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/*
Minetest
Copyright (C) 2010-2013 celeron55, Perttu Ahola <celeron55@gmail.com>

This program is free software; you can redistribute it and/or modify
it under the terms of the GNU Lesser General Public License as published by
the Free Software Foundation; either version 2.1 of the License, or
(at your option) any later version.

This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
GNU Lesser General Public License for more details.

You should have received a copy of the GNU Lesser General Public License along
with this program; if not, write to the Free Software Foundation, Inc.,
51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
*/

#include "camera.h"
#include "debug.h"
#include "client.h"
#include "map.h"
#include "clientmap.h"     // MapDrawControl
#include "player.h"
#include <cmath>
#include "settings.h"
#include "wieldmesh.h"
#include "noise.h"         // easeCurve
#include "gamedef.h"
#include "sound.h"
#include "event.h"
#include "profiler.h"
#include "util/numeric.h"
#include "util/mathconstants.h"
#include "constants.h"
#include "fontengine.h"

#define CAMERA_OFFSET_STEP 200

#include "nodedef.h"

Camera::Camera(scene::ISceneManager* smgr, MapDrawControl& draw_control,
		IGameDef *gamedef):
	m_playernode(NULL),
	m_headnode(NULL),
	m_cameranode(NULL),

	m_wieldmgr(NULL),
	m_wieldnode(NULL),

	m_draw_control(draw_control),
	m_gamedef(gamedef),

	m_camera_position(0,0,0),
	m_camera_direction(0,0,0),
	m_camera
		int x0 = pr.range(nmin.X, nmax.X - csize + 1);
		int y0 = pr.range(nmin.Y, nmax.Y - csize + 1);
		int z0 = pr.range(nmin.Z, nmax.Z - csize + 1);

		if ((flags & OREFLAG_USE_NOISE) &&
			(NoisePerlin3D(&np, x0, y0, z0, mapseed) < nthresh))
			continue;

		if (biomemap && !biomes.empty()) {
			u32 index = sizex * (z0 - nmin.Z) + (x0 - nmin.X);
			std::set<u8>::iterator it = biomes.find(biomemap[index]);
			if (it == biomes.end())
				continue;
		}

		for (u32 z1 = 0; z1 != csize; z1++)
		for (u32 y1 = 0; y1 != csize; y1++)
		for (u32 x1 = 0; x1 != csize; x1++) {
			if (pr.range(1, cvolume) > clust_num_ores)
				continue;

			u32 i = vm->m_area.index(x0 + x1, y0 + y1, z0 + z1);
			/* TODO: Add a callback function so these can be updated when a setting
	 *       changes.  At this point in time it doesn't matter (e.g. /set
	 *       is documented to change server settings only)
	 *
	 * TODO: Local caching of settings is not optimal and should at some stage
	 *       be updated to use a global settings object for getting thse values
	 *       (as opposed to the this local caching). This can be addressed in
	 *       a later release.
	 */
	m_cache_fall_bobbing_amount = g_settings->getFloat("fall_bobbing_amount");
	m_cache_view_bobbing_amount = g_settings->getFloat("view_bobbing_amount");
	m_cache_fov                 = g_settings->getFloat("fov");
	m_cache_view_bobbing        = g_settings->getBool("view_bobbing");
	m_nametags.clear();
}

Camera::~Camera()
{
	m_wieldmgr->drop();
}

bool Camera::successfullyCreated(std::string &error_message)
{
	if (!m_playernode) {
		error_message = "Failed to create the player scene node";
	} else if (!m_headnode) {
		error_message = "Failed to create the head scene node";
	} else if (!m_cameranode) {
		error_message = "Failed to create the camera scene node";
	} else if (!m_wieldmgr) {
		error_message = "Failed to create the wielded item scene manager";
	} else if (!m_wieldnode) {
		error_message = "Failed to create the wielded item scene node";
	} else {
		error_message.clear();
	}
	return error_message.empty();
}

// Returns the fractional part of x
inline f32 my_modf(f32 x)
{
	double dummy;
	return modf(x, &dummy);
}

void Camera::step(f32 dtime)
{
	if(m_view_bobbing_fall > 0)
	{
		m_view_bobbing_fall -= 3 * dtime;
		
		}

		u16 height = pr.range(column_height_min, column_height_max);
		int ymidpoint = y_start + noiseval;
		int y0 = ymidpoint - height * (1 - column_midpoint_factor);
		int y1 = y0 + height;

		for (int y = y0; y < y1; y++) {
			u32 i = vm->m_area.index(x, y, z);
			if (!vm->m_area.contains(i))
				continue;
			if (!CONTAINS(c_wherein, vm->m_data[i].getContent()))
				continue;

			vm->m_data[i] = n_ore;
		}
	}
}


///////////////////////////////////////////////////////////////////////////////

void OreBlob::generate(MMVManip *vm, int mapseed, u32 blockseed,
	v3s16 nmin, v3s16 nmax, u8 *biomemap)
{
	PseudoRandom pr(blockseed + 2404);
	MapNode n_ore(c_ore, 0, ore_param2);

