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Readme getting ready for 2.0
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README.md
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README.md
@ -1,3 +1,19 @@
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* Cleanup and extend Documentation
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- Number field ✅
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- Text field ✅
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- Data directory ✅
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- Verbosity setting ✅
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- Graph Usage
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- Number min and max value to docs
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- Slider
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- OptionList
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- Tab usage
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- prepare filesystem things ?
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- Generic creation and updates
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- additionsl parameters sliderContinuous
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- jsonUpdateDocumentSize = 2000;
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jsonInitialDocumentSize = 8000;
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# ESPUI 2.0
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![ESPUI](https://github.com/s00500/ESPUI/blob/master/docs/ui_complete.png) //
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@ -15,47 +31,25 @@ So if you either don't know how or just don't want to waste time: this is your
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simple solution user interface without the need of internet connectivity or any
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additional servers.
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The Library runs fine on any kind of ESP8266 and ESP32 (NodeMCU Boards, usw)
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The Library runs fine on any kind of **ESP8266** and **ESP32** (NodeMCU Boards, usw)
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# Important notes
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THIS IS THE 2.0.0 DEVELOPMENT BRANCH, NOT GUARANTIED TO WORK
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**Roadmap for 2.0.0:**
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- ArduinoJSON 6.10.0 Support ✅
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- Tabs by @eringerli ISSUE #45 ✅
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- remove black line without tabs ✅
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- API changes by @eringerli ✅
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- less updateControl functions ✅
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- proper wrappers for all create/update actions ✅
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- Min Max on slider by @eringerli ✅
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- OptionList by @eringerli ✅
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- Public Access to ESPAsyncServer ✅
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- Graph Widget ✅
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* Persist save graph in local storage #10
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* Switch slider behaviour ?
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* Cleanup Example, DNS and autojoin
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* data upload new info to doc? (copy to folder?)
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* Cleanup and extend Documentation
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- Number field ✅
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- Text field ✅
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- Data directory ✅
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- Graph Usage
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- Number min and max value to docs
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- Slider
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- OptionList
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- Tab usage
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- Verbosity setting
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## Changelog for 2.0 functions:
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## Changelog for 2.0:
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- ArduinoJSON 6.10.0 Support
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- split pad into pad and padWithCenter
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- Cleaned order or parameters on switch
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- cleaned order of parameters on pad
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- Changes all numbers to actually be numbers (slider value, number value, min
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and max)
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- Cleaned Order or parameters on switch
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- cleaned Order of parameters on pad
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- Changes all numbers to actually be numbers (slider value, number value, min and max)
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### Added features
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- Tabs by @eringerli ISSUE #45
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- Generic API by @eringerli
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- Min Max on slider by @eringerli
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- OptionList by @eringerli
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- Public Access to ESPAsyncServer
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- Graph Widget (Persist save graph in local storage #10)
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## Dependencies
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@ -63,7 +57,7 @@ This library is dependent on the following libraries to function properly.
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- [ESPAsyncWebserver](https://github.com/me-no-dev/ESPAsyncWebServer)
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- [ArduinoJson](https://github.com/bblanchon/ArduinoJson) (Last tested with
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version 6.10.0) **Plus for ESP8266**
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version 6.10.0)
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- (_For ESP8266_) [ESPAsyncTCP](https://github.com/me-no-dev/ESPAsyncTCP)
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- (_For ESP32_) [AsyncTCP](https://github.com/me-no-dev/AsyncTCP)
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@ -127,27 +121,30 @@ more program memory to work with.
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## User interface Elements
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- Label (updateable)
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- Label
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- Button
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- Switch (updateable)
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- Switch
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- Control pad
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- Control pad with center button
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- Slider
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- Text Input (updateable)
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- Numberinput (updateable)
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- Text Input
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- Numberinput
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Checkout the example for the usage
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Checkout the example for the usage or see the detailed info below
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## Available colors:
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- COLOR_TURQUOISE
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- COLOR_EMERALD
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- COLOR_PETERRIVER
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- COLOR_WETASPHALT
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- COLOR_SUNFLOWER
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- COLOR_CARROT
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- COLOR_ALIZARIN
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- COLOR_NONE
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- Turquoise
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- Emerald
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- Peterriver
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- Wetasphalt
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- Sunflower
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- Carrot
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- Alizarin
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- Dark
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- None
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(Use like `ControlColor::Sunflower`)
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## Documentation
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@ -155,17 +152,15 @@ The heart of ESPUI is
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[ESPAsyncWebserver](https://github.com/me-no-dev/ESPAsyncWebServer). ESPUI's
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frontend is based on [Skeleton CSS](http://getskeleton.com/) and jQuery-like
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lightweight [zepto.js](https://zeptojs.com/) for Handling Click Events Etc. The
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communication between the _ESP32_ and the client browser works using web
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communication between the _ESP_ and the client browser works using web
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sockets. ESPUI does not need network access and can be used in standalone access
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point mode. All assets are loaded from the internal SPIFFS filesystem of the
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ESP32.
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point mode, all resources are loaded directly from the ESPs memory.
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This section will explain in detail how the Library is to be used from the
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Arduino code side. As of now the Facilino blocks are not implemented. In the
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arduino setup() routine the interface can be customised by adding UI Elements.
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Arduino code side. In the arduino `setup()` routine the interface can be customised by adding UI Elements.
