303 lines
9.7 KiB
C++
303 lines
9.7 KiB
C++
/******************************************************************************
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* Spine Runtimes License Agreement
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* Last updated April 5, 2025. Replaces all prior versions.
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*
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* Copyright (c) 2013-2025, Esoteric Software LLC
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*
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* Integration of the Spine Runtimes into software or otherwise creating
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* derivative works of the Spine Runtimes is permitted under the terms and
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* conditions of Section 2 of the Spine Editor License Agreement:
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* http://esotericsoftware.com/spine-editor-license
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*
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* Otherwise, it is permitted to integrate the Spine Runtimes into software
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* or otherwise create derivative works of the Spine Runtimes (collectively,
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* "Products"), provided that each user of the Products must obtain their own
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* Spine Editor license and redistribution of the Products in any form must
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* include this license and copyright notice.
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*
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* THE SPINE RUNTIMES ARE PROVIDED BY ESOTERIC SOFTWARE LLC "AS IS" AND ANY
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* EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
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* WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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* DISCLAIMED. IN NO EVENT SHALL ESOTERIC SOFTWARE LLC BE LIABLE FOR ANY
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* DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
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* (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES,
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* BUSINESS INTERRUPTION, OR LOSS OF USE, DATA, OR PROFITS) HOWEVER CAUSED AND
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* ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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* THE SPINE RUNTIMES, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*****************************************************************************/
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#include <spine/spine.h>
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#include <spine/InheritTimeline.h>
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#include "SkeletonSerializer.h"
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <stdarg.h>
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#include <locale.h>
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#include <math.h>
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static void printBonePoseJson(spine::BonePose &pose) {
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printf("{");
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printf("\"x\":%.6f,\"y\":%.6f,\"rotation\":%.6f,\"scaleX\":%.6f,\"scaleY\":%.6f,\"shearX\":%.6f,\"shearY\":%.6f,", pose.getX(), pose.getY(),
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pose.getRotation(), pose.getScaleX(), pose.getScaleY(), pose.getShearX(), pose.getShearY());
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printf("\"a\":%.6f,\"b\":%.6f,\"c\":%.6f,\"d\":%.6f,", pose.getA(), pose.getB(), pose.getC(), pose.getD());
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printf("\"worldX\":%.6f,\"worldY\":%.6f,\"worldRotationX\":%.6f,\"worldRotationY\":%.6f,\"worldScaleX\":%.6f,\"worldScaleY\":%.6f",
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pose.getWorldX(), pose.getWorldY(), pose.getWorldRotationX(), pose.getWorldRotationY(), pose.getWorldScaleX(), pose.getWorldScaleY());
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printf("}");
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}
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static void printSlotPoseJson(spine::SlotPose &pose) {
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printf("{");
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printf("\"attachment\":");
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spine::Attachment *attachment = pose.getAttachment();
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if (attachment)
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printf("\"%s\"", attachment->getName().buffer());
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else
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printf("null");
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printf(",\"sequenceIndex\":%d,", pose.getSequenceIndex());
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spine::Color &color = pose.getColor();
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printf("\"color\":{\"r\":%.6f,\"g\":%.6f,\"b\":%.6f,\"a\":%.6f}", color.r, color.g, color.b, color.a);
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printf("}");
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}
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static void printSkeletonFrameJson(spine::Skeleton &skeleton, int frame) {
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printf("\n=== ANIMATION FRAME %d ===\n", frame);
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printf("{");
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printf("\"frame\":%d,", frame);
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printf("\"time\":%.6f,", skeleton.getTime());
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printf("\"bones\":[");
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spine::Array<spine::Bone *> &bones = skeleton.getBones();
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for (size_t i = 0; i < bones.size(); i++) {
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if (i) printf(",");
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spine::Bone *bone = bones[i];
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printf("{");
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printf("\"name\":\"%s\",", bone->getData().getName().buffer());
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printf("\"pose\":");
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printBonePoseJson(bone->getPose());
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printf(",\"appliedPose\":");
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printBonePoseJson(bone->getAppliedPose());
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printf("}");
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}
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printf("],\"slots\":[");
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spine::Array<spine::Slot *> &slots = skeleton.getSlots();
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for (size_t i = 0; i < slots.size(); i++) {
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if (i) printf(",");
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spine::Slot *slot = slots[i];
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printf("{");
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printf("\"name\":\"%s\",", slot->getData().getName().buffer());
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printf("\"pose\":");
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printSlotPoseJson(slot->getPose());
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printf(",\"appliedPose\":");
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printSlotPoseJson(slot->getAppliedPose());
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printf("}");
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}
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printf("]}");
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}
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using namespace spine;
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// Provide the default extension implementation
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namespace spine {
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SpineExtension *getDefaultExtension() {
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return new DefaultSpineExtension();
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}
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}// namespace spine
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// Mock texture that doesn't require OpenGL
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class MockTexture {
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public:
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int width = 1024;
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int height = 1024;
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};
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// Custom texture loader that doesn't load actual textures
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class HeadlessTextureLoader : public TextureLoader {
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public:
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virtual void load(AtlasPage &page, const String &path) override {
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// Don't load actual texture, just set dimensions
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page.texture = new MockTexture();
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page.width = 1024;
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page.height = 1024;
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}
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virtual void unload(void *texture) override {
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delete static_cast<MockTexture *>(texture);
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}
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};
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static bool testInheritTimelineBoneIndex() {
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InheritTimeline timeline(1, 123);
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if (timeline.getBoneIndex() != 123) {
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fprintf(stderr, "InheritTimeline bone index was not initialized correctly\n");
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return false;
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}
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return true;
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}
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int main(int argc, char *argv[]) {
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// Set locale to ensure consistent number formatting
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setlocale(LC_ALL, "C");
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if (!testInheritTimelineBoneIndex()) return 1;
