Search Y function

This commit is contained in:
unknown 2022-02-18 21:37:53 +01:00
parent 62b30b2f0f
commit ffd4452c3a
36 changed files with 4096 additions and 435 deletions

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@ -2,7 +2,7 @@
<Project>
<ProjectOutputs>
<ProjectOutput>
<FullPath>C:\Users\pyron\Documents\grafika\submarine\Debug\grk-cw2.exe</FullPath>
<FullPath>C:\Users\pyron\Documents\grafika\projekt_grafika\Debug\grk-cw2.exe</FullPath>
</ProjectOutput>
</ProjectOutputs>
<ContentFiles />

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@ -1 +1 @@
 grk-cw2.vcxproj -> C:\Users\pyron\Documents\grafika\submarine\Debug\grk-cw2.exe
 grk-cw2.vcxproj -> C:\Users\pyron\Documents\grafika\projekt_grafika\Debug\grk-cw2.exe

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@ -1,2 +1,2 @@
PlatformToolSet=v143:VCToolArchitecture=Native32Bit:VCToolsVersion=14.30.30705:TargetPlatformVersion=10.0.19041.0:
Debug|Win32|C:\Users\pyron\Documents\grafika\submarine\|
Debug|Win32|C:\Users\pyron\Documents\grafika\projekt_grafika\|

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0
cw 2/models/23129.txt Normal file
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# Blender v3.0.0 OBJ File: 'untitled.blend'
# www.blender.org
o Plane_Plane.001
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cw 2/models/test.obj Normal file

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@ -6,6 +6,7 @@
#include <cmath>
#include <vector>
#include <cstdlib>
#include <chrono>
#include "Shader_Loader.h"
#include "Render_Utils.h"
@ -14,12 +15,12 @@
#include "SOIL/stb_image_aug.h"
#define SIZE 1.0f
#define SCREEN_X 1920
#define SCREEN_Y 1080
#define SEAWEED_NUM 100
#define SCREEN_X 1280
#define SCREEN_Y 720
#define SEAWEED_NUM 200
#define FISH_NUM 100
#define PARTICLE_NUM 300
#define GROUND_XY 400
#define GROUND_XY 168
#define GEYSER_NUM 3
Core::Shader_Loader shaderLoader;
@ -109,6 +110,7 @@ glm::vec3 cameraSide;
glm::vec3 cameraDir;
glm::vec3 lightDir = glm::normalize(glm::vec3(-0.5, -1, -0.5));
glm::mat4 cameraMatrix, perspectiveMatrix;
glm::mat4 groundMatrix;
glm::quat rotation = glm::quat(1, 0, 0, 0);
std::vector<glm::vec3> seaweedPosition;
@ -122,6 +124,26 @@ void initGround() {
}
glm::vec3 search_for_y(float objX, float objZ, obj::Model model)
{
float y = 0;
float x = 0;
float z = 0;
float diff = 1000000;
float new_diff = 0;
int test = 0;
for (int j = 0; j < model.vertex.size(); j += 3) {
x = model.vertex[j];
z = model.vertex[j + 2];
new_diff = abs(objX - x) + abs(objZ - z);
if (new_diff < diff) {
diff = new_diff;
y = model.vertex[j + 1];
}
}
return glm::vec3(objX, y, objZ);
}
void keyboard(unsigned char key, int x, int y)
{
float angleSpeed = 0.05f;
@ -249,9 +271,10 @@ void initBubbles() {
}
void initSeaweed() {
for (int i = 0; i < SEAWEED_NUM; i++) {
auto x = static_cast<float>(rand() % GROUND_XY - (GROUND_XY / 2));
auto z = static_cast<float>(rand() % GROUND_XY - (GROUND_XY / 2));
seaweedPosition.push_back(glm::vec3(x,0.1f,z));
float plantX = static_cast<float>(rand() % (2 * GROUND_XY) - GROUND_XY);
float plantZ = static_cast<float>(rand() % (2 * GROUND_XY) - GROUND_XY);
glm::vec3 plant_pos = search_for_y(plantX, plantZ, groundModel);
seaweedPosition.push_back(plant_pos);
}
}
@ -259,8 +282,8 @@ void initFish() {
for (int i = 0; i < FISH_NUM; i++) {
fish new_fish;
auto x = static_cast<float>(rand() % GROUND_XY - (GROUND_XY / 2));
auto z = static_cast<float>(rand() % GROUND_XY - (GROUND_XY / 2));
auto x = static_cast<float>(rand() % (2* GROUND_XY) - GROUND_XY );
auto z = static_cast<float>(rand() % (2 * GROUND_XY) - GROUND_XY );
new_fish.position = glm::vec3(x, static_cast<float>(rand() % 40 + 10), z);
new_fish.rotation = rand() % 4;
@ -323,14 +346,15 @@ void renderSubmarine()
}
void renderGround()
{
float scale = static_cast<float>(GROUND_XY) / 100.0f;
//glm::mat4 groundMatrix = glm::translate(glm::vec3(0, 0, 0)) * glm::rotate(glm::radians(90.0f), glm::vec3(0, 0, -1)) * glm::scale(glm::vec3(scale));
glm::mat4 groundMatrix = glm::translate(glm::vec3(0, -5, 0)) * glm::scale(glm::vec3(3));
//groundMatrix = glm::translate(glm::vec3(0, -5, 0)) *glm::scale(glm::vec3(3));
groundMatrix = glm::translate(glm::vec3(0, 0, 0));
drawObjectTexture(&groundContext, groundMatrix, groundTexture);
}
void renderSeaweed()
{
for (int i = 0; i < SEAWEED_NUM; i++) {
glm::mat4 seaweedMatrix = glm::translate(seaweedPosition[i]);
drawObjectColor(&seaweedContext, seaweedMatrix, glm::vec3(0.1f, 0.6f, 0.1f));
}
@ -339,6 +363,7 @@ void renderFish()
{
glm::mat4 fishMatrix;
float fishSpeed = 0.05f;
for (int i = 0; i < FISH_NUM; i++) {
int result = rand() % (20000 - fishList[i].counter);
if (result == 0)
@ -354,16 +379,16 @@ void renderFish()
switch (fishList[i].rotation)
{
case 0:
fishList[i].position.z -= 0.008f;
fishList[i].position.z -= fishSpeed;
break;
case 1:
fishList[i].position.x -= 0.008f;
fishList[i].position.x -= fishSpeed;
break;
case 2:
fishList[i].position.z += 0.008f;
fishList[i].position.z += fishSpeed;
break;
case 3:
fishList[i].position.x += 0.008f;
fishList[i].position.x += fishSpeed;
break;
}
fishMatrix = glm::translate(fishList[i].position) * glm::rotate(glm::radians(fishList[i].rotation * 90.0f), glm::vec3(0, 1, 0));
@ -396,7 +421,8 @@ void renderGeyser()
{
for (int j = 0; j < GEYSER_NUM; j++)
{
glm::mat4 gayserModelMatrix = glm::translate(geyserList[j]) * scale(glm::vec3(0.006f)) * scale(glm::vec3(1.0f, 3.0f, 1.0f));
glm::vec3 new_geyser = search_for_y(geyserList[j].x, geyserList[j].z, groundModel);
glm::mat4 gayserModelMatrix = glm::translate(new_geyser) * scale(glm::vec3(0.006f)) * scale(glm::vec3(1.0f, 3.0f, 1.0f));
drawObjectTexture(&geyserContext, gayserModelMatrix, geyserTexture);
}
}
@ -454,7 +480,6 @@ void init()
initGeyser();
initBubbles();
initGround();
}
void shutdown()

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