KMS: fix EDID detailed timing vsync parsing
[linux-2.6/cjktty.git] / sound / soc / ux500 / ux500_msp_i2s.c
bloba26c6bf0a29b2ad570050519b7e6c87e418e62a5
1 /*
2 * Copyright (C) ST-Ericsson SA 2012
4 * Author: Ola Lilja <ola.o.lilja@stericsson.com>,
5 * Roger Nilsson <roger.xr.nilsson@stericsson.com>,
6 * Sandeep Kaushik <sandeep.kaushik@st.com>
7 * for ST-Ericsson.
9 * License terms:
11 * This program is free software; you can redistribute it and/or modify
12 * it under the terms of the GNU General Public License version 2 as published
13 * by the Free Software Foundation.
16 #include <linux/module.h>
17 #include <linux/platform_device.h>
18 #include <linux/pinctrl/consumer.h>
19 #include <linux/delay.h>
20 #include <linux/slab.h>
21 #include <linux/io.h>
22 #include <linux/of.h>
24 #include <mach/hardware.h>
25 #include <mach/msp.h>
27 #include <sound/soc.h>
29 #include "ux500_msp_i2s.h"
31 /* MSP1/3 Tx/Rx usage protection */
32 static DEFINE_SPINLOCK(msp_rxtx_lock);
34 /* Protocol desciptors */
35 static const struct msp_protdesc prot_descs[] = {
36 { /* I2S */
37 MSP_SINGLE_PHASE,
38 MSP_SINGLE_PHASE,
39 MSP_PHASE2_START_MODE_IMEDIATE,
40 MSP_PHASE2_START_MODE_IMEDIATE,
41 MSP_BTF_MS_BIT_FIRST,
42 MSP_BTF_MS_BIT_FIRST,
43 MSP_FRAME_LEN_1,
44 MSP_FRAME_LEN_1,
45 MSP_FRAME_LEN_1,
46 MSP_FRAME_LEN_1,
47 MSP_ELEM_LEN_32,
48 MSP_ELEM_LEN_32,
49 MSP_ELEM_LEN_32,
50 MSP_ELEM_LEN_32,
51 MSP_DELAY_1,
52 MSP_DELAY_1,
53 MSP_RISING_EDGE,
54 MSP_FALLING_EDGE,
55 MSP_FSYNC_POL_ACT_LO,
56 MSP_FSYNC_POL_ACT_LO,
57 MSP_SWAP_NONE,
58 MSP_SWAP_NONE,
59 MSP_COMPRESS_MODE_LINEAR,
60 MSP_EXPAND_MODE_LINEAR,
61 MSP_FSYNC_IGNORE,
62 31,
63 15,
64 32,
65 }, { /* PCM */
66 MSP_DUAL_PHASE,
67 MSP_DUAL_PHASE,
68 MSP_PHASE2_START_MODE_FSYNC,
69 MSP_PHASE2_START_MODE_FSYNC,
70 MSP_BTF_MS_BIT_FIRST,
71 MSP_BTF_MS_BIT_FIRST,
72 MSP_FRAME_LEN_1,
73 MSP_FRAME_LEN_1,
74 MSP_FRAME_LEN_1,
75 MSP_FRAME_LEN_1,
76 MSP_ELEM_LEN_16,
77 MSP_ELEM_LEN_16,
78 MSP_ELEM_LEN_16,
79 MSP_ELEM_LEN_16,
80 MSP_DELAY_0,
81 MSP_DELAY_0,
82 MSP_RISING_EDGE,
83 MSP_FALLING_EDGE,
84 MSP_FSYNC_POL_ACT_HI,
85 MSP_FSYNC_POL_ACT_HI,
86 MSP_SWAP_NONE,
87 MSP_SWAP_NONE,
88 MSP_COMPRESS_MODE_LINEAR,
89 MSP_EXPAND_MODE_LINEAR,
90 MSP_FSYNC_IGNORE,
91 255,
93 256,
94 }, { /* Companded PCM */
95 MSP_SINGLE_PHASE,
96 MSP_SINGLE_PHASE,
97 MSP_PHASE2_START_MODE_FSYNC,
98 MSP_PHASE2_START_MODE_FSYNC,
99 MSP_BTF_MS_BIT_FIRST,
100 MSP_BTF_MS_BIT_FIRST,
101 MSP_FRAME_LEN_1,
102 MSP_FRAME_LEN_1,
103 MSP_FRAME_LEN_1,
104 MSP_FRAME_LEN_1,
105 MSP_ELEM_LEN_8,
106 MSP_ELEM_LEN_8,
107 MSP_ELEM_LEN_8,
108 MSP_ELEM_LEN_8,
109 MSP_DELAY_0,
110 MSP_DELAY_0,
111 MSP_RISING_EDGE,
112 MSP_RISING_EDGE,
113 MSP_FSYNC_POL_ACT_HI,
114 MSP_FSYNC_POL_ACT_HI,
115 MSP_SWAP_NONE,
116 MSP_SWAP_NONE,
117 MSP_COMPRESS_MODE_LINEAR,
118 MSP_EXPAND_MODE_LINEAR,
119 MSP_FSYNC_IGNORE,
120 255,
122 256,
126 static void set_prot_desc_tx(struct ux500_msp *msp,
127 struct msp_protdesc *protdesc,
