1*10465441SEvalZero /*
2*10465441SEvalZero * Copyright (c) 2006-2018, RT-Thread Development Team
3*10465441SEvalZero *
4*10465441SEvalZero * SPDX-License-Identifier: Apache-2.0
5*10465441SEvalZero *
6*10465441SEvalZero * Change Logs:
7*10465441SEvalZero * Date Author Notes
8*10465441SEvalZero * 2012-01-08 bernard first version.
9*10465441SEvalZero * 2012-02-03 bernard add const attribute to the ops.
10*10465441SEvalZero * 2012-05-15 dzzxzz fixed the return value in attach_device.
11*10465441SEvalZero * 2012-05-18 bernard Changed SPI message to message list.
12*10465441SEvalZero * Added take/release SPI device/bus interface.
13*10465441SEvalZero * 2012-09-28 aozima fixed rt_spi_release_bus assert error.
14*10465441SEvalZero */
15*10465441SEvalZero
16*10465441SEvalZero #include <drivers/spi.h>
17*10465441SEvalZero
18*10465441SEvalZero extern rt_err_t rt_spi_bus_device_init(struct rt_spi_bus *bus, const char *name);
19*10465441SEvalZero extern rt_err_t rt_spidev_device_init(struct rt_spi_device *dev, const char *name);
20*10465441SEvalZero
rt_spi_bus_register(struct rt_spi_bus * bus,const char * name,const struct rt_spi_ops * ops)21*10465441SEvalZero rt_err_t rt_spi_bus_register(struct rt_spi_bus *bus,
22*10465441SEvalZero const char *name,
23*10465441SEvalZero const struct rt_spi_ops *ops)
24*10465441SEvalZero {
25*10465441SEvalZero rt_err_t result;
26*10465441SEvalZero
27*10465441SEvalZero result = rt_spi_bus_device_init(bus, name);
28*10465441SEvalZero if (result != RT_EOK)
29*10465441SEvalZero return result;
30*10465441SEvalZero
31*10465441SEvalZero /* initialize mutex lock */
32*10465441SEvalZero rt_mutex_init(&(bus->lock), name, RT_IPC_FLAG_FIFO);
33*10465441SEvalZero /* set ops */
34*10465441SEvalZero bus->ops = ops;
35*10465441SEvalZero /* initialize owner */
36*10465441SEvalZero bus->owner = RT_NULL;
37*10465441SEvalZero /* set bus mode */
38*10465441SEvalZero bus->mode = RT_SPI_BUS_MODE_SPI;
39*10465441SEvalZero
40*10465441SEvalZero return RT_EOK;
41*10465441SEvalZero }
42*10465441SEvalZero
rt_spi_bus_attach_device(struct rt_spi_device * device,const char * name,const char * bus_name,void * user_data)43*10465441SEvalZero rt_err_t rt_spi_bus_attach_device(struct rt_spi_device *device,
44*10465441SEvalZero const char *name,
45*10465441SEvalZero const char *bus_name,
46*10465441SEvalZero void *user_data)
47*10465441SEvalZero {
48*10465441SEvalZero rt_err_t result;
49*10465441SEvalZero rt_device_t bus;
50*10465441SEvalZero
51*10465441SEvalZero /* get physical spi bus */
52*10465441SEvalZero bus = rt_device_find(bus_name);
53*10465441SEvalZero if (bus != RT_NULL && bus->type == RT_Device_Class_SPIBUS)
54*10465441SEvalZero {
55*10465441SEvalZero device->bus = (struct rt_spi_bus *)bus;
56*10465441SEvalZero
57*10465441SEvalZero /* initialize spidev device */
58*10465441SEvalZero result = rt_spidev_device_init(device, name);
59*10465441SEvalZero if (result != RT_EOK)
60*10465441SEvalZero return result;
61*10465441SEvalZero
62*10465441SEvalZero rt_memset(&device->config, 0, sizeof(device->config));
63*10465441SEvalZero device->parent.user_data = user_data;
64*10465441SEvalZero
65*10465441SEvalZero return RT_EOK;
66*10465441SEvalZero }
67*10465441SEvalZero
68*10465441SEvalZero /* not found the host bus */
