1 /*
2  * Copyright 2020-2021 The OpenSSL Project Authors. All Rights Reserved.
3  *
4  * Licensed under the Apache License 2.0 (the "License").  You may not use
5  * this file except in compliance with the License.  You can obtain a copy
6  * in the file LICENSE in the source distribution or at
7  * https://www.openssl.org/source/license.html
8  */
9 
10 #include <openssl/core_names.h>
11 #include <openssl/bio.h>
12 #include <openssl/params.h>
13 #include <openssl/provider.h>
14 #include <openssl/evperr.h>
15 #include <openssl/ecerr.h>
16 #include <openssl/pkcs12err.h>
17 #include <openssl/x509err.h>
18 #include <openssl/trace.h>
19 #include "internal/bio.h"
20 #include "internal/provider.h"
21 #include "crypto/decoder.h"
22 #include "encoder_local.h"
23 #include "e_os.h"
24 
25 struct decoder_process_data_st {
26     OSSL_DECODER_CTX *ctx;
27 
28     /* Current BIO */
29     BIO *bio;
30 
31     /* Index of the current decoder instance to be processed */
32     size_t current_decoder_inst_index;
33     /* For tracing, count recursion level */
34     size_t recursion;
35 
36     /*-
37      * Flags
38      */
39     unsigned int flag_next_level_called : 1;
40     unsigned int flag_construct_called : 1;
41     unsigned int flag_input_structure_checked : 1;
42 };
43 
44 static int decoder_process(const OSSL_PARAM params[], void *arg);
45 
OSSL_DECODER_from_bio(OSSL_DECODER_CTX * ctx,BIO * in)46 int OSSL_DECODER_from_bio(OSSL_DECODER_CTX *ctx, BIO *in)
47 {
48     struct decoder_process_data_st data;
49     int ok = 0;
50     BIO *new_bio = NULL;
51     unsigned long lasterr;
52 
53     if (in == NULL) {
54         ERR_raise(ERR_LIB_OSSL_DECODER, ERR_R_PASSED_NULL_PARAMETER);
55         return 0;
56     }
57 
58     if (OSSL_DECODER_CTX_get_num_decoders(ctx) == 0) {
59         ERR_raise_data(ERR_LIB_OSSL_DECODER, OSSL_DECODER_R_DECODER_NOT_FOUND,
60                        "No decoders were found. For standard decoders you need "
61                        "at least one of the default or base providers "
62                        "available. Did you forget to load them?");
63         return 0;
64     }
65 
66     lasterr = ERR_peek_last_error();
67 
68     if (BIO_tell(in) < 0) {
69         new_bio = BIO_new(BIO_f_readbuffer());
70         if (new_bio == NULL)
71             return 0;
72         in = BIO_push(new_bio, in);
73     }
74     memset(&data, 0, sizeof(data));
75     data.ctx = ctx;
76     data.bio = in;
77 
78     /* Enable passphrase caching */
79     (void)ossl_pw_enable_passphrase_caching(&ctx->pwdata);
80 
81     ok = decoder_process(NULL, &data);
82 
83     if (!data.flag_construct_called) {
84         const char *spaces
85             = ctx->start_input_type != NULL && ctx->input_structure != NULL
86             ? " " : "";
87         const char *input_type_label
88             = ctx->start_input_type != NULL ? "Input type: " : "";
89         const char *input_structure_label
90             = ctx->input_structure != NULL ? "Input structure: " : "";
91         const char *comma
92             = ctx->start_input_type != NULL && ctx->input_structure != NULL
93             ? ", " : "";
94         const char *input_type
95             = ctx->start_input_type != NULL ? ctx->start_input_type : "";
96         const char *input_structure
97             = ctx->input_structure != NULL ? ctx->input_structure : "";
98 
99         if (ERR_peek_last_error() == lasterr || ERR_peek_error() == 0)
100             /* Prevent spurious decoding error but add at least something */
101             ERR_raise_data(ERR_LIB_OSSL_DECODER, ERR_R_UNSUPPORTED,