128 enum msp_data_size data_size)
130 u32 temp_reg = 0;
132 temp_reg |= MSP_P2_ENABLE_BIT(protdesc->tx_phase_mode);
133 temp_reg |= MSP_P2_START_MODE_BIT(protdesc->tx_phase2_start_mode);
134 temp_reg |= MSP_P1_FRAME_LEN_BITS(protdesc->tx_frame_len_1);
135 temp_reg |= MSP_P2_FRAME_LEN_BITS(protdesc->tx_frame_len_2);
136 if (msp->def_elem_len) {
137 temp_reg |= MSP_P1_ELEM_LEN_BITS(protdesc->tx_elem_len_1);
138 temp_reg |= MSP_P2_ELEM_LEN_BITS(protdesc->tx_elem_len_2);
139 } else {
140 temp_reg |= MSP_P1_ELEM_LEN_BITS(data_size);
141 temp_reg |= MSP_P2_ELEM_LEN_BITS(data_size);
143 temp_reg |= MSP_DATA_DELAY_BITS(protdesc->tx_data_delay);
144 temp_reg |= MSP_SET_ENDIANNES_BIT(protdesc->tx_byte_order);
145 temp_reg |= MSP_FSYNC_POL(protdesc->tx_fsync_pol);
146 temp_reg |= MSP_DATA_WORD_SWAP(protdesc->tx_half_word_swap);
147 temp_reg |= MSP_SET_COMPANDING_MODE(protdesc->compression_mode);
148 temp_reg |= MSP_SET_FSYNC_IGNORE(protdesc->frame_sync_ignore);
150 writel(temp_reg, msp->registers + MSP_TCF);
153 static void set_prot_desc_rx(struct ux500_msp *msp,
154 struct msp_protdesc *protdesc,
155 enum msp_data_size data_size)
157 u32 temp_reg = 0;
159 temp_reg |= MSP_P2_ENABLE_BIT(protdesc->rx_phase_mode);
160 temp_reg |= MSP_P2_START_MODE_BIT(protdesc->rx_phase2_start_mode);
161 temp_reg |= MSP_P1_FRAME_LEN_BITS(protdesc->rx_frame_len_1);
162 temp_reg |= MSP_P2_FRAME_LEN_BITS(protdesc->rx_frame_len_2);
163 if (msp->def_elem_len) {
164 temp_reg |= MSP_P1_ELEM_LEN_BITS(protdesc->rx_elem_len_1);
165 temp_reg |= MSP_P2_ELEM_LEN_BITS(protdesc->rx_elem_len_2);
166 } else {
167 temp_reg |= MSP_P1_ELEM_LEN_BITS(data_size);
168 temp_reg |= MSP_P2_ELEM_LEN_BITS(data_size);
171 temp_reg |= MSP_DATA_DELAY_BITS(protdesc->rx_data_delay);
172 temp_reg |= MSP_SET_ENDIANNES_BIT(protdesc->rx_byte_order);
173 temp_reg |= MSP_FSYNC_POL(protdesc->rx_fsync_pol);
174 temp_reg |= MSP_DATA_WORD_SWAP(protdesc->rx_half_word_swap);
175 temp_reg |= MSP_SET_COMPANDING_MODE(protdesc->expansion_mode);
176 temp_reg |= MSP_SET_FSYNC_IGNORE(protdesc->frame_sync_ignore);
178 writel(temp_reg, msp->registers + MSP_RCF);
181 static int configure_protocol(struct ux500_msp *msp,
182 struct ux500_msp_config *config)
184 struct msp_protdesc *protdesc;
185 enum msp_data_size data_size;
186 u32 temp_reg = 0;
188 data_size = config->data_size;
189 msp->def_elem_len = config->def_elem_len;
190 if (config->default_protdesc == 1) {
191 if (config->protocol >= MSP_INVALID_PROTOCOL) {
192 dev_err(msp->dev, "%s: ERROR: Invalid protocol!\n",
193 __func__);
194 return -EINVAL;
196 protdesc =
197 (struct msp_protdesc *)&prot_descs[config->protocol];
198 } else {
199 protdesc = (struct msp_protdesc *)&config->protdesc;
202 if (data_size < MSP_DATA_BITS_DEFAULT || data_size > MSP_DATA_BITS_32) {
203 dev_err(msp->dev,
204 "%s: ERROR: Invalid data-size requested (data_size = %d)!\n",
205 __func__, data_size);
206 return -EINVAL;
209 if (config->direction & MSP_DIR_TX)
