14935e1e9SAmr Mokhtar.. SPDX-License-Identifier: BSD-3-Clause 24935e1e9SAmr Mokhtar Copyright(c) 2017 Intel Corporation 34935e1e9SAmr Mokhtar 44935e1e9SAmr MokhtarWireless Baseband Device Library 54935e1e9SAmr Mokhtar================================ 64935e1e9SAmr Mokhtar 74935e1e9SAmr MokhtarThe Wireless Baseband library provides a common programming framework that 84935e1e9SAmr Mokhtarabstracts HW accelerators based on FPGA and/or Fixed Function Accelerators that 97273821fSKamil Chalupnikassist with 3GPP Physical Layer processing. Furthermore, it decouples the 104935e1e9SAmr Mokhtarapplication from the compute-intensive wireless functions by abstracting their 114935e1e9SAmr Mokhtaroptimized libraries to appear as virtual bbdev devices. 124935e1e9SAmr Mokhtar 134935e1e9SAmr MokhtarThe functional scope of the BBDEV library are those functions in relation to 147273821fSKamil Chalupnikthe 3GPP Layer 1 signal processing (channel coding, modulation, ...). 154935e1e9SAmr Mokhtar 164935e1e9SAmr MokhtarThe framework currently only supports Turbo Code FEC function. 174935e1e9SAmr Mokhtar 184935e1e9SAmr Mokhtar 194935e1e9SAmr MokhtarDesign Principles 204935e1e9SAmr Mokhtar----------------- 214935e1e9SAmr Mokhtar 224935e1e9SAmr MokhtarThe Wireless Baseband library follows the same ideology of DPDK's Ethernet 234935e1e9SAmr MokhtarDevice and Crypto Device frameworks. Wireless Baseband provides a generic 244935e1e9SAmr Mokhtaracceleration abstraction framework which supports both physical (hardware) and 254935e1e9SAmr Mokhtarvirtual (software) wireless acceleration functions. 264935e1e9SAmr Mokhtar 274935e1e9SAmr MokhtarDevice Management 284935e1e9SAmr Mokhtar----------------- 294935e1e9SAmr Mokhtar 304935e1e9SAmr MokhtarDevice Creation 314935e1e9SAmr Mokhtar~~~~~~~~~~~~~~~ 324935e1e9SAmr Mokhtar 334935e1e9SAmr MokhtarPhysical bbdev devices are discovered during the PCI probe/enumeration of the 344935e1e9SAmr MokhtarEAL function which is executed at DPDK initialization, based on 354935e1e9SAmr Mokhtartheir PCI device identifier, each unique PCI BDF (bus/bridge, device, 364935e1e9SAmr Mokhtarfunction). 374935e1e9SAmr Mokhtar 384935e1e9SAmr MokhtarVirtual devices can be created by two mechanisms, either using the EAL command 394935e1e9SAmr Mokhtarline options or from within the application using an EAL API directly. 404935e1e9SAmr Mokhtar 414935e1e9SAmr MokhtarFrom the command line using the --vdev EAL option 424935e1e9SAmr Mokhtar 434935e1e9SAmr Mokhtar.. code-block:: console 444935e1e9SAmr Mokhtar 457ce00bf3SKamil Chalupnik --vdev 'baseband_turbo_sw,max_nb_queues=8,socket_id=0' 464935e1e9SAmr Mokhtar 478b283e90SThierry HerbelotOr using the rte_vdev_init API within the application code. 484935e1e9SAmr Mokhtar 494935e1e9SAmr Mokhtar.. code-block:: c 504935e1e9SAmr Mokhtar 517ce00bf3SKamil Chalupnik rte_vdev_init("baseband_turbo_sw", "max_nb_queues=2,socket_id=0") 524935e1e9SAmr Mokhtar 534935e1e9SAmr MokhtarAll virtual bbdev devices support the following initialization parameters: 544935e1e9SAmr Mokhtar 554935e1e9SAmr Mokhtar- ``max_nb_queues`` - maximum number of queues supported by the device. 564935e1e9SAmr Mokhtar 574935e1e9SAmr Mokhtar- ``socket_id`` - socket on which to allocate the device resources on. 584935e1e9SAmr Mokhtar 594935e1e9SAmr Mokhtar 604935e1e9SAmr MokhtarDevice Identification 614935e1e9SAmr Mokhtar~~~~~~~~~~~~~~~~~~~~~ 624935e1e9SAmr Mokhtar 634935e1e9SAmr MokhtarEach device, whether virtual or physical is uniquely designated by two 644935e1e9SAmr Mokhtaridentifiers: 654935e1e9SAmr Mokhtar 664935e1e9SAmr Mokhtar- A unique device index used to designate the bbdev device in all functions 674935e1e9SAmr Mokhtar exported by the bbdev API. 684935e1e9SAmr Mokhtar 694935e1e9SAmr Mokhtar- A device name used to designate the bbdev device in console messages, for 704935e1e9SAmr Mokhtar administration or debugging purposes. For ease of use, the port name includes 714935e1e9SAmr Mokhtar the port index. 724935e1e9SAmr Mokhtar 734935e1e9SAmr Mokhtar 744935e1e9SAmr MokhtarDevice Configuration 754935e1e9SAmr Mokhtar~~~~~~~~~~~~~~~~~~~~ 764935e1e9SAmr Mokhtar 774935e1e9SAmr MokhtarFrom the application point of view, each instance of a bbdev device consists of 784935e1e9SAmr Mokhtarone or more queues identified by queue IDs. While different devices may have 794935e1e9SAmr Mokhtardifferent capabilities (e.g. support different operation types), all queues on 804935e1e9SAmr Mokhtara device support identical configuration possibilities. A queue is configured 81d629b7b5SJohn McNamarafor only one type of operation and is configured at initialization time. 824935e1e9SAmr MokhtarWhen an operation is enqueued to a specific queue ID, the result is dequeued 834935e1e9SAmr Mokhtarfrom the same queue ID. 844935e1e9SAmr Mokhtar 854935e1e9SAmr MokhtarConfiguration of a device has two different levels: configuration that applies 864935e1e9SAmr Mokhtarto the whole device, and configuration that applies to a single queue. 874935e1e9SAmr Mokhtar 884935e1e9SAmr MokhtarDevice configuration is applied with 894935e1e9SAmr Mokhtar``rte_bbdev_setup_queues(dev_id,num_queues,socket_id)`` 904935e1e9SAmr Mokhtarand queue configuration is applied with 914935e1e9SAmr Mokhtar``rte_bbdev_queue_configure(dev_id,queue_id,conf)``. Note that, although all 924935e1e9SAmr Mokhtarqueues on a device support same capabilities, they can be configured differently 934935e1e9SAmr Mokhtarand will then behave differently. 944935e1e9SAmr MokhtarDevices supporting interrupts can enable them by using 954935e1e9SAmr Mokhtar``rte_bbdev_intr_enable(dev_id)``. 964935e1e9SAmr Mokhtar 974935e1e9SAmr MokhtarThe configuration of each bbdev device includes the following operations: 984935e1e9SAmr Mokhtar 994935e1e9SAmr Mokhtar- Allocation of resources, including hardware resources if a physical device. 1004935e1e9SAmr Mokhtar- Resetting the device into a well-known default state. 1014935e1e9SAmr Mokhtar- Initialization of statistics counters. 1024935e1e9SAmr Mokhtar 1034935e1e9SAmr MokhtarThe ``rte_bbdev_setup_queues`` API is used to setup queues for a bbdev device. 1044935e1e9SAmr Mokhtar 1054935e1e9SAmr Mokhtar.. code-block:: c 1064935e1e9SAmr Mokhtar 1074935e1e9SAmr Mokhtar int rte_bbdev_setup_queues(uint16_t dev_id, uint16_t num_queues, 1084935e1e9SAmr Mokhtar int socket_id); 1094935e1e9SAmr Mokhtar 1104935e1e9SAmr Mokhtar- ``num_queues`` argument identifies the total number of queues to setup for 1114935e1e9SAmr Mokhtar this device. 1124935e1e9SAmr Mokhtar 1134935e1e9SAmr Mokhtar- ``socket_id`` specifies which socket will be used to allocate the memory. 1144935e1e9SAmr Mokhtar 1154935e1e9SAmr Mokhtar 1164935e1e9SAmr MokhtarThe ``rte_bbdev_intr_enable`` API is used to enable interrupts for a bbdev 1174935e1e9SAmr Mokhtardevice, if supported by the driver. Should be called before starting the device. 1184935e1e9SAmr Mokhtar 1194935e1e9SAmr Mokhtar.. code-block:: c 1204935e1e9SAmr Mokhtar 1214935e1e9SAmr Mokhtar int rte_bbdev_intr_enable(uint16_t dev_id); 1224935e1e9SAmr Mokhtar 1234935e1e9SAmr Mokhtar 1244935e1e9SAmr MokhtarQueues Configuration 1254935e1e9SAmr Mokhtar~~~~~~~~~~~~~~~~~~~~ 1264935e1e9SAmr Mokhtar 1274935e1e9SAmr MokhtarEach bbdev devices queue is individually configured through the 1284935e1e9SAmr Mokhtar``rte_bbdev_queue_configure()`` API. 1294935e1e9SAmr MokhtarEach queue resources may be allocated on a specified socket. 1304935e1e9SAmr Mokhtar 1314935e1e9SAmr Mokhtar.. code-block:: c 1324935e1e9SAmr Mokhtar 1334935e1e9SAmr Mokhtar struct rte_bbdev_queue_conf { 1344935e1e9SAmr Mokhtar int socket; 1354935e1e9SAmr Mokhtar uint32_t queue_size; 1364935e1e9SAmr Mokhtar uint8_t priority; 1374935e1e9SAmr Mokhtar bool deferred_start; 1384935e1e9SAmr Mokhtar enum rte_bbdev_op_type op_type; 1394935e1e9SAmr Mokhtar }; 1404935e1e9SAmr Mokhtar 1414935e1e9SAmr MokhtarDevice & Queues Management 1424935e1e9SAmr Mokhtar~~~~~~~~~~~~~~~~~~~~~~~~~~ 1434935e1e9SAmr Mokhtar 1444935e1e9SAmr MokhtarAfter initialization, devices are in a stopped state, so must be started by the 1454935e1e9SAmr Mokhtarapplication. If an application is finished using a device it can close the 1464935e1e9SAmr Mokhtardevice. Once closed, it cannot be restarted. 1474935e1e9SAmr Mokhtar 1484935e1e9SAmr Mokhtar.. code-block:: c 1494935e1e9SAmr Mokhtar 1504935e1e9SAmr Mokhtar int rte_bbdev_start(uint16_t dev_id) 1514935e1e9SAmr Mokhtar int rte_bbdev_stop(uint16_t dev_id) 1524935e1e9SAmr Mokhtar int rte_bbdev_close(uint16_t dev_id) 1534935e1e9SAmr Mokhtar int rte_bbdev_queue_start(uint16_t dev_id, uint16_t queue_id) 1544935e1e9SAmr Mokhtar int rte_bbdev_queue_stop(uint16_t dev_id, uint16_t queue_id) 1554935e1e9SAmr Mokhtar 1564935e1e9SAmr Mokhtar 1574935e1e9SAmr MokhtarBy default, all queues are started when the device is started, but they can be 1584935e1e9SAmr Mokhtarstopped individually. 1594935e1e9SAmr Mokhtar 1604935e1e9SAmr Mokhtar.. code-block:: c 1614935e1e9SAmr Mokhtar 1624935e1e9SAmr Mokhtar int rte_bbdev_queue_start(uint16_t dev_id, uint16_t queue_id) 1634935e1e9SAmr Mokhtar int rte_bbdev_queue_stop(uint16_t dev_id, uint16_t queue_id) 1644935e1e9SAmr Mokhtar 1654935e1e9SAmr Mokhtar 1664935e1e9SAmr MokhtarLogical Cores, Memory and Queues Relationships 1674935e1e9SAmr Mokhtar~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ 1684935e1e9SAmr Mokhtar 169*3f3f6081SNicolas ChautruThe bbdev poll mode device driver library supports NUMA architecture, in which 170*3f3f6081SNicolas Chautrua processor's logical cores and interfaces utilize it's local memory. Therefore 171*3f3f6081SNicolas Chautruwith baseband operations, the mbuf being operated on should be allocated from memory 1724935e1e9SAmr Mokhtarpools created in the local memory. The buffers should, if possible, remain on 1734935e1e9SAmr Mokhtarthe local processor to obtain the best performance results and buffer 1744935e1e9SAmr Mokhtardescriptors should be populated with mbufs allocated from a mempool allocated 1754935e1e9SAmr Mokhtarfrom local memory. 