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Message-ID: <CAHpNFcPUVeOhEnL_10u9Omb+LDpYXjTPkYzteduPYWFiLe90bw@mail.gmail.com>
Date: Fri, 1 Apr 2022 08:51:30 +0100
From: Duke Abbaddon <duke.abbaddon@...il.com>
To: moderator@...a.org
Subject: Though the VESA & HDMI & DisplayPort standards Facilitates direct low
bandwidth transport of and transformation of 3D & 2D graphics & fonts into
directly Rendered Super High Fidelity SiMD & AVX Rendering Vector
VecSR - Vector Standard Render
VESA Standards : Vector Graphics, Boxes, Ellipses, Curves & Fonts :
Consolas & other brilliant fonts : (c)RS
SiMD Render - Vector Graphics, Boxes, Ellipses, Curves & Fonts
OT-SVG Fonts & TT-SVG Obviously Rendered in Direct X 9+ & OpenGL 3+
Mode & Desktop Rendering modes
Improve Console & TV & BIOS & General Animated Render
Vector Display Standards with low relative CPU Weight
SiMD Polygon Font Method Render
Default option point scaling (the space) : Metadata Vector Fonts with
Curl mathematical vector :
16 Bit : SiMD 1 width
32 Bit : SiMD Double Width
High precision for AVX 32Bit to 256Bit width precision.
Vectoring with SiMD allows traditional CPU mastered VESA Emulation
desktops & safe mode to be super fast & displays to conform to VESA
render standards with little effort & a 1MB Table ROM.
Though the VESA & HDMI & DisplayPort standards Facilitates direct low
bandwidth transport of and transformation of 3D & 2D graphics & fonts
into directly Rendered Super High Fidelity SiMD & AVX Rendering Vector
Display Standards Vector Render : DSVR-SiMD Can and will be directly
rendered to a Surface for visual element : SfVE-Vec
As such transport of Vectors & transformation onto display (Monitor,
3D Unit, Render, TV, & Though HDMI, PCI Port & DP & RAM)
Directly resolve The total graphics pipeline into high quality output
or input & allow communication of almost infinite Floating point
values for all rendered 3D & 2D Elements on a given surface (RAM
Render Page or Surface)
In high precision that is almost unbeatable & yet consumes many levels
less RAM & Transport Protocol bandwidth,
Further more can also render Vector 3D & 2D Audio & other elements
though Vector 'Fonting' Systems, Examples exist : 3D Wave Tables,
Harmonic reproduction units for example Yamaha and Casio keyboards.
(c)Rupert S
https://science.n-helix.com/2016/04/3d-desktop-virtualization.html
https://science.n-helix.com/2019/06/vulkan-stack.html
https://science.n-helix.com/2019/06/kernel.html
https://science.n-helix.com/2022/03/fsr-focal-length.html
https://science.n-helix.com/2018/01/integer-floats-with-remainder-theory.html
https://bit.ly/VESA_BT
*
*Application of SiMD Polygon Font Method Render
*3D Render method with Console input DEMO : RS
3D Display access to correct display of fonts at angles in games &
apps without Utilizing 3rd Axis maths on a simple Shape polygon Vector
font or shape. (c)Rupert S
3rd dimensional access with vector fonts by a simple method:
Render text to virtual screen layer AKA a fully rendered monochrome, 2
colour or multi colour..
Bitmap/Texture,
Due to latency we have 3 frames ahead to render to bitmap DPT 3 / Dot 5
Can be higher resolution & we can sub sample with closer view priority...
We then rotate the texture on our output polygon & factor size differential.
The maths is simple enough to implement in games on an SSE configured
Celeron D (depending on resolution and Bilinear filter & resize
Why ? Because rotating a polygon is harder than subtracting or adding
width, Hight & direction to fully complex polygon Fonts & Polygon
lines or curves...
The maths is simple enough to implement in games on an SSE configured
Celeron D (depending on resolution and Bilinear filter & resize.
https://science.n-helix.com/2022/04/vecsr.html
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