cef68dc079
* Added bacnet_str functions for parsing various numeric strings. * Renamed BACnet string API to be clearer when no stdlib function exists. * Fixed incompatible types - from 'BACNET_UNSIGNED_INTEGER *' to 'unsigned long *' warning * Changed bacnet-str-to functions to use ERANGE for error detection. * Refactored some apps to use common string parsing for BACnet data types. * Refactor bacapp_parse_application_data to use bacnet_string_to_unsigned for better clarity * Added strtol for BACnetEventType.
353 lines
12 KiB
C
353 lines
12 KiB
C
/**
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* @file
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* @brief command line tool that sends a BACnet service to the network:
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* DeviceCommunicationControl message
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* @author Steve Karg <skarg@users.sourceforge.net>
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* @date 2006
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* @copyright SPDX-License-Identifier: MIT
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*/
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#include <stddef.h>
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#include <stdint.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <time.h> /* for time */
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/* BACnet Stack defines - first */
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#include "bacnet/bacdef.h"
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/* BACnet Stack API */
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#include "bacnet/bactext.h"
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#include "bacnet/iam.h"
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#include "bacnet/arf.h"
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#include "bacnet/npdu.h"
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#include "bacnet/apdu.h"
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#include "bacport.h"
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#include "bacnet/whois.h"
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#include "bacnet/dcc.h"
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#include "bacnet/version.h"
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/* some demo stuff needed */
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#include "bacnet/basic/object/device.h"
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#include "bacnet/basic/binding/address.h"
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#include "bacnet/basic/sys/filename.h"
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#include "bacnet/basic/services.h"
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#include "bacnet/basic/tsm/tsm.h"
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#include "bacnet/datalink/dlenv.h"
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#include "bacnet/datalink/datalink.h"
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/* buffer used for receive */
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static uint8_t Rx_Buf[MAX_MPDU] = { 0 };
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/* global variables used in this file */
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static uint32_t Target_Device_Object_Instance = BACNET_MAX_INSTANCE;
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static BACNET_ADDRESS Target_Address;
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static uint16_t Communication_Timeout_Minutes = 0;
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static BACNET_COMMUNICATION_ENABLE_DISABLE Communication_State =
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COMMUNICATION_ENABLE;
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static char *Communication_Password = NULL;
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static bool Error_Detected = false;
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static void MyErrorHandler(
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BACNET_ADDRESS *src,
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uint8_t invoke_id,
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BACNET_ERROR_CLASS error_class,
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BACNET_ERROR_CODE error_code)
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{
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/* FIXME: verify src and invoke id */
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(void)src;
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(void)invoke_id;
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printf(
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"BACnet Error: %s: %s\n", bactext_error_class_name(error_class),
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bactext_error_code_name(error_code));
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Error_Detected = true;
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}
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static void MyAbortHandler(
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BACNET_ADDRESS *src, uint8_t invoke_id, uint8_t abort_reason, bool server)
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{
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/* FIXME: verify src and invoke id */
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(void)src;
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(void)invoke_id;
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(void)server;
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printf("BACnet Abort: %s\n", bactext_abort_reason_name(abort_reason));
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Error_Detected = true;
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}
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static void
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MyRejectHandler(BACNET_ADDRESS *src, uint8_t invoke_id, uint8_t reject_reason)
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{
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/* FIXME: verify src and invoke id */
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(void)src;
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(void)invoke_id;
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printf("BACnet Reject: %s\n", bactext_reject_reason_name(reject_reason));
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Error_Detected = true;
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}
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static void MyDeviceCommunicationControlSimpleAckHandler(
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BACNET_ADDRESS *src, uint8_t invoke_id)
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{
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(void)src;
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(void)invoke_id;
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printf("DeviceCommunicationControl Acknowledged!\n");
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}
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static void Init_Service_Handlers(void)
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{
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Device_Init(NULL);
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/* we need to handle who-is
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to support dynamic device binding to us */
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apdu_set_unconfirmed_handler(SERVICE_UNCONFIRMED_WHO_IS, handler_who_is);
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/* handle i-am to support binding to other devices */
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apdu_set_unconfirmed_handler(SERVICE_UNCONFIRMED_I_AM, handler_i_am_bind);
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/* set the handler for all the services we don't implement
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It is required to send the proper reject message... */
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apdu_set_unrecognized_service_handler_handler(handler_unrecognized_service);
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/* we must implement read property - it's required! */
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apdu_set_confirmed_handler(
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SERVICE_CONFIRMED_READ_PROPERTY, handler_read_property);
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/* handle communication so we can shutup when asked */
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apdu_set_confirmed_handler(
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SERVICE_CONFIRMED_DEVICE_COMMUNICATION_CONTROL,
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handler_device_communication_control);
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/* handle the ack coming back */
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apdu_set_confirmed_simple_ack_handler(
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SERVICE_CONFIRMED_DEVICE_COMMUNICATION_CONTROL,
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MyDeviceCommunicationControlSimpleAckHandler);
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/* handle any errors coming back */
