linux/sound/soc/intel/atom/sst-atom-controls.c
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   1// SPDX-License-Identifier: GPL-2.0-only
   2 /*
   3 *  sst-atom-controls.c - Intel MID Platform driver DPCM ALSA controls for Mrfld
   4 *
   5 *  Copyright (C) 2013-14 Intel Corp
   6 *  Author: Omair Mohammed Abdullah <omair.m.abdullah@intel.com>
   7 *      Vinod Koul <vinod.koul@intel.com>
   8 *  ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
   9 *
  10 *  In the dpcm driver modelling when a particular FE/BE/Mixer/Pipe is active
  11 *  we forward the settings and parameters, rest we keep the values  in
  12 *  driver and forward when DAPM enables them
  13 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
  14 */
  15#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
  16
  17#include <linux/slab.h>
  18#include <sound/soc.h>
  19#include <sound/tlv.h>
  20#include "sst-mfld-platform.h"
  21#include "sst-atom-controls.h"
  22
  23static int sst_fill_byte_control(struct sst_data *drv,
  24                                         u8 ipc_msg, u8 block,
  25                                         u8 task_id, u8 pipe_id,
  26                                         u16 len, void *cmd_data)
  27{
  28        struct snd_sst_bytes_v2 *byte_data = drv->byte_stream;
  29
  30        byte_data->type = SST_CMD_BYTES_SET;
  31        byte_data->ipc_msg = ipc_msg;
  32        byte_data->block = block;
  33        byte_data->task_id = task_id;
  34        byte_data->pipe_id = pipe_id;
  35
  36        if (len > SST_MAX_BIN_BYTES - sizeof(*byte_data)) {
  37                dev_err(&drv->pdev->dev, "command length too big (%u)", len);
  38                return -EINVAL;
  39        }
  40        byte_data->len = len;
  41        memcpy(byte_data->bytes, cmd_data, len);
  42        print_hex_dump_bytes("writing to lpe: ", DUMP_PREFIX_OFFSET,
  43                             byte_data, len + sizeof(*byte_data));
  44        return 0;
  45}
  46
  47static int sst_fill_and_send_cmd_unlocked(struct sst_data *drv,
  48                                 u8 ipc_msg, u8 block, u8 task_id, u8 pipe_id,
  49                                 void *cmd_data, u16 len)
  50{
  51        int ret = 0;
  52
  53        WARN_ON(!mutex_is_locked(&drv->lock));
  54
  55        ret = sst_fill_byte_control(drv, ipc_msg,
  56                                block, task_id, pipe_id, len, cmd_data);
  57        if (ret < 0)
  58                return ret;
  59        return sst->ops->send_byte_stream(sst->dev, drv->byte_stream);
  60}
  61
  62/**
  63 * sst_fill_and_send_cmd - generate the IPC message and send it to the FW
  64 * @ipc_msg:    type of IPC (CMD, SET_PARAMS, GET_PARAMS)
  65 * @cmd_data:   the IPC payload
  66 */
  67static int sst_fill_and_send_cmd(struct sst_data *drv,
  68                                 u8 ipc_msg, u8 block, u8 task_id, u8 pipe_id,
  69                                 void *cmd_data, u16 len)
  70{
  71        int ret;
  72
  73        mutex_lock(&drv->lock);
  74        ret = sst_fill_and_send_cmd_unlocked(drv, ipc_msg, block,
  75                                        task_id, pipe_id, cmd_data, len);
  76        mutex_unlock(&drv->lock);
  77
  78        return ret;
  79}
  80
  81/**
  82 * tx map value is a bitfield where each bit represents a FW channel
  83 *
  84 *                      3 2 1 0         # 0 = codec0, 1 = codec1
  85 *                      RLRLRLRL        # 3, 4 = reserved
  86 *
  87 * e.g. slot 0 rx map = 00001100b -> data from slot 0 goes into codec_in1 L,R
  88 */
  89static u8 sst_ssp_tx_map[SST_MAX_TDM_SLOTS] = {
  90        0x1, 0x2, 0x4, 0x8, 0x10, 0x20, 0x40, 0x80, /* default rx map */
  91};
  92
  93/**
  94 * rx map value is a bitfield where each bit represents a slot
  95 *
  96 *                        76543210      # 0 = slot 0, 1 = slot 1
  97 *
  98 * e.g. codec1_0 tx map = 00000101b -> data from codec_out1_0 goes into slot 0, 2
  99 */
 100static u8 sst_ssp_rx_map[SST_MAX_TDM_SLOTS] = {
 101        0x1, 0x2, 0x4, 0x8, 0x10, 0x20, 0x40, 0x80, /* default tx map */
 102};
 103
 104/**
 105 * NOTE: this is invoked with lock held
 106 */
 107static int sst_send_slot_map(struct sst_data *drv)
 108{
 109        struct sst_param_sba_ssp_slot_map cmd;
 110
 111        SST_FILL_DEFAULT_DESTINATION(cmd.header.dst);
 112        cmd.header.command_id = SBA_SET_SSP_SLOT_MAP;
 113        cmd.header.length = sizeof(struct sst_param_sba_ssp_slot_map)
 114                                - sizeof(struct sst_dsp_header);
 115
 116        cmd.param_id = SBA_SET_SSP_SLOT_MAP;
 117        cmd.param_len = sizeof(cmd.rx_slot_map) + sizeof(cmd.tx_slot_map)
 118                                        + sizeof(cmd.ssp_index);
 119        cmd.ssp_index = SSP_CODEC;
 120
 121        memcpy(cmd.rx_slot_map, &sst_ssp_tx_map[0], sizeof(cmd.rx_slot_map));
 122        memcpy(cmd.tx_slot_map, &sst_ssp_rx_map[0], sizeof(cmd.tx_slot_map));
 123
 124        return sst_fill_and_send_cmd_unlocked(drv, SST_IPC_IA_SET_PARAMS,
 125                        SST_FLAG_BLOCKED, SST_TASK_SBA, 0, &cmd,
 126                              sizeof(cmd.header) + cmd.header.length);
 127}
 128
 129static int sst_slot_enum_info(struct snd_kcontrol *kcontrol,
 130                       struct snd_ctl_elem_info *uinfo)
 131{
 132        struct sst_enum *e = (struct sst_enum *)kcontrol->private_value;
 133
 134        uinfo->type = SNDRV_CTL_ELEM_TYPE_ENUMERATED;
 135        uinfo->count = 1;
 136        uinfo->value.enumerated.items = e->max;
 137
 138        if (uinfo->value.enumerated.item > e->max - 1)
 139                uinfo->value.enumerated.item = e->max - 1;
 140        strcpy(uinfo->value.enumerated.name,
 141                e->texts[uinfo->value.enumerated.item]);
 142
 143        return 0;
 144}
 145
 146/**
 147 * sst_slot_get - get the status of the interleaver/deinterleaver control
 148 *
 149 * Searches the map where the control status is stored, and gets the
 150 * channel/slot which is currently set for this enumerated control. Since it is
 151 * an enumerated control, there is only one possible value.
 152 */
 153static int sst_slot_get(struct snd_kcontrol *kcontrol,
 154                        struct snd_ctl_elem_value *ucontrol)
 155{
 156        struct sst_enum *e = (void *)kcontrol->private_value;
 157        struct snd_soc_component *c = snd_kcontrol_chip(kcontrol);
 158        struct sst_data *drv = snd_soc_component_get_drvdata(c);
 159        unsigned int ctl_no = e->reg;
 160        unsigned int is_tx = e->tx;
 161        unsigned int val, mux;
 162        u8 *map = is_tx ? sst_ssp_rx_map : sst_ssp_tx_map;
 163
 164        mutex_lock(&drv->lock);
 165        val = 1 << ctl_no;
 166        /* search which slot/channel has this bit set - there should be only one */
 167        for (mux = e->max; mux > 0;  mux--)
 168                if (map[mux - 1] & val)
 169                        break;
 170
 171        ucontrol->value.enumerated.item[0] = mux;
 172        mutex_unlock(&drv->lock);
 173
 174        dev_dbg(c->dev, "%s - %s map = %#x\n",
 175                        is_tx ? "tx channel" : "rx slot",
 176                         e->texts[mux], mux ? map[mux - 1] : -1);
 177        return 0;
 178}
 179
 180/* sst_check_and_send_slot_map - helper for checking power state and sending
 181 * slot map cmd
 182 *
 183 * called with lock held
 184 */
 185static int sst_check_and_send_slot_map(struct sst_data *drv, struct snd_kcontrol *kcontrol)
 186{
 187        struct sst_enum *e = (void *)kcontrol->private_value;
 188        int ret = 0;
 189
 190        if (e->w && e->w->power)
 191                ret = sst_send_slot_map(drv);
 192        else if (!e->w)
 193                dev_err(&drv->pdev->dev, "Slot control: %s doesn't have DAPM widget!!!\n",
 194                                kcontrol->id.name);
 195        return ret;
 196}
 197
 198/**
 199 * sst_slot_put - set the status of interleaver/deinterleaver control
 200 *
 201 * (de)interleaver controls are defined in opposite sense to be user-friendly
 202 *
 203 * Instead of the enum value being the value written to the register, it is the
 204 * register address; and the kcontrol number (register num) is the value written
 205 * to the register. This is so that there can be only one value for each
 206 * slot/channel since there is only one control for each slot/channel.
