xref: /openbmc/linux/drivers/spi/spi-mem.c (revision 1ac731c529cd4d6adbce134754b51ff7d822b145)
1c36ff266SBoris Brezillon // SPDX-License-Identifier: GPL-2.0+
2c36ff266SBoris Brezillon /*
3c36ff266SBoris Brezillon  * Copyright (C) 2018 Exceet Electronics GmbH
4c36ff266SBoris Brezillon  * Copyright (C) 2018 Bootlin
5c36ff266SBoris Brezillon  *
6c36ff266SBoris Brezillon  * Author: Boris Brezillon <boris.brezillon@bootlin.com>
7c36ff266SBoris Brezillon  */
8c36ff266SBoris Brezillon #include <linux/dmaengine.h>
9c955a0ccSPatrice Chotard #include <linux/iopoll.h>
10c36ff266SBoris Brezillon #include <linux/pm_runtime.h>
11c36ff266SBoris Brezillon #include <linux/spi/spi.h>
12c36ff266SBoris Brezillon #include <linux/spi/spi-mem.h>
138868c03fSPratyush Yadav #include <linux/sched/task_stack.h>
14c36ff266SBoris Brezillon 
15c36ff266SBoris Brezillon #include "internals.h"
16c36ff266SBoris Brezillon 
17b12a084cSYogesh Narayan Gaur #define SPI_MEM_MAX_BUSWIDTH		8
1838058322SBoris Brezillon 
19c36ff266SBoris Brezillon /**
20c36ff266SBoris Brezillon  * spi_controller_dma_map_mem_op_data() - DMA-map the buffer attached to a
21c36ff266SBoris Brezillon  *					  memory operation
22c36ff266SBoris Brezillon  * @ctlr: the SPI controller requesting this dma_map()
23c36ff266SBoris Brezillon  * @op: the memory operation containing the buffer to map
24c36ff266SBoris Brezillon  * @sgt: a pointer to a non-initialized sg_table that will be filled by this
25c36ff266SBoris Brezillon  *	 function
26c36ff266SBoris Brezillon  *
27c36ff266SBoris Brezillon  * Some controllers might want to do DMA on the data buffer embedded in @op.
28c36ff266SBoris Brezillon  * This helper prepares everything for you and provides a ready-to-use
29c36ff266SBoris Brezillon  * sg_table. This function is not intended to be called from spi drivers.
30c36ff266SBoris Brezillon  * Only SPI controller drivers should use it.
31c36ff266SBoris Brezillon  * Note that the caller must ensure the memory region pointed by
32c36ff266SBoris Brezillon  * op->data.buf.{in,out} is DMA-able before calling this function.
33c36ff266SBoris Brezillon  *
34c36ff266SBoris Brezillon  * Return: 0 in case of success, a negative error code otherwise.
35c36ff266SBoris Brezillon  */
spi_controller_dma_map_mem_op_data(struct spi_controller * ctlr,const struct spi_mem_op * op,struct sg_table * sgt)36c36ff266SBoris Brezillon int spi_controller_dma_map_mem_op_data(struct spi_controller *ctlr,
37c36ff266SBoris Brezillon 				       const struct spi_mem_op *op,
38c36ff266SBoris Brezillon 				       struct sg_table *sgt)
39c36ff266SBoris Brezillon {
40c36ff266SBoris Brezillon 	struct device *dmadev;
41c36ff266SBoris Brezillon 
42c36ff266SBoris Brezillon 	if (!op->data.nbytes)
43c36ff266SBoris Brezillon 		return -EINVAL;
44c36ff266SBoris Brezillon 
45c36ff266SBoris Brezillon 	if (op->data.dir == SPI_MEM_DATA_OUT && ctlr->dma_tx)
46c36ff266SBoris Brezillon 		dmadev = ctlr->dma_tx->device->dev;
47c36ff266SBoris Brezillon 	else if (op->data.dir == SPI_MEM_DATA_IN && ctlr->dma_rx)
48c36ff266SBoris Brezillon 		dmadev = ctlr->dma_rx->device->dev;
49c36ff266SBoris Brezillon 	else
50c36ff266SBoris Brezillon 		dmadev = ctlr->dev.parent;
51c36ff266SBoris Brezillon 
52c36ff266SBoris Brezillon 	if (!dmadev)
53c36ff266SBoris Brezillon 		return -EINVAL;
54c36ff266SBoris Brezillon 
55c36ff266SBoris Brezillon 	return spi_map_buf(ctlr, dmadev, sgt, op->data.buf.in, op->data.nbytes,
56c36ff266SBoris Brezillon 			   op->data.dir == SPI_MEM_DATA_IN ?
57c36ff266SBoris Brezillon 			   DMA_FROM_DEVICE : DMA_TO_DEVICE);
58c36ff266SBoris Brezillon }
59c36ff266SBoris Brezillon EXPORT_SYMBOL_GPL(spi_controller_dma_map_mem_op_data);
60c36ff266SBoris Brezillon 
61c36ff266SBoris Brezillon /**
62c36ff266SBoris Brezillon  * spi_controller_dma_unmap_mem_op_data() - DMA-unmap the buffer attached to a
63c36ff266SBoris Brezillon  *					    memory operation
64c36ff266SBoris Brezillon  * @ctlr: the SPI controller requesting this dma_unmap()
65c36ff266SBoris Brezillon  * @op: the memory operation containing the buffer to unmap
66c36ff266SBoris Brezillon  * @sgt: a pointer to an sg_table previously initialized by
67c36ff266SBoris Brezillon  *	 spi_controller_dma_map_mem_op_data()
68c36ff266SBoris Brezillon  *
69c36ff266SBoris Brezillon  * Some controllers might want to do DMA on the data buffer embedded in @op.
70c36ff266SBoris Brezillon  * This helper prepares things so that the CPU can access the
71c36ff266SBoris Brezillon  * op->data.buf.{in,out} buffer again.
72c36ff266SBoris Brezillon  *
73c36ff266SBoris Brezillon  * This function is not intended to be called from SPI drivers. Only SPI
74c36ff266SBoris Brezillon  * controller drivers should use it.
75c36ff266SBoris Brezillon  *
76c36ff266SBoris Brezillon  * This function should be called after the DMA operation has finished and is
77c36ff266SBoris Brezillon  * only valid if the previous spi_controller_dma_map_mem_op_data() call
78c36ff266SBoris Brezillon  * returned 0.
79c36ff266SBoris Brezillon  *
80c36ff266SBoris Brezillon  * Return: 0 in case of success, a negative error code otherwise.
81c36ff266SBoris Brezillon  */
spi_controller_dma_unmap_mem_op_data(struct spi_controller * ctlr,const struct spi_mem_op * op,struct sg_table * sgt)82c36ff266SBoris Brezillon void spi_controller_dma_unmap_mem_op_data(struct spi_controller *ctlr,
83c36ff266SBoris Brezillon 					  const struct spi_mem_op *op,
84c36ff266SBoris Brezillon 					  struct sg_table *sgt)
85c36ff266SBoris Brezillon {
86c36ff266SBoris Brezillon 	struct device *dmadev;
87c36ff266SBoris Brezillon 
88c36ff266SBoris Brezillon 	if (!op->data.nbytes)
89c36ff266SBoris Brezillon 		return;
90c36ff266SBoris Brezillon 
91c36ff266SBoris Brezillon 	if (op->data.dir == SPI_MEM_DATA_OUT && ctlr->dma_tx)
92c36ff266SBoris Brezillon 		dmadev = ctlr->dma_tx->device->dev;
93c36ff266SBoris Brezillon 	else if (op->data.dir == SPI_MEM_DATA_IN && ctlr->dma_rx)
94c36ff266SBoris Brezillon 		dmadev = ctlr->dma_rx->device->dev;
95c36ff266SBoris Brezillon 	else
96c36ff266SBoris Brezillon 		dmadev = ctlr->dev.parent;
97c36ff266SBoris Brezillon 
98c36ff266SBoris Brezillon 	spi_unmap_buf(ctlr, dmadev, sgt,
99c36ff266SBoris Brezillon 		      op->data.dir == SPI_MEM_DATA_IN ?
