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# ESPTerm
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**ESPTerm is a VT100-like terminal emulator running on the ESP8266 WiFi chip.**
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![Photo][photo-hw]<br>
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*Fig 1: Breadboard adapter developed for ESPTerm*
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As of release 1.0, ESPTerm **passes most of VTTEST test cases** (from the main menu and some Xterm specific), making it
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functionally comparable to eg. gnome-terminal, terminator, konsole, GtkTerm or PuTTY.
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ESPTerm is **capable of running Midnight Commander** through agetty, **including full
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mouse support**, provided agetty is made to believe it's Xterm, which shows ESPTerm is sufficiently well
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implemented to work with ncurses.
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To see what escape sequences are supported, check out this [annotated Xterm manual page][xterm-compare]
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which was used for reference, or the built-in help page ([online demo][demo-help])
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The terminal screen can be accessed using any web browser, even on a phone or tablet.
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It works with ESP-01, ESP-01S, ESP-12 and likely many other modules (I use an ESP-12
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on a LoLin NodeMCU board from eBay for development).
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With ESPTerm, you can add remote access via WiFi to any embeded project, all you need is
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a serial port and some imagination!
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## Try it online
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You can try the web user interface here: [espterm.github.io][demo-term]
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The demo is almost identical to the real thing, except, of course, it doesn't do much without the
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emulator backend that runs on the ESP8266. The web version will be updated to match this repository
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after each minor release (and sometimes in between for testing; the version currently being show-cased
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can be read on the About page of the demo).
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## Main features
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- **Almost complete VT102 emulation** with some extras from Xterm, eg.
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- Screen size up to 80x25 (the limit can be modified when compiling from source)
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- All standard text styles and 16 colors supported
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- Full UTF-8 support, alternate character sets
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- Standard mouse tracking modes
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- You can dynamically set screen title, button labels...
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- **Web Terminal Interface**
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- Real-time screen update via WebSocket
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- Mouse and keyboard input, works also on mobile
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- 5 optional buttons for quick commands
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- Text file upload tool with adjustable delays and line endings
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- *Built-in help page* ([demo][demo-help]) with basic troubleshooting and command reference
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- **User-friendly comprehensive WiFi configuration** (Demo: [WiFi][demo-wifi], [network][demo-network] config)
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- Static IP, DHCP, channel selection, power
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- SSID search utility for finding your existing network
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## Bugs? Ideas?
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To ask any questions or discuss new features you'd like to see added, it's best to use
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the **[ESPTerm Dev mailing list](https://groups.google.com/forum/#!forum/espterm-dev)**
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Subscribe to the mailing list to also receive new release announcements.
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If you found a bug (that happens alot!), please submit it to our [bug tracker](https://github.com/espterm/espterm-firmware/issues).
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We also use it to track planned ideas. If you don't want to create a GitHub account for that, just send it to the mailing list.
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## Running ESPTerm
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To run ESPTerm on your ESP8266, either build it yourself from source using `xtensa-lx106-elf-gcc`
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(and the included Makefile), or download pre-built binaries from the [GitHub releases section][releases].
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Flash the binaries using [esptool][esptool].
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### Pins
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- Pin GPIO2 is used for debug messages at 115200 baud, 8 bit, no parity.
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- Pins Rx and Tx are used for the main communication UART, parameters of which can be set on the system config page.
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Connect your USB-serial dongle or application microcontroller here.
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### Setup
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- When flashed for the first time, ESPTerm wipes any possible previous WiFi configuration, because it implements its own WiFi
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config manager with many additional features.
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- It should start in AP mode, the default SSID being `TERM-MACADR` with `MACADR` being three unique bytes from the MAC
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address / Device ID as ASCII hex.
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- Connect to the AP via a smartphone or laptop and configure WiFi as desired. If a captive portal page does not open,
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try 192.168.4.1 in your web browser.
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### Rescue from messed up config
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It can happen that some changes to the WiFi or network config make the module inaccessible.
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- To re-enable the built-in AP, hold the BOOT (GPIO0 -> GND) button for about 1 s, until the blue LED starts flashing.
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Then quickly release the button.
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- To reset all settings to defaults, hold the button a couple seconds until the LED flashes rapidly, then release it.
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- You can cancel this wipe/reset operation (when triggered by accident) by pressing Reset or disconnecting the power supply.