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if (argc < 3) {
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fprintf(stderr, "Usage: HeadlessTest <skeleton-path> <atlas-path> [animation-name] [animation-name-2]\n");
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return 1;
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}
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Bone::setYDown(false);
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const char *skeletonPath = argv[1];
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const char *atlasPath = argv[2];
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const char *animationName = argc >= 4 ? argv[3] : nullptr;
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const char *animationName2 = argc >= 5 ? argv[4] : nullptr;
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// Load atlas with headless texture loader
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HeadlessTextureLoader textureLoader;
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Atlas *atlas = new Atlas(atlasPath, &textureLoader);
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// Load skeleton data
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SkeletonData *skeletonData = nullptr;
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if (strstr(skeletonPath, ".json") != nullptr) {
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SkeletonJson json(*atlas);
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skeletonData = json.readSkeletonDataFile(skeletonPath);
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} else {
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SkeletonBinary binary(*atlas);
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skeletonData = binary.readSkeletonDataFile(skeletonPath);
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}
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if (!skeletonData) {
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fprintf(stderr, "Failed to load skeleton data\n");
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delete atlas;
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return 1;
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}
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// Create skeleton instance
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Skeleton skeleton(*skeletonData);
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// Set animation if provided
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AnimationState *state = nullptr;
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AnimationStateData *stateData = nullptr;
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if (animationName != nullptr) {
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// Create animation state only when needed
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stateData = new AnimationStateData(*skeletonData);
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state = new AnimationState(*stateData);
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// Find and set animation
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Animation *animation = skeletonData->findAnimation(animationName);
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if (!animation) {
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fprintf(stderr, "Animation not found: %s\n", animationName);
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delete skeletonData;
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delete atlas;
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return 1;
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}
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state->setAnimation(0, *animation, true);
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// Update and apply
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state->update(0.016f);
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state->apply(skeleton);
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}
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skeleton.updateWorldTransform(Physics_Update);
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// Use SkeletonSerializer for JSON output
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SkeletonSerializer serializer;
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// Print skeleton data
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printf("=== SKELETON DATA ===\n");
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printf("%s", serializer.serializeSkeletonData(skeletonData).buffer());
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// Print skeleton state
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printf("\n=== SKELETON STATE ===\n");
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printf("%s", serializer.serializeSkeleton(&skeleton).buffer());
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// Print animation state only if animation was loaded
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if (state != nullptr) {
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printf("\n=== ANIMATION STATE ===\n");
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printf("%s", serializer.serializeAnimationState(state).buffer());
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}
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// Full animation sampling: if a single animation is provided, sample skeleton state for every
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// frame across the full non-looping animation duration at 60 FPS.
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if (state != nullptr && animationName2 == nullptr) {
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Animation *animation = skeletonData->findAnimation(animationName);
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if (!animation) {
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fprintf(stderr, "Animation not found: %s\n", animationName);
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delete state;
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delete stateData;
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delete skeletonData;
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delete atlas;
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return 1;
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}
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skeleton.setupPose();
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state->clearTracks();
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state->setAnimation(0, *animation, false);
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state->apply(skeleton);
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skeleton.updateWorldTransform(Physics_Update);
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int frameCount = (int) ceilf(animation->getDuration() * 60.0f);
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for (int i = 0; i <= frameCount; i++) {
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if (i > 0) {
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state->update(1 / 60.0f);
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state->apply(skeleton);
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skeleton.updateWorldTransform(Physics_Update);
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}
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printSkeletonFrameJson(skeleton, i);
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}
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}
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// Transition test: if a second animation is provided, play A for 10 frames, transition to B,
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// then sample skeleton state at frames 5, 10, 15, 20 during the mix.
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if (state != nullptr && animationName2 != nullptr) {
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Animation *animation2 = skeletonData->findAnimation(animationName2);
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if (!animation2) {
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fprintf(stderr, "Animation not found: %s\n", animationName2);
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delete state;
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delete stateData;
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delete skeletonData;
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delete atlas;
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return 1;
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}
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// Reset skeleton and state
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skeleton.setupPose();
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state->clearTracks();
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state->setAnimation(0, *skeletonData->findAnimation(animationName), true);
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// Run 10 frames of animation A
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for (int i = 0; i < 10; i++) {
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state->update(1 / 60.0f);
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state->apply(skeleton);
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skeleton.updateWorldTransform(Physics_Update);
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}
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// Transition to animation B
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state->setAnimation(0, *animation2, true);
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// Run 20 frames through the mix, serializing at frames 5, 10, 15, 20
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for (int i = 1; i <= 20; i++) {
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state->update(1 / 60.0f);
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state->apply(skeleton);
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skeleton.updateWorldTransform(Physics_Update);
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if (i == 5 || i == 10 || i == 15 || i == 20) {
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SkeletonSerializer transSerializer;
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printf("\n=== TRANSITION FRAME %d ===\n", i);
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printf("%s", transSerializer.serializeSkeleton(&skeleton).buffer());
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}
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}
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}
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// Cleanup
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if (state != nullptr) {
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delete state;
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}
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if (stateData != nullptr) {
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delete stateData;
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}
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delete skeletonData;
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delete atlas;
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return 0;
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} |