Single instance HTTP Server using new Ethernet Interface.

Dependents:   EthHTTPServer if201410_section5 _PE2E_12-04_EthernetInterfaceServer MGAS_GR_Peach ... more

Fork of WiFlyHTTPServer by Henry Leinen

Desciprtion of the library

Overview

This is an HTTPServer library using the new MBED EthernetInterface library. It allows you to :

  • serve files from any file System
  • use Remote procedure calls
  • extend the HTTPServer functionality according to your needs, using the provided handler classes or writing new classes. The following sections will give you a brief overview of how to use the library.

Usage description

You can use the library as file server, as RPC server or a combination of both. You can even define your own behaviour by deriving from one of the classes provided.

Use as file server

You may want to look at my sample application which allows you to serve files from the internal local storage of the mbed with no modifcation of the code :

Very simple example application

#include "mbed.h"
#include "HTTPServer.h"
#include "FsHandler.h"
#include "LocalFileSystem.h"

//  Use LED1 to indicate that the main loop is still executing
DigitalOut myled(LED1);
//  Use the serial connection 'pc' to dump debug information
Serial pc(USBTX, USBRX, "pc");
//  Instantiate a HTTPServer to handle incoming requests
HTTPServer  svr;
//  Instantiate a local file system handler named 'local' which will be used later to access files on the mbed.
LocalFileSystem local("local");


int main() {

    pc.baud(460800);
    HTTPFsRequestHandler::mount("/local/", "/");
    svr.addHandler<HTTPFsRequestHandler>("/");

    if (!svr.start()) {
       error("Server not starting !");
        exit(0);
    }
    
    while(1) {
        svr.poll();
        myled = 1;
        wait(0.2);
        myled = 0;
        wait(0.2);
    }
}

Another alternative is to provide the EthernetInterface library to the HTTPServer library. This may be useful in case you need to perform other tasks with your internet connection. In this case it is necessary that you initialize the EthernetInterface and perform the connection prior to calling the start() method. Here is the example :

Sample application with re-use of existing EthernetInterface object

#include "mbed.h"
#include "HTTPServer.h"
#include "FsHandler.h"
#include "LocalFileSystem.h"
#include "EthernetInterface.h"


//  Use LED1 to indicate that the main loop is still executing
DigitalOut myled(LED1);
//  Use the serial connection 'pc' to dump debug information
Serial pc(USBTX, USBRX, "pc");
//  Instantiate a HTTPServer to handle incoming requests
HTTPServer  svr;
//  Instantiate a local file system handler named 'local' which will be used later to access files on the mbed.
LocalFileSystem local("local");
//  Create the EthernetInterface. This is optional, please see the documentation of HTTP Server's start method.
EthernetInterface eth;


int main() {

    pc.baud(460800);
    HTTPFsRequestHandler::mount("/local/", "/");
    svr.addHandler<HTTPFsRequestHandler>("/");

    //  Initialize the EthernetInterface and initiate a connection using DHCP.
    eth.init();
    eth.connect();

    // ***
    // TODO: Perform other Tasks using the ethernet connection here.
    // ****
    
    // Now start the server on port 80.
    if (!svr.start(80, &eth)) {
        error("Server not starting !");
        exit(0);
    }
    
    // The whole server activity is performed in this Loop. You can also put it into a separate RTOS Task and let it run there all the time.
    while(1) {
        svr.poll();
        myled = 1;
        wait(0.2);
        myled = 0;
        wait(0.2);
    }
}

Use as remote procedure call (RPC) server

To access objects or resources via HTTP you can make use of the RPC functionality. Each object that shall be accessible via HTTP needs to be registered before use. Here is an example which Registers the DigitalOut class for use over RPC :

RPC usage over HTTPServer

#include "mbed.h"
#include "HTTPServer.h"
#include "RpcHandler.h"
#include "mbed_rpc.h"

