aboutsummaryrefslogtreecommitdiffstats
path: root/resources/tools/presentation/input_data_files.py
blob: 8b941f2f94849712534c5d0772ce88be2ce21549 (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
273
274
275
276
277
278
279
280
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
# Copyright (c) 2020 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.

"""Inputs
Download all data.
"""

import re
import logging
import gzip

from os import rename, mkdir
from os.path import join
from http.client import responses
from zipfile import ZipFile, is_zipfile, BadZipfile

import requests

from requests.adapters import HTTPAdapter, Retry
from requests.exceptions import RequestException
from requests import codes

from pal_errors import PresentationError


# Chunk size used for file download
CHUNK_SIZE = 512

# Separator used in file names
SEPARATOR = u"__"

REGEX_RELEASE = re.compile(r'(\D*)(\d{4}|master)(\D*)')


def _download_file(url, file_name, arch=False):
    """Download a file with input data.

    :param url: URL to the file to download.
    :param file_name: Name of file to download.
    :param arch: If True, also .gz file is downloaded
    :type url: str
    :type file_name: str
    :type arch: bool
    :returns: True if the download was successful, otherwise False.
    :rtype: bool
    """

    def requests_retry_session(retries=3,
                               backoff_factor=0.3,
                               status_forcelist=(500, 502, 504)):
        """

        :param retries: Total number of retries to allow.
        :param backoff_factor: A backoff factor to apply between attempts after
            the second try.
        :param status_forcelist: A set of integer HTTP status codes that are
            forced to retry.
        :type retries: int
        :type backoff_factor: float
        :type status_forcelist: iterable
        :returns: Session object.
        :rtype: requests.Session
        """

        retry = Retry(
            total=retries,
            read=retries,
            connect=retries,
            backoff_factor=backoff_factor,
            status_forcelist=status_forcelist,
        )
        adapter = HTTPAdapter(max_retries=retry)
        session = requests.Session()
        session.mount(u"http://", adapter)
        session.mount(u"https://", adapter)
        return session

    success = False
    session = None
    try:
        logging.info(f"    Connecting to {url} ...")
        session = requests_retry_session()
        response = session.get(url, stream=True)
        code = response.status_code
        logging.info(f"    {code}: {responses[code]}")

        if code != codes[u"OK"]:
            if session:
                session.close()
            url = url.replace(u"_info", u"")
            logging.info(f"    Connecting to {url} ...")
            session = requests_retry_session()
            response = session.get(url, stream=True)
            code = response.status_code
            logging.info(f"    {code}: {responses[code]}")
            if code != codes[u"OK"]:
                return False, file_name
            file_name = file_name.replace(u"_info", u"")

        dst_file_name = file_name.replace(u".gz", u"")
        logging.info(f"    Downloading the file {url} to {dst_file_name} ...")
        with open(dst_file_name, u"wb") as file_handle:
            for chunk in response.iter_content(chunk_size=CHUNK_SIZE):
                if chunk:
                    file_handle.write(chunk)

        if arch and u".gz" in file_name:
            if session:
                session.close()
            logging.info(f"    Downloading the file {url} to {file_name} ...")
            session = requests_retry_session()
            response = session.get(url, stream=True)
            if response.status_code == codes[u"OK"]:
                with open(file_name, u"wb") as file_handle:
                    file_handle.write(response.raw.read())
            else:
                logging.error(
                    f"Not possible to download the file {url} to {file_name}"
                )

        success = True
    except RequestException as err:
        logging.error(f"HTTP Request exception:\n{repr(err)}")
    except (IOError, ValueError, KeyError) as err:
        logging.error(f"Download failed.\n{repr(err)}")
    finally:
        if session:
            session.close()

    logging.info(u"    Download finished.")
    return success, file_name


def _unzip_file(spec, build, pid):
    """Unzip downloaded source file.

