mirror of
https://github.com/nzp-team/fteqw.git
synced 2024-11-23 04:11:53 +00:00
5aa11ddbb1
emenu: clean up hexen2's maplist options slightly. emenu: modelviewer should now be slightly more friendly (click+wasd to move around). particles: fix up randomised s coords. csqc: try to fix issue with applycustomskin not refcounting properly. client: [s_]precache and (new) mod_precache cvars can be set to 2 to precache the resources after load, for faster loading at the expense of some early stutter, without risking later mid-game stuttering. gltf: add support for morphweights in a cpu-fallback path. don't expect good performance on surfaces with morphtargets for now. gtlf: add some support for gltf1 files. far from perfect. shaders: gltf1 semantics handling shaders: const correctness iqmtool: fix up mdl skin export. iqmtool: integrate the engine's gltf2 loader. works with animated models, but unanimated ones suffer from basepose-different-from-bindpose issues. q3bsp: hopefully fixed bih traces. still disabled for now. qc: change default value of pr_gc_threaded to 1. qcext: add the '__deprecated' keyword to various symbols in fteextensions.qc, now that fteqcc supports it. ssqc: spit out a more readable error for WriteByte(MSG_CSQC,...) outside of SendEntity. ssqc: add registercommand builtin, for consistency with menuqc and csqc (though only one can register any single command). sv: report userinfo/serverinfo sizes (some clients still have arbitrary limits, plus its nice to see how abusive things are) sv: try to optimise sv_cullentities_trace a little. movechain: relink moved ents. csqc: add spriteframe builtin, for freecs to use instead of more ugly less reliable hacks. menuqc: fopen("tls://host:port", FILE_STREAM) should now open a tls stream. tcp:// should also work. git-svn-id: https://svn.code.sf.net/p/fteqw/code/trunk@5703 fc73d0e0-1445-4013-8a0c-d673dee63da5
618 lines
17 KiB
C
618 lines
17 KiB
C
#include "quakedef.h"
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#ifdef D3D9QUAKE
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#include "shader.h"
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#include "winquake.h"
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#if !defined(HMONITOR_DECLARED) && (WINVER < 0x0500)
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#define HMONITOR_DECLARED
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DECLARE_HANDLE(HMONITOR);
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#endif
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#include <d3d9.h>
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extern LPDIRECT3DDEVICE9 pD3DDev9;
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extern cvar_t d3d9_hlsl;
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typedef struct {
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LPCSTR Name;
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LPCSTR Definition;
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} D3DXMACRO;
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#define D3DXHANDLE void *
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typedef enum D3DXINCLUDE_TYPE {
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D3DXINC_LOCAL = 0,
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D3DXINC_SYSTEM = 1,
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D3DXINC_FORCE_DWORD = 0x7fffffff
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} D3DXINCLUDE_TYPE, *LPD3DXINCLUDE_TYPE;
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#undef INTERFACE
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#define INTERFACE myID3DXInclude
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DECLARE_INTERFACE(myID3DXInclude)
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{
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STDMETHOD_(HRESULT,Open)(THIS_ D3DXINCLUDE_TYPE IncludeType, LPCSTR pFileName, LPCVOID pParentData, LPCVOID *ppData, UINT *pBytes) PURE;
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STDMETHOD_(HRESULT,Close)(THIS_ LPCVOID pData) PURE;
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};
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typedef struct myID3DXInclude *LPD3DXINCLUDE;
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#undef INTERFACE
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#define INTERFACE d3dxbuffer
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DECLARE_INTERFACE_(d3dxbuffer,IUnknown)
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{
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STDMETHOD(QueryInterface)(THIS_ REFIID,PVOID*) PURE;
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STDMETHOD_(ULONG,AddRef)(THIS) PURE;
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STDMETHOD_(ULONG,Release)(THIS) PURE;
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STDMETHOD_(LPVOID,GetBufferPointer)(THIS) PURE;
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STDMETHOD_(SIZE_T,GetBufferSize)(THIS) PURE;
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};
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typedef struct d3dxbuffer *LPD3DXBUFFER;
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typedef enum _D3DXREGISTER_SET
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{
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D3DXRS_BOOL,
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D3DXRS_INT4,
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D3DXRS_FLOAT4,
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D3DXRS_SAMPLER,
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D3DXRS_FORCE_DWORD = 0x7fffffff
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} D3DXREGISTER_SET, *LPD3DXREGISTER_SET;
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typedef enum _D3DXPARAMETER_CLASS
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{
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D3DXPC_SCALAR,
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D3DXPC_VECTOR,
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D3DXPC_MATRIX_ROWS,
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D3DXPC_MATRIX_COLUMNS,
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D3DXPC_OBJECT,
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D3DXPC_STRUCT,
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D3DXPC_FORCE_DWORD = 0x7fffffff
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} D3DXPARAMETER_CLASS, *LPD3DXPARAMETER_CLASS;
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typedef enum _D3DXPARAMETER_TYPE
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{
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D3DXPT_VOID,
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D3DXPT_BOOL,