100c36ff266SBoris Brezillon 		      DMA_FROM_DEVICE : DMA_TO_DEVICE);
101c36ff266SBoris Brezillon }
102c36ff266SBoris Brezillon EXPORT_SYMBOL_GPL(spi_controller_dma_unmap_mem_op_data);
103c36ff266SBoris Brezillon 
spi_check_buswidth_req(struct spi_mem * mem,u8 buswidth,bool tx)104c36ff266SBoris Brezillon static int spi_check_buswidth_req(struct spi_mem *mem, u8 buswidth, bool tx)
105c36ff266SBoris Brezillon {
106c36ff266SBoris Brezillon 	u32 mode = mem->spi->mode;
107c36ff266SBoris Brezillon 
108c36ff266SBoris Brezillon 	switch (buswidth) {
109c36ff266SBoris Brezillon 	case 1:
110c36ff266SBoris Brezillon 		return 0;
111c36ff266SBoris Brezillon 
112c36ff266SBoris Brezillon 	case 2:
11380300a7dSGeert Uytterhoeven 		if ((tx &&
11480300a7dSGeert Uytterhoeven 		     (mode & (SPI_TX_DUAL | SPI_TX_QUAD | SPI_TX_OCTAL))) ||
11580300a7dSGeert Uytterhoeven 		    (!tx &&
11680300a7dSGeert Uytterhoeven 		     (mode & (SPI_RX_DUAL | SPI_RX_QUAD | SPI_RX_OCTAL))))
117c36ff266SBoris Brezillon 			return 0;
118c36ff266SBoris Brezillon 
119c36ff266SBoris Brezillon 		break;
120c36ff266SBoris Brezillon 
121c36ff266SBoris Brezillon 	case 4:
12280300a7dSGeert Uytterhoeven 		if ((tx && (mode & (SPI_TX_QUAD | SPI_TX_OCTAL))) ||
12380300a7dSGeert Uytterhoeven 		    (!tx && (mode & (SPI_RX_QUAD | SPI_RX_OCTAL))))
124c36ff266SBoris Brezillon 			return 0;
125c36ff266SBoris Brezillon 
126c36ff266SBoris Brezillon 		break;
127c36ff266SBoris Brezillon 
128b12a084cSYogesh Narayan Gaur 	case 8:
129b12a084cSYogesh Narayan Gaur 		if ((tx && (mode & SPI_TX_OCTAL)) ||
130b12a084cSYogesh Narayan Gaur 		    (!tx && (mode & SPI_RX_OCTAL)))
131b12a084cSYogesh Narayan Gaur 			return 0;
132b12a084cSYogesh Narayan Gaur 
133b12a084cSYogesh Narayan Gaur 		break;
134b12a084cSYogesh Narayan Gaur 
135c36ff266SBoris Brezillon 	default:
136c36ff266SBoris Brezillon 		break;
137c36ff266SBoris Brezillon 	}
138c36ff266SBoris Brezillon 
139c36ff266SBoris Brezillon 	return -ENOTSUPP;
140c36ff266SBoris Brezillon }
141c36ff266SBoris Brezillon 
spi_mem_check_buswidth(struct spi_mem * mem,const struct spi_mem_op * op)142539cf68cSPratyush Yadav static bool spi_mem_check_buswidth(struct spi_mem *mem,
143c36ff266SBoris Brezillon 				   const struct spi_mem_op *op)
144c36ff266SBoris Brezillon {
145c36ff266SBoris Brezillon 	if (spi_check_buswidth_req(mem, op->cmd.buswidth, true))
146c36ff266SBoris Brezillon 		return false;
147c36ff266SBoris Brezillon 
148c36ff266SBoris Brezillon 	if (op->addr.nbytes &&
149c36ff266SBoris Brezillon 	    spi_check_buswidth_req(mem, op->addr.buswidth, true))
150c36ff266SBoris Brezillon 		return false;
151c36ff266SBoris Brezillon 
152c36ff266SBoris Brezillon 	if (op->dummy.nbytes &&
153c36ff266SBoris Brezillon 	    spi_check_buswidth_req(mem, op->dummy.buswidth, true))
154c36ff266SBoris Brezillon 		return false;
155c36ff266SBoris Brezillon 
1560ebb261aSBoris Brezillon 	if (op->data.dir != SPI_MEM_NO_DATA &&
157c36ff266SBoris Brezillon 	    spi_check_buswidth_req(mem, op->data.buswidth,
158c36ff266SBoris Brezillon 				   op->data.dir == SPI_MEM_DATA_OUT))
159c36ff266SBoris Brezillon 		return false;
160c36ff266SBoris Brezillon 
161539cf68cSPratyush Yadav 	return true;
162539cf68cSPratyush Yadav }
163539cf68cSPratyush Yadav 
spi_mem_default_supports_op(struct spi_mem * mem,const struct spi_mem_op * op)164539cf68cSPratyush Yadav bool spi_mem_default_supports_op(struct spi_mem *mem,
165539cf68cSPratyush Yadav 				 const struct spi_mem_op *op)
166539cf68cSPratyush Yadav {
167cb7e96eeSMiquel Raynal 	struct spi_controller *ctlr = mem->spi->controller;
168cb7e96eeSMiquel Raynal 	bool op_is_dtr =
169cb7e96eeSMiquel Raynal 		op->cmd.dtr || op->addr.dtr || op->dummy.dtr || op->data.dtr;
170cb7e96eeSMiquel Raynal 
171cb7e96eeSMiquel Raynal 	if (op_is_dtr) {
172cb7e96eeSMiquel Raynal 		if (!spi_mem_controller_is_capable(ctlr, dtr))
1734c5e2bbaSPratyush Yadav 			return false;
1744c5e2bbaSPratyush Yadav 
175cb7e96eeSMiquel Raynal 		if (op->cmd.nbytes != 2)
176cb7e96eeSMiquel Raynal 			return false;
177cb7e96eeSMiquel Raynal 	} else {
178caf72df4SPratyush Yadav 		if (op->cmd.nbytes != 1)
179caf72df4SPratyush Yadav 			return false;
180cb7e96eeSMiquel Raynal 	}
181caf72df4SPratyush Yadav 
182a433c2cbSMiquel Raynal 	if (op->data.ecc) {
183a433c2cbSMiquel Raynal 		if (!spi_mem_controller_is_capable(ctlr, ecc))
184a433c2cbSMiquel Raynal 			return false;
185a433c2cbSMiquel Raynal 	}
186c36ff266SBoris Brezillon 
187539cf68cSPratyush Yadav 	return spi_mem_check_buswidth(mem, op);
188c36ff266SBoris Brezillon }
189c36ff266SBoris Brezillon EXPORT_SYMBOL_GPL(spi_mem_default_supports_op);
190c36ff266SBoris Brezillon 
spi_mem_buswidth_is_valid(u8 buswidth)19138058322SBoris Brezillon static bool spi_mem_buswidth_is_valid(u8 buswidth)
19238058322SBoris Brezillon {
19338058322SBoris Brezillon 	if (hweight8(buswidth) > 1 || buswidth > SPI_MEM_MAX_BUSWIDTH)
19438058322SBoris Brezillon 		return false;
19538058322SBoris Brezillon 
19638058322SBoris Brezillon 	return true;
19738058322SBoris Brezillon }
19838058322SBoris Brezillon 
spi_mem_check_op(const struct spi_mem_op * op)19938058322SBoris Brezillon static int spi_mem_check_op(const struct spi_mem_op *op)
20038058322SBoris Brezillon {
201caf72df4SPratyush Yadav 	if (!op->cmd.buswidth || !op->cmd.nbytes)
20238058322SBoris Brezillon 		return -EINVAL;
20338058322SBoris Brezillon 
20438058322SBoris Brezillon 	if ((op->addr.nbytes && !op->addr.buswidth) ||
20538058322SBoris Brezillon 	    (op->dummy.nbytes && !op->dummy.buswidth) ||
20638058322SBoris Brezillon 	    (op->data.nbytes && !op->data.buswidth))
20738058322SBoris Brezillon 		return -EINVAL;
20838058322SBoris Brezillon 
209aea3877eSGeert Uytterhoeven 	if (!spi_mem_buswidth_is_valid(op->cmd.buswidth) ||
210aea3877eSGeert Uytterhoeven 	    !spi_mem_buswidth_is_valid(op->addr.buswidth) ||
211aea3877eSGeert Uytterhoeven 	    !spi_mem_buswidth_is_valid(op->dummy.buswidth) ||
212aea3877eSGeert Uytterhoeven 	    !spi_mem_buswidth_is_valid(op->data.buswidth))
21338058322SBoris Brezillon 		return -EINVAL;
21438058322SBoris Brezillon 
2158868c03fSPratyush Yadav 	/* Buffers must be DMA-able. */
2168868c03fSPratyush Yadav 	if (WARN_ON_ONCE(op->data.dir == SPI_MEM_DATA_IN &&
2178868c03fSPratyush Yadav 			 object_is_on_stack(op->data.buf.in)))
2188868c03fSPratyush Yadav 		return -EINVAL;
2198868c03fSPratyush Yadav 
2208868c03fSPratyush Yadav 	if (WARN_ON_ONCE(op->data.dir == SPI_MEM_DATA_OUT &&
2218868c03fSPratyush Yadav 			 object_is_on_stack(op->data.buf.out)))
2228868c03fSPratyush Yadav 		return -EINVAL;
2238868c03fSPratyush Yadav 
22438058322SBoris Brezillon 	return 0;
22538058322SBoris Brezillon }
22638058322SBoris Brezillon 
spi_mem_internal_supports_op(struct spi_mem * mem,const struct spi_mem_op * op)22738058322SBoris Brezillon static bool spi_mem_internal_supports_op(struct spi_mem *mem,
22838058322SBoris Brezillon 					 const struct spi_mem_op *op)
22938058322SBoris Brezillon {
23038058322SBoris Brezillon 	struct spi_controller *ctlr = mem->spi->controller;
23138058322SBoris Brezillon 
23238058322SBoris Brezillon 	if (ctlr->mem_ops && ctlr->mem_ops->supports_op)
23338058322SBoris Brezillon 		return ctlr->mem_ops->supports_op(mem, op);
23438058322SBoris Brezillon 
23538058322SBoris Brezillon 	return spi_mem_default_supports_op(mem, op);
23638058322SBoris Brezillon }
23738058322SBoris Brezillon 
238c36ff266SBoris Brezillon /**
239c36ff266SBoris Brezillon  * spi_mem_supports_op() - Check if a memory device and the controller it is
240c36ff266SBoris Brezillon  *			   connected to support a specific memory operation
241c36ff266SBoris Brezillon  * @mem: the SPI memory
242c36ff266SBoris Brezillon  * @op: the memory operation to check
243c36ff266SBoris Brezillon  *
244c36ff266SBoris Brezillon  * Some controllers are only supporting Single or Dual IOs, others might only
245c36ff266SBoris Brezillon  * support specific opcodes, or it can even be that the controller and device
246c36ff266SBoris Brezillon  * both support Quad IOs but the hardware prevents you from using it because
247c36ff266SBoris Brezillon  * only 2 IO lines are connected.
