ALSA: asihpi - HPI 4.05.14
All enum values numeric for easier finding, particularly error codes. Remove many unused declarations. Signed-off-by: Eliot Blennerhassett <eblennerhassett@audioscience.com> Signed-off-by: Takashi Iwai <tiwai@suse.de>
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@ -50,8 +50,8 @@ i.e 3.05.02 is a development version
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#define HPI_VER_RELEASE(v) ((int)(v & 0xFF))
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/* Use single digits for versions less that 10 to avoid octal. */
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#define HPI_VER HPI_VERSION_CONSTRUCTOR(4L, 4, 1)
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#define HPI_VER_STRING "4.04.01"
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#define HPI_VER HPI_VERSION_CONSTRUCTOR(4L, 5, 14)
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#define HPI_VER_STRING "4.05.14"
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/* Library version as documented in hpi-api-versions.txt */
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#define HPI_LIB_VER HPI_VERSION_CONSTRUCTOR(9, 0, 0)
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@ -64,6 +64,7 @@ i.e 3.05.02 is a development version
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/******** HPI API DEFINITIONS *****/
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/******************************************************************************/
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/******************************************************************************/
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/*******************************************/
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/** Audio format types
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\ingroup stream
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@ -263,10 +264,10 @@ enum HPI_CONTROLS {
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HPI_CONTROL_MULTIPLEXER = 5, /**< multiplexer control. */
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HPI_CONTROL_AESEBU_TRANSMITTER = 6, /**< AES/EBU transmitter control. */
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HPI_CONTROL_AESEBUTX = HPI_CONTROL_AESEBU_TRANSMITTER,
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HPI_CONTROL_AESEBUTX = 6, /* HPI_CONTROL_AESEBU_TRANSMITTER */
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HPI_CONTROL_AESEBU_RECEIVER = 7, /**< AES/EBU receiver control. */
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HPI_CONTROL_AESEBURX = HPI_CONTROL_AESEBU_RECEIVER,
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HPI_CONTROL_AESEBURX = 7, /* HPI_CONTROL_AESEBU_RECEIVER */
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HPI_CONTROL_LEVEL = 8, /**< level/trim control - works in d_bu. */
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HPI_CONTROL_TUNER = 9, /**< tuner control. */
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@ -281,7 +282,7 @@ enum HPI_CONTROLS {
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HPI_CONTROL_SAMPLECLOCK = 17, /**< sample clock control. */
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HPI_CONTROL_MICROPHONE = 18, /**< microphone control. */
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HPI_CONTROL_PARAMETRIC_EQ = 19, /**< parametric EQ control. */
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HPI_CONTROL_EQUALIZER = HPI_CONTROL_PARAMETRIC_EQ,
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HPI_CONTROL_EQUALIZER = 19, /*HPI_CONTROL_PARAMETRIC_EQ */
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HPI_CONTROL_COMPANDER = 20, /**< compander control. */
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HPI_CONTROL_COBRANET = 21, /**< cobranet control. */
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@ -767,14 +768,6 @@ enum HPI_TUNER_MODE_VALUES {
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HPI_TUNER_MODE_RDS_RBDS = 2 /**< RDS - RBDS mode */
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};
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/** Tuner Level settings
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\ingroup tuner
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*/
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enum HPI_TUNER_LEVEL {
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HPI_TUNER_LEVEL_AVERAGE = 0,
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HPI_TUNER_LEVEL_RAW = 1
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};
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/** Tuner Status Bits
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These bitfield values are returned by a call to HPI_Tuner_GetStatus().
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@ -783,13 +776,13 @@ Multiple fields are returned from a single call.
