Coverage Report

Created: 2026-01-17 06:16

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/cpython/Objects/unicode_format.c
Line
Count
Source
1
/*
2
3
Unicode implementation based on original code by Fredrik Lundh,
4
modified by Marc-Andre Lemburg <mal@lemburg.com>.
5
6
Major speed upgrades to the method implementations at the Reykjavik
7
NeedForSpeed sprint, by Fredrik Lundh and Andrew Dalke.
8
9
Copyright (c) Corporation for National Research Initiatives.
10
11
--------------------------------------------------------------------
12
The original string type implementation is:
13
14
  Copyright (c) 1999 by Secret Labs AB
15
  Copyright (c) 1999 by Fredrik Lundh
16
17
By obtaining, using, and/or copying this software and/or its
18
associated documentation, you agree that you have read, understood,
19
and will comply with the following terms and conditions:
20
21
Permission to use, copy, modify, and distribute this software and its
22
associated documentation for any purpose and without fee is hereby
23
granted, provided that the above copyright notice appears in all
24
copies, and that both that copyright notice and this permission notice
25
appear in supporting documentation, and that the name of Secret Labs
26
AB or the author not be used in advertising or publicity pertaining to
27
distribution of the software without specific, written prior
28
permission.
29
30
SECRET LABS AB AND THE AUTHOR DISCLAIMS ALL WARRANTIES WITH REGARD TO
31
THIS SOFTWARE, INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY AND
32
FITNESS.  IN NO EVENT SHALL SECRET LABS AB OR THE AUTHOR BE LIABLE FOR
33
ANY SPECIAL, INDIRECT OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
34
WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
35
ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT
36
OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
37
--------------------------------------------------------------------
38
39
*/
40
41
// PyUnicode_Format() implementation
42
43
#include "Python.h"
44
#include "pycore_abstract.h"      // _PyIndex_Check()
45
#include "pycore_format.h"        // F_ALT
46
#include "pycore_long.h"          // _PyLong_FormatWriter()
47
#include "pycore_object.h"        // _PyObject_IsUniquelyReferenced()
48
#include "pycore_unicodeobject.h" // _Py_MAX_UNICODE
49
50
51
0
#define MAX_UNICODE _Py_MAX_UNICODE
52
31.7M
#define ensure_unicode _PyUnicode_EnsureUnicode
53
54
struct unicode_formatter_t {
55
    PyObject *args;
56
    int args_owned;
57
    Py_ssize_t arglen, argidx;
58
    PyObject *dict;
59
60
    int fmtkind;
61
    Py_ssize_t fmtcnt, fmtpos;
62
    const void *fmtdata;
63
    PyObject *fmtstr;
64
65
    _PyUnicodeWriter writer;
66
};
67
68
69
struct unicode_format_arg_t {
70
    Py_UCS4 ch;
71
    int flags;
72
    Py_ssize_t width;
73
    int prec;
74
    int sign;
75
};
76
77
78
static PyObject *
79
unicode_format_getnextarg(struct unicode_formatter_t *ctx)
80
66.7M
{
81
66.7M
    Py_ssize_t argidx = ctx->argidx;
82
83
66.7M
    if (argidx < ctx->arglen) {
84
66.7M
        ctx->argidx++;
85
66.7M
        if (ctx->arglen < 0)
86
13.9M
            return ctx->args;
87
52.7M
        else
88
52.7M
            return PyTuple_GetItem(ctx->args, argidx);
89
66.7M
    }
90
0
    PyErr_SetString(PyExc_TypeError,
91
0
                    "not enough arguments for format string");
92
0
    return NULL;
93
66.7M
}
94
95
96
/* Returns a new reference to a PyUnicode object, or NULL on failure. */
97
98
/* Format a float into the writer if the writer is not NULL, or into *p_output
99
   otherwise.
100
101
   Return 0 on success, raise an exception and return -1 on error. */
102
static int
103
formatfloat(PyObject *v, struct unicode_format_arg_t *arg,
104
            PyObject **p_output,
105
            _PyUnicodeWriter *writer)
106
114
{
107
114
    char *p;
108
114
    double x;
109
114
    Py_ssize_t len;
110
114
    int prec;
111
114
    int dtoa_flags = 0;
112
113
114
    x = PyFloat_AsDouble(v);
114
114
    if (x == -1.0 && PyErr_Occurred())
115
0
        return -1;
116
117
114
    prec = arg->prec;
118
114
    if (prec < 0)
119
0
        prec = 6;
120
121
114
    if (arg->flags & F_ALT)
122
0
        dtoa_flags |= Py_DTSF_ALT;
123
114
    p = PyOS_double_to_string(x, arg->ch, prec, dtoa_flags, NULL);
124
114
    if (p == NULL)
125
0
        return -1;
126
114
    len = strlen(p);
127
114
    if (writer) {
128
0
        if (_PyUnicodeWriter_WriteASCIIString(writer, p, len) < 0) {
129
0
            PyMem_Free(p);
130
0
            return -1;
131
0
        }
132
0
    }
133
114
    else
134
114
        *p_output = _PyUnicode_FromASCII(p, len);
135
114
    PyMem_Free(p);
136
114
    return 0;
137
114
}
138
139
140
/* formatlong() emulates the format codes d, u, o, x and X, and
141
 * the F_ALT flag, for Python's long (unbounded) ints.  It's not used for
142
 * Python's regular ints.
