808 lines
33 KiB
C
808 lines
33 KiB
C
// data pipeline
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// - rlyeh, public domain.
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// ----------------------------------------------------------------------------
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// @todo: threads should steal workloads from job queue
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// @todo: restore errno/errorlevel checks
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// @todo: +=, -=, that_asset.ini
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// @todo: @dae FLAGS+=-U
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// @todo: SF2_SOUNDBANK=TOOLS/soundbank.sf2
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// @fixme: leaks (worth?)
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// -----------------------------------------------------------------------------
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const char *ART = "art/";
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const char *TOOLS = "tools/bin/";
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const char *EDITOR = "tools/editor/";
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const char *COOK_INI = "tools/cook.ini";
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static unsigned ART_SKIP_ROOT; // number of chars to skip the base root in ART folder
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static unsigned ART_LEN; // dupe
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typedef struct cook_subscript_t {
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char *infile;
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char *outfile; // can be either infile, or a totally different file
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char *script;
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char *outname;
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int compress_level;
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} cook_subscript_t;
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typedef struct cook_script_t {
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cook_subscript_t cs[8];
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int num_passes;
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} cook_script_t;
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static
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cook_script_t cook_script(const char *rules, const char *infile, const char *outfile) {
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cook_script_t mcs = { 0 };
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// pass loop: some asset rules may require multiple cook passes
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for( int pass = 0; pass < countof(mcs.cs); ++pass ) {
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// by default, assume:
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// - no script is going to be generated (empty script)
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// - if no script is going to be generated, output is in fact input file.
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// - no compression is going to be required.
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cook_subscript_t cs = { 0 };
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// reuse script heap from last call if possible (optimization)
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static __thread char *script = 0;
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if(script) script[0] = 0;
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// reuse parsing maps if possible (optimization)
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static __thread map(char*, char*) symbols = 0; if(!symbols) map_init_str(symbols);
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static __thread map(char*, char*) groups = 0; if(!groups) map_init_str(groups);
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static __thread set(char*) passes = 0; if(!passes) set_init_str(passes);
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map_clear(symbols);
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map_clear(groups);
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map_find_or_add(symbols, "INFILE", STRDUP(infile));
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map_find_or_add(symbols, "INPUT", STRDUP(infile));
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map_find_or_add(symbols, "PRETTY", STRDUP(infile + ART_SKIP_ROOT)); // pretty (truncated) input (C:/prj/V4K/art/file.wav -> file.wav)
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map_find_or_add(symbols, "OUTPUT", STRDUP(outfile));
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map_find_or_add(symbols, "TOOLS", STRDUP(TOOLS));
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map_find_or_add(symbols, "EDITOR", STRDUP(EDITOR));
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map_find_or_add(symbols, "PROGRESS", STRDUP(va("%03d", cook_progress())));
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// clear pass counter
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set_clear(passes);
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// start parsing. parsing is enabled by default
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int enabled = 1;
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array(char*)lines = strsplit(rules, "\r\n");
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for( int i = 0, end = array_count(lines); i < end; ++i ) {
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// skip blanks
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int blanks = strspn(lines[i], " \t");
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char *line = lines[i] + blanks;
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// discard full comments
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if( line[0] == ';' ) continue;
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// truncate inline comments
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if( strstr(line, ";") ) *strstr(line, ";") = 0;
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// trim ending spaces
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char *eos = line + strlen(line); while(eos > line && eos[-1] == ' ' ) *--eos = 0;
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// discard non-specific lines
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if( line[0] == '@' ) {
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int with_wine = flag("--cook-wine") && !!strstr(line, "@win");
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int parse = 0
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| ifdef(win32, (!!strstr(line, "@win")), 0)
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| ifdef(linux, (!!strstr(line, "@lin") ? 1 : with_wine), 0)
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| ifdef(osx, (!!strstr(line, "@osx") ? 1 : with_wine), 0);
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if( !parse ) continue;
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line = strchr(line+1, ' ');
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if(!line) continue;
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line += strspn(line, " \t");
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}
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// execute `shell` commands
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if( line[0] == '`' ) {
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char *eos = strrchr(++line, '`');
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if( eos ) *eos = 0;
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// replace all symbols
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char* nl = STRDUP(line); // @leak
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for each_map(symbols, char*, key, char*, val) {
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strrepl(&nl, key, val);
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}
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lines[i] = line = nl;
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static thread_mutex_t lock, *init = 0; if(!init) thread_mutex_init(init = &lock);
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thread_mutex_lock( &lock );
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system(line); // strcatf(&script, "%s\n", line);
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thread_mutex_unlock( &lock );
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continue;
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}
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// process [sections]
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if( line[0] == '[' ) {
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enabled = 1;
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int is_cook = !!strstr(line, "[cook]");
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int is_compress = !!strstr(line, "[compress]");
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if( !is_cook && !is_compress ) { // if not a special section...
