Convert bitmap images to seeds for Tiny-83 NFT project.

Overview

What is this?

This tool allows you to convert any 14p high and 22p wide Bitmap (.bmp) to the seed needed for the Tiny-83 NFT project.

Project Twitter: https://twitter.com/TINY83_nft

Project Open Sea: https://opensea.io/collection/tiny-83

Minting Page: https://tiny-83.github.io/tiny-83/

My Twitter: https://twitter.com/shib_maximalist

My Open Sea: https://opensea.io/shib_maximalist

Usage

Create an image with 22x14 pixels and save it as bitmap (.bmp). When you save it, set the coloer depth to 1-Bit. This way pixels will eithe rbe switched on or off (0|1). I used paint.net

Windows

git clone https://github.com/shib-maximalist/tiny_83_image_converter
cd tiny_83_image_converter
py -m pip install -r requirements.txt
py main.py

Linux

git clone https://github.com/shib-maximalist/tiny_83_image_converter
cd tiny_83_image_converter
pip install -r requirements.txt
python main.py

How does it work?

When I played arround with the minting page
I noticed that the two seed value had a very distinctive influence on the outcome on the screen:


(1,1)


(2,2)


(3,3)

Notice something? Thats binary! Both panes (left and right) are composed of 11x14 pixels. Thats 154 pixels per pane and 308 for the whole image. What we need is a way to address the pixels individually.

Let's start with our Image:

I took the OHM logo, resized it and edited it to be a 14x22 bitmap. The Image is displayed blury because it's upscaled by a factor of 10 and your browser tries to fill in the gaps with filtering techniques that do not apply to pixel art. The original size pixture is below the big one.



Ohm (3,3)

We use these two lines to open the image and turn it into a matrix

image = im.open(img_path)
image_array = np.array(image)

This matrix ist just a two-dimensional array that represents where a pixel is black (0) and where a pixel is white (1). We can use an IDE to visualize how it looks:


Matrix representation of our image

This matrix gives us a mask which we can apply to the canvas (panes). Imagine it like a sieve. If we pour color on it the canvas will only get painted where the sieve permits it. But what is the canvas? The canvas consists of two panes called left and right. We currently have only one matrix so we have to split it in the middle:

left_split, right_split = np.split(image_array, 2, axis=1)


Left and Right Matrix

We did not answer the question what the canvas is. The canvas is this:

slot_map_left = np.array([2 ** x for x in range(h*w)])
slot_map_right = np.array([2 ** x for x in range(h*w)])

This is the magic trick. Each pixel on the canvas (on both individual panes) can be addressed binary via a 2 ** x address. The pixel in the top left corner has the address 2 ** 0 The pixel in the bottom right corner has the address 2 ** 153

The above commands generate two 1-dimensional arrays representing each pixel address per pane. All we have to do now is to multiply these address arrays with their masks:

zip_left_slots = slot_map_left * left_split
zip_right_slots = slot_map_right * right_split

The resulting arrays only contain addresses for pixels that we ant to colour (actually it's the pixels we don't want to color but in the end it's the same). The last step is to generate the single number seed from it:

left = zip_left_slots.sum()
right = zip_right_slots.sum()

Why do we sum up the whole array? Because it's binary! Summing the binary addresses is the same as a binary AND. Awesome! We end up with:

Left:	21764133429535165757682873043452904982125215743 
Right:	22835963083295327415964576320725097856141869054

Let's enter them into the :


Minting preview

SUCCESS!

I am the original creator of the OHM(3,3) Tiny Calculator. Every other one copied my seed. If you want the original you can get it here: https://opensea.io/assets/0x7deb38a22694608a58b28970320d39ee50e7bc0f/652


The original OHM(3,3) calculator.

Owner
shib_maximalist
shib_maximalist
HTML2Image is a lightweight Python package that acts as a wrapper around the headless mode of existing web browsers to generate images from URLs and from HTML+CSS strings or files.

A package acting as a wrapper around the headless mode of existing web browsers to generate images from URLs and from HTML+CSS strings or files.

176 Jan 01, 2023
Draw a torus passing through three given points.

PyTorusThreePoints Draw a torus passing through three given points. Usage import numpy as np import pyvista as pv from torus_three_points.main import

2 Nov 19, 2021
Group of interfaces interesting for users

Project: Interface to create GIF animation based on Fourier Series.