1764935e1e9SAmr Mokhtar 1774935e1e9SAmr MokhtarThe run-to-completion model also performs better, especially in the case of 1784935e1e9SAmr Mokhtarvirtual bbdev devices, if the baseband operation and data buffers are in local 1794935e1e9SAmr Mokhtarmemory instead of a remote processor's memory. This is also true for the 1804935e1e9SAmr Mokhtarpipe-line model provided all logical cores used are located on the same processor. 1814935e1e9SAmr Mokhtar 1824935e1e9SAmr MokhtarMultiple logical cores should never share the same queue for enqueuing 1834935e1e9SAmr Mokhtaroperations or dequeuing operations on the same bbdev device since this would 1844935e1e9SAmr Mokhtarrequire global locks and hinder performance. It is however possible to use a 1854935e1e9SAmr Mokhtardifferent logical core to dequeue an operation on a queue pair from the logical 1864935e1e9SAmr Mokhtarcore which it was enqueued on. This means that a baseband burst enqueue/dequeue 1874935e1e9SAmr MokhtarAPIs are a logical place to transition from one logical core to another in a 1884935e1e9SAmr Mokhtarpacket processing pipeline. 1894935e1e9SAmr Mokhtar 1904935e1e9SAmr Mokhtar 1914935e1e9SAmr MokhtarDevice Operation Capabilities 1924935e1e9SAmr Mokhtar----------------------------- 1934935e1e9SAmr Mokhtar 1944935e1e9SAmr MokhtarCapabilities (in terms of operations supported, max number of queues, etc.) 1954935e1e9SAmr Mokhtaridentify what a bbdev is capable of performing that differs from one device to 1964935e1e9SAmr Mokhtaranother. For the full scope of the bbdev capability see the definition of the 1974935e1e9SAmr Mokhtarstructure in the *DPDK API Reference*. 1984935e1e9SAmr Mokhtar 1994935e1e9SAmr Mokhtar.. code-block:: c 2004935e1e9SAmr Mokhtar 2014935e1e9SAmr Mokhtar struct rte_bbdev_op_cap; 2024935e1e9SAmr Mokhtar 2034935e1e9SAmr MokhtarA device reports its capabilities when registering itself in the bbdev framework. 2044935e1e9SAmr MokhtarWith the aid of this capabilities mechanism, an application can query devices to 2057273821fSKamil Chalupnikdiscover which operations within the 3GPP physical layer they are capable of 2064935e1e9SAmr Mokhtarperforming. Below is an example of the capabilities for a PMD it supports in 2074935e1e9SAmr Mokhtarrelation to Turbo Encoding and Decoding operations. 2084935e1e9SAmr Mokhtar 2094935e1e9SAmr Mokhtar.. code-block:: c 2104935e1e9SAmr Mokhtar 2114935e1e9SAmr Mokhtar static const struct rte_bbdev_op_cap bbdev_capabilities[] = { 2124935e1e9SAmr Mokhtar { 2134935e1e9SAmr Mokhtar .type = RTE_BBDEV_OP_TURBO_DEC, 2144935e1e9SAmr Mokhtar .cap.turbo_dec = { 2154935e1e9SAmr Mokhtar .capability_flags = 2164935e1e9SAmr Mokhtar RTE_BBDEV_TURBO_SUBBLOCK_DEINTERLEAVE | 2174935e1e9SAmr Mokhtar RTE_BBDEV_TURBO_POS_LLR_1_BIT_IN | 2184935e1e9SAmr Mokhtar RTE_BBDEV_TURBO_NEG_LLR_1_BIT_IN | 2197273821fSKamil Chalupnik RTE_BBDEV_TURBO_CRC_TYPE_24B | 2207273821fSKamil Chalupnik RTE_BBDEV_TURBO_DEC_TB_CRC_24B_KEEP | 2217273821fSKamil Chalupnik RTE_BBDEV_TURBO_EARLY_TERMINATION, 2227273821fSKamil Chalupnik .max_llr_modulus = 16, 223*3f3f6081SNicolas Chautru .num_buffers_src = RTE_BBDEV_TURBO_MAX_CODE_BLOCKS, 2244935e1e9SAmr Mokhtar .num_buffers_hard_out = 225*3f3f6081SNicolas Chautru RTE_BBDEV_TURBO_MAX_CODE_BLOCKS, 2264935e1e9SAmr Mokhtar .num_buffers_soft_out = 0, 2274935e1e9SAmr Mokhtar } 2284935e1e9SAmr Mokhtar }, 2294935e1e9SAmr Mokhtar { 2304935e1e9SAmr Mokhtar .type = RTE_BBDEV_OP_TURBO_ENC, 2314935e1e9SAmr Mokhtar .cap.turbo_enc = { 2324935e1e9SAmr Mokhtar .capability_flags = 2334935e1e9SAmr Mokhtar RTE_BBDEV_TURBO_CRC_24B_ATTACH | 2347273821fSKamil Chalupnik RTE_BBDEV_TURBO_CRC_24A_ATTACH | 2354935e1e9SAmr Mokhtar RTE_BBDEV_TURBO_RATE_MATCH | 2364935e1e9SAmr Mokhtar RTE_BBDEV_TURBO_RV_INDEX_BYPASS, 237*3f3f6081SNicolas Chautru .num_buffers_src = RTE_BBDEV_TURBO_MAX_CODE_BLOCKS, 238*3f3f6081SNicolas Chautru .num_buffers_dst = RTE_BBDEV_TURBO_MAX_CODE_BLOCKS, 2394935e1e9SAmr Mokhtar } 2404935e1e9SAmr Mokhtar }, 2414935e1e9SAmr Mokhtar RTE_BBDEV_END_OF_CAPABILITIES_LIST() 2424935e1e9SAmr Mokhtar }; 2434935e1e9SAmr Mokhtar 2444935e1e9SAmr MokhtarCapabilities Discovery 2454935e1e9SAmr Mokhtar~~~~~~~~~~~~~~~~~~~~~~ 2464935e1e9SAmr Mokhtar 2474935e1e9SAmr MokhtarDiscovering the features and capabilities of a bbdev device poll mode driver 2484935e1e9SAmr Mokhtaris achieved through the ``rte_bbdev_info_get()`` function. 2494935e1e9SAmr Mokhtar 2504935e1e9SAmr Mokhtar.. code-block:: c 2514935e1e9SAmr Mokhtar 2524935e1e9SAmr Mokhtar int rte_bbdev_info_get(uint16_t dev_id, struct rte_bbdev_info *dev_info) 2534935e1e9SAmr Mokhtar 2544935e1e9SAmr MokhtarThis allows the user to query a specific bbdev PMD and get all the device 2554935e1e9SAmr Mokhtarcapabilities. The ``rte_bbdev_info`` structure provides two levels of 2564935e1e9SAmr Mokhtarinformation: 2574935e1e9SAmr Mokhtar 2584935e1e9SAmr Mokhtar- Device relevant information, like: name and related rte_bus. 2594935e1e9SAmr Mokhtar 2604935e1e9SAmr Mokhtar- Driver specific information, as defined by the ``struct rte_bbdev_driver_info`` 2614935e1e9SAmr Mokhtar structure, this is where capabilities reside along with other specifics like: 2624935e1e9SAmr Mokhtar maximum queue sizes and priority level. 2634935e1e9SAmr Mokhtar 2644935e1e9SAmr Mokhtar.. code-block:: c 2654935e1e9SAmr Mokhtar 2664935e1e9SAmr Mokhtar struct rte_bbdev_info { 2674935e1e9SAmr Mokhtar int socket_id; 2684935e1e9SAmr Mokhtar const char *dev_name; 269*3f3f6081SNicolas Chautru const struct rte_device *device; 2704935e1e9SAmr Mokhtar uint16_t num_queues; 2714935e1e9SAmr Mokhtar bool started; 2724935e1e9SAmr Mokhtar struct rte_bbdev_driver_info drv; 2734935e1e9SAmr Mokhtar }; 2744935e1e9SAmr Mokhtar 275*3f3f6081SNicolas Chautru 2764935e1e9SAmr MokhtarOperation Processing 2774935e1e9SAmr Mokhtar-------------------- 2784935e1e9SAmr Mokhtar 2794935e1e9SAmr MokhtarScheduling of baseband operations on DPDK's application data path is 2804935e1e9SAmr Mokhtarperformed using a burst oriented asynchronous API set. A queue on a bbdev 2814935e1e9SAmr Mokhtardevice accepts a burst of baseband operations using enqueue burst API. On physical 2824935e1e9SAmr Mokhtarbbdev devices the enqueue burst API will place the operations to be processed 2834935e1e9SAmr Mokhtaron the device's hardware input queue, for virtual devices the processing of the 2844935e1e9SAmr Mokhtarbaseband operations is usually completed during the enqueue call to the bbdev 2854935e1e9SAmr Mokhtardevice. The dequeue burst API will retrieve any processed operations available 2864935e1e9SAmr Mokhtarfrom the queue on the bbdev device, from physical devices this is usually 2874935e1e9SAmr Mokhtardirectly from the device's processed queue, and for virtual device's from a 2886b1a74efSThierry Herbelot``rte_ring`` where processed operations are placed after being processed on the 2894935e1e9SAmr Mokhtarenqueue call. 2904935e1e9SAmr Mokhtar 2914935e1e9SAmr Mokhtar 2924935e1e9SAmr MokhtarEnqueue / Dequeue Burst APIs 2934935e1e9SAmr Mokhtar~~~~~~~~~~~~~~~~~~~~~~~~~~~~ 2944935e1e9SAmr Mokhtar 2954935e1e9SAmr MokhtarThe burst enqueue API uses a bbdev device identifier and a queue 2964935e1e9SAmr Mokhtaridentifier to specify the bbdev device queue to schedule the processing on. 2974935e1e9SAmr MokhtarThe ``num_ops`` parameter is the number of operations to process which are 2984935e1e9SAmr Mokhtarsupplied in the ``ops`` array of ``rte_bbdev_*_op`` structures. 2994935e1e9SAmr MokhtarThe enqueue function returns the number of operations it actually enqueued for 3004935e1e9SAmr Mokhtarprocessing, a return value equal to ``num_ops`` means that all packets have been 3014935e1e9SAmr Mokhtarenqueued. 3024935e1e9SAmr Mokhtar 3034935e1e9SAmr Mokhtar.. code-block:: c 3044935e1e9SAmr Mokhtar 3054935e1e9SAmr Mokhtar uint16_t rte_bbdev_enqueue_enc_ops(uint16_t dev_id, uint16_t queue_id, 3064935e1e9SAmr Mokhtar struct rte_bbdev_enc_op **ops, uint16_t num_ops) 3074935e1e9SAmr Mokhtar 3084935e1e9SAmr Mokhtar uint16_t rte_bbdev_enqueue_dec_ops(uint16_t dev_id, uint16_t queue_id, 3094935e1e9SAmr Mokhtar struct rte_bbdev_dec_op **ops, uint16_t num_ops) 3104935e1e9SAmr Mokhtar 3114935e1e9SAmr MokhtarThe dequeue API uses the same format as the enqueue API of processed but 3124935e1e9SAmr Mokhtarthe ``num_ops`` and ``ops`` parameters are now used to specify the max processed 3134935e1e9SAmr Mokhtaroperations the user wishes to retrieve and the location in which to store them. 3144935e1e9SAmr MokhtarThe API call returns the actual number of processed operations returned, this 3154935e1e9SAmr Mokhtarcan never be larger than ``num_ops``. 3164935e1e9SAmr Mokhtar 3174935e1e9SAmr Mokhtar.. code-block:: c 3184935e1e9SAmr Mokhtar 3194935e1e9SAmr Mokhtar uint16_t rte_bbdev_dequeue_enc_ops(uint16_t dev_id, uint16_t queue_id, 3204935e1e9SAmr Mokhtar struct rte_bbdev_enc_op **ops, uint16_t num_ops) 3214935e1e9SAmr Mokhtar 3224935e1e9SAmr Mokhtar uint16_t rte_bbdev_dequeue_dec_ops(uint16_t dev_id, uint16_t queue_id, 3234935e1e9SAmr Mokhtar struct rte_bbdev_dec_op **ops, uint16_t num_ops) 3244935e1e9SAmr Mokhtar 3254935e1e9SAmr MokhtarOperation Representation 3264935e1e9SAmr Mokhtar~~~~~~~~~~~~~~~~~~~~~~~~ 3274935e1e9SAmr Mokhtar 3284935e1e9SAmr MokhtarAn encode bbdev operation is represented by ``rte_bbdev_enc_op`` structure, 3294935e1e9SAmr Mokhtarand by ``rte_bbdev_dec_op`` for decode. These structures act as metadata 3304935e1e9SAmr Mokhtarcontainers for all necessary information required for the bbdev operation to be 3314935e1e9SAmr Mokhtarprocessed on a particular bbdev device poll mode driver. 