248c36ff266SBoris Brezillon  *
249c36ff266SBoris Brezillon  * This function checks whether a specific operation is supported.
250c36ff266SBoris Brezillon  *
251c36ff266SBoris Brezillon  * Return: true if @op is supported, false otherwise.
252c36ff266SBoris Brezillon  */
spi_mem_supports_op(struct spi_mem * mem,const struct spi_mem_op * op)253c36ff266SBoris Brezillon bool spi_mem_supports_op(struct spi_mem *mem, const struct spi_mem_op *op)
254c36ff266SBoris Brezillon {
25538058322SBoris Brezillon 	if (spi_mem_check_op(op))
25638058322SBoris Brezillon 		return false;
257c36ff266SBoris Brezillon 
25838058322SBoris Brezillon 	return spi_mem_internal_supports_op(mem, op);
259c36ff266SBoris Brezillon }
260c36ff266SBoris Brezillon EXPORT_SYMBOL_GPL(spi_mem_supports_op);
261c36ff266SBoris Brezillon 
spi_mem_access_start(struct spi_mem * mem)262f86c24f4SBoris Brezillon static int spi_mem_access_start(struct spi_mem *mem)
263f86c24f4SBoris Brezillon {
264f86c24f4SBoris Brezillon 	struct spi_controller *ctlr = mem->spi->controller;
265f86c24f4SBoris Brezillon 
266f86c24f4SBoris Brezillon 	/*
267f86c24f4SBoris Brezillon 	 * Flush the message queue before executing our SPI memory
268f86c24f4SBoris Brezillon 	 * operation to prevent preemption of regular SPI transfers.
269f86c24f4SBoris Brezillon 	 */
270f86c24f4SBoris Brezillon 	spi_flush_queue(ctlr);
271f86c24f4SBoris Brezillon 
272f86c24f4SBoris Brezillon 	if (ctlr->auto_runtime_pm) {
273f86c24f4SBoris Brezillon 		int ret;
274f86c24f4SBoris Brezillon 
2753a2ac580SMinghao Chi 		ret = pm_runtime_resume_and_get(ctlr->dev.parent);
276f86c24f4SBoris Brezillon 		if (ret < 0) {
277f86c24f4SBoris Brezillon 			dev_err(&ctlr->dev, "Failed to power device: %d\n",
278f86c24f4SBoris Brezillon 				ret);
279f86c24f4SBoris Brezillon 			return ret;
280f86c24f4SBoris Brezillon 		}
281f86c24f4SBoris Brezillon 	}
282f86c24f4SBoris Brezillon 
283f86c24f4SBoris Brezillon 	mutex_lock(&ctlr->bus_lock_mutex);
284f86c24f4SBoris Brezillon 	mutex_lock(&ctlr->io_mutex);
285f86c24f4SBoris Brezillon 
286f86c24f4SBoris Brezillon 	return 0;
287f86c24f4SBoris Brezillon }
288f86c24f4SBoris Brezillon 
spi_mem_access_end(struct spi_mem * mem)289f86c24f4SBoris Brezillon static void spi_mem_access_end(struct spi_mem *mem)
290f86c24f4SBoris Brezillon {
291f86c24f4SBoris Brezillon 	struct spi_controller *ctlr = mem->spi->controller;
292f86c24f4SBoris Brezillon 
293f86c24f4SBoris Brezillon 	mutex_unlock(&ctlr->io_mutex);
294f86c24f4SBoris Brezillon 	mutex_unlock(&ctlr->bus_lock_mutex);
295f86c24f4SBoris Brezillon 
296f86c24f4SBoris Brezillon 	if (ctlr->auto_runtime_pm)
297f86c24f4SBoris Brezillon 		pm_runtime_put(ctlr->dev.parent);
298f86c24f4SBoris Brezillon }
299f86c24f4SBoris Brezillon 
300c36ff266SBoris Brezillon /**
301c36ff266SBoris Brezillon  * spi_mem_exec_op() - Execute a memory operation
302c36ff266SBoris Brezillon  * @mem: the SPI memory
303c36ff266SBoris Brezillon  * @op: the memory operation to execute
304c36ff266SBoris Brezillon  *
305c36ff266SBoris Brezillon  * Executes a memory operation.
306c36ff266SBoris Brezillon  *
307c36ff266SBoris Brezillon  * This function first checks that @op is supported and then tries to execute
308c36ff266SBoris Brezillon  * it.
309c36ff266SBoris Brezillon  *
310c36ff266SBoris Brezillon  * Return: 0 in case of success, a negative error code otherwise.
311c36ff266SBoris Brezillon  */
spi_mem_exec_op(struct spi_mem * mem,const struct spi_mem_op * op)312c36ff266SBoris Brezillon int spi_mem_exec_op(struct spi_mem *mem, const struct spi_mem_op *op)
313c36ff266SBoris Brezillon {
314c36ff266SBoris Brezillon 	unsigned int tmpbufsize, xferpos = 0, totalxferlen = 0;
315c36ff266SBoris Brezillon 	struct spi_controller *ctlr = mem->spi->controller;
316c36ff266SBoris Brezillon 	struct spi_transfer xfers[4] = { };
317c36ff266SBoris Brezillon 	struct spi_message msg;
318c36ff266SBoris Brezillon 	u8 *tmpbuf;
319c36ff266SBoris Brezillon 	int ret;
320c36ff266SBoris Brezillon 
32138058322SBoris Brezillon 	ret = spi_mem_check_op(op);
32238058322SBoris Brezillon 	if (ret)
32338058322SBoris Brezillon 		return ret;
32438058322SBoris Brezillon 
32538058322SBoris Brezillon 	if (!spi_mem_internal_supports_op(mem, op))
326c36ff266SBoris Brezillon 		return -ENOTSUPP;
327c36ff266SBoris Brezillon 
328*9e264f3fSAmit Kumar Mahapatra via Alsa-devel 	if (ctlr->mem_ops && ctlr->mem_ops->exec_op && !spi_get_csgpiod(mem->spi, 0)) {
329f86c24f4SBoris Brezillon 		ret = spi_mem_access_start(mem);
330f86c24f4SBoris Brezillon 		if (ret)
331c36ff266SBoris Brezillon 			return ret;
332c36ff266SBoris Brezillon 
333c36ff266SBoris Brezillon 		ret = ctlr->mem_ops->exec_op(mem, op);
334c36ff266SBoris Brezillon 
335f86c24f4SBoris Brezillon 		spi_mem_access_end(mem);
336c36ff266SBoris Brezillon 
337c36ff266SBoris Brezillon 		/*
338c36ff266SBoris Brezillon 		 * Some controllers only optimize specific paths (typically the
339c36ff266SBoris Brezillon 		 * read path) and expect the core to use the regular SPI
340c36ff266SBoris Brezillon 		 * interface in other cases.
341c36ff266SBoris Brezillon 		 */
342c36ff266SBoris Brezillon 		if (!ret || ret != -ENOTSUPP)
343c36ff266SBoris Brezillon 			return ret;
344c36ff266SBoris Brezillon 	}
345c36ff266SBoris Brezillon 
346caf72df4SPratyush Yadav 	tmpbufsize = op->cmd.nbytes + op->addr.nbytes + op->dummy.nbytes;
347c36ff266SBoris Brezillon 
348c36ff266SBoris Brezillon 	/*
349c36ff266SBoris Brezillon 	 * Allocate a buffer to transmit the CMD, ADDR cycles with kmalloc() so
350c36ff266SBoris Brezillon 	 * we're guaranteed that this buffer is DMA-able, as required by the
351c36ff266SBoris Brezillon 	 * SPI layer.
