4dc294158c
Add optional support for inline processing of packets inside the RX or TX call. For an RX callback, what happens is that we get a set of packets from the NIC and then pass them to a callback function, if configured, to allow additional processing to be done on them, e.g. filling in more mbuf fields, before passing back to the application. On TX, the packets are similarly post-processed before being handed to the NIC for transmission. Signed-off-by: Bruce Richardson <bruce.richardson@intel.com> Signed-off-by: John McNamara <john.mcnamara@intel.com> Acked-by: Thomas Monjalon <thomas.monjalon@6wind.com>
395 lines
8.9 KiB
Plaintext
395 lines
8.9 KiB
Plaintext
# BSD LICENSE
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#
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# Copyright(c) 2010-2014 Intel Corporation. All rights reserved.
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# All rights reserved.
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#
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# Redistribution and use in source and binary forms, with or without
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# modification, are permitted provided that the following conditions
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# are met:
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#
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# * Redistributions of source code must retain the above copyright
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# notice, this list of conditions and the following disclaimer.
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# * Redistributions in binary form must reproduce the above copyright
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# notice, this list of conditions and the following disclaimer in
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# the documentation and/or other materials provided with the
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# distribution.
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# * Neither the name of Intel Corporation nor the names of its
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# contributors may be used to endorse or promote products derived
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# from this software without specific prior written permission.
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#
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# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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# "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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# LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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# A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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# OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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# SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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# LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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# DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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# THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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# (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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# OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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#
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#
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# define executive environment
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#
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# CONFIG_RTE_EXEC_ENV can be linuxapp, bsdapp
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#
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CONFIG_RTE_EXEC_ENV="bsdapp"
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CONFIG_RTE_EXEC_ENV_BSDAPP=y
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##
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## machine can define specific variables or action for a specific board
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## RTE_MACHINE can be:
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## default nothing specific
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## native current machine
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## atm Intel® Atom™ microarchitecture
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## nhm Intel® microarchitecture code name Nehalem
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## wsm Intel® microarchitecture code name Westmere
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## snb Intel® microarchitecture code name Sandy Bridge
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## ivb Intel® microarchitecture code name Ivy Bridge
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##
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## Note: if your compiler does not support the relevant -march options,
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## it will be compiled with whatever latest processor the compiler supports!
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##
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#CONFIG_RTE_MACHINE="native"
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#
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##
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## define the architecture we compile for.
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## CONFIG_RTE_ARCH can be i686, x86_64, x86_64_32
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##
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#CONFIG_RTE_ARCH="x86_64"
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#CONFIG_RTE_ARCH_X86_64=y
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#
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##
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## The compiler we use.
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## Can be gcc, icc or clang.
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##
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#CONFIG_RTE_TOOLCHAIN="gcc"
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#CONFIG_RTE_TOOLCHAIN_GCC=y
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#
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# Use intrinsics or assembly code for key routines
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#
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CONFIG_RTE_FORCE_INTRINSICS=n
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#
