The R Project SVN R-packages

Rev

Rev 3358 | Rev 3419 | Go to most recent revision | Only display areas with differences | Ignore whitespace | Details | Blame | Last modification | View Log | RSS feed

Rev 3358 Rev 3397
1
#include <stdio.h>
1
#include <stdio.h>
2
#include <string.h>
2
#include <string.h>
3
#include "sqlite_dataframe.h"
3
#include "sqlite_dataframe.h"
4
 
4
 
5
/****************************************************************************
5
/****************************************************************************
6
 * UTILITY FUNCTIONS
6
 * UTILITY FUNCTIONS
7
 ****************************************************************************/
7
 ****************************************************************************/
8
 
8
 
9
/* if user supplied a name, return that name. otherwise, use the 
9
/* if user supplied a name, return that name. otherwise, use the 
10
 * default "data" */
10
 * default "data" */
11
static int _check_sdf_name(SEXP name, char **rname, char **iname, int *file_idx) {
11
static int _check_sdf_name(SEXP name, char **rname, char **iname, int *file_idx) {
12
    int namelen = 0;
12
    int namelen = 0;
13
 
13
 
14
    /* check if arg name is supplied */
14
    /* check if arg name is supplied */
15
    if (IS_CHARACTER(name)) {
15
    if (IS_CHARACTER(name)) {
16
        *rname = CHAR_ELT(name,0);
16
        *rname = CHAR_ELT(name,0);
17
        if (!_is_r_sym(*rname)) { 
17
        if (!_is_r_sym(*rname)) { 
18
            Rprintf("Error: supplied name \"%s\"is not a valid R symbol.\n", 
18
            Rprintf("Error: supplied name \"%s\"is not a valid R symbol.\n", 
19
                    *rname); 
19
                    *rname); 
20
            return FALSE; 
20
            return FALSE; 
21
        }
21
        }
22
        namelen = strlen(*rname);
22
        namelen = strlen(*rname);
23
        *iname = (char*)R_alloc(namelen + 9, sizeof(char)); /* <name>10000.db\0 */
23
        *iname = (char*)R_alloc(namelen + 9, sizeof(char)); /* <name>10000.db\0 */
24
        sprintf(*iname, "%s.db", *rname);
24
        sprintf(*iname, "%s.db", *rname);
25
    } else if (name == R_NilValue) {
25
    } else if (name == R_NilValue) {
26
        *rname = "data";
26
        *rname = "data";
27
        namelen = 5;
27
        namelen = 5;
28
        *iname = (char*)R_alloc(13, sizeof(char)); /* data10000.db\0 */
28
        *iname = (char*)R_alloc(13, sizeof(char)); /* data10000.db\0 */
29
        *file_idx = 1;
29
        *file_idx = 1;
30
        sprintf(*iname, "%s%d.db", *rname, *file_idx);
30
        sprintf(*iname, "%s%d.db", *rname, *file_idx);
31
    } else {
31
    } else {
32
        Rprintf("Error: the supplied value for arg name is not a string.\n");
32
        Rprintf("Error: the supplied value for arg name is not a string.\n");
33
    }
33
    }
34
    return namelen;
34
    return namelen;
35
}
35
}
36
 
36
 
37
static int _find_free_filename(char *rname, char **iname, int *namelen, int *file_idx) {
37
static int _find_free_filename(char *rname, char **iname, int *namelen, int *file_idx) {
38
    do {
38
    do {
39
        if (!_file_exists(*iname)) break;
39
        if (!_file_exists(*iname)) break;
40
        *namelen = sprintf(*iname, "%s%d.db", rname, ++(*file_idx)) - 3;
40
        *namelen = sprintf(*iname, "%s%d.db", rname, ++(*file_idx)) - 3;
41
    } while (*file_idx < 10000);
41
    } while (*file_idx < 10000);
42
 
42
 
43
    return *file_idx;
43
    return *file_idx;
44
}
44
}
45
 
45
 
46
/* creates an sdf attribute table */
46
/* creates an sdf attribute table */
47
static int _create_sdf_attribute2(const char *iname) {
47
static int _create_sdf_attribute2(const char *iname) {
48
    sprintf(g_sql_buf[2], "create table [%s].sdf_attributes(attr text, "
48
    sprintf(g_sql_buf[2], "create table [%s].sdf_attributes(attr text, "
49
            "value text, primary key (attr))", iname);
49
            "value text, primary key (attr))", iname);
50
    int res;
50
    int res;
51
    res = _sqlite_exec(g_sql_buf[2]);
51
    res = _sqlite_exec(g_sql_buf[2]);
52
    if (res == SQLITE_OK) {
52
    if (res == SQLITE_OK) {
53
        sprintf(g_sql_buf[2], "insert into [%s].sdf_attributes values ('name',"
53
        sprintf(g_sql_buf[2], "insert into [%s].sdf_attributes values ('name',"
54
                "'%s');", iname, iname);
54
                "'%s');", iname, iname);
55
        res = _sqlite_exec(g_sql_buf[2]);
55
        res = _sqlite_exec(g_sql_buf[2]);
56
    }
56
    }
57
    return res;
57
    return res;
58
}
58
}
59
 
59
 
60
char *_create_sdf_skeleton1(SEXP name, int *onamelen) {
60
char *_create_sdf_skeleton1(SEXP name, int *onamelen) {
61
    char *iname, *rname;
61
    char *iname, *rname;
62
    int namelen, file_idx = 0, res;
62
    int namelen, file_idx = 0, res;
63
 
63
 
64
    namelen = _check_sdf_name(name, &rname, &iname, &file_idx);
64
    namelen = _check_sdf_name(name, &rname, &iname, &file_idx);
65
 
65
 
66
    if (!namelen) return NULL;
66
    if (!namelen) return NULL;
67
 
67
 
68
    _find_free_filename(rname, &iname, &namelen, &file_idx);
68
    _find_free_filename(rname, &iname, &namelen, &file_idx);
69
 
69
 
70
    if (file_idx >= 10000) { 
70
    if (file_idx >= 10000) { 
71
        Rprintf("Error: cannot find free SDF name.\n");
71
        Rprintf("Error: cannot find free SDF name.\n");
72
        return NULL;
72
        return NULL;
73
    }
73
    }
74
 
74
 
75
    /* add to workspace */
75
    /* add to workspace */
76
    strcpy(g_sql_buf[3], iname);
76
    strcpy(g_sql_buf[3], iname);
77
    iname[namelen] = 0; /* remove ".db" */
77
    iname[namelen] = 0; /* remove ".db" */
78
    res = _add_sdf1(g_sql_buf[3], iname);
78
    res = _add_sdf1(g_sql_buf[3], iname);
79
    if (_sqlite_error(res)) return NULL;
79
    if (_sqlite_error(res)) return NULL;
80
 
80
 
81
    /* detach SDF's if necessary to attach this one. if file does not
81
    /* detach SDF's if necessary to attach this one. if file does not
82
     * exist, then a sqlite db will be created after we make our 1st table */
82
     * exist, then a sqlite db will be created after we make our 1st table */
83
    if (!USE_SDF1(iname, FALSE)) { /* _delete_sdf2(iname); */ return NULL; }
83
    if (!USE_SDF1(iname, FALSE)) { /* _delete_sdf2(iname); */ return NULL; }
84
 
84
 
85
 
85
 
86
    /* create attributes table */
86
    /* create attributes table */
87
    res = _create_sdf_attribute2(iname);
87
    res = _create_sdf_attribute2(iname);
88
    if (_sqlite_error(res)) {
88
    if (_sqlite_error(res)) {
89
        sprintf(g_sql_buf[2], "detach '%s'", iname);
89
        sprintf(g_sql_buf[2], "detach '%s'", iname);
90
        _delete_sdf2(iname);
90
        _delete_sdf2(iname);
91
        return NULL; 
91
        return NULL; 
92
    }
92
    }
93
 
93
 
94
    *onamelen = namelen;
94
    if (onamelen) *onamelen = namelen;
95
    return iname;
95
    return iname;
96
}
96
}
97
/* checks if a column has a corresponding factor|ordered table */
97
/* checks if a column has a corresponding factor|ordered table */
98
static int _is_factor2(const char *iname, const char *factor_type, const char *colname) {
98
static int _is_factor2(const char *iname, const char *factor_type, const char *colname) {
99
    sqlite3_stmt *stmt;
99
    sqlite3_stmt *stmt;
100
    sprintf(g_sql_buf[2], "select * from [%s].[%s %s]", iname, factor_type,
100
    sprintf(g_sql_buf[2], "select * from [%s].[%s %s]", iname, factor_type,
101
            colname);
101
            colname);
102
    int res;
102
    int res;
103
    res = sqlite3_prepare(g_workspace, g_sql_buf[2], -1, &stmt, 0);
103
    res = sqlite3_prepare(g_workspace, g_sql_buf[2], -1, &stmt, 0);
104
    sqlite3_finalize(stmt);
104
    sqlite3_finalize(stmt);
105
    return res == SQLITE_OK;
105
    return res == SQLITE_OK;
106
}
106
}
107
 
107
 
108
/* create a factor|ordered table */
108
/* create a factor|ordered table */
109
static int _create_factor_table2(const char *iname, const char *factor_type, 
109
int _create_factor_table2(const char *iname, const char *factor_type, 
110
        const char *colname) {
110
        const char *colname) {
111
    sqlite3_stmt *stmt;
111
    sqlite3_stmt *stmt;
112
    sprintf(g_sql_buf[2], "create table [%s].[%s %s] (level int, label text, "
112
    sprintf(g_sql_buf[2], "create table [%s].[%s %s] (level int, label text, "
113
            "primary key(level), unique(label));", iname, factor_type, colname);
113
            "primary key(level), unique(label));", iname, factor_type, colname);
114
    int res;
114
    int res;
115
    res = sqlite3_prepare(g_workspace, g_sql_buf[2], -1, &stmt, 0);
115
    res = sqlite3_prepare(g_workspace, g_sql_buf[2], -1, &stmt, 0);
116
    if (res == SQLITE_OK) sqlite3_step(stmt);
116
    if (res == SQLITE_OK) sqlite3_step(stmt);
117
    sqlite3_finalize(stmt);
117
    sqlite3_finalize(stmt);
118
    return res; /* error on dup name? */
118
    return res; /* error on dup name? */
119
}
119
}
120
 
120
 
121
/* copy a factor|ordered table from a sdf(db) to another sdf(db) */
121
/* copy a factor|ordered table from a sdf(db) to another sdf(db) */
122
int _copy_factor_levels2(const char *factor_type, const char *iname_src,
122
int _copy_factor_levels2(const char *factor_type, const char *iname_src,
123
        const char *colname_src, const char *iname_dst, const char *colname_dst) {
123
        const char *colname_src, const char *iname_dst, const char *colname_dst) {
124
    sqlite3_stmt *stmt;
124
    sqlite3_stmt *stmt;
125
    int res;
125
    int res;
126
    res = _create_factor_table2(iname_dst, factor_type, colname_dst);
126
    res = _create_factor_table2(iname_dst, factor_type, colname_dst);
127
    if (res == SQLITE_OK) {
127
    if (res == SQLITE_OK) {
128
        sprintf(g_sql_buf[2], "insert into [%s].[%s %s] select * from [%s].[%s %s]",
128
        sprintf(g_sql_buf[2], "insert into [%s].[%s %s] select * from [%s].[%s %s]",
129
                iname_src, factor_type, colname_src, iname_dst, factor_type,
129
                iname_src, factor_type, colname_src, iname_dst, factor_type,
130
                colname_dst);
130
                colname_dst);
131
        res = sqlite3_prepare(g_workspace, g_sql_buf[2], -1, &stmt, 0);
131
        res = sqlite3_prepare(g_workspace, g_sql_buf[2], -1, &stmt, 0);
132
        if (res == SQLITE_OK) sqlite3_step(stmt);
132
        if (res == SQLITE_OK) sqlite3_step(stmt);
133
        sqlite3_finalize(stmt);
133
        sqlite3_finalize(stmt);
134
    }
134
    }
135
    return res; /* error on dup name? */
135
    return res; /* error on dup name? */
136
}
136
}
137
 