 207 *
 208 * This means that whenever an enum is set, we need to clear the bit
 209 * for that kcontrol_no for all the interleaver OR deinterleaver registers
 210 */
 211static int sst_slot_put(struct snd_kcontrol *kcontrol,
 212                        struct snd_ctl_elem_value *ucontrol)
 213{
 214        struct snd_soc_component *c = snd_soc_kcontrol_component(kcontrol);
 215        struct sst_data *drv = snd_soc_component_get_drvdata(c);
 216        struct sst_enum *e = (void *)kcontrol->private_value;
 217        int i, ret = 0;
 218        unsigned int ctl_no = e->reg;
 219        unsigned int is_tx = e->tx;
 220        unsigned int slot_channel_no;
 221        unsigned int val, mux;
 222        u8 *map;
 223
 224        map = is_tx ? sst_ssp_rx_map : sst_ssp_tx_map;
 225
 226        val = 1 << ctl_no;
 227        mux = ucontrol->value.enumerated.item[0];
 228        if (mux > e->max - 1)
 229                return -EINVAL;
 230
 231        mutex_lock(&drv->lock);
 232        /* first clear all registers of this bit */
 233        for (i = 0; i < e->max; i++)
 234                map[i] &= ~val;
 235
 236        if (mux == 0) {
 237                /* kctl set to 'none' and we reset the bits so send IPC */
 238                ret = sst_check_and_send_slot_map(drv, kcontrol);
 239
 240                mutex_unlock(&drv->lock);
 241                return ret;
 242        }
 243
 244        /* offset by one to take "None" into account */
 245        slot_channel_no = mux - 1;
 246        map[slot_channel_no] |= val;
 247
 248        dev_dbg(c->dev, "%s %s map = %#x\n",
 249                        is_tx ? "tx channel" : "rx slot",
 250                        e->texts[mux], map[slot_channel_no]);
 251
 252        ret = sst_check_and_send_slot_map(drv, kcontrol);
 253
 254        mutex_unlock(&drv->lock);
 255        return ret;
 256}
 257
 258static int sst_send_algo_cmd(struct sst_data *drv,
 259                              struct sst_algo_control *bc)
 260{
 261        int len, ret = 0;
 262        struct sst_cmd_set_params *cmd;
 263
 264        /*bc->max includes sizeof algos + length field*/
 265        len = sizeof(cmd->dst) + sizeof(cmd->command_id) + bc->max;
 266
 267        cmd = kzalloc(len, GFP_KERNEL);
 268        if (cmd == NULL)
 269                return -ENOMEM;
 270
 271        SST_FILL_DESTINATION(2, cmd->dst, bc->pipe_id, bc->module_id);
 272        cmd->command_id = bc->cmd_id;
 273        memcpy(cmd->params, bc->params, bc->max);
 274
 275        ret = sst_fill_and_send_cmd_unlocked(drv, SST_IPC_IA_SET_PARAMS,
 276                                SST_FLAG_BLOCKED, bc->task_id, 0, cmd, len);
 277        kfree(cmd);
 278        return ret;
 279}
 280
 281/**
 282 * sst_find_and_send_pipe_algo - send all the algo parameters for a pipe
 283 *
 284 * The algos which are in each pipeline are sent to the firmware one by one
 285 *
 286 * Called with lock held
 287 */
 288static int sst_find_and_send_pipe_algo(struct sst_data *drv,
 289                                        const char *pipe, struct sst_ids *ids)
 290{
 291        int ret = 0;
 292        struct sst_algo_control *bc;
 293        struct sst_module *algo = NULL;
 294
 295        dev_dbg(&drv->pdev->dev, "Enter: widget=%s\n", pipe);
 296
 297        list_for_each_entry(algo, &ids->algo_list, node) {
 298                bc = (void *)algo->kctl->private_value;
 299
 300                dev_dbg(&drv->pdev->dev, "Found algo control name=%s pipe=%s\n",
 301                                algo->kctl->id.name, pipe);
 302                ret = sst_send_algo_cmd(drv, bc);
 303                if (ret)
 304                        return ret;
 305        }
 306        return ret;
 307}
 308
 309static int sst_algo_bytes_ctl_info(struct snd_kcontrol *kcontrol,
 310                            struct snd_ctl_elem_info *uinfo)
 311{
 312        struct sst_algo_control *bc = (void *)kcontrol->private_value;
 313
 314        uinfo->type = SNDRV_CTL_ELEM_TYPE_BYTES;
 315        uinfo->count = bc->max;
 316
 317        return 0;
 318}
 319
 320static int sst_algo_control_get(struct snd_kcontrol *kcontrol,
 321                                struct snd_ctl_elem_value *ucontrol)
 322{
 323        struct sst_algo_control *bc = (void *)kcontrol->private_value;
 324        struct snd_soc_component *component = snd_kcontrol_chip(kcontrol);
 325
 326        switch (bc->type) {
 327        case SST_ALGO_PARAMS:
 328                memcpy(ucontrol->value.bytes.data, bc->params, bc->max);
 329                break;
 330        default:
 331                dev_err(component->dev, "Invalid Input- algo type:%d\n",
 332                                bc->type);
 333                return -EINVAL;
 334
 335        }
 336        return 0;
 337}
 338
 339static int sst_algo_control_set(struct snd_kcontrol *kcontrol,
 340                                struct snd_ctl_elem_value *ucontrol)
 341{
 342        int ret = 0;
 343        struct snd_soc_component *cmpnt = snd_soc_kcontrol_component(kcontrol);
 344        struct sst_data *drv = snd_soc_component_get_drvdata(cmpnt);
 345        struct sst_algo_control *bc = (void *)kcontrol->private_value;
 346
 347        dev_dbg(cmpnt->dev, "control_name=%s\n", kcontrol->id.name);
 348        mutex_lock(&drv->lock);
 349        switch (bc->type) {
 350        case SST_ALGO_PARAMS:
 351                memcpy(bc->params, ucontrol->value.bytes.data, bc->max);
 352                break;
 353        default:
 354                mutex_unlock(&drv->lock);
 355                dev_err(cmpnt->dev, "Invalid Input- algo type:%d\n",
 356                                bc->type);
 357                return -EINVAL;
 358        }
 359        /*if pipe is enabled, need to send the algo params from here*/
 360        if (bc->w && bc->w->power)
 361                ret = sst_send_algo_cmd(drv, bc);
 362        mutex_unlock(&drv->lock);
 363
 364        return ret;
 365}
 366
 367static int sst_gain_ctl_info(struct snd_kcontrol *kcontrol,
 368        struct snd_ctl_elem_info *uinfo)
 369{
 370        struct sst_gain_mixer_control *mc = (void *)kcontrol->private_value;
 371
 372        uinfo->type = SNDRV_CTL_ELEM_TYPE_INTEGER;
 373        uinfo->count = mc->stereo ? 2 : 1;
 374        uinfo->value.integer.min = mc->min;
 375        uinfo->value.integer.max = mc->max;
 376
 377        return 0;
 378}
 379
 380/**
 381 * sst_send_gain_cmd - send the gain algorithm IPC to the FW
 382 * @gv:         the stored value of gain (also contains rampduration)
 383 * @mute:       flag that indicates whether this was called from the
 384 *              digital_mute callback or directly. If called from the
 385 *              digital_mute callback, module will be muted/unmuted based on this
 386 *              flag. The flag is always 0 if called directly.
 387 *
 388 * Called with sst_data.lock held
 389 *
 390 * The user-set gain value is sent only if the user-controllable 'mute' control
 391 * is OFF (indicated by gv->mute). Otherwise, the mute value (MIN value) is
 392 * sent.