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*/
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enum HPI_TUNER_STATUS_BITS {
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HPI_TUNER_VIDEO_COLOR_PRESENT = 0x0001, /**< video color is present. */
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HPI_TUNER_VIDEO_IS_60HZ = 0x0020, /**< 60 hz video detected. */
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HPI_TUNER_VIDEO_HORZ_SYNC_MISSING = 0x0040, /**< video HSYNC is missing. */
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HPI_TUNER_VIDEO_STATUS_VALID = 0x0100, /**< video status is valid. */
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HPI_TUNER_PLL_LOCKED = 0x1000, /**< the tuner's PLL is locked. */
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HPI_TUNER_FM_STEREO = 0x2000, /**< tuner reports back FM stereo. */
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HPI_TUNER_DIGITAL = 0x0200, /**< tuner reports digital programming. */
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HPI_TUNER_MULTIPROGRAM = 0x0400 /**< tuner reports multiple programs. */
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HPI_TUNER_VIDEO_IS_60HZ = 0x0020, /**< 60 hz video detected. */
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HPI_TUNER_VIDEO_HORZ_SYNC_MISSING = 0x0040, /**< video HSYNC is missing. */
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HPI_TUNER_VIDEO_STATUS_VALID = 0x0100, /**< video status is valid. */
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HPI_TUNER_DIGITAL = 0x0200, /**< tuner reports digital programming. */
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HPI_TUNER_MULTIPROGRAM = 0x0400, /**< tuner reports multiple programs. */
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HPI_TUNER_PLL_LOCKED = 0x1000, /**< the tuner's PLL is locked. */
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HPI_TUNER_FM_STEREO = 0x2000 /**< tuner reports back FM stereo. */
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};
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/** Channel Modes
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@ -909,6 +902,8 @@ enum HPI_ERROR_CODES {
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HPI_ERROR_RESPONSE_BUFFER_TOO_SMALL = 114,
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/** The returned response did not match the sent message */
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HPI_ERROR_RESPONSE_MISMATCH = 115,
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/** A control setting that should have been cached was not. */
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HPI_ERROR_CONTROL_CACHING = 116,
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/** Too many adapters.*/
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HPI_ERROR_TOO_MANY_ADAPTERS = 200,
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@ -954,13 +949,13 @@ enum HPI_ERROR_CODES {
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HPI_ERROR_FLASH = 220,
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/** Flash has bad checksum */
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HPI_ERROR_BAD_CHECKSUM = (HPI_ERROR_FLASH + 1),
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HPI_ERROR_BAD_SEQUENCE = (HPI_ERROR_FLASH + 2),
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HPI_ERROR_FLASH_ERASE = (HPI_ERROR_FLASH + 3),
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HPI_ERROR_FLASH_PROGRAM = (HPI_ERROR_FLASH + 4),
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HPI_ERROR_FLASH_VERIFY = (HPI_ERROR_FLASH + 5),
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HPI_ERROR_FLASH_TYPE = (HPI_ERROR_FLASH + 6),
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HPI_ERROR_FLASH_START = (HPI_ERROR_FLASH + 7),
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HPI_ERROR_BAD_CHECKSUM = 221,
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HPI_ERROR_BAD_SEQUENCE = 222,
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HPI_ERROR_FLASH_ERASE = 223,
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HPI_ERROR_FLASH_PROGRAM = 224,
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HPI_ERROR_FLASH_VERIFY = 225,
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HPI_ERROR_FLASH_TYPE = 226,
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HPI_ERROR_FLASH_START = 227,
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/** Reserved for OEMs. */
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HPI_ERROR_RESERVED_1 = 290,
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@ -1027,7 +1022,7 @@ enum HPI_ERROR_CODES {
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HPI_ERROR_NVMEM_FAIL = 452,
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/** I2C */
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HPI_ERROR_I2C_MISSING_ACK = HPI_ERROR_CONTROL_I2C_MISSING_ACK,
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HPI_ERROR_I2C_MISSING_ACK = 405, /*HPI_ERROR_CONTROL_I2C_MISSING_ACK */
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HPI_ERROR_I2C_BAD_ADR = 460,
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/** Entity errors */
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@ -1035,6 +1030,7 @@ enum HPI_ERROR_CODES {
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HPI_ERROR_ENTITY_ITEM_COUNT = 471,
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HPI_ERROR_ENTITY_TYPE_INVALID = 472,
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HPI_ERROR_ENTITY_ROLE_INVALID = 473,
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HPI_ERROR_ENTITY_SIZE_MISMATCH = 474,
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/* AES18 specific errors were 500..507 */
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@ -1045,10 +1041,7 @@ enum HPI_ERROR_CODES {
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HPI_ERROR_MUTEX_TIMEOUT = 700,
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/** errors from HPI backends have values >= this */
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HPI_ERROR_BACKEND_BASE = 900,
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/** indicates a cached u16 value is invalid. */
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HPI_ERROR_ILLEGAL_CACHE_VALUE = 0xffff