    :param spec: Specification read form the specification file.
    :param build: Information about the build.
    :type spec: Specification
    :type build: dict
    :returns: True if the download was successful, otherwise False.
    :rtype: bool
    """

    file_name = build[u"file-name"]
    if u".zip" in file_name:
        data_file = spec.input[u"zip-extract"]
    else:
        data_file = spec.input[u"extract"]

    directory = spec.environment[u"paths"][u"DIR[WORKING,DATA]"]
    tmp_dir = join(directory, str(pid))
    try:
        mkdir(tmp_dir)
    except OSError:
        pass
    new_name = \
        f"{file_name.rsplit(u'.')[-2]}{SEPARATOR}{data_file.split(u'/')[-1]}"

    logging.info(f"    Unzipping: {data_file} from {file_name}.")
    try:
        with ZipFile(file_name, u'r') as zip_file:
            zip_file.extract(data_file, tmp_dir)
        logging.info(
            f"    Renaming the file {join(tmp_dir, data_file)} to {new_name}"
        )
        rename(join(tmp_dir, data_file), new_name)
        build[u"file-name"] = new_name
        return True
    except (BadZipfile, RuntimeError) as err:
        logging.error(f"Failed to unzip the file {file_name}: {repr(err)}.")
        return False
    except OSError as err:
        logging.error(f"Failed to rename the file {data_file}: {repr(err)}.")
        return False


def download_and_unzip_data_file(spec, job, build, pid):
    """Download and unzip a source file.

    :param spec: Specification read form the specification file.
    :param job: Name of the Jenkins job.
    :param build: Information about the build.
    :param pid: PID of the process executing this method.
    :type spec: Specification
    :type job: str
    :type build: dict
    :type pid: int
    :returns: True if the download was successful, otherwise False.
    :rtype: bool
    """

    # Try to download .gz from logs.fd.io

    file_name = spec.input[u"file-name"]
    url = u"{0}/{1}".format(
        spec.environment[u'urls'][u'URL[NEXUS,LOG]'],
        spec.input[u'download-path'].format(
            job=job, build=build[u'build'], filename=file_name
        )
    )
    new_name = join(
        spec.environment[u"paths"][u"DIR[WORKING,DATA]"],
        f"{job}{SEPARATOR}{build[u'build']}{SEPARATOR}{file_name}"
    )

    logging.info(f"Trying to download {url}")

    arch = bool(spec.configuration.get(u"archive-inputs", True))
    success, downloaded_name = _download_file(url, new_name, arch=arch)

    if not success:

        # Try to download .gz or .zip from docs.fd.io
        file_name = (spec.input[u"file-name"], spec.input[u"zip-file-name"])
        release = re.search(REGEX_RELEASE, job).group(2)
        for idx, rls in enumerate((release, u"master", )):
            try:
                rls = f"rls{int(rls)}"
            except ValueError:
                # It is master
                pass
            url = (
                f"{spec.environment[u'urls'][u'URL[NEXUS,DOC]']}/"
                f"{rls}/"
                f"{spec.environment[u'urls'][u'DIR[NEXUS,DOC]']}/"
                f"{job}{SEPARATOR}{build[u'build']}{SEPARATOR}{file_name[idx]}"
            )

            logging.info(f"Downloading {url}")

            new_name = join(
                spec.environment[u"paths"][u"DIR[WORKING,DATA]"],
                f"{job}{SEPARATOR}{build[u'build']}{SEPARATOR}{file_name[idx]}"
            )
            success, downloaded_name = _download_file(url, new_name, arch=arch)
            if success:
                file_name = file_name[idx]
                if file_name.endswith(u".gz"):
                    with gzip.open(downloaded_name[:-3], u"rb") as gzip_file:
                        file_content = gzip_file.read()
                    with open(downloaded_name[:-3], u"wb") as xml_file:
                        xml_file.write(file_content)
                break

    if not success:

        # Try to download .zip from jenkins.fd.io
        file_name = spec.input[u"zip-file-name"]
        download_path = spec.input[u"zip-download-path"]
        if job.startswith(u"csit-"):
            url = spec.environment[u"urls"][u"URL[JENKINS,CSIT]"]
        elif job.startswith(u"hc2vpp-"):
            url = spec.environment[u"urls"][u"URL[JENKINS,HC]"]
        else:
            raise PresentationError(f"No url defined for the job {job}.")

