/* * tc_core.c TC core library. * * This program is free software; you can redistribute it and/or * modify it under the terms of the GNU General Public License * as published by the Free Software Foundation; either version * 2 of the License, or (at your option) any later version. * * Authors: Alexey Kuznetsov, * */ #include #include #include #include #include #include #include #include #include #include #include "tc_core.h" static double tick_in_usec = 1; static double clock_factor = 1; int tc_core_time2big(unsigned time) { __u64 t = time; t *= tick_in_usec; return (t >> 32) != 0; } unsigned tc_core_time2tick(unsigned time) { return time*tick_in_usec; } unsigned tc_core_tick2time(unsigned tick) { return tick/tick_in_usec; } unsigned tc_core_time2ktime(unsigned time) { return time * clock_factor; } unsigned tc_core_ktime2time(unsigned ktime) { return ktime / clock_factor; } unsigned tc_calc_xmittime(unsigned rate, unsigned size) { return tc_core_time2tick(TIME_UNITS_PER_SEC*((double)size/rate)); } unsigned tc_calc_xmitsize(unsigned rate, unsigned ticks) { return ((double)rate*tc_core_tick2time(ticks))/TIME_UNITS_PER_SEC; } /* rtab[pkt_len>>cell_log] = pkt_xmit_time */ int tc_calc_rtable(struct tc_ratespec *r, __u32 *rtab, int cell_log, unsigned mtu) { int i; unsigned bps = r->rate; unsigned mpu = r->mpu; if (mtu == 0) mtu = 2047; if (cell_log < 0) { cell_log = 0; while ((mtu>>cell_log) > 255) cell_log++; } for (i=0; i<256; i++) { unsigned sz = ((i+1)<cell_align=-1; // Due to the sz calc r->cell_log=cell_log; return cell_log; } int tc_core_init() { FILE *fp; __u32 clock_res; __u32 t2us; __u32 us2t; fp = fopen("/proc/net/psched", "r"); if (fp == NULL) return -1; if (fscanf(fp, "%08x%08x%08x", &t2us, &us2t, &clock_res) != 3) { fclose(fp); return -1; } fclose(fp); /* compatibility hack: for old iproute binaries (ignoring * the kernel clock resolution) the kernel advertises a * tick multiplier of 1000 in case of nano-second resolution, * which really is 1. */ if (clock_res == 1000000000) t2us = us2t; clock_factor = (double)clock_res / TIME_UNITS_PER_SEC; tick_in_usec = (double)t2us / us2t * clock_factor; return 0; }