);
2503
2504 /* assign the list_entry after which we should reinsert
2505 * the @replaced_transfers - it may be spi_message.messages!
2506 */
2507 rxfer->replaced_after = xfer_first->transfer_list.prev;
2508
2509 /* remove the requested number of transfers */
2510 for (i = 0; i < remove; i++) {
2511 /* if the entry after replaced_after it is msg->transfers
2512 * then we have been requested to remove more transfers
2513 * than are in the list
2514 */
2515 if (rxfer->replaced_after->next == &msg->transfers) {
2516 dev_err(&msg->spi->dev,
2517 "requested to remove more spi_transfers than are available\n");
2518 /* insert replaced transfers back into the message */
2519 list_splice(&rxfer->replaced_transfers,
2520 rxfer->replaced_after);
2521
2522 /* free the spi_replace_transfer structure */
2523 spi_res_free(rxfer);
2524
2525 /* and return with an error */
2526 return ERR_PTR(-EINVAL);
2527 }
2528
2529 /* remove the entry after replaced_after from list of
2530 * transfers and add it to list of replaced_transfers
2531 */
2532 list_move_tail(rxfer->replaced_after->next,
2533 &rxfer->replaced_transfers);
2534 }
2535
2536 /* create copy of the given xfer with identical settings
2537 * based on the first transfer to get removed
2538 */
2539 for (i = 0; i < insert; i++) {
2540 /* we need to run in reverse order */
2541 xfer = &rxfer->inserted_transfers[insert - 1 - i];
2542
2543 /* copy all spi_transfer data */
2544 memcpy(xfer, xfer_first, sizeof(*xfer));
2545
2546 /* add to list */
2547 list_add(&xfer->transfer_list, rxfer->replaced_after);
2548
2549 /* clear cs_change and delay_usecs for all but the last */
2550 if (i) {
2551 xfer->cs_change = false;
2552 xfer->delay_usecs = 0;
2553 }
2554 }
2555
2556 /* set up inserted */
2557 rxfer->inserted = insert;
2558
2559 /* and register it with spi_res/spi_message */
2560 spi_res_add(msg, rxfer);
2561
2562 return rxfer;
2563}
2564EXPORT_SYMBOL_GPL(spi_replace_transfers);
2565
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002566static int __spi_split_transfer_maxsize(struct spi_controller *ctlr,
Fabio Estevam08933412016-02-14 13:33:50 -02002567 struct spi_message *msg,
2568 struct spi_transfer **xferp,
2569 size_t maxsize,
2570 gfp_t gfp)
Martin Sperld9f12122015-12-14 15:20:20 +00002571{
2572 struct spi_transfer *xfer = *xferp, *xfers;
2573 struct spi_replaced_transfers *srt;
2574 size_t offset;
2575 size_t count, i;
2576
2577 /* warn once about this fact that we are splitting a transfer */
2578 dev_warn_once(&msg->spi->dev,
Fabio Estevam7d62f512016-02-17 15:42:27 -02002579 "spi_transfer of length %i exceed max length of %zu - needed to split transfers\n",
Martin Sperld9f12122015-12-14 15:20:20 +00002580 xfer->len, maxsize);
2581
2582 /* calculate how many we have to replace */
2583 count = DIV_ROUND_UP(xfer->len, maxsize);
2584
2585 /* create replacement */
2586 srt = spi_replace_transfers(msg, xfer, 1, count, NULL, 0, gfp);
Dan Carpenter657d32e2016-02-12 09:38:33 +03002587 if (IS_ERR(srt))
2588 return PTR_ERR(srt);
Martin Sperld9f12122015-12-14 15:20:20 +00002589 xfers = srt->inserted_transfers;
2590
2591 /* now handle each of those newly inserted spi_transfers
2592 * note that the replacements spi_transfers all are preset
2593 * to the same values as *xferp, so tx_buf, rx_buf and len
2594 * are all identical (as well as most others)
2595 * so we just have to fix up len and the pointers.
2596 *
2597 * this also includes support for the depreciated
2598 * spi_message.is_dma_mapped interface
2599 */
2600
2601 /* the first transfer just needs the length modified, so we
2602 * run it outside the loop
2603 */
Fabio Estevamc8dab772016-02-17 15:42:28 -02002604 xfers[0].len = min_t(size_t, maxsize, xfer[0].len);
Martin Sperld9f12122015-12-14 15:20:20 +00002605
2606 /* all the others need rx_buf/tx_buf also set */
2607 for (i = 1, offset = maxsize; i < count; offset += maxsize, i++) {
2608 /* update rx_buf, tx_buf and dma */
2609 if (xfers[i].rx_buf)
2610 xfers[i].rx_buf += offset;
2611 if (xfers[i].rx_dma)
2612 xfers[i].rx_dma += offset;
2613 if (xfers[i].tx_buf)
2614 xfers[i].tx_buf += offset;
2615 if (xfers[i].tx_dma)
2616 xfers[i].tx_dma += offset;
2617
2618 /* update length */
2619 xfers[i].len = min(maxsize, xfers[i].len - offset);
2620 }
2621
2622 /* we set up xferp to the last entry we have inserted,
2623 * so that we skip those already split transfers
2624 */
2625 *xferp = &xfers[count - 1];
2626
2627 /* increment statistics counters */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002628 SPI_STATISTICS_INCREMENT_FIELD(&ctlr->statistics,
Martin Sperld9f12122015-12-14 15:20:20 +00002629 transfers_split_maxsize);
2630 SPI_STATISTICS_INCREMENT_FIELD(&msg->spi->statistics,
2631 transfers_split_maxsize);
2632
2633 return 0;
2634}
2635
2636/**
2637 * spi_split_tranfers_maxsize - split spi transfers into multiple transfers
2638 * when an individual transfer exceeds a
2639 * certain size
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002640 * @ctlr: the @spi_controller for this transfer
Masanari Iida3700ce92016-02-22 20:33:44 +09002641 * @msg: the @spi_message to transform
2642 * @maxsize: the maximum when to apply this
Javier Martinez Canillas10f11a22016-03-10 15:01:14 -03002643 * @gfp: GFP allocation flags
Martin Sperld9f12122015-12-14 15:20:20 +00002644 *
2645 * Return: status of transformation
2646 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002647int spi_split_transfers_maxsize(struct spi_controller *ctlr,
Martin Sperld9f12122015-12-14 15:20:20 +00002648 struct spi_message *msg,
2649 size_t maxsize,
2650 gfp_t gfp)
2651{
2652 struct spi_transfer *xfer;
2653 int ret;
2654
2655 /* iterate over the transfer_list,
2656 * but note that xfer is advanced to the last transfer inserted
2657 * to avoid checking sizes again unnecessarily (also xfer does
2658 * potentiall belong to a different list by the time the
2659 * replacement has happened
2660 */
2661 list_for_each_entry(xfer, &msg->transfers, transfer_list) {
2662 if (xfer->len > maxsize) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002663 ret = __spi_split_transfer_maxsize(ctlr, msg, &xfer,
2664 maxsize, gfp);
Martin Sperld9f12122015-12-14 15:20:20 +00002665 if (ret)
2666 return ret;
2667 }
2668 }
2669
2670 return 0;
2671}
2672EXPORT_SYMBOL_GPL(spi_split_transfers_maxsize);
David Brownell8ae12a02006-01-08 13:34:19 -08002673
2674/*-------------------------------------------------------------------------*/
2675
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002676/* Core methods for SPI controller protocol drivers. Some of the
David Brownell7d077192009-06-17 16:26:03 -07002677 * other core methods are currently defined as inline functions.