102                            "No supported data to decode. %s%s%s%s%s%s",
103                            spaces, input_type_label, input_type, comma,
104                            input_structure_label, input_structure);
105         ok = 0;
106     }
107 
108     /* Clear any internally cached passphrase */
109     (void)ossl_pw_clear_passphrase_cache(&ctx->pwdata);
110 
111     if (new_bio != NULL) {
112         BIO_pop(new_bio);
113         BIO_free(new_bio);
114     }
115     return ok;
116 }
117 
118 #ifndef OPENSSL_NO_STDIO
bio_from_file(FILE * fp)119 static BIO *bio_from_file(FILE *fp)
120 {
121     BIO *b;
122 
123     if ((b = BIO_new(BIO_s_file())) == NULL) {
124         ERR_raise(ERR_LIB_OSSL_DECODER, ERR_R_BIO_LIB);
125         return NULL;
126     }
127     BIO_set_fp(b, fp, BIO_NOCLOSE);
128     return b;
129 }
130 
OSSL_DECODER_from_fp(OSSL_DECODER_CTX * ctx,FILE * fp)131 int OSSL_DECODER_from_fp(OSSL_DECODER_CTX *ctx, FILE *fp)
132 {
133     BIO *b = bio_from_file(fp);
134     int ret = 0;
135 
136     if (b != NULL)
137         ret = OSSL_DECODER_from_bio(ctx, b);
138 
139     BIO_free(b);
140     return ret;
141 }
142 #endif
143 
OSSL_DECODER_from_data(OSSL_DECODER_CTX * ctx,const unsigned char ** pdata,size_t * pdata_len)144 int OSSL_DECODER_from_data(OSSL_DECODER_CTX *ctx, const unsigned char **pdata,
145                            size_t *pdata_len)
146 {
147     BIO *membio;
148     int ret = 0;
149 
150     if (pdata == NULL || *pdata == NULL || pdata_len == NULL) {
151         ERR_raise(ERR_LIB_OSSL_DECODER, ERR_R_PASSED_NULL_PARAMETER);
152         return 0;
153     }
154 
155     membio = BIO_new_mem_buf(*pdata, (int)*pdata_len);
156     if (OSSL_DECODER_from_bio(ctx, membio)) {
157         *pdata_len = (size_t)BIO_get_mem_data(membio, pdata);
158         ret = 1;
159     }
160     BIO_free(membio);
161 
162     return ret;
163 }
164 
OSSL_DECODER_CTX_set_selection(OSSL_DECODER_CTX * ctx,int selection)165 int OSSL_DECODER_CTX_set_selection(OSSL_DECODER_CTX *ctx, int selection)
166 {
167     if (!ossl_assert(ctx != NULL)) {
168         ERR_raise(ERR_LIB_OSSL_DECODER, ERR_R_PASSED_NULL_PARAMETER);
169         return 0;
170     }
171 
172     /*
173      * 0 is a valid selection, and means that the caller leaves
174      * it to code to discover what the selection is.
175      */
176     ctx->selection = selection;
177     return 1;
178 }
179 
OSSL_DECODER_CTX_set_input_type(OSSL_DECODER_CTX * ctx,const char * input_type)180 int OSSL_DECODER_CTX_set_input_type(OSSL_DECODER_CTX *ctx,
181                                     const char *input_type)
182 {
183     if (!ossl_assert(ctx != NULL)) {
184         ERR_raise(ERR_LIB_OSSL_DECODER, ERR_R_PASSED_NULL_PARAMETER);
185         return 0;
186     }
187 
188     /*
189      * NULL is a valid starting input type, and means that the caller leaves
190      * it to code to discover what the starting input type is.
191      */
192     ctx->start_input_type = input_type;
193     return 1;
194 }
195 
OSSL_DECODER_CTX_set_input_structure(OSSL_DECODER_CTX * ctx,const char * input_structure)196 int OSSL_DECODER_CTX_set_input_structure(OSSL_DECODER_CTX *ctx,
197                                          const char *input_structure)
198 {
199     if (!ossl_assert(ctx != NULL)) {
200         ERR_raise(ERR_LIB_OSSL_DECODER, ERR_R_PASSED_NULL_PARAMETER);
201         return 0;
202     }
203 
204     /*
205      * NULL is a valid starting input structure, and means that the caller
206      * leaves it to code to discover what the starting input structure is.
