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📄 printf.c

📁 最新的sqlite3.6.2源代码
💻 C
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        /* It makes more sense to use 0.5 */        for(idx=precision, rounder=0.5; idx>0; idx--, rounder*=0.1){}#endif        if( xtype==etFLOAT ) realvalue += rounder;        /* Normalize realvalue to within 10.0 > realvalue >= 1.0 */        exp = 0;        if( sqlite3IsNaN(realvalue) ){          bufpt = "NaN";          length = 3;          break;        }        if( realvalue>0.0 ){          while( realvalue>=1e32 && exp<=350 ){ realvalue *= 1e-32; exp+=32; }          while( realvalue>=1e8 && exp<=350 ){ realvalue *= 1e-8; exp+=8; }          while( realvalue>=10.0 && exp<=350 ){ realvalue *= 0.1; exp++; }          while( realvalue<1e-8 ){ realvalue *= 1e8; exp-=8; }          while( realvalue<1.0 ){ realvalue *= 10.0; exp--; }          if( exp>350 ){            if( prefix=='-' ){              bufpt = "-Inf";            }else if( prefix=='+' ){              bufpt = "+Inf";            }else{              bufpt = "Inf";            }            length = strlen(bufpt);            break;          }        }        bufpt = buf;        /*        ** If the field type is etGENERIC, then convert to either etEXP        ** or etFLOAT, as appropriate.        */        flag_exp = xtype==etEXP;        if( xtype!=etFLOAT ){          realvalue += rounder;          if( realvalue>=10.0 ){ realvalue *= 0.1; exp++; }        }        if( xtype==etGENERIC ){          flag_rtz = !flag_alternateform;          if( exp<-4 || exp>precision ){            xtype = etEXP;          }else{            precision = precision - exp;            xtype = etFLOAT;          }        }else{          flag_rtz = 0;        }        if( xtype==etEXP ){          e2 = 0;        }else{          e2 = exp;        }        nsd = 0;        flag_dp = (precision>0) | flag_alternateform | flag_altform2;        /* The sign in front of the number */        if( prefix ){          *(bufpt++) = prefix;        }        /* Digits prior to the decimal point */        if( e2<0 ){          *(bufpt++) = '0';        }else{          for(; e2>=0; e2--){            *(bufpt++) = et_getdigit(&realvalue,&nsd);          }        }        /* The decimal point */        if( flag_dp ){          *(bufpt++) = '.';        }        /* "0" digits after the decimal point but before the first        ** significant digit of the number */        for(e2++; e2<0; precision--, e2++){          assert( precision>0 );          *(bufpt++) = '0';        }        /* Significant digits after the decimal point */        while( (precision--)>0 ){          *(bufpt++) = et_getdigit(&realvalue,&nsd);        }        /* Remove trailing zeros and the "." if no digits follow the "." */        if( flag_rtz && flag_dp ){          while( bufpt[-1]=='0' ) *(--bufpt) = 0;          assert( bufpt>buf );          if( bufpt[-1]=='.' ){            if( flag_altform2 ){              *(bufpt++) = '0';            }else{              *(--bufpt) = 0;            }          }        }        /* Add the "eNNN" suffix */        if( flag_exp || xtype==etEXP ){          *(bufpt++) = aDigits[infop->charset];          if( exp<0 ){            *(bufpt++) = '-'; exp = -exp;          }else{            *(bufpt++) = '+';          }          if( exp>=100 ){            *(bufpt++) = (exp/100)+'0';                /* 100's digit */            exp %= 100;          }          *(bufpt++) = exp/10+'0';                     /* 10's digit */          *(bufpt++) = exp%10+'0';                     /* 1's digit */        }        *bufpt = 0;        /* The converted number is in buf[] and zero terminated. Output it.        ** Note that the number is in the usual order, not reversed as with        ** integer conversions. */        length = bufpt-buf;        bufpt = buf;        /* Special case:  Add leading zeros if the flag_zeropad flag is        ** set and we are not left justified */        if( flag_zeropad && !flag_leftjustify && length < width){          int i;          int nPad = width - length;          for(i=width; i>=nPad; i--){            bufpt[i] = bufpt[i-nPad];          }          i = prefix!