3324935e1e9SAmr Mokhtar 3334935e1e9SAmr Mokhtar.. code-block:: c 3344935e1e9SAmr Mokhtar 3354935e1e9SAmr Mokhtar struct rte_bbdev_enc_op { 3364935e1e9SAmr Mokhtar int status; 3374935e1e9SAmr Mokhtar struct rte_mempool *mempool; 3384935e1e9SAmr Mokhtar void *opaque_data; 339*3f3f6081SNicolas Chautru union { 3404935e1e9SAmr Mokhtar struct rte_bbdev_op_turbo_enc turbo_enc; 341*3f3f6081SNicolas Chautru struct rte_bbdev_op_ldpc_enc ldpc_enc; 342*3f3f6081SNicolas Chautru } 3434935e1e9SAmr Mokhtar }; 3444935e1e9SAmr Mokhtar 3454935e1e9SAmr Mokhtar struct rte_bbdev_dec_op { 3464935e1e9SAmr Mokhtar int status; 3474935e1e9SAmr Mokhtar struct rte_mempool *mempool; 3484935e1e9SAmr Mokhtar void *opaque_data; 349*3f3f6081SNicolas Chautru union { 350*3f3f6081SNicolas Chautru struct rte_bbdev_op_turbo_dec turbo_enc; 351*3f3f6081SNicolas Chautru struct rte_bbdev_op_ldpc_dec ldpc_enc; 352*3f3f6081SNicolas Chautru } 3534935e1e9SAmr Mokhtar }; 3544935e1e9SAmr Mokhtar 3554935e1e9SAmr MokhtarThe operation structure by itself defines the operation type. It includes an 3564935e1e9SAmr Mokhtaroperation status, a reference to the operation specific data, which can vary in 3574935e1e9SAmr Mokhtarsize and content depending on the operation being provisioned. It also contains 3584935e1e9SAmr Mokhtarthe source mempool for the operation, if it is allocated from a mempool. 3594935e1e9SAmr Mokhtar 3604935e1e9SAmr MokhtarIf bbdev operations are allocated from a bbdev operation mempool, see next 3614935e1e9SAmr Mokhtarsection, there is also the ability to allocate private memory with the 3624935e1e9SAmr Mokhtaroperation for applications purposes. 3634935e1e9SAmr Mokhtar 3644935e1e9SAmr MokhtarApplication software is responsible for specifying all the operation specific 3654935e1e9SAmr Mokhtarfields in the ``rte_bbdev_*_op`` structure which are then used by the bbdev PMD 3664935e1e9SAmr Mokhtarto process the requested operation. 3674935e1e9SAmr Mokhtar 3684935e1e9SAmr Mokhtar 3694935e1e9SAmr MokhtarOperation Management and Allocation 3704935e1e9SAmr Mokhtar~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ 3714935e1e9SAmr Mokhtar 3724935e1e9SAmr MokhtarThe bbdev library provides an API set for managing bbdev operations which 3734935e1e9SAmr Mokhtarutilize the Mempool Library to allocate operation buffers. Therefore, it ensures 3744935e1e9SAmr Mokhtarthat the bbdev operation is interleaved optimally across the channels and 3754935e1e9SAmr Mokhtarranks for optimal processing. 3764935e1e9SAmr Mokhtar 3774935e1e9SAmr Mokhtar.. code-block:: c 3784935e1e9SAmr Mokhtar 3794935e1e9SAmr Mokhtar struct rte_mempool * 3804935e1e9SAmr Mokhtar rte_bbdev_op_pool_create(const char *name, enum rte_bbdev_op_type type, 3814935e1e9SAmr Mokhtar unsigned int num_elements, unsigned int cache_size, 3824935e1e9SAmr Mokhtar int socket_id) 3834935e1e9SAmr Mokhtar 3844935e1e9SAmr Mokhtar``rte_bbdev_*_op_alloc_bulk()`` and ``rte_bbdev_*_op_free_bulk()`` are used to 3854935e1e9SAmr Mokhtarallocate bbdev operations of a specific type from a given bbdev operation mempool. 3864935e1e9SAmr Mokhtar 3874935e1e9SAmr Mokhtar.. code-block:: c 3884935e1e9SAmr Mokhtar 3894935e1e9SAmr Mokhtar int rte_bbdev_enc_op_alloc_bulk(struct rte_mempool *mempool, 3904935e1e9SAmr Mokhtar struct rte_bbdev_enc_op **ops, uint16_t num_ops) 3914935e1e9SAmr Mokhtar 3924935e1e9SAmr Mokhtar int rte_bbdev_dec_op_alloc_bulk(struct rte_mempool *mempool, 3934935e1e9SAmr Mokhtar struct rte_bbdev_dec_op **ops, uint16_t num_ops) 3944935e1e9SAmr Mokhtar 3954935e1e9SAmr Mokhtar``rte_bbdev_*_op_free_bulk()`` is called by the application to return an 3964935e1e9SAmr Mokhtaroperation to its allocating pool. 3974935e1e9SAmr Mokhtar 3984935e1e9SAmr Mokhtar.. code-block:: c 3994935e1e9SAmr Mokhtar 4004935e1e9SAmr Mokhtar void rte_bbdev_dec_op_free_bulk(struct rte_bbdev_dec_op **ops, 4014935e1e9SAmr Mokhtar unsigned int num_ops) 4024935e1e9SAmr Mokhtar void rte_bbdev_enc_op_free_bulk(struct rte_bbdev_enc_op **ops, 4034935e1e9SAmr Mokhtar unsigned int num_ops) 4044935e1e9SAmr Mokhtar 4057273821fSKamil ChalupnikBBDEV Inbound/Outbound Memory 4067273821fSKamil Chalupnik~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ 4074935e1e9SAmr Mokhtar 4084935e1e9SAmr MokhtarThe bbdev operation structure contains all the mutable data relating to 409*3f3f6081SNicolas Chautruperforming Turbo and LDPC coding on a referenced mbuf data buffer. It is used for either 4107273821fSKamil Chalupnikencode or decode operations. 4114935e1e9SAmr Mokhtar 412*3f3f6081SNicolas Chautru 413*3f3f6081SNicolas Chautru.. csv-table:: Operation I/O 414*3f3f6081SNicolas Chautru :header: "FEC", "In", "Out" 415*3f3f6081SNicolas Chautru :widths: 20, 30, 30 416*3f3f6081SNicolas Chautru 417*3f3f6081SNicolas Chautru "Turbo Encode", "input", "output" 418*3f3f6081SNicolas Chautru "Turbo Decode", "input", "hard output" 419*3f3f6081SNicolas Chautru " ", " ", "soft output (optional)" 420*3f3f6081SNicolas Chautru "LDPC Encode", "input", "output" 421*3f3f6081SNicolas Chautru "LDPC Decode", "input", "hard output" 422*3f3f6081SNicolas Chautru "", "HQ combine (optional)", "HQ combine (optional)" 423*3f3f6081SNicolas Chautru " ", "", "soft output (optional)" 424*3f3f6081SNicolas Chautru 4254935e1e9SAmr Mokhtar 4267273821fSKamil ChalupnikIt is expected that the application provides input and output mbuf pointers 427*3f3f6081SNicolas Chautruallocated and ready to use. 428*3f3f6081SNicolas Chautru 429*3f3f6081SNicolas ChautruThe baseband framework supports FEC coding on Code Blocks (CB) and 430*3f3f6081SNicolas ChautruTransport Blocks (TB). 4314935e1e9SAmr Mokhtar 4327273821fSKamil ChalupnikFor the output buffer(s), the application is required to provide an allocated 433*3f3f6081SNicolas Chautruand free mbuf, to which the resulting output will be written. 4344935e1e9SAmr Mokhtar 4357273821fSKamil ChalupnikThe support of split "scattered" buffers is a driver-specific feature, so it is 4367273821fSKamil Chalupnikreported individually by the supporting driver as a capability. 4377273821fSKamil Chalupnik 4387273821fSKamil ChalupnikInput and output data buffers are identified by ``rte_bbdev_op_data`` structure, 4397273821fSKamil Chalupnikas follows: 4407273821fSKamil Chalupnik 4417273821fSKamil Chalupnik.. code-block:: c 4427273821fSKamil Chalupnik 4437273821fSKamil Chalupnik struct rte_bbdev_op_data { 4447273821fSKamil Chalupnik struct rte_mbuf *data; 4457273821fSKamil Chalupnik uint32_t offset; 4467273821fSKamil Chalupnik uint32_t length; 4477273821fSKamil Chalupnik }; 4487273821fSKamil Chalupnik 4497273821fSKamil Chalupnik 4507273821fSKamil ChalupnikThis structure has three elements: 4517273821fSKamil Chalupnik 4527273821fSKamil Chalupnik- ``data``: This is the mbuf data structure representing the data for BBDEV 4537273821fSKamil Chalupnik operation. 4547273821fSKamil Chalupnik 4557273821fSKamil Chalupnik This mbuf pointer can point to one Code Block (CB) data buffer or multiple CBs 4567273821fSKamil Chalupnik contiguously located next to each other. A Transport Block (TB) represents a 4577273821fSKamil Chalupnik whole piece of data that is divided into one or more CBs. Maximum number of 458*3f3f6081SNicolas Chautru CBs can be contained in one TB is defined by 459*3f3f6081SNicolas Chautru ``RTE_BBDEV_(TURBO/LDPC)MAX_CODE_BLOCKS``. 4607273821fSKamil Chalupnik 4617273821fSKamil Chalupnik An mbuf data structure cannot represent more than one TB. The smallest piece 4627273821fSKamil Chalupnik of data that can be contained in one mbuf is one CB. 4637273821fSKamil Chalupnik An mbuf can include one contiguous CB, subset of contiguous CBs that are 464*3f3f6081SNicolas Chautru belonging to one TB, or all contiguous CBs that belong to one TB. 4657273821fSKamil Chalupnik 4667273821fSKamil Chalupnik If a BBDEV PMD supports the extended capability "Scatter-Gather", then it is 4677273821fSKamil Chalupnik capable of collecting (gathering) non-contiguous (scattered) data from 4687273821fSKamil Chalupnik multiple locations in the memory. 4697273821fSKamil Chalupnik This capability is reported by the capability flags: 4707273821fSKamil Chalupnik 471*3f3f6081SNicolas Chautru - ``RTE_BBDEV_TURBO_ENC_SCATTER_GATHER``, ``RTE_BBDEV_TURBO_DEC_SCATTER_GATHER``, 4727273821fSKamil Chalupnik 473*3f3f6081SNicolas Chautru - ``RTE_BBDEV_LDPC_ENC_SCATTER_GATHER``, ``RTE_BBDEV_LDPC_DEC_SCATTER_GATHER``. 4747273821fSKamil Chalupnik 475*3f3f6081SNicolas Chautru Chained mbuf data structures are only accepted if a BBDEV PMD supports this 476*3f3f6081SNicolas Chautru feature. A chained mbuf can represent one non-contiguous CB or multiple non-contiguous 477*3f3f6081SNicolas Chautru CBs. The first mbuf segment in the given chained mbuf represents the first piece 4787273821fSKamil Chalupnik of the CB. Offset is only applicable to the first segment. ``length`` is the 4797273821fSKamil Chalupnik total length of the CB. 4807273821fSKamil Chalupnik 4817273821fSKamil Chalupnik BBDEV driver is responsible for identifying where the split is and enqueue 4827273821fSKamil Chalupnik the split data to its internal queues. 