Changes for page 01 Lua Functions
Last modified by Theodore Xu on 2023/10/26 10:51
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... ... @@ -1,1 +1,1 @@ 1 -V-BOX.V-Net.Manual.04 Lua Script.WebHome 1 +V-BOX.V-Net.1\.User Manual.04 Lua Script.WebHome - Author
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... ... @@ -1,1 +1,1 @@ 1 -XWiki. Hunter1 +XWiki.Stone - Content
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... ... @@ -1,17 +1,5 @@ 1 1 = **1 Interface description** = 2 2 3 -(% style="width:749.222px" %) 4 -|=(% scope="row" style="width: 374px;" %)z|=(% style="width: 373px;" %)cxz 5 -|=(% style="width: 374px;" %) |(% style="width:373px" %) 6 -|=(% style="width: 374px;" %) |(% style="width:373px" %) 7 - 8 -|分类|宽|高 9 -|网页全屏|700-850|400 10 -|手机全屏|300|400 11 -|其他大图片|400左右|400左右 12 -|小图片|200左右|200左右 13 - 14 - 15 15 == **Data type definition** == 16 16 17 17 |=**Type**|=**Description** ... ... @@ -118,6 +118,8 @@ 118 118 119 119 ((( 120 120 = **2 Address operation** = 109 + 110 + 121 121 ))) 122 122 123 123 |=16-bit data formal|=HLword|=32-bit data formal|=HLword|= 64-bit data formal|=HLword ... ... @@ -150,17 +150,20 @@ 150 150 43218765 151 151 )))|10 152 152 153 - Table2-1143 +* If HLword enters any other value, it will be treated as invalid. 154 154 155 -(% class="box infomessage" %) 156 -((( 157 -**✎Note: **If HLword enters any other value, it will be treated as invalid. 158 -))) 145 + Demo: Reads a 32-bit floating-point number at position D0 of PLC 159 159 160 -== **addr_getshort(string addr[, number type, number hlword])** == 161 161 162 -**Function:** Read 16-bit signed decimal address 163 163 149 +[[image:企业微信截图_20210506180640.png||height="301" width="600" class="img-thumbnail"]] 150 + 151 +== **2.1 addr_getshort(string addr[, number type, number hlword])** == 152 + 153 +**Function:** 154 + 155 +Read 16-bit signed decimal address 156 + 164 164 **Parameters:** 165 165 166 166 //addr//: address ... ... @@ -178,11 +178,13 @@ 178 178 Failed: multi 179 179 180 180 ((( 181 -== **addr_setshort(string addr, number num[, number type, number hlword])** == 174 +== **2.2 addr_setshort(string addr, number num[, number type, number hlword])** == 182 182 ))) 183 183 184 -**Function:** Write 16-bit signed decimal address177 +**Function:** 185 185 179 +Write 16-bit signed decimal address 180 + 186 186 **Parameters:** 187 187 188 188 //addr//: address ... ... @@ -200,11 +200,13 @@ 200 200 Failed: multi 201 201 202 202 ((( 203 -== **addr_getword(string addr[, number type, number hlword])** == 198 +== **2.3 addr_getword(string addr[, number type, number hlword])** == 204 204 ))) 205 205 206 -**Function:** Read 16-bit unsigned decimal address201 +**Function:** 207 207 203 +Read 16-bit unsigned decimal address 204 + 208 208 **Parameters:** 209 209 210 210 //addr//: address ... ... @@ -220,11 +220,13 @@ 220 220 Failed: multi 221 221 222 222 ((( 223 -== **addr_setword(string addr, number num[, number type, number hlword])** == 220 +== **2.4 addr_setword(string addr, number num[, number type, number hlword])** == 224 224 ))) 225 225 226 -**Function:** Write 16-bit unsigned decimal address223 +**Function:** 227 227 225 +Write 16-bit unsigned decimal address 226 + 228 228 **Parameters:** 229 229 230 230 //addr//: address ... ... @@ -242,11 +242,13 @@ 242 242 Failed: multi 243 243 244 244 ((( 245 -== **addr_getint(string addr[, number type, number hlword])** == 244 +== **2.5 addr_getint(string addr[, number type, number hlword])** == 246 246 ))) 247 247 248 -**Function:** Read 32-bit signed decimal address247 +**Function:** 249 249 249 +Read 32-bit signed decimal address 250 + 250 250 **Parameters:** 251 251 252 252 //addr//: address ... ... @@ -262,11 +262,13 @@ 262 262 Failed: multi 263 263 264 264 ((( 265 -== **addr_setint(string addr, number num[, number type, number hlword])** == 266 +== **2.6 addr_setint(string addr, number num[, number type, number hlword])** == 266 266 ))) 267 267 268 -**Function:** Write 32-bit signed decimal address269 +**Function:** 269 269 271 +Write 32-bit signed decimal address 272 + 270 270 **Parameters:** 271 271 272 272 //addr//: address ... ... @@ -284,11 +284,13 @@ 284 284 Failed: multi 285 285 286 286 ((( 287 -== **addr_getdword(string addr[, number type, number hlword])** == 290 +== **2.7 addr_getdword(string addr[, number type, number hlword])** == 288 288 ))) 289 289 290 -**Function:** Read 32-bit unsigned decimal address293 +**Function:** 291 291 295 +Read 32-bit unsigned decimal address 296 + 292 292 **Parameters:** 293 293 294 294 //addr//: address ... ... @@ -304,11 +304,13 @@ 304 304 Failed: multi 305 305 306 306 ((( 307 -== **addr_setdword(string addr, number num[, number type, number hlword])** == 312 +== **2.8 addr_setdword(string addr, number num[, number type, number hlword])** == 308 308 ))) 309 309 310 -**Function:** Write 32-bit unsigned decimal address315 +**Function:** 311 311 317 +Write 32-bit unsigned decimal address 318 + 312 312 **Parameters:** 313 313 314 314 //addr//: address ... ... @@ -326,11 +326,13 @@ 326 326 Failed: multi 327 327 328 328 ((( 329 -== **addr_getbit(string addr[, number type])** == 336 +== **2.9 addr_getbit(string addr[, number type])** == 330 330 ))) 331 331 332 -**Function:** Read a bit of the register address339 +**Function:** 333 333 341 +Read a bit of the register address 342 + 334 334 **Parameters:** 335 335 336 336 //addr//: address ... ... @@ -346,11 +346,13 @@ 346 346 Failed: multi 347 347 348 348 ((( 349 -== **addr_setbit(string addr, number num[, number type])** == 358 +== **2.10 addr_setbit(string addr, number num[, number type])** == 350 350 ))) 351 351 352 -**Function:** Write a bit of the register address361 +**Function:** 353 353 363 +Write a bit of the register address 364 + 354 354 **Parameters:** 355 355 356 356 //addr//: address ... ... @@ -368,11 +368,13 @@ 368 368 Failed: multi 369 369 370 370 ((( 371 -== **addr_getfloat(string addr[, number type, number hlword])** == 382 +== **2.11 addr_getfloat(string addr[, number type, number hlword])** == 372 372 ))) 373 373 374 -**Function:** Read 32-bit floating address385 +**Function:** 375 375 387 +Read 32-bit floating address 388 + 376 376 **Parameters:** 377 377 378 378 //addr//: address ... ... @@ -388,11 +388,13 @@ 388 388 Failed: multi 389 389 390 390 ((( 391 -== **addr_setfloat(string addr, number num[, number type, number hlword])** == 404 +== **2.12 addr_setfloat(string addr, number num[, number type, number hlword])** == 392 392 ))) 393 393 394 -**Function:** Write 32-bit floating address407 +**Function:** 395 395 409 +Write 32-bit floating address 410 + 396 396 **Parameters:** 397 397 398 398 //addr//: address ... ... @@ -410,11 +410,13 @@ 410 410 Failed: multi 411 411 412 412 ((( 413 -== **addr_getdouble(string addr[, number type, number hlword])** == 428 +== **2.13 addr_getdouble(string addr[, number type, number hlword])** == 414 414 ))) 415 415 416 -**Function:** Read 64-bit floating address431 +**Function:** 417 417 433 +Read 64-bit floating address 434 + 418 418 **Parameters:** 419 419 420 420 //addr//: address ... ... @@ -430,11 +430,13 @@ 430 430 Failed: multi 431 431 432 432 ((( 433 -== **addr_setdouble(string addr, number num[, number type, number hlword])** == 450 +== **2.14 addr_setdouble(string addr, number num[, number type, number hlword])** == 434 434 ))) 435 435 436 -**Function:** Write 64-bit floating address453 +**Function:** 437 437 455 +Write 64-bit floating address 456 + 438 438 **Parameters:** 439 439 440 440 addr: address ... ... @@ -452,11 +452,13 @@ 452 452 Failed: multi 453 453 454 454 ((( 455 -== **addr_getstring(string addr, number length[, number type, number hlbyte])** == 474 +== **2.15 addr_getstring(string addr, number length[, number type, number hlbyte])** == 456 456 ))) 457 457 458 -**Function:** Read the specified length string from address477 +**Function:** 459 459 479 +Read the specified length string from address 480 + 460 460 **Parameters:** 461 461 462 462 //addr//: address ... ... @@ -474,11 +474,13 @@ 474 474 Failed: multi 475 475 476 476 ((( 477 -== **addr_setstring(string addr, string str[, number type, number hlbyte])** == 498 +== **2.16 addr_setstring(string addr, string str[, number type, number hlbyte])** == 478 478 ))) 479 479 480 -**Function:** Write the specified length string to address501 +**Function:** 481 481 503 +Write the specified length string to address 504 + 482 482 **Parameters:** 483 483 484 484 //addr//: address ... ... @@ -496,11 +496,13 @@ 496 496 Failed: multi 497 497 498 498 ((( 499 -== **addr_bmov(string dst, string src, number length)** == 522 +== **2.17 addr_bmov(string dst, string src, number length)** == 500 500 ))) 501 501 502 -**Function:** Copy data from source address to destination address525 +**Function:** 503 503 527 +Copy data from source address to destination address 528 + 504 504 **Parameters:** 505 505 506 506 //dst//: destination address ... ... @@ -516,11 +516,13 @@ 516 516 **Failed: multi** 517 517 518 518 ((( 519 -== **addr_fill(string addr, number num, number length)** == 544 +== **2.18 addr_fill(string addr, number num, number length)** == 520 520 ))) 521 521 522 -**Function:** Write