137
 
138
 
138
 
139
/* assumes stmt has col_cnt + 1 columns, col 0 is [row name]. returned SEXP is 
139
/* assumes stmt has col_cnt + 1 columns, col 0 is [row name]. returned SEXP is 
140
 * not UNPROTECT-ed, user will have to do that. will create the names &
140
 * not UNPROTECT-ed, user will have to do that. will create the names &
141
 * attach factor infos */
141
 * attach factor infos */
142
static SEXP _setup_df_sexp1(sqlite3_stmt *stmt, const char *iname, 
142
static SEXP _setup_df_sexp1(sqlite3_stmt *stmt, const char *iname, 
143
        int col_cnt, int row_cnt, int *dup_indices) {
143
        int col_cnt, int row_cnt, int *dup_indices) {
144
    SEXP ret, names, value, class = R_NilValue;
144
    SEXP ret, names, value, class = R_NilValue;
145
    int i, type;
145
    int i, type;
146
    const char *colname, *coltype;
146
    const char *colname, *coltype;
147
 
147
 
148
    PROTECT(ret = NEW_LIST(col_cnt));
148
    PROTECT(ret = NEW_LIST(col_cnt));
149
 
149
 
150
    /* set up names. */
150
    /* set up names. */
151
    PROTECT(names = NEW_CHARACTER(col_cnt));
151
    PROTECT(names = NEW_CHARACTER(col_cnt));
152
    for (i = 0; i < col_cnt; i++) {
152
    for (i = 0; i < col_cnt; i++) {
153
        colname = sqlite3_column_name(stmt, i+1);  /* +1 bec [row name is 0] */
153
        colname = sqlite3_column_name(stmt, i+1);  /* +1 bec [row name is 0] */
154
        coltype = sqlite3_column_decltype(stmt, i+1);
154
        coltype = sqlite3_column_decltype(stmt, i+1);
155
 
155
 
156
        if (dup_indices[i] == 0) {
156
        if (dup_indices[i] == 0) {
157
            strcpy(g_sql_buf[1], colname);
157
            strcpy(g_sql_buf[1], colname);
158
        } else {
158
        } else {
159
            sprintf(g_sql_buf[1], "%s.%d", colname, dup_indices[i]);
159
            sprintf(g_sql_buf[1], "%s.%d", colname, dup_indices[i]);
160
        }
160
        }
161
 
161
 
162
        SET_STRING_ELT(names, i, mkChar(g_sql_buf[1]));
162
        SET_STRING_ELT(names, i, mkChar(g_sql_buf[1]));
163
 
163
 
164
        if (strcmp(coltype, "text") == 0) {
164
        if (strcmp(coltype, "text") == 0) {
165
            PROTECT(value = NEW_CHARACTER(row_cnt));
165
            PROTECT(value = NEW_CHARACTER(row_cnt));
166
        } else if (strcmp(coltype, "double") == 0) {
166
        } else if (strcmp(coltype, "double") == 0) {
167
            PROTECT(value = NEW_NUMERIC(row_cnt));
167
            PROTECT(value = NEW_NUMERIC(row_cnt));
168
        } else if (strcmp(coltype, "bit") == 0) {
168
        } else if (strcmp(coltype, "bit") == 0) {
169
            PROTECT(value = NEW_LOGICAL(row_cnt));
169
            PROTECT(value = NEW_LOGICAL(row_cnt));
170
        } else if (strcmp(coltype, "integer") == 0 || 
170
        } else if (strcmp(coltype, "integer") == 0 || 
171
                   strcmp(coltype, "int") == 0) {
171
                   strcmp(coltype, "int") == 0) {
172
            PROTECT(value = NEW_INTEGER(row_cnt));
172
            PROTECT(value = NEW_INTEGER(row_cnt));
173
            type = _get_factor_levels1(iname, colname, value);
173
            type = _get_factor_levels1(iname, colname, value);
174
            if (type == VAR_FACTOR) {
174
            if (type == VAR_FACTOR) {
175
                PROTECT(class = mkString("factor"));
175
                PROTECT(class = mkString("factor"));
176
                SET_CLASS(value, class);
176
                SET_CLASS(value, class);
177
                UNPROTECT(1);
177
                UNPROTECT(1);
178
            } else if (type == VAR_ORDERED) {
178
            } else if (type == VAR_ORDERED) {
179
                PROTECT(class = NEW_CHARACTER(2));
179
                PROTECT(class = NEW_CHARACTER(2));
180
                SET_STRING_ELT(class, 0, mkChar("ordered"));
180
                SET_STRING_ELT(class, 0, mkChar("ordered"));
181
                SET_STRING_ELT(class, 1, mkChar("factor"));
181
                SET_STRING_ELT(class, 1, mkChar("factor"));
182
                SET_CLASS(value, class);
182
                SET_CLASS(value, class);
183
                UNPROTECT(1);
183
                UNPROTECT(1);
184
            }
184
            }
185
        } else {
185
        } else {
186
            Rprintf("Error: not supported type %s for %s\n", coltype, colname);
186
            Rprintf("Error: not supported type %s for %s\n", coltype, colname);
187
            UNPROTECT(2); /* unprotect ret, names */
187
            UNPROTECT(2); /* unprotect ret, names */
188
            return R_NilValue;
188
            return R_NilValue;
189
        }
189
        }
190
 
190
 
191
        SET_VECTOR_ELT(ret, i, value);
191
        SET_VECTOR_ELT(ret, i, value);
192
        UNPROTECT(1); /* unprotect value */
192
        UNPROTECT(1); /* unprotect value */
193
                    
193
                    
194
    }
194
    }
195
    SET_NAMES(ret, names);
195
    SET_NAMES(ret, names);
196
    UNPROTECT(1); /* unprotect names only */
196
    UNPROTECT(1); /* unprotect names only */
197
    return ret;
197
    return ret;
198
}
198
}
199
 
199
 
200
/* expected that 1st col of stmt is [row name], so we start with index 1 */
200
/* expected that 1st col of stmt is [row name], so we start with index 1 */
201
static int _add_row_to_df(SEXP df, sqlite3_stmt *stmt, int row, int ncols) {
201
static int _add_row_to_df(SEXP df, sqlite3_stmt *stmt, int row, int ncols) {
202
    SEXP vec;
202
    SEXP vec;
203
    int type = -1, is_null, i;
203
    int type = -1, is_null, i;
204
    for (i = 1; i <= ncols; i++) {
204
    for (i = 1; i <= ncols; i++) {
205
        vec = VECTOR_ELT(df, i-1);
205
        vec = VECTOR_ELT(df, i-1);
206
        type = TYPEOF(vec);
206
        type = TYPEOF(vec);
207
 
207
 
208
        is_null = (sqlite3_column_type(stmt, row) == SQLITE_NULL);
208
        is_null = (sqlite3_column_type(stmt, row) == SQLITE_NULL);
209
 
209
 
210
        if (type == CHARSXP) {
210
        if (type == CHARSXP) {
211
            SET_STRING_ELT(vec, row, mkChar((char *)sqlite3_column_text(stmt, i)));
211
            SET_STRING_ELT(vec, row, mkChar((char *)sqlite3_column_text(stmt, i)));
212
        } else if (type == INTSXP) {
212
        } else if (type == INTSXP) {
213
            INTEGER(vec)[row] = sqlite3_column_int(stmt, i);
213
            INTEGER(vec)[row] = sqlite3_column_int(stmt, i);
214
        } else if (type == REALSXP) {
214
        } else if (type == REALSXP) {
215
            REAL(vec)[row] = sqlite3_column_double(stmt, i);
215
            REAL(vec)[row] = sqlite3_column_double(stmt, i);
216
        } else if (type == LGLSXP) {
216
        } else if (type == LGLSXP) {
217
            LOGICAL(vec)[row] = sqlite3_column_int(stmt, i);
217
            LOGICAL(vec)[row] = sqlite3_column_int(stmt, i);
218
        }
218
        }
219
    }
219
    }
220
    return type;
220
    return type;
221
}
221
}
222
 
222
 
223
static void _set_rownames2(SEXP df) {
223
static void _set_rownames2(SEXP df) {
224
    SEXP value = VECTOR_ELT(df, 0);
224
    SEXP value = VECTOR_ELT(df, 0);
225
    int len = LENGTH(value), i;
225
    int len = LENGTH(value), i;
226
    PROTECT(value = NEW_CHARACTER(len));
226
    PROTECT(value = NEW_CHARACTER(len));
227
    for (i = 0; i < len; i++) {
227
    for (i = 0; i < len; i++) {
228
        sprintf(g_sql_buf[2], "%d", i+1);
228
        sprintf(g_sql_buf[2], "%d", i+1);
229
        SET_STRING_ELT(value, i, mkChar(g_sql_buf[2]));
229
        SET_STRING_ELT(value, i, mkChar(g_sql_buf[2]));
230
    }
230
    }
231
 
231
 
232
    SET_ROWNAMES(df, value);
232
    SET_ROWNAMES(df, value);
233
    UNPROTECT(1);
233
    UNPROTECT(1);
234
}
234
}
235
 
235
 
236
 
236
 
237
/****************************************************************************
237
/****************************************************************************
238
 * SDF FUNCTIONS
238
 * SDF FUNCTIONS
239
 ****************************************************************************/
239
 ****************************************************************************/
240
 
240
 
241
SEXP sdf_create_sdf(SEXP df, SEXP name) {
241
SEXP sdf_create_sdf(SEXP df, SEXP name) {
242
    SEXP ret;
242
    SEXP ret;
243
    char *iname; 
243
    char *iname; 
244
    int namelen, res, i, j;
244
    int namelen, res, i, j;
245
 
245
 
246
    /* find free name, attach sdf, create sdf_attributes */
246
    /* find free name, attach sdf, create sdf_attributes */
247
    iname = _create_sdf_skeleton1(name, &namelen);
247
    iname = _create_sdf_skeleton1(name, &namelen);
248
    
248
    
249
    if (iname != NULL) {
249
    if (iname != NULL) {
250
        int sql_len, sql_len2;
250
        int sql_len, sql_len2;
251
        sqlite3_stmt *stmt;
251
        sqlite3_stmt *stmt;
252
 
252
 
253
        /* create sdf_data table */
253
        /* create sdf_data table */
254
        SEXP names = GET_NAMES(df), variable, levels;
254
        SEXP names = GET_NAMES(df), variable, levels;
255
        int ncols = GET_LENGTH(names), type, *types;
255
        int ncols = GET_LENGTH(names), type, *types;
256
        char *col_name, *class, *factor;
256
        char *col_name, *class, *factor;
257
 
257
 
258
        /* variables for adding rownames */
258
        /* variables for adding rownames */
259
        SEXP rownames;
259
        SEXP rownames;
260
        int nrows;
260
        int nrows;
261
        char *row_name;
261
        char *row_name;
262
 
262
 
263
        /* TODO: put constraints on table after inserting everything? */
263
        /* TODO: put constraints on table after inserting everything? */
264
 
264
 
265
 
265
 
266
        /* 
266
        /* 
267
         * create the create table and insert sql scripts by looping through
267
         * create the create table and insert sql scripts by looping through
268
         * the columns of df
268
         * the columns of df
269
         */
269
         */
270
        types = (int *)R_alloc(ncols, sizeof(int));
270
        types = (int *)R_alloc(ncols, sizeof(int));
271
        sql_len = sprintf(g_sql_buf[0], "create table [%s].sdf_data ([row name] text", iname);
271
        sql_len = sprintf(g_sql_buf[0], "create table [%s].sdf_data ([row name] text", iname);
272
        sql_len2 = sprintf(g_sql_buf[1], "insert into [%s].sdf_data values(?", iname);
272
        sql_len2 = sprintf(g_sql_buf[1], "insert into [%s].sdf_data values(?", iname);
273
 