207      */
208     ctx->input_structure = input_structure;
209     return 1;
210 }
211 
ossl_decoder_instance_new(OSSL_DECODER * decoder,void * decoderctx)212 OSSL_DECODER_INSTANCE *ossl_decoder_instance_new(OSSL_DECODER *decoder,
213                                                  void *decoderctx)
214 {
215     OSSL_DECODER_INSTANCE *decoder_inst = NULL;
216     const OSSL_PROVIDER *prov;
217     OSSL_LIB_CTX *libctx;
218     const OSSL_PROPERTY_LIST *props;
219     const OSSL_PROPERTY_DEFINITION *prop;
220 
221     if (!ossl_assert(decoder != NULL)) {
222         ERR_raise(ERR_LIB_OSSL_DECODER, ERR_R_PASSED_NULL_PARAMETER);
223         return 0;
224     }
225 
226     if ((decoder_inst = OPENSSL_zalloc(sizeof(*decoder_inst))) == NULL) {
227         ERR_raise(ERR_LIB_OSSL_DECODER, ERR_R_MALLOC_FAILURE);
228         return 0;
229     }
230     if (!OSSL_DECODER_up_ref(decoder)) {
231         ERR_raise(ERR_LIB_OSSL_DECODER, ERR_R_INTERNAL_ERROR);
232         goto err;
233     }
234 
235     prov = OSSL_DECODER_get0_provider(decoder);
236     libctx = ossl_provider_libctx(prov);
237     props = ossl_decoder_parsed_properties(decoder);
238     if (props == NULL) {
239         ERR_raise_data(ERR_LIB_OSSL_DECODER, ERR_R_INVALID_PROPERTY_DEFINITION,
240                        "there are no property definitions with decoder %s",
241                        OSSL_DECODER_get0_name(decoder));
242         goto err;
243     }
244 
245     /* The "input" property is mandatory */
246     prop = ossl_property_find_property(props, libctx, "input");
247     decoder_inst->input_type = ossl_property_get_string_value(libctx, prop);
248     if (decoder_inst->input_type == NULL) {
249         ERR_raise_data(ERR_LIB_OSSL_DECODER, ERR_R_INVALID_PROPERTY_DEFINITION,
250                        "the mandatory 'input' property is missing "
251                        "for decoder %s (properties: %s)",
252                        OSSL_DECODER_get0_name(decoder),
253                        OSSL_DECODER_get0_properties(decoder));
254         goto err;
255     }
256 
257     /* The "structure" property is optional */
258     prop = ossl_property_find_property(props, libctx, "structure");
259     if (prop != NULL) {
260         decoder_inst->input_structure
261             = ossl_property_get_string_value(libctx, prop);
262     }
263 
264     decoder_inst->decoder = decoder;
265     decoder_inst->decoderctx = decoderctx;
266     return decoder_inst;
267  err:
268     ossl_decoder_instance_free(decoder_inst);
269     return NULL;
270 }
271 
ossl_decoder_instance_free(OSSL_DECODER_INSTANCE * decoder_inst)272 void ossl_decoder_instance_free(OSSL_DECODER_INSTANCE *decoder_inst)
273 {
274     if (decoder_inst != NULL) {
275         if (decoder_inst->decoder != NULL)
276             decoder_inst->decoder->freectx(decoder_inst->decoderctx);
277         decoder_inst->decoderctx = NULL;
278         OSSL_DECODER_free(decoder_inst->decoder);
279         decoder_inst->decoder = NULL;
280         OPENSSL_free(decoder_inst);
281     }
282 }
283 
ossl_decoder_ctx_add_decoder_inst(OSSL_DECODER_CTX * ctx,OSSL_DECODER_INSTANCE * di)284 int ossl_decoder_ctx_add_decoder_inst(OSSL_DECODER_CTX *ctx,
285                                       OSSL_DECODER_INSTANCE *di)
286 {
287     int ok;
288 
289     if (ctx->decoder_insts == NULL
290         && (ctx->decoder_insts =
291             sk_OSSL_DECODER_INSTANCE_new_null()) == NULL) {
292         ERR_raise(ERR_LIB_OSSL_DECODER, ERR_R_MALLOC_FAILURE);
293         return 0;
294     }
295 
296     ok = (sk_OSSL_DECODER_INSTANCE_push(ctx->decoder_insts, di) > 0);
297     if (ok) {