the same value to consecutive addresses547 +**Function:** 523 523 549 +Write the same value to consecutive addresses 550 + 524 524 **Parameters:** 525 525 526 526 //addr//: address ... ... @@ -536,11 +536,13 @@ 536 536 Failed: multi 537 537 538 538 ((( 539 -== **addr_newnoaddr(string addr, number offset)** == 566 +== **2.19 addr_newnoaddr(string addr, number offset)** == 540 540 ))) 541 541 542 -**Function:** Offset address value relative to //addr//569 +**Function:** 543 543 571 +Offset address value relative to //addr// 572 + 544 544 **Parameters:** 545 545 546 546 //addr//: address ... ... @@ -554,11 +554,13 @@ 554 554 Failed: multi 555 555 556 556 ((( 557 -== **addr_newstataddr(string addr, number offset)** == 586 +== **2.20 addr_newstataddr(string addr, number offset)** == 558 558 ))) 559 559 560 -**Function:** Offset station number relative to //addr //station number589 +**Function:** 561 561 591 +Offset station number relative to //addr //station number 592 + 562 562 **Parameters:** 563 563 564 564 //addr//: address ... ... @@ -571,10 +571,12 @@ 571 571 572 572 Failed: multi 573 573 574 -== **addr_gethex64(string addr[, number type, number hlword])** == 605 +== **2.21 addr_gethex64(string addr[, number type, number hlword])** == 575 575 576 -**Function:** Read 64-bit hexadecimal numbers607 +**Function:** 577 577 609 +Read 64-bit hexadecimal numbers 610 + 578 578 **Parameters:** 579 579 580 580 //addr//: address ... ... @@ -589,10 +589,12 @@ 589 589 590 590 Failed: multi 591 591 592 -== **addr_sethex64(string addr, number num[, number type, number hlword])** == 625 +== **2.22 addr_sethex64(string addr, number num[, number type, number hlword])** == 593 593 594 -**Function:** Write 64-bit hexadecimal addresses627 +**Function:** 595 595 629 +Write 64-bit hexadecimal addresses 630 + 596 596 **Parameters:** 597 597 598 598 //addr//: address ... ... @@ -613,19 +613,18 @@ 613 613 614 614 Operations on the serial port such as read, write, etc. must use ':' for full mode calls, ie operations on an open serial object. 615 615 616 -**Serial port name and mode** 651 +**Serial port name and mode:** 617 617 618 618 The serial port configured in the communication configuration window cannot be configured again using the script. RS232 and RS458 (or RS422) can be used simultaneously, but RS422 and RS485 are mutually exclusive.For example, when the communication port is configured with COM1-485, the script can only open COM1-232, but not COM1-485/422. Similarly, when the communication port is configured with COM2-485, the script can only open COM2-232, but not COM2-485. 619 619 620 -Attempting to use a script to open a serial port in an unsupported mode will result in an error directly, as below .655 +Attempting to use a script to open a serial port in an unsupported mode will result in an error directly, as below 621 621 622 622 |((( 623 -{{code language="LUA"}} 624 624 local setup = { 625 625 626 626 name = "COM2", 627 627 628 -mode = 422, -- COM2 does not support RS422 662 +mode = 422, ~-~- COM2 does not support RS422 629 629 630 630 ... 631 631 ... ... @@ -632,7 +632,6 @@ 632 632 } 633 633 634 634 serial.open(setup) 635 -{{/code}} 636 636 ))) 637 637 638 638 **Data bit:** ... ... @@ -641,11 +641,13 @@ 641 641 1. When the data bit is 8, the maximum value of data transmission is 255 (0xFF), which supports the transmission of any character. 642 642 643 643 ((( 644 -== **serial.open(table setup)** == 677 +== **3.1 serial.open(table setup)** == 645 645 ))) 646 646 647 -**Function:** Enable one serial port680 +**Function:** 648 648 682 +Enable one serial port 683 + 649 649 **Parameters:** 650 650 651 651 //Setup// is a Lua table; it needs to contain the following fields ... ... @@ -679,13 +679,17 @@ 679 679 Failed: multi 680 680 681 681 ((( 682 -== **serial.close(serial obj)** == 717 +== **3.2 serial.close(serial obj)** == 683 683 ))) 684 684 685 -**Function:** Disable the serial port720 +**Function:** 686 686 687 - **Parameters: **//Obj //isthe objectreturnedbyserial.open722 +Disable the serial port 688 688 724 +**Parameters:** 725 + 726 +//Obj //is the object returned by serial.open 727 + 689 689 **Return:** 690 690 691 691 Succeed: true ... ... @@ -693,11 +693,13 @@ 693 693 Failed: multi 694 694 695 695 ((( 696 -== **serial:read(number bytes[, number timeout])** == 735 +== **3.3 serial:read(number bytes[, number timeout])** == 697 697 ))) 698 698 699 -**Function:** Read the specified byte length serial port data738 +**Function:** 700 700 740 +Read the specified byte length serial port data 741 + 701 701 **Parameters:** 702 702 703 703 //bytes//: number of bytes ... ... @@ -711,13 +711,15 @@ 711 711 Failed: multi 712 712 713 713 ((( 714 -== **serial:write(string data)** == 755 +== **3.4 serial:write(string data)** == 715 715 ))) 716 716 717 -**Function:** Write the specified byte length to serial port data758 +**Function:** 718 718 719 - **Parameters:**760 +Write the specified byte length to serial port data 720 720 762 +**Parameters:** 763 + 721 721 //data//: serial port data 722 722 723 723 **Return:** ... ... @@ -727,11 +727,13 @@ 727 727 Failed: multi 728 728 729 729 ((( 730 -== **serial:flush([number flag])** == 773 +== **3.5 serial:flush([number flag])** == 731 731 ))) 732 732 733 -**Function:** Clear the serial port buffer776 +**Function:** 734 734 778 +Clear the serial port buffer 779 + 735 735 **Parameters:** 736 736 737 737 //[flag=2]// clear option: 0: read, 1: write, 2: read-write ... ... @@ -743,13 +743,17 @@ 743 743 Failed: multi 744 744 745 745 ((( 746 -== **serial:close()** == 791 +== **3.6 serial:close()** == 747 747 ))) 748 748 749 -**Function:** Close the serial port object794 +**Function:** 750 750 751 - **Parameters:** None796 +Close the serial port object 752 752 798 +**Parameters:** 799 + 800 +None 801 + 753 753 **Return:** 754 754 755 755 Succeed: true ... ... @@ -766,10 +766,12 @@ 766 766 767 767 **QoS value:** 768 768 769 -* 0: Only push messages once, messages may be lost or duplicated. It can be used for environmental sensor data, it doesn't matter if lose a record, because there will be a second push message soon. This method is mainly used for normal APP push, but if the user smart device is not connected when the message is pushed, the message will be discarded, and the smart device will not be received when it is networked again. 770 -* 1: The message is delivered at least once, but the message may be delivered repeatedly. 771 -* 2: The message was delivered exactly once. This level can be used in a billing system. In a billing system, repeated or missing messages can lead to incorrect results. This highest quality message push service can also be used for instant messaging APP pushes, ensuring that users only receive messages once. 818 +0: Only push messages once, messages may be lost or duplicated. It can be used for environmental sensor data, it doesn't matter if lose a record, because there will be a second push message soon. This method is mainly used for normal APP push, but if the user smart device is not connected when the message is pushed, the message will be discarded, and the smart device will not be received when it is networked again. 772 772 820 +1: The message is delivered at least once, but the message may be delivered repeatedly. 821 + 822 +2: The message was delivered exactly once. This level can be used in a billing system. In a billing system, repeated or missing messages can lead to incorrect results. This highest quality message push service can also be used for instant messaging APP pushes, ensuring that users only receive messages once. 823 + 773 773 **Retain flag:** 774 774 775 775 0: not reserved; ... ... @@ -777,11 +777,13 @@ 777 777 1: reserved 778 778 779 779 ((( 780 -== **mqtt.create(string serverurl, string clientid)** == 831 +== **4.1 mqtt.create(string serverurl, string clientid)** == 781 781 ))) 782 782 783 -**Function:** Create an MQTT object834 +**Function:** 784 784 836 +Create an MQTT object 837 + 785 785 **Parameters:** 786 786 787 787 //serverurl //Server url ... ... @@ -803,13 +803,17 @@ 803 803 Failed: multi 804 804 805 805 ((( 806 -== **mqtt.close(mqtt obj)** == 859 +== **4.2 mqtt.close(mqtt obj)** == 807 807 ))) 808 808 809 -**Function:** Close the specified MQTT object (if the connected server will be disconnected automatically)862 +**Function:** 810 810 811 - **Parameters:**//Obj//isthebjecedturnedby mqtt.create864 +Close the specified MQTT object (if the connected server will be disconnected automatically) 812 812 866 +**Parameters:** 867 + 868 +//Obj //is the objeced returned by mqtt.create 869 + 813 813 **Return:** 814 814 815 815 Succeed: true ... ... @@ -817,25 +817,32 @@ 817 817 Failed: multi 818 818 819 819 ((( 820 -== **mqtt:connect(table conn[, table lwt, table cart])** == 877 +== **4.3 mqtt:connect(table conn[, table lwt, table cart])** == 821 821 ))) 822 822 823 -**Function:** Establish a connection to the server880 +**Function:** 824 824 882 +Establish a connection to the server 883 + 825 825 **Parameters:** 826 826 827 827 //conn //is a Lua table and needs to contain the following fields 828 828 829 -* //string conn.username//, user name 