352c36ff266SBoris Brezillon 	 */
353c36ff266SBoris Brezillon 	tmpbuf = kzalloc(tmpbufsize, GFP_KERNEL | GFP_DMA);
354c36ff266SBoris Brezillon 	if (!tmpbuf)
355c36ff266SBoris Brezillon 		return -ENOMEM;
356c36ff266SBoris Brezillon 
357c36ff266SBoris Brezillon 	spi_message_init(&msg);
358c36ff266SBoris Brezillon 
359c36ff266SBoris Brezillon 	tmpbuf[0] = op->cmd.opcode;
360c36ff266SBoris Brezillon 	xfers[xferpos].tx_buf = tmpbuf;
361caf72df4SPratyush Yadav 	xfers[xferpos].len = op->cmd.nbytes;
362c36ff266SBoris Brezillon 	xfers[xferpos].tx_nbits = op->cmd.buswidth;
363c36ff266SBoris Brezillon 	spi_message_add_tail(&xfers[xferpos], &msg);
364c36ff266SBoris Brezillon 	xferpos++;
365c36ff266SBoris Brezillon 	totalxferlen++;
366c36ff266SBoris Brezillon 
367c36ff266SBoris Brezillon 	if (op->addr.nbytes) {
368c36ff266SBoris Brezillon 		int i;
369c36ff266SBoris Brezillon 
370c36ff266SBoris Brezillon 		for (i = 0; i < op->addr.nbytes; i++)
371c36ff266SBoris Brezillon 			tmpbuf[i + 1] = op->addr.val >>
372c36ff266SBoris Brezillon 					(8 * (op->addr.nbytes - i - 1));
373c36ff266SBoris Brezillon 
374c36ff266SBoris Brezillon 		xfers[xferpos].tx_buf = tmpbuf + 1;
375c36ff266SBoris Brezillon 		xfers[xferpos].len = op->addr.nbytes;
376c36ff266SBoris Brezillon 		xfers[xferpos].tx_nbits = op->addr.buswidth;
377c36ff266SBoris Brezillon 		spi_message_add_tail(&xfers[xferpos], &msg);
378c36ff266SBoris Brezillon 		xferpos++;
379c36ff266SBoris Brezillon 		totalxferlen += op->addr.nbytes;
380c36ff266SBoris Brezillon 	}
381c36ff266SBoris Brezillon 
382c36ff266SBoris Brezillon 	if (op->dummy.nbytes) {
383c36ff266SBoris Brezillon 		memset(tmpbuf + op->addr.nbytes + 1, 0xff, op->dummy.nbytes);
384c36ff266SBoris Brezillon 		xfers[xferpos].tx_buf = tmpbuf + op->addr.nbytes + 1;
385c36ff266SBoris Brezillon 		xfers[xferpos].len = op->dummy.nbytes;
386c36ff266SBoris Brezillon 		xfers[xferpos].tx_nbits = op->dummy.buswidth;
38798621ed0SSowjanya Komatineni 		xfers[xferpos].dummy_data = 1;
388c36ff266SBoris Brezillon 		spi_message_add_tail(&xfers[xferpos], &msg);
389c36ff266SBoris Brezillon 		xferpos++;
390c36ff266SBoris Brezillon 		totalxferlen += op->dummy.nbytes;
391c36ff266SBoris Brezillon 	}
392c36ff266SBoris Brezillon 
393c36ff266SBoris Brezillon 	if (op->data.nbytes) {
394c36ff266SBoris Brezillon 		if (op->data.dir == SPI_MEM_DATA_IN) {
395c36ff266SBoris Brezillon 			xfers[xferpos].rx_buf = op->data.buf.in;
396c36ff266SBoris Brezillon 			xfers[xferpos].rx_nbits = op->data.buswidth;
397c36ff266SBoris Brezillon 		} else {
398c36ff266SBoris Brezillon 			xfers[xferpos].tx_buf = op->data.buf.out;
399c36ff266SBoris Brezillon 			xfers[xferpos].tx_nbits = op->data.buswidth;
400c36ff266SBoris Brezillon 		}
401c36ff266SBoris Brezillon 
402c36ff266SBoris Brezillon 		xfers[xferpos].len = op->data.nbytes;
403c36ff266SBoris Brezillon 		spi_message_add_tail(&xfers[xferpos], &msg);
404c36ff266SBoris Brezillon 		xferpos++;
405c36ff266SBoris Brezillon 		totalxferlen += op->data.nbytes;
406c36ff266SBoris Brezillon 	}
407c36ff266SBoris Brezillon 
408c36ff266SBoris Brezillon 	ret = spi_sync(mem->spi, &msg);
409c36ff266SBoris Brezillon 
410c36ff266SBoris Brezillon 	kfree(tmpbuf);
411c36ff266SBoris Brezillon 
412c36ff266SBoris Brezillon 	if (ret)
413c36ff266SBoris Brezillon 		return ret;
414c36ff266SBoris Brezillon 
415c36ff266SBoris Brezillon 	if (msg.actual_length != totalxferlen)
416c36ff266SBoris Brezillon 		return -EIO;
417c36ff266SBoris Brezillon 
418c36ff266SBoris Brezillon 	return 0;
419c36ff266SBoris Brezillon }
420c36ff266SBoris Brezillon EXPORT_SYMBOL_GPL(spi_mem_exec_op);
421c36ff266SBoris Brezillon 
422c36ff266SBoris Brezillon /**
4235d27a9c8SFrieder Schrempf  * spi_mem_get_name() - Return the SPI mem device name to be used by the
4245d27a9c8SFrieder Schrempf  *			upper layer if necessary
4255d27a9c8SFrieder Schrempf  * @mem: the SPI memory
4265d27a9c8SFrieder Schrempf  *
4275d27a9c8SFrieder Schrempf  * This function allows SPI mem users to retrieve the SPI mem device name.
4285d27a9c8SFrieder Schrempf  * It is useful if the upper layer needs to expose a custom name for
4295d27a9c8SFrieder Schrempf  * compatibility reasons.
4305d27a9c8SFrieder Schrempf  *
4315d27a9c8SFrieder Schrempf  * Return: a string containing the name of the memory device to be used
4325d27a9c8SFrieder Schrempf  *	   by the SPI mem user
4335d27a9c8SFrieder Schrempf  */
spi_mem_get_name(struct spi_mem * mem)4345d27a9c8SFrieder Schrempf const char *spi_mem_get_name(struct spi_mem *mem)
4355d27a9c8SFrieder Schrempf {
4365d27a9c8SFrieder Schrempf 	return mem->name;
4375d27a9c8SFrieder Schrempf }
4385d27a9c8SFrieder Schrempf EXPORT_SYMBOL_GPL(spi_mem_get_name);
4395d27a9c8SFrieder Schrempf 
4405d27a9c8SFrieder Schrempf /**
441c36ff266SBoris Brezillon  * spi_mem_adjust_op_size() - Adjust the data size of a SPI mem operation to
442c36ff266SBoris Brezillon  *			      match controller limitations
443c36ff266SBoris Brezillon  * @mem: the SPI memory
444c36ff266SBoris Brezillon  * @op: the operation to adjust
445c36ff266SBoris Brezillon  *
446c36ff266SBoris Brezillon  * Some controllers have FIFO limitations and must split a data transfer
447c36ff266SBoris Brezillon  * operation into multiple ones, others require a specific alignment for
448c36ff266SBoris Brezillon  * optimized accesses. This function allows SPI mem drivers to split a single
449c36ff266SBoris Brezillon  * operation into multiple sub-operations when required.
450c36ff266SBoris Brezillon  *
451c36ff266SBoris Brezillon  * Return: a negative error code if the controller can't properly adjust @op,
452c36ff266SBoris Brezillon  *	   0 otherwise. Note that @op->data.nbytes will be updated if @op
453c36ff266SBoris Brezillon  *	   can't be handled in a single step.
