X-Git-Url: http://git.bitcoin.ninja/index.cgi?a=blobdiff_plain;f=xdp.c;h=62120d2ef52107511c5f4a4f245c666ef5d4dcb2;hb=81e2215518fa76a2dc0dc88105550bf26c86c27b;hp=29e2cf3e3f716e8f595d5905b00dee62ebdc66d5;hpb=0ac7dea853a16579072fe9d85cfc791226167491;p=flowspec-xdp diff --git a/xdp.c b/xdp.c index 29e2cf3..62120d2 100644 --- a/xdp.c +++ b/xdp.c @@ -96,10 +96,15 @@ struct tcphdr { #define HTON128(a) BIGEND128(a >> 3*32, a >> 2*32, a >> 1*32, a>> 0*32) // Yes, somehow macro'ing this changes LLVM's view of htons... #define BE16(a) (((((uint16_t)a) & 0xff00) >> 8) | ((((uint16_t)a) & 0xff) << 8)) +#define BE128BEHIGH64(val) ((uint64_t)((uint128_t)(val))) + #elif defined(__BIG_ENDIAN) + #define BIGEND128(a, b, c, d) ((((uint128_t)(a)) << 3*32) | (((uint128_t)(b)) << 2*32) | (((uint128_t)(c)) << 1*32) | (((uint128_t)(d)) << 0*32)) #define HTON128(a) ((uint128_t)(a)) #define BE16(a) ((uint16_t)(a)) +#define BE128BEHIGH64(val) ((uint64_t)(((uint128_t)(val)) >> 64)) + #else #error "Need endian info" #endif @@ -172,11 +177,23 @@ struct { } \ } +// Rate limits are done in a static-sized leaky bucket with a decimal counter +// Bucket size is always exactly (1 << RATE_BUCKET_INTEGER_BITS) +#define RATE_BUCKET_DECIMAL_BITS 8 +#define RATE_BUCKET_INTEGER_BITS 4 + +#define RATE_BUCKET_BITS (RATE_BUCKET_DECIMAL_BITS + RATE_BUCKET_INTEGER_BITS) +#define RATE_TIME_MASK ((1ULL << (64 - RATE_BUCKET_BITS)) - 1) + +// Time going backwards 10ms+ or forward 32sec+ implies we should consider it +// an overflow, or at least stale enough that we should reset the entry. +#define RATE_MIN_TIME_OFFSET -10000000LL +#define RATE_MAX_TIME_OFFSET 32000000000LL + #ifdef RATE_CNT struct ratelimit { struct bpf_spin_lock lock; - int64_t sent_rate; - int64_t sent_time; + uint64_t sent_time; }; struct { __uint(type, BPF_MAP_TYPE_ARRAY); @@ -196,17 +213,24 @@ struct { // Then we build an array of MAX_ENTRIES/2**SRC_HASH_MAX_PARALLELISM_POW entries, // which are split into buckets of size SRC_HASH_BUCKET_COUNT. An entry can appear // in any of the SRC_HASH_BUCKET_COUNT buckets at it's hash value. -#define SRC_HASH_MAX_PARALLELISM_POW 9 +// +// Because we use buckets of size 16, see collision_prob.py, the number of +// elements we can hold with only a 1% probability of overflowing a bucket is: +// +// 128K-entry hash table (2MiB): ~33K sources +// 256K-entry hash table (4MiB): ~63K sources +// 512K-entry hash table (8MiB): ~119K sources +// 1M-entry hash table (16MiB): ~227K sources +#define SRC_HASH_MAX_PARALLELISM_POW 8 #define SRC_HASH_MAX_PARALLELISM (1 << SRC_HASH_MAX_PARALLELISM_POW) -#define SRC_HASH_BUCKET_COUNT_POW 3 +#define SRC_HASH_BUCKET_COUNT_POW 4 #define SRC_HASH_BUCKET_COUNT (1 << SRC_HASH_BUCKET_COUNT_POW) #include "rand.h" #define CREATE_PERSRC_LOOKUP(IPV, IP_TYPE) \ struct persrc_rate##IPV##_entry { \ - int64_t sent_rate; \ - int64_t sent_time; \ + uint64_t sent_time; \ IP_TYPE srcip; \ }; \ \ @@ -221,7 +245,7 @@ struct persrc_rate##IPV##_ptr { \ }; \ \ __attribute__((always_inline)) \ -static inline struct persrc_rate##IPV##_ptr get_v##IPV##_persrc_ratelimit(IP_TYPE key, void *map, size_t map_limit) { \ +static inline struct persrc_rate##IPV##_ptr get_v##IPV##_persrc_ratelimit(IP_TYPE key, void *map, size_t map_limit, int64_t cur_time_masked) { \ struct persrc_rate##IPV##_ptr res = { .rate = NULL, .lock = NULL }; \ uint64_t hash = siphash(&key, sizeof(key), COMPILE_TIME_RAND); \ \ @@ -236,26 +260,32 @@ static inline struct persrc_rate##IPV##_ptr get_v##IPV##_persrc_ratelimit(IP_TYP bpf_spin_lock(&buckets->lock); \ \ int min_sent_idx = 0; \ - int64_t min_sent_time = INT64_MAX; \ + uint64_t min_sent_time = UINT64_MAX; \ for (int i = 0; i < SRC_HASH_BUCKET_COUNT; i++) { \ if (first_bucket[i].srcip == key) { \ res.rate = &first_bucket[i]; \ res.lock = &buckets->lock; \ return res; \ - } else if (min_sent_time > first_bucket[i].sent_time) { \ - min_sent_time = first_bucket[i].sent_time; \ + } \ + int64_t time_offset = ((int64_t)cur_time_masked) - (first_bucket[i].sent_time & RATE_TIME_MASK); \ + if (time_offset < RATE_MIN_TIME_OFFSET || time_offset > RATE_MAX_TIME_OFFSET) { \ + min_sent_idx = i; \ + break; \ + } \ + if ((first_bucket[i].sent_time & RATE_TIME_MASK) < min_sent_time) { \ + min_sent_time = first_bucket[i].sent_time & RATE_TIME_MASK; \ min_sent_idx = i; \ } \ } \ res.rate = &first_bucket[min_sent_idx]; \ res.rate->srcip = key; \ - res.rate->sent_rate = 0; \ res.rate->sent_time = 0; \ res.lock = &buckets->lock; \ return res; \ } CREATE_PERSRC_LOOKUP(6, uint128_t) +CREATE_PERSRC_LOOKUP(5, uint64_t) // IPv6 matching no more than a /64 CREATE_PERSRC_LOOKUP(4, uint32_t) #define SRC_RATE_DEFINE(IPV, n, limit) \