210 set_prot_desc_tx(msp, protdesc, data_size);
211 if (config->direction & MSP_DIR_RX)
212 set_prot_desc_rx(msp, protdesc, data_size);
214 /* The code below should not be separated. */
215 temp_reg = readl(msp->registers + MSP_GCR) & ~TX_CLK_POL_RISING;
216 temp_reg |= MSP_TX_CLKPOL_BIT(~protdesc->tx_clk_pol);
217 writel(temp_reg, msp->registers + MSP_GCR);
218 temp_reg = readl(msp->registers + MSP_GCR) & ~RX_CLK_POL_RISING;
219 temp_reg |= MSP_RX_CLKPOL_BIT(protdesc->rx_clk_pol);
220 writel(temp_reg, msp->registers + MSP_GCR);
222 return 0;
225 static int setup_bitclk(struct ux500_msp *msp, struct ux500_msp_config *config)
227 u32 reg_val_GCR;
228 u32 frame_per = 0;
229 u32 sck_div = 0;
230 u32 frame_width = 0;
231 u32 temp_reg = 0;
232 struct msp_protdesc *protdesc = NULL;
234 reg_val_GCR = readl(msp->registers + MSP_GCR);
235 writel(reg_val_GCR & ~SRG_ENABLE, msp->registers + MSP_GCR);
237 if (config->default_protdesc)
238 protdesc =
239 (struct msp_protdesc *)&prot_descs[config->protocol];
240 else
241 protdesc = (struct msp_protdesc *)&config->protdesc;
243 switch (config->protocol) {
244 case MSP_PCM_PROTOCOL:
245 case MSP_PCM_COMPAND_PROTOCOL:
246 frame_width = protdesc->frame_width;
247 sck_div = config->f_inputclk / (config->frame_freq *
248 (protdesc->clocks_per_frame));
249 frame_per = protdesc->frame_period;
250 break;
251 case MSP_I2S_PROTOCOL:
252 frame_width = protdesc->frame_width;
253 sck_div = config->f_inputclk / (config->frame_freq *
254 (protdesc->clocks_per_frame));
255 frame_per = protdesc->frame_period;
256 break;
257 default:
258 dev_err(msp->dev, "%s: ERROR: Unknown protocol (%d)!\n",
259 __func__,
260 config->protocol);
261 return -EINVAL;
264 temp_reg = (sck_div - 1) & SCK_DIV_MASK;
265 temp_reg |= FRAME_WIDTH_BITS(frame_width);
266 temp_reg |= FRAME_PERIOD_BITS(frame_per);
267 writel(temp_reg, msp->registers + MSP_SRG);
269 msp->f_bitclk = (config->f_inputclk)/(sck_div + 1);
271 /* Enable bit-clock */
272 udelay(100);
273 reg_val_GCR = readl(msp->registers + MSP_GCR);
274 writel(reg_val_GCR | SRG_ENABLE, msp->registers + MSP_GCR);
275 udelay(100);
277 return 0;
280 static int configure_multichannel(struct ux500_msp *msp,
281 struct ux500_msp_config *config)
283 struct msp_protdesc *protdesc;
284 struct msp_multichannel_config *mcfg;
285 u32 reg_val_MCR;
287 if (config->default_protdesc == 1) {
288 if (config->protocol >= MSP_INVALID_PROTOCOL) {
289 dev_err(msp->dev,
290 "%s: ERROR: Invalid protocol (%d)!\n",
291 __func__, config->protocol);
292 return -EINVAL;
294 protdesc = (struct msp_protdesc *)
295 &prot_descs[config->protocol];
296 } else {
297 protdesc = (struct msp_protdesc *)&config->protdesc;
300 mcfg = &config->multichannel_config;
301 if (mcfg->tx_multichannel_enable) {
302 if (protdesc->tx_phase_mode == MSP_SINGLE_PHASE) {
303 reg_val_MCR = readl(msp->registers + MSP_MCR);
304 writel(reg_val_MCR | (mcfg->tx_multichannel_enable ?
