Coverage Report

Created: 2026-05-30 06:18

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
12.6M
#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
    Py_ssize_t fmtstart;
76
    PyObject *key;
77
};
78
79
80
// Use FORMAT_ERROR("...%s", "") when there is no arguments.
81
945k
#define FORMAT_ERROR(EXC, FMT, ...) do {                                    \
82
945k
    if (arg->key != NULL) {                                                 \
83
0
        PyErr_Format((EXC), "format argument %R: " FMT,                     \
84
0
                     arg->key, __VA_ARGS__);                                \
85
0
    }                                                                       \
86
945k
    else if (ctx->argidx >= 0) {                                            \
87
0
        PyErr_Format((EXC), "format argument %zd: " FMT,                    \
88
0
                     ctx->argidx, __VA_ARGS__);                             \
89
0
    }                                                                       \
90
945k
    else {                                                                  \
91
945k
        PyErr_Format((EXC), "format argument: " FMT, __VA_ARGS__);          \
92
945k
    }                                                                       \
93
945k
} while (0)
94
95
96
static PyObject *
97
unicode_format_getnextarg(struct unicode_formatter_t *ctx, int allowone)
98
23.1M
{
99
23.1M
    Py_ssize_t argidx = ctx->argidx;
100
101
23.1M
    if (argidx < ctx->arglen && (allowone || ctx->arglen >= 0)) {
102
23.1M
        ctx->argidx++;
103
23.1M
        if (ctx->arglen >= 0) {
104
17.7M
            return PyTuple_GetItem(ctx->args, argidx);
105
17.7M
        }
106
5.47M
        else if (allowone) {
107
5.47M
            return ctx->args;
108
5.47M
        }
109
23.1M
    }
110
0
    PyErr_Format(PyExc_TypeError,
111
0
                 "not enough arguments for format string (got %zd)",
112
0
                 ctx->arglen < 0 ? 1 : ctx->arglen);
113
0
    return NULL;
114
23.1M
}
115
116
117
/* Returns a new reference to a PyUnicode object, or NULL on failure. */
118
119
/* Format a float into the writer if the writer is not NULL, or into *p_output
120
   otherwise.
121
122
   Return 0 on success, raise an exception and return -1 on error. */
123
static int
124
formatfloat(PyObject *v,
125
            struct unicode_formatter_t *ctx,
126
            struct unicode_format_arg_t *arg,
127
            PyObject **p_output,
128
            _PyUnicodeWriter *writer)
129
98
{
130
98
    char *p;
131
98
    double x;
132
98
    Py_ssize_t len;
133
98
    int prec;
134
98
    int dtoa_flags = 0;
135
136
98
    x = PyFloat_AsDouble(v);
137
98
    if (x == -1.0 && PyErr_Occurred()) {
138
0
        if (PyErr_ExceptionMatches(PyExc_TypeError)) {
139
0
            FORMAT_ERROR(PyExc_TypeError,
140
0
                         "%%%c requires a real number, not %T",
141
0
                         arg->ch, v);
142
0
        }
143
0
        return -1;
144
0
    }
145
146
98
    prec = arg->prec;
147
98
    if (prec < 0)
148
0
        prec = 6;
149
150
98
    if (arg->flags & F_ALT)
151
0
        dtoa_flags |= Py_DTSF_ALT;
152
98
    p = PyOS_double_to_string(x, arg->ch, prec, dtoa_flags, NULL);
153
98
    if (p == NULL)
154
0
        return -1;
155
98
    len = strlen(p);
156
98
    if (writer) {
157
0
        if (_PyUnicodeWriter_WriteASCIIString(writer, p, len) < 0) {
158
0
            PyMem_Free(p);
159
0
            return -1;
160
0
        }
161
0
    }
162
98
    else
163
98
        *p_output = _PyUnicode_FromASCII(p, len);
164
98
    PyMem_Free(p);
165
98
    return 0;
166
98
}
167
168
169
/* formatlong() emulates the format codes d, u, o, x and X, and
170
 * the F_ALT flag, for Python's long (unbounded) ints.  It's not used for
171
 * Python's regular ints.
172
 * Return value:  a new PyUnicodeObject*, or NULL if error.
173
 *     The output string is of the form
174
 *         "-"? ("0x" | "0X")? digit+
175
 *     "0x"/"0X" are present only for x and X conversions, with F_ALT
176
 *         set in flags.  The case of hex digits will be correct,
177
 *     There will be at least prec digits, zero-filled on the left if
178
 *         necessary to get that many.
179
 * val          object to be converted
180
 * flags        bitmask of format flags; only F_ALT is looked at
181
 * prec         minimum number of digits; 0-fill on left if needed
182
 * type         a character in [duoxX]; u acts the same as d
183
 *
184
 * CAUTION:  o, x and X conversions on regular ints can never
185
 * produce a '-' sign, but can for Python's unbounded ints.
