1 // SPDX-License-Identifier: GPL-2.0-only
5 * Copyright (C) 2013 Texas Instruments Incorporated - http://www.ti.com
9 #include <linux/kernel.h>
10 #include <linux/init.h>
11 #include <linux/interrupt.h>
12 #include <linux/module.h>
13 #include <linux/device.h>
14 #include <linux/delay.h>
15 #include <linux/dma-mapping.h>
16 #include <linux/dmaengine.h>
17 #include <linux/omap-dma.h>
18 #include <linux/platform_device.h>
19 #include <linux/err.h>
20 #include <linux/clk.h>
22 #include <linux/slab.h>
23 #include <linux/pm_runtime.h>
25 #include <linux/of_device.h>
26 #include <linux/pinctrl/consumer.h>
27 #include <linux/mfd/syscon.h>
28 #include <linux/regmap.h>
29 #include <linux/sizes.h>
31 #include <linux/spi/spi.h>
32 #include <linux/spi/spi-mem.h>
39 struct completion transfer_complete;
41 /* list synchronization */
42 struct mutex list_lock;
44 struct spi_master *master;
46 void __iomem *mmap_base;
48 struct regmap *ctrl_base;
49 unsigned int ctrl_reg;
53 struct ti_qspi_regs ctx_reg;
55 dma_addr_t mmap_phys_base;
56 dma_addr_t rx_bb_dma_addr;
58 struct dma_chan *rx_chan;
60 u32 spi_max_frequency;
68 #define QSPI_PID (0x0)
69 #define QSPI_SYSCONFIG (0x10)
70 #define QSPI_SPI_CLOCK_CNTRL_REG (0x40)
71 #define QSPI_SPI_DC_REG (0x44)
72 #define QSPI_SPI_CMD_REG (0x48)
73 #define QSPI_SPI_STATUS_REG (0x4c)
74 #define QSPI_SPI_DATA_REG (0x50)
75 #define QSPI_SPI_SETUP_REG(n) ((0x54 + 4 * n))
76 #define QSPI_SPI_SWITCH_REG (0x64)
77 #define QSPI_SPI_DATA_REG_1 (0x68)
78 #define QSPI_SPI_DATA_REG_2 (0x6c)
79 #define QSPI_SPI_DATA_REG_3 (0x70)
81 #define QSPI_COMPLETION_TIMEOUT msecs_to_jiffies(2000)
84 #define QSPI_CLK_EN (1 << 31)
85 #define QSPI_CLK_DIV_MAX 0xffff
88 #define QSPI_EN_CS(n) (n << 28)
89 #define QSPI_WLEN(n) ((n - 1) << 19)
90 #define QSPI_3_PIN (1 << 18)
91 #define QSPI_RD_SNGL (1 << 16)
92 #define QSPI_WR_SNGL (2 << 16)
93 #define QSPI_RD_DUAL (3 << 16)
94 #define QSPI_RD_QUAD (7 << 16)
95 #define QSPI_INVAL (4 << 16)
96 #define QSPI_FLEN(n) ((n - 1) << 0)
97 #define QSPI_WLEN_MAX_BITS 128
98 #define QSPI_WLEN_MAX_BYTES 16
99 #define QSPI_WLEN_MASK QSPI_WLEN(QSPI_WLEN_MAX_BITS)
101 /* STATUS REGISTER */
106 #define QSPI_DD(m, n) (m << (3 + n * 8))
107 #define QSPI_CKPHA(n) (1 << (2 + n * 8))
108 #define QSPI_CSPOL(n) (1 << (1 + n * 8))
109 #define QSPI_CKPOL(n) (1 << (n * 8))
111 #define QSPI_FRAME 4096
113 #define QSPI_AUTOSUSPEND_TIMEOUT 2000
