/usr/src/linux-headers-5.15.0-181/include/net
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6lowpan.h102700644editdlrm
act_api.h86470644editdlrm
addrconf.h145940644editdlrm
af_ieee802154.h12200644editdlrm
af_rxrpc.h27980644editdlrm
af_unix.h33750644editdlrm
af_vsock.h75920644editdlrm
ah.h3820644editdlrm
arp.h21410644editdlrm
atmclip.h15150644editdlrm
ax25.h154430644editdlrm
ax88796.h14400644editdlrm
bareudp.h5720644editdlrm
bonding.h202630644editdlrm
bond_3ad.h97060644editdlrm
bond_alb.h62510644editdlrm
bond_options.h38760644editdlrm
bpf_sk_storage.h17800644editdlrm
busy_poll.h39590644editdlrm
calipso.h15900644editdlrm
cfg80211-wext.h18540644editdlrm
cfg80211.h3013170644editdlrm
cfg802154.h107790644editdlrm
checksum.h48690644editdlrm
cipso_ipv4.h75480644editdlrm
cls_cgroup.h20860644editdlrm
codel.h57820644editdlrm
codel_impl.h81670644editdlrm
codel_qdisc.h29730644editdlrm
compat.h25860644editdlrm
datalink.h6190644editdlrm
dcbevent.h7420644editdlrm
dcbnl.h43170644editdlrm
devlink.h635930644editdlrm
dsa.h362310644editdlrm
dsfield.h11470644editdlrm
dst.h151530644editdlrm
dst_cache.h30310644editdlrm
dst_metadata.h55210644editdlrm
dst_ops.h21250644editdlrm
erspan.h91800644editdlrm
esp.h11900644editdlrm
espintcp.h9660644editdlrm
ethoc.h3910644editdlrm
failover.h11780644editdlrm
fib_notifier.h13840644editdlrm
fib_rules.h64500644editdlrm
firewire.h6360644editdlrm
flow.h51190644editdlrm
flow_dissector.h105170644editdlrm
flow_offload.h159380644editdlrm
fou.h5490644editdlrm
fq.h25280644editdlrm
fq_impl.h80760644editdlrm
garp.h26780644editdlrm
genetlink.h138540644editdlrm
geneve.h18980644editdlrm
gen_stats.h28890644editdlrm
gre.h33690644editdlrm
gro.h7830644editdlrm
gro_cells.h4430644editdlrm
gtp.h6330644editdlrm
gue.h33130644editdlrm
hwbm.h9690644editdlrm
icmp.h19180644editdlrm
ieee80211_radiotap.h135180644editdlrm
ieee802154_netdev.h100950644editdlrm
ife.h10570644editdlrm
if_inet6.h66920644editdlrm
ila.h2910644editdlrm
inet6_connection_sock.h7650644editdlrm
inet6_hashtables.h42590644editdlrm
inetpeer.h33720644editdlrm
inet_common.h26140644editdlrm
inet_connection_sock.h115190644editdlrm
inet_ecn.h76250644editdlrm
inet_frag.h50460644editdlrm
inet_hashtables.h125320644editdlrm
inet_sock.h99940644editdlrm
inet_timewait_sock.h37350644editdlrm
ioam6.h11990644editdlrm
ip.h227590644editdlrm
ip6_checksum.h27700644editdlrm
ip6_fib.h162800644editdlrm
ip6_route.h102300644editdlrm
ip6_tunnel.h50960644editdlrm
ipcomp.h6590644editdlrm
ipconfig.h8110644editdlrm
ipv6.h361820644editdlrm
ipv6_frag.h33610644editdlrm
ipv6_stubs.h34820644editdlrm
ip_fib.h163460644editdlrm
ip_tunnels.h159490644editdlrm
ip_vs.h505880644editdlrm
iw_handler.h214130644editdlrm
kcm.h49610644editdlrm
l3mdev.h72020644editdlrm
lag.h4090644editdlrm
lapb.h49380644editdlrm
lib80211.h40170644editdlrm
llc.h45140644editdlrm
llc_conn.h41550644editdlrm
llc_c_ac.h95370644editdlrm
llc_c_ev.h109400644editdlrm
llc_c_st.h17620644editdlrm
llc_if.h22100644editdlrm
llc_pdu.h146970644editdlrm
llc_sap.h11080644editdlrm
llc_s_ac.h15910644editdlrm
llc_s_ev.h22550644editdlrm
llc_s_st.h9470644editdlrm
lwtunnel.h68060644editdlrm
mac80211.h2739720644editdlrm
mac802154.h152350644editdlrm
macsec.h70840644editdlrm
mctp.h61550644editdlrm
mctpdevice.h8410644editdlrm
mip6.h10160644editdlrm
mld.h29180644editdlrm
mpls.h9430644editdlrm
mpls_iptunnel.h4290644editdlrm
mptcp.h67760644editdlrm
mrp.h31190644editdlrm