 393 */
 394static int sst_send_gain_cmd(struct sst_data *drv, struct sst_gain_value *gv,
 395                              u16 task_id, u16 loc_id, u16 module_id, int mute)
 396{
 397        struct sst_cmd_set_gain_dual cmd;
 398
 399        dev_dbg(&drv->pdev->dev, "Enter\n");
 400
 401        cmd.header.command_id = MMX_SET_GAIN;
 402        SST_FILL_DEFAULT_DESTINATION(cmd.header.dst);
 403        cmd.gain_cell_num = 1;
 404
 405        if (mute || gv->mute) {
 406                cmd.cell_gains[0].cell_gain_left = SST_GAIN_MIN_VALUE;
 407                cmd.cell_gains[0].cell_gain_right = SST_GAIN_MIN_VALUE;
 408        } else {
 409                cmd.cell_gains[0].cell_gain_left = gv->l_gain;
 410                cmd.cell_gains[0].cell_gain_right = gv->r_gain;
 411        }
 412
 413        SST_FILL_DESTINATION(2, cmd.cell_gains[0].dest,
 414                             loc_id, module_id);
 415        cmd.cell_gains[0].gain_time_constant = gv->ramp_duration;
 416
 417        cmd.header.length = sizeof(struct sst_cmd_set_gain_dual)
 418                                - sizeof(struct sst_dsp_header);
 419
 420        /* we are with lock held, so call the unlocked api  to send */
 421        return sst_fill_and_send_cmd_unlocked(drv, SST_IPC_IA_SET_PARAMS,
 422                                SST_FLAG_BLOCKED, task_id, 0, &cmd,
 423                              sizeof(cmd.header) + cmd.header.length);
 424}
 425
 426static int sst_gain_get(struct snd_kcontrol *kcontrol,
 427                        struct snd_ctl_elem_value *ucontrol)
 428{
 429        struct snd_soc_component *component = snd_kcontrol_chip(kcontrol);
 430        struct sst_gain_mixer_control *mc = (void *)kcontrol->private_value;
 431        struct sst_gain_value *gv = mc->gain_val;
 432
 433        switch (mc->type) {
 434        case SST_GAIN_TLV:
 435                ucontrol->value.integer.value[0] = gv->l_gain;
 436                ucontrol->value.integer.value[1] = gv->r_gain;
 437                break;
 438
 439        case SST_GAIN_MUTE:
 440                ucontrol->value.integer.value[0] = gv->mute ? 0 : 1;
 441                break;
 442
 443        case SST_GAIN_RAMP_DURATION:
 444                ucontrol->value.integer.value[0] = gv->ramp_duration;
 445                break;
 446
 447        default:
 448                dev_err(component->dev, "Invalid Input- gain type:%d\n",
 449                                mc->type);
 450                return -EINVAL;
 451        }
 452
 453        return 0;
 454}
 455
 456static int sst_gain_put(struct snd_kcontrol *kcontrol,
 457                        struct snd_ctl_elem_value *ucontrol)
 458{
 459        int ret = 0;
 460        struct snd_soc_component *cmpnt = snd_soc_kcontrol_component(kcontrol);
 461        struct sst_data *drv = snd_soc_component_get_drvdata(cmpnt);
 462        struct sst_gain_mixer_control *mc = (void *)kcontrol->private_value;
 463        struct sst_gain_value *gv = mc->gain_val;
 464
 465        mutex_lock(&drv->lock);
 466
 467        switch (mc->type) {
 468        case SST_GAIN_TLV:
 469                gv->l_gain = ucontrol->value.integer.value[0];
 470                gv->r_gain = ucontrol->value.integer.value[1];
 471                dev_dbg(cmpnt->dev, "%s: Volume %d, %d\n",
 472                                mc->pname, gv->l_gain, gv->r_gain);
 473                break;
 474
 475        case SST_GAIN_MUTE:
 476                gv->mute = !ucontrol->value.integer.value[0];
 477                dev_dbg(cmpnt->dev, "%s: Mute %d\n", mc->pname, gv->mute);
 478                break;
 479
 480        case SST_GAIN_RAMP_DURATION:
 481                gv->ramp_duration = ucontrol->value.integer.value[0];
 482                dev_dbg(cmpnt->dev, "%s: Ramp Delay%d\n",
 483                                        mc->pname, gv->ramp_duration);
 484                break;
 485
 486        default:
 487                mutex_unlock(&drv->lock);
 488                dev_err(cmpnt->dev, "Invalid Input- gain type:%d\n",
 489                                mc->type);
 490                return -EINVAL;
 491        }
 492
 493        if (mc->w && mc->w->power)
 494                ret = sst_send_gain_cmd(drv, gv, mc->task_id,
 495                        mc->pipe_id | mc->instance_id, mc->module_id, 0);
 496        mutex_unlock(&drv->lock);
 497
 498        return ret;
 499}
 500
 501static int sst_set_pipe_gain(struct sst_ids *ids,
 502                                struct sst_data *drv, int mute);
 503
 504static int sst_send_pipe_module_params(struct snd_soc_dapm_widget *w,
 505                struct snd_kcontrol *kcontrol)
 506{
 507        struct snd_soc_component *c = snd_soc_dapm_to_component(w->dapm);
 508        struct sst_data *drv = snd_soc_component_get_drvdata(c);
 509        struct sst_ids *ids = w->priv;
 510
 511        mutex_lock(&drv->lock);
 512        sst_find_and_send_pipe_algo(drv, w->name, ids);
 513        sst_set_pipe_gain(ids, drv, 0);
 514        mutex_unlock(&drv->lock);
 515
 516        return 0;
 517}
 518
 519static int sst_generic_modules_event(struct snd_soc_dapm_widget *w,
 520                                     struct snd_kcontrol *k, int event)
 521{
 522        if (SND_SOC_DAPM_EVENT_ON(event))
 523                return sst_send_pipe_module_params(w, k);
 524        return 0;
 525}
 526
 527static const DECLARE_TLV_DB_SCALE(sst_gain_tlv_common, SST_GAIN_MIN_VALUE * 10, 10, 0);
 528
 529/* Look up table to convert MIXER SW bit regs to SWM inputs */
 530static const uint swm_mixer_input_ids[SST_SWM_INPUT_COUNT] = {
 531        [SST_IP_MODEM]          = SST_SWM_IN_MODEM,
 532        [SST_IP_CODEC0]         = SST_SWM_IN_CODEC0,
 533        [SST_IP_CODEC1]         = SST_SWM_IN_CODEC1,
 534        [SST_IP_LOOP0]          = SST_SWM_IN_SPROT_LOOP,
 535        [SST_IP_LOOP1]          = SST_SWM_IN_MEDIA_LOOP1,
 536        [SST_IP_LOOP2]          = SST_SWM_IN_MEDIA_LOOP2,
 537        [SST_IP_PCM0]           = SST_SWM_IN_PCM0,
 538        [SST_IP_PCM1]           = SST_SWM_IN_PCM1,
 539        [SST_IP_MEDIA0]         = SST_SWM_IN_MEDIA0,
 540        [SST_IP_MEDIA1]         = SST_SWM_IN_MEDIA1,
 541        [SST_IP_MEDIA2]         = SST_SWM_IN_MEDIA2,
 542        [SST_IP_MEDIA3]         = SST_SWM_IN_MEDIA3,
 543};
 544
 545/**
 546 * fill_swm_input - fill in the SWM input ids given the register
 547 *
 548 * The register value is a bit-field inicated which mixer inputs are ON. Use the
 549 * lookup table to get the input-id and fill it in the structure.
 550 */
 551static int fill_swm_input(struct snd_soc_component *cmpnt,
 552                struct swm_input_ids *swm_input, unsigned int reg)
 553{
 554        uint i, is_set, nb_inputs = 0;
 555        u16 input_loc_id;
 556
 557        dev_dbg(cmpnt->dev, "reg: %#x\n", reg);
 558        for (i = 0; i < SST_SWM_INPUT_COUNT; i++) {
 559                is_set = reg & BIT(i);
 560                if (!is_set)
 561                        continue;
 562
 563                input_loc_id = swm_mixer_input_ids[i];
 564                SST_FILL_DESTINATION(2, swm_input->input_id,
 565                                     input_loc_id, SST_DEFAULT_MODULE_ID);
 566                nb_inputs++;
 567                swm_input++;
 568                dev_dbg(cmpnt->dev, "input id: %#x, nb_inputs: %d\n",
 569                                input_loc_id, nb_inputs);
 570
 571                if (nb_inputs == SST_CMD_SWM_MAX_INPUTS) {
 572                        dev_warn(cmpnt->dev, "SET_SWM cmd max inputs reached");
 573                        break;
 574                }
 575        }
 576        return nb_inputs;
 577}
 578
 579
 580/**
 581 * called with lock held
 582 */
 583static int sst_set_pipe_gain(struct sst_ids *ids,
 584                        struct sst_data *drv, int mute)
 585{
 586        int ret = 0;
 587        struct sst_gain_mixer_control *mc;
 588        struct sst_gain_value *gv;
 589        struct sst_module *gain = NULL;
 590
 591        list_for_each_entry(gain, &ids->gain_list, node) {
 592                struct snd_kcontrol *kctl = gain->kctl;
 593
 594                dev_dbg(&drv->pdev->dev, "control name=%s\n", kctl->id.name);
 595                mc = (void *)kctl->private_value;
 596                gv = mc->gain_val;
 597
 598                ret = sst_send_gain_cmd(drv, gv, mc->task_id,
 599                        mc->pipe_id | mc->instance_id, mc->module_id, mute);
 600                if (ret)
 601                        return ret;
 602        }
 603        return ret;
 604}
 605
 606static int sst_swm_mixer_event(struct snd_soc_dapm_widget *w,
 607                        struct snd_kcontrol *k, int event)
 608{
 609        struct sst_cmd_set_swm cmd;
 610        struct snd_soc_component *cmpnt = snd_soc_dapm_to_component(w->dapm);
 611        struct sst_data *drv = snd_soc_component_get_drvdata(cmpnt);
 612        struct sst_ids *ids = w->priv;
 613        bool set_mixer = false;
 614        struct soc_mixer_control *mc;
 615        int val = 0;
 616        int i = 0;
 617
 618        dev_dbg(cmpnt->dev, "widget = %s\n", w->name);
 619        /*
 620         * Identify which mixer input is on and send the bitmap of the
 621         * inputs as an IPC to the DSP.
