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Fix spelling of noise_threshold
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@ -763,7 +763,7 @@ Creates veins of ore varying in density by according to the intersection of two
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instances of 3d perlin noise with diffferent seeds, both described by
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`noise_params`. `random_factor` varies the influence random chance has on
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placement of an ore inside the vein, which is `1` by default. Note that
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modifying this parameter may require adjusting `noise_threshhold`.
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modifying this parameter may require adjusting `noise_threshold`.
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The parameters `clust_scarcity`, `clust_num_ores`, and `clust_size` are ignored
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by this ore type. This ore type is difficult to control since it is sensitive
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to small changes. The following is a decent set of parameters to work from:
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@ -777,7 +777,7 @@ to small changes. The following is a decent set of parameters to work from:
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persist = 0.5,
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flags = "eased",
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},
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noise_threshhold = 1.6
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noise_threshold = 1.6
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WARNING: Use this ore type *very* sparingly since it is ~200x more
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computationally expensive than any other ore.
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@ -3572,7 +3572,7 @@ Definition tables
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y_max = 64,
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flags = "",
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-- ^ Attributes for this ore generation
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noise_threshhold = 0.5,
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noise_threshold = 0.5,
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-- ^ If noise is above this threshold, ore is placed. Not needed for a uniform distribution
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noise_params = {offset=0, scale=1, spread={x=100, y=100, z=100}, seed=23, octaves=3, persist=0.70}
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-- ^ NoiseParams structure describing the perlin noise used for ore distribution.
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@ -36,7 +36,7 @@ minetest.register_ore({
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clust_size = 7,
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y_min = -15,
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y_max = 0,
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noise_threshhold = 0,
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noise_threshold = 0,
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noise_params = {
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offset=0.35,
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scale=0.2,
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@ -61,7 +61,7 @@ public:
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s16 y_max;
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u8 ore_param2; // to set node-specific attributes
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u32 flags; // attributes for this ore
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float nthresh; // threshhold for noise at which an ore is placed
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float nthresh; // threshold for noise at which an ore is placed
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NoiseParams np; // noise for distribution of clusters (NULL for uniform scattering)
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Noise *noise;
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std::set<u8> biomes;
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@ -99,17 +99,17 @@ u32 PcgRandom::range(u32 bound)
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Using rand() % 3, the number 0 would be twice as likely to appear.
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With a very large RNG range, the effect becomes less prevalent but
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still present. This can be solved by modifying the range of the RNG
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to become a multiple of bound by dropping values above the a threshhold.
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In our example, threshhold == 4 - 3 = 1 % 3 == 1, so reject 0, thus
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to become a multiple of bound by dropping values above the a threshold.
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In our example, threshold == 4 - 3 = 1 % 3 == 1, so reject 0, thus
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making the range 3 with no bias.
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This loop looks dangerous, but will always terminate due to the
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RNG's property of uniformity.
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*/
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u32 threshhold = -bound % bound;
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u32 threshold = -bound % bound;
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u32 r;
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while ((r = next()) < threshhold)
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while ((r = next()) < threshold)
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;
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return r % bound;
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@ -944,10 +944,19 @@ int ModApiMapgen::l_register_ore(lua_State *L)
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ore->clust_scarcity = getintfield_default(L, index, "clust_scarcity", 1);
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ore->clust_num_ores = getintfield_default(L, index, "clust_num_ores", 1);
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ore->clust_size = getintfield_default(L, index, "clust_size", 0);
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ore->nthresh = getfloatfield_default(L, index, "noise_threshhold", 0);
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ore->noise = NULL;
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ore->flags = 0;
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//// Get noise_threshold
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warn_if_field_exists(L, index, "noise_threshhold",
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"Deprecated: new name is \"noise_threshold\".");
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int nthresh;
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if (!getintfield(L, index, "noise_threshold", nthresh) &&
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!getintfield(L, index, "noise_threshhold", nthresh))
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nthresh = 0;
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ore->nthresh = nthresh;
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//// Get y_min/y_max
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warn_if_field_exists(L, index, "height_min",
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"Deprecated: new name is \"y_min\".");
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