//  Use LED1 to indicate that the main loop is still executing
DigitalOut myled(LED1);
//  Use the serial connection 'pc' to dump debug information
Serial pc(USBTX, USBRX, "pc");
//  Instantiate a HTTPServer to handle incoming requests
HTTPServer  svr;


int main() {

    pc.baud(460800);
    RPC::add_rpc_class<RpcDigitalOut>();
    svr.addHandler<HTTPRpcRequestHandler>("/RPC");
    
    if (!svr.start()) {
        error("Server not starting !");
        exit(0);
    }
    
    while(1) {
        svr.poll();
        myled = 1;
        wait(0.2);
        myled = 0;
        wait(0.2);
    }
}

And using the above code, enter the following in the address field of your browser :

http://<your_mbed_ip>/RPC/DigitalOut/new LED4 myled4 - - > to create a new object of type DigitalOut on pin LED4 which can be referred to as 'myled4'.

and

http://<your_mbed_ip>/RPC/myled4/write 1 - - > to switch on the LED4.

Of course it is possible to Register your own objects with the standard MBED RPC functionality.

All the above Scenarios are implemented in a sample application, which will allow you to try out the functionality with basically no changes. If you want to try out the HTTP file Server, it is of course helpful to upload an html file to your MBED local storage.

Here is the sample application :

Import programEthHTTPServer

Working sample implementation for the EthernetInterface HTTPServer.

Future plans

Currently I am not considering to further extend this library. However, if someone needs extensions to this library, I will consider implementing them. Of course I will be taking care of bugfixes.

Known issues

Please note that the current implementation of the EthernetInterface seems to have an issue which results in unresponsive behaviour of the Sockets in some situations. This odd behaviour has not only been reported on my HTTPServer but also on other components using the EthernetInterface library.

Committer:
leihen
Date:
Sun Jun 02 22:59:51 2013 +0000
Revision:
11:3943841e1798
Parent:
10:cbde7929db7f
Child:
12:ba81cc117fb6
A few bugfixes

Who changed what in which revision?