830 -* //string conn.password//, password 831 -* //number [conn.netway=0]//, networking method, if set error number will use Ethernet method 832 -** 0: Ethernet 833 -** 1: WIFI 834 -** 2: 4G 835 -** 3: 2G 836 -* //number [conn.keepalive=60]//, keep connected heartbeat interval, in seconds 837 -* //number [conn.cleansession=1]//, empty the session as described below: 888 +//string conn.username//, user name 838 838 890 +//string conn.password//, password 891 + 892 +//number [conn.netway=0]//, networking method, if set error number will use Ethernet method 893 + 894 +* 0: Ethernet 895 +* 1: WIFI 896 +* 2: 4G 897 +* 3: 2G 898 + 899 +//number [conn.keepalive=60]//, keep connected heartbeat interval, in seconds 900 + 901 +//number [conn.cleansession=1]//, empty the session as described below: 902 + 839 839 This function is used to control the behavior when connecting and disconnecting, and the client and server will retain the session information. This information is used to guarantee "at least once" and "accurately once" delivery, as well as the subject of the client subscription, the user can choose to keep or ignore the session message, set as follows: 840 840 841 841 * 1 (Empty): If a session exists and is 1, the previous session messages on the client and server are emptied. ... ... @@ -843,11 +843,14 @@ 843 843 844 844 //lwt// (Last Will and Testament) is a Lua table and needs to contain the following fields 845 845 846 -* //string lwt.topic//, topic 847 -* //string lwt.message//, message 848 -* //number [lwt.qos=0]//, qos value 849 -* //number [lwt.retain=0]//, retain flag 910 +//string lwt.topic//, topic 850 850 912 +//string lwt.message//, message 913 + 914 +//number [lwt.qos=0]//, qos value 915 + 916 +//number [lwt.retain=0]//, retain flag 917 + 851 851 **Return:** 852 852 853 853 Succeed: true ... ... @@ -855,13 +855,17 @@ 855 855 Failed: multi 856 856 857 857 ((( 858 -== **mqtt:disconnect([number timeout])** == 925 +== **4.4 mqtt:disconnect([number timeout])** == 859 859 ))) 860 860 861 -**Function:** Disconnect from the MQTT server928 +**Function:** 862 862 863 - **Parameters: **//[timeout=10000] //Disconnectwaitingtimeout,inmilliseconds930 +Disconnect from the MQTT server 864 864 932 +**Parameters:** 933 + 934 +//[timeout=10000] //Disconnect waiting timeout, in milliseconds 935 + 865 865 **Return:** 866 866 867 867 Succeed: true ... ... @@ -869,13 +869,17 @@ 869 869 Failed: multi 870 870 871 871 ((( 872 -== **mqtt:isconnected()** == 943 +== **4.5 mqtt:isconnected()** == 873 873 ))) 874 874 875 -**Function:** Test whether or not a client is currently connected to the MQTT server946 +**Function:** 876 876 877 - **Parameters:** None948 +Test whether or not a client is currently connected to the MQTT server 878 878 950 +**Parameters:** 951 + 952 +None 953 + 879 879 **Return:** 880 880 881 881 Succeed: true ~-~-Connected ... ... @@ -883,11 +883,13 @@ 883 883 Failed: false ~-~- Unconnected and other unknowns 884 884 885 885 ((( 886 -== **mqtt:subscribe(string topic, number qos)** == 961 +== **4.6 mqtt:subscribe(string topic, number qos)** == 887 887 ))) 888 888 889 -**Function: Subscribe to the topic (before the subscription, the user must first call the connect method to connect to the server)964 +**Function:** 890 890 966 +Subscribe to the topic (before the subscription, the user must first call the connect method to connect to the server) 967 + 891 891 **Parameters:** 892 892 893 893 //topic//, topic name ... ... @@ -901,11 +901,13 @@ 901 901 Failed: multi 902 902 903 903 ((( 904 -== **mqtt:unsubscribe(string topic)** == 981 +== **4.7 mqtt:unsubscribe(string topic)** == 905 905 ))) 906 906 907 -**Function:** Unsubscribe topic984 +**Function:** 908 908 986 +Unsubscribe topic 987 + 909 909 **Parameters:** 910 910 911 911 //topic//, topic name ... ... @@ -917,11 +917,13 @@ 917 917 Failed: multi 918 918 919 919 ((( 920 -== **mqtt:publish(string topic, string message, number qos, number retain[, number timeout])** == 999 +== **4.8 mqtt:publish(string topic, string message, number qos, number retain[, number timeout])** == 921 921 ))) 922 922 923 -**Function:** Publish message1002 +**Function:** 924 924 1004 +Publish message 1005 + 925 925 **Parameters:** 926 926 927 927 //topic//, topic name ... ... @@ -941,13 +941,17 @@ 941 941 Failed: multi 942 942 943 943 ((( 944 -== **mqtt:close()** == 1025 +== **4.9 mqtt:close()** == 945 945 ))) 946 946 947 -**Function:** Close the mqtt object (the connection to the server will be automatically disconnected)1028 +**Function:** 948 948 949 - **Parameters:** None1030 +Close the mqtt object (the connection to the server will be automatically disconnected) 950 950 1032 +**Parameters:** 1033 + 1034 +None 1035 + 951 951 **Return:** 952 952 953 953 Succeed: true ... ... @@ -955,11 +955,13 @@ 955 955 Failed: multi 956 956 957 957 ((( 958 -== **mqtt:on(string method, function callback)** == 1043 +== **4.10 mqtt:on(string method, function callback)** == 959 959 ))) 960 960 961 -**Function:** Register event callback function1046 +**Function:** 962 962 1048 +Register event callback function 1049 + 963 963 **Parameters:** 964 964 965 965 //method//, It can be message/arrived/offline, these 3 types of events ... ... @@ -972,17 +972,20 @@ 972 972 973 973 Parameter: 974 974 975 -* //Topic//, topic name 976 -* //Message//, content 1062 +//Topic//, topic name 977 977 978 - **2."arrived" ispublished by publish,this functionwill be called after the publicationarrives**1064 +//Message//, content 979 979 1066 +**2.**"arrived" is published by publish, this function will be called after the publication arrives 1067 + 980 980 //Callback// prototype~:// function ()// 981 981 982 -Parameter: None1070 +Parameter: 983 983 984 - **3.This functionwill becalled after the "offline" connection is lost**1072 +None 985 985 1074 +**3.**This function will be called after the "offline" connection is lost 1075 + 986 986 //Callback// prototype~:// function (string cause)// 987 987 988 988 Parameter: ... ... @@ -996,13 +996,17 @@ 996 996 Failed: multi 997 997 998 998 ((( 999 -== **mqtt:setup_cfg()** == 1089 +== **4.11 mqtt:setup_cfg()** == 1000 1000 ))) 1001 1001 1002 -**Function:** Cloud mode interface, to obtain MQTT information configured by the cloud platform1092 +**Function:** 1003 1003 1004 - **Parameters:** None1094 +Cloud mode interface, to obtain MQTT information configured by the cloud platform 1005 1005 1096 +**Parameters:** 1097 + 1098 +None 1099 + 1006 1006 **Return:** 1007 1007 1008 1008 //serverurl, clientid, conn, lwt, cart //(5 returns, respectively, server address, client ID, connection table, last word table, certificate table) ... ... @@ -1020,27 +1020,39 @@ 1020 1020 Lua only has a table data structure, so all arrays and key-value objects of json will be returned as a table. 1021 1021 1022 1022 ((( 1023 -== **json.encode( lua_object )** == 1117 +== **5.1 json.encode( lua_object )** == 1024 1024 ))) 1025 1025 1026 -**Function: Convert lua data type to json string1120 +**Function:** 1027 1027 1028 - **Parameters:**Lua data type(includingboolean,number,string, table)1122 +Convert lua data type to json string 1029 1029 1030 -** Return:**Json format string1124 +**Parameters:** 1031 1031 1126 +Lua data type (including boolean, number, string, table) 1127 + 1128 +**Return:** 1129 + 1130 +Json format string 1131 + 1032 1032 ((( 1033 -== **json.decode(string json_string)** == 1133 +== **5.2 json.decode(string json_string)** == 1034 1034 ))) 1035 1035 1036 -**Function:** Convert json string to lua data type1136 +**Function:** 1037 1037 1038 - **Parameters:**//json_string//,string ofjsondatastructure1138 +Convert json string to lua data type 1039 1039 1040 -** Return:Lua data type1140 +**Parameters:** 1041 1041 1142 +//json_string//, string of json data structure 1143 + 1144 +**Return:** 1145 + 1146 +Lua data type 1147 + 1042 1042 ((( 1043 -== **json.null** == 1149 +== **5.3 json.null** == 1044 1044 ))) 1045 1045 1046 1046 **Function:** ... ... @@ -1047,24 +1047,32 @@ 1047 1047 1048 1048 This method is used when assembling json data, which is equivalent to null in json. If the user directly uses json.null() to return the address of the function, it must be valid with the use of encode. 1049 1049 1050 -**Parameters:** None1156 +**Parameters:** 1051 1051 1052 - **Return: **None1158 +None 1053 1053 1160 +**Return:** 1161 + 1162 +None 1163 + 1054 1054 = **6 Cloud mode** = 1055 1055 1056 1056 The cloud interface is only used in cloud mode, and V-NET mode is not available. 