2678 */
2679
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002680static int __spi_validate_bits_per_word(struct spi_controller *ctlr,
2681 u8 bits_per_word)
Stefan Brüns63ab6452015-08-23 16:06:30 +02002682{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002683 if (ctlr->bits_per_word_mask) {
Stefan Brüns63ab6452015-08-23 16:06:30 +02002684 /* Only 32 bits fit in the mask */
2685 if (bits_per_word > 32)
2686 return -EINVAL;
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002687 if (!(ctlr->bits_per_word_mask & SPI_BPW_MASK(bits_per_word)))
Stefan Brüns63ab6452015-08-23 16:06:30 +02002688 return -EINVAL;
2689 }
2690
2691 return 0;
2692}
2693
David Brownell7d077192009-06-17 16:26:03 -07002694/**
2695 * spi_setup - setup SPI mode and clock rate
2696 * @spi: the device whose settings are being modified
2697 * Context: can sleep, and no requests are queued to the device
2698 *
2699 * SPI protocol drivers may need to update the transfer mode if the
2700 * device doesn't work with its default. They may likewise need
2701 * to update clock rates or word sizes from initial values. This function
2702 * changes those settings, and must be called from a context that can sleep.
2703 * Except for SPI_CS_HIGH, which takes effect immediately, the changes take
2704 * effect the next time the device is selected and data is transferred to
2705 * or from it. When this function returns, the spi device is deselected.
2706 *
2707 * Note that this call will fail if the protocol driver specifies an option
2708 * that the underlying controller or its driver does not support. For
2709 * example, not all hardware supports wire transfers using nine bit words,
2710 * LSB-first wire encoding, or active-high chipselects.
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +02002711 *
2712 * Return: zero on success, else a negative error code.
David Brownell7d077192009-06-17 16:26:03 -07002713 */
2714int spi_setup(struct spi_device *spi)
2715{
Geert Uytterhoeven83596fb2014-04-14 19:39:53 +02002716 unsigned bad_bits, ugly_bits;
Andy Shevchenko5ab8d262015-10-14 22:43:07 +03002717 int status;
David Brownell7d077192009-06-17 16:26:03 -07002718
wangyuhangf477b7f2013-08-11 18:15:17 +08002719 /* check mode to prevent that DUAL and QUAD set at the same time
2720 */
2721 if (((spi->mode & SPI_TX_DUAL) && (spi->mode & SPI_TX_QUAD)) ||
2722 ((spi->mode & SPI_RX_DUAL) && (spi->mode & SPI_RX_QUAD))) {
2723 dev_err(&spi->dev,
2724 "setup: can not select dual and quad at the same time\n");
2725 return -EINVAL;
2726 }
2727 /* if it is SPI_3WIRE mode, DUAL and QUAD should be forbidden
2728 */
2729 if ((spi->mode & SPI_3WIRE) && (spi->mode &
2730 (SPI_TX_DUAL | SPI_TX_QUAD | SPI_RX_DUAL | SPI_RX_QUAD)))
2731 return -EINVAL;
David Brownelle7db06b2009-06-17 16:26:04 -07002732 /* help drivers fail *cleanly* when they need options
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002733 * that aren't supported with their current controller
David Brownelle7db06b2009-06-17 16:26:04 -07002734 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002735 bad_bits = spi->mode & ~spi->controller->mode_bits;
Geert Uytterhoeven83596fb2014-04-14 19:39:53 +02002736 ugly_bits = bad_bits &
2737 (SPI_TX_DUAL | SPI_TX_QUAD | SPI_RX_DUAL | SPI_RX_QUAD);
2738 if (ugly_bits) {
2739 dev_warn(&spi->dev,
2740 "setup: ignoring unsupported mode bits %x\n",
2741 ugly_bits);
2742 spi->mode &= ~ugly_bits;
2743 bad_bits &= ~ugly_bits;
2744 }
David Brownelle7db06b2009-06-17 16:26:04 -07002745 if (bad_bits) {
Linus Walleijeb288a12010-10-21 21:06:44 +02002746 dev_err(&spi->dev, "setup: unsupported mode bits %x\n",
David Brownelle7db06b2009-06-17 16:26:04 -07002747 bad_bits);
2748 return -EINVAL;
2749 }
2750
David Brownell7d077192009-06-17 16:26:03 -07002751 if (!spi->bits_per_word)
2752 spi->bits_per_word = 8;
2753
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002754 status = __spi_validate_bits_per_word(spi->controller,
2755 spi->bits_per_word);
Andy Shevchenko5ab8d262015-10-14 22:43:07 +03002756 if (status)
2757 return status;
Stefan Brüns63ab6452015-08-23 16:06:30 +02002758
Axel Lin052eb2d2014-02-10 00:08:05 +08002759 if (!spi->max_speed_hz)
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002760 spi->max_speed_hz = spi->controller->max_speed_hz;
Axel Lin052eb2d2014-02-10 00:08:05 +08002761
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002762 if (spi->controller->setup)
2763 status = spi->controller->setup(spi);
David Brownell7d077192009-06-17 16:26:03 -07002764
Franklin S Cooper Jrabeedb02015-10-16 10:29:03 -05002765 spi_set_cs(spi, false);
2766
Jingoo Han5fe5f052013-10-14 10:31:51 +09002767 dev_dbg(&spi->dev, "setup mode %d, %s%s%s%s%u bits/w, %u Hz max --> %d\n",
David Brownell7d077192009-06-17 16:26:03 -07002768 (int) (spi->mode & (SPI_CPOL | SPI_CPHA)),
2769 (spi->mode & SPI_CS_HIGH) ? "cs_high, " : "",
2770 (spi->mode & SPI_LSB_FIRST) ? "lsb, " : "",
2771 (spi->mode & SPI_3WIRE) ? "3wire, " : "",
2772 (spi->mode & SPI_LOOP) ? "loopback, " : "",
2773 spi->bits_per_word, spi->max_speed_hz,
2774 status);
2775
2776 return status;
2777}
2778EXPORT_SYMBOL_GPL(spi_setup);
2779
Mark Brown90808732013-11-13 23:44:15 +00002780static int __spi_validate(struct spi_device *spi, struct spi_message *message)
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07002781{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002782 struct spi_controller *ctlr = spi->controller;
Laxman Dewangane6811d12012-11-09 14:36:45 +05302783 struct spi_transfer *xfer;
Atsushi Nemoto6ea31292014-02-28 23:03:16 +09002784 int w_size;
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07002785
Mark Brown24a00132013-07-10 15:05:40 +01002786 if (list_empty(&message->transfers))
2787 return -EINVAL;
Mark Brown24a00132013-07-10 15:05:40 +01002788
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07002789 /* Half-duplex links include original MicroWire, and ones with
2790 * only one data pin like SPI_3WIRE (switches direction) or where
2791 * either MOSI or MISO is missing. They can also be caused by
2792 * software limitations.