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// remove hint cook tag if present. that's informative only.
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if(strbegi(line, "[cook ") ) memcpy(line+1, " ", 4); // line += 6;
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// start parsing expressions like `[media && !avi && mp3]`
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array(char*) tags = strsplit(line, " []&");
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// let's check whether INPUT belongs to tags above
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char **INPUT = map_find(symbols, "INPUT");
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bool found_in_set = true;
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for( int i = 0, end = array_count(tags); i < end; ++i) {
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bool negate = false;
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char *tag = tags[i];
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while(*tag == '!') negate ^= 1, ++tag;
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// find tag in groups map
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// either a group or an extension
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char **is_group = map_find(groups, tag);
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if( is_group ) {
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char *list = *is_group;
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char *INPUT_EXT = file_ext(infile); INPUT_EXT = strrchr(INPUT_EXT, '.'); // .ext1.ext -> .ext
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char *ext = INPUT_EXT; ext += ext[0] == '.'; // dotless
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bool in_list = strbegi(list, ext) || strendi(list, va(",%s",ext)) || strstri(list, va(",%s,",ext));
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if( !in_list ^ negate ) { found_in_set = false; break; }
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} else {
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char *ext = va(".%s", tag);
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bool found = !!strendi(*INPUT, ext);
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if( !found ^ negate ) { found_in_set = false; break; }
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}
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}
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if( found_in_set ) {
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// inc pass
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set_find_or_add(passes, STRDUP(*tags)); // @leak
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// check whether we keep searching
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int num_passes = set_count(passes);
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found_in_set = ( pass == (num_passes-1) );
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}
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//
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enabled = found_in_set ? 1 : 0;
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}
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}
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// either SYMBOL=, group=, or regular script line
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if( enabled && line[0] != '[' ) {
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enum { group, symbol, regular } type = regular;
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int tokenlen = strspn(line, "-+_.|0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz");
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char *token = va("%.*s", tokenlen, line);
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char *equal = strchr(line, '=');
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if( equal ) {
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if( equal == &line[tokenlen] ) { // if key=value expression found
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// discriminate: symbols are uppercase and never begin with digits. groups are [0-9]+[|][a-z].
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type = strcmp(strupper(token), token) || isdigit(token[0]) ? group : symbol;
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}
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}
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if( type == group ) map_find_or_add(groups, token, STRDUP(equal+1));
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if( type == symbol ) {
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// @todo: perform the replacement/union/intersection on set here
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bool is_add = strendi(token, "+");
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bool is_del = strendi(token, "-");
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// if present, remove last sign from token -> (FLAGS1+)=, (FLAGS1-)=
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if(is_add || is_del) token[strlen(token) - 1] = 0;
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map_find_or_add(symbols, token, STRDUP(equal+1));
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}
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// for each_map(symbols, char*, key, char*, val) printf("%s=%s,", key, val); puts("");
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// for each_map(groups, char*, key, char*, val) printf("%s=%s,", key, val); puts("");
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// if( type != regular ) printf("%s found >> %s\n", type == group ? "group" : "symbol", line);
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if( type == regular ) {
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char** INPUT = map_find(symbols, "INPUT");
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char** OUTPUT = map_find(symbols, "OUTPUT");
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// parse return code
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char *has_errorlevel = strstr(line, "=="); //==N form
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int errorlevel = has_errorlevel ? atoi(has_errorlevel + 2) : 0;
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if( has_errorlevel ) memcpy(has_errorlevel, " ", 3);
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// detect if newer extension or filename is present, and thus update OUTPUT if needed
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char *newer_extension = strstr(line, "->"); if(newer_extension) {
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*newer_extension = 0;
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newer_extension += 2 + strspn(newer_extension + 2, " ");
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if( strchr(newer_extension, '.') ) {
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// newer filename
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cs.outname = stringf("%s@%s", cs.outname ? cs.outname : infile, newer_extension); // @leak // special char (multi-pass cooks)
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newer_extension = NULL;
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} else {
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strcatf(&*OUTPUT, ".%s", newer_extension);
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}
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}
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// replace all symbols
