lovr/src/api/types/mesh.c

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#include "api.h"
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int l_lovrMeshAttachAttributes(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
Mesh* other = luax_checktype(L, 2, Mesh);
int instanceDivisor = luaL_optinteger(L, 3, 0);
if (lua_isnoneornil(L, 4)) {
VertexFormat* format = lovrMeshGetVertexFormat(other);
for (int i = 0; i < format->count; i++) {
lovrMeshAttachAttribute(mesh, other, format->attributes[i].name, instanceDivisor);
}
} else if (lua_istable(L, 4)) {
int length = lua_objlen(L, 4);
for (int i = 0; i < length; i++) {
lua_rawgeti(L, -1, i + 1);
lovrMeshAttachAttribute(mesh, other, lua_tostring(L, -1), instanceDivisor);
lua_pop(L, 1);
}
} else {
int top = lua_gettop(L);
for (int i = 4; i <= top; i++) {
lovrMeshAttachAttribute(mesh, other, lua_tostring(L, i), instanceDivisor);
}
}
return 0;
}
int l_lovrMeshDetachAttribute(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
const char* name = luaL_checkstring(L, 2);
lovrMeshDetachAttribute(mesh, name);
return 0;
}
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int l_lovrMeshDrawInstanced(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
int instances = luaL_checkinteger(L, 2);
float transform[16];
luax_readtransform(L, 3, transform, 1);
lovrMeshDraw(mesh, transform, NULL, instances);
return 0;
}
int l_lovrMeshDraw(lua_State* L) {
lua_pushinteger(L, 1);
lua_insert(L, 2);
return l_lovrMeshDrawInstanced(L);
}
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int l_lovrMeshGetDrawMode(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
luax_pushenum(L, &MeshDrawModes, lovrMeshGetDrawMode(mesh));
return 1;
}
int l_lovrMeshSetDrawMode(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
MeshDrawMode* drawMode = (MeshDrawMode*) luax_checkenum(L, 2, &MeshDrawModes, "mesh draw mode");
lovrMeshSetDrawMode(mesh, *drawMode);
return 0;
}
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int l_lovrMeshGetVertexFormat(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
VertexFormat* format = lovrMeshGetVertexFormat(mesh);
return luax_pushvertexformat(L, format);
}
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int l_lovrMeshGetVertexCount(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
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lua_pushinteger(L, lovrMeshGetVertexCount(mesh));
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return 1;
}
int l_lovrMeshGetVertex(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
int index = luaL_checkint(L, 2) - 1;
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VertexPointer vertex = lovrMeshMap(mesh, index, 1, true, false);
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VertexFormat* format = lovrMeshGetVertexFormat(mesh);
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return luax_pushvertex(L, &vertex, format);
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}
int l_lovrMeshSetVertex(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
int index = luaL_checkint(L, 2) - 1;
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lovrAssert(index >= 0 && index < lovrMeshGetVertexCount(mesh), "Invalid mesh vertex index: %d", index + 1);
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VertexFormat* format = lovrMeshGetVertexFormat(mesh);
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VertexPointer vertex = lovrMeshMap(mesh, index, 1, false, true);
luax_setvertex(L, 3, &vertex, format);
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return 0;
}
int l_lovrMeshGetVertexAttribute(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
int vertexIndex = luaL_checkint(L, 2) - 1;
int attributeIndex = luaL_checkint(L, 3) - 1;
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VertexFormat* format = lovrMeshGetVertexFormat(mesh);
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lovrAssert(vertexIndex >= 0 && vertexIndex < lovrMeshGetVertexCount(mesh), "Invalid mesh vertex: %d", vertexIndex + 1);
lovrAssert(attributeIndex >= 0 && attributeIndex < format->count, "Invalid mesh attribute: %d", attributeIndex + 1);
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Attribute attribute = format->attributes[attributeIndex];
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VertexPointer vertex = lovrMeshMap(mesh, vertexIndex, 1, true, false);
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vertex.bytes += attribute.offset;
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return luax_pushvertexattribute(L, &vertex, attribute);
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}
int l_lovrMeshSetVertexAttribute(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
int vertexIndex = luaL_checkint(L, 2) - 1;
int attributeIndex = luaL_checkint(L, 3) - 1;
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VertexFormat* format = lovrMeshGetVertexFormat(mesh);
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lovrAssert(vertexIndex >= 0 && vertexIndex < lovrMeshGetVertexCount(mesh), "Invalid mesh vertex: %d", vertexIndex + 1);
lovrAssert(attributeIndex >= 0 && attributeIndex < format->count, "Invalid mesh attribute: %d", attributeIndex + 1);
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Attribute attribute = format->attributes[attributeIndex];
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VertexPointer vertex = lovrMeshMap(mesh, vertexIndex, 1, false, true);
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vertex.bytes += attribute.offset;
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luax_setvertexattribute(L, 4, &vertex, attribute);
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return 0;
}
int l_lovrMeshSetVertices(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
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VertexFormat* format = lovrMeshGetVertexFormat(mesh);
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uint32_t capacity = lovrMeshGetVertexCount(mesh);
VertexData* vertexData = NULL;
uint32_t sourceSize;
if (lua_istable(L, 2)) {