2793 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002794 if ((ctlr->flags & SPI_CONTROLLER_HALF_DUPLEX) ||
2795 (spi->mode & SPI_3WIRE)) {
2796 unsigned flags = ctlr->flags;
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07002797
2798 list_for_each_entry(xfer, &message->transfers, transfer_list) {
2799 if (xfer->rx_buf && xfer->tx_buf)
2800 return -EINVAL;
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002801 if ((flags & SPI_CONTROLLER_NO_TX) && xfer->tx_buf)
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07002802 return -EINVAL;
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002803 if ((flags & SPI_CONTROLLER_NO_RX) && xfer->rx_buf)
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07002804 return -EINVAL;
2805 }
2806 }
2807
Laxman Dewangane6811d12012-11-09 14:36:45 +05302808 /**
Laxman Dewangan059b8ff2013-01-05 00:17:14 +05302809 * Set transfer bits_per_word and max speed as spi device default if
2810 * it is not set for this transfer.
wangyuhangf477b7f2013-08-11 18:15:17 +08002811 * Set transfer tx_nbits and rx_nbits as single transfer default
2812 * (SPI_NBITS_SINGLE) if it is not set for this transfer.
Laxman Dewangane6811d12012-11-09 14:36:45 +05302813 */
Martin Sperl77e80582015-11-27 12:31:09 +00002814 message->frame_length = 0;
Laxman Dewangane6811d12012-11-09 14:36:45 +05302815 list_for_each_entry(xfer, &message->transfers, transfer_list) {
Sourav Poddar078726c2013-07-18 15:31:25 +05302816 message->frame_length += xfer->len;
Laxman Dewangane6811d12012-11-09 14:36:45 +05302817 if (!xfer->bits_per_word)
2818 xfer->bits_per_word = spi->bits_per_word;
Axel Lina6f87fa2014-03-17 10:08:12 +08002819
2820 if (!xfer->speed_hz)
Laxman Dewangan059b8ff2013-01-05 00:17:14 +05302821 xfer->speed_hz = spi->max_speed_hz;
Mark Brown7dc9fbc2015-08-20 11:52:18 -07002822 if (!xfer->speed_hz)
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002823 xfer->speed_hz = ctlr->max_speed_hz;
Axel Lina6f87fa2014-03-17 10:08:12 +08002824
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002825 if (ctlr->max_speed_hz && xfer->speed_hz > ctlr->max_speed_hz)
2826 xfer->speed_hz = ctlr->max_speed_hz;
Gabor Juhos56ede942013-08-14 10:25:28 +02002827
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002828 if (__spi_validate_bits_per_word(ctlr, xfer->bits_per_word))
Stefan Brüns63ab6452015-08-23 16:06:30 +02002829 return -EINVAL;
Mark Browna2fd4f92013-07-10 14:57:26 +01002830
Ivan T. Ivanov4d94bd22014-02-20 12:02:08 +02002831 /*
2832 * SPI transfer length should be multiple of SPI word size
2833 * where SPI word size should be power-of-two multiple
2834 */
2835 if (xfer->bits_per_word <= 8)
2836 w_size = 1;
2837 else if (xfer->bits_per_word <= 16)
2838 w_size = 2;
2839 else
2840 w_size = 4;
2841
Ivan T. Ivanov4d94bd22014-02-20 12:02:08 +02002842 /* No partial transfers accepted */
Atsushi Nemoto6ea31292014-02-28 23:03:16 +09002843 if (xfer->len % w_size)
Ivan T. Ivanov4d94bd22014-02-20 12:02:08 +02002844 return -EINVAL;
2845
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002846 if (xfer->speed_hz && ctlr->min_speed_hz &&
2847 xfer->speed_hz < ctlr->min_speed_hz)
Mark Browna2fd4f92013-07-10 14:57:26 +01002848 return -EINVAL;
wangyuhangf477b7f2013-08-11 18:15:17 +08002849
2850 if (xfer->tx_buf && !xfer->tx_nbits)
2851 xfer->tx_nbits = SPI_NBITS_SINGLE;
2852 if (xfer->rx_buf && !xfer->rx_nbits)
2853 xfer->rx_nbits = SPI_NBITS_SINGLE;
2854 /* check transfer tx/rx_nbits:
Geert Uytterhoeven1afd9982014-01-12 14:00:29 +01002855 * 1. check the value matches one of single, dual and quad
2856 * 2. check tx/rx_nbits match the mode in spi_device
wangyuhangf477b7f2013-08-11 18:15:17 +08002857 */
Sourav Poddardb90a442013-08-22 21:20:48 +05302858 if (xfer->tx_buf) {
2859 if (xfer->tx_nbits != SPI_NBITS_SINGLE &&
2860 xfer->tx_nbits != SPI_NBITS_DUAL &&
2861 xfer->tx_nbits != SPI_NBITS_QUAD)
2862 return -EINVAL;
2863 if ((xfer->tx_nbits == SPI_NBITS_DUAL) &&
2864 !(spi->mode & (SPI_TX_DUAL | SPI_TX_QUAD)))
2865 return -EINVAL;
2866 if ((xfer->tx_nbits == SPI_NBITS_QUAD) &&
2867 !(spi->mode & SPI_TX_QUAD))
2868 return -EINVAL;
Sourav Poddardb90a442013-08-22 21:20:48 +05302869 }
wangyuhangf477b7f2013-08-11 18:15:17 +08002870 /* check transfer rx_nbits */
Sourav Poddardb90a442013-08-22 21:20:48 +05302871 if (xfer->rx_buf) {
2872 if (xfer->rx_nbits != SPI_NBITS_SINGLE &&
2873 xfer->rx_nbits != SPI_NBITS_DUAL &&
2874 xfer->rx_nbits != SPI_NBITS_QUAD)
2875 return -EINVAL;
2876 if ((xfer->rx_nbits == SPI_NBITS_DUAL) &&
2877 !(spi->mode & (SPI_RX_DUAL | SPI_RX_QUAD)))
2878 return -EINVAL;
2879 if ((xfer->rx_nbits == SPI_NBITS_QUAD) &&
2880 !(spi->mode & SPI_RX_QUAD))
2881 return -EINVAL;
Sourav Poddardb90a442013-08-22 21:20:48 +05302882 }
Laxman Dewangane6811d12012-11-09 14:36:45 +05302883 }
2884
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07002885 message->status = -EINPROGRESS;
Mark Brown90808732013-11-13 23:44:15 +00002886
2887 return 0;
2888}
2889
2890static int __spi_async(struct spi_device *spi, struct spi_message *message)
2891{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002892 struct spi_controller *ctlr = spi->controller;
Mark Brown90808732013-11-13 23:44:15 +00002893
2894 message->spi = spi;
2895
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002896 SPI_STATISTICS_INCREMENT_FIELD(&ctlr->statistics, spi_async);
Martin Sperleca2ebc2015-06-22 13:00:36 +00002897 SPI_STATISTICS_INCREMENT_FIELD(&spi->statistics, spi_async);
2898
Mark Brown90808732013-11-13 23:44:15 +00002899 trace_spi_message_submit(message);
2900
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002901 return ctlr->transfer(spi, message);
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07002902}
2903
David Brownell568d0692009-09-22 16:46:18 -07002904/**
2905 * spi_async - asynchronous SPI transfer
2906 * @spi: device with which data will be exchanged
2907 * @message: describes the data transfers, including completion callback
2908 * Context: any (irqs may be blocked, etc)
2909 *
2910 * This call may be used in_irq and other contexts which can't sleep,
2911 * as well as from task contexts which can sleep.
