modernc.org/cc@v1.0.1/v2/testdata/_sqlite/ext/misc/csv.c (about)

     1  /*
     2  ** 2016-05-28
     3  **
     4  ** The author disclaims copyright to this source code.  In place of
     5  ** a legal notice, here is a blessing:
     6  **
     7  **    May you do good and not evil.
     8  **    May you find forgiveness for yourself and forgive others.
     9  **    May you share freely, never taking more than you give.
    10  **
    11  ******************************************************************************
    12  **
    13  ** This file contains the implementation of an SQLite virtual table for
    14  ** reading CSV files.
    15  **
    16  ** Usage:
    17  **
    18  **    .load ./csv
    19  **    CREATE VIRTUAL TABLE temp.csv USING csv(filename=FILENAME);
    20  **    SELECT * FROM csv;
    21  **
    22  ** The columns are named "c1", "c2", "c3", ... by default.  But the
    23  ** application can define its own CREATE TABLE statement as an additional
    24  ** parameter.  For example:
    25  **
    26  **    CREATE VIRTUAL TABLE temp.csv2 USING csv(
    27  **       filename = "../http.log",
    28  **       schema = "CREATE TABLE x(date,ipaddr,url,referrer,userAgent)"
    29  **    );
    30  **
    31  ** Instead of specifying a file, the text of the CSV can be loaded using
    32  ** the data= parameter.
    33  **
    34  ** If the columns=N parameter is supplied, then the CSV file is assumed to have
    35  ** N columns.  If the columns parameter is omitted, the CSV file is opened
    36  ** as soon as the virtual table is constructed and the first row of the CSV
    37  ** is read in order to count the tables.
    38  **
    39  ** Some extra debugging features (used for testing virtual tables) are available
    40  ** if this module is compiled with -DSQLITE_TEST.
    41  */
    42  #include <sqlite3ext.h>
    43  SQLITE_EXTENSION_INIT1
    44  #include <string.h>
    45  #include <stdlib.h>
    46  #include <assert.h>
    47  #include <stdarg.h>
    48  #include <ctype.h>
    49  #include <stdio.h>
    50  
    51  #ifndef SQLITE_OMIT_VIRTUALTABLE
    52  
    53  /*
    54  ** A macro to hint to the compiler that a function should not be
    55  ** inlined.
    56  */
    57  #if defined(__GNUC__)
    58  #  define CSV_NOINLINE  __attribute__((noinline))
    59  #elif defined(_MSC_VER) && _MSC_VER>=1310
    60  #  define CSV_NOINLINE  __declspec(noinline)
    61  #else
    62  #  define CSV_NOINLINE
    63  #endif
    64  
    65  
    66  /* Max size of the error message in a CsvReader */
    67  #define CSV_MXERR 200
    68  
    69  /* Size of the CsvReader input buffer */
    70  #define CSV_INBUFSZ 1024
    71  
    72  /* A context object used when read a CSV file. */
    73  typedef struct CsvReader CsvReader;
    74  struct CsvReader {
    75    FILE *in;              /* Read the CSV text from this input stream */
    76    char *z;               /* Accumulated text for a field */
    77    int n;                 /* Number of bytes in z */
    78    int nAlloc;            /* Space allocated for z[] */
    79    int nLine;             /* Current line number */
    80    int bNotFirst;         /* True if prior text has been seen */
    81    int cTerm;             /* Character that terminated the most recent field */
    82    size_t iIn;            /* Next unread character in the input buffer */
    83    size_t nIn;            /* Number of characters in the input buffer */
    84    char *zIn;             /* The input buffer */
    85    char zErr[CSV_MXERR];  /* Error message */
    86  };
    87  
    88  /* Initialize a CsvReader object */
    89  static void csv_reader_init(CsvReader *p){
    90    p->in = 0;
    91    p->z = 0;
    92    p->n = 0;
    93    p->nAlloc = 0;
    94    p->nLine = 0;
    95    p->bNotFirst = 0;
    96    p->nIn = 0;
    97    p->zIn = 0;
    98    p->zErr[0] = 0;
    99  }
   100  
   101  /* Close and reset a CsvReader object */
   102  static void csv_reader_reset(CsvReader *p){
   103    if( p->in ){
   104      fclose(p->in);
   105      sqlite3_free(p->zIn);
   106    }
   107    sqlite3_free(p->z);
   108    csv_reader_init(p);
   109  }
   110  
   111  /* Report an error on a CsvReader */
   112  static void csv_errmsg(CsvReader *p, const char *zFormat, ...){
   113    va_list ap;
   114    va_start(ap, zFormat);
   115    sqlite3_vsnprintf(CSV_MXERR, p->zErr, zFormat, ap);
   116    va_end(ap);
   117  }
   118  
   119  /* Open the file associated with a CsvReader
   120  ** Return the number of errors.