ncsi.h19640644editdlrm
ndisc.h151500644editdlrm
neighbour.h160990644editdlrm
netevent.h10440644editdlrm
netlabel.h206760644editdlrm
netlink.h616560644editdlrm
netprio_cgroup.h10470644editdlrm
netrom.h78950644editdlrm
net_failover.h10230644editdlrm
net_namespace.h127950644editdlrm
net_ratelimit.h2200644editdlrm
nexthop.h125650644editdlrm
nl802154.h123840644editdlrm
nsh.h126020644editdlrm
p8022.h4470644editdlrm
page_pool.h86460644editdlrm
pie.h36840644editdlrm
ping.h29700644editdlrm
pkt_cls.h244310644editdlrm
pkt_sched.h60420644editdlrm
pptp.h5570644editdlrm
protocol.h39000644editdlrm
psample.h10830644editdlrm
psnap.h3510644editdlrm
raw.h21360644editdlrm
rawv6.h8540644editdlrm
red.h116540644editdlrm
regulatory.h109010644editdlrm
request_sock.h66600644editdlrm
rose.h78020644editdlrm
route.h115820644editdlrm
rpl.h8390644editdlrm
rsi_91x.h17100644editdlrm
rtnetlink.h76380644editdlrm
rtnh.h8590644editdlrm
sch_generic.h347200644editdlrm
scm.h38770644editdlrm
secure_seq.h8550644editdlrm
seg6.h22370644editdlrm
seg6_hmac.h14730644editdlrm
seg6_local.h6440644editdlrm
selftests.h5820644editdlrm
slhc_vj.h68310644editdlrm
smc.h25130644editdlrm
snmp.h52680644editdlrm
sock.h863510644editdlrm
sock_reuseport.h18730644editdlrm
Space.h7370644editdlrm
stp.h3830644editdlrm
strparser.h42500644editdlrm
switchdev.h146140644editdlrm
tcp.h752460644editdlrm
tcp_states.h12250644editdlrm
timewait_sock.h9250644editdlrm
tipc.h24050644editdlrm
tls.h214650644editdlrm
tls_toe.h30060644editdlrm
transp_v6.h19960644editdlrm
tso.h5660644editdlrm
tun_proto.h9880644editdlrm
udp.h170350644editdlrm
udplite.h37620644editdlrm
udp_tunnel.h122010644editdlrm
vsock_addr.h6620644editdlrm
vxlan.h144240644editdlrm
wext.h15100644editdlrm
x25.h97180644editdlrm
x25device.h3870644editdlrm
xdp.h88290644editdlrm
xdp_priv.h4460644editdlrm
xdp_sock.h20940644editdlrm
xdp_sock_drv.h56070644editdlrm
xfrm.h563040644editdlrm
xsk_buff_pool.h51380644editdlrm
Edit: /usr/src/linux-headers-5.15.0-181/include/net/page_pool.h (8646B)
/* SPDX-License-Identifier: GPL-2.0 * * page_pool.h * Author: Jesper Dangaard Brouer * Copyright (C) 2016 Red Hat, Inc. */ /** * DOC: page_pool allocator * * This page_pool allocator is optimized for the XDP mode that * uses one-frame-per-page, but have fallbacks that act like the * regular page allocator APIs. * * Basic use involve replacing alloc_pages() calls with the * page_pool_alloc_pages() call. Drivers should likely use * page_pool_dev_alloc_pages() replacing dev_alloc_pages(). * * API keeps track of in-flight pages, in-order to let API user know * when it is safe to dealloactor page_pool object. Thus, API users * must make sure to call page_pool_release_page() when a page is * "leaving" the page_pool. Or call page_pool_put_page() where * appropiate. For maintaining correct accounting. * * API user must only call page_pool_put_page() once on a page, as it * will either recycle the page, or in case of elevated refcnt, it * will release the DMA mapping and in-flight state accounting. We * hope to lift this requirement in the future. */ #ifndef _NET_PAGE_POOL_H #define _NET_PAGE_POOL_H #include /* Needed by ptr_ring */ #include #include #define PP_FLAG_DMA_MAP BIT(0) /* Should page_pool do the DMA * map/unmap */ #define PP_FLAG_DMA_SYNC_DEV BIT(1) /* If set all pages that the driver gets * from page_pool will be * DMA-synced-for-device according to * the length provided by the