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This is done by calling the corresponding library methods on the Library object
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ESPUI. Eg: `ESPUI.button(“button”, &myCallback);` creates a button in the
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interface that calls the “myCallback” function when changed. All buttons and
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`ESPUI`. Eg: `ESPUI.button("button", &myCallback);` creates a button in the
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interface that calls the `myCallback(Control *sender, int value)` function when changed. All buttons and
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items call their callback whenever there is a state change from them. This means
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the button will call the callback when it is pressed and also again when it is
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released. To separate different events an integer number with the event name is
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@ -177,8 +172,12 @@ of the UI library:
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![Buttons](https://github.com/s00500/ESPUI/blob/master/docs/ui_button.png)
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Buttons have a name and a callback value. They have one event for press and one
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for release.
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Buttons have a name and a callback value. They have one event for press (`B_DOWN`) and one
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for release (`B_UP`).
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* B_DOWN
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* B_UP
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#### Switch
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@ -186,9 +185,12 @@ for release.
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Switches sync their state on all connected devices. This means when you change
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their value they change visibly on all tablets or computers that currently
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display the interface. They also have two types of events: one for turning on
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and one for turning off.
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display the interface. They also have two types of events: one when turning on (`S_ACTIVE`)
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and one when turning off (`S_INACTIVE`).
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* S_ACTIVE
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* S_INACTIVE
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#### Buttonpad
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![control pads](https://github.com/s00500/ESPUI/blob/master/docs/ui_controlpad.png)
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@ -198,13 +200,25 @@ useful for con-trolling all kinds of movements of vehicles or also of course our
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walking robots. They use a single callback per pad and have 8 or 10 different
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event types to differentiate the button actions.
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* P_LEFT_DOWN
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* P_LEFT_UP
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* P_RIGHT_DOWN
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* P_RIGHT_UP
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* P_FOR_DOWN
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* P_FOR_UP
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* P_BACK_DOWN
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* P_BACK_UP
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* P_CENTER_DOWN
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* P_CENTER_UP
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#### Labels
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![labels](https://github.com/s00500/ESPUI/blob/master/docs/ui_labels.png)
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Labels are a nice tool to get information from the robot to the user interface.
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This can be done to show states, values of sensors and configuration parameters.
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To send data from the code use `ESP.print(labelId, “Text”);` . Labels get a name
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To send data from the code use `ESP.print(labelId, "Text");` . Labels get a name
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on creation and a initial value. The name is not changeable once the UI
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initialised.
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@ -237,6 +251,12 @@ The textinput works very similar like the number input but with a string. You
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can enter a String into it and when you are done with your change it is sent to
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the ESP.
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#### Graph
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TODO: Add image
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// TODO: add docs
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#### Using Tabs
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TODO: Add image
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@ -245,12 +265,11 @@ TODO: Add image
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#### Initialisation of the UI
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After all the elements are configured you can use `ESPUI.begin(“Some Title”);`
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to start the UI interface. (Or `ESPUI.beginSPIFFS(“Some Title”);` respectively)
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After all the elements are configured you can use `ESPUI.begin("Some Title");`
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to start the UI interface. (Or `ESPUI.beginSPIFFS("Some Title");` respectively)
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Make sure you setup a working network connection or AccesPoint **before** (See
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example). The web interface can then be used from multiple devices at once and
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also shows an connection status in the top bar. The library is designed to be
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easy to use and can still be extended with a lot of more functionality.
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gui.ino example). The web interface can then be used from multiple devices at once and
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also shows an connection status in the top bar.
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#### Log output
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Loglevels are:
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- Verbosity::Quiet (default)
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- Verbosity::Verbose
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- Verbosity::VerboseJSON
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- `Verbosity::Quiet` (default)
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- `Verbosity::Verbose`
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- `Verbosity::VerboseJSON`
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// TODO: Add some more notes here
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VerboseJSON outputs the most debug information.
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# Notes for Development
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If you want to work on the HTML/CSS/JS files, do make changes in the `data`
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If you want to work on the HTML/CSS/JS files, do make changes in the *data*
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directory. When you need to transfer that code to the ESP, run
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`tools/prepare_static_ui_sources.py -a` (this script needs python3 with the
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modules htmlmin, jsmin and csscompressor). This will generate a) minified files
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next to the original files to be uploaded with the ESP32 sketch data uploader
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mentioned above and b) the C header files in `src` that contain the minified and
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gzipped HTML/CSS/JS data (which are used by the **prepareFileSystem** example
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sketch or when they are served from PROGMEM; see above in the section "Getting
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started"). Alternatively, you can duplicate the `examples/gui` directory and
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work on the copy. Then specify the `--source` and `--target` arguments to the
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`tools/prepare_static_ui_sources.py -a` (this script needs **python3** with the
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modules **htmlmin**, **jsmin** and **csscompressor**). This will generate a) minified files
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next to the original files and b) the C header files in `src` that contain the minified and
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gzipped HTML/CSS/JS data. Alternatively, you can specify the `--source` and `--target` arguments to the
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`prepare_static_ui_sources.py` script (run the script without arguments for
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help).
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help) if you want to use different locations.
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If you don't have a python environment, you need to minify and gzip the
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HTML/CSS/JS files manually. I wrote a little useful jsfiddle for this,
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@ -286,7 +301,7 @@ HTML/CSS/JS files manually. I wrote a little useful jsfiddle for this,
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If you change something in HTML/CSS/JS and want to create a pull request, please
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do include the minified versions and corresponding C header files in your
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commits.
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commits. (Do **NOT** commit all the minified versions for the non changed files)
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# Contribute
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