186
 */
187
PyObject *
188
_PyUnicode_FormatLong(PyObject *val, int alt, int prec, int type)
189
5.07M
{
190
5.07M
    PyObject *result = NULL;
191
5.07M
    char *buf;
192
5.07M
    Py_ssize_t i;
193
5.07M
    int sign;           /* 1 if '-', else 0 */
194
5.07M
    int len;            /* number of characters */
195
5.07M
    Py_ssize_t llen;
196
5.07M
    int numdigits;      /* len == numnondigits + numdigits */
197
5.07M
    int numnondigits = 0;
198
199
    /* Avoid exceeding SSIZE_T_MAX */
200
5.07M
    if (prec > INT_MAX-3) {
201
0
        PyErr_SetString(PyExc_OverflowError,
202
0
                        "precision too large");
203
0
        return NULL;
204
0
    }
205
206
5.07M
    assert(PyLong_Check(val));
207
208
5.07M
    switch (type) {
209
0
    default:
210
0
        Py_UNREACHABLE();
211
36
    case 'd':
212
36
    case 'i':
213
36
    case 'u':
214
        /* int and int subclasses should print numerically when a numeric */
215
        /* format code is used (see issue18780) */
216
36
        result = PyNumber_ToBase(val, 10);
217
36
        break;
218
74.5k
    case 'o':
219
74.5k
        numnondigits = 2;
220
74.5k
        result = PyNumber_ToBase(val, 8);
221
74.5k
        break;
222
75
    case 'x':
223
5.00M
    case 'X':
224
5.00M
        numnondigits = 2;
225
5.00M
        result = PyNumber_ToBase(val, 16);
226
5.00M
        break;
227
5.07M
    }
228
5.07M
    if (!result)
229
0
        return NULL;
230
231
5.07M
    assert(_PyUnicode_IsModifiable(result));
232
5.07M
    assert(PyUnicode_IS_ASCII(result));
233
234
    /* To modify the string in-place, there can only be one reference. */
235
5.07M
    if (!_PyObject_IsUniquelyReferenced(result)) {
236
0
        Py_DECREF(result);
237
0
        PyErr_BadInternalCall();
238
0
        return NULL;
239
0
    }
240
5.07M
    buf = PyUnicode_DATA(result);
241
5.07M
    llen = PyUnicode_GET_LENGTH(result);
242
5.07M
    if (llen > INT_MAX) {
243
0
        Py_DECREF(result);
244
0
        PyErr_SetString(PyExc_ValueError,
245
0
                        "string too large in _PyUnicode_FormatLong");
246
0
        return NULL;
247
0
    }
248
5.07M
    len = (int)llen;
249
5.07M
    sign = buf[0] == '-';
250
5.07M
    numnondigits += sign;
251
5.07M
    numdigits = len - numnondigits;
252
5.07M
    assert(numdigits > 0);
253
254
    /* Get rid of base marker unless F_ALT */
255
5.07M
    if (((alt) == 0 &&
256
5.07M
        (type == 'o' || type == 'x' || type == 'X'))) {
257
5.07M
        assert(buf[sign] == '0');
258
5.07M
        assert(buf[sign+1] == 'x' || buf[sign+1] == 'X' ||
259
5.07M
               buf[sign+1] == 'o');
260
5.07M
        numnondigits -= 2;
261
5.07M
        buf += 2;
262
5.07M
        len -= 2;
263
5.07M
        if (sign)
264
0
            buf[0] = '-';
265
5.07M
        assert(len == numnondigits + numdigits);
266
5.07M
        assert(numdigits > 0);
267
5.07M
    }
268
269
    /* Fill with leading zeroes to meet minimum width. */
270
5.07M
    if (prec > numdigits) {
271
0
        PyObject *r1 = PyBytes_FromStringAndSize(NULL,
272
0
                                numnondigits + prec);
273
0
        char *b1;
274
0
        if (!r1) {
275
0
            Py_DECREF(result);
276
0
            return NULL;
277
0
        }
278
0
        b1 = PyBytes_AS_STRING(r1);
279
0
        for (i = 0; i < numnondigits; ++i)
280
0
            *b1++ = *buf++;
281
0
        for (i = 0; i < prec - numdigits; i++)
282
0
            *b1++ = '0';
283
0
        for (i = 0; i < numdigits; i++)
284
0
            *b1++ = *buf++;
285
0
        *b1 = '\0';
286
0
        Py_SETREF(result, r1);
287
0
        buf = PyBytes_AS_STRING(result);
288
0
        len = numnondigits + prec;
289
0
    }
290
291
    /* Fix up case for hex conversions. */
292
5.07M
    if (type == 'X') {
293
        /* Need to convert all lower case letters to upper case.
294
           and need to convert 0x to 0X (and -0x to -0X). */
295
34.9M
        for (i = 0; i < len; i++)
296
29.9M
            if (buf[i] >= 'a' && buf[i] <= 'x')
297
6.36M
                buf[i] -= 'a'-'A';
298
5.00M
    }
299
5.07M
    if (!PyUnicode_Check(result)
300
5.07M
        || buf != PyUnicode_DATA(result)) {
301
5.07M
        PyObject *unicode;
302
5.07M
        unicode = _PyUnicode_FromASCII(buf, len);
303
5.07M
        Py_SETREF(result, unicode);
304
5.07M
    }
305
36
    else if (len != PyUnicode_GET_LENGTH(result)) {
306
0
        if (PyUnicode_Resize(&result, len) < 0)
307
0
            Py_CLEAR(result);
308
0
    }
309
5.07M
    return result;
310
5.07M
}
311
312
313
/* Format an integer or a float as an integer.