298         OSSL_TRACE_BEGIN(DECODER) {
299             BIO_printf(trc_out,
300                        "(ctx %p) Added decoder instance %p for decoder %p\n"
301                        "    %s with %s\n",
302                        (void *)ctx, (void *)di, (void *)di->decoder,
303                        OSSL_DECODER_get0_name(di->decoder),
304                        OSSL_DECODER_get0_properties(di->decoder));
305         } OSSL_TRACE_END(DECODER);
306     }
307     return ok;
308 }
309 
OSSL_DECODER_CTX_add_decoder(OSSL_DECODER_CTX * ctx,OSSL_DECODER * decoder)310 int OSSL_DECODER_CTX_add_decoder(OSSL_DECODER_CTX *ctx, OSSL_DECODER *decoder)
311 {
312     OSSL_DECODER_INSTANCE *decoder_inst = NULL;
313     const OSSL_PROVIDER *prov = NULL;
314     void *decoderctx = NULL;
315     void *provctx = NULL;
316 
317     if (!ossl_assert(ctx != NULL) || !ossl_assert(decoder != NULL)) {
318         ERR_raise(ERR_LIB_OSSL_DECODER, ERR_R_PASSED_NULL_PARAMETER);
319         return 0;
320     }
321 
322     prov = OSSL_DECODER_get0_provider(decoder);
323     provctx = OSSL_PROVIDER_get0_provider_ctx(prov);
324 
325     if ((decoderctx = decoder->newctx(provctx)) == NULL
326         || (decoder_inst =
327             ossl_decoder_instance_new(decoder, decoderctx)) == NULL)
328         goto err;
329     /* Avoid double free of decoderctx on further errors */
330     decoderctx = NULL;
331 
332     if (!ossl_decoder_ctx_add_decoder_inst(ctx, decoder_inst))
333         goto err;
334 
335     return 1;
336  err:
337     ossl_decoder_instance_free(decoder_inst);
338     if (decoderctx != NULL)
339         decoder->freectx(decoderctx);
340     return 0;
341 }
342 
343 struct collect_extra_decoder_data_st {
344     OSSL_DECODER_CTX *ctx;
345     const char *output_type;
346     /*
347      * 0 to check that the decoder's input type is the same as the decoder name
348      * 1 to check that the decoder's input type differs from the decoder name
349      */
350     enum { IS_SAME = 0, IS_DIFFERENT = 1 } type_check;
351     size_t w_prev_start, w_prev_end; /* "previous" decoders */
352     size_t w_new_start, w_new_end;   /* "new" decoders */
353 };
354 
DEFINE_STACK_OF(OSSL_DECODER)355 DEFINE_STACK_OF(OSSL_DECODER)
356 
357 static void collect_all_decoders(OSSL_DECODER *decoder, void *arg)
358 {
359     STACK_OF(OSSL_DECODER) *skdecoders = arg;
360 
361     if (OSSL_DECODER_up_ref(decoder))
362         sk_OSSL_DECODER_push(skdecoders, decoder);
363 }
364 
collect_extra_decoder(OSSL_DECODER * decoder,void * arg)365 static void collect_extra_decoder(OSSL_DECODER *decoder, void *arg)
366 {
367     struct collect_extra_decoder_data_st *data = arg;
368     size_t j;
369     const OSSL_PROVIDER *prov = OSSL_DECODER_get0_provider(decoder);
370     void *provctx = OSSL_PROVIDER_get0_provider_ctx(prov);
371 
372     if (OSSL_DECODER_is_a(decoder, data->output_type)) {
373         void *decoderctx = NULL;
374         OSSL_DECODER_INSTANCE *di = NULL;
375 
376         OSSL_TRACE_BEGIN(DECODER) {
377             BIO_printf(trc_out,
378                        "(ctx %p) [%d] Checking out decoder %p:\n"
379                        "    %s with %s\n",
380                        (void *)data->ctx, data->type_check, (void *)decoder,
381                        OSSL_DECODER_get0_name(decoder),
382                        OSSL_DECODER_get0_properties(decoder));
383         } OSSL_TRACE_END(DECODER);
384 
385         /*
386          * Check that we don't already have this decoder in our stack,
387          * starting with the previous windows but also looking at what
388          * we have added in the current window.