4837273821fSKamil Chalupnik 4847273821fSKamil Chalupnik If BBDEV PMD does not support this feature, it will assume inbound mbuf data 4857273821fSKamil Chalupnik contains one segment. 4867273821fSKamil Chalupnik 4877273821fSKamil Chalupnik The output mbuf data though is always one segment, even if the input was a 4887273821fSKamil Chalupnik chained mbuf. 4897273821fSKamil Chalupnik 4907273821fSKamil Chalupnik 4917273821fSKamil Chalupnik- ``offset``: This is the starting point of the BBDEV (encode/decode) operation, 4927273821fSKamil Chalupnik in bytes. 4937273821fSKamil Chalupnik 4947273821fSKamil Chalupnik BBDEV starts to read data past this offset. 4957273821fSKamil Chalupnik In case of chained mbuf, this offset applies only to the first mbuf segment. 4967273821fSKamil Chalupnik 4977273821fSKamil Chalupnik 4987273821fSKamil Chalupnik- ``length``: This is the total data length to be processed in one operation, 4997273821fSKamil Chalupnik in bytes. 5007273821fSKamil Chalupnik 5017273821fSKamil Chalupnik In case the mbuf data is representing one CB, this is the length of the CB 5027273821fSKamil Chalupnik undergoing the operation. 5037273821fSKamil Chalupnik If it is for multiple CBs, this is the total length of those CBs undergoing 5047273821fSKamil Chalupnik the operation. 5057273821fSKamil Chalupnik If it is for one TB, this is the total length of the TB under operation. 5067273821fSKamil Chalupnik In case of chained mbuf, this data length includes the lengths of the 5077273821fSKamil Chalupnik "scattered" data segments undergoing the operation. 5087273821fSKamil Chalupnik 5097273821fSKamil Chalupnik 5107273821fSKamil ChalupnikBBDEV Turbo Encode Operation 5117273821fSKamil Chalupnik~~~~~~~~~~~~~~~~~~~~~~~~~~~~ 5124935e1e9SAmr Mokhtar 5134935e1e9SAmr Mokhtar.. code-block:: c 5144935e1e9SAmr Mokhtar 5154935e1e9SAmr Mokhtar struct rte_bbdev_op_turbo_enc { 5164935e1e9SAmr Mokhtar struct rte_bbdev_op_data input; 5174935e1e9SAmr Mokhtar struct rte_bbdev_op_data output; 5184935e1e9SAmr Mokhtar 5194935e1e9SAmr Mokhtar uint32_t op_flags; 5204935e1e9SAmr Mokhtar uint8_t rv_index; 5214935e1e9SAmr Mokhtar uint8_t code_block_mode; 5224935e1e9SAmr Mokhtar union { 5234935e1e9SAmr Mokhtar struct rte_bbdev_op_enc_cb_params cb_params; 5244935e1e9SAmr Mokhtar struct rte_bbdev_op_enc_tb_params tb_params; 5254935e1e9SAmr Mokhtar }; 5264935e1e9SAmr Mokhtar }; 5274935e1e9SAmr Mokhtar 528*3f3f6081SNicolas ChautruThe Turbo encode structure includes the ``input`` and ``output`` mbuf 529*3f3f6081SNicolas Chautrudata pointers. The provided mbuf pointer of ``input`` needs to be big 530*3f3f6081SNicolas Chautruenough to stretch for extra CRC trailers. 5314935e1e9SAmr Mokhtar 532*3f3f6081SNicolas Chautru.. csv-table:: **struct rte_bbdev_op_turbo_enc** parameters 533*3f3f6081SNicolas Chautru :header: "Parameter", "Description" 534*3f3f6081SNicolas Chautru :widths: 10, 30 5357273821fSKamil Chalupnik 536*3f3f6081SNicolas Chautru "input","input CB or TB data" 537*3f3f6081SNicolas Chautru "output","rate matched CB or TB output buffer" 538*3f3f6081SNicolas Chautru "op_flags","bitmask of all active operation capabilities" 539*3f3f6081SNicolas Chautru "rv_index","redundancy version index [0..3]" 540*3f3f6081SNicolas Chautru "code_block_mode","code block or transport block mode" 541*3f3f6081SNicolas Chautru "cb_params", "code block specific parameters (code block mode only)" 542*3f3f6081SNicolas Chautru "tb_params", "transport block specific parameters (transport block mode only)" 543*3f3f6081SNicolas Chautru 5447273821fSKamil Chalupnik 5457273821fSKamil ChalupnikThe encode interface works on both the code block (CB) and the transport block 5467273821fSKamil Chalupnik(TB). An operation executes in "CB-mode" when the CB is standalone. While 5477273821fSKamil Chalupnik"TB-mode" executes when an operation performs on one or multiple CBs that 5487273821fSKamil Chalupnikbelong to a TB. Therefore, a given data can be standalone CB, full-size TB or 5497273821fSKamil Chalupnikpartial TB. Partial TB means that only a subset of CBs belonging to a bigger TB 5507273821fSKamil Chalupnikare being enqueued. 5517273821fSKamil Chalupnik 5527273821fSKamil Chalupnik **NOTE:** It is assumed that all enqueued ops in one ``rte_bbdev_enqueue_enc_ops()`` 5537273821fSKamil Chalupnik call belong to one mode, either CB-mode or TB-mode. 5547273821fSKamil Chalupnik 555*3f3f6081SNicolas ChautruIn case that the TB is smaller than Z (6144 bits), then effectively the TB = CB. 5567273821fSKamil ChalupnikCRC24A is appended to the tail of the CB. The application is responsible for 5577273821fSKamil Chalupnikcalculating and appending CRC24A before calling BBDEV in case that the 5587273821fSKamil Chalupnikunderlying driver does not support CRC24A generation. 5597273821fSKamil Chalupnik 5607273821fSKamil ChalupnikIn CB-mode, CRC24A/B is an optional operation. 561*3f3f6081SNicolas ChautruThe CB parameter ``k`` is the size of the CB (this maps to K as described 562*3f3f6081SNicolas Chautruin 3GPP TS 36.212 section 5.1.2), this size is inclusive of CRC24A/B. 5637273821fSKamil ChalupnikThe ``length`` is inclusive of CRC24A/B and equals to ``k`` in this case. 5647273821fSKamil Chalupnik 5657273821fSKamil ChalupnikNot all BBDEV PMDs are capable of CRC24A/B calculation. Flags 5667273821fSKamil Chalupnik``RTE_BBDEV_TURBO_CRC_24A_ATTACH`` and ``RTE_BBDEV_TURBO_CRC_24B_ATTACH`` 5677273821fSKamil Chalupnikinforms the application with relevant capability. These flags can be set in the 568*3f3f6081SNicolas Chautru``op_flags`` parameter to indicate to BBDEV to calculate and append CRC24A/B 569*3f3f6081SNicolas Chautruto CB before going forward with Turbo encoding. 5707273821fSKamil Chalupnik 5717273821fSKamil ChalupnikOutput format of the CB encode will have the encoded CB in ``e`` size output 5727273821fSKamil Chalupnik(this maps to E described in 3GPP TS 36.212 section 5.1.4.1.2). The output mbuf 5737273821fSKamil Chalupnikbuffer size needs to be big enough to hold the encoded buffer of size ``e``. 5747273821fSKamil Chalupnik 5757273821fSKamil ChalupnikIn TB-mode, CRC24A is assumed to be pre-calculated and appended to the inbound 5767273821fSKamil ChalupnikTB mbuf data buffer. 5777273821fSKamil ChalupnikThe output mbuf data structure is expected to be allocated by the application 5787273821fSKamil Chalupnikwith enough room for the output data. 5797273821fSKamil Chalupnik 5807273821fSKamil ChalupnikThe difference between the partial and full-size TB is that we need to know the 5817273821fSKamil Chalupnikindex of the first CB in this group and the number of CBs contained within. 5827273821fSKamil ChalupnikThe first CB index is given by ``r`` but the number of the remaining CBs is 5837273821fSKamil Chalupnikcalculated automatically by BBDEV before passing down to the driver. 5847273821fSKamil Chalupnik 5857273821fSKamil ChalupnikThe number of remaining CBs should not be confused with ``c``. ``c`` is the 5867273821fSKamil Chalupniktotal number of CBs that composes the whole TB (this maps to C as 5877273821fSKamil Chalupnikdescribed in 3GPP TS 36.212 section 5.1.2). 5887273821fSKamil Chalupnik 5897273821fSKamil ChalupnikThe ``length`` is total size of the CBs inclusive of any CRC24A and CRC24B in 5907273821fSKamil Chalupnikcase they were appended by the application. 5917273821fSKamil Chalupnik 5927273821fSKamil ChalupnikThe case when one CB belongs to TB and is being enqueued individually to BBDEV, 5937273821fSKamil Chalupnikthis case is considered as a special case of partial TB where its number of CBs 5947273821fSKamil Chalupnikis 1. Therefore, it requires to get processed in TB-mode. 5957273821fSKamil Chalupnik 59654c4cbb6SAmr MokhtarThe figure below visualizes the encoding of CBs using BBDEV interface in 59754c4cbb6SAmr MokhtarTB-mode. CB-mode is a reduced version, where only one CB exists: 59854c4cbb6SAmr Mokhtar 59954c4cbb6SAmr Mokhtar.. _figure_turbo_tb_encode: 60054c4cbb6SAmr Mokhtar 601e90561ffSThomas Monjalon.. figure:: img/turbo_tb_encode.* 60254c4cbb6SAmr Mokhtar 60354c4cbb6SAmr Mokhtar Turbo encoding of Code Blocks in mbuf structure 60454c4cbb6SAmr Mokhtar 6057273821fSKamil Chalupnik 6067273821fSKamil ChalupnikBBDEV Turbo Decode Operation 6077273821fSKamil Chalupnik~~~~~~~~~~~~~~~~~~~~~~~~~~~~ 6084935e1e9SAmr Mokhtar 6094935e1e9SAmr Mokhtar.. code-block:: c 6104935e1e9SAmr Mokhtar 6114935e1e9SAmr Mokhtar struct rte_bbdev_op_turbo_dec { 6124935e1e9SAmr Mokhtar struct rte_bbdev_op_data input; 6134935e1e9SAmr Mokhtar struct rte_bbdev_op_data hard_output; 6144935e1e9SAmr Mokhtar struct rte_bbdev_op_data soft_output; 6154935e1e9SAmr Mokhtar 6164935e1e9SAmr Mokhtar uint32_t op_flags; 6174935e1e9SAmr Mokhtar uint8_t rv_index; 6184935e1e9SAmr Mokhtar uint8_t iter_min:4; 6194935e1e9SAmr Mokhtar uint8_t iter_max:4; 6204935e1e9SAmr Mokhtar uint8_t iter_count; 6214935e1e9SAmr Mokhtar uint8_t ext_scale; 6224935e1e9SAmr Mokhtar uint8_t num_maps; 6234935e1e9SAmr Mokhtar uint8_t code_block_mode; 6244935e1e9SAmr Mokhtar union { 6254935e1e9SAmr Mokhtar struct rte_bbdev_op_dec_cb_params cb_params; 6264935e1e9SAmr Mokhtar struct rte_bbdev_op_dec_tb_params tb_params; 6274935e1e9SAmr Mokhtar }; 6284935e1e9SAmr Mokhtar }; 6294935e1e9SAmr Mokhtar 630*3f3f6081SNicolas ChautruThe Turbo decode structure includes the ``input``, ``hard_output`` and 631*3f3f6081SNicolas Chautruoptionally the ``soft_output`` mbuf data pointers. 