273
 
274
        for (i = 0; i < ncols; i++) {
274
        for (i = 0; i < ncols; i++) {
275
            col_name = CHAR(STRING_ELT(names, i));
275
            col_name = CHAR(STRING_ELT(names, i));
276
 
276
 
277
            /* add column definition to the create table sql */
277
            /* add column definition to the create table sql */
278
            _expand_buf(0, sql_len+strlen(col_name)+10);
278
            _expand_buf(0, sql_len+strlen(col_name)+10);
279
 
279
 
280
            variable = _getListElement(df, col_name);
280
            variable = _getListElement(df, col_name);
281
            class = CHAR(STRING_ELT(GET_CLASS(variable), 0));
281
            class = CHAR(STRING_ELT(GET_CLASS(variable), 0));
282
            type = TYPEOF(variable);
282
            type = TYPEOF(variable);
283
            types[i] = type;
283
            types[i] = type;
284
 
284
 
285
            sql_len += sprintf(g_sql_buf[0]+sql_len, ", [%s] %s", col_name, 
285
            sql_len += sprintf(g_sql_buf[0]+sql_len, ", [%s] %s", col_name, 
286
                    _get_column_type(class, type));
286
                    _get_column_type(class, type));
287
 
287
 
288
            /* add handler to insert table sql */
288
            /* add handler to insert table sql */
289
            _expand_buf(1, sql_len+5);
289
            _expand_buf(1, sql_len+5);
290
            strcpy(g_sql_buf[1]+sql_len2, ",?");
290
            strcpy(g_sql_buf[1]+sql_len2, ",?");
291
            sql_len2 += 2; 
291
            sql_len2 += 2; 
292
 
292
 
293
            /* create separate table for factors decode */
293
            /* create separate table for factors decode */
294
            if (strcmp(class, "factor") == 0 || strcmp(class, "ordered") == 0){
294
            if (strcmp(class, "factor") == 0 || strcmp(class, "ordered") == 0){
295
                if (_create_factor_table2(iname, class, col_name)) 
295
                if (_create_factor_table2(iname, class, col_name)) 
296
                    return R_NilValue; /* dup tbl name? */
296
                    return R_NilValue; /* dup tbl name? */
297
 
297
 
-
 
298
                _sqlite_exec("begin");
298
                levels = GET_LEVELS(variable);
299
                levels = GET_LEVELS(variable);
299
                sprintf(g_sql_buf[2], "insert into [%s].[%s %s] values(?, ?);",
300
                sprintf(g_sql_buf[2], "insert into [%s].[%s %s] values(?, ?);",
300
                        iname, class, col_name);
301
                        iname, class, col_name);
301
                res = sqlite3_prepare(g_workspace, g_sql_buf[2], -1, &stmt, NULL);
302
                res = sqlite3_prepare(g_workspace, g_sql_buf[2], -1, &stmt, NULL);
302
                if (_sqlite_error(res)) return R_NilValue; /* dup tbl name? */
303
                if (_sqlite_error(res)) return R_NilValue; /* dup tbl name? */
303
 
304
 
304
                for (j = 0; j < GET_LENGTH(levels); j++) {
305
                for (j = 0; j < GET_LENGTH(levels); j++) {
305
                    sqlite3_reset(stmt);
306
                    sqlite3_reset(stmt);
306
                    factor = CHAR(STRING_ELT(levels, j));
307
                    factor = CHAR(STRING_ELT(levels, j));
307
                    sqlite3_bind_int(stmt, 1, j+1);
308
                    sqlite3_bind_int(stmt, 1, j+1);
308
                    sqlite3_bind_text(stmt, 2, factor, -1, SQLITE_STATIC);
309
                    sqlite3_bind_text(stmt, 2, factor, -1, SQLITE_STATIC);
309
                    sqlite3_step(stmt);
310
                    sqlite3_step(stmt);
310
                }
311
                }
311
                sqlite3_finalize(stmt);
312
                sqlite3_finalize(stmt);
-
 
313
                _sqlite_exec("commit");
312
            }
314
            }
313
        }
315
        }
314
        
316
        
315
        _expand_buf(0,sql_len+35);
317
        _expand_buf(0,sql_len+35);
316
        sql_len += sprintf(g_sql_buf[0]+sql_len, ", primary key([row name]));");
318
        /* sql_len += sprintf(g_sql_buf[0]+sql_len, ", primary key([row name]));"); */
317
        /* sql_len += sprintf(g_sql_buf[0]+sql_len, ");"); */
319
        sql_len += sprintf(g_sql_buf[0]+sql_len, ");");
318
        res = _sqlite_exec(g_sql_buf[0]);
320
        res = _sqlite_exec(g_sql_buf[0]);
319
        if (_sqlite_error(res)) return R_NilValue; /* why? */
321
        if (_sqlite_error(res)) return R_NilValue; /* why? */
320
 
322
 
321
        /*
323
        /*
322
         * add the data in df to the sdf
324
         * add the data in df to the sdf
323
         */
325
         */
324
        rownames = getAttrib(df, R_RowNamesSymbol);
326
        rownames = getAttrib(df, R_RowNamesSymbol);
325
        nrows = GET_LENGTH(rownames);
327
        nrows = GET_LENGTH(rownames);
326
 
328
 
-
 
329
        _sqlite_error(_sqlite_exec("begin"));
327
        sprintf(g_sql_buf[1]+sql_len2, ")");
330
        sprintf(g_sql_buf[1]+sql_len2, ")");
328
        res = sqlite3_prepare(g_workspace, g_sql_buf[1], -1, &stmt, NULL);
331
        res = sqlite3_prepare(g_workspace, g_sql_buf[1], -1, &stmt, NULL);
329
 
332
 
330
        for (i = 0; i < nrows; i++) {
333
        for (i = 0; i < nrows; i++) {
331
            sqlite3_reset(stmt);
334
            sqlite3_reset(stmt);
332
 
335
 
333
            /* since this is coming from a real dataframe, we're assured that
336
            /* since this is coming from a real dataframe, we're assured that
334
             * the rownames are unique */
337
             * the rownames are unique */
335
            if (IS_CHARACTER(rownames)) {
338
            if (IS_CHARACTER(rownames)) {
336
                row_name = CHAR(STRING_ELT(rownames, i));
339
                row_name = CHAR(STRING_ELT(rownames, i));
337
                if (*row_name) /* if not empty string */
340
                if (*row_name) /* if not empty string */
338
                    sqlite3_bind_text(stmt, 1, row_name, strlen(row_name), SQLITE_STATIC);
341
                    sqlite3_bind_text(stmt, 1, row_name, strlen(row_name), SQLITE_STATIC);
339
                else sqlite3_bind_int(stmt, 1, i);
342
                else sqlite3_bind_int(stmt, 1, i);
340
            } else if (IS_INTEGER(rownames)) {
343
            } else if (IS_INTEGER(rownames)) {
341
                sqlite3_bind_int(stmt, 1, INTEGER(rownames)[i]);
344
                sqlite3_bind_int(stmt, 1, INTEGER(rownames)[i]);
342
            } else sqlite3_bind_int(stmt, 1, i);
345
            } else sqlite3_bind_int(stmt, 1, i);
343
 
346
 
344
            for (j = 0; j < ncols; j++) {
347
            for (j = 0; j < ncols; j++) {
345
                variable = VECTOR_ELT(df, j);
348
                variable = VECTOR_ELT(df, j);
346
                switch(types[j]) {
349
                switch(types[j]) {
347
                    case INTSXP : 
350
                    case INTSXP : 
348
                        sqlite3_bind_int(stmt, j+2, INTEGER(variable)[i]);
351
                        sqlite3_bind_int(stmt, j+2, INTEGER(variable)[i]);
349
                        break;
352
                        break;
350
                    case REALSXP:
353
                    case REALSXP:
351
                        sqlite3_bind_double(stmt, j+2, REAL(variable)[i]);
354
                        sqlite3_bind_double(stmt, j+2, REAL(variable)[i]);
352
                        break;
355
                        break;
353
                    case CHARSXP:
356
                    case CHARSXP:
354
                        col_name = CHAR(STRING_ELT(variable,i));
357
                        col_name = CHAR(STRING_ELT(variable,i));
355
                        sqlite3_bind_text(stmt, j+2, col_name, strlen(col_name), SQLITE_STATIC);
358
                        sqlite3_bind_text(stmt, j+2, col_name, strlen(col_name), SQLITE_STATIC);
356
                }
359
                }
357
                /* TODO: handle NA's & NULL's */
360
                /* TODO: handle NA's & NULL's */
358
            }
361
            }
359
 
362
 
360
            res = sqlite3_step(stmt);
363
            res = sqlite3_step(stmt);
361
            if (res != SQLITE_DONE) { 
364
            if (res != SQLITE_DONE) { 
-
 
365
                _sqlite_exec("ROLLBACK");
362
                sqlite3_finalize(stmt);
366
                sqlite3_finalize(stmt);
363
                Rprintf("ERROR: %s\n", sqlite3_errmsg(g_workspace));
367
                Rprintf("SQLITE ERROR: %s\n", sqlite3_errmsg(g_workspace));
364
                return R_NilValue; /* why? */
368
                return R_NilValue; /* why? */
365
            }
369
            }
366
        }
370
        }
367
                
371
                
368
        sqlite3_finalize(stmt);
372
        sqlite3_finalize(stmt);
-
 
373
        _sqlite_error(_sqlite_exec("COMMIT"));
369
 
374
 
370
        /* create a new object representing the sdf */
375
        /* create a new object representing the sdf */
371
        ret = _create_sdf_sexp(iname);
376
        ret = _create_sdf_sexp(iname);
372
 
377
 
373
    } else {
378
    } else {
374
        Rprintf("ERROR: unable to create a sqlite data frame.\n");
379
        Rprintf("ERROR: unable to create a sqlite data frame.\n");
375
        ret = R_NilValue;
380
        ret = R_NilValue;
376
    }
381
    }
377
        
382
        
378
    return ret;
383
    return ret;
379
}
384
}
380
 
385
 
381
SEXP sdf_get_names(SEXP sdf) {
386
SEXP sdf_get_names(SEXP sdf) {
382
    char *iname;
387
    char *iname;
383
    iname = SDF_INAME(sdf);
388
    iname = SDF_INAME(sdf);
384
    if (!USE_SDF1(iname, TRUE)) return R_NilValue;
389
    if (!USE_SDF1(iname, TRUE)) return R_NilValue;
385
 
390
 
386
    int len;
391
    int len;
387
    len = sprintf(g_sql_buf[0], "select * from [%s].sdf_data;", iname);
392
    len = sprintf(g_sql_buf[0], "select * from [%s].sdf_data;", iname);
388
 
393
 
389
    sqlite3_stmt *stmt;
394
    sqlite3_stmt *stmt;
390
    int res, i;
395
    int res, i;
391
   
396
   
392
    res = sqlite3_prepare(g_workspace, g_sql_buf[0], len, &stmt, NULL);
397
    res = sqlite3_prepare(g_workspace, g_sql_buf[0], len, &stmt, NULL);
393
    if (_sqlite_error(res)) return R_NilValue;
398
    if (_sqlite_error(res)) return R_NilValue;
394
 
399
 
395
    SEXP ret;
400
    SEXP ret;
396
 
401
 
397
    len = sqlite3_column_count(stmt)-1;
402
    len = sqlite3_column_count(stmt)-1;
398
    PROTECT(ret = NEW_CHARACTER(len));
403
    PROTECT(ret = NEW_CHARACTER(len));
399
 
404
 
400
    for (i = 0; i < len; i++) {
405
    for (i = 0; i < len; i++) {
401
        SET_STRING_ELT(ret, i, mkChar(sqlite3_column_name(stmt, i+1)));
406
        SET_STRING_ELT(ret, i, mkChar(sqlite3_column_name(stmt, i+1)));
402
    }
407
    }
403
 
