550 lines
15 KiB
C
550 lines
15 KiB
C
/**************************************************************************
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*
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* Copyright (C) 2005 Steve Karg <skarg@users.sourceforge.net>
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*
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* Permission is hereby granted, free of charge, to any person obtaining
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* a copy of this software and associated documentation files (the
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* "Software"), to deal in the Software without restriction, including
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* without limitation the rights to use, copy, modify, merge, publish,
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* distribute, sublicense, and/or sell copies of the Software, and to
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* permit persons to whom the Software is furnished to do so, subject to
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* the following conditions:
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*
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* The above copyright notice and this permission notice shall be included
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* in all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
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* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
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* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY
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* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
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* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
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* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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*
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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 "config.h"
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#include "bacdef.h"
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#include "bacdcode.h"
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#include "npdu.h"
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#include "apdu.h"
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#include "device.h"
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#include "ai.h"
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#include "rp.h"
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#include "wp.h"
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#include "iam.h"
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#include "whois.h"
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#include "reject.h"
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#include "abort.h"
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#include "bacerror.h"
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#include "ethernet.h"
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// buffers used for transmit and receive
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static uint8_t Tx_Buf[MAX_MPDU] = {0};
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static uint8_t Rx_Buf[MAX_MPDU] = {0};
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static uint8_t Temp_Buf[MAX_APDU] = {0};
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// flag to send an I-Am
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bool I_Am_Request = true;
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void UnrecognizedServiceHandler(
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uint8_t *service_request,
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uint16_t service_len,
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BACNET_ADDRESS *dest,
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BACNET_CONFIRMED_SERVICE_DATA *service_data)
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{
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BACNET_ADDRESS src;
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int pdu_len = 0;
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ethernet_get_my_address(&src);
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// encode the NPDU portion of the packet
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pdu_len = npdu_encode_apdu(
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&Tx_Buf[0],
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dest,
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&src,
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false, // true for confirmed messages
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MESSAGE_PRIORITY_NORMAL);
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// encode the APDU portion of the packet
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pdu_len += reject_encode_apdu(
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&Tx_Buf[pdu_len],
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service_data->invoke_id,
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REJECT_REASON_UNRECOGNIZED_SERVICE);
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(void)ethernet_send_pdu(
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dest, // destination address
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&Tx_Buf[0],
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pdu_len); // number of bytes of data
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fprintf(stderr,"Sent Reject!\n");
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}
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// FIXME: if we handle multiple ports, then a port neutral version
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// of this would be nice. Then it could be moved into iam.c
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void Send_IAm(void)
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{
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int pdu_len = 0;
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BACNET_ADDRESS dest;
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// I-Am is a global broadcast
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ethernet_set_broadcast_address(&dest);
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// encode the NPDU portion of the packet
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pdu_len = npdu_encode_apdu(
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&Tx_Buf[0],
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&dest,
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NULL,
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false, // true for confirmed messages
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MESSAGE_PRIORITY_NORMAL);
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// encode the APDU portion of the packet
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pdu_len += iam_encode_apdu(
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&Tx_Buf[pdu_len],
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Device_Object_Instance_Number(),
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MAX_APDU,
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SEGMENTATION_NONE,
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Device_Vendor_Identifier());
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(void)ethernet_send_pdu(
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&dest, // destination address
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&Tx_Buf[0],
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pdu_len); // number of bytes of data
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fprintf(stderr,"Sent I-Am Request!\n");
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}
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void WhoIsHandler(
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uint8_t *service_request,
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uint16_t service_len,
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BACNET_ADDRESS *src)
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{
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int len = 0;
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int32_t low_limit = 0;
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int32_t high_limit = 0;
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fprintf(stderr,"Received Who-Is Request!\n");
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len = whois_decode_service_request(
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service_request,
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service_len,
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&low_limit,
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&high_limit);
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if (len == 0)
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I_Am_Request = true;
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else if (len != -1)
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{
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if ((Device_Object_Instance_Number() >= low_limit) &&
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(Device_Object_Instance_Number() <= high_limit))
