dd21615819
This patch fixes shared library compilation due to undefined reference to an exported variable 'bbdev_logtype'. Fixes:4935e1e9f7
("bbdev: introduce wireless base band device lib") Fixes:b8cfe2c9ae
("bb/turbo_sw: add software turbo driver") Fixes:7dc2b15894
("bb/null: add null base band device driver") Signed-off-by: Amr Mokhtar <amr.mokhtar@intel.com>
575 lines
19 KiB
C
575 lines
19 KiB
C
/* SPDX-License-Identifier: BSD-3-Clause
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* Copyright(c) 2017 Intel Corporation
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*/
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#ifndef _RTE_BBDEV_OP_H_
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#define _RTE_BBDEV_OP_H_
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/**
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* @file rte_bbdev_op.h
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*
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* Defines wireless base band layer 1 operations and capabilities
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*
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* @warning
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* @b EXPERIMENTAL: this API may change without prior notice
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*/
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#ifdef __cplusplus
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extern "C" {
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#endif
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#include <stdint.h>
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#include <rte_common.h>
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#include <rte_mbuf.h>
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#include <rte_memory.h>
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#include <rte_mempool.h>
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#define RTE_BBDEV_MAX_CODE_BLOCKS 64
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/** Flags for turbo decoder operation and capability structure */
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enum rte_bbdev_op_td_flag_bitmasks {
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/**< If sub block de-interleaving is to be performed. */
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RTE_BBDEV_TURBO_SUBBLOCK_DEINTERLEAVE = (1ULL << 0),
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/**< To use CRC Type 24B (otherwise use CRC Type 24A). */
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RTE_BBDEV_TURBO_CRC_TYPE_24B = (1ULL << 1),
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/**< If turbo equalization is to be performed. */
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RTE_BBDEV_TURBO_EQUALIZER = (1ULL << 2),
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/**< If set, saturate soft output to +/-127 */
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RTE_BBDEV_TURBO_SOFT_OUT_SATURATE = (1ULL << 3),
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/**< Set to 1 to start iteration from even, else odd; one iteration =
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* max_iteration + 0.5
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*/
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RTE_BBDEV_TURBO_HALF_ITERATION_EVEN = (1ULL << 4),
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/**< If 0, TD stops after CRC matches; else if 1, runs to end of next
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* odd iteration after CRC matches
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*/
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RTE_BBDEV_TURBO_CONTINUE_CRC_MATCH = (1ULL << 5),
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/**< Set if soft output is required to be output */
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RTE_BBDEV_TURBO_SOFT_OUTPUT = (1ULL << 6),
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/**< Set to enable early termination mode */
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RTE_BBDEV_TURBO_EARLY_TERMINATION = (1ULL << 7),
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/**< Set if a device supports decoder dequeue interrupts */
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RTE_BBDEV_TURBO_DEC_INTERRUPTS = (1ULL << 9),
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/**< Set if positive LLR encoded input is supported. Positive LLR value
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* represents the level of confidence for bit '1', and vice versa for
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* bit '0'.
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* This is mutually exclusive with RTE_BBDEV_TURBO_NEG_LLR_1_BIT_IN
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* when used to formalize the input data format.
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*/
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RTE_BBDEV_TURBO_POS_LLR_1_BIT_IN = (1ULL << 10),
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/**< Set if negative LLR encoded input is supported. Negative LLR value
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* represents the level of confidence for bit '1', and vice versa for
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* bit '0'.
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* This is mutually exclusive with RTE_BBDEV_TURBO_POS_LLR_1_BIT_IN
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* when used to formalize the input data format.
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*/
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RTE_BBDEV_TURBO_NEG_LLR_1_BIT_IN = (1ULL << 11),
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/**< Set if positive LLR soft output is supported. Positive LLR value
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* represents the level of confidence for bit '1', and vice versa for
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* bit '0'.
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* This is mutually exclusive with
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* RTE_BBDEV_TURBO_NEG_LLR_1_BIT_SOFT_OUT when used to formalize
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* the input data format.
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*/
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RTE_BBDEV_TURBO_POS_LLR_1_BIT_SOFT_OUT = (1ULL << 12),
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/**< Set if negative LLR soft output is supported. Negative LLR value
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* represents the level of confidence for bit '1', and vice versa for
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* bit '0'.
