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* Refactor computation of preferred aspect ratios Computing min/max-content sizes required a ContainingBlock in order to resolve the padding and border when determining the preferred aspect ratio. However, all callers already knew the padding and border, so they can compute the ratio themselves, and pass it directly instead of the ContainingBlock. Signed-off-by: Oriol Brufau <obrufau@igalia.com> * Put preferred aspect ratio into ConstraintSpace Signed-off-by: Oriol Brufau <obrufau@igalia.com> --------- Signed-off-by: Oriol Brufau <obrufau@igalia.com>
218 lines
7.9 KiB
Rust
218 lines
7.9 KiB
Rust
/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at https://mozilla.org/MPL/2.0/. */
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//! <https://drafts.csswg.org/css-sizing/>
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use std::cell::LazyCell;
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use std::ops::{Add, AddAssign};
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use app_units::Au;
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use serde::Serialize;
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use style::properties::ComputedValues;
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use style::Zero;
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use crate::geom::Size;
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use crate::style_ext::{AspectRatio, Clamp, ComputedValuesExt, ContentBoxSizesAndPBM};
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use crate::{ConstraintSpace, IndefiniteContainingBlock, LogicalVec2, SizeConstraint};
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#[derive(PartialEq)]
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pub(crate) enum IntrinsicSizingMode {
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/// Used to refer to a min-content contribution or max-content contribution.
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/// This is the size that a box contributes to its containing block’s min-content
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/// or max-content size. Note this is based on the outer size of the box,
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/// and takes into account the relevant sizing properties of the element.
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/// <https://drafts.csswg.org/css-sizing-3/#contributions>
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Contribution,
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/// Used to refer to a min-content size or max-content size.
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/// This is the size based on the contents of an element, without regard for its context.
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/// Note this is usually based on the inner (content-box) size of the box,
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/// and ignores the relevant sizing properties of the element.
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/// <https://drafts.csswg.org/css-sizing-3/#intrinsic>
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Size,
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}
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#[derive(Clone, Copy, Debug, Default, Serialize)]
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pub(crate) struct ContentSizes {
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pub min_content: Au,
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pub max_content: Au,
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}
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/// <https://drafts.csswg.org/css-sizing/#intrinsic-sizes>
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impl ContentSizes {
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pub fn max(&self, other: Self) -> Self {
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Self {
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min_content: self.min_content.max(other.min_content),
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max_content: self.max_content.max(other.max_content),
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}
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}
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pub fn max_assign(&mut self, other: Self) {
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*self = self.max(other);
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}
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pub fn union(&self, other: &Self) -> Self {
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Self {
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min_content: self.min_content.max(other.min_content),
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max_content: self.max_content + other.max_content,
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}
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}
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}
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impl Zero for ContentSizes {
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fn zero() -> Self {
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Au::zero().into()
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}
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fn is_zero(&self) -> bool {
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self.min_content.is_zero() && self.max_content.is_zero()
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}
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}
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impl Add for ContentSizes {
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type Output = Self;
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fn add(self, rhs: Self) -> Self {
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Self {
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min_content: self.min_content + rhs.min_content,
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max_content: self.max_content + rhs.max_content,
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}
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}
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}
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impl AddAssign for ContentSizes {
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fn add_assign(&mut self, rhs: Self) {
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*self = self.add(rhs)
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}
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}
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impl ContentSizes {
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/// Clamps the provided amount to be between the min-content and the max-content.
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/// This is called "shrink-to-fit" in CSS2, and "fit-content" in CSS Sizing.
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/// <https://drafts.csswg.org/css2/visudet.html#shrink-to-fit-float>
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/// <https://drafts.csswg.org/css-sizing/#funcdef-width-fit-content>
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pub fn shrink_to_fit(&self, available_size: Au) -> Au {
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// This formula is slightly different than what the spec says,
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// to ensure that the minimum wins for a malformed ContentSize
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// whose min_content is larger than its max_content.