69*10465441SEvalZero return -RT_ERROR;
70*10465441SEvalZero }
71*10465441SEvalZero
rt_spi_configure(struct rt_spi_device * device,struct rt_spi_configuration * cfg)72*10465441SEvalZero rt_err_t rt_spi_configure(struct rt_spi_device *device,
73*10465441SEvalZero struct rt_spi_configuration *cfg)
74*10465441SEvalZero {
75*10465441SEvalZero rt_err_t result;
76*10465441SEvalZero
77*10465441SEvalZero RT_ASSERT(device != RT_NULL);
78*10465441SEvalZero
79*10465441SEvalZero /* set configuration */
80*10465441SEvalZero device->config.data_width = cfg->data_width;
81*10465441SEvalZero device->config.mode = cfg->mode & RT_SPI_MODE_MASK ;
82*10465441SEvalZero device->config.max_hz = cfg->max_hz ;
83*10465441SEvalZero
84*10465441SEvalZero if (device->bus != RT_NULL)
85*10465441SEvalZero {
86*10465441SEvalZero result = rt_mutex_take(&(device->bus->lock), RT_WAITING_FOREVER);
87*10465441SEvalZero if (result == RT_EOK)
88*10465441SEvalZero {
89*10465441SEvalZero if (device->bus->owner == device)
90*10465441SEvalZero {
91*10465441SEvalZero device->bus->ops->configure(device, &device->config);
92*10465441SEvalZero }
93*10465441SEvalZero
94*10465441SEvalZero /* release lock */
95*10465441SEvalZero rt_mutex_release(&(device->bus->lock));
96*10465441SEvalZero }
97*10465441SEvalZero }
98*10465441SEvalZero
99*10465441SEvalZero return RT_EOK;
100*10465441SEvalZero }
101*10465441SEvalZero
rt_spi_send_then_send(struct rt_spi_device * device,const void * send_buf1,rt_size_t send_length1,const void * send_buf2,rt_size_t send_length2)102*10465441SEvalZero rt_err_t rt_spi_send_then_send(struct rt_spi_device *device,
103*10465441SEvalZero const void *send_buf1,
104*10465441SEvalZero rt_size_t send_length1,
105*10465441SEvalZero const void *send_buf2,
106*10465441SEvalZero rt_size_t send_length2)
107*10465441SEvalZero {
108*10465441SEvalZero rt_err_t result;
109*10465441SEvalZero struct rt_spi_message message;
110*10465441SEvalZero
111*10465441SEvalZero RT_ASSERT(device != RT_NULL);
112*10465441SEvalZero RT_ASSERT(device->bus != RT_NULL);
113*10465441SEvalZero
114*10465441SEvalZero result = rt_mutex_take(&(device->bus->lock), RT_WAITING_FOREVER);
115*10465441SEvalZero if (result == RT_EOK)
116*10465441SEvalZero {
117*10465441SEvalZero if (device->bus->owner != device)
118*10465441SEvalZero {
119*10465441SEvalZero /* not the same owner as current, re-configure SPI bus */
120*10465441SEvalZero result = device->bus->ops->configure(device, &device->config);
121*10465441SEvalZero if (result == RT_EOK)
122*10465441SEvalZero {
123*10465441SEvalZero /* set SPI bus owner */
124*10465441SEvalZero device->bus->owner = device;
125*10465441SEvalZero }
126*10465441SEvalZero else
127*10465441SEvalZero {
128*10465441SEvalZero /* configure SPI bus failed */
129*10465441SEvalZero result = -RT_EIO;
130*10465441SEvalZero goto __exit;
131*10465441SEvalZero }
132*10465441SEvalZero }
133*10465441SEvalZero
134*10465441SEvalZero /* send data1 */
135*10465441SEvalZero message.send_buf = send_buf1;
136*10465441SEvalZero message.recv_buf = RT_NULL;
137*10465441SEvalZero message.length = send_length1;
138*10465441SEvalZero message.cs_take = 1;
139*10465441SEvalZero message.cs_release = 0;
140*10465441SEvalZero message.next = RT_NULL;
141*10465441SEvalZero