2912 *
2913 * The completion callback is invoked in a context which can't sleep.
2914 * Before that invocation, the value of message->status is undefined.
2915 * When the callback is issued, message->status holds either zero (to
2916 * indicate complete success) or a negative error code. After that
2917 * callback returns, the driver which issued the transfer request may
2918 * deallocate the associated memory; it's no longer in use by any SPI
2919 * core or controller driver code.
2920 *
2921 * Note that although all messages to a spi_device are handled in
2922 * FIFO order, messages may go to different devices in other orders.
2923 * Some device might be higher priority, or have various "hard" access
2924 * time requirements, for example.
2925 *
2926 * On detection of any fault during the transfer, processing of
2927 * the entire message is aborted, and the device is deselected.
2928 * Until returning from the associated message completion callback,
2929 * no other spi_message queued to that device will be processed.
2930 * (This rule applies equally to all the synchronous transfer calls,
2931 * which are wrappers around this core asynchronous primitive.)
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +02002932 *
2933 * Return: zero on success, else a negative error code.
David Brownell568d0692009-09-22 16:46:18 -07002934 */
2935int spi_async(struct spi_device *spi, struct spi_message *message)
2936{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002937 struct spi_controller *ctlr = spi->controller;
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07002938 int ret;
2939 unsigned long flags;
David Brownell568d0692009-09-22 16:46:18 -07002940
Mark Brown90808732013-11-13 23:44:15 +00002941 ret = __spi_validate(spi, message);
2942 if (ret != 0)
2943 return ret;
2944
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002945 spin_lock_irqsave(&ctlr->bus_lock_spinlock, flags);
David Brownell568d0692009-09-22 16:46:18 -07002946
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002947 if (ctlr->bus_lock_flag)
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07002948 ret = -EBUSY;
2949 else
2950 ret = __spi_async(spi, message);
David Brownell568d0692009-09-22 16:46:18 -07002951
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002952 spin_unlock_irqrestore(&ctlr->bus_lock_spinlock, flags);
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07002953
2954 return ret;
David Brownell568d0692009-09-22 16:46:18 -07002955}
2956EXPORT_SYMBOL_GPL(spi_async);
2957
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07002958/**
2959 * spi_async_locked - version of spi_async with exclusive bus usage
2960 * @spi: device with which data will be exchanged
2961 * @message: describes the data transfers, including completion callback
2962 * Context: any (irqs may be blocked, etc)
2963 *
2964 * This call may be used in_irq and other contexts which can't sleep,
2965 * as well as from task contexts which can sleep.
2966 *
2967 * The completion callback is invoked in a context which can't sleep.
2968 * Before that invocation, the value of message->status is undefined.
2969 * When the callback is issued, message->status holds either zero (to
2970 * indicate complete success) or a negative error code. After that
2971 * callback returns, the driver which issued the transfer request may
2972 * deallocate the associated memory; it's no longer in use by any SPI
2973 * core or controller driver code.
2974 *
2975 * Note that although all messages to a spi_device are handled in
2976 * FIFO order, messages may go to different devices in other orders.
2977 * Some device might be higher priority, or have various "hard" access
2978 * time requirements, for example.
2979 *
2980 * On detection of any fault during the transfer, processing of
2981 * the entire message is aborted, and the device is deselected.
2982 * Until returning from the associated message completion callback,
2983 * no other spi_message queued to that device will be processed.
2984 * (This rule applies equally to all the synchronous transfer calls,
2985 * which are wrappers around this core asynchronous primitive.)
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +02002986 *
2987 * Return: zero on success, else a negative error code.