305 1 << TMCEN_BIT : 0),
306 msp->registers + MSP_MCR);
307 writel(mcfg->tx_channel_0_enable,
308 msp->registers + MSP_TCE0);
309 writel(mcfg->tx_channel_1_enable,
310 msp->registers + MSP_TCE1);
311 writel(mcfg->tx_channel_2_enable,
312 msp->registers + MSP_TCE2);
313 writel(mcfg->tx_channel_3_enable,
314 msp->registers + MSP_TCE3);
315 } else {
316 dev_err(msp->dev,
317 "%s: ERROR: Only single-phase supported (TX-mode: %d)!\n",
318 __func__, protdesc->tx_phase_mode);
319 return -EINVAL;
322 if (mcfg->rx_multichannel_enable) {
323 if (protdesc->rx_phase_mode == MSP_SINGLE_PHASE) {
324 reg_val_MCR = readl(msp->registers + MSP_MCR);
325 writel(reg_val_MCR | (mcfg->rx_multichannel_enable ?
326 1 << RMCEN_BIT : 0),
327 msp->registers + MSP_MCR);
328 writel(mcfg->rx_channel_0_enable,
329 msp->registers + MSP_RCE0);
330 writel(mcfg->rx_channel_1_enable,
331 msp->registers + MSP_RCE1);
332 writel(mcfg->rx_channel_2_enable,
333 msp->registers + MSP_RCE2);
334 writel(mcfg->rx_channel_3_enable,
335 msp->registers + MSP_RCE3);
336 } else {
337 dev_err(msp->dev,
338 "%s: ERROR: Only single-phase supported (RX-mode: %d)!\n",
339 __func__, protdesc->rx_phase_mode);
340 return -EINVAL;
342 if (mcfg->rx_comparison_enable_mode) {
343 reg_val_MCR = readl(msp->registers + MSP_MCR);
344 writel(reg_val_MCR |
345 (mcfg->rx_comparison_enable_mode << RCMPM_BIT),
346 msp->registers + MSP_MCR);
348 writel(mcfg->comparison_mask,
349 msp->registers + MSP_RCM);
350 writel(mcfg->comparison_value,
351 msp->registers + MSP_RCV);
356 return 0;
359 static int enable_msp(struct ux500_msp *msp, struct ux500_msp_config *config)
361 int status = 0, retval = 0;
362 u32 reg_val_DMACR, reg_val_GCR;
363 unsigned long flags;
365 /* Check msp state whether in RUN or CONFIGURED Mode */
366 if (msp->msp_state == MSP_STATE_IDLE) {
367 spin_lock_irqsave(&msp_rxtx_lock, flags);
368 if (msp->pinctrl_rxtx_ref == 0 &&
369 !(IS_ERR(msp->pinctrl_p) || IS_ERR(msp->pinctrl_def))) {
370 retval = pinctrl_select_state(msp->pinctrl_p,
371 msp->pinctrl_def);
372 if (retval)
373 pr_err("could not set MSP defstate\n");
375 if (!retval)
376 msp->pinctrl_rxtx_ref++;
377 spin_unlock_irqrestore(&msp_rxtx_lock, flags);
380 /* Configure msp with protocol dependent settings */
381 configure_protocol(msp, config);
382 setup_bitclk(msp, config);
383 if (config->multichannel_configured == 1) {
384 status = configure_multichannel(msp, config);
385 if (status)
386 dev_warn(msp->dev,
387 "%s: WARN: configure_multichannel failed (%d)!\n",
388 __func__, status);
391 /* Make sure the correct DMA-directions are configured */
392 if ((config->direction & MSP_DIR_RX) && (!msp->dma_cfg_rx)) {
393 dev_err(msp->dev, "%s: ERROR: MSP RX-mode is not configured!",
394 __func__);
395 return -EINVAL;