6324935e1e9SAmr Mokhtar 633*3f3f6081SNicolas Chautru.. csv-table:: **struct rte_bbdev_op_turbo_dec** parameters 634*3f3f6081SNicolas Chautru :header: "Parameter", "Description" 635*3f3f6081SNicolas Chautru :widths: 10, 30 6364935e1e9SAmr Mokhtar 637*3f3f6081SNicolas Chautru "input","virtual circular buffer, wk, size 3*Kpi for each CB" 638*3f3f6081SNicolas Chautru "hard output","hard decisions buffer, decoded output, size K for each CB" 639*3f3f6081SNicolas Chautru "soft output","soft LLR output buffer (optional)" 640*3f3f6081SNicolas Chautru "op_flags","bitmask of all active operation capabilities" 641*3f3f6081SNicolas Chautru "rv_index","redundancy version index [0..3]" 642*3f3f6081SNicolas Chautru "iter_max","maximum number of iterations to perofrm in decode all CBs" 643*3f3f6081SNicolas Chautru "iter_min","minimum number of iterations to perform in decoding all CBs" 644*3f3f6081SNicolas Chautru "iter_count","number of iterations to performed in decoding all CBs" 645*3f3f6081SNicolas Chautru "ext_scale","scale factor on extrinsic info (5 bits)" 646*3f3f6081SNicolas Chautru "num_maps","number of MAP engines to use in decode" 647*3f3f6081SNicolas Chautru "code_block_mode","code block or transport block mode" 648*3f3f6081SNicolas Chautru "cb_params", "code block specific parameters (code block mode only)" 649*3f3f6081SNicolas Chautru "tb_params", "transport block specific parameters (transport block mode only)" 6504935e1e9SAmr Mokhtar 6517273821fSKamil ChalupnikSimilarly, the decode interface works on both the code block (CB) and the 6527273821fSKamil Chalupniktransport block (TB). An operation executes in "CB-mode" when the CB is 6537273821fSKamil Chalupnikstandalone. While "TB-mode" executes when an operation performs on one or 6547273821fSKamil Chalupnikmultiple CBs that belong to a TB. Therefore, a given data can be standalone CB, 6557273821fSKamil Chalupnikfull-size TB or partial TB. Partial TB means that only a subset of CBs belonging 6567273821fSKamil Chalupnikto a bigger TB are being enqueued. 6577273821fSKamil Chalupnik 6587273821fSKamil Chalupnik **NOTE:** It is assumed that all enqueued ops in one ``rte_bbdev_enqueue_dec_ops()`` 6597273821fSKamil Chalupnik call belong to one mode, either CB-mode or TB-mode. 6607273821fSKamil Chalupnik 661*3f3f6081SNicolas Chautru 662*3f3f6081SNicolas ChautruThe CB parameter ``k`` is the size of the decoded CB (this maps to K as described in 6637273821fSKamil Chalupnik3GPP TS 36.212 section 5.1.2), this size is inclusive of CRC24A/B. 6647273821fSKamil ChalupnikThe ``length`` is inclusive of CRC24A/B and equals to ``k`` in this case. 6657273821fSKamil Chalupnik 6667273821fSKamil ChalupnikThe input encoded CB data is the Virtual Circular Buffer data stream, wk, with 6677273821fSKamil Chalupnikthe null padding included as described in 3GPP TS 36.212 section 5.1.4.1.2 and 6687273821fSKamil Chalupnikshown in 3GPP TS 36.212 section 5.1.4.1 Figure 5.1.4-1. 6697273821fSKamil ChalupnikThe size of the virtual circular buffer is 3*Kpi, where Kpi is the 32 byte 6707273821fSKamil Chalupnikaligned value of K, as specified in 3GPP TS 36.212 section 5.1.4.1.1. 6717273821fSKamil Chalupnik 6727273821fSKamil ChalupnikEach byte in the input circular buffer is the LLR value of each bit of the 6737273821fSKamil Chalupnikoriginal CB. 6747273821fSKamil Chalupnik 6757273821fSKamil Chalupnik``hard_output`` is a mandatory capability that all BBDEV PMDs support. This is 6767273821fSKamil Chalupnikthe decoded CBs of K sizes (CRC24A/B is the last 24-bit in each decoded CB). 6777273821fSKamil ChalupnikSoft output is an optional capability for BBDEV PMDs. Setting flag 6787273821fSKamil Chalupnik``RTE_BBDEV_TURBO_DEC_TB_CRC_24B_KEEP`` in ``op_flags`` directs BBDEV to retain 6797273821fSKamil ChalupnikCRC24B at the end of each CB. This might be useful for the application in debug 6807273821fSKamil Chalupnikmode. 6817273821fSKamil ChalupnikAn LLR rate matched output is computed in the ``soft_output`` buffer structure 682*3f3f6081SNicolas Chautrufor the given CB parameter ``e`` size (this maps to E described in 683*3f3f6081SNicolas Chautru3GPP TS 36.212 section 5.1.4.1.2). The output mbuf buffer size needs to be big 684*3f3f6081SNicolas Chautruenough to hold the encoded buffer of size ``e``. 6857273821fSKamil Chalupnik 6867273821fSKamil ChalupnikThe first CB Virtual Circular Buffer (VCB) index is given by ``r`` but the 6877273821fSKamil Chalupniknumber of the remaining CB VCBs is calculated automatically by BBDEV before 6887273821fSKamil Chalupnikpassing down to the driver. 6897273821fSKamil Chalupnik 6907273821fSKamil ChalupnikThe number of remaining CB VCBs should not be confused with ``c``. ``c`` is the 6917273821fSKamil Chalupniktotal number of CBs that composes the whole TB (this maps to C as 6927273821fSKamil Chalupnikdescribed in 3GPP TS 36.212 section 5.1.2). 6937273821fSKamil Chalupnik 6947273821fSKamil ChalupnikThe ``length`` is total size of the CBs inclusive of any CRC24A and CRC24B in 6957273821fSKamil Chalupnikcase they were appended by the application. 6967273821fSKamil Chalupnik 6977273821fSKamil ChalupnikThe case when one CB belongs to TB and is being enqueued individually to BBDEV, 6987273821fSKamil Chalupnikthis case is considered as a special case of partial TB where its number of CBs 6997273821fSKamil Chalupnikis 1. Therefore, it requires to get processed in TB-mode. 7007273821fSKamil Chalupnik 7017273821fSKamil ChalupnikThe output mbuf data structure is expected to be allocated by the application 7027273821fSKamil Chalupnikwith enough room for the output data. 7037273821fSKamil Chalupnik 70454c4cbb6SAmr MokhtarThe figure below visualizes the decoding of CBs using BBDEV interface in 70554c4cbb6SAmr MokhtarTB-mode. CB-mode is a reduced version, where only one CB exists: 70654c4cbb6SAmr Mokhtar 70754c4cbb6SAmr Mokhtar.. _figure_turbo_tb_decode: 70854c4cbb6SAmr Mokhtar 709e90561ffSThomas Monjalon.. figure:: img/turbo_tb_decode.* 71054c4cbb6SAmr Mokhtar 71154c4cbb6SAmr Mokhtar Turbo decoding of Code Blocks in mbuf structure 71254c4cbb6SAmr Mokhtar 713*3f3f6081SNicolas ChautruBBDEV LDPC Encode Operation 714*3f3f6081SNicolas Chautru~~~~~~~~~~~~~~~~~~~~~~~~~~~~ 715*3f3f6081SNicolas Chautru 716*3f3f6081SNicolas ChautruThe operation flags that can be set for each LDPC encode operation are 717*3f3f6081SNicolas Chautrugiven below. 718*3f3f6081SNicolas Chautru 719*3f3f6081SNicolas Chautru **NOTE:** The actual operation flags that may be used with a specific 720*3f3f6081SNicolas Chautru BBDEV PMD are dependent on the driver capabilities as reported via 721*3f3f6081SNicolas Chautru ``rte_bbdev_info_get()``, and may be a subset of those below. 722*3f3f6081SNicolas Chautru 723*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 724*3f3f6081SNicolas Chautru|Description of LDPC encode capability flags | 725*3f3f6081SNicolas Chautru+====================================================================+ 726*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_INTERLEAVER_BYPASS | 727*3f3f6081SNicolas Chautru| Set to bypass bit-level interleaver on output stream | 728*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 729*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_RATE_MATCH | 730*3f3f6081SNicolas Chautru| Set to enabling the RATE_MATCHING processing | 731*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 732*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_CRC_24A_ATTACH | 733*3f3f6081SNicolas Chautru| Set to attach transport block CRC-24A | 734*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 735*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_CRC_24B_ATTACH | 736*3f3f6081SNicolas Chautru| Set to attach code block CRC-24B | 737*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 738*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_CRC_16_ATTACH | 739*3f3f6081SNicolas Chautru| Set to attach code block CRC-16 | 740*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 741*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_ENC_INTERRUPTS | 742*3f3f6081SNicolas Chautru| Set if a device supports encoder dequeue interrupts | 743*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 744*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_ENC_SCATTER_GATHER | 745*3f3f6081SNicolas Chautru| Set if a device supports scatter-gather functionality | 746*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 747*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_ENC_CONCATENATION | 748*3f3f6081SNicolas Chautru| Set if a device supports concatenation of non byte aligned output | 749*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 750*3f3f6081SNicolas Chautru 751*3f3f6081SNicolas ChautruThe structure passed for each LDPC encode operation is given below, 752*3f3f6081SNicolas Chautruwith the operation flags forming a bitmask in the ``op_flags`` field. 753*3f3f6081SNicolas Chautru 754*3f3f6081SNicolas Chautru.. code-block:: c 755*3f3f6081SNicolas Chautru 756*3f3f6081SNicolas Chautru struct rte_bbdev_op_ldpc_enc { 757*3f3f6081SNicolas Chautru 758*3f3f6081SNicolas Chautru struct rte_bbdev_op_data input; 759*3f3f6081SNicolas Chautru struct rte_bbdev_op_data output; 760*3f3f6081SNicolas Chautru 761*3f3f6081SNicolas Chautru uint32_t op_flags; 762*3f3f6081SNicolas Chautru uint8_t rv_index; 763*3f3f6081SNicolas Chautru uint8_t basegraph; 764*3f3f6081SNicolas Chautru uint16_t z_c; 765*3f3f6081SNicolas Chautru uint16_t n_cb; 766*3f3f6081SNicolas Chautru uint8_t q_m; 767*3f3f6081SNicolas Chautru uint16_t n_filler; 768*3f3f6081SNicolas Chautru uint8_t code_block_mode; 769*3f3f6081SNicolas Chautru union { 770*3f3f6081SNicolas Chautru struct rte_bbdev_op_enc_ldpc_cb_params cb_params; 771*3f3f6081SNicolas Chautru struct rte_bbdev_op_enc_ldpc_tb_params tb_params; 772*3f3f6081SNicolas Chautru }; 773*3f3f6081SNicolas Chautru }; 774*3f3f6081SNicolas Chautru 775*3f3f6081SNicolas ChautruThe LDPC encode parameters are set out in the table below. 