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* This is mutually exclusive with
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* RTE_BBDEV_TURBO_POS_LLR_1_BIT_SOFT_OUT when used to formalize the
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* input data format.
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*/
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RTE_BBDEV_TURBO_NEG_LLR_1_BIT_SOFT_OUT = (1ULL << 13),
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/**< Set if driver supports flexible parallel MAP engine decoding. If
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* not supported, num_maps (number of MAP engines) argument is unusable.
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*/
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RTE_BBDEV_TURBO_MAP_DEC = (1ULL << 14),
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/**< Set if a device supports scatter-gather functionality */
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RTE_BBDEV_TURBO_DEC_SCATTER_GATHER = (1ULL << 15)
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};
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/** Flags for turbo encoder operation and capability structure */
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enum rte_bbdev_op_te_flag_bitmasks {
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/**< Ignore rv_index and set K0 = 0 */
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RTE_BBDEV_TURBO_RV_INDEX_BYPASS = (1ULL << 0),
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/**< If rate matching is to be performed */
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RTE_BBDEV_TURBO_RATE_MATCH = (1ULL << 1),
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/**< This bit must be set to enable CRC-24B generation */
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RTE_BBDEV_TURBO_CRC_24B_ATTACH = (1ULL << 2),
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/**< This bit must be set to enable CRC-24A generation */
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RTE_BBDEV_TURBO_CRC_24A_ATTACH = (1ULL << 3),
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/**< Set if a device supports encoder dequeue interrupts */
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RTE_BBDEV_TURBO_ENC_INTERRUPTS = (1ULL << 4),
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/**< Set if a device supports scatter-gather functionality */
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RTE_BBDEV_TURBO_ENC_SCATTER_GATHER = (1ULL << 5)
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};
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/**< Data input and output buffer for BBDEV operations */
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struct rte_bbdev_op_data {
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/**< The mbuf data structure representing the data for BBDEV operation.
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*
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* This mbuf pointer can point to one Code Block (CB) data buffer or
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* multiple CBs contiguously located next to each other.
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* A Transport Block (TB) represents a whole piece of data that is
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* divided into one or more CBs. Maximum number of CBs can be contained
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* in one TB is defined by RTE_BBDEV_MAX_CODE_BLOCKS.
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*
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* An mbuf data structure cannot represent more than one TB. The
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* smallest piece of data that can be contained in one mbuf is one CB.
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* An mbuf can include one contiguous CB, subset of contiguous CBs that
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* are belonging to one TB, or all contiguous CBs that are belonging to
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* one TB.
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*
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* If a BBDEV PMD supports the extended capability "Scatter-Gather",
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* then it is capable of collecting (gathering) non-contiguous
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* (scattered) data from multiple locations in the memory.
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* This capability is reported by the capability flags:
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* - RTE_BBDEV_TURBO_ENC_SCATTER_GATHER and
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* - RTE_BBDEV_TURBO_DEC_SCATTER_GATHER.
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* Only if a BBDEV PMD supports this feature, chained mbuf data
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* structures are accepted. A chained mbuf can represent one
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* non-contiguous CB or multiple non-contiguous CBs.
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* If BBDEV PMD does not support this feature, it will assume inbound
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* mbuf data contains one segment.
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*
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* The output mbuf data though is always one segment, even if the input
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* was a chained mbuf.
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*/
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struct rte_mbuf *data;
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/**< The starting point of the BBDEV (encode/decode) operation,
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* in bytes.
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*
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* BBDEV starts to read data past this offset.
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* In case of chained mbuf, this offset applies only to the first mbuf
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* segment.
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*/
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uint32_t offset;
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/**< The total data length to be processed in one operation, in bytes.
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*
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* In case the mbuf data is representing one CB, this is the length of
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* the CB undergoing the operation.
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* If it's for multiple CBs, this is the total length of those CBs
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* undergoing the operation.
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* If it's for one TB, this is the total length of the TB under
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* operation.
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*
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* In case of chained mbuf, this data length includes the lengths of the
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* "scattered" data segments undergoing the operation.
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*/
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uint32_t length;
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};
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struct rte_bbdev_op_dec_cb_params {
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/**< The K size of the input CB, in bits [40:6144], as specified in
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* 3GPP TS 36.212.