115 #define MEM_CS_EN(n) ((n + 1) << 8)
116 #define MEM_CS_MASK (7 << 8)
118 #define MM_SWITCH 0x1
120 #define QSPI_SETUP_RD_NORMAL (0x0 << 12)
121 #define QSPI_SETUP_RD_DUAL (0x1 << 12)
122 #define QSPI_SETUP_RD_QUAD (0x3 << 12)
123 #define QSPI_SETUP_ADDR_SHIFT 8
124 #define QSPI_SETUP_DUMMY_SHIFT 10
126 #define QSPI_DMA_BUFFER_SIZE SZ_64K
128 static inline unsigned long ti_qspi_read(struct ti_qspi *qspi,
131 return readl(qspi->base + reg);
134 static inline void ti_qspi_write(struct ti_qspi *qspi,
135 unsigned long val, unsigned long reg)
137 writel(val, qspi->base + reg);
140 static int ti_qspi_setup(struct spi_device *spi)
142 struct ti_qspi *qspi = spi_master_get_devdata(spi->master);
143 struct ti_qspi_regs *ctx_reg = &qspi->ctx_reg;
144 int clk_div = 0, ret;
145 u32 clk_ctrl_reg, clk_rate, clk_mask;
147 if (spi->master->busy) {
148 dev_dbg(qspi->dev, "master busy doing other transfers\n");
152 if (!qspi->spi_max_frequency) {
153 dev_err(qspi->dev, "spi max frequency not defined\n");
157 clk_rate = clk_get_rate(qspi->fclk);
159 clk_div = DIV_ROUND_UP(clk_rate, qspi->spi_max_frequency) - 1;
162 dev_dbg(qspi->dev, "clock divider < 0, using /1 divider\n");
166 if (clk_div > QSPI_CLK_DIV_MAX) {
167 dev_dbg(qspi->dev, "clock divider >%d , using /%d divider\n",
168 QSPI_CLK_DIV_MAX, QSPI_CLK_DIV_MAX + 1);
172 dev_dbg(qspi->dev, "hz: %d, clock divider %d\n",
173 qspi->spi_max_frequency, clk_div);
175 ret = pm_runtime_get_sync(qspi->dev);
177 dev_err(qspi->dev, "pm_runtime_get_sync() failed\n");
181 clk_ctrl_reg = ti_qspi_read(qspi, QSPI_SPI_CLOCK_CNTRL_REG);
183 clk_ctrl_reg &= ~QSPI_CLK_EN;
186 ti_qspi_write(qspi, clk_ctrl_reg, QSPI_SPI_CLOCK_CNTRL_REG);
189 clk_mask = QSPI_CLK_EN | clk_div;
190 ti_qspi_write(qspi, clk_mask, QSPI_SPI_CLOCK_CNTRL_REG);
191 ctx_reg->clkctrl = clk_mask;
193 pm_runtime_mark_last_busy(qspi->dev);
194 ret = pm_runtime_put_autosuspend(qspi->dev);
196 dev_err(qspi->dev, "pm_runtime_put_autosuspend() failed\n");
203 static void ti_qspi_restore_ctx(struct ti_qspi *qspi)
205 struct ti_qspi_regs *ctx_reg = &qspi->ctx_reg;
207 ti_qspi_write(qspi, ctx_reg->clkctrl, QSPI_SPI_CLOCK_CNTRL_REG);
210 static inline u32 qspi_is_busy(struct ti_qspi *qspi)
213 unsigned long timeout = jiffies + QSPI_COMPLETION_TIMEOUT;
215 stat = ti_qspi_read(qspi, QSPI_SPI_STATUS_REG);
216 while ((stat & BUSY) && time_after(timeout, jiffies)) {