776*3f3f6081SNicolas Chautru 777*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 778*3f3f6081SNicolas Chautru|Parameter |Description | 779*3f3f6081SNicolas Chautru+================+====================================================================+ 780*3f3f6081SNicolas Chautru|input |input CB or TB data | 781*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 782*3f3f6081SNicolas Chautru|output |rate matched CB or TB output buffer | 783*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 784*3f3f6081SNicolas Chautru|op_flags |bitmask of all active operation capabilities | 785*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 786*3f3f6081SNicolas Chautru|rv_index |redundancy version index [0..3] | 787*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 788*3f3f6081SNicolas Chautru|basegraph |Basegraph 1 or 2 | 789*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 790*3f3f6081SNicolas Chautru|z_c |Zc, LDPC lifting size | 791*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 792*3f3f6081SNicolas Chautru|n_cb |Ncb, length of the circular buffer in bits. | 793*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 794*3f3f6081SNicolas Chautru|q_m |Qm, modulation order {2,4,6,8,10} | 795*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 796*3f3f6081SNicolas Chautru|n_filler |number of filler bits | 797*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 798*3f3f6081SNicolas Chautru|code_block_mode |code block or transport block mode | 799*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 800*3f3f6081SNicolas Chautru|op_flags |bitmask of all active operation capabilities | 801*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 802*3f3f6081SNicolas Chautru|**cb_params** |code block specific parameters (code block mode only) | 803*3f3f6081SNicolas Chautru+----------------+------------+-------------------------------------------------------+ 804*3f3f6081SNicolas Chautru| |e |E, length of the rate matched output sequence in bits | 805*3f3f6081SNicolas Chautru+----------------+------------+-------------------------------------------------------+ 806*3f3f6081SNicolas Chautru|**tb_params** | transport block specific parameters (transport block mode only) | 807*3f3f6081SNicolas Chautru+----------------+------------+-------------------------------------------------------+ 808*3f3f6081SNicolas Chautru| |c |number of CBs in the TB or partial TB | 809*3f3f6081SNicolas Chautru+----------------+------------+-------------------------------------------------------+ 810*3f3f6081SNicolas Chautru| |r |index of the first CB in the inbound mbuf data | 811*3f3f6081SNicolas Chautru+----------------+------------+-------------------------------------------------------+ 812*3f3f6081SNicolas Chautru+ +c_ab +number of CBs that use Ea before switching to Eb | 813*3f3f6081SNicolas Chautru+----------------+------------+-------------------------------------------------------+ 814*3f3f6081SNicolas Chautru| |ea |Ea, length of the RM output sequence in bits, r < cab | 815*3f3f6081SNicolas Chautru+----------------+------------+-------------------------------------------------------+ 816*3f3f6081SNicolas Chautru| |eb |Eb, length of the RM output sequence in bits, r >= cab | 817*3f3f6081SNicolas Chautru+----------------+------------+-------------------------------------------------------+ 818*3f3f6081SNicolas Chautru 819*3f3f6081SNicolas ChautruThe mbuf input ``input`` is mandatory for all BBDEV PMDs and is the 820*3f3f6081SNicolas Chautruincoming code block or transport block data. 821*3f3f6081SNicolas Chautru 822*3f3f6081SNicolas ChautruThe mbuf output ``output`` is mandatory and is the encoded CB(s). In 823*3f3f6081SNicolas ChautruCB-mode ut contains the encoded CB of size ``e`` (E in 3GPP TS 38.212 824*3f3f6081SNicolas Chautrusection 6.2.5). In TB-mode it contains multiple contiguous encoded CBs 825*3f3f6081SNicolas Chautruof size ``ea`` or ``eb``. 826*3f3f6081SNicolas ChautruThe ``output`` buffer is allocated by the application with enough room 827*3f3f6081SNicolas Chautrufor the output data. 828*3f3f6081SNicolas Chautru 829*3f3f6081SNicolas ChautruThe encode interface works on both a code block (CB) and a transport 830*3f3f6081SNicolas Chautrublock (TB) basis. 831*3f3f6081SNicolas Chautru 832*3f3f6081SNicolas Chautru **NOTE:** All enqueued ops in one ``rte_bbdev_enqueue_enc_ops()`` 833*3f3f6081SNicolas Chautru call belong to one mode, either CB-mode or TB-mode. 834*3f3f6081SNicolas Chautru 835*3f3f6081SNicolas ChautruThe valid modes of operation are: 836*3f3f6081SNicolas Chautru 837*3f3f6081SNicolas Chautru* CB-mode: one CB (attach CRC24B if required) 838*3f3f6081SNicolas Chautru* CB-mode: one CB making up one TB (attach CRC24A if required) 839*3f3f6081SNicolas Chautru* TB-mode: one or more CB of a partial TB (attach CRC24B(s) if required) 840*3f3f6081SNicolas Chautru* TB-mode: one or more CB of a complete TB (attach CRC24AB(s) if required) 841*3f3f6081SNicolas Chautru 842*3f3f6081SNicolas ChautruIn CB-mode if ``RTE_BBDEV_LDPC_CRC_24A_ATTACH`` is set then CRC24A 843*3f3f6081SNicolas Chautruis appended to the CB. If ``RTE_BBDEV_LDPC_CRC_24A_ATTACH`` is not 844*3f3f6081SNicolas Chautruset the application is responsible for calculating and appending CRC24A 845*3f3f6081SNicolas Chautrubefore calling BBDEV. The input data mbuf ``length`` is inclusive of 846*3f3f6081SNicolas ChautruCRC24A/B where present and is equal to the code block size ``K``. 847*3f3f6081SNicolas Chautru 848*3f3f6081SNicolas ChautruIn TB-mode, CRC24A is assumed to be pre-calculated and appended to the 849*3f3f6081SNicolas Chautruinbound TB data buffer, unless the ``RTE_BBDEV_LDPC_CRC_24A_ATTACH`` 850*3f3f6081SNicolas Chautruflag is set when it is the responsibility of BBDEV. The input data 851*3f3f6081SNicolas Chautrumbuf ``length`` is total size of the CBs inclusive of any CRC24A and 852*3f3f6081SNicolas ChautruCRC24B in the case they were appended by the application. 853*3f3f6081SNicolas Chautru 854*3f3f6081SNicolas ChautruNot all BBDEV PMDs may be capable of CRC24A/B calculation. Flags 855*3f3f6081SNicolas Chautru``RTE_BBDEV_LDPC_CRC_24A_ATTACH`` and ``RTE_BBDEV_LDPC_CRC_24B_ATTACH`` 856*3f3f6081SNicolas Chautruinform the application of the relevant capability. These flags can be set 857*3f3f6081SNicolas Chautruin the ``op_flags`` parameter to indicate BBDEV to calculate and append 858*3f3f6081SNicolas ChautruCRC24A to CB before going forward with LDPC encoding. 859*3f3f6081SNicolas Chautru 860*3f3f6081SNicolas ChautruThe difference between the partial and full-size TB is that BBDEV needs 861*3f3f6081SNicolas Chautruthe index of the first CB in this group and the number of CBs in the group. 862*3f3f6081SNicolas ChautruThe first CB index is given by ``r`` but the number of the CBs is 863*3f3f6081SNicolas Chautrucalculated by BBDEV before signalling to the driver. 864*3f3f6081SNicolas Chautru 865*3f3f6081SNicolas ChautruThe number of CBs in the group should not be confused with ``c``, the 866*3f3f6081SNicolas Chautrutotal number of CBs in the full TB (``C`` as per 3GPP TS 38.212 section 5.2.2) 867*3f3f6081SNicolas Chautru 868*3f3f6081SNicolas ChautruFigure 13.1 above showing the Turbo encoding of CBs using BBDEV 869*3f3f6081SNicolas Chautruinterface in TB-mode is also valid for LDPC encode. 870*3f3f6081SNicolas Chautru 871*3f3f6081SNicolas ChautruBBDEV LDPC Decode Operation 872*3f3f6081SNicolas Chautru~~~~~~~~~~~~~~~~~~~~~~~~~~~~ 873*3f3f6081SNicolas Chautru 874*3f3f6081SNicolas ChautruThe operation flags that can be set for each LDPC decode operation are 875*3f3f6081SNicolas Chautrugiven below. 876*3f3f6081SNicolas Chautru 877*3f3f6081SNicolas Chautru **NOTE:** The actual operation flags that may be used with a specific 878*3f3f6081SNicolas Chautru BBDEV PMD are dependent on the driver capabilities as reported via 879*3f3f6081SNicolas Chautru ``rte_bbdev_info_get()``, and may be a subset of those below. 