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@ -109,7 +109,7 @@ namespace arx {
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constexpr uint16_t IDX(Index i) { return static_cast<uint16_t>(i); }
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constexpr uint16_t IDX(Index i) { return static_cast<uint16_t>(i); }
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constexpr uint16_t DEFAULT_PORT{6454};
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constexpr uint16_t DEFAULT_PORT{6454}; // 0x1936
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constexpr uint16_t HEADER_SIZE{18};
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constexpr uint16_t HEADER_SIZE{18};
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constexpr uint16_t PACKET_SIZE{530};
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constexpr uint16_t PACKET_SIZE{530};
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constexpr uint16_t PROTOCOL_VER{0x0014};
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constexpr uint16_t PROTOCOL_VER{0x0014};
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@ -137,44 +137,44 @@ namespace arx {
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union ArtPollReply {
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union ArtPollReply {
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struct {
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struct {
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uint8_t id[8]; // 8
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uint8_t id[8];
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uint16_t op_code; // 10
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uint8_t op_code_l;
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uint8_t ip[4]; // 14
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uint8_t op_code_h;
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uint16_t port; // 16
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uint8_t ip[4];
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uint8_t ver_h; // 17
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uint8_t port_l;
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uint8_t ver_l; // 18
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uint8_t port_h;
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uint8_t net_sw; // 19
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uint8_t ver_h;
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uint8_t sub_sw; // 20
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uint8_t ver_l;
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uint8_t oem_h; // 21
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uint8_t net_sw;
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uint8_t oem_l; // 22
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uint8_t sub_sw;
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uint8_t ubea_ver; // 23
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uint8_t oem_h;
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uint8_t status_1; // 24
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uint8_t oem_l;
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uint8_t esta_man_l; // 25
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uint8_t ubea_ver;
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uint8_t esta_man_h; // 26
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uint8_t status_1;
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uint8_t short_name[18]; // 44
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uint8_t esta_man_l;
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uint8_t long_name[64]; // 108
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uint8_t esta_man_h;
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uint8_t node_report[64]; // 172
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uint8_t short_name[18];
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uint8_t num_ports_h; // 173
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uint8_t long_name[64];
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uint8_t num_ports_l; // 174
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uint8_t node_report[64];
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uint8_t port_types[4]; // 178
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uint8_t num_ports_h;
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uint8_t good_input[4]; // 182
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uint8_t num_ports_l;
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uint8_t good_output[4]; // 186
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uint8_t port_types[4];
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uint8_t sw_in[4]; // 190
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uint8_t good_input[4];
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uint8_t sw_out[4]; // 194
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uint8_t good_output[4];
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uint8_t sw_video; // 195
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uint8_t sw_in[4];
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uint8_t sw_macro; // 196
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uint8_t sw_out[4];
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uint8_t sw_remote; // 197
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uint8_t sw_video;
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uint8_t spare[3]; // 200
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uint8_t sw_macro;
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uint8_t style; // 201
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uint8_t sw_remote;
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uint8_t mac_h; // 202
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uint8_t spare[3];
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uint8_t mac[4]; // 206
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uint8_t style;
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uint8_t mac_l; // 207
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uint8_t mac[6];
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uint8_t bind_ip[4]; // 211
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uint8_t bind_ip[4];
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uint8_t bind_index; // 212
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uint8_t bind_index;
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uint8_t status_2; // 213
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uint8_t status_2;
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uint8_t filler[8][26]; // 421
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uint8_t filler[26];
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};
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};
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uint8_t b[421];
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uint8_t b[239];
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};
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};
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template <typename S>
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template <typename S>
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class Sender_ {
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class Sender_ {
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@ -263,15 +263,19 @@ namespace arx {
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void poll_reply() {
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void poll_reply() {
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ArtPollReply r;
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ArtPollReply r;
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for (size_t i = 0; i < ID_LENGTH; i++) r.id[i] = static_cast<uint8_t>(ID[i]);
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for (size_t i = 0; i < ID_LENGTH; i++) r.id[i] = static_cast<uint8_t>(ID[i]);