   121  */
   122  static int csv_reader_open(
   123    CsvReader *p,               /* The reader to open */
   124    const char *zFilename,      /* Read from this filename */
   125    const char *zData           /*  ... or use this data */
   126  ){
   127    if( zFilename ){
   128      p->zIn = sqlite3_malloc( CSV_INBUFSZ );
   129      if( p->zIn==0 ){
   130        csv_errmsg(p, "out of memory");
   131        return 1;
   132      }
   133      p->in = fopen(zFilename, "rb");
   134      if( p->in==0 ){
   135        csv_reader_reset(p);
   136        csv_errmsg(p, "cannot open '%s' for reading", zFilename);
   137        return 1;
   138      }
   139    }else{
   140      assert( p->in==0 );
   141      p->zIn = (char*)zData;
   142      p->nIn = strlen(zData);
   143    }
   144    return 0;
   145  }
   146  
   147  /* The input buffer has overflowed.  Refill the input buffer, then
   148  ** return the next character
   149  */
   150  static CSV_NOINLINE int csv_getc_refill(CsvReader *p){
   151    size_t got;
   152  
   153    assert( p->iIn>=p->nIn );  /* Only called on an empty input buffer */
   154    assert( p->in!=0 );        /* Only called if reading froma file */
   155  
   156    got = fread(p->zIn, 1, CSV_INBUFSZ, p->in);
   157    if( got==0 ) return EOF;
   158    p->nIn = got;
   159    p->iIn = 1;
   160    return p->zIn[0];
   161  }
   162  
   163  /* Return the next character of input.  Return EOF at end of input. */
   164  static int csv_getc(CsvReader *p){
   165    if( p->iIn >= p->nIn ){
   166      if( p->in!=0 ) return csv_getc_refill(p);
   167      return EOF;
   168    }
   169    return ((unsigned char*)p->zIn)[p->iIn++];
   170  }
   171  
   172  /* Increase the size of p->z and append character c to the end. 
   173  ** Return 0 on success and non-zero if there is an OOM error */
   174  static CSV_NOINLINE int csv_resize_and_append(CsvReader *p, char c){
   175    char *zNew;
   176    int nNew = p->nAlloc*2 + 100;
   177    zNew = sqlite3_realloc64(p->z, nNew);
   178    if( zNew ){
   179      p->z = zNew;
   180      p->nAlloc = nNew;
   181      p->z[p->n++] = c;
   182      return 0;
   183    }else{
   184      csv_errmsg(p, "out of memory");
   185      return 1;
   186    }
   187  }
   188  
   189  /* Append a single character to the CsvReader.z[] array.
   190  ** Return 0 on success and non-zero if there is an OOM error */
   191  static int csv_append(CsvReader *p, char c){
   192    if( p->n>=p->nAlloc-1 ) return csv_resize_and_append(p, c);
   193    p->z[p->n++] = c;
   194    return 0;
   195  }
   196  
   197  /* Read a single field of CSV text.  Compatible with rfc4180 and extended
   198  ** with the option of having a separator other than ",".
   199  **
   200  **   +  Input comes from p->in.
   201  **   +  Store results in p->z of length p->n.  Space to hold p->z comes
   202  **      from sqlite3_malloc64().
   203  **   +  Keep track of the line number in p->nLine.
   204  **   +  Store the character that terminates the field in p->cTerm.  Store
   205  **      EOF on end-of-file.
   206  **
   207  ** Return "" at EOF.  Return 0 on an OOM error.