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07002988 */
2989int spi_async_locked(struct spi_device *spi, struct spi_message *message)
2990{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002991 struct spi_controller *ctlr = spi->controller;
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07002992 int ret;
2993 unsigned long flags;
2994
Mark Brown90808732013-11-13 23:44:15 +00002995 ret = __spi_validate(spi, message);
2996 if (ret != 0)
2997 return ret;
2998
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02002999 spin_lock_irqsave(&ctlr->bus_lock_spinlock, flags);
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003000
3001 ret = __spi_async(spi, message);
3002
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003003 spin_unlock_irqrestore(&ctlr->bus_lock_spinlock, flags);
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003004
3005 return ret;
3006
3007}
3008EXPORT_SYMBOL_GPL(spi_async_locked);
3009
David Brownell7d077192009-06-17 16:26:03 -07003010
Vignesh R556351f2015-12-11 09:39:56 +05303011int spi_flash_read(struct spi_device *spi,
3012 struct spi_flash_read_message *msg)
3013
3014{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003015 struct spi_controller *master = spi->controller;
Vignesh Rf4502dd2016-06-08 12:18:31 +05303016 struct device *rx_dev = NULL;
Vignesh R556351f2015-12-11 09:39:56 +05303017 int ret;
3018
3019 if ((msg->opcode_nbits == SPI_NBITS_DUAL ||
3020 msg->addr_nbits == SPI_NBITS_DUAL) &&
3021 !(spi->mode & (SPI_TX_DUAL | SPI_TX_QUAD)))
3022 return -EINVAL;
3023 if ((msg->opcode_nbits == SPI_NBITS_QUAD ||
3024 msg->addr_nbits == SPI_NBITS_QUAD) &&
3025 !(spi->mode & SPI_TX_QUAD))
3026 return -EINVAL;
3027 if (msg->data_nbits == SPI_NBITS_DUAL &&
3028 !(spi->mode & (SPI_RX_DUAL | SPI_RX_QUAD)))
3029 return -EINVAL;
3030 if (msg->data_nbits == SPI_NBITS_QUAD &&
3031 !(spi->mode & SPI_RX_QUAD))
3032 return -EINVAL;
3033
3034 if (master->auto_runtime_pm) {
3035 ret = pm_runtime_get_sync(master->dev.parent);
3036 if (ret < 0) {
3037 dev_err(&master->dev, "Failed to power device: %d\n",
3038 ret);
3039 return ret;
3040 }
3041 }
Vignesh Rf4502dd2016-06-08 12:18:31 +05303042
Vignesh R556351f2015-12-11 09:39:56 +05303043 mutex_lock(&master->bus_lock_mutex);
Mark Brownef4d96e2016-07-21 23:53:31 +01003044 mutex_lock(&master->io_mutex);
Vignesh R2bca3442017-04-11 17:22:24 +05303045 if (master->dma_rx && master->spi_flash_can_dma(spi, msg)) {
Vignesh Rf4502dd2016-06-08 12:18:31 +05303046 rx_dev = master->dma_rx->device->dev;
3047 ret = spi_map_buf(master, rx_dev, &msg->rx_sg,
3048 msg->buf, msg->len,
3049 DMA_FROM_DEVICE);
3050 if (!ret)
3051 msg->cur_msg_mapped = true;
3052 }
Vignesh R556351f2015-12-11 09:39:56 +05303053 ret = master->spi_flash_read(spi, msg);
Vignesh Rf4502dd2016-06-08 12:18:31 +05303054 if (msg->cur_msg_mapped)
3055 spi_unmap_buf(master, rx_dev, &msg->rx_sg,
3056 DMA_FROM_DEVICE);
Mark Brownef4d96e2016-07-21 23:53:31 +01003057 mutex_unlock(&master->io_mutex);
Vignesh R556351f2015-12-11 09:39:56 +05303058 mutex_unlock(&master->bus_lock_mutex);
Vignesh Rf4502dd2016-06-08 12:18:31 +05303059
Vignesh R556351f2015-12-11 09:39:56 +05303060 if (master->auto_runtime_pm)
3061 pm_runtime_put(master->dev.parent);
3062
3063 return ret;
3064}
3065EXPORT_SYMBOL_GPL(spi_flash_read);
3066
David Brownell7d077192009-06-17 16:26:03 -07003067/*-------------------------------------------------------------------------*/
3068
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003069/* Utility methods for SPI protocol drivers, layered on
David Brownell7d077192009-06-17 16:26:03 -07003070 * top of the core. Some other utility methods are defined as
3071 * inline functions.
3072 */
3073
Andrew Morton5d870c82006-01-11 11:23:49 -08003074static void spi_complete(void *arg)
3075{
3076 complete(arg);
3077}
3078
Mark Brownef4d96e2016-07-21 23:53:31 +01003079static int __spi_sync(struct spi_device *spi, struct spi_message *message)
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003080{
3081 DECLARE_COMPLETION_ONSTACK(done);
3082 int status;
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003083 struct spi_controller *ctlr = spi->controller;
Mark Brown0461a412014-12-09 21:38:05 +00003084 unsigned long flags;
3085
3086 status = __spi_validate(spi, message);
3087 if (status != 0)
3088 return status;
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003089
3090 message->complete = spi_complete;
3091 message->context = &done;
Mark Brown0461a412014-12-09 21:38:05 +00003092 message->spi = spi;
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003093
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003094 SPI_STATISTICS_INCREMENT_FIELD(&ctlr->statistics, spi_sync);
Martin Sperleca2ebc2015-06-22 13:00:36 +00003095 SPI_STATISTICS_INCREMENT_FIELD(&spi->statistics, spi_sync);
3096
Mark Brown0461a412014-12-09 21:38:05 +00003097 /* If we're not using the legacy transfer method then we will
3098 * try to transfer in the calling context so special case.
3099 * This code would be less tricky if we could remove the
3100 * support for driver implemented message queues.
3101 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003102 if (ctlr->transfer == spi_queued_transfer) {
3103 spin_lock_irqsave(&ctlr->bus_lock_spinlock, flags);
Mark Brown0461a412014-12-09 21:38:05 +00003104
3105 trace_spi_message_submit(message);
3106
3107 status = __spi_queued_transfer(spi, message, false);
3108
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003109 spin_unlock_irqrestore(&ctlr->bus_lock_spinlock, flags);
Mark Brown0461a412014-12-09 21:38:05 +00003110 } else {
3111 status = spi_async_locked(spi, message);
3112 }
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003113
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003114 if (status == 0) {
Mark Brown0461a412014-12-09 21:38:05 +00003115 /* Push out the messages in the calling context if we
3116 * can.
3117 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003118 if (ctlr->transfer == spi_queued_transfer) {
3119 SPI_STATISTICS_INCREMENT_FIELD(&ctlr->statistics,
Martin Sperleca2ebc2015-06-22 13:00:36 +00003120 spi_sync_immediate);
3121 SPI_STATISTICS_INCREMENT_FIELD(&spi->statistics,
3122 spi_sync_immediate);
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003123 __spi_pump_messages(ctlr, false);
Martin Sperleca2ebc2015-06-22 13:00:36 +00003124 }
Mark Brown0461a412014-12-09 21:38:05 +00003125
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003126 wait_for_completion(&done);
3127 status = message->status;
3128 }
3129 message->context = NULL;
3130 return status;
3131}
3132
David Brownell8ae12a02006-01-08 13:34:19 -08003133/**
3134 * spi_sync - blocking/synchronous SPI data transfers
3135 * @spi: device with which data will be exchanged
3136 * @message: describes the data transfers
David Brownell33e34dc2007-05-08 00:32:21 -07003137 * Context: can sleep
David Brownell8ae12a02006-01-08 13:34:19 -08003138 *
3139 * This call may only be used from a context that may sleep. The sleep
3140 * is non-interruptible, and has no timeout. Low-overhead controller
3141 * drivers may DMA directly into and out of the message buffers.
3142 *
3143 * Note that the SPI device's chip select is active during the message,
3144 * and then is normally disabled between messages. Drivers for some
3145 * frequently-used devices may want to minimize costs of selecting a chip,
3146 * by leaving it selected in anticipation that the next message will go
3147 * to the same chip. (That may increase power usage.)
3148 *
David Brownell0c868462006-01-08 13:34:25 -08003149 * Also, the caller is guaranteeing that the memory associated with the
3150 * message will not be freed before this call returns.