314
 * Return 1 if the number has been formatted into the writer,
315
 *        0 if the number has been formatted into *p_output
316
 *       -1 and raise an exception on error */
317
static int
318
mainformatlong(PyObject *v,
319
               struct unicode_formatter_t *ctx,
320
               struct unicode_format_arg_t *arg,
321
               PyObject **p_output,
322
               _PyUnicodeWriter *writer)
323
8.40M
{
324
8.40M
    PyObject *iobj, *res;
325
8.40M
    char type = (char)arg->ch;
326
327
8.40M
    if (!PyNumber_Check(v))
328
945k
        goto wrongtype;
329
330
    /* make sure number is a type of integer for o, x, and X */
331
7.45M
    if (!PyLong_Check(v)) {
332
0
        if (type == 'o' || type == 'x' || type == 'X') {
333
0
            iobj = _PyNumber_Index(v);
334
0
        }
335
0
        else {
336
0
            iobj = PyNumber_Long(v);
337
0
        }
338
0
        if (iobj == NULL ) {
339
0
            if (PyErr_ExceptionMatches(PyExc_TypeError))
340
0
                goto wrongtype;
341
0
            return -1;
342
0
        }
343
0
        assert(PyLong_Check(iobj));
344
0
    }
345
7.45M
    else {
346
7.45M
        iobj = Py_NewRef(v);
347
7.45M
    }
348
349
7.45M
    if (PyLong_CheckExact(v)
350
7.45M
        && arg->width == -1 && arg->prec == -1
351
7.37M
        && !(arg->flags & (F_SIGN | F_BLANK))
352
7.37M
        && type != 'X')
353
2.37M
    {
354
        /* Fast path */
355
2.37M
        int alternate = arg->flags & F_ALT;
356
2.37M
        int base;
357
358
2.37M
        switch(type)
359
2.37M
        {
360
0
            default:
361
0
                Py_UNREACHABLE();
362
2.37M
            case 'd':
363
2.37M
            case 'i':
364
2.37M
            case 'u':
365
2.37M
                base = 10;
366
2.37M
                break;
367
0
            case 'o':
368
0
                base = 8;
369
0
                break;
370
52
            case 'x':
371
52
            case 'X':
372
52
                base = 16;
373
52
                break;
374
2.37M
        }
375
376
2.37M
        if (_PyLong_FormatWriter(writer, v, base, alternate) == -1) {
377
0
            Py_DECREF(iobj);
378
0
            return -1;
379
0
        }
380
2.37M
        Py_DECREF(iobj);
381
2.37M
        return 1;
382
2.37M
    }
383
384
5.07M
    res = _PyUnicode_FormatLong(iobj, arg->flags & F_ALT, arg->prec, type);
385
5.07M
    Py_DECREF(iobj);
386
5.07M
    if (res == NULL)
387
0
        return -1;
388
5.07M
    *p_output = res;
389
5.07M
    return 0;
390
391
945k
wrongtype:
392
945k
    switch(type)
393
945k
    {
394
0
        case 'o':
395
0
        case 'x':
396
0
        case 'X':
397
0
            FORMAT_ERROR(PyExc_TypeError,
398
0
                         "%%%c requires an integer, not %T",
399
0
                         arg->ch, v);
400
0
            break;
401
945k
        default:
402
945k
            FORMAT_ERROR(PyExc_TypeError,
403
945k
                         "%%%c requires a real number, not %T",
404
945k
                         arg->ch, v);
405
945k
            break;
406
945k
    }
407
945k
    return -1;
408
945k
}
409
410
411
static Py_UCS4
412
formatchar(PyObject *v,
413
           struct unicode_formatter_t *ctx,
414
           struct unicode_format_arg_t *arg)
415
0
{
416
    /* presume that the buffer is at least 3 characters long */
417
0
    if (PyUnicode_Check(v)) {
418
0
        if (PyUnicode_GET_LENGTH(v) == 1) {
419
0
            return PyUnicode_READ_CHAR(v, 0);
420
0
        }
421
0
        FORMAT_ERROR(PyExc_TypeError,
422
0
                     "%%c requires an integer or a unicode character, "
423
0
                     "not a string of length %zd",
424
0
                     PyUnicode_GET_LENGTH(v));
425
0
        return (Py_UCS4) -1;
426
0
    }
427
0
    else {
428
0
        int overflow;
429
0
        long x = PyLong_AsLongAndOverflow(v, &overflow);
430
0
        if (x == -1 && PyErr_Occurred()) {
431
0
            if (PyErr_ExceptionMatches(PyExc_TypeError)) {
432
0
                FORMAT_ERROR(PyExc_TypeError,
433
0
                             "%%c requires an integer or a unicode character, "
434
0
                             "not %T",
435
0
                             v);
436
0
            }
437
0
            return (Py_UCS4) -1;
438
0
        }
439
440
0
        if (x < 0 || x > MAX_UNICODE) {
441
            /* this includes an overflow in converting to C long */
442
0
            FORMAT_ERROR(PyExc_OverflowError,
443
0
                         "%%c argument not in range(0x110000)%s", "");
444
0
            return (Py_UCS4) -1;
445
0
        }
446
447
0
        return (Py_UCS4) x;
448
0
    }
449
0
}
450
451
452
/* Parse options of an argument: flags, width, precision.
453
   Handle also "%(name)" syntax.
454
455
   Return 0 if the argument has been formatted into arg->str.
