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#!/usr/bin/env python

# Copyright (c) 2016 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.

"""This is a helper script to make test execution easy."""

from __future__ import print_function
import sys
import os
import time
from string import ascii_lowercase
from random import sample
import argparse
from pykwalify.core import Core
from pykwalify.errors import PyKwalifyException
from yaml import load
import robot
from robot.errors import DATA_ERROR, DataError, FRAMEWORK_ERROR, FrameworkError
from robot.run import RobotFramework
from robot.conf.settings import RobotSettings
from robot.running.builder import TestSuiteBuilder
from robot.running.model import TestSuite

TOPOLOGIES_DIR = './topologies/enabled/'
TESTS_DIR = './tests'
OUTPUTS_DIR = './outputs'


def get_suite_list(*datasources, **options):
    """Returns filtered test suites based on include exclude tags

    :param datasources: paths to tests
    :param options: Robot Framework options (robot.conf.settings.py)
    :return: list of Robot Framework TestSuites which contain tests
    """
    class _MyRobotFramework(RobotFramework):
        """Custom implementation of RobotFramework main()."""
        def main(self, datasources, **options):
            # copied from robot.run.RobotFramework.main
            settings = RobotSettings(options)
            test_suite = TestSuiteBuilder(settings['SuiteNames'],
                                          settings['WarnOnSkipped'])
            # pylint: disable=star-args
            suite = test_suite.build(*datasources)
            suite.configure(**settings.suite_config)

            return suite

    # get all test cases list without run tests, execute runs overloaded main
    # function
    suite = _MyRobotFramework().execute(*datasources, output=None, dryrun=True,
                                        **options)
    if isinstance(suite, TestSuite):
        suites = []
        suites.append(suite)
        append_new = True
        while append_new:
            append_new = False
            tmp = []
            for suite in suites:
                # pylint: disable=protected-access
                if len(suite.suites._items) > 0:
                    for i in suite.suites._items:
                        tmp.append(i)
                    append_new = True
                else:
                    tmp.append(suite)
            suites = tmp
        return suites
        # TODO: check testcases Tags ? all tests should have same set of tags
    else:
        if suite == DATA_ERROR:
            raise DataError
        if suite == FRAMEWORK_ERROR:
            raise FrameworkError
        return []


def run_suites(tests_dir, suites, output_dir, output_prefix='suite',
               **options):
    """Execute RF's run with parameters."""

    with open('{}/{}.out'.format(output_dir, output_prefix), 'w') as out:
        robot.run(tests_dir,
                  suite=[s.longname for s in suites],
                  output='{}/{}.xml'.format(output_dir, output_prefix),
                  debugfile='{}/{}.log'.format(output_dir, output_prefix),
                  log=None,
                  report=None,
                  stdout=out,
                  **options)


def parse_outputs(output_dir):
    """Parse output xmls from all executed tests."""

    outs = [os.path.join(output_dir, file_name)
            for file_name in os.listdir(output_dir)
            if file_name.endswith('.xml')]
    # pylint: disable=star-args
    robot.rebot(*outs, merge=True)


def topology_lookup(topology_paths, topo_dir, validate):
    """Make topology list and validate topologies against schema

    :param parsed_args: topology list, is empty then scans topologies in
                        topo_dir
    :param topo_dir: scan directory for topologies
    :param validate: if True then validate topology
    :return: list of topologies
    """

    ret_topologies = []
    if topology_paths:
        for topo in topology_paths:
            if os.path.exists(topo):
                ret_topologies.append(topo)
            else:
                print("Topology file {} doesn't exist".format(topo),
                      file=sys.stderr)
    else:
        ret_topologies = [os.path.join(topo_dir, file_name)
                          for file_name in os.listdir(topo_dir)
                          if file_name.lower().endswith('.yaml')]

    if len(ret_topologies) == 0:
        print('No valid topology found', file=sys.stderr)
        exit(1)

    # validate topologies against schema
    exit_on_error = False
    for topology_name in ret_topologies:
        try:
            with open(topology_name) as file_name:
                yaml_obj = load(file_name)
            core = Core(source_file=topology_name,
                        schema_files=yaml_obj["metadata"]["schema"])
            core.validate()
        except PyKwalifyException as ex:
            print('Unable to verify topology {}, schema error: {}'.\
                  format(topology_name, ex),
                  file=sys.stderr)
            exit_on_error = True
        except KeyError as ex:
            print('Unable to verify topology {}, key error: {}'.\
                  format(topology_name, ex),
                  file=sys.stderr)
            exit_on_error = True
        except Exception as ex:
            print('Unable to verify topology {}, {}'.format(topology_name, ex),
                  file=sys.stderr)
            exit_on_error = True

    if exit_on_error and validate:
        exit(1)

