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Author SHA1 Message Date
koka 078d3e6833 feat(shader): independent emissive cores and precision options in beta.131
Build Sanctuary / build (push) Canceled after 0s
2026-09-17 21:32:28 +02:00
koka afa77f3d62 docs: record beta.130 release and preserved Prism data
Build Sanctuary / build (push) Canceled after 0s
2026-09-17 21:06:31 +02:00
koka 534dfec4f8 feat(shader): selective bloom and shared precision in beta.130
Build Sanctuary / build (push) Canceled after 0s
2026-09-17 21:04:33 +02:00
koka 26e305d15f Record beta.129 publication and verified Prism synchronization
Build Sanctuary / build (push) Canceled after 0s
2026-09-17 19:13:09 +02:00
30 changed files with 1038 additions and 45 deletions
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@@ -20,13 +20,13 @@ La [vision complète](docs/vision.md) conserve les intentions ; le
L’économie, les claims et les dimensions décrits dans la vision restent
à implémenter.
La version **beta.129** ajoute les reflets CTM optionnels sur les contours du
relief, avec une portée indépendante de 16 à 256 blocs. Les surfaces plates
se raccordent entre tous les matériaux. Les ombres gagnent les portées
128/256, gardent leur intensité à midi et ne réalignent plus leur grille à
chaque mouvement du soleil. **Options → Shaders → Sanctuary · Vanilla Light**.
Le [ticket de livraison](docs/shader-beta129.md) précise le résultat et ses
vérifications. Publication et synchronisation en cours de préparation.
La version **beta.131** active par défaut le bloom, les minerais émissifs et
le highlight. Couper le bloom ou mettre son intensité à zéro conserve les
inclusions émissives sans halo. La précision commune ajoute 64 et 128 pixels
par bloc en options ; sa valeur initiale reste 16. Distances initiales :
ombres 128 blocs et highlight 32 blocs. **Options → Shaders → Sanctuary ·
Vanilla Light**. Les réglages personnalisés sont conservés.
Le [ticket de livraison](docs/shader-beta131.md) suit la validation et la distribution.
La [livraison précédente](docs/clay-workshop-integration-beta110.md) réunit déjà
latelier, les œufs et la neige saisonnière dans linstance **Sanctuary Beta**.
Les [synchronisations antérieures](docs/git-sync-beta092.md) restent documentées.
@@ -37,11 +37,27 @@ La [carte native beta.005](docs/atlas-beta005.md) prend le relais après
l’étude de Xaero et des alternatives libres.
## beta.131 — Émissifs indépendants et précision étendue
Bloom, émissifs et highlight activés initialement ; halo facultatif et cinq
précisions communes de 8 à 128 pixels/bloc.
[Contrat et vérifications](docs/shader-beta131.md).
## beta.130 — Bloom, minerais émissifs et précision commune
Halo réglable des sources lumineuses et inclusions des vingt textures de
minerais ; réglages par défaut 32/128/16 et ombres activées.
[Contrat et vérifications](docs/shader-beta130.md) ·
[Pack normal](https://git.botsu.net/koka/sanctuary-beta/releases/download/beta.130/Sanctuary-beta.130.mrpack) ·
[Pack de test](https://git.botsu.net/koka/sanctuary-beta/releases/download/beta.130/Sanctuary-Test-beta.130.mrpack).
## beta.129 — Reflets CTM et ombres jusqu'à 256 blocs
Reflets connectés réglables, cinq portées indépendantes, soleil plein à midi
et correction du réalignement cyclique de la grille d'ombres.
[Contrat et vérifications](docs/shader-beta129.md).
[Contrat et vérifications](docs/shader-beta129.md) ·
[Pack normal](https://git.botsu.net/koka/sanctuary-beta/releases/download/beta.129/Sanctuary-beta.129.mrpack) ·
[Pack de test](https://git.botsu.net/koka/sanctuary-beta/releases/download/beta.129/Sanctuary-Test-beta.129.mrpack).
## beta.128 — Ombres stables, lune et feuillage
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@@ -14,6 +14,30 @@ JAR Sanctuary sont des pièces jointes de releases Gitea. Aucun JAR de mod ou
dépendance téléchargée n'entre dans l'historique Git. Le canal Beta est distinct
de l'ancien pack 26.2.
## beta.130 — bloom et précision commune
Bloom réglable, masques sélectifs des vingt textures de minerais, précision
commune aux ombres et au highlight. Réglages initiaux 32/128/16 et Pixel Shadows
activé ; anciennes préférences conservées. [Contrat et vérifications](shader-beta130.md).
[Release beta.130](https://git.botsu.net/koka/sanctuary-beta/releases/tag/beta.130)
publiée ; canal `68e06353bf880af04c1c72d4e3a159f11f94b619`. Deux synchronisations isolées
puis deux dans la même instance **Sanctuary Beta** réussies. Les 923 fichiers
personnels suivis, réglages de shaders compris, gardent leurs hashes. Aucun
monde personnel ouvert ; sauvegarde préalable `sanctuary-backups/before-beta.130/`.
Packs normal/Test et template vérifiés et copiés dans `sanctuary-beta/build/`.
## beta.129 — reflets CTM et portées 16256 blocs
Reflets connectés entre tous les matériaux coplanaires, portée indépendante,
ombres à 128/256 blocs, intensité rétablie à midi et correction du réalignement
cyclique de la grille lumineuse. [Contrat et vérifications](shader-beta129.md).
[Release beta.129](https://git.botsu.net/koka/sanctuary-beta/releases/tag/beta.129)
publiée ; canal `2eaa0130a4cd475c598beefdab40f48fc8681ab7`. Deux synchronisations isolées
puis deux dans la même instance **Sanctuary Beta** réussies. Les 923 fichiers
personnels suivis, réglages de shaders compris, sont conservés. Aucun monde
personnel ouvert ; copie préalable dans `sanctuary-backups/before-beta.129/`.
Packs normal/Test et template copiés et vérifiés dans `sanctuary-beta/build/`.
## beta.128 — stabilité des ombres, lune et feuillage
Ombres des blocs nettes et stabilisées, atténuation à midi, lune légère et
+11 -1
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@@ -106,4 +106,14 @@ habituel `sanctuary-beta/build/` :
- JAR Sanctuary :
`ca3e2ff4e0717a3a54c1d57478d43aade39d001b71c4eec745d76f010f7def54`.
Publication et synchronisation à consigner après leur exécution.
[Release beta.129](https://git.botsu.net/koka/sanctuary-beta/releases/tag/beta.129)
publiée depuis `35103a7ea8635dc4ed26293f00e86d99aaacfca8`. Canal packwiz
`2eaa0130a4cd475c598beefdab40f48fc8681ab7`. Deux synchronisations isolées puis deux synchronisations
dans l'instance **Sanctuary Beta** ont réussi. Les **923 fichiers personnels**
suivis, dont les réglages de shader, sont inchangés. Aucun monde personnel ouvert.
Sauvegarde préalable des fichiers gérés : `sanctuary-backups/before-beta.129/`.
Le JAR installé a le hash vérifié ci-dessus. Reçus locaux :
`build/shader129-artifact.json`, `build/shader129-isolated.json` et
`build/shader129-prism.json`. Le checkout initial avec ses modifications en
cours a été préservé ; seule la copie des archives versionnées rejoint son
répertoire `build/`.
+131
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@@ -0,0 +1,131 @@
# SHADER-130 — bloom et précision commune
Demandes du 17 septembre 2026 : bloom réglable du soleil et des sources
lumineuses ; inclusions émissives du fer, cuivre, redstone, lapis, diamant,
émeraude, rubis, saphir, quartz et or ; réglage commun « Précision » pour
les ombres et le highlight. Branche `codex/bloom-beta130`, socle beta.129,
Minecraft 26.3 / Java 25.
## Résultat
Dans **Options → Shaders → Sanctuary · Vanilla Light**, le bloom possède
un interrupteur, une intensité et une diffusion réglables de 0 à 100.
Les minerais ont leur propre interrupteur et intensité. Le bloom reste
optionnel, désactivé initialement, avec une intensité préparée à 35, une
diffusion à 50 et une émission des minerais à 50. Une intensité globale
nulle arrête les passes et libère les ressources de cet effet.
Les nouveaux réglages par défaut sont **Pixel Shadows activé**, distance
des ombres **128 blocs**, highlight **32 blocs** et **Précision 16 pixels
par bloc**. La précision unique propose 8, 16 et 32 et contrôle simultanément
ombres et arêtes. La clé JSON historique `shadowPixels` est conservée :
les préférences déjà personnalisées ne sont pas écrasées.
Les vingt textures de minerais sont analysées depuis les ressources actives.
La palette de pierre, de deepslate ou de netherrack est comparée aux pixels
colorés des inclusions, avec un traitement du quartz et de l'or du Nether.
Les reflets clairs accolés aux inclusions sont conservés. Le masque est
calculé une fois par texture et conservé en cache jusqu'au rechargement des
ressources. Une texture optionnelle `<nom>_e.png` peut préciser ce masque
pour une texture candidate ; sa luminance maximale multipliée par l'alpha
remplace la détection automatique. Les couleurs affichées viennent toujours
de l'atlas Minecraft actif, y compris son animation.
Les sources sont les faces visibles des modèles de blocs lumineux, la lave,
le soleil et la lune. Les lampes éteintes ne produisent pas de halo. Le
niveau lumineux natif pondère les sources ordinaires ; l'émission des minerais
est purement graphique. La profondeur du terrain élimine les inclusions
cachées et masque le soleil derrière les constructions. Le cœur émissif
conserve ses pixels nets, tandis qu'un halo séparé est diffusé à résolution
réduite puis composé sur l'image.
Aucun niveau de lumière serveur, spawn, règle de jeu, format de sauvegarde,
identifiant ou paramètre de génération ne change. Aucun monde personnel
n'est ouvert pour les essais.
## Coût et limites
La géométrie suit uniquement les sections natives visibles et déjà chargées.
Leur palette permet d'écarter rapidement les sections sans source ; le cache
invalide les sections touchées lors des modifications. Construction répartie
sur les images, au plus quatre sections démarrées et un budget souple de
3 ms, cache GPU plafonné à 32 Mio et 16 384 faces par section. Une section
qui dépasse les limites est omise. Aucun chargement de chunk forcé.
Le masque GPU est plafonné à 256 textures, chacune échantillonnée au plus en
64 × 64 ; les textures natives 16 × 16 conservent leurs texels. Les masques
animés utilisent leur première image, tandis que la couleur reste animée.
La carte d'émission est à la résolution de l'écran ; la diffusion séparable
utilise deux cibles flottantes à 1/8 de largeur et de hauteur, sans retour
GPU vers CPU en production. Les allocations sont libérées à l'arrêt, au
rechargement et à la déconnexion, et recréées au changement de taille.
Cette première version ne reconstruit pas les sources hors écran, les
particules, les entités lumineuses ni les modèles dessinés exclusivement par
un renderer de block entity. Les packs très différents peuvent demander un
masque explicite. Les silhouettes des liquides sont approximées puis
masquées par la profondeur native. Aucune promesse de FPS ni validation
Windows/Vulkan ; les essais graphiques portent sur macOS / Apple M1 / OpenGL.
## Vérifications
Le test client ciblé réussit en **1 min 29 s**, dans un nouveau monde plat,
graine 122. Il analyse les vingt textures, refuse les pixels gris de leur
roche, mesure le gain nocturne et les variations réelles d'intensité/diffusion.
Couvrir les minerais de pierre supprime toute source émissive. Retirer les
blocs rétablit l'émission ; le rechargement des ressources fait de même.
Torche, glowstone, lampe alimentée, lave et soleil sont vérifiés, ainsi que
l'arrêt de la lampe et l'occultation du soleil par de la pierre. Les valeurs
par défaut et la conservation d'anciens choix personnalisés passent.
Log ciblé : `build/shader130-client-bloom.log` ; masques inspectables dans
`mods/sanctuary/build/run/clientGameTest/bloom130-ore-masks.png` et son CSV.
La suite shader complète réussit en **3 min 16 s** : casters hors écran,
retrait/repose, trois précisions, cinq portées, lune, zénith, feuillage,
realtime, caméra et rechargement restent vérifiés. Les arêtes CTM restent
raccordées entre matériaux ; 1 295 échantillons du contour sont éclaircis
à précision 8, 596 à 16 et 120 à 32. Les captures françaises/anglaises et
le rendu des minerais/du soleil sont inspectés.
Commandes natives : `./gradlew :sanctuary:runClientGameTest
-PsanctuaryClientTests=true -PsanctuaryPixelShadows122ClientTests=true
-PsanctuaryClientNoVsync=true -PsanctuaryQuickTests=true`. Le test ciblé utilise
`-PsanctuaryBloom130ClientTests=true` à la place de la propriété PixelShadows.
Log complet : `build/shader130-client-full.log` ; captures sous
`mods/sanctuary/build/run/clientGameTest/screenshots/`.
`./gradlew check build assemblePack assembleTestPack -x :sanctuary:runGameTest`
réussit en **2 min 24 s**, 126 tâches. Le serveur GameTest dédié reste exclu
conformément au refus antérieur de son EULA. La comparaison au binaire beta.129
trouve **24 entrées de production** modifiées, toutes limitées au shader et à
ses interfaces. Gameplay et textures des gemmes inchangés ; aucun test,
monde ou modèle GLB embarqué. Les sources archivées correspondent aux sources
Java, les packs normal/Test embarquent le même JAR et le template contient
exactement les ressources prévues.