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D3DXPT_INT,
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D3DXPT_FLOAT,
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D3DXPT_STRING,
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D3DXPT_TEXTURE,
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D3DXPT_TEXTURE1D,
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D3DXPT_TEXTURE2D,
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D3DXPT_TEXTURE3D,
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D3DXPT_TEXTURECUBE,
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D3DXPT_SAMPLER,
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D3DXPT_SAMPLER1D,
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D3DXPT_SAMPLER2D,
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D3DXPT_SAMPLER3D,
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D3DXPT_SAMPLERCUBE,
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D3DXPT_PIXELSHADER,
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D3DXPT_VERTEXSHADER,
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D3DXPT_PIXELFRAGMENT,
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D3DXPT_VERTEXFRAGMENT,
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} D3DXPARAMETER_TYPE, *LPD3DXPARAMETER_TYPE;
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typedef struct _D3DXCONSTANT_DESC
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{
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LPCSTR Name; // Constant name
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D3DXREGISTER_SET RegisterSet; // Register set
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UINT RegisterIndex; // Register index
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UINT RegisterCount; // Number of registers occupied
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D3DXPARAMETER_CLASS Class; // Class
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D3DXPARAMETER_TYPE Type; // Component type
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UINT Rows; // Number of rows
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UINT Columns; // Number of columns
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UINT Elements; // Number of array elements
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UINT StructMembers; // Number of structure member sub-parameters
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UINT Bytes; // Data size, in bytes
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LPCVOID DefaultValue; // Pointer to default value
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} D3DXCONSTANT_DESC, *LPD3DXCONSTANT_DESC;
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typedef struct _D3DXCONSTANTTABLE_DESC
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{
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LPCSTR Creator; // Creator string
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DWORD Version; // Shader version
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UINT Constants; // Number of constants
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} D3DXCONSTANTTABLE_DESC, *LPD3DXCONSTANTTABLE_DESC;
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#undef INTERFACE
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#define INTERFACE d3dxconstanttable
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DECLARE_INTERFACE_(d3dxconstanttable,IUnknown)
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{
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STDMETHOD(QueryInterface)(THIS_ REFIID,PVOID*) PURE;
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STDMETHOD_(ULONG,AddRef)(THIS) PURE;
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STDMETHOD_(ULONG,Release)(THIS) PURE;
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STDMETHOD_(LPVOID,GetBufferPointer)(THIS) PURE;
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STDMETHOD_(SIZE_T,GetBufferSize)(THIS) PURE;
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STDMETHOD(GetDesc)(THIS_ D3DXCONSTANTTABLE_DESC *pDesc) PURE;
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STDMETHOD(GetConstantDesc)(THIS_ D3DXHANDLE hConstant, D3DXCONSTANT_DESC *pConstantDesc, UINT *pCount) PURE;
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STDMETHOD_(D3DXHANDLE, GetConstant)(THIS_ D3DXHANDLE hConstant, UINT Index) PURE;
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STDMETHOD_(D3DXHANDLE, GetConstantByName)(THIS_ D3DXHANDLE hConstant, LPCSTR pName) PURE;
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STDMETHOD_(D3DXHANDLE, GetConstantElement)(THIS_ D3DXHANDLE hConstant, UINT Index) PURE;
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/*more stuff not included here cos I don't need it*/
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};
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typedef struct d3dxconstanttable *LPD3DXCONSTANTTABLE;
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HRESULT (WINAPI *pD3DXCompileShader) (
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LPCSTR pSrcData,
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UINT SrcDataLen,
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const D3DXMACRO *pDefines,
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LPD3DXINCLUDE pInclude,
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LPCSTR pEntrypoint,
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LPCSTR pTarget,
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UINT Flags,
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LPD3DXBUFFER *ppCode,
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LPD3DXBUFFER *ppErrorMsgs,
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LPD3DXCONSTANTTABLE *constants
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);
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static dllhandle_t *shaderlib;
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#ifndef IUnknown_Release
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#define IUnknown_Release(This) \
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(This)->lpVtbl -> Release(This)
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#endif
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static HRESULT STDMETHODCALLTYPE myID3DXIncludeVtbl_Close(myID3DXInclude *cls, LPCVOID pData)
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{
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return S_OK;
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}
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static HRESULT STDMETHODCALLTYPE myID3DXIncludeVtbl_Open(myID3DXInclude *cls, D3DXINCLUDE_TYPE IncludeType, LPCSTR pFileName, LPCVOID pParentData, LPCVOID *ppData, UINT *pBytes)