 622         */
 623        for (i = 0; i < w->num_kcontrols; i++) {
 624                if (dapm_kcontrol_get_value(w->kcontrols[i])) {
 625                        mc = (struct soc_mixer_control *)(w->kcontrols[i])->private_value;
 626                        val |= 1 << mc->shift;
 627                }
 628        }
 629        dev_dbg(cmpnt->dev, "val = %#x\n", val);
 630
 631        switch (event) {
 632        case SND_SOC_DAPM_PRE_PMU:
 633        case SND_SOC_DAPM_POST_PMD:
 634                set_mixer = true;
 635                break;
 636        case SND_SOC_DAPM_POST_REG:
 637                if (w->power)
 638                        set_mixer = true;
 639                break;
 640        default:
 641                set_mixer = false;
 642        }
 643
 644        if (!set_mixer)
 645                return 0;
 646
 647        if (SND_SOC_DAPM_EVENT_ON(event) ||
 648            event == SND_SOC_DAPM_POST_REG)
 649                cmd.switch_state = SST_SWM_ON;
 650        else
 651                cmd.switch_state = SST_SWM_OFF;
 652
 653        SST_FILL_DEFAULT_DESTINATION(cmd.header.dst);
 654        /* MMX_SET_SWM == SBA_SET_SWM */
 655        cmd.header.command_id = SBA_SET_SWM;
 656
 657        SST_FILL_DESTINATION(2, cmd.output_id,
 658                             ids->location_id, SST_DEFAULT_MODULE_ID);
 659        cmd.nb_inputs = fill_swm_input(cmpnt, &cmd.input[0], val);
 660        cmd.header.length = offsetof(struct sst_cmd_set_swm, input)
 661                                - sizeof(struct sst_dsp_header)
 662                                + (cmd.nb_inputs * sizeof(cmd.input[0]));
 663
 664        return sst_fill_and_send_cmd(drv, SST_IPC_IA_CMD, SST_FLAG_BLOCKED,
 665                              ids->task_id, 0, &cmd,
 666                              sizeof(cmd.header) + cmd.header.length);
 667}
 668
 669/* SBA mixers - 16 inputs */
 670#define SST_SBA_DECLARE_MIX_CONTROLS(kctl_name)                                                 \
 671        static const struct snd_kcontrol_new kctl_name[] = {                                    \
 672                SOC_DAPM_SINGLE("modem_in Switch", SND_SOC_NOPM, SST_IP_MODEM, 1, 0),           \
 673                SOC_DAPM_SINGLE("codec_in0 Switch", SND_SOC_NOPM, SST_IP_CODEC0, 1, 0),         \
 674                SOC_DAPM_SINGLE("codec_in1 Switch", SND_SOC_NOPM, SST_IP_CODEC1, 1, 0),         \
 675                SOC_DAPM_SINGLE("sprot_loop_in Switch", SND_SOC_NOPM, SST_IP_LOOP0, 1, 0),      \
 676                SOC_DAPM_SINGLE("media_loop1_in Switch", SND_SOC_NOPM, SST_IP_LOOP1, 1, 0),     \
 677                SOC_DAPM_SINGLE("media_loop2_in Switch", SND_SOC_NOPM, SST_IP_LOOP2, 1, 0),     \
 678                SOC_DAPM_SINGLE("pcm0_in Switch", SND_SOC_NOPM, SST_IP_PCM0, 1, 0),             \
 679                SOC_DAPM_SINGLE("pcm1_in Switch", SND_SOC_NOPM, SST_IP_PCM1, 1, 0),             \
 680        }
 681
 682#define SST_SBA_MIXER_GRAPH_MAP(mix_name)                       \
 683        { mix_name, "modem_in Switch",  "modem_in" },           \
 684        { mix_name, "codec_in0 Switch", "codec_in0" },          \
 685        { mix_name, "codec_in1 Switch", "codec_in1" },          \
 686        { mix_name, "sprot_loop_in Switch",     "sprot_loop_in" },      \
 687        { mix_name, "media_loop1_in Switch",    "media_loop1_in" },     \
 688        { mix_name, "media_loop2_in Switch",    "media_loop2_in" },     \
 689        { mix_name, "pcm0_in Switch",           "pcm0_in" },            \
 690        { mix_name, "pcm1_in Switch",           "pcm1_in" }
 691
 692#define SST_MMX_DECLARE_MIX_CONTROLS(kctl_name)                                         \
 693        static const struct snd_kcontrol_new kctl_name[] = {                            \
 694                SOC_DAPM_SINGLE("media0_in Switch", SND_SOC_NOPM, SST_IP_MEDIA0, 1, 0), \
 695                SOC_DAPM_SINGLE("media1_in Switch", SND_SOC_NOPM, SST_IP_MEDIA1, 1, 0), \
 696                SOC_DAPM_SINGLE("media2_in Switch", SND_SOC_NOPM, SST_IP_MEDIA2, 1, 0), \
 697                SOC_DAPM_SINGLE("media3_in Switch", SND_SOC_NOPM, SST_IP_MEDIA3, 1, 0), \
 698        }
 699
 700SST_MMX_DECLARE_MIX_CONTROLS(sst_mix_media0_controls);
 701SST_MMX_DECLARE_MIX_CONTROLS(sst_mix_media1_controls);
 702
 703/* 18 SBA mixers */
 704SST_SBA_DECLARE_MIX_CONTROLS(sst_mix_pcm0_controls);
 705SST_SBA_DECLARE_MIX_CONTROLS(sst_mix_pcm1_controls);
 706SST_SBA_DECLARE_MIX_CONTROLS(sst_mix_pcm2_controls);
 707SST_SBA_DECLARE_MIX_CONTROLS(sst_mix_sprot_l0_controls);
 708SST_SBA_DECLARE_MIX_CONTROLS(sst_mix_media_l1_controls);
 709SST_SBA_DECLARE_MIX_CONTROLS(sst_mix_media_l2_controls);
 710SST_SBA_DECLARE_MIX_CONTROLS(sst_mix_voip_controls);
 711SST_SBA_DECLARE_MIX_CONTROLS(sst_mix_codec0_controls);
 712SST_SBA_DECLARE_MIX_CONTROLS(sst_mix_codec1_controls);
 713SST_SBA_DECLARE_MIX_CONTROLS(sst_mix_modem_controls);
 714
 715/*
 716 * sst_handle_vb_timer - Start/Stop the DSP scheduler
 717 *
 718 * The DSP expects first cmd to be SBA_VB_START, so at first startup send
 719 * that.
 720 * DSP expects last cmd to be SBA_VB_IDLE, so at last shutdown send that.
 721 *
 722 * Do refcount internally so that we send command only at first start
 723 * and last end. Since SST driver does its own ref count, invoke sst's
 724 * power ops always!
 725 */
 726int sst_handle_vb_timer(struct snd_soc_dai *dai, bool enable)
 727{
 728        int ret = 0;
 729        struct sst_cmd_generic cmd;
 730        struct sst_data *drv = snd_soc_dai_get_drvdata(dai);
 731        static int timer_usage;
 732
 733        if (enable)
 734                cmd.header.command_id = SBA_VB_START;
 735        else
 736                cmd.header.command_id = SBA_IDLE;
 737        dev_dbg(dai->dev, "enable=%u, usage=%d\n", enable, timer_usage);
 738
 739        SST_FILL_DEFAULT_DESTINATION(cmd.header.dst);
 740        cmd.header.length = 0;
 741
 742        if (enable) {
 743                ret = sst->ops->power(sst->dev, true);
 744                if (ret < 0)
 745                        return ret;
 746        }
 747
 748        mutex_lock(&drv->lock);
 749        if (enable)
 750                timer_usage++;
 751        else
 752                timer_usage--;
 753
 754        /*
 755         * Send the command only if this call is the first enable or last
 756         * disable
 757         */
 758        if ((enable && (timer_usage == 1)) ||
 759            (!enable && (timer_usage == 0))) {
 760                ret = sst_fill_and_send_cmd_unlocked(drv, SST_IPC_IA_CMD,
 761                                SST_FLAG_BLOCKED, SST_TASK_SBA, 0, &cmd,
 762                                sizeof(cmd.header) + cmd.header.length);
 763                if (ret && enable) {
 764                        timer_usage--;
 765                        enable  = false;
 766                }
 767        }
 768        mutex_unlock(&drv->lock);
 769
 770        if (!enable)
 771                sst->ops->power(sst->dev, false);
 772        return ret;
 773}
 774
 775int sst_fill_ssp_slot(struct snd_soc_dai *dai, unsigned int tx_mask,
 776                unsigned int rx_mask, int slots, int slot_width)
 777{
 778        struct sst_data *ctx = snd_soc_dai_get_drvdata(dai);
 779
 780        ctx->ssp_cmd.nb_slots = slots;
 781        ctx->ssp_cmd.active_tx_slot_map = tx_mask;
 782        ctx->ssp_cmd.active_rx_slot_map = rx_mask;
 783        ctx->ssp_cmd.nb_bits_per_slots = slot_width;
 784
 785        return 0;
 786}
 787
 788static int sst_get_frame_sync_polarity(struct snd_soc_dai *dai,
 789                unsigned int fmt)
 790{
 791        int format;
 792
 793        format = fmt & SND_SOC_DAIFMT_INV_MASK;
 794        dev_dbg(dai->dev, "Enter:%s, format=%x\n", __func__, format);
 795
 796        switch (format) {
 797        case SND_SOC_DAIFMT_NB_NF:
 798        case SND_SOC_DAIFMT_IB_NF:
 799                return SSP_FS_ACTIVE_HIGH;
 800        case SND_SOC_DAIFMT_NB_IF:
 801        case SND_SOC_DAIFMT_IB_IF:
 802                return SSP_FS_ACTIVE_LOW;
 803        default:
 804                dev_err(dai->dev, "Invalid frame sync polarity %d\n", format);
 805        }
 806