5 Aug 17, 2021
Simplest QRGenerator with a cool feature (-sh=True :D)

Simple QR-Codes Generator :D Generates QR-codes, nothing more and nothing less . How to use Just run ./install.sh to set all the dependencies up, th

RENNAARENATA 1 Dec 11, 2021
The InvGears workbench for FreeCAD allows the creation of gear systems

FreeCAD InvGears workbench Current version 0.1.1 Overview The InvGears workbench allows the creation of gear systems. The gear generation algorithm is

Sebastian Ernesto Garcia 8 Dec 10, 2021
A pure python implementation of the GIMP XCF image format. Use this to interact with GIMP image formats

Pure Python implementation of the GIMP image formats (.xcf projects as well as brushes, patterns, etc)

FHPyhtonUtils 8 Dec 30, 2022
Generate waves art for an image

waves-art Generate waves art for an image. Requirements: OpenCV Numpy Example Usage python waves_art.py --image_path tests/test1.jpg --patch_size 15 T

Hamza Rawal 18 Apr 04, 2022
Python-based tools for document analysis and OCR

ocropy OCRopus is a collection of document analysis programs, not a turn-key OCR system. In order to apply it to your documents, you may need to do so

OCRopus 3.2k Jan 04, 2023
Png2Jpg tool will help you convert from png image format to jpg images format.

PNG 2 JPG All codes assume running from root directory. Please update the sys path at the beginning of the codes before running. Over View Png2Jpg too

Nguyễn Trường Lâu 2 Dec 27, 2021
FrostedGlass is a translucent frosted glass effect widget, that creates a context with the background behind it.

FrostedGlass FrostedGlass is a translucent frosted glass effect widget, that creates a context with the background behind it. The effect is drawn on t

Kivy Garden 24 Dec 10, 2022
An open source image editor which can manipulate an image in many ways!

Image Editor - An open source image editor which can manipulate an image in many ways! If you need any more modes in repo or I

TroJanzHEX 44 Nov 17, 2022
Command line utility for converting images to seamless tiles

img2texture Command line utility for converting images to seamless tiles. The resulting tiles can be used as textures in games, compositing and 3D mod

Artёm IG 24 Dec 26, 2022
Rotates your images in the spirit of rot13

Image Rotator (imrot10) Its like rot13 but for images. Calling the algorithm imrot10 for im = image, rot = rotation, 10 = default magnitude. Unfortuna

Sarah 2 Dec 10, 2021
Semi-hash-based Image Generator

pixel-planet Semi-hash-based Image Generator Utilizable for NFTs Generation Process Input is salted and hashed Colors (background, planet, stars) are

Bill Ni 3 Sep 01, 2022
QSIprep: Preprocessing and analysis of q-space images

QSIprep: Preprocessing and analysis of q-space images Full documentation at https://qsiprep.readthedocs.io About qsiprep configures pipelines for proc

Lifespan Informatics and Neuroimaging Center 88 Dec 15, 2022
Manipulate EXIF and IFD metadata.

Tyf Copyright Distribution Support this project Buy Ѧ and: Send Ѧ to AUahWfkfr5J4tYakugRbfow7RWVTK35GPW Vote arky on Ark blockchain and earn Ѧ weekly

16 Jan 21, 2022
Image Reading, Metadata Conversion, and Image Writing for Microscopy Images in Python

AICSImageIO Image Reading, Metadata Conversion, and Image Writing for Microscopy Images in Pure Python Features Supports reading metadata and imaging

Allen Institute for Cell Science - Modeling 137 Dec 14, 2022
Viewer for NFO files

NFO Viewer NFO Viewer is a simple viewer for NFO files, which are "ASCII" art in the CP437 codepage. The advantages of using NFO Viewer instead of a t

Osmo Salomaa 114 Dec 29, 2022
Image Processing - Make noise images clean

影像處理-影像降躁化(去躁化) (Image Processing - Make Noise Images Clean) 得力於電腦效能的大幅提升以及GPU的平行運算架構,讓我們能夠更快速且有效地訓練AI,並將AI技術應用於不同領域。本篇將帶給大家的是 「將深度學習應用於影像處理中的影像降躁化 」,

2 Aug 04, 2022
📷 Python package and CLI utility to create photo mosaics.

📷 Python package and CLI utility to create photo mosaics.

Loic Coyle 7 Oct 29, 2022