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408 lines
14 KiB
408 lines
14 KiB
/*
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** Copyright 1995-2095, Silicon Graphics, Inc.
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** All Rights Reserved.
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**
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** This is UNPUBLISHED PROPRIETARY SOURCE CODE of Silicon Graphics, Inc.;
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** the contents of this file may not be disclosed to third parties, copied or
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** duplicated in any form, in whole or in part, without the prior written
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** permission of Silicon Graphics, Inc.
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**
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** RESTRICTED RIGHTS LEGEND:
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** Use, duplication or disclosure by the Government is subject to restrictions
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** as set forth in subdivision (c)(1)(ii) of the Rights in Technical Data
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** and Computer Software clause at DFARS 252.227-7013, and/or in similar or
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** successor clauses in the FAR, DOD or NASA FAR Supplement. Unpublished -
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** rights reserved under the Copyright Laws of the United States.
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*/
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#include "glslib.h"
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#include <stdlib.h>
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#include <string.h>
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/******************************************************************************
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__GLSreadStream
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******************************************************************************/
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__GLSreadStream* __glsReadStream_create(const GLubyte *inName) {
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__GLScontext *const ctx = __GLS_CONTEXT;
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__GLSreadStream *const outStream = __glsCalloc(
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1, sizeof(__GLSreadStream)
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);
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if (!outStream) return GLS_NONE;
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__glsString_init(&outStream->name);
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outStream->unreadFunc = ctx->unreadFunc;
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if (inName[0]) {
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const GLubyte *openName;
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__GLS_ITERLIST_FIRST(&ctx->readPrefixList);
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while (ctx->readPrefixList.iterElem) {
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if (
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!__glsListString_prefix(
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ctx->readPrefixList.iterElem, inName, &outStream->name
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) ||
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!(openName = __glsUCS1String(outStream->name.head))
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) {
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return __glsReadStream_destroy(outStream);
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}
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outStream->channel = fopen((const char *)openName, "rb");
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if (openName != outStream->name.head) free((GLvoid *)openName);
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if (outStream->channel) {
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setbuf(outStream->channel, GLS_NONE);
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outStream->opened = GL_TRUE;
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return outStream;
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}
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__GLS_ITERLIST_NEXT(&ctx->readPrefixList);
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}
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if (
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!__glsListString_prefix(
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ctx->writePrefix, inName, &outStream->name
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) ||
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!(openName = __glsUCS1String(outStream->name.head))
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) {
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return __glsReadStream_destroy(outStream);
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}
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outStream->channel = fopen((const char *)openName, "rb");
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if (openName != outStream->name.head) free((GLvoid *)openName);
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if (outStream->channel) {
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setbuf(outStream->channel, GLS_NONE);
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outStream->opened = GL_TRUE;
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return outStream;
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}
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return __glsReadStream_destroy(outStream);
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} else {
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outStream->readFunc = ctx->readFunc;
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if (!outStream->readFunc) outStream->channel = ctx->defaultReadChannel;
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return outStream;
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}
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}
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__GLSreadStream* __glsReadStream_destroy(__GLSreadStream *inStream) {
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if (!inStream) return GLS_NONE;
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if (inStream->opened && fclose(inStream->channel)) {
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__GLS_RAISE_ERROR(GLS_STREAM_CLOSE_ERROR);
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}
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__glsString_final(&inStream->name);
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free(inStream);
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return GLS_NONE;
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}
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GLbitfield __glsReadStream_getAttrib(const __GLSreadStream *inStream) {
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GLbitfield outVal = GLS_STREAM_READABLE_BIT;
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if (inStream->opened) {
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const GLubyte *const openName = __glsUCS1String(inStream->name.head);
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FILE *channel;
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if (!openName) return GLS_NONE;
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channel = fopen((const char *)openName, "ab");