   208  */
   209  static char *csv_read_one_field(CsvReader *p){
   210    int c;
   211    p->n = 0;
   212    c = csv_getc(p);
   213    if( c==EOF ){
   214      p->cTerm = EOF;
   215      return "";
   216    }
   217    if( c=='"' ){
   218      int pc, ppc;
   219      int startLine = p->nLine;
   220      pc = ppc = 0;
   221      while( 1 ){
   222        c = csv_getc(p);
   223        if( c<='"' || pc=='"' ){
   224          if( c=='\n' ) p->nLine++;
   225          if( c=='"' ){
   226            if( pc=='"' ){
   227              pc = 0;
   228              continue;
   229            }
   230          }
   231          if( (c==',' && pc=='"')
   232           || (c=='\n' && pc=='"')
   233           || (c=='\n' && pc=='\r' && ppc=='"')
   234           || (c==EOF && pc=='"')
   235          ){
   236            do{ p->n--; }while( p->z[p->n]!='"' );
   237            p->cTerm = (char)c;
   238            break;
   239          }
   240          if( pc=='"' && c!='\r' ){
   241            csv_errmsg(p, "line %d: unescaped %c character", p->nLine, '"');
   242            break;
   243          }
   244          if( c==EOF ){
   245            csv_errmsg(p, "line %d: unterminated %c-quoted field\n",
   246                       startLine, '"');
   247            p->cTerm = (char)c;
   248            break;
   249          }
   250        }
   251        if( csv_append(p, (char)c) ) return 0;
   252        ppc = pc;
   253        pc = c;
   254      }
   255    }else{
   256      /* If this is the first field being parsed and it begins with the
   257      ** UTF-8 BOM  (0xEF BB BF) then skip the BOM */
   258      if( (c&0xff)==0xef && p->bNotFirst==0 ){
   259        csv_append(p, (char)c);
   260        c = csv_getc(p);
   261        if( (c&0xff)==0xbb ){
   262          csv_append(p, (char)c);
   263          c = csv_getc(p);
   264          if( (c&0xff)==0xbf ){
   265            p->bNotFirst = 1;
   266            p->n = 0;
   267            return csv_read_one_field(p);
   268          }
   269        }
   270      }
   271      while( c>',' || (c!=EOF && c!=',' && c!='\n') ){
   272        if( csv_append(p, (char)c) ) return 0;
   273        c = csv_getc(p);
   274      }
   275      if( c=='\n' ){
   276        p->nLine++;
   277        if( p->n>0 && p->z[p->n-1]=='\r' ) p->n--;
   278      }
   279      p->cTerm = (char)c;
   280    }
   281    if( p->z ) p->z[p->n] = 0;
   282    p->bNotFirst = 1;
   283    return p->z;
   284  }
   285  
   286  
   287  /* Forward references to the various virtual table methods implemented
   288  ** in this file. */
   289  static int csvtabCreate(sqlite3*, void*, int, const char*const*, 
   290                             sqlite3_vtab**,char**);
   291  static int csvtabConnect(sqlite3*, void*, int, const char*const*, 
   292                             sqlite3_vtab**,char**);
   293  static int csvtabBestIndex(sqlite3_vtab*,sqlite3_index_info*);
   294  static int csvtabDisconnect(sqlite3_vtab*);
   295  static int csvtabOpen(sqlite3_vtab*, sqlite3_vtab_cursor**);
   296  static int csvtabClose(sqlite3_vtab_cursor*);
   297  static int csvtabFilter(sqlite3_vtab_cursor*, int idxNum, const char *idxStr,
   298                            int argc, sqlite3_value **argv);
   299  static int csvtabNext(sqlite3_vtab_cursor*);
   300  static int csvtabEof(sqlite3_vtab_cursor*);
   301  static int csvtabColumn(sqlite3_vtab_cursor*,sqlite3_context*,int);
   302  static int csvtabRowid(sqlite3_vtab_cursor*,sqlite3_int64*);
   303  
   304  /* An instance of the CSV virtual table */
   305  typedef struct CsvTable {
   306    sqlite3_vtab base;              /* Base class.  Must be first */
   307    char *zFilename;                /* Name of the CSV file */
   308    char *zData;                    /* Raw CSV data in lieu of zFilename */
   309    long iStart;                    /* Offset to start of data in zFilename */
   310    int nCol;                       /* Number of columns in the CSV file */
   311    unsigned int tstFlags;          /* Bit values used for testing */
   312  } CsvTable;
   313  
   314  /* Allowed values for tstFlags */
   315  #define CSVTEST_FIDX  0x0001      /* Pretend that constrained searchs cost less*/
   316  
   317  /* A cursor for the CSV virtual table */
   318  typedef struct CsvCursor {
   319    sqlite3_vtab_cursor base;       /* Base class.  Must be first */
   320    CsvReader rdr;                  /* The CsvReader object */
   321    char **azVal;                   /* Value of the current row */
   322    int *aLen;                      /* Length of each entry */
   323    sqlite3_int64 iRowid;           /* The current rowid.  Negative for EOF */
   324  } CsvCursor;
   325  
   326  /* Transfer error message text from a reader into a CsvTable */
   327  static void csv_xfer_error(CsvTable *pTab, CsvReader *pRdr){
   328    sqlite3_free(pTab->base.zErrMsg);
   329    pTab->base.zErrMsg = sqlite3_mprintf("%s", pRdr->zErr);
   330  }
   331  
   332  /*
   333  ** This method is the destructor fo a CsvTable object.