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apdu_set_error_handler(
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SERVICE_CONFIRMED_DEVICE_COMMUNICATION_CONTROL, MyErrorHandler);
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apdu_set_abort_handler(MyAbortHandler);
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apdu_set_reject_handler(MyRejectHandler);
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}
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static void print_usage(const char *filename)
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{
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printf("Usage: %s device-instance state [timeout [password]]\n", filename);
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printf(" [--dnet][--dadr][--mac]\n");
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printf(" [--version][--help]\n");
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}
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static void print_help(const char *filename)
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{
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printf("Send BACnet DeviceCommunicationControl service to device.\n");
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printf("\n");
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printf("--mac A\n"
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"Optional BACnet mac address. "
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"Valid ranges are from 00 to FF (hex) for MS/TP or ARCNET,\n"
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"or an IP string with optional port number like 10.1.2.3:47808\n"
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"or an Ethernet MAC in hex like 00:21:70:7e:32:bb\n");
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printf("\n");
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printf("--dnet N\n"
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"Optional BACnet network number N for directed requests.\n"
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"Valid range is from 0 to 65535 where 0 is the local connection\n"
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"and 65535 is network broadcast.\n");
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printf("\n");
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printf("--dadr A\n"
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"Optional BACnet mac address on the destination BACnet network "
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"number.\n"
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"Valid ranges are from 00 to FF (hex) for MS/TP or ARCNET,\n"
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"or an IP string with optional port number like 10.1.2.3:47808\n"
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"or an Ethernet MAC in hex like 00:21:70:7e:32:bb\n");
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printf("\n");
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printf("device-instance:\n"
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"BACnet Device Object Instance number that you are\n"
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"trying to communicate to. This number will be used\n"
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"to try and bind with the device using Who-Is and\n"
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"I-Am services. For example, if you were writing\n"
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"Device Object 123, the device-instance would be 123.\n");
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printf("\n");
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printf("state:\n"
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"Possible state values:\n"
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" 0=enable\n"
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" 1=disable\n"
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" 2=disable-initiation\n");
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printf("\n");
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printf("timeout:\n"
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"The timeout can be 0 for infinite, or a value in minutes for "
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"disable.\n");
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printf("\n");
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printf(
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"password:\n"
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"The optional password is a character string of 1 to 20 characters.\n");
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printf("\n");
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printf(
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"Example:\n"
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"If you want disable Device Communications in Device 123\n"
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"for 60 minutes with password 'filister', use the following command:\n"
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"%s 123 1 60 filister\n",
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filename);
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}
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int main(int argc, char *argv[])
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{
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BACNET_ADDRESS src = { 0 }; /* address where message came from */
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uint16_t pdu_len = 0;
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unsigned timeout = 100; /* milliseconds */
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unsigned max_apdu = 0;
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time_t elapsed_seconds = 0;
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time_t last_seconds = 0;
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time_t current_seconds = 0;
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time_t timeout_seconds = 0;
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uint8_t invoke_id = 0;
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bool found = false;
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long dnet = -1;
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BACNET_MAC_ADDRESS mac = { 0 };
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BACNET_MAC_ADDRESS adr = { 0 };
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BACNET_ADDRESS dest = { 0 };
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bool specific_address = false;
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unsigned int target_args = 0;
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uint32_t target_value = 0;
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int argi = 0;
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const char *filename = NULL;
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filename = filename_remove_path(argv[0]);
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for (argi = 1; argi < argc; argi++) {
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if (strcmp(argv[argi], "--help") == 0) {
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print_usage(filename);
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print_help(filename);
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return 0;
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}
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if (strcmp(argv[argi], "--version") == 0) {
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printf("%s %s\n", filename, BACNET_VERSION_TEXT);
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printf("Copyright (C) 2014 by Steve Karg and others.\n"
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"This is free software; see the source for copying "
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"conditions.\n"
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"There is NO warranty; not even for MERCHANTABILITY or\n"
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"FITNESS FOR A PARTICULAR PURPOSE.\n");
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return 0;
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}
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if (strcmp(argv[argi], "--mac") == 0) {
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if (++argi < argc) {
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if (bacnet_address_mac_from_ascii(&mac, argv[argi])) {
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specific_address = true;
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}
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}
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} else if (strcmp(argv[argi], "--dnet") == 0) {
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if (++argi < argc) {
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if (!bacnet_strtol(argv[argi], &dnet)) {
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fprintf(stderr, "dnet=%s invalid\n", argv[argi]);
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return 1;
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}
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if ((dnet >= 0) && (dnet <= UINT16_MAX)) {
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specific_address = true;