device * driver. * Please note DMA-sync-for-CPU is still * device driver responsibility */ #define PP_FLAG_PAGE_FRAG BIT(2) /* for page frag feature */ #define PP_FLAG_ALL (PP_FLAG_DMA_MAP |\ PP_FLAG_DMA_SYNC_DEV |\ PP_FLAG_PAGE_FRAG) /* * Fast allocation side cache array/stack * * The cache size and refill watermark is related to the network * use-case. The NAPI budget is 64 packets. After a NAPI poll the RX * ring is usually refilled and the max consumed elements will be 64, * thus a natural max size of objects needed in the cache. * * Keeping room for more objects, is due to XDP_DROP use-case. As * XDP_DROP allows the opportunity to recycle objects directly into * this array, as it shares the same softirq/NAPI protection. If * cache is already full (or partly full) then the XDP_DROP recycles * would have to take a slower code path. */ #define PP_ALLOC_CACHE_SIZE 128 #define PP_ALLOC_CACHE_REFILL 64 struct pp_alloc_cache { u32 count; struct page *cache[PP_ALLOC_CACHE_SIZE]; }; struct page_pool_params { unsigned int flags; unsigned int order; unsigned int pool_size; int nid; /* Numa node id to allocate from pages from */ struct device *dev; /* device, for DMA pre-mapping purposes */ enum dma_data_direction dma_dir; /* DMA mapping direction */ unsigned int max_len; /* max DMA sync memory size */ unsigned int offset; /* DMA addr offset */ }; struct page_pool { struct page_pool_params p; struct delayed_work release_dw; void (*disconnect)(void *); unsigned long defer_start; unsigned long defer_warn; u32 pages_state_hold_cnt; unsigned int frag_offset; struct page *frag_page; long frag_users; /* * Data structure for allocation side * * Drivers allocation side usually already perform some kind * of resource protection. Piggyback on this protection, and * require driver to protect allocation side. * * For NIC drivers this means, allocate a page_pool per * RX-queue. As the RX-queue is already protected by * Softirq/BH scheduling and napi_schedule. NAPI schedule * guarantee that a single napi_struct will only be scheduled * on a single CPU (see napi_schedule). */ struct pp_alloc_cache alloc ____cacheline_aligned_in_smp; /* Data structure for storing recycled pages. * * Returning/freeing pages is more complicated synchronization * wise, because free's can happen on remote CPUs, with no * association with allocation resource. * * Use ptr_ring, as it separates consumer and producer * effeciently, it a way that doesn't bounce cache-lines. * * TODO: Implement bulk return pages into this structure. */ struct ptr_ring ring; atomic_t pages_state_release_cnt; /* A page_pool is strictly tied to a single RX-queue being * protected by NAPI, due to above pp_alloc_cache. This * refcnt serves purpose is to simplify drivers error handling. */ refcount_t user_cnt; u64 destroy_cnt; }; struct page *page_pool_alloc_pages(struct page_pool *pool, gfp_t gfp); static inline struct page *page_pool_dev_alloc_pages(struct page_pool *pool) { gfp_t gfp = (GFP_ATOMIC | __GFP_NOWARN); return page_pool_alloc_pages(pool, gfp); } struct page *page_pool_alloc_frag(struct page_pool *pool, unsigned int *offset, unsigned int size, gfp_t gfp); static inline struct page *page_pool_dev_alloc_frag(struct page_pool *pool, unsigned int *offset, unsigned int size) { gfp_t gfp = (GFP_ATOMIC | __GFP_NOWARN); return page_pool_alloc_frag(pool, offset, size, gfp); } /* get the stored dma