142*10465441SEvalZero result = device->bus->ops->xfer(device, &message);
143*10465441SEvalZero if (result == 0)
144*10465441SEvalZero {
145*10465441SEvalZero result = -RT_EIO;
146*10465441SEvalZero goto __exit;
147*10465441SEvalZero }
148*10465441SEvalZero
149*10465441SEvalZero /* send data2 */
150*10465441SEvalZero message.send_buf = send_buf2;
151*10465441SEvalZero message.recv_buf = RT_NULL;
152*10465441SEvalZero message.length = send_length2;
153*10465441SEvalZero message.cs_take = 0;
154*10465441SEvalZero message.cs_release = 1;
155*10465441SEvalZero message.next = RT_NULL;
156*10465441SEvalZero
157*10465441SEvalZero result = device->bus->ops->xfer(device, &message);
158*10465441SEvalZero if (result == 0)
159*10465441SEvalZero {
160*10465441SEvalZero result = -RT_EIO;
161*10465441SEvalZero goto __exit;
162*10465441SEvalZero }
163*10465441SEvalZero
164*10465441SEvalZero result = RT_EOK;
165*10465441SEvalZero }
166*10465441SEvalZero else
167*10465441SEvalZero {
168*10465441SEvalZero return -RT_EIO;
169*10465441SEvalZero }
170*10465441SEvalZero
171*10465441SEvalZero __exit:
172*10465441SEvalZero rt_mutex_release(&(device->bus->lock));
173*10465441SEvalZero
174*10465441SEvalZero return result;
175*10465441SEvalZero }
176*10465441SEvalZero
rt_spi_send_then_recv(struct rt_spi_device * device,const void * send_buf,rt_size_t send_length,void * recv_buf,rt_size_t recv_length)177*10465441SEvalZero rt_err_t rt_spi_send_then_recv(struct rt_spi_device *device,
178*10465441SEvalZero const void *send_buf,
179*10465441SEvalZero rt_size_t send_length,
180*10465441SEvalZero void *recv_buf,
181*10465441SEvalZero rt_size_t recv_length)
182*10465441SEvalZero {
183*10465441SEvalZero rt_err_t result;
184*10465441SEvalZero struct rt_spi_message message;
185*10465441SEvalZero
186*10465441SEvalZero RT_ASSERT(device != RT_NULL);
187*10465441SEvalZero RT_ASSERT(device->bus != RT_NULL);
188*10465441SEvalZero
189*10465441SEvalZero result = rt_mutex_take(&(device->bus->lock), RT_WAITING_FOREVER);
190*10465441SEvalZero if (result == RT_EOK)
191*10465441SEvalZero {
192*10465441SEvalZero if (device->bus->owner != device)
193*10465441SEvalZero {
194*10465441SEvalZero /* not the same owner as current, re-configure SPI bus */
195*10465441SEvalZero result = device->bus->ops->configure(device, &device->config);
196*10465441SEvalZero if (result == RT_EOK)
197*10465441SEvalZero {
198*10465441SEvalZero /* set SPI bus owner */
199*10465441SEvalZero device->bus->owner = device;
200*10465441SEvalZero }
201*10465441SEvalZero else
202*10465441SEvalZero {
203*10465441SEvalZero /* configure SPI bus failed */
204*10465441SEvalZero result = -RT_EIO;
205*10465441SEvalZero goto __exit;
206*10465441SEvalZero }
207*10465441SEvalZero }
208*10465441SEvalZero
209*10465441SEvalZero /* send data */
210*10465441SEvalZero message.send_buf = send_buf;
211*10465441SEvalZero message.recv_buf = RT_NULL;
212*10465441SEvalZero message.length = send_length;
213*10465441SEvalZero message.cs_take = 1;
214*10465441SEvalZero message.cs_release = 0;
215*10465441SEvalZero message.next = RT_NULL;
216*10465441SEvalZero
217*10465441SEvalZero result = device->bus->ops->xfer(device, &message);
218*10465441SEvalZero if (result == 0)
219*10465441SEvalZero {