3151 *
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +02003152 * Return: zero on success, else a negative error code.
David Brownell8ae12a02006-01-08 13:34:19 -08003153 */
3154int spi_sync(struct spi_device *spi, struct spi_message *message)
3155{
Mark Brownef4d96e2016-07-21 23:53:31 +01003156 int ret;
3157
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003158 mutex_lock(&spi->controller->bus_lock_mutex);
Mark Brownef4d96e2016-07-21 23:53:31 +01003159 ret = __spi_sync(spi, message);
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003160 mutex_unlock(&spi->controller->bus_lock_mutex);
Mark Brownef4d96e2016-07-21 23:53:31 +01003161
3162 return ret;
David Brownell8ae12a02006-01-08 13:34:19 -08003163}
3164EXPORT_SYMBOL_GPL(spi_sync);
3165
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003166/**
3167 * spi_sync_locked - version of spi_sync with exclusive bus usage
3168 * @spi: device with which data will be exchanged
3169 * @message: describes the data transfers
3170 * Context: can sleep
3171 *
3172 * This call may only be used from a context that may sleep. The sleep
3173 * is non-interruptible, and has no timeout. Low-overhead controller
3174 * drivers may DMA directly into and out of the message buffers.
3175 *
3176 * This call should be used by drivers that require exclusive access to the
Lucas De Marchi25985ed2011-03-30 22:57:33 -03003177 * SPI bus. It has to be preceded by a spi_bus_lock call. The SPI bus must
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003178 * be released by a spi_bus_unlock call when the exclusive access is over.
3179 *
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +02003180 * Return: zero on success, else a negative error code.
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003181 */
3182int spi_sync_locked(struct spi_device *spi, struct spi_message *message)
3183{
Mark Brownef4d96e2016-07-21 23:53:31 +01003184 return __spi_sync(spi, message);
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003185}
3186EXPORT_SYMBOL_GPL(spi_sync_locked);
3187
3188/**
3189 * spi_bus_lock - obtain a lock for exclusive SPI bus usage
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003190 * @ctlr: SPI bus master that should be locked for exclusive bus access
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003191 * Context: can sleep
3192 *
3193 * This call may only be used from a context that may sleep. The sleep
3194 * is non-interruptible, and has no timeout.
3195 *
3196 * This call should be used by drivers that require exclusive access to the
3197 * SPI bus. The SPI bus must be released by a spi_bus_unlock call when the
3198 * exclusive access is over. Data transfer must be done by spi_sync_locked
3199 * and spi_async_locked calls when the SPI bus lock is held.
3200 *
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +02003201 * Return: always zero.
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003202 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003203int spi_bus_lock(struct spi_controller *ctlr)
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003204{
3205 unsigned long flags;
3206
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003207 mutex_lock(&ctlr->bus_lock_mutex);
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003208
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003209 spin_lock_irqsave(&ctlr->bus_lock_spinlock, flags);
3210 ctlr->bus_lock_flag = 1;
3211 spin_unlock_irqrestore(&ctlr->bus_lock_spinlock, flags);
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003212
3213 /* mutex remains locked until spi_bus_unlock is called */
3214
3215 return 0;
3216}
3217EXPORT_SYMBOL_GPL(spi_bus_lock);
3218
3219/**
3220 * spi_bus_unlock - release the lock for exclusive SPI bus usage
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003221 * @ctlr: SPI bus master that was locked for exclusive bus access
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003222 * Context: can sleep
3223 *
3224 * This call may only be used from a context that may sleep. The sleep
3225 * is non-interruptible, and has no timeout.
3226 *
3227 * This call releases an SPI bus lock previously obtained by an spi_bus_lock
3228 * call.
3229 *
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +02003230 * Return: always zero.
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003231 */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003232int spi_bus_unlock(struct spi_controller *ctlr)
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003233{
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003234 ctlr->bus_lock_flag = 0;
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003235
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003236 mutex_unlock(&ctlr->bus_lock_mutex);
Ernst Schwabcf32b71e2010-06-28 17:49:29 -07003237
3238 return 0;
3239}
3240EXPORT_SYMBOL_GPL(spi_bus_unlock);
3241
David Brownella9948b62006-04-02 10:37:40 -08003242/* portable code must never pass more than 32 bytes */
Jingoo Han5fe5f052013-10-14 10:31:51 +09003243#define SPI_BUFSIZ max(32, SMP_CACHE_BYTES)
David Brownell8ae12a02006-01-08 13:34:19 -08003244
3245static u8 *buf;
3246
3247/**
3248 * spi_write_then_read - SPI synchronous write followed by read
3249 * @spi: device with which data will be exchanged
3250 * @txbuf: data to be written (need not be dma-safe)
3251 * @n_tx: size of txbuf, in bytes
Jiri Pirko27570492009-06-17 16:26:06 -07003252 * @rxbuf: buffer into which data will be read (need not be dma-safe)
3253 * @n_rx: size of rxbuf, in bytes
David Brownell33e34dc2007-05-08 00:32:21 -07003254 * Context: can sleep
David Brownell8ae12a02006-01-08 13:34:19 -08003255 *
3256 * This performs a half duplex MicroWire style transaction with the
3257 * device, sending txbuf and then reading rxbuf. The return value
3258 * is zero for success, else a negative errno status code.
David Brownellb8852442006-01-08 13:34:23 -08003259 * This call may only be used from a context that may sleep.
David Brownell8ae12a02006-01-08 13:34:19 -08003260 *
David Brownell0c868462006-01-08 13:34:25 -08003261 * Parameters to this routine are always copied using a small buffer;
David Brownell33e34dc2007-05-08 00:32:21 -07003262 * portable code should never use this for more than 32 bytes.
3263 * Performance-sensitive or bulk transfer code should instead use
David Brownell0c868462006-01-08 13:34:25 -08003264 * spi_{async,sync}() calls with dma-safe buffers.
Javier Martinez Canillas97d56dc2015-10-22 18:59:23 +02003265 *
3266 * Return: zero on success, else a negative error code.
David Brownell8ae12a02006-01-08 13:34:19 -08003267 */
3268int spi_write_then_read(struct spi_device *spi,
Mark Brown0c4a1592011-05-11 00:09:30 +02003269 const void *txbuf, unsigned n_tx,
3270 void *rxbuf, unsigned n_rx)
David Brownell8ae12a02006-01-08 13:34:19 -08003271{
David Brownell068f4072007-12-04 23:45:09 -08003272 static DEFINE_MUTEX(lock);
David Brownell8ae12a02006-01-08 13:34:19 -08003273
3274 int status;
3275 struct spi_message message;
David Brownellbdff5492009-04-13 14:39:57 -07003276 struct spi_transfer x[2];
David Brownell8ae12a02006-01-08 13:34:19 -08003277 u8 *local_buf;
3278
Mark Brownb3a223e2012-12-02 12:54:25 +09003279 /* Use preallocated DMA-safe buffer if we can. We can't avoid
3280 * copying here, (as a pure convenience thing), but we can
3281 * keep heap costs out of the hot path unless someone else is
3282 * using the pre-allocated buffer or the transfer is too large.
