mirror of
https://gitlab.nic.cz/labs/bird.git
synced 2024-12-23 02:01:55 +00:00
ddf698ec99
Some [redacted] (yes, myself) had a really bad idea to rename nest/route.h to nest/rt.h while refactoring some data structures out of it. This led to unnecessarily complex problems with merging updates from v2. Reverting this change to make my life a bit easier. At least it needed only one find-sed command: find -name '*.[chlY]' -type f -exec sed -i 's#nest/rt.h#nest/route.h#' '{}' +
347 lines
6.7 KiB
C
347 lines
6.7 KiB
C
/*
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* BIRD Test -- Utils for testing parsing configuration file
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*
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* (c) 2015 CZ.NIC z.s.p.o.
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*
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* Can be freely distributed and used under the terms of the GNU GPL.
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*/
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#include <stdlib.h>
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#include <fcntl.h>
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#include <unistd.h>
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#include "test/birdtest.h"
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#include "test/bt-utils.h"
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#include "nest/bird.h"
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#include "nest/route.h"
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#include "nest/protocol.h"
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#include "sysdep/unix/unix.h"
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#include "sysdep/unix/krt.h"
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#include "nest/iface.h"
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#include "nest/locks.h"
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#include "filter/filter.h"
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#define BETWEEN(a, b, c) (((a) >= (b)) && ((a) <= (c)))
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static const byte *bt_config_parse_pos;
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static uint bt_config_parse_remain_len;
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/* This is cf_read_hook for hard-coded text configuration */
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static int
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cf_static_read(byte *dest, uint max_len, int fd UNUSED)
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{
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if (max_len > bt_config_parse_remain_len)
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max_len = bt_config_parse_remain_len;
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memcpy(dest, bt_config_parse_pos, max_len);
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bt_config_parse_pos += max_len;
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bt_config_parse_remain_len -= max_len;
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return max_len;
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}
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/* This is cf_read_hook for reading configuration files,
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* function is copied from main.c, cf_read() */
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static int
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cf_file_read(byte *dest, uint max_len, int fd)
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{
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int l = read(fd, dest, max_len);
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if (l < 0)
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cf_error("Read error");
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return l;
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}
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void resource_sys_init(void);
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void
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bt_bird_init(void)
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{
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if(bt_verbose)
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log_init_debug("");
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olock_init();
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rt_init();
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log_switch(1, NULL, NULL);
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io_init();
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if_init();
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config_init();
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protos_build();
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}
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static char *
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bt_load_file(const char *filename, int quiet)
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{
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FILE *f = fopen(filename, "rb");
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if (!quiet)
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bt_assert_msg(f != NULL, "Open %s", filename);
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if (f == NULL)
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return NULL;
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fseek(f, 0, SEEK_END);
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long file_size_ = ftell(f);
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fseek(f, 0, SEEK_SET);
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if (file_size_ < 0)
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return NULL;
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size_t file_size = file_size_;
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size_t read_size = 0;
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char *file_body = mb_allocz(&root_pool, file_size+1);
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/* XXX: copied from cf-lex.c */
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errno=0;
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while ((read_size += fread(file_body+read_size, 1, file_size-read_size, f)) != file_size && ferror(f))
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{
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bt_debug("iteration \n");
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if(errno != EINTR)
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{
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bt_abort_msg("errno: %d", errno);
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break;
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}
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errno=0;
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clearerr(f);
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}
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fclose(f);
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if (!quiet)
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bt_assert_msg(read_size == file_size, "Read %s", filename);
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return file_body;
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}
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static void
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bt_show_cfg_error(const struct config *cfg)
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{
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int lino = 0;
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int lino_delta = 5;
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int lino_err = cfg->err_lino;
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const char *str = bt_load_file(cfg->err_file_name, 1);
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while (str && *str)
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{
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lino++;
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if (BETWEEN(lino, lino_err - lino_delta, lino_err + lino_delta))
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bt_debug("%4u%s", lino, (lino_err == lino ? " >> " : " "));
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do
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{
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if (BETWEEN(lino, lino_err - lino_delta, lino_err + lino_delta))
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bt_debug("%c", *str);
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} while (*str && *(str++) != '\n');
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}
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bt_debug("\n");
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}
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static struct config *
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bt_config_parse__(struct config *cfg)
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{
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bt_assert_msg(config_parse(cfg) == 1, "Parse %s", cfg->file_name);
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if (cfg->err_msg)
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{
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bt_log("Parse error %s, line %d: %s", cfg->err_file_name, cfg->err_lino, cfg->err_msg);
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bt_show_cfg_error(cfg);
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return NULL;
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}
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config_commit(cfg, RECONFIG_HARD, 0);
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new_config = cfg;
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return cfg;
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}
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struct config *
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bt_config_parse(const char *cfg_str)
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{
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struct config *cfg = config_alloc("configuration");
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bt_config_parse_pos = cfg_str;
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bt_config_parse_remain_len = strlen(cfg_str);
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cf_read_hook = cf_static_read;
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return bt_config_parse__(cfg);
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}
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struct config *
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bt_config_file_parse(const char *filepath)
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{
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struct config *cfg = config_alloc(filepath);
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cfg->file_fd = open(filepath, O_RDONLY);
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bt_assert_msg(cfg->file_fd > 0, "Open %s", filepath);
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if (cfg->file_fd < 0)
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return NULL;
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cf_read_hook = cf_file_read;
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return bt_config_parse__(cfg);
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}
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/*
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* Returns @base raised to the power of @power.