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* This size is inclusive of CRC bits, regardless whether it was
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* pre-calculated by the application or not.
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*/
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uint16_t k;
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/**< The E length of the CB rate matched LLR output, in bytes, as in
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* 3GPP TS 36.212.
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*/
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uint32_t e;
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};
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struct rte_bbdev_op_dec_tb_params {
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/**< The K- size of the input CB, in bits [40:6144], that is in the
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* Turbo operation when r < C-, as in 3GPP TS 36.212.
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*/
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uint16_t k_neg;
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/**< The K+ size of the input CB, in bits [40:6144], that is in the
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* Turbo operation when r >= C-, as in 3GPP TS 36.212.
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*/
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uint16_t k_pos;
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/**< The number of CBs that have K- size, [0:63] */
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uint8_t c_neg;
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/**< The total number of CBs in the TB, [1:RTE_BBDEV_MAX_CODE_BLOCKS] */
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uint8_t c;
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/**< The number of CBs that uses Ea before switching to Eb, [0:63] */
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uint8_t cab;
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/**< The E size of the CB rate matched output to use in the Turbo
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* operation when r < cab
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*/
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uint32_t ea;
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/**< The E size of the CB rate matched output to use in the Turbo
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* operation when r >= cab
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*/
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uint32_t eb;
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};
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/**< Operation structure for Turbo decode.
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* An operation can perform on one CB at a time "CB-mode".
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* An operation can perform on one or multiple CBs that are logically belonging
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* to one TB "TB-mode".
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* The provided K size parameter of the CB is its size out coming from the
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* decode operation.
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* CRC24A/B check is requested by the application by setting the flag
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* RTE_BBDEV_TURBO_CRC_TYPE_24B for CRC24B check or CRC24A otherwise.
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* In TB-mode, BBDEV concatenates the decoded CBs one next to the other with
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* relevant CRC24B in between.
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*
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* The input encoded CB data is the Virtual Circular Buffer data stream, wk,
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* with the null padding included as described in 3GPP TS 36.212
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* section 5.1.4.1.2 and shown in 3GPP TS 36.212 section 5.1.4.1 Figure 5.1.4-1.
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* The size of the virtual circular buffer is 3*Kpi, where Kpi is the 32 byte
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* aligned value of K, as specified in 3GPP TS 36.212 section 5.1.4.1.1.
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*
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* Each byte in the input circular buffer is the LLR value of each bit of the
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* original CB.
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*
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* Hard output is a mandatory capability that all BBDEV PMDs support. This is
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* the decoded CBs of K sizes (CRC24A/B is the last 24-bit in each decoded CB).
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* Soft output is an optional capability for BBDEV PMDs. If supported, an LLR
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* rate matched output is computed in the soft_output buffer structure.
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*
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* The output mbuf data structure is expected to be allocated by the
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* application with enough room for the output data.
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*/
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struct rte_bbdev_op_turbo_dec {
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/**< The Virtual Circular Buffer, wk, size 3*Kpi for each CB */
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struct rte_bbdev_op_data input;
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/**< The hard decisions buffer for the decoded output,
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* size K for each CB
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*/
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struct rte_bbdev_op_data hard_output;
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/**< The soft LLR output buffer - optional */
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struct rte_bbdev_op_data soft_output;
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uint32_t op_flags; /**< Flags from rte_bbdev_op_td_flag_bitmasks */
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uint8_t rv_index; /**< Rv index for rate matching [0:3] */
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/**< The minimum number of iterations to perform in decoding all CBs in
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* this operation - input
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*/
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uint8_t iter_min:4;
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/**< The maximum number of iterations to perform in decoding all CBs in
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* this operation - input
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*/
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uint8_t iter_max:4;
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/**< The maximum number of iterations that were perform in decoding all
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* CBs in this decode operation - output
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*/
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uint8_t iter_count;
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/**< 5 bit extrinsic scale (scale factor on extrinsic info) */
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uint8_t ext_scale;
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/**< Number of MAP engines to use in decode,
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* must be power of 2 (or 0 to auto-select)
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*/
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uint8_t num_maps;
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uint8_t code_block_mode; /**< [0 - TB : 1 - CB] */
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union {
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/**< Struct which stores Code Block specific parameters */
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struct rte_bbdev_op_dec_cb_params cb_params;
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/**< Struct which stores Transport Block specific parameters */
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struct rte_bbdev_op_dec_tb_params tb_params;
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};
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};
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struct rte_bbdev_op_enc_cb_params {
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/**< The K size of the input CB, in bits [40:6144], as specified in
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* 3GPP TS 36.212.