880*3f3f6081SNicolas Chautru 881*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 882*3f3f6081SNicolas Chautru|Description of LDPC decode capability flags | 883*3f3f6081SNicolas Chautru+====================================================================+ 884*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_CRC_TYPE_24A_CHECK | 885*3f3f6081SNicolas Chautru| Set for transport block CRC-24A checking | 886*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 887*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_CRC_TYPE_24B_CHECK | 888*3f3f6081SNicolas Chautru| Set for code block CRC-24B checking | 889*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 890*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_CRC_TYPE_24B_DROP | 891*3f3f6081SNicolas Chautru| Set to drop the last CRC bits decoding output | 892*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 893*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_DEINTERLEAVER_BYPASS | 894*3f3f6081SNicolas Chautru| Set for bit-level de-interleaver bypass on input stream | 895*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 896*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_HQ_COMBINE_IN_ENABLE | 897*3f3f6081SNicolas Chautru| Set for HARQ combined input stream enable | 898*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 899*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_HQ_COMBINE_OUT_ENABLE | 900*3f3f6081SNicolas Chautru| Set for HARQ combined output stream enable | 901*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 902*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_DECODE_BYPASS | 903*3f3f6081SNicolas Chautru| Set for LDPC decoder bypass | 904*3f3f6081SNicolas Chautru| | 905*3f3f6081SNicolas Chautru| RTE_BBDEV_LDPC_HQ_COMBINE_OUT_ENABLE must be set | 906*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 907*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_DECODE_SOFT_OUT | 908*3f3f6081SNicolas Chautru| Set for soft-output stream enable | 909*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 910*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_SOFT_OUT_RM_BYPASS | 911*3f3f6081SNicolas Chautru| Set for Rate-Matching bypass on soft-out stream | 912*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 913*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_SOFT_OUT_DEINTERLEAVER_BYPASS | 914*3f3f6081SNicolas Chautru| Set for bit-level de-interleaver bypass on soft-output stream | 915*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 916*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_ITERATION_STOP_ENABLE | 917*3f3f6081SNicolas Chautru| Set for iteration stopping on successful decode condition enable | 918*3f3f6081SNicolas Chautru| | 919*3f3f6081SNicolas Chautru| Where a successful decode is a successful syndrome check | 920*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 921*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_DEC_INTERRUPTS | 922*3f3f6081SNicolas Chautru| Set if a device supports decoder dequeue interrupts | 923*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 924*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_DEC_SCATTER_GATHER | 925*3f3f6081SNicolas Chautru| Set if a device supports scatter-gather functionality | 926*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 927*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_HARQ_6BIT_COMPRESSION | 928*3f3f6081SNicolas Chautru| Set if a device supports input/output HARQ compression | 929*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 930*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_LLR_COMPRESSION | 931*3f3f6081SNicolas Chautru| Set if a device supports input LLR compression | 932*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 933*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_INTERNAL_HARQ_MEMORY_IN_ENABLE | 934*3f3f6081SNicolas Chautru| Set if a device supports HARQ input to device's internal memory | 935*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 936*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_INTERNAL_HARQ_MEMORY_OUT_ENABLE | 937*3f3f6081SNicolas Chautru| Set if a device supports HARQ output to device's internal memory | 938*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 939*3f3f6081SNicolas Chautru|RTE_BBDEV_LDPC_INTERNAL_HARQ_MEMORY_LOOPBACK | 940*3f3f6081SNicolas Chautru| Set if a device supports loopback access to HARQ internal memory | 941*3f3f6081SNicolas Chautru+--------------------------------------------------------------------+ 942*3f3f6081SNicolas Chautru 943*3f3f6081SNicolas ChautruThe structure passed for each LDPC decode operation is given below, 944*3f3f6081SNicolas Chautruwith the operation flags forming a bitmask in the ``op_flags`` field. 945*3f3f6081SNicolas Chautru 946*3f3f6081SNicolas Chautru.. code-block:: c 947*3f3f6081SNicolas Chautru 948*3f3f6081SNicolas Chautru 949*3f3f6081SNicolas Chautru struct rte_bbdev_op_ldpc_dec { 950*3f3f6081SNicolas Chautru 951*3f3f6081SNicolas Chautru struct rte_bbdev_op_data input; 952*3f3f6081SNicolas Chautru struct rte_bbdev_op_data hard_output; 953*3f3f6081SNicolas Chautru struct rte_bbdev_op_data soft_output; 954*3f3f6081SNicolas Chautru struct rte_bbdev_op_data harq_combined_input; 955*3f3f6081SNicolas Chautru struct rte_bbdev_op_data harq_combined_output; 956*3f3f6081SNicolas Chautru 957*3f3f6081SNicolas Chautru uint32_t op_flags; 958*3f3f6081SNicolas Chautru uint8_t rv_index; 959*3f3f6081SNicolas Chautru uint8_t basegraph; 960*3f3f6081SNicolas Chautru uint16_t z_c; 961*3f3f6081SNicolas Chautru uint16_t n_cb; 962*3f3f6081SNicolas Chautru uint8_t q_m; 963*3f3f6081SNicolas Chautru uint16_t n_filler; 964*3f3f6081SNicolas Chautru uint8_t iter_max; 965*3f3f6081SNicolas Chautru uint8_t iter_count; 966*3f3f6081SNicolas Chautru uint8_t code_block_mode; 967*3f3f6081SNicolas Chautru union { 968*3f3f6081SNicolas Chautru struct rte_bbdev_op_dec_ldpc_cb_params cb_params; 969*3f3f6081SNicolas Chautru struct rte_bbdev_op_dec_ldpc_tb_params tb_params; 970*3f3f6081SNicolas Chautru }; 971*3f3f6081SNicolas Chautru }; 972*3f3f6081SNicolas Chautru 973*3f3f6081SNicolas Chautru 974*3f3f6081SNicolas ChautruThe LDPC decode parameters are set out in the table below. 975*3f3f6081SNicolas Chautru 976*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 977*3f3f6081SNicolas Chautru|Parameter |Description | 978*3f3f6081SNicolas Chautru+================+====================================================================+ 979*3f3f6081SNicolas Chautru|input |input CB or TB data | 980*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 981*3f3f6081SNicolas Chautru|hard_output |hard decisions buffer, decoded output | 982*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 983*3f3f6081SNicolas Chautru|soft_output |soft LLR output buffer (optional) | 984*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 985*3f3f6081SNicolas Chautru|harq_comb_input |HARQ combined input buffer (optional) | 986*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 987*3f3f6081SNicolas Chautru|harq_comb_output|HARQ combined output buffer (optional) | 988*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 989*3f3f6081SNicolas Chautru|op_flags |bitmask of all active operation capabilities | 990*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 991*3f3f6081SNicolas Chautru|rv_index |redundancy version index [0..3] | 992*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 993*3f3f6081SNicolas Chautru|basegraph |Basegraph 1 or 2 | 994*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 995*3f3f6081SNicolas Chautru|z_c |Zc, LDPC lifting size | 996*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 997*3f3f6081SNicolas Chautru|n_cb |Ncb, length of the circular buffer in bits. | 998*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 999*3f3f6081SNicolas Chautru|q_m |Qm, modulation order {1,2,4,6,8} from pi/2-BPSK to 256QAM | 1000*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 1001*3f3f6081SNicolas Chautru|n_filler |number of filler bits | 1002*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 1003*3f3f6081SNicolas Chautru|iter_max |maximum number of iterations to perform in decode all CBs | 1004*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 1005*3f3f6081SNicolas Chautru|iter_count |number of iterations performed in decoding all CBs | 1006*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 1007*3f3f6081SNicolas Chautru|code_block_mode |code block or transport block mode | 1008*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 1009*3f3f6081SNicolas Chautru|op_flags |bitmask of all active operation capabilities | 1010*3f3f6081SNicolas Chautru+----------------+--------------------------------------------------------------------+ 1011*3f3f6081SNicolas Chautru|**cb_params** |code block specific parameters (code block mode only) | 1012*3f3f6081SNicolas Chautru+----------------+------------+-------------------------------------------------------+ 1013*3f3f6081SNicolas Chautru| |e |E, length of the rate matched output sequence in bits | 1014*3f3f6081SNicolas Chautru+----------------+------------+-------------------------------------------------------+ 1015*3f3f6081SNicolas Chautru|**tb_params** | transport block specific parameters (transport block mode only) | 1016*3f3f6081SNicolas Chautru+----------------+------------+-------------------------------------------------------+ 1017*3f3f6081SNicolas Chautru| |c |number of CBs in the TB or partial TB | 1018*3f3f6081SNicolas Chautru+----------------+------------+-------------------------------------------------------+ 1019*3f3f6081SNicolas Chautru| |r |index of the first CB in the inbound mbuf data | 1020*3f3f6081SNicolas Chautru+----------------+------------+-------------------------------------------------------+ 1021*3f3f6081SNicolas Chautru| |c_ab |number of CBs that use Ea before switching to Eb | 1022*3f3f6081SNicolas Chautru+----------------+------------+-------------------------------------------------------+ 1023*3f3f6081SNicolas Chautru| |ea |Ea, length of the RM output sequence in bits, r < cab | 1024*3f3f6081SNicolas Chautru+----------------+------------+-------------------------------------------------------+ 1025*3f3f6081SNicolas Chautru| |eb |Eb, length of the RM output sequence in bits r >= cab | 1026*3f3f6081SNicolas Chautru+----------------+------------+-------------------------------------------------------+ 1027*3f3f6081SNicolas Chautru 1028*3f3f6081SNicolas ChautruThe mbuf input ``input`` encoded CB data is mandatory for all BBDEV PMDs 1029*3f3f6081SNicolas Chautruand is the Virtual Circular Buffer data stream with null padding. 1030*3f3f6081SNicolas ChautruEach byte in the input circular buffer is the LLR value of each bit of 1031*3f3f6081SNicolas Chautruthe original CB. 1032*3f3f6081SNicolas Chautru 1033*3f3f6081SNicolas ChautruThe mbuf output ``hard_output`` is mandatory and is the decoded CBs size 1034*3f3f6081SNicolas ChautruK (CRC24A/B is the last 24-bit in each decoded CB). 