456
   Return 1 if the argument has been written into ctx->writer,
457
   Raise an exception and return -1 on error. */
458
static int
459
unicode_format_arg_parse(struct unicode_formatter_t *ctx,
460
                         struct unicode_format_arg_t *arg)
461
23.1M
{
462
23.1M
#define FORMAT_READ(ctx) \
463
23.6M
        PyUnicode_READ((ctx)->fmtkind, (ctx)->fmtdata, (ctx)->fmtpos)
464
465
23.1M
    PyObject *v;
466
467
23.1M
    if (arg->ch == '(') {
468
        /* Get argument value from a dictionary. Example: "%(name)s". */
469
50.5k
        Py_ssize_t keystart;
470
50.5k
        Py_ssize_t keylen;
471
50.5k
        int pcount = 1;
472
473
50.5k
        if (ctx->dict == NULL) {
474
0
            PyErr_Format(PyExc_TypeError,
475
0
                         "format requires a mapping, not %T",
476
0
                         ctx->args);
477
0
            return -1;
478
0
        }
479
50.5k
        ++ctx->fmtpos;
480
50.5k
        --ctx->fmtcnt;
481
50.5k
        keystart = ctx->fmtpos;
482
        /* Skip over balanced parentheses */
483
455k
        while (pcount > 0 && --ctx->fmtcnt >= 0) {
484
404k
            arg->ch = FORMAT_READ(ctx);
485
404k
            if (arg->ch == ')')
486
50.5k
                --pcount;
487
353k
            else if (arg->ch == '(')
488
0
                ++pcount;
489
404k
            ctx->fmtpos++;
490
404k
        }
491
50.5k
        keylen = ctx->fmtpos - keystart - 1;
492
50.5k
        if (ctx->fmtcnt < 0 || pcount > 0) {
493
0
            PyErr_Format(PyExc_ValueError,
494
0
                         "stray %% or incomplete format key at position %zd",
495
0
                         arg->fmtstart);
496
0
            return -1;
497
0
        }
498
50.5k
        arg->key = PyUnicode_Substring(ctx->fmtstr,
499
50.5k
                                       keystart, keystart + keylen);
500
50.5k
        if (arg->key == NULL)
501
0
            return -1;
502
50.5k
        if (ctx->args_owned) {
503
36.1k
            ctx->args_owned = 0;
504
36.1k
            Py_DECREF(ctx->args);
505
36.1k
        }
506
50.5k
        ctx->args = PyObject_GetItem(ctx->dict, arg->key);
507
50.5k
        if (ctx->args == NULL)
508
0
            return -1;
509
50.5k
        ctx->args_owned = 1;
510
50.5k
        ctx->arglen = -3;
511
50.5k
        ctx->argidx = -4;
512
50.5k
    }
513
23.0M
    else {
514
23.0M
        if (ctx->arglen < -1) {
515
0
            PyErr_Format(PyExc_ValueError,
516
0
                         "format requires a parenthesised mapping key "
517
0
                         "at position %zd",
518
0
                         arg->fmtstart);
519
0
            return -1;
520
0
        }
521
23.0M
    }
522
523
    /* Parse flags. Example: "%+i" => flags=F_SIGN. */
524
23.2M
    while (--ctx->fmtcnt >= 0) {
525
23.2M
        arg->ch = FORMAT_READ(ctx);
526
23.2M
        ctx->fmtpos++;
527
23.2M
        switch (arg->ch) {
528
0
        case '-': arg->flags |= F_LJUST; continue;
529
0
        case '+': arg->flags |= F_SIGN; continue;
530
0
        case ' ': arg->flags |= F_BLANK; continue;
531
52
        case '#': arg->flags |= F_ALT; continue;
532
76.6k
        case '0': arg->flags |= F_ZERO; continue;
533
23.2M
        }
534
23.1M
        break;
535
23.2M
    }
536
537
    /* Parse width. Example: "%10s" => width=10 */
538
23.1M
    if (arg->ch == '*') {
539
61.7k
        if (ctx->arglen < -1) {
540
0
            PyErr_Format(PyExc_ValueError,
541
0
                    "* cannot be used with a parenthesised mapping key "
542
0
                    "at position %zd",
543
0
                    arg->fmtstart);
544
0
            return -1;
545
0
        }
546
61.7k
        v = unicode_format_getnextarg(ctx, 0);
547
61.7k
        if (v == NULL)
548
0
            return -1;
549
61.7k
        if (!PyLong_Check(v)) {
550
0
            FORMAT_ERROR(PyExc_TypeError, "* requires int, not %T", v);
551
0
            return -1;
552
0
        }
553
61.7k
        arg->width = PyLong_AsSsize_t(v);
554
61.7k
        if (arg->width == -1 && PyErr_Occurred()) {
555
0
            if (PyErr_ExceptionMatches(PyExc_OverflowError)) {
556
0
                FORMAT_ERROR(PyExc_OverflowError,
557
0
                             "too big for width%s", "");
558
0
            }
559
0
            return -1;
560
0
        }
561
61.7k
        if (arg->width < 0) {
562
0
            arg->flags |= F_LJUST;
563
0
            arg->width = -arg->width;
564
0
        }
565
61.7k
        if (--ctx->fmtcnt >= 0) {
566
61.7k
            arg->ch = FORMAT_READ(ctx);
567
61.7k
            ctx->fmtpos++;
568
61.7k
        }
569
61.7k
    }
570
23.0M
    else if (arg->ch >= '0' && arg->ch <= '9') {
571
14.9k
        arg->width = arg->ch - '0';
572
14.9k
        while (--ctx->fmtcnt >= 0) {
573
14.9k
            arg->ch = FORMAT_READ(ctx);
574
14.9k
            ctx->fmtpos++;
575
14.9k
            if (arg->ch < '0' || arg->ch > '9')
576
14.9k