    return ret_topologies


def main():
    """Main function."""
    parser = argparse.ArgumentParser(description='A test runner')
    parser.add_argument('-i', '--include', action='append',
                        help='include tests with tag')
    parser.add_argument('-e', '--exclude', action='append',
                        help='exclude tests with tag')
    parser.add_argument('-s', '--suite', action='append',
                        help='full name of suite to run')
    parser.add_argument('-t', '--topology', action='append',
                        help='topology where tests should be run')
    parser.add_argument('-d', '--test_dir', nargs='?', default=TESTS_DIR,
                        help='where tests are stored')
    parser.add_argument('-o', '--output_dir', nargs='?', default=OUTPUTS_DIR,
                        help='where results are stored')
    parser.add_argument('-L', '--loglevel', nargs='?', default='INFO', type=str,
                        choices=['TRACE', 'DEBUG', 'INFO', 'WARN', 'NONE'],
                        help='robot frameworks level for logging')
    parser.add_argument('-n', '--no_validate', action="store_false",
                        help='Do not exit if topology validation failed')

    args = parser.parse_args()

    i = args.include or []
    excl = args.exclude or []
    suite_filter = args.suite or []
    test_dir = args.test_dir

    # prepare output subdir
    suite_output_dir = os.path.join(args.output_dir,
                                    time.strftime('%y%m%d%H%M%S'))
    os.makedirs(suite_output_dir)

    topologies = topology_lookup(args.topology, TOPOLOGIES_DIR,
                                 args.no_validate)
    suite_list = get_suite_list(test_dir, include=i, exclude=excl,
                                suite=suite_filter)

    # TODO: do the topology suite mapping magic
    #       for now all tests on single topology
    if len(topologies) > 1:
        print('Multiple topologies unsupported yet', file=sys.stderr)
        exit(1)
    topology_suite_mapping = {topologies[0]: suite_list}

    # on all topologies, run test
    # TODO: run parallel
    for topology_path, topology_suite_list in topology_suite_mapping.items():
        topology_path_variable = 'TOPOLOGY_PATH:{}'.format(topology_path)
        variables = [topology_path_variable]
        print('Runing tests on topology {}'.format(topology_path))
        run_suites(test_dir, topology_suite_list, variable=variables,
                   output_dir=suite_output_dir,
                   output_prefix=''.join(sample(ascii_lowercase, 5)),
                   include=i, exclude=excl, loglevel=args.loglevel)

    print('Parsing test results')
    parse_outputs(suite_output_dir)