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I_Am_Request = true;
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}
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return;
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}
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void IAmHandler(
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uint8_t *service_request,
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uint16_t service_len,
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BACNET_ADDRESS *src)
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{
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int len = 0;
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uint32_t device_id = 0;
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unsigned max_apdu = 0;
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int segmentation = 0;
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uint16_t vendor_id = 0;
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len = iam_decode_service_request(
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service_request,
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&device_id,
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&max_apdu,
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&segmentation,
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&vendor_id);
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if (len != -1)
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fprintf(stderr,"Received I-Am Request from %u!\n",device_id);
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return;
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}
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void ReadPropertyHandler(
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uint8_t *service_request,
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uint16_t service_len,
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BACNET_ADDRESS *src,
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BACNET_CONFIRMED_SERVICE_DATA *service_data)
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{
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BACNET_READ_PROPERTY_DATA rp_data;
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int len = 0;
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int pdu_len = 0;
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BACNET_OBJECT_TYPE object_type;
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uint32_t object_instance;
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BACNET_PROPERTY_ID object_property;
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int32_t array_index;
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BACNET_ADDRESS my_address;
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bool send = false;
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len = rp_decode_service_request(
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service_request,
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service_len,
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&object_type,
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&object_instance,
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&object_property,
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&array_index);
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fprintf(stderr,"Received Read-Property Request!\n");
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if (len > 0)
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fprintf(stderr,"type=%u instance=%u property=%u index=%d\n",
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object_type,
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object_instance,
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object_property,
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array_index);
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else
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fprintf(stderr,"Unable to decode Read-Property Request!\n");
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// prepare a reply
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ethernet_get_my_address(&my_address);
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// encode the NPDU portion of the packet
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pdu_len = npdu_encode_apdu(
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&Tx_Buf[0],
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src,
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&my_address,
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false, // true for confirmed messages
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MESSAGE_PRIORITY_NORMAL);
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// bad decoding - send an abort
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if (len == -1)
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{
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pdu_len += abort_encode_apdu(
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&Tx_Buf[pdu_len],
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service_data->invoke_id,
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ABORT_REASON_OTHER);
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fprintf(stderr,"Sent Abort!\n");
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send = true;
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}
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else if (service_data->segmented_message)
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{
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pdu_len += abort_encode_apdu(
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&Tx_Buf[pdu_len],
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service_data->invoke_id,
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ABORT_REASON_SEGMENTATION_NOT_SUPPORTED);
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fprintf(stderr,"Sent Abort!\n");
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send = true;
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}
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else
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{
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switch (object_type)
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{
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case OBJECT_DEVICE:
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// FIXME: probably need a length limitation sent with encode
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// FIXME: might need to return error codes
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if (object_instance == Device_Object_Instance_Number())
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{
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len = Device_Encode_Property_APDU(
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&Temp_Buf[0],
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object_property,
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array_index);
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if (len > 0)
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{
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// encode the APDU portion of the packet
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rp_data.object_type = object_type;
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rp_data.object_instance = object_instance;
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rp_data.object_property = object_property;
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rp_data.array_index = array_index;
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rp_data.application_data = &Temp_Buf[0];
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rp_data.application_data_len = len;
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// FIXME: probably need a length limitation sent with encode
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pdu_len += rp_ack_encode_apdu(
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&Tx_Buf[pdu_len],
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service_data->invoke_id,
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&rp_data);
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fprintf(stderr,"Sent Read Property Ack!\n");
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send = true;
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}
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else
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{
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pdu_len += bacerror_encode_apdu(
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&Tx_Buf[pdu_len],
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service_data->invoke_id,
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SERVICE_CONFIRMED_READ_PROPERTY,
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ERROR_CLASS_PROPERTY,
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ERROR_CODE_UNKNOWN_PROPERTY);
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fprintf(stderr,"Sent Unknown Property Error!\n");
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send = true;
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}
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}