397 if ((config->direction == MSP_DIR_TX) && (!msp->dma_cfg_tx)) {
398 dev_err(msp->dev, "%s: ERROR: MSP TX-mode is not configured!",
399 __func__);
400 return -EINVAL;
403 reg_val_DMACR = readl(msp->registers + MSP_DMACR);
404 if (config->direction & MSP_DIR_RX)
405 reg_val_DMACR |= RX_DMA_ENABLE;
406 if (config->direction & MSP_DIR_TX)
407 reg_val_DMACR |= TX_DMA_ENABLE;
408 writel(reg_val_DMACR, msp->registers + MSP_DMACR);
410 writel(config->iodelay, msp->registers + MSP_IODLY);
412 /* Enable frame generation logic */
413 reg_val_GCR = readl(msp->registers + MSP_GCR);
414 writel(reg_val_GCR | FRAME_GEN_ENABLE, msp->registers + MSP_GCR);
416 return status;
419 static void flush_fifo_rx(struct ux500_msp *msp)
421 u32 reg_val_DR, reg_val_GCR, reg_val_FLR;
422 u32 limit = 32;
424 reg_val_GCR = readl(msp->registers + MSP_GCR);
425 writel(reg_val_GCR | RX_ENABLE, msp->registers + MSP_GCR);
427 reg_val_FLR = readl(msp->registers + MSP_FLR);
428 while (!(reg_val_FLR & RX_FIFO_EMPTY) && limit--) {
429 reg_val_DR = readl(msp->registers + MSP_DR);
430 reg_val_FLR = readl(msp->registers + MSP_FLR);
433 writel(reg_val_GCR, msp->registers + MSP_GCR);
436 static void flush_fifo_tx(struct ux500_msp *msp)
438 u32 reg_val_TSTDR, reg_val_GCR, reg_val_FLR;
439 u32 limit = 32;
441 reg_val_GCR = readl(msp->registers + MSP_GCR);
442 writel(reg_val_GCR | TX_ENABLE, msp->registers + MSP_GCR);
443 writel(MSP_ITCR_ITEN | MSP_ITCR_TESTFIFO, msp->registers + MSP_ITCR);
445 reg_val_FLR = readl(msp->registers + MSP_FLR);
446 while (!(reg_val_FLR & TX_FIFO_EMPTY) && limit--) {
447 reg_val_TSTDR = readl(msp->registers + MSP_TSTDR);
448 reg_val_FLR = readl(msp->registers + MSP_FLR);
450 writel(0x0, msp->registers + MSP_ITCR);
451 writel(reg_val_GCR, msp->registers + MSP_GCR);
454 int ux500_msp_i2s_open(struct ux500_msp *msp,
455 struct ux500_msp_config *config)
457 u32 old_reg, new_reg, mask;
458 int res;
459 unsigned int tx_sel, rx_sel, tx_busy, rx_busy;
461 if (in_interrupt()) {
462 dev_err(msp->dev,
463 "%s: ERROR: Open called in interrupt context!\n",
464 __func__);
465 return -1;
468 tx_sel = (config->direction & MSP_DIR_TX) > 0;
469 rx_sel = (config->direction & MSP_DIR_RX) > 0;
470 if (!tx_sel && !rx_sel) {
471 dev_err(msp->dev, "%s: Error: No direction selected!\n",
472 __func__);
473 return -EINVAL;
476 tx_busy = (msp->dir_busy & MSP_DIR_TX) > 0;
477 rx_busy = (msp->dir_busy & MSP_DIR_RX) > 0;
478 if (tx_busy && tx_sel) {
479 dev_err(msp->dev, "%s: Error: TX is in use!\n", __func__);
480 return -EBUSY;
482 if (rx_busy && rx_sel) {
483 dev_err(msp->dev, "%s: Error: RX is in use!\n", __func__);
484 return -EBUSY;
487 msp->dir_busy |= (tx_sel ? MSP_DIR_TX : 0) | (rx_sel ? MSP_DIR_RX : 0);
489 /* First do the global config register */