 807        return -EINVAL;
 808}
 809
 810static int sst_get_ssp_mode(struct snd_soc_dai *dai, unsigned int fmt)
 811{
 812        int format;
 813
 814        format = (fmt & SND_SOC_DAIFMT_MASTER_MASK);
 815        dev_dbg(dai->dev, "Enter:%s, format=%x\n", __func__, format);
 816
 817        switch (format) {
 818        case SND_SOC_DAIFMT_CBS_CFS:
 819                return SSP_MODE_MASTER;
 820        case SND_SOC_DAIFMT_CBM_CFM:
 821                return SSP_MODE_SLAVE;
 822        default:
 823                dev_err(dai->dev, "Invalid ssp protocol: %d\n", format);
 824        }
 825
 826        return -EINVAL;
 827}
 828
 829
 830int sst_fill_ssp_config(struct snd_soc_dai *dai, unsigned int fmt)
 831{
 832        unsigned int mode;
 833        int fs_polarity;
 834        struct sst_data *ctx = snd_soc_dai_get_drvdata(dai);
 835
 836        mode = fmt & SND_SOC_DAIFMT_FORMAT_MASK;
 837
 838        switch (mode) {
 839        case SND_SOC_DAIFMT_DSP_B:
 840                ctx->ssp_cmd.ssp_protocol = SSP_MODE_PCM;
 841                ctx->ssp_cmd.mode = sst_get_ssp_mode(dai, fmt) | (SSP_PCM_MODE_NETWORK << 1);
 842                ctx->ssp_cmd.start_delay = 0;
 843                ctx->ssp_cmd.data_polarity = 1;
 844                ctx->ssp_cmd.frame_sync_width = 1;
 845                break;
 846
 847        case SND_SOC_DAIFMT_DSP_A:
 848                ctx->ssp_cmd.ssp_protocol = SSP_MODE_PCM;
 849                ctx->ssp_cmd.mode = sst_get_ssp_mode(dai, fmt) | (SSP_PCM_MODE_NETWORK << 1);
 850                ctx->ssp_cmd.start_delay = 1;
 851                ctx->ssp_cmd.data_polarity = 1;
 852                ctx->ssp_cmd.frame_sync_width = 1;
 853                break;
 854
 855        case SND_SOC_DAIFMT_I2S:
 856                ctx->ssp_cmd.ssp_protocol = SSP_MODE_I2S;
 857                ctx->ssp_cmd.mode = sst_get_ssp_mode(dai, fmt) | (SSP_PCM_MODE_NORMAL << 1);
 858                ctx->ssp_cmd.start_delay = 1;
 859                ctx->ssp_cmd.data_polarity = 0;
 860                ctx->ssp_cmd.frame_sync_width = ctx->ssp_cmd.nb_bits_per_slots;
 861                break;
 862
 863        case SND_SOC_DAIFMT_LEFT_J:
 864                ctx->ssp_cmd.ssp_protocol = SSP_MODE_I2S;
 865                ctx->ssp_cmd.mode = sst_get_ssp_mode(dai, fmt) | (SSP_PCM_MODE_NORMAL << 1);
 866                ctx->ssp_cmd.start_delay = 0;
 867                ctx->ssp_cmd.data_polarity = 0;
 868                ctx->ssp_cmd.frame_sync_width = ctx->ssp_cmd.nb_bits_per_slots;
 869                break;
 870
 871        default:
 872                dev_dbg(dai->dev, "using default ssp configs\n");
 873        }
 874
 875        fs_polarity = sst_get_frame_sync_polarity(dai, fmt);
 876        if (fs_polarity < 0)
 877                return fs_polarity;
 878
 879        ctx->ssp_cmd.frame_sync_polarity = fs_polarity;
 880
 881        return 0;
 882}
 883
 884/**
 885 * sst_ssp_config - contains SSP configuration for media UC
 886 * this can be overwritten by set_dai_xxx APIs
 887 */
 888static const struct sst_ssp_config sst_ssp_configs = {
 889        .ssp_id = SSP_CODEC,
 890        .bits_per_slot = 24,
 891        .slots = 4,
 892        .ssp_mode = SSP_MODE_MASTER,
 893        .pcm_mode = SSP_PCM_MODE_NETWORK,
 894        .duplex = SSP_DUPLEX,
 895        .ssp_protocol = SSP_MODE_PCM,
 896        .fs_width = 1,
 897        .fs_frequency = SSP_FS_48_KHZ,
 898        .active_slot_map = 0xF,
 899        .start_delay = 0,
 900        .frame_sync_polarity = SSP_FS_ACTIVE_HIGH,
 901        .data_polarity = 1,
 902};
 903
 904void sst_fill_ssp_defaults(struct snd_soc_dai *dai)
 905{
 906        const struct sst_ssp_config *config;
 907        struct sst_data *ctx = snd_soc_dai_get_drvdata(dai);
 908
 909        config = &sst_ssp_configs;
 910
 911        ctx->ssp_cmd.selection = config->ssp_id;
 912        ctx->ssp_cmd.nb_bits_per_slots = config->bits_per_slot;
 913        ctx->ssp_cmd.nb_slots = config->slots;
 914        ctx->ssp_cmd.mode = config->ssp_mode | (config->pcm_mode << 1);
 915        ctx->ssp_cmd.duplex = config->duplex;
 916        ctx->ssp_cmd.active_tx_slot_map = config->active_slot_map;
 917        ctx->ssp_cmd.active_rx_slot_map = config->active_slot_map;
 918        ctx->ssp_cmd.frame_sync_frequency = config->fs_frequency;
 919        ctx->ssp_cmd.frame_sync_polarity = config->frame_sync_polarity;
 920        ctx->ssp_cmd.data_polarity = config->data_polarity;
 921        ctx->ssp_cmd.frame_sync_width = config->fs_width;
 922        ctx->ssp_cmd.ssp_protocol = config->ssp_protocol;
 923        ctx->ssp_cmd.start_delay = config->start_delay;
 924        ctx->ssp_cmd.reserved1 = ctx->ssp_cmd.reserved2 = 0xFF;
 925}
 926
 927int send_ssp_cmd(struct snd_soc_dai *dai, const char *id, bool enable)
 928{
 929        struct sst_data *drv = snd_soc_dai_get_drvdata(dai);
 930        int ssp_id;
 931
 932        dev_dbg(dai->dev, "Enter: enable=%d port_name=%s\n", enable, id);
 933
 934        if (strcmp(id, "ssp0-port") == 0)
 935                ssp_id = SSP_MODEM;
 936        else if (strcmp(id, "ssp2-port") == 0)
 937                ssp_id = SSP_CODEC;
 938        else {
 939                dev_dbg(dai->dev, "port %s is not supported\n", id);
 940                return -1;
 941        }
 942
 943        SST_FILL_DEFAULT_DESTINATION(drv->ssp_cmd.header.dst);
 944        drv->ssp_cmd.header.command_id = SBA_HW_SET_SSP;
 945        drv->ssp_cmd.header.length = sizeof(struct sst_cmd_sba_hw_set_ssp)
 946                                - sizeof(struct sst_dsp_header);
 947
 948        drv->ssp_cmd.selection = ssp_id;
 949        dev_dbg(dai->dev, "ssp_id: %u\n", ssp_id);
 950
 951        if (enable)
 952                drv->ssp_cmd.switch_state = SST_SWITCH_ON;
 953        else
 954                drv->ssp_cmd.switch_state = SST_SWITCH_OFF;
 955
 956        return sst_fill_and_send_cmd(drv, SST_IPC_IA_CMD, SST_FLAG_BLOCKED,
 957                                SST_TASK_SBA, 0, &drv->ssp_cmd,
 958                                sizeof(drv->ssp_cmd.header) + drv->ssp_cmd.header.length);
 959}
 960
 961static int sst_set_be_modules(struct snd_soc_dapm_widget *w,
 962                         struct snd_kcontrol *k, int event)
 963{
 964        int ret = 0;
 965        struct snd_soc_component *c = snd_soc_dapm_to_component(w->dapm);
 966        struct sst_data *drv = snd_soc_component_get_drvdata(c);
 967
 968        dev_dbg(c->dev, "Enter: widget=%s\n", w->name);
 969
 970        if (SND_SOC_DAPM_EVENT_ON(event)) {
 971                mutex_lock(&drv->lock);
 972                ret = sst_send_slot_map(drv);
 973                mutex_unlock(&drv->lock);
 974                if (ret)
 975                        return ret;
 976                ret = sst_send_pipe_module_params(w, k);
 977        }
 978        return ret;
 979}
 980
 981static int sst_set_media_path(struct snd_soc_dapm_widget *w,
 982                              struct snd_kcontrol *k, int event)
 983{
 984        int ret = 0;
 985        struct sst_cmd_set_media_path cmd;
 986        struct snd_soc_component *c = snd_soc_dapm_to_component(w->dapm);
 987        struct sst_data *drv = snd_soc_component_get_drvdata(c);
 988        struct sst_ids *ids = w->priv;
 989
 990        dev_dbg(c->dev, "widget=%s\n", w->name);
 991        dev_dbg(c->dev, "task=%u, location=%#x\n",
 992                                ids->task_id, ids->location_id);
 993
 994        if (SND_SOC_DAPM_EVENT_ON(event))
 995                cmd.switch_state = SST_PATH_ON;
 996        else
 997                cmd.switch_state = SST_PATH_OFF;
 998
 999        SST_FILL_DESTINATION(2, cmd.header.dst,
1000                             ids->location_id, SST_DEFAULT_MODULE_ID);
1001
1002        /* MMX_SET_MEDIA_PATH == SBA_SET_MEDIA_PATH */
1003        cmd.header.command_id = MMX_SET_MEDIA_PATH;
1004        cmd.header.length = sizeof(struct sst_cmd_set_media_path)
1005                                - sizeof(struct sst_dsp_header);
1006
1007        ret = sst_fill_and_send_cmd(drv, SST_IPC_IA_CMD, SST_FLAG_BLOCKED,
1008                              ids->task_id, 0, &cmd,
1009                              sizeof(cmd.header) + cmd.header.length);