408
 
404
    sqlite3_finalize(stmt);
409
    sqlite3_finalize(stmt);
405
    UNPROTECT(1);
410
    UNPROTECT(1);
406
    return ret;
411
    return ret;
407
}
412
}
408
 
413
 
409
SEXP sdf_get_length(SEXP sdf) {
414
SEXP sdf_get_length(SEXP sdf) {
410
    char *iname;
415
    char *iname;
411
    iname  = CHAR(STRING_ELT(_getListElement(sdf, "iname"),0));
416
    iname  = CHAR(STRING_ELT(_getListElement(sdf, "iname"),0));
412
    if (!USE_SDF1(iname, TRUE)) return R_NilValue;
417
    if (!USE_SDF1(iname, TRUE)) return R_NilValue;
413
 
418
 
414
    int len = sprintf(g_sql_buf[0], "select * from [%s].sdf_data;", iname);
419
    int len = sprintf(g_sql_buf[0], "select * from [%s].sdf_data;", iname);
415
 
420
 
416
    sqlite3_stmt *stmt;
421
    sqlite3_stmt *stmt;
417
    int res;
422
    int res;
418
   
423
   
419
    res = sqlite3_prepare(g_workspace, g_sql_buf[0], len, &stmt, NULL);
424
    res = sqlite3_prepare(g_workspace, g_sql_buf[0], len, &stmt, NULL);
420
    if (_sqlite_error(res)) return R_NilValue;
425
    if (_sqlite_error(res)) return R_NilValue;
421
 
426
 
422
    SEXP ret;
427
    SEXP ret;
423
 
428
 
424
    len = sqlite3_column_count(stmt)-1;
429
    len = sqlite3_column_count(stmt)-1;
425
    PROTECT(ret = NEW_INTEGER(1));
430
    PROTECT(ret = NEW_INTEGER(1));
426
    INTEGER(ret)[0] = len;
431
    INTEGER(ret)[0] = len;
427
 
432
 
428
    sqlite3_finalize(stmt);
433
    sqlite3_finalize(stmt);
429
    UNPROTECT(1);
434
    UNPROTECT(1);
430
    return ret;
435
    return ret;
431
}
436
}
432
 
437
 
433
/* get row count */
438
/* get row count */
434
SEXP sdf_get_row_count(SEXP sdf) {
439
SEXP sdf_get_row_count(SEXP sdf) {
435
    char *iname = CHAR(STRING_ELT(_getListElement(sdf, "iname"),0));
440
    char *iname = CHAR(STRING_ELT(_getListElement(sdf, "iname"),0));
436
    if (!USE_SDF1(iname, TRUE)) return R_NilValue;
441
    if (!USE_SDF1(iname, TRUE)) return R_NilValue;
437
 
442
 
438
    int nrow;
443
    int nrow;
439
    SEXP ret;
444
    SEXP ret;
440
   
445
   
441
    nrow = _get_row_count2(iname, TRUE);
446
    nrow = _get_row_count2(iname, TRUE);
442
 
447
 
443
    if (nrow < 1) ret = R_NilValue;
448
    if (nrow < 1) ret = R_NilValue;
444
    else {
449
    else {
445
        PROTECT(ret = NEW_INTEGER(1));
450
        PROTECT(ret = NEW_INTEGER(1));
446
        INTEGER(ret)[0] = nrow;
451
        INTEGER(ret)[0] = nrow;
447
        UNPROTECT(1);
452
        UNPROTECT(1);
448
    }
453
    }
449
 
454
 
450
    return ret;
455
    return ret;
451
}
456
}
452
 
457
 
453
    
458
    
454
SEXP sdf_import_table(SEXP _filename, SEXP _name, SEXP _sep, SEXP _quote, 
459
SEXP sdf_import_table(SEXP _filename, SEXP _name, SEXP _sep, SEXP _quote, 
455
        SEXP _rownames, SEXP _colnames) {
460
        SEXP _rownames, SEXP _colnames) {
456
    char *filename = CHAR_ELT(_filename, 0);
461
    char *filename = CHAR_ELT(_filename, 0);
457
    FILE *f = fopen(filename, "r");
462
    FILE *f = fopen(filename, "r");
458
 
463
 
459
    if (f == NULL) {
464
    if (f == NULL) {
460
        Rprintf("Error: File %s does not exist.", filename);
465
        Rprintf("Error: File %s does not exist.", filename);
461
        return R_NilValue;
466
        return R_NilValue;
462
    }
467
    }
463
 
468
 
464
    /*char *sep = CHAR_ELT(_sep, 0), *quote = CHAR_ELT(_quote,0);
469
    /*char *sep = CHAR_ELT(_sep, 0), *quote = CHAR_ELT(_quote,0);
465
    char *name = CHAR_ELT(_name, 0);*/
470
    char *name = CHAR_ELT(_name, 0);*/
466
 
471
 
467
    /* create the table */
472
    /* create the table */
468
    /* insert the stuffs */
473
    /* insert the stuffs */
469
    /* register to workspace */
474
    /* register to workspace */
470
 
475
 
471
    return R_NilValue;
476
    return R_NilValue;
472
}
477
}
473
 
478
 
474
SEXP sdf_get_index(SEXP sdf, SEXP row, SEXP col) {
479
SEXP sdf_get_index(SEXP sdf, SEXP row, SEXP col) {
475
    SEXP ret = R_NilValue;
480
    SEXP ret = R_NilValue;
476
    char *iname = SDF_INAME(sdf);
481
    char *iname = SDF_INAME(sdf);
477
    if (!USE_SDF1(iname, TRUE)) return R_NilValue;
482
    if (!USE_SDF1(iname, TRUE)) return R_NilValue;
478
 
483
 
479
    sqlite3_stmt *stmt;
484
    sqlite3_stmt *stmt;
480
    int buflen = 0, idxlen, col_cnt, row_cnt, index;
485
    int buflen = 0, idxlen, col_cnt, row_cnt, index;
481
    int i, j,res;
486
    int i, j,res;
482
    int *col_indices, col_index_len, *dup_indices;
487
    int *col_indices, col_index_len, *dup_indices;
483
    int row_index_len = 0;
488
    int row_index_len = 0;
484
 
489
 
485
    sprintf(g_sql_buf[0], "select * from [%s].sdf_data ", iname);
490
    sprintf(g_sql_buf[0], "select * from [%s].sdf_data ", iname);
486
    res = sqlite3_prepare(g_workspace, g_sql_buf[0], -1, &stmt, 0);
491
    res = sqlite3_prepare(g_workspace, g_sql_buf[0], -1, &stmt, 0);
487
    if (_sqlite_error(res)) return R_NilValue;
492
    if (_sqlite_error(res)) return R_NilValue;
488
 
493
 
489
    buflen = sprintf(g_sql_buf[0], "select [row name]");
494
    buflen = sprintf(g_sql_buf[0], "select [row name]");
490
    idxlen = LENGTH(col);
495
    idxlen = LENGTH(col);
491
    col_cnt = sqlite3_column_count(stmt) - 1;
496
    col_cnt = sqlite3_column_count(stmt) - 1;
492
 
497
 
493
    /*
498
    /*
494
     * PROCESS COLUMN INDEX
499
     * PROCESS COLUMN INDEX
495
     */
500
     */
496
    if (col == R_NilValue) {
501
    if (col == R_NilValue) {
497
        for (i = 1; i < col_cnt+1; i++) {
502
        for (i = 1; i < col_cnt+1; i++) {
498
            buflen += sprintf(g_sql_buf[0]+buflen, ",[%s]", 
503
            buflen += sprintf(g_sql_buf[0]+buflen, ",[%s]", 
499
                    sqlite3_column_name(stmt, i)); 
504
                    sqlite3_column_name(stmt, i)); 
500
        }
505
        }
501
        _expand_buf(0, buflen+20+strlen(iname));
506
        _expand_buf(0, buflen+20+strlen(iname));
502
        buflen += sprintf(g_sql_buf[0]+buflen, " from [%s].sdf_data", iname);
507
        buflen += sprintf(g_sql_buf[0]+buflen, " from [%s].sdf_data", iname);
503
        col_index_len = col_cnt;
508
        col_index_len = col_cnt;
504
        col_indices = (int *)R_alloc(idxlen, sizeof(int));
509
        col_indices = (int *)R_alloc(idxlen, sizeof(int));
505
        dup_indices = (int *)R_alloc(idxlen, sizeof(int));
510
        dup_indices = (int *)R_alloc(idxlen, sizeof(int));
506
        for (i = 0; i < col_cnt; i++) { col_indices[i] = i; dup_indices[i] = 0; }
511
        for (i = 0; i < col_cnt; i++) { col_indices[i] = i; dup_indices[i] = 0; }
507
    } else if (col == R_NilValue || idxlen < 1) {
512
    } else if (col == R_NilValue || idxlen < 1) {
508
        sqlite3_finalize(stmt);
513
        sqlite3_finalize(stmt);
509
        return R_NilValue;
514
        return R_NilValue;
510
    } else if (IS_NUMERIC(col)) {
515
    } else if (IS_NUMERIC(col)) {
511
        col_indices = (int *)R_alloc(idxlen, sizeof(int));
516
        col_indices = (int *)R_alloc(idxlen, sizeof(int));
512
        dup_indices = (int *)R_alloc(idxlen, sizeof(int));
517
        dup_indices = (int *)R_alloc(idxlen, sizeof(int));
513
        col_index_len = 0;
518
        col_index_len = 0;
514
 
519
 
515
        for (i = 0; i < idxlen; i++) {
520
        for (i = 0; i < idxlen; i++) {
516
            /* no need to correct for 0 base because col 0 is [row name] */
521
            /* no need to correct for 0 base because col 0 is [row name] */
517
            index = ((int) REAL(col)[i]); 
522
            index = ((int) REAL(col)[i]); 
518
            if (index > col_cnt) {
523
            if (index > col_cnt) {
519
                sqlite3_finalize(stmt);
524
                sqlite3_finalize(stmt);
520
                Rprintf("Error: undefined columns selected\n");
525
                Rprintf("Error: undefined columns selected\n");
521
                return R_NilValue;
526
                return R_NilValue;
522
            } else if (index > 0) {
527
            } else if (index > 0) {
523
                buflen += sprintf(g_sql_buf[0]+buflen, ",[%s]", 
528
                buflen += sprintf(g_sql_buf[0]+buflen, ",[%s]", 
524
                        sqlite3_column_name(stmt,index));
529
                        sqlite3_column_name(stmt,index));
525
                dup_indices[col_index_len] = 0;
530
                dup_indices[col_index_len] = 0;
526
                for (j = 0; j < col_index_len; j++) {
531
                for (j = 0; j < col_index_len; j++) {
527
                    if (col_indices[j] == index) dup_indices[col_index_len]++;
532
                    if (col_indices[j] == index) dup_indices[col_index_len]++;
528
                }
533
                }
529
                col_indices[col_index_len++] = index;
534
                col_indices[col_index_len++] = index;
530
            } else if (index < 0) {
535
            } else if (index < 0) {
531
                sqlite3_finalize(stmt);
536
                sqlite3_finalize(stmt);
532
                Rprintf("Error: negative indices not supported.\n");
537
                Rprintf("Error: negative indices not supported.\n");
533
                return R_NilValue;
538
                return R_NilValue;
534
            }
539
            }
535
        }
540
        }
536
 