454c36ff266SBoris Brezillon  */
spi_mem_adjust_op_size(struct spi_mem * mem,struct spi_mem_op * op)455c36ff266SBoris Brezillon int spi_mem_adjust_op_size(struct spi_mem *mem, struct spi_mem_op *op)
456c36ff266SBoris Brezillon {
457c36ff266SBoris Brezillon 	struct spi_controller *ctlr = mem->spi->controller;
458e757996cSChuanhua Han 	size_t len;
459e757996cSChuanhua Han 
460c36ff266SBoris Brezillon 	if (ctlr->mem_ops && ctlr->mem_ops->adjust_op_size)
461c36ff266SBoris Brezillon 		return ctlr->mem_ops->adjust_op_size(mem, op);
462c36ff266SBoris Brezillon 
463e757996cSChuanhua Han 	if (!ctlr->mem_ops || !ctlr->mem_ops->exec_op) {
464caf72df4SPratyush Yadav 		len = op->cmd.nbytes + op->addr.nbytes + op->dummy.nbytes;
465c0e035acSTudor Ambarus 
466e757996cSChuanhua Han 		if (len > spi_max_transfer_size(mem->spi))
467e757996cSChuanhua Han 			return -EINVAL;
468e757996cSChuanhua Han 
469e757996cSChuanhua Han 		op->data.nbytes = min3((size_t)op->data.nbytes,
470e757996cSChuanhua Han 				       spi_max_transfer_size(mem->spi),
471e757996cSChuanhua Han 				       spi_max_message_size(mem->spi) -
472e757996cSChuanhua Han 				       len);
473e757996cSChuanhua Han 		if (!op->data.nbytes)
474e757996cSChuanhua Han 			return -EINVAL;
475e757996cSChuanhua Han 	}
476e757996cSChuanhua Han 
477c36ff266SBoris Brezillon 	return 0;
478c36ff266SBoris Brezillon }
479c36ff266SBoris Brezillon EXPORT_SYMBOL_GPL(spi_mem_adjust_op_size);
480c36ff266SBoris Brezillon 
spi_mem_no_dirmap_read(struct spi_mem_dirmap_desc * desc,u64 offs,size_t len,void * buf)481aa167f3fSBoris Brezillon static ssize_t spi_mem_no_dirmap_read(struct spi_mem_dirmap_desc *desc,
482aa167f3fSBoris Brezillon 				      u64 offs, size_t len, void *buf)
483aa167f3fSBoris Brezillon {
484aa167f3fSBoris Brezillon 	struct spi_mem_op op = desc->info.op_tmpl;
485aa167f3fSBoris Brezillon 	int ret;
486aa167f3fSBoris Brezillon 
487aa167f3fSBoris Brezillon 	op.addr.val = desc->info.offset + offs;
488aa167f3fSBoris Brezillon 	op.data.buf.in = buf;
489aa167f3fSBoris Brezillon 	op.data.nbytes = len;
490aa167f3fSBoris Brezillon 	ret = spi_mem_adjust_op_size(desc->mem, &op);
491aa167f3fSBoris Brezillon 	if (ret)
492aa167f3fSBoris Brezillon 		return ret;
493aa167f3fSBoris Brezillon 
494aa167f3fSBoris Brezillon 	ret = spi_mem_exec_op(desc->mem, &op);
495aa167f3fSBoris Brezillon 	if (ret)
496aa167f3fSBoris Brezillon 		return ret;
497aa167f3fSBoris Brezillon 
498aa167f3fSBoris Brezillon 	return op.data.nbytes;
499aa167f3fSBoris Brezillon }
500aa167f3fSBoris Brezillon 
spi_mem_no_dirmap_write(struct spi_mem_dirmap_desc * desc,u64 offs,size_t len,const void * buf)501aa167f3fSBoris Brezillon static ssize_t spi_mem_no_dirmap_write(struct spi_mem_dirmap_desc *desc,
502aa167f3fSBoris Brezillon 				       u64 offs, size_t len, const void *buf)
503aa167f3fSBoris Brezillon {
504aa167f3fSBoris Brezillon 	struct spi_mem_op op = desc->info.op_tmpl;
505aa167f3fSBoris Brezillon 	int ret;
506aa167f3fSBoris Brezillon 
507aa167f3fSBoris Brezillon 	op.addr.val = desc->info.offset + offs;
508aa167f3fSBoris Brezillon 	op.data.buf.out = buf;
509aa167f3fSBoris Brezillon 	op.data.nbytes = len;
510aa167f3fSBoris Brezillon 	ret = spi_mem_adjust_op_size(desc->mem, &op);
511aa167f3fSBoris Brezillon 	if (ret)
512aa167f3fSBoris Brezillon 		return ret;
513aa167f3fSBoris Brezillon 
514aa167f3fSBoris Brezillon 	ret = spi_mem_exec_op(desc->mem, &op);
515aa167f3fSBoris Brezillon 	if (ret)
516aa167f3fSBoris Brezillon 		return ret;
517aa167f3fSBoris Brezillon 
518aa167f3fSBoris Brezillon 	return op.data.nbytes;
519aa167f3fSBoris Brezillon }
520aa167f3fSBoris Brezillon 
521aa167f3fSBoris Brezillon /**
522aa167f3fSBoris Brezillon  * spi_mem_dirmap_create() - Create a direct mapping descriptor
523aa167f3fSBoris Brezillon  * @mem: SPI mem device this direct mapping should be created for
524aa167f3fSBoris Brezillon  * @info: direct mapping information
525aa167f3fSBoris Brezillon  *
526aa167f3fSBoris Brezillon  * This function is creating a direct mapping descriptor which can then be used
527aa167f3fSBoris Brezillon  * to access the memory using spi_mem_dirmap_read() or spi_mem_dirmap_write().
528aa167f3fSBoris Brezillon  * If the SPI controller driver does not support direct mapping, this function
52932a9d054STudor Ambarus  * falls back to an implementation using spi_mem_exec_op(), so that the caller
530aa167f3fSBoris Brezillon  * doesn't have to bother implementing a fallback on his own.
531aa167f3fSBoris Brezillon  *
532aa167f3fSBoris Brezillon  * Return: a valid pointer in case of success, and ERR_PTR() otherwise.
533aa167f3fSBoris Brezillon  */
534aa167f3fSBoris Brezillon struct spi_mem_dirmap_desc *
spi_mem_dirmap_create(struct spi_mem * mem,const struct spi_mem_dirmap_info * info)535aa167f3fSBoris Brezillon spi_mem_dirmap_create(struct spi_mem *mem,
536aa167f3fSBoris Brezillon 		      const struct spi_mem_dirmap_info *info)
537aa167f3fSBoris Brezillon {
538aa167f3fSBoris Brezillon 	struct spi_controller *ctlr = mem->spi->controller;
539aa167f3fSBoris Brezillon 	struct spi_mem_dirmap_desc *desc;
540aa167f3fSBoris Brezillon 	int ret = -ENOTSUPP;
541aa167f3fSBoris Brezillon 
542aa167f3fSBoris Brezillon 	/* Make sure the number of address cycles is between 1 and 8 bytes. */
543aa167f3fSBoris Brezillon 	if (!info->op_tmpl.addr.nbytes || info->op_tmpl.addr.nbytes > 8)
544aa167f3fSBoris Brezillon 		return ERR_PTR(-EINVAL);
545aa167f3fSBoris Brezillon 
546aa167f3fSBoris Brezillon 	/* data.dir should either be SPI_MEM_DATA_IN or SPI_MEM_DATA_OUT. */
547aa167f3fSBoris Brezillon 	if (info->op_tmpl.data.dir == SPI_MEM_NO_DATA)
548aa167f3fSBoris Brezillon 		return ERR_PTR(-EINVAL);
549aa167f3fSBoris Brezillon 
550aa167f3fSBoris Brezillon 	desc = kzalloc(sizeof(*desc), GFP_KERNEL);
551aa167f3fSBoris Brezillon 	if (!desc)
552aa167f3fSBoris Brezillon 		return ERR_PTR(-ENOMEM);
553aa167f3fSBoris Brezillon 
554aa167f3fSBoris Brezillon 	desc->mem = mem;
555aa167f3fSBoris Brezillon 	desc->info = *info;
556aa167f3fSBoris Brezillon 	if (ctlr->mem_ops && ctlr->mem_ops->dirmap_create)
557aa167f3fSBoris Brezillon 		ret = ctlr->mem_ops->dirmap_create(desc);
558aa167f3fSBoris Brezillon 
559aa167f3fSBoris Brezillon 	if (ret) {
560aa167f3fSBoris Brezillon 		desc->nodirmap = true;
561aa167f3fSBoris Brezillon 		if (!spi_mem_supports_op(desc->mem, &desc->info.op_tmpl))
562aa167f3fSBoris Brezillon 			ret = -ENOTSUPP;
563aa167f3fSBoris Brezillon 		else
564aa167f3fSBoris Brezillon 			ret = 0;
565aa167f3fSBoris Brezillon 	}
566aa167f3fSBoris Brezillon 
567aa167f3fSBoris Brezillon 	if (ret) {
568aa167f3fSBoris Brezillon 		kfree(desc);
569aa167f3fSBoris Brezillon 		return ERR_PTR(ret);
570aa167f3fSBoris Brezillon 	}
571aa167f3fSBoris Brezillon 
572aa167f3fSBoris Brezillon 	return desc;
573aa167f3fSBoris Brezillon }
574aa167f3fSBoris Brezillon EXPORT_SYMBOL_GPL(spi_mem_dirmap_create);
575aa167f3fSBoris Brezillon 
576aa167f3fSBoris Brezillon /**
577aa167f3fSBoris Brezillon  * spi_mem_dirmap_destroy() - Destroy a direct mapping descriptor
578aa167f3fSBoris Brezillon  * @desc: the direct mapping descriptor to destroy
579aa167f3fSBoris Brezillon  *
580aa167f3fSBoris Brezillon  * This function destroys a direct mapping descriptor previously created by
581aa167f3fSBoris Brezillon  * spi_mem_dirmap_create().
