This is Webservice SDK for mbed. LPCXpresso1769/LPC1768/FRDM-K64F/LPC4088

Dependents:   MbedFileServer_1768MiniDK2 RedWireBridge IssueDebug_gcc MiMicRemoteMCU-for-Mbed ... more

libMiMic(MiMic library for mbed)は、WebService機能を提供するSDKです。 mbedでWebAPIに対応したネットワークデバイスを簡単に作ることが出来ます。

libMiMicはMiMic projectで開発しています。MiMic projectについてはこちらをご覧ください。 http://nyatla.jp/mimic/wp/

構成

libMiMicはmbedRTOS上で動作し、ユーザアプリケーションにAPIを提供します。コアAPIはC言語で記述されていますが、使用頻度の高いものについてはmbed向けのC++APIが準備されています。

/media/uploads/nyatla/libmimic-sdk.png

※libMiMicはmbedの標準イーサネットドライバをしようしていません。

標準イーサネットドライバと同時に使用することはできません。

  • MiMicIP - IPv4スタックです。レテンシとメモリ消費量を抑えたuipベースのライブラリです。
  • ARP/ICMP/UDP/TCP - 基礎的なソケットAPIを提供します。APIは独自です。
  • HTTP/1.1 Server - HTTP/1.1に対応したサーバです。マルチセッション・Chunked・持続性接続に対応しています。
  • HTTP Modules - HTTP/1.1の機能モジュールです。以下のモジュールがあります。
    • ROM file provider - ROMに格納したファイルイメージを公開します。
    • File system provider - mbedファイルシステムを公開します。
    • Onchip configuration - プログラムフラッシュを利用して設定を保存します。
    • MiMicVM processor - RPCリクエスト(MiMicVM)を処理します。
    • FileUpload - ファイルアップロードを受け取ります。
    • URL decoder - HTTPリクエストを解析します。
    • UPnP handler -UPnPメッセージを処理します。
    • WebSocket - Websocketサーバです。
  • mDNS - マルチキャストDNSサービスです。
  • UPnP - UPnP/1.0の機能を提供します。UPnP handlerと協調して動作します。(現在はデバイス探索(SSDP)・デスクリプション(Description)のみ実装してあります。)
  • DHCP/APIPA - ゼロコンフィギュレーション用のモジュールです。
  • HTTP/1.1 Client
  • mbed C++ class library - mbed向けのC++CPIです。C言語のものより簡単です。

対応機種

  • mbed(mbed LPC1768)
  • LPCXpresso1769

プログラム

Import programMiMicRemoteMCU-for-Mbed

MiMic RemoteMCU for mbed. This program provides MCU control API over REST API. It can control MCU from Javascript,PHP or any HTTP rest client directly. And, The application has self development environment.

Import programMbedFileServer

The program publishes files at local directory and SD filesystem. It is a full-fledged webServer somewhat.

サンプル

Import programMiMicSimpleHttpd

This is a simplest HTTP server made ​​of libMiMic. It will echo back a request path.

Import programUPnPBasicDevice

Simplest UPnP basic device example. This program to run UPnP basic device on the mbed.

Import programWebSocketSample

MiMicSDK Websocket module sample program.

Import programHttpClientSamlpe

A http client sample program.

Import programTcpSocketClientSamlpe

MiMicSDK Tcp client socket sample program.

Import programUdpSocketSamlpe

Udp socket sample program. This program will send back the received packet.

チュートリアル

English

libMiMic(MiMic library for mbed) is SDK which provides Webservice functions. It can be created networking device easily using mbed.

See more MiMic information, See MiMic project website. http://nyatla.jp/mimic/wp/

Structure

libMiMic run on mbed RTOS and provides networking API to user application. This library has C++ class API for the mbed, and low-level C language API.

/media/uploads/nyatla/libmimic-sdk.png

For WebService general, it can be written in a simple C + + API.

libMiMic does not have the standard Ethernet driver of mbed. It is not possible that will be used with the standard Ethernet driver.

