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https://github.com/netdata/netdata.git
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445 lines
16 KiB
C
445 lines
16 KiB
C
// SPDX-License-Identifier: GPL-3.0-or-later
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#include "exporting_engine.h"
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/**
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* Check if TLS is enabled in the configuration
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*
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* @param type buffer with response data.
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* @param options an instance data structure.
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* @return Returns 1 if TLS should be enabled, 0 otherwise.
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*/
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static int exporting_tls_is_enabled(EXPORTING_CONNECTOR_TYPE type, EXPORTING_OPTIONS options)
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{
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return (type == EXPORTING_CONNECTOR_TYPE_GRAPHITE_HTTP ||
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type == EXPORTING_CONNECTOR_TYPE_JSON_HTTP ||
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type == EXPORTING_CONNECTOR_TYPE_OPENTSDB_HTTP ||
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type == EXPORTING_CONNECTOR_TYPE_PROMETHEUS_REMOTE_WRITE) &&
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options & EXPORTING_OPTION_USE_TLS;
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}
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/**
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* Discard response
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*
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* Discards a response received by an exporting connector instance after logging a sample of it to error.log
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*
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* @param buffer buffer with response data.
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* @param instance an instance data structure.
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* @return Always returns 0.
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*/
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int exporting_discard_response(BUFFER *buffer, struct instance *instance) {
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#if NETDATA_INTERNAL_CHECKS
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char sample[1024];
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const char *s = buffer_tostring(buffer);
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char *d = sample, *e = &sample[sizeof(sample) - 1];
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for(; *s && d < e ;s++) {
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char c = *s;
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if(unlikely(!isprint(c))) c = ' ';
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*d++ = c;
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}
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*d = '\0';
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debug(
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D_EXPORTING,
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"EXPORTING: received %zu bytes from %s connector instance. Ignoring them. Sample: '%s'",
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buffer_strlen(buffer),
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instance->config.name,
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sample);
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#else
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UNUSED(instance);
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#endif /* NETDATA_INTERNAL_CHECKS */
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buffer_flush(buffer);
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return 0;
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}
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/**
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* Receive response
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*
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* @param sock communication socket.
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* @param instance an instance data structure.
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*/
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void simple_connector_receive_response(int *sock, struct instance *instance)
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{
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static BUFFER *response = NULL;
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if (!response)
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response = buffer_create(4096);
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struct stats *stats = &instance->stats;
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#ifdef ENABLE_HTTPS
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uint32_t options = (uint32_t)instance->config.options;
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struct simple_connector_data *connector_specific_data = instance->connector_specific_data;
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if (options & EXPORTING_OPTION_USE_TLS)
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ERR_clear_error();
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#endif
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errno = 0;
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// loop through to collect all data
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while (*sock != -1 && errno != EWOULDBLOCK) {
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ssize_t r;
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#ifdef ENABLE_HTTPS
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if (exporting_tls_is_enabled(instance->config.type, options) &&
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connector_specific_data->conn &&
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connector_specific_data->flags == NETDATA_SSL_HANDSHAKE_COMPLETE) {
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r = (ssize_t)SSL_read(connector_specific_data->conn,
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&response->buffer[response->len],
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(int) (response->size - response->len));
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if (likely(r > 0)) {
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// we received some data
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response->len += r;
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stats->received_bytes += r;
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stats->receptions++;
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continue;
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} else {
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int sslerrno = SSL_get_error(connector_specific_data->conn, (int) r);
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u_long sslerr = ERR_get_error();
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char buf[256];
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switch (sslerrno) {
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case SSL_ERROR_WANT_READ:
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case SSL_ERROR_WANT_WRITE:
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goto endloop;
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default:
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ERR_error_string_n(sslerr, buf, sizeof(buf));
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error("SSL error (%s)",
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ERR_error_string((long)SSL_get_error(connector_specific_data->conn, (int)r), NULL));
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goto endloop;
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}
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}
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} else {
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r = recv(*sock, &response->buffer[response->len], response->size - response->len, MSG_DONTWAIT);
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}
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#else
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r = recv(*sock, &response->buffer[response->len], response->size - response->len, MSG_DONTWAIT);
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#endif
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if (likely(r > 0)) {
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// we received some data
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response->len += r;
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stats->received_bytes += r;
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stats->receptions++;
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} else if (r == 0) {
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error("EXPORTING: '%s' closed the socket", instance->config.destination);
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close(*sock);
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*sock = -1;
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} else {
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// failed to receive data
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if (errno != EAGAIN && errno != EWOULDBLOCK) {
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error("EXPORTING: cannot receive data from '%s'.", instance->config.destination);
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}
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}
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#ifdef UNIT_TESTING
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break;
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#endif
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}
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#ifdef ENABLE_HTTPS
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endloop:
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#endif
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// if we received data, process them
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if (buffer_strlen(response))
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instance->check_response(response, instance);
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}
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/**
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* Send buffer to a server
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*
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* @param sock communication socket.
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* @param failures the number of communication failures.
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* @param instance an instance data structure.