218 stat = ti_qspi_read(qspi, QSPI_SPI_STATUS_REG);
221 WARN(stat & BUSY, "qspi busy\n");
225 static inline int ti_qspi_poll_wc(struct ti_qspi *qspi)
228 unsigned long timeout = jiffies + QSPI_COMPLETION_TIMEOUT;
231 stat = ti_qspi_read(qspi, QSPI_SPI_STATUS_REG);
235 } while (time_after(timeout, jiffies));
237 stat = ti_qspi_read(qspi, QSPI_SPI_STATUS_REG);
243 static int qspi_write_msg(struct ti_qspi *qspi, struct spi_transfer *t,
252 cmd = qspi->cmd | QSPI_WR_SNGL;
253 wlen = t->bits_per_word >> 3; /* in bytes */
257 if (qspi_is_busy(qspi))
262 dev_dbg(qspi->dev, "tx cmd %08x dc %08x data %02x\n",
263 cmd, qspi->dc, *txbuf);
264 if (count >= QSPI_WLEN_MAX_BYTES) {
265 u32 *txp = (u32 *)txbuf;
267 data = cpu_to_be32(*txp++);
268 writel(data, qspi->base +
269 QSPI_SPI_DATA_REG_3);
270 data = cpu_to_be32(*txp++);
271 writel(data, qspi->base +
272 QSPI_SPI_DATA_REG_2);
273 data = cpu_to_be32(*txp++);
274 writel(data, qspi->base +
275 QSPI_SPI_DATA_REG_1);
276 data = cpu_to_be32(*txp++);
277 writel(data, qspi->base +
279 xfer_len = QSPI_WLEN_MAX_BYTES;
280 cmd |= QSPI_WLEN(QSPI_WLEN_MAX_BITS);
282 writeb(*txbuf, qspi->base + QSPI_SPI_DATA_REG);
283 cmd = qspi->cmd | QSPI_WR_SNGL;
285 cmd |= QSPI_WLEN(wlen);
289 dev_dbg(qspi->dev, "tx cmd %08x dc %08x data %04x\n",
290 cmd, qspi->dc, *txbuf);
291 writew(*((u16 *)txbuf), qspi->base + QSPI_SPI_DATA_REG);
294 dev_dbg(qspi->dev, "tx cmd %08x dc %08x data %08x\n",
295 cmd, qspi->dc, *txbuf);
296 writel(*((u32 *)txbuf), qspi->base + QSPI_SPI_DATA_REG);
300 ti_qspi_write(qspi, cmd, QSPI_SPI_CMD_REG);
301 if (ti_qspi_poll_wc(qspi)) {
302 dev_err(qspi->dev, "write timed out\n");
312 static int qspi_read_msg(struct ti_qspi *qspi, struct spi_transfer *t,
323 switch (t->rx_nbits) {
334 wlen = t->bits_per_word >> 3; /* in bytes */
338 dev_dbg(qspi->dev, "rx cmd %08x dc %08x\n", cmd, qspi->dc);
339 if (qspi_is_busy(qspi))
345 * Optimize the 8-bit words transfers, as used by
346 * the SPI flash devices.
348 if (count >= QSPI_WLEN_MAX_BYTES) {
349 rxlen = QSPI_WLEN_MAX_BYTES;
351 rxlen = min(count, 4);
353 rx_wlen = rxlen << 3;
354 cmd &= ~QSPI_WLEN_MASK;
355 cmd |= QSPI_WLEN(rx_wlen);
362 ti_qspi_write(qspi, cmd, QSPI_SPI_CMD_REG);
363 if (ti_qspi_poll_wc(qspi)) {
364 dev_err(qspi->dev, "read timed out\n");
371 * Optimize the 8-bit words transfers, as used by
372 * the SPI flash devices.