                break;
577
            /* Since arg->ch is unsigned, the RHS would end up as unsigned,
578
               mixing signed and unsigned comparison. Since arg->ch is between
579
               '0' and '9', casting to int is safe. */
580
0
            if (arg->width > (PY_SSIZE_T_MAX - ((int)arg->ch - '0')) / 10) {
581
0
                PyErr_Format(PyExc_ValueError,
582
0
                             "width too big at position %zd",
583
0
                             arg->fmtstart);
584
0
                return -1;
585
0
            }
586
0
            arg->width = arg->width*10 + (arg->ch - '0');
587
0
        }
588
14.9k
    }
589
590
    /* Parse precision. Example: "%.3f" => prec=3 */
591
23.1M
    if (arg->ch == '.') {
592
98
        arg->prec = 0;
593
98
        if (--ctx->fmtcnt >= 0) {
594
98
            arg->ch = FORMAT_READ(ctx);
595
98
            ctx->fmtpos++;
596
98
        }
597
98
        if (arg->ch == '*') {
598
0
            if (ctx->arglen < -1) {
599
0
                PyErr_Format(PyExc_ValueError,
600
0
                        "* cannot be used with a parenthesised mapping key "
601
0
                        "at position %zd",
602
0
                        arg->fmtstart);
603
0
                return -1;
604
0
            }
605
0
            v = unicode_format_getnextarg(ctx, 0);
606
0
            if (v == NULL)
607
0
                return -1;
608
0
            if (!PyLong_Check(v)) {
609
0
                FORMAT_ERROR(PyExc_TypeError, "* requires int, not %T", v);
610
0
                return -1;
611
0
            }
612
0
            arg->prec = PyLong_AsInt(v);
613
0
            if (arg->prec == -1 && PyErr_Occurred()) {
614
0
                if (PyErr_ExceptionMatches(PyExc_OverflowError)) {
615
0
                    FORMAT_ERROR(PyExc_OverflowError,
616
0
                                 "too big for precision%s", "");
617
0
                }
618
0
                return -1;
619
0
            }
620
0
            if (arg->prec < 0)
621
0
                arg->prec = 0;
622
0
            if (--ctx->fmtcnt >= 0) {
623
0
                arg->ch = FORMAT_READ(ctx);
624
0
                ctx->fmtpos++;
625
0
            }
626
0
        }
627
98
        else if (arg->ch >= '0' && arg->ch <= '9') {
628
98
            arg->prec = arg->ch - '0';
629
98
            while (--ctx->fmtcnt >= 0) {
630
98
                arg->ch = FORMAT_READ(ctx);
631
98
                ctx->fmtpos++;
632
98
                if (arg->ch < '0' || arg->ch > '9')
633
98
                    break;
634
0
                if (arg->prec > (INT_MAX - ((int)arg->ch - '0')) / 10) {
635
0
                    PyErr_Format(PyExc_ValueError,
636
0
                                 "precision too big at position %zd",
637
0
                                 arg->fmtstart);
638
0
                    return -1;
639
0
                }
640
0
                arg->prec = arg->prec*10 + (arg->ch - '0');
641
0
            }
642
98
        }
643
98
    }
644
645
    /* Ignore "h", "l" and "L" format prefix (ex: "%hi" or "%ls") */
646
23.1M
    if (ctx->fmtcnt >= 0) {
647
23.1M
        if (arg->ch == 'h' || arg->ch == 'l' || arg->ch == 'L') {
648
0
            if (--ctx->fmtcnt >= 0) {
649
0
                arg->ch = FORMAT_READ(ctx);
650
0
                ctx->fmtpos++;
651
0
            }
652
0
        }
653
23.1M
    }
654
23.1M
    if (ctx->fmtcnt < 0) {
655
0
        PyErr_Format(PyExc_ValueError,
656
0
                     "stray %% at position %zd", arg->fmtstart);
657
0
        return -1;
658
0
    }
659
23.1M
    return 0;
660
661
23.1M
#undef FORMAT_READ
662
23.1M
}
663
664
665
/* Format one argument. Supported conversion specifiers:
666
667
   - "s", "r", "a": any type
668
   - "i", "d", "u": int or float
669
   - "o", "x", "X": int
670
   - "e", "E", "f", "F", "g", "G": float
671
   - "c": int or str (1 character)
672
673
   When possible, the output is written directly into the Unicode writer
674
   (ctx->writer). A string is created when padding is required.
675
676
   Return 0 if the argument has been formatted into *p_str,
677
          1 if the argument has been written into ctx->writer,
678
         -1 on error. */
679
static int
680
unicode_format_arg_format(struct unicode_formatter_t *ctx,
681
                          struct unicode_format_arg_t *arg,
682
                          PyObject **p_str)
683
23.1M
{
684
23.1M
    PyObject *v;
685
23.1M
    _PyUnicodeWriter *writer = &ctx->writer;
686
687
23.1M
    if (ctx->fmtcnt == 0)
688
8.30M
        ctx->writer.overallocate = 0;
689
690
23.1M
    v = unicode_format_getnextarg(ctx, 1);
691
23.1M
    if (v == NULL)
692
0
        return -1;
693
694
695
23.1M
    switch (arg->ch) {
696
14.7M
    case 's':
697
14.7M
    case 'r':
698
14.7M
    case 'a':
699
14.7M
        if (PyLong_CheckExact(v) && arg->width == -1 && arg->prec == -1) {
700
            /* Fast path */
701
198