1057 1057 1058 1058 ((( 1059 -== **bns_get_alldata()** == 1169 +== **6.1 bns_get_alldata()** == 1060 1060 ))) 1061 1061 1062 -**Function:** Obtain all monitoring points (point table) data configured by the end user1172 +**Function:** 1063 1063 1064 - **✎Note: **Assumingtherearetiming scripts A and B with a period of 1 second,ifthisfunctionis called inscriptA,the datawill not beobtainedif calledinscript B1174 +Obtain all monitoring points (point table) data configured by the end user 1065 1065 1066 - **Parameters:** None1176 +Note: Assuming there are timing scripts A and B with a period of 1 second, if this function is called in script A, the data will not be obtained if called in script B 1067 1067 1178 +**Parameters:** 1179 + 1180 +None 1181 + 1068 1068 **Return:** 1069 1069 1070 1070 Succeed: table two-dimensional array, the structure is as follows ... ... @@ -1077,9 +1077,8 @@ 1077 1077 1078 1078 If there is no custom configuration, return an empty table, otherwise, return with "field name/field content" 1079 1079 1080 - **For example:**1194 +E.g: 1081 1081 1082 -{{code language="LUA"}} 1083 1083 { 1084 1084 1085 1085 [1]= {[1]=1234, [2]=1, [3]='temp', [4]='23.5', [5]={"fruit"="apple"}}, ... ... @@ -1092,15 +1092,16 @@ 1092 1092 1093 1093 } 1094 1094 1095 -Failed: table empty table 1096 -{{/code}} 1208 +Failed: //table// empty table 1097 1097 1098 1098 ((( 1099 -== **bns_get_config(string from)** == 1211 +== **6.2 bns_get_config(string from)** == 1100 1100 ))) 1101 1101 1102 -**Function:** Obtain custom configuration parameters with the specified from type1214 +**Function:** 1103 1103 1216 +Obtain custom configuration parameters with the specified from type 1217 + 1104 1104 **parameter:** 1105 1105 1106 1106 from type, there are the following two categories, the string must be all lowercase ... ... @@ -1118,11 +1118,13 @@ 1118 1118 Failed~:// table// empty table 1119 1119 1120 1120 ((( 1121 -== **bns_get_data(string name, string data)** == 1235 +== **6.3 bns_get_data(string name, string data)** == 1122 1122 ))) 1123 1123 1124 -**Function:** write data to the name of the monitoring point1238 +**Function:** 1125 1125 1240 +write data to the name of the monitoring point 1241 + 1126 1126 **parameter:** 1127 1127 1128 1128 //name //The name of the monitoring point ... ... @@ -1136,7 +1136,7 @@ 1136 1136 Failed: nil 1137 1137 1138 1138 ((( 1139 -== **bns_get_data(string name)** == 1255 +== **6.4 bns_get_data(string name)** == 1140 1140 ))) 1141 1141 1142 1142 **Function:** ... ... @@ -1154,13 +1154,17 @@ 1154 1154 Failed: nil 1155 1155 1156 1156 ((( 1157 -== **bns_get_datadesc()** == 1273 +== **6.5 bns_get_datadesc()** == 1158 1158 ))) 1159 1159 1160 -**Function: Obtain all configured communication ports and monitoring point information1276 +**Function:** 1161 1161 1162 - **Parameters:** None1278 +Obtain all configured communication ports and monitoring point information 1163 1163 1280 +**Parameters:** 1281 + 1282 +None 1283 + 1164 1164 **Return:** 1165 1165 1166 1166 Succeed: table three-dimensional array, the structure is as follows ... ... @@ -1173,15 +1173,13 @@ 1173 1173 1174 1174 Type (1: switch, 2: number, 3: string) 1175 1175 1176 -**For example:** 1296 +E.g: 1297 + { 1177 1177 1178 -{{code language="LUA"}} 1179 -{ 1299 +[1]={~-~-The first communication port 1180 1180 1181 -[1]={-- The first communication port1301 +[1]={~-~-monitoring point array of the first communication port 1182 1182 1183 -[1]={--monitoring point array of the first communication port 1184 - 1185 1185 [1]={[1]=11,[2]='data1',[3]=3,[4]=2}, 1186 1186 1187 1187 [2]={[1]=12,[2]='data2',[3]=3,[4]=2}, ... ... @@ -1188,23 +1188,23 @@ 1188 1188 1189 1189 ... 1190 1190 1191 -[n]={[1]=xx,[2]='datan',[3]=x,[4]=x},--n monitoring points 1309 +[n]={[1]=xx,[2]='datan',[3]=x,[4]=x},~-~-n monitoring points 1192 1192 1193 1193 }, 1194 1194 1195 -[2]=14, --ID 1313 +[2]=14, ~-~-ID 1196 1196 1197 -[3]='Modbus TCP' --n monitoring points 1315 +[3]='Modbus TCP' ~-~-n monitoring points 1198 1198 1199 1199 }, 1200 1200 1201 -[2]={--The second communication port 1319 +[2]={~-~-The second communication port 1202 1202 1203 -[1]={},--The monitoring point of the second communication port is not configured and is empty 1321 +[1]={},~-~-The monitoring point of the second communication port is not configured and is empty 1204 1204 1205 -[2]=15, --ID 1323 +[2]=15, ~-~-ID 1206 1206 1207 -[3]='WECON' --communication protocol name 1325 +[3]='WECON' ~-~-communication protocol name 1208 1208 1209 1209 }, 1210 1210 ... ... @@ -1211,18 +1211,21 @@ 1211 1211 ...n communication ports and so on 1212 1212 1213 1213 } 1214 -{{/code}} 1215 1215 1216 1216 Failed~:// table// empty table 1217 1217 1218 1218 ((( 1219 -== **bns_get_machineinfo()** == 1336 +== **6.6 bns_get_machineinfo()** == 1220 1220 ))) 1221 1221 1222 -**Function:** get machine information1339 +**Function:** 1223 1223 1224 - **Parameters:** None1341 +get machine information 1225 1225 1343 +**Parameters:** 1344 + 1345 +None 1346 + 1226 1226 **Return:** 1227 1227 1228 1228 Succeed: 3 string type results (model, machine code, software version) ... ... @@ -1230,11 +1230,13 @@ 1230 1230 Failed: nil 1231 1231 1232 1232 ((( 1233 -== **bns_get_groupdata(string name)** == 1354 +== **6.7 bns_get_groupdata(string name)** == 1234 1234 ))) 1235 1235 1236 -**Function:** Get all monitoring point data under the specified group name1357 +**Function:** 1237 1237 1359 +Get all monitoring point data under the specified group name 1360 + 1238 1238 **parameter:** 1239 1239 1240 1240 //Name // group name ... ... @@ -1246,13 +1246,17 @@ 1246 1246 Failed: //table// empty table 1247 1247 1248 1248 ((( 1249 -== **bns_get_groupdesc()** == 1372 +== **6.8 bns_get_groupdesc()** == 1250 1250 ))) 1251 1251 1252 -**Function:** Get all group information1375 +**Function:** 1253 1253 1254 - **Parameters:** None1377 +Get all group information 1255 1255 1379 +**Parameters:** 1380 + 1381 +None 1382 + 1256 1256 **Return:** 1257 1257 1258 1258 Succeed: //table// two-dimensional array, the structure is as follows ... ... @@ -1266,13 +1266,17 @@ 1266 1266 Failed: //table // empty table 1267 1267 1268 1268 ((( 1269 -== **bns_get_onecache(string msg)** == 1396 +== **6.9 bns_get_onecache(string msg)** == 1270 1270 ))) 1271 1271 1272 -**Function:** Save a message to the cache file, which can be stored after power failure. Store up to 2000 items, delete the old and save the new in a rolling manner when it is full.1399 +**Function:** 1273 1273 1274 - **Parameters:**//msg//String1401 +Save a message to the cache file, which can be stored after power failure. Store up to 2000 items, delete the old and save the new in a rolling manner when it is full. 1275 1275 1403 +**Parameters:** 1404 + 1405 +//msg// String 1406 + 1276 1276 **Return:** 1277 1277 1278 1278 Succeed: true ... ... @@ -1280,20 +1280,23 @@ 1280 1280 Failed: nil 1281 1281 1282 1282 ((( 1283 -== **bns_get_allcache()** == 1414 +== **6.10 bns_get_allcache()** == 1284 1284 ))) 1285 1285 1286 -**Function:** Get all the cached content (once the internal cache file will be emptied)1417 +**Function:** 1287 1287 1288 - **Parameters:** None1419 +Get all the cached content (once the internal cache file will be emptied) 1289 1289 1421 +**Parameters:** 1422 + 1423 +None 1424 + 1290 1290 **Return:** 1291 1291 1292 1292 Succeed: //table// one-dimensional array 1293 1293 1294 - **For example:**1429 +E.g: 1295 1295 1296 -{{code language="LUA"}} 1297 1297 { 1298 1298 1299 1299 [1]="This is the oldest message", - the first is the oldest message ... ... @@ -1305,7 +1305,6 @@ 1305 1305 [n]="This is the latest message", - the last is the latest message 1306 1306 1307 1307 } 1308 -{{/code}} 1309 1309 1310 1310 Failede: nil 1311 1311 ... ... @@ -1316,243 +1316,194 @@ 1316 1316 Network communication includes Http request interface, this document does not provide interface description, please refer to the online document for how to use it. 1317 1317 1318 1318 ((( 1319 -== **http request** == 1452 +== **7.1 http request** == 1320 1320 ))) 1321 1321 1322 1322 [[http:~~/~~/w3.impa.br/~~~~diego/software/luasocket/http.html#request>>url:http://w3.impa.br/~~diego/software/luasocket/http.html#request]] 1323 1323 1324 -== **https request** == 1457 +((( 1458 += **8 Internal register** = 1459 +))) 1325 1325 1326 - **For example:**1461 +The internal registers of the box are divided into bit addresses and word addresses, which can be accessed in two ways (taking HDW as an example): 1327 1327 1328 -{{code language="LUA"}} 1329 -local json = require("json") 1463 +**~1. **Access by word, prefix @W_HDW, 1330 1330 1331 - local https=require("https")1465 +For example: @W_HDW0 represents the first word of the system data area, @W_HDW1 represents the second word of the system data area. 1332 1332 1333 - functionshttps_demo.main()1467 +**2. **Access in bit mode, the prefix is @B_HDX, the number in front of "." indicates the number of the word, and the number behind is the bit number of the word. 1334 1334 1335 -loca lurl="https://XXXXXXXXXXXXXXXXXXXXXXXXXX"1469 +For example: @B_HDX1020.12, its meaning is to access the system data area in bit mode, the specific location is the 13th bit of the 1020th word. 1336 1336 1337 - localbody = {}1471 +**✎Note: ** 1338 1338 1339 - body["XXXXXX"]="XXXXX"1473 +**~1. **The address in @B_HDX is taken from the word in @W_HDW, so pay special attention when using the address. 1340 1340 1341 -body ["XXXXXXX"]="XXXXXXXXXXX"1475 +For example, @B_HDX1020.12 is to access the 13th bit of the 1020th word. The value of this bit is the same as the word obtained by @W_HDW001020. The 13th bit of this word is actually the same bit as @B_HDX1020.12. 1342 1342 1343 - localbodyJson=json.encode(body)1477 +**2.**The address of the bit address @B_HDX has a decimal point, while the word address is an integer. 