  • MiMicIP - IPv4 protocol stack. This is based uip which is reduced memory and latency.
  • ARP / ICMP / UDP / TCP - Those are provide basic IP protocols.
  • HTTP/1.1 Server - The Http server compatible HTTP/1.1. It supports multi-session, chunked transport, persistent connection.
  • HTTP Modules - There are addon-module for HTTP server. The following modules.
    • ROM file module - Publish the file images in ROM.
    • File system module - Publish thefiles in mbed file system.
    • Onchip configuration module - To save the network settings to the program flash via REST.
    • MiMicVM module - To handle the (MiMicVM) RPC request.
    • FileUpload module - Accept a file via HTTP POST.
    • URL dedoce module - A versatility URL decoder.
    • UPnP handle module - To handle UPnP messages.
    • UPnP - This provides UPnP/1.0 device functions. It works together with UPnP handler.
    • Websocket - websocket (version13) server
  • mDNS Service - DNS-SD protocol server.
  • UPnP - This provides UPnP/1.0 device functions which works with UPnP handler. (You have been implemented (SSDP) ? description only (Description) device search now.) It is a module zero configuration for - DHCP / APIPA. mbed C + + class library - C of mbed for + + is the CPI. It is simple than that of the C language.
  • DHCP/APIPA - It support zero-cpnfigulation.
  • mbed C++ class library. Almost APIs for Web applications are available.
  • HTTP/1.1 Client

Supported target

  • mbed(mbed LPC1768)
  • LPCXpresso1769

Application

Import programMiMicRemoteMCU-for-Mbed

MiMic RemoteMCU for mbed. This program provides MCU control API over REST API. It can control MCU from Javascript,PHP or any HTTP rest client directly. And, The application has self development environment.

Import programMbedFileServer

The program publishes files at local directory and SD filesystem. It is a full-fledged webServer somewhat.

Sample

Import programMiMicSimpleHttpd

This is a simplest HTTP server made ​​of libMiMic. It will echo back a request path.

Import programUPnPBasicDevice

Simplest UPnP basic device example. This program to run UPnP basic device on the mbed.

Import programWebSocketSample

MiMicSDK Websocket module sample program.

Import programHttpClientSamlpe

A http client sample program.

Import programTcpSocketClientSamlpe

MiMicSDK Tcp client socket sample program.

Import programUdpSocketSamlpe

Udp socket sample program. This program will send back the received packet.

Tutorial

Committer:
nyatla
Date:
Wed Mar 27 12:07:47 2013 +0000
Revision:
2:b96c1e90d120
???????????

Who changed what in which revision?