220*10465441SEvalZero result = -RT_EIO;
221*10465441SEvalZero goto __exit;
222*10465441SEvalZero }
223*10465441SEvalZero
224*10465441SEvalZero /* recv data */
225*10465441SEvalZero message.send_buf = RT_NULL;
226*10465441SEvalZero message.recv_buf = recv_buf;
227*10465441SEvalZero message.length = recv_length;
228*10465441SEvalZero message.cs_take = 0;
229*10465441SEvalZero message.cs_release = 1;
230*10465441SEvalZero message.next = RT_NULL;
231*10465441SEvalZero
232*10465441SEvalZero result = device->bus->ops->xfer(device, &message);
233*10465441SEvalZero if (result == 0)
234*10465441SEvalZero {
235*10465441SEvalZero result = -RT_EIO;
236*10465441SEvalZero goto __exit;
237*10465441SEvalZero }
238*10465441SEvalZero
239*10465441SEvalZero result = RT_EOK;
240*10465441SEvalZero }
241*10465441SEvalZero else
242*10465441SEvalZero {
243*10465441SEvalZero return -RT_EIO;
244*10465441SEvalZero }
245*10465441SEvalZero
246*10465441SEvalZero __exit:
247*10465441SEvalZero rt_mutex_release(&(device->bus->lock));
248*10465441SEvalZero
249*10465441SEvalZero return result;
250*10465441SEvalZero }
251*10465441SEvalZero
rt_spi_transfer(struct rt_spi_device * device,const void * send_buf,void * recv_buf,rt_size_t length)252*10465441SEvalZero rt_size_t rt_spi_transfer(struct rt_spi_device *device,
253*10465441SEvalZero const void *send_buf,
254*10465441SEvalZero void *recv_buf,
255*10465441SEvalZero rt_size_t length)
256*10465441SEvalZero {
257*10465441SEvalZero rt_err_t result;
258*10465441SEvalZero struct rt_spi_message message;
259*10465441SEvalZero
260*10465441SEvalZero RT_ASSERT(device != RT_NULL);
261*10465441SEvalZero RT_ASSERT(device->bus != RT_NULL);
262*10465441SEvalZero
263*10465441SEvalZero result = rt_mutex_take(&(device->bus->lock), RT_WAITING_FOREVER);
264*10465441SEvalZero if (result == RT_EOK)
265*10465441SEvalZero {
266*10465441SEvalZero if (device->bus->owner != device)
267*10465441SEvalZero {
268*10465441SEvalZero /* not the same owner as current, re-configure SPI bus */
269*10465441SEvalZero result = device->bus->ops->configure(device, &device->config);
270*10465441SEvalZero if (result == RT_EOK)
271*10465441SEvalZero {
272*10465441SEvalZero /* set SPI bus owner */
273*10465441SEvalZero device->bus->owner = device;
274*10465441SEvalZero }
275*10465441SEvalZero else
276*10465441SEvalZero {
277*10465441SEvalZero /* configure SPI bus failed */
278*10465441SEvalZero rt_set_errno(-RT_EIO);
279*10465441SEvalZero result = 0;
280*10465441SEvalZero goto __exit;
281*10465441SEvalZero }
282*10465441SEvalZero }
283*10465441SEvalZero
284*10465441SEvalZero /* initial message */
285*10465441SEvalZero message.send_buf = send_buf;
286*10465441SEvalZero message.recv_buf = recv_buf;
287*10465441SEvalZero message.length = length;
288*10465441SEvalZero message.cs_take = 1;
289*10465441SEvalZero message.cs_release = 1;
290*10465441SEvalZero message.next = RT_NULL;
291*10465441SEvalZero
292*10465441SEvalZero /* transfer message */
293*10465441SEvalZero result = device->bus->ops->xfer(device, &message);
294*10465441SEvalZero if (result == 0)
295*10465441SEvalZero {
296*10465441SEvalZero rt_set_errno(-RT_EIO);
297*10465441SEvalZero goto __exit;
298*10465441SEvalZero }
299*10465441SEvalZero }
300*10465441SEvalZero else
301*10465441SEvalZero {