1344 1344 1345 -local header = {} 1479 +((( 1480 +== **8.1 Data storage area(HDW/HDX)** == 1481 +))) 1346 1346 1347 -hea der["content-type"]= "application/json"1483 +The system storage area (HDW) of the V-BOX is used to store temporary data: 1348 1348 1349 - localresult_table,code, headers,status= https.request(url,1485 +~1. Access by word, the number range is: "@W_HDW0"-"@W_HDW299999". 1350 1350 1351 -bod yJson)1487 +2. Access in bit mode, the number range is: "@B_HDX0.0"-"@B_HDX299999.15". 1352 1352 1353 -if code == 200 then 1489 +((( 1490 +== **8.2 Special data area (HSW/HSX)** == 1491 +))) 1354 1354 1355 - print("httpssuc")1493 +**✎Note: ** 1356 1356 1357 -return true 1495 +//HSW// is a system special register, so please refer to the system special register table during use. Do not use addresses that are not mentioned in the table, and use the addresses stated in the table with caution (example: restart ("@W_HSW0") Writing a value of 1 will cause V-BOX to restart). 1358 1358 1359 -else 1497 +//Without any conditions. Direct use ("@W_HSW0") will cause the V-BOX to restart continuously.// When using ("@W_HSW0") address, please add judgment conditions, such as: connection to MQTT fails, there is no network, the value of a PLC address meets the condition or counts to a certain value. 1360 1360 1361 -pri nt("https fail")1499 +1.The system data area (HSW) of the box is used for system special registers (system reserved). Use //addr_getword// to obtain the following register information: 1362 1362 1363 -return nil 1501 +(% class="table-bordered" %) 1502 +|address|function|Read and write status: read only, write only, read and write 1503 +|@W_HSW0|restart|read and write 1504 +|@W_HSW1|Box time: year|read and write 1505 +|@W_HSW2|Box time: month|read and write 1506 +|@W_HSW3|Box time: day|read and write 1507 +|@W_HSW4|Box time: hour|read and write 1508 +|@W_HSW5|Box time: minute|read and write 1509 +|@W_HSW6|Box time: second|read and write 1510 +|@W_HSW7|Box time: week|read and write 1511 +|@W_HSW8|Ethernet IP1|read only 1512 +|@W_HSW9|Ethernet IP2|read only 1513 +|@W_HSW10|Ethernet IP3|read only 1514 +|@W_HSW11|Ethernet IP4|read only 1515 +|@W_HSW12|Ethernet Mask 1|read only 1516 +|@W_HSW13|Ethernet Mask 2|read only 1517 +|@W_HSW14|Ethernet Mask 3|read only 1518 +|@W_HSW15|Ethernet Mask 4|read only 1519 +|@W_HSW16|Ethernet Gateway 1|read only 1520 +|@W_HSW17|Ethernet Gateway 2|read only 1521 +|@W_HSW18|Ethernet Gateway 3|read only 1522 +|@W_HSW19|Ethernet Gateway 4|read only 1523 +|@W_HSW21|Ethernet MAC1|read only 1524 +|@W_HSW22|Ethernet MAC2|read only 1525 +|@W_HSW23|Ethernet MAC3|read only 1526 +|@W_HSW24|Ethernet MAC4|read only 1527 +|@W_HSW25|Ethernet MAC3|read only 1528 +|@W_HSW26|Ethernet MAC4|read only 1529 +|@W_HSW128|WIFI IP1|read only 1530 +|@W_HSW129|WIFI IP2|read only 1531 +|@W_HSW130|WIFI IP3|read only 1532 +|@W_HSW131|WIFI IP4|read only 1533 +|@W_HSW132|WIFI Mask 1|read only 1534 +|@W_HSW133|WIFI Mask 2|read only 1535 +|@W_HSW134|WIFI Mask 3|read only 1536 +|@W_HSW135|WIFI Mask 4|read only 1537 +|@W_HSW136|WIFI Gateway 1|read only 1538 +|@W_HSW137|WIFI Gateway 2|read only 1539 +|@W_HSW138|WIFI Gateway 3|read only 1540 +|@W_HSW139|WIFI Gateway 4|read only 1541 +|@W_HSW140|WIFI MAC1|read only 1542 +|@W_HSW141|WIFI MAC2|read only 1543 +|@W_HSW142|WIFI MAC3|read only 1544 +|@W_HSW143|WIFI MAC4|read only 1545 +|@W_HSW144|WIFI MAC5|read only 1546 +|@W_HSW145|WIFI MAC6|read only 1547 +|@W_HSW146|WIFI Signal value|read only 1548 +|@W_HSW148|4G IP1|read only 1549 +|@W_HSW149|4G IP2|read only 1550 +|@W_HSW150|4G IP3|read only 1551 +|@W_HSW151|4G IP4|read only 1552 +|@W_HSW152|4G Mask 1|read only 1553 +|@W_HSW153|4G Mask 2|read only 1554 +|@W_HSW154|4G Mask 3|read only 1555 +|@W_HSW155|4G Mask 4|read only 1556 +|@W_HSW156|4G Gateway 1|read only 1557 +|@W_HSW157|4G Gateway 2|read only 1558 +|@W_HSW158|4G Gateway 3|read only 1559 +|@W_HSW159|4G Gateway 4|read only 1560 +|@W_HSW160|4G MAC1|read only 1561 +|@W_HSW161|4G MAC2|read only 1562 +|@W_HSW162|4G MAC3|read only 1563 +|@W_HSW163|4G MAC4|read only 1564 +|@W_HSW164|4G MAC5|read only 1565 +|@W_HSW165|4G MAC6|read only 1566 +|@W_HSW166|4G Signal value|read only 1364 1364 1365 -e nd1568 +2. Other 1366 1366 1367 -end 1368 -{{/code}} 1570 +2.1 Access password: addr_getstring("@W_HSW27", 16) 1369 1369 1370 -((( 1371 -= **8 Internal register** = 1372 -))) 1572 +2.2 Machine code: addr_getstring("@W_HSW60", 64) 1373 1373 1374 - Theinternal registersof the box are divided into bit addresses andword addresses, which can be accessedin two ways(takingHDW asanexample):1574 +2.3 Positioning method (@W_HSW167): (read only) 1375 1375 1376 - **Accessbyword, prefix @W_HDW.**1576 +~1. Latitude and longitude 1377 1377 1378 - For example: @W_HDW0 represents the firstwordof thesystem data area,@W_HDW1 represents the secondword of the system data area.1578 +Longitude: addr_getdouble("@W_HSW168") (read only) 1379 1379 1380 - **Accessin bitmode,the prefix is @B_HDX, thenumber in front of"."indicates the numberof theword,andthe number behind is the bit numberof the word.**1580 +Latitude: addr_getdouble("@W_HSW172") (read only) 1381 1381 1382 - **For example:** @B_HDX1020.12,its meaning isto accessthesystem data areainbit mode, thespecific locations the 13th bit of the 1020th word.1582 +2. Base station positioning 1383 1383 1384 -(% class="box infomessage" %) 1385 -((( 1386 -**✎Note: ** 1584 +LAC: addr_getdword("@W_HSW168") (read only) 1387 1387 1388 -* The address in @B_HDX is taken from the word in @W_HDW, so pay special attention when using the address. 1389 -** For example, @B_HDX1020.12 is to access the 13th bit of the 1020th word. The value of this bit is the same as the word obtained by @W_HDW001020. The 13th bit of this word is actually the same bit as @B_HDX1020.12. 1390 -* The address of the bit address @B_HDX has a decimal point, while the word address is an integer. 1391 -))) 1586 +CI: addr_getdword("@W_HSW172") (read only) 1392 1392 1588 +2.4 Convert base station to latitude and longitude via API 1393 1393 1394 -((( 1395 -== **Data storage area(HDW/HDX)** == 1396 -))) 1590 +Longitude: addr_getdouble("@W_HSW187") (read only) 1397 1397 1398 - The system storage area(HDW)of theV-BOX is usedtostore temporarydata:1592 +Latitude: addr_getdouble("@W_HSW183") (read only) 1399 1399 1400 -1. Access by word, the number range is: "@W_HDW0"-"@W_HDW299999". 1401 -1. Access in bit mode, the number range is: "@B_HDX0.0"-"@B_HDX299999.15". 1594 +2.5 Operator information: addr_getdword("@W_HSW181") (read only) 1402 1402 1403 -((( 1404 -== **Special data area (HSW/HSX)** == 1596 +2.6 Networking mode: addr_getword("@W_HSW177") (read only) 1405 1405 1406 -(% class="box infomessage" %) 1407 -((( 1408 -**✎Note: ** 1598 +0: Ethernet, 1: WIFI, 2: 4G, 3: 2G 1409 1409 1410 -* //HSW// is a system special register, so please refer to the system special register table during use. Do not use addresses that are not mentioned in the table, and use the addresses stated in the table with caution (example: restart ("@W_HSW0") Writing a value of 1 will cause V-BOX to restart). 1411 -* //Without any conditions. Direct use ("@W_HSW0") will cause the V-BOX to restart continuously.// When using ("@W_HSW0") address, please add judgment conditions, such as: connection to MQTT fails, there is no network, the value of a PLC address meets the condition or counts to a certain value. 1412 -))) 1413 -))) 1600 +2.7 Map fence flag: addr_getword("@W_HSW178") (read only) 1414 1414 1415 - Thesystemdataarea (HSW) ofthebox is usedfor system special registers(system reserved). Use //addr_getword// to obtain the following register information:1602 +0: No map fence is drawn 1416 1416 1417 -(% class="table-bordered" %) 1418 -|=(% style="width: 151px;" %)address|=(% style="width: 169px;" %)function|=(% style="width: 456px;" %)Read and write status: read only, write only, read and write 1419 -|(% style="width:151px" %)@W_HSW0|(% style="width:169px" %)restart|(% style="width:456px" %)read and write 1420 -|(% style="width:151px" %)@W_HSW1|(% style="width:169px" %)Box time: year|(% style="width:456px" %)read and write 1421 -|(% style="width:151px" %)@W_HSW2|(% style="width:169px" %)Box time: month|(% style="width:456px" %)read and write 1422 -|(% style="width:151px" %)@W_HSW3|(% style="width:169px" %)Box time: day|(% style="width:456px" %)read and write 1423 -|(% style="width:151px" %)@W_HSW4|(% style="width:169px" %)Box time: hour|(% style="width:456px" %)read and write 1424 -|(% style="width:151px" %)@W_HSW5|(% style="width:169px" %)Box time: minute|(% style="width:456px" %)read and write 1425 -|(% style="width:151px" %)@W_HSW6|(% style="width:169px" %)Box time: second|(% style="width:456px" %)read and write 1426 -|(% style="width:151px" %)@W_HSW7|(% style="width:169px" %)Box time: week|(% style="width:456px" %)read and write 1427 -|(% style="width:151px" %)@W_HSW8|(% style="width:169px" %)Ethernet IP1|(% style="width:456px" %)read only 1428 -|(% style="width:151px" %)@W_HSW9|(% style="width:169px" %)Ethernet IP2|(% style="width:456px" %)read only 1429 -|(% style="width:151px" %)@W_HSW10|(% style="width:169px" %)Ethernet