143
 * Return value:  a new PyUnicodeObject*, or NULL if error.
144
 *     The output string is of the form
145
 *         "-"? ("0x" | "0X")? digit+
146
 *     "0x"/"0X" are present only for x and X conversions, with F_ALT
147
 *         set in flags.  The case of hex digits will be correct,
148
 *     There will be at least prec digits, zero-filled on the left if
149
 *         necessary to get that many.
150
 * val          object to be converted
151
 * flags        bitmask of format flags; only F_ALT is looked at
152
 * prec         minimum number of digits; 0-fill on left if needed
153
 * type         a character in [duoxX]; u acts the same as d
154
 *
155
 * CAUTION:  o, x and X conversions on regular ints can never
156
 * produce a '-' sign, but can for Python's unbounded ints.
157
 */
158
PyObject *
159
_PyUnicode_FormatLong(PyObject *val, int alt, int prec, int type)
160
10.9M
{
161
10.9M
    PyObject *result = NULL;
162
10.9M
    char *buf;
163
10.9M
    Py_ssize_t i;
164
10.9M
    int sign;           /* 1 if '-', else 0 */
165
10.9M
    int len;            /* number of characters */
166
10.9M
    Py_ssize_t llen;
167
10.9M
    int numdigits;      /* len == numnondigits + numdigits */
168
10.9M
    int numnondigits = 0;
169
170
    /* Avoid exceeding SSIZE_T_MAX */
171
10.9M
    if (prec > INT_MAX-3) {
172
0
        PyErr_SetString(PyExc_OverflowError,
173
0
                        "precision too large");
174
0
        return NULL;
175
0
    }
176
177
10.9M
    assert(PyLong_Check(val));
178
179
10.9M
    switch (type) {
180
0
    default:
181
0
        Py_UNREACHABLE();
182
5.02M
    case 'd':
183
5.02M
    case 'i':
184
5.02M
    case 'u':
185
        /* int and int subclasses should print numerically when a numeric */
186
        /* format code is used (see issue18780) */
187
5.02M
        result = PyNumber_ToBase(val, 10);
188
5.02M
        break;
189
0
    case 'o':
190
0
        numnondigits = 2;
191
0
        result = PyNumber_ToBase(val, 8);
192
0
        break;
193
106
    case 'x':
194
5.89M
    case 'X':
195
5.89M
        numnondigits = 2;
196
5.89M
        result = PyNumber_ToBase(val, 16);
197
5.89M
        break;
198
10.9M
    }
199
10.9M
    if (!result)
200
0
        return NULL;
201
202
10.9M
    assert(_PyUnicode_IsModifiable(result));
203
10.9M
    assert(PyUnicode_IS_ASCII(result));
204
205
    /* To modify the string in-place, there can only be one reference. */
206
10.9M
    if (!_PyObject_IsUniquelyReferenced(result)) {
207
0
        Py_DECREF(result);
208
0
        PyErr_BadInternalCall();
209
0
        return NULL;
210
0
    }
211
10.9M
    buf = PyUnicode_DATA(result);
212
10.9M
    llen = PyUnicode_GET_LENGTH(result);
213
10.9M
    if (llen > INT_MAX) {
214
0
        Py_DECREF(result);
215
0
        PyErr_SetString(PyExc_ValueError,
216
0
                        "string too large in _PyUnicode_FormatLong");
217
0
        return NULL;
218
0
    }
219
10.9M
    len = (int)llen;
220
10.9M
    sign = buf[0] == '-';
221
10.9M
    numnondigits += sign;
222
10.9M
    numdigits = len - numnondigits;
223
10.9M
    assert(numdigits > 0);
224
225
    /* Get rid of base marker unless F_ALT */
226
10.9M
    if (((alt) == 0 &&
227
10.9M
        (type == 'o' || type == 'x' || type == 'X'))) {
228
5.89M
        assert(buf[sign] == '0');
229
5.89M
        assert(buf[sign+1] == 'x' || buf[sign+1] == 'X' ||
230
5.89M
               buf[sign+1] == 'o');
231
5.89M
        numnondigits -= 2;
232
5.89M
        buf += 2;
233
5.89M
        len -= 2;
234
5.89M
        if (sign)
235
0
            buf[0] = '-';
236
5.89M
        assert(len == numnondigits + numdigits);
237
5.89M
        assert(numdigits > 0);
238
5.89M
    }
239
240
    /* Fill with leading zeroes to meet minimum width. */
241
10.9M
    if (prec > numdigits) {
242
0
        PyObject *r1 = PyBytes_FromStringAndSize(NULL,
243
0
                                numnondigits + prec);
244
0
        char *b1;
245
0
        if (!r1) {
246
0
            Py_DECREF(result);
247
0
            return NULL;
248
0
        }
249
0
        b1 = PyBytes_AS_STRING(r1);
250
0
        for (i = 0; i < numnondigits; ++i)
251
0
            *b1++ = *buf++;
252
0
        for (i = 0; i < prec - numdigits; i++)
253
0
            *b1++ = '0';
254
0
        for (i = 0; i < numdigits; i++)
255
0
            *b1++ = *buf++;
256
0
        *b1 = '\0';
257
0
        Py_SETREF(result, r1);
258
0
        buf = PyBytes_AS_STRING(result);
259
0
        len = numnondigits + prec;
260
0
    }
261
262
    /* Fix up case for hex conversions. */
263
10.9M
    if (type == 'X') {
264
        /* Need to convert all lower case letters to upper case.