302*10465441SEvalZero rt_set_errno(-RT_EIO);
303*10465441SEvalZero
304*10465441SEvalZero return 0;
305*10465441SEvalZero }
306*10465441SEvalZero
307*10465441SEvalZero __exit:
308*10465441SEvalZero rt_mutex_release(&(device->bus->lock));
309*10465441SEvalZero
310*10465441SEvalZero return result;
311*10465441SEvalZero }
312*10465441SEvalZero
rt_spi_transfer_message(struct rt_spi_device * device,struct rt_spi_message * message)313*10465441SEvalZero struct rt_spi_message *rt_spi_transfer_message(struct rt_spi_device *device,
314*10465441SEvalZero struct rt_spi_message *message)
315*10465441SEvalZero {
316*10465441SEvalZero rt_err_t result;
317*10465441SEvalZero struct rt_spi_message *index;
318*10465441SEvalZero
319*10465441SEvalZero RT_ASSERT(device != RT_NULL);
320*10465441SEvalZero
321*10465441SEvalZero /* get first message */
322*10465441SEvalZero index = message;
323*10465441SEvalZero if (index == RT_NULL)
324*10465441SEvalZero return index;
325*10465441SEvalZero
326*10465441SEvalZero result = rt_mutex_take(&(device->bus->lock), RT_WAITING_FOREVER);
327*10465441SEvalZero if (result != RT_EOK)
328*10465441SEvalZero {
329*10465441SEvalZero rt_set_errno(-RT_EBUSY);
330*10465441SEvalZero
331*10465441SEvalZero return index;
332*10465441SEvalZero }
333*10465441SEvalZero
334*10465441SEvalZero /* reset errno */
335*10465441SEvalZero rt_set_errno(RT_EOK);
336*10465441SEvalZero
337*10465441SEvalZero /* configure SPI bus */
338*10465441SEvalZero if (device->bus->owner != device)
339*10465441SEvalZero {
340*10465441SEvalZero /* not the same owner as current, re-configure SPI bus */
341*10465441SEvalZero result = device->bus->ops->configure(device, &device->config);
342*10465441SEvalZero if (result == RT_EOK)
343*10465441SEvalZero {
344*10465441SEvalZero /* set SPI bus owner */
345*10465441SEvalZero device->bus->owner = device;
346*10465441SEvalZero }
347*10465441SEvalZero else
348*10465441SEvalZero {
349*10465441SEvalZero /* configure SPI bus failed */
350*10465441SEvalZero rt_set_errno(-RT_EIO);
351*10465441SEvalZero goto __exit;
352*10465441SEvalZero }
353*10465441SEvalZero }
354*10465441SEvalZero
355*10465441SEvalZero /* transmit each SPI message */
356*10465441SEvalZero while (index != RT_NULL)
357*10465441SEvalZero {
358*10465441SEvalZero /* transmit SPI message */
359*10465441SEvalZero result = device->bus->ops->xfer(device, index);
360*10465441SEvalZero if (result == 0)
361*10465441SEvalZero {
362*10465441SEvalZero rt_set_errno(-RT_EIO);
363*10465441SEvalZero break;
364*10465441SEvalZero }
365*10465441SEvalZero
366*10465441SEvalZero index = index->next;
367*10465441SEvalZero }
368*10465441SEvalZero
369*10465441SEvalZero __exit:
370*10465441SEvalZero /* release bus lock */
371*10465441SEvalZero rt_mutex_release(&(device->bus->lock));
372*10465441SEvalZero
373*10465441SEvalZero return index;
374*10465441SEvalZero }
375*10465441SEvalZero
rt_spi_take_bus(struct rt_spi_device * device)376*10465441SEvalZero rt_err_t rt_spi_take_bus(struct rt_spi_device *device)
377*10465441SEvalZero {
378*10465441SEvalZero rt_err_t result = RT_EOK;
379*10465441SEvalZero
380*10465441SEvalZero RT_ASSERT(device != RT_NULL);
381*10465441SEvalZero RT_ASSERT(device->bus != RT_NULL);
382*10465441SEvalZero