582aa167f3fSBoris Brezillon  */
spi_mem_dirmap_destroy(struct spi_mem_dirmap_desc * desc)583aa167f3fSBoris Brezillon void spi_mem_dirmap_destroy(struct spi_mem_dirmap_desc *desc)
584aa167f3fSBoris Brezillon {
585aa167f3fSBoris Brezillon 	struct spi_controller *ctlr = desc->mem->spi->controller;
586aa167f3fSBoris Brezillon 
587aa167f3fSBoris Brezillon 	if (!desc->nodirmap && ctlr->mem_ops && ctlr->mem_ops->dirmap_destroy)
588aa167f3fSBoris Brezillon 		ctlr->mem_ops->dirmap_destroy(desc);
589bfecfd6eSBoris Brezillon 
590bfecfd6eSBoris Brezillon 	kfree(desc);
591aa167f3fSBoris Brezillon }
592aa167f3fSBoris Brezillon EXPORT_SYMBOL_GPL(spi_mem_dirmap_destroy);
593aa167f3fSBoris Brezillon 
devm_spi_mem_dirmap_release(struct device * dev,void * res)5941fc1b636SBoris Brezillon static void devm_spi_mem_dirmap_release(struct device *dev, void *res)
5951fc1b636SBoris Brezillon {
5961fc1b636SBoris Brezillon 	struct spi_mem_dirmap_desc *desc = *(struct spi_mem_dirmap_desc **)res;
5971fc1b636SBoris Brezillon 
5981fc1b636SBoris Brezillon 	spi_mem_dirmap_destroy(desc);
5991fc1b636SBoris Brezillon }
6001fc1b636SBoris Brezillon 
6011fc1b636SBoris Brezillon /**
6021fc1b636SBoris Brezillon  * devm_spi_mem_dirmap_create() - Create a direct mapping descriptor and attach
6031fc1b636SBoris Brezillon  *				  it to a device
6041fc1b636SBoris Brezillon  * @dev: device the dirmap desc will be attached to
6051fc1b636SBoris Brezillon  * @mem: SPI mem device this direct mapping should be created for
6061fc1b636SBoris Brezillon  * @info: direct mapping information
6071fc1b636SBoris Brezillon  *
6081fc1b636SBoris Brezillon  * devm_ variant of the spi_mem_dirmap_create() function. See
6091fc1b636SBoris Brezillon  * spi_mem_dirmap_create() for more details.
6101fc1b636SBoris Brezillon  *
6111fc1b636SBoris Brezillon  * Return: a valid pointer in case of success, and ERR_PTR() otherwise.
6121fc1b636SBoris Brezillon  */
6131fc1b636SBoris Brezillon struct spi_mem_dirmap_desc *
devm_spi_mem_dirmap_create(struct device * dev,struct spi_mem * mem,const struct spi_mem_dirmap_info * info)6141fc1b636SBoris Brezillon devm_spi_mem_dirmap_create(struct device *dev, struct spi_mem *mem,
6151fc1b636SBoris Brezillon 			   const struct spi_mem_dirmap_info *info)
6161fc1b636SBoris Brezillon {
6171fc1b636SBoris Brezillon 	struct spi_mem_dirmap_desc **ptr, *desc;
6181fc1b636SBoris Brezillon 
6191fc1b636SBoris Brezillon 	ptr = devres_alloc(devm_spi_mem_dirmap_release, sizeof(*ptr),
6201fc1b636SBoris Brezillon 			   GFP_KERNEL);
6211fc1b636SBoris Brezillon 	if (!ptr)
6221fc1b636SBoris Brezillon 		return ERR_PTR(-ENOMEM);
6231fc1b636SBoris Brezillon 
6241fc1b636SBoris Brezillon 	desc = spi_mem_dirmap_create(mem, info);
6251fc1b636SBoris Brezillon 	if (IS_ERR(desc)) {
6261fc1b636SBoris Brezillon 		devres_free(ptr);
6271fc1b636SBoris Brezillon 	} else {
6281fc1b636SBoris Brezillon 		*ptr = desc;
6291fc1b636SBoris Brezillon 		devres_add(dev, ptr);
6301fc1b636SBoris Brezillon 	}
6311fc1b636SBoris Brezillon 
6321fc1b636SBoris Brezillon 	return desc;
6331fc1b636SBoris Brezillon }
6341fc1b636SBoris Brezillon EXPORT_SYMBOL_GPL(devm_spi_mem_dirmap_create);
6351fc1b636SBoris Brezillon 
devm_spi_mem_dirmap_match(struct device * dev,void * res,void * data)6361fc1b636SBoris Brezillon static int devm_spi_mem_dirmap_match(struct device *dev, void *res, void *data)
6371fc1b636SBoris Brezillon {
6381fc1b636SBoris Brezillon 	struct spi_mem_dirmap_desc **ptr = res;
6391fc1b636SBoris Brezillon 
6401fc1b636SBoris Brezillon 	if (WARN_ON(!ptr || !*ptr))
6411fc1b636SBoris Brezillon 		return 0;
6421fc1b636SBoris Brezillon 
6431fc1b636SBoris Brezillon 	return *ptr == data;
6441fc1b636SBoris Brezillon }
6451fc1b636SBoris Brezillon 
6461fc1b636SBoris Brezillon /**
6471fc1b636SBoris Brezillon  * devm_spi_mem_dirmap_destroy() - Destroy a direct mapping descriptor attached
6481fc1b636SBoris Brezillon  *				   to a device
6491fc1b636SBoris Brezillon  * @dev: device the dirmap desc is attached to
6501fc1b636SBoris Brezillon  * @desc: the direct mapping descriptor to destroy
6511fc1b636SBoris Brezillon  *
6521fc1b636SBoris Brezillon  * devm_ variant of the spi_mem_dirmap_destroy() function. See
6531fc1b636SBoris Brezillon  * spi_mem_dirmap_destroy() for more details.
6541fc1b636SBoris Brezillon  */
devm_spi_mem_dirmap_destroy(struct device * dev,struct spi_mem_dirmap_desc * desc)6551fc1b636SBoris Brezillon void devm_spi_mem_dirmap_destroy(struct device *dev,
6561fc1b636SBoris Brezillon 				 struct spi_mem_dirmap_desc *desc)
6571fc1b636SBoris Brezillon {
6581fc1b636SBoris Brezillon 	devres_release(dev, devm_spi_mem_dirmap_release,
6591fc1b636SBoris Brezillon 		       devm_spi_mem_dirmap_match, desc);
6601fc1b636SBoris Brezillon }
6611fc1b636SBoris Brezillon EXPORT_SYMBOL_GPL(devm_spi_mem_dirmap_destroy);
6621fc1b636SBoris Brezillon 
663aa167f3fSBoris Brezillon /**
6649d8371e2SSergei Shtylyov  * spi_mem_dirmap_read() - Read data through a direct mapping
665aa167f3fSBoris Brezillon  * @desc: direct mapping descriptor
666aa167f3fSBoris Brezillon  * @offs: offset to start reading from. Note that this is not an absolute
667aa167f3fSBoris Brezillon  *	  offset, but the offset within the direct mapping which already has
668aa167f3fSBoris Brezillon  *	  its own offset
669aa167f3fSBoris Brezillon  * @len: length in bytes
670aa167f3fSBoris Brezillon  * @buf: destination buffer. This buffer must be DMA-able
671aa167f3fSBoris Brezillon  *
672aa167f3fSBoris Brezillon  * This function reads data from a memory device using a direct mapping
673aa167f3fSBoris Brezillon  * previously instantiated with spi_mem_dirmap_create().
674aa167f3fSBoris Brezillon  *
675aa167f3fSBoris Brezillon  * Return: the amount of data read from the memory device or a negative error
676aa167f3fSBoris Brezillon  * code. Note that the returned size might be smaller than @len, and the caller
677aa167f3fSBoris Brezillon  * is responsible for calling spi_mem_dirmap_read() again when that happens.
