pkt_sched.h 6.5 KB

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  1. #ifndef __NET_PKT_SCHED_H
  2. #define __NET_PKT_SCHED_H
  3. #include <net/sch_generic.h>
  4. struct qdisc_walker
  5. {
  6. int stop;
  7. int skip;
  8. int count;
  9. int (*fn)(struct Qdisc *, unsigned long cl, struct qdisc_walker *);
  10. };
  11. extern rwlock_t qdisc_tree_lock;
  12. #define QDISC_ALIGNTO 32
  13. #define QDISC_ALIGN(len) (((len) + QDISC_ALIGNTO-1) & ~(QDISC_ALIGNTO-1))
  14. static inline void *qdisc_priv(struct Qdisc *q)
  15. {
  16. return (char *) q + QDISC_ALIGN(sizeof(struct Qdisc));
  17. }
  18. /*
  19. Timer resolution MUST BE < 10% of min_schedulable_packet_size/bandwidth
  20. Normal IP packet size ~ 512byte, hence:
  21. 0.5Kbyte/1Mbyte/sec = 0.5msec, so that we need 50usec timer for
  22. 10Mbit ethernet.
  23. 10msec resolution -> <50Kbit/sec.
  24. The result: [34]86 is not good choice for QoS router :-(
  25. The things are not so bad, because we may use artifical
  26. clock evaluated by integration of network data flow
  27. in the most critical places.
  28. Note: we do not use fastgettimeofday.
  29. The reason is that, when it is not the same thing as
  30. gettimeofday, it returns invalid timestamp, which is
  31. not updated, when net_bh is active.
  32. */
  33. /* General note about internal clock.
  34. Any clock source returns time intervals, measured in units
  35. close to 1usec. With source CONFIG_NET_SCH_CLK_GETTIMEOFDAY it is precisely
  36. microseconds, otherwise something close but different chosen to minimize
  37. arithmetic cost. Ratio usec/internal untis in form nominator/denominator
  38. may be read from /proc/net/psched.
  39. */
  40. #ifdef CONFIG_NET_SCH_CLK_GETTIMEOFDAY
  41. typedef struct timeval psched_time_t;
  42. typedef long psched_tdiff_t;
  43. #define PSCHED_GET_TIME(stamp) do_gettimeofday(&(stamp))
  44. #define PSCHED_US2JIFFIE(usecs) (((usecs)+(1000000/HZ-1))/(1000000/HZ))
  45. #define PSCHED_JIFFIE2US(delay) ((delay)*(1000000/HZ))
  46. #else /* !CONFIG_NET_SCH_CLK_GETTIMEOFDAY */
  47. typedef u64 psched_time_t;
  48. typedef long psched_tdiff_t;
  49. #ifdef CONFIG_NET_SCH_CLK_JIFFIES
  50. #if HZ < 96
  51. #define PSCHED_JSCALE 14
  52. #elif HZ >= 96 && HZ < 192
  53. #define PSCHED_JSCALE 13
  54. #elif HZ >= 192 && HZ < 384
  55. #define PSCHED_JSCALE 12
  56. #elif HZ >= 384 && HZ < 768
  57. #define PSCHED_JSCALE 11
  58. #elif HZ >= 768
  59. #define PSCHED_JSCALE 10
  60. #endif
  61. #define PSCHED_GET_TIME(stamp) ((stamp) = (get_jiffies_64()<<PSCHED_JSCALE))
  62. #define PSCHED_US2JIFFIE(delay) (((delay)+(1<<PSCHED_JSCALE)-1)>>PSCHED_JSCALE)
  63. #define PSCHED_JIFFIE2US(delay) ((delay)<<PSCHED_JSCALE)
  64. #endif /* CONFIG_NET_SCH_CLK_JIFFIES */
  65. #ifdef CONFIG_NET_SCH_CLK_CPU
  66. #include <asm/timex.h>
  67. extern psched_tdiff_t psched_clock_per_hz;
  68. extern int psched_clock_scale;
  69. extern psched_time_t psched_time_base;
  70. extern cycles_t psched_time_mark;
  71. #define PSCHED_GET_TIME(stamp) \
  72. do { \
  73. cycles_t cur = get_cycles(); \
  74. if (sizeof(cycles_t) == sizeof(u32)) { \
  75. if (cur <= psched_time_mark) \
  76. psched_time_base += 0x100000000ULL; \
  77. psched_time_mark = cur; \
  78. (stamp) = (psched_time_base + cur)>>psched_clock_scale; \
  79. } else { \
  80. (stamp) = cur>>psched_clock_scale; \
  81. } \
  82. } while (0)
  83. #define PSCHED_US2JIFFIE(delay) (((delay)+psched_clock_per_hz-1)/psched_clock_per_hz)
  84. #define PSCHED_JIFFIE2US(delay) ((delay)*psched_clock_per_hz)
  85. #endif /* CONFIG_NET_SCH_CLK_CPU */
  86. #endif /* !CONFIG_NET_SCH_CLK_GETTIMEOFDAY */
  87. #ifdef CONFIG_NET_SCH_CLK_GETTIMEOFDAY
  88. #define PSCHED_TDIFF(tv1, tv2) \
  89. ({ \
  90. int __delta_sec = (tv1).tv_sec - (tv2).tv_sec; \