541
 
537
        if (col_index_len == 0) {
542
        if (col_index_len == 0) {
538
            sqlite3_finalize(stmt);
543
            sqlite3_finalize(stmt);
539
            Rprintf("Error: no indices detected??\n");
544
            Rprintf("Error: no indices detected??\n");
540
            return R_NilValue;
545
            return R_NilValue;
541
        } else { 
546
        } else { 
542
            _expand_buf(0, buflen+20+strlen(iname));
547
            _expand_buf(0, buflen+20+strlen(iname));
543
            buflen += sprintf(g_sql_buf[0]+buflen, " from [%s].sdf_data", iname);
548
            buflen += sprintf(g_sql_buf[0]+buflen, " from [%s].sdf_data", iname);
544
        }
549
        }
545
    } else if (IS_INTEGER(col)) {
550
    } else if (IS_INTEGER(col)) {
546
        /* identical logic with IS_NUMERIC, except that we don't have to cast
551
        /* identical logic with IS_NUMERIC, except that we don't have to cast
547
         * stuffs from SEXP col. the alternative is doing if idxlen times. */
552
         * stuffs from SEXP col. the alternative is doing if idxlen times. */
548
        col_indices = (int *)R_alloc(idxlen, sizeof(int));
553
        col_indices = (int *)R_alloc(idxlen, sizeof(int));
549
        dup_indices = (int *)R_alloc(idxlen, sizeof(int));
554
        dup_indices = (int *)R_alloc(idxlen, sizeof(int));
550
        col_index_len = 0;
555
        col_index_len = 0;
551
 
556
 
552
        for (i = 0; i < idxlen; i++) {
557
        for (i = 0; i < idxlen; i++) {
553
            /* no need to correct for 0 base because col 0 is [row name] */
558
            /* no need to correct for 0 base because col 0 is [row name] */
554
            index = INTEGER(col)[i];
559
            index = INTEGER(col)[i];
555
            if (index > col_cnt) {
560
            if (index > col_cnt) {
556
                sqlite3_finalize(stmt);
561
                sqlite3_finalize(stmt);
557
                Rprintf("Error: undefined columns selected\n");
562
                Rprintf("Error: undefined columns selected\n");
558
                return R_NilValue;
563
                return R_NilValue;
559
            } else if (index > 0) {
564
            } else if (index > 0) {
560
                buflen += sprintf(g_sql_buf[0]+buflen, ",[%s]", 
565
                buflen += sprintf(g_sql_buf[0]+buflen, ",[%s]", 
561
                        sqlite3_column_name(stmt,index));
566
                        sqlite3_column_name(stmt,index));
562
                dup_indices[col_index_len] = 0;
567
                dup_indices[col_index_len] = 0;
563
                for (j = 0; j < col_index_len; j++) {
568
                for (j = 0; j < col_index_len; j++) {
564
                    if (col_indices[j] == index) dup_indices[col_index_len]++;
569
                    if (col_indices[j] == index) dup_indices[col_index_len]++;
565
                }
570
                }
566
                col_indices[col_index_len++] = index;
571
                col_indices[col_index_len++] = index;
567
            } else if (index < 0) {
572
            } else if (index < 0) {
568
                sqlite3_finalize(stmt);
573
                sqlite3_finalize(stmt);
569
                Rprintf("Error: negative indices not supported.\n");
574
                Rprintf("Error: negative indices not supported.\n");
570
                return R_NilValue;
575
                return R_NilValue;
571
            }
576
            }
572
        }
577
        }
573
 
578
 
574
        if (col_index_len == 0) {
579
        if (col_index_len == 0) {
575
            sqlite3_finalize(stmt);
580
            sqlite3_finalize(stmt);
576
            Rprintf("Error: no indices detected??\n");
581
            Rprintf("Error: no indices detected??\n");
577
            return R_NilValue;
582
            return R_NilValue;
578
        } else { 
583
        } else { 
579
            _expand_buf(0, buflen+20+strlen(iname));
584
            _expand_buf(0, buflen+20+strlen(iname));
580
            buflen += sprintf(g_sql_buf[0]+buflen, " from [%s].sdf_data", iname);
585
            buflen += sprintf(g_sql_buf[0]+buflen, " from [%s].sdf_data", iname);
581
        }
586
        }
582
    } else if (IS_LOGICAL(col)) {
587
    } else if (IS_LOGICAL(col)) {
583
        /* recycling stuff, so max column output is the # of cols in the df */
588
        /* recycling stuff, so max column output is the # of cols in the df */
584
        col_indices = (int *)R_alloc(col_cnt, sizeof(int));
589
        col_indices = (int *)R_alloc(col_cnt, sizeof(int));
585
        dup_indices = (int *)R_alloc(col_cnt, sizeof(int));
590
        dup_indices = (int *)R_alloc(col_cnt, sizeof(int));
586
        col_index_len = 0;
591
        col_index_len = 0;
587
        for (i = 0; i < col_cnt; i++) {
592
        for (i = 0; i < col_cnt; i++) {
588
            if (LOGICAL(col)[i%idxlen]) {
593
            if (LOGICAL(col)[i%idxlen]) {
589
                buflen += sprintf(g_sql_buf[0]+buflen, ",[%s]", 
594
                buflen += sprintf(g_sql_buf[0]+buflen, ",[%s]", 
590
                        sqlite3_column_name(stmt,i+1));
595
                        sqlite3_column_name(stmt,i+1));
591
                dup_indices[col_index_len] = 0;
596
                dup_indices[col_index_len] = 0;
592
                col_indices[col_index_len++] = i;
597
                col_indices[col_index_len++] = i;
593
            }
598
            }
594
        }
599
        }
595
 
600
 
596
        if (col_index_len == 0) {
601
        if (col_index_len == 0) {
597
            sqlite3_finalize(stmt);
602
            sqlite3_finalize(stmt);
598
            Rprintf("Warning: no column selected.\n");
603
            Rprintf("Warning: no column selected.\n");
599
            return R_NilValue;
604
            return R_NilValue;
600
        } else { 
605
        } else { 
601
            _expand_buf(0, buflen+20+strlen(iname));
606
            _expand_buf(0, buflen+20+strlen(iname));
602
            buflen += sprintf(g_sql_buf[0]+buflen, " from [%s].sdf_data", iname);
607
            buflen += sprintf(g_sql_buf[0]+buflen, " from [%s].sdf_data", iname);
603
        }
608
        }
604
    } else {
609
    } else {
605
        sqlite3_finalize(stmt);
610
        sqlite3_finalize(stmt);
606
        Rprintf("Error: don't know how to handle column index.\n");
611
        Rprintf("Error: don't know how to handle column index.\n");
607
        return R_NilValue;
612
        return R_NilValue;
608
    }
613
    }
609
 
614
 
610
    /* 
615
    /* 
611
     * PROCESS ROW INDEX
616
     * PROCESS ROW INDEX
612
     */
617
     */
613
    idxlen = LENGTH(row);
618
    idxlen = LENGTH(row);
614
    if (row == R_NilValue) {
619
    if (row == R_NilValue) {
615
        if (col_index_len == 1) {
620
        if (col_index_len == 1) {
616
            ret = sdf_get_variable(sdf, mkString(sqlite3_column_name(stmt,col_indices[0])));
621
            ret = sdf_get_variable(sdf, mkString(sqlite3_column_name(stmt,col_indices[0])));
617
            sqlite3_finalize(stmt);
622
            sqlite3_finalize(stmt);
618
            return ret;
623
            return ret;
619
        } if (col_index_len > 1) {
624
        } if (col_index_len > 1) {
620
            /* create a new SDF, logic similar to sdf_create_sdf */
625
            /* create a new SDF, logic similar to sdf_create_sdf */
621
 
626
 
622
            /* find a new name. data<n> ? */
627
            /* find a new name. data<n> ? */
623
            char *iname2;
628
            char *iname2;
624
            const char *colname;
629
            const char *colname;
625
            int namelen, sql_len, sql_len2;
630
            int namelen, sql_len, sql_len2;
626
 
631
 
627
            iname2 = _create_sdf_skeleton1(R_NilValue, &namelen);
632
            iname2 = _create_sdf_skeleton1(R_NilValue, &namelen);
628
 
633
 
629
            /* create sdf_data table */
634
            /* create sdf_data table */
630
            sql_len = sprintf(g_sql_buf[1], "create table [%s].sdf_data ([row name] text", iname2);
635
            sql_len = sprintf(g_sql_buf[1], "create table [%s].sdf_data ([row name] text", iname2);
631
            sql_len2 = 0;
636
            sql_len2 = 0;
632
 
637
 
633
            for (i = 0; i < col_index_len; i++) {
638
            for (i = 0; i < col_index_len; i++) {
634
                colname = sqlite3_column_name(stmt, col_indices[i]);
639
                colname = sqlite3_column_name(stmt, col_indices[i]);
635
                if (dup_indices[i] == 0) {
640
                if (dup_indices[i] == 0) {
636
                    sql_len += sprintf(g_sql_buf[1]+sql_len, ", [%s] %s", colname,
641
                    sql_len += sprintf(g_sql_buf[1]+sql_len, ", [%s] %s", colname,
637
                            sqlite3_column_decltype(stmt, col_indices[i]));
642
                            sqlite3_column_decltype(stmt, col_indices[i]));
638
                } else {
643
                } else {
639
                    /* un-duplicate col names by appending num, just like R */
644
                    /* un-duplicate col names by appending num, just like R */
640
                    sql_len += sprintf(g_sql_buf[1]+sql_len, ", [%s.%d] %s", colname,
645
                    sql_len += sprintf(g_sql_buf[1]+sql_len, ", [%s.%d] %s", colname,
641
                            dup_indices[i], 
646
                            dup_indices[i], 
642
                            sqlite3_column_decltype(stmt, col_indices[i]));
647
                            sqlite3_column_decltype(stmt, col_indices[i]));
643
                }
648
                }
644
 
649
 
645
                /* deal with possibly factor columns */
650
                /* deal with possibly factor columns */
646
                if (_is_factor2(iname, "factor", colname)) {
651
                if (_is_factor2(iname, "factor", colname)) {
647
                    /* found a factor column */
652
                    /* found a factor column */
648
 
653
 
649
                    if (dup_indices[i] == 0)  {
654
                    if (dup_indices[i] == 0)  {
650
                        _copy_factor_levels2("factor", iname, colname, iname2, colname);
655
                        _copy_factor_levels2("factor", iname, colname, iname2, colname);
651
                    } else {
656
                    } else {
652
                        sprintf(g_sql_buf[3], "%s.%d", colname, dup_indices[i]);
657
                        sprintf(g_sql_buf[3], "%s.%d", colname, dup_indices[i]);
653
                        _copy_factor_levels2("factor", iname, colname, iname2, 
658
                        _copy_factor_levels2("factor", iname, colname, iname2, 
654
                                g_sql_buf[3]);
659
                                g_sql_buf[3]);
655
                    }
660
                    }
656
                }
661
                }
657
 
662
 
658
                /* and deal with ordered factors too... life is hard, then you die */
663
                /* and deal with ordered factors too... life is hard, then you die */
659
                if (_is_factor2(iname, "ordered", colname)) {
664
                if (_is_factor2(iname, "ordered", colname)) {
660
                    
665
                    
661
                    if (dup_indices[i] == 0)  {
666
                    if (dup_indices[i] == 0)  {
662
                        _copy_factor_levels2("ordered", iname, colname, iname2, 
667
                        _copy_factor_levels2("ordered", iname, colname, iname2, 
663
                                colname);
668
                                colname);
664
                    } else {
669
                    } else {
665
                        sprintf(g_sql_buf[3], "%s.%d", colname, dup_indices[i]);
670
                        sprintf(g_sql_buf[3], "%s.%d", colname, dup_indices[i]);
666
                        _copy_factor_levels2("ordered", iname, colname, iname2, 
671
                        _copy_factor_levels2("ordered", iname, colname, iname2, 
667
                                g_sql_buf[3]);
672
                                g_sql_buf[3]);
668
                    }
673
                    }
669
                }
674
                }
670
                                
675
                                
671
            }
676
            }
672
 
677
 
673
            /* don't need it anymore */
678
            /* don't need it anymore */
674
            sqlite3_finalize(stmt);
679
            sqlite3_finalize(stmt);
675
 