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# Compile to share library
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#
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CONFIG_RTE_BUILD_SHARED_LIB=n
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#
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# Combine to one single library
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#
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CONFIG_RTE_BUILD_COMBINE_LIBS=n
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CONFIG_RTE_LIBNAME=intel_dpdk
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#
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# Compile Environment Abstraction Layer
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#
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CONFIG_RTE_LIBRTE_EAL=y
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CONFIG_RTE_MAX_LCORE=128
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CONFIG_RTE_MAX_NUMA_NODES=8
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CONFIG_RTE_MAX_MEMSEG=256
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CONFIG_RTE_MAX_MEMZONE=2560
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CONFIG_RTE_MAX_TAILQ=32
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CONFIG_RTE_LOG_LEVEL=8
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CONFIG_RTE_LOG_HISTORY=256
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CONFIG_RTE_EAL_ALLOW_INV_SOCKET_ID=n
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CONFIG_RTE_EAL_ALWAYS_PANIC_ON_ERROR=n
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#
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# FreeBSD contiguous memory driver settings
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#
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CONFIG_RTE_CONTIGMEM_MAX_NUM_BUFS=64
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CONFIG_RTE_CONTIGMEM_DEFAULT_NUM_BUFS=2
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CONFIG_RTE_CONTIGMEM_DEFAULT_BUF_SIZE=1024*1024*1024
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#
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# Compile Environment Abstraction Layer for BSD
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#
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CONFIG_RTE_LIBRTE_EAL_BSDAPP=y
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#
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# Compile Environment Abstraction Layer for linux
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#
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CONFIG_RTE_LIBRTE_EAL_LINUXAPP=n
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#
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# Compile Environment Abstraction Layer to support Vmware TSC map
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#
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CONFIG_RTE_LIBRTE_EAL_VMWARE_TSC_MAP_SUPPORT=y
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#
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# Compile the argument parser library
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#
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CONFIG_RTE_LIBRTE_KVARGS=y
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#
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# Compile generic ethernet library
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#
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CONFIG_RTE_LIBRTE_ETHER=y
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CONFIG_RTE_LIBRTE_ETHDEV_DEBUG=n
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CONFIG_RTE_MAX_ETHPORTS=32
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CONFIG_RTE_LIBRTE_IEEE1588=n
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CONFIG_RTE_ETHDEV_QUEUE_STAT_CNTRS=16
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CONFIG_RTE_ETHDEV_RXTX_CALLBACKS=y
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#
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# Support NIC bypass logic
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#
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CONFIG_RTE_NIC_BYPASS=n
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#
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# Compile burst-oriented IGB & EM PMD drivers
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#
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CONFIG_RTE_LIBRTE_EM_PMD=y
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CONFIG_RTE_LIBRTE_IGB_PMD=y
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CONFIG_RTE_LIBRTE_E1000_DEBUG_INIT=n
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CONFIG_RTE_LIBRTE_E1000_DEBUG_RX=n
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CONFIG_RTE_LIBRTE_E1000_DEBUG_TX=n
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CONFIG_RTE_LIBRTE_E1000_DEBUG_TX_FREE=n
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CONFIG_RTE_LIBRTE_E1000_DEBUG_DRIVER=n
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CONFIG_RTE_LIBRTE_E1000_PF_DISABLE_STRIP_CRC=n
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#
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# Compile burst-oriented IXGBE PMD driver
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#
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CONFIG_RTE_LIBRTE_IXGBE_PMD=y
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CONFIG_RTE_LIBRTE_IXGBE_DEBUG_INIT=n
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CONFIG_RTE_LIBRTE_IXGBE_DEBUG_RX=n
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CONFIG_RTE_LIBRTE_IXGBE_DEBUG_TX=n
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CONFIG_RTE_LIBRTE_IXGBE_DEBUG_TX_FREE=n
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CONFIG_RTE_LIBRTE_IXGBE_DEBUG_DRIVER=n
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CONFIG_RTE_LIBRTE_IXGBE_PF_DISABLE_STRIP_CRC=n
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CONFIG_RTE_LIBRTE_IXGBE_RX_ALLOW_BULK_ALLOC=y
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CONFIG_RTE_IXGBE_INC_VECTOR=n
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CONFIG_RTE_IXGBE_RX_OLFLAGS_DISABLE=n
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#
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# Compile burst-oriented I40E PMD driver
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#
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CONFIG_RTE_LIBRTE_I40E_PMD=y
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CONFIG_RTE_LIBRTE_I40E_DEBUG_INIT=n
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CONFIG_RTE_LIBRTE_I40E_DEBUG_RX=n
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CONFIG_RTE_LIBRTE_I40E_DEBUG_TX=n
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CONFIG_RTE_LIBRTE_I40E_DEBUG_TX_FREE=n