        full_name = download_path.format(
            job=job, build=build[u"build"], filename=file_name
        )
        url = u"{0}/{1}".format(url, full_name)
        new_name = join(
            spec.environment[u"paths"][u"DIR[WORKING,DATA]"],
            f"{job}{SEPARATOR}{build[u'build']}{SEPARATOR}{file_name}"
        )

        logging.info(f"Downloading {url}")

        success, downloaded_name = _download_file(url, new_name)

    if success and downloaded_name.endswith(u".zip"):
        if not is_zipfile(downloaded_name):
            logging.error(f"Zip file {new_name} is corrupted.")
            success = False

    if success:
        build[u"file-name"] = downloaded_name

        if file_name.endswith(u".gz"):
            build[u"file-name"] = downloaded_name[:-3]

        if downloaded_name.endswith(u".zip"):
            success = _unzip_file(spec, build, pid)

    return success
an> / 2); ASSERT (fifo_size >= 4096); update_size = clib_min (update_size, fifo_size - 4096); if (update_size) svm_fifo_set_size (f, fifo_size - update_size); } return 0; } static int proxy_accept_callback (session_t * s) { proxy_main_t *pm = &proxy_main; proxy_session_t *ps; clib_spinlock_lock_if_init (&pm->sessions_lock); pool_get_zero (pm->sessions, ps); ps->vpp_server_handle = session_handle (s); ps->vpp_active_open_handle = SESSION_INVALID_HANDLE; hash_set (pm->proxy_session_by_server_handle, ps->vpp_server_handle, ps - pm->sessions); clib_spinlock_unlock_if_init (&pm->sessions_lock); s->session_state = SESSION_STATE_READY; return 0; } static void proxy_disconnect_callback (session_t * s) { proxy_try_close_session (s, 0 /* is_active_open */ ); } static void proxy_reset_callback (session_t * s) { proxy_try_close_session (s, 0 /* is_active_open */ ); } static int proxy_connected_callback (u32 app_index, u32 api_context, session_t * s, session_error_t err) { clib_warning ("called..."); return -1; } static int proxy_add_segment_callback (u32 client_index, u64 segment_handle) { clib_warning ("called..."); return -1; } static int proxy_rx_callback (session_t * s) { proxy_main_t *pm = &proxy_main; u32 thread_index = vlib_get_thread_index (); svm_fifo_t *ao_tx_fifo; proxy_session_t *ps; ASSERT (s->thread_index == thread_index); clib_spinlock_lock_if_init (&pm->sessions_lock); ps = proxy_get_passive_open (pm, session_handle (s)); ASSERT (ps != 0); if (PREDICT_TRUE (ps->vpp_active_open_handle != SESSION_INVALID_HANDLE)) { clib_spinlock_unlock_if_init (&pm->sessions_lock); ao_tx_fifo = s->rx_fifo; /* * Send event for active open tx fifo */ if (svm_fifo_set_event (ao_tx_fifo)) { u32 ao_thread_index = ao_tx_fifo->master_thread_index; u32 ao_session_index = ao_tx_fifo->shr->master_session_index; if (session_send_io_evt_to_thread_custom (&ao_session_index, ao_thread_index, SESSION_IO_EVT_TX)) clib_warning ("failed to enqueue tx evt"); } if (svm_fifo_max_enqueue (ao_tx_fifo) <= TCP_MSS) svm_fifo_add_want_deq_ntf (ao_tx_fifo, SVM_FIFO_WANT_DEQ_NOTIF); } else { vnet_connect_args_t _a, *a = &_a; svm_fifo_t *tx_fifo, *rx_fifo; u32 max_dequeue, proxy_index; int actual_transfer __attribute__ ((unused)); rx_fifo = s->rx_fifo; tx_fifo = s->tx_fifo; ASSERT (rx_fifo->master_thread_index == thread_index); ASSERT (tx_fifo->master_thread_index == thread_index); max_dequeue = svm_fifo_max_dequeue_cons (s->rx_fifo); if (PREDICT_FALSE (max_dequeue == 0)) return 0; max_dequeue = clib_min (pm->rcv_buffer_size, max_dequeue); actual_transfer = svm_fifo_peek (rx_fifo, 0 /* relative_offset */ , max_dequeue, pm->rx_buf[thread_index]); /* $$$ your message in this space: parse url, etc. */ clib_memset (a, 0, sizeof (*a)); ps->server_rx_fifo = rx_fifo; ps->server_tx_fifo = tx_fifo; ps->active_open_establishing = 1; proxy_index = ps - pm->sessions; clib_spinlock_unlock_if_init (&pm->sessions_lock); a->uri = (char *) pm->client_uri; a->api_context = proxy_index; a->app_index = pm->active_open_app_index; proxy_call_main_thread (a); } return 0; } static void proxy_force_ack (void *handlep) { transport_connection_t *tc; session_t *ao_s; ao_s = session_get_from_handle (pointer_to_uword (handlep)); tc = session_get_transport (ao_s); tcp_send_ack ((tcp_connection_t *) tc); } static int proxy_tx_callback (session_t * proxy_s) { proxy_main_t *pm = &proxy_main; proxy_session_t *ps; u32 min_free; min_free = clib_min (svm_fifo_size (proxy_s->tx_fifo) >> 3, 128 << 10); if (svm_fifo_max_enqueue (proxy_s->tx_fifo) < min_free) { svm_fifo_add_want_deq_ntf (proxy_s->tx_fifo, SVM_FIFO_WANT_DEQ_NOTIF); return 0; } clib_spinlock_lock_if_init (&pm->sessions_lock); ps = proxy_get_passive_open (pm, session_handle (proxy_s)); ASSERT (ps != 0); if (ps->vpp_active_open_handle == SESSION_INVALID_HANDLE) return 0; /* Force ack on active open side to update rcv wnd. Make sure it's done on * the right thread */ void *arg = uword_to_pointer (ps->vpp_active_open_handle, void *); session_send_rpc_evt_to_thread (ps->server_rx_fifo->master_thread_index, proxy_force_ack, arg); clib_spinlock_unlock_if_init (&pm->sessions_lock); return 0; } static void proxy_cleanup_callback (session_t * s, session_cleanup_ntf_t ntf) { if (ntf == SESSION_CLEANUP_TRANSPORT) return; proxy_try_delete_session (s, 0 /* is_active_open */ ); } static session_cb_vft_t proxy_session_cb_vft = { .session_accept_callback = proxy_accept_callback, .session_disconnect_callback = proxy_disconnect_callback, .session_connected_callback = proxy_connected_callback, .add_segment_callback = proxy_add_segment_callback, .builtin_app_rx_callback = proxy_rx_callback, .builtin_app_tx_callback = proxy_tx_callback, .session_reset_callback = proxy_reset_callback, .session_cleanup_callback = proxy_cleanup_callback, .fifo_tuning_callback = common_fifo_tuning_callback }; static int active_open_connected_callback (u32 app_index, u32 opaque, session_t * s, session_error_t err) { proxy_main_t *pm = &proxy_main; proxy_session_t *ps; u8 thread_index = vlib_get_thread_index (); /* * Setup proxy session handle. */ clib_spinlock_lock_if_init (&pm->sessions_lock); ps = pool_elt_at_index (pm->sessions, opaque); /* Connection failed */ if (err) { vnet_disconnect_args_t _a, *a = &_a; a->handle = ps->vpp_server_handle; a->app_index = pm->server_app_index; vnet_disconnect_session (a); ps->po_disconnected = 1; } else { ps->vpp_active_open_handle = session_handle (s); ps->active_open_establishing = 0; } /* Passive open session was already closed! */ if (ps->po_disconnected) { /* Setup everything for the cleanup notification */ hash_set (pm->proxy_session_by_active_open_handle, ps->vpp_active_open_handle, opaque); ps->ao_disconnected = 1; clib_spinlock_unlock_if_init (&pm->sessions_lock); return -1; } s->tx_fifo = ps->server_rx_fifo; s->rx_fifo = ps->server_tx_fifo; /* * Reset the active-open tx-fifo master indices so the active-open session * will receive data, etc. */ s->tx_fifo->shr->master_session_index = s->session_index; s->tx_fifo->master_thread_index = s->thread_index; /* * Account for the active-open session's use of the fifos * so they won't disappear until the last session which uses * them disappears */ s->tx_fifo->refcnt++; s->rx_fifo->refcnt++; hash_set (pm->proxy_session_by_active_open_handle, ps->vpp_active_open_handle, opaque); clib_spinlock_unlock_if_init (&pm->sessions_lock); /* * Send event for active open tx fifo */ ASSERT (s->thread_index == thread_index); if (svm_fifo_set_event (s->tx_fifo)) session_send_io_evt_to_thread (s->tx_fifo, SESSION_IO_EVT_TX); return 0; } static void active_open_reset_callback (session_t * s) { proxy_try_close_session (s, 1 /* is_active_open */ ); } static int active_open_create_callback (session_t * s) { return 0; } static void active_open_disconnect_callback (session_t * s) { proxy_try_close_session (s, 1 /* is_active_open */ ); } static int active_open_rx_callback (session_t * s) { svm_fifo_t *proxy_tx_fifo; proxy_tx_fifo = s->rx_fifo; /* * Send event for server tx fifo */ if (svm_fifo_set_event (proxy_tx_fifo)) { u8 thread_index = proxy_tx_fifo->master_thread_index; u32 session_index = proxy_tx_fifo->shr->master_session_index; return session_send_io_evt_to_thread_custom (&session_index, thread_index, SESSION_IO_EVT_TX); } if (svm_fifo_max_enqueue (proxy_tx_fifo) <= TCP_MSS) svm_fifo_add_want_deq_ntf (proxy_tx_fifo, SVM_FIFO_WANT_DEQ_NOTIF); return 0; } static int active_open_tx_callback (session_t * ao_s) { proxy_main_t *pm = &proxy_main; transport_connection_t *tc; session_handle_t handle; proxy_session_t *ps; session_t *proxy_s; u32 min_free; uword *p; min_free = clib_min (svm_fifo_size (ao_s->tx_fifo) >> 3, 128 << 10); if (svm_fifo_max_enqueue (ao_s->tx_fifo) < min_free) { svm_fifo_add_want_deq_ntf (ao_s->tx_fifo, SVM_FIFO_WANT_DEQ_NOTIF); return 0; } clib_spinlock_lock_if_init (&pm->sessions_lock); handle = session_handle (ao_s); p = hash_get (pm->proxy_session_by_active_open_handle, handle); if (!p) return 0; if (pool_is_free_index (pm->sessions, p[0])) return 0; ps = pool_elt_at_index (pm->sessions, p[0]); if (ps->vpp_server_handle == ~0) return 0; proxy_s = session_get_from_handle (ps->vpp_server_handle); /* Force ack on proxy side to update rcv wnd */ tc = session_get_transport (proxy_s); tcp_send_ack ((tcp_connection_t *) tc); clib_spinlock_unlock_if_init (&pm->sessions_lock); return 0; } static void active_open_cleanup_callback (session_t * s, session_cleanup_ntf_t ntf) { if (ntf == SESSION_CLEANUP_TRANSPORT) return; proxy_try_delete_session (s, 1 /* is_active_open */ ); } /* *INDENT-OFF* */ static session_cb_vft_t active_open_clients = { .session_reset_callback = active_open_reset_callback, .session_connected_callback = active_open_connected_callback, .session_accept_callback = active_open_create_callback, .session_disconnect_callback = active_open_disconnect_callback, .session_cleanup_callback = active_open_cleanup_callback, .builtin_app_rx_callback = active_open_rx_callback, .builtin_app_tx_callback = active_open_tx_callback, .fifo_tuning_callback = common_fifo_tuning_callback }; /* *INDENT-ON* */ static int proxy_server_attach () { proxy_main_t *pm = &proxy_main; u64 options[APP_OPTIONS_N_OPTIONS]; vnet_app_attach_args_t _a, *a = &_a; u32 segment_size = 512 << 20; clib_memset (a, 0, sizeof (*a)); clib_memset (options, 0, sizeof (options)); if (pm->private_segment_size) segment_size = pm->private_segment_size; a->name = format (0, "proxy-server"); a->api_client_index = pm->server_client_index; a->session_cb_vft = &proxy_session_cb_vft; a->options = options; a->options[APP_OPTIONS_SEGMENT_SIZE] = segment_size; a->options[APP_OPTIONS_RX_FIFO_SIZE] = pm->fifo_size; a->options[APP_OPTIONS_TX_FIFO_SIZE] = pm->fifo_size; a->options[APP_OPTIONS_MAX_FIFO_SIZE] = pm->max_fifo_size; a->options[APP_OPTIONS_HIGH_WATERMARK] = (u64) pm->high_watermark; a->options[APP_OPTIONS_LOW_WATERMARK] = (u64) pm->low_watermark; a->options[APP_OPTIONS_PRIVATE_SEGMENT_COUNT] = pm->private_segment_count; a->options[APP_OPTIONS_PREALLOC_FIFO_PAIRS] = pm->prealloc_fifos ? pm->prealloc_fifos : 0; a->options[APP_OPTIONS_FLAGS] = APP_OPTIONS_FLAGS_IS_BUILTIN; if (vnet_application_attach (a)) { clib_warning ("failed to attach server"); return -1; } pm->server_app_index = a->app_index; vec_free (a->name); return 0; } static int active_open_attach (void) { proxy_main_t *pm = &proxy_main; vnet_app_attach_args_t _a, *a = &_a; u64 options[APP_OPTIONS_N_OPTIONS]; clib_memset (a, 0, sizeof (*a)); clib_memset (options, 0, sizeof (options)); a->api_client_index = pm->active_open_client_index; a->session_cb_vft = &active_open_clients; a->name = format (0, "proxy-active-open"); options[APP_OPTIONS_ACCEPT_COOKIE] = 0x12345678; options[APP_OPTIONS_SEGMENT_SIZE] = 512 << 20; options[APP_OPTIONS_RX_FIFO_SIZE] = pm->fifo_size; options[APP_OPTIONS_TX_FIFO_SIZE] = pm->fifo_size; options[APP_OPTIONS_MAX_FIFO_SIZE] = pm->max_fifo_size; options[APP_OPTIONS_HIGH_WATERMARK] = (u64) pm->high_watermark; options[APP_OPTIONS_LOW_WATERMARK] = (u64) pm->low_watermark; options[APP_OPTIONS_PRIVATE_SEGMENT_COUNT] = pm->private_segment_count; options[APP_OPTIONS_PREALLOC_FIFO_PAIRS] = pm->prealloc_fifos ? pm->prealloc_fifos : 0; options[APP_OPTIONS_FLAGS] = APP_OPTIONS_FLAGS_IS_BUILTIN | APP_OPTIONS_FLAGS_IS_PROXY; a->options = options; if (vnet_application_attach (a)) return -1; pm->active_open_app_index = a->app_index; vec_free (a->name); return 0; } static int proxy_server_listen () { proxy_main_t *pm = &proxy_main; vnet_listen_args_t _a, *a = &_a; clib_memset (a, 0, sizeof (*a)); a->app_index = pm->server_app_index; a->uri = (char *) pm->server_uri; return vnet_bind_uri (a); } static int proxy_server_create (vlib_main_t * vm) { proxy_main_t *pm = &proxy_main; vlib_thread_main_t *vtm = vlib_get_thread_main (); u32 num_threads; int i; num_threads = 1 /* main thread */ + vtm->n_threads; vec_validate (proxy_main.server_event_queue, num_threads - 1); vec_validate (proxy_main.active_open_event_queue, num_threads - 1); vec_validate (pm->rx_buf, num_threads - 1); for (i = 0; i < num_threads; i++) vec_validate (pm->rx_buf[i], pm->rcv_buffer_size); if (proxy_server_attach ()) { clib_warning ("failed to attach server app"); return -1; } if (proxy_server_listen ()) { clib_warning ("failed to start listening"); return -1; } if (active_open_attach ()) { clib_warning ("failed to attach active open app"); return -1; } for (i = 0; i < num_threads; i++) { pm->active_open_event_queue[i] = session_main_get_vpp_event_queue (i); ASSERT (pm->active_open_event_queue[i]); pm->server_event_queue[i] = session_main_get_vpp_event_queue (i); } return 0; } static clib_error_t * proxy_server_create_command_fn (vlib_main_t * vm, unformat_input_t * input, vlib_cli_command_t * cmd) { proxy_main_t *pm = &proxy_main; char *default_server_uri = "tcp://0.0.0.0/23"; char *default_client_uri = "tcp://6.0.2.2/23"; int rv, tmp32; u64 tmp64; pm->fifo_size = 64 << 10; pm->max_fifo_size = 128 << 20; pm->high_watermark = 80; pm->low_watermark = 50; pm->rcv_buffer_size = 1024; pm->prealloc_fifos = 0; pm->private_segment_count = 0; pm->private_segment_size = 0; pm->server_uri = 0; pm->client_uri = 0; if (vlib_num_workers ()) clib_spinlock_init (&pm->sessions_lock); while (unformat_check_input (input) != UNFORMAT_END_OF_INPUT) { if (unformat (input, "fifo-size %U", unformat_memory_size, &pm->fifo_size)) ; else if (unformat (input, "max-fifo-size %U", unformat_memory_size, &pm->max_fifo_size)) ; else if (unformat (input, "high-watermark %d", &tmp32)) pm->high_watermark = (u8) tmp32; else if (unformat (input, "low-watermark %d", &tmp32)) pm->low_watermark = (u8) tmp32; else if (unformat (input, "rcv-buf-size %d", &pm->rcv_buffer_size)) ; else if (unformat (input, "prealloc-fifos %d", &pm->prealloc_fifos)) ; else if (unformat (input, "private-segment-count %d", &pm->private_segment_count)) ; else if (unformat (input, "private-segment-size %U", unformat_memory_size, &tmp64)) { if (tmp64 >= 0x100000000ULL) return clib_error_return (0, "private segment size %lld (%llu) too large", tmp64, tmp64); pm->private_segment_size = tmp64; } else if (unformat (input, "server-uri %s", &pm->server_uri)) vec_add1 (pm->server_uri, 0); else if (unformat (input, "client-uri %s", &pm->client_uri)) vec_add1 (pm->client_uri, 0); else return clib_error_return (0, "unknown input `%U'", format_unformat_error, input); } if (!pm->server_uri) { clib_warning ("No server-uri provided, Using default: %s", default_server_uri); pm->server_uri = format (0, "%s%c", default_server_uri, 0); } if (!pm->client_uri) { clib_warning ("No client-uri provided, Using default: %s", default_client_uri); pm->client_uri = format (0, "%s%c", default_client_uri, 0); } vnet_session_enable_disable (vm, 1 /* turn on session and transport */ ); rv = proxy_server_create (vm); switch (rv) { case 0: break; default: return clib_error_return (0, "server_create returned %d", rv); } return 0; } /* *INDENT-OFF* */ VLIB_CLI_COMMAND (proxy_create_command, static) = { .path = "test proxy server", .short_help = "test proxy server [server-uri <tcp://ip/port>]" "[client-uri <tcp://ip/port>][fifo-size <nn>[k|m]]" "[max-fifo-size <nn>[k|m]][high-watermark <nn>]" "[low-watermark <nn>][rcv-buf-size <nn>][prealloc-fifos <nn>]" "[private-segment-size <mem>][private-segment-count <nn>]", .function = proxy_server_create_command_fn, }; /* *INDENT-ON* */ clib_error_t * proxy_main_init (vlib_main_t * vm) { proxy_main_t *pm = &proxy_main; pm->server_client_index = ~0; pm->active_open_client_index = ~0; pm->proxy_session_by_active_open_handle = hash_create (0, sizeof (uword)); pm->proxy_session_by_server_handle = hash_create (0, sizeof (uword)); return 0; } VLIB_INIT_FUNCTION (proxy_main_init); /* * fd.io coding-style-patch-verification: ON * * Local Variables: * eval: (c-set-style "gnu") * End: */