David Brownell8ae12a02006-01-08 13:34:19 -08003283 */
Mark Brownb3a223e2012-12-02 12:54:25 +09003284 if ((n_tx + n_rx) > SPI_BUFSIZ || !mutex_trylock(&lock)) {
Mark Brown2cd94c82013-01-27 14:35:04 +08003285 local_buf = kmalloc(max((unsigned)SPI_BUFSIZ, n_tx + n_rx),
3286 GFP_KERNEL | GFP_DMA);
Mark Brownb3a223e2012-12-02 12:54:25 +09003287 if (!local_buf)
3288 return -ENOMEM;
3289 } else {
3290 local_buf = buf;
3291 }
David Brownell8ae12a02006-01-08 13:34:19 -08003292
Vitaly Wool8275c642006-01-08 13:34:28 -08003293 spi_message_init(&message);
Jingoo Han5fe5f052013-10-14 10:31:51 +09003294 memset(x, 0, sizeof(x));
David Brownellbdff5492009-04-13 14:39:57 -07003295 if (n_tx) {
3296 x[0].len = n_tx;
3297 spi_message_add_tail(&x[0], &message);
3298 }
3299 if (n_rx) {
3300 x[1].len = n_rx;
3301 spi_message_add_tail(&x[1], &message);
3302 }
Vitaly Wool8275c642006-01-08 13:34:28 -08003303
David Brownell8ae12a02006-01-08 13:34:19 -08003304 memcpy(local_buf, txbuf, n_tx);
David Brownellbdff5492009-04-13 14:39:57 -07003305 x[0].tx_buf = local_buf;
3306 x[1].rx_buf = local_buf + n_tx;
David Brownell8ae12a02006-01-08 13:34:19 -08003307
3308 /* do the i/o */
David Brownell8ae12a02006-01-08 13:34:19 -08003309 status = spi_sync(spi, &message);
Marc Pignat9b938b72007-12-04 23:45:10 -08003310 if (status == 0)
David Brownellbdff5492009-04-13 14:39:57 -07003311 memcpy(rxbuf, x[1].rx_buf, n_rx);
David Brownell8ae12a02006-01-08 13:34:19 -08003312
David Brownellbdff5492009-04-13 14:39:57 -07003313 if (x[0].tx_buf == buf)
David Brownell068f4072007-12-04 23:45:09 -08003314 mutex_unlock(&lock);
David Brownell8ae12a02006-01-08 13:34:19 -08003315 else
3316 kfree(local_buf);
3317
3318 return status;
3319}
3320EXPORT_SYMBOL_GPL(spi_write_then_read);
3321
3322/*-------------------------------------------------------------------------*/
3323
Pantelis Antoniouce79d542014-10-28 22:36:05 +02003324#if IS_ENABLED(CONFIG_OF_DYNAMIC)
3325static int __spi_of_device_match(struct device *dev, void *data)
3326{
3327 return dev->of_node == data;
3328}
3329
3330/* must call put_device() when done with returned spi_device device */
3331static struct spi_device *of_find_spi_device_by_node(struct device_node *node)
3332{
3333 struct device *dev = bus_find_device(&spi_bus_type, NULL, node,
3334 __spi_of_device_match);
3335 return dev ? to_spi_device(dev) : NULL;
3336}
3337
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003338static int __spi_of_controller_match(struct device *dev, const void *data)
Pantelis Antoniouce79d542014-10-28 22:36:05 +02003339{
3340 return dev->of_node == data;
3341}
3342
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003343/* the spi controllers are not using spi_bus, so we find it with another way */
3344static struct spi_controller *of_find_spi_controller_by_node(struct device_node *node)
Pantelis Antoniouce79d542014-10-28 22:36:05 +02003345{
3346 struct device *dev;
3347
3348 dev = class_find_device(&spi_master_class, NULL, node,
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003349 __spi_of_controller_match);
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02003350 if (!dev && IS_ENABLED(CONFIG_SPI_SLAVE))
3351 dev = class_find_device(&spi_slave_class, NULL, node,
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003352 __spi_of_controller_match);
Pantelis Antoniouce79d542014-10-28 22:36:05 +02003353 if (!dev)
3354 return NULL;
3355
3356 /* reference got in class_find_device */
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003357 return container_of(dev, struct spi_controller, dev);
Pantelis Antoniouce79d542014-10-28 22:36:05 +02003358}
3359
3360static int of_spi_notify(struct notifier_block *nb, unsigned long action,
3361 void *arg)
3362{
3363 struct of_reconfig_data *rd = arg;
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003364 struct spi_controller *ctlr;
Pantelis Antoniouce79d542014-10-28 22:36:05 +02003365 struct spi_device *spi;
3366
3367 switch (of_reconfig_get_state_change(action, arg)) {
3368 case OF_RECONFIG_CHANGE_ADD:
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003369 ctlr = of_find_spi_controller_by_node(rd->dn->parent);
3370 if (ctlr == NULL)
Pantelis Antoniouce79d542014-10-28 22:36:05 +02003371 return NOTIFY_OK; /* not for us */
3372
Geert Uytterhoevenbd6c1642015-11-30 15:28:07 +01003373 if (of_node_test_and_set_flag(rd->dn, OF_POPULATED)) {
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003374 put_device(&ctlr->dev);
Geert Uytterhoevenbd6c1642015-11-30 15:28:07 +01003375 return NOTIFY_OK;
3376 }
3377
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003378 spi = of_register_spi_device(ctlr, rd->dn);
3379 put_device(&ctlr->dev);
Pantelis Antoniouce79d542014-10-28 22:36:05 +02003380
3381 if (IS_ERR(spi)) {
Rob Herring25c56c82017-07-18 16:43:31 -05003382 pr_err("%s: failed to create for '%pOF'\n",
3383 __func__, rd->dn);
Ralf Ramsauere0af98a2016-10-17 15:59:56 +02003384 of_node_clear_flag(rd->dn, OF_POPULATED);
Pantelis Antoniouce79d542014-10-28 22:36:05 +02003385 return notifier_from_errno(PTR_ERR(spi));
3386 }
3387 break;
3388
3389 case OF_RECONFIG_CHANGE_REMOVE:
Geert Uytterhoevenbd6c1642015-11-30 15:28:07 +01003390 /* already depopulated? */
3391 if (!of_node_check_flag(rd->dn, OF_POPULATED))
3392 return NOTIFY_OK;
3393
Pantelis Antoniouce79d542014-10-28 22:36:05 +02003394 /* find our device by node */
3395 spi = of_find_spi_device_by_node(rd->dn);
3396 if (spi == NULL)
3397 return NOTIFY_OK; /* no? not meant for us */
3398
3399 /* unregister takes one ref away */
3400 spi_unregister_device(spi);