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HPI_ERROR_BACKEND_BASE = 900
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};
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/** \defgroup maximums HPI maximum values
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@ -1092,7 +1085,7 @@ struct hpi_format {
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/**< Stereo/JointStereo/Mono */
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u16 mode_legacy;
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/**< Legacy ancillary mode or idle bit */
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u16 unused; /**< unused */
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u16 unused; /**< Unused */
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u16 channels; /**< 1,2..., (or ancillary mode or idle bit */
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u16 format; /**< HPI_FORMAT_PCM16, _MPEG etc. see #HPI_FORMATS. */
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};
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@ -1106,8 +1099,8 @@ struct hpi_anc_frame {
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*/
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struct hpi_async_event {
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u16 event_type; /**< type of event. \sa async_event */
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u16 sequence; /**< sequence number, allows lost event detection */
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u32 state; /**< new state */
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u16 sequence; /**< Sequence number, allows lost event detection */
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u32 state; /**< New state */
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u32 h_object; /**< handle to the object returning the event. */
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union {
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struct {
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@ -1120,55 +1113,6 @@ struct hpi_async_event {
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} u;
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};
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/*/////////////////////////////////////////////////////////////////////////// */
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/* Public HPI Entity related definitions */
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struct hpi_entity;
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enum e_entity_type {
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entity_type_null,
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entity_type_sequence, /* sequence of potentially heterogeneous TLV entities */
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entity_type_reference, /* refers to a TLV entity or NULL */
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entity_type_int, /* 32 bit */
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entity_type_float, /* ieee754 binary 32 bit encoding */
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entity_type_double,
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entity_type_cstring,
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entity_type_octet,
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entity_type_ip4_address,
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entity_type_ip6_address,
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entity_type_mac_address,
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LAST_ENTITY_TYPE
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};
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enum e_entity_role {
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entity_role_null,
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entity_role_value,
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entity_role_classname,
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entity_role_units,
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entity_role_flags,
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entity_role_range,
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entity_role_mapping,
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entity_role_enum,
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entity_role_instance_of,
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entity_role_depends_on,
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entity_role_member_of_group,
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entity_role_value_constraint,
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entity_role_parameter_port,
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entity_role_block,
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entity_role_node_group,
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entity_role_audio_port,
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entity_role_clock_port,
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LAST_ENTITY_ROLE
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};
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/* skip host side function declarations for
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DSP compile and documentation extraction */
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@ -1191,34 +1135,19 @@ u16 hpi_stream_estimate_buffer_size(struct hpi_format *pF,
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/*/////////// */
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/* SUB SYSTEM */
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struct hpi_hsubsys *hpi_subsys_create(void
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);
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struct hpi_hsubsys *hpi_subsys_create(void);
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void hpi_subsys_free(const struct hpi_hsubsys *ph_subsys);
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u16 hpi_subsys_get_version(const struct hpi_hsubsys *ph_subsys,
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u32 *pversion);
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u16 hpi_subsys_get_version_ex(const struct hpi_hsubsys *ph_subsys,