Archives vérifiées dans `build/` et recopiées dans le dossier habituel
`sanctuary-beta/build/` :
- `Sanctuary-beta.130.mrpack` : 10386021 octets, SHA-256
`7a3fcd4e496fa136eb3e0896fa7b856ae91771123186fa8df13c8fb1e0cf3e9a`.
- `Sanctuary-Test-beta.130.mrpack` : 10404944 octets, SHA-256
`8de094fcbc58a300cc24d64c8d1b7931fdb8db354c75defa6bf2a2aa4a123a23`.
JAR : `1ac4d1b1339361fb665f03ca3bd359163db5037ffd90e684c5a461759f6076e7`.
[Release beta.130](https://git.botsu.net/koka/sanctuary-beta/releases/tag/beta.130)
publiée depuis `534dfec4f88169a200702b50d1ba87d85c107bee`. Canal packwiz
`68e06353bf880af04c1c72d4e3a159f11f94b619`. Les téléchargements publics sont vérifiés par SHA-256.
Deux synchronisations isolées, puis deux dans la même instance **Sanctuary
Beta**, réussissent. Un seul JAR Sanctuary beta.130 est actif. Les
**923 fichiers personnels suivis** conservent leurs hashes, dont les mondes,
packs et préférences de shaders. Sauvegarde préalable dans
`sanctuary-backups/before-beta.130/` de l'instance. Aucun monde personnel ouvert.
Reçus locaux ignorés : `build/shader130-artifact.json`,
`build/shader130-isolated.json`, `build/shader130-prism.json` et
`build/shader130-publication.log`. Le checkout original conserve ses
modifications préexistantes ; seuls les trois artefacts versionnés vérifiés
sont recopiés dans son dossier `build/`.
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@@ -0,0 +1,83 @@
# SHADER-131 — émissifs indépendants et réglages initiaux
Demande : activer par défaut bloom, minerais émissifs et highlight ; garder
les émissifs avec halo coupé ou intensité du bloom à zéro, sans bouton ajouté ;
ajouter 64 et 128 pixels/bloc en options. Précision initiale 16, distances
highlight 32 et ombres 128 conservées. Préférences personnalisées préservées.
Branche `codex/emissive-beta131`, socle beta.130, Minecraft 26.3 / Java 25.
Le futur effet demandé est une légère teinte diffusée depuis les blocs
voisins, pas des reflets reconnaissables. Étude seulement pour ce ticket ;
aucun SSR ou éclairage indirect expérimental activé.
## Comportement et validation
Le curseur à zéro et l'interrupteur Bloom coupent uniquement le halo.
Le réglage existant des minerais contrôle leurs inclusions nettes séparément.
Sans halo, les cibles de diffusion GPU sont libérées ; l'émission garde
seulement les ressources nécessaires. Tout désactiver libère l'ensemble.
La grille commune propose 8, 16, 32, 64 et 128, sans augmenter le plafond
4096 de la carte d'ombres. Libellés FR/EN et essais clients natifs sur les
inclusions, l'absence de halo, les transitions et les nouvelles précisions.
Aucun changement de lumière serveur, de génération ou de sauvegardes.
Le cœur émissif et le halo utilisent maintenant deux chemins indépendants.
Les textures et leur analyse restent celles de beta.130. Avec le halo coupé,
la carte d'émission est effacée avant les faces, le cœur net est composé,
et les passes de ciel, réduction, diffusion et application du halo sont
omises. Le retour au bloom recrée ses cibles. Aucun bouton ajouté, aides
FR/EN adaptées et choix explicitement désactivés toujours conservés.
## Vérifications
Suite client native réussie en **3 min 46 s**, monde plat neuf de graine 122,
macOS / Apple M1 / OpenGL. Cinq précisions sauvegardées et chargées, bornes
et seuils de normalisation, carte d'ombres plafonnée et arêtes CTM rendues
à 64/128. Le gain mesuré des traits diminue de 0,02778 à précision 32 à
0,02094 à 64, puis 0,01013 à 128 dans la même scène.
Les inclusions restent nettes sans halo : le rendu Bloom OFF correspond
au rendu intensité zéro. Aucun gain mesuré hors du masque source, ressources
de diffusion absentes ; couper aussi les émissifs libère l'ensemble et
restitue l'image initiale. Réactiver le bloom restitue son image précédente.
Captures OFF/zéro inspectées. Valeurs initiales ON vérifiées ; un ancien
choix explicitement OFF reste OFF. Les essais beta.130 (vingt masques,
occultation, sources, rechargement), lune, feuillage et realtime passent.
Le premier essai rencontrait une assertion historique attendant le highlight
OFF lorsqu'une clé était absente. Elle attend désormais la nouvelle valeur
ON ; les cas de préférences explicitement désactivées restent testés.
Commande : `./gradlew :sanctuary:runClientGameTest -PsanctuaryClientTests=true
-PsanctuaryPixelShadows122ClientTests=true -PsanctuaryClientNoVsync=true
-PsanctuaryQuickTests=true`. Log : `build/shader131-client-full.log` ; captures
sous `mods/sanctuary/build/run/clientGameTest/screenshots/`.
`./gradlew check build assemblePack assembleTestPack -x :sanctuary:runGameTest`
réussit en **2 min 30 s**, 126 tâches. Les archives normal/Test, leurs sources
et le template sont vérifiés. Six entrées de production changent : moteur
Bloom, préférences, interface et libellés. Gameplay, shaders GLSL et textures
restent identiques à beta.130. Aucun résultat Windows/Vulkan
revendiqué ; le serveur GameTest dédié reste exclu conformément au refus
antérieur de son EULA.
## Piste suivante — diffusion des couleurs
Choix confirmé : légère teinte des surfaces voisines. Une estimation SSGI
utilise la couleur et la profondeur visibles pour des rebonds diffus ; voir
la [documentation primaire Unity](https://docs.unity3d.com/Packages/com.unity.render-pipelines.high-definition@17.0/manual/Override-Screen-Space-GI.html).
Proposition à expérimenter : faible intensité, courte portée autour des
surfaces, calcul réduit, rejet par profondeur pour ne pas teinter au travers
des murs. Vérifier les bords de l'écran, les blocs hors champ, la stabilité
en mouvement et les textures avant de fixer une qualité. Cette piste n'est
pas implémentée dans beta.131.
## Livraison
- `Sanctuary-beta.131.mrpack` : 10386312 octets ; SHA-256 `e02067e424bf4f54512d5cfb1b5cde0fe232aa6bdadc0d38981cd15817a6387a`.
- `Sanctuary-Test-beta.131.mrpack` : 10405238 octets ; SHA-256 `298387cce5a5b7cdc09b3a9d24859b674a736b25abcbafa7995b813757641265`.
JAR : `87210da23f7781efccdbdbf5d4e2d3c1ff1857a7f326027b93d6a301c7dfdb0d`.
Archives vérifiées recopiées dans `sanctuary-beta/build/`. Publication puis
synchronisation de la même instance après le commit source.
+2 -2
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@@ -9,8 +9,8 @@ loom_version=1.17.20
fabric_api_version=0.160.5+26.3
# Release counter: beta.001, .002, .003, ... (see docs/versioning.md).
mod_version=beta.129
pack_version=beta.129
mod_version=beta.131
pack_version=beta.131
resource_pack_version=beta.121
maven_group=fr.koka.sanctuary
jei_version=30.32.0-sanctuary.3
+4
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@@ -93,6 +93,10 @@ tasks.named('runGameTest') {
}
tasks.named('processGametestResources') {
def bloom130Client = providers.gradleProperty('sanctuaryBloom130ClientTests').map { it.toBoolean() }.getOrElse(false)
inputs.property('sanctuaryBloom130ClientTests', bloom130Client)
if (bloom130Client) filter { line -> line.replace('fr.koka.sanctuary.gametest.SanctuaryClientRenderTests', 'fr.koka.sanctuary.client.shader.Bloom130ClientChecks') }
def shadows122Client = providers.gradleProperty('sanctuaryPixelShadows122ClientTests').map { it.toBoolean() }.getOrElse(false)
inputs.property('sanctuaryPixelShadows122ClientTests', shadows122Client)
if (shadows122Client) filter { line -> line.replace('fr.koka.sanctuary.gametest.SanctuaryClientRenderTests', 'fr.koka.sanctuary.client.shader.PixelShadows122ClientChecks') }
@@ -0,0 +1,139 @@
package fr.koka.sanctuary.client.shader;
import static fr.koka.sanctuary.client.shader.PixelShadows122ClientChecks.*;
import com.mojang.blaze3d.platform.NativeImage;
import java.nio.file.*;
import java.util.*;
import java.util.concurrent.CompletableFuture;
import net.fabricmc.fabric.api.client.gametest.v1.FabricClientGameTest;
import net.fabricmc.fabric.api.client.gametest.v1.context.ClientGameTestContext;
import net.fabricmc.fabric.api.client.gametest.v1.context.TestServerContext;
import net.fabricmc.loader.api.FabricLoader;
import net.minecraft.client.Screenshot;
import net.minecraft.core.BlockPos;
import net.minecraft.core.registries.BuiltInRegistries;
import net.minecraft.resources.Identifier;
import net.minecraft.world.level.block.Blocks;
/** Actual source texels, native GPU masks, occlusion and user controls in an isolated world. */
public final class Bloom130ClientChecks implements FabricClientGameTest {
public void runTest(ClientGameTestContext c){new PixelShadows122ClientChecks(true).runTest(c);}
static final List<String> ORES=ores();
private static List<String> ores(){var result=new ArrayList<String>();for(String name:List.of("iron","copper","redstone","lapis","diamond","emerald","ruby","sapphire","gold")){
String ns=name.equals("ruby")||name.equals("sapphire")?"sanctuary:":"minecraft:";result.add(ns+name+"_ore");result.add(ns+"deepslate_"+name+"_ore");}
result.add("minecraft:nether_quartz_ore");result.add("minecraft:nether_gold_ore");return List.copyOf(result);}
static void run(ClientGameTestContext c,TestServerContext server){
c.runOnClient(m->{preferences();analyseTextures();VanillaLight.setSaturation(100);VanillaLight.setPixelShadows(false);VanillaLight.setEdgeHighlights(false);VanillaLight.setBloom(false);VanillaLight.setOreEmission(false);});
server.runOnServer(s->{command(s,"time set 18000");
for(int x=4;x<=20;x++)for(int z=4;z<=20;z++){
s.overworld().setBlockAndUpdate(new BlockPos(x,64,z),Blocks.CONCRETE.black().defaultBlockState());
for(int y=65;y<=70;y++)s.overworld().setBlockAndUpdate(new BlockPos(x,y,z),Blocks.AIR.defaultBlockState());
}
for(int i=0;i<ORES.size();i++){var state=BuiltInRegistries.BLOCK.getValue(Identifier.parse(ORES.get(i))).defaultBlockState();check(state.getLightEmission()==0,"Ores do not acquire server-side light: "+ORES.get(i));s.overworld().setBlockAndUpdate(orePos(i),state);}
s.overworld().setBlockAndUpdate(new BlockPos(14,65,9),Blocks.REDSTONE_LAMP.defaultBlockState());
});
camera(c,server,10.5,71,9.5,60);c.waitTicks(40);c.waitFor(m->m.levelRenderer.hasRenderedAllSections(),1200);
var off=capture(c,"bloom-ores-off");
c.runOnClient(m->{VanillaLight.setOreEmission(false);VanillaLight.setBloom(true);});frames(c);
check(luminous(emission(c))==0,"White/grey rock, ordinary surfaces and unlit lamps do not seed bloom");
unchanged(off,capture(c,"bloom-ores-disabled"),"Disabling ore emission leaves the original scene intact");
c.runOnClient(m->{VanillaLight.setOreEmission(true);VanillaLight.setOreIntensity(100);});frames(c);
var source=emission(c);int orePixels=luminous(source);check(orePixels>100,"Actual exposed ore inclusions enter the GPU mask: "+orePixels);
var on=capture(c,"bloom-ores-on");double oreGain=gain(off,on,null);check(oreGain>1000,"Ores visibly glow in the native night scene: "+oreGain);
c.runOnClient(m->VanillaLight.setBloom(false));frames(c);
var coreOnly=capture(c,"emissive-bloom-off");
check(gain(off,coreOnly,null)>1000,"Emissive cores survive bloom OFF");
check(gain(off,coreOnly,source)<1,"No halo outside source texels with bloom OFF");
c.runOnClient(m->check(!Bloom.haloAllocated(),"Bloom OFF frees blur targets and uniforms"));
c.runOnClient(m->{VanillaLight.setBloom(true);VanillaLight.setBloomIntensity(0);});frames(c);
unchanged(coreOnly,capture(c,"emissive-bloom-zero"),"Zero bloom matches OFF while retaining emissive cores");
c.runOnClient(m->check(!Bloom.haloAllocated(),"Zero bloom frees blur resources"));
c.runOnClient(m->VanillaLight.setOreEmission(false));c.waitTicks(8);
c.runOnClient(m->check(!Bloom.allocated()&&!Bloom.applied(),"Zero halo and disabled cores release everything"));