if __name__ == "__main__":
    main()
d_rewrite) (struct vnet_main_t * vnm, u32 sw_if_index, vnet_link_t link_type, const void *dst_hw_address); /* Update an adjacecny added by FIB (as opposed to via the * neighbour resolution protocol). */ void (*update_adjacency) (struct vnet_main_t * vnm, u32 sw_if_index, u32 adj_index); uword (*is_valid_class_for_interface) (struct vnet_main_t * vnm, u32 hw_if_index, u32 hw_class_index); /* Called when hw interface class is changed and old hardware instance may want to be deleted. */ void (*hw_class_change) (struct vnet_main_t * vnm, u32 hw_if_index, u32 old_class_index, u32 new_class_index); /* List of hw interface classes, built by constructors */ struct _vnet_hw_interface_class *next_class_registration; } vnet_hw_interface_class_t; /** * @brief Return a complete, zero-length (aka dummy) rewrite */ extern u8 *default_build_rewrite (struct vnet_main_t *vnm, u32 sw_if_index, vnet_link_t link_type, const void *dst_hw_address); /** * @brief Default adjacency update function */ extern void default_update_adjacency (struct vnet_main_t *vnm, u32 sw_if_index, u32 adj_index); #define VNET_HW_INTERFACE_CLASS(x,...) \ __VA_ARGS__ vnet_hw_interface_class_t x; \ static void __vnet_add_hw_interface_class_registration_##x (void) \ __attribute__((__constructor__)) ; \ static void __vnet_add_hw_interface_class_registration_##x (void) \ { \ vnet_main_t * vnm = vnet_get_main(); \ x.next_class_registration = vnm->hw_interface_class_registrations; \ vnm->hw_interface_class_registrations = &x; \ } \ __VA_ARGS__ vnet_hw_interface_class_t x /* Hardware-interface. This corresponds to a physical wire that packets flow over. */ typedef struct vnet_hw_interface_t { /* Interface name. */ u8 *name; u32 flags; /* Hardware link state is up. */ #define VNET_HW_INTERFACE_FLAG_LINK_UP (1 << 0) /* Hardware duplex state */ #define VNET_HW_INTERFACE_FLAG_DUPLEX_SHIFT 1 #define VNET_HW_INTERFACE_FLAG_HALF_DUPLEX (1 << 1) #define VNET_HW_INTERFACE_FLAG_FULL_DUPLEX (1 << 2) #define VNET_HW_INTERFACE_FLAG_DUPLEX_MASK \ (VNET_HW_INTERFACE_FLAG_HALF_DUPLEX | \ VNET_HW_INTERFACE_FLAG_FULL_DUPLEX) /* Hardware link speed */ #define VNET_HW_INTERFACE_FLAG_SPEED_SHIFT 3 #define VNET_HW_INTERFACE_FLAG_SPEED_10M (1 << 3) #define VNET_HW_INTERFACE_FLAG_SPEED_100M (1 << 4) #define VNET_HW_INTERFACE_FLAG_SPEED_1G (1 << 5) #define VNET_HW_INTERFACE_FLAG_SPEED_10G (1 << 6) #define VNET_HW_INTERFACE_FLAG_SPEED_40G (1 << 7) #define VNET_HW_INTERFACE_FLAG_SPEED_100G (1 << 8) #define VNET_HW_INTERFACE_FLAG_SPEED_MASK \ (VNET_HW_INTERFACE_FLAG_SPEED_10M | \ VNET_HW_INTERFACE_FLAG_SPEED_100M | \ VNET_HW_INTERFACE_FLAG_SPEED_1G | \ VNET_HW_INTERFACE_FLAG_SPEED_10G | \ VNET_HW_INTERFACE_FLAG_SPEED_40G | \ VNET_HW_INTERFACE_FLAG_SPEED_100G) /* l2output node flags */ #define VNET_HW_INTERFACE_FLAG_L2OUTPUT_SHIFT 9 #define VNET_HW_INTERFACE_FLAG_L2OUTPUT_MAPPED (1 << 9) /* Hardware address as vector. Zero (e.g. zero-length vector) if no address for this class (e.g. PPP). */ u8 *hw_address; /* Interface is up as far as software is concerned. */ /* NAME.{output,tx} nodes for this interface. */ u32 output_node_index, tx_node_index; /* (dev_class, dev_instance) uniquely identifies hw interface. */ u32 dev_class_index; u32 dev_instance; /* (hw_class, hw_instance) uniquely identifies hw interface. */ u32 hw_class_index; u32 hw_instance; /* Hardware index for this hardware interface. */ u32 hw_if_index; /* Software index for this hardware interface. */ u32 sw_if_index; /* Maximum transmit rate for this interface in bits/sec. */ f64 max_rate_bits_per_sec; /* Smallest packet size supported by this interface. */ u32 min_supported_packet_bytes; /* Largest packet size supported by this interface. */ u32 max_supported_packet_bytes; /* Smallest packet size for this interface. */ u32 min_packet_bytes; /* Largest packet size for this interface. */ u32 max_packet_bytes; /* Number of extra bytes that go on the wire. Packet length on wire = max (length + per_packet_overhead_bytes, min_packet_bytes). */ u32 per_packet_overhead_bytes; /* Receive and transmit layer 3 packet size limits (MRU/MTU). */ u32 max_l3_packet_bytes[VLIB_N_RX_TX]; /* Hash table mapping sub interface id to sw_if_index. */ uword *sub_interface_sw_if_index_by_id; /* Count of number of L2 subinterfaces */ u32 l2_if_count; /* Bonded interface info - 0 - not a bonded interface nor a slave ~0 - slave to a bonded interface others - A bonded interface with a pointer to bitmap for all slaves */ uword *bond_info; #define VNET_HW_INTERFACE_BOND_INFO_NONE ((uword *) 0) #define VNET_HW_INTERFACE_BOND_INFO_SLAVE ((uword *) ~0) /* Input node */ u32 