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/*
 * Copyright (c) 2015 Cisco and/or its affiliates.
 * Licensed under the Apache License, Version 2.0 (the "License");
 * you may not use this file except in compliance with the License.
 * You may obtain a copy of the License at:
 *
 *     http://www.apache.org/licenses/LICENSE-2.0
 *
 * Unless required by applicable law or agreed to in writing, software
 * distributed under the License is distributed on an "AS IS" BASIS,
 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
 * See the License for the specific language governing permissions and
 * limitations under the License.
 */
/*
  Copyright (c) 2001, 2002, 2003 Eliot Dresselhaus

  Permission is hereby granted, free of charge, to any person obtaining
  a copy of this software and associated documentation files (the
  "Software"), to deal in the Software without restriction, including
  without limitation the rights to use, copy, modify, merge, publish,
  distribute, sublicense, and/or sell copies of the Software, and to
  permit persons to whom the Software is furnished to do so, subject to
  the following conditions:

  The above copyright notice and this permission notice shall be
  included in all copies or substantial portions of the Software.

  THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
  EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
  MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
  NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE
  LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
  OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
  WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
*/

#ifndef included_time_h
#define included_time_h

#include <vppinfra/clib.h>

typedef struct
{
  /* Total run time in clock cycles
     since clib_time_init call. */
  u64 total_cpu_time;

  /* Last recorded time stamp. */
  u64 last_cpu_time;

  /* CPU clock frequency. */
  f64 clocks_per_second;

  /* 1 / cpu clock frequency: conversion factor
     from clock cycles into seconds. */
  f64 seconds_per_clock;

  f64 round_to_units;

  /* Time stamp of call to clib_time_init call. */
  u64 init_cpu_time;

  u64 last_verify_cpu_time;

  /* Same but for reference time (if present). */
  f64 last_verify_reference_time;

  u32 log2_clocks_per_second, log2_clocks_per_frequency_verify;
} clib_time_t;

/* Return CPU time stamp as 64bit number. */
#if defined(__x86_64__) || defined(i386)
always_inline u64
clib_cpu_time_now (void)
{
  u32 a, d;
  asm volatile ("rdtsc":"=a" (a), "=d" (d));
  return (u64) a + ((u64) d << (u64) 32);
}

#elif defined (__powerpc64__)

always_inline u64
clib_cpu_time_now (void)
{
  u64 t;
  asm volatile ("mftb %0":"=r" (t));
  return t;
}

#elif defined (__SPU__)

always_inline u64
clib_cpu_time_now (void)
{
#ifdef _XLC
  return spu_rdch (0x8);
#else
  return 0 /* __builtin_si_rdch (0x8) FIXME */ ;
#endif
}

#elif defined (__powerpc__)

always_inline u64
clib_cpu_time_now (void)
{
  u32 hi1, hi2, lo;
  asm volatile ("1:\n"
		"mftbu %[hi1]\n"
		"mftb  %[lo]\n"
		"mftbu %[hi2]\n"
		"cmpw %[hi1],%[hi2]\n"
		"bne 1b\n":[hi1] "=r" (hi1),[hi2] "=r" (hi2),[lo] "=r" (lo));
  return (u64) lo + ((u64) hi2 << (u64) 32);
}

#elif defined (__aarch64__)
always_inline u64
clib_cpu_time_now (void)
{
  u64 vct;
  /* User access to cntvct_el0 is enabled in Linux kernel since 3.12. */
  asm volatile ("mrs %0, cntvct_el0":"=r" (vct));
  return vct;
}

#elif defined (__arm__)
#if defined(__ARM_ARCH_8A__)
always_inline u64
clib_cpu_time_now (void)	/* We may run arm64 in aarch32 mode, to leverage 64bit counter */
{
  u64 tsc;
  asm volatile ("mrrc p15, 0, %Q0, %R0, c9":"=r" (tsc));
  return tsc;
}
#elif defined(__ARM_ARCH_7A__)
always_inline u64
clib_cpu_time_now (void)
{
  u32 tsc;
  asm volatile ("mrc p15, 0, %0, c9, c13, 0":"=r" (tsc));
  return (u64) tsc;
}
#else
always_inline u64
clib_cpu_time_now (void)
{
  u32 lo;
  asm volatile ("mrc p15, 0, %[lo], c15, c12, 1":[lo] "=r" (lo));
  return (u64) lo;
}
#endif

#elif defined (__xtensa__)

/* Stub for now. */
always_inline u64
clib_cpu_time_now (void)
{
  return 0;
}

#elif defined (__TMS320C6X__)

always_inline u64
clib_cpu_time_now (void)
{
  u32 l, h;

  asm volatile (" dint\n"
		" mvc .s2 TSCL,%0\n"
		" mvc .s2 TSCH,%1\n" " rint\n":"=b" (l), "=b" (h));

  return ((u64) h << 32) | l;
}

#elif defined(_mips) && __mips == 64

always_inline u64
clib_cpu_time_now (void)
{
  u64 result;
  asm volatile ("rdhwr %0,$31\n":"=r" (result));
  return result;
}