UserRevisionLine numberNew contents of line
leihen 1:6b7472d5e9ee 1 /* HTTPRequestHandler.cpp */
leihen 1:6b7472d5e9ee 2 #include "mbed.h"
leihen 1:6b7472d5e9ee 3 #include "HTTPRequestHandler.h"
leihen 1:6b7472d5e9ee 4
leihen 11:3943841e1798 5 #define _DEBUG 0
leihen 6:fe661fa9d18a 6
leihen 6:fe661fa9d18a 7 #if (_DEBUG && !defined(TARGET_LPC11U24))
leihen 3:d6224049b3bf 8 #define INFO(x, ...) std::printf("[HTTPRequestHandler : DBG]"x"\r\n", ##__VA_ARGS__);
leihen 3:d6224049b3bf 9 #define WARN(x, ...) std::printf("[HTTPRequestHandler : DBG]"x"\r\n", ##__VA_ARGS__);
leihen 3:d6224049b3bf 10 #define ERR(x, ...) std::printf("[HTTPRequestHandler : DBG]"x"\r\n", ##__VA_ARGS__);
leihen 3:d6224049b3bf 11 #else
leihen 3:d6224049b3bf 12 #define INFO(x, ...)
leihen 3:d6224049b3bf 13 #define WARN(x, ...)
leihen 3:d6224049b3bf 14 #define ERR(x, ...)
leihen 3:d6224049b3bf 15 #endif
leihen 1:6b7472d5e9ee 16
leihen 3:d6224049b3bf 17 static char buffer[128];
leihen 3:d6224049b3bf 18
leihen 11:3943841e1798 19
leihen 11:3943841e1798 20 const char hdrDNT[] = "DNT: 1\r\n";
leihen 11:3943841e1798 21 const char hdrMaxAge[] = "MaxAge: 0\r\n";
leihen 11:3943841e1798 22 const char hdrConClose[] = "Connection: Keep-Alive\r\n";
leihen 11:3943841e1798 23 const char hdrContent[] = "Content-Type: text/html\r\n";
leihen 11:3943841e1798 24 const char hdrServer[] = "Server: mbed embedded\r\n";
leihen 11:3943841e1798 25 const char hdrEndl[] = "\r\n";
leihen 11:3943841e1798 26
leihen 3:d6224049b3bf 27 HTTPRequestHandler::HTTPRequestHandler(HTTPConnection::HTTPMessage& Msg, TCPSocketConnection& Tcp)
leihen 3:d6224049b3bf 28 : msg(Msg), tcp(Tcp)
leihen 1:6b7472d5e9ee 29 {
leihen 3:d6224049b3bf 30 msg = Msg;
leihen 3:d6224049b3bf 31 tcp = Tcp;
leihen 1:6b7472d5e9ee 32 }
leihen 1:6b7472d5e9ee 33
leihen 1:6b7472d5e9ee 34 HTTPRequestHandler::~HTTPRequestHandler()
leihen 1:6b7472d5e9ee 35 {
leihen 3:d6224049b3bf 36 }
leihen 3:d6224049b3bf 37
leihen 3:d6224049b3bf 38 void HTTPRequestHandler::handleRequest()
leihen 3:d6224049b3bf 39 {
leihen 3:d6224049b3bf 40 int err = 0;
leihen 3:d6224049b3bf 41
leihen 3:d6224049b3bf 42 switch (msg.request) {
leihen 3:d6224049b3bf 43 case HTTP_RT_GET:
leihen 3:d6224049b3bf 44 INFO("Dispatching GET Request.");
leihen 3:d6224049b3bf 45 err = handleGetRequest();
leihen 3:d6224049b3bf 46 break;
leihen 3:d6224049b3bf 47
leihen 4:d065642c32cc 48 case HTTP_RT_POST:
leihen 4:d065642c32cc 49 INFO("Dispatching POST request.");
leihen 4:d065642c32cc 50 err = handlePostRequest();
leihen 4:d065642c32cc 51 break;
leihen 3:d6224049b3bf 52
leihen 4:d065642c32cc 53 case HTTP_RT_PUT:
leihen 4:d065642c32cc 54 INFO("Dispatching PUT request.");
leihen 4:d065642c32cc 55 err = handlePutRequest();
leihen 4:d065642c32cc 56 break;
leihen 3:d6224049b3bf 57
leihen 3:d6224049b3bf 58 default:
leihen 3:d6224049b3bf 59 INFO("Error in handleRequest, unhandled request type.");
leihen 9:c2a1462b9b71 60 err = HTTP_NotImplemented;
leihen 3:d6224049b3bf 61 break;
leihen 3:d6224049b3bf 62 }
leihen 3:d6224049b3bf 63
leihen 3:d6224049b3bf 64 // if any of these functions returns a negative number, call the error handler
leihen 3:d6224049b3bf 65 if (err > 0) {
leihen 3:d6224049b3bf 66 handleError(err);
leihen 3:d6224049b3bf 67 }
leihen 3:d6224049b3bf 68 }
leihen 3:d6224049b3bf 69
leihen 3:d6224049b3bf 70 static const char* szErrorPage = "<HTML><HEAD><META content=\"text/html\" http-equiv=Content-Type></HEAD><BODY><h1>Error %d</h1><P>HTTPServer Error<P></BODY></HTML>\r\n\r\n";
leihen 3:d6224049b3bf 71
leihen 3:d6224049b3bf 72 void HTTPRequestHandler::handleError(int errorCode, HTTPHeaders* header)
leihen 3:d6224049b3bf 73 {
