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mojoshader_opengl.c

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412 lines (331 loc) · 11.8 KB
 
Apr 26, 2008
Apr 26, 2008
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/* !!! FIXME: merge this in?
static GLenum opengl_attr_type(const MOJOSHADER_attributeType type)
{
switch (type)
{
case MOJOSHADER_ATTRIBUTE_BYTE: return GL_BYTE;
case MOJOSHADER_ATTRIBUTE_UBYTE: return GL_UNSIGNED_BYTE;
case MOJOSHADER_ATTRIBUTE_SHORT: return GL_SHORT;
case MOJOSHADER_ATTRIBUTE_USHORT: return GL_USHORT;
case MOJOSHADER_ATTRIBUTE_INT: return GL_INT;
case MOJOSHADER_ATTRIBUTE_UINT: return GL_UNSIGNED_INT;
case MOJOSHADER_ATTRIBUTE_FLOAT: return GL_FLOAT;
case MOJOSHADER_ATTRIBUTE_DOUBLE: return GL_DOUBLE;
} // switch
return GL_NONE; // oh well. Raises a GL error later.
} // opengl_attr_type
static GLenum opengl_attr_index(const MOJOSHADER_usage usage, const int index)
{
switch (usage)
{
case MOJOSHADER_USAGE_POSITION,
case MOJOSHADER_USAGE_BLENDWEIGHT,
case MOJOSHADER_USAGE_BLENDINDICES,
case MOJOSHADER_USAGE_NORMAL,
case MOJOSHADER_USAGE_POINTSIZE,
case MOJOSHADER_USAGE_TEXCOORD,
case MOJOSHADER_USAGE_TANGENT,
case MOJOSHADER_USAGE_BINORMAL,
case MOJOSHADER_USAGE_TESSFACTOR,
case MOJOSHADER_USAGE_POSITIONT,
case MOJOSHADER_USAGE_COLOR,
case MOJOSHADER_USAGE_FOG,
case MOJOSHADER_USAGE_DEPTH,
case MOJOSHADER_USAGE_SAMPLE,
case MOJOSHADER_USAGE_TOTAL: return GL_NONE; // stop compiler whining.
} // switch
return GL_NONE; // will fail later.
} // opengl_attr_index
void MOJOSHADER_glSetVertexDeclaration(MOJOSHADER_usage usage, int index,
unsigned int size,
MOJOSHADER_attributeType type,
int normalized, unsigned int stride,
const void *ptr)
{
const GLuint gl_index = opengl_attr_index(usage, index);
const GLenum gl_type = opengl_attr_type(type);
const GLboolean gl_normalized = (normalized) ? GL_TRUE : GL_FALSE;
pglVertexAttribPointer(gl_index, size, gl_type, gl_normalized,
stride, ptr);
} // MOJOSHADER_glSetVertexDeclaration
*/
#include <stdio.h>
#include <string.h>
#include <stdlib.h>
#include <stdint.h>
#include <stdarg.h>
#include <assert.h>
#include "mojoshader.h"
// Get basic wankery out of the way here...
typedef unsigned int uint; // this is a printf() helper. don't use for code.
typedef uint8_t uint8;
typedef uint32_t uint32;
typedef int32_t int32;
struct MOJOSHADER_glShader
{
const MOJOSHADER_parseData *parseData;
GLuint handle;
uint32 refcount;
};
struct MOJOSHADER_glProgram
{
const MOJOSHADER_glShader *vertex;
const MOJOSHADER_glShader *fragment;
GLuint handle;
uint32 refcount;
};
// Allocators...
static MOJOSHADER_malloc malloc_fn = NULL;
static MOJOSHADER_free free_fn = NULL;
static void *malloc_data = NULL;
// The constant register files...
// Man, it kills me how much memory this takes...
static float vs_register_file_f[8192 * 4];
static int vs_register_file_i[2047 * 4];
static uint8 vs_register_file_b[2047];
static float ps_register_file_f[8192 * 4];
static int ps_register_file_i[2047 * 4];
static uint8 ps_register_file_b[2047];
// GL stuff...
static MOJOSHADER_glProgram *bound_program = NULL;
// #define this to force app to supply an allocator, so there's no reference
// to the C runtime's malloc() and free()...