   334  */
   335  static int csvtabDisconnect(sqlite3_vtab *pVtab){
   336    CsvTable *p = (CsvTable*)pVtab;
   337    sqlite3_free(p->zFilename);
   338    sqlite3_free(p->zData);
   339    sqlite3_free(p);
   340    return SQLITE_OK;
   341  }
   342  
   343  /* Skip leading whitespace.  Return a pointer to the first non-whitespace
   344  ** character, or to the zero terminator if the string has only whitespace */
   345  static const char *csv_skip_whitespace(const char *z){
   346    while( isspace((unsigned char)z[0]) ) z++;
   347    return z;
   348  }
   349  
   350  /* Remove trailing whitespace from the end of string z[] */
   351  static void csv_trim_whitespace(char *z){
   352    size_t n = strlen(z);
   353    while( n>0 && isspace((unsigned char)z[n]) ) n--;
   354    z[n] = 0;
   355  }
   356  
   357  /* Dequote the string */
   358  static void csv_dequote(char *z){
   359    int j;
   360    char cQuote = z[0];
   361    size_t i, n;
   362  
   363    if( cQuote!='\'' && cQuote!='"' ) return;
   364    n = strlen(z);
   365    if( n<2 || z[n-1]!=z[0] ) return;
   366    for(i=1, j=0; i<n-1; i++){
   367      if( z[i]==cQuote && z[i+1]==cQuote ) i++;
   368      z[j++] = z[i];
   369    }
   370    z[j] = 0;
   371  }
   372  
   373  /* Check to see if the string is of the form:  "TAG = VALUE" with optional
   374  ** whitespace before and around tokens.  If it is, return a pointer to the
   375  ** first character of VALUE.  If it is not, return NULL.
   376  */
   377  static const char *csv_parameter(const char *zTag, int nTag, const char *z){
   378    z = csv_skip_whitespace(z);
   379    if( strncmp(zTag, z, nTag)!=0 ) return 0;
   380    z = csv_skip_whitespace(z+nTag);
   381    if( z[0]!='=' ) return 0;
   382    return csv_skip_whitespace(z+1);
   383  }
   384  
   385  /* Decode a parameter that requires a dequoted string.
   386  **
   387  ** Return 1 if the parameter is seen, or 0 if not.  1 is returned
   388  ** even if there is an error.  If an error occurs, then an error message
   389  ** is left in p->zErr.  If there are no errors, p->zErr[0]==0.
   390  */
   391  static int csv_string_parameter(
   392    CsvReader *p,            /* Leave the error message here, if there is one */
   393    const char *zParam,      /* Parameter we are checking for */
   394    const char *zArg,        /* Raw text of the virtual table argment */
   395    char **pzVal             /* Write the dequoted string value here */
   396  ){
   397    const char *zValue;
   398    zValue = csv_parameter(zParam,(int)strlen(zParam),zArg);
   399    if( zValue==0 ) return 0;
   400    p->zErr[0] = 0;
   401    if( *pzVal ){
   402      csv_errmsg(p, "more than one '%s' parameter", zParam);
   403      return 1;
   404    }
   405    *pzVal = sqlite3_mprintf("%s", zValue);
   406    if( *pzVal==0 ){
   407      csv_errmsg(p, "out of memory");
   408      return 1;
   409    }
   410    csv_trim_whitespace(*pzVal);
   411    csv_dequote(*pzVal);
   412    return 1;
   413  }
   414  
   415  
   416  /* Return 0 if the argument is false and 1 if it is true.  Return -1 if
   417  ** we cannot really tell.
   418  */
   419  static int csv_boolean(const char *z){
   420    if( sqlite3_stricmp("yes",z)==0
   421     || sqlite3_stricmp("on",z)==0
   422     || sqlite3_stricmp("true",z)==0
   423     || (z[0]=='1' && z[1]==0)
   424    ){
   425      return 1;
   426    }
   427    if( sqlite3_stricmp("no",z)==0
   428     || sqlite3_stricmp("off",z)==0
   429     || sqlite3_stricmp("false",z)==0
   430     || (z[0]=='0' && z[1]==0)
   431    ){
   432      return 0;
   433    }
   434    return -1;
   435  }
   436  
   437  
   438  /*
   439  ** Parameters:
   440  **    filename=FILENAME          Name of file containing CSV content
   441  **    data=TEXT                  Direct CSV content.
   442  **    schema=SCHEMA              Alternative CSV schema.
   443  **    header=YES|NO              First row of CSV defines the names of
   444  **                               columns if "yes".  Default "no".
   445  **    columns=N                  Assume the CSV file contains N columns.
   446  **
   447  ** Only available if compiled with SQLITE_TEST:
   448  **    
   449  **    testflags=N                Bitmask of test flags.  Optional
   450  **
   451  ** If schema= is omitted, then the columns are named "c0", "c1", "c2",
   452  ** and so forth.  If columns=N is omitted, then the file is opened and
   453  ** the number of columns in the first row is counted to determine the
   454  ** column count.  If header=YES, then the first row is skipped.