unchanged(off,capture(c,null),"Disabling both restores the original scene");
c.runOnClient(m->{VanillaLight.setOreEmission(true);VanillaLight.setBloomIntensity(35);});frames(c);
unchanged(on,capture(c,null),"Re-enabling bloom restores its original image");
c.runOnClient(m->VanillaLight.setBloomIntensity(10));frames(c);double low=gain(off,capture(c,null),source);
c.runOnClient(m->VanillaLight.setBloomIntensity(90));frames(c);double high=gain(off,capture(c,"bloom-strength-90"),source);
check(high>Math.max(30,low*2),"Bloom strength changes the halo outside source pixels: low="+low+" high="+high);
c.runOnClient(m->VanillaLight.setBloomRadius(0));frames(c);var tight=capture(c,"bloom-spread-0");
c.runOnClient(m->VanillaLight.setBloomRadius(100));frames(c);var wide=capture(c,"bloom-spread-100");
check(difference(tight,wide)>100,"Spread changes the real GPU halo");
c.runOnClient(m->VanillaLight.setOreIntensity(0));frames(c);check(luminous(emission(c))==0,"Zero ore strength suppresses both cores and halos");
unchanged(off,capture(c,null),"Zero ore strength restores the source image");
c.runOnClient(m->{VanillaLight.setOreIntensity(100);VanillaLight.setBloomIntensity(35);VanillaLight.setBloomRadius(50);});frames(c);
server.runOnServer(s->{for(int i=0;i<ORES.size();i++)s.overworld().setBlockAndUpdate(orePos(i).above(),Blocks.STONE.defaultBlockState());});c.waitTicks(25);frames(c);
check(luminous(emission(c))==0,"Covering veins with stone removes all emission: no through-wall ore glow");
capture(c,"bloom-covered-ores");
server.runOnServer(s->{for(int i=0;i<ORES.size();i++)s.overworld().setBlockAndUpdate(orePos(i).above(),Blocks.AIR.defaultBlockState());});c.waitTicks(25);frames(c);
check(luminous(emission(c))>100,"Removing covers reveals the genuine visible inclusion masks again");
var reload=c.computeOnClient(net.minecraft.client.Minecraft::reloadResourcePacks);c.waitFor(m->reload.isDone()&&m.gui.overlay()==null,1200);reload.join();frames(c);
check(luminous(emission(c))>100,"Resource reload rebuilds emitter meshes and masks");
c.runOnClient(m->VanillaLight.setOreEmission(false));
server.runOnServer(s->s.overworld().setBlockAndUpdate(new BlockPos(14,65,9),Blocks.TORCH.defaultBlockState()));c.waitTicks(25);frames(c);
int torch=luminous(emission(c));check(torch>3,"A native torch seeds bloom: "+torch);capture(c,"bloom-torch");
server.runOnServer(s->s.overworld().setBlockAndUpdate(new BlockPos(14,65,9),Blocks.GLOWSTONE.defaultBlockState()));c.waitTicks(25);frames(c);
check(luminous(emission(c))>torch,"A full luminous block contributes its real textured surface");capture(c,"bloom-glowstone");
server.runOnServer(s->s.overworld().setBlockAndUpdate(new BlockPos(14,65,9),Blocks.STONE.defaultBlockState()));c.waitTicks(25);frames(c);
check(luminous(emission(c))==0,"Replacing the light source removes its cached emission");
server.runOnServer(s->{s.overworld().setBlockAndUpdate(new BlockPos(14,65,9),Blocks.REDSTONE_LAMP.defaultBlockState());s.overworld().setBlockAndUpdate(new BlockPos(14,64,9),Blocks.REDSTONE_BLOCK.defaultBlockState());});
c.waitTicks(25);frames(c);check(luminous(emission(c))>10,"Powered lamp emits through its on-state texture");capture(c,"bloom-lamp-on");
server.runOnServer(s->s.overworld().setBlockAndUpdate(new BlockPos(14,64,9),Blocks.CONCRETE.black().defaultBlockState()));
c.waitTicks(25);frames(c);check(luminous(emission(c))==0,"Unpowered lamp loses its glow after its native state update");
server.runOnServer(s->s.overworld().setBlockAndUpdate(new BlockPos(14,65,9),Blocks.LAVA.defaultBlockState()));
c.waitTicks(25);frames(c);check(luminous(emission(c))>10,"Native visible lava seeds bloom");capture(c,"bloom-lava");
server.runOnServer(s->command(s,"time set 3000"));camera(c,server,10.5,90,9.5,70);
var direction=c.computeOnClient(m->PixelShadows.sunDirection(m.gameRenderer.gameRenderState().levelRenderState.skyRenderState.sunAngle));
look(c,server,(float)Math.toDegrees(Math.atan2(-direction.x,direction.z)),-(float)Math.toDegrees(Math.asin(direction.y)));
c.runOnClient(m->VanillaLight.setBloom(false));c.waitTicks(8);var sunOff=capture(c,"bloom-sun-off");
c.runOnClient(m->VanillaLight.setBloom(true));frames(c);var sunMask=emission(c);
check(luminous(sunMask)>40,"The actual sun disc seeds bloom");
double sunlight=gain(sunOff,capture(c,"bloom-sun-on"),sunMask);check(sunlight>100,"Sun halo extends beyond its source disc: "+sunlight);
server.runOnServer(s->{var eye=s.getPlayerList().getPlayers().getFirst().getEyePosition();var center=BlockPos.containing(eye.x+direction.x*8,eye.y+direction.y*8,eye.z+direction.z*8);
for(int x=-4;x<=4;x++)for(int y=-4;y<=4;y++)for(int z=-4;z<=4;z++)s.overworld().setBlockAndUpdate(center.offset(x,y,z),Blocks.STONE.defaultBlockState());});
c.waitTicks(30);frames(c);check(luminous(emission(c))==0,"Solid terrain in front of the sun suppresses its bloom source");capture(c,"bloom-sun-occluded");
c.runOnClient(m->VanillaLight.setBloom(false));c.waitTicks(6);var coveredOff=capture(c,null);
c.runOnClient(m->{VanillaLight.setBloom(true);VanillaLight.setBloomIntensity(0);});c.waitTicks(6);c.runOnClient(m->check(!Bloom.applied()&&!Bloom.allocated(),"Zero bloom releases GPU resources"));
unchanged(coveredOff,capture(c,null),"Zero bloom leaves no residual glow");
c.runOnClient(m->{VanillaLight.setBloomIntensity(35);VanillaLight.setBloom(false);VanillaLight.setOreEmission(true);VanillaLight.setOreIntensity(50);});
System.out.println("EMISSIVE131_PASS independent cores with halo OFF/zero; blur resources released; defaults; masks for 20 ore textures; selective night glow; halo intensity/spread; no through-wall glow; live edits; torch/glowstone/lamp/lava/sun; resource reload; defaults/migration; orePixels="+orePixels+" oreGain="+oreGain+" haloLow="+low+" haloHigh="+high+" sunHalo="+sunlight);
}
private static BlockPos orePos(int i){return new BlockPos(8+i%5,65,8+i/5);}
private static void preferences(){try{
var path=FabricLoader.getInstance().getConfigDir().resolve("sanctuary-shaders.json");Files.deleteIfExists(path);forgetPreferences();
check(VanillaLight.pixelShadows()&&VanillaLight.shadowDistance()==128&&VanillaLight.shadowPixels()==16&&VanillaLight.edgeDistance()==32,"Fresh requested defaults: shadows ON, 128; highlights 32; shared precision 16");
check(VanillaLight.bloom()&&VanillaLight.oreEmission()&&VanillaLight.edgeHighlights()&&VanillaLight.bloomIntensity()==35&&VanillaLight.bloomRadius()==50,"Bloom, ore emission and edge highlights default to ON");
Files.writeString(path,"{\"bloom\":false,\"oreEmission\":false,\"edgeHighlights\":false,\"pixelShadows\":false,\"shadowDistance\":64,\"shadowPixels\":8,\"edgeDistance\":16}");forgetPreferences();
check(!VanillaLight.bloom()&&!VanillaLight.oreEmission()&&!VanillaLight.edgeHighlights()&&!VanillaLight.pixelShadows()&&VanillaLight.shadowDistance()==64&&VanillaLight.shadowPixels()==8&&VanillaLight.edgeDistance()==16,"Existing user choices are retained");
for(int n:new int[]{-10,0,35,100,400}){VanillaLight.setBloomIntensity(n);VanillaLight.setBloomRadius(n);VanillaLight.setOreIntensity(n);forgetPreferences();check(VanillaLight.bloomIntensity()==Math.clamp(n,0,100)&&VanillaLight.bloomRadius()==Math.clamp(n,0,100)&&VanillaLight.oreIntensity()==Math.clamp(n,0,100),"Persisted bloom controls are bounded");}
VanillaLight.setBloomIntensity(35);VanillaLight.setBloomRadius(50);VanillaLight.setOreIntensity(50);VanillaLight.setShadowPixels(16);
}catch(java.io.IOException e){throw new AssertionError(e);}}
private static void analyseTextures(){
var report=new StringBuilder("texture,selected,total,neutral_rock_selected\n");
try(var materials=new BloomMaterials();var sheet=new NativeImage(5*16*6,4*32*6,false)){
sheet.fillRect(0,0,sheet.getWidth(),sheet.getHeight(),0xFF16191E);
for(int index=0;index<ORES.size();index++){
var block=Identifier.parse(ORES.get(index));var id=block.withPath("block/"+block.getPath());
try(var image=BloomMaterials.read(id)){
int w=image.getWidth(),h=image.getHeight();int[] pixels=new int[w*h];for(int y=0;y<h;y++)for(int x=0;x<w;x++)pixels[y*w+x]=image.getPixel(x,y);
var mask=materials.mask(id,pixels,w,h,true,false);int count=0,grey=0;
for(int i=0;i<mask.length;i++){if(mask[i]>0){count++;int c=pixels[i],r=c>>16&255,g=c>>8&255,b=c&255;if(r==g&&g==b&&r<215)grey++;}}
check(count>=4&&count<w*h*.7,"Texture has a selective inclusion mask: "+id+" "+count+"/"+mask.length);
if(!id.getPath().contains("quartz"))check(grey==0,"Neutral host rock never emits: "+id);
report.append(id).append(',').append(count).append(',').append(mask.length).append(',').append(grey).append('\n');
for(int y=0;y<32*6;y++)for(int x=0;x<16*6;x++){
int source=(y/6%16)*w/16*w+(x/6)*w/16;int color=pixels[source];if(y>=16*6&&mask[source]==0)color=0xFF16191E;
sheet.setPixel((index%5)*16*6+x,(index/5)*32*6+y,color);
}
}
}
var root=FabricLoader.getInstance().getGameDir();sheet.writeToFile(root.resolve("bloom130-ore-masks.png"));Files.writeString(root.resolve("bloom130-ore-masks.csv"),report.toString());
System.out.println("BLOOM130_MASKS\n"+report);
}catch(java.io.IOException e){throw new AssertionError(e);}
}
private static void frames(ClientGameTestContext c){int before=c.computeOnClient(m->Bloom.renderedFrames());c.waitFor(m->Bloom.applied()&&Bloom.ready()&&Bloom.renderedFrames()>before+10,1200);c.waitTicks(8);}
private static Frame emission(ClientGameTestContext c){var result=new CompletableFuture<Frame>();c.runOnClient(m->Screenshot.takeScreenshot(Bloom.emissionTarget(),image->{try(image){result.complete(new Frame(image.getWidth(),image.getHeight(),image.getPixels()));}}));c.waitFor(m->result.isDone(),200);return result.join();}
private static int luminous(Frame frame){int count=0;for(int color:frame.pixels())if((color&0xFFFFFF)!=0)count++;return count;}
private static double gain(Frame off,Frame on,Frame source){double result=0;for(int i=0;i<off.pixels().length;i++)if(source==null||(source.pixels()[i]&0xFFFFFF)==0)result+=Math.max(0,brightness(on.pixels()[i])-brightness(off.pixels()[i]));return result;}
private static int difference(Frame a,Frame b){int n=0;for(int i=0;i<a.pixels().length;i++)if(channelDifference(a.pixels()[i],b.pixels()[i])>3)n++;return n;}
}
@@ -35,6 +35,19 @@ final class EdgeHighlights129ClientChecks {
check(low.brighter>100 && low.stable>low.samples*.55 && low.darker<low.samples*.005,
"Highlight brightens local strips, preserves face interiors: "+low);
grid(c,off,on);
c.runOnClient(m -> VanillaLight.setShadowPixels(8));frames(c);
var coarse=measure(off,capture(c,"edges-shared-precision-8"));
c.runOnClient(m -> VanillaLight.setShadowPixels(32));frames(c);
var fine=measure(off,capture(c,"edges-shared-precision-32"));
check(coarse.brighter()>low.brighter()*1.4 && fine.brighter()<low.brighter()*.8,
"One precision setting controls the visible highlight width: coarse="+coarse+" middle="+low+" fine="+fine);
for(int pixels:new int[]{64,128}){
c.runOnClient(m -> VanillaLight.setShadowPixels(pixels));frames(c);
var finer=measure(off,capture(c,"edges-shared-precision-"+pixels));
check(finer.meanGain()<fine.meanGain() && finer.darker()==0,"High precision refines CTM without darkening: "+pixels+" "+finer);
}
c.runOnClient(m -> VanillaLight.setShadowPixels(16));frames(c);
for (int distance : new int[]{16,32,64,128,256}) {
c.runOnClient(m -> VanillaLight.setEdgeDistance(distance));
frames(c);
@@ -131,7 +144,7 @@ final class EdgeHighlights129ClientChecks {
// Real prior-version JSON, without either new field. Preserve its existing settings.