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if (openName != inStream->name.head) free((GLvoid *)openName);
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if (channel) {
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fclose(channel);
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outVal |= GLS_STREAM_WRITABLE_BIT;
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}
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outVal |= GLS_STREAM_NAMED_BIT;
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}
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if (!fseek(inStream->channel, 0, SEEK_CUR)) {
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outVal |= GLS_STREAM_SEEKABLE_BIT;
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}
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return outVal;
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}
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size_t __glsReadStream_getByteCount(const __GLSreadStream *inStream) {
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long outVal;
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fpos_t pos;
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if (!inStream->channel) return 0;
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if (
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fgetpos(inStream->channel, &pos) ||
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fseek(inStream->channel, 0, SEEK_END)
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) {
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return 0;
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}
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outVal = ftell(inStream->channel);
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fsetpos(inStream->channel, &pos);
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return outVal == -1L ? 0 : (size_t)outVal;
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}
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GLuint __glsReadStream_getCRC32(const __GLSreadStream *inStream) {
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GLubyte buf[__GLS_CHECKSUM_BUF_BYTES];
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size_t i, n;
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GLuint outVal = 0xffffffff;
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fpos_t pos;
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if (!inStream->channel) return 0;
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if (
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fgetpos(inStream->channel, &pos) ||
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fseek(inStream->channel, 0, SEEK_SET)
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) {
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return 0;
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}
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while (n = fread(buf, 1, __GLS_CHECKSUM_BUF_BYTES, inStream->channel)) {
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for (i = 0 ; i < n ; ++i) __GLS_CRC32_STEP(outVal, buf[i]);
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}
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fsetpos(inStream->channel, &pos);
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if (ferror(inStream->channel)) {
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__GLS_RAISE_ERROR(GLS_STREAM_READ_ERROR);
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clearerr(inStream->channel);
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return 0;
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}
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return ~outVal;
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}
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GLSenum __glsReadStream_getType(const __GLSreadStream *inStream) {
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__GLSreader reader;
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if (!inStream->channel) return GLS_NONE;
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if (fseek(inStream->channel, 0, SEEK_CUR)) return GLS_UNKNOWN;
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if (__glsReader_init_stream(&reader, inStream, 256)) {
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const GLenum outType = reader.type;
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__glsReader_final(&reader);
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return outType;
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} else {
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return GLS_NONE;
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}
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}
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/******************************************************************************
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__GLSreader
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******************************************************************************/
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GLvoid* __glsReader_allocCallBuf(
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__GLSreader *inoutReader, size_t inByteCount
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) {
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GLvoid *outVal;
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if (inoutReader->error) return GLS_NONE;
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outVal = __glsMalloc(inByteCount);
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if (!outVal) __glsReader_raiseError(inoutReader, GLS_OUT_OF_MEMORY);
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return outVal;
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}
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GLvoid* __glsReader_allocFeedbackBuf(
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__GLSreader *inoutReader, size_t inByteCount
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) {
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GLvoid *outVal;
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if (inoutReader->error) return GLS_NONE;
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outVal = __glsContext_allocFeedbackBuf(__GLS_CONTEXT, inByteCount);
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if (!outVal) __glsReader_raiseError(inoutReader, GLS_OUT_OF_MEMORY);
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return outVal;
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}
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GLvoid* __glsReader_allocSelectBuf(
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__GLSreader *inoutReader, size_t inByteCount
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) {
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GLvoid *outVal;
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if (inoutReader->error) return GLS_NONE;
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outVal = __glsContext_allocSelectBuf(__GLS_CONTEXT, inByteCount);
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if (!outVal) __glsReader_raiseError(inoutReader, GLS_OUT_OF_MEMORY);
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return outVal;
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}
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#if __GL_EXT_vertex_array
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GLvoid* __glsReader_allocVertexArrayBuf(
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__GLSreader *inoutReader, GLSopcode inOpcode, size_t inByteCount
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) {
