act_simple.c 5.0 KB

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  1. /*
  2. * net/sched/simp.c Simple example of an action
  3. *
  4. * This program is free software; you can redistribute it and/or
  5. * modify it under the terms of the GNU General Public License
  6. * as published by the Free Software Foundation; either version
  7. * 2 of the License, or (at your option) any later version.
  8. *
  9. * Authors: Jamal Hadi Salim (2005)
  10. *
  11. */
  12. #include <linux/module.h>
  13. #include <linux/init.h>
  14. #include <linux/kernel.h>
  15. #include <linux/netdevice.h>
  16. #include <linux/skbuff.h>
  17. #include <linux/rtnetlink.h>
  18. #include <net/pkt_sched.h>
  19. #define TCA_ACT_SIMP 22
  20. #include <linux/tc_act/tc_defact.h>
  21. #include <net/tc_act/tc_defact.h>
  22. #define SIMP_TAB_MASK 7
  23. static struct tcf_common *tcf_simp_ht[SIMP_TAB_MASK + 1];
  24. static u32 simp_idx_gen;
  25. static DEFINE_RWLOCK(simp_lock);
  26. static struct tcf_hashinfo simp_hash_info = {
  27. .htab = tcf_simp_ht,
  28. .hmask = SIMP_TAB_MASK,
  29. .lock = &simp_lock,
  30. };
  31. static int tcf_simp(struct sk_buff *skb, struct tc_action *a, struct tcf_result *res)
  32. {
  33. struct tcf_defact *d = a->priv;
  34. spin_lock(&d->tcf_lock);
  35. d->tcf_tm.lastuse = jiffies;
  36. d->tcf_bstats.bytes += skb->len;
  37. d->tcf_bstats.packets++;
  38. /* print policy string followed by _ then packet count
  39. * Example if this was the 3rd packet and the string was "hello"
  40. * then it would look like "hello_3" (without quotes)
  41. **/
  42. printk("simple: %s_%d\n",
  43. (char *)d->tcfd_defdata, d->tcf_bstats.packets);
  44. spin_unlock(&d->tcf_lock);
  45. return d->tcf_action;
  46. }
  47. static int tcf_simp_release(struct tcf_defact *d, int bind)
  48. {
  49. int ret = 0;
  50. if (d) {
  51. if (bind)
  52. d->tcf_bindcnt--;
  53. d->tcf_refcnt--;
  54. if (d->tcf_bindcnt <= 0 && d->tcf_refcnt <= 0) {
  55. kfree(d->tcfd_defdata);
  56. tcf_hash_destroy(&d->common, &simp_hash_info);
  57. ret = 1;
  58. }
  59. }
  60. return ret;
  61. }
  62. static int alloc_defdata(struct tcf_defact *d, u32 datalen, void *defdata)
  63. {
  64. d->tcfd_defdata = kmalloc(datalen, GFP_KERNEL);
  65. if (unlikely(!d->tcfd_defdata))
  66. return -ENOMEM;
  67. d->tcfd_datalen = datalen;
  68. memcpy(d->tcfd_defdata, defdata, datalen);
  69. return 0;
  70. }
  71. static int realloc_defdata(struct tcf_defact *d, u32 datalen, void *defdata)
  72. {
  73. kfree(d->tcfd_defdata);
  74. return alloc_defdata(d, datalen, defdata);
  75. }
  76. static int tcf_simp_init(struct rtattr *rta, struct rtattr *est,
  77. struct tc_action *a, int ovr, int bind)
  78. {
  79. struct rtattr *tb[TCA_DEF_MAX];
  80. struct tc_defact *parm;
  81. struct tcf_defact *d;
  82. struct tcf_common *pc;
  83. void *defdata;
  84. u32 datalen = 0;
  85. int ret = 0;
  86. if (rta == NULL || rtattr_parse_nested(tb, TCA_DEF_MAX, rta) < 0)
  87. return -EINVAL;
  88. if (tb[TCA_DEF_PARMS - 1] == NULL ||