   455  */
   456  static int csvtabConnect(
   457    sqlite3 *db,
   458    void *pAux,
   459    int argc, const char *const*argv,
   460    sqlite3_vtab **ppVtab,
   461    char **pzErr
   462  ){
   463    CsvTable *pNew = 0;        /* The CsvTable object to construct */
   464    int bHeader = -1;          /* header= flags.  -1 means not seen yet */
   465    int rc = SQLITE_OK;        /* Result code from this routine */
   466    int i, j;                  /* Loop counters */
   467  #ifdef SQLITE_TEST
   468    int tstFlags = 0;          /* Value for testflags=N parameter */
   469  #endif
   470    int nCol = -99;            /* Value of the columns= parameter */
   471    CsvReader sRdr;            /* A CSV file reader used to store an error
   472                               ** message and/or to count the number of columns */
   473    static const char *azParam[] = {
   474       "filename", "data", "schema", 
   475    };
   476    char *azPValue[3];         /* Parameter values */
   477  # define CSV_FILENAME (azPValue[0])
   478  # define CSV_DATA     (azPValue[1])
   479  # define CSV_SCHEMA   (azPValue[2])
   480  
   481  
   482    assert( sizeof(azPValue)==sizeof(azParam) );
   483    memset(&sRdr, 0, sizeof(sRdr));
   484    memset(azPValue, 0, sizeof(azPValue));
   485    for(i=3; i<argc; i++){
   486      const char *z = argv[i];
   487      const char *zValue;
   488      for(j=0; j<sizeof(azParam)/sizeof(azParam[0]); j++){
   489        if( csv_string_parameter(&sRdr, azParam[j], z, &azPValue[j]) ) break;
   490      }
   491      if( j<sizeof(azParam)/sizeof(azParam[0]) ){
   492        if( sRdr.zErr[0] ) goto csvtab_connect_error;
   493      }else
   494      if( (zValue = csv_parameter("header",6,z))!=0 ){
   495        int x;
   496        if( bHeader>=0 ){
   497          csv_errmsg(&sRdr, "more than one 'header' parameter");
   498          goto csvtab_connect_error;
   499        }
   500        x = csv_boolean(zValue);
   501        if( x==1 ){
   502          bHeader = 1;
   503        }else if( x==0 ){
   504          bHeader = 0;
   505        }else{
   506          csv_errmsg(&sRdr, "unrecognized argument to 'header': %s", zValue);
   507          goto csvtab_connect_error;
   508        }
   509      }else
   510  #ifdef SQLITE_TEST
   511      if( (zValue = csv_parameter("testflags",9,z))!=0 ){
   512        tstFlags = (unsigned int)atoi(zValue);
   513      }else
   514  #endif
   515      if( (zValue = csv_parameter("columns",7,z))!=0 ){
   516        if( nCol>0 ){
   517          csv_errmsg(&sRdr, "more than one 'columns' parameter");
   518          goto csvtab_connect_error;
   519        }
   520        nCol = atoi(zValue);
   521        if( nCol<=0 ){
   522          csv_errmsg(&sRdr, "must have at least one column");
   523          goto csvtab_connect_error;
   524        }
   525      }else
   526      {
   527        csv_errmsg(&sRdr, "unrecognized parameter '%s'", z);
   528        goto csvtab_connect_error;
   529      }
   530    }
   531    if( (CSV_FILENAME==0)==(CSV_DATA==0) ){
   532      csv_errmsg(&sRdr, "must either filename= or data= but not both");
   533      goto csvtab_connect_error;
   534    }
   535    if( nCol<=0 && csv_reader_open(&sRdr, CSV_FILENAME, CSV_DATA) ){
   536      goto csvtab_connect_error;
   537    }
   538    pNew = sqlite3_malloc( sizeof(*pNew) );
   539    *ppVtab = (sqlite3_vtab*)pNew;
   540    if( pNew==0 ) goto csvtab_connect_oom;
   541    memset(pNew, 0, sizeof(*pNew));
   542    if( nCol>0 ){
   543      pNew->nCol = nCol;
   544    }else{
   545      do{
   546        const char *z = csv_read_one_field(&sRdr);
   547        if( z==0 ) goto csvtab_connect_oom;