1010        if (ret)
1011                return ret;
1012
1013        if (SND_SOC_DAPM_EVENT_ON(event))
1014                ret = sst_send_pipe_module_params(w, k);
1015        return ret;
1016}
1017
1018static int sst_set_media_loop(struct snd_soc_dapm_widget *w,
1019                        struct snd_kcontrol *k, int event)
1020{
1021        int ret = 0;
1022        struct sst_cmd_sba_set_media_loop_map cmd;
1023        struct snd_soc_component *c = snd_soc_dapm_to_component(w->dapm);
1024        struct sst_data *drv = snd_soc_component_get_drvdata(c);
1025        struct sst_ids *ids = w->priv;
1026
1027        dev_dbg(c->dev, "Enter:widget=%s\n", w->name);
1028        if (SND_SOC_DAPM_EVENT_ON(event))
1029                cmd.switch_state = SST_SWITCH_ON;
1030        else
1031                cmd.switch_state = SST_SWITCH_OFF;
1032
1033        SST_FILL_DESTINATION(2, cmd.header.dst,
1034                             ids->location_id, SST_DEFAULT_MODULE_ID);
1035
1036        cmd.header.command_id = SBA_SET_MEDIA_LOOP_MAP;
1037        cmd.header.length = sizeof(struct sst_cmd_sba_set_media_loop_map)
1038                                 - sizeof(struct sst_dsp_header);
1039        cmd.param.part.cfg.rate = 2; /* 48khz */
1040
1041        cmd.param.part.cfg.format = ids->format; /* stereo/Mono */
1042        cmd.param.part.cfg.s_length = 1; /* 24bit left justified */
1043        cmd.map = 0; /* Algo sequence: Gain - DRP - FIR - IIR */
1044
1045        ret = sst_fill_and_send_cmd(drv, SST_IPC_IA_CMD, SST_FLAG_BLOCKED,
1046                              SST_TASK_SBA, 0, &cmd,
1047                              sizeof(cmd.header) + cmd.header.length);
1048        if (ret)
1049                return ret;
1050
1051        if (SND_SOC_DAPM_EVENT_ON(event))
1052                ret = sst_send_pipe_module_params(w, k);
1053        return ret;
1054}
1055
1056static const struct snd_soc_dapm_widget sst_dapm_widgets[] = {
1057        SST_AIF_IN("modem_in", sst_set_be_modules),
1058        SST_AIF_IN("codec_in0", sst_set_be_modules),
1059        SST_AIF_IN("codec_in1", sst_set_be_modules),
1060        SST_AIF_OUT("modem_out", sst_set_be_modules),
1061        SST_AIF_OUT("codec_out0", sst_set_be_modules),
1062        SST_AIF_OUT("codec_out1", sst_set_be_modules),
1063
1064        /* Media Paths */
1065        /* MediaX IN paths are set via ALLOC, so no SET_MEDIA_PATH command */
1066        SST_PATH_INPUT("media0_in", SST_TASK_MMX, SST_SWM_IN_MEDIA0, sst_generic_modules_event),
1067        SST_PATH_INPUT("media1_in", SST_TASK_MMX, SST_SWM_IN_MEDIA1, NULL),
1068        SST_PATH_INPUT("media2_in", SST_TASK_MMX, SST_SWM_IN_MEDIA2, sst_set_media_path),
1069        SST_PATH_INPUT("media3_in", SST_TASK_MMX, SST_SWM_IN_MEDIA3, NULL),
1070        SST_PATH_OUTPUT("media0_out", SST_TASK_MMX, SST_SWM_OUT_MEDIA0, sst_set_media_path),
1071        SST_PATH_OUTPUT("media1_out", SST_TASK_MMX, SST_SWM_OUT_MEDIA1, sst_set_media_path),
1072
1073        /* SBA PCM Paths */
1074        SST_PATH_INPUT("pcm0_in", SST_TASK_SBA, SST_SWM_IN_PCM0, sst_set_media_path),
1075        SST_PATH_INPUT("pcm1_in", SST_TASK_SBA, SST_SWM_IN_PCM1, sst_set_media_path),
1076        SST_PATH_OUTPUT("pcm0_out", SST_TASK_SBA, SST_SWM_OUT_PCM0, sst_set_media_path),
1077        SST_PATH_OUTPUT("pcm1_out", SST_TASK_SBA, SST_SWM_OUT_PCM1, sst_set_media_path),
1078        SST_PATH_OUTPUT("pcm2_out", SST_TASK_SBA, SST_SWM_OUT_PCM2, sst_set_media_path),
1079
1080        /* SBA Loops */
1081        SST_PATH_INPUT("sprot_loop_in", SST_TASK_SBA, SST_SWM_IN_SPROT_LOOP, NULL),
1082        SST_PATH_INPUT("media_loop1_in", SST_TASK_SBA, SST_SWM_IN_MEDIA_LOOP1, NULL),
1083        SST_PATH_INPUT("media_loop2_in", SST_TASK_SBA, SST_SWM_IN_MEDIA_LOOP2, NULL),
1084        SST_PATH_MEDIA_LOOP_OUTPUT("sprot_loop_out", SST_TASK_SBA, SST_SWM_OUT_SPROT_LOOP, SST_FMT_STEREO, sst_set_media_loop),
1085        SST_PATH_MEDIA_LOOP_OUTPUT("media_loop1_out", SST_TASK_SBA, SST_SWM_OUT_MEDIA_LOOP1, SST_FMT_STEREO, sst_set_media_loop),
1086        SST_PATH_MEDIA_LOOP_OUTPUT("media_loop2_out", SST_TASK_SBA, SST_SWM_OUT_MEDIA_LOOP2, SST_FMT_STEREO, sst_set_media_loop),
1087
1088        /* Media Mixers */
1089        SST_SWM_MIXER("media0_out mix 0", SND_SOC_NOPM, SST_TASK_MMX, SST_SWM_OUT_MEDIA0,
1090                      sst_mix_media0_controls, sst_swm_mixer_event),
1091        SST_SWM_MIXER("media1_out mix 0", SND_SOC_NOPM, SST_TASK_MMX, SST_SWM_OUT_MEDIA1,
1092                      sst_mix_media1_controls, sst_swm_mixer_event),
1093
1094        /* SBA PCM mixers */
1095        SST_SWM_MIXER("pcm0_out mix 0", SND_SOC_NOPM, SST_TASK_SBA, SST_SWM_OUT_PCM0,
1096                      sst_mix_pcm0_controls, sst_swm_mixer_event),
1097        SST_SWM_MIXER("pcm1_out mix 0", SND_SOC_NOPM, SST_TASK_SBA, SST_SWM_OUT_PCM1,
1098                      sst_mix_pcm1_controls, sst_swm_mixer_event),
1099        SST_SWM_MIXER("pcm2_out mix 0", SND_SOC_NOPM, SST_TASK_SBA, SST_SWM_OUT_PCM2,
1100                      sst_mix_pcm2_controls, sst_swm_mixer_event),
1101
1102        /* SBA Loop mixers */
1103        SST_SWM_MIXER("sprot_loop_out mix 0", SND_SOC_NOPM, SST_TASK_SBA, SST_SWM_OUT_SPROT_LOOP,
1104                      sst_mix_sprot_l0_controls, sst_swm_mixer_event),
1105        SST_SWM_MIXER("media_loop1_out mix 0", SND_SOC_NOPM, SST_TASK_SBA, SST_SWM_OUT_MEDIA_LOOP1,
1106                      sst_mix_media_l1_controls, sst_swm_mixer_event),
1107        SST_SWM_MIXER("media_loop2_out mix 0", SND_SOC_NOPM, SST_TASK_SBA, SST_SWM_OUT_MEDIA_LOOP2,
1108                      sst_mix_media_l2_controls, sst_swm_mixer_event),
1109
1110        /* SBA Backend mixers */
1111        SST_SWM_MIXER("codec_out0 mix 0", SND_SOC_NOPM, SST_TASK_SBA, SST_SWM_OUT_CODEC0,
1112                      sst_mix_codec0_controls, sst_swm_mixer_event),
1113        SST_SWM_MIXER("codec_out1 mix 0", SND_SOC_NOPM, SST_TASK_SBA, SST_SWM_OUT_CODEC1,
1114                      sst_mix_codec1_controls, sst_swm_mixer_event),
1115        SST_SWM_MIXER("modem_out mix 0", SND_SOC_NOPM, SST_TASK_SBA, SST_SWM_OUT_MODEM,
1116                      sst_mix_modem_controls, sst_swm_mixer_event),
1117
1118};
1119
1120static const struct snd_soc_dapm_route intercon[] = {
1121        {"media0_in", NULL, "Compress Playback"},
1122        {"media1_in", NULL, "Headset Playback"},
1123        {"media2_in", NULL, "pcm0_out"},
1124        {"media3_in", NULL, "Deepbuffer Playback"},
1125
1126        {"media0_out mix 0", "media0_in Switch", "media0_in"},
1127        {"media0_out mix 0", "media1_in Switch", "media1_in"},
1128        {"media0_out mix 0", "media2_in Switch", "media2_in"},
1129        {"media0_out mix 0", "media3_in Switch", "media3_in"},
1130        {"media1_out mix 0", "media0_in Switch", "media0_in"},
1131        {"media1_out mix 0", "media1_in Switch", "media1_in"},
1132        {"media1_out mix 0", "media2_in Switch", "media2_in"},
1133        {"media1_out mix 0", "media3_in Switch", "media3_in"},
1134
1135        {"media0_out", NULL, "media0_out mix 0"},
1136        {"media1_out", NULL, "media1_out mix 0"},
1137        {"pcm0_in", NULL, "media0_out"},
1138        {"pcm1_in", NULL, "media1_out"},
1139
1140        {"Headset Capture", NULL, "pcm1_out"},
1141        {"Headset Capture", NULL, "pcm2_out"},
1142        {"pcm0_out", NULL, "pcm0_out mix 0"},
1143        SST_SBA_MIXER_GRAPH_MAP("pcm0_out mix 0"),
1144        {"pcm1_out", NULL, "pcm1_out mix 0"},
1145        SST_SBA_MIXER_GRAPH_MAP("pcm1_out mix 0"),
1146        {"pcm2_out", NULL, "pcm2_out mix 0"},
1147        SST_SBA_MIXER_GRAPH_MAP("pcm2_out mix 0"),
1148
1149        {"media_loop1_in", NULL, "media_loop1_out"},
1150        {"media_loop1_out", NULL, "media_loop1_out mix 0"},
1151        SST_SBA_MIXER_GRAPH_MAP("media_loop1_out mix 0"),
1152        {"media_loop2_in", NULL, "media_loop2_out"},
1153        {"media_loop2_out", NULL, "media_loop2_out mix 0"},
1154        SST_SBA_MIXER_GRAPH_MAP("media_loop2_out mix 0"),
1155        {"sprot_loop_in", NULL, "sprot_loop_out"},
1156        {"sprot_loop_out", NULL, "sprot_loop_out mix 0"},
1157        SST_SBA_MIXER_GRAPH_MAP("sprot_loop_out mix 0"),
1158