3401
3402 /* and put the reference of the find */
3403 put_device(&spi->dev);
3404 break;
3405 }
3406
3407 return NOTIFY_OK;
3408}
3409
3410static struct notifier_block spi_of_notifier = {
3411 .notifier_call = of_spi_notify,
3412};
3413#else /* IS_ENABLED(CONFIG_OF_DYNAMIC) */
3414extern struct notifier_block spi_of_notifier;
3415#endif /* IS_ENABLED(CONFIG_OF_DYNAMIC) */
3416
Octavian Purdila7f244672016-07-08 19:13:11 +03003417#if IS_ENABLED(CONFIG_ACPI)
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003418static int spi_acpi_controller_match(struct device *dev, const void *data)
Octavian Purdila7f244672016-07-08 19:13:11 +03003419{
3420 return ACPI_COMPANION(dev->parent) == data;
3421}
3422
3423static int spi_acpi_device_match(struct device *dev, void *data)
3424{
3425 return ACPI_COMPANION(dev) == data;
3426}
3427
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003428static struct spi_controller *acpi_spi_find_controller_by_adev(struct acpi_device *adev)
Octavian Purdila7f244672016-07-08 19:13:11 +03003429{
3430 struct device *dev;
3431
3432 dev = class_find_device(&spi_master_class, NULL, adev,
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003433 spi_acpi_controller_match);
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02003434 if (!dev && IS_ENABLED(CONFIG_SPI_SLAVE))
3435 dev = class_find_device(&spi_slave_class, NULL, adev,
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003436 spi_acpi_controller_match);
Octavian Purdila7f244672016-07-08 19:13:11 +03003437 if (!dev)
3438 return NULL;
3439
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003440 return container_of(dev, struct spi_controller, dev);
Octavian Purdila7f244672016-07-08 19:13:11 +03003441}
3442
3443static struct spi_device *acpi_spi_find_device_by_adev(struct acpi_device *adev)
3444{
3445 struct device *dev;
3446
3447 dev = bus_find_device(&spi_bus_type, NULL, adev, spi_acpi_device_match);
3448
3449 return dev ? to_spi_device(dev) : NULL;
3450}
3451
3452static int acpi_spi_notify(struct notifier_block *nb, unsigned long value,
3453 void *arg)
3454{
3455 struct acpi_device *adev = arg;
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003456 struct spi_controller *ctlr;
Octavian Purdila7f244672016-07-08 19:13:11 +03003457 struct spi_device *spi;
3458
3459 switch (value) {
3460 case ACPI_RECONFIG_DEVICE_ADD:
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003461 ctlr = acpi_spi_find_controller_by_adev(adev->parent);
3462 if (!ctlr)
Octavian Purdila7f244672016-07-08 19:13:11 +03003463 break;
3464
Geert Uytterhoeven8caab752017-06-13 13:23:52 +02003465 acpi_register_spi_device(ctlr, adev);
3466 put_device(&ctlr->dev);
Octavian Purdila7f244672016-07-08 19:13:11 +03003467 break;
3468 case ACPI_RECONFIG_DEVICE_REMOVE:
3469 if (!acpi_device_enumerated(adev))
3470 break;
3471
3472 spi = acpi_spi_find_device_by_adev(adev);
3473 if (!spi)
3474 break;
3475
3476 spi_unregister_device(spi);
3477 put_device(&spi->dev);
3478 break;
3479 }
3480
3481 return NOTIFY_OK;
3482}
3483
3484static struct notifier_block spi_acpi_notifier = {
3485 .notifier_call = acpi_spi_notify,
3486};
3487#else
3488extern struct notifier_block spi_acpi_notifier;
3489#endif
3490
David Brownell8ae12a02006-01-08 13:34:19 -08003491static int __init spi_init(void)
3492{
David Brownellb8852442006-01-08 13:34:23 -08003493 int status;
David Brownell8ae12a02006-01-08 13:34:19 -08003494
Christoph Lametere94b1762006-12-06 20:33:17 -08003495 buf = kmalloc(SPI_BUFSIZ, GFP_KERNEL);
David Brownellb8852442006-01-08 13:34:23 -08003496 if (!buf) {
3497 status = -ENOMEM;
3498 goto err0;
3499 }
3500
3501 status = bus_register(&spi_bus_type);
3502 if (status < 0)
3503 goto err1;
3504
3505 status = class_register(&spi_master_class);
3506 if (status < 0)
3507 goto err2;
Pantelis Antoniouce79d542014-10-28 22:36:05 +02003508
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02003509 if (IS_ENABLED(CONFIG_SPI_SLAVE)) {
3510 status = class_register(&spi_slave_class);
3511 if (status < 0)
3512 goto err3;
3513 }
3514
Fabio Estevam52677202014-11-26 20:13:57 -02003515 if (IS_ENABLED(CONFIG_OF_DYNAMIC))
Pantelis Antoniouce79d542014-10-28 22:36:05 +02003516 WARN_ON(of_reconfig_notifier_register(&spi_of_notifier));
Octavian Purdila7f244672016-07-08 19:13:11 +03003517 if (IS_ENABLED(CONFIG_ACPI))
3518 WARN_ON(acpi_reconfig_notifier_register(&spi_acpi_notifier));
Pantelis Antoniouce79d542014-10-28 22:36:05 +02003519
David Brownell8ae12a02006-01-08 13:34:19 -08003520 return 0;
David Brownellb8852442006-01-08 13:34:23 -08003521
Geert Uytterhoeven6c364062017-05-22 15:11:41 +02003522err3:
3523 class_unregister(&spi_master_class);
David Brownellb8852442006-01-08 13:34:23 -08003524err2:
3525 bus_unregister(&spi_bus_type);
3526err1:
3527 kfree(buf);
3528 buf = NULL;
3529err0:
3530 return status;
David Brownell8ae12a02006-01-08 13:34:19 -08003531}
David Brownellb8852442006-01-08 13:34:23 -08003532
David Brownell8ae12a02006-01-08 13:34:19 -08003533/* board_info is normally registered in arch_initcall(),
3534 * but even essential drivers wait till later
David Brownellb8852442006-01-08 13:34:23 -08003535 *
3536 * REVISIT only boardinfo really needs static linking. the rest (device and
3537 * driver registration) _could_ be dynamically linked (modular) ... costs
3538 * include needing to have boardinfo data structures be much more public.
David Brownell8ae12a02006-01-08 13:34:19 -08003539 */
David Brownell673c0c02008-10-15 22:02:46 -07003540postcore_initcall(spi_init);
David Brownell8ae12a02006-01-08 13:34:19 -08003541