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CONFIG_RTE_LIBRTE_I40E_DEBUG_DRIVER=n
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CONFIG_RTE_LIBRTE_I40E_RX_ALLOW_BULK_ALLOC=n
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CONFIG_RTE_LIBRTE_I40E_16BYTE_RX_DESC=n
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CONFIG_RTE_LIBRTE_I40E_QUEUE_NUM_PER_VF=4
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CONFIG_RTE_LIBRTE_I40E_QUEUE_NUM_PER_VM=4
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# interval up to 8160 us, aligned to 2 (or default value)
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CONFIG_RTE_LIBRTE_I40E_ITR_INTERVAL=-1
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#
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# Compile burst-oriented FM10K PMD
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#
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CONFIG_RTE_LIBRTE_FM10K_PMD=y
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CONFIG_RTE_LIBRTE_FM10K_DEBUG_INIT=n
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CONFIG_RTE_LIBRTE_FM10K_DEBUG_RX=n
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CONFIG_RTE_LIBRTE_FM10K_DEBUG_TX=n
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CONFIG_RTE_LIBRTE_FM10K_DEBUG_TX_FREE=n
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CONFIG_RTE_LIBRTE_FM10K_DEBUG_DRIVER=n
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CONFIG_RTE_LIBRTE_FM10K_RX_OLFLAGS_ENABLE=y
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#
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# Compile burst-oriented Cisco ENIC PMD driver
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#
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CONFIG_RTE_LIBRTE_ENIC_PMD=y
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#
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# Compile burst-oriented VIRTIO PMD driver
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#
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CONFIG_RTE_LIBRTE_VIRTIO_PMD=y
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CONFIG_RTE_LIBRTE_VIRTIO_DEBUG_INIT=n
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CONFIG_RTE_LIBRTE_VIRTIO_DEBUG_RX=n
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CONFIG_RTE_LIBRTE_VIRTIO_DEBUG_TX=n
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CONFIG_RTE_LIBRTE_VIRTIO_DEBUG_DRIVER=n
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CONFIG_RTE_LIBRTE_VIRTIO_DEBUG_DUMP=n
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#
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# Compile burst-oriented VMXNET3 PMD driver
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#
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CONFIG_RTE_LIBRTE_VMXNET3_PMD=y
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CONFIG_RTE_LIBRTE_VMXNET3_DEBUG_INIT=n
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CONFIG_RTE_LIBRTE_VMXNET3_DEBUG_RX=n
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CONFIG_RTE_LIBRTE_VMXNET3_DEBUG_TX=n
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CONFIG_RTE_LIBRTE_VMXNET3_DEBUG_TX_FREE=n
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CONFIG_RTE_LIBRTE_VMXNET3_DEBUG_DRIVER=n
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#
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# Compile example software rings based PMD
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#
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CONFIG_RTE_LIBRTE_PMD_RING=y
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CONFIG_RTE_PMD_RING_MAX_RX_RINGS=16
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CONFIG_RTE_PMD_RING_MAX_TX_RINGS=16
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#
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# Compile software PMD backed by PCAP files
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#
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CONFIG_RTE_LIBRTE_PMD_PCAP=y
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#
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# Compile link bonding PMD library
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#
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CONFIG_RTE_LIBRTE_PMD_BOND=y
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CONFIG_RTE_LIBRTE_BOND_DEBUG_ALB=n
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CONFIG_RTE_LIBRTE_BOND_DEBUG_ALB_L1=n
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#
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# Do prefetch of packet data within PMD driver receive function
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#
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CONFIG_RTE_PMD_PACKET_PREFETCH=y
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#
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# Compile librte_ring
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#
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CONFIG_RTE_LIBRTE_RING=y
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CONFIG_RTE_LIBRTE_RING_DEBUG=n
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CONFIG_RTE_RING_SPLIT_PROD_CONS=n
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#
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# Compile librte_mempool
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#
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CONFIG_RTE_LIBRTE_MEMPOOL=y
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CONFIG_RTE_MEMPOOL_CACHE_MAX_SIZE=512
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CONFIG_RTE_LIBRTE_MEMPOOL_DEBUG=n
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#
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# Compile librte_mbuf
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#
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CONFIG_RTE_LIBRTE_MBUF=y
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CONFIG_RTE_LIBRTE_MBUF_DEBUG=n
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CONFIG_RTE_MBUF_REFCNT_ATOMIC=y
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CONFIG_RTE_PKTMBUF_HEADROOM=128
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#
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# Compile librte_timer
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#
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CONFIG_RTE_LIBRTE_TIMER=y
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CONFIG_RTE_LIBRTE_TIMER_DEBUG=n
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#
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# Compile librte_malloc
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#
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CONFIG_RTE_LIBRTE_MALLOC=y
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CONFIG_RTE_LIBRTE_MALLOC_DEBUG=n
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CONFIG_RTE_MALLOC_MEMZONE_SIZE=11M