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else
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{
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pdu_len += bacerror_encode_apdu(
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&Tx_Buf[pdu_len],
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service_data->invoke_id,
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SERVICE_CONFIRMED_READ_PROPERTY,
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ERROR_CLASS_OBJECT,
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ERROR_CODE_UNKNOWN_OBJECT);
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fprintf(stderr,"Sent Unknown Object Error!\n");
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send = true;
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}
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break;
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case OBJECT_ANALOG_INPUT:
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if (Analog_Input_Valid_Instance(object_instance))
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{
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len = Analog_Input_Encode_Property_APDU(
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&Temp_Buf[0],
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object_instance,
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object_property,
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array_index);
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if (len > 0)
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{
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// encode the APDU portion of the packet
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rp_data.object_type = object_type;
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rp_data.object_instance = object_instance;
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rp_data.object_property = object_property;
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rp_data.array_index = array_index;
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rp_data.application_data = &Temp_Buf[0];
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rp_data.application_data_len = len;
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// FIXME: probably need a length limitation sent with encode
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pdu_len += rp_ack_encode_apdu(
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&Tx_Buf[pdu_len],
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service_data->invoke_id,
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&rp_data);
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fprintf(stderr,"Sent Read Property Ack!\n");
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send = true;
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}
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else
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{
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pdu_len += bacerror_encode_apdu(
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&Tx_Buf[pdu_len],
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service_data->invoke_id,
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SERVICE_CONFIRMED_READ_PROPERTY,
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ERROR_CLASS_PROPERTY,
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ERROR_CODE_UNKNOWN_PROPERTY);
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fprintf(stderr,"Sent Unknown Property Error!\n");
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send = true;
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}
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}
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else
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{
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pdu_len += bacerror_encode_apdu(
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&Tx_Buf[pdu_len],
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service_data->invoke_id,
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SERVICE_CONFIRMED_READ_PROPERTY,
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ERROR_CLASS_OBJECT,
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ERROR_CODE_UNKNOWN_OBJECT);
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fprintf(stderr,"Sent Unknown Object Error!\n");
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send = true;
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}
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break;
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default:
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pdu_len += bacerror_encode_apdu(
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&Tx_Buf[pdu_len],
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service_data->invoke_id,
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SERVICE_CONFIRMED_READ_PROPERTY,
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ERROR_CLASS_OBJECT,
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ERROR_CODE_UNKNOWN_OBJECT);
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fprintf(stderr,"Sent Unknown Object Error!\n");
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send = true;
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break;
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}
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}
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if (send)
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{
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(void)ethernet_send_pdu(
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src, // destination address
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&Tx_Buf[0],
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pdu_len); // number of bytes of data
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}
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return;
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}
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void WritePropertyHandler(
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uint8_t *service_request,
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uint16_t service_len,
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BACNET_ADDRESS *src,
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BACNET_CONFIRMED_SERVICE_DATA *service_data)
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{
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BACNET_WRITE_PROPERTY_DATA wp_data;
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int len = 0;
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int pdu_len = 0;
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BACNET_ADDRESS my_address;
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bool send = false;
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BACNET_ERROR_CLASS error_class;
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BACNET_ERROR_CODE error_code;
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// decode the service request only
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len = wp_decode_service_request(
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service_request,
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service_len,
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&wp_data);
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fprintf(stderr,"Received Write-Property Request!\n");
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if (len > 0)
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fprintf(stderr,"type=%u instance=%u property=%u index=%d\n",
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wp_data.object_type,
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wp_data.object_instance,
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wp_data.object_property,
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wp_data.array_index);
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else
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fprintf(stderr,"Unable to decode Write-Property Request!\n");
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// prepare a reply
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ethernet_get_my_address(&my_address);
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// encode the NPDU portion of the packet
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pdu_len = npdu_encode_apdu(
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&Tx_Buf[0],
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src,
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&my_address,
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false, // true for confirmed messages
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MESSAGE_PRIORITY_NORMAL);
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// bad decoding - send an abort
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if (len == -1)
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{
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pdu_len += abort_encode_apdu(
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&Tx_Buf[pdu_len],
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service_data->invoke_id,
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ABORT_REASON_OTHER);
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fprintf(stderr,"Sent Abort!\n");