389          */
390         for (j = data->w_prev_start; j < data->w_new_end; j++) {
391             OSSL_DECODER_INSTANCE *check_inst =
392                 sk_OSSL_DECODER_INSTANCE_value(data->ctx->decoder_insts, j);
393 
394             if (decoder->base.algodef == check_inst->decoder->base.algodef) {
395                 /* We found it, so don't do anything more */
396                 OSSL_TRACE_BEGIN(DECODER) {
397                     BIO_printf(trc_out,
398                                "    REJECTED: already exists in the chain\n");
399                 } OSSL_TRACE_END(DECODER);
400                 return;
401             }
402         }
403 
404         if ((decoderctx = decoder->newctx(provctx)) == NULL)
405             return;
406 
407         if ((di = ossl_decoder_instance_new(decoder, decoderctx)) == NULL) {
408             decoder->freectx(decoderctx);
409             return;
410         }
411 
412         switch (data->type_check) {
413         case IS_SAME:
414             /* If it differs, this is not a decoder to add for now. */
415             if (!OSSL_DECODER_is_a(decoder,
416                                    OSSL_DECODER_INSTANCE_get_input_type(di))) {
417                 ossl_decoder_instance_free(di);
418                 OSSL_TRACE_BEGIN(DECODER) {
419                     BIO_printf(trc_out,
420                                "    REJECTED: input type doesn't match output type\n");
421                 } OSSL_TRACE_END(DECODER);
422                 return;
423             }
424             break;
425         case IS_DIFFERENT:
426             /* If it's the same, this is not a decoder to add for now. */
427             if (OSSL_DECODER_is_a(decoder,
428                                   OSSL_DECODER_INSTANCE_get_input_type(di))) {
429                 ossl_decoder_instance_free(di);
430                 OSSL_TRACE_BEGIN(DECODER) {
431                     BIO_printf(trc_out,
432                                "    REJECTED: input type matches output type\n");
433                 } OSSL_TRACE_END(DECODER);
434                 return;
435             }
436             break;
437         }
438 
439         /*
440          * Apart from keeping w_new_end up to date, We don't care about
441          * errors here.  If it doesn't collect, then it doesn't...
442          */
443         if (!ossl_decoder_ctx_add_decoder_inst(data->ctx, di)) {
444             ossl_decoder_instance_free(di);
445             return;
446         }
447 
448         data->w_new_end++;
449     }
450 }
451 
OSSL_DECODER_CTX_add_extra(OSSL_DECODER_CTX * ctx,OSSL_LIB_CTX * libctx,const char * propq)452 int OSSL_DECODER_CTX_add_extra(OSSL_DECODER_CTX *ctx,
453                                OSSL_LIB_CTX *libctx, const char *propq)
454 {
455     /*
456      * This function goes through existing decoder methods in
457      * |ctx->decoder_insts|, and tries to fetch new decoders that produce
458      * what the existing ones want as input, and push those newly fetched
459      * decoders on top of the same stack.
460      * Then it does the same again, but looping over the newly fetched
461      * decoders, until there are no more decoders to be fetched, or
462      * when we have done this 10 times.
463      *
464      * we do this with sliding windows on the stack by keeping track of indexes
465      * and of the end.