265
           and need to convert 0x to 0X (and -0x to -0X). */
266
40.4M
        for (i = 0; i < len; i++)
267
34.5M
            if (buf[i] >= 'a' && buf[i] <= 'x')
268
7.15M
                buf[i] -= 'a'-'A';
269
5.89M
    }
270
10.9M
    if (!PyUnicode_Check(result)
271
10.9M
        || buf != PyUnicode_DATA(result)) {
272
5.89M
        PyObject *unicode;
273
5.89M
        unicode = _PyUnicode_FromASCII(buf, len);
274
5.89M
        Py_SETREF(result, unicode);
275
5.89M
    }
276
5.02M
    else if (len != PyUnicode_GET_LENGTH(result)) {
277
0
        if (PyUnicode_Resize(&result, len) < 0)
278
0
            Py_CLEAR(result);
279
0
    }
280
10.9M
    return result;
281
10.9M
}
282
283
284
/* Format an integer or a float as an integer.
285
 * Return 1 if the number has been formatted into the writer,
286
 *        0 if the number has been formatted into *p_output
287
 *       -1 and raise an exception on error */
288
static int
289
mainformatlong(PyObject *v,
290
               struct unicode_format_arg_t *arg,
291
               PyObject **p_output,
292
               _PyUnicodeWriter *writer)
293
23.5M
{
294
23.5M
    PyObject *iobj, *res;
295
23.5M
    char type = (char)arg->ch;
296
297
23.5M
    if (!PyNumber_Check(v))
298
4.43M
        goto wrongtype;
299
300
    /* make sure number is a type of integer for o, x, and X */
301
19.1M
    if (!PyLong_Check(v)) {
302
0
        if (type == 'o' || type == 'x' || type == 'X') {
303
0
            iobj = _PyNumber_Index(v);
304
0
        }
305
0
        else {
306
0
            iobj = PyNumber_Long(v);
307
0
        }
308
0
        if (iobj == NULL ) {
309
0
            if (PyErr_ExceptionMatches(PyExc_TypeError))
310
0
                goto wrongtype;
311
0
            return -1;
312
0
        }
313
0
        assert(PyLong_Check(iobj));
314
0
    }
315
19.1M
    else {
316
19.1M
        iobj = Py_NewRef(v);
317
19.1M
    }
318
319
19.1M
    if (PyLong_CheckExact(v)
320
19.1M
        && arg->width == -1 && arg->prec == -1
321
14.1M
        && !(arg->flags & (F_SIGN | F_BLANK))
322
14.1M
        && type != 'X')
323
8.20M
    {
324
        /* Fast path */
325
8.20M
        int alternate = arg->flags & F_ALT;
326
8.20M
        int base;
327
328
8.20M
        switch(type)
329
8.20M
        {
330
0
            default:
331
0
                Py_UNREACHABLE();
332
8.20M
            case 'd':
333
8.20M
            case 'i':
334
8.20M
            case 'u':
335
8.20M
                base = 10;
336
8.20M
                break;
337
0
            case 'o':
338
0
                base = 8;
339
0
                break;
340
39
            case 'x':
341
39
            case 'X':
342
39
                base = 16;
343
39
                break;
344
8.20M
        }
345
346
8.20M
        if (_PyLong_FormatWriter(writer, v, base, alternate) == -1) {
347
0
            Py_DECREF(iobj);
348
0
            return -1;
349
0
        }
350
8.20M
        Py_DECREF(iobj);
351
8.20M
        return 1;
352
8.20M
    }
353
354
10.9M
    res = _PyUnicode_FormatLong(iobj, arg->flags & F_ALT, arg->prec, type);
355
10.9M
    Py_DECREF(iobj);
356
10.9M
    if (res == NULL)
357
0
        return -1;
358
10.9M
    *p_output = res;
359
10.9M
    return 0;
360
361
4.43M
wrongtype:
362
4.43M
    switch(type)
363
4.43M
    {
364
0
        case 'o':
365
0
        case 'x':
366
0
        case 'X':
367
0
            PyErr_Format(PyExc_TypeError,
368
0
                    "%%%c format: an integer is required, "
369
0
                    "not %.200s",
370
0
                    type, Py_TYPE(v)->tp_name);
371
0
            break;
372
4.43M
        default:
373
4.43M
            PyErr_Format(PyExc_TypeError,
374
4.43M
                    "%%%c format: a real number is required, "
375
4.43M
                    "not %.200s",
376
4.43M
                    type, Py_TYPE(v)->tp_name);
377
4.43M
            break;
378
4.43M
    }
379
4.43M
    return -1;
380
4.43M
}
381
382
383
static Py_UCS4
384
formatchar(PyObject *v)
385
0
{
386
    /* presume that the buffer is at least 3 characters long */
387
0
    if (PyUnicode_Check(v)) {
388
0
        if (PyUnicode_GET_LENGTH(v) == 1) {
389
0
            return PyUnicode_READ_CHAR(v, 0);
390
0
        }
391
0
        PyErr_Format(PyExc_TypeError,
392
0
                     "%%c requires an int or a unicode character, "
393
0
                     "not a string of length %zd",
394
0
                     PyUnicode_GET_LENGTH(v));
395
0
        return (Py_UCS4) -1;
396
0
    }
397
0
    else {
398
0
        int overflow;
399
0
        long x = PyLong_AsLongAndOverflow(v, &overflow);
400
0
        if (x == -1 && PyErr_Occurred()) {
401
0
            if (PyErr_ExceptionMatches(PyExc_TypeError)) {
402
0
                PyErr_Format(PyExc_TypeError,
403
0
                             "%%c requires an int or a unicode character, not %T",
404
0
                             v);
405
0
                return (Py_UCS4) -1;
406
0
            }
407
0
            return (Py_UCS4) -1;
408
0
        }
409
410
0
        if (x < 0 || x > MAX_UNICODE) {
411
            /* this includes an overflow in converting to C long */
412
0
            PyErr_SetString(PyExc_OverflowError,
413
0
                            "%c arg not in range(0x110000)");
414
0
            return (Py_UCS4) -1;
415
0
        }
416
417
0
        return (Py_UCS4) x;
418
0
    }
419
0
}
420
421
422
/* Parse options of an argument: flags, width, precision.