=0;          while( nPad-- ) bufpt[i++] = '0';          length = width;        }#endif        break;      case etSIZE:        *(va_arg(ap,int*)) = pAccum->nChar;        length = width = 0;        break;      case etPERCENT:        buf[0] = '%';        bufpt = buf;        length = 1;        break;      case etCHARX:        c = buf[0] = va_arg(ap,int);        if( precision>=0 ){          for(idx=1; idx<precision; idx++) buf[idx] = c;          length = precision;        }else{          length =1;        }        bufpt = buf;        break;      case etSTRING:      case etDYNSTRING:        bufpt = va_arg(ap,char*);        if( bufpt==0 ){          bufpt = "";        }else if( xtype==etDYNSTRING ){          zExtra = bufpt;        }        if( precision>=0 ){          for(length=0; length<precision && bufpt[length]; length++){}        }else{          length = strlen(bufpt);        }        break;      case etSQLESCAPE:      case etSQLESCAPE2:      case etSQLESCAPE3: {        int i, j, n, ch, isnull;        int needQuote;        char q = ((xtype==etSQLESCAPE3)?'"':'\'');   /* Quote character */        char *escarg = va_arg(ap,char*);        isnull = escarg==0;        if( isnull ) escarg = (xtype==etSQLESCAPE2 ? "NULL" : "(NULL)");        for(i=n=0; (ch=escarg[i])!=0; i++){          if( ch==q )  n++;        }        needQuote = !isnull && xtype==etSQLESCAPE2;        n += i + 1 + needQuote*2;        if( n>etBUFSIZE ){          bufpt = zExtra = sqlite3Malloc( n );          if( bufpt==0 ) return;        }else{          bufpt = buf;        }        j = 0;        if( needQuote ) bufpt[j++] = q;        for(i=0; (ch=escarg[i])!=0; i++){          bufpt[j++] = ch;          if( ch==q ) bufpt[j++] = ch;        }        if( needQuote ) bufpt[j++] = q;        bufpt[j] = 0;        length = j;        /* The precision is ignored on %q and %Q */        /* if( precision>=0 && precision<length ) length = precision; */        break;      }      case etTOKEN: {        Token *pToken = va_arg(ap, Token*);        if( pToken ){          sqlite3StrAccumAppend(pAccum, (const char*)pToken->z, pToken->n);        }        length = width = 0;        break;      }      case etSRCLIST: {        SrcList *pSrc = va_arg(ap, SrcList*);        int k = va_arg(ap, int);        struct SrcList_item *pItem = &pSrc->a[k];        assert( k>=0 && k<pSrc->nSrc );        if( pItem->zDatabase ){          sqlite3StrAccumAppend(pAccum, pItem->zDatabase, -1);          sqlite3StrAccumAppend(pAccum, ".", 1);        }        sqlite3StrAccumAppend(pAccum, pItem->zName, -1);        length = width = 0;        break;      }    }/* End switch over the format type */    /*    ** The text of the conversion is pointed to by "bufpt" and is    ** "length" characters long.  The field width is "width".  Do    ** the output.    */    if( !flag_leftjustify ){      register int nspace;      nspace = width-length;      if( nspace>0 ){        appendSpace(pAccum, nspace);      }    }    if( length>0 ){      sqlite3StrAccumAppend(pAccum, bufpt, length);    }    if( flag_leftjustify ){      register int nspace;      nspace = width-length;      if( nspace>0 ){        appendSpace(pAccum, nspace);      }    }    if( zExtra ){      sqlite3_free(zExtra);    }  }/* End for loop over the format string */} /* End of function *//*** Append N bytes of text from z to the StrAccum object.*/void sqlite3StrAccumAppend(StrAccum *p, const char *z, int N){  if( p->tooBig | p->mallocFailed ){    return;  }  if( N<0 ){    N = strlen(z);  }  if( N==0 ){    return;  }  if( p->nChar+N >= p->nAlloc ){    char *zNew;    if( !p->useMalloc ){      p->tooBig = 1;      N = p->nAlloc - p->nChar - 1;      if( N<=0 ){        return;      }    }else{      i64 szNew = p->nChar;      szNew += N + 1;      if( szNew > p->mxAlloc ){        sqlite3StrAccumReset(p);        p->tooBig = 1;        return;      }else{        p->nAlloc = szNew;      }      zNew = sqlite3DbMallocRaw(p->db, p->nAlloc );      if( zNew ){        memcpy(zNew, p->zText, p->nChar);        sqlite3StrAccumReset(p);        p->zText = zNew;      }else{        p->mallocFailed = 1;        sqlite3StrAccumReset(p);        return;      }    }  }  memcpy(&p->zText[p->nChar], z, N);  p->nChar += N;}/*** Finish off a string by making sure it is zero-terminated.