   548        pNew->nCol++;
   549      }while( sRdr.cTerm==',' );
   550    }
   551    pNew->zFilename = CSV_FILENAME;  CSV_FILENAME = 0;
   552    pNew->zData = CSV_DATA;          CSV_DATA = 0;
   553  #ifdef SQLITE_TEST
   554    pNew->tstFlags = tstFlags;
   555  #endif
   556    pNew->iStart = bHeader==1 ? ftell(sRdr.in) : 0;
   557    csv_reader_reset(&sRdr);
   558    if( CSV_SCHEMA==0 ){
   559      char *zSep = "";
   560      CSV_SCHEMA = sqlite3_mprintf("CREATE TABLE x(");
   561      if( CSV_SCHEMA==0 ) goto csvtab_connect_oom;
   562      for(i=0; i<pNew->nCol; i++){
   563        CSV_SCHEMA = sqlite3_mprintf("%z%sc%d TEXT",CSV_SCHEMA, zSep, i);
   564        zSep = ",";
   565      }
   566      CSV_SCHEMA = sqlite3_mprintf("%z);", CSV_SCHEMA);
   567    }
   568    rc = sqlite3_declare_vtab(db, CSV_SCHEMA);
   569    if( rc ) goto csvtab_connect_error;
   570    for(i=0; i<sizeof(azPValue)/sizeof(azPValue[0]); i++){
   571      sqlite3_free(azPValue[i]);
   572    }
   573    return SQLITE_OK;
   574  
   575  csvtab_connect_oom:
   576    rc = SQLITE_NOMEM;
   577    csv_errmsg(&sRdr, "out of memory");
   578  
   579  csvtab_connect_error:
   580    if( pNew ) csvtabDisconnect(&pNew->base);
   581    for(i=0; i<sizeof(azPValue)/sizeof(azPValue[0]); i++){
   582      sqlite3_free(azPValue[i]);
   583    }
   584    if( sRdr.zErr[0] ){
   585      sqlite3_free(*pzErr);
   586      *pzErr = sqlite3_mprintf("%s", sRdr.zErr);
   587    }
   588    csv_reader_reset(&sRdr);
   589    if( rc==SQLITE_OK ) rc = SQLITE_ERROR;
   590    return rc;
   591  }
   592  
   593  /*
   594  ** Reset the current row content held by a CsvCursor.
   595  */
   596  static void csvtabCursorRowReset(CsvCursor *pCur){
   597    CsvTable *pTab = (CsvTable*)pCur->base.pVtab;
   598    int i;
   599    for(i=0; i<pTab->nCol; i++){
   600      sqlite3_free(pCur->azVal[i]);
   601      pCur->azVal[i] = 0;
   602      pCur->aLen[i] = 0;
   603    }
   604  }
   605  
   606  /*
   607  ** The xConnect and xCreate methods do the same thing, but they must be
   608  ** different so that the virtual table is not an eponymous virtual table.
   609  */
   610  static int csvtabCreate(
   611    sqlite3 *db,
   612    void *pAux,
   613    int argc, const char *const*argv,
   614    sqlite3_vtab **ppVtab,
   615    char **pzErr
   616  ){
   617   return csvtabConnect(db, pAux, argc, argv, ppVtab, pzErr);
   618  }
   619  
   620  /*
   621  ** Destructor for a CsvCursor.
   622  */
   623  static int csvtabClose(sqlite3_vtab_cursor *cur){
   624    CsvCursor *pCur = (CsvCursor*)cur;
   625    csvtabCursorRowReset(pCur);
   626    csv_reader_reset(&pCur->rdr);
   627    sqlite3_free(cur);
   628    return SQLITE_OK;
   629  }
   630  
   631  /*
   632  ** Constructor for a new CsvTable cursor object.
   633  */
   634  static int csvtabOpen(sqlite3_vtab *p, sqlite3_vtab_cursor **ppCursor){
   635    CsvTable *pTab = (CsvTable*)p;
   636    CsvCursor *pCur;
   637    size_t nByte;
   638    nByte = sizeof(*pCur) + (sizeof(char*)+sizeof(int))*pTab->nCol;
   639    pCur = sqlite3_malloc64( nByte );
   640    if( pCur==0 ) return SQLITE_NOMEM;
   641    memset(pCur, 0, nByte);
   642    pCur->azVal = (char**)&pCur[1];
   643    pCur->aLen = (int*)&pCur->azVal[pTab->nCol];
   644    *ppCursor = &pCur->base;
   645    if( csv_reader_open(&pCur->rdr, pTab->zFilename, pTab->zData) ){
   646      csv_xfer_error(pTab, &pCur->rdr);
   647      return SQLITE_ERROR;
   648    }
   649    return SQLITE_OK;
   650  }
   651  
   652  
   653  /*
   654  ** Advance a CsvCursor to its next row of input.
   655  ** Set the EOF marker if we reach the end of input.
