FragmentPaintPropertyTreeBuilder::UpdateScrollAndScrollTranslation()
Blink28618 Loka 2025

FragmentPaintPropertyTreeBuilder::UpdateScrollAndScrollTranslation()

The provided sources offer an extensive, line-by-line analysis of Blink’s rendering function, FragmentPaintPropertyTreeBuilder::UpdateScrollAndScrollTranslation(), which is critical for implementing scrolling behavior in Chrome. This function manages the creation and updating of two primary data structures: the Scroll Property Node (which defines the logical scroll container, including its viewport, content size, and CSS properties like overscroll behavior and scroll snapping) and the Scroll Translation Transform Node (which applies the negative scroll offset as a geometric translation to descendant content). The process is part of RenderingNG, which uses separate property trees (Transform, Clip, Effect, Scroll) to achieve efficient, incremental updates. The method ensures that only scrollable objects receive these nodes, updates related scrollbar Effect Nodes, and implements optimizations like directly updating the compositor's transform for simple scroll offset changes without rebuilding the entire paint artifact.

Jaksot(398)

Sticky and Fixed Positioning in Single-Axis Scroll Containers

Sticky and Fixed Positioning in Single-Axis Scroll Containers

The provided sources examine how Blink/Chromium handles the interaction between sticky positioning, fixed ancestors, and the development of single-axis scroll containers. A central focus is the "fixed...

16 Helmi 32min

Layout and Fragment Trees: The Dual Paths of Blink Rendering

Layout and Fragment Trees: The Dual Paths of Blink Rendering

In the Blink rendering engine, navigating upward through the layout tree differs significantly from traversing the fragment tree, as each structure serves a distinct purpose in the web pipeline. The l...

14 Helmi 35min

The Mechanics of Inline Block and Fragmentation

The Mechanics of Inline Block and Fragmentation

These technical documents describe how Blink’s modern LayoutNG engine manages inline-block elements through a specialized physical fragment tree. Within this system, an inline-block is classified as a...

13 Helmi 26min

Inside Chromium: The Architecture of DevTools

Inside Chromium: The Architecture of DevTools

The provided text explains the architecture and inner workings of Chromium DevTools, describing it as a client-server system that bridges a user-facing front-end with the browser’s back-end. This comm...

12 Helmi 40min

Chromium Blink Printing Mode Analysis

Chromium Blink Printing Mode Analysis

These sources analyze how the Chromium Blink engine manages printing mode and its impact on layout behavior. The documentation clarifies that printing does not automatically disable a view's status as...

12 Helmi 28min

Blink Fragment Propagation and Sticky Descendant Boundaries

Blink Fragment Propagation and Sticky Descendant Boundaries

The provided text explains how Blink's LayoutView manages sticky descendant propagation within the fragment tree. Under standard conditions, sticky elements bubble upward through ancestor fragments un...

12 Helmi 29min

Oilpan: The Garbage Collector for Blink in Chrome

Oilpan: The Garbage Collector for Blink in Chrome

Oilpan is a specialized garbage collection system for the Blink rendering engine in Chrome, specifically designed to manage C++ objects and eliminate memory safety issues like use-after-free bugs. It ...

11 Helmi 38min

Iframe Layout Coordination and Cooperative Sizing in Blink

Iframe Layout Coordination and Cooperative Sizing in Blink

The provided text describes the technical evolution of iframe layout coordination within Google's Blink rendering engine. Traditionally, browsers treat iframes as isolated boxes with a default size of...

9 Helmi 37min