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char* nl = STRDUP(line); // @leak
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for each_map(symbols, char*, key, char*, val) {
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strrepl(&nl, key, val);
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}
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lines[i] = line = nl;
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// convert slashes
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ifdef(win32,
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strswap(line, "/", "\\")
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, // else
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strswap(line, "\\", "/")
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);
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// append line
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strcatf(&script, "%s\n", line);
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// handle return code here
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// if(has_errorlevel)
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// strcatf(&script, "IF NOT '%%ERRORLEVEL%%'=='%d' echo ERROR!\n", errorlevel);
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// rename output->input for further chaining, in case it is needed
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if( newer_extension ) {
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*INPUT[0] = 0;
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strcatf(&*INPUT, "%s", *OUTPUT);
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}
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}
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}
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}
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char** OUTPUT = map_find(symbols, "OUTPUT");
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int ext_num_groups = 0;
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// compression
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if( 1 ) {
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char* ext = file_ext(infile); ext = strrchr(ext, '.'); ext += ext[0] == '.'; // dotless INPUT_EXT
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char* belongs_to = 0;
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for each_map(groups, char*, key, char*, val) {
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if( !isdigit(key[0]) ) {
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char *comma = va(",%s,", ext);
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if( !strcmpi(val,ext) || strbegi(val, comma+1) || strstri(val, comma) || strendi(val, va(",%s", ext))) {
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belongs_to = key;
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ext_num_groups++;
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}
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}
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}
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char *compression = 0;
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for each_map(groups, char*, key, char*, val) {
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if( isdigit(key[0]) ) {
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char *comma = va(",%s,", ext);
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if( !strcmpi(val,ext) || strbegi(val, comma+1) || strstri(val, comma) || strendi(val, va(",%s", ext))) {
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compression = key;
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}
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comma = va(",%s,", belongs_to);
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if( !strcmpi(val,ext) || strbegi(val, comma+1) || strstri(val, comma) || strendi(val, va(",%s", ext))) {
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compression = key;
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}
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}
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}
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cs.compress_level = 0;
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if( compression ) {
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// last chance to optionally override the compressor at command-line level
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static const char *compressor_override;
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do_once compressor_override = option("--cook-compressor", "");
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if( compressor_override[0] ) compression = (char*)compressor_override;
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/**/ if(strstri(compression, "PPP")) cs.compress_level = atoi(compression) | PPP;
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else if(strstri(compression, "ULZ")) cs.compress_level = atoi(compression) | ULZ;
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else if(strstri(compression, "LZ4")) cs.compress_level = atoi(compression) | LZ4X;
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else if(strstri(compression, "CRSH")) cs.compress_level = atoi(compression) | CRSH;
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else if(strstri(compression, "DEFL")) cs.compress_level = isdigit(compression[0]) ? atoi(compression) : 6 /*| DEFL*/;
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//else if(strstri(compression, "LZP")) cs.compress_level = atoi(compression) | LZP1; // not supported
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else if(strstri(compression, "LZMA")) cs.compress_level = atoi(compression) | LZMA;
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else if(strstri(compression, "BALZ")) cs.compress_level = atoi(compression) | BALZ;
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else if(strstri(compression, "LZW")) cs.compress_level = atoi(compression) | LZW3;
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else if(strstri(compression, "LZSS")) cs.compress_level = atoi(compression) | LZSS;
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else if(strstri(compression, "BCM")) cs.compress_level = atoi(compression) | BCM;
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else cs.compress_level = isdigit(compression[0]) ? atoi(compression) : 6 /*| DEFL*/;
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}
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}
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// if script was generated...
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if( script && script[0]) {
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// update outfile
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cs.outfile = *OUTPUT;
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// amalgamate script
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array(char*) lines = strsplit(script, "\r\n");
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#if is(win32)
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char *joint = strjoin(lines, " && ");
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cs.script = joint;
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#else
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if( flag("--cook-wine") ) {
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// dear linux/osx/bsd users:
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// tools going wrong for any reason? cant compile them maybe?