423
   Handle also "%(name)" syntax.
424
425
   Return 0 if the argument has been formatted into arg->str.
426
   Return 1 if the argument has been written into ctx->writer,
427
   Raise an exception and return -1 on error. */
428
static int
429
unicode_format_arg_parse(struct unicode_formatter_t *ctx,
430
                         struct unicode_format_arg_t *arg)
431
66.7M
{
432
66.7M
#define FORMAT_READ(ctx) \
433
72.0M
        PyUnicode_READ((ctx)->fmtkind, (ctx)->fmtdata, (ctx)->fmtpos)
434
435
66.7M
    PyObject *v;
436
437
66.7M
    if (arg->ch == '(') {
438
        /* Get argument value from a dictionary. Example: "%(name)s". */
439
37.7k
        Py_ssize_t keystart;
440
37.7k
        Py_ssize_t keylen;
441
37.7k
        PyObject *key;
442
37.7k
        int pcount = 1;
443
444
37.7k
        if (ctx->dict == NULL) {
445
0
            PyErr_SetString(PyExc_TypeError,
446
0
                            "format requires a mapping");
447
0
            return -1;
448
0
        }
449
37.7k
        ++ctx->fmtpos;
450
37.7k
        --ctx->fmtcnt;
451
37.7k
        keystart = ctx->fmtpos;
452
        /* Skip over balanced parentheses */
453
339k
        while (pcount > 0 && --ctx->fmtcnt >= 0) {
454
302k
            arg->ch = FORMAT_READ(ctx);
455
302k
            if (arg->ch == ')')
456
37.7k
                --pcount;
457
264k
            else if (arg->ch == '(')
458
0
                ++pcount;
459
302k
            ctx->fmtpos++;
460
302k
        }
461
37.7k
        keylen = ctx->fmtpos - keystart - 1;
462
37.7k
        if (ctx->fmtcnt < 0 || pcount > 0) {
463
0
            PyErr_SetString(PyExc_ValueError,
464
0
                            "incomplete format key");
465
0
            return -1;
466
0
        }
467
37.7k
        key = PyUnicode_Substring(ctx->fmtstr,
468
37.7k
                                  keystart, keystart + keylen);
469
37.7k
        if (key == NULL)
470
0
            return -1;
471
37.7k
        if (ctx->args_owned) {
472
26.9k
            ctx->args_owned = 0;
473
26.9k
            Py_DECREF(ctx->args);
474
26.9k
        }
475
37.7k
        ctx->args = PyObject_GetItem(ctx->dict, key);
476
37.7k
        Py_DECREF(key);
477
37.7k
        if (ctx->args == NULL)
478
0
            return -1;
479
37.7k
        ctx->args_owned = 1;
480
37.7k
        ctx->arglen = -1;
481
37.7k
        ctx->argidx = -2;
482
37.7k
    }
483
484
    /* Parse flags. Example: "%+i" => flags=F_SIGN. */
485
66.7M
    while (--ctx->fmtcnt >= 0) {
486
66.7M
        arg->ch = FORMAT_READ(ctx);
487
66.7M
        ctx->fmtpos++;
488
66.7M
        switch (arg->ch) {
489
0
        case '-': arg->flags |= F_LJUST; continue;
490
0
        case '+': arg->flags |= F_SIGN; continue;
491
0
        case ' ': arg->flags |= F_BLANK; continue;
492
39
        case '#': arg->flags |= F_ALT; continue;
493
1.66k
        case '0': arg->flags |= F_ZERO; continue;
494
66.7M
        }
495
66.7M
        break;
496
66.7M
    }
497
498
    /* Parse width. Example: "%10s" => width=10 */
499
66.7M
    if (arg->ch == '*') {
500
0
        v = unicode_format_getnextarg(ctx);
501
0
        if (v == NULL)
502
0
            return -1;
503
0
        if (!PyLong_Check(v)) {
504
0
            PyErr_SetString(PyExc_TypeError,
505
0
                            "* wants int");
506
0
            return -1;
507
0
        }
508
0
        arg->width = PyLong_AsSsize_t(v);
509
0
        if (arg->width == -1 && PyErr_Occurred())
510
0
            return -1;
511
0
        if (arg->width < 0) {
512
0
            arg->flags |= F_LJUST;
513
0
            arg->width = -arg->width;
514
0
        }
515
0
        if (--ctx->fmtcnt >= 0) {
516
0
            arg->ch = FORMAT_READ(ctx);
517
0