678aa167f3fSBoris Brezillon  */
spi_mem_dirmap_read(struct spi_mem_dirmap_desc * desc,u64 offs,size_t len,void * buf)679aa167f3fSBoris Brezillon ssize_t spi_mem_dirmap_read(struct spi_mem_dirmap_desc *desc,
680aa167f3fSBoris Brezillon 			    u64 offs, size_t len, void *buf)
681aa167f3fSBoris Brezillon {
682aa167f3fSBoris Brezillon 	struct spi_controller *ctlr = desc->mem->spi->controller;
683aa167f3fSBoris Brezillon 	ssize_t ret;
684aa167f3fSBoris Brezillon 
685aa167f3fSBoris Brezillon 	if (desc->info.op_tmpl.data.dir != SPI_MEM_DATA_IN)
686aa167f3fSBoris Brezillon 		return -EINVAL;
687aa167f3fSBoris Brezillon 
688aa167f3fSBoris Brezillon 	if (!len)
689aa167f3fSBoris Brezillon 		return 0;
690aa167f3fSBoris Brezillon 
691aa167f3fSBoris Brezillon 	if (desc->nodirmap) {
692aa167f3fSBoris Brezillon 		ret = spi_mem_no_dirmap_read(desc, offs, len, buf);
693aa167f3fSBoris Brezillon 	} else if (ctlr->mem_ops && ctlr->mem_ops->dirmap_read) {
694aa167f3fSBoris Brezillon 		ret = spi_mem_access_start(desc->mem);
695aa167f3fSBoris Brezillon 		if (ret)
696aa167f3fSBoris Brezillon 			return ret;
697aa167f3fSBoris Brezillon 
698aa167f3fSBoris Brezillon 		ret = ctlr->mem_ops->dirmap_read(desc, offs, len, buf);
699aa167f3fSBoris Brezillon 
700aa167f3fSBoris Brezillon 		spi_mem_access_end(desc->mem);
701aa167f3fSBoris Brezillon 	} else {
702aa167f3fSBoris Brezillon 		ret = -ENOTSUPP;
703aa167f3fSBoris Brezillon 	}
704aa167f3fSBoris Brezillon 
705aa167f3fSBoris Brezillon 	return ret;
706aa167f3fSBoris Brezillon }
707aa167f3fSBoris Brezillon EXPORT_SYMBOL_GPL(spi_mem_dirmap_read);
708aa167f3fSBoris Brezillon 
709aa167f3fSBoris Brezillon /**
7109d8371e2SSergei Shtylyov  * spi_mem_dirmap_write() - Write data through a direct mapping
711aa167f3fSBoris Brezillon  * @desc: direct mapping descriptor
712aa167f3fSBoris Brezillon  * @offs: offset to start writing from. Note that this is not an absolute
713aa167f3fSBoris Brezillon  *	  offset, but the offset within the direct mapping which already has
714aa167f3fSBoris Brezillon  *	  its own offset
715aa167f3fSBoris Brezillon  * @len: length in bytes
716aa167f3fSBoris Brezillon  * @buf: source buffer. This buffer must be DMA-able
717aa167f3fSBoris Brezillon  *
718aa167f3fSBoris Brezillon  * This function writes data to a memory device using a direct mapping
719aa167f3fSBoris Brezillon  * previously instantiated with spi_mem_dirmap_create().
720aa167f3fSBoris Brezillon  *
721aa167f3fSBoris Brezillon  * Return: the amount of data written to the memory device or a negative error
722aa167f3fSBoris Brezillon  * code. Note that the returned size might be smaller than @len, and the caller
723aa167f3fSBoris Brezillon  * is responsible for calling spi_mem_dirmap_write() again when that happens.
724aa167f3fSBoris Brezillon  */
spi_mem_dirmap_write(struct spi_mem_dirmap_desc * desc,u64 offs,size_t len,const void * buf)725aa167f3fSBoris Brezillon ssize_t spi_mem_dirmap_write(struct spi_mem_dirmap_desc *desc,
726aa167f3fSBoris Brezillon 			     u64 offs, size_t len, const void *buf)
727aa167f3fSBoris Brezillon {
728aa167f3fSBoris Brezillon 	struct spi_controller *ctlr = desc->mem->spi->controller;
729aa167f3fSBoris Brezillon 	ssize_t ret;
730aa167f3fSBoris Brezillon 
731aa167f3fSBoris Brezillon 	if (desc->info.op_tmpl.data.dir != SPI_MEM_DATA_OUT)
732aa167f3fSBoris Brezillon 		return -EINVAL;
733aa167f3fSBoris Brezillon 
734aa167f3fSBoris Brezillon 	if (!len)
735aa167f3fSBoris Brezillon 		return 0;
736aa167f3fSBoris Brezillon 
737aa167f3fSBoris Brezillon 	if (desc->nodirmap) {
738aa167f3fSBoris Brezillon 		ret = spi_mem_no_dirmap_write(desc, offs, len, buf);
739aa167f3fSBoris Brezillon 	} else if (ctlr->mem_ops && ctlr->mem_ops->dirmap_write) {
740aa167f3fSBoris Brezillon 		ret = spi_mem_access_start(desc->mem);
741aa167f3fSBoris Brezillon 		if (ret)
742aa167f3fSBoris Brezillon 			return ret;
743aa167f3fSBoris Brezillon 
744aa167f3fSBoris Brezillon 		ret = ctlr->mem_ops->dirmap_write(desc, offs, len, buf);
745aa167f3fSBoris Brezillon 
746aa167f3fSBoris Brezillon 		spi_mem_access_end(desc->mem);
747aa167f3fSBoris Brezillon 	} else {
748aa167f3fSBoris Brezillon 		ret = -ENOTSUPP;
749aa167f3fSBoris Brezillon 	}
750aa167f3fSBoris Brezillon 
751aa167f3fSBoris Brezillon 	return ret;
752aa167f3fSBoris Brezillon }
753aa167f3fSBoris Brezillon EXPORT_SYMBOL_GPL(spi_mem_dirmap_write);
754aa167f3fSBoris Brezillon 
to_spi_mem_drv(struct device_driver * drv)755c36ff266SBoris Brezillon static inline struct spi_mem_driver *to_spi_mem_drv(struct device_driver *drv)
756c36ff266SBoris Brezillon {
757c36ff266SBoris Brezillon 	return container_of(drv, struct spi_mem_driver, spidrv.driver);
758c36ff266SBoris Brezillon }
759c36ff266SBoris Brezillon 
spi_mem_read_status(struct spi_mem * mem,const struct spi_mem_op * op,u16 * status)760c955a0ccSPatrice Chotard static int spi_mem_read_status(struct spi_mem *mem,
761c955a0ccSPatrice Chotard 			       const struct spi_mem_op *op,
762c955a0ccSPatrice Chotard 			       u16 *status)
763c955a0ccSPatrice Chotard {
764c955a0ccSPatrice Chotard 	const u8 *bytes = (u8 *)op->data.buf.in;
765c955a0ccSPatrice Chotard 	int ret;
766c955a0ccSPatrice Chotard 
767c955a0ccSPatrice Chotard 	ret = spi_mem_exec_op(mem, op);
768c955a0ccSPatrice Chotard 	if (ret)
769c955a0ccSPatrice Chotard 		return ret;
770c955a0ccSPatrice Chotard 
771c955a0ccSPatrice Chotard 	if (op->data.nbytes > 1)
772c955a0ccSPatrice Chotard 		*status = ((u16)bytes[0] << 8) | bytes[1];
773c955a0ccSPatrice Chotard 	else
774c955a0ccSPatrice Chotard 		*status = bytes[0];
775c955a0ccSPatrice Chotard 
776c955a0ccSPatrice Chotard 	return 0;
777c955a0ccSPatrice Chotard }
778c955a0ccSPatrice Chotard 
779c955a0ccSPatrice Chotard /**
780c955a0ccSPatrice Chotard  * spi_mem_poll_status() - Poll memory device status
781c955a0ccSPatrice Chotard  * @mem: SPI memory device
782c955a0ccSPatrice Chotard  * @op: the memory operation to execute
783c955a0ccSPatrice Chotard  * @mask: status bitmask to ckeck
784c955a0ccSPatrice Chotard  * @match: (status & mask) expected value
785c955a0ccSPatrice Chotard  * @initial_delay_us: delay in us before starting to poll
786c955a0ccSPatrice Chotard  * @polling_delay_us: time to sleep between reads in us
787c955a0ccSPatrice Chotard  * @timeout_ms: timeout in milliseconds
788c955a0ccSPatrice Chotard  *
789c955a0ccSPatrice Chotard  * This function polls a status register and returns when
790c955a0ccSPatrice Chotard  * (status & mask) == match or when the timeout has expired.
791c955a0ccSPatrice Chotard  *
792c955a0ccSPatrice Chotard  * Return: 0 in case of success, -ETIMEDOUT in case of error,
793c955a0ccSPatrice Chotard  *         -EOPNOTSUPP if not supported.