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{
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char *file = NULL;
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// "sys/defs.h"
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// "sys/skeletal.h"
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// "sys/offsetmapping.h"
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if (!strcmp(pFileName, "sys/fog.h"))
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{
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file =
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"#ifdef FRAGMENT_SHADER\n"
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"#ifdef FOG\n"
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"#ifndef DEFS_DEFINED\n"
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"float4 w_fog[2];\n"
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"#define w_fogcolour w_fog[0].rgb\n"
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"#define w_fogalpha w_fog[0].a\n"
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"#define w_fogdensity w_fog[1].x\n"
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"#define w_fogdepthbias w_fog[1].y\n"
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"#endif\n"
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"static const float r_fog_exp2 = 1.0;\n"
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"float3 fog3(float3 regularcolour, float distance)"
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"{"
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"float z = w_fogdensity * distance;\n"
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"z = max(0.0,z-w_fogdepthbias);\n"
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"if (r_fog_exp2)\n"
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"z *= z;\n"
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"float fac = exp2(-(z * 1.442695));\n"
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"fac = (1.0-w_fogalpha) + (clamp(fac, 0.0, 1.0)*w_fogalpha);\n"
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"return lerp(w_fogcolour, regularcolour, fac);\n"
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"}\n"
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"float3 fog3additive(float3 regularcolour, float distance)"
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"{"
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"float z = w_fogdensity * distance;\n"
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"z = max(0.0,z-w_fogdepthbias);\n"
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"if (r_fog_exp2)\n"
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"z *= z;\n"
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"float fac = exp2(-(z * 1.442695));\n"
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"fac = (1.0-w_fogalpha) + (clamp(fac, 0.0, 1.0)*w_fogalpha);\n"
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"return regularcolour * fac;\n"
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"}\n"
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"float4 fog4(float4 regularcolour, float distance)"
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"{"
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"return float4(fog3(regularcolour.rgb, distance), 1.0) * regularcolour.a;\n"
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"}\n"
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"float4 fog4additive(float4 regularcolour, float distance)"
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"{"
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"float z = w_fogdensity * distance;\n"
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"z = max(0.0,z-w_fogdepthbias);\n"
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"if (r_fog_exp2)\n"
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"z *= z;\n"
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"float fac = exp2(-(z * 1.442695));\n"
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"fac = (1.0-w_fogalpha) + (clamp(fac, 0.0, 1.0)*w_fogalpha);\n"
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"return regularcolour * float4(fac, fac, fac, 1.0);\n"
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"}\n"
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"float4 fog4blend(float4 regularcolour, float distance)"
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"{"
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"float z = w_fogdensity * distance;\n"
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"z = max(0.0,z-w_fogdepthbias);\n"
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"if (r_fog_exp2)\n"
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"z *= z;\n"
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"float fac = exp2(-(z * 1.442695));\n"
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"fac = (1.0-w_fogalpha) + (clamp(fac, 0.0, 1.0)*w_fogalpha);\n"
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"return regularcolour * float4(1.0, 1.0, 1.0, fac);\n"
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"}\n"
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"#else\n"
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"float3 fog3(float3 regularcolour, float distance) { return regularcolour; }\n"
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"float3 fog3additive(float3 regularcolour, float distance) { return regularcolour; }\n"
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"float4 fog4(float4 regularcolour, float distance) { return regularcolour; }\n"
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"float4 fog4additive(float4 regularcolour, float distance) { return regularcolour; }\n"
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"float4 fog4blend(float4 regularcolour, float distance) { return regularcolour; }\n"
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"#endif\n"
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"#endif\n"
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;
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}
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else if (!strcmp(pFileName, "sys/pcf.h"))
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{
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file =
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"#define ShadowmapFilter(smap,proj) 1.0\n"
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;
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}
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if (file)
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{