374 if (count >= QSPI_WLEN_MAX_BYTES) {
375 u32 *rxp = (u32 *) rxbuf;
376 rx = readl(qspi->base + QSPI_SPI_DATA_REG_3);
377 *rxp++ = be32_to_cpu(rx);
378 rx = readl(qspi->base + QSPI_SPI_DATA_REG_2);
379 *rxp++ = be32_to_cpu(rx);
380 rx = readl(qspi->base + QSPI_SPI_DATA_REG_1);
381 *rxp++ = be32_to_cpu(rx);
382 rx = readl(qspi->base + QSPI_SPI_DATA_REG);
383 *rxp++ = be32_to_cpu(rx);
386 rx = readl(qspi->base + QSPI_SPI_DATA_REG);
388 *rxp++ = rx >> (rx_wlen - 8);
390 *rxp++ = rx >> (rx_wlen - 16);
392 *rxp++ = rx >> (rx_wlen - 24);
398 *((u16 *)rxbuf) = readw(qspi->base + QSPI_SPI_DATA_REG);
401 *((u32 *)rxbuf) = readl(qspi->base + QSPI_SPI_DATA_REG);
411 static int qspi_transfer_msg(struct ti_qspi *qspi, struct spi_transfer *t,
417 ret = qspi_write_msg(qspi, t, count);
419 dev_dbg(qspi->dev, "Error while writing\n");
425 ret = qspi_read_msg(qspi, t, count);
427 dev_dbg(qspi->dev, "Error while reading\n");
435 static void ti_qspi_dma_callback(void *param)
437 struct ti_qspi *qspi = param;
439 complete(&qspi->transfer_complete);
442 static int ti_qspi_dma_xfer(struct ti_qspi *qspi, dma_addr_t dma_dst,
443 dma_addr_t dma_src, size_t len)
445 struct dma_chan *chan = qspi->rx_chan;
447 enum dma_ctrl_flags flags = DMA_CTRL_ACK | DMA_PREP_INTERRUPT;
448 struct dma_async_tx_descriptor *tx;
451 tx = dmaengine_prep_dma_memcpy(chan, dma_dst, dma_src, len, flags);
453 dev_err(qspi->dev, "device_prep_dma_memcpy error\n");
457 tx->callback = ti_qspi_dma_callback;
458 tx->callback_param = qspi;
459 cookie = tx->tx_submit(tx);
460 reinit_completion(&qspi->transfer_complete);
462 ret = dma_submit_error(cookie);
464 dev_err(qspi->dev, "dma_submit_error %d\n", cookie);
468 dma_async_issue_pending(chan);
469 ret = wait_for_completion_timeout(&qspi->transfer_complete,
470 msecs_to_jiffies(len));
472 dmaengine_terminate_sync(chan);
473 dev_err(qspi->dev, "DMA wait_for_completion_timeout\n");
480 static int ti_qspi_dma_bounce_buffer(struct ti_qspi *qspi, loff_t offs,
481 void *to, size_t readsize)
483 dma_addr_t dma_src = qspi->mmap_phys_base + offs;
487 * Use bounce buffer as FS like jffs2, ubifs may pass
488 * buffers that does not belong to kernel lowmem region.
490 while (readsize != 0) {
491 size_t xfer_len = min_t(size_t, QSPI_DMA_BUFFER_SIZE,
494 ret = ti_qspi_dma_xfer(qspi, qspi->rx_bb_dma_addr,
498 memcpy(to, qspi->rx_bb_addr, xfer_len);
499 readsize -= xfer_len;
507 static int ti_qspi_dma_xfer_sg(struct ti_qspi *qspi, struct sg_table rx_sg,
510 struct scatterlist *sg;
511 dma_addr_t dma_src = qspi->mmap_phys_base + from;
515 for_each_sg(rx_sg.sgl, sg, rx_sg.nents, i) {
516 dma_dst = sg_dma_address(sg);
517 len = sg_dma_len(sg);
518 ret = ti_qspi_dma_xfer(qspi, dma_dst, dma_src, len);
527 static void ti_qspi_enable_memory_map(struct spi_device *spi)
529 struct ti_qspi *qspi = spi_master_get_devdata(spi->master);
531 ti_qspi_write(qspi, MM_SWITCH, QSPI_SPI_SWITCH_REG);
532 if (qspi->ctrl_base) {
533 regmap_update_bits(qspi->ctrl_base, qspi->ctrl_reg,