466      *
467      * +----------------+
468      * |   DER to RSA   | <--- w_prev_start
469      * +----------------+
470      * |   DER to DSA   |
471      * +----------------+
472      * |   DER to DH    |
473      * +----------------+
474      * |   PEM to DER   | <--- w_prev_end, w_new_start
475      * +----------------+
476      *                    <--- w_new_end
477      */
478     struct collect_extra_decoder_data_st data;
479     size_t depth = 0; /* Counts the number of iterations */
480     size_t count; /* Calculates how many were added in each iteration */
481     size_t numdecoders;
482     STACK_OF(OSSL_DECODER) *skdecoders;
483 
484     if (!ossl_assert(ctx != NULL)) {
485         ERR_raise(ERR_LIB_OSSL_DECODER, ERR_R_PASSED_NULL_PARAMETER);
486         return 0;
487     }
488 
489     /*
490      * If there is no stack of OSSL_DECODER_INSTANCE, we have nothing
491      * more to add.  That's fine.
492      */
493     if (ctx->decoder_insts == NULL)
494         return 1;
495 
496     OSSL_TRACE_BEGIN(DECODER) {
497         BIO_printf(trc_out, "(ctx %p) Looking for extra decoders\n",
498                    (void *)ctx);
499     } OSSL_TRACE_END(DECODER);
500 
501 
502     skdecoders = sk_OSSL_DECODER_new_null();
503     if (skdecoders == NULL) {
504         ERR_raise(ERR_LIB_OSSL_DECODER, ERR_R_MALLOC_FAILURE);
505         return 0;
506     }
507     OSSL_DECODER_do_all_provided(libctx, collect_all_decoders, skdecoders);
508     numdecoders = sk_OSSL_DECODER_num(skdecoders);
509 
510     memset(&data, 0, sizeof(data));
511     data.ctx = ctx;
512     data.w_prev_start = 0;
513     data.w_prev_end = sk_OSSL_DECODER_INSTANCE_num(ctx->decoder_insts);
514     do {
515         size_t i, j;
516 
517         data.w_new_start = data.w_new_end = data.w_prev_end;
518 
519         /*
520          * Two iterations:
521          * 0.  All decoders that have the same name as their input type.
522          *     This allows for decoders that unwrap some data in a specific
523          *     encoding, and pass the result on with the same encoding.
524          * 1.  All decoders that a different name than their input type.
525          */
526         for (data.type_check = IS_SAME;
527              data.type_check <= IS_DIFFERENT;
528              data.type_check++) {
529             for (i = data.w_prev_start; i < data.w_prev_end; i++) {
530                 OSSL_DECODER_INSTANCE *decoder_inst =
531                     sk_OSSL_DECODER_INSTANCE_value(ctx->decoder_insts, i);
532 
533                 data.output_type
534                     = OSSL_DECODER_INSTANCE_get_input_type(decoder_inst);
535 
536 
537                 for (j = 0; j < numdecoders; j++)
538                     collect_extra_decoder(sk_OSSL_DECODER_value(skdecoders, j),
539                                           &data);
540             }
541         }
542         /* How many were added in this iteration */
543         count = data.w_new_end - data.w_new_start;
544 
545         /* Slide the "previous decoder" windows */
546         data.w_prev_start = data.w_new_start;
547         data.w_prev_end = data.w_new_end;
548 
549         depth++;
550     } while (count != 0 && depth <= 10);
551 
552     sk_OSSL_DECODER_pop_free(skdecoders, OSSL_DECODER_free);
553     return 1;
554 }
555 
OSSL_DECODER_CTX_get_num_decoders(OSSL_DECODER_CTX * ctx)556 int OSSL_DECODER_CTX_get_num_decoders(OSSL_DECODER_CTX *ctx)
557 {
558     if (ctx == NULL || ctx->decoder_insts == NULL)
559         return 0;
560     return sk_OSSL_DECODER_INSTANCE_num(ctx->decoder_insts);
561 }
562 