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*ppData = file;
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*pBytes = strlen(file);
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return S_OK;
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}
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else
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return E_FAIL;
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}
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static struct myID3DXIncludeVtbl myID3DXIncludeVtbl_C =
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{
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myID3DXIncludeVtbl_Open,
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myID3DXIncludeVtbl_Close
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};
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static struct myID3DXInclude myID3DXIncludeVtbl_Instance = {&myID3DXIncludeVtbl_C};
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static qboolean D3D9Shader_CreateProgram (program_t *prog, struct programpermu_s *permu, int ver, const char **precompilerconstants, const char *vert, const char *tcs, const char *tes, const char *geom, const char *frag, qboolean silent, vfsfile_t *blobfile)
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{
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D3DXMACRO defines[64];
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LPD3DXBUFFER code = NULL, errors = NULL;
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qboolean success = false;
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char defbuf[2048];
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char *defbufe;
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if (geom || tcs || tes)
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{
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Con_Printf("geometry and tessellation shaders are not availale in d3d9 (%s)\n", prog->name);
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return false;
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}
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permu->h.hlsl.vert = NULL;
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permu->h.hlsl.frag = NULL;
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if (pD3DXCompileShader)
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{
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int consts;
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for (consts = 0; precompilerconstants[consts]; consts++)
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;
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consts+=2;
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if (consts >= sizeof(defines) / sizeof(defines[0]))
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return success;
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consts = 0;
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defines[consts].Name = NULL; /*shader type*/
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defines[consts].Definition = "1";
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consts++;
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defines[consts].Name = "ENGINE_"DISTRIBUTION;
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#ifdef SVNREVISION
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defines[consts].Definition = STRINGIFY(SVNREVISION);
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#else
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defines[consts].Definition = "0";
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#endif
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consts++;
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for (defbufe = defbuf; *precompilerconstants; precompilerconstants++)
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{
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const char *l, *nl;
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for(l = *precompilerconstants; *l; l = nl)
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{
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l += 7; //skip over the assumed #define
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l = COM_ParseOut(l, defbufe, defbuf+sizeof(defbuf) - defbufe-1);
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defines[consts].Name = defbufe;
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defbufe += strlen(defbufe)+1;
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while (*l == ' ' || *l == '\t')
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l++;
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nl = strchr(l, '\n');
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if (nl && *nl)
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{
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defines[consts++].Definition = defbufe;
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memcpy(defbufe, l, nl-l);
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defbufe[nl-l] = 0;
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defbufe += nl++-l+1;
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}
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else
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defines[consts++].Definition = l;
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}
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}
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defines[consts].Name = NULL;
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defines[consts].Definition = NULL;
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success = true;
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defines[0].Name = "VERTEX_SHADER";
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if (FAILED(pD3DXCompileShader(vert, strlen(vert), defines, &myID3DXIncludeVtbl_Instance, "main", "vs_2_0", 0, &code, &errors, (LPD3DXCONSTANTTABLE*)&permu->h.hlsl.ctabv)))
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success = false;
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else
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{
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IDirect3DDevice9_CreateVertexShader(pD3DDev9, code->lpVtbl->GetBufferPointer(code), (IDirect3DVertexShader9**)&permu->h.hlsl.vert);
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code->lpVtbl->Release(code);
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}
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if (errors)
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{
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char *messages = errors->lpVtbl->GetBufferPointer(errors);