680
 
676
            /* no table index created, that's for v2 I hope*/
681
            /* no table index created, that's for v2 I hope*/
677
            sql_len += sprintf(g_sql_buf[1]+sql_len, ");");
682
            sql_len += sprintf(g_sql_buf[1]+sql_len, ");");
678
            res = _sqlite_exec(g_sql_buf[1]);
683
            res = _sqlite_exec(g_sql_buf[1]);
679
            if (_sqlite_error(res)) { Rprintf("here? %s\n", g_sql_buf[1]); return R_NilValue; }
684
            if (_sqlite_error(res)) { Rprintf("here? %s\n", g_sql_buf[1]); return R_NilValue; }
680
 
685
 
681
            /* insert data (with row names). buf[0] contains a select */
686
            /* insert data (with row names). buf[0] contains a select */
682
            sprintf(g_sql_buf[1], "insert into [%s].sdf_data %s", iname2,
687
            sprintf(g_sql_buf[1], "insert into [%s].sdf_data %s", iname2,
683
                    g_sql_buf[0]);
688
                    g_sql_buf[0]);
684
            res = _sqlite_exec(g_sql_buf[1]);
689
            res = _sqlite_exec(g_sql_buf[1]);
685
            if (_sqlite_error(res)) return R_NilValue;
690
            if (_sqlite_error(res)) return R_NilValue;
686
 
691
 
687
            /* add new sdf to workspace */
692
            /* add new sdf to workspace */
688
            sprintf(g_sql_buf[0], "%s.db", iname2);
693
            sprintf(g_sql_buf[0], "%s.db", iname2);
689
            res = _add_sdf1(g_sql_buf[0], iname2);
694
            res = _add_sdf1(g_sql_buf[0], iname2);
690
            if (_sqlite_error(res)) return R_NilValue;
695
            if (_sqlite_error(res)) return R_NilValue;
691
 
696
 
692
            /* create SEXP for the SDF */
697
            /* create SEXP for the SDF */
693
            ret = _create_sdf_sexp(iname2);
698
            ret = _create_sdf_sexp(iname2);
694
            return ret;
699
            return ret;
695
        } else { sqlite3_finalize(stmt); return R_NilValue; }
700
        } else { sqlite3_finalize(stmt); return R_NilValue; }
696
    } else if (row == R_NilValue || idxlen < 1) {
701
    } else if (row == R_NilValue || idxlen < 1) {
697
        sqlite3_finalize(stmt);
702
        sqlite3_finalize(stmt);
698
        return R_NilValue;
703
        return R_NilValue;
699
    } else if (IS_NUMERIC(row)) {
704
    } else if (IS_NUMERIC(row)) {
700
        sqlite3_finalize(stmt);
705
        sqlite3_finalize(stmt);
701
 
706
 
702
        sprintf(g_sql_buf[1], "[%s].sdf_data", iname);
707
        sprintf(g_sql_buf[1], "[%s].sdf_data", iname);
703
        row_cnt = _get_row_count2(g_sql_buf[1], 0);
708
        row_cnt = _get_row_count2(g_sql_buf[1], 0);
704
 
709
 
705
        /* append " limit ?,1" to the formed select statement */
710
        /* append " limit ?,1" to the formed select statement */
706
        _expand_buf(0, buflen+10);
711
        _expand_buf(0, buflen+10);
707
        buflen += sprintf(g_sql_buf[0]+buflen, " limit ?,1");
712
        buflen += sprintf(g_sql_buf[0]+buflen, " limit ?,1");
708
        /*Rprintf("sql [%d]: %s\n", buflen, g_sql_buf[0]); */
713
        /*Rprintf("sql [%d]: %s\n", buflen, g_sql_buf[0]); */
709
 
714
 
710
        index = ((int) REAL(row)[0]) - 1;
715
        index = ((int) REAL(row)[0]) - 1;
711
        if (idxlen < 0 && idxlen == 1) return R_NilValue;
716
        if (idxlen < 0 && idxlen == 1) return R_NilValue;
712
 
717
 
713
        res = sqlite3_prepare(g_workspace, g_sql_buf[0], -1, &stmt, 0);
718
        res = sqlite3_prepare(g_workspace, g_sql_buf[0], -1, &stmt, 0);
714
        if (_sqlite_error(res)) return R_NilValue;
719
        if (_sqlite_error(res)) return R_NilValue;
715
 
720
 
716
        sqlite3_bind_int(stmt, 1, index);
721
        sqlite3_bind_int(stmt, 1, index);
717
        res = sqlite3_step(stmt);
722
        res = sqlite3_step(stmt);
718
 
723
 
719
        /* create data frame */
724
        /* create data frame */
720
        ret = _setup_df_sexp1(stmt, iname, col_index_len, idxlen, dup_indices);
725
        ret = _setup_df_sexp1(stmt, iname, col_index_len, idxlen, dup_indices);
721
        if (ret == R_NilValue) { sqlite3_finalize(stmt); return R_NilValue; }
726
        if (ret == R_NilValue) { sqlite3_finalize(stmt); return R_NilValue; }
722
 
727
 
723
        /* put data in it */
728
        /* put data in it */
724
        if (index >= 0 && index < row_cnt) {
729
        if (index >= 0 && index < row_cnt) {
725
            _add_row_to_df(ret, stmt, row_index_len++, col_index_len);
730
            _add_row_to_df(ret, stmt, row_index_len++, col_index_len);
726
        }
731
        }
727
 
732
 
728
        for (i = 1; i < idxlen; i++) {
733
        for (i = 1; i < idxlen; i++) {
729
            sqlite3_reset(stmt);
734
            sqlite3_reset(stmt);
730
            index = ((int) REAL(row)[i]) - 1;
735
            index = ((int) REAL(row)[i]) - 1;
731
            if (index >= 0 && index < row_cnt) {
736
            if (index >= 0 && index < row_cnt) {
732
                sqlite3_bind_int(stmt, 1, index);
737
                sqlite3_bind_int(stmt, 1, index);
733
                res = sqlite3_step(stmt);
738
                res = sqlite3_step(stmt);
734
                _add_row_to_df(ret, stmt, row_index_len++, col_index_len);
739
                _add_row_to_df(ret, stmt, row_index_len++, col_index_len);
735
            }
740
            }
736
        }
741
        }
737
        sqlite3_finalize(stmt);
742
        sqlite3_finalize(stmt);
738
 
743
 
739
        /* shrink vectors */
744
        /* shrink vectors */
740
        if (row_index_len < idxlen) {
745
        if (row_index_len < idxlen) {
741
            for (i = 0; i < col_index_len; i++) {
746
            for (i = 0; i < col_index_len; i++) {
742
                SET_VECTOR_ELT(ret, i, 
747
                SET_VECTOR_ELT(ret, i, 
743
                        _shrink_vector(VECTOR_ELT(ret, i), row_index_len));
748
                        _shrink_vector(VECTOR_ELT(ret, i), row_index_len));
744
            }
749
            }
745
        }
750
        }
746
 
751
 
747
        UNPROTECT(1); /* for the ret from _setup_df_sexp1 */
752
        UNPROTECT(1); /* for the ret from _setup_df_sexp1 */
748
    } else if (IS_INTEGER(row)) {
753
    } else if (IS_INTEGER(row)) {
749
        /* same stuff as with IS_INTEGER, except for setting of var index*/
754
        /* same stuff as with IS_INTEGER, except for setting of var index*/
750
        sqlite3_finalize(stmt);
755
        sqlite3_finalize(stmt);
751
 
756
 
752
        sprintf(g_sql_buf[1], "[%s].sdf_data", iname);
757
        sprintf(g_sql_buf[1], "[%s].sdf_data", iname);
753
        row_cnt = _get_row_count2(g_sql_buf[1], 0);
758
        row_cnt = _get_row_count2(g_sql_buf[1], 0);
754
 
759
 
755
        /* append " limit ?,1" to the formed select statement */
760
        /* append " limit ?,1" to the formed select statement */
756
        _expand_buf(0, buflen+10);
761
        _expand_buf(0, buflen+10);
757
        buflen += sprintf(g_sql_buf[0]+buflen, " limit ?,1");
762
        buflen += sprintf(g_sql_buf[0]+buflen, " limit ?,1");
758
 
763
 
759
        index = INTEGER(row)[0] - 1;
764
        index = INTEGER(row)[0] - 1;
760
        if (idxlen < 0 && idxlen == 1) return R_NilValue;
765
        if (idxlen < 0 && idxlen == 1) return R_NilValue;
761
 
766
 
762
        res = sqlite3_prepare(g_workspace, g_sql_buf[0], -1, &stmt, 0);
767
        res = sqlite3_prepare(g_workspace, g_sql_buf[0], -1, &stmt, 0);
763
        if (_sqlite_error(res)) return R_NilValue;
768
        if (_sqlite_error(res)) return R_NilValue;
764
 
769
 
765
        sqlite3_bind_int(stmt, 1, index);
770
        sqlite3_bind_int(stmt, 1, index);
766
        res = sqlite3_step(stmt);
771
        res = sqlite3_step(stmt);
767
 
772
 
768
        /* create data frame */
773
        /* create data frame */
769
        ret = _setup_df_sexp1(stmt, iname, col_index_len, idxlen, dup_indices);
774
        ret = _setup_df_sexp1(stmt, iname, col_index_len, idxlen, dup_indices);
770
        if (ret == R_NilValue) { sqlite3_finalize(stmt); return R_NilValue; }
775
        if (ret == R_NilValue) { sqlite3_finalize(stmt); return R_NilValue; }
771
 
776
 
772
        /* put data in it */
777
        /* put data in it */
773
        if (index >= 0 && index < row_cnt) {
778
        if (index >= 0 && index < row_cnt) {
774
            _add_row_to_df(ret, stmt, row_index_len++, col_index_len);
779
            _add_row_to_df(ret, stmt, row_index_len++, col_index_len);
775
        }
780
        }
776
 
781
 
777
        for (i = 1; i < idxlen; i++) {
782
        for (i = 1; i < idxlen; i++) {
778
            sqlite3_reset(stmt);
783
            sqlite3_reset(stmt);
779
            index = INTEGER(row)[i] - 1;
784
            index = INTEGER(row)[i] - 1;
780
            if (index >= 0 && index < row_cnt) {
785
            if (index >= 0 && index < row_cnt) {
781
                sqlite3_bind_int(stmt, 1, index);
786
                sqlite3_bind_int(stmt, 1, index);
782
                res = sqlite3_step(stmt); 
787
                res = sqlite3_step(stmt); 
783
                _add_row_to_df(ret, stmt, row_index_len++, col_index_len);
788
                _add_row_to_df(ret, stmt, row_index_len++, col_index_len);
784
            }
789
            }
785
        }
790
        }
786
        sqlite3_finalize(stmt);
791
        sqlite3_finalize(stmt);
787
 
792
 
788
        /* shrink vectors */
793
        /* shrink vectors */
789
        if (row_index_len < idxlen) {
794
        if (row_index_len < idxlen) {
790
            for (i = 0; i < col_index_len; i++) {
795
            for (i = 0; i < col_index_len; i++) {
791
                SET_VECTOR_ELT(ret, i, 
796
                SET_VECTOR_ELT(ret, i, 
792
                        _shrink_vector(VECTOR_ELT(ret, i), row_index_len));
797
                        _shrink_vector(VECTOR_ELT(ret, i), row_index_len));
793
            }
798
            }
794
        }
799
        }
795
        UNPROTECT(1); /* for the ret from _setup_df_sexp1 */
800
        UNPROTECT(1); /* for the ret from _setup_df_sexp1 */
796
    } else if (IS_LOGICAL(row)) {
801
    } else if (IS_LOGICAL(row)) {
797
        /* */
802
        /* */
798
        sqlite3_finalize(stmt);
803
        sqlite3_finalize(stmt);
799
        int est_row_cnt = 0;
804
        int est_row_cnt = 0;
800
 
805
 
801
        sprintf(g_sql_buf[1], "[%s].sdf_data", iname);
806
        sprintf(g_sql_buf[1], "[%s].sdf_data", iname);
802
        row_cnt = _get_row_count2(g_sql_buf[1], 0);
807
        row_cnt = _get_row_count2(g_sql_buf[1], 0);
803
 