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*/
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uint
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bt_naive_pow(uint base, uint power)
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{
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uint result = 1;
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uint i;
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for (i = 0; i < power; i++)
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result *= base;
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return result;
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}
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/**
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* bytes_to_hex - transform data into hexadecimal representation
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* @buf: preallocated string buffer
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* @in_data: data for transformation
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* @size: the length of @in_data
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*
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* This function transforms @in_data of length @size into hexadecimal
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* representation and writes it into @buf.
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*/
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void
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bt_bytes_to_hex(char *buf, const byte *in_data, size_t size)
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{
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size_t i;
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for(i = 0; i < size; i++)
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sprintf(buf + i*2, "%02x", in_data[i]);
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}
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void
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bt_random_net(net_addr *net, int type)
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{
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ip4_addr ip4;
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ip6_addr ip6;
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uint pxlen;
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switch (type)
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{
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case NET_IP4:
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pxlen = bt_random_n(24)+8;
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ip4 = ip4_from_u32((u32) bt_random());
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net_fill_ip4(net, ip4_and(ip4, ip4_mkmask(pxlen)), pxlen);
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break;
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case NET_IP6:
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pxlen = bt_random_n(120)+8;
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ip6 = ip6_build(bt_random(), bt_random(), bt_random(), bt_random());
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net_fill_ip6(net, ip6_and(ip6, ip6_mkmask(pxlen)), pxlen);
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break;
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default:
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die("Net type %d not implemented", type);
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}
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}
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net_addr *
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bt_random_nets(int type, uint n)
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{
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net_addr *nets = tmp_alloc(n * sizeof(net_addr));
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for (uint i = 0; i < n; i++)
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bt_random_net(&nets[i], type);
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return nets;
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}
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net_addr *
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bt_random_net_subset(net_addr *src, uint sn, uint dn)
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{
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net_addr *nets = tmp_alloc(dn * sizeof(net_addr));
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for (uint i = 0; i < dn; i++)
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net_copy(&nets[i], &src[bt_random_n(sn)]);
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return nets;
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}
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void
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bt_read_net(const char *str, net_addr *net, int type)
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{
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ip4_addr ip4;
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ip6_addr ip6;
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uint pxlen;
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char addr[64];
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switch (type)
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{
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case NET_IP4:
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if (sscanf(str, "%[0-9.]/%u", addr, &pxlen) != 2)
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goto err;
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if (!ip4_pton(addr, &ip4))
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goto err;
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if (!net_validate_px4(ip4, pxlen))
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goto err;
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net_fill_ip4(net, ip4, pxlen);
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break;
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case NET_IP6:
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if (sscanf(str, "%[0-9a-fA-F:.]/%u", addr, &pxlen) != 2)
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goto err;
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if (!ip6_pton(addr, &ip6))
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goto err;
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if (!net_validate_px6(ip6, pxlen))
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goto err;
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net_fill_ip6(net, ip6, pxlen);
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break;
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default:
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die("Net type %d not implemented", type);
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}
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return;
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err:
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bt_abort_msg("Invalid network '%s'", str);
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}
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net_addr *
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bt_read_nets(FILE *f, int type, uint *n)
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{
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char str[80];
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net_addr *nets = tmp_alloc(*n * sizeof(net_addr));
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uint i = 0;
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errno = 0;
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while (fgets(str, sizeof(str), f))
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{
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if (str[0] == '\n')
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break;
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if (i >= *n)
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bt_abort_msg("Too many networks");
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bt_read_net(str, &nets[i], type);
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bt_debug("ADD %s\n", str);
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i++;
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}
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bt_syscall(errno, "fgets()");
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bt_debug("DONE reading %u nets\n", i);
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*n = i;
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return nets;
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}
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net_addr *
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bt_read_net_file(const char *filename, int type, uint *n)
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{
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FILE *f = fopen(filename, "r");
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bt_syscall(!f, "fopen(%s)", filename);
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net_addr *nets = bt_read_nets(f, type, n);
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fclose(f);
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return nets;
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}
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