#else
#error "don't know how to read CPU time stamp"

#endif

void clib_time_verify_frequency (clib_time_t * c);

always_inline f64
clib_time_now_internal (clib_time_t * c, u64 n)
{
  u64 l = c->last_cpu_time;
  u64 t = c->total_cpu_time;
  t += n - l;
  c->total_cpu_time = t;
  c->last_cpu_time = n;
  if (PREDICT_FALSE
      ((c->last_cpu_time -
	c->last_verify_cpu_time) >> c->log2_clocks_per_frequency_verify))
    clib_time_verify_frequency (c);
  return t * c->seconds_per_clock;
}

/* Maximum f64 value as max clib_time */
#define CLIB_TIME_MAX (1.7976931348623157e+308)

always_inline f64
clib_time_now (clib_time_t * c)
{
  return clib_time_now_internal (c, clib_cpu_time_now ());
}

always_inline void
clib_cpu_time_wait (u64 dt)
{
  u64 t_end = clib_cpu_time_now () + dt;
  while (clib_cpu_time_now () < t_end)
    ;
}

void clib_time_init (clib_time_t * c);

#ifdef CLIB_UNIX

#include <time.h>
#include <sys/time.h>
#include <sys/resource.h>
#include <unistd.h>
#include <sys/syscall.h>

/* Use 64bit floating point to represent time offset from epoch. */
always_inline f64
unix_time_now (void)
{
  struct timespec ts;
#ifdef __MACH__
  clock_gettime (CLOCK_REALTIME, &ts);
#else
  /* clock_gettime without indirect syscall uses GLIBC wrappers which
     we don't want.  Just the bare metal, please. */
  syscall (SYS_clock_gettime, CLOCK_REALTIME, &ts);
#endif
  return ts.tv_sec + 1e-9 * ts.tv_nsec;
}

/* As above but integer number of nano-seconds. */
always_inline u64
unix_time_now_nsec (void)
{
  struct timespec ts;
#ifdef __MACH__
  clock_gettime (CLOCK_REALTIME, &ts);
#else
  syscall (SYS_clock_gettime, CLOCK_REALTIME, &ts);
#endif
  return 1e9 * ts.tv_sec + ts.tv_nsec;
}

always_inline void
unix_time_now_nsec_fraction (u32 * sec, u32 * nsec)
{
  struct timespec ts;
#ifdef __MACH__
  clock_gettime (CLOCK_REALTIME, &ts);
#else
  syscall (SYS_clock_gettime, CLOCK_REALTIME, &ts);
#endif
  *sec = ts.tv_sec;
  *nsec = ts.tv_nsec;
}

always_inline f64
unix_usage_now (void)
{
  struct rusage u;
  getrusage (RUSAGE_SELF, &u);
  return u.ru_utime.tv_sec + 1e-6 * u.ru_utime.tv_usec
    + u.ru_stime.tv_sec + 1e-6 * u.ru_stime.tv_usec;
}

always_inline void
unix_sleep (f64 dt)
{
  struct timespec ts, tsrem;
  ts.tv_sec = dt;
  ts.tv_nsec = 1e9 * (dt - (f64) ts.tv_sec);