   656  */
   657  static int csvtabNext(sqlite3_vtab_cursor *cur){
   658    CsvCursor *pCur = (CsvCursor*)cur;
   659    CsvTable *pTab = (CsvTable*)cur->pVtab;
   660    int i = 0;
   661    char *z;
   662    do{
   663      z = csv_read_one_field(&pCur->rdr);
   664      if( z==0 ){
   665        csv_xfer_error(pTab, &pCur->rdr);
   666        break;
   667      }
   668      if( i<pTab->nCol ){
   669        if( pCur->aLen[i] < pCur->rdr.n+1 ){
   670          char *zNew = sqlite3_realloc64(pCur->azVal[i], pCur->rdr.n+1);
   671          if( zNew==0 ){
   672            csv_errmsg(&pCur->rdr, "out of memory");
   673            csv_xfer_error(pTab, &pCur->rdr);
   674            break;
   675          }
   676          pCur->azVal[i] = zNew;
   677          pCur->aLen[i] = pCur->rdr.n+1;
   678        }
   679        memcpy(pCur->azVal[i], z, pCur->rdr.n+1);
   680        i++;
   681      }
   682    }while( pCur->rdr.cTerm==',' );
   683    if( z==0 || (pCur->rdr.cTerm==EOF && i<pTab->nCol) ){
   684      pCur->iRowid = -1;
   685    }else{
   686      pCur->iRowid++;
   687      while( i<pTab->nCol ){
   688        sqlite3_free(pCur->azVal[i]);
   689        pCur->azVal[i] = 0;
   690        pCur->aLen[i] = 0;
   691        i++;
   692      }
   693    }
   694    return SQLITE_OK;
   695  }
   696  
   697  /*
   698  ** Return values of columns for the row at which the CsvCursor
   699  ** is currently pointing.
   700  */
   701  static int csvtabColumn(
   702    sqlite3_vtab_cursor *cur,   /* The cursor */
   703    sqlite3_context *ctx,       /* First argument to sqlite3_result_...() */
   704    int i                       /* Which column to return */
   705  ){
   706    CsvCursor *pCur = (CsvCursor*)cur;
   707    CsvTable *pTab = (CsvTable*)cur->pVtab;
   708    if( i>=0 && i<pTab->nCol && pCur->azVal[i]!=0 ){
   709      sqlite3_result_text(ctx, pCur->azVal[i], -1, SQLITE_STATIC);
   710    }
   711    return SQLITE_OK;
   712  }
   713  
   714  /*
   715  ** Return the rowid for the current row.
   716  */
   717  static int csvtabRowid(sqlite3_vtab_cursor *cur, sqlite_int64 *pRowid){
   718    CsvCursor *pCur = (CsvCursor*)cur;
   719    *pRowid = pCur->iRowid;
   720    return SQLITE_OK;
   721  }
   722  
   723  /*
   724  ** Return TRUE if the cursor has been moved off of the last
   725  ** row of output.
   726  */
   727  static int csvtabEof(sqlite3_vtab_cursor *cur){
   728    CsvCursor *pCur = (CsvCursor*)cur;
   729    return pCur->iRowid<0;
   730  }
   731  
   732  /*
   733  ** Only a full table scan is supported.  So xFilter simply rewinds to
   734  ** the beginning.
   735  */
   736  static int csvtabFilter(
   737    sqlite3_vtab_cursor *pVtabCursor, 
   738    int idxNum, const char *idxStr,
   739    int argc, sqlite3_value **argv
   740  ){
   741    CsvCursor *pCur = (CsvCursor*)pVtabCursor;
   742    CsvTable *pTab = (CsvTable*)pVtabCursor->pVtab;
   743    pCur->iRowid = 0;
   744    if( pCur->rdr.in==0 ){
   745      assert( pCur->rdr.zIn==pTab->zData );
   746      assert( pTab->iStart>=0 );
   747      assert( (size_t)pTab->iStart<=pCur->rdr.nIn );
   748      pCur->rdr.iIn = pTab->iStart;
   749    }else{
   750      fseek(pCur->rdr.in, pTab->iStart, SEEK_SET);
   751      pCur->rdr.iIn = 0;
   752      pCur->rdr.nIn = 0;
   753    }
   754    return csvtabNext(pVtabCursor);
   755  }
   756  
   757  /*
   758  ** Only a forward full table scan is supported.  xBestIndex is mostly
   759  ** a no-op.  If CSVTEST_FIDX is set, then the presence of equality
   760  ** constraints lowers the estimated cost, which is fiction, but is useful
   761  ** for testing certain kinds of virtual table behavior.
   762  */
   763  static int csvtabBestIndex(
   764    sqlite3_vtab *tab,
   765    sqlite3_index_info *pIdxInfo
   766  ){
   767    pIdxInfo->estimatedCost = 1000000;
   768  #ifdef SQLITE_TEST
   769    if( (((CsvTable*)tab)->tstFlags & CSVTEST_FIDX)!=0 ){
   770      /* The usual (and sensible) case is to always do a full table scan.
   771      ** The code in this branch only runs when testflags=1.  This code
   772      ** generates an artifical and unrealistic plan which is useful
   773      ** for testing virtual table logic but is not helpful to real applications.
   774      **
   775      ** Any ==, LIKE, or GLOB constraint is marked as usable by the virtual
   776      ** table (even though it is not) and the cost of running the virtual table
   777      ** is reduced from 1 million to just 10.  The constraints are *not* marked
   778      ** as omittable, however, so the query planner should still generate a
   779      ** plan that gives a correct answer, even if they plan is not optimal.