535 MEM_CS_EN(spi->chip_select));
537 qspi->mmap_enabled = true;
538 qspi->current_cs = spi->chip_select;
541 static void ti_qspi_disable_memory_map(struct spi_device *spi)
543 struct ti_qspi *qspi = spi_master_get_devdata(spi->master);
545 ti_qspi_write(qspi, 0, QSPI_SPI_SWITCH_REG);
547 regmap_update_bits(qspi->ctrl_base, qspi->ctrl_reg,
549 qspi->mmap_enabled = false;
550 qspi->current_cs = -1;
553 static void ti_qspi_setup_mmap_read(struct spi_device *spi, u8 opcode,
554 u8 data_nbits, u8 addr_width,
557 struct ti_qspi *qspi = spi_master_get_devdata(spi->master);
560 switch (data_nbits) {
562 memval |= QSPI_SETUP_RD_QUAD;
565 memval |= QSPI_SETUP_RD_DUAL;
568 memval |= QSPI_SETUP_RD_NORMAL;
571 memval |= ((addr_width - 1) << QSPI_SETUP_ADDR_SHIFT |
572 dummy_bytes << QSPI_SETUP_DUMMY_SHIFT);
573 ti_qspi_write(qspi, memval,
574 QSPI_SPI_SETUP_REG(spi->chip_select));
577 static int ti_qspi_adjust_op_size(struct spi_mem *mem, struct spi_mem_op *op)
579 struct ti_qspi *qspi = spi_controller_get_devdata(mem->spi->master);
582 if (op->data.dir == SPI_MEM_DATA_IN) {
583 if (op->addr.val < qspi->mmap_size) {
584 /* Limit MMIO to the mmaped region */
585 if (op->addr.val + op->data.nbytes > qspi->mmap_size) {
586 max_len = qspi->mmap_size - op->addr.val;
587 op->data.nbytes = min((size_t) op->data.nbytes,
592 * Use fallback mode (SW generated transfers) above the
594 * Adjust size to comply with the QSPI max frame length.
596 max_len = QSPI_FRAME;
597 max_len -= 1 + op->addr.nbytes + op->dummy.nbytes;
598 op->data.nbytes = min((size_t) op->data.nbytes,
606 static int ti_qspi_exec_mem_op(struct spi_mem *mem,
607 const struct spi_mem_op *op)
609 struct ti_qspi *qspi = spi_master_get_devdata(mem->spi->master);
613 /* Only optimize read path. */
614 if (!op->data.nbytes || op->data.dir != SPI_MEM_DATA_IN ||
615 !op->addr.nbytes || op->addr.nbytes > 4)
618 /* Address exceeds MMIO window size, fall back to regular mode. */
620 if (from + op->data.nbytes > qspi->mmap_size)
623 mutex_lock(&qspi->list_lock);
625 if (!qspi->mmap_enabled || qspi->current_cs != mem->spi->chip_select)
626 ti_qspi_enable_memory_map(mem->spi);
627 ti_qspi_setup_mmap_read(mem->spi, op->cmd.opcode, op->data.buswidth,
628 op->addr.nbytes, op->dummy.nbytes);
633 if (virt_addr_valid(op->data.buf.in) &&
634 !spi_controller_dma_map_mem_op_data(mem->spi->master, op,
636 ret = ti_qspi_dma_xfer_sg(qspi, sgt, from);
637 spi_controller_dma_unmap_mem_op_data(mem->spi->master,
640 ret = ti_qspi_dma_bounce_buffer(qspi, from,
645 memcpy_fromio(op->data.buf.in, qspi->mmap_base + from,
649 mutex_unlock(&qspi->list_lock);
654 static const struct spi_controller_mem_ops ti_qspi_mem_ops = {
655 .exec_op = ti_qspi_exec_mem_op,
656 .adjust_op_size = ti_qspi_adjust_op_size,
659 static int ti_qspi_start_transfer_one(struct spi_master *master,
660 struct spi_message *m)
662 struct ti_qspi *qspi = spi_master_get_devdata(master);
663 struct spi_device *spi = m->spi;
664 struct spi_transfer *t;