direction. A driver might decide to treat this locally and * avoid the extra cache line from page_pool to determine the direction */ static inline enum dma_data_direction page_pool_get_dma_dir(struct page_pool *pool) { return pool->p.dma_dir; } bool page_pool_return_skb_page(struct page *page); struct page_pool *page_pool_create(const struct page_pool_params *params); #ifdef CONFIG_PAGE_POOL void page_pool_destroy(struct page_pool *pool); void page_pool_use_xdp_mem(struct page_pool *pool, void (*disconnect)(void *)); void page_pool_release_page(struct page_pool *pool, struct page *page); void page_pool_put_page_bulk(struct page_pool *pool, void **data, int count); #else static inline void page_pool_destroy(struct page_pool *pool) { } static inline void page_pool_use_xdp_mem(struct page_pool *pool, void (*disconnect)(void *)) { } static inline void page_pool_release_page(struct page_pool *pool, struct page *page) { } static inline void page_pool_put_page_bulk(struct page_pool *pool, void **data, int count) { } #endif void page_pool_put_page(struct page_pool *pool, struct page *page, unsigned int dma_sync_size, bool allow_direct); /* Same as above but will try to sync the entire area pool->max_len */ static inline void page_pool_put_full_page(struct page_pool *pool, struct page *page, bool allow_direct) { /* When page_pool isn't compiled-in, net/core/xdp.c doesn't * allow registering MEM_TYPE_PAGE_POOL, but shield linker. */ #ifdef CONFIG_PAGE_POOL page_pool_put_page(pool, page, -1, allow_direct); #endif } /* Same as above but the caller must guarantee safe context. e.g NAPI */ static inline void page_pool_recycle_direct(struct page_pool *pool, struct page *page) { page_pool_put_full_page(pool, page, true); } #define PAGE_POOL_DMA_USE_PP_FRAG_COUNT \ (sizeof(dma_addr_t) > sizeof(unsigned long)) static inline dma_addr_t page_pool_get_dma_addr(struct page *page) { dma_addr_t ret = page->dma_addr; if (PAGE_POOL_DMA_USE_PP_FRAG_COUNT) ret |= (dma_addr_t)page->dma_addr_upper << 16 << 16; return ret; } static inline void page_pool_set_dma_addr(struct page *page, dma_addr_t addr) { page->dma_addr = addr; if (PAGE_POOL_DMA_USE_PP_FRAG_COUNT) page->dma_addr_upper = upper_32_bits(addr); } static inline void page_pool_set_frag_count(struct page *page, long nr) { atomic_long_set(&page->pp_frag_count, nr); } static inline long page_pool_atomic_sub_frag_count_return(struct page *page, long nr) { long ret; /* As suggested by Alexander, atomic_long_read() may cover up the * reference count errors, so avoid calling atomic_long_read() in * the cases of freeing or draining the page_frags, where we would * not expect it to match or that are slowpath anyway. */ if (__builtin_constant_p(nr) && atomic_long_read(&page->pp_frag_count) == nr) return 0; ret = atomic_long_sub_return(nr, &page->pp_frag_count); WARN_ON(ret < 0); return ret; } static inline bool is_page_pool_compiled_in(void) { #ifdef CONFIG_PAGE_POOL return true; #else return false; #endif } static inline bool page_pool_put(struct page_pool *pool) { return refcount_dec_and_test(&pool->user_cnt); } /* Caller must provide appropriate safe context, e.g. NAPI. */ void page_pool_update_nid(struct page_pool *pool, int new_nid); static inline void page_pool_nid_changed(struct page_pool *pool, int new_nid) { if (unlikely(pool->p.nid != new_nid)) page_pool_update_nid(pool, new_nid); } #endif /* _NET_PAGE_POOL_H */