1159        {"codec_out0", NULL, "codec_out0 mix 0"},
1160        SST_SBA_MIXER_GRAPH_MAP("codec_out0 mix 0"),
1161        {"codec_out1", NULL, "codec_out1 mix 0"},
1162        SST_SBA_MIXER_GRAPH_MAP("codec_out1 mix 0"),
1163        {"modem_out", NULL, "modem_out mix 0"},
1164        SST_SBA_MIXER_GRAPH_MAP("modem_out mix 0"),
1165
1166
1167};
1168static const char * const slot_names[] = {
1169        "none",
1170        "slot 0", "slot 1", "slot 2", "slot 3",
1171        "slot 4", "slot 5", "slot 6", "slot 7", /* not supported by FW */
1172};
1173
1174static const char * const channel_names[] = {
1175        "none",
1176        "codec_out0_0", "codec_out0_1", "codec_out1_0", "codec_out1_1",
1177        "codec_out2_0", "codec_out2_1", "codec_out3_0", "codec_out3_1", /* not supported by FW */
1178};
1179
1180#define SST_INTERLEAVER(xpname, slot_name, slotno) \
1181        SST_SSP_SLOT_CTL(xpname, "tx interleaver", slot_name, slotno, true, \
1182                         channel_names, sst_slot_get, sst_slot_put)
1183
1184#define SST_DEINTERLEAVER(xpname, channel_name, channel_no) \
1185        SST_SSP_SLOT_CTL(xpname, "rx deinterleaver", channel_name, channel_no, false, \
1186                         slot_names, sst_slot_get, sst_slot_put)
1187
1188static const struct snd_kcontrol_new sst_slot_controls[] = {
1189        SST_INTERLEAVER("codec_out", "slot 0", 0),
1190        SST_INTERLEAVER("codec_out", "slot 1", 1),
1191        SST_INTERLEAVER("codec_out", "slot 2", 2),
1192        SST_INTERLEAVER("codec_out", "slot 3", 3),
1193        SST_DEINTERLEAVER("codec_in", "codec_in0_0", 0),
1194        SST_DEINTERLEAVER("codec_in", "codec_in0_1", 1),
1195        SST_DEINTERLEAVER("codec_in", "codec_in1_0", 2),
1196        SST_DEINTERLEAVER("codec_in", "codec_in1_1", 3),
1197};
1198
1199/* Gain helper with min/max set */
1200#define SST_GAIN(name, path_id, task_id, instance, gain_var)                            \
1201        SST_GAIN_KCONTROLS(name, "Gain", SST_GAIN_MIN_VALUE, SST_GAIN_MAX_VALUE,        \
1202                SST_GAIN_TC_MIN, SST_GAIN_TC_MAX,                                       \
1203                sst_gain_get, sst_gain_put,                                             \
1204                SST_MODULE_ID_GAIN_CELL, path_id, instance, task_id,                    \
1205                sst_gain_tlv_common, gain_var)
1206
1207#define SST_VOLUME(name, path_id, task_id, instance, gain_var)                          \
1208        SST_GAIN_KCONTROLS(name, "Volume", SST_GAIN_MIN_VALUE, SST_GAIN_MAX_VALUE,      \
1209                SST_GAIN_TC_MIN, SST_GAIN_TC_MAX,                                       \
1210                sst_gain_get, sst_gain_put,                                             \
1211                SST_MODULE_ID_VOLUME, path_id, instance, task_id,                       \
1212                sst_gain_tlv_common, gain_var)
1213
1214static struct sst_gain_value sst_gains[];
1215
1216static const struct snd_kcontrol_new sst_gain_controls[] = {
1217        SST_GAIN("media0_in", SST_PATH_INDEX_MEDIA0_IN, SST_TASK_MMX, 0, &sst_gains[0]),
1218        SST_GAIN("media1_in", SST_PATH_INDEX_MEDIA1_IN, SST_TASK_MMX, 0, &sst_gains[1]),
1219        SST_GAIN("media2_in", SST_PATH_INDEX_MEDIA2_IN, SST_TASK_MMX, 0, &sst_gains[2]),
1220        SST_GAIN("media3_in", SST_PATH_INDEX_MEDIA3_IN, SST_TASK_MMX, 0, &sst_gains[3]),
1221
1222        SST_GAIN("pcm0_in", SST_PATH_INDEX_PCM0_IN, SST_TASK_SBA, 0, &sst_gains[4]),
1223        SST_GAIN("pcm1_in", SST_PATH_INDEX_PCM1_IN, SST_TASK_SBA, 0, &sst_gains[5]),
1224        SST_GAIN("pcm1_out", SST_PATH_INDEX_PCM1_OUT, SST_TASK_SBA, 0, &sst_gains[6]),
1225        SST_GAIN("pcm2_out", SST_PATH_INDEX_PCM2_OUT, SST_TASK_SBA, 0, &sst_gains[7]),
1226
1227        SST_GAIN("codec_in0", SST_PATH_INDEX_CODEC_IN0, SST_TASK_SBA, 0, &sst_gains[8]),
1228        SST_GAIN("codec_in1", SST_PATH_INDEX_CODEC_IN1, SST_TASK_SBA, 0, &sst_gains[9]),
1229        SST_GAIN("codec_out0", SST_PATH_INDEX_CODEC_OUT0, SST_TASK_SBA, 0, &sst_gains[10]),
1230        SST_GAIN("codec_out1", SST_PATH_INDEX_CODEC_OUT1, SST_TASK_SBA, 0, &sst_gains[11]),
1231        SST_GAIN("media_loop1_out", SST_PATH_INDEX_MEDIA_LOOP1_OUT, SST_TASK_SBA, 0, &sst_gains[12]),
1232        SST_GAIN("media_loop2_out", SST_PATH_INDEX_MEDIA_LOOP2_OUT, SST_TASK_SBA, 0, &sst_gains[13]),
1233        SST_GAIN("sprot_loop_out", SST_PATH_INDEX_SPROT_LOOP_OUT, SST_TASK_SBA, 0, &sst_gains[14]),
1234        SST_VOLUME("media0_in", SST_PATH_INDEX_MEDIA0_IN, SST_TASK_MMX, 0, &sst_gains[15]),
1235        SST_GAIN("modem_in", SST_PATH_INDEX_MODEM_IN, SST_TASK_SBA, 0, &sst_gains[16]),
1236        SST_GAIN("modem_out", SST_PATH_INDEX_MODEM_OUT, SST_TASK_SBA, 0, &sst_gains[17]),
1237
1238};
1239
1240#define SST_GAIN_NUM_CONTROLS 3
1241/* the SST_GAIN macro above will create three alsa controls for each
1242 * instance invoked, gain, mute and ramp duration, which use the same gain
1243 * cell sst_gain to keep track of data
1244 * To calculate number of gain cell instances we need to device by 3 in
1245 * below caulcation for gain cell memory.
1246 * This gets rid of static number and issues while adding new controls
1247 */
1248static struct sst_gain_value sst_gains[ARRAY_SIZE(sst_gain_controls)/SST_GAIN_NUM_CONTROLS];
1249
1250static const struct snd_kcontrol_new sst_algo_controls[] = {
1251        SST_ALGO_KCONTROL_BYTES("media_loop1_out", "fir", 272, SST_MODULE_ID_FIR_24,
1252                 SST_PATH_INDEX_MEDIA_LOOP1_OUT, 0, SST_TASK_SBA, SBA_VB_SET_FIR),
1253        SST_ALGO_KCONTROL_BYTES("media_loop1_out", "iir", 300, SST_MODULE_ID_IIR_24,
1254                SST_PATH_INDEX_MEDIA_LOOP1_OUT, 0, SST_TASK_SBA, SBA_VB_SET_IIR),
1255        SST_ALGO_KCONTROL_BYTES("media_loop1_out", "mdrp", 286, SST_MODULE_ID_MDRP,
1256                SST_PATH_INDEX_MEDIA_LOOP1_OUT, 0, SST_TASK_SBA, SBA_SET_MDRP),
1257        SST_ALGO_KCONTROL_BYTES("media_loop2_out", "fir", 272, SST_MODULE_ID_FIR_24,
1258                SST_PATH_INDEX_MEDIA_LOOP2_OUT, 0, SST_TASK_SBA, SBA_VB_SET_FIR),
1259        SST_ALGO_KCONTROL_BYTES("media_loop2_out", "iir", 300, SST_MODULE_ID_IIR_24,
1260                SST_PATH_INDEX_MEDIA_LOOP2_OUT, 0, SST_TASK_SBA, SBA_VB_SET_IIR),
1261        SST_ALGO_KCONTROL_BYTES("media_loop2_out", "mdrp", 286, SST_MODULE_ID_MDRP,
1262                SST_PATH_INDEX_MEDIA_LOOP2_OUT, 0, SST_TASK_SBA, SBA_SET_MDRP),
1263        SST_ALGO_KCONTROL_BYTES("sprot_loop_out", "lpro", 192, SST_MODULE_ID_SPROT,
1264                SST_PATH_INDEX_SPROT_LOOP_OUT, 0, SST_TASK_SBA, SBA_VB_LPRO),
1265        SST_ALGO_KCONTROL_BYTES("codec_in0", "dcr", 52, SST_MODULE_ID_FILT_DCR,
1266                SST_PATH_INDEX_CODEC_IN0, 0, SST_TASK_SBA, SBA_VB_SET_IIR),
1267        SST_ALGO_KCONTROL_BYTES("codec_in1", "dcr", 52, SST_MODULE_ID_FILT_DCR,
1268                SST_PATH_INDEX_CODEC_IN1, 0, SST_TASK_SBA, SBA_VB_SET_IIR),
1269
1270};
1271
1272static int sst_algo_control_init(struct device *dev)
1273{
1274        int i = 0;
1275        struct sst_algo_control *bc;
1276        /*allocate space to cache the algo parameters in the driver*/
1277        for (i = 0; i < ARRAY_SIZE(sst_algo_controls); i++) {
1278                bc = (struct sst_algo_control *)sst_algo_controls[i].private_value;
1279                bc->params = devm_kzalloc(dev, bc->max, GFP_KERNEL);
1280                if (bc->params == NULL)
1281                        return -ENOMEM;
1282        }
1283        return 0;
1284}
1285
1286static bool is_sst_dapm_widget(struct snd_soc_dapm_widget *w)
1287{
1288        switch (w->id) {
1289        case snd_soc_dapm_pga:
1290        case snd_soc_dapm_aif_in:
1291        case snd_soc_dapm_aif_out:
1292        case snd_soc_dapm_input:
1293        case snd_soc_dapm_output:
1294        case snd_soc_dapm_mixer:
1295                return true;
1296        default:
1297                return false;
1298        }
1299}
1300
1301/**
1302 * sst_send_pipe_gains - send gains for the front-end DAIs
1303 *
1304 * The gains in the pipes connected to the front-ends are muted/unmuted
1305 * automatically via the digital_mute() DAPM callback. This function sends the
1306 * gains for the front-end pipes.