808
 
804
        /* append " limit ?,1" to the formed select statement */
809
        /* append " limit ?,1" to the formed select statement */
805
        _expand_buf(0, buflen+10);
810
        _expand_buf(0, buflen+10);
806
        buflen += sprintf(g_sql_buf[0]+buflen, " limit ?,1");
811
        buflen += sprintf(g_sql_buf[0]+buflen, " limit ?,1");
807
 
812
 
808
        /* find if there is any TRUE element in the vector */
813
        /* find if there is any TRUE element in the vector */
809
        for (i = 0; i < idxlen && i < row_cnt; i++) {
814
        for (i = 0; i < idxlen && i < row_cnt; i++) {
810
            if (LOGICAL(row)[i]) break;
815
            if (LOGICAL(row)[i]) break;
811
        }
816
        }
812
 
817
 
813
        if (i < idxlen && i < row_cnt) {
818
        if (i < idxlen && i < row_cnt) {
814
            est_row_cnt = (idxlen-i) * (row_cnt/idxlen);
819
            est_row_cnt = (idxlen-i) * (row_cnt/idxlen);
815
            if (row_cnt%idxlen > i) est_row_cnt += (row_cnt%idxlen - i);
820
            if (row_cnt%idxlen > i) est_row_cnt += (row_cnt%idxlen - i);
816
 
821
 
817
            res = sqlite3_prepare(g_workspace, g_sql_buf[0], -1, &stmt, 0);
822
            res = sqlite3_prepare(g_workspace, g_sql_buf[0], -1, &stmt, 0);
818
            if (_sqlite_error(res)) return R_NilValue;
823
            if (_sqlite_error(res)) return R_NilValue;
819
 
824
 
820
            sqlite3_bind_int(stmt, 1, i);
825
            sqlite3_bind_int(stmt, 1, i);
821
            sqlite3_step(stmt);
826
            sqlite3_step(stmt);
822
            ret = _setup_df_sexp1(stmt, iname, col_index_len, est_row_cnt, dup_indices);
827
            ret = _setup_df_sexp1(stmt, iname, col_index_len, est_row_cnt, dup_indices);
823
            _add_row_to_df(ret, stmt, row_index_len++, col_index_len);
828
            _add_row_to_df(ret, stmt, row_index_len++, col_index_len);
824
            
829
            
825
            for (i++ ; i < row_cnt; i++) {
830
            for (i++ ; i < row_cnt; i++) {
826
                if (LOGICAL(row)[i%idxlen]) {
831
                if (LOGICAL(row)[i%idxlen]) {
827
                    sqlite3_reset(stmt);
832
                    sqlite3_reset(stmt);
828
                    sqlite3_bind_int(stmt, 1, i);
833
                    sqlite3_bind_int(stmt, 1, i);
829
                    sqlite3_step(stmt);
834
                    sqlite3_step(stmt);
830
                    _add_row_to_df(ret, stmt, row_index_len++, col_index_len);
835
                    _add_row_to_df(ret, stmt, row_index_len++, col_index_len);
831
                }
836
                }
832
            }
837
            }
833
        }
838
        }
834
 
839
 
835
        sqlite3_finalize(stmt);
840
        sqlite3_finalize(stmt);
836
 
841
 
837
        /* shrink vectors */
842
        /* shrink vectors */
838
        if (est_row_cnt > 0 && row_index_len < est_row_cnt) {
843
        if (est_row_cnt > 0 && row_index_len < est_row_cnt) {
839
            for (i = 0; i < col_index_len; i++) {
844
            for (i = 0; i < col_index_len; i++) {
840
                SET_VECTOR_ELT(ret, i, 
845
                SET_VECTOR_ELT(ret, i, 
841
                        _shrink_vector(VECTOR_ELT(ret, i), row_index_len));
846
                        _shrink_vector(VECTOR_ELT(ret, i), row_index_len));
842
            }
847
            }
843
        }
848
        }
844
 
849
 
845
        UNPROTECT(1); /* for the ret from _setup_df_sexp1 */
850
        UNPROTECT(1); /* for the ret from _setup_df_sexp1 */
846
    }
851
    }
847
 
852
 
848
    if (ret != R_NilValue && col_index_len > 1) {
853
    if (ret != R_NilValue && col_index_len > 1) {
849
        SEXP class = mkString("data.frame");
854
        SEXP class = mkString("data.frame");
850
        SET_CLASS(ret, class);
855
        SET_CLASS(ret, class);
851
        _set_rownames2(ret);
856
        _set_rownames2(ret);
852
    } else if (ret != R_NilValue && col_index_len == 1) {
857
    } else if (ret != R_NilValue && col_index_len == 1) {
853
        ret = VECTOR_ELT(ret, 0);
858
        ret = VECTOR_ELT(ret, 0);
854
    }
859
    }
855
 
860
 
856
    return ret;
861
    return ret;
857
}
862
}
858
 
863
 
859
SEXP sdf_rbind(SEXP sdf, SEXP data) {
864
SEXP sdf_rbind(SEXP sdf, SEXP data) {
860
    char *class = CHAR_ELT(GET_CLASS(data), 0);
865
    char *class = CHAR_ELT(GET_CLASS(data), 0);
861
    char *iname = SDF_INAME(sdf), *colname, *rowname;
866
    char *iname = SDF_INAME(sdf), *colname, *rowname;
862
    SEXP ret = R_NilValue, col, names, levels, rownames;
867
    SEXP ret = R_NilValue, col, names, levels, rownames;
863
    int ncols, buflen, buflen2, i, j, res, nrows, *types;
868
    int ncols, buflen, buflen2, i, j, res, nrows, *types;
864
    sqlite3_stmt *stmt;
869
    sqlite3_stmt *stmt;
865
    const char *type;
870
    const char *type;
866
 
871
 
867
    if (strcmp(class,"data.frame") == 0) {
872
    if (strcmp(class,"data.frame") == 0) {
868
        /* check table names, types. variables may not be in same order, as
873
        /* check table names, types. variables may not be in same order, as
869
         * long as names and types are identical. */
874
         * long as names and types are identical. */
870
        names = GET_NAMES(data);
875
        names = GET_NAMES(data);
871
        ncols = GET_LENGTH(names);
876
        ncols = GET_LENGTH(names);
872
 
877
 
873
        buflen = sprintf(g_sql_buf[0], "select 1");
878
        buflen = sprintf(g_sql_buf[0], "select 1");
874
        for (i = 0; i < ncols; i++) {
879
        for (i = 0; i < ncols; i++) {
875
            _expand_buf(0, buflen + 100);
880
            _expand_buf(0, buflen + 100);
876
            buflen += sprintf(g_sql_buf[0]+buflen, ",[%s]", CHAR_ELT(names, i));
881
            buflen += sprintf(g_sql_buf[0]+buflen, ",[%s]", CHAR_ELT(names, i));
877
        }
882
        }
878
        _expand_buf(0, buflen + 100);
883
        _expand_buf(0, buflen + 100);
879
        sprintf(g_sql_buf[0]+buflen, " from [%s].sdf_data", iname);
884
        sprintf(g_sql_buf[0]+buflen, " from [%s].sdf_data", iname);
880
 
885
 
881
        res = sqlite3_prepare(g_workspace, g_sql_buf[0], -1, &stmt, NULL);
886
        res = sqlite3_prepare(g_workspace, g_sql_buf[0], -1, &stmt, NULL);
882
        if (res != SQLITE_OK) { /* column name mismatch */
887
        if (res != SQLITE_OK) { /* column name mismatch */
883
            Rprintf("Error: column names should exactly match the names of the SDF.\n");
888
            Rprintf("Error: column names should exactly match the names of the SDF.\n");
884
            return ret;
889
            return ret;
885
        }
890
        }
886
 
891
 
887
        /* now check the type */
892
        /* now check the type */
888
        types = (int *)R_alloc(ncols, sizeof(int));
893
        types = (int *)R_alloc(ncols, sizeof(int));
889
        for (i = 0; i< ncols; i++) {
894
        for (i = 0; i< ncols; i++) {
890
            type = sqlite3_column_decltype(stmt, i+1); /* +1 bec 1st col is "1" */
895
            type = sqlite3_column_decltype(stmt, i+1); /* +1 bec 1st col is "1" */
891
 
896
 
892
            col = VECTOR_ELT(data, i);
897
            col = VECTOR_ELT(data, i);
893
            class = CHAR_ELT(GET_CLASS(col),0);
898
            class = CHAR_ELT(GET_CLASS(col),0);
894
 
899
 
895
            if (strcmp(type, "double") == 0 && IS_NUMERIC(col)) types[i] = SQLITE_FLOAT;
900
            if (strcmp(type, "double") == 0 && IS_NUMERIC(col)) types[i] = SQLITE_FLOAT;
896
            else if (strcmp(type, "text") == 0 && IS_CHARACTER(col)) types[i] = SQLITE_TEXT;
901
            else if (strcmp(type, "text") == 0 && IS_CHARACTER(col)) types[i] = SQLITE_TEXT;
897
            else if (strcmp(type, "int") == 0) { 
902
            else if (strcmp(type, "int") == 0) { 
898
                types[i] = SQLITE_INTEGER;
903
                types[i] = SQLITE_INTEGER;
899
                if (isUnordered(col)) {  /* test if factor */
904
                if (isUnordered(col)) {  /* test if factor */
900
                    colname = CHAR_ELT(names, i);
905
                    colname = CHAR_ELT(names, i);
901
                    sqlite3_stmt *stmt2;
906
                    sqlite3_stmt *stmt2;
902
                    if (!_is_factor2(iname, "factor", colname)) break;
907
                    if (!_is_factor2(iname, "factor", colname)) break;
903
                    sprintf(g_sql_buf[1], "[%s].[factor %s]", iname, colname);
908
                    sprintf(g_sql_buf[1], "[%s].[factor %s]", iname, colname);
904
                    nrows = _get_row_count2(g_sql_buf[1], 0);
909
                    nrows = _get_row_count2(g_sql_buf[1], 0);
905
 
910
 
906
                    /* levels in sdf must be >= levels in df */
911
                    /* levels in sdf must be >= levels in df */
907
                    levels = GET_LEVELS(col);
912
                    levels = GET_LEVELS(col);
908
                    if (nrows < GET_LENGTH(levels)) {
913
                    if (nrows < GET_LENGTH(levels)) {
909
                        Rprintf("Error: The data frame variable %s has more levels than"
914
                        Rprintf("Error: The data frame variable %s has more levels than"
910
                                " its SDF counterpart.\n", colname);
915
                                " its SDF counterpart.\n", colname);
911
                        break;
916
                        break;
912
                    }
917
                    }
913
 
918
 
914
                    sprintf(g_sql_buf[2], "select label from %s order by level", g_sql_buf[1]);
919
                    sprintf(g_sql_buf[2], "select label from %s order by level", g_sql_buf[1]);
915
                    res = sqlite3_prepare(g_workspace, g_sql_buf[2], -1, &stmt2, NULL);
920
                    res = sqlite3_prepare(g_workspace, g_sql_buf[2], -1, &stmt2, NULL);
916
                    _sqlite_error(res);
921
                    _sqlite_error(res);
917
                    