IP3|(% style="width:456px" %)read only 1430 -|(% style="width:151px" %)@W_HSW11|(% style="width:169px" %)Ethernet IP4|(% style="width:456px" %)read only 1431 -|(% style="width:151px" %)@W_HSW12|(% style="width:169px" %)Ethernet Mask 1|(% style="width:456px" %)read only 1432 -|(% style="width:151px" %)@W_HSW13|(% style="width:169px" %)Ethernet Mask 2|(% style="width:456px" %)read only 1433 -|(% style="width:151px" %)@W_HSW14|(% style="width:169px" %)Ethernet Mask 3|(% style="width:456px" %)read only 1434 -|(% style="width:151px" %)@W_HSW15|(% style="width:169px" %)Ethernet Mask 4|(% style="width:456px" %)read only 1435 -|(% style="width:151px" %)@W_HSW16|(% style="width:169px" %)Ethernet Gateway 1|(% style="width:456px" %)read only 1436 -|(% style="width:151px" %)@W_HSW17|(% style="width:169px" %)Ethernet Gateway 2|(% style="width:456px" %)read only 1437 -|(% style="width:151px" %)@W_HSW18|(% style="width:169px" %)Ethernet Gateway 3|(% style="width:456px" %)read only 1438 -|(% style="width:151px" %)@W_HSW19|(% style="width:169px" %)Ethernet Gateway 4|(% style="width:456px" %)read only 1439 -|(% style="width:151px" %)@W_HSW21|(% style="width:169px" %)Ethernet MAC1|(% style="width:456px" %)read only 1440 -|(% style="width:151px" %)@W_HSW22|(% style="width:169px" %)Ethernet MAC2|(% style="width:456px" %)read only 1441 -|(% style="width:151px" %)@W_HSW23|(% style="width:169px" %)Ethernet MAC3|(% style="width:456px" %)read only 1442 -|(% style="width:151px" %)@W_HSW24|(% style="width:169px" %)Ethernet MAC4|(% style="width:456px" %)read only 1443 -|(% style="width:151px" %)@W_HSW25|(% style="width:169px" %)Ethernet MAC3|(% style="width:456px" %)read only 1444 -|(% style="width:151px" %)@W_HSW26|(% style="width:169px" %)Ethernet MAC4|(% style="width:456px" %)read only 1445 -|(% style="width:151px" %)@W_HSW128|(% style="width:169px" %)WIFI IP1|(% style="width:456px" %)read only 1446 -|(% style="width:151px" %)@W_HSW129|(% style="width:169px" %)WIFI IP2|(% style="width:456px" %)read only 1447 -|(% style="width:151px" %)@W_HSW130|(% style="width:169px" %)WIFI IP3|(% style="width:456px" %)read only 1448 -|(% style="width:151px" %)@W_HSW131|(% style="width:169px" %)WIFI IP4|(% style="width:456px" %)read only 1449 -|(% style="width:151px" %)@W_HSW132|(% style="width:169px" %)WIFI Mask 1|(% style="width:456px" %)read only 1450 -|(% style="width:151px" %)@W_HSW133|(% style="width:169px" %)WIFI Mask 2|(% style="width:456px" %)read only 1451 -|(% style="width:151px" %)@W_HSW134|(% style="width:169px" %)WIFI Mask 3|(% style="width:456px" %)read only 1452 -|(% style="width:151px" %)@W_HSW135|(% style="width:169px" %)WIFI Mask 4|(% style="width:456px" %)read only 1453 -|(% style="width:151px" %)@W_HSW136|(% style="width:169px" %)WIFI Gateway 1|(% style="width:456px" %)read only 1454 -|(% style="width:151px" %)@W_HSW137|(% style="width:169px" %)WIFI Gateway 2|(% style="width:456px" %)read only 1455 -|(% style="width:151px" %)@W_HSW138|(% style="width:169px" %)WIFI Gateway 3|(% style="width:456px" %)read only 1456 -|(% style="width:151px" %)@W_HSW139|(% style="width:169px" %)WIFI Gateway 4|(% style="width:456px" %)read only 1457 -|(% style="width:151px" %)@W_HSW140|(% style="width:169px" %)WIFI MAC1|(% style="width:456px" %)read only 1458 -|(% style="width:151px" %)@W_HSW141|(% style="width:169px" %)WIFI MAC2|(% style="width:456px" %)read only 1459 -|(% style="width:151px" %)@W_HSW142|(% style="width:169px" %)WIFI MAC3|(% style="width:456px" %)read only 1460 -|(% style="width:151px" %)@W_HSW143|(% style="width:169px" %)WIFI MAC4|(% style="width:456px" %)read only 1461 -|(% style="width:151px" %)@W_HSW144|(% style="width:169px" %)WIFI MAC5|(% style="width:456px" %)read only 1462 -|(% style="width:151px" %)@W_HSW145|(% style="width:169px" %)WIFI MAC6|(% style="width:456px" %)read only 1463 -|(% style="width:151px" %)@W_HSW146|(% style="width:169px" %)WIFI Signal value|(% style="width:456px" %)read only 1464 -|(% style="width:151px" %)@W_HSW148|(% style="width:169px" %)4G IP1|(% style="width:456px" %)read only 1465 -|(% style="width:151px" %)@W_HSW149|(% style="width:169px" %)4G IP2|(% style="width:456px" %)read only 1466 -|(% style="width:151px" %)@W_HSW150|(% style="width:169px" %)4G IP3|(% style="width:456px" %)read only 1467 -|(% style="width:151px" %)@W_HSW151|(% style="width:169px" %)4G IP4|(% style="width:456px" %)read only 1468 -|(% style="width:151px" %)@W_HSW152|(% style="width:169px" %)4G Mask 1|(% style="width:456px" %)read only 1469 -|(% style="width:151px" %)@W_HSW153|(% style="width:169px" %)4G Mask 2|(% style="width:456px" %)read only 1470 -|(% style="width:151px" %)@W_HSW154|(% style="width:169px" %)4G Mask 3|(% style="width:456px" %)read only 1471 -|(% style="width:151px" %)@W_HSW155|(% style="width:169px" %)4G Mask 4|(% style="width:456px" %)read only 1472 -|(% style="width:151px" %)@W_HSW156|(% style="width:169px" %)4G Gateway 1|(% style="width:456px" %)read only 1473 -|(% style="width:151px" %)@W_HSW157|(% style="width:169px" %)4G Gateway 2|(% style="width:456px" %)read only 1474 -|(% style="width:151px" %)@W_HSW158|(% style="width:169px" %)4G Gateway 3|(% style="width:456px" %)read only 1475 -|(% style="width:151px" %)@W_HSW159|(% style="width:169px" %)4G Gateway 4|(% style="width:456px" %)read only 1476 -|(% style="width:151px" %)@W_HSW160|(% style="width:169px" %)4G MAC1|(% style="width:456px" %)read only 1477 -|(% style="width:151px" %)@W_HSW161|(% style="width:169px" %)4G MAC2|(% style="width:456px" %)read only 1478 -|(% style="width:151px" %)@W_HSW162|(% style="width:169px" %)4G MAC3|(% style="width:456px" %)read only 1479 -|(% style="width:151px" %)@W_HSW163|(% style="width:169px" %)4G MAC4|(% style="width:456px" %)read only 1480 -|(% style="width:151px" %)@W_HSW164|(% style="width:169px" %)4G MAC5|(% style="width:456px" %)read only 1481 -|(% style="width:151px" %)@W_HSW165|(% style="width:169px" %)4G MAC6|(% style="width:456px" %)read only 1482 -|(% style="width:151px" %)@W_HSW166|(% style="width:169px" %)4G Signal value|(% style="width:456px" %)read only 1604 +1: Draw a map fence and the box is in the fence 1483 1483 1484 - **Others**1606 +2: Draw a map fence and the box is not in the fence 1485 1485 1486 -* Access password: addr_getstring("@W_HSW27", 16) 1487 -* Machine code: addr_getstring("@W_HSW60", 64) 1488 -* Positioning method (@W_HSW167): (read only) 1489 -** Latitude and longitude 1490 -*** Longitude: addr_getdouble("@W_HSW168") (read only) 1491 -*** Latitude: addr_getdouble("@W_HSW172") (read only) 1492 -** Base station positioning 1493 -*** LAC: addr_getdword("@W_HSW168") (read only) 1494 -*** CI: addr_getdword("@W_HSW172") (read only) 1495 -* Convert base station to latitude and longitude via API 1496 -** Longitude: addr_getdouble("@W_HSW187") (read only) 1497 -** Latitude: addr_getdouble("@W_HSW183") (read only) 1498 -* Operator information: addr_getdword("@W_HSW181") (read only) 1499 -* Networking mode: addr_getword("@W_HSW177") (read only) 1500 -** 0: Ethernet 1501 -** 1: WIFI 1502 -** 2: 4G 1503 -** 3: 2G 1504 -* Map fence flag: addr_getword("@W_HSW178") (read only) 1505 -** 0: No map fence is drawn 1506 -** 1: Draw a map fence and the box is in the fence 1507 -** 2: Draw a map fence and the box is not in the fence 1508 -* SIM card status addr_getword("@W_HSW179") (read only) 1509 -** 1: No card detected 1510 -** 2: Card insertion detected 1511 -** 3: The card status is abnormal 1512 -* MQTT status addr_getword("@W_HSW180") (read only) 1513 -** 1: online, 2: offline 1514 -* IO interface, X is read only, Y is read and write (H series) 1515 -** addr_getbit(addr1), addr_setbit(addr2) 1516 -** addr1:"@B_Y0" "@B_Y1" "@B_X0" "@B_X1" 1517 -** addr2:"@B_Y0" "@B_Y1" 1518 -* Obtaining IMEI (read only) 1519 -** addr_getstring("@W_HSW191",17) 1520 -* Obtaining ICCID (read only) 1521 -** addr_getstring("@W_HSW225",15) 1522 -* ((( 1523 -TSAP settings of Siemens LOGO PLC* 1608 +2.8 SIM card status addr_getword("@W_HSW179") (read only) 1524 1524 1525 -((( 1526 -addr_setword("@W_0#HSW1200",8192) means set the Local TSAP as 20.00 1527 -))) 1610 +1: No card detected 1528 1528 1529 -* ((( 1530 -addr_setword("@W_0#HSW1201",4096) means set the Remote TSAP as 10.00 1531 -))) 1532 -))) 1612 +2: Card insertion detected 1533 1533 1534 -((( 1535 -== **Power-down storage area (HAW/HAX)** == 1614 +3: The card status is abnormal 1536 1536 1537 -T hesystem storagearea(HAW)is used forthesystem power-downhold registers:1616 +2.9 MQTT status addr_getword("@W_HSW180") (read only) 1538 1538 1539 -1. Accessed as a word, numbered in the range: "@W_HAW0"-"@W_HAW199999". 1540 -1. Accessed by bit, the numbering range is: "@B_HAX0.0"-"@B_HAX199999.15". 