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GLvoid *outVal;
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if (inoutReader->error) return GLS_NONE;
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outVal = __glsContext_allocVertexArrayBuf(
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__GLS_CONTEXT, inOpcode, inByteCount
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);
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if (!outVal) __glsReader_raiseError(inoutReader, GLS_OUT_OF_MEMORY);
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return outVal;
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}
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#endif /* __GL_EXT_vertex_array */
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void __glsReader_call(__GLSreader *inoutReader) {
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GLboolean callSave;
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__GLScontext *const ctx = __GLS_CONTEXT;
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callSave = ctx->contextCall;
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ctx->contextCall = GL_FALSE;
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while (inoutReader->type != GLS_NONE) {
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#ifndef __GLS_PLATFORM_WIN32
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// DrewB
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ctx->dispatchDecode_bin[GLS_OP_glsBeginGLS](
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(GLubyte *)&inoutReader->version
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);
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#else
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ctx->dispatchDecode_bin[GLS_OP_glsBeginGLS](
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ctx, (GLubyte *)&inoutReader->version
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);
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#endif
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if (inoutReader->type == GLS_TEXT) {
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if (!__glsReader_call_text(inoutReader)) break;
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inoutReader->readHead = inoutReader->readPtr;
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__GLS_GET_SPACE(inoutReader);
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} else if (inoutReader->type == __GLS_BINARY_SWAP0) {
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if (!__glsReader_call_bin(inoutReader)) break;
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inoutReader->readHead = inoutReader->readPtr;
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} else {
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if (!__glsReader_call_bin_swap(inoutReader)) break;
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inoutReader->readHead = inoutReader->readPtr;
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}
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#ifndef __GLS_PLATFORM_WIN32
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// DrewB
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ctx->dispatchDecode_bin[GLS_OP_glsEndGLS](GLS_NONE);
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#else
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ctx->dispatchDecode_bin[GLS_OP_glsEndGLS](ctx, GLS_NONE);
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#endif
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inoutReader->type = __glsReader_readBeginGLS_bin(
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inoutReader, &inoutReader->version
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);
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if (inoutReader->type == GLS_NONE) {
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inoutReader->type = __glsReader_readBeginGLS_text(
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inoutReader, &inoutReader->version
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);
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}
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if (inoutReader->type == GLS_NONE) {
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inoutReader->readPtr = inoutReader->readHead;
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}
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inoutReader->readHead = GLS_NONE;
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}
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ctx->contextCall = callSave;
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}
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__GLSreader* __glsReader_final(__GLSreader *inoutReader) {
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if (inoutReader && inoutReader->stream) {
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const ptrdiff_t excess = inoutReader->readTail - inoutReader->readPtr;
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if (excess > 0) {
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if (
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(
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!inoutReader->stream->channel ||
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fseek(
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inoutReader->stream->channel,
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-1 * (long)excess,
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SEEK_CUR
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)
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) &&
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__GLS_CONTEXT->unreadFunc
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) {
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__GLS_CONTEXT->unreadFunc(
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(size_t)excess, inoutReader->readPtr
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);
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}
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}
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free(inoutReader->buf);
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}
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return GLS_NONE;
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}
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GLboolean __glsReader_fillBuf(
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__GLSreader *inoutReader, size_t inMinBytes, GLboolean inRealign
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) {
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FILE *channel;
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size_t keepBytes, needBytes, padBytes, unreadBytes;
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GLubyte *ptr, *readHead;
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if (!inoutReader->readPtr || !inoutReader->stream) return GL_FALSE;
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readHead = (
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inoutReader->readHead ? inoutReader->readHead : inoutReader->readPtr
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);
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keepBytes = (size_t)((ULONG_PTR)(inoutReader->readPtr - readHead));
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unreadBytes = (size_t)((ULONG_PTR)(inoutReader->readTail - inoutReader->readPtr));
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if (inRealign) {
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padBytes = (size_t)((ULONG_PTR)(readHead - inoutReader->buf) & (__GLS_MAX_ALIGN_BYTES - 4));