UserRevisionLine numberNew contents of line
nyatla 2:b96c1e90d120 1 /*********************************************************************************
nyatla 2:b96c1e90d120 2 * PROJECT: MiMic
nyatla 2:b96c1e90d120 3 * --------------------------------------------------------------------------------
nyatla 2:b96c1e90d120 4 *
nyatla 2:b96c1e90d120 5 * This file is part of MiMic
nyatla 2:b96c1e90d120 6 * Copyright (C)2011 Ryo Iizuka
nyatla 2:b96c1e90d120 7 *
nyatla 2:b96c1e90d120 8 * MiMic is free software: you can redistribute it and/or modify
nyatla 2:b96c1e90d120 9 * it under the terms of the GNU Lesser General Public License as published
nyatla 2:b96c1e90d120 10 * by the Free Software Foundation, either version 3 of the License, or
nyatla 2:b96c1e90d120 11 * (at your option) any later version.
nyatla 2:b96c1e90d120 12 *
nyatla 2:b96c1e90d120 13 * This program is distributed in the hope that it will be useful,
nyatla 2:b96c1e90d120 14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
nyatla 2:b96c1e90d120 15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
nyatla 2:b96c1e90d120 16 * GNU General Public License for more details.
nyatla 2:b96c1e90d120 17 *
nyatla 2:b96c1e90d120 18 * You should have received a copy of the GNU Lesser General Public License
nyatla 2:b96c1e90d120 19 * along with this program. If not, see <http://www.gnu.org/licenses/>.
nyatla 2:b96c1e90d120 20 *
nyatla 2:b96c1e90d120 21 * For further information please contact.
nyatla 2:b96c1e90d120 22 * http://nyatla.jp/
nyatla 2:b96c1e90d120 23 * <airmail(at)ebony.plala.or.jp> or <nyatla(at)nyatla.jp>
nyatla 2:b96c1e90d120 24 *
nyatla 2:b96c1e90d120 25 *********************************************************************************/
nyatla 2:b96c1e90d120 26 #ifndef NYLPC_CMIMICVM_PROTECTED_H_
nyatla 2:b96c1e90d120 27 #define NYLPC_CMIMICVM_PROTECTED_H_
nyatla 2:b96c1e90d120 28 #include "NyLPC_cMiMicVM.h"
nyatla 2:b96c1e90d120 29
nyatla 2:b96c1e90d120 30 #ifdef __cplusplus
nyatla 2:b96c1e90d120 31 extern "C" {
nyatla 2:b96c1e90d120 32 #endif /* __cplusplus */
nyatla 2:b96c1e90d120 33 //----------------------------------------------------------------------
nyatla 2:b96c1e90d120 34 //MiMicOpCodeのタイプ値
nyatla 2:b96c1e90d120 35 //----------------------------------------------------------------------
nyatla 2:b96c1e90d120 36
nyatla 2:b96c1e90d120 37 #define NyLPC_TcMiMicVM_OP_TYPE_AND 0x11
nyatla 2:b96c1e90d120 38 #define NyLPC_TcMiMicVM_OP_TYPE_OR 0x12
nyatla 2:b96c1e90d120 39 #define NyLPC_TcMiMicVM_OP_TYPE_XOR 0x13
nyatla 2:b96c1e90d120 40 #define NyLPC_TcMiMicVM_OP_TYPE_NOT 0x14
nyatla 2:b96c1e90d120 41
nyatla 2:b96c1e90d120 42 #define NyLPC_TcMiMicVM_OP_TYPE_SHL 0x21
nyatla 2:b96c1e90d120 43 #define NyLPC_TcMiMicVM_OP_TYPE_SHR 0x22
nyatla 2:b96c1e90d120 44
