remove MAXFLOAT define
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@@ -2638,7 +2638,7 @@ static void sph_particle_courant(SPHData *sphdata, SPHRangeData *pfr)
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mul_v3_v3fl(sphdata->flow, flow, 1.0f / pfr->tot_neighbors);
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}
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else {
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sphdata->element_size = MAXFLOAT;
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sphdata->element_size = FLT_MAX;
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copy_v3_v3(sphdata->flow, flow);
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}
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}
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@@ -75,11 +75,6 @@
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#define M_LN10 2.30258509299404568402
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#endif
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/* non-standard defines, used in some places */
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#ifndef MAXFLOAT
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#define MAXFLOAT ((float)3.40282347e+38)
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#endif
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#if defined(__GNUC__)
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# define NAN_FLT __builtin_nanf("")
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#else
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@@ -34,7 +34,7 @@ ChunkOrder::ChunkOrder()
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void ChunkOrder::determineDistance(ChunkOrderHotspot **hotspots, unsigned int numberOfHotspots)
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{
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unsigned int index;
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double distance = MAXFLOAT;
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double distance = FLT_MAX;
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for (index = 0; index < numberOfHotspots; index++) {
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ChunkOrderHotspot *hotspot = hotspots[index];
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double ndistance = hotspot->determineDistance(this->m_x, this->m_y);
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@@ -371,7 +371,7 @@ void *DilateStepOperation::initializeTileData(rcti *rect)
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float *rectf = result->buffer;
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// temp holds maxima for every step in the algorithm, buf holds a
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// single row or column of input values, padded with MAXFLOATs to
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// single row or column of input values, padded with FLT_MAX's to
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// simplify the logic.
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float *temp = (float *)MEM_mallocN(sizeof(float) * (2 * window - 1), "dilate erode temp");
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float *buf = (float *)MEM_mallocN(sizeof(float) * (max(bwidth, bheight) + 5 * half_window), "dilate erode buf");
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@@ -380,7 +380,7 @@ void *DilateStepOperation::initializeTileData(rcti *rect)
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// first pass, horizontal dilate/erode
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for (y = ymin; y < ymax; y++) {
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for (x = 0; x < bwidth + 5 * half_window; x++) {
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buf[x] = -MAXFLOAT;
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buf[x] = -FLT_MAX;
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}
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for (x = xmin; x < xmax; ++x) {
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buf[x - rect->xmin + window - 1] = buffer[4 * (y * width + x)];
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@@ -405,7 +405,7 @@ void *DilateStepOperation::initializeTileData(rcti *rect)
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// second pass, vertical dilate/erode
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for (x = 0; x < bwidth; x++) {
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for (y = 0; y < bheight + 5 * half_window; y++) {
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buf[y] = -MAXFLOAT;
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buf[y] = -FLT_MAX;
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}
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for (y = ymin; y < ymax; y++) {
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buf[y - rect->ymin + window - 1] = rectf[(y - ymin) * bwidth + x];
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@@ -498,7 +498,7 @@ void *ErodeStepOperation::initializeTileData(rcti *rect)
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float *rectf = result->buffer;
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// temp holds maxima for every step in the algorithm, buf holds a
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// single row or column of input values, padded with MAXFLOATs to
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// single row or column of input values, padded with FLT_MAX's to
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// simplify the logic.
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float *temp = (float *)MEM_mallocN(sizeof(float) * (2 * window - 1), "dilate erode temp");
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float *buf = (float *)MEM_mallocN(sizeof(float) * (max(bwidth, bheight) + 5 * half_window), "dilate erode buf");
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@@ -507,7 +507,7 @@ void *ErodeStepOperation::initializeTileData(rcti *rect)
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// first pass, horizontal dilate/erode
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for (y = ymin; y < ymax; y++) {
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for (x = 0; x < bwidth + 5 * half_window; x++) {
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buf[x] = MAXFLOAT;
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buf[x] = FLT_MAX;
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}
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for (x = xmin; x < xmax; ++x) {
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buf[x - rect->xmin + window - 1] = buffer[4 * (y * width + x)];
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@@ -532,7 +532,7 @@ void *ErodeStepOperation::initializeTileData(rcti *rect)
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// second pass, vertical dilate/erode
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for (x = 0; x < bwidth; x++) {
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for (y = 0; y < bheight + 5 * half_window; y++) {
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buf[y] = MAXFLOAT;
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buf[y] = FLT_MAX;
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}
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for (y = ymin; y < ymax; y++) {
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buf[y - rect->ymin + window - 1] = rectf[(y - ymin) * bwidth + x];
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@@ -3262,7 +3262,7 @@ static void rna_def_bake_data(BlenderRNA *brna)
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RNA_def_property_update(prop, NC_SCENE | ND_RENDER_OPTIONS, NULL);
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prop = RNA_def_property(srna, "cage_extrusion", PROP_FLOAT, PROP_NONE);
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RNA_def_property_range(prop, 0.0, MAXFLOAT);
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RNA_def_property_range(prop, 0.0, FLT_MAX);
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RNA_def_property_ui_range(prop, 0.0, 1.0, 1, 3);
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RNA_def_property_ui_text(prop, "Cage Extrusion",
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"Distance to use for the inward ray cast when using selected to active");
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