1618 +1: online, 2: offline 1541 1541 1542 -(% class="box infomessage" %) 1543 -((( 1544 -**✎Note:** HAW/HAX is a power-down hold, that is, the registers of this type can retain the data before power-down in case of power-down. 1545 -))) 1620 +2.10 IO interface, X is read only, Y is read and write (H series) 1546 1546 1622 +addr_getbit(addr1), addr_setbit(addr2) 1623 + 1624 +addr1:"@B_Y0" "@B_Y1" "@B_X0" "@B_X1" 1625 + 1626 +addr2:"@B_Y0" "@B_Y1" 1627 + 1628 +((( 1547 1547 = **9 General Functions** = 1548 1548 ))) 1549 1549 1550 1550 ((( 1551 -== **send_sms_ira(string number, string message)** == 1633 +== **9.1 send_sms_ira(string number, string message)** == 1552 1552 ))) 1553 1553 1554 -**Function:** Use IRA character set to send English text messages1636 +**Function:** 1555 1555 1638 +Use IRA character set to send English text messages 1639 + 1556 1556 **Parameters:** 1557 1557 1558 1558 //number: //number (up to 32 characters, the excess will be discarded) ... ... @@ -1566,7 +1566,7 @@ 1566 1566 Failed: multi 1567 1567 1568 1568 ((( 1569 -== **send_sms_ucs2(string number, string message)** == 1653 +== **9.2 send_sms_ucs2(string number, string message)** == 1570 1570 ))) 1571 1571 1572 1572 **Function:** ... ... @@ -1586,11 +1586,13 @@ 1586 1586 Failed: multi 1587 1587 1588 1588 ((( 1589 -== **sms_get_state(number id)** == 1673 +== **9.3 sms_get_state(number id)** == 1590 1590 ))) 1591 1591 1592 -**Function:** Get the status of the SMS1676 +**Function:** 1593 1593 1678 +Get the status of the SMS 1679 + 1594 1594 **parameter:** 1595 1595 1596 1596 //id~:// SMS corresponding id ... ... @@ -1602,11 +1602,13 @@ 1602 1602 Failed: multi 1603 1603 1604 1604 ((( 1605 -== **jwt_encode(table head, table payload, string aud, number iat, number exp, string key, int jwttype)** == 1691 +== **9.4 jwt_encode(table head, table payload, string aud, number iat, number exp, string key, int jwttype)** == 1606 1606 ))) 1607 1607 1608 -**Function:** Convert data to JWT format1694 +**Function:** 1609 1609 1696 +Convert data to JWT format 1697 + 1610 1610 **parameter:** 1611 1611 1612 1612 //aud: //project name ... ... @@ -1651,20 +1651,19 @@ 1651 1651 1652 1652 //key~:// the private key required for encryption 1653 1653 1654 - **For example:**1742 +For example: 1655 1655 1656 -{{code language="LUA"}} 1657 1657 function jwt.main() 1658 1658 1659 -local PRIVATE_KEY = [[-- Please enter the secret key--]] 1746 +local PRIVATE_KEY = ~[~[~-~- Please enter the secret key~-~-]] 1660 1660 1661 1661 local JWTType=0 1662 1662 1663 -local payload = {{key="test1",value="test1",type="0"}, 1750 +local payload = ~{~{key="test1",value="test1",type="0"}, 1664 1664 1665 1665 {key="test",value="123122131",type="1"}} 1666 1666 1667 -local head = {{ key="name",value="data",type="0"}, 1754 +local head = ~{~{ key="name",value="data",type="0"}, 1668 1668 1669 1669 {key="test2",value="test2",type="0"}} 1670 1670 ... ... @@ -1679,14 +1679,15 @@ 1679 1679 print(en) 1680 1680 1681 1681 End 1682 -{{/code}} 1683 1683 1684 1684 ((( 1685 -== **convertohex(number type, number value)** == 1771 +== **9.5 convertohex(number type, number value)** == 1686 1686 ))) 1687 1687 1688 -**Function:** Convert data into hexadecimal data1774 +**Function:** 1689 1689 1776 +Convert data into hexadecimal data 1777 + 1690 1690 **parameter:** 1691 1691 1692 1692 //type~:// incoming data type 0:word 1:dword 2:float ... ... @@ -1699,445 +1699,106 @@ 1699 1699 1700 1700 Failed: multi 1701 1701 1702 -== **crc.init(table prarm)** == 1703 - 1704 -**Function:** Initialize the CRC 1705 - 1706 -**Parameters:** 1707 - 1708 -prarm is a Lua table and needs to contain the following fields. 1709 - 1710 -* string prarm name, see table 9-1 for details of the parameter model name When this parameter is passed in, the default table parameters are used and the poly,init,xorout,refin,and refout passed in are invalid. 1711 -* number prarm.width: the width, i.e. the number of CRC bits. 1712 -* number [prarm.poly]: short for the generated item in hexadecimal. For example, CRC-32 is 0x04C11DB7, ignoring the highest bit "1", i.e., the complete generation item is 0x104C11DB7. 1713 -* number [prarm.init]: the initialization preset value of the register (crc) at the beginning of the algorithm in hexadecimal. 1714 -* number [prarm.xorout]: the final CRC value obtained after heterodyning the calculation result with this parameter. 1715 -* number [prarm.refin]: whether each byte of the data to be measured is inverted by bit, true or false. 1716 -* number [prarm.refout]: after the calculation or before the heterodyning output, whether the whole data is inverted by bit, true or false. 1717 - 1718 -**Return:** 1719 - 1720 -Success: crc object 1721 - 1722 -Failure: multi, error code 1723 - 1724 1724 ((( 1725 -|=Parameter model name|=poly|=init|=xorout|=refin|=refout 1726 -|crc8|0x07|0x00|0x00|false|false 1727 -|crc8_cdma2000|0x9B|0xFF|0x00|false|false 1728 -|crc8_darc|0x39|0x00|0x00|true|true 1729 -|crc8_dvb_s2|0xD5|0x00|0x00|false|false 1730 -|crc8_ebu|0x1D|0xFF|0x00|true|true 1731 -|crc8_i_code|0x1D|0xFD|0x00|false|false 1732 -|crc8_itu|0x07|0x00|0x55|false|false 1733 -|crc8_maxim|0x31|0x00|0x00|true|true 1734 -|crc8_rohc|0x07|0xFF|0x00|true|true 1735 -|crc8_wcdma|0x9B|0x00|0x00|true|true 1736 -|crc8_sae_j1850|0x1D|0xFF|0xFF|false|false 1737 -|crc8_opensafety|0x2F|0x00|0x00|false|false 1738 -|crc16_tms37157|0x1021|0x3791|0x0000|true|true 1739 -|crc16_a|0x1021|0x6363|0x0000|true|true 1740 -|crc16_riello|0x1021|0x554D|0x0000|true|true 1741 -|crc16_ccitt_false|0x1021|0xFFFF|0x0000|false|false 1742 -|crc16_arc|0x8005|0x0000|0x0000|true|true 1743 -|crc16_arc_ccitt|0x1021|0x1D0F|0x0000|false|false 1744 -|crc16_buypass|0x8005|0x0000|0x0000|false|false 1745 -|crc16_cdma2000|0xC867|0xFFFF|0x0000|false|false 1746 -|crc16_dds110|0x8005|0x800D|0x0000|false|false 1747 -|crc16_dect_r|0x0589|0x0000|0x0001|false|false 1748 -|crc16_dect_x|0x0589|0x0000|0x0000|false|false 1749 -|crc16_dnp|0x3D65|0x0000|0xFFFF|true|true 1750 -|crc16_en_13757|0x3D65|0x0000|0xFFFF|false|false 1751 -|crc16_genibus|0x1021|0xFFFF|0xFFFF|false|false 1752 -|crc16_maxim|0x8005|0x0000|0xFFFF|true|true 1753 -|crc16_mcrf4xx|0x1021|0xFFFF|0x0000|true|true 1754 -|crc16_t10_dif|0x8BB7|0x0000|0x0000|false|false 1755 -|crc16_teledisk|0xA097|0x0000|0x0000|false|false 1756 -|crc16_usb|0x8005|0xFFFF|0xFFFF|true|true 1757 -|crc16_kermit|0x1021|0x0000|0x0000|true|true 1758 - 1759 -(% class="wikigeneratedid" %) 1760 -Table 9-1 1761 - 1762 -== **crc:calc(string crcValue)** == 1763 - 1764 -**Function:** Calculate CRC result 1765 - 1766 -**Parameter:** 1767 - 1768 -crcValue: the value to be calculated 1769 - 1770 -**Return:** 1771 - 1772 -Succeed: calculated result 1773 - 1774 -Failed: multi, error code 1791 +== **9.6 set_network(table config)** == 1775 1775 ))) 1776 1776 1777 -**Fo r example:**1794 +**Function:** 1778 1778 1779 -{{code language="LUA"}} 1780 -function crcTest.main() 1796 +Set V-BOX network, take effect after restart 1781 1781 1782 - localparam= {1798 +**parameter:** 1783 1783 1784 -n ame='',1800 +//config~:// incoming network configuration table 1785 1785 1786 -width = 64, 1802 +1. connectMode: the way V-BOX connects to the server, 0: Ethernet, 1: WIFI, 2: 4G, 3: 2G, it is not allowed to be empty. 1803 +1. ethernetEnable: Whether to enable Ethernet, 1: enable, 0: disable, and it is not allowed to be empty. 1804 +1. ethernetLanIp: Set the LAN IP address. Only V-BOX with three network ports support this configuration, and other models of V-BOX do not support setting LAN IP. This item is allowed to be empty. 1805 +1. ethernetIpMode: Whether to enable Ethernet static IP, 1: Enable static IP, 0: DHCP, not allowed to be empty. 1806 +1. ethernetIp: The IP address needs to be configured when the Ethernet static IP is used, and it is not allowed to be empty. 1807 +1. ethernetNetmask: The subnet mask needs to be configured when Ethernet static IP is used, and it is not allowed to be empty. 1808 +1. ethernetGateway: The gateway can be configured when Ethernet static IP is used. 1787 1787 1788 -poly = 0x42F0E1EBA9EA3693, 1810 +1. When using the Ethernet network, if the Gateway is empty, V-BOX will not connect to the server. 1811 +1. If you only use Ethernet to directly connect to the PLC for communication, you do not need to configure a gateway. 1789 1789 1790 -init = 0xFFFFFFFFFFFFFFFF, 1813 +1. ethernetFirstDns: You can configure the preferred DNS server when the Ethernet static IP is used, and it is allowed to be empty. If you use the Ethernet network and do not fill in the DNS server, V-BOX will not be connected to the server. 1814 +1. ethernetSpareDns: Alternate DNS server can be configured when the Ethernet static IP is used, and it is allowed to be empty. 1815 +1. wifiEnable: Whether to enable WIFI, 1: enable, 0: disable, it is not allowed to be empty. If it is a model that does not include WIFI, directly disable it. 1816 +1. wifiName: WIFI name, if WIFI is enabled, it is not allowed to be empty. 1817 +1. wifiPassword: WIFI password, it is allowed to be empty. 1818 +1. wifiIpMode: Whether to enable WIFI static IP, 1: Enable static IP, 0: DHCP, not allowed to be empty. 1819 +1. wifiIp: IP address needs to be configured when WIFI static IP is used, it is not allowed to be empty. 1820 +1. wifiNetmask: The subnet mask needs to be configured when WIFI static IP is used, and it is not allowed to be empty. 1821 +1. wifiGateway: The gateway can be configured when WIFI static IP is used, and it is not allowed to be empty. 1822 +1. wifiFirstDns: You can configure the preferred DNS server when the WIFI static IP is used, and it is allowed to be empty. If you use the WIFI network and do not fill in the DNS server, V-BOX will not be connected to the server. 