#if MOJOSHADER_FORCE_ALLOCATOR
#define internal_malloc NULL
#define internal_free NULL
#else
static void *internal_malloc(int bytes, void *d) { return malloc(bytes); }
static void internal_free(void *ptr, void *d) { free(ptr); }
#endif
static inline void *Malloc(const size_t len)
{
return malloc_fn(len, malloc_data);
} // Malloc
static inline void Free(void *ptr)
{
return free_fn(ptr, malloc_data);
} // Free
int MOJOSHADER_glInit(const char *_profile,
void *(*lookup)(const char *fnname),
MOJOSHADER_malloc m, MOJOSHADER_free f, void *d)
{
if (strcmp(_profile, MOJOSHADER_PROFILE_GLSL) != 0)
profile = MOJOSHADER_PROFILE_GLSL;
else
return 0;
// !!! FIXME: lookup glGetString(), check extensions.
malloc_fn = (m == NULL) ? internal_malloc : m;
free_fn = (f == NULL) ? internal_free : f;
malloc_data = d;
// !!! FIXME: lookup other entry points.
memset(vs_register_file_f, '\0', sizeof (vs_register_file_f));
memset(vs_register_file_i, '\0', sizeof (vs_register_file_i));
memset(vs_register_file_b, '\0', sizeof (vs_register_file_b));
memset(ps_register_file_f, '\0', sizeof (ps_register_file_f));
memset(ps_register_file_i, '\0', sizeof (ps_register_file_i));
memset(ps_register_file_b, '\0', sizeof (ps_register_file_b));
MOJOSHADER_glBindProgram(NULL);
return 1;
} // MOJOSHADER_glInit
MOJOSHADER_glShader *MOJOSHADER_glCompileShader(const unsigned char *tokenbuf,
const unsigned int bufsize)
{
MOJOSHADER_glShader *retval = NULL;
const MOJOSHADER_parseData *pd = MOJOSHADER_parse(profile, tokenbuf,
bufsize, malloc_fn,
free_fn, malloc_data);
if (pd->error != NULL)
{
MOJOSHADER_freeParseData(pd);
return NULL;
} // if
retval = (MOJOSHADER_glShader *) Malloc(sizeof (MOJOSHADER_glShader));
if (retval == NULL)
{
MOJOSHADER_freeParseData(pd);
return NULL;
} // if
GLint ok = 0;
const GLenum shader_type = (pd->shader_type == MOJOSHADER_TYPE_PIXEL) ? GL_FRAGMENT_SHADER_ARB : GL_VERTEX_SHADER_ARB;
GLint shaderlen = (GLint) pd->output_len;
const GLhandleARB shader = pglCreateShaderObjectARB(shader_type);
pglShaderSourceARB(shader, 1, (const GLcharARB **) &pd->output, &shaderlen);
pglCompileShaderARB(shader);
pglGetObjectParameterivARB(shader, GL_OBJECT_COMPILE_STATUS_ARB, &ok);
if (!ok)
{
GLcharARB err[1024];
GLsizei len = 0;
//glGetInfoLogARB(shader, sizeof (err), &len, err);
//printf("FAIL: %s glsl compile: %s\n", fname, err);
pglDeleteObjectARB(shader);
MOJOSHADER_freeParseData(pd);
Free(retval);
return NULL;
} // if
retval->parseData = pd;
retval->handle = shader;
retval->refcount = 1;
return retval;
} // MOJOSHADER_glCompileShader
static void shader_unref(MOJOSHADER_glShader *shader)
{
if (shader != NULL)
{
const uint32 refcount = program->refcount;
if (refcount > 1)
program->refcount--;
else
{
pglDeleteObjectARB(shader->handle);
MOJOSHADER_freeParseData(shader->parseData);
Free(shader);
} // else
} // if
} // shader_unref
static void program_unref(MOJOSHADER_glProgram *program)
{
if (program != NULL)
{
const uint32 refcount = program->refcount;
if (refcount > 1)
program->refcount--;
else
{
pglDeleteObjectARB(program->handle);
shader_unref(program->vertex);
shader_unref(program->fragment);
Free(program);
} // else
} // if
} // program_unref
MOJOSHADER_glProgram *MOJOSHADER_glLinkProgram(MOJOSHADER_glShader *vshader,
MOJOSHADER_glShader *pshader)
{
// !!! FIXME: actually link.
// !!! FIXME: alloc retval.