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* This size is inclusive of CRC24A, regardless whether it was
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* pre-calculated by the application or not.
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*/
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uint16_t k;
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/**< The E length of the CB rate matched output, in bits, as in
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* 3GPP TS 36.212.
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*/
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uint32_t e;
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/**< The Ncb soft buffer size of the CB rate matched output [K:3*Kpi],
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* in bits, as specified in 3GPP TS 36.212.
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*/
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uint16_t ncb;
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};
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struct rte_bbdev_op_enc_tb_params {
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/**< The K- size of the input CB, in bits [40:6144], that is in the
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* Turbo operation when r < C-, as in 3GPP TS 36.212.
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* This size is inclusive of CRC24B, regardless whether it was
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* pre-calculated and appended by the application or not.
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*/
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uint16_t k_neg;
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/**< The K+ size of the input CB, in bits [40:6144], that is in the
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* Turbo operation when r >= C-, as in 3GPP TS 36.212.
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* This size is inclusive of CRC24B, regardless whether it was
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* pre-calculated and appended by the application or not.
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*/
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uint16_t k_pos;
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/**< The number of CBs that have K- size, [0:63] */
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uint8_t c_neg;
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/**< The total number of CBs in the TB, [1:RTE_BBDEV_MAX_CODE_BLOCKS] */
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uint8_t c;
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/**< The number of CBs that uses Ea before switching to Eb, [0:63] */
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uint8_t cab;
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/**< The E size of the CB rate matched output to use in the Turbo
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* operation when r < cab
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*/
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uint32_t ea;
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/**< The E size of the CB rate matched output to use in the Turbo
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* operation when r >= cab
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*/
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uint32_t eb;
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/**< The Ncb soft buffer size for the rate matched CB that is used in
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* the Turbo operation when r < C-, [K:3*Kpi]
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*/
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uint16_t ncb_neg;
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/**< The Ncb soft buffer size for the rate matched CB that is used in
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* the Turbo operation when r >= C-, [K:3*Kpi]
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*/
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uint16_t ncb_pos;
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/**< The index of the first CB in the inbound mbuf data, default is 0 */
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uint8_t r;
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};
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/**< Operation structure for Turbo encode.
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* An operation can perform on one CB at a time "CB-mode".
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* An operation can perform on one or multiple CBs that are logically
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* belonging to one TB "TB-mode".
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*
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* In CB-mode, CRC24A/B is an optional operation. K size parameter is not
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* affected by CRC24A/B inclusion, this only affects the inbound mbuf data
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* length. Not all BBDEV PMDs are capable of CRC24A/B calculation. Flags
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* RTE_BBDEV_TURBO_CRC_24A_ATTACH and RTE_BBDEV_TURBO_CRC_24B_ATTACH informs
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* the application with relevant capability. These flags can be set in the
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* op_flags parameter to indicate BBDEV to calculate and append CRC24A to CB
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* before going forward with Turbo encoding.
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*
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* In TB-mode, CRC24A is assumed to be pre-calculated and appended to the
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* inbound TB mbuf data buffer.
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*
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* The output mbuf data structure is expected to be allocated by the
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* application with enough room for the output data.