922
                    
918
                    for (j = 0; j < GET_LENGTH(levels); j++)  {
923
                    for (j = 0; j < GET_LENGTH(levels); j++)  {
919
                        sqlite3_step(stmt2);
924
                        sqlite3_step(stmt2);
920
                        if (strcmp((char *)sqlite3_column_text(stmt2, 0), CHAR_ELT(levels, j)) != 0) {
925
                        if (strcmp((char *)sqlite3_column_text(stmt2, 0), CHAR_ELT(levels, j)) != 0) {
921
                            Rprintf("Error: Level label mismatch in variable %s, [%s] in data frame"
926
                            Rprintf("Error: Level label mismatch in variable %s, [%s] in data frame"
922
                                    " vs [%s] in SDF.\n", colname, (char *)sqlite3_column_text(stmt2, 0),
927
                                    " vs [%s] in SDF.\n", colname, (char *)sqlite3_column_text(stmt2, 0),
923
                                    CHAR_ELT(levels, j));
928
                                    CHAR_ELT(levels, j));
924
                            sqlite3_finalize(stmt2);
929
                            sqlite3_finalize(stmt2);
925
                            break;
930
                            break;
926
                        }
931
                        }
927
                    }
932
                    }
928
                    sqlite3_finalize(stmt2);
933
                    sqlite3_finalize(stmt2);
929
                } else if (isOrdered(col)) { /* same with ordered */
934
                } else if (isOrdered(col)) { /* same with ordered */
930
                    colname = CHAR_ELT(names, i);
935
                    colname = CHAR_ELT(names, i);
931
                    sqlite3_stmt *stmt2;
936
                    sqlite3_stmt *stmt2;
932
                    if (!_is_factor2(iname, "ordered", colname)) break;
937
                    if (!_is_factor2(iname, "ordered", colname)) break;
933
                    sprintf(g_sql_buf[1], "[%s].[ordered %s]", iname, colname);
938
                    sprintf(g_sql_buf[1], "[%s].[ordered %s]", iname, colname);
934
                    nrows = _get_row_count2(g_sql_buf[1], 0);
939
                    nrows = _get_row_count2(g_sql_buf[1], 0);
935
 
940
 
936
                    /* levels in sdf must be >= levels in df */
941
                    /* levels in sdf must be >= levels in df */
937
                    levels = GET_LEVELS(col);
942
                    levels = GET_LEVELS(col);
938
                    if (nrows < GET_LENGTH(levels)) {
943
                    if (nrows < GET_LENGTH(levels)) {
939
                        Rprintf("Error: The data frame variable %s has more levels than"
944
                        Rprintf("Error: The data frame variable %s has more levels than"
940
                                " its SDF counterpart.\n", colname);
945
                                " its SDF counterpart.\n", colname);
941
                        break;
946
                        break;
942
                    }
947
                    }
943
 
948
 
944
                    sprintf(g_sql_buf[2], "select label from %s order by level", g_sql_buf[1]);
949
                    sprintf(g_sql_buf[2], "select label from %s order by level", g_sql_buf[1]);
945
                    sqlite3_prepare(g_workspace, g_sql_buf[2], -1, &stmt2, NULL);
950
                    sqlite3_prepare(g_workspace, g_sql_buf[2], -1, &stmt2, NULL);
946
                    
951
                    
947
                    for (j = 0; j < GET_LENGTH(levels); j++)  {
952
                    for (j = 0; j < GET_LENGTH(levels); j++)  {
948
                        sqlite3_step(stmt2);
953
                        sqlite3_step(stmt2);
949
                        if (strcmp((char *)sqlite3_column_text(stmt2, 0), CHAR_ELT(levels, j)) != 0) {
954
                        if (strcmp((char *)sqlite3_column_text(stmt2, 0), CHAR_ELT(levels, j)) != 0) {
950
                            Rprintf("Error: Level label mismatch in variable %s, [%s] in data frame"
955
                            Rprintf("Error: Level label mismatch in variable %s, [%s] in data frame"
951
                                    " vs [%s] in SDF.\n", colname, (char *)sqlite3_column_text(stmt2, 0),
956
                                    " vs [%s] in SDF.\n", colname, (char *)sqlite3_column_text(stmt2, 0),
952
                                    CHAR_ELT(levels, j));
957
                                    CHAR_ELT(levels, j));
953
                            sqlite3_finalize(stmt2);
958
                            sqlite3_finalize(stmt2);
954
                            break;
959
                            break;
955
                        }
960
                        }
956
                    }
961
                    }
957
                    sqlite3_finalize(stmt2);
962
                    sqlite3_finalize(stmt2);
958
                }  /* else if class == "ordered" */
963
                }  /* else if class == "ordered" */
959
            } /* if integer */
964
            } /* if integer */
960
        } /* for loop for column type checking */
965
        } /* for loop for column type checking */
961
 
966
 
962
        sqlite3_finalize(stmt);
967
        sqlite3_finalize(stmt);
963
        if (i < ncols) {
968
        if (i < ncols) {
964
            Rprintf("Error: type mismatch at variable %s\n", CHAR_ELT(names, i));
969
            Rprintf("Error: type mismatch at variable %s\n", CHAR_ELT(names, i));
965
            return ret;
970
            return ret;
966
        }
971
        }
967
 
972
 
968
        /* create the insert statement */
973
        /* create the insert statement */
969
        buflen = sprintf(g_sql_buf[0], "insert into [%s].sdf_data([row name]", iname);
974
        buflen = sprintf(g_sql_buf[0], "insert into [%s].sdf_data([row name]", iname);
970
        buflen2 = sprintf(g_sql_buf[1], "values(?");
975
        buflen2 = sprintf(g_sql_buf[1], "values(?");
971
        for (i = 0; i < ncols; i++) {
976
        for (i = 0; i < ncols; i++) {
972
            _expand_buf(0, buflen+100);
977
            _expand_buf(0, buflen+100);
973
            buflen += sprintf(g_sql_buf[0]+buflen, ",[%s]", CHAR_ELT(names, i));
978
            buflen += sprintf(g_sql_buf[0]+buflen, ",[%s]", CHAR_ELT(names, i));
974
            _expand_buf(1, buflen2+5);
979
            _expand_buf(1, buflen2+5);
975
            buflen2 += sprintf(g_sql_buf[1]+buflen2, ",?");
980
            buflen2 += sprintf(g_sql_buf[1]+buflen2, ",?");
976
        }
981
        }
977
 
982
 
978
        _expand_buf(2, buflen + buflen2 + 10);
983
        _expand_buf(2, buflen + buflen2 + 10);
979
        sprintf(g_sql_buf[2], "%s) %s)", g_sql_buf[0], g_sql_buf[1]);
984
        sprintf(g_sql_buf[2], "%s) %s)", g_sql_buf[0], g_sql_buf[1]);
980
        Rprintf("%s\n", g_sql_buf[2]);
-
 
981
        res = sqlite3_prepare(g_workspace, g_sql_buf[2], -1, &stmt, NULL);
985
        res = sqlite3_prepare(g_workspace, g_sql_buf[2], -1, &stmt, NULL);
982
        if (_sqlite_error(res)) return ret;
986
        if (_sqlite_error(res)) return ret;
983
 
987
 
984
        /* finally, add rows */
988
        /* finally, add rows */
985
        nrows = LENGTH(GET_ROWNAMES(data));
989
        nrows = LENGTH(GET_ROWNAMES(data));
986
        rownames = GET_ROWNAMES(data);
990
        rownames = GET_ROWNAMES(data);
987
 
991
 
-
 
992
        _sqlite_exec("begin");
988
        for (i = 0; i < nrows; i++) {
993
        for (i = 0; i < nrows; i++) {
989
            sqlite3_bind_text(stmt, 1, CHAR_ELT(rownames, i), -1, SQLITE_STATIC);
994
            sqlite3_bind_text(stmt, 1, CHAR_ELT(rownames, i), -1, SQLITE_STATIC);
990
            for (j = 0; j < ncols; j++) {
995
            for (j = 0; j < ncols; j++) {
991
                col = VECTOR_ELT(data, j);
996
                col = VECTOR_ELT(data, j);
992
                switch(types[j]) {
997
                switch(types[j]) {
993
                    case SQLITE_FLOAT:
998
                    case SQLITE_FLOAT:
994
                        sqlite3_bind_double(stmt, j+2, REAL(col)[i]); break;
999
                        sqlite3_bind_double(stmt, j+2, REAL(col)[i]); break;
995
                    case SQLITE_TEXT:
1000
                    case SQLITE_TEXT:
996
                        sqlite3_bind_text(stmt, j+2, CHAR_ELT(col, i), -1, SQLITE_STATIC); break;
1001
                        sqlite3_bind_text(stmt, j+2, CHAR_ELT(col, i), -1, SQLITE_STATIC); break;
997
                    case SQLITE_INTEGER:
1002
                    case SQLITE_INTEGER:
998
                    default:  /* runtime error if we're wrong */
1003
                    default:  /* runtime error if we're wrong */
999
                        sqlite3_bind_int(stmt, j+2, INTEGER(col)[i]); break;
1004
                        sqlite3_bind_int(stmt, j+2, INTEGER(col)[i]); break;
1000
                }
1005
                }
1001
            }
1006
            }
1002
 
1007
 
1003
            res = sqlite3_step(stmt);
1008
            res = sqlite3_step(stmt);
1004
            if (res != SQLITE_DONE) { /* row name pk conflict */
1009
            if (res != SQLITE_DONE) { /* row name pk conflict */
1005
                rowname = CHAR_ELT(rownames, i);
1010
                rowname = CHAR_ELT(rownames, i);
1006
                for (j = 1; res != SQLITE_DONE; j++) { /* _normally_, j shouldn't overflow */
1011
                for (j = 1; res != SQLITE_DONE; j++) { /* _normally_, j shouldn't overflow */
1007
                    sqlite3_reset(stmt);
1012
                    sqlite3_reset(stmt);
1008
                    sprintf(g_sql_buf[2], "%s-%d", rowname, j);
1013
                    sprintf(g_sql_buf[2], "%s-%d", rowname, j);
1009
                    sqlite3_bind_text(stmt, 1, g_sql_buf[2], -1, SQLITE_STATIC);
1014
                    sqlite3_bind_text(stmt, 1, g_sql_buf[2], -1, SQLITE_STATIC);
1010
                    res = sqlite3_step(stmt);
1015
                    res = sqlite3_step(stmt);
1011
                }
1016
                }
1012
            }
1017
            }
1013
            sqlite3_reset(stmt);
1018
            sqlite3_reset(stmt);
1014
        }
1019
        }
1015
 
1020
 
1016
        sqlite3_finalize(stmt);
1021
        sqlite3_finalize(stmt);
-
 
1022
        _sqlite_exec("begin");
1017
        ret = sdf;
1023
        ret = sdf;
1018
    } else if (strcmp(class,"sqlite.data.frame") == 0) {
1024
    } else if (strcmp(class,"sqlite.data.frame") == 0) {
1019
    }
1025
    }
1020
 
1026
 
1021
    return ret;
1027
    return ret;
1022
}
1028
}
1023
 
1029
 
1024
 
1030
 
1025
SEXP sdf_get_iname(SEXP sdf) {
1031
SEXP sdf_get_iname(SEXP sdf) {
1026
    return _getListElement(sdf, "iname");
1032
    return _getListElement(sdf, "iname");
1027
}
1033
}
1028
 
1034
 
1029
SEXP sopen(SEXP name) {
1035
SEXP sopen(SEXP name) {
1030
    char *filename;
1036
    char *filename;
1031
    
1037
    
1032
    if (IS_CHARACTER(name)) {
1038
    if (IS_CHARACTER(name)) {
1033
        filename = CHAR(STRING_ELT(name,0));
1039
        filename = CHAR(STRING_ELT(name,0));
1034
        Rprintf("%s\n", filename);
1040
        Rprintf("%s\n", filename);
1035
    }
1041
    }
1036
    /* sqlite3 *db;
1042
    /* sqlite3 *db;
1037
    int res = sqlite3_open(filename, &db); */
1043
    int res = sqlite3_open(filename, &db); */
1038
    SEXP ret;
1044
    SEXP ret;
1039
    PROTECT(ret = NEW_LOGICAL(1));
1045
    PROTECT(ret = NEW_LOGICAL(1));
1040
    LOGICAL(ret)[0] = IS_CHARACTER(name);
1046
    LOGICAL(ret)[0] = IS_CHARACTER(name);
1041
    /* sqlite3_close(db); */ 
1047
    /* sqlite3_close(db); */ 
1042
    UNPROTECT(1);
1048
    UNPROTECT(1);
1043
    return ret;
1049
    return ret;
1044
}
1050
}