666 unsigned int frame_len_words, transfer_len_words;
669 /* setup device control reg */
672 if (spi->mode & SPI_CPHA)
673 qspi->dc |= QSPI_CKPHA(spi->chip_select);
674 if (spi->mode & SPI_CPOL)
675 qspi->dc |= QSPI_CKPOL(spi->chip_select);
676 if (spi->mode & SPI_CS_HIGH)
677 qspi->dc |= QSPI_CSPOL(spi->chip_select);
680 list_for_each_entry(t, &m->transfers, transfer_list)
681 frame_len_words += t->len / (t->bits_per_word >> 3);
682 frame_len_words = min_t(unsigned int, frame_len_words, QSPI_FRAME);
684 /* setup command reg */
686 qspi->cmd |= QSPI_EN_CS(spi->chip_select);
687 qspi->cmd |= QSPI_FLEN(frame_len_words);
689 ti_qspi_write(qspi, qspi->dc, QSPI_SPI_DC_REG);
691 mutex_lock(&qspi->list_lock);
693 if (qspi->mmap_enabled)
694 ti_qspi_disable_memory_map(spi);
696 list_for_each_entry(t, &m->transfers, transfer_list) {
697 qspi->cmd = ((qspi->cmd & ~QSPI_WLEN_MASK) |
698 QSPI_WLEN(t->bits_per_word));
700 wlen = t->bits_per_word >> 3;
701 transfer_len_words = min(t->len / wlen, frame_len_words);
703 ret = qspi_transfer_msg(qspi, t, transfer_len_words * wlen);
705 dev_dbg(qspi->dev, "transfer message failed\n");
706 mutex_unlock(&qspi->list_lock);
710 m->actual_length += transfer_len_words * wlen;
711 frame_len_words -= transfer_len_words;
712 if (frame_len_words == 0)
716 mutex_unlock(&qspi->list_lock);
718 ti_qspi_write(qspi, qspi->cmd | QSPI_INVAL, QSPI_SPI_CMD_REG);
720 spi_finalize_current_message(master);
725 static int ti_qspi_runtime_resume(struct device *dev)
727 struct ti_qspi *qspi;
729 qspi = dev_get_drvdata(dev);
730 ti_qspi_restore_ctx(qspi);
735 static const struct of_device_id ti_qspi_match[] = {
736 {.compatible = "ti,dra7xxx-qspi" },
737 {.compatible = "ti,am4372-qspi" },
740 MODULE_DEVICE_TABLE(of, ti_qspi_match);
742 static int ti_qspi_probe(struct platform_device *pdev)
744 struct ti_qspi *qspi;
745 struct spi_master *master;
746 struct resource *r, *res_mmap;
747 struct device_node *np = pdev->dev.of_node;
749 int ret = 0, num_cs, irq;
752 master = spi_alloc_master(&pdev->dev, sizeof(*qspi));
756 master->mode_bits = SPI_CPOL | SPI_CPHA | SPI_RX_DUAL | SPI_RX_QUAD;
758 master->flags = SPI_MASTER_HALF_DUPLEX;
759 master->setup = ti_qspi_setup;
760 master->auto_runtime_pm = true;
761 master->transfer_one_message = ti_qspi_start_transfer_one;
762 master->dev.of_node = pdev->dev.of_node;
763 master->bits_per_word_mask = SPI_BPW_MASK(32) | SPI_BPW_MASK(16) |
765 master->mem_ops = &ti_qspi_mem_ops;
767 if (!of_property_read_u32(np, "num-cs", &num_cs))
768 master->num_chipselect = num_cs;
770 qspi = spi_master_get_devdata(master);
771 qspi->master = master;
772 qspi->dev = &pdev->dev;
773 platform_set_drvdata(pdev, qspi);
775 r = platform_get_resource_byname(pdev, IORESOURCE_MEM, "qspi_base");
777 r = platform_get_resource(pdev, IORESOURCE_MEM, 0);
779 dev_err(&pdev->dev, "missing platform data\n");
785 res_mmap = platform_get_resource_byname(pdev,
786 IORESOURCE_MEM, "qspi_mmap");
787 if (res_mmap == NULL) {