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//int i;
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// for (i = 0; i < consts; i++)
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// Con_Printf("%s %i: %s==%s\n", prog->name, i, defines[i].Name, defines[i].Definition);
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// Con_Printf("%s\n", vert);
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Con_Printf("Error compiling vertex shader %s:\n%s", prog->name, messages);
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errors->lpVtbl->Release(errors);
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}
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defines[0].Name = "FRAGMENT_SHADER";
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if (FAILED(pD3DXCompileShader(frag, strlen(frag), defines, &myID3DXIncludeVtbl_Instance, "main", "ps_2_0", 0, &code, &errors, (LPD3DXCONSTANTTABLE*)&permu->h.hlsl.ctabf)))
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success = false;
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else
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{
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IDirect3DDevice9_CreatePixelShader(pD3DDev9, code->lpVtbl->GetBufferPointer(code), (IDirect3DPixelShader9**)&permu->h.hlsl.frag);
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code->lpVtbl->Release(code);
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}
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if (errors)
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{
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char *messages = errors->lpVtbl->GetBufferPointer(errors);
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Con_Printf("Error compiling pixel shader %s:\n%s", prog->name, messages);
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errors->lpVtbl->Release(errors);
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}
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}
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return success;
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}
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static int D3D9Shader_FindUniform_(LPD3DXCONSTANTTABLE ct, const char *name)
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{
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if (ct)
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{
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UINT dc = 1;
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D3DXCONSTANT_DESC d;
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if (!FAILED(ct->lpVtbl->GetConstantDesc(ct, (void*)name, &d, &dc)))
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return d.RegisterIndex;
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}
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return -1;
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}
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static int D3D9Shader_FindUniform(union programhandle_u *h, int type, const char *name)
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{
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int offs;
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if (!type || type == 1)
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{
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offs = D3D9Shader_FindUniform_(h->hlsl.ctabv, name);
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if (offs >= 0)
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return offs;
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}
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if (!type || type == 2)
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{
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offs = D3D9Shader_FindUniform_(h->hlsl.ctabf, name);
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if (offs >= 0)
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return offs;
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}
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return -1;
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}
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static void D3D9Shader_ProgAutoFields(program_t *prog, struct programpermu_s *pp, char **cvarnames, int *cvartypes)
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{
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unsigned int i;
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int uniformloc;
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char tmpbuffer[256];
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#define ALTLIGHTMAPSAMP 13
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#define ALTDELUXMAPSAMP 16
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/* prog->nofixedcompat = true;
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prog->defaulttextures = 0;
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prog->numsamplers = 0;
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*/
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int maxparms = 0;
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pp->parm = NULL;
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pp->numparms = 0;
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IDirect3DDevice9_SetVertexShader(pD3DDev9, pp->h.hlsl.vert);
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IDirect3DDevice9_SetPixelShader(pD3DDev9, pp->h.hlsl.frag);
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for (i = 0; shader_unif_names[i].name; i++)
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{
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uniformloc = D3D9Shader_FindUniform(&pp->h, 0, shader_unif_names[i].name);
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if (uniformloc != -1)
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{
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if (pp->numparms == maxparms)
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{
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maxparms = maxparms?maxparms*2:8;
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pp->parm = BZ_Realloc(pp->parm, sizeof(*pp->parm) * maxparms);
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}
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pp->parm[pp->numparms].handle = uniformloc;
|
|
pp->parm[pp->numparms].type = shader_unif_names[i].ptype;
|
|
pp->numparms++;
|
|
}
|
|
}
|
|
|
|
for (i = 0; cvarnames[i]; i++)
|
|
{
|
|
cvar_t *cvarref;
|
|
if (cvartypes[i] < SP_CVARI)
|
|
continue;
|
|
cvarref = Cvar_FindVar(cvarnames[i]);
|
|
if (!cvarref)
|
|
continue;
|
|
//just directly sets uniforms. can't cope with cvars dynamically changing.