input_node_index; /* input node cpu index by queue */ u32 *input_node_thread_index_by_queue; } vnet_hw_interface_t; extern vnet_device_class_t vnet_local_interface_device_class; typedef enum { /* A hw interface. */ VNET_SW_INTERFACE_TYPE_HARDWARE, /* A sub-interface. */ VNET_SW_INTERFACE_TYPE_SUB, } vnet_sw_interface_type_t; typedef struct { /* * Subinterface ID. A number 0-N to uniquely identify * this subinterface under the main (parent?) interface */ u32 id; /* Classification data. Used to associate packet header with subinterface. */ struct { u16 outer_vlan_id; u16 inner_vlan_id; union { u16 raw_flags; struct { u16 no_tags:1; u16 one_tag:1; u16 two_tags:1; u16 dot1ad:1; /* 0 = dot1q, 1=dot1ad */ u16 exact_match:1; u16 default_sub:1; u16 outer_vlan_id_any:1; u16 inner_vlan_id_any:1; } flags; }; } eth; } vnet_sub_interface_t; typedef enum { /* Always flood */ VNET_FLOOD_CLASS_NORMAL, VNET_FLOOD_CLASS_TUNNEL_MASTER, /* Does not flood when tunnel master is in the same L2 BD */ VNET_FLOOD_CLASS_TUNNEL_NORMAL } vnet_flood_class_t; /* Software-interface. This corresponds to a Ethernet VLAN, ATM vc, a tunnel, etc. Configuration (e.g. IP address) gets attached to software interface. */ typedef struct { vnet_sw_interface_type_t type:16; u16 flags; /* Interface is "up" meaning adminstratively up. Up in the sense of link state being up is maintained by hardware interface. */ #define VNET_SW_INTERFACE_FLAG_ADMIN_UP (1 << 0) /* Interface is disabled for forwarding: punt all traffic to slow-path. */ #define VNET_SW_INTERFACE_FLAG_PUNT (1 << 1) #define VNET_SW_INTERFACE_FLAG_PROXY_ARP (1 << 2) #define VNET_SW_INTERFACE_FLAG_UNNUMBERED (1 << 3) #define VNET_SW_INTERFACE_FLAG_BOND_SLAVE (1 << 4) /* Interface does not appear in CLI/API */ #define VNET_SW_INTERFACE_FLAG_HIDDEN (1 << 5) /* Index for this interface. */ u32 sw_if_index; /* Software interface index of super-interface; equal to sw_if_index if this interface is not a sub-interface. */ u32 sup_sw_if_index; /* this swif is unnumbered, use addresses on unnumbered_sw_if_index... */ u32 unnumbered_sw_if_index; u32 link_speed; union { /* VNET_SW_INTERFACE_TYPE_HARDWARE. */ u32 hw_if_index; /* VNET_SW_INTERFACE_TYPE_SUB. */ vnet_sub_interface_t sub; }; vnet_flood_class_t flood_class; } vnet_sw_interface_t; typedef enum { /* Simple counters. */ VNET_INTERFACE_COUNTER_DROP = 0, VNET_INTERFACE_COUNTER_PUNT = 1, VNET_INTERFACE_COUNTER_IP4 = 2, VNET_INTERFACE_COUNTER_IP6 = 3, VNET_INTERFACE_COUNTER_RX_NO_BUF = 4, VNET_INTERFACE_COUNTER_RX_MISS = 5, VNET_INTERFACE_COUNTER_RX_ERROR = 6, VNET_INTERFACE_COUNTER_TX_ERROR = 7, VNET_INTERFACE_COUNTER_MPLS = 8, VNET_N_SIMPLE_INTERFACE_COUNTER = 9, /* Combined counters. */ VNET_INTERFACE_COUNTER_RX = 0, VNET_INTERFACE_COUNTER_TX = 1, VNET_N_COMBINED_INTERFACE_COUNTER = 2, } vnet_interface_counter_type_t; typedef struct { u32 output_node_index; u32 tx_node_index; } vnet_hw_interface_nodes_t; typedef struct { /* Hardware interfaces. */ vnet_hw_interface_t *hw_interfaces; /* Hash table mapping HW interface name to index. */ uword *hw_interface_by_name; /* Vectors if hardware interface classes and device classes. */ vnet_hw_interface_class_t *hw_interface_classes; vnet_device_class_t *device_classes; /* Hash table mapping name to hw interface/device class. */ uword *hw_interface_class_by_name; uword *device_class_by_name; /* Software interfaces. */ vnet_sw_interface_t *sw_interfaces; /* Hash table mapping sub intfc sw_if_index by sup sw_if_index and sub id */ uword *sw_if_index_by_sup_and_sub; /* Software interface counters both simple and combined packet and byte counters. */ volatile u32 *sw_if_counter_lock; vlib_simple_counter_main_t *sw_if_counters; vlib_combined_counter_main_t *combined_sw_if_counters; vnet_hw_interface_nodes_t *deleted_hw_interface_nodes; /* pcap drop tracing */ int drop_pcap_enable; pcap_main_t pcap_main; u8 *pcap_filename; u32 pcap_sw_if_index; u32 pcap_pkts_to_capture; uword *pcap_drop_filter_hash; /* feature_arc_index */ u8 output_feature_arc_index; } vnet_interface_main_t; static inline void vnet_interface_counter_lock (vnet_interface_main_t * im) { if (im->sw_if_counter_lock) while (__sync_lock_test_and_set (im->sw_if_counter_lock, 1)) /* zzzz */ ; } static inline void vnet_interface_counter_unlock (vnet_interface_main_t * im) { if (im->sw_if_counter_lock) *im->sw_if_counter_lock = 0; } void vnet_pcap_drop_trace_filter_add_del (u32 error_index, int is_add); int vnet_interface_name_renumber (u32 sw_if_index, u32 new_show_dev_instance); #endif /* included_vnet_interface_h */ /* * fd.io coding-style-patch-verification: ON * * Local Variables: * eval: (c-set-style "gnu") * End: */