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// small hack to use win32 pipeline tools instead
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char *joint = strjoin(lines, " && wine " );
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cs.script = va("wine %s", /*TOOLS,*/ joint);
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} else {
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char *joint = strjoin(lines, " && " );
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cs.script = va("export LD_LIBRARY_PATH=%s && %s", TOOLS, joint);
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}
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#endif
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} else {
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// ... else bypass infile->outfile
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char** INFILE = map_find(symbols, "INFILE");
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cs.outfile = *INFILE;
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// and return an empty script
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cs.script = "";
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}
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cs.outname = cs.outname ? cs.outname : (char*)infile;
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ASSERT(mcs.num_passes < countof(mcs.cs));
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mcs.cs[mcs.num_passes++] = cs;
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bool next_pass_required = mcs.num_passes < ext_num_groups;
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if( !next_pass_required ) break;
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}
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return mcs;
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}
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// ----------------------------------------------------------------------------
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struct fs {
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char *fname, status;
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uint64_t stamp;
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uint64_t bytes;
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};
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static array(struct fs) fs_now;
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static __thread array(char*) added;
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static __thread array(char*) changed;
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static __thread array(char*) deleted;
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static __thread array(char*) uncooked;
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static
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array(struct fs) zipscan_filter(int threadid, int numthreads) {
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// iterate all previously scanned files
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array(struct fs) fs = 0;
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for( int i = 0, end = array_count(fs_now); i < end; ++i ) {
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// during workload distribution, we assign random files to specific thread buckets.
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// we achieve this by hashing the basename of the file. we used to hash also the path
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// long time ago but that is less resilient to file relocations across the repository.
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// excluding the file extension from the hash also helps from external file conversions.
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char *fname = file_name(fs_now[i].fname);
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char *sign = strrchr(fname, '@'); if(sign) *sign = '\0'; // special char (multi-pass cooks)
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char *dot = strrchr(fname, '.'); if(dot) *dot = '\0';
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// skip if list item does not belong to this thread bucket
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uint64_t hash = hash_str(fname);
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unsigned bucket = (hash >> 32) % numthreads;
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if(bucket != threadid) continue;
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array_push(fs, fs_now[i]);
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}
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return fs;
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}
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static
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int zipscan_diff( zip* old, array(struct fs) now ) {
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array_free(added);
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array_free(changed);
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array_free(deleted);
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array_free(uncooked);
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// if not zipfile is present, all files are new and must be added
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if( !old ) {
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for( int i = 0; i < array_count(now); ++i ) {
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array_push(uncooked, STRDUP(now[i].fname));
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}
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return 1;
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}
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// compare for new & changed files
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for( int i = 0; i < array_count(now); ++i ) {
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int found = zip_find(old, now[i].fname);
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if( found < 0 ) {
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array_push(added, STRDUP(now[i].fname));
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array_push(uncooked, STRDUP(now[i].fname));
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} else {
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uint64_t oldsize = atoi64(zip_comment(old,found)); // zip_size(old, found); returns sizeof processed asset. return original size of unprocessed asset, which we store in comment section
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uint64_t oldstamp = atoi64(zip_modt(old,found)+20); // format is "YYYY/MM/DD hh:mm:ss", then +20 chars later a hidden epoch timestamp in base10 can be found