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u32 *pversion_ex);
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u16 hpi_subsys_get_info(const struct hpi_hsubsys *ph_subsys, u32 *pversion,
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u16 *pw_num_adapters, u16 aw_adapter_list[], u16 list_length);
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u16 hpi_subsys_find_adapters(const struct hpi_hsubsys *ph_subsys,
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u16 *pw_num_adapters, u16 aw_adapter_list[], u16 list_length);
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u16 hpi_subsys_get_num_adapters(const struct hpi_hsubsys *ph_subsys,
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int *pn_num_adapters);
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u16 hpi_subsys_get_adapter(const struct hpi_hsubsys *ph_subsys, int iterator,
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u32 *padapter_index, u16 *pw_adapter_type);
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u16 hpi_subsys_ssx2_bypass(const struct hpi_hsubsys *ph_subsys, u16 bypass);
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u16 hpi_subsys_set_host_network_interface(const struct hpi_hsubsys *ph_subsys,
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const char *sz_interface);
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/*///////// */
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/* ADAPTER */
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@ -1244,13 +1173,10 @@ u16 hpi_adapter_set_mode_ex(const struct hpi_hsubsys *ph_subsys,
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u16 hpi_adapter_get_mode(const struct hpi_hsubsys *ph_subsys,
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u16 adapter_index, u32 *padapter_mode);
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u16 hpi_adapter_get_assert(const struct hpi_hsubsys *ph_subsys,
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u16 adapter_index, u16 *assert_present, char *psz_assert,
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u16 *pw_line_number);
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u16 hpi_adapter_get_assert_ex(const struct hpi_hsubsys *ph_subsys,
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u16 adapter_index, u16 *assert_present, char *psz_assert,
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u32 *pline_number, u16 *pw_assert_on_dsp);
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u16 hpi_adapter_get_assert2(const struct hpi_hsubsys *ph_subsys,
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u16 adapter_index, u16 *p_assert_count, char *psz_assert,
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u32 *p_param1, u32 *p_param2, u32 *p_dsp_string_addr,
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u16 *p_processor_id);
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u16 hpi_adapter_test_assert(const struct hpi_hsubsys *ph_subsys,
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u16 adapter_index, u16 assert_id);
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@ -1274,66 +1200,6 @@ u16 hpi_adapter_get_property(const struct hpi_hsubsys *ph_subsys,
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u16 hpi_adapter_enumerate_property(const struct hpi_hsubsys *ph_subsys,
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u16 adapter_index, u16 index, u16 what_to_enumerate,
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u16 property_index, u32 *psetting);
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/*////////////// */
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/* NonVol Memory */
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u16 hpi_nv_memory_open(const struct hpi_hsubsys *ph_subsys, u16 adapter_index,
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u32 *ph_nv_memory, u16 *pw_size_in_bytes);
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u16 hpi_nv_memory_read_byte(const struct hpi_hsubsys *ph_subsys,
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u32 h_nv_memory, u16 index, u16 *pw_data);
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u16 hpi_nv_memory_write_byte(const struct hpi_hsubsys *ph_subsys,
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u32 h_nv_memory, u16 index, u16 data);
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/*////////////// */
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/* Digital I/O */
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u16 hpi_gpio_open(const struct hpi_hsubsys *ph_subsys, u16 adapter_index,
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u32 *ph_gpio, u16 *pw_number_input_bits, u16 *pw_number_output_bits);
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u16 hpi_gpio_read_bit(const struct hpi_hsubsys *ph_subsys, u32 h_gpio,
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u16 bit_index, u16 *pw_bit_data);
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u16 hpi_gpio_read_all_bits(const struct hpi_hsubsys *ph_subsys, u32 h_gpio,
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u16 aw_all_bit_data[4]
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);
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u16 hpi_gpio_write_bit(const struct hpi_hsubsys *ph_subsys, u32 h_gpio,
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u16 bit_index, u16 bit_data);
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u16 hpi_gpio_write_status(const struct hpi_hsubsys *ph_subsys, u32 h_gpio,
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u16 aw_all_bit_data[4]
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);
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/**********************/
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/* Async Event Object */
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/**********************/
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u16 hpi_async_event_open(const struct hpi_hsubsys *ph_subsys,
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u16 adapter_index, u32 *ph_async);
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u16 hpi_async_event_close(const struct hpi_hsubsys *ph_subsys, u32 h_async);
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u16 hpi_async_event_wait(const struct hpi_hsubsys *ph_subsys, u32 h_async,