788 res_mmap = platform_get_resource(pdev, IORESOURCE_MEM, 1);
789 if (res_mmap == NULL) {
791 "memory mapped resource not required\n");
796 qspi->mmap_size = resource_size(res_mmap);
798 irq = platform_get_irq(pdev, 0);
804 mutex_init(&qspi->list_lock);
806 qspi->base = devm_ioremap_resource(&pdev->dev, r);
807 if (IS_ERR(qspi->base)) {
808 ret = PTR_ERR(qspi->base);
813 if (of_property_read_bool(np, "syscon-chipselects")) {
815 syscon_regmap_lookup_by_phandle(np,
816 "syscon-chipselects");
817 if (IS_ERR(qspi->ctrl_base)) {
818 ret = PTR_ERR(qspi->ctrl_base);
821 ret = of_property_read_u32_index(np,
822 "syscon-chipselects",
826 "couldn't get ctrl_mod reg index\n");
831 qspi->fclk = devm_clk_get(&pdev->dev, "fck");
832 if (IS_ERR(qspi->fclk)) {
833 ret = PTR_ERR(qspi->fclk);
834 dev_err(&pdev->dev, "could not get clk: %d\n", ret);
837 pm_runtime_use_autosuspend(&pdev->dev);
838 pm_runtime_set_autosuspend_delay(&pdev->dev, QSPI_AUTOSUSPEND_TIMEOUT);
839 pm_runtime_enable(&pdev->dev);
841 if (!of_property_read_u32(np, "spi-max-frequency", &max_freq))
842 qspi->spi_max_frequency = max_freq;
845 dma_cap_set(DMA_MEMCPY, mask);
847 qspi->rx_chan = dma_request_chan_by_mask(&mask);
848 if (IS_ERR(qspi->rx_chan)) {
850 "No Rx DMA available, trying mmap mode\n");
851 qspi->rx_chan = NULL;
855 qspi->rx_bb_addr = dma_alloc_coherent(qspi->dev,
856 QSPI_DMA_BUFFER_SIZE,
857 &qspi->rx_bb_dma_addr,
858 GFP_KERNEL | GFP_DMA);
859 if (!qspi->rx_bb_addr) {
861 "dma_alloc_coherent failed, using PIO mode\n");
862 dma_release_channel(qspi->rx_chan);
865 master->dma_rx = qspi->rx_chan;
866 init_completion(&qspi->transfer_complete);
868 qspi->mmap_phys_base = (dma_addr_t)res_mmap->start;
871 if (!qspi->rx_chan && res_mmap) {
872 qspi->mmap_base = devm_ioremap_resource(&pdev->dev, res_mmap);
873 if (IS_ERR(qspi->mmap_base)) {
875 "mmap failed with error %ld using PIO mode\n",
876 PTR_ERR(qspi->mmap_base));
877 qspi->mmap_base = NULL;
878 master->mem_ops = NULL;
881 qspi->mmap_enabled = false;
882 qspi->current_cs = -1;
884 ret = devm_spi_register_master(&pdev->dev, master);
888 pm_runtime_disable(&pdev->dev);
890 spi_master_put(master);
894 static int ti_qspi_remove(struct platform_device *pdev)
896 struct ti_qspi *qspi = platform_get_drvdata(pdev);
899 rc = spi_master_suspend(qspi->master);
903 pm_runtime_put_sync(&pdev->dev);
904 pm_runtime_disable(&pdev->dev);
906 if (qspi->rx_bb_addr)
907 dma_free_coherent(qspi->dev, QSPI_DMA_BUFFER_SIZE,
909 qspi->rx_bb_dma_addr);
911 dma_release_channel(qspi->rx_chan);
916 static const struct dev_pm_ops ti_qspi_pm_ops = {
917 .runtime_resume = ti_qspi_runtime_resume,
920 static struct platform_driver ti_qspi_driver = {
921 .probe = ti_qspi_probe,
922 .remove = ti_qspi_remove,
925 .pm = &ti_qspi_pm_ops,
926 .of_match_table = ti_qspi_match,
930 module_platform_driver(ti_qspi_driver);
933 MODULE_LICENSE("GPL v2");
934 MODULE_DESCRIPTION("TI QSPI controller driver");
935 MODULE_ALIAS("platform:ti-qspi");