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int64_t diffstamp = oldstamp < now[i].stamp ? now[i].stamp - oldstamp : oldstamp - now[i].stamp;
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if( oldsize != now[i].bytes || diffstamp > 1 ) { // @fixme: should use hash instead. hashof(tool) ^ hashof(args used) ^ hashof(rawsize) ^ hashof(rawdate)
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printf("%s:\t%u vs %u, %llu vs %llu\n", now[i].fname, (unsigned)oldsize,(unsigned)now[i].bytes, oldstamp,now[i].stamp);
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array_push(changed, STRDUP(now[i].fname));
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array_push(uncooked, STRDUP(now[i].fname));
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}
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}
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}
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// compare for deleted files
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for( int i = 0; i < zip_count(old); ++i ) {
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char *oldname = zip_name(old, i);
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//if( strchr(oldname, '@') ) oldname = va("%*.s", (int)(strchr(oldname, '@') - oldname), oldname ); // special char (multi-pass cooks)
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int idx = zip_find(old, oldname); // find latest versioned file in zip
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unsigned oldsize = zip_size(old, idx);
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if (!oldsize) continue;
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struct fs *found = 0; // zipscan_locate(now, oldname);
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for(int j = 0; j < array_count(now); ++j) {
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if( !strcmp(now[j].fname,oldname)) {
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found = &now[j];
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break;
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}
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}
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if( !found ) {
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array_push(deleted, STRDUP(oldname));
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}
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}
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return 1;
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}
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// ----------------------------------------------------------------------------
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typedef struct cook_worker {
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const char **files;
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const char *rules;
|
|
int threadid, numthreads;
|
|
thread_ptr_t self;
|
|
volatile int progress;
|
|
thread_mutex_t *lock;
|
|
} cook_worker;
|
|
|
|
enum { JOBS_MAX = 256 };
|
|
static cook_worker jobs[JOBS_MAX] = {0};
|
|
static volatile bool cook_cancelable = false, cook_cancelling = false, cook_debug = false;
|
|
|
|
#ifndef COOK_ON_DEMAND
|
|
#define COOK_ON_DEMAND flag("--cook-on-demand")
|
|
#endif
|
|
|
|
static
|
|
int cook(void *userdata) {
|
|
cook_worker *job = (cook_worker*)userdata;
|
|
|
|
// start progress
|
|
volatile int *progress = &job->progress;
|
|
*progress = 0;
|
|
|
|
// scan disk from fs_now snapshot
|
|
array(struct fs) filtered = zipscan_filter(job->threadid, job->numthreads);
|
|
//printf("Scanned: %d items found\n", array_count(now));
|
|
|
|
// prepare out tempname
|
|
char COOK_TMPFILE[64]; snprintf(COOK_TMPFILE, 64, "temp_%02d", job->threadid);
|
|
|
|
// prepare zip
|
|
char zipfile[64]; snprintf(zipfile, 64, ".art[%02x].zip", job->threadid);
|
|
if( file_size(zipfile) == 0 ) unlink(zipfile);
|
|
|
|
// populate added/deleted/changed arrays by examining current disk vs last cache
|
|
zip *z;
|
|
{
|
|
z = zip_open(zipfile, "r+b");
|
|
zipscan_diff(z, filtered);
|
|
if( z ) zip_close(z);
|
|
|
|
fflush(0);
|
|
|
|
z = zip_open(zipfile, "a+b");
|
|
if( !z ) {
|
|
unlink(zipfile);
|
|
z = zip_open(zipfile, "a+b"); // try again
|
|
if(!z) PANIC("cannot open file for updating: %s", zipfile);
|
|
}
|
|
}
|
|
|
|
// deleted files. --cook-additive runs are append-only, so they skip this block
|
|
if( !flag("--cook-additive") )
|
|
for( int i = 0, end = array_count(deleted); i < end; ++i ) {
|
|
printf("Deleting %03d%% %s\n", (i+1) == end ? 100 : (i * 100) / end, deleted[i]);
|
|
FILE* out = fopen(COOK_TMPFILE, "wb"); fclose(out);
|
|
FILE* in = fopen(COOK_TMPFILE, "rb");
|
|
char *comment = "0";
|
|
zip_append_file/*_timeinfo*/(z, deleted[i], comment, in, 0/*, tm_now*/);
|
|
fclose(in);
|
|
}
|
|
// added or changed files
|
|
for( int i = 0, end = array_count(uncooked); i < end && !cook_cancelling; ++i ) {
|
|
*progress = ((i+1) == end ? 90 : (i * 90) / end); // (i+i>0) * 100.f / end;
|
|
|
|
// start cook
|
|
const char *infile = uncooked[i]; //job->files[j];
|
|
int inlen = file_size(infile);
|
|
|
|
// generate a cooking script for this asset
|
|
cook_script_t mcs = cook_script(job->rules, infile, COOK_TMPFILE);
|
|
// puts(cs.script);
|
|
|
|
for(int pass = 0; pass < mcs.num_passes; ++pass) {
|
|
cook_subscript_t cs = mcs.cs[pass];
|
|
|
|
// log to batch file for forensic purposes, if explicitly requested
|
|
static __thread bool logging = 0; do_once logging = !!flag("--cook-debug") || cook_debug;
|
|
if( logging ) {
|
|
FILE *logfile = fopen(va("cook%d.cmd",job->threadid), "a+t");
|
|
if( logfile ) { fprintf(logfile, "@rem %s\n%s\n", cs.outname, cs.script); fclose(logfile); }
|
|
fprintf(stderr, "%s\n", cs.script);
|
|
}
|
|
|
|
// invoke cooking script and recap status
|
|
const char *rc_output = app_exec(cs.script);
|
|
int rc = atoi(rc_output);
|
|
int outlen = file_size(cs.outfile);
|
|
int failed = cs.script[0] ? rc || !outlen : 0;
|
|
|
|
// print errors
|
|
if( failed ) {
|
|
PRINTF("Import failed: %s while executing:\n%s\nReturned:\n%s\n", cs.outname, cs.script, rc_output);
|
|
continue;
|
|
}
|
|
|
|
// special char (multi-pass cook). newly generated file: refresh values
|
|
// ensure newly created files by cook are also present on repo/disc for further cook passes
|
|
if( pass > 0 ) { // && strchr(cs.outname, '@') ) { // pass>0 is a small optimization // special char (multi-pass cooks)
|
|
file_delete(cs.outname);
|
|
file_move(cs.outfile, cs.outname);
|
|
inlen = file_size(infile = cs.outfile = cs.outname);
|
|
}
|
|
|
|
// process only if included. may include optional compression.