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#
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# Compile librte_cfgfile
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#
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CONFIG_RTE_LIBRTE_CFGFILE=y
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#
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# Compile librte_cmdline
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#
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CONFIG_RTE_LIBRTE_CMDLINE=y
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CONFIG_RTE_LIBRTE_CMDLINE_DEBUG=n
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#
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# Compile librte_hash
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#
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CONFIG_RTE_LIBRTE_HASH=y
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CONFIG_RTE_LIBRTE_HASH_DEBUG=n
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#
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# Compile librte_lpm
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#
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CONFIG_RTE_LIBRTE_LPM=y
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CONFIG_RTE_LIBRTE_LPM_DEBUG=n
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#
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# Compile librte_acl
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#
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CONFIG_RTE_LIBRTE_ACL=y
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CONFIG_RTE_LIBRTE_ACL_DEBUG=n
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#
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# Compile librte_power
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#
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CONFIG_RTE_LIBRTE_POWER=n
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CONFIG_RTE_LIBRTE_POWER_DEBUG=n
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CONFIG_RTE_MAX_LCORE_FREQS=64
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#
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# Compile librte_net
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#
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CONFIG_RTE_LIBRTE_NET=y
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#
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# Compile librte_ip_frag
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#
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CONFIG_RTE_LIBRTE_IP_FRAG=y
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CONFIG_RTE_LIBRTE_IP_FRAG_DEBUG=n
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CONFIG_RTE_LIBRTE_IP_FRAG_MAX_FRAG=4
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CONFIG_RTE_LIBRTE_IP_FRAG_TBL_STAT=n
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#
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# Compile librte_meter
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#
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CONFIG_RTE_LIBRTE_METER=y
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#
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# Compile librte_sched
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#
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CONFIG_RTE_LIBRTE_SCHED=y
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CONFIG_RTE_SCHED_RED=n
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CONFIG_RTE_SCHED_COLLECT_STATS=n
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CONFIG_RTE_SCHED_SUBPORT_TC_OV=n
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CONFIG_RTE_SCHED_PORT_N_GRINDERS=8
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#
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# Compile the distributor library
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#
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CONFIG_RTE_LIBRTE_DISTRIBUTOR=y
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#
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# Compile the reorder library
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#
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CONFIG_RTE_LIBRTE_REORDER=y
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#
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# Compile librte_port
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#
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CONFIG_RTE_LIBRTE_PORT=y
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#
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# Compile librte_table
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#
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CONFIG_RTE_LIBRTE_TABLE=y
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#
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# Compile librte_pipeline
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#
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CONFIG_RTE_LIBRTE_PIPELINE=y
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#
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# Compile librte_kni
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#
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CONFIG_RTE_LIBRTE_KNI=n
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CONFIG_RTE_KNI_KO_DEBUG=n
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CONFIG_RTE_KNI_VHOST=n
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CONFIG_RTE_KNI_VHOST_MAX_CACHE_SIZE=1024
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CONFIG_RTE_KNI_VHOST_VNET_HDR_EN=n
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CONFIG_RTE_KNI_VHOST_DEBUG_RX=n
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CONFIG_RTE_KNI_VHOST_DEBUG_TX=n
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#
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# Enable warning directives
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#
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CONFIG_RTE_INSECURE_FUNCTION_WARNING=n
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#
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# Compile the test application
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#
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CONFIG_RTE_APP_TEST=y
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#
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# Compile the PMD test application
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#
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CONFIG_RTE_TEST_PMD=y
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CONFIG_RTE_TEST_PMD_RECORD_CORE_CYCLES=n
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CONFIG_RTE_TEST_PMD_RECORD_BURST_STATS=n
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