794c955a0ccSPatrice Chotard  */
spi_mem_poll_status(struct spi_mem * mem,const struct spi_mem_op * op,u16 mask,u16 match,unsigned long initial_delay_us,unsigned long polling_delay_us,u16 timeout_ms)795c955a0ccSPatrice Chotard int spi_mem_poll_status(struct spi_mem *mem,
796c955a0ccSPatrice Chotard 			const struct spi_mem_op *op,
797c955a0ccSPatrice Chotard 			u16 mask, u16 match,
798c955a0ccSPatrice Chotard 			unsigned long initial_delay_us,
799c955a0ccSPatrice Chotard 			unsigned long polling_delay_us,
800c955a0ccSPatrice Chotard 			u16 timeout_ms)
801c955a0ccSPatrice Chotard {
802c955a0ccSPatrice Chotard 	struct spi_controller *ctlr = mem->spi->controller;
803c955a0ccSPatrice Chotard 	int ret = -EOPNOTSUPP;
804c955a0ccSPatrice Chotard 	int read_status_ret;
805c955a0ccSPatrice Chotard 	u16 status;
806c955a0ccSPatrice Chotard 
807c955a0ccSPatrice Chotard 	if (op->data.nbytes < 1 || op->data.nbytes > 2 ||
808c955a0ccSPatrice Chotard 	    op->data.dir != SPI_MEM_DATA_IN)
809c955a0ccSPatrice Chotard 		return -EINVAL;
810c955a0ccSPatrice Chotard 
811*9e264f3fSAmit Kumar Mahapatra via Alsa-devel 	if (ctlr->mem_ops && ctlr->mem_ops->poll_status && !spi_get_csgpiod(mem->spi, 0)) {
812c955a0ccSPatrice Chotard 		ret = spi_mem_access_start(mem);
813c955a0ccSPatrice Chotard 		if (ret)
814c955a0ccSPatrice Chotard 			return ret;
815c955a0ccSPatrice Chotard 
816c955a0ccSPatrice Chotard 		ret = ctlr->mem_ops->poll_status(mem, op, mask, match,
817c955a0ccSPatrice Chotard 						 initial_delay_us, polling_delay_us,
818c955a0ccSPatrice Chotard 						 timeout_ms);
819c955a0ccSPatrice Chotard 
820c955a0ccSPatrice Chotard 		spi_mem_access_end(mem);
821c955a0ccSPatrice Chotard 	}
822c955a0ccSPatrice Chotard 
823c955a0ccSPatrice Chotard 	if (ret == -EOPNOTSUPP) {
824c955a0ccSPatrice Chotard 		if (!spi_mem_supports_op(mem, op))
825c955a0ccSPatrice Chotard 			return ret;
826c955a0ccSPatrice Chotard 
827c955a0ccSPatrice Chotard 		if (initial_delay_us < 10)
828c955a0ccSPatrice Chotard 			udelay(initial_delay_us);
829c955a0ccSPatrice Chotard 		else
830c955a0ccSPatrice Chotard 			usleep_range((initial_delay_us >> 2) + 1,
831c955a0ccSPatrice Chotard 				     initial_delay_us);
832c955a0ccSPatrice Chotard 
833c955a0ccSPatrice Chotard 		ret = read_poll_timeout(spi_mem_read_status, read_status_ret,
834c955a0ccSPatrice Chotard 					(read_status_ret || ((status) & mask) == match),
835c955a0ccSPatrice Chotard 					polling_delay_us, timeout_ms * 1000, false, mem,
836c955a0ccSPatrice Chotard 					op, &status);
837c955a0ccSPatrice Chotard 		if (read_status_ret)
838c955a0ccSPatrice Chotard 			return read_status_ret;
839c955a0ccSPatrice Chotard 	}
840c955a0ccSPatrice Chotard 
841c955a0ccSPatrice Chotard 	return ret;
842c955a0ccSPatrice Chotard }
843c955a0ccSPatrice Chotard EXPORT_SYMBOL_GPL(spi_mem_poll_status);
844c955a0ccSPatrice Chotard 
spi_mem_probe(struct spi_device * spi)845c36ff266SBoris Brezillon static int spi_mem_probe(struct spi_device *spi)
846c36ff266SBoris Brezillon {
847c36ff266SBoris Brezillon 	struct spi_mem_driver *memdrv = to_spi_mem_drv(spi->dev.driver);
8485d27a9c8SFrieder Schrempf 	struct spi_controller *ctlr = spi->controller;
849c36ff266SBoris Brezillon 	struct spi_mem *mem;
850c36ff266SBoris Brezillon 
851c36ff266SBoris Brezillon 	mem = devm_kzalloc(&spi->dev, sizeof(*mem), GFP_KERNEL);
852c36ff266SBoris Brezillon 	if (!mem)
853c36ff266SBoris Brezillon 		return -ENOMEM;
854c36ff266SBoris Brezillon 
855c36ff266SBoris Brezillon 	mem->spi = spi;
8565d27a9c8SFrieder Schrempf 
8575d27a9c8SFrieder Schrempf 	if (ctlr->mem_ops && ctlr->mem_ops->get_name)
8585d27a9c8SFrieder Schrempf 		mem->name = ctlr->mem_ops->get_name(mem);
8595d27a9c8SFrieder Schrempf 	else
8605d27a9c8SFrieder Schrempf 		mem->name = dev_name(&spi->dev);
8615d27a9c8SFrieder Schrempf 
8625d27a9c8SFrieder Schrempf 	if (IS_ERR_OR_NULL(mem->name))
863a9c52d42SYueHaibing 		return PTR_ERR_OR_ZERO(mem->name);
8645d27a9c8SFrieder Schrempf 
865c36ff266SBoris Brezillon 	spi_set_drvdata(spi, mem);
866c36ff266SBoris Brezillon 
867c36ff266SBoris Brezillon 	return memdrv->probe(mem);
868c36ff266SBoris Brezillon }
869c36ff266SBoris Brezillon 
spi_mem_remove(struct spi_device * spi)870a0386bbaSUwe Kleine-König static void spi_mem_remove(struct spi_device *spi)
871c36ff266SBoris Brezillon {
872c36ff266SBoris Brezillon 	struct spi_mem_driver *memdrv = to_spi_mem_drv(spi->dev.driver);
873c36ff266SBoris Brezillon 	struct spi_mem *mem = spi_get_drvdata(spi);
874c36ff266SBoris Brezillon 
875c36ff266SBoris Brezillon 	if (memdrv->remove)
876a0386bbaSUwe Kleine-König 		memdrv->remove(mem);
877c36ff266SBoris Brezillon }
878c36ff266SBoris Brezillon 
spi_mem_shutdown(struct spi_device * spi)879c36ff266SBoris Brezillon static void spi_mem_shutdown(struct spi_device *spi)
880c36ff266SBoris Brezillon {
881c36ff266SBoris Brezillon 	struct spi_mem_driver *memdrv = to_spi_mem_drv(spi->dev.driver);
882c36ff266SBoris Brezillon 	struct spi_mem *mem = spi_get_drvdata(spi);
883c36ff266SBoris Brezillon 
884c36ff266SBoris Brezillon 	if (memdrv->shutdown)
885c36ff266SBoris Brezillon 		memdrv->shutdown(mem);
886c36ff266SBoris Brezillon }
887c36ff266SBoris Brezillon 
888c36ff266SBoris Brezillon /**
889c36ff266SBoris Brezillon  * spi_mem_driver_register_with_owner() - Register a SPI memory driver
890c36ff266SBoris Brezillon  * @memdrv: the SPI memory driver to register
891c36ff266SBoris Brezillon  * @owner: the owner of this driver
892c36ff266SBoris Brezillon  *
893c36ff266SBoris Brezillon  * Registers a SPI memory driver.
894c36ff266SBoris Brezillon  *
895c36ff266SBoris Brezillon  * Return: 0 in case of success, a negative error core otherwise.
896c36ff266SBoris Brezillon  */
897c36ff266SBoris Brezillon 
spi_mem_driver_register_with_owner(struct spi_mem_driver * memdrv,struct module * owner)898c36ff266SBoris Brezillon int spi_mem_driver_register_with_owner(struct spi_mem_driver *memdrv,
899c36ff266SBoris Brezillon 				       struct module *owner)
900c36ff266SBoris Brezillon {
901c36ff266SBoris Brezillon 	memdrv->spidrv.probe = spi_mem_probe;
902c36ff266SBoris Brezillon 	memdrv->spidrv.remove = spi_mem_remove;
903c36ff266SBoris Brezillon 	memdrv->spidrv.shutdown = spi_mem_shutdown;
904c36ff266SBoris Brezillon 
905c36ff266SBoris Brezillon 	return __spi_register_driver(owner, &memdrv->spidrv);
906c36ff266SBoris Brezillon }
907c36ff266SBoris Brezillon EXPORT_SYMBOL_GPL(spi_mem_driver_register_with_owner);
908c36ff266SBoris Brezillon 
909c36ff266SBoris Brezillon /**
9103acbacfcSYang Yingliang  * spi_mem_driver_unregister() - Unregister a SPI memory driver
911c36ff266SBoris Brezillon  * @memdrv: the SPI memory driver to unregister
912c36ff266SBoris Brezillon  *
913c36ff266SBoris Brezillon  * Unregisters a SPI memory driver.
914c36ff266SBoris Brezillon  */
spi_mem_driver_unregister(struct spi_mem_driver * memdrv)915c36ff266SBoris Brezillon void spi_mem_driver_unregister(struct spi_mem_driver *memdrv)
916c36ff266SBoris Brezillon {
917c36ff266SBoris Brezillon 	spi_unregister_driver(&memdrv->spidrv);
918c36ff266SBoris Brezillon }
919c36ff266SBoris Brezillon EXPORT_SYMBOL_GPL(spi_mem_driver_unregister);
920