            if (_PyLong_FormatWriter(writer, v, 10, arg->flags & F_ALT) == -1)
702
0
                return -1;
703
198
            return 1;
704
198
        }
705
706
14.7M
        if (PyUnicode_CheckExact(v) && arg->ch == 's') {
707
9.71M
            *p_str = Py_NewRef(v);
708
9.71M
        }
709
5.01M
        else {
710
5.01M
            if (arg->ch == 's')
711
5.00M
                *p_str = PyObject_Str(v);
712
10.8k
            else if (arg->ch == 'r')
713
10.8k
                *p_str = PyObject_Repr(v);
714
0
            else
715
0
                *p_str = PyObject_ASCII(v);
716
5.01M
        }
717
14.7M
        break;
718
719
0
    case 'i':
720
3.32M
    case 'd':
721
3.32M
    case 'u':
722
3.39M
    case 'o':
723
3.39M
    case 'x':
724
8.40M
    case 'X':
725
8.40M
    {
726
8.40M
        int ret = mainformatlong(v, ctx, arg, p_str, writer);
727
8.40M
        if (ret != 0)
728
3.32M
            return ret;
729
5.07M
        arg->sign = 1;
730
5.07M
        break;
731
8.40M
    }
732
733
0
    case 'e':
734
0
    case 'E':
735
98
    case 'f':
736
98
    case 'F':
737
98
    case 'g':
738
98
    case 'G':
739
98
        if (arg->width == -1 && arg->prec == -1
740
0
            && !(arg->flags & (F_SIGN | F_BLANK)))
741
0
        {
742
            /* Fast path */
743
0
            if (formatfloat(v, ctx, arg, NULL, writer) == -1)
744
0
                return -1;
745
0
            return 1;
746
0
        }
747
748
98
        arg->sign = 1;
749
98
        if (formatfloat(v, ctx, arg, p_str, NULL) == -1)
750
0
            return -1;
751
98
        break;
752
753
98
    case 'c':
754
0
    {
755
0
        Py_UCS4 ch = formatchar(v, ctx, arg);
756
0
        if (ch == (Py_UCS4) -1)
757
0
            return -1;
758
0
        if (arg->width == -1 && arg->prec == -1) {
759
            /* Fast path */
760
0
            if (_PyUnicodeWriter_WriteCharInline(writer, ch) < 0)
761
0
                return -1;
762
0
            return 1;
763
0
        }
764
0
        *p_str = PyUnicode_FromOrdinal(ch);
765
0
        break;
766
0
    }
767
768
0
    default:
769
0
        if (arg->ch < 128 && Py_ISALPHA(arg->ch)) {
770
0
            PyErr_Format(PyExc_ValueError,
771
0
                         "unsupported format %%%c at position %zd",
772
0
                         (int)arg->ch, arg->fmtstart);
773
0
        }
774
0
        else if (arg->ch == '\'') {
775
0
            PyErr_Format(PyExc_ValueError,
776
0
                         "stray %% at position %zd or unexpected "
777
0
                         "format character \"'\" at position %zd",
778
0
                         arg->fmtstart,
779
0
                         ctx->fmtpos - 1);
780
0
        }
781
0
        else if (arg->ch >= 32 && arg->ch < 127) {
782
0
            PyErr_Format(PyExc_ValueError,
783
0
                         "stray %% at position %zd or unexpected "
784
0
                         "format character '%c' at position %zd",
785
0
                         arg->fmtstart,
786
0
                         (int)arg->ch, ctx->fmtpos - 1);
787
0
        }
788
0
        else if (Py_UNICODE_ISPRINTABLE(arg->ch)) {
789
0
            PyErr_Format(PyExc_ValueError,
790
0
                         "stray %% at position %zd or unexpected "
791
0
                         "format character '%c' (U+%04X) at position %zd",
792
0
                         arg->fmtstart,
793
0
                         (int)arg->ch, (int)arg->ch, ctx->fmtpos - 1);
794
0
        }
795
0
        else {
796
0
            PyErr_Format(PyExc_ValueError,
797
0
                         "stray %% at position %zd or unexpected "
798
0
                         "format character U+%04X at position %zd",
799
0
                         arg->fmtstart, (int)arg->ch, ctx->fmtpos - 1);
800
0
        }
801
0
        return -1;
802
23.1M
    }
803
19.7M
    if (*p_str == NULL)
804
0
        return -1;
805
19.7M
    assert (PyUnicode_Check(*p_str));
806
19.7M
    return 0;
807
19.7M
}
808
809
810
static int
811
unicode_format_arg_output(struct unicode_formatter_t *ctx,
812
                          struct unicode_format_arg_t *arg,
813
                          PyObject *str)
814
19.7M
{
815
19.7M
    Py_ssize_t len;
816
19.7M
    int kind;
817
19.7M
    const void *pbuf;
818
19.7M
    Py_ssize_t pindex;
819
19.7M
    Py_UCS4 signchar;
820
19.7M
    Py_ssize_t buflen;
821
19.7M
    Py_UCS4 maxchar;
822
19.7M
    Py_ssize_t sublen;
823
19.7M
    _PyUnicodeWriter *writer = &ctx->writer;
824
19.7M
    Py_UCS4 fill;
825
826
19.7M
    fill = ' ';
827
19.7M
    if (arg->sign && arg->flags & F_ZERO)
828
76.6k
        fill = '0';
829
830
19.7M
    len = PyUnicode_GET_LENGTH(str);
831
19.7M
    if ((arg->width == -1 || arg->width <= len)
832
19.7M
        && (arg->prec == -1 || arg->prec >= len)
833
19.7M
        && !(arg->flags & (F_SIGN | F_BLANK)))
834
19.7M
    {
835
        /* Fast path */
836
19.7M
        if (_PyUnicodeWriter_WriteStr(writer, str) == -1)