  91. int __delta = (tv1).tv_usec - (tv2).tv_usec; \
  92. if (__delta_sec) { \
  93. switch (__delta_sec) { \
  94. default: \
  95. __delta = 0; \
  96. case 2: \
  97. __delta += 1000000; \
  98. case 1: \
  99. __delta += 1000000; \
  100. } \
  101. } \
  102. __delta; \
  103. })
  104. static inline int
  105. psched_tod_diff(int delta_sec, int bound)
  106. {
  107. int delta;
  108. if (bound <= 1000000 || delta_sec > (0x7FFFFFFF/1000000)-1)
  109. return bound;
  110. delta = delta_sec * 1000000;
  111. if (delta > bound || delta < 0)
  112. delta = bound;
  113. return delta;
  114. }
  115. #define PSCHED_TDIFF_SAFE(tv1, tv2, bound) \
  116. ({ \
  117. int __delta_sec = (tv1).tv_sec - (tv2).tv_sec; \
  118. int __delta = (tv1).tv_usec - (tv2).tv_usec; \
  119. switch (__delta_sec) { \
  120. default: \
  121. __delta = psched_tod_diff(__delta_sec, bound); break; \
  122. case 2: \
  123. __delta += 1000000; \
  124. case 1: \
  125. __delta += 1000000; \
  126. case 0: \
  127. if (__delta > bound || __delta < 0) \
  128. __delta = bound; \
  129. } \
  130. __delta; \
  131. })
  132. #define PSCHED_TLESS(tv1, tv2) (((tv1).tv_usec < (tv2).tv_usec && \
  133. (tv1).tv_sec <= (tv2).tv_sec) || \
  134. (tv1).tv_sec < (tv2).tv_sec)
  135. #define PSCHED_TADD2(tv, delta, tv_res) \
  136. ({ \
  137. int __delta = (tv).tv_usec + (delta); \
  138. (tv_res).tv_sec = (tv).tv_sec; \
  139. if (__delta > 1000000) { (tv_res).tv_sec++; __delta -= 1000000; } \
  140. (tv_res).tv_usec = __delta; \
  141. })
  142. #define PSCHED_TADD(tv, delta) \
  143. ({ \
  144. (tv).tv_usec += (delta); \
  145. if ((tv).tv_usec > 1000000) { (tv).tv_sec++; \
  146. (tv).tv_usec -= 1000000; } \
  147. })
  148. /* Set/check that time is in the "past perfect";
  149. it depends on concrete representation of system time
  150. */
  151. #define PSCHED_SET_PASTPERFECT(t) ((t).tv_sec = 0)
  152. #define PSCHED_IS_PASTPERFECT(t) ((t).tv_sec == 0)
  153. #define PSCHED_AUDIT_TDIFF(t) ({ if ((t) > 2000000) (t) = 2000000; })
  154. #else /* !CONFIG_NET_SCH_CLK_GETTIMEOFDAY */
  155. #define PSCHED_TDIFF(tv1, tv2) (long)((tv1) - (tv2))
  156. #define PSCHED_TDIFF_SAFE(tv1, tv2, bound) \
  157. min_t(long long, (tv1) - (tv2), bound)
  158. #define PSCHED_TLESS(tv1, tv2) ((tv1) < (tv2))
  159. #define PSCHED_TADD2(tv, delta, tv_res) ((tv_res) = (tv) + (delta))
  160. #define PSCHED_TADD(tv, delta) ((tv) += (delta))
  161. #define PSCHED_SET_PASTPERFECT(t) ((t) = 0)
  162. #define PSCHED_IS_PASTPERFECT(t) ((t) == 0)
  163. #define PSCHED_AUDIT_TDIFF(t)
  164. #endif /* !CONFIG_NET_SCH_CLK_GETTIMEOFDAY */
  165. extern struct Qdisc_ops pfifo_qdisc_ops;
  166. extern struct Qdisc_ops bfifo_qdisc_ops;
  167. extern int register_qdisc(struct Qdisc_ops *qops);
  168. extern int unregister_qdisc(struct Qdisc_ops *qops);
  169. extern struct Qdisc *qdisc_lookup(struct net_device *dev, u32 handle);
  170. extern struct Qdisc *qdisc_lookup_class(struct net_device *dev, u32 handle);
  171. extern struct qdisc_rate_table *qdisc_get_rtab(struct tc_ratespec *r,
  172. struct rtattr *tab);
  173. extern void qdisc_put_rtab(struct qdisc_rate_table *tab);
  174. extern int qdisc_restart(struct net_device *dev);
  175. static inline void qdisc_run(struct net_device *dev)
  176. {
  177. while (!netif_queue_stopped(dev) && qdisc_restart(dev) < 0)
  178. /* NOTHING */;
  179. }
  180. extern int tc_classify(struct sk_buff *skb, struct tcf_proto *tp,
  181. struct tcf_result *res);
  182. /* Calculate maximal size of packet seen by hard_start_xmit
  183. routine of this device.
  184. */
  185. static inline unsigned psched_mtu(struct net_device *dev)
  186. {
  187. unsigned mtu = dev->mtu;
  188. return dev->hard_header ? mtu + dev->hard_header_len : mtu;
  189. }
  190. #endif