OSSL_DECODER_CTX_set_construct(OSSL_DECODER_CTX * ctx,OSSL_DECODER_CONSTRUCT * construct)563 int OSSL_DECODER_CTX_set_construct(OSSL_DECODER_CTX *ctx,
564                                    OSSL_DECODER_CONSTRUCT *construct)
565 {
566     if (!ossl_assert(ctx != NULL)) {
567         ERR_raise(ERR_LIB_OSSL_DECODER, ERR_R_PASSED_NULL_PARAMETER);
568         return 0;
569     }
570     ctx->construct = construct;
571     return 1;
572 }
573 
OSSL_DECODER_CTX_set_construct_data(OSSL_DECODER_CTX * ctx,void * construct_data)574 int OSSL_DECODER_CTX_set_construct_data(OSSL_DECODER_CTX *ctx,
575                                         void *construct_data)
576 {
577     if (!ossl_assert(ctx != NULL)) {
578         ERR_raise(ERR_LIB_OSSL_DECODER, ERR_R_PASSED_NULL_PARAMETER);
579         return 0;
580     }
581     ctx->construct_data = construct_data;
582     return 1;
583 }
584 
OSSL_DECODER_CTX_set_cleanup(OSSL_DECODER_CTX * ctx,OSSL_DECODER_CLEANUP * cleanup)585 int OSSL_DECODER_CTX_set_cleanup(OSSL_DECODER_CTX *ctx,
586                                  OSSL_DECODER_CLEANUP *cleanup)
587 {
588     if (!ossl_assert(ctx != NULL)) {
589         ERR_raise(ERR_LIB_OSSL_DECODER, ERR_R_PASSED_NULL_PARAMETER);
590         return 0;
591     }
592     ctx->cleanup = cleanup;
593     return 1;
594 }
595 
596 OSSL_DECODER_CONSTRUCT *
OSSL_DECODER_CTX_get_construct(OSSL_DECODER_CTX * ctx)597 OSSL_DECODER_CTX_get_construct(OSSL_DECODER_CTX *ctx)
598 {
599     if (ctx == NULL)
600         return NULL;
601     return ctx->construct;
602 }
603 
OSSL_DECODER_CTX_get_construct_data(OSSL_DECODER_CTX * ctx)604 void *OSSL_DECODER_CTX_get_construct_data(OSSL_DECODER_CTX *ctx)
605 {
606     if (ctx == NULL)
607         return NULL;
608     return ctx->construct_data;
609 }
610 
611 OSSL_DECODER_CLEANUP *
OSSL_DECODER_CTX_get_cleanup(OSSL_DECODER_CTX * ctx)612 OSSL_DECODER_CTX_get_cleanup(OSSL_DECODER_CTX *ctx)
613 {
614     if (ctx == NULL)
615         return NULL;
616     return ctx->cleanup;
617 }
618 
OSSL_DECODER_export(OSSL_DECODER_INSTANCE * decoder_inst,void * reference,size_t reference_sz,OSSL_CALLBACK * export_cb,void * export_cbarg)619 int OSSL_DECODER_export(OSSL_DECODER_INSTANCE *decoder_inst,
620                         void *reference, size_t reference_sz,
621                         OSSL_CALLBACK *export_cb, void *export_cbarg)
622 {
623     OSSL_DECODER *decoder = NULL;
624     void *decoderctx = NULL;
625 
626     if (!(ossl_assert(decoder_inst != NULL)
627           && ossl_assert(reference != NULL)
628           && ossl_assert(export_cb != NULL)
629           && ossl_assert(export_cbarg != NULL))) {
630         ERR_raise(ERR_LIB_OSSL_DECODER, ERR_R_PASSED_NULL_PARAMETER);
631         return 0;
632     }
633 
634     decoder = OSSL_DECODER_INSTANCE_get_decoder(decoder_inst);
635     decoderctx = OSSL_DECODER_INSTANCE_get_decoder_ctx(decoder_inst);
636     return decoder->export_object(decoderctx, reference, reference_sz,
637                                   export_cb, export_cbarg);
638 }
639 
640 OSSL_DECODER *
OSSL_DECODER_INSTANCE_get_decoder(OSSL_DECODER_INSTANCE * decoder_inst)641 OSSL_DECODER_INSTANCE_get_decoder(OSSL_DECODER_INSTANCE *decoder_inst)
642 {
643     if (decoder_inst == NULL)
644         return NULL;
645     return decoder_inst->decoder;
646 }
647 
648 void *
OSSL_DECODER_INSTANCE_get_decoder_ctx(OSSL_DECODER_INSTANCE * decoder_inst)649 OSSL_DECODER_INSTANCE_get_decoder_ctx(OSSL_DECODER_INSTANCE *decoder_inst)
650 {
651     if (decoder_inst == NULL)
652         return NULL;
653     return decoder_inst->decoderctx;
654 }