** Return a pointer to the resulting string.  Return a NULL** pointer if any kind of error was encountered.*/char *sqlite3StrAccumFinish(StrAccum *p){  if( p->zText ){    p->zText[p->nChar] = 0;    if( p->useMalloc && p->zText==p->zBase ){      p->zText = sqlite3DbMallocRaw(p->db, p->nChar+1 );      if( p->zText ){        memcpy(p->zText, p->zBase, p->nChar+1);      }else{        p->mallocFailed = 1;      }    }  }  return p->zText;}/*** Reset an StrAccum string.  Reclaim all malloced memory.*/void sqlite3StrAccumReset(StrAccum *p){  if( p->zText!=p->zBase ){    sqlite3DbFree(p->db, p->zText);  }  p->zText = 0;}/*** Initialize a string accumulator*/void sqlite3StrAccumInit(StrAccum *p, char *zBase, int n, int mx){  p->zText = p->zBase = zBase;  p->db = 0;  p->nChar = 0;  p->nAlloc = n;  p->mxAlloc = mx;  p->useMalloc = 1;  p->tooBig = 0;  p->mallocFailed = 0;}/*** Print into memory obtained from sqliteMalloc().  Use the internal** %-conversion extensions.*/char *sqlite3VMPrintf(sqlite3 *db, const char *zFormat, va_list ap){  char *z;  char zBase[SQLITE_PRINT_BUF_SIZE];  StrAccum acc;  sqlite3StrAccumInit(&acc, zBase, sizeof(zBase),                      db ? db->aLimit[SQLITE_LIMIT_LENGTH] : SQLITE_MAX_LENGTH);  acc.db = db;  sqlite3VXPrintf(&acc, 1, zFormat, ap);  z = sqlite3StrAccumFinish(&acc);  if( acc.mallocFailed && db ){    db->mallocFailed = 1;  }  return z;}/*** Print into memory obtained from sqliteMalloc().  Use the internal** %-conversion extensions.*/char *sqlite3MPrintf(sqlite3 *db, const char *zFormat, ...){  va_list ap;  char *z;  va_start(ap, zFormat);  z = sqlite3VMPrintf(db, zFormat, ap);  va_end(ap);  return z;}/*** Like sqlite3MPrintf(), but call sqlite3DbFree() on zStr after formatting** the string and before returnning.  This routine is intended to be used** to modify an existing string.  For example:****       x = sqlite3MPrintf(db, x, "prefix %s suffix", x);***/char *sqlite3MAppendf(sqlite3 *db, char *zStr, const char *zFormat, ...){  va_list ap;  char *z;  va_start(ap, zFormat);  z = sqlite3VMPrintf(db, zFormat, ap);  va_end(ap);  sqlite3DbFree(db, zStr);  return z;}/*** Print into memory obtained from sqlite3_malloc().  Omit the internal** %-conversion extensions.*/char *sqlite3_vmprintf(const char *zFormat, va_list ap){  char *z;  char zBase[SQLITE_PRINT_BUF_SIZE];  StrAccum acc;#ifndef SQLITE_OMIT_AUTOINIT  if( sqlite3_initialize() ) return 0;#endif  sqlite3StrAccumInit(&acc, zBase, sizeof(zBase), SQLITE_MAX_LENGTH);  sqlite3VXPrintf(&acc, 0, zFormat, ap);  z = sqlite3StrAccumFinish(&acc);  return z;}/*** Print into memory obtained from sqlite3_malloc()().  Omit the internal** %-conversion extensions.*/char *sqlite3_mprintf(const char *zFormat, ...){  va_list ap;  char *z;#ifndef SQLITE_OMIT_AUTOINIT  if( sqlite3_initialize() ) return 0;#endif  va_start(ap, zFormat);  z = sqlite3_vmprintf(zFormat, ap);  va_end(ap);  return z;}/*** sqlite3_snprintf() works like snprintf() except that it ignores the** current locale settings.  This is important for SQLite because we** are not able to use a "," as the decimal point in place of "." as** specified by some locales.*/char *sqlite3_snprintf(int n, char *zBuf, const char *zFormat, ...){  char *z;  va_list ap;  StrAccum acc;  if( n<=0 ){    return zBuf;  }  sqlite3StrAccumInit(&acc, zBuf, n, 0);  acc.useMalloc = 0;  va_start(ap,zFormat);  sqlite3VXPrintf(&acc, 0, zFormat, ap);  va_end(ap);  z = sqlite3StrAccumFinish(&acc);  return z;}#if defined(SQLITE_DEBUG)/*** A version of printf() that understands %lld.  Used for debugging.** The printf() built into some versions of windows does not understand %lld** and segfaults if you give it a long long int.*/void sqlite3DebugPrintf(const char *zFormat, ...){  va_list ap;  StrAccum acc;  char zBuf[500];  sqlite3StrAccumInit(&acc, zBuf, sizeof(zBuf), 0);  acc.useMalloc = 0;  va_start(ap,zFormat);  sqlite3VXPrintf(&acc, 0, zFormat, ap);  va_end(ap);  sqlite3StrAccumFinish(&acc);  fprintf(stdout,"%s", zBuf);  fflush(stdout);}#endif

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