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}
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}
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} else if (strcmp(argv[argi], "--dadr") == 0) {
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if (++argi < argc) {
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if (bacnet_address_mac_from_ascii(&adr, argv[argi])) {
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specific_address = true;
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}
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}
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} else {
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/* unnamed arguments */
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if (target_args == 0) {
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if (!bacnet_string_to_uint32(
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argv[argi], &Target_Device_Object_Instance)) {
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fprintf(stderr, "device-instance=%s invalid\n", argv[argi]);
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return 1;
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}
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if (Target_Device_Object_Instance > BACNET_MAX_INSTANCE) {
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fprintf(
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stderr, "device-instance=%u - not greater than %u\n",
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Target_Device_Object_Instance, BACNET_MAX_INSTANCE);
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return 1;
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}
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target_args++;
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} else if (target_args == 1) {
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if (!bacnet_string_to_uint32(argv[argi], &target_value)) {
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fprintf(stderr, "state=%s invalid\n", argv[argi]);
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return 1;
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}
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Communication_State =
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(BACNET_COMMUNICATION_ENABLE_DISABLE)target_value;
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target_args++;
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} else if (target_args == 2) {
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if (!bacnet_string_to_uint16(
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argv[argi], &Communication_Timeout_Minutes)) {
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fprintf(stderr, "timeout=%s invalid\n", argv[argi]);
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return 1;
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}
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target_args++;
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} else if (target_args == 3) {
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Communication_Password = argv[argi];
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target_args++;
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}
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}
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}
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if (argc < 3) {
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print_usage(filename);
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return 0;
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}
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/* setup my info */
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address_init();
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if (specific_address) {
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bacnet_address_init(&dest, &mac, dnet, &adr);
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address_add(Target_Device_Object_Instance, MAX_APDU, &dest);
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}
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Device_Set_Object_Instance_Number(BACNET_MAX_INSTANCE);
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Init_Service_Handlers();
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dlenv_init();
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atexit(datalink_cleanup);
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/* configure the timeout values */
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last_seconds = time(NULL);
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timeout_seconds = (apdu_timeout() / 1000) * apdu_retries();
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/* try to bind with the device */
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found = address_bind_request(
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Target_Device_Object_Instance, &max_apdu, &Target_Address);
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if (!found) {
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Send_WhoIs(
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Target_Device_Object_Instance, Target_Device_Object_Instance);
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}
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/* loop forever */
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for (;;) {
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/* increment timer - exit if timed out */
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current_seconds = time(NULL);
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/* returns 0 bytes on timeout */
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pdu_len = datalink_receive(&src, &Rx_Buf[0], MAX_MPDU, timeout);
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/* process */
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if (pdu_len) {
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npdu_handler(&src, &Rx_Buf[0], pdu_len);
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}
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/* at least one second has passed */
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if (current_seconds != last_seconds) {
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tsm_timer_milliseconds(
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(uint16_t)((current_seconds - last_seconds) * 1000));
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datalink_maintenance_timer(current_seconds - last_seconds);
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}
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if (Error_Detected) {
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break;
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}
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/* wait until the device is bound, or timeout and quit */
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if (!found) {
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found = address_bind_request(
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Target_Device_Object_Instance, &max_apdu, &Target_Address);
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}
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if (found) {
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if (invoke_id == 0) {
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invoke_id = Send_Device_Communication_Control_Request(
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Target_Device_Object_Instance,
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Communication_Timeout_Minutes, Communication_State,
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Communication_Password);
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} else if (tsm_invoke_id_free(invoke_id)) {
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break;
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} else if (tsm_invoke_id_failed(invoke_id)) {
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fprintf(stderr, "\rError: TSM Timeout!\n");
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tsm_free_invoke_id(invoke_id);
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/* try again or abort? */
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break;
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}
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} else {
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/* increment timer - exit if timed out */
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elapsed_seconds += (current_seconds - last_seconds);
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if (elapsed_seconds > timeout_seconds) {
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printf("\rError: APDU Timeout!\n");
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break;
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}
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}
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/* keep track of time for next check */
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last_seconds = current_seconds;
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}
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return 0;
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}
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