|
|
cvarref->flags |= CVAR_SHADERSYSTEM;
|
|
|
|
Q_snprintfz(tmpbuffer, sizeof(tmpbuffer), "cvar_%s", cvarnames[i]);
|
|
uniformloc = D3D9Shader_FindUniform(&pp->h, 1, tmpbuffer);
|
|
if (uniformloc != -1)
|
|
{
|
|
if (cvartypes[i] == SP_CVARI)
|
|
{
|
|
int v[4] = {cvarref->ival, 0, 0, 0};
|
|
IDirect3DDevice9_SetVertexShaderConstantI(pD3DDev9, 0, v, 1);
|
|
}
|
|
else
|
|
IDirect3DDevice9_SetVertexShaderConstantF(pD3DDev9, 0, cvarref->vec4, 1);
|
|
}
|
|
uniformloc = D3D9Shader_FindUniform(&pp->h, 2, tmpbuffer);
|
|
if (uniformloc != -1)
|
|
{
|
|
if (cvartypes[i] == SP_CVARI)
|
|
{
|
|
int v[4] = {cvarref->ival, 0, 0, 0};
|
|
IDirect3DDevice9_SetPixelShaderConstantI(pD3DDev9, 0, v, 1);
|
|
}
|
|
else
|
|
IDirect3DDevice9_SetPixelShaderConstantF(pD3DDev9, 0, cvarref->vec4, 1);
|
|
}
|
|
}
|
|
|
|
/*set texture uniforms*/
|
|
for (i = 0; i < prog->numsamplers; i++)
|
|
{
|
|
Q_snprintfz(tmpbuffer, sizeof(tmpbuffer), "s_t%i", i);
|
|
uniformloc = D3D9Shader_FindUniform(&pp->h, 2, tmpbuffer);
|
|
if (uniformloc != -1)
|
|
{
|
|
int v[4] = {i};
|
|
IDirect3DDevice9_SetPixelShader(pD3DDev9, pp->h.hlsl.frag);
|
|
IDirect3DDevice9_SetPixelShaderConstantI(pD3DDev9, 0, v, 1);
|
|
|
|
// if (prog->numsamplers < i+1)
|
|
// prog->numsamplers = i+1;
|
|
}
|
|
}
|
|
|
|
/* for (i = 0; sh_defaultsamplers[i].name; i++)
|
|
{
|
|
//figure out which ones are needed.
|
|
if (prog->defaulttextures & sh_defaultsamplers[i].defaulttexbits)
|
|
continue; //don't spam
|
|
uniformloc = D3D9Shader_FindUniform(&pp->h, 2, sh_defaultsamplers[i].name);
|
|
if (uniformloc != -1)
|
|
prog->defaulttextures |= sh_defaultsamplers[i].defaulttexbits;
|
|
}
|
|
*/
|
|
|
|
if (prog->defaulttextures)
|
|
{
|
|
unsigned int sampnum;
|
|
/*set default texture uniforms*/
|
|
sampnum = prog->numsamplers;
|
|
for (i = 0; sh_defaultsamplers[i].name; i++)
|
|
{
|
|
if (prog->defaulttextures & sh_defaultsamplers[i].defaulttexbits)
|
|
{
|
|
uniformloc = D3D9Shader_FindUniform(&pp->h, 2, sh_defaultsamplers[i].name);
|
|
if (uniformloc != -1)
|
|
{
|
|
int v[4] = {sampnum};
|
|
IDirect3DDevice9_SetPixelShader(pD3DDev9, pp->h.hlsl.frag);
|
|
IDirect3DDevice9_SetPixelShaderConstantI(pD3DDev9, 0, v, 1);
|
|
}
|
|
sampnum++;
|
|
}
|
|
}
|
|
}
|
|
IDirect3DDevice9_SetVertexShader(pD3DDev9, NULL);
|
|
IDirect3DDevice9_SetPixelShader(pD3DDev9, NULL);
|
|
}
|
|
|
|
void D3D9Shader_DeleteProg(program_t *prog)
|
|
{
|
|
unsigned int permu;
|
|
struct programpermu_s *pp;
|
|
for (permu = countof(prog->permu); permu-- > 0; )
|
|
{
|
|
pp = prog->permu[permu];
|
|
if (!pp)
|
|
continue;
|
|
prog->permu[permu] = NULL;
|
|