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### Config files
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ESPTerm has two config "files", one for defaults and one for the currently used settings. In the case of the terminal
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config, there is also a third, temporary file for changes done via ESC commands.
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When you get your settings *just right*, you can store them as defaults, which can then be at any time restored
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by holding the BOOT (GPIO0) button. You can do this on the System Settings page. This asks for an "admin password",
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which you can define when building the firmware in the `esphttpdconfig.mk` file.
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The default password is `19738426`. This password can't presently be changed without re-flashing the firmware.
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You can also restore everything (except the saved defaults) to "factory defaults", there is a button for this
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on the System Settings page. Those are the initial values in the config files.
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## Research resources
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Developing ESPTerm wasn't an easy task, because the information is scattered across many places and the existing
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terminal emulators I originally used for reference (terminator, Konsole) are not implemented correctly in some details.
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A great tool for checking my implementation has proven to be [VTTTEST][vttest] and Xterm as a reference
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implementation that is probably the most complete emulator available, although it's cumbersome to use and its age
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really shows in the looks.
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I've comnpiled a list of those I found most helpful here: [VT100 emulation resources][resources]
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## Development
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ESPTerm's firmware is written in C and is based on SpriteTM's `libesphttpd` http server library forked to
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[MightyPork/libesphttpd][httpdlib]. This fork includes various improvements
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and changes required by the project.
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### Installation for development
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- Clone this project with `--recursive`, or afterwards run `git submodule init` and `git submodule update`.
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- Install [esp-open-sdk][opensdk] and build it with
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`make toolchain esptool libhal STANDALONE=n`.
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Make sure the `xtensa-lx106-elf/bin` folder is on $PATH.
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- Install [esptool][esptool] (it's in the Arch community repo and on AUR, too)
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- Set up udev rules so you have access to ttyUSB0 without root, eg:
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```
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KERNEL=="tty[A-Z]*[0-9]*", GROUP="uucp", MODE="0666"
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```
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- Install Ragel if you wish to make modifications to the ANSI sequence parser.
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If not, comment out its call in `build_parser.sh`. The `.rl` file is the actual source, the `.c` is generated.
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- Install dependencies of the front-end submodule (`yarn install` in the front-end folder, installed PHP)
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- Make sure your `esphttpdconfig.mk` is set up properly - link to the SDK etc.
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The IoT SDK is now included in the project due to problems with obtaining the correct version and patching it.
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It works with version 1.5.2, any newer seems to be incompatible. If you get it working with a newer SDK, a PR is more
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than welcome!
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### Web resources
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The web resources are in the `front-end` git submodule. To prepare the web resources for a build,
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run `make web`. The resulting files are copied to `html/`. The `html/` folder is then embedded in the firmware image.
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It's kind of tricky to develop the web resources locally; you might want to try the "split image"
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Makefile option, then you can flash just the html portion with `make htmlflash`. I haven't tried this.
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For local development, use the `server.sh` script in `html_orig` (more details in the front-end repo's readme).
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It's possible to talk to the API endpoints of a running ESP8266 from a page served by your local server
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if you configure `_env.php` with its IP.
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### Flashing
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The Makefile should automatically build the parser and web resources for you when you run `make`.
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The web resources are normally no re-built, because the build process is quite slow. To manually rebuild them,
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run `make web` before `make`.
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To flash, just run `make flash`. It will use parameters you setup in the `esphttpdconfig.mk` file.
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[releases]: https://github.com/MightyPork/esp-vt100-firmware/releases
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[httpdlib]: https://github.com/MightyPork/libesphttpd
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[esptool]: https://github.com/espressif/esptool
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[opensdk]: https://github.com/pfalcon/esp-open-sdk/
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[demo-help]: https://espterm.github.io/help.html
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[demo-wifi]: https://espterm.github.io/cfg_wifi.html
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[demo-network]: https://espterm.github.io/cfg_network.html
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[demo-term]: https://espterm.github.io/term.html
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[xterm-compare]: https://espterm.github.io/docs/espterm-xterm.html
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[photo-hw]: https://espterm.github.io/docs/espterm-hw-small.jpg
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[resources]: https://espterm.github.io/docs/index.html
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[vttest]: http://invisible-island.net/vttest/
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