490 mask = RX_CLK_SEL_MASK | TX_CLK_SEL_MASK | RX_FSYNC_MASK |
491 TX_FSYNC_MASK | RX_SYNC_SEL_MASK | TX_SYNC_SEL_MASK |
492 RX_FIFO_ENABLE_MASK | TX_FIFO_ENABLE_MASK | SRG_CLK_SEL_MASK |
493 LOOPBACK_MASK | TX_EXTRA_DELAY_MASK;
495 new_reg = (config->tx_clk_sel | config->rx_clk_sel |
496 config->rx_fsync_pol | config->tx_fsync_pol |
497 config->rx_fsync_sel | config->tx_fsync_sel |
498 config->rx_fifo_config | config->tx_fifo_config |
499 config->srg_clk_sel | config->loopback_enable |
500 config->tx_data_enable);
502 old_reg = readl(msp->registers + MSP_GCR);
503 old_reg &= ~mask;
504 new_reg |= old_reg;
505 writel(new_reg, msp->registers + MSP_GCR);
507 res = enable_msp(msp, config);
508 if (res < 0) {
509 dev_err(msp->dev, "%s: ERROR: enable_msp failed (%d)!\n",
510 __func__, res);
511 return -EBUSY;
513 if (config->loopback_enable & 0x80)
514 msp->loopback_enable = 1;
516 /* Flush FIFOs */
517 flush_fifo_tx(msp);
518 flush_fifo_rx(msp);
520 msp->msp_state = MSP_STATE_CONFIGURED;
521 return 0;
524 static void disable_msp_rx(struct ux500_msp *msp)
526 u32 reg_val_GCR, reg_val_DMACR, reg_val_IMSC;
528 reg_val_GCR = readl(msp->registers + MSP_GCR);
529 writel(reg_val_GCR & ~RX_ENABLE, msp->registers + MSP_GCR);
530 reg_val_DMACR = readl(msp->registers + MSP_DMACR);
531 writel(reg_val_DMACR & ~RX_DMA_ENABLE, msp->registers + MSP_DMACR);
532 reg_val_IMSC = readl(msp->registers + MSP_IMSC);
533 writel(reg_val_IMSC &
534 ~(RX_SERVICE_INT | RX_OVERRUN_ERROR_INT),
535 msp->registers + MSP_IMSC);
537 msp->dir_busy &= ~MSP_DIR_RX;
540 static void disable_msp_tx(struct ux500_msp *msp)
542 u32 reg_val_GCR, reg_val_DMACR, reg_val_IMSC;
544 reg_val_GCR = readl(msp->registers + MSP_GCR);
545 writel(reg_val_GCR & ~TX_ENABLE, msp->registers + MSP_GCR);
546 reg_val_DMACR = readl(msp->registers + MSP_DMACR);
547 writel(reg_val_DMACR & ~TX_DMA_ENABLE, msp->registers + MSP_DMACR);
548 reg_val_IMSC = readl(msp->registers + MSP_IMSC);
549 writel(reg_val_IMSC &
550 ~(TX_SERVICE_INT | TX_UNDERRUN_ERR_INT),
551 msp->registers + MSP_IMSC);
553 msp->dir_busy &= ~MSP_DIR_TX;
556 static int disable_msp(struct ux500_msp *msp, unsigned int dir)
558 u32 reg_val_GCR;
559 int status = 0;
560 unsigned int disable_tx, disable_rx;
562 reg_val_GCR = readl(msp->registers + MSP_GCR);
563 disable_tx = dir & MSP_DIR_TX;
564 disable_rx = dir & MSP_DIR_TX;
565 if (disable_tx && disable_rx) {
566 reg_val_GCR = readl(msp->registers + MSP_GCR);
567 writel(reg_val_GCR | LOOPBACK_MASK,
568 msp->registers + MSP_GCR);
570 /* Flush TX-FIFO */
571 flush_fifo_tx(msp);
573 /* Disable TX-channel */
574 writel((readl(msp->registers + MSP_GCR) &
575 (~TX_ENABLE)), msp->registers + MSP_GCR);
577 /* Flush RX-FIFO */
578 flush_fifo_rx(msp);
580 /* Disable Loopback and Receive channel */