            ctx->fmtpos++;
518
0
        }
519
0
    }
520
66.7M
    else if (arg->ch >= '0' && arg->ch <= '9') {
521
5.02M
        arg->width = arg->ch - '0';
522
5.02M
        while (--ctx->fmtcnt >= 0) {
523
5.02M
            arg->ch = FORMAT_READ(ctx);
524
5.02M
            ctx->fmtpos++;
525
5.02M
            if (arg->ch < '0' || arg->ch > '9')
526
5.02M
                break;
527
            /* Since arg->ch is unsigned, the RHS would end up as unsigned,
528
               mixing signed and unsigned comparison. Since arg->ch is between
529
               '0' and '9', casting to int is safe. */
530
0
            if (arg->width > (PY_SSIZE_T_MAX - ((int)arg->ch - '0')) / 10) {
531
0
                PyErr_SetString(PyExc_ValueError,
532
0
                                "width too big");
533
0
                return -1;
534
0
            }
535
0
            arg->width = arg->width*10 + (arg->ch - '0');
536
0
        }
537
5.02M
    }
538
539
    /* Parse precision. Example: "%.3f" => prec=3 */
540
66.7M
    if (arg->ch == '.') {
541
114
        arg->prec = 0;
542
114
        if (--ctx->fmtcnt >= 0) {
543
114
            arg->ch = FORMAT_READ(ctx);
544
114
            ctx->fmtpos++;
545
114
        }
546
114
        if (arg->ch == '*') {
547
0
            v = unicode_format_getnextarg(ctx);
548
0
            if (v == NULL)
549
0
                return -1;
550
0
            if (!PyLong_Check(v)) {
551
0
                PyErr_SetString(PyExc_TypeError,
552
0
                                "* wants int");
553
0
                return -1;
554
0
            }
555
0
            arg->prec = PyLong_AsInt(v);
556
0
            if (arg->prec == -1 && PyErr_Occurred())
557
0
                return -1;
558
0
            if (arg->prec < 0)
559
0
                arg->prec = 0;
560
0
            if (--ctx->fmtcnt >= 0) {
561
0
                arg->ch = FORMAT_READ(ctx);
562
0
                ctx->fmtpos++;
563
0
            }
564
0
        }
565
114
        else if (arg->ch >= '0' && arg->ch <= '9') {
566
114
            arg->prec = arg->ch - '0';
567
114
            while (--ctx->fmtcnt >= 0) {
568
114
                arg->ch = FORMAT_READ(ctx);
569
114
                ctx->fmtpos++;
570
114
                if (arg->ch < '0' || arg->ch > '9')
571
114
                    break;
572
0
                if (arg->prec > (INT_MAX - ((int)arg->ch - '0')) / 10) {
573
0
                    PyErr_SetString(PyExc_ValueError,
574
0
                                    "precision too big");
575
0
                    return -1;
576
0
                }
577
0
                arg->prec = arg->prec*10 + (arg->ch - '0');
578
0
            }
579
114
        }
580
114
    }
581
582
    /* Ignore "h", "l" and "L" format prefix (ex: "%hi" or "%ls") */
583
66.7M
    if (ctx->fmtcnt >= 0) {
584
66.7M
        if (arg->ch == 'h' || arg->ch == 'l' || arg->ch == 'L') {
585
0
            if (--ctx->fmtcnt >= 0) {
586
0
                arg->ch = FORMAT_READ(ctx);
587
0
                ctx->fmtpos++;
588
0
            }
589
0
        }
590
66.7M
    }
591
66.7M
    if (ctx->fmtcnt < 0) {
592
0
        PyErr_SetString(PyExc_ValueError,
593
0
                        "incomplete format");
594
0
        return -1;
595
0
    }
596
66.7M
    return 0;
597
598
66.7M
#undef FORMAT_READ
599
66.7M
}
600
601
602
/* Format one argument. Supported conversion specifiers:
603
604
   - "s", "r", "a": any type
605
   - "i", "d", "u": int or float
606
   - "o", "x", "X": int
607
   - "e", "E", "f", "F", "g", "G": float
608
   - "c": int or str (1 character)
609
610
   When possible, the output is written directly into the Unicode writer
611
   (ctx->writer). A string is created when padding is required.