1307 */
1308int sst_send_pipe_gains(struct snd_soc_dai *dai, int stream, int mute)
1309{
1310        struct sst_data *drv = snd_soc_dai_get_drvdata(dai);
1311        struct snd_soc_dapm_widget *w;
1312        struct snd_soc_dapm_path *p = NULL;
1313
1314        dev_dbg(dai->dev, "enter, dai-name=%s dir=%d\n", dai->name, stream);
1315
1316        if (stream == SNDRV_PCM_STREAM_PLAYBACK) {
1317                dev_dbg(dai->dev, "Stream name=%s\n",
1318                                dai->playback_widget->name);
1319                w = dai->playback_widget;
1320                snd_soc_dapm_widget_for_each_sink_path(w, p) {
1321                        if (p->connected && !p->connected(w, p->sink))
1322                                continue;
1323
1324                        if (p->connect && p->sink->power &&
1325                                        is_sst_dapm_widget(p->sink)) {
1326                                struct sst_ids *ids = p->sink->priv;
1327
1328                                dev_dbg(dai->dev, "send gains for widget=%s\n",
1329                                                p->sink->name);
1330                                mutex_lock(&drv->lock);
1331                                sst_set_pipe_gain(ids, drv, mute);
1332                                mutex_unlock(&drv->lock);
1333                        }
1334                }
1335        } else {
1336                dev_dbg(dai->dev, "Stream name=%s\n",
1337                                dai->capture_widget->name);
1338                w = dai->capture_widget;
1339                snd_soc_dapm_widget_for_each_source_path(w, p) {
1340                        if (p->connected && !p->connected(w, p->source))
1341                                continue;
1342
1343                        if (p->connect &&  p->source->power &&
1344                                        is_sst_dapm_widget(p->source)) {
1345                                struct sst_ids *ids = p->source->priv;
1346
1347                                dev_dbg(dai->dev, "send gain for widget=%s\n",
1348                                                p->source->name);
1349                                mutex_lock(&drv->lock);
1350                                sst_set_pipe_gain(ids, drv, mute);
1351                                mutex_unlock(&drv->lock);
1352                        }
1353                }
1354        }
1355        return 0;
1356}
1357
1358/**
1359 * sst_fill_module_list - populate the list of modules/gains for a pipe
1360 *
1361 *
1362 * Fills the widget pointer in the kcontrol private data, and also fills the
1363 * kcontrol pointer in the widget private data.
1364 *
1365 * Widget pointer is used to send the algo/gain in the .put() handler if the
1366 * widget is powerd on.
1367 *
1368 * Kcontrol pointer is used to send the algo/gain in the widget power ON/OFF
1369 * event handler. Each widget (pipe) has multiple algos stored in the algo_list.
1370 */
1371static int sst_fill_module_list(struct snd_kcontrol *kctl,
1372         struct snd_soc_dapm_widget *w, int type)
1373{
1374        struct sst_module *module = NULL;
1375        struct snd_soc_component *c = snd_soc_dapm_to_component(w->dapm);
1376        struct sst_ids *ids = w->priv;
1377        int ret = 0;
1378
1379        module = devm_kzalloc(c->dev, sizeof(*module), GFP_KERNEL);
1380        if (!module)
1381                return -ENOMEM;
1382
1383        if (type == SST_MODULE_GAIN) {
1384                struct sst_gain_mixer_control *mc = (void *)kctl->private_value;
1385
1386                mc->w = w;
1387                module->kctl = kctl;
1388                list_add_tail(&module->node, &ids->gain_list);
1389        } else if (type == SST_MODULE_ALGO) {
1390                struct sst_algo_control *bc = (void *)kctl->private_value;
1391
1392                bc->w = w;
1393                module->kctl = kctl;
1394                list_add_tail(&module->node, &ids->algo_list);
1395        } else {
1396                dev_err(c->dev, "invoked for unknown type %d module %s",
1397                                type, kctl->id.name);
1398                ret = -EINVAL;
1399        }
1400
1401        return ret;
1402}
1403
1404/**
1405 * sst_fill_widget_module_info - fill list of gains/algos for the pipe
1406 * @widget:     pipe modelled as a DAPM widget
1407 *
1408 * Fill the list of gains/algos for the widget by looking at all the card
1409 * controls and comparing the name of the widget with the first part of control
1410 * name. First part of control name contains the pipe name (widget name).
1411 */
1412static int sst_fill_widget_module_info(struct snd_soc_dapm_widget *w,
1413        struct snd_soc_component *component)
1414{
1415        struct snd_kcontrol *kctl;
1416        int index, ret = 0;
1417        struct snd_card *card = component->card->snd_card;
1418        char *idx;
1419
1420        down_read(&card->controls_rwsem);
1421
1422        list_for_each_entry(kctl, &card->controls, list) {
1423                idx = strchr(kctl->id.name, ' ');
1424                if (idx == NULL)
1425                        continue;
1426                index = idx - (char*)kctl->id.name;
1427                if (strncmp(kctl->id.name, w->name, index))
1428                        continue;
1429
1430                if (strstr(kctl->id.name, "Volume"))
1431                        ret = sst_fill_module_list(kctl, w, SST_MODULE_GAIN);
1432
1433                else if (strstr(kctl->id.name, "params"))
1434                        ret = sst_fill_module_list(kctl, w, SST_MODULE_ALGO);
1435
1436                else if (strstr(kctl->id.name, "Switch") &&
1437                         strstr(kctl->id.name, "Gain")) {
1438                        struct sst_gain_mixer_control *mc =
1439                                                (void *)kctl->private_value;
1440
1441                        mc->w = w;
1442
1443                } else if (strstr(kctl->id.name, "interleaver")) {
1444                        struct sst_enum *e = (void *)kctl->private_value;
1445
1446                        e->w = w;
1447
1448                } else if (strstr(kctl->id.name, "deinterleaver")) {
1449                        struct sst_enum *e = (void *)kctl->private_value;
1450
1451                        e->w = w;
1452                }
1453
1454                if (ret < 0) {
1455                        up_read(&card->controls_rwsem);
1456                        return ret;
1457                }
1458        }
1459
1460        up_read(&card->controls_rwsem);
1461        return 0;
1462}
1463
1464/**
1465 * sst_fill_linked_widgets - fill the parent pointer for the linked widget
1466 */
1467static void sst_fill_linked_widgets(struct snd_soc_component *component,
1468                                                struct sst_ids *ids)
1469{
1470        struct snd_soc_dapm_widget *w;
1471        unsigned int len = strlen(ids->parent_wname);
1472
1473        list_for_each_entry(w, &component->card->widgets, list) {
1474                if (!strncmp(ids->parent_wname, w->name, len)) {
1475                        ids->parent_w = w;
1476                        break;
1477                }
1478        }
1479}
1480
1481/**
1482 * sst_map_modules_to_pipe - fill algo/gains list for all pipes
1483 */
1484static int sst_map_modules_to_pipe(struct snd_soc_component *component)
1485{
1486        struct snd_soc_dapm_widget *w;
1487        int ret = 0;
1488
1489        list_for_each_entry(w, &component->card->widgets, list) {
1490                if (is_sst_dapm_widget(w) && (w->priv)) {
1491                        struct sst_ids *ids = w->priv;
1492
1493                        dev_dbg(component->dev, "widget type=%d name=%s\n",
1494                                        w->id, w->name);
1495                        INIT_LIST_HEAD(&ids->algo_list);
1496                        INIT_LIST_HEAD(&ids->gain_list);
1497                        ret = sst_fill_widget_module_info(w, component);
1498
1499                        if (ret < 0)
1500                                return ret;
1501
1502                        /* fill linked widgets */
1503                        if (ids->parent_wname !=  NULL)
1504                                sst_fill_linked_widgets(component, ids);
1505                }
1506        }
1507        return 0;
1508}
1509
1510int sst_dsp_init_v2_dpcm(struct snd_soc_component *component)
1511{
1512        int i, ret = 0;
1513        struct snd_soc_dapm_context *dapm =
1514                        snd_soc_component_get_dapm(component);
1515        struct sst_data *drv = snd_soc_component_get_drvdata(component);
1516        unsigned int gains = ARRAY_SIZE(sst_gain_controls)/3;
1517
1518        drv->byte_stream = devm_kzalloc(component->dev,
1519                                        SST_MAX_BIN_BYTES, GFP_KERNEL);
1520        if (!drv->byte_stream)
1521                return -ENOMEM;
1522
1523        snd_soc_dapm_new_controls(dapm, sst_dapm_widgets,
1524                        ARRAY_SIZE(sst_dapm_widgets));
1525        snd_soc_dapm_add_routes(dapm, intercon,
1526                        ARRAY_SIZE(intercon));
1527        snd_soc_dapm_new_widgets(dapm->card);
1528
1529        for (i = 0; i < gains; i++) {
1530                sst_gains[i].mute = SST_GAIN_MUTE_DEFAULT;
1531                sst_gains[i].l_gain = SST_GAIN_VOLUME_DEFAULT;
1532                sst_gains[i].r_gain = SST_GAIN_VOLUME_DEFAULT;
1533                sst_gains[i].ramp_duration = SST_GAIN_RAMP_DURATION_DEFAULT;
1534        }
1535
1536        ret = snd_soc_add_component_controls(component, sst_gain_controls,
1537                        ARRAY_SIZE(sst_gain_controls));
1538        if (ret)
1539                return ret;
1540
1541        /* Initialize algo control params */
1542        ret = sst_algo_control_init(component->dev);
1543        if (ret)
1544                return ret;
1545        ret = snd_soc_add_component_controls(component, sst_algo_controls,
1546                        ARRAY_SIZE(sst_algo_controls));
1547        if (ret)
1548                return ret;
1549
1550        ret = snd_soc_add_component_controls(component, sst_slot_controls,
1551                        ARRAY_SIZE(sst_slot_controls));
1552        if (ret)
1553                return ret;
1554
1555        ret = sst_map_modules_to_pipe(component);
1556
1557        return ret;
1558}
1559