	u32 sizex  = (nmax.X - nmin.X + 1);
	u32 volume = (nmax.X -
			if (m_view_bobbing_anim <= 0 || m_view_bobbing_anim >= 1 ||
					fabs(m_view_bobbing_anim - 0.5) < 0.01) {
				m_view_bobbing_anim = 0;
				m_view_bobbing_state = 0;
			}
		}
		else {
			float was = m_view_bobbing_anim;
			m_view_bobbing_anim = my_modf(m_view_bobbing_anim + offset);
			bool step = (was == 0 ||
					(was < 0.5f && m_view_bobbing_anim >= 0.5f) ||
					(was > 0.5f && m_view_bobbing_anim <= 0.5f));
			if(step) {
				MtEvent *e = new SimpleTriggerEvent("ViewBobbingStep");
				m_gamedef->event()->put(e);
			}
		}
	}

	if (m_digging_button != -1)
	{
		f32 offset = dtime * 3.5;
		float m_digging_anim_was = m_digging_anim;
		m_digging_anim += offset;
		if (m_digging_anim >= 1)
		{
			m_digging_anim = 0;
			m_digging_button = -1;
		}
		float lim = 0.15;
		if(m_digging_anim_was < lim && m_digging_anim >= lim)
		{
			if(m_digging_button == 0)
			{
				MtEvent *e = new SimpleTriggerEvent("CameraPunchLeft");
				m_gamedef->event()->put(e);
			} else if(m_digging_button == 1) {
				MtEvent *e = new SimpleTriggerEvent("CameraPunchRight");
				m_gamedef->event()->put(e);
			}
		}
	}
}

void Camera::update(LocalPlayer* player, f32 frametime, f32 busytime,
		f32 tool_reload_ratio, ClientEnvironment &c_env)
{
	// Get player position
	// Smooth the movement when walking up stairs
	v3f old_player_position = m_playernode->getPosition();
	v3f player_position = player->getPosition();
	if (player->isAttached && player->parent)
		player_position = player->parent->getPosition();
	//if(player->touching_ground && player_position.Y > old_player_position.Y)
	if(player->touching_ground &&
			player_position.Y > old_player_position-= (sqrt(xdist * xdist + ydist * ydist + zdist * zdist) / csize);

			if (noiseval < nthresh)
				continue;

			vm->m_data[i] = n_ore;
		}
	}
}


///////////////////////////////////////////////////////////////////////////////

OreVein::OreVein()
{
	noise2 = NULL;
}


OreVein::~OreVein()
{
	delete noise2;
}


void OreVein::generate(MMVManip *vm, int mapseed, u32 blockseed,
	v3s16 nmin, v3s16 nmax, u8 *biomemap)
{
	PseudoRandom pr(blockseed + 520);
	MapNode n_ore(c_ore, 0, ore_param2);

	u32 sizex = (nmax.X - nmin.X + 1);

	if (!noise) {
		int sx = nmax.X - nmin.X + 1;
		int sy = nmax.Y else if(m_view_bobbing_fall == 0) // Initialize effect
			m_view_bobbing_fall = 1;

		// Convert 0 -> 1 to 0 -> 1 -> 0
		fall_bobbing = m_view_bobbing_fall < 0.5 ? m_view_bobbing_fall * 2 : -(m_view_bobbing_fall - 0.5) * 2 + 1;
		// Smoothen and invert the above
		fall_bobbing = sin(fall_bobbing * 0.5 * M_PI) * -1;
		// Amplify according to the intensity of the impact
		fall_bobbing *= (1 - rangelim(50 / player->camera_impact, 0, 1)) * 5;

		fall_bobbing *= m_cache_fall_bobbing_amount;
	}

	// Calculate players eye offset for different camera modes
	v3f PlayerEyeOffset = player->getEyeOffset();
	if (m_camera_mode == CAMERA_MODE_FIRST)
		PlayerEyeOffset += player->eye_offset_first;
	else
		PlayerEyeOffset += player->eye_offset_third;

	// Set head node transformation
	m_headnode->setPosition(PlayerEyeOffset+v3f(0,cameratilt*-player->hurt_tilt_strength+fall_bobbing,0));
	m_headnode->setRotation(v3f(player->getPitch(), 0, cameratilt*player->hurt_tilt_strength));
	m_headnode->updateAbsolutePosition();

	// Compute relative camera position and target
	v3f rel_cam_pos = v3f(0,0,0);
	v3f rel_cam_target = v3f(0,0,1);
	v3f rel_cam_up = v3f(0,1,0);

	if (m_view_bobbing_anim != 0 && m_camera_mode < CAMERA_MODE_THIRD)
	{n>
			noise2->perlinMap3D(nmin.X, nmin.Y, nmin.Z);
		}

		// randval ranges from -1..1
		float randval   = (float)pr.next() / (pr.RANDOM_RANGE / 2) - 1.f;
		float noiseval  = contour(noise->result[index]);
		float noiseval2 = contour(noise2->result[index]);
		if (noiseval * noiseval2 + randval * random_factor < nthresh)
			continue;

		vm->m_data[i] = n_ore;
	}
}