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retval = (MOJOSHADER_glProgram *) Malloc(sizeof (MOJOSHADER_glProgram));
if (retval == NULL)
pglDeleteObjectARB(program);
else
{
retval->vertex = vshader;
retval->fragment = pshader;
retval->handle = program;
retval->refcount = 1;
} // else
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if (vshader != NULL)
vshader->refcount++;
if (pshader != NULL)
pshader->refcount++;
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return retval;
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} // MOJOSHADER_glLinkProgram
void MOJOSHADER_glBindProgram(MOJOSHADER_glProgram *program)
{
GLuint handle = 0;
if (program != NULL)
{
handle = program->handle;
program->refcount++;
} // if
// !!! FIXME: unbind client-side arrays.
pglUseProgramObjectARB(handle);
program_unref(bound_program);
bound_program = program;
} // MOJOSHADER_glBindProgram
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static inline uint maxuint(const uint a, const uint b)
{
return ((a > b) ? a : b);
} // maxuint
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void MOJOSHADER_glSetVertexShaderUniformF(unsigned int idx, const float *data,
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unsigned int vec4n)
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{
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const uint maxregs = STATICARRAYLEN(vs_register_file_f) / 4;
if (idx < maxregs)
{
const uint cpy = maxuint(maxregs - idx, vec4n) * sizeof (*data)) * 4;
memcpy(vs_register_file_f + (idx * 4), data, cpy);
} // if
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} // MOJOSHADER_glSetVertexShaderUniformF
void MOJOSHADER_glSetVertexShaderUniformI(unsigned int idx, const int *data,
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unsigned int ivec4n)
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{
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const uint maxregs = STATICARRAYLEN(vs_register_file_i) / 4;
if (idx < maxregs)
{
const uint cpy = maxuint(maxregs - idx, ivec4n) * sizeof (*data)) * 4;
memcpy(vs_register_file_i + (idx * 4), data, cpy);
} // if
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} // MOJOSHADER_glSetVertexShaderUniformI
void MOJOSHADER_glSetVertexShaderUniformB(unsigned int idx, const int *data,
unsigned int bcount)
{
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const uint maxregs = STATICARRAYLEN(vs_register_file_f) / 4;
if (idx < maxregs)
{
uint8 *wptr = vs_register_file_b + idx;
uint8 *endptr = wptr + maxuint(maxregs - idx, bcount);
while (wptr != endptr)
*(wptr++) = *(data++) ? 1 : 0;
} // if
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} // MOJOSHADER_glSetVertexShaderUniformB
void MOJOSHADER_glSetPixelShaderUniformF(unsigned int idx, const float *data,
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unsigned int vec4n)
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{
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const uint maxregs = STATICARRAYLEN(ps_register_file_f) / 4;
if (idx < maxregs)
{
const uint cpy = maxuint(maxregs - idx, vec4n) * sizeof (*data)) * 4;
memcpy(ps_register_file_f + (idx * 4), data, cpy);
} // if
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} // MOJOSHADER_glSetPixelShaderUniformF
void MOJOSHADER_glSetPixelShaderUniformI(unsigned int idx, const int *data,
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unsigned int ivec4n)
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{
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const uint maxregs = STATICARRAYLEN(ps_register_file_i) / 4;
if (idx < maxregs)
{
const uint cpy = maxuint(maxregs - idx, ivec4n) * sizeof (*data)) * 4;
memcpy(ps_register_file_i + (idx * 4), data, cpy);
} // if
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} // MOJOSHADER_glSetPixelShaderUniformI
void MOJOSHADER_glSetPixelShaderUniformB(unsigned int idx, const int *data,
unsigned int bcount)
{
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const uint maxregs = STATICARRAYLEN(ps_register_file_f) / 4;
if (idx < maxregs)
{
uint8 *wptr = ps_register_file_b + idx;
uint8 *endptr = wptr + maxuint(maxregs - idx, bcount);
while (wptr != endptr)
*(wptr++) = *(data++) ? 1 : 0;
} // if
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} // MOJOSHADER_glSetPixelShaderUniformB
void MOJOSHADER_glSetVertexAttribute(MOJOSHADER_usage usage,
int index, unsigned int size,
MOJOSHADER_attributeType type,
int normalized, unsigned int stride,
const void *ptr)
{
} // MOJOSHADER_glSetVertexAttribute
void MOJOSHADER_glProgramReady(void)
{
} // MOJOSHADER_glProgramReady
void MOJOSHADER_glDeleteProgram(const MOJOSHADER_glProgram *program)
{
program_unref(shader);
} // MOJOSHADER_glDeleteProgram
void MOJOSHADER_glDeleteShader(const MOJOSHADER_glShader *shader)
{
shader_unref(shader);
} // MOJOSHADER_glDeleteShader
void MOJOSHADER_glDeinit(void)
{
MOJOSHADER_glBindProgram(NULL);
profile = NULL;
malloc_fn = NULL;
free_fn = NULL;
malloc_data = NULL;
// !!! FIXME: NULL entry points.
} // MOJOSHADER_glDeinit
// end of mojoshader_opengl.c ...