  while (nanosleep (&ts, &tsrem) < 0)
    ts = tsrem;
}

#else /* ! CLIB_UNIX */

always_inline f64
unix_time_now (void)
{
  return 0;
}

always_inline u64
unix_time_now_nsec (void)
{
  return 0;
}

always_inline void
unix_time_now_nsec_fraction (u32 * sec, u32 * nsec)
{
}

always_inline f64
unix_usage_now (void)
{
  return 0;
}

always_inline void
unix_sleep (f64 dt)
{
}

#endif

#endif /* included_time_h */

/*
 * fd.io coding-style-patch-verification: ON
 *
 * Local Variables:
 * eval: (c-set-style "gnu")
 * End:
 */
">self._conf_key_id: return k return None def query_vpp_config(self): return self.get_bfd_auth_keys_dump_entry() is not None def remove_vpp_config(self): self.test.vapi.bfd_auth_del_key(conf_key_id=self._conf_key_id) def object_id(self): return "bfd-auth-key-%s" % self._conf_key_id class VppBFDUDPSession(VppObject): """ Represents BFD UDP session in VPP """ def __init__(self, test, interface, peer_addr, local_addr=None, af=AF_INET, desired_min_tx=300000, required_min_rx=300000, detect_mult=3, sha1_key=None, bfd_key_id=None, is_tunnel=False): self._test = test self._interface = interface self._af = af if local_addr: self._local_addr = local_addr else: self._local_addr = None self._peer_addr = peer_addr self._desired_min_tx = desired_min_tx self._required_min_rx = required_min_rx self._detect_mult = detect_mult self._sha1_key = sha1_key if bfd_key_id is not None: self._bfd_key_id = bfd_key_id else: self._bfd_key_id = randint(0, 255) self._is_tunnel = is_tunnel @property def test(self): """ Test which created this session """ return self._test @property def interface(self): """ Interface on which this session lives """ return self._interface @property def af(self): """ Address family - AF_INET or AF_INET6 """ return self._af @property def local_addr(self): """ BFD session local address (VPP address) """ if self._local_addr is None: if self.af == AF_INET: return self._interface.local_ip4 elif self.af == AF_INET6: return self._interface.local_ip6 else: raise Exception("Unexpected af '%s'" % self.af) return self._local_addr @property def peer_addr(self): """ BFD session peer address """ return self._peer_addr def get_bfd_udp_session_dump_entry(self): """ get the namedtuple entry from bfd udp session dump """ result = self.test.vapi.bfd_udp_session_dump() for s in result: self.test.logger.debug("session entry: %s" % str(s)) if s.sw_if_index == self.interface.sw_if_index: if self.af == AF_INET \ and self.interface.local_ip4 == str(s.local_addr) \ and self.interface.remote_ip4 == str(s.peer_addr): return s if self.af == AF_INET6 \ and self.interface.local_ip6 == str(s.local_addr) \ and self.interface.remote_ip6 == str(s.peer_addr): return s return None @property def state(self): """ BFD session state """ session = self.get_bfd_udp_session_dump_entry() if session is None: raise Exception("Could not find BFD session in VPP response") return session.state @property def desired_min_tx(self): """ desired minimum tx interval """ return self._desired_min_tx @property def required_min_rx(self): """ required minimum rx interval """ return self._required_min_rx @property def detect_mult(self): """ detect multiplier """ return self._detect_mult @property def sha1_key(self): """ sha1 key """ return self._sha1_key @property def bfd_key_id(self): """ bfd key id in use """ return self._bfd_key_id @property def is_tunnel(self): return self._is_tunnel def activate_auth(self, key, bfd_key_id=None, delayed=False): """ activate authentication for this session """ self._bfd_key_id = bfd_key_id if bfd_key_id else randint(0, 255) self._sha1_key = key conf_key_id = self._sha1_key.conf_key_id is_delayed = 1 if delayed else 0 self.test.vapi.bfd_udp_auth_activate( sw_if_index=self._interface.sw_if_index, local_addr=self.local_addr, peer_addr=self.peer_addr, bfd_key_id=self._bfd_key_id, conf_key_id=conf_key_id, is_delayed=is_delayed) def deactivate_auth(self, delayed=False): """ deactivate authentication """ self._bfd_key_id = None self._sha1_key = None is_delayed = 1 if delayed else 0 self.test.vapi.bfd_udp_auth_deactivate( sw_if_index=self._interface.sw_if_index, local_addr=self.local_addr, peer_addr=self.peer_addr, is_delayed=is_delayed) def modify_parameters(self, detect_mult=None, desired_min_tx=None, required_min_rx=None): """ modify session parameters """ if detect_mult: self._detect_mult = detect_mult if desired_min_tx: self._desired_min_tx = desired_min_tx if required_min_rx: self._required_min_rx = required_min_rx self.test.vapi.bfd_udp_mod(sw_if_index=self._interface.sw_if_index, desired_min_tx=self.desired_min_tx, required_min_rx=self.required_min_rx, detect_mult=self.detect_mult, local_addr=self.local_addr, peer_addr=self.peer_addr) def add_vpp_config(self): bfd_key_id = self._bfd_key_id if self._sha1_key else None conf_key_id = self._sha1_key.conf_key_id if self._sha1_key else None is_authenticated = True if self._sha1_key else False self.test.vapi.bfd_udp_add(sw_if_index=self._interface.sw_if_index, desired_min_tx=self.desired_min_tx, required_min_rx=self.required_min_rx, detect_mult=self.detect_mult, local_addr=self.local_addr, peer_addr=self.peer_addr, bfd_key_id=bfd_key_id, conf_key_id=conf_key_id, is_authenticated=is_authenticated) self._test.registry.register(self, self.test.logger) def query_vpp_config(self): session = self.get_bfd_udp_session_dump_entry() return session is not None def remove_vpp_config(self): self.test.vapi.bfd_udp_del(self._interface.sw_if_index, local_addr=self.local_addr, peer_addr=self.peer_addr) def object_id(self): return "bfd-udp-%s-%s-%s-%s" % (self._interface.sw_if_index, self.local_addr, self.peer_addr, self.af) def admin_up(self): """ set bfd session admin-up """ self.test.vapi.bfd_udp_session_set_flags( flags=VppEnum.vl_api_if_status_flags_t.IF_STATUS_API_FLAG_ADMIN_UP, sw_if_index=self._interface.sw_if_index, local_addr=self.local_addr, peer_addr=self.peer_addr) def admin_down(self): """ set bfd session admin-down """ self.test.vapi.bfd_udp_session_set_flags( flags=0, sw_if_index=self._interface.sw_if_index, local_addr=self.local_addr, peer_addr=self.peer_addr)