1035*3f3f6081SNicolas Chautru 1036*3f3f6081SNicolas ChautruThe mbuf output ``soft_output`` is optional and is an LLR rate matched 1037*3f3f6081SNicolas Chautruoutput of size ``e`` (this is ``E`` as per 3GPP TS 38.212 section 6.2.5). 1038*3f3f6081SNicolas Chautru 1039*3f3f6081SNicolas ChautruThe mbuf input ``harq_combine_input`` is optional and is a buffer with 1040*3f3f6081SNicolas Chautruthe input to the HARQ combination function of the device. If the 1041*3f3f6081SNicolas Chautrucapability RTE_BBDEV_LDPC_INTERNAL_HARQ_MEMORY_IN_ENABLE is set 1042*3f3f6081SNicolas Chautruthen the HARQ is stored in memory internal to the device and not visible 1043*3f3f6081SNicolas Chautruto BBDEV. 1044*3f3f6081SNicolas Chautru 1045*3f3f6081SNicolas ChautruThe mbuf output ``harq_combine_output`` is optional and is a buffer for 1046*3f3f6081SNicolas Chautruthe output of the HARQ combination function of the device. If the 1047*3f3f6081SNicolas Chautrucapability RTE_BBDEV_LDPC_INTERNAL_HARQ_MEMORY_OUT_ENABLE is set 1048*3f3f6081SNicolas Chautruthen the HARQ is stored in memory internal to the device and not visible 1049*3f3f6081SNicolas Chautruto BBDEV. 1050*3f3f6081SNicolas Chautru 1051*3f3f6081SNicolas ChautruThe output mbuf data structures are expected to be allocated by the 1052*3f3f6081SNicolas Chautruapplication with enough room for the output data. 1053*3f3f6081SNicolas Chautru 1054*3f3f6081SNicolas ChautruAs with the LDPC encode, the decode interface works on both a code block 1055*3f3f6081SNicolas Chautru(CB) and a transport block (TB) basis. 1056*3f3f6081SNicolas Chautru 1057*3f3f6081SNicolas Chautru **NOTE:** All enqueued ops in one ``rte_bbdev_enqueue_dec_ops()`` 1058*3f3f6081SNicolas Chautru call belong to one mode, either CB-mode or TB-mode. 1059*3f3f6081SNicolas Chautru 1060*3f3f6081SNicolas ChautruThe valid modes of operation are: 1061*3f3f6081SNicolas Chautru 1062*3f3f6081SNicolas Chautru* CB-mode: one CB (check CRC24B if required) 1063*3f3f6081SNicolas Chautru* CB-mode: one CB making up one TB (check CRC24A if required) 1064*3f3f6081SNicolas Chautru* TB-mode: one or more CB making up a partial TB (check CRC24B(s) if required) 1065*3f3f6081SNicolas Chautru* TB-mode: one or more CB making up a complete TB (check CRC24B(s) if required) 1066*3f3f6081SNicolas Chautru 1067*3f3f6081SNicolas ChautruThe mbuf ``length`` is inclusive of CRC24A/B where present and is equal 1068*3f3f6081SNicolas Chautruthe code block size ``K``. 1069*3f3f6081SNicolas Chautru 1070*3f3f6081SNicolas ChautruThe first CB Virtual Circular Buffer (VCB) index is given by ``r`` but the 1071*3f3f6081SNicolas Chautruthe number of the remaining CB VCBs is calculated automatically by BBDEV 1072*3f3f6081SNicolas Chautruand passed down to the driver. 1073*3f3f6081SNicolas Chautru 1074*3f3f6081SNicolas ChautruThe number of remaining CB VCBs should not be confused with ``c``, the 1075*3f3f6081SNicolas Chautrutotal number of CBs in the full TB (``C`` as per 3GPP TS 38.212 section 5.2.2) 1076*3f3f6081SNicolas Chautru 1077*3f3f6081SNicolas ChautruThe ``length`` is total size of the CBs inclusive of any CRC24A and CRC24B in 1078*3f3f6081SNicolas Chautrucase they were appended by the application. 1079*3f3f6081SNicolas Chautru 1080*3f3f6081SNicolas ChautruFigure 13.2 above showing the Turbo decoding of CBs using BBDEV 1081*3f3f6081SNicolas Chautruinterface in TB-mode is also valid for LDPC decode. 1082*3f3f6081SNicolas Chautru 10834935e1e9SAmr Mokhtar 10844935e1e9SAmr MokhtarSample code 10854935e1e9SAmr Mokhtar----------- 10864935e1e9SAmr Mokhtar 10874935e1e9SAmr MokhtarThe baseband device sample application gives an introduction on how to use the 10884935e1e9SAmr Mokhtarbbdev framework, by giving a sample code performing a loop-back operation with a 10894935e1e9SAmr Mokhtarbaseband processor capable of transceiving data packets. 10904935e1e9SAmr Mokhtar 10914935e1e9SAmr MokhtarThe following sample C-like pseudo-code shows the basic steps to encode several 1092d629b7b5SJohn McNamarabuffers using (**sw_turbo**) bbdev PMD. 10934935e1e9SAmr Mokhtar 10944935e1e9SAmr Mokhtar.. code-block:: c 10954935e1e9SAmr Mokhtar 10964935e1e9SAmr Mokhtar /* EAL Init */ 10974935e1e9SAmr Mokhtar ret = rte_eal_init(argc, argv); 10984935e1e9SAmr Mokhtar if (ret < 0) 10994935e1e9SAmr Mokhtar rte_exit(EXIT_FAILURE, "Invalid EAL arguments\n"); 11004935e1e9SAmr Mokhtar 11014935e1e9SAmr Mokhtar /* Get number of available bbdev devices */ 11024935e1e9SAmr Mokhtar nb_bbdevs = rte_bbdev_count(); 11034935e1e9SAmr Mokhtar if (nb_bbdevs == 0) 11044935e1e9SAmr Mokhtar rte_exit(EXIT_FAILURE, "No bbdevs detected!\n"); 11054935e1e9SAmr Mokhtar 11064935e1e9SAmr Mokhtar /* Create bbdev op pools */ 11074935e1e9SAmr Mokhtar bbdev_op_pool[RTE_BBDEV_OP_TURBO_ENC] = 11084935e1e9SAmr Mokhtar rte_bbdev_op_pool_create("bbdev_op_pool_enc", 11094935e1e9SAmr Mokhtar RTE_BBDEV_OP_TURBO_ENC, NB_MBUF, 128, rte_socket_id()); 11104935e1e9SAmr Mokhtar 11114935e1e9SAmr Mokhtar /* Get information for this device */ 11124935e1e9SAmr Mokhtar rte_bbdev_info_get(dev_id, &info); 11134935e1e9SAmr Mokhtar 11144935e1e9SAmr Mokhtar /* Setup BBDEV device queues */ 11154935e1e9SAmr Mokhtar ret = rte_bbdev_setup_queues(dev_id, qs_nb, info.socket_id); 11164935e1e9SAmr Mokhtar if (ret < 0) 11174935e1e9SAmr Mokhtar rte_exit(EXIT_FAILURE, 11184935e1e9SAmr Mokhtar "ERROR(%d): BBDEV %u not configured properly\n", 11194935e1e9SAmr Mokhtar ret, dev_id); 11204935e1e9SAmr Mokhtar 11214935e1e9SAmr Mokhtar /* setup device queues */ 11224935e1e9SAmr Mokhtar qconf.socket = info.socket_id; 11234935e1e9SAmr Mokhtar qconf.queue_size = info.drv.queue_size_lim; 11244935e1e9SAmr Mokhtar qconf.op_type = RTE_BBDEV_OP_TURBO_ENC; 11254935e1e9SAmr Mokhtar 11264935e1e9SAmr Mokhtar for (q_id = 0; q_id < qs_nb; q_id++) { 11274935e1e9SAmr Mokhtar /* Configure all queues belonging to this bbdev device */ 11284935e1e9SAmr Mokhtar ret = rte_bbdev_queue_configure(dev_id, q_id, &qconf); 11294935e1e9SAmr Mokhtar if (ret < 0) 11304935e1e9SAmr Mokhtar rte_exit(EXIT_FAILURE, 11314935e1e9SAmr Mokhtar "ERROR(%d): BBDEV %u queue %u not configured properly\n", 11324935e1e9SAmr Mokhtar ret, dev_id, q_id); 11334935e1e9SAmr Mokhtar } 11344935e1e9SAmr Mokhtar 11354935e1e9SAmr Mokhtar /* Start bbdev device */ 11364935e1e9SAmr Mokhtar ret = rte_bbdev_start(dev_id); 11374935e1e9SAmr Mokhtar 11384935e1e9SAmr Mokhtar /* Create the mbuf mempool for pkts */ 11394935e1e9SAmr Mokhtar mbuf_pool = rte_pktmbuf_pool_create("bbdev_mbuf_pool", 11404935e1e9SAmr Mokhtar NB_MBUF, MEMPOOL_CACHE_SIZE, 0, 11414935e1e9SAmr Mokhtar RTE_MBUF_DEFAULT_BUF_SIZE, rte_socket_id()); 11424935e1e9SAmr Mokhtar if (mbuf_pool == NULL) 11434935e1e9SAmr Mokhtar rte_exit(EXIT_FAILURE, 11444935e1e9SAmr Mokhtar "Unable to create '%s' pool\n", pool_name); 11454935e1e9SAmr Mokhtar 11464935e1e9SAmr Mokhtar while (!global_exit_flag) { 11474935e1e9SAmr Mokhtar 11484935e1e9SAmr Mokhtar /* Allocate burst of op structures in preparation for enqueue */ 11494935e1e9SAmr Mokhtar if (rte_bbdev_enc_op_alloc_bulk(bbdev_op_pool[RTE_BBDEV_OP_TURBO_ENC], 11504935e1e9SAmr Mokhtar ops_burst, op_num) != 0) 11514935e1e9SAmr Mokhtar continue; 11524935e1e9SAmr Mokhtar 11534935e1e9SAmr Mokhtar /* Allocate input mbuf pkts */ 11544935e1e9SAmr Mokhtar ret = rte_pktmbuf_alloc_bulk(mbuf_pool, input_pkts_burst, MAX_PKT_BURST); 11554935e1e9SAmr Mokhtar if (ret < 0) 11564935e1e9SAmr Mokhtar continue; 11574935e1e9SAmr Mokhtar 11584935e1e9SAmr Mokhtar /* Allocate output mbuf pkts */ 11594935e1e9SAmr Mokhtar ret = rte_pktmbuf_alloc_bulk(mbuf_pool, output_pkts_burst, MAX_PKT_BURST); 11604935e1e9SAmr Mokhtar if (ret < 0) 11614935e1e9SAmr Mokhtar continue; 11624935e1e9SAmr Mokhtar 11634935e1e9SAmr Mokhtar for (j = 0; j < op_num; j++) { 11644935e1e9SAmr Mokhtar /* Append the size of the ethernet header */ 11654935e1e9SAmr Mokhtar rte_pktmbuf_append(input_pkts_burst[j], 11666d13ea8eSOlivier Matz sizeof(struct rte_ether_hdr)); 11674935e1e9SAmr Mokhtar 11684935e1e9SAmr Mokhtar /* set op */ 11694935e1e9SAmr Mokhtar 11704935e1e9SAmr Mokhtar ops_burst[j]->turbo_enc.input.offset = 11716d13ea8eSOlivier Matz sizeof(struct rte_ether_hdr); 11724935e1e9SAmr Mokhtar 11734935e1e9SAmr Mokhtar ops_burst[j]->turbo_enc->input.length = 11744935e1e9SAmr Mokhtar rte_pktmbuf_pkt_len(bbdev_pkts[j]); 11754935e1e9SAmr Mokhtar 11764935e1e9SAmr Mokhtar ops_burst[j]->turbo_enc->input.data = 11774935e1e9SAmr Mokhtar input_pkts_burst[j]; 11784935e1e9SAmr Mokhtar 11794935e1e9SAmr Mokhtar ops_burst[j]->turbo_enc->output.offset = 11806d13ea8eSOlivier Matz sizeof(struct rte_ether_hdr); 11814935e1e9SAmr Mokhtar 11824935e1e9SAmr Mokhtar ops_burst[j]->turbo_enc->output.data = 11834935e1e9SAmr Mokhtar output_pkts_burst[j]; 11844935e1e9SAmr Mokhtar } 11854935e1e9SAmr Mokhtar 11864935e1e9SAmr Mokhtar /* Enqueue packets on BBDEV device */ 11874935e1e9SAmr Mokhtar op_num = rte_bbdev_enqueue_enc_ops(qconf->bbdev_id, 11884935e1e9SAmr Mokhtar qconf->bbdev_qs[q], ops_burst, 11894935e1e9SAmr Mokhtar MAX_PKT_BURST); 11904935e1e9SAmr Mokhtar 11914935e1e9SAmr Mokhtar /* Dequeue packets from BBDEV device*/ 11924935e1e9SAmr Mokhtar op_num = rte_bbdev_dequeue_enc_ops(qconf->bbdev_id, 11934935e1e9SAmr Mokhtar qconf->bbdev_qs[q], ops_burst, 11944935e1e9SAmr Mokhtar MAX_PKT_BURST); 11954935e1e9SAmr Mokhtar } 11964935e1e9SAmr Mokhtar 11974935e1e9SAmr Mokhtar 11984935e1e9SAmr MokhtarBBDEV Device API 11994935e1e9SAmr Mokhtar~~~~~~~~~~~~~~~~ 12004935e1e9SAmr Mokhtar 12014935e1e9SAmr MokhtarThe bbdev Library API is described in the *DPDK API Reference* document. 1202