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send = true;
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}
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else if (service_data->segmented_message)
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{
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pdu_len += abort_encode_apdu(
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&Tx_Buf[pdu_len],
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service_data->invoke_id,
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ABORT_REASON_SEGMENTATION_NOT_SUPPORTED);
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fprintf(stderr,"Sent Abort!\n");
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send = true;
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}
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else
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{
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switch (wp_data.object_type)
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{
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case OBJECT_DEVICE:
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if (Device_Write_Property(&wp_data,&error_class,&error_code))
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{
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pdu_len = encode_simple_ack(
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&Tx_Buf[pdu_len],
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service_data->invoke_id,
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SERVICE_CONFIRMED_WRITE_PROPERTY);
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fprintf(stderr,"Sent Write Property Simple Ack!\n");
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send = true;
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}
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else
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{
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pdu_len += bacerror_encode_apdu(
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&Tx_Buf[pdu_len],
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service_data->invoke_id,
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SERVICE_CONFIRMED_WRITE_PROPERTY,
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error_class,
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error_code);
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fprintf(stderr,"Sent Write Property Error!\n");
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send = true;
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}
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break;
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case OBJECT_ANALOG_INPUT:
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pdu_len += bacerror_encode_apdu(
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&Tx_Buf[pdu_len],
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service_data->invoke_id,
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SERVICE_CONFIRMED_WRITE_PROPERTY,
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ERROR_CLASS_PROPERTY,
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ERROR_CODE_WRITE_ACCESS_DENIED);
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fprintf(stderr,"Sent Write Access Error!\n");
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send = true;
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break;
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default:
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pdu_len += bacerror_encode_apdu(
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&Tx_Buf[pdu_len],
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service_data->invoke_id,
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SERVICE_CONFIRMED_WRITE_PROPERTY,
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ERROR_CLASS_OBJECT,
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ERROR_CODE_UNKNOWN_OBJECT);
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fprintf(stderr,"Sent Unknown Object Error!\n");
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send = true;
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break;
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}
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}
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if (send)
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{
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(void)ethernet_send_pdu(
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src, // destination address
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&Tx_Buf[0],
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pdu_len); // number of bytes of data
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}
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return;
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}
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static void Init_Device_Parameters(void)
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{
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// configure my initial values
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Device_Set_Object_Instance_Number(111);
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Device_Set_Vendor_Name("Lithonia Lighting");
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Device_Set_Vendor_Identifier(42);
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Device_Set_Model_Name("Simple BACnet Server");
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Device_Set_Firmware_Revision("1.00");
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Device_Set_Application_Software_Version("none");
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Device_Set_Description("Example of a simple BACnet server");
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return;
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}
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static void Init_Service_Handlers(void)
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{
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// we need to handle who-is to support dynamic device binding
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apdu_set_unconfirmed_handler(
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SERVICE_UNCONFIRMED_WHO_IS,
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WhoIsHandler);
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apdu_set_unconfirmed_handler(
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SERVICE_UNCONFIRMED_I_AM,
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IAmHandler);
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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(
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UnrecognizedServiceHandler);
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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,
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ReadPropertyHandler);
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apdu_set_confirmed_handler(
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SERVICE_CONFIRMED_WRITE_PROPERTY,
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WritePropertyHandler);
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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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Init_Device_Parameters();
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Init_Service_Handlers();
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// init the physical layer
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if (!ethernet_init("eth0"))
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return 1;
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// loop forever
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for (;;)
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{
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// input
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// returns 0 bytes on timeout
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pdu_len = ethernet_receive(
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&src,
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&Rx_Buf[0],
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MAX_MPDU,
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timeout);
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// process
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if (pdu_len)
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{
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npdu_handler(
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&src,
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&Rx_Buf[0],
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pdu_len);
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}
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if (I_Am_Request)
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{
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I_Am_Request = false;
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Send_IAm();
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}
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// output
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// blink LEDs, Turn on or off outputs, etc
|
|
}
|
|
|
|
return 0;
|
|
}
|