|
|
if( cs.compress_level >= 0 ) {
|
|
FILE *in = fopen(cs.outfile, "rb");
|
|
|
|
#if 0
|
|
struct stat st; stat(infile, &st);
|
|
struct tm *timeinfo = localtime(&st.st_mtime);
|
|
ASSERT(timeinfo);
|
|
#endif
|
|
|
|
char *comment = va("%d", inlen);
|
|
if( !zip_append_file/*_timeinfo*/(z, infile, comment, in, cs.compress_level/*, timeinfo*/) ) {
|
|
PANIC("failed to add processed file into %s: %s(%s)", zipfile, cs.outname, infile);
|
|
}
|
|
|
|
fclose(in);
|
|
}
|
|
}
|
|
}
|
|
|
|
zip_close(z);
|
|
|
|
// end progress
|
|
if( file_size(zipfile) == 0 ) unlink(zipfile);
|
|
*progress = 100;
|
|
|
|
return 1;
|
|
}
|
|
|
|
static
|
|
int cook_async( void *userdata ) {
|
|
#if COOK_FROM_TERMINAL
|
|
// nothing to do...
|
|
#else
|
|
while(!window_handle()) sleep_ms(100); // wait for window handle to be created
|
|
#endif
|
|
|
|
// boost cook thread #0, which happens to be the only spawn thread when num_jobs=1 (tcc case, cook-sync case).
|
|
// also in multi-threaded scenarios, it is not bad at all to have one high priority thread...
|
|
// in any case, game view is not going to look bad because the game will be displaying a progress bar at that time.
|
|
cook_worker *job = (cook_worker*)userdata;
|
|
if( job->threadid == 0 ) thread_set_high_priority();
|
|
|
|
// tcc: only a single running thread shall pass, because of racing shared state due to missing thread_local support at compiler level
|
|
ifdef(tcc, thread_mutex_lock( job->lock ));
|
|
|
|
int ret = cook(userdata);
|
|
|
|
// tcc: only a single running thread shall pass, because of racing shared state due to missing thread_local support at compiler level
|
|
ifdef(tcc, thread_mutex_unlock( job->lock ));
|
|
|
|
thread_exit( ret );
|
|
return ret;
|
|
}
|
|
|
|
bool cook_start( const char *cook_ini, const char *masks, int flags ) {
|
|
cook_ini = cook_ini ? cook_ini : COOK_INI;
|
|
|
|
char *rules_ = file_read(cook_ini);
|
|
if(!rules_ || rules_[0] == 0) return false;
|
|
|
|
static char *rules; do_once rules = STRDUP(rules_);
|
|
|
|
do_once {
|
|
#if 0
|
|
const char *HOME = file_pathabs(cook_ini); // ../tools/cook.ini -> c:/prj/v4k/tools/cook.ini
|
|
if( strbeg(HOME, app_path() ) ) HOME = STRDUP( file_path( HOME += strlen(app_path()) ) ); // -> tools/ @leak
|
|
#else
|
|
char *HOME = STRDUP(file_pathabs(cook_ini)); // ../tools/cook.ini -> c:/prj/v4k/tools/cook.ini
|
|
HOME[ strlen(HOME) - strlen(file_name(cook_ini)) ] = '\0'; // -> tools/ @leak
|
|
#endif
|
|
|
|
ART_LEN = 0; //strlen(app_path());
|
|
/* = MAX_PATH;
|
|
for each_substring(ART, ",", art_folder) {
|
|
ART_LEN = mini(ART_LEN, strlen(art_folder));
|
|
}*/
|
|
|
|
if( strstr(rules, "ART=") ) {
|
|
ART = va( "%s", strstr(rules, "ART=") + 4 );
|
|
char *r = strchr( ART, '\r' ); if(r) *r = 0;
|
|
char *n = strchr( ART, '\n' ); if(n) *n = 0;
|
|
char *s = strchr( ART, ';' ); if(s) *s = 0;
|
|
char *w = strchr( ART, ' ' ); if(w) *w = 0;
|
|
char *out = 0; const char *sep = "";
|
|
for each_substring(ART, ",", t) {
|
|
char *tmp = file_pathabs(va("%s%s", HOME, t)) + ART_LEN;
|
|
for(int i = 0; tmp[i]; ++i) if(tmp[i]=='\\') tmp[i] = '/';
|
|
strcatf(&out, "%s%s%s", sep, tmp, strendi(tmp, "/") ? "" : "/");
|
|
assert( out[strlen(out) - 1] == '/' );
|
|
|
|
sep = ",";
|
|
}
|
|
ART = out; // @leak
|
|
}
|
|
|
|
if( strstr(rules, "TOOLS=") ) {
|
|