nyatla 2:b96c1e90d120 45 #define NyLPC_TcMiMicVM_OP_TYPE_ADD 0x31
nyatla 2:b96c1e90d120 46 #define NyLPC_TcMiMicVM_OP_TYPE_SUB 0x32
nyatla 2:b96c1e90d120 47 #define NyLPC_TcMiMicVM_OP_TYPE_MUL 0x33
nyatla 2:b96c1e90d120 48
nyatla 2:b96c1e90d120 49 #define NyLPC_TcMiMicVM_OP_TYPE_MGET 0x41
nyatla 2:b96c1e90d120 50 #define NyLPC_TcMiMicVM_OP_TYPE_MPUT 0x42
nyatla 2:b96c1e90d120 51
nyatla 2:b96c1e90d120 52 #define NyLPC_TcMiMicVM_OP_TYPE_SGET 0x51
nyatla 2:b96c1e90d120 53 #define NyLPC_TcMiMicVM_OP_TYPE_SPUT 0x52
nyatla 2:b96c1e90d120 54
nyatla 2:b96c1e90d120 55 #define NyLPC_TcMiMicVM_OP_TYPE_NOP 0x61
nyatla 2:b96c1e90d120 56 #define NyLPC_TcMiMicVM_OP_TYPE_EXIT 0x62
nyatla 2:b96c1e90d120 57 #define NyLPC_TcMiMicVM_OP_TYPE_CALL 0x63
nyatla 2:b96c1e90d120 58
nyatla 2:b96c1e90d120 59 #define NyLPC_TcMiMicVM_OP_TYPE_LD 0x71
nyatla 2:b96c1e90d120 60
nyatla 2:b96c1e90d120 61
nyatla 2:b96c1e90d120 62 #define NyLPC_TcMiMicVM_CP_TYPE_END 0x01
nyatla 2:b96c1e90d120 63 /*
nyatla 2:b96c1e90d120 64 #define NyLPC_TcMiMicVM_OP_TYPE_V_END 0x1001
nyatla 2:b96c1e90d120 65 #define NyLPC_TcMiMicVM_OP_TYPE_V_DB8 0x1011
nyatla 2:b96c1e90d120 66 #define NyLPC_TcMiMicVM_OP_TYPE_V_DB16 0x1012
nyatla 2:b96c1e90d120 67 #define NyLPC_TcMiMicVM_OP_TYPE_V_DB32 0x1013
nyatla 2:b96c1e90d120 68 */
nyatla 2:b96c1e90d120 69
nyatla 2:b96c1e90d120 70 //----------------------------------------------------------------------
nyatla 2:b96c1e90d120 71 //MiMicOprandのタイプ値
nyatla 2:b96c1e90d120 72 //----------------------------------------------------------------------
nyatla 2:b96c1e90d120 73
nyatla 2:b96c1e90d120 74 #define NyLPC_TcMiMicVM_OPR_TYPE_NONE 0x01
nyatla 2:b96c1e90d120 75 #define NyLPC_TcMiMicVM_OPR_TYPE_WM_WM 0x11
nyatla 2:b96c1e90d120 76 #define NyLPC_TcMiMicVM_OPR_TYPE_WM_H08 0x12
nyatla 2:b96c1e90d120 77 #define NyLPC_TcMiMicVM_OPR_TYPE_WM_H16 0x13
nyatla 2:b96c1e90d120 78 #define NyLPC_TcMiMicVM_OPR_TYPE_WM_H32 0x14
nyatla 2:b96c1e90d120 79 #define NyLPC_TcMiMicVM_OPR_TYPE_WM 0x21
nyatla 2:b96c1e90d120 80 #define NyLPC_TcMiMicVM_OPR_TYPE_H08 0x22
nyatla 2:b96c1e90d120 81 #define NyLPC_TcMiMicVM_OPR_TYPE_H16 0x23
nyatla 2:b96c1e90d120 82 #define NyLPC_TcMiMicVM_OPR_TYPE_H32 0x24
nyatla 2:b96c1e90d120 83
nyatla 2:b96c1e90d120 84
nyatla 2:b96c1e90d120 85
nyatla 2:b96c1e90d120 86
nyatla 2:b96c1e90d120 87
nyatla 2:b96c1e90d120 88 /**
nyatla 2:b96c1e90d120 89 * インストラクションセットのバイナリデータ型。
nyatla 2:b96c1e90d120 90 * MiMicVMで実行するインストラクションをバッファから参照するために使います。
nyatla 2:b96c1e90d120 91 * キャスト元のバッファは、32bitのunsigned intを想定しています。境界は32bit単位です。
nyatla 2:b96c1e90d120 92 *
nyatla 2:b96c1e90d120 93 * 構造体は、
nyatla 2:b96c1e90d120 94 *
nyatla 2:b96c1e90d120 95 */
nyatla 2:b96c1e90d120 96 union NyLPC_TcMiMicVM_TInstruction{
nyatla 2:b96c1e90d120 97 /**