   780      */
   781      int i;
   782      int nConst = 0;
   783      for(i=0; i<pIdxInfo->nConstraint; i++){
   784        unsigned char op;
   785        if( pIdxInfo->aConstraint[i].usable==0 ) continue;
   786        op = pIdxInfo->aConstraint[i].op;
   787        if( op==SQLITE_INDEX_CONSTRAINT_EQ 
   788         || op==SQLITE_INDEX_CONSTRAINT_LIKE
   789         || op==SQLITE_INDEX_CONSTRAINT_GLOB
   790        ){
   791          pIdxInfo->estimatedCost = 10;
   792          pIdxInfo->aConstraintUsage[nConst].argvIndex = nConst+1;
   793          nConst++;
   794        }
   795      }
   796    }
   797  #endif
   798    return SQLITE_OK;
   799  }
   800  
   801  
   802  static sqlite3_module CsvModule = {
   803    0,                       /* iVersion */
   804    csvtabCreate,            /* xCreate */
   805    csvtabConnect,           /* xConnect */
   806    csvtabBestIndex,         /* xBestIndex */
   807    csvtabDisconnect,        /* xDisconnect */
   808    csvtabDisconnect,        /* xDestroy */
   809    csvtabOpen,              /* xOpen - open a cursor */
   810    csvtabClose,             /* xClose - close a cursor */
   811    csvtabFilter,            /* xFilter - configure scan constraints */
   812    csvtabNext,              /* xNext - advance a cursor */
   813    csvtabEof,               /* xEof - check for end of scan */
   814    csvtabColumn,            /* xColumn - read data */
   815    csvtabRowid,             /* xRowid - read data */
   816    0,                       /* xUpdate */
   817    0,                       /* xBegin */
   818    0,                       /* xSync */
   819    0,                       /* xCommit */
   820    0,                       /* xRollback */
   821    0,                       /* xFindMethod */
   822    0,                       /* xRename */
   823  };
   824  
   825  #ifdef SQLITE_TEST
   826  /*
   827  ** For virtual table testing, make a version of the CSV virtual table
   828  ** available that has an xUpdate function.  But the xUpdate always returns
   829  ** SQLITE_READONLY since the CSV file is not really writable.
   830  */
   831  static int csvtabUpdate(sqlite3_vtab *p,int n,sqlite3_value**v,sqlite3_int64*x){
   832    return SQLITE_READONLY;
   833  }
   834  static sqlite3_module CsvModuleFauxWrite = {
   835    0,                       /* iVersion */
   836    csvtabCreate,            /* xCreate */
   837    csvtabConnect,           /* xConnect */
   838    csvtabBestIndex,         /* xBestIndex */
   839    csvtabDisconnect,        /* xDisconnect */
   840    csvtabDisconnect,        /* xDestroy */
   841    csvtabOpen,              /* xOpen - open a cursor */
   842    csvtabClose,             /* xClose - close a cursor */
   843    csvtabFilter,            /* xFilter - configure scan constraints */
   844    csvtabNext,              /* xNext - advance a cursor */
   845    csvtabEof,               /* xEof - check for end of scan */
   846    csvtabColumn,            /* xColumn - read data */
   847    csvtabRowid,             /* xRowid - read data */
   848    csvtabUpdate,            /* xUpdate */
   849    0,                       /* xBegin */
   850    0,                       /* xSync */
   851    0,                       /* xCommit */
   852    0,                       /* xRollback */
   853    0,                       /* xFindMethod */
   854    0,                       /* xRename */
   855  };
   856  #endif /* SQLITE_TEST */
   857  
   858  #endif /* !defined(SQLITE_OMIT_VIRTUALTABLE) */
   859  
   860  
   861  #ifdef _WIN32
   862  __declspec(dllexport)
   863  #endif
   864  /* 
   865  ** This routine is called when the extension is loaded.  The new
   866  ** CSV virtual table module is registered with the calling database
   867  ** connection.
   868  */
   869  int sqlite3_csv_init(
   870    sqlite3 *db, 
   871    char **pzErrMsg, 
   872    const sqlite3_api_routines *pApi
   873  ){
   874  #ifndef SQLITE_OMIT_VIRTUALTABLE	
   875    int rc;
   876    SQLITE_EXTENSION_INIT2(pApi);
   877    rc = sqlite3_create_module(db, "csv", &CsvModule, 0);
   878  #ifdef SQLITE_TEST
   879    if( rc==SQLITE_OK ){
   880      rc = sqlite3_create_module(db, "csv_wr", &CsvModuleFauxWrite, 0);
   881    }
   882  #endif
   883    return rc;
   884  #else
   885    return SQLITE_OK;
   886  #endif
   887  }