leihen 3:d6224049b3bf 74 INFO("Handling error !");
leihen 3:d6224049b3bf 75 tcp.set_blocking(true, 1500);
leihen 11:3943841e1798 76 sprintf(buffer,"HTTP/1.1 %d Error\r\n", errorCode);
leihen 3:d6224049b3bf 77 tcp.send(buffer, strlen(buffer));
leihen 3:d6224049b3bf 78 sprintf(buffer, "Content-Length: %d\r\n", strlen(szErrorPage));
leihen 3:d6224049b3bf 79 tcp.send(buffer, strlen(buffer));
leihen 3:d6224049b3bf 80 if (header == NULL) {
leihen 3:d6224049b3bf 81 sprintf(buffer, "Content-Type: text/html\r\nServer: mbed embedded\r\n\n\r");
leihen 3:d6224049b3bf 82 tcp.send(buffer, strlen(buffer));
leihen 3:d6224049b3bf 83 }
leihen 3:d6224049b3bf 84 else {
leihen 3:d6224049b3bf 85 for ( map<const char*, const char*>::iterator cIter = header->begin() ; cIter != header->end() ; cIter ++) {
leihen 3:d6224049b3bf 86 tcp.send((char*)cIter->first, strlen(cIter->first));
leihen 3:d6224049b3bf 87 tcp.send(": ", 2);
leihen 3:d6224049b3bf 88 tcp.send((char*)cIter->second, strlen(cIter->second));
leihen 3:d6224049b3bf 89 tcp.send("\r\n",2);
leihen 3:d6224049b3bf 90 }
leihen 3:d6224049b3bf 91 tcp.send("\r\n",2);
leihen 3:d6224049b3bf 92 }
leihen 3:d6224049b3bf 93 tcp.send((char*)szErrorPage, strlen(szErrorPage));
leihen 3:d6224049b3bf 94 }
leihen 3:d6224049b3bf 95
leihen 3:d6224049b3bf 96
leihen 7:cb7fec1265b5 97 void HTTPRequestHandler::startResponse(int returnCode, long nLen, HTTPHeaders* header)
leihen 3:d6224049b3bf 98 {
leihen 7:cb7fec1265b5 99 INFO("Starting response (%ld bytes in total)!", nLen);
leihen 3:d6224049b3bf 100 tcp.set_blocking(true, 1500);
leihen 11:3943841e1798 101 sprintf(buffer, "HTTP/1.1 %d OK\r\n", returnCode);
leihen 11:3943841e1798 102 tcp.send_all(buffer, strlen(buffer));
leihen 11:3943841e1798 103 tcp.send_all((char*)hdrConClose, strlen(hdrConClose));
leihen 7:cb7fec1265b5 104 sprintf(buffer, "Content-Length: %ld\r\n", nLen); // Add 2 chars for the terminating CR+LF
leihen 11:3943841e1798 105 tcp.send_all(buffer, strlen(buffer));
leihen 3:d6224049b3bf 106 if (header == NULL) {
leihen 11:3943841e1798 107 tcp.send_all((char*)hdrDNT, strlen(hdrDNT));
leihen 11:3943841e1798 108 tcp.send_all((char*)hdrMaxAge, strlen(hdrMaxAge));
leihen 11:3943841e1798 109 tcp.send_all((char*)hdrContent, strlen(hdrContent));
leihen 11:3943841e1798 110 tcp.send_all((char*)hdrServer, strlen(hdrServer));
leihen 11:3943841e1798 111 tcp.send_all((char*)hdrEndl, strlen(hdrEndl));
leihen 3:d6224049b3bf 112 }
leihen 3:d6224049b3bf 113 else {
leihen 3:d6224049b3bf 114 for ( map<const char*, const char*>::iterator cIter = header->begin() ; cIter != header->end() ; cIter ++) {
leihen 3:d6224049b3bf 115 tcp.send((char*)cIter->first, strlen(cIter->first));
leihen 3:d6224049b3bf 116 tcp.send(": ", 2);
leihen 3:d6224049b3bf 117 tcp.send((char*)cIter->second, strlen(cIter->second));
leihen 3:d6224049b3bf 118 tcp.send("\r\n\r\n",2);
leihen 3:d6224049b3bf 119 }
leihen 11:3943841e1798 120 tcp.send_all("\r\n", 2);
leihen 3:d6224049b3bf 121 }
leihen 3:d6224049b3bf 122 // other content must be sent using the 'processResponse' function
leihen 3:d6224049b3bf 123 }
leihen 3:d6224049b3bf 124
leihen 3:d6224049b3bf 125 void HTTPRequestHandler::processResponse(int nLen, char* body)
leihen 3:d6224049b3bf 126 {
leihen 7:cb7fec1265b5 127 INFO("Processing Response (%d bytes)!\n",nLen);
leihen 11:3943841e1798 128 tcp.send_all(body, nLen);
leihen 3:d6224049b3bf 129 }
leihen 3:d6224049b3bf 130
leihen 3:d6224049b3bf 131 void HTTPRequestHandler::endResponse()
leihen 3:d6224049b3bf 132 {
leihen 3:d6224049b3bf 133 INFO("Ending Response !");
leihen 11:3943841e1798 134 // tcp.send("\r\n\r\n", 4);
leihen 3:d6224049b3bf 135 }