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available_size.min(self.max_content).max(self.min_content)
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}
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}
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impl From<Au> for ContentSizes {
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fn from(size: Au) -> Self {
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Self {
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min_content: size,
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max_content: size,
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}
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}
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}
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pub(crate) fn outer_inline(
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style: &ComputedValues,
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containing_block: &IndefiniteContainingBlock,
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auto_minimum: &LogicalVec2<Au>,
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auto_block_size_stretches_to_containing_block: bool,
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get_preferred_aspect_ratio: impl FnOnce(&LogicalVec2<Au>) -> Option<AspectRatio>,
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get_content_size: impl FnOnce(&ConstraintSpace) -> InlineContentSizesResult,
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) -> InlineContentSizesResult {
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let ContentBoxSizesAndPBM {
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content_box_size,
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content_min_box_size,
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content_max_box_size,
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pbm,
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mut depends_on_block_constraints,
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} = style.content_box_sizes_and_padding_border_margin(containing_block);
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let margin = pbm.margin.map(|v| v.auto_is(Au::zero));
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let pbm_sums = LogicalVec2 {
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block: pbm.padding_border_sums.block + margin.block_sum(),
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inline: pbm.padding_border_sums.inline + margin.inline_sum(),
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};
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let content_size = LazyCell::new(|| {
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let available_block_size = containing_block
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.size
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.block
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.non_auto()
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.map(|v| Au::zero().max(v - pbm_sums.block));
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let preferred_block_size = if content_box_size.block.is_initial() &&
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auto_block_size_stretches_to_containing_block
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{
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depends_on_block_constraints = true;
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available_block_size
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} else {
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content_box_size
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.block
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.maybe_resolve_extrinsic(available_block_size)
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};
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let min_block_size = content_min_box_size
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.block
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.maybe_resolve_extrinsic(available_block_size)
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.unwrap_or(auto_minimum.block);
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let max_block_size = content_max_box_size
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.block
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.maybe_resolve_extrinsic(available_block_size);
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get_content_size(&ConstraintSpace::new(
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SizeConstraint::new(preferred_block_size, min_block_size, max_block_size),
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style.writing_mode,
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get_preferred_aspect_ratio(&pbm.padding_border_sums),
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))
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});
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let resolve_non_initial = |inline_size| {
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Some(match inline_size {
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Size::Initial => return None,
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Size::Numeric(numeric) => (numeric, numeric, false),
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Size::MinContent => (
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content_size.sizes.min_content,
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content_size.sizes.min_content,
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content_size.depends_on_block_constraints,
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),
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Size::MaxContent => (
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content_size.sizes.max_content,
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content_size.sizes.max_content,
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content_size.depends_on_block_constraints,
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),
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Size::Stretch | Size::FitContent => (
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content_size.sizes.min_content,
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content_size.sizes.max_content,
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content_size.depends_on_block_constraints,
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),
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})
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};
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let (preferred_min_content, preferred_max_content, preferred_depends_on_block_constraints) =
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resolve_non_initial(content_box_size.inline)
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.unwrap_or_else(|| resolve_non_initial(Size::FitContent).unwrap());
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let (min_min_content, min_max_content, min_depends_on_block_constraints) = resolve_non_initial(
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content_min_box_size.inline,
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)
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.unwrap_or((auto_minimum.inline, auto_minimum.inline, false));
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let (max_min_content, max_max_content, max_depends_on_block_constraints) =
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resolve_non_initial(content_max_box_size.inline)
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.map(|(min_content, max_content, depends_on_block_constraints)| {
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(
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Some(min_content),
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Some(max_content),
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depends_on_block_constraints,
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)
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})
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.unwrap_or_default();
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InlineContentSizesResult {
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sizes: ContentSizes {
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min_content: preferred_min_content
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.clamp_between_extremums(min_min_content, max_min_content) +
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pbm_sums.inline,
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max_content: preferred_max_content
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.clamp_between_extremums(min_max_content, max_max_content) +
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pbm_sums.inline,
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},
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depends_on_block_constraints: depends_on_block_constraints &&
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(preferred_depends_on_block_constraints ||
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min_depends_on_block_constraints ||
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max_depends_on_block_constraints),
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}
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}
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#[derive(Clone, Copy, Debug, Serialize)]
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pub(crate) struct InlineContentSizesResult {
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pub sizes: ContentSizes,
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pub depends_on_block_constraints: bool,
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}
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