Files.writeString(path,"{\"enabled\":true,\"saturation\":100,\"pixelShadows\":true,\"shadowPixels\":16,\"shadowDistance\":32}");
forgetPreferences();
check(!VanillaLight.edgeHighlights() && VanillaLight.edgeIntensity()==30 && VanillaLight.edgeDistance()==32,"Old configuration defaults highlights OFF at intensity 30");
check(VanillaLight.edgeHighlights() && VanillaLight.edgeIntensity()==30 && VanillaLight.edgeDistance()==32,"Missing preference uses the new highlight ON default at intensity 30");
check(VanillaLight.pixelShadows() && VanillaLight.saturation()==100,"Migration retains existing shader choices");
for(int value:new int[]{-100,0,30,100,1000}) {
VanillaLight.setEdgeIntensity(value);forgetPreferences();
@@ -146,6 +159,7 @@ final class EdgeHighlights129ClientChecks {
VanillaLight.setEdgeHighlights(true);forgetPreferences();
check(VanillaLight.edgeHighlights(),"Toggle persists independently");
VanillaLight.setEdgeHighlights(false);
VanillaLight.setBloom(false);VanillaLight.setOreEmission(false);
} catch(java.io.IOException e) { throw new AssertionError(e); }
}
@@ -36,6 +36,9 @@ import net.minecraft.world.phys.Vec3;
/** Real terrain/depth-map checks on a new flat seed 122 world; GPU readback is test-only. */
public final class PixelShadows122ClientChecks implements FabricClientGameTest {
private final boolean bloomOnly;
public PixelShadows122ClientChecks(){this(false);}
PixelShadows122ClientChecks(boolean bloomOnly){this.bloomOnly=bloomOnly;}
private static final int FLOOR = 64;
private static final AABB PILLAR = new AABB(0, FLOOR + 1, 0, 2, FLOOR + 9, 2);
private static final BlockPos SLAB = new BlockPos(5, FLOOR + 3, -5);
@@ -130,6 +133,7 @@ public final class PixelShadows122ClientChecks implements FabricClientGameTest {
c.runOnClient(m -> check(VanillaLight.active(), "Native Sanctuary shader is active without an external engine"));
float morning = c.computeOnClient(m -> m.gameRenderer.gameRenderState().levelRenderState.skyRenderState.sunAngle);
if(bloomOnly){Bloom130ClientChecks.run(c,server);return;}
// Keep VanillaLight enabled for both frames: changing its fog/grade would invalidate this oracle.
shadows(c, false);
var off = capture(c, "day-off");
@@ -145,7 +149,7 @@ public final class PixelShadows122ClientChecks implements FabricClientGameTest {
check(PixelShadows.shadowMap() != null, "Daylight allocates a real shadow target");
check(PixelShadows.shadowMap().width == PixelShadows.mapSize(32, 16), "Shadow map follows selected quality");
});
for (int pixels : new int[]{8, 32, 16}) {
for (int pixels : new int[]{8, 32, 64, 128, 16}) {
c.runOnClient(m -> VanillaLight.setShadowPixels(pixels));
activeFrames(c);
c.runOnClient(m -> check(PixelShadows.shadowMap().width == PixelShadows.mapSize(32, pixels),
@@ -236,12 +240,13 @@ public final class PixelShadows122ClientChecks implements FabricClientGameTest {
unchanged(beforeReload, capture(c, "after-reload"), "Resource reload preserves the rendered ground shadow");
RealtimeShadows129ClientChecks.run(c, server);
EdgeHighlights129ClientChecks.run(c, server);
Bloom130ClientChecks.run(c, server);
c.getInput().pressKey(InputConstants.KEY_F1);
for (String locale : new String[]{"fr_fr", "en_us"}) {
c.runOnClient(m -> {
m.getLanguageManager().setSelected(locale);
m.getLanguageManager().onResourceManagerReload(m.getResourceManager());
for (String key : new String[]{"pixel_shadows", "shadow_pixels", "shadow_distance", "edge_highlights", "edge_intensity", "edge_distance"}) {
for (String key : new String[]{"pixel_shadows", "shadow_pixels", "shadow_distance", "edge_highlights", "edge_intensity", "edge_distance", "precision", "bloom", "bloom_radius", "ore_emission"}) {
String fullKey = "sanctuary.shaders." + key;
check(!Component.translatable(fullKey).getString().equals(fullKey), "Translated " + locale + " " + key);
}
@@ -253,7 +258,7 @@ public final class PixelShadows122ClientChecks implements FabricClientGameTest {
});
});
c.waitTicks(3);
c.takeScreenshot("sanctuary-beta129-shadows-options-" + locale);
c.takeScreenshot("sanctuary-beta131-shader-options-" + locale);
}
c.runOnClient(m -> m.gui.setScreen(null));
}
@@ -418,10 +423,12 @@ public final class PixelShadows122ClientChecks implements FabricClientGameTest {
}
private static void checkPreferences() {
VanillaLight.setBloom(false);
VanillaLight.setOreEmission(false);
VanillaLight.setEnabled(true);
VanillaLight.setEdgeHighlights(false);
VanillaLight.setSaturation(100);
for (int[] pair : new int[][]{{Integer.MIN_VALUE, 8}, {11, 8}, {12, 16}, {16, 16}, {23, 16}, {24, 32}, {Integer.MAX_VALUE, 32}}) {
for (int[] pair : new int[][]{{Integer.MIN_VALUE, 8}, {11, 8}, {12, 16}, {16, 16}, {23, 16}, {24, 32}, {47,32}, {48,64}, {64,64}, {95,64}, {96,128}, {128,128}, {Integer.MAX_VALUE,128}}) {
VanillaLight.setShadowPixels(pair[0]);
forgetPreferences();
check(VanillaLight.shadowPixels() == pair[1], "Persisted pixel density rounds/clamps " + pair[0]);
@@ -517,7 +524,7 @@ public final class PixelShadows122ClientChecks implements FabricClientGameTest {
}
static Frame capture(ClientGameTestContext c, String name) {
if (name != null) c.takeScreenshot("sanctuary-beta129-shadows-" + name);
if (name != null) c.takeScreenshot("sanctuary-beta131-shader-" + name);
var result = new CompletableFuture<Frame>();
c.runOnClient(m -> Screenshot.takeScreenshot(m.gameRenderer.mainRenderTarget(), image -> {
try (image) {
@@ -0,0 +1,140 @@
package fr.koka.sanctuary.client.shader;
import com.mojang.blaze3d.buffers.Std140Builder;
import com.mojang.blaze3d.pipeline.TextureTarget;
import com.mojang.blaze3d.systems.RenderSystem;
import com.mojang.renderpearl.api.GpuFormat;
import com.mojang.renderpearl.api.buffers.GpuBuffer;
import com.mojang.renderpearl.api.buffers.GpuBufferSlice;
import com.mojang.renderpearl.api.pipeline.*;
import com.mojang.renderpearl.api.textures.FilterMode;
import com.mojang.renderpearl.api.textures.GpuTextureView;
import fr.koka.sanctuary.client.panorama.PanoramaCapture;
import java.util.*;
import net.minecraft.client.Minecraft;
import net.minecraft.client.renderer.BindGroupLayouts;
import net.minecraft.client.renderer.MappableRingBuffer;
import net.minecraft.client.renderer.RenderPipelines;
import net.minecraft.client.renderer.texture.TextureAtlas;
import net.minecraft.core.BlockPos;
import net.minecraft.resources.Identifier;
import net.minecraft.world.level.dimension.DimensionType;
import net.minecraft.world.level.material.FogType;
import org.joml.Matrix4f;
import org.joml.Vector3f;
import org.joml.Vector4f;
/** Selective emissive bloom. No brightness threshold on ordinary world blocks, no scene-copy or readback. */
public final class Bloom {
private static Identifier id(String path){return Identifier.parse("sanctuary:"+path);}
private static final BindGroupLayout SCENE=BindGroupLayout.builder().withUniform("BloomScene",UniformType.UNIFORM_BUFFER)
.withUniform("WorldDepth",UniformType.COMBINED_IMAGE_SAMPLER).build();
private static final RenderPipeline EMITTERS=RenderPipelines.register(RenderPipeline.builder()
.withLocation(id("pipeline/bloom_emitters")).withVertexShader(id("core/bloom_emitters")).withFragmentShader(id("core/bloom_emitters"))
.withBindGroupLayout(BindGroupLayouts.DYNAMIC_TRANSFORMS).withBindGroupLayout(SCENE)
.withBindGroupLayout(BindGroupLayout.builder().withUniform("BlockAtlas",UniformType.COMBINED_IMAGE_SAMPLER).withUniform("EmissionMasks",UniformType.COMBINED_IMAGE_SAMPLER).build())
.withVertexBinding(0,BloomTerrain.FORMAT).withPrimitiveTopology(PrimitiveTopology.QUADS).withCull(false)
.withColorTargetState(new ColorTargetState(Optional.empty(),GpuFormat.RGBA8_UNORM,ColorTargetState.WRITE_ALL))
.withDepthStencilState(Optional.empty()).build());
private static RenderPipeline screen(String name,BlendFunction blend,boolean scene,boolean blur){
var layout=BindGroupLayout.builder().withUniform("InputTexture",UniformType.COMBINED_IMAGE_SAMPLER);
if(blur)layout.withUniform("BlurParams",UniformType.UNIFORM_BUFFER);
var builder=RenderPipeline.builder().withLocation(id("pipeline/"+name)).withVertexShader("core/screenquad").withFragmentShader(id("core/"+name)).withBindGroupLayout(layout.build());
if(scene)builder.withBindGroupLayout(SCENE);
return RenderPipelines.register(builder.withPrimitiveTopology(PrimitiveTopology.TRIANGLES).withCull(false)
.withColorTargetState(new ColorTargetState(Optional.ofNullable(blend),name.equals("bloom_blur")||name.equals("bloom_downsample")?GpuFormat.RGBA16_FLOAT:GpuFormat.RGBA8_UNORM,blend==null?ColorTargetState.WRITE_ALL:ColorTargetState.WRITE_COLOR)).withDepthStencilState(Optional.empty()).build());
}
private static final RenderPipeline SKY=screen("bloom_sky",null,true,false);
private static final RenderPipeline DOWNSAMPLE=screen("bloom_downsample",null,false,false);
private static final RenderPipeline BLUR=screen("bloom_blur",null,false,true);
private static final RenderPipeline CORE=screen("bloom_core",new BlendFunction(BlendFactor.ONE,BlendFactor.ONE_MINUS_SRC_ALPHA,BlendFactor.ZERO,BlendFactor.ONE),false,false);
private static final RenderPipeline APPLY=screen("bloom_apply",new BlendFunction(BlendFactor.ONE,BlendFactor.ONE_MINUS_SRC_COLOR,BlendFactor.ZERO,BlendFactor.ONE),true,false);
private static final BloomTerrain TERRAIN=new BloomTerrain();
private static final Matrix4f projection=new Matrix4f();
private static TextureTarget emission,small,ping;
private static MappableRingBuffer scene,horizontal,vertical;
private static int frames;
private static boolean applied;
private Bloom(){}
public static void captureProjection(Matrix4f matrix){projection.set(matrix);}
public static void dirtyBlock(BlockPos pos){TERRAIN.dirty(pos);}
public static void dirtyChunk(int x,int z){TERRAIN.dirtyChunk(x,z);}
public static void render(){
applied=false;var mc=Minecraft.getInstance();
boolean halo=VanillaLight.bloom()&&VanillaLight.bloomIntensity()>0;
boolean cores=VanillaLight.oreEmission()&&VanillaLight.oreIntensity()>0;
if(!VanillaLight.active()||(!halo&&!cores)||mc.level==null){release();return;}
if(PanoramaCapture.rendering())return;
var state=mc.gameRenderer.gameRenderState().levelRenderState;var camera=state.cameraRenderState;
if(camera.fogType!=FogType.NONE)return;
var main=mc.gameRenderer.mainRenderTarget();
if(emission==null||emission.width!=main.width||emission.height!=main.height){
targetsClose();emission=target("emission",main.width,main.height);
}
if(scene==null)scene=uniforms("bloom scene",144);
if(halo){
if(small==null){small=target("bloom low",Math.max(1,main.width/8),Math.max(1,main.height/8));ping=target("bloom ping",small.width,small.height);}
if(horizontal==null){horizontal=uniforms("bloom horizontal",16);vertical=uniforms("bloom vertical",16);}
}else haloClose();
var entries=TERRAIN.update();var atlas=TERRAIN.materials.atlas();
var vp=new Matrix4f(projection).mul(camera.viewRotationMatrix);var inverse=new Matrix4f(vp).invert();
var sun=PixelShadows.sunDirection(state.skyRenderState.sunAngle);var moon=PixelShadows.sunDirection(state.skyRenderState.moonAngle);
float celestial=state.skyRenderState.skybox==DimensionType.Skybox.OVERWORLD?state.skyRenderState.rainBrightness:0;
var fog=camera.fogData;scene.rotate();
try(var mapped=scene.currentBuffer().map(false,true)){
Std140Builder.intoBuffer(mapped.data()).putMat4f(inverse)
.putVec4(VanillaLight.oreEmission()?VanillaLight.oreIntensity()/100f:0,RenderSystem.getDevice().getDeviceInfo().isZZeroToOne()?1:0,VanillaLight.bloomIntensity()/50f,0)
.putVec4(sun.x,sun.y,sun.z,celestial).putVec4(moon.x,moon.y,moon.z,celestial*.35f)
.putVec4(fog.renderDistanceStart,fog.renderDistanceEnd,fog.environmentalStart,fog.environmentalEnd).putVec4(fog.color.w,0,0,0);
}
if(halo){
float radius=.25f+VanillaLight.bloomRadius()*.0075f;
horizontal.rotate();try(var mapped=horizontal.currentBuffer().map(false,true)){Std140Builder.intoBuffer(mapped.data()).putVec4(radius/small.width,0,0,0);}
vertical.rotate();try(var mapped=vertical.currentBuffer().map(false,true)){Std140Builder.intoBuffer(mapped.data()).putVec4(0,radius/small.height,0,0);}
}
// Gather transforms before opening any pass (the native dynamic ring may resize).