837
0
            return -1;
838
19.7M
        return 0;
839
19.7M
    }
840
841
    /* Truncate the string for "s", "r" and "a" formats
842
       if the precision is set */
843
74.8k
    if (arg->ch == 's' || arg->ch == 'r' || arg->ch == 'a') {
844
0
        if (arg->prec >= 0 && len > arg->prec)
845
0
            len = arg->prec;
846
0
    }
847
848
    /* Adjust sign and width */
849
74.8k
    kind = PyUnicode_KIND(str);
850
74.8k
    pbuf = PyUnicode_DATA(str);
851
74.8k
    pindex = 0;
852
74.8k
    signchar = '\0';
853
74.8k
    if (arg->sign) {
854
74.8k
        Py_UCS4 ch = PyUnicode_READ(kind, pbuf, pindex);
855
74.8k
        if (ch == '-' || ch == '+') {
856
0
            signchar = ch;
857
0
            len--;
858
0
            pindex++;
859
0
        }
860
74.8k
        else if (arg->flags & F_SIGN)
861
0
            signchar = '+';
862
74.8k
        else if (arg->flags & F_BLANK)
863
0
            signchar = ' ';
864
74.8k
        else
865
74.8k
            arg->sign = 0;
866
74.8k
    }
867
74.8k
    if (arg->width < len)
868
98
        arg->width = len;
869
870
    /* Prepare the writer */
871
74.8k
    maxchar = writer->maxchar;
872
74.8k
    if (!(arg->flags & F_LJUST)) {
873
74.8k
        if (arg->sign) {
874
0
            if ((arg->width-1) > len)
875
0
                maxchar = Py_MAX(maxchar, fill);
876
0
        }
877
74.8k
        else {
878
74.8k
            if (arg->width > len)
879
74.7k
                maxchar = Py_MAX(maxchar, fill);
880
74.8k
        }
881
74.8k
    }
882
74.8k
    if (PyUnicode_MAX_CHAR_VALUE(str) > maxchar) {
883
74.5k
        Py_UCS4 strmaxchar = _PyUnicode_FindMaxChar(str, 0, pindex+len);
884
74.5k
        maxchar = Py_MAX(maxchar, strmaxchar);
885
74.5k
    }
886
887
74.8k
    buflen = arg->width;
888
74.8k
    if (arg->sign && len == arg->width)
889
0
        buflen++;
890
74.8k
    if (_PyUnicodeWriter_Prepare(writer, buflen, maxchar) == -1)
891
0
        return -1;
892
893
    /* Write the sign if needed */
894
74.8k
    if (arg->sign) {
895
0
        if (fill != ' ') {
896
0
            PyUnicode_WRITE(writer->kind, writer->data, writer->pos, signchar);
897
0
            writer->pos += 1;
898
0
        }
899
0
        if (arg->width > len)
900
0
            arg->width--;
901
0
    }
902
903
    /* Write the numeric prefix for "x", "X" and "o" formats
904
       if the alternate form is used.
905
       For example, write "0x" for the "%#x" format. */
906
74.8k
    if ((arg->flags & F_ALT) && (arg->ch == 'x' || arg->ch == 'X' || arg->ch == 'o')) {
907
0
        assert(PyUnicode_READ(kind, pbuf, pindex) == '0');
908
0
        assert(PyUnicode_READ(kind, pbuf, pindex + 1) == arg->ch);
909
0
        if (fill != ' ') {
910
0
            PyUnicode_WRITE(writer->kind, writer->data, writer->pos, '0');
911
0
            PyUnicode_WRITE(writer->kind, writer->data, writer->pos+1, arg->ch);
912
0
            writer->pos += 2;
913
0
            pindex += 2;
914
0
        }
915
0
        arg->width -= 2;
916
0
        if (arg->width < 0)
917
0
            arg->width = 0;
918
0
        len -= 2;
919
0
    }
920
921
    /* Pad left with the fill character if needed */
922
74.8k
    if (arg->width > len && !(arg->flags & F_LJUST)) {
923
74.7k
        sublen = arg->width - len;
924
74.7k
        _PyUnicode_Fill(writer->kind, writer->data, fill, writer->pos, sublen);
925
74.7k
        writer->pos += sublen;
926
74.7k
        arg->width = len;
927
74.7k
    }
928
929
    /* If padding with spaces: write sign if needed and/or numeric prefix if
930
       the alternate form is used */
931
74.8k
    if (fill == ' ') {
932
98
        if (arg->sign) {
933
0
            PyUnicode_WRITE(writer->kind, writer->data, writer->pos, signchar);
934
0
            writer->pos += 1;
935
0
        }
936
98
        if ((arg->flags & F_ALT) && (arg->ch == 'x' || arg->ch == 'X' || arg->ch == 'o')) {
937
0
            assert(PyUnicode_READ(kind, pbuf, pindex) == '0');
938
0
            assert(PyUnicode_READ(kind, pbuf, pindex+1) == arg->ch);
939
0
            PyUnicode_WRITE(writer->kind, writer->data, writer->pos, '0');
940
0
            PyUnicode_WRITE(writer->kind, writer->data, writer->pos+1, arg->ch);
941
0
            writer->pos += 2;
942
0
            pindex += 2;
943
0
        }
944
98
    }
945
946
    /* Write characters */
947
74.8k
    if (len) {
948
74.8k
        _PyUnicode_FastCopyCharacters(writer->buffer, writer->pos,
949
74.8k
                                      str, pindex, len);
950
74.8k
        writer->pos += len;
951
74.8k
    }
952
953
    /* Pad right with the fill character if needed */
954
74.8k
    if (arg->width > len) {
955
0
        sublen = arg->width - len;
956
0
        _PyUnicode_Fill(writer->kind, writer->data, ' ', writer->pos, sublen);
957
0
        writer->pos += sublen;
958
0
    }
959
74.8k
    return 0;
960
74.8k
}
961
962
963
/* Helper of PyUnicode_Format(): format one arg.