581 writel((readl(msp->registers + MSP_GCR) &
582 (~(RX_ENABLE | LOOPBACK_MASK))),
583 msp->registers + MSP_GCR);
585 disable_msp_tx(msp);
586 disable_msp_rx(msp);
587 } else if (disable_tx)
588 disable_msp_tx(msp);
589 else if (disable_rx)
590 disable_msp_rx(msp);
592 return status;
595 int ux500_msp_i2s_trigger(struct ux500_msp *msp, int cmd, int direction)
597 u32 reg_val_GCR, enable_bit;
599 if (msp->msp_state == MSP_STATE_IDLE) {
600 dev_err(msp->dev, "%s: ERROR: MSP is not configured!\n",
601 __func__);
602 return -EINVAL;
605 switch (cmd) {
606 case SNDRV_PCM_TRIGGER_START:
607 case SNDRV_PCM_TRIGGER_RESUME:
608 case SNDRV_PCM_TRIGGER_PAUSE_RELEASE:
609 if (direction == SNDRV_PCM_STREAM_PLAYBACK)
610 enable_bit = TX_ENABLE;
611 else
612 enable_bit = RX_ENABLE;
613 reg_val_GCR = readl(msp->registers + MSP_GCR);
614 writel(reg_val_GCR | enable_bit, msp->registers + MSP_GCR);
615 break;
617 case SNDRV_PCM_TRIGGER_STOP:
618 case SNDRV_PCM_TRIGGER_SUSPEND:
619 case SNDRV_PCM_TRIGGER_PAUSE_PUSH:
620 if (direction == SNDRV_PCM_STREAM_PLAYBACK)
621 disable_msp_tx(msp);
622 else
623 disable_msp_rx(msp);
624 break;
625 default:
626 return -EINVAL;
627 break;
630 return 0;
633 int ux500_msp_i2s_close(struct ux500_msp *msp, unsigned int dir)
635 int status = 0, retval = 0;
636 unsigned long flags;
638 dev_dbg(msp->dev, "%s: Enter (dir = 0x%01x).\n", __func__, dir);
640 status = disable_msp(msp, dir);
641 if (msp->dir_busy == 0) {
642 /* disable sample rate and frame generators */
643 msp->msp_state = MSP_STATE_IDLE;
644 writel((readl(msp->registers + MSP_GCR) &
645 (~(FRAME_GEN_ENABLE | SRG_ENABLE))),
646 msp->registers + MSP_GCR);
648 spin_lock_irqsave(&msp_rxtx_lock, flags);
649 WARN_ON(!msp->pinctrl_rxtx_ref);
650 msp->pinctrl_rxtx_ref--;
651 if (msp->pinctrl_rxtx_ref == 0 &&
652 !(IS_ERR(msp->pinctrl_p) || IS_ERR(msp->pinctrl_sleep))) {
653 retval = pinctrl_select_state(msp->pinctrl_p,
654 msp->pinctrl_sleep);
655 if (retval)
656 pr_err("could not set MSP sleepstate\n");
658 spin_unlock_irqrestore(&msp_rxtx_lock, flags);
660 writel(0, msp->registers + MSP_GCR);
661 writel(0, msp->registers + MSP_TCF);
662 writel(0, msp->registers + MSP_RCF);
663 writel(0, msp->registers + MSP_DMACR);
664 writel(0, msp->registers + MSP_SRG);
665 writel(0, msp->registers + MSP_MCR);
666 writel(0, msp->registers + MSP_RCM);
667 writel(0, msp->registers + MSP_RCV);
668 writel(0, msp->registers + MSP_TCE0);
669 writel(0, msp->registers + MSP_TCE1);
670 writel(0, msp->registers + MSP_TCE2);
671 writel(0, msp->registers + MSP_TCE3);
672 writel(0, msp->registers + MSP_RCE0);
673 writel(0, msp->registers + MSP_RCE1);
674 writel(0, msp->registers + MSP_RCE2);
675 writel(0, msp->registers + MSP_RCE3);
678 return status;