var transforms=new ArrayList<GpuBufferSlice>(entries.size());int max=0;
for(var entry:entries){var pos=entry.origin();var offset=new Vector3f((float)(pos.getX()-camera.pos.x),(float)(pos.getY()-camera.pos.y),(float)(pos.getZ()-camera.pos.z));
transforms.add(RenderSystem.getDynamicUniforms().writeTransform(new Matrix4f(vp).translate(offset),new Vector4f(1,1,1,1),offset,new Matrix4f()));max=Math.max(max,entry.indices());}
var indices=RenderSystem.getSequentialBuffer(PrimitiveTopology.QUADS);indices.requestIndexCount(max);
var nearest=RenderSystem.getSamplerCache().getClampToEdge(FilterMode.NEAREST);
if(halo)screen(SKY,emission.getColorTextureView(),main.getColorTextureView(),true,null);
else try(var clear=RenderSystem.getDevice().createCommandEncoder().createRenderPass(()->"Sanctuary clear emission",emission.getColorTextureView(),Optional.of(new Vector4f(0,0,0,0)))){ }
if(atlas!=null&&!entries.isEmpty())try(var pass=RenderSystem.getDevice().createCommandEncoder().createRenderPass(()->"Sanctuary visible emitters",emission.getColorTextureView(),Optional.empty())){
pass.setPipeline(RenderSystem.getCompiledPipeline(EMITTERS));pass.setUniform("BloomScene",scene.currentBuffer());pass.setUniform("WorldDepth",main.getDepthTextureView(),nearest);
pass.setUniform("BlockAtlas",mc.getTextureManager().getTexture(TextureAtlas.LOCATION_BLOCKS).getTextureView(),nearest);pass.setUniform("EmissionMasks",atlas.getTextureView(),nearest);
pass.setIndexBuffer(indices.getBuffer(),indices.type());
for(int i=0;i<entries.size();i++){var entry=entries.get(i);pass.setUniform("DynamicTransforms",transforms.get(i));pass.setVertexBuffer(0,entry.vertices().slice());pass.drawIndexed(entry.indices(),1,0,0,0);}
}
if(halo){
screen(DOWNSAMPLE,small.getColorTextureView(),emission.getColorTextureView(),false,null);
screen(BLUR,ping.getColorTextureView(),small.getColorTextureView(),false,horizontal);
screen(BLUR,small.getColorTextureView(),ping.getColorTextureView(),false,vertical);
}
if(cores)screen(CORE,main.getColorTextureView(),emission.getColorTextureView(),false,null);
if(halo)screen(APPLY,main.getColorTextureView(),small.getColorTextureView(),true,null);
applied=true;frames++;
}
private static void screen(RenderPipeline pipeline,GpuTextureView output,GpuTextureView input,boolean useScene,MappableRingBuffer blur){
try(var pass=RenderSystem.getDevice().createCommandEncoder().createRenderPass(()->"Sanctuary bloom",output,Optional.empty())){
pass.setPipeline(RenderSystem.getCompiledPipeline(pipeline));pass.setUniform("InputTexture",input,RenderSystem.getSamplerCache().getClampToEdge(pipeline==CORE||pipeline==SKY?FilterMode.NEAREST:FilterMode.LINEAR));
if(useScene){pass.setUniform("BloomScene",scene.currentBuffer());pass.setUniform("WorldDepth",Minecraft.getInstance().gameRenderer.mainRenderTarget().getDepthTextureView(),RenderSystem.getSamplerCache().getClampToEdge(FilterMode.NEAREST));}
if(blur!=null)pass.setUniform("BlurParams",blur.currentBuffer());pass.draw(3,1,0,0);
}
}
private static TextureTarget target(String name,int w,int h){return new TextureTarget("Sanctuary "+name,w,h,name.equals("emission")?GpuFormat.RGBA8_UNORM:GpuFormat.RGBA16_FLOAT,null);}
private static MappableRingBuffer uniforms(String name,int size){return new MappableRingBuffer(()->"Sanctuary "+name,GpuBuffer.USAGE_UNIFORM|GpuBuffer.USAGE_MAP_WRITE,size);}
private static void haloClose(){
if(small!=null){small.destroyBuffers();ping.destroyBuffers();small=ping=null;}
if(horizontal!=null){horizontal.close();vertical.close();horizontal=vertical=null;}
}
private static void targetsClose(){haloClose();if(emission!=null){emission.destroyBuffers();emission=null;}}
public static void release(){TERRAIN.close();targetsClose();if(scene!=null){scene.close();scene=null;}applied=false;}
static boolean haloAllocated(){return small!=null||horizontal!=null;}
static boolean applied(){return applied;}
static boolean allocated(){return emission!=null;}
static boolean ready(){return TERRAIN.settled();}
static int renderedFrames(){return frames;}
static TextureTarget emissionTarget(){return emission;}
}
@@ -0,0 +1,111 @@
package fr.koka.sanctuary.client.shader;
import com.mojang.blaze3d.platform.NativeImage;
import java.util.*;
import net.minecraft.client.Minecraft;
import net.minecraft.client.renderer.texture.DynamicTexture;
import net.minecraft.client.renderer.texture.TextureAtlasSprite;
import net.minecraft.core.registries.BuiltInRegistries;
import net.minecraft.resources.Identifier;
import net.minecraft.world.level.block.state.BlockState;
/** Analyse source texels once per resource reload, never rendered frames or GPU pixels. */
final class BloomMaterials implements AutoCloseable {
static final int TILE=68, INNER=64, SIZE=TILE*16, MAX_SPRITES=256;
record Slot(int x,int y,boolean empty) {
float u(float local){return (x+2+Math.clamp(local,0,1)*INNER)/SIZE;}
float v(float local){return (y+2+Math.clamp(local,0,1)*INNER)/SIZE;}
}
private final Map<String,Slot> slots=new HashMap<>();
private final Map<BlockState,Boolean> ores=new IdentityHashMap<>();
private final Map<Identifier,int[]> hosts=new HashMap<>();
private DynamicTexture atlas;
private boolean dirty;
private static final Set<String> ORES=Set.of("iron","copper","redstone","lapis","diamond","emerald","ruby","sapphire","quartz","gold");
boolean ore(BlockState state){return ores.computeIfAbsent(state,s->{
var id=BuiltInRegistries.BLOCK.getKey(s.getBlock());
if(!id.getNamespace().equals("minecraft")&&!id.getNamespace().equals("sanctuary"))return false;
String name=id.getPath().replaceFirst("^(deepslate_|nether_)","");
return name.endsWith("_ore")&&ORES.contains(name.substring(0,name.length()-4));
});}
boolean candidate(BlockState state){return ore(state)||state.getLightEmission()>0||state.emissiveRendering();}
Slot slot(TextureAtlasSprite sprite,boolean ore,boolean fullEmission){
String key=sprite.contents().name()+":"+ore+":"+fullEmission;
var cached=slots.get(key);if(cached!=null)return cached;
if(slots.size()>=MAX_SPRITES)return new Slot(0,0,true);
int index=slots.size(),x=(index%16)*TILE,y=(index/16)*TILE;
if(atlas==null){atlas=new DynamicTexture("Sanctuary emissive masks",SIZE,SIZE,false);atlas.getPixels().fillRect(0,0,SIZE,SIZE,0);}
boolean any=false;
var id=sprite.contents().name();
try(var image=read(id)){
int frameWidth=Math.min(image.getWidth(),sprite.contents().width()),frameHeight=Math.min(image.getHeight(),sprite.contents().height());
int w=Math.min(INNER,frameWidth),h=Math.min(INNER,frameHeight);
int[] colors=new int[w*h];for(int iy=0;iy<h;iy++)for(int ix=0;ix<w;ix++)colors[iy*w+ix]=image.getPixel(ix*frameWidth/w,iy*frameHeight/h);
int[] mask=mask(id,colors,w,h,ore,fullEmission);
// Standard optional _e texture takes precedence, including in personal resource packs.
var override=Minecraft.getInstance().getResourceManager().getResource(texture(id.withSuffix("_e")));
if(override.isPresent())try(var stream=override.get().open();var explicit=NativeImage.read(stream)){
for(int iy=0;iy<h;iy++)for(int ix=0;ix<w;ix++){
int c=explicit.getPixel(ix*explicit.getWidth()/w,iy*Math.min(explicit.getHeight(),frameHeight)/h);
mask[iy*w+ix]=(c>>>24)*Math.max((c>>16)&255,Math.max((c>>8)&255,c&255))/255;
}
}
for(int iy=0;iy<TILE;iy++)for(int ix=0;ix<TILE;ix++){
int value=mask[Math.clamp((iy-2)*h/INNER,0,h-1)*w+Math.clamp((ix-2)*w/INNER,0,w-1)];
any|=value>0;atlas.getPixels().setPixel(x+ix,y+iy,0xFF000000|value*0x010101);
}
}catch(java.io.IOException exception){
fr.koka.sanctuary.SanctuaryMod.LOGGER.warn("Cannot analyse emissive texture {}",id,exception);
}
var result=new Slot(x,y,!any);slots.put(key,result);dirty=true;return result;
}
int[] mask(Identifier id,int[] colors,int width,int height,boolean ore,boolean fullEmission){
int[] result=new int[colors.length];String name=id.getPath();
boolean quartz=name.contains("quartz"),nether=name.contains("nether_gold")||quartz;
int[] host=ore?host(nether?"netherrack":name.contains("deepslate")?"deepslate":"stone"):new int[0];
boolean structural=!ore&&!fullEmission&&(name.contains("furnace_side")||name.contains("furnace_top")
||name.contains("smoker_side")||name.contains("smoker_top")||name.contains("smoker_bottom")
||name.contains("campfire_log")&&!name.contains("lit")||name.contains("respawn_anchor_side")
||name.contains("respawn_anchor_bottom"));
for(int i=0;i<colors.length;i++){
int c=colors[i],r=c>>16&255,g=c>>8&255,b=c&255,max=Math.max(r,Math.max(g,b)),min=Math.min(r,Math.min(g,b));
if((c>>>24)<128||structural)continue;
if(ore){
int difference=255;
for(int base:host){int br=base>>16&255,bg=base>>8&255,bb=base&255;
difference=Math.min(difference,Math.max(Math.abs(r-br),Math.max(Math.abs(g-bg),Math.abs(b-bb))));}
boolean inclusion=nether?(quartz?g>r*.65&&b>r*.5&&max>110:r>110&&g>75&&g>b*1.45):max-min>=10;
if(inclusion&&difference>=10)result[i]=255;
}else{
// Luminosity is tied to the block state; cold/off variants never enter this path.