if (pp == prog->permu[0] && permu)
|
|
continue; //entry 0 (only) can get copied to avoid constant recompile failures (0 is always precompiled)
|
|
if (pp->h.hlsl.vert)
|
|
{
|
|
IDirect3DVertexShader9 *vs = pp->h.hlsl.vert;
|
|
pp->h.hlsl.vert = NULL;
|
|
IDirect3DVertexShader9_Release(vs);
|
|
}
|
|
if (pp->h.hlsl.frag)
|
|
{
|
|
IDirect3DPixelShader9 *fs = pp->h.hlsl.frag;
|
|
pp->h.hlsl.frag = NULL;
|
|
IDirect3DPixelShader9_Release(fs);
|
|
}
|
|
if (pp->h.hlsl.ctabv)
|
|
{
|
|
LPD3DXCONSTANTTABLE vct = pp->h.hlsl.ctabv;
|
|
pp->h.hlsl.ctabv = NULL;
|
|
IUnknown_Release(vct);
|
|
}
|
|
if (pp->h.hlsl.ctabf)
|
|
{
|
|
LPD3DXCONSTANTTABLE fct = pp->h.hlsl.ctabf;
|
|
pp->h.hlsl.ctabf = NULL;
|
|
IUnknown_Release(fct);
|
|
}
|
|
pp->numparms = 0;
|
|
BZ_Free(pp->parm);
|
|
Z_Free(pp);
|
|
}
|
|
}
|
|
|
|
void D3D9Shader_Init(void)
|
|
{
|
|
D3DCAPS9 caps;
|
|
|
|
dllfunction_t funcs[] =
|
|
{
|
|
{(void**)&pD3DXCompileShader, "D3DXCompileShader"},
|
|
{NULL,NULL}
|
|
};
|
|
|
|
if (!shaderlib)
|
|
shaderlib = Sys_LoadLibrary("d3dx9_32", funcs);
|
|
if (!shaderlib)
|
|
shaderlib = Sys_LoadLibrary("d3dx9_34", funcs);
|
|
|
|
memset(&sh_config, 0, sizeof(sh_config));
|
|
sh_config.minver = 9;
|
|
sh_config.maxver = 9;
|
|
sh_config.blobpath = "hlsl/%s.blob";
|
|
sh_config.progpath = shaderlib?"hlsl/%s.hlsl":NULL;
|
|
sh_config.shadernamefmt = "%s_hlsl9";
|
|
|
|
sh_config.progs_supported = !!shaderlib && d3d9_hlsl.ival;
|
|
sh_config.progs_required = false;
|
|
|
|
sh_config.pDeleteProg = D3D9Shader_DeleteProg;
|
|
sh_config.pLoadBlob = NULL;//D3D9Shader_LoadBlob;
|
|
sh_config.pCreateProgram = D3D9Shader_CreateProgram;
|
|
sh_config.pProgAutoFields = D3D9Shader_ProgAutoFields;
|
|
|
|
sh_config.tex_env_combine = 1;
|
|
sh_config.nv_tex_env_combine4 = 1;
|
|
sh_config.env_add = 1;
|
|
|
|
sh_config.can_mipcap = true; //at creation time, I think.
|
|
sh_config.havecubemaps = true;
|
|
|
|
IDirect3DDevice9_GetDeviceCaps(pD3DDev9, &caps);
|
|
|
|
sh_config.texture_allow_block_padding = false; //microsoft blocks this.
|
|
if (caps.TextureCaps & D3DPTEXTURECAPS_POW2)
|
|
{ //this flag is a LIMITATION, not a capability.
|
|
sh_config.texture_non_power_of_two = false;
|
|
sh_config.texture_non_power_of_two_pic = !!(caps.TextureCaps & D3DPTEXTURECAPS_NONPOW2CONDITIONAL); //pic npot is supported if both flags are set.
|
|
}
|
|
else
|
|
{ //modern cards support npot
|
|
sh_config.texture_non_power_of_two_pic = true;
|
|
sh_config.texture_non_power_of_two = true;
|
|
}
|
|
|
|
sh_config.texturecube_maxsize = sh_config.texture2d_maxsize = min(caps.MaxTextureWidth, caps.MaxTextureHeight);
|
|
}
|
|
#endif
|
|
|