612
613
   Return 0 if the argument has been formatted into *p_str,
614
          1 if the argument has been written into ctx->writer,
615
         -1 on error. */
616
static int
617
unicode_format_arg_format(struct unicode_formatter_t *ctx,
618
                          struct unicode_format_arg_t *arg,
619
                          PyObject **p_str)
620
66.7M
{
621
66.7M
    PyObject *v;
622
66.7M
    _PyUnicodeWriter *writer = &ctx->writer;
623
624
66.7M
    if (ctx->fmtcnt == 0)
625
23.4M
        ctx->writer.overallocate = 0;
626
627
66.7M
    v = unicode_format_getnextarg(ctx);
628
66.7M
    if (v == NULL)
629
0
        return -1;
630
631
632
66.7M
    switch (arg->ch) {
633
43.1M
    case 's':
634
43.1M
    case 'r':
635
43.1M
    case 'a':
636
43.1M
        if (PyLong_CheckExact(v) && arg->width == -1 && arg->prec == -1) {
637
            /* Fast path */
638
141
            if (_PyLong_FormatWriter(writer, v, 10, arg->flags & F_ALT) == -1)
639
0
                return -1;
640
141
            return 1;
641
141
        }
642
643
43.1M
        if (PyUnicode_CheckExact(v) && arg->ch == 's') {
644
37.2M
            *p_str = Py_NewRef(v);
645
37.2M
        }
646
5.89M
        else {
647
5.89M
            if (arg->ch == 's')
648
5.89M
                *p_str = PyObject_Str(v);
649
6.23k
            else if (arg->ch == 'r')
650
6.23k
                *p_str = PyObject_Repr(v);
651
0
            else
652
0
                *p_str = PyObject_ASCII(v);
653
5.89M
        }
654
43.1M
        break;
655
656
0
    case 'i':
657
17.6M
    case 'd':
658
17.6M
    case 'u':
659
17.6M
    case 'o':
660
17.6M
    case 'x':
661
23.5M
    case 'X':
662
23.5M
    {
663
23.5M
        int ret = mainformatlong(v, arg, p_str, writer);
664
23.5M
        if (ret != 0)
665
12.6M
            return ret;
666
10.9M
        arg->sign = 1;
667
10.9M
        break;
668
23.5M
    }
669
670
0
    case 'e':
671
0
    case 'E':
672
114
    case 'f':
673
114
    case 'F':
674
114
    case 'g':
675
114
    case 'G':
676
114
        if (arg->width == -1 && arg->prec == -1
677
0
            && !(arg->flags & (F_SIGN | F_BLANK)))
678
0
        {
679
            /* Fast path */
680
0
            if (formatfloat(v, arg, NULL, writer) == -1)
681
0
                return -1;
682
0
            return 1;
683
0
        }
684
685
114
        arg->sign = 1;
686
114
        if (formatfloat(v, arg, p_str, NULL) == -1)
687
0
            return -1;
688
114
        break;
689
690
114
    case 'c':
691
0
    {
692
0
        Py_UCS4 ch = formatchar(v);
693
0
        if (ch == (Py_UCS4) -1)
694
0
            return -1;
695
0
        if (arg->width == -1 && arg->prec == -1) {
696
            /* Fast path */
697
0
            if (_PyUnicodeWriter_WriteCharInline(writer, ch) < 0)
698
0
                return -1;
699
0
            return 1;
700
0
        }
701
0
        *p_str = PyUnicode_FromOrdinal(ch);
702
0
        break;
703
0
    }
704
705
0
    default:
706
0
        PyErr_Format(PyExc_ValueError,
707
0
                     "unsupported format character '%c' (0x%x) "
708
0
                     "at index %zd",
709
0
                     (31<=arg->ch && arg->ch<=126) ? (char)arg->ch : '?',
710
0
                     (int)arg->ch,
711
0
                     ctx->fmtpos - 1);
712
0
        return -1;
713
66.7M
    }
714
54.0M
    if (*p_str == NULL)
715
0
        return -1;
716
54.0M
    assert (PyUnicode_Check(*p_str));
717
54.0M
    return 0;
718
54.0M
}
719
720
721
static int
722
unicode_format_arg_output(struct unicode_formatter_t *ctx,
723
                          struct unicode_format_arg_t *arg,
724
                          PyObject *str)
725
54.0M
{
726
54.0M
    Py_ssize_t len;
727
54.0M
    int kind;
728
54.0M
    const void *pbuf;
729
54.0M
    Py_ssize_t pindex;
730
54.0M
    Py_UCS4 signchar;
731
54.0M
    Py_ssize_t buflen;
732
54.0M
    Py_UCS4 maxchar;
733
54.0M
    Py_ssize_t sublen;
734
54.0M
    _PyUnicodeWriter *writer = &ctx->writer;
735
54.0M
    Py_UCS4 fill;
736
737
54.0M
    fill = ' ';
738
54.0M
    if (arg->sign && arg->flags & F_ZERO)
739
1.66k
        fill = '0';
740
741
54.0M
    len = PyUnicode_GET_LENGTH(str);
742
54.0M
    if ((arg->width == -1 || arg->width <= len)
743
54.0M
        && (arg->prec == -1 || arg->prec >= len)
744
54.0M
        && !(arg->flags & (F_SIGN | F_BLANK)))
745
54.0M
    {
746
        /* Fast path */
747
54.0M
        if (_PyUnicodeWriter_WriteStr(writer, str) == -1)
748
0
            return -1;
749
54.0M
        return 0;
750
54.0M
    }
751
752
    /* Truncate the string for "s", "r" and "a" formats
753
       if the precision is set */
754
18.7k
    if (arg->ch == 's' || arg->ch == 'r' || arg->ch == 'a') {