// Dark casings/wood are suppressed; live atlas colours and animation stay native.
float value=fullEmission?1:Math.clamp((max-100)/110f,0,1);
if(name.contains("torch")||name.contains("furnace")||name.contains("smoker")||name.contains("campfire"))
value*=Math.clamp((max-min-35)/65f,0,1);
result[i]=Math.round(value*255);
}
}
if(ore&&!nether){
// Retain pale/white highlights touching coloured inclusions, without growing into grey rock.
int[] seed=result.clone();
for(int y=0;y<height;y++)for(int x=0;x<width;x++)if(seed[y*width+x]==0){
int c=colors[y*width+x],r=c>>16&255,g=c>>8&255,b=c&255;
if((c>>>24)<128||Math.min(r,Math.min(g,b))<215)continue;
for(int dy=-1;dy<=1;dy++)for(int dx=-1;dx<=1;dx++)if(x+dx>=0&&x+dx<width&&y+dy>=0&&y+dy<height&&seed[(y+dy)*width+x+dx]>0)result[y*width+x]=255;
}
}
return result;
}
private int[] host(String name){return hosts.computeIfAbsent(Identifier.withDefaultNamespace("block/"+name),id->{
try(var image=read(id)){var values=new LinkedHashSet<Integer>();for(int y=0;y<Math.min(64,image.getHeight());y++)for(int x=0;x<Math.min(64,image.getWidth());x++)values.add(image.getPixel(x*image.getWidth()/Math.min(64,image.getWidth()),y*image.getHeight()/Math.min(64,image.getHeight())));return values.stream().mapToInt(Integer::intValue).toArray();}
catch(java.io.IOException exception){return new int[0];}
});}
static Identifier texture(Identifier id){return Identifier.fromNamespaceAndPath(id.getNamespace(),"textures/"+id.getPath()+".png");}
static NativeImage read(Identifier id)throws java.io.IOException{try(var stream=Minecraft.getInstance().getResourceManager().getResourceOrThrow(texture(id)).open()){return NativeImage.read(stream);}}
DynamicTexture atlas(){if(dirty){atlas.upload();dirty=false;}return atlas;}
int count(){return slots.size();}
public void close(){if(atlas!=null){atlas.close();atlas=null;}slots.clear();ores.clear();hosts.clear();dirty=false;}
}
@@ -0,0 +1,147 @@
package fr.koka.sanctuary.client.shader;
import com.mojang.blaze3d.systems.RenderSystem;
import com.mojang.blaze3d.vertex.BufferBuilder;
import com.mojang.blaze3d.vertex.ByteBufferBuilder;
import com.mojang.renderpearl.api.GpuFormat;
import com.mojang.renderpearl.api.buffers.GpuBuffer;
import com.mojang.renderpearl.api.pipeline.PrimitiveTopology;
import com.mojang.renderpearl.api.vertex.VertexFormat;
import java.util.*;
import net.minecraft.client.Minecraft;
import net.minecraft.client.model.geom.builders.UVPair;
import net.minecraft.client.renderer.block.dispatch.BlockStateModelPart;
import net.minecraft.client.renderer.texture.TextureAtlas;
import net.minecraft.core.BlockPos;
import net.minecraft.core.Direction;
import net.minecraft.core.SectionPos;
import net.minecraft.util.RandomSource;
import net.minecraft.world.level.chunk.LevelChunkSection;
import net.minecraft.world.level.chunk.status.ChunkStatus;
import net.minecraft.world.phys.Vec3;
/** Native visible sections only, palette rejection and bounded incremental emitter meshing. */
final class BloomTerrain implements AutoCloseable {
static final VertexFormat FORMAT=VertexFormat.builder(0).addAttribute("Position",GpuFormat.RGB32_FLOAT)
.addAttribute("Color",GpuFormat.RGBA8_UNORM).addAttribute("UV0",GpuFormat.RG32_FLOAT)
.addAttribute("UV3",GpuFormat.RG32_FLOAT).build();
private static final long MAX_BYTES=32L*1024*1024;
private final Map<Long,Section> sections=new HashMap<>();
final BloomMaterials materials=new BloomMaterials();
private Build building;
private long bytes;
private Object models,level;
private List<Section> visible=List.of();
record Entry(BlockPos origin,GpuBuffer vertices,int indices){}
List<Entry> update(){
var mc=Minecraft.getInstance();var current=mc.getModelManager().getBlockStateModelSet();
if(models!=current||level!=mc.level){close();models=current;level=mc.level;}
long frame=mc.level.getGameTime();var active=new ArrayList<Section>();
for(var render:mc.levelRenderer.visibleSections()){
long key=render.getSectionNode();var pos=render.getRenderOrigin();
var chunk=mc.level.getChunkSource().getChunk(pos.getX()>>4,pos.getZ()>>4,ChunkStatus.FULL,false);
if(chunk==null)continue;
var storage=chunk.getSection(mc.level.getSectionIndex(pos.getY()));
var section=sections.get(key);
if(section==null||section.storage!=storage){if(section!=null)remove(section);section=new Section(key,pos.immutable(),storage);sections.put(key,section);}
section.seen=frame;active.add(section);
}
visible=active;
for(var iterator=sections.values().iterator();iterator.hasNext();){var section=iterator.next();if(frame-section.seen>40){remove(section);iterator.remove();}}
Vec3 camera=mc.gameRenderer.gameRenderState().levelRenderState.cameraRenderState.pos;
long deadline=System.nanoTime()+3_000_000L;int started=building==null?0:1;
while(System.nanoTime()<deadline){
if(building==null){
if(started++>=4)break;
Section next=active.stream().filter(s->s.dirty).min(Comparator.comparingDouble(s->s.origin.distToCenterSqr(camera))).orElse(null);
if(next==null)break;
if(!next.storage.maybeHas(materials::candidate)){next.dirty=false;continue;}
building=new Build(next);
}
if(!advance(building,deadline))break;
var done=building;building=null;
try(done){
done.section.dirty=false;
if(done.quads>0&&!done.overflow){
try(var mesh=done.out.buildOrThrow()){
long size=mesh.vertexBuffer().remaining();
if(bytes+size<=MAX_BYTES){
var buffer=RenderSystem.getDevice().createBuffer(()->"Sanctuary bloom emitters",GpuBuffer.USAGE_VERTEX|GpuBuffer.USAGE_COPY_DST,mesh.vertexBuffer());
int count=mesh.drawState().indexCount();RenderSystem.getSequentialBuffer(PrimitiveTopology.QUADS).getBuffer(count);
done.section.entry=new Entry(done.section.origin,buffer,count);bytes+=buffer.size();
}
}
}
}
}
return active.stream().map(s->s.entry).filter(Objects::nonNull).toList();
}
private boolean advance(Build build,long deadline){
var mc=Minecraft.getInstance();var models=mc.getModelManager().getBlockStateModelSet();
var parts=new ArrayList<BlockStateModelPart>();var random=RandomSource.create();
while(build.cursor<4096){
int i=build.cursor++,x=i&15,z=i>>4&15,y=i>>8;var state=build.section.storage.getBlockState(x,y,z);
if(materials.candidate(state)){
var pos=build.section.origin.offset(x,y,z);boolean ore=materials.ore(state);
parts.clear();random.setSeed(state.getSeed(pos));if(!state.liquid())models.get(state).collectParts(random,parts);
var tintSources=mc.getBlockColors().getTintSources(state);
var offset=state.getOffset(pos);
for(var part:parts)for(int f=0;f<7;f++){
Direction face=f==6?null:Direction.values()[f];
if(face!=null&&mc.level.getBlockState(pos.relative(face)).isSolidRender())continue;
for(var quad:part.getQuads(face)){
var material=quad.materialInfo();var sprite=material.sprite();
if(!sprite.atlasLocation().equals(TextureAtlas.LOCATION_BLOCKS))continue;
var slot=materials.slot(sprite,ore,material.lightEmission()>0||state.emissiveRendering()||sprite.isAnimated());
if(slot.empty())continue;
if(build.quads>=16384){build.overflow=true;return true;}
int tint=0xFFFFFF,index=material.tintIndex();
if(index>=0&&index<tintSources.size())tint=tintSources.get(index).colorInWorld(state,mc.level,pos)&0xFFFFFF;
// Alpha marks ore vs. native emitter; the mask alpha is not a gameplay light value.
int light=state.emissiveRendering()?15:Math.max(state.getLightEmission(),material.lightEmission());
int alpha=ore?Math.round(light/15f*120):128+Math.round(light/15f*127);
int color=(alpha<<24)|tint;
for(int v=0;v<4;v++){
var p=quad.position(v);float u=UVPair.unpackU(quad.packedUV(v)),tv=UVPair.unpackV(quad.packedUV(v));
float localU=(u-sprite.getU0())/(sprite.getU1()-sprite.getU0()),localV=(tv-sprite.getV0())/(sprite.getV1()-sprite.getV0());
build.out.addVertex(x+p.x()+(float)offset.x,y+p.y()+(float)offset.y,z+p.z()+(float)offset.z)
.setColor(color).setUv(u,tv).setUv3(slot.u(localU),slot.v(localV));
}
build.quads++;
}
}
if(state.liquid()&&state.getLightEmission()>0)fluid(build,pos,x,y,z,state.getFluidState().getHeight(mc.level,pos));
}
if((build.cursor&31)==0&&System.nanoTime()>=deadline)return build.cursor==4096;
}
return true;
}
private void fluid(Build build,BlockPos pos,int x,int y,int z,float height){
var mc=Minecraft.getInstance();var sprite=((TextureAtlas)mc.getTextureManager().getTexture(TextureAtlas.LOCATION_BLOCKS)).getSprite(net.minecraft.resources.Identifier.withDefaultNamespace("block/lava_still"));
var slot=materials.slot(sprite,false,true);if(slot.empty())return;
// Native world depth retains the actual fluid silhouette and occludes these candidate faces.
float[][][] faces={{{0,height,0},{0,height,1},{1,height,1},{1,height,0}},{{0,0,0},{0,height,0},{1,height,0},{1,0,0}},
{{0,0,1},{1,0,1},{1,height,1},{0,height,1}},{{0,0,0},{0,0,1},{0,height,1},{0,height,0}},{{1,0,0},{1,height,0},{1,height,1},{1,0,1}}};
for(var face:faces){if(build.quads>=16384){build.overflow=true;return;}
for(int i=0;i<4;i++){float u=i>=2?1:0,v=i==1||i==2?1:0;var p=face[i];
build.out.addVertex(x+p[0],y+p[1],z+p[2]).setColor(0xFFFFFFFF).setUv(sprite.getU(u),sprite.getV(v)).setUv3(slot.u(u),slot.v(v));}
build.quads++;
}
}
void dirty(BlockPos pos){for(int x=(pos.getX()-1)>>4;x<=(pos.getX()+1)>>4;x++)for(int y=(pos.getY()-1)>>4;y<=(pos.getY()+1)>>4;y++)for(int z=(pos.getZ()-1)>>4;z<=(pos.getZ()+1)>>4;z++)dirty(sections.get(SectionPos.asLong(x,y,z)));}
void dirtyChunk(int x,int z){for(var section:sections.values())if(Math.abs((section.origin.getX()>>4)-x)<=1&&Math.abs((section.origin.getZ()>>4)-z)<=1)dirty(section);}
private void dirty(Section section){if(section!=null){remove(section);section.dirty=true;}}
private void remove(Section section){if(building!=null&&building.section==section){building.close();building=null;}if(section.entry!=null){bytes-=section.entry.vertices.size();section.entry.vertices.close();section.entry=null;}}
boolean settled(){return building==null&&visible.stream().noneMatch(s->s.dirty);}
public void close(){if(building!=null){building.close();building=null;}for(var section:sections.values())remove(section);sections.clear();visible=List.of();materials.close();models=level=null;bytes=0;}
private static final class Section{
final long key;final BlockPos origin;final LevelChunkSection storage;long seen;boolean dirty=true;Entry entry;
Section(long key,BlockPos origin,LevelChunkSection storage){this.key=key;this.origin=origin;this.storage=storage;}
}
private static final class Build implements AutoCloseable{
final Section section;final ByteBufferBuilder buffer=new ByteBufferBuilder(65536);final BufferBuilder out=new BufferBuilder(buffer,PrimitiveTopology.QUADS,FORMAT);
int cursor,quads;boolean overflow;
Build(Section section){this.section=section;}
public void close(){buffer.close();}
}
}
@@ -68,7 +68,7 @@ public final class EdgeHighlights {
Std140Builder.intoBuffer(mapped.data()).putMat4f(inverse).putMat4f(viewProjection)
.putVec4((float)(camera.pos.x - Math.floor(camera.pos.x)),
(float)(camera.pos.y - Math.floor(camera.pos.y)),
(float)(camera.pos.z - Math.floor(camera.pos.z)), 16)
(float)(camera.pos.z - Math.floor(camera.pos.z)), VanillaLight.shadowPixels())
.putVec4(VanillaLight.edgeIntensity() * .004f,
RenderSystem.getDevice().getDeviceInfo().isZZeroToOne() ? 1 : 0,
fog.renderDistanceStart, fog.renderDistanceEnd)
@@ -17,6 +17,16 @@ public final class ShaderOptionsScreen extends OptionsSubScreen {
list.addBig(new OptionInstance<Integer>("sanctuary.shaders.saturation",OptionInstance.cachedConstantTooltip(
Component.translatable("sanctuary.shaders.saturation_help")),(caption,value)->Component.translatable("sanctuary.shaders.saturation_value",value),
new OptionInstance.IntRange(0,200),VanillaLight.saturation(),VanillaLight::setSaturation));
list.addBig(new OptionInstance<Integer>("sanctuary.shaders.precision",OptionInstance.cachedConstantTooltip(
Component.translatable("sanctuary.shaders.precision_help")),(caption,value)->Component.translatable("sanctuary.shaders.precision_value",value),
new OptionInstance.Enum<>(List.of(8,16,32,64,128),Codec.INT),VanillaLight.shadowPixels(),VanillaLight::setShadowPixels));
list.addBig(OptionInstance.createBoolean("sanctuary.shaders.bloom",OptionInstance.cachedConstantTooltip(
Component.translatable("sanctuary.shaders.bloom_help")),VanillaLight.bloom(),VanillaLight::setBloom));
slider("bloom_intensity",VanillaLight.bloomIntensity(),VanillaLight::setBloomIntensity);
slider("bloom_radius",VanillaLight.bloomRadius(),VanillaLight::setBloomRadius);
list.addBig(OptionInstance.createBoolean("sanctuary.shaders.ore_emission",OptionInstance.cachedConstantTooltip(