964
   Return 0 on success, raise an exception and return -1 on error. */
965
static int
966
unicode_format_arg(struct unicode_formatter_t *ctx)
967
23.1M
{
968
23.1M
    struct unicode_format_arg_t arg;
969
23.1M
    PyObject *str;
970
23.1M
    int ret;
971
972
23.1M
    arg.ch = PyUnicode_READ(ctx->fmtkind, ctx->fmtdata, ctx->fmtpos);
973
23.1M
    if (arg.ch == '%') {
974
0
        ctx->fmtpos++;
975
0
        ctx->fmtcnt--;
976
0
        if (_PyUnicodeWriter_WriteCharInline(&ctx->writer, '%') < 0)
977
0
            return -1;
978
0
        return 0;
979
0
    }
980
23.1M
    arg.flags = 0;
981
23.1M
    arg.width = -1;
982
23.1M
    arg.prec = -1;
983
23.1M
    arg.sign = 0;
984
23.1M
    arg.fmtstart = ctx->fmtpos - 1;
985
23.1M
    arg.key = NULL;
986
23.1M
    str = NULL;
987
988
23.1M
    ret = unicode_format_arg_parse(ctx, &arg);
989
23.1M
    if (ret == -1) {
990
0
        goto onError;
991
0
    }
992
993
23.1M
    ret = unicode_format_arg_format(ctx, &arg, &str);
994
23.1M
    if (ret == -1) {
995
945k
        goto onError;
996
945k
    }
997
998
22.1M
    if (ret != 1) {
999
19.7M
        ret = unicode_format_arg_output(ctx, &arg, str);
1000
19.7M
        Py_DECREF(str);
1001
19.7M
        if (ret == -1) {
1002
0
            goto onError;
1003
0
        }
1004
19.7M
    }
1005
1006
22.1M
    if (ctx->dict && (ctx->argidx < ctx->arglen)) {
1007
        // XXX: Never happens?
1008
0
        PyErr_SetString(PyExc_TypeError,
1009
0
                        "not all arguments converted during string formatting");
1010
0
        goto onError;
1011
0
    }
1012
22.1M
    Py_XDECREF(arg.key);
1013
22.1M
    return 0;
1014
1015
945k
  onError:
1016
945k
    Py_XDECREF(arg.key);
1017
945k
    return -1;
1018
22.1M
}
1019
1020
1021
PyObject *
1022
PyUnicode_Format(PyObject *format, PyObject *args)
1023
12.6M
{
1024
12.6M
    struct unicode_formatter_t ctx;
1025
1026
12.6M
    if (format == NULL || args == NULL) {
1027
0
        PyErr_BadInternalCall();
1028
0
        return NULL;
1029
0
    }
1030
1031
12.6M
    if (ensure_unicode(format) < 0)
1032
0
        return NULL;
1033
1034
12.6M
    ctx.fmtstr = format;
1035
12.6M
    ctx.fmtdata = PyUnicode_DATA(ctx.fmtstr);
1036
12.6M
    ctx.fmtkind = PyUnicode_KIND(ctx.fmtstr);
1037
12.6M
    ctx.fmtcnt = PyUnicode_GET_LENGTH(ctx.fmtstr);
1038
12.6M
    ctx.fmtpos = 0;
1039
1040
12.6M
    _PyUnicodeWriter_Init(&ctx.writer);
1041
12.6M
    ctx.writer.min_length = ctx.fmtcnt + 100;
1042
12.6M
    ctx.writer.overallocate = 1;
1043
1044
12.6M
    if (PyTuple_Check(args)) {
1045
7.22M
        ctx.arglen = PyTuple_Size(args);
1046
7.22M
        ctx.argidx = 0;
1047
7.22M
    }
1048
5.43M
    else {
1049
5.43M
        ctx.arglen = -1;
1050
5.43M
        ctx.argidx = -2;
1051
5.43M
    }
1052
12.6M
    ctx.args_owned = 0;
1053
12.6M
    if (PyMapping_Check(args) && !PyTuple_Check(args) && !PyUnicode_Check(args))
1054
15.1k
        ctx.dict = args;
1055
12.6M
    else
1056
12.6M
        ctx.dict = NULL;
1057
12.6M
    ctx.args = args;
1058
1059
60.0M
    while (--ctx.fmtcnt >= 0) {
1060
48.3M
        if (PyUnicode_READ(ctx.fmtkind, ctx.fmtdata, ctx.fmtpos) != '%') {
1061
25.2M
            Py_ssize_t nonfmtpos;
1062
1063
25.2M
            nonfmtpos = ctx.fmtpos++;
1064
160M
            while (ctx.fmtcnt >= 0 &&
1065
156M
                   PyUnicode_READ(ctx.fmtkind, ctx.fmtdata, ctx.fmtpos) != '%') {
1066
135M
                ctx.fmtpos++;
1067
135M
                ctx.fmtcnt--;
1068
135M
            }
1069
25.2M
            if (ctx.fmtcnt < 0) {
1070
4.35M
                ctx.fmtpos--;
1071
4.35M
                ctx.writer.overallocate = 0;
1072
4.35M
            }
1073
1074
25.2M
            if (_PyUnicodeWriter_WriteSubstring(&ctx.writer, ctx.fmtstr,
1075
25.2M
                                                nonfmtpos, ctx.fmtpos) < 0)
1076
0
                goto onError;
1077
25.2M
        }
1078
23.1M
        else {
1079
23.1M
            ctx.fmtpos++;
1080
23.1M
            if (unicode_format_arg(&ctx) == -1)
1081
945k
                goto onError;
1082
23.1M
        }
1083
48.3M
    }
1084
1085
11.7M
    if (ctx.argidx < ctx.arglen && !ctx.dict) {
1086
0
        PyErr_Format(PyExc_TypeError,
1087
0
                     "not all arguments converted during string formatting "
1088
0
                     "(required %zd, got %zd)",
1089
0
                     ctx.arglen < 0 ? 0 : ctx.argidx,
1090
0
                     ctx.arglen < 0 ? 1 : ctx.arglen);
1091
0
        goto onError;
1092
0
    }
1093
1094
11.7M
    if (ctx.args_owned) {
1095
14.4k
        Py_DECREF(ctx.args);
1096
14.4k
    }
1097
11.7M
    return _PyUnicodeWriter_Finish(&ctx.writer);
1098
1099
945k
  onError:
1100
945k
    _PyUnicodeWriter_Dealloc(&ctx.writer);
1101
945k
    if (ctx.args_owned) {
1102
0
        Py_DECREF(ctx.args);
1103
0
    }
1104
    return NULL;
1105
11.7M
}