nyatla 2:b96c1e90d120 98 * オペコード情報のみを格納します
nyatla 2:b96c1e90d120 99 */
nyatla 2:b96c1e90d120 100 struct{
nyatla 2:b96c1e90d120 101 NyLPC_TcMiMicVM_OP_TYPE opc;
nyatla 2:b96c1e90d120 102 NyLPC_TUInt8 oprtype;
nyatla 2:b96c1e90d120 103 }op;
nyatla 2:b96c1e90d120 104 //32ビットコード
nyatla 2:b96c1e90d120 105
nyatla 2:b96c1e90d120 106 /**
nyatla 2:b96c1e90d120 107 * WM[8],WM[8]オペランドの命令を格納します。
nyatla 2:b96c1e90d120 108 */
nyatla 2:b96c1e90d120 109 struct{
nyatla 2:b96c1e90d120 110 NyLPC_TcMiMicVM_OP_TYPE opc;
nyatla 2:b96c1e90d120 111 NyLPC_TUInt8 oprtype;
nyatla 2:b96c1e90d120 112 NyLPC_TUInt8 wm1;
nyatla 2:b96c1e90d120 113 NyLPC_TUInt8 wm2;
nyatla 2:b96c1e90d120 114 }wmwm_32;
nyatla 2:b96c1e90d120 115 struct{
nyatla 2:b96c1e90d120 116 NyLPC_TcMiMicVM_OP_TYPE opc;
nyatla 2:b96c1e90d120 117 NyLPC_TUInt8 oprtype;
nyatla 2:b96c1e90d120 118 NyLPC_TUInt8 wm;
nyatla 2:b96c1e90d120 119 NyLPC_TUInt8 h8;
nyatla 2:b96c1e90d120 120 }wmh08_32;
nyatla 2:b96c1e90d120 121 struct{
nyatla 2:b96c1e90d120 122 NyLPC_TcMiMicVM_OP_TYPE opc;
nyatla 2:b96c1e90d120 123 NyLPC_TUInt8 oprtype;
nyatla 2:b96c1e90d120 124 NyLPC_TUInt8 wm;
nyatla 2:b96c1e90d120 125 }wm_32;
nyatla 2:b96c1e90d120 126 struct{
nyatla 2:b96c1e90d120 127 NyLPC_TcMiMicVM_OP_TYPE opc;
nyatla 2:b96c1e90d120 128 NyLPC_TUInt8 oprtype;
nyatla 2:b96c1e90d120 129 NyLPC_TUInt8 h8;
nyatla 2:b96c1e90d120 130 }h8_32;
nyatla 2:b96c1e90d120 131 struct{
nyatla 2:b96c1e90d120 132 NyLPC_TcMiMicVM_OP_TYPE opc;
nyatla 2:b96c1e90d120 133 NyLPC_TUInt8 oprtype;
nyatla 2:b96c1e90d120 134 NyLPC_TUInt8 h16;
nyatla 2:b96c1e90d120 135 }h16_32;
nyatla 2:b96c1e90d120 136 //64bit命令
nyatla 2:b96c1e90d120 137 struct{
nyatla 2:b96c1e90d120 138 NyLPC_TcMiMicVM_OP_TYPE opc;
nyatla 2:b96c1e90d120 139 NyLPC_TUInt8 oprtype;
nyatla 2:b96c1e90d120 140 NyLPC_TUInt8 wm;
nyatla 2:b96c1e90d120 141 NyLPC_TUInt8 _padding;
nyatla 2:b96c1e90d120 142 NyLPC_TUInt16 h16;
nyatla 2:b96c1e90d120 143 }wmh16_64;
nyatla 2:b96c1e90d120 144 struct{
nyatla 2:b96c1e90d120 145 NyLPC_TcMiMicVM_OP_TYPE opc;
nyatla 2:b96c1e90d120 146 NyLPC_TUInt8 oprtype;
nyatla 2:b96c1e90d120 147 NyLPC_TUInt8 wm;
nyatla 2:b96c1e90d120 148 NyLPC_TUInt8 _padding;
nyatla 2:b96c1e90d120 149 NyLPC_TUInt32 h32;
nyatla 2:b96c1e90d120 150 }wmh32_64;
nyatla 2:b96c1e90d120 151 struct{
nyatla 2:b96c1e90d120 152 NyLPC_TcMiMicVM_OP_TYPE opc;
nyatla 2:b96c1e90d120 153 NyLPC_TUInt8 oprtype;
nyatla 2:b96c1e90d120 154 NyLPC_TUInt8 _padding[2];
nyatla 2:b96c1e90d120 155 NyLPC_TUInt32 h32;
nyatla 2:b96c1e90d120 156 }h32_64;
nyatla 2:b96c1e90d120 157 };
nyatla 2:b96c1e90d120 158
nyatla 2:b96c1e90d120 159 #ifdef __cplusplus
nyatla 2:b96c1e90d120 160 }
nyatla 2:b96c1e90d120 161 #endif /* __cplusplus */
nyatla 2:b96c1e90d120 162
nyatla 2:b96c1e90d120 163 #endif /* NYLPC_CMIMICVM_PROTECTED_H_ */