844 VGA Mandelbrot

844 : VGA Mandelbrot

Design render
  • Author: Mike Bell
  • Description: Mandelbrot on VGA, racing the beam
  • GitHub repository
  • Clock: 100000000 Hz

How it works

The Mandelbrot fractal is computed "racing the beam" and displayed through the TinyVGA Pmod.

One iteration of the computation is done over two clock cycles, and a maximum iteration depth of 14 iterations is used. The design is clocked at 100MHz, allowing four clock cycles per 25MHz pixel clock. This means one value is computed every 7 pixels, giving a result like this:

The Mandelbrot set

The computation uses 16-bit fixed point arithmetic. The multiplications are approximated to save area, giving a possible error in the least significant bit. This gives at least 14-bit accuracy on each iteration.

The output image is at a 720x480 resolution (~103x480 Mandelbrot pixels).

How to test

Provide a 100MHz clock.

The image position and zoom can be configured using the input and bidir pins.

in[2:0] control the configuration to set, and {io[7:0], in[7:3]} specify a signed value when setting a register.

These values should only be updated during vsync.

Ctrl Value
0 Enable demo mode (Zooms in and out repeatedly)
1 Set X coordinate for top-left of screen to value / 2^10
2 Set Y coordinate for top-left of screen to value / 2^11
3 No action
4 Set X increment per column to value[9:0] / 2^13
5 Set Y increment per column to value[9:0] / 2^13
6 Set X increment per row to value[7:0] / 2^13
7 Set Y increment per row to value[7:0] / 2^13

Note there are 103 columns and 480 rows displayed.

External hardware

Tiny VGA Pmod in the output socket.

IO

#InputOutputBidirectional
0Ctrl 0R[1]Input 5
1Ctrl 1G[1]Input 6
2Ctrl 2B[1]Input 7
3Input 0vsyncInput 8
4Input 1R[0]Input 9
5Input 2G[0]Input 10
6Input 3B[0]Input 11
7Input 4hsyncInput 12

Chip location

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