Component.translatable("sanctuary.shaders.ore_emission_help")),VanillaLight.oreEmission(),VanillaLight::setOreEmission));
slider("ore_intensity",VanillaLight.oreIntensity(),VanillaLight::setOreIntensity);
list.addBig(OptionInstance.createBoolean("sanctuary.shaders.edge_highlights",OptionInstance.cachedConstantTooltip(
Component.translatable("sanctuary.shaders.edge_highlights_help")),
VanillaLight.edgeHighlights(),VanillaLight::setEdgeHighlights));
@@ -29,11 +39,13 @@ public final class ShaderOptionsScreen extends OptionsSubScreen {
list.addBig(OptionInstance.createBoolean("sanctuary.shaders.pixel_shadows",OptionInstance.cachedConstantTooltip(
Component.translatable("sanctuary.shaders.pixel_shadows_help")),
VanillaLight.pixelShadows(),VanillaLight::setPixelShadows));
list.addBig(new OptionInstance<Integer>("sanctuary.shaders.shadow_pixels",OptionInstance.cachedConstantTooltip(
Component.translatable("sanctuary.shaders.shadow_pixels_help")),(caption,value)->Component.translatable("sanctuary.shaders.shadow_pixels_value",value),
new OptionInstance.Enum<>(List.of(8,16,32),Codec.INT),VanillaLight.shadowPixels(),VanillaLight::setShadowPixels));
list.addBig(new OptionInstance<Integer>("sanctuary.shaders.shadow_distance",OptionInstance.cachedConstantTooltip(
Component.translatable("sanctuary.shaders.shadow_distance_help")),(caption,value)->Component.translatable("sanctuary.shaders.shadow_distance_value",value),
new OptionInstance.Enum<>(List.of(16,32,64,128,256),Codec.INT),VanillaLight.shadowDistance(),VanillaLight::setShadowDistance));
}
private void slider(String key,int value,java.util.function.Consumer<Integer> setter){
list.addBig(new OptionInstance<Integer>("sanctuary.shaders."+key,OptionInstance.cachedConstantTooltip(
Component.translatable("sanctuary.shaders."+key+"_help")),(caption,v)->Component.translatable("sanctuary.shaders."+key+"_value",v),
new OptionInstance.IntRange(0,100),value,setter::accept));
}
}
@@ -17,12 +17,17 @@ public final class VanillaLight {
private static final class Preferences {
boolean enabled=true;
int saturation=142;
boolean pixelShadows=false;
boolean edgeHighlights=false;
boolean pixelShadows=true;
boolean bloom=true;
int bloomIntensity=35;
int bloomRadius=50;
boolean oreEmission=true;
int oreIntensity=50;
boolean edgeHighlights=true;
int edgeIntensity=30;
int edgeDistance=32;
int shadowPixels=16;
int shadowDistance=32;
int shadowDistance=128;
}
private static Path path(){return FabricLoader.getInstance().getConfigDir().resolve("sanctuary-shaders.json");}
public static boolean enabled(){
@@ -30,10 +35,13 @@ public final class VanillaLight {
try{if(Files.isRegularFile(path()))preferences=new GsonBuilder().create().fromJson(Files.readString(path()),Preferences.class);}
catch(Exception e){SanctuaryMod.LOGGER.warn("Cannot read Sanctuary shader preference",e);}
if(preferences==null)preferences=new Preferences();
preferences.bloomIntensity=Math.clamp(preferences.bloomIntensity,0,100);
preferences.bloomRadius=Math.clamp(preferences.bloomRadius,0,100);
preferences.oreIntensity=Math.clamp(preferences.oreIntensity,0,100);
preferences.edgeIntensity=Math.clamp(preferences.edgeIntensity,0,100);
preferences.edgeDistance=normalizeShadowDistance(preferences.edgeDistance);
preferences.saturation=Math.clamp(preferences.saturation,0,200);
preferences.shadowPixels=normalizeShadowValue(preferences.shadowPixels,8,16,32);
preferences.shadowPixels=normalizePrecision(preferences.shadowPixels);
preferences.shadowDistance=normalizeShadowDistance(preferences.shadowDistance);
}
return preferences.enabled;
@@ -47,21 +55,33 @@ public final class VanillaLight {
public static int edgeIntensity(){enabled();return preferences.edgeIntensity;}
public static void setEdgeHighlights(boolean value){enabled();preferences.edgeHighlights=value;save();}
public static void setEdgeIntensity(int value){enabled();preferences.edgeIntensity=Math.clamp(value,0,100);save();}
public static boolean bloom(){enabled();return preferences.bloom;}
public static int bloomIntensity(){enabled();return preferences.bloomIntensity;}
public static int bloomRadius(){enabled();return preferences.bloomRadius;}
public static boolean oreEmission(){enabled();return preferences.oreEmission;}
public static int oreIntensity(){enabled();return preferences.oreIntensity;}
public static void setBloom(boolean value){enabled();preferences.bloom=value;save();}
public static void setBloomIntensity(int value){enabled();preferences.bloomIntensity=Math.clamp(value,0,100);save();}
public static void setBloomRadius(int value){enabled();preferences.bloomRadius=Math.clamp(value,0,100);save();}
public static void setOreEmission(boolean value){enabled();preferences.oreEmission=value;save();}
public static void setOreIntensity(int value){enabled();preferences.oreIntensity=Math.clamp(value,0,100);save();}
public static boolean pixelShadows(){enabled();return preferences.pixelShadows;}
public static int shadowPixels(){enabled();return preferences.shadowPixels;}
public static int shadowDistance(){enabled();return preferences.shadowDistance;}
public static void setSaturation(int value){enabled();preferences.saturation=Math.clamp(value,0,200);save();}
public static void setPixelShadows(boolean value){enabled();preferences.pixelShadows=value;save();}
public static void setShadowPixels(int value){enabled();preferences.shadowPixels=normalizeShadowValue(value,8,16,32);save();}
public static void setShadowPixels(int value){enabled();preferences.shadowPixels=normalizePrecision(value);save();}
public static void setShadowDistance(int value){enabled();preferences.shadowDistance=normalizeShadowDistance(value);save();}
public static void setEnabled(boolean value){
enabled();preferences.enabled=value;
save();
}
/** Nearest supported value, clamped at either end; midpoint ties round up. */
private static int normalizeShadowValue(int value,int low,int middle,int high){
if(value<(low+middle)/2)return low;
return value<(middle+high)/2?middle:high;
private static int normalizePrecision(int value){
if(value<12)return 8;
if(value<24)return 16;
if(value<48)return 32;
return value<96?64:128;
}
private static int normalizeShadowDistance(int value){
if(value<24)return 16;
@@ -1,6 +1,7 @@
package fr.koka.sanctuary.mixin.client;
import fr.koka.sanctuary.client.shader.PixelShadows;
import fr.koka.sanctuary.client.shader.Bloom;
import net.minecraft.client.renderer.extract.LevelExtractor;
import net.minecraft.core.BlockPos;
import org.spongepowered.asm.mixin.Mixin;
@@ -13,8 +14,8 @@ import org.spongepowered.asm.mixin.injection.callback.CallbackInfo;
abstract class PixelShadowDirtyMixin {
@Inject(method="blockChanged", at=@At("HEAD"))
private void sanctuary$dirty(BlockPos pos, int flags, CallbackInfo ci) {
PixelShadows.dirtyBlock(pos);
PixelShadows.dirtyBlock(pos); Bloom.dirtyBlock(pos);
}
@Inject(method="allChanged", at=@At("HEAD"))
private void sanctuary$reload(CallbackInfo ci) { PixelShadows.release(); }
private void sanctuary$reload(CallbackInfo ci) { PixelShadows.release(); Bloom.release(); }
}
@@ -1,6 +1,7 @@
package fr.koka.sanctuary.mixin.client;
import fr.koka.sanctuary.client.shader.PixelShadows;
import fr.koka.sanctuary.client.shader.Bloom;
import net.minecraft.client.multiplayer.ClientLevel;
import net.minecraft.core.BlockPos;
import net.minecraft.world.level.block.state.BlockState;
@@ -15,11 +16,11 @@ import org.spongepowered.asm.mixin.injection.callback.CallbackInfo;
abstract class PixelShadowLevelMixin {
@Inject(method="setBlocksDirty", at=@At("HEAD"))
private void sanctuary$block(BlockPos pos, BlockState before, BlockState after, CallbackInfo ci) {
if (before != after) PixelShadows.dirtyBlock(pos);
if (before != after) {PixelShadows.dirtyBlock(pos);Bloom.dirtyBlock(pos);}
}
@Inject(method="onChunkLoaded", at=@At("TAIL"))
private void sanctuary$loaded(ChunkPos pos, CallbackInfo ci) { PixelShadows.dirtyChunk(pos.x(), pos.z()); }
private void sanctuary$loaded(ChunkPos pos, CallbackInfo ci) { PixelShadows.dirtyChunk(pos.x(), pos.z()); Bloom.dirtyChunk(pos.x(), pos.z()); }
@Inject(method="unload", at=@At("HEAD"))
private void sanctuary$unload(LevelChunk chunk, CallbackInfo ci) { PixelShadows.dirtyChunk(chunk.getPos().x(), chunk.getPos().z()); }
private void sanctuary$unload(LevelChunk chunk, CallbackInfo ci) { PixelShadows.dirtyChunk(chunk.getPos().x(), chunk.getPos().z()); Bloom.dirtyChunk(chunk.getPos().x(), chunk.getPos().z()); }
}
@@ -5,6 +5,7 @@ import com.llamalad7.mixinextras.injector.wrapoperation.WrapOperation;
import com.mojang.renderpearl.api.buffers.GpuBufferSlice;
import fr.koka.sanctuary.client.shader.PixelShadows;
import fr.koka.sanctuary.client.shader.EdgeHighlights;
import fr.koka.sanctuary.client.shader.Bloom;
import net.minecraft.client.renderer.GameRenderer;
import net.minecraft.client.renderer.ProjectionMatrixBuffer;
import org.joml.Matrix4f;
@@ -19,10 +20,11 @@ abstract class PixelShadowRendererMixin {
private GpuBufferSlice sanctuary$projection(ProjectionMatrixBuffer buffer, Matrix4f matrix, Operation<GpuBufferSlice> original) {
PixelShadows.captureProjection(matrix);
EdgeHighlights.captureProjection(matrix);
Bloom.captureProjection(matrix);
return original.call(buffer, matrix);
}
@Inject(method="renderLevel", at=@At(value="INVOKE", target="Lnet/minecraft/client/renderer/GameRenderer;render3dHud(Lnet/minecraft/client/renderer/state/level/CameraRenderState;Lnet/minecraft/client/renderer/state/level/PlayerRenderState;Lnet/minecraft/client/renderer/state/OptionsRenderState;Z)V"))
private void sanctuary$shadows(CallbackInfo ci) { PixelShadows.render(); EdgeHighlights.render(); }
private void sanctuary$shadows(CallbackInfo ci) { PixelShadows.render(); EdgeHighlights.render(); Bloom.render(); }
@Inject(method={"close", "setLevel"}, at=@At("HEAD"))
private void sanctuary$close(CallbackInfo ci) { PixelShadows.release(); EdgeHighlights.release(); }
private void sanctuary$close(CallbackInfo ci) { PixelShadows.release(); EdgeHighlights.release(); Bloom.release(); }
}
@@ -2258,19 +2258,35 @@
"sanctuary.discovery.granted": "Discoveries added for %s: %s blocks, %s items, %s species. Linked recipes updated; reopen catalogues.",
"sanctuary.discovery.invalid": "Choose a discoverable block, item or species.",
"sanctuary.shaders.edge_highlights": "Edge highlights",
"sanctuary.shaders.edge_highlights_help": "Connected highlights along terrain contours. Flat surfaces connect, even across different blocks. Preserves textures. OFF by default; requires Vanilla Light.",
"sanctuary.shaders.edge_highlights_help": "Connected highlights along terrain contours. Flat surfaces connect, even across different blocks. Preserves textures. ON by default; requires Vanilla Light.",
"sanctuary.shaders.edge_intensity": "Edge intensity",
"sanctuary.shaders.edge_intensity_help": "Highlight strength along edges. Independent of cast shadows.",
"sanctuary.shaders.edge_intensity_value": "Edge intensity: %s %%",
"sanctuary.shaders.pixel_shadows": "Pixel shadows",
"sanctuary.shaders.pixel_shadows_help": "Sun shadows and subtle moon shadows on a pixel grid. Dappled foliage and stable contours. Disabled by default; requires Vanilla Light.",
"sanctuary.shaders.pixel_shadows_help": "Sun shadows and subtle moon shadows on a pixel grid. Dappled foliage and stable contours. Enabled by default at 128 blocks; requires Vanilla Light.",
"sanctuary.shaders.shadow_pixels": "Shadow precision",
"sanctuary.shaders.shadow_pixels_value": "%s pixels/block",
"sanctuary.shaders.shadow_pixels_help": "Grid precision: 8, 16 or 32 pixels per block. Higher values make shadow pixels finer. Requires Vanilla Light and pixel shadows.",
"sanctuary.shaders.shadow_pixels_help": "Grid precision: 8, 16, 32, 64 or 128 pixels per block. Higher values make shadow pixels finer. Requires Vanilla Light and pixel shadows.",
"sanctuary.shaders.shadow_distance": "Shadow distance",
"sanctuary.shaders.shadow_distance_value": "%s blocks",
"sanctuary.shaders.shadow_distance_help": "Shadow range: 16, 32, 64, 128 or 256 blocks, within loaded terrain. Higher distances cost more performance. Requires Vanilla Light and pixel shadows.",
"sanctuary.shaders.edge_distance": "Highlight distance",
"sanctuary.shaders.edge_distance_value": "%s blocks",
"sanctuary.shaders.edge_distance_help": "Independent range: 16, 32, 64, 128 or 256 blocks. Limited to visible terrain and render distance. Distant contours become naturally finer."