TOOLS = va( "%s", strstr(rules, "TOOLS=") + 6 );
|
|
char *r = strchr( TOOLS, '\r' ); if(r) *r = 0;
|
|
char *n = strchr( TOOLS, '\n' ); if(n) *n = 0;
|
|
char *s = strchr( TOOLS, ';' ); if(s) *s = 0;
|
|
char *w = strchr( TOOLS, ' ' ); if(w) *w = 0;
|
|
char *cat = va("%s%s", HOME, TOOLS), *out = 0;
|
|
for(int i = 0; cat[i]; ++i) if(cat[i]=='\\') cat[i] = '/';
|
|
strcatf(&out, "%s%s", cat, strend(cat, "/") ? "" : "/");
|
|
TOOLS = out; // @leak
|
|
assert( TOOLS[strlen(TOOLS) - 1] == '/' );
|
|
|
|
// last chance to autodetect tools folder (from cook.ini path)
|
|
if( !file_directory(TOOLS) ) {
|
|
out = STRDUP(cook_ini);
|
|
for(int i = 0; out[i]; ++i) if(out[i]=='\\') out[i] = '/';
|
|
TOOLS = out; // @leak
|
|
}
|
|
}
|
|
|
|
if( strstr(rules, "EDITOR=") ) {
|
|
EDITOR = va( "%s", strstr(rules, "EDITOR=") + 7 );
|
|
char *r = strchr( EDITOR, '\r' ); if(r) *r = 0;
|
|
char *n = strchr( EDITOR, '\n' ); if(n) *n = 0;
|
|
char *s = strchr( EDITOR, ';' ); if(s) *s = 0;
|
|
char *w = strchr( EDITOR, ' ' ); if(w) *w = 0;
|
|
char *cat = va("%s%s", HOME, EDITOR), *out = 0;
|
|
for(int i = 0; cat[i]; ++i) if(cat[i]=='\\') cat[i] = '/';
|
|
strcatf(&out, "%s%s", cat, strend(cat, "/") ? "" : "/");
|
|
EDITOR = out; // @leak
|
|
assert( EDITOR[strlen(EDITOR) - 1] == '/' );
|
|
}
|
|
}
|
|
|
|
if( !masks ) {
|
|
return true; // nothing to do
|
|
}
|
|
|
|
// estimate ART_SKIP_ROOT (C:/prj/v4k/demos/assets/file.png -> strlen(C:/prj/v4k/) -> 11)
|
|
{
|
|
array(char*) dirs = 0;
|
|
for each_substring(ART, ",", art_folder) {
|
|
array_push(dirs, file_pathabs(art_folder));
|
|
}
|
|
if( array_count(dirs) > 1 ) {
|
|
for( int ok = 1, ch = dirs[0][ART_SKIP_ROOT]; ch && ok; ch = dirs[0][++ART_SKIP_ROOT] ) {
|
|
for( int i = 1; i < array_count(dirs) && ok; ++i ) {
|
|
ok = dirs[i][ART_SKIP_ROOT] == ch;
|
|
}
|
|
}
|
|
}
|
|
while( ART_SKIP_ROOT > 0 && !strchr("\\/", dirs[0][ART_SKIP_ROOT-1]) ) --ART_SKIP_ROOT;
|
|
array_free(dirs);
|
|
}
|
|
|
|
if( COOK_ON_DEMAND ) {
|
|
return true; // cooking is deferred
|
|
}
|
|
|
|
// scan disk: all subfolders in ART (comma-separated)
|
|
static array(char *) list = 0; // @leak
|
|
for each_substring(ART, ",", art_folder) {
|
|
const char **glob = file_list(art_folder, "**");
|
|
for( unsigned i = 0; glob[i]; ++i ) {
|
|
const char *fname = glob[i];
|
|
if( !strmatchi(fname, masks)) continue;
|
|
|
|
// skip special files, folders and internal files like .art.zip
|
|
const char *dir = file_path(fname);
|
|
if( dir[0] == '.' ) continue; // discard system dirs and hidden files
|
|
if( strbegi(dir, TOOLS) ) continue; // discard tools folder
|
|
if( !file_ext(fname)[0] ) continue; // discard extensionless entries
|
|
if( !file_size(fname)) continue; // skip dirs and empty files
|
|
|
|
// exclude vc c/c++ .obj files. they're not 3d wavefront .obj files
|
|
if( strend(fname, ".obj") ) {
|
|
char header[4] = {0};
|
|
for( FILE *in = fopen(fname, "rb"); in; fclose(in), in = NULL) {
|
|
fread(header, 1, 2, in);
|
|
}
|
|
if( !memcmp(header, "\x64\x86", 2) ) continue;
|
|
if( !memcmp(header, "\x00\x00", 2) ) continue;
|
|
}
|
|
// exclude vc/gcc files
|
|
if( strend(fname, ".a") || strend(fname, ".pdb") || strend(fname, ".lib") || strend(fname, ".ilk") || strend(fname, ".exp") ) {
|
|
continue;
|
|
}
|
|
|
|
// @todo: normalize path & rebase here (absolute to local)
|
|
// [...]