682 int ux500_msp_i2s_init_msp(struct platform_device *pdev,
683 struct ux500_msp **msp_p,
684 struct msp_i2s_platform_data *platform_data)
686 struct resource *res = NULL;
687 struct i2s_controller *i2s_cont;
688 struct device_node *np = pdev->dev.of_node;
689 struct ux500_msp *msp;
691 *msp_p = devm_kzalloc(&pdev->dev, sizeof(struct ux500_msp), GFP_KERNEL);
692 msp = *msp_p;
693 if (!msp)
694 return -ENOMEM;
696 if (np) {
697 if (!platform_data) {
698 platform_data = devm_kzalloc(&pdev->dev,
699 sizeof(struct msp_i2s_platform_data), GFP_KERNEL);
700 if (!platform_data)
701 return -ENOMEM;
703 } else
704 if (!platform_data)
705 return -EINVAL;
707 dev_dbg(&pdev->dev, "%s: Enter (name: %s, id: %d).\n", __func__,
708 pdev->name, platform_data->id);
710 msp->id = platform_data->id;
711 msp->dev = &pdev->dev;
712 msp->dma_cfg_rx = platform_data->msp_i2s_dma_rx;
713 msp->dma_cfg_tx = platform_data->msp_i2s_dma_tx;
715 res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
716 if (res == NULL) {
717 dev_err(&pdev->dev, "%s: ERROR: Unable to get resource!\n",
718 __func__);
719 return -ENOMEM;
722 msp->registers = devm_ioremap(&pdev->dev, res->start,
723 resource_size(res));
724 if (msp->registers == NULL) {
725 dev_err(&pdev->dev, "%s: ERROR: ioremap failed!\n", __func__);
726 return -ENOMEM;
729 msp->msp_state = MSP_STATE_IDLE;
730 msp->loopback_enable = 0;
732 /* I2S-controller is allocated and added in I2S controller class. */
733 i2s_cont = devm_kzalloc(&pdev->dev, sizeof(*i2s_cont), GFP_KERNEL);
734 if (!i2s_cont) {
735 dev_err(&pdev->dev,
736 "%s: ERROR: Failed to allocate I2S-controller!\n",
737 __func__);
738 return -ENOMEM;
740 i2s_cont->dev.parent = &pdev->dev;
741 i2s_cont->data = (void *)msp;
742 i2s_cont->id = (s16)msp->id;
743 snprintf(i2s_cont->name, sizeof(i2s_cont->name), "ux500-msp-i2s.%04x",
744 msp->id);
745 dev_dbg(&pdev->dev, "I2S device-name: '%s'\n", i2s_cont->name);
746 msp->i2s_cont = i2s_cont;
748 msp->pinctrl_p = pinctrl_get(msp->dev);
749 if (IS_ERR(msp->pinctrl_p))
750 dev_err(&pdev->dev, "could not get MSP pinctrl\n");
751 else {
752 msp->pinctrl_def = pinctrl_lookup_state(msp->pinctrl_p,
753 PINCTRL_STATE_DEFAULT);
754 if (IS_ERR(msp->pinctrl_def)) {
755 dev_err(&pdev->dev,
756 "could not get MSP defstate (%li)\n",
757 PTR_ERR(msp->pinctrl_def));
759 msp->pinctrl_sleep = pinctrl_lookup_state(msp->pinctrl_p,
760 PINCTRL_STATE_SLEEP);
761 if (IS_ERR(msp->pinctrl_sleep))
762 dev_err(&pdev->dev,
763 "could not get MSP idlestate (%li)\n",
764 PTR_ERR(msp->pinctrl_def));
767 return 0;
770 void ux500_msp_i2s_cleanup_msp(struct platform_device *pdev,
771 struct ux500_msp *msp)
773 dev_dbg(msp->dev, "%s: Enter (id = %d).\n", __func__, msp->id);
775 device_unregister(&msp->i2s_cont->dev);
778 MODULE_LICENSE("GPL v2");