  89. RTA_PAYLOAD(tb[TCA_DEF_PARMS - 1]) < sizeof(*parm))
  90. return -EINVAL;
  91. parm = RTA_DATA(tb[TCA_DEF_PARMS - 1]);
  92. defdata = RTA_DATA(tb[TCA_DEF_DATA - 1]);
  93. if (defdata == NULL)
  94. return -EINVAL;
  95. datalen = RTA_PAYLOAD(tb[TCA_DEF_DATA - 1]);
  96. if (datalen <= 0)
  97. return -EINVAL;
  98. pc = tcf_hash_check(parm->index, a, bind, &simp_hash_info);
  99. if (!pc) {
  100. pc = tcf_hash_create(parm->index, est, a, sizeof(*d), bind,
  101. &simp_idx_gen, &simp_hash_info);
  102. if (unlikely(!pc))
  103. return -ENOMEM;
  104. d = to_defact(pc);
  105. ret = alloc_defdata(d, datalen, defdata);
  106. if (ret < 0) {
  107. kfree(pc);
  108. return ret;
  109. }
  110. ret = ACT_P_CREATED;
  111. } else {
  112. d = to_defact(pc);
  113. if (!ovr) {
  114. tcf_simp_release(d, bind);
  115. return -EEXIST;
  116. }
  117. realloc_defdata(d, datalen, defdata);
  118. }
  119. spin_lock_bh(&d->tcf_lock);
  120. d->tcf_action = parm->action;
  121. spin_unlock_bh(&d->tcf_lock);
  122. if (ret == ACT_P_CREATED)
  123. tcf_hash_insert(pc, &simp_hash_info);
  124. return ret;
  125. }
  126. static inline int tcf_simp_cleanup(struct tc_action *a, int bind)
  127. {
  128. struct tcf_defact *d = a->priv;
  129. if (d)
  130. return tcf_simp_release(d, bind);
  131. return 0;
  132. }
  133. static inline int tcf_simp_dump(struct sk_buff *skb, struct tc_action *a,
  134. int bind, int ref)
  135. {
  136. unsigned char *b = skb->tail;
  137. struct tcf_defact *d = a->priv;
  138. struct tc_defact opt;
  139. struct tcf_t t;
  140. opt.index = d->tcf_index;
  141. opt.refcnt = d->tcf_refcnt - ref;
  142. opt.bindcnt = d->tcf_bindcnt - bind;
  143. opt.action = d->tcf_action;
  144. RTA_PUT(skb, TCA_DEF_PARMS, sizeof(opt), &opt);
  145. RTA_PUT(skb, TCA_DEF_DATA, d->tcfd_datalen, d->tcfd_defdata);
  146. t.install = jiffies_to_clock_t(jiffies - d->tcf_tm.install);
  147. t.lastuse = jiffies_to_clock_t(jiffies - d->tcf_tm.lastuse);
  148. t.expires = jiffies_to_clock_t(d->tcf_tm.expires);
  149. RTA_PUT(skb, TCA_DEF_TM, sizeof(t), &t);
  150. return skb->len;
  151. rtattr_failure:
  152. skb_trim(skb, b - skb->data);
  153. return -1;
  154. }
  155. static struct tc_action_ops act_simp_ops = {
  156. .kind = "simple",
  157. .hinfo = &simp_hash_info,
  158. .type = TCA_ACT_SIMP,
  159. .capab = TCA_CAP_NONE,
  160. .owner = THIS_MODULE,
  161. .act = tcf_simp,
  162. .dump = tcf_simp_dump,
  163. .cleanup = tcf_simp_cleanup,
  164. .init = tcf_simp_init,
  165. .walk = tcf_generic_walker,
  166. };
  167. MODULE_AUTHOR("Jamal Hadi Salim(2005)");
  168. MODULE_DESCRIPTION("Simple example action");
  169. MODULE_LICENSE("GPL");
  170. static int __init simp_init_module(void)
  171. {
  172. int ret = tcf_register_action(&act_simp_ops);
  173. if (!ret)
  174. printk("Simple TC action Loaded\n");
  175. return ret;
  176. }
  177. static void __exit simp_cleanup_module(void)
  178. {
  179. tcf_unregister_action(&act_simp_ops);
  180. }
  181. module_init(simp_init_module);
  182. module_exit(simp_cleanup_module);