|
|
// fi.normalized = ; tolower->to_underscore([]();:+ )->remove_extra_underscores
|
|
|
|
if (file_name(fname)[0] == '.') continue; // skip system files
|
|
if (file_name(fname)[0] == ';') continue; // skip comment files
|
|
|
|
array_push(list, STRDUP(fname));
|
|
}
|
|
}
|
|
|
|
// inspect disk
|
|
for( int i = 0, end = array_count(list); i < end; ++i ) {
|
|
char *fname = list[i];
|
|
|
|
struct fs fi = {0};
|
|
fi.fname = fname; // STRDUP(fname);
|
|
fi.bytes = file_size(fname);
|
|
fi.stamp = file_stamp10(fname); // timestamp in base10(yyyymmddhhmmss)
|
|
|
|
array_push(fs_now, fi);
|
|
}
|
|
|
|
cook_debug = !!( flags & COOK_DEBUGLOG );
|
|
cook_cancelable = !!( flags & COOK_CANCELABLE );
|
|
|
|
// spawn all the threads
|
|
int num_jobs = cook_jobs();
|
|
for( int i = 0; i < num_jobs; ++i ) {
|
|
jobs[i].self = 0;
|
|
jobs[i].threadid = i;
|
|
jobs[i].numthreads = flags & COOK_ASYNC ? num_jobs : 1;
|
|
jobs[i].files = (const char **)list;
|
|
jobs[i].rules = rules;
|
|
jobs[i].progress = -1;
|
|
static thread_mutex_t lock; do_once thread_mutex_init(&lock);
|
|
jobs[i].lock = &lock;
|
|
}
|
|
for( int i = 0; i < num_jobs; ++i ) {
|
|
if( flags & COOK_ASYNC ) {
|
|
jobs[i].self = thread_init(cook_async, &jobs[i], "cook_async()", 0/*STACK_SIZE*/);
|
|
continue;
|
|
}
|
|
|
|
if(!cook(&jobs[i])) return false;
|
|
}
|
|
|
|
return true;
|
|
}
|
|
|
|
void cook_stop() {
|
|
// join all threads
|
|
int num_jobs = cook_jobs();
|
|
for( int i = 0; i < num_jobs; ++i ) {
|
|
if(jobs[i].self) thread_join(jobs[i].self);
|
|
}
|
|
// remove all temporary outfiles
|
|
const char **temps = file_list("./", "temp_*");
|
|
for( int i = 0; temps[i]; ++i ) unlink(temps[i]);
|
|
}
|
|
|
|
int cook_progress() {
|
|
int count = 0, sum = 0;
|
|
for( int i = 0, end = cook_jobs(); i < end; ++i ) {
|
|
// if( jobs[i].progress >= 0 ) {
|
|
sum += jobs[i].progress;
|
|
++count;
|
|
// }
|
|
}
|
|
return cook_jobs() ? sum / (count+!count) : 100;
|
|
}
|
|
|
|
void cook_cancel() {
|
|
if( cook_cancelable ) cook_cancelling = true;
|
|
}
|
|
|
|
int cook_jobs() {
|
|
int num_jobs = optioni("--cook-jobs", maxf(1.15,app_cores()) * 1.75), max_jobs = countof(jobs);
|
|
ifdef(ems, num_jobs = 0);
|
|
return clampi(num_jobs, 0, max_jobs);
|
|
}
|
|
|
|
void cook_config( const char *pathfile_to_cook_ini ) { // @todo: test run-from-"bin/" case on Linux.
|
|
COOK_INI = pathfile_to_cook_ini;
|
|
}
|