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*/
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void simple_connector_send_buffer(
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int *sock, int *failures, struct instance *instance, BUFFER *header, BUFFER *buffer, size_t buffered_metrics)
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{
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int flags = 0;
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#ifdef MSG_NOSIGNAL
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flags += MSG_NOSIGNAL;
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#endif
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#ifdef ENABLE_HTTPS
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uint32_t options = (uint32_t)instance->config.options;
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struct simple_connector_data *connector_specific_data = instance->connector_specific_data;
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if (options & EXPORTING_OPTION_USE_TLS)
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ERR_clear_error();
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#endif
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struct stats *stats = &instance->stats;
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ssize_t header_sent_bytes = 0;
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ssize_t buffer_sent_bytes = 0;
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size_t header_len = buffer_strlen(header);
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size_t buffer_len = buffer_strlen(buffer);
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#ifdef ENABLE_HTTPS
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if (exporting_tls_is_enabled(instance->config.type, options) &&
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connector_specific_data->conn &&
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connector_specific_data->flags == NETDATA_SSL_HANDSHAKE_COMPLETE) {
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if (header_len)
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header_sent_bytes = (ssize_t)SSL_write(connector_specific_data->conn, buffer_tostring(header), header_len);
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if ((size_t)header_sent_bytes == header_len)
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buffer_sent_bytes = (ssize_t)SSL_write(connector_specific_data->conn, buffer_tostring(buffer), buffer_len);
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} else {
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if (header_len)
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header_sent_bytes = send(*sock, buffer_tostring(header), header_len, flags);
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if ((size_t)header_sent_bytes == header_len)
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buffer_sent_bytes = send(*sock, buffer_tostring(buffer), buffer_len, flags);
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}
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#else
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if (header_len)
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header_sent_bytes = send(*sock, buffer_tostring(header), header_len, flags);
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if ((size_t)header_sent_bytes == header_len)
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buffer_sent_bytes = send(*sock, buffer_tostring(buffer), buffer_len, flags);
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#endif
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if ((size_t)buffer_sent_bytes == buffer_len) {
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// we sent the data successfully
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stats->transmission_successes++;
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stats->sent_metrics += buffered_metrics;
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stats->sent_bytes += buffer_sent_bytes;
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// reset the failures count
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*failures = 0;
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// empty the buffer
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buffer_flush(buffer);
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} else {
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// oops! we couldn't send (all or some of the) data
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error(
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"EXPORTING: failed to write data to '%s'. Willing to write %zu bytes, wrote %zd bytes. Will re-connect.",
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instance->config.destination,
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buffer_len,
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buffer_sent_bytes);
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stats->transmission_failures++;
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if(buffer_sent_bytes != -1)
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stats->sent_bytes += buffer_sent_bytes;
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// increment the counter we check for data loss
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(*failures)++;
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// close the socket - we will re-open it next time
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close(*sock);
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*sock = -1;
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}
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}
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/**
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* Simple connector worker
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*
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* Runs in a separate thread for every instance.
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*
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* @param instance_p an instance data structure.
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*/
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void simple_connector_worker(void *instance_p)
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{
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struct instance *instance = (struct instance*)instance_p;
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struct simple_connector_data *connector_specific_data = instance->connector_specific_data;
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#ifdef ENABLE_HTTPS
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uint32_t options = (uint32_t)instance->config.options;
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if (options & EXPORTING_OPTION_USE_TLS)
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ERR_clear_error();
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#endif
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struct simple_connector_config *connector_specific_config = instance->config.connector_specific_config;
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int sock = -1;
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struct timeval timeout = { .tv_sec = (instance->config.timeoutms * 1000) / 1000000,
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.tv_usec = (instance->config.timeoutms * 1000) % 1000000 };
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int failures = 0;
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while (!instance->engine->exit) {
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struct stats *stats = &instance->stats;
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int send_stats = 0;
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if (instance->data_is_ready)
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send_stats = 1;
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uv_mutex_lock(&instance->mutex);
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if (!connector_specific_data->first_buffer->used || failures) {
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while (!instance->data_is_ready)
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uv_cond_wait(&instance->cond_var, &instance->mutex);
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instance->data_is_ready = 0;
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send_stats = 1;
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}
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if (unlikely(instance->engine->exit)) {
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uv_mutex_unlock(&instance->mutex);
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break;
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}
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// ------------------------------------------------------------------------
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// detach buffer
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size_t buffered_metrics;
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if (!connector_specific_data->previous_buffer ||
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(connector_specific_data->previous_buffer == connector_specific_data->first_buffer &&
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connector_specific_data->first_buffer->used == 1)) {
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BUFFER *header, *buffer;
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header = connector_specific_data->first_buffer->header;
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buffer = connector_specific_data->first_buffer->buffer;
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connector_specific_data->buffered_metrics = connector_specific_data->first_buffer->buffered_metrics;
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connector_specific_data->buffered_bytes = connector_specific_data->first_buffer->buffered_bytes;
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buffered_metrics = connector_specific_data->buffered_metrics;
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buffer_flush(connector_specific_data->header);
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connector_specific_data->first_buffer->header = connector_specific_data->header;
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connector_specific_data->header = header;
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buffer_flush(connector_specific_data->buffer);