"sanctuary.shaders.edge_distance_help": "Independent range: 16, 32, 64, 128 or 256 blocks. Limited to visible terrain and render distance. Distant contours become naturally finer.",
"sanctuary.shaders.precision": "Precision",
"sanctuary.shaders.precision_help": "Shared grid for shadows and edge highlights: 8, 16, 32, 64 or 128 pixels per block. The shadow map retains its resolution cap.",
"sanctuary.shaders.precision_value": "%s pixels/block",
"sanctuary.shaders.bloom": "Bloom",
"sanctuary.shaders.bloom_help": "Glow around the sun and luminous surfaces. ON by default. Turning it off removes halos while keeping emissive ores. Requires Vanilla Light.",
"sanctuary.shaders.bloom_intensity": "Bloom strength",
"sanctuary.shaders.bloom_intensity_help": "Halo strength. Zero removes halos and their blur passes while keeping emissive ores.",
"sanctuary.shaders.bloom_intensity_value": "Bloom: %s%%",
"sanctuary.shaders.bloom_radius": "Bloom spread",
"sanctuary.shaders.bloom_radius_help": "Halo size around luminous pixels. Texture details stay sharp.",
"sanctuary.shaders.bloom_radius_value": "Spread: %s%%",
"sanctuary.shaders.ore_emission": "Emissive ores",
"sanctuary.shaders.ore_emission_help": "Makes ore inclusions glow while preserving their host rock, even with bloom off or at zero. ON by default. Visual effect only.",
"sanctuary.shaders.ore_intensity": "Ore emission",
"sanctuary.shaders.ore_intensity_help": "Inclusion brightness. Does not change world light levels or mob spawning.",
"sanctuary.shaders.ore_intensity_value": "Ores: %s%%"
}
@@ -2258,19 +2258,35 @@
"sanctuary.discovery.granted": "Découvertes ajoutées pour %s : %s blocs, %s objets, %s espèces. Recettes liées actualisées ; rouvre les catalogues.",
"sanctuary.discovery.invalid": "Choisis un bloc, un objet ou une espèce découvrable.",
"sanctuary.shaders.edge_highlights": "Reflets sur les arêtes",
"sanctuary.shaders.edge_highlights_help": "Reflets connectés sur les contours du relief. Les surfaces plates se raccordent, même entre blocs différents. Préserve les textures. Désactivé par défaut ; nécessite Vanilla Light.",
"sanctuary.shaders.edge_highlights_help": "Reflets connectés sur les contours du relief. Les surfaces plates se raccordent, même entre blocs différents. Préserve les textures. Activé par défaut ; nécessite Vanilla Light.",
"sanctuary.shaders.edge_intensity": "Intensité des arêtes",
"sanctuary.shaders.edge_intensity_help": "Force du reflet sur les arêtes. Le réglage est indépendant des ombres portées.",
"sanctuary.shaders.edge_intensity_value": "Intensité des arêtes : %s %%",
"sanctuary.shaders.pixel_shadows": "Ombres pixelisées",
"sanctuary.shaders.pixel_shadows_help": "Ombres du soleil et ombres légères de la lune, sur une grille de pixels. Feuillage irrégulier et contours stables. Désactivées par défaut ; nécessite Vanilla Light.",
"sanctuary.shaders.pixel_shadows_help": "Ombres du soleil et ombres légères de la lune, sur une grille de pixels. Feuillage irrégulier et contours stables. Activées par défaut, portée 128 blocs ; nécessite Vanilla Light.",
"sanctuary.shaders.shadow_pixels": "Précision des ombres",
"sanctuary.shaders.shadow_pixels_value": "%s pixels/bloc",
"sanctuary.shaders.shadow_pixels_help": "Précision de la grille : 8, 16 ou 32 pixels par bloc. Plus la valeur est élevée, plus les pixels des ombres sont fins. Nécessite Vanilla Light et les ombres pixelisées.",
"sanctuary.shaders.shadow_pixels_help": "Précision de la grille : 8, 16, 32, 64 ou 128 pixels par bloc. Plus la valeur est élevée, plus les pixels des ombres sont fins. Nécessite Vanilla Light et les ombres pixelisées.",
"sanctuary.shaders.shadow_distance": "Distance des ombres",
"sanctuary.shaders.shadow_distance_value": "%s blocs",
"sanctuary.shaders.shadow_distance_help": "Portée des ombres : 16, 32, 64, 128 ou 256 blocs, dans le terrain chargé. Une distance élevée coûte davantage en performances. Nécessite Vanilla Light et les ombres pixelisées.",
"sanctuary.shaders.edge_distance": "Portée des arêtes",
"sanctuary.shaders.edge_distance_value": "%s blocs",
"sanctuary.shaders.edge_distance_help": "Portée indépendante : 16, 32, 64, 128 ou 256 blocs. Limitée au terrain visible et à la distance de rendu. Les contours lointains saffinent naturellement."
"sanctuary.shaders.edge_distance_help": "Portée indépendante : 16, 32, 64, 128 ou 256 blocs. Limitée au terrain visible et à la distance de rendu. Les contours lointains saffinent naturellement.",
"sanctuary.shaders.precision": "Précision",
"sanctuary.shaders.precision_help": "Grille commune aux ombres et aux reflets sur les arêtes : 8, 16, 32, 64 ou 128 pixels par bloc. La carte dombres conserve sa résolution maximale.",
"sanctuary.shaders.precision_value": "%s pixels/bloc",
"sanctuary.shaders.bloom": "Bloom",
"sanctuary.shaders.bloom_help": "Halo du soleil et des surfaces lumineuses. Activé par défaut. Larrêt coupe le halo et conserve les minerais émissifs. Nécessite Vanilla Light.",
"sanctuary.shaders.bloom_intensity": "Intensité du bloom",
"sanctuary.shaders.bloom_intensity_help": "Force du halo. Zéro supprime le halo et ses passes de diffusion, tout en conservant les minerais émissifs.",
"sanctuary.shaders.bloom_intensity_value": "Bloom : %s %%",
"sanctuary.shaders.bloom_radius": "Diffusion du bloom",
"sanctuary.shaders.bloom_radius_help": "Taille du halo autour des pixels lumineux. Les détails des textures restent nets.",
"sanctuary.shaders.bloom_radius_value": "Diffusion : %s %%",
"sanctuary.shaders.ore_emission": "Minerais émissifs",
"sanctuary.shaders.ore_emission_help": "Fait briller les inclusions des minerais sans éclairer leur roche, même avec le bloom coupé ou à zéro. Activé par défaut. Effet visuel uniquement.",
"sanctuary.shaders.ore_intensity": "Émission des minerais",
"sanctuary.shaders.ore_intensity_help": "Luminosité des inclusions. Aucun changement de la lumière du monde ou des apparitions de mobs.",
"sanctuary.shaders.ore_intensity_value": "Minerais : %s %%"
}
@@ -0,0 +1,7 @@
#version 330
#extension GL_ARB_separate_shader_objects : require
#include <sanctuary:bloom_scene.glsl>
uniform sampler2D InputTexture;
layout(location=0) in vec2 texCoord;
layout(location=0) out vec4 fragColor;
void main(){vec3 halo=texture(InputTexture,texCoord).rgb;fragColor=vec4(clamp(halo*BloomParams.z,0.0,1.0),0.0);}
@@ -0,0 +1,13 @@
#version 330
#extension GL_ARB_separate_shader_objects : require
uniform sampler2D InputTexture;
layout(std140) uniform BlurParams { vec4 Step; };
layout(location=0) in vec2 texCoord;
layout(location=0) out vec4 fragColor;
// At most one low-resolution texel between taps: broad halos cannot turn into a sparse grid.
void main(){
float weights[13]=float[13](0.099908358,0.096834501,0.088168817,0.075414785,0.060597482,0.045741379,0.032435495,0.021606698,0.013521126,0.007948660,0.004389667,0.002277329,0.001109882);
vec3 color=texture(InputTexture,texCoord).rgb*weights[0];
for(int i=1;i<=12;i++){vec2 d=Step.xy*float(i);color+=(texture(InputTexture,texCoord+d).rgb+texture(InputTexture,texCoord-d).rgb)*weights[i];}
fragColor=vec4(color,0.0);
}
@@ -0,0 +1,6 @@
#version 330
#extension GL_ARB_separate_shader_objects : require
uniform sampler2D InputTexture;
layout(location=0) in vec2 texCoord;
layout(location=0) out vec4 fragColor;
void main(){vec4 emission=texture(InputTexture,texCoord);fragColor=emission.a>0.0?emission:vec4(0.0);}
@@ -0,0 +1,6 @@
#version 330
#extension GL_ARB_separate_shader_objects : require
uniform sampler2D InputTexture;
layout(location=0) in vec2 texCoord;
layout(location=0) out vec4 fragColor;
void main(){vec2 pixel=1.0/vec2(textureSize(InputTexture,0));vec3 sum=vec3(0.0);for(int y=0;y<8;y++)for(int x=0;x<8;x++)sum+=texture(InputTexture,texCoord+(vec2(x,y)-3.5)*pixel).rgb;fragColor=vec4(sum/64.0,0.0);}
@@ -0,0 +1,22 @@
#version 330
#extension GL_ARB_separate_shader_objects : require
#include <sanctuary:bloom_scene.glsl>
uniform sampler2D BlockAtlas;
uniform sampler2D EmissionMasks;
layout(location=0) in vec3 relativePosition;
layout(location=1) in vec2 blockUv;
layout(location=2) in vec2 maskUv;
layout(location=3) in vec4 tint;
layout(location=0) out vec4 fragColor;
void main(){
vec2 uv=gl_FragCoord.xy/vec2(textureSize(WorldDepth,0));
float depth=texture(WorldDepth,uv).r;
if(depth>0.0&&length(relativePosition)>length(bloomPosition(uv,depth))+0.02)discard;
vec4 source=texture(BlockAtlas,blockUv);
float mask=texture(EmissionMasks,maskUv).r;
bool ore=tint.a<0.5;
float nativeLight=ore?tint.a*(255.0/120.0):max(0.0,(tint.a*255.0-128.0)/127.0);
float amount=mask*(ore?max(BloomParams.x,nativeLight):nativeLight)*bloomFog(relativePosition);
if(source.a<0.5||amount<0.001)discard;
fragColor=vec4(source.rgb*tint.rgb*amount,ore?amount:0.0);
}
@@ -0,0 +1,12 @@
#version 330
#extension GL_ARB_separate_shader_objects : require
#include <minecraft:dynamictransforms.glsl>
layout(location=0) in vec3 Position;
layout(location=1) in vec4 Color;
layout(location=2) in vec2 UV0;
layout(location=3) in vec2 UV3;
layout(location=0) out vec3 relativePosition;
layout(location=1) out vec2 blockUv;
layout(location=2) out vec2 maskUv;
layout(location=3) out vec4 tint;
void main(){gl_Position=ModelViewMat*vec4(Position,1.0);relativePosition=Position+ModelOffset;blockUv=UV0;maskUv=UV3;tint=Color;}
@@ -0,0 +1,15 @@
#version 330
#extension GL_ARB_separate_shader_objects : require
#include <sanctuary:bloom_scene.glsl>
uniform sampler2D InputTexture;
layout(location=0) in vec2 texCoord;
layout(location=0) out vec4 fragColor;
void main(){
fragColor=vec4(0.0);
if(texture(WorldDepth,texCoord).r>0.0)return;
vec3 ray=normalize(bloomPosition(texCoord,0.00001));
float celestial=max(step(0.955,dot(ray,SunDirection.xyz))*SunDirection.w,step(0.975,dot(ray,MoonDirection.xyz))*MoonDirection.w);
vec3 color=texture(InputTexture,texCoord).rgb;
float luminance=dot(color,vec3(.2126,.7152,.0722));
fragColor=vec4(color*smoothstep(.72,.98,luminance)*celestial,0.0);
}
@@ -0,0 +1,18 @@
uniform sampler2D WorldDepth;
layout(std140) uniform BloomScene {
mat4 InverseViewProjection;
vec4 BloomParams;
vec4 SunDirection;
vec4 MoonDirection;
vec4 FogDistance;
vec4 FogInfo;
};
vec3 bloomPosition(vec2 uv,float depth) {
vec4 p=InverseViewProjection*vec4(uv*2.0-1.0,BloomParams.y>0.5?depth:depth*2.0-1.0,1.0);
return p.xyz/p.w;
}
float bloomFog(vec3 position) {
float a=clamp((max(length(position.xz),abs(position.y))-FogDistance.x)/max(.001,FogDistance.y-FogDistance.x),0.0,1.0);
float b=clamp((length(position)-FogDistance.z)/max(.001,FogDistance.w-FogDistance.z),0.0,1.0);
return 1.0-max(a,b)*FogInfo.x;
}
+1 -1
View File
@@ -1,6 +1,6 @@
name = "Sanctuary"
author = "KOKA99CAB"
version = "beta.129"
version = "beta.131"
pack-format = "packwiz:1.1.0"
[index]