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u16 maximum_events, struct hpi_async_event *p_events,
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u16 *pw_number_returned);
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u16 hpi_async_event_get_count(const struct hpi_hsubsys *ph_subsys,
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u32 h_async, u16 *pw_count);
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u16 hpi_async_event_get(const struct hpi_hsubsys *ph_subsys, u32 h_async,
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u16 maximum_events, struct hpi_async_event *p_events,
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u16 *pw_number_returned);
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/*/////////// */
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/* WATCH-DOG */
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u16 hpi_watchdog_open(const struct hpi_hsubsys *ph_subsys, u16 adapter_index,
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u32 *ph_watchdog);
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u16 hpi_watchdog_set_time(const struct hpi_hsubsys *ph_subsys, u32 h_watchdog,
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u32 time_millisec);
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u16 hpi_watchdog_ping(const struct hpi_hsubsys *ph_subsys, u32 h_watchdog);
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/**************/
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/* OUT STREAM */
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/**************/
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@ -1957,68 +1823,6 @@ u16 hpi_silence_detector_set_threshold(const struct hpi_hsubsys *ph_subsys,
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u16 hpi_silence_detector_get_threshold(const struct hpi_hsubsys *ph_subsys,
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u32 hC, int *threshold);
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/*******************************
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Universal control
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*******************************/
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u16 hpi_entity_find_next(struct hpi_entity *container_entity,
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enum e_entity_type type, enum e_entity_role role, int recursive_flag,
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struct hpi_entity **current_match);
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u16 hpi_entity_copy_value_from(struct hpi_entity *entity,
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enum e_entity_type type, size_t item_count, void *value_dst_p);
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u16 hpi_entity_unpack(struct hpi_entity *entity, enum e_entity_type *type,
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size_t *items, enum e_entity_role *role, void **value);
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u16 hpi_entity_alloc_and_pack(const enum e_entity_type type,
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const size_t item_count, const enum e_entity_role role, void *value,
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struct hpi_entity **entity);
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void hpi_entity_free(struct hpi_entity *entity);
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u16 hpi_universal_info(const struct hpi_hsubsys *ph_subsys, u32 hC,
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struct hpi_entity **info);
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u16 hpi_universal_get(const struct hpi_hsubsys *ph_subsys, u32 hC,
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struct hpi_entity **value);
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u16 hpi_universal_set(const struct hpi_hsubsys *ph_subsys, u32 hC,
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struct hpi_entity *value);
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/*/////////// */
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/* DSP CLOCK */
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/*/////////// */
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u16 hpi_clock_open(const struct hpi_hsubsys *ph_subsys, u16 adapter_index,
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u32 *ph_dsp_clock);
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u16 hpi_clock_set_time(const struct hpi_hsubsys *ph_subsys, u32 h_clock,
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u16 hour, u16 minute, u16 second, u16 milli_second);
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u16 hpi_clock_get_time(const struct hpi_hsubsys *ph_subsys, u32 h_clock,
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u16 *pw_hour, u16 *pw_minute, u16 *pw_second, u16 *pw_milli_second);
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/*/////////// */
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/* PROFILE */
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/*/////////// */
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u16 hpi_profile_open_all(const struct hpi_hsubsys *ph_subsys,
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u16 adapter_index, u16 profile_index, u32 *ph_profile,
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u16 *pw_max_profiles);
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u16 hpi_profile_get(const struct hpi_hsubsys *ph_subsys, u32 h_profile,
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||||
u16 index, u16 *pw_seconds, u32 *pmicro_seconds, u32 *pcall_count,
|
||||
u32 *pmax_micro_seconds, u32 *pmin_micro_seconds);
|
||||
|
||||
u16 hpi_profile_start_all(const struct hpi_hsubsys *ph_subsys, u32 h_profile);
|
||||
|
||||
u16 hpi_profile_stop_all(const struct hpi_hsubsys *ph_subsys, u32 h_profile);
|
||||
|
||||
u16 hpi_profile_get_name(const struct hpi_hsubsys *ph_subsys, u32 h_profile,
|
||||
u16 index, char *sz_profile_name, u16 profile_name_length);
|
||||
|
||||
u16 hpi_profile_get_utilization(const struct hpi_hsubsys *ph_subsys,
|
||||
u32 h_profile, u32 *putilization);
|
||||
|
||||
/*//////////////////// */
|
||||
/* UTILITY functions */
|
||||
|
||||
|
|
Loading…
Reference in New Issue