383*10465441SEvalZero result = rt_mutex_take(&(device->bus->lock), RT_WAITING_FOREVER);
384*10465441SEvalZero if (result != RT_EOK)
385*10465441SEvalZero {
386*10465441SEvalZero rt_set_errno(-RT_EBUSY);
387*10465441SEvalZero
388*10465441SEvalZero return -RT_EBUSY;
389*10465441SEvalZero }
390*10465441SEvalZero
391*10465441SEvalZero /* reset errno */
392*10465441SEvalZero rt_set_errno(RT_EOK);
393*10465441SEvalZero
394*10465441SEvalZero /* configure SPI bus */
395*10465441SEvalZero if (device->bus->owner != device)
396*10465441SEvalZero {
397*10465441SEvalZero /* not the same owner as current, re-configure SPI bus */
398*10465441SEvalZero result = device->bus->ops->configure(device, &device->config);
399*10465441SEvalZero if (result == RT_EOK)
400*10465441SEvalZero {
401*10465441SEvalZero /* set SPI bus owner */
402*10465441SEvalZero device->bus->owner = device;
403*10465441SEvalZero }
404*10465441SEvalZero else
405*10465441SEvalZero {
406*10465441SEvalZero /* configure SPI bus failed */
407*10465441SEvalZero rt_set_errno(-RT_EIO);
408*10465441SEvalZero /* release lock */
409*10465441SEvalZero rt_mutex_release(&(device->bus->lock));
410*10465441SEvalZero
411*10465441SEvalZero return -RT_EIO;
412*10465441SEvalZero }
413*10465441SEvalZero }
414*10465441SEvalZero
415*10465441SEvalZero return result;
416*10465441SEvalZero }
417*10465441SEvalZero
rt_spi_release_bus(struct rt_spi_device * device)418*10465441SEvalZero rt_err_t rt_spi_release_bus(struct rt_spi_device *device)
419*10465441SEvalZero {
420*10465441SEvalZero RT_ASSERT(device != RT_NULL);
421*10465441SEvalZero RT_ASSERT(device->bus != RT_NULL);
422*10465441SEvalZero RT_ASSERT(device->bus->owner == device);
423*10465441SEvalZero
424*10465441SEvalZero /* release lock */
425*10465441SEvalZero rt_mutex_release(&(device->bus->lock));
426*10465441SEvalZero
427*10465441SEvalZero return RT_EOK;
428*10465441SEvalZero }
429*10465441SEvalZero
rt_spi_take(struct rt_spi_device * device)430*10465441SEvalZero rt_err_t rt_spi_take(struct rt_spi_device *device)
431*10465441SEvalZero {
432*10465441SEvalZero rt_err_t result;
433*10465441SEvalZero struct rt_spi_message message;
434*10465441SEvalZero
435*10465441SEvalZero RT_ASSERT(device != RT_NULL);
436*10465441SEvalZero RT_ASSERT(device->bus != RT_NULL);
437*10465441SEvalZero
438*10465441SEvalZero rt_memset(&message, 0, sizeof(message));
439*10465441SEvalZero message.cs_take = 1;
440*10465441SEvalZero
441*10465441SEvalZero result = device->bus->ops->xfer(device, &message);
442*10465441SEvalZero
443*10465441SEvalZero return result;
444*10465441SEvalZero }
445*10465441SEvalZero
rt_spi_release(struct rt_spi_device * device)446*10465441SEvalZero rt_err_t rt_spi_release(struct rt_spi_device *device)
447*10465441SEvalZero {
448*10465441SEvalZero rt_err_t result;
449*10465441SEvalZero struct rt_spi_message message;
450*10465441SEvalZero
451*10465441SEvalZero RT_ASSERT(device != RT_NULL);
452*10465441SEvalZero RT_ASSERT(device->bus != RT_NULL);
453*10465441SEvalZero
454*10465441SEvalZero rt_memset(&message, 0, sizeof(message));
455*10465441SEvalZero message.cs_release = 1;
456*10465441SEvalZero
457*10465441SEvalZero result = device->bus->ops->xfer(device, &message);
458*10465441SEvalZero
459*10465441SEvalZero return result;
460*10465441SEvalZero }
461