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connector_specific_data->first_buffer->buffer = connector_specific_data->buffer;
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connector_specific_data->buffer = buffer;
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} else {
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buffered_metrics = connector_specific_data->buffered_metrics;
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}
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uv_mutex_unlock(&instance->mutex);
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// ------------------------------------------------------------------------
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// if we are connected, receive a response, without blocking
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if (likely(sock != -1))
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simple_connector_receive_response(&sock, instance);
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// ------------------------------------------------------------------------
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// if we are not connected, connect to a data collecting server
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if (unlikely(sock == -1)) {
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size_t reconnects = 0;
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sock = connect_to_one_of(
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instance->config.destination,
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connector_specific_config->default_port,
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&timeout,
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&reconnects,
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connector_specific_data->connected_to,
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CONNECTED_TO_MAX);
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#ifdef ENABLE_HTTPS
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if (exporting_tls_is_enabled(instance->config.type, options) && sock != -1) {
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if (netdata_exporting_ctx) {
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if (sock_delnonblock(sock) < 0)
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error("Exporting cannot remove the non-blocking flag from socket %d", sock);
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if (connector_specific_data->conn == NULL) {
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connector_specific_data->conn = SSL_new(netdata_exporting_ctx);
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if (connector_specific_data->conn == NULL) {
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error("Failed to allocate SSL structure to socket %d.", sock);
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connector_specific_data->flags = NETDATA_SSL_NO_HANDSHAKE;
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}
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} else {
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SSL_clear(connector_specific_data->conn);
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}
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if (connector_specific_data->conn) {
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if (SSL_set_fd(connector_specific_data->conn, sock) != 1) {
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error("Failed to set the socket to the SSL on socket fd %d.", sock);
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connector_specific_data->flags = NETDATA_SSL_NO_HANDSHAKE;
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} else {
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connector_specific_data->flags = NETDATA_SSL_HANDSHAKE_COMPLETE;
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SSL_set_connect_state(connector_specific_data->conn);
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int err = SSL_connect(connector_specific_data->conn);
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if (err != 1) {
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err = SSL_get_error(connector_specific_data->conn, err);
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error(
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"SSL cannot connect with the server: %s ",
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ERR_error_string((long)SSL_get_error(connector_specific_data->conn, err), NULL));
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connector_specific_data->flags = NETDATA_SSL_NO_HANDSHAKE;
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} else {
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info("Exporting established a SSL connection.");
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struct timeval tv;
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tv.tv_sec = timeout.tv_sec / 4;
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tv.tv_usec = 0;
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if (!tv.tv_sec)
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tv.tv_sec = 2;
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if (setsockopt(sock, SOL_SOCKET, SO_RCVTIMEO, (const char *)&tv, sizeof(tv)))
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error("Cannot set timeout to socket %d, this can block communication", sock);
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}
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}
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}
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}
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}
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#endif
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stats->reconnects += reconnects;
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}
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if (unlikely(instance->engine->exit))
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break;
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// ------------------------------------------------------------------------
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// if we are connected, send our buffer to the data collecting server
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failures = 0;
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if (likely(sock != -1)) {
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simple_connector_send_buffer(
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&sock,
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&failures,
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instance,
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connector_specific_data->header,
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connector_specific_data->buffer,
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buffered_metrics);
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} else {
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error("EXPORTING: failed to update '%s'", instance->config.destination);
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stats->transmission_failures++;
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// increment the counter we check for data loss
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failures++;
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}
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if (!failures) {
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connector_specific_data->first_buffer->buffered_metrics =
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connector_specific_data->first_buffer->buffered_bytes = connector_specific_data->first_buffer->used = 0;
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connector_specific_data->first_buffer = connector_specific_data->first_buffer->next;
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}
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if (unlikely(instance->engine->exit))
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break;
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if (send_stats) {
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uv_mutex_lock(&instance->mutex);
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stats->buffered_metrics = connector_specific_data->total_buffered_metrics;
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send_internal_metrics(instance);
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stats->buffered_metrics = 0;
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// reset the internal monitoring chart counters
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connector_specific_data->total_buffered_metrics =
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stats->buffered_bytes =
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stats->receptions =
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stats->received_bytes =
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stats->sent_metrics =
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stats->sent_bytes =
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stats->transmission_successes =
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stats->transmission_failures =
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stats->reconnects =
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stats->data_lost_events =
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stats->lost_metrics =
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stats->lost_bytes = 0;
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uv_mutex_unlock(&instance->mutex);
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}
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#ifdef UNIT_TESTING
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return;
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#endif
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}
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#if ENABLE_PROMETHEUS_REMOTE_WRITE
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if (instance->config.type == EXPORTING_CONNECTOR_TYPE_PROMETHEUS_REMOTE_WRITE)
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clean_prometheus_remote_write(instance);
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#endif
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simple_connector_cleanup(instance);
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}
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