1823 +1. wifiSpareDns: Alternate DNS server can be configured when the WIFI static IP is used, and it is allowed to be empty. 1824 +1. mobileEnable: Whether to enable the mobile network, 1: enable, 0: disable, it is not allowed to be empty, if it does not include 4G models, directly disable it. 1825 +1. mobileApnMode: Whether to manually configure the APN, 0: Use the default APN, 1: Manually configure the APN, it is not allowed to be empty. 1826 +1. apnName: APN name, if you choose to manually configure APN, it is not allowed to be empty. 1827 +1. apnPassword: APN username, it is allowed to be empty. 1828 +1. apnUserName: APN number, it is allowed to be empty. 1829 +1. apnNumber: APN number, it is allowed to be empty. 1791 1791 1792 -xorout = 0xFFFFFFFFFFFFFFFF, 1793 - 1794 -refin = 1, 1795 - 1796 -refout = 1 1797 - 1798 -} 1799 - 1800 -crc64,err = crc.init(param) 1801 - 1802 -if not crc64 then 1803 - 1804 -print("Crc init failed:", err) 1805 -else 1806 - 1807 -crcvalue = crc64:calc("123456789") 1808 - 1809 -print(string.format("crc64 calc :0X%16X", crcvalue)) 1810 - 1811 -end 1812 - 1813 -end 1814 -{{/code}} 1815 - 1816 -= **10 Special function for V-NET** = 1817 - 1818 -== **normal_get_alldata()** == 1819 - 1820 -**Function: **Obtain the data of all the monitoring points 1821 - 1822 -**Parameter: None** 1823 - 1824 1824 **Return:** 1825 1825 1826 -Succeed: t able two-dimensional arrays, as follows:1833 +Succeed: true 1827 1827 1828 -* Each item is a monitoring point and contains 4 attributes: 1829 -** 1: ID 1830 -** 2: status 1831 -** 3: tag name 1832 -** 4: value 1833 -* Status contains 3 enumerated values 1834 -** 0: offline 1835 -** 1: online 1836 -** 2: timeout 1837 -* Customization returns an empty table if there is no configuration, otherwise returns "field name/field content" 1835 +Faied: multi 1838 1838 1839 -**For example:** 1837 +((( 1838 +== **9.7 remote_com_start(string config)** == 1839 +))) 1840 1840 1841 -{{code language="LUA"}} 1842 -{ 1841 +**Function:** 1843 1843 1844 - [1]= {[1]=1234, [2]=1, [3]='temp',[4]='23.5'},1843 +start serial port pass-through 1845 1845 1846 -[2]= {[1]=1235, [2]=1, [3]='humi', [4]='67'}, 1847 - 1848 -... 1849 - 1850 -[n]= {[1]=xxxx, [2]=x, [3]='xxxx', [4]='xx.x'}, 1851 - 1852 -} 1853 - 1854 -Failed: table, empty table 1855 -{{/code}} 1856 - 1857 -== **normal_setdata_byname(string name, string data)** == 1858 - 1859 -**Function:** Write data to the monitoring point name 1860 - 1861 1861 **Parameter:** 1862 1862 1863 -n ame:thename of monitoringpoint1847 +//config: //incoming serial port parameter configuration, JSON format 1864 1864 1865 -data: the data to be written 1849 +1. type:0, serial port pass-through 1850 +1. port: serial port number marked on the V-BOX 1851 +1. comtype:0-RS232, 1-RS485, 2-RS422 1852 +1. baudrate: Baud Rate 1853 +1. data_length: Data Bits 1854 +1. stop_bit: Stop Bit 1855 +1. check_bit: Check Bit 1866 1866 1867 1867 **Return:** 1868 1868 1869 -Succeed: string: The valueof the monitor point before it is written1859 +Succeed: true 1870 1870 1871 -Failed: nil1861 +Failed: multi 1872 1872 1873 -== **normal_getdata_byname(string name)** == 1863 +((( 1864 +== **9.8 remote_com_stop()** == 1865 +))) 1874 1874 1875 -**Function:** Read the data of the monitoring point name1867 +**Function:** 1876 1876 1877 - **Parameter:**1869 +close serial port pass-through 1878 1878 1879 -name: the name of monitoring point 1880 - 1881 1881 **Return:** 1882 1882 1883 -Succeed: string1873 +Succeed: true 1884 1884 1885 -Failed: nil 1886 - 1887 -= **11 MySQL database operation** = 1888 - 1889 -== **luaMySql.init(string sourcename, string username, string password, string host, number port, string character)** == 1890 - 1891 -**Function:** Configure database connection parameters 1892 - 1893 -**Parameter:** 1894 - 1895 -sourcename: the name of database 1896 - 1897 -username: the username of the connection 1898 - 1899 -password: the password of the connection 1900 - 1901 -host: the host name of the connection 1902 - 1903 -port: the host port of the connection 1904 - 1905 -character: the character set of the connection 1906 - 1907 -**Return:** 1908 - 1909 -Succeed: string 1910 - 1911 1911 Failed: multi 1912 1912 1913 -== **luaMySql.exec(string statement)** == 1877 +((( 1878 +== **9.9 remote_com_state()** == 1879 +))) 1914 1914 1915 -**Function:** Execute the given SQL statement without returning the result set (add, delete, change)1881 +**Function:** 1916 1916 1917 - **Parameter:**1883 +query the serial port pass-through status and pass-through server domain name and port 1918 1918 1919 -statement: the given SQL statement 1920 - 1921 1921 **Return:** 1922 1922 1923 -Succeed: status: returns the number of rows affected by SQL statement execution.1887 +Succeed: 1924 1924 1925 -Failed: nil, errorString 1889 +1. number, current pass-through status: 0-none 1,2-starting pass-through 3-penetrating 4,5-finishing pass-through 6-pass-through error 1890 +1. string, pass-through server domain name and port number, xxxx (domain name): xxx (port number) 1926 1926 1927 -== **luaMySql.execWithResult(string statement)** == 1928 - 1929 -**Function:** Execute the given SQL statement returning the result set (check) 1930 - 1931 -**Parameter:** 1932 - 1933 -statement: the given SQL statement 1934 - 1935 -**Return:** 1936 - 1937 -Succeed: table: returns the result set 1938 - 1939 -Failed: nil, errorString 1940 - 1941 -**For example:** 1942 - 1943 -{{code language="LUA"}} 1944 -mysql = require"mysqlclient" 1945 - 1946 -function DataInitRight() 1947 - 1948 -local dbName = "db_lua1" 1949 - 1950 -local user = "root" 1951 - 1952 -local pwd = "123456" 1953 - 1954 -local host = "192.168.56.186" 1955 - 1956 -local port = 3306 1957 -local character = "UTF8" 1958 - 1959 -mysql.init(dbName, user, pwd, host, port, character) 1960 - 1961 -end 1962 - 1963 -function ExecFunc() 1964 - 1965 -status, errorString = mysql.exec("delete from tb_lua1 where mykey = 1966 - 1967 -10;") 1968 - 1969 -if nil == status then 1970 - 1971 -print("ExecFunc() error:", errorString) 1972 - 1973 -return -1 1974 - 1975 -else 1976 - 1977 -print("the number of rows affected by the command:", status) 1978 - 1979 -end 1980 - 1981 -return 0 1982 - 1983 -end 1984 - 1985 -function ExecWithResultFunc() 1986 - 1987 -status, errorString = mysql.execWithResult("select * from tb_lua1;") 1988 - 1989 -if nil == status then 1990 - 1991 -print("ExecWithResultFunc() error:", errorString) 1992 - 1993 -return -1 1994 - 1995 -else 1996 - 1997 -print("ExecWithResultFunc() 1998 - 1999 -success 2000 - 2001 -: status 2002 - 2003 -type 2004 - 2005 -= 2006 - 2007 -", 2008 - 2009 -type(status)) 2010 - 2011 -print("ExecWithResultFunc() success : status len = ", #status) 2012 - 2013 -local num = #status 2014 - 2015 -local i = 1 2016 - 2017 -if num > 0 then 2018 - 2019 -for i = 1, num, 1 do 2020 - 2021 -local var = string.format("select result[%d] :mykey = %d, 2022 - 2023 -value = %s", i, status[i].mykey, status[i].value) 2024 - 2025 -print(var) 2026 - 2027 -end 2028 - 2029 -end 2030 - 2031 -print("---------------") 2032 - 2033 -end 2034 - 2035 -return 0 2036 -end 2037 - 2038 -function luaMysql_apiTest.main() 2039 - 2040 -print("script running ...") 2041 - 2042 -DataInitRight() 2043 - 2044 ---use exec demo 2045 - 2046 -if ExecFunc() < 0 then 2047 - 2048 -return 2049 - 2050 -end 2051 - 2052 ---use execWithResult demo 2053 - 2054 -if ExecWithResultFunc() < 0 then 2055 - 2056 -return 2057 - 2058 -end 2059 - 2060 -print("script running success") 2061 - 2062 -end 2063 -{{/code}} 2064 - 2065 -= **12 Message summary algorithm** = 2066 - 2067 -== **hmac(string hash_func, string key, string message)** == 2068 - 2069 -**Function:** HMAC calculate 2070 - 2071 -**Function name** 2072 - 2073 -hash_func: 2074 - 2075 -* [md5, sha1, sha224, sha256, sha384, sha512] 2076 -* [sha512_224, sha512_256, sha3_224, sha3_256] 2077 -* [sha3_384, sha3_512] 2078 - 2079 -**Parameter:** 2080 - 2081 -key: the key 2082 - 2083 -message: message content 2084 - 2085 -**Return:** 2086 - 2087 -Succeed: string, calculation result 2088 - 2089 -Failed: nil 2090 - 2091 -**For example:** 2092 - 2093 -{{code language="LUA"}} 2094 -local sha = require"sha2" 2095 - 2096 -function hmac_test.main() 2097 - 2098 -local hmac = sha.hmac 2099 - 2100 -print(hmac(sha.sha1, 2101 - 2102 -"your key", "your message")) 2103 - 2104 -end 2105 -{{/code}} 2106 - 2107 -== **sha(string message** == 2108 - 2109 -**Function:** SHA calculate 2110 - 2111 -**Function name:** 2112 - 2113 -sha: 2114 - 2115 -* sha1, sha224, sha256, sha384, sha512] 2116 -* [sha512_224, sha512_256, sha3_224, sha3_256] 2117 -* [sha3_384, sha3_512] 2118 - 2119 -**Parameter:** 2120 - 2121 -key: the key 2122 - 2123 -message: message content 2124 - 2125 -**Return:** 2126 - 2127 -Succeed: string, calculation result 2128 - 2129 -Failed: nil 2130 - 2131 -For example: 2132 - 2133 -{{code language="LUA"}} 2134 -local sha = require"sha2" 2135 - 2136 -function sha_test.main() 2137 - 2138 -local sha256 = sha.sha256 2139 - 2140 -print(sha256("your message")) 2141 - 2142 -end 2143 -{{/code}} 1892 +Failed: multi