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r.op_code = (uint16_t)OpCode::PollReply;
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r.op_code_l = ((uint16_t)OpCode::PollReply >> 0) & 0x00FF;
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r.op_code_h = ((uint16_t)OpCode::PollReply >> 8) & 0x00FF;
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#ifdef ARTNET_ENABLE_WIFI
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#ifdef ARTNET_ENABLE_WIFI
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IPAddress my_ip = WiFi.localIP();
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IPAddress my_ip = WiFi.localIP();
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IPAddress my_subnet = WiFi.subnetMask();
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#endif
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#endif
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#ifdef ARTNET_ENABLE_ETHER
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#ifdef ARTNET_ENABLE_ETHER
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IPAddress my_ip = Ethernet.localIP();
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IPAddress my_ip = Ethernet.localIP();
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IPAddress my_subnet = Ethernet.subnetMask();
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#endif
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#endif
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for (size_t i = 0; i < 4; ++i) r.ip[i] = my_ip[i];
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for (size_t i = 0; i < 4; ++i) r.ip[i] = my_ip[i];
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r.port = DEFAULT_PORT;
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r.port_l = (DEFAULT_PORT >> 0) & 0xFF;
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r.port_h = (DEFAULT_PORT >> 8) & 0xFF;
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r.ver_h = (PROTOCOL_VER >> 8) & 0x00FF;
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r.ver_h = (PROTOCOL_VER >> 8) & 0x00FF;
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r.ver_l = (PROTOCOL_VER >> 0) & 0x00FF;
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r.ver_l = (PROTOCOL_VER >> 0) & 0x00FF;
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r.net_sw = 0; // TODO:
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r.net_sw = 0; // TODO:
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@ -304,17 +308,15 @@ namespace arx {
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r.sw_remote = 0; // No support for remote trigger inputs
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r.sw_remote = 0; // No support for remote trigger inputs
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memset(r.spare, 0x00, 3);
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memset(r.spare, 0x00, 3);
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r.style = 0x00; // A DMX to / from Art-Net device
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r.style = 0x00; // A DMX to / from Art-Net device
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r.mac_h = 0; // Do not supply mac address
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memset(r.mac, 0x00, 6); // Do not supply mac address
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memset(r.mac, 0x00, 4);
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r.mac_l = 0;
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for (size_t i = 0; i < 4; ++i) r.bind_ip[i] = my_ip[i];
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for (size_t i = 0; i < 4; ++i) r.bind_ip[i] = my_ip[i];
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r.bind_index = 0;
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r.bind_index = 0;
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r.status_2 = 0x08; // sACN capable (maybe)
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r.status_2 = 0x08; // sACN capable (maybe)
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memset(r.filler, 0x00, 208);
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memset(r.filler, 0x00, 26);
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static const IPAddress DIRECTED_BROADCAST_ADDR(2, 255, 255, 255);
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static const IPAddress local_broadcast_addr = IPAddress((uint32_t)my_ip | ~(uint32_t)my_subnet);
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stream->beginPacket(DIRECTED_BROADCAST_ADDR, DEFAULT_PORT);
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stream->beginPacket(local_broadcast_addr, DEFAULT_PORT);
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stream->write(r.b, 421);
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stream->write(r.b, sizeof(ArtPollReply));
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stream->endPacket();
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stream->endPacket();
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}
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}
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@ -356,7 +358,6 @@ namespace arx {
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uint8_t d[size];
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uint8_t d[size];
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stream->read(d, size);
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stream->read(d, size);
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if (size <= HEADER_SIZE) return OpCode::NA; // discard packet if incomplete
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if (checkID(d)) {
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if (checkID(d)) {
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switch (opcode(d)) {
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switch (opcode(d)) {
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@ -375,6 +376,8 @@ namespace arx {
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return OpCode::Poll;
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return OpCode::Poll;
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}
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}
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default: {
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default: {
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Serial.print("Unsupported OpCode: ");
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Serial.println(opcode(d), HEX);
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return OpCode::NA;
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return OpCode::NA;
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}
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}
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}
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}
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@ -533,9 +536,6 @@ namespace arx {
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OpCode op_code = this->Receiver_<S>::parse();
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OpCode op_code = this->Receiver_<S>::parse();
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switch (op_code) {
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switch (op_code) {
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case OpCode::Poll: {
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case OpCode::Poll: {
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// this->Sender_<S>::poll_reply(
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// this->Receiver_<S>::ip(),
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// this->Receiver_<S>::port());
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this->Sender_<S>::poll_reply();
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this->Sender_<S>::poll_reply();
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break;
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break;
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}
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}
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