755
0
        if (arg->prec >= 0 && len > arg->prec)
756
0
            len = arg->prec;
757
0
    }
758
759
    /* Adjust sign and width */
760
18.7k
    kind = PyUnicode_KIND(str);
761
18.7k
    pbuf = PyUnicode_DATA(str);
762
18.7k
    pindex = 0;
763
18.7k
    signchar = '\0';
764
18.7k
    if (arg->sign) {
765
18.7k
        Py_UCS4 ch = PyUnicode_READ(kind, pbuf, pindex);
766
18.7k
        if (ch == '-' || ch == '+') {
767
0
            signchar = ch;
768
0
            len--;
769
0
            pindex++;
770
0
        }
771
18.7k
        else if (arg->flags & F_SIGN)
772
0
            signchar = '+';
773
18.7k
        else if (arg->flags & F_BLANK)
774
0
            signchar = ' ';
775
18.7k
        else
776
18.7k
            arg->sign = 0;
777
18.7k
    }
778
18.7k
    if (arg->width < len)
779
114
        arg->width = len;
780
781
    /* Prepare the writer */
782
18.7k
    maxchar = writer->maxchar;
783
18.7k
    if (!(arg->flags & F_LJUST)) {
784
18.7k
        if (arg->sign) {
785
0
            if ((arg->width-1) > len)
786
0
                maxchar = Py_MAX(maxchar, fill);
787
0
        }
788
18.7k
        else {
789
18.7k
            if (arg->width > len)
790
18.6k
                maxchar = Py_MAX(maxchar, fill);
791
18.7k
        }
792
18.7k
    }
793
18.7k
    if (PyUnicode_MAX_CHAR_VALUE(str) > maxchar) {
794
0
        Py_UCS4 strmaxchar = _PyUnicode_FindMaxChar(str, 0, pindex+len);
795
0
        maxchar = Py_MAX(maxchar, strmaxchar);
796
0
    }
797
798
18.7k
    buflen = arg->width;
799
18.7k
    if (arg->sign && len == arg->width)
800
0
        buflen++;
801
18.7k
    if (_PyUnicodeWriter_Prepare(writer, buflen, maxchar) == -1)
802
0
        return -1;
803
804
    /* Write the sign if needed */
805
18.7k
    if (arg->sign) {
806
0
        if (fill != ' ') {
807
0
            PyUnicode_WRITE(writer->kind, writer->data, writer->pos, signchar);
808
0
            writer->pos += 1;
809
0
        }
810
0
        if (arg->width > len)
811
0
            arg->width--;
812
0
    }
813
814
    /* Write the numeric prefix for "x", "X" and "o" formats
815
       if the alternate form is used.
816
       For example, write "0x" for the "%#x" format. */
817
18.7k
    if ((arg->flags & F_ALT) && (arg->ch == 'x' || arg->ch == 'X' || arg->ch == 'o')) {
818
0
        assert(PyUnicode_READ(kind, pbuf, pindex) == '0');
819
0
        assert(PyUnicode_READ(kind, pbuf, pindex + 1) == arg->ch);
820
0
        if (fill != ' ') {
821
0
            PyUnicode_WRITE(writer->kind, writer->data, writer->pos, '0');
822
0
            PyUnicode_WRITE(writer->kind, writer->data, writer->pos+1, arg->ch);
823
0
            writer->pos += 2;
824
0
            pindex += 2;
825
0
        }
826
0
        arg->width -= 2;
827
0
        if (arg->width < 0)
828
0
            arg->width = 0;
829
0
        len -= 2;
830
0
    }
831
832
    /* Pad left with the fill character if needed */
833
18.7k
    if (arg->width > len && !(arg->flags & F_LJUST)) {
834
18.6k
        sublen = arg->width - len;
835
18.6k
        _PyUnicode_Fill(writer->kind, writer->data, fill, writer->pos, sublen);
836
18.6k
        writer->pos += sublen;
837
18.6k
        arg->width = len;
838
18.6k
    }
839
840
    /* If padding with spaces: write sign if needed and/or numeric prefix if
841
       the alternate form is used */
842
18.7k
    if (fill == ' ') {
843
18.5k
        if (arg->sign) {
844
0
            PyUnicode_WRITE(writer->kind, writer->data, writer->pos, signchar);
845
0
            writer->pos += 1;
846
0
        }
847
18.5k
        if ((arg->flags & F_ALT) && (arg->ch == 'x' || arg->ch == 'X' || arg->ch == 'o')) {
848
0
            assert(PyUnicode_READ(kind, pbuf, pindex) == '0');
849
0
            assert(PyUnicode_READ(kind, pbuf, pindex+1) == arg->ch);
850
0
            PyUnicode_WRITE(writer->kind, writer->data, writer->pos, '0');
851
0
            PyUnicode_WRITE(writer->kind, writer->data, writer->pos+1, arg->ch);
852
0
            writer->pos += 2;
853
0
            pindex += 2;
854
0
        }
855
18.5k
    }
856
857
    /* Write characters */
858
18.7k
    if (len) {
859
18.7k
        _PyUnicode_FastCopyCharacters(writer->buffer, writer->pos,
860
18.7k
                                      str, pindex, len);
861
18.7k
        writer->pos += len;
862
18.7k
    }
863
864
    /* Pad right with the fill character if needed */
865
18.7k
    if (arg->width > len) {
866
0
        sublen = arg->width - len;
867
0
        _PyUnicode_Fill(writer->kind, writer->data, ' ', writer->pos, sublen);
868
0
        writer->pos += sublen;
869
0
    }
870
18.7k
    return 0;
871
18.7k
}
872
873
874
/* Helper of PyUnicode_Format(): format one arg.