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} else if (keepBytes % __GLS_MAX_ALIGN_BYTES) {
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padBytes = __GLS_MAX_ALIGN_BYTES - keepBytes % __GLS_MAX_ALIGN_BYTES;
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} else {
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padBytes = 0;
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}
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needBytes = padBytes + keepBytes + __GLS_MAX(inMinBytes, unreadBytes);
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if (needBytes > inoutReader->bufSize) {
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GLubyte *const buf = __glsMalloc(needBytes);
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if (!buf) goto eos;
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ptr = buf + padBytes;
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while (readHead < inoutReader->readTail) *ptr++ = *readHead++;
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free(inoutReader->buf);
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inoutReader->buf = buf;
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inoutReader->bufSize = needBytes;
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} else {
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ptr = inoutReader->buf + padBytes;
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if (ptr != readHead) memmove(ptr, readHead, keepBytes + unreadBytes);
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}
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readHead = inoutReader->buf + padBytes;
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if (inoutReader->readHead) inoutReader->readHead = readHead;
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inoutReader->readPtr = readHead + keepBytes;
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inoutReader->readTail = inoutReader->readPtr + unreadBytes;
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channel = inoutReader->stream->channel;
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for (;;) {
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if (
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(size_t)(inoutReader->readTail - inoutReader->readPtr) >=
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inMinBytes
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) {
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return GL_TRUE;
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}
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ptr = inoutReader->readTail;
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if (channel) {
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inoutReader->readTail += fread(
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ptr,
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1,
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(size_t)((ULONG_PTR)(inoutReader->buf + inoutReader->bufSize - ptr)),
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channel
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);
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if (ferror(channel)) {
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__GLS_RAISE_ERROR(GLS_STREAM_READ_ERROR);
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clearerr(channel);
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}
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} else {
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inoutReader->readTail += inoutReader->stream->readFunc(
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(size_t)((ULONG_PTR)(inoutReader->buf + inoutReader->bufSize - ptr)), ptr
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);
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}
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if (inoutReader->readTail <= ptr) break;
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}
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eos:
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inoutReader->readHead = GLS_NONE;
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inoutReader->readPtr = GLS_NONE;
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inoutReader->readTail = GLS_NONE;
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return GL_FALSE;
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}
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__GLSreader* __glsReader_init_array(
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__GLSreader *outReader, const GLubyte *inArray, size_t inCount
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) {
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memset(outReader, 0, sizeof(__GLSreader));
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outReader->buf = (GLubyte *)inArray;
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outReader->bufSize = inCount;
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outReader->readPtr = outReader->buf;
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outReader->readTail = outReader->buf + inCount;
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return outReader;
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}
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__GLSreader* __glsReader_init_stream(
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__GLSreader *outReader, const __GLSreadStream *inStream, size_t inBufSize
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) {
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memset(outReader, 0, sizeof(__GLSreader));
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outReader->stream = inStream;
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outReader->buf = __glsMalloc(inBufSize);
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if (!outReader->buf) return __glsReader_final(outReader);
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outReader->bufSize = inBufSize;
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outReader->readPtr = outReader->buf;
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outReader->readTail = outReader->buf;
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outReader->readHead = outReader->readPtr;
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outReader->type = __glsReader_readBeginGLS_bin(
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outReader, &outReader->version
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);
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if (outReader->type == GLS_NONE) {
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outReader->type = __glsReader_readBeginGLS_text(
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outReader, &outReader->version
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);
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}
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if (outReader->type == GLS_NONE) {
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outReader->readPtr = outReader->readHead;
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return __glsReader_final(outReader);
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}
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outReader->readHead = GLS_NONE;
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return outReader;
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}
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void __glsReader_raiseError(__GLSreader *inoutReader, GLSenum inError) {
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if (!inoutReader->error) inoutReader->error = inError;
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}
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