655 
656 const char *
OSSL_DECODER_INSTANCE_get_input_type(OSSL_DECODER_INSTANCE * decoder_inst)657 OSSL_DECODER_INSTANCE_get_input_type(OSSL_DECODER_INSTANCE *decoder_inst)
658 {
659     if (decoder_inst == NULL)
660         return NULL;
661     return decoder_inst->input_type;
662 }
663 
664 const char *
OSSL_DECODER_INSTANCE_get_input_structure(OSSL_DECODER_INSTANCE * decoder_inst,int * was_set)665 OSSL_DECODER_INSTANCE_get_input_structure(OSSL_DECODER_INSTANCE *decoder_inst,
666                                           int *was_set)
667 {
668     if (decoder_inst == NULL)
669         return NULL;
670     *was_set = decoder_inst->flag_input_structure_was_set;
671     return decoder_inst->input_structure;
672 }
673 
decoder_process(const OSSL_PARAM params[],void * arg)674 static int decoder_process(const OSSL_PARAM params[], void *arg)
675 {
676     struct decoder_process_data_st *data = arg;
677     OSSL_DECODER_CTX *ctx = data->ctx;
678     OSSL_DECODER_INSTANCE *decoder_inst = NULL;
679     OSSL_DECODER *decoder = NULL;
680     OSSL_CORE_BIO *cbio = NULL;
681     BIO *bio = data->bio;
682     long loc;
683     size_t i;
684     int ok = 0;
685     /* For recursions */
686     struct decoder_process_data_st new_data;
687     const char *data_type = NULL;
688     const char *data_structure = NULL;
689 
690     /*
691      * This is an indicator up the call stack that something was indeed
692      * decoded, leading to a recursive call of this function.
693      */
694     data->flag_next_level_called = 1;
695 
696     memset(&new_data, 0, sizeof(new_data));
697     new_data.ctx = data->ctx;
698     new_data.recursion = data->recursion + 1;
699 
700 #define LEVEL_STR ">>>>>>>>>>>>>>>>"
701 #define LEVEL (new_data.recursion < sizeof(LEVEL_STR)                   \
702                ? &LEVEL_STR[sizeof(LEVEL_STR) - new_data.recursion - 1] \
703                : LEVEL_STR "...")
704 
705     if (params == NULL) {
706         /* First iteration, where we prepare for what is to come */
707 
708         OSSL_TRACE_BEGIN(DECODER) {
709             BIO_printf(trc_out,
710                        "(ctx %p) starting to walk the decoder chain\n",
711                        (void *)new_data.ctx);
712         } OSSL_TRACE_END(DECODER);
713 
714         data->current_decoder_inst_index =
715             OSSL_DECODER_CTX_get_num_decoders(ctx);
716 
717         bio = data->bio;
718     } else {
719         const OSSL_PARAM *p;
720         const char *trace_data_structure;
721 
722         decoder_inst =
723             sk_OSSL_DECODER_INSTANCE_value(ctx->decoder_insts,
724                                            data->current_decoder_inst_index);
725         decoder = OSSL_DECODER_INSTANCE_get_decoder(decoder_inst);
726 
727         data->flag_construct_called = 0;
728         if (ctx->construct != NULL) {
729             int rv;
730 
731             OSSL_TRACE_BEGIN(DECODER) {
732                 BIO_printf(trc_out,
733                            "(ctx %p) %s Running constructor\n",
734                            (void *)new_data.ctx, LEVEL);
735             } OSSL_TRACE_END(DECODER);
736 
737             rv = ctx->construct(decoder_inst, params, ctx->construct_data);
738 
739             OSSL_TRACE_BEGIN(DECODER) {
740                 BIO_printf(trc_out,
741                            "(ctx %p) %s Running constructor => %d\n",
742                            (void *)new_data.ctx, LEVEL, rv);
743             } OSSL_TRACE_END(DECODER);
744 
745             data->flag_construct_called = 1;
746             ok = (rv > 0);
747             if (ok