875
   Return 0 on success, raise an exception and return -1 on error. */
876
static int
877
unicode_format_arg(struct unicode_formatter_t *ctx)
878
66.7M
{
879
66.7M
    struct unicode_format_arg_t arg;
880
66.7M
    PyObject *str;
881
66.7M
    int ret;
882
883
66.7M
    arg.ch = PyUnicode_READ(ctx->fmtkind, ctx->fmtdata, ctx->fmtpos);
884
66.7M
    if (arg.ch == '%') {
885
0
        ctx->fmtpos++;
886
0
        ctx->fmtcnt--;
887
0
        if (_PyUnicodeWriter_WriteCharInline(&ctx->writer, '%') < 0)
888
0
            return -1;
889
0
        return 0;
890
0
    }
891
66.7M
    arg.flags = 0;
892
66.7M
    arg.width = -1;
893
66.7M
    arg.prec = -1;
894
66.7M
    arg.sign = 0;
895
66.7M
    str = NULL;
896
897
66.7M
    ret = unicode_format_arg_parse(ctx, &arg);
898
66.7M
    if (ret == -1)
899
0
        return -1;
900
901
66.7M
    ret = unicode_format_arg_format(ctx, &arg, &str);
902
66.7M
    if (ret == -1)
903
4.43M
        return -1;
904
905
62.3M
    if (ret != 1) {
906
54.0M
        ret = unicode_format_arg_output(ctx, &arg, str);
907
54.0M
        Py_DECREF(str);
908
54.0M
        if (ret == -1)
909
0
            return -1;
910
54.0M
    }
911
912
62.3M
    if (ctx->dict && (ctx->argidx < ctx->arglen)) {
913
0
        PyErr_SetString(PyExc_TypeError,
914
0
                        "not all arguments converted during string formatting");
915
0
        return -1;
916
0
    }
917
62.3M
    return 0;
918
62.3M
}
919
920
921
PyObject *
922
PyUnicode_Format(PyObject *format, PyObject *args)
923
31.7M
{
924
31.7M
    struct unicode_formatter_t ctx;
925
926
31.7M
    if (format == NULL || args == NULL) {
927
0
        PyErr_BadInternalCall();
928
0
        return NULL;
929
0
    }
930
931
31.7M
    if (ensure_unicode(format) < 0)
932
0
        return NULL;
933
934
31.7M
    ctx.fmtstr = format;
935
31.7M
    ctx.fmtdata = PyUnicode_DATA(ctx.fmtstr);
936
31.7M
    ctx.fmtkind = PyUnicode_KIND(ctx.fmtstr);
937
31.7M
    ctx.fmtcnt = PyUnicode_GET_LENGTH(ctx.fmtstr);
938
31.7M
    ctx.fmtpos = 0;
939
940
31.7M
    _PyUnicodeWriter_Init(&ctx.writer);
941
31.7M
    ctx.writer.min_length = ctx.fmtcnt + 100;
942
31.7M
    ctx.writer.overallocate = 1;
943
944
31.7M
    if (PyTuple_Check(args)) {
945
17.7M
        ctx.arglen = PyTuple_Size(args);
946
17.7M
        ctx.argidx = 0;
947
17.7M
    }
948
13.9M
    else {
949
13.9M
        ctx.arglen = -1;
950
13.9M
        ctx.argidx = -2;
951
13.9M
    }
952
31.7M
    ctx.args_owned = 0;
953
31.7M
    if (PyMapping_Check(args) && !PyTuple_Check(args) && !PyUnicode_Check(args))
954
11.5k
        ctx.dict = args;
955
31.6M
    else
956
31.6M
        ctx.dict = NULL;
957
31.7M
    ctx.args = args;
958
959
157M
    while (--ctx.fmtcnt >= 0) {
960
130M
        if (PyUnicode_READ(ctx.fmtkind, ctx.fmtdata, ctx.fmtpos) != '%') {
961
63.5M
            Py_ssize_t nonfmtpos;
962
963
63.5M
            nonfmtpos = ctx.fmtpos++;
964
572M
            while (ctx.fmtcnt >= 0 &&
965
564M
                   PyUnicode_READ(ctx.fmtkind, ctx.fmtdata, ctx.fmtpos) != '%') {
966
509M
                ctx.fmtpos++;
967
509M
                ctx.fmtcnt--;
968
509M
            }
969
63.5M
            if (ctx.fmtcnt < 0) {
970
8.27M
                ctx.fmtpos--;
971
8.27M
                ctx.writer.overallocate = 0;
972
8.27M
            }
973
974
63.5M
            if (_PyUnicodeWriter_WriteSubstring(&ctx.writer, ctx.fmtstr,
975
63.5M
                                                nonfmtpos, ctx.fmtpos) < 0)
976
0
                goto onError;
977
63.5M
        }
978
66.7M
        else {
979
66.7M
            ctx.fmtpos++;
980
66.7M
            if (unicode_format_arg(&ctx) == -1)
981
4.43M
                goto onError;
982
66.7M
        }
983
130M
    }
984
985
27.2M
    if (ctx.argidx < ctx.arglen && !ctx.dict) {
986
0
        PyErr_SetString(PyExc_TypeError,
987
0
                        "not all arguments converted during string formatting");
988
0
        goto onError;
989
0
    }
990
991
27.2M
    if (ctx.args_owned) {
992
10.7k
        Py_DECREF(ctx.args);
993
10.7k
    }
994
27.2M
    return _PyUnicodeWriter_Finish(&ctx.writer);
995
996
4.43M
  onError:
997
4.43M
    _PyUnicodeWriter_Dealloc(&ctx.writer);
998
4.43M
    if (ctx.args_owned) {
999
0
        Py_DECREF(ctx.args);
1000
0
    }
1001
    return NULL;
1002
27.2M
}