sourceSize = lua_objlen(L, 2);
} else {
vertexData = luax_checktype(L, 2, VertexData);
sourceSize = vertexData->count;
bool sameFormat = !memcmp(&vertexData->format, format, sizeof(VertexFormat));
lovrAssert(sameFormat, "Mesh and VertexData must have the same format to copy vertices");
}
uint32_t start = luaL_optnumber(L, 3, 1) - 1;
uint32_t count = luaL_optinteger(L, 4, sourceSize);
lovrAssert(start + count <= capacity, "Overflow in Mesh:setVertices: Mesh can only hold %d vertices", capacity);
lovrAssert(count <= sourceSize, "Cannot set %d vertices on Mesh: source only has %d vertices", count, sourceSize);
VertexPointer vertices = lovrMeshMap(mesh, start, count, false, true);
if (vertexData) {
memcpy(vertices.raw, vertexData->blob.data, count * format->stride);
} else {
for (uint32_t i = 0; i < count; i++) {
lua_rawgeti(L, 2, i + 1);
luaL_checktype(L, -1, LUA_TTABLE);
luax_setvertex(L, -1, &vertices, format);
lua_pop(L, 1);
}
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}
return 0;
}
int l_lovrMeshGetVertexMap(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
size_t count;
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IndexPointer indices = lovrMeshGetVertexMap(mesh, &count);
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if (count == 0) {
lua_pushnil(L);
return 1;
}
lua_newtable(L);
for (size_t i = 0; i < count; i++) {
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uint32_t index = mesh->indexSize == sizeof(uint32_t) ? indices.ints[i] : indices.shorts[i];
lua_pushinteger(L, index + 1);
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lua_rawseti(L, -2, i + 1);
}
return 1;
}
int l_lovrMeshSetVertexMap(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
if (lua_isnoneornil(L, 2)) {
lovrMeshSetVertexMap(mesh, NULL, 0);
return 0;
}
luaL_checktype(L, 2, LUA_TTABLE);
int count = lua_objlen(L, 2);
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int vertexCount = lovrMeshGetVertexCount(mesh);
int indexSize = mesh->indexSize;
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IndexPointer indices = lovrMeshGetVertexMap(mesh, NULL);
indices.raw = realloc(indices.raw, indexSize * count);
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for (int i = 0; i < count; i++) {
lua_rawgeti(L, 2, i + 1);
if (!lua_isnumber(L, -1)) {
return luaL_error(L, "Mesh vertex map index #%d must be numeric", i);
}
int index = lua_tointeger(L, -1);
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if (index > vertexCount || index < 1) {
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return luaL_error(L, "Invalid vertex map value: %d", index);
}
if (indexSize == sizeof(uint16_t)) {
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indices.shorts[i] = index - 1;
} else if (indexSize == sizeof(uint32_t)) {
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indices.ints[i] = index - 1;
}
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lua_pop(L, 1);
}
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lovrMeshSetVertexMap(mesh, indices.raw, count);
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return 0;
}
int l_lovrMeshIsAttributeEnabled(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
const char* attribute = luaL_checkstring(L, 2);
lua_pushboolean(L, lovrMeshIsAttributeEnabled(mesh, attribute));
return 1;
}
int l_lovrMeshSetAttributeEnabled(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
const char* attribute = luaL_checkstring(L, 2);
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bool enabled = lua_toboolean(L, 3);
lovrMeshSetAttributeEnabled(mesh, attribute, enabled);
return 0;
}
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int l_lovrMeshGetDrawRange(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
if (!lovrMeshIsRangeEnabled(mesh)) {
lua_pushnil(L);
return 1;
}
int start, count;
lovrMeshGetDrawRange(mesh, &start, &count);
lua_pushinteger(L, start + 1);
lua_pushinteger(L, count);
return 2;
}
int l_lovrMeshSetDrawRange(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
if (lua_isnoneornil(L, 2)) {
lovrMeshSetRangeEnabled(mesh, 0);
return 0;
}
lovrMeshSetRangeEnabled(mesh, 1);
int rangeStart = luaL_checkinteger(L, 2) - 1;
int rangeCount = luaL_checkinteger(L, 3);
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lovrMeshSetDrawRange(mesh, rangeStart, rangeCount);
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return 0;
}
int l_lovrMeshGetMaterial(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
Material* material = lovrMeshGetMaterial(mesh);
if (material) {
luax_pushtype(L, Material, material);
} else {
lua_pushnil(L);
}
return 1;
}
int l_lovrMeshSetMaterial(lua_State* L) {
Mesh* mesh = luax_checktype(L, 1, Mesh);
if (lua_isnoneornil(L, 2)) {
lovrMeshSetMaterial(mesh, NULL);
} else {
Material* material = luax_checktype(L, 2, Material);
lovrMeshSetMaterial(mesh, material);
}
return 0;
}
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const luaL_Reg lovrMesh[] = {
{ "attachAttributes", l_lovrMeshAttachAttributes },
{ "detachAttribute", l_lovrMeshDetachAttribute },
{ "drawInstanced", l_lovrMeshDrawInstanced },
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{ "draw", l_lovrMeshDraw },
{ "getVertexFormat", l_lovrMeshGetVertexFormat },
{ "getVertexCount", l_lovrMeshGetVertexCount },
{ "getVertex", l_lovrMeshGetVertex },
{ "setVertex", l_lovrMeshSetVertex },
{ "getVertexAttribute", l_lovrMeshGetVertexAttribute },
{ "setVertexAttribute", l_lovrMeshSetVertexAttribute },
{ "setVertices", l_lovrMeshSetVertices },
{ "getVertexMap", l_lovrMeshGetVertexMap },
{ "setVertexMap", l_lovrMeshSetVertexMap },
{ "isAttributeEnabled", l_lovrMeshIsAttributeEnabled },
{ "setAttributeEnabled", l_lovrMeshSetAttributeEnabled },
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{ "getDrawMode", l_lovrMeshGetDrawMode },
{ "setDrawMode", l_lovrMeshSetDrawMode },
{ "getDrawRange", l_lovrMeshGetDrawRange },
{ "setDrawRange", l_lovrMeshSetDrawRange },
{ "getMaterial", l_lovrMeshGetMaterial },
{ "setMaterial", l_lovrMeshSetMaterial },
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{ NULL, NULL }
};