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*/
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struct rte_bbdev_op_turbo_enc {
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/**< The input CB or TB data */
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struct rte_bbdev_op_data input;
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/**< The rate matched CB or TB output buffer */
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struct rte_bbdev_op_data output;
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uint32_t op_flags; /**< Flags from rte_bbdev_op_te_flag_bitmasks */
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uint8_t rv_index; /**< Rv index for rate matching [0:3] */
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uint8_t code_block_mode; /**< [0 - TB : 1 - CB] */
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union {
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/**< Struct which stores Code Block specific parameters */
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struct rte_bbdev_op_enc_cb_params cb_params;
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/**< Struct which stores Transport Block specific parameters */
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struct rte_bbdev_op_enc_tb_params tb_params;
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};
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};
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/**< List of the capabilities for the Turbo Decoder */
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struct rte_bbdev_op_cap_turbo_dec {
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/**< Flags from rte_bbdev_op_td_flag_bitmasks */
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uint32_t capability_flags;
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uint8_t num_buffers_src; /**< Num input code block buffers */
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/**< Num hard output code block buffers */
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uint8_t num_buffers_hard_out;
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/**< Num soft output code block buffers if supported by the driver */
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uint8_t num_buffers_soft_out;
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};
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/**< List of the capabilities for the Turbo Encoder */
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struct rte_bbdev_op_cap_turbo_enc {
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/**< Flags from rte_bbdev_op_te_flag_bitmasks */
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uint32_t capability_flags;
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uint8_t num_buffers_src; /**< Num input code block buffers */
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uint8_t num_buffers_dst; /**< Num output code block buffers */
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};
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/** Different operation types supported by the device */
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enum rte_bbdev_op_type {
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RTE_BBDEV_OP_NONE, /**< Dummy operation that does nothing */
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RTE_BBDEV_OP_TURBO_DEC, /**< Turbo decode */
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RTE_BBDEV_OP_TURBO_ENC, /**< Turbo encode */
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RTE_BBDEV_OP_TYPE_COUNT, /**< Count of different op types */
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};
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/**< Bit indexes of possible errors reported through status field */
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enum {
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RTE_BBDEV_DRV_ERROR,
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RTE_BBDEV_DATA_ERROR,
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RTE_BBDEV_CRC_ERROR,
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};
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/**< Structure specifying a single encode operation */
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struct rte_bbdev_enc_op {
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int status; /**< Status of operation that was performed */
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struct rte_mempool *mempool; /**< Mempool which op instance is in */
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void *opaque_data; /**< Opaque pointer for user data */
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/**< Contains encoder specific parameters */
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struct rte_bbdev_op_turbo_enc turbo_enc;
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};
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/**< Structure specifying a single decode operation */
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struct rte_bbdev_dec_op {
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int status; /**< Status of operation that was performed */
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struct rte_mempool *mempool; /**< Mempool which op instance is in */
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void *opaque_data; /**< Opaque pointer for user data */
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/**< Contains decoder specific parameters */
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struct rte_bbdev_op_turbo_dec turbo_dec;
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};
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/**< Operation capabilities supported by a device */
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struct rte_bbdev_op_cap {
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enum rte_bbdev_op_type type; /**< Type of operation */
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union {
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struct rte_bbdev_op_cap_turbo_dec turbo_dec;
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struct rte_bbdev_op_cap_turbo_enc turbo_enc;
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} cap; /**< Operation-type specific capabilities */
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};
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/**< @internal Private data structure stored with operation pool. */
|
|
struct rte_bbdev_op_pool_private {
|
|
enum rte_bbdev_op_type type; /**< Type of operations in a pool */
|
|
};
|
|
|
|
/**
|
|
* Converts queue operation type from enum to string
|
|
*
|
|
* @param op_type
|
|
* Operation type as enum
|
|
*
|
|
* @returns
|
|
* Operation type as string or NULL if op_type is invalid
|
|
*
|
|
*/
|
|
const char*
|
|
rte_bbdev_op_type_str(enum rte_bbdev_op_type op_type);
|
|
|
|
/**
|
|
* Creates a bbdev operation mempool
|
|
*
|
|
* @param name
|
|
* Pool name.
|
|
* @param type
|
|
* Operation type, use RTE_BBDEV_OP_NONE for a pool which supports all
|
|
* operation types.
|
|
* @param num_elements
|
|
* Number of elements in the pool.
|
|
* @param cache_size
|
|
* Number of elements to cache on an lcore, see rte_mempool_create() for
|
|
* further details about cache size.
|
|
* @param socket_id
|
|
* Socket to allocate memory on.
|
|
*
|
|
* @return
|
|
* - Pointer to a mempool on success,
|
|
* - NULL pointer on failure.
|
|
*/
|
|
struct rte_mempool *
|
|
rte_bbdev_op_pool_create(const char *name, enum rte_bbdev_op_type type,
|
|
unsigned int num_elements, unsigned int cache_size,
|
|
int socket_id);
|
|
|
|
/**
|
|
* Bulk allocate encode operations from a mempool with parameter defaults reset.
|
|
*
|
|
* @param mempool
|
|
* Operation mempool, created by rte_bbdev_op_pool_create().
|
|
* @param ops
|
|
* Output array to place allocated operations
|
|
* @param num_ops
|
|
* Number of operations to allocate
|
|
*
|
|
* @returns
|
|
* - 0 on success
|
|
* - EINVAL if invalid mempool is provided
|
|
*/
|
|
static inline int
|
|
rte_bbdev_enc_op_alloc_bulk(struct rte_mempool *mempool,
|
|
struct rte_bbdev_enc_op **ops, uint16_t num_ops)
|
|
{
|
|
struct rte_bbdev_op_pool_private *priv;
|
|
int ret;
|
|
|
|
/* Check type */
|
|
priv = (struct rte_bbdev_op_pool_private *)
|
|
rte_mempool_get_priv(mempool);
|
|
if (unlikely(priv->type != RTE_BBDEV_OP_TURBO_ENC))
|
|
return -EINVAL;
|
|
|
|
/* Get elements */
|
|
ret = rte_mempool_get_bulk(mempool, (void **)ops, num_ops);
|
|
if (unlikely(ret < 0))
|
|
return ret;
|
|
|
|
return 0;
|
|
}
|
|
|
|
/**
|
|
* Bulk allocate decode operations from a mempool with parameter defaults reset.
|
|
*
|
|
* @param mempool
|
|
* Operation mempool, created by rte_bbdev_op_pool_create().
|
|
* @param ops
|
|
* Output array to place allocated operations
|
|
* @param num_ops
|
|
* Number of operations to allocate
|
|
*
|
|
* @returns
|
|
* - 0 on success
|
|
* - EINVAL if invalid mempool is provided
|
|
*/
|
|
static inline int
|
|
rte_bbdev_dec_op_alloc_bulk(struct rte_mempool *mempool,
|
|
struct rte_bbdev_dec_op **ops, uint16_t num_ops)
|
|
{
|
|
struct rte_bbdev_op_pool_private *priv;
|
|
int ret;
|
|
|
|
/* Check type */
|
|
priv = (struct rte_bbdev_op_pool_private *)
|
|
rte_mempool_get_priv(mempool);
|
|
if (unlikely(priv->type != RTE_BBDEV_OP_TURBO_DEC))
|
|
return -EINVAL;
|
|
|
|
/* Get elements */
|
|
ret = rte_mempool_get_bulk(mempool, (void **)ops, num_ops);
|
|
if (unlikely(ret < 0))
|
|
return ret;
|
|
|
|
return 0;
|
|
}
|
|
|
|
/**
|
|
* Free decode operation structures that were allocated by
|
|
* rte_bbdev_dec_op_alloc_bulk().
|
|
* All structures must belong to the same mempool.
|
|
*
|
|
* @param ops
|
|
* Operation structures
|
|
* @param num_ops
|
|
* Number of structures
|
|
*/
|
|
static inline void
|
|
rte_bbdev_dec_op_free_bulk(struct rte_bbdev_dec_op **ops, unsigned int num_ops)
|
|
{
|
|
if (num_ops > 0)
|
|
rte_mempool_put_bulk(ops[0]->mempool, (void **)ops, num_ops);
|
|
}
|
|
|
|
/**
|
|
* Free encode operation structures that were allocated by
|
|
* rte_bbdev_enc_op_alloc_bulk().
|
|
* All structures must belong to the same mempool.
|
|
*
|
|
* @param ops
|
|
* Operation structures
|
|
* @param num_ops
|
|
* Number of structures
|
|
*/
|
|
static inline void
|
|
rte_bbdev_enc_op_free_bulk(struct rte_bbdev_enc_op **ops, unsigned int num_ops)
|
|
{
|
|
if (num_ops > 0)
|
|
rte_mempool_put_bulk(ops[0]->mempool, (void **)ops, num_ops);
|
|
}
|
|
|
|
#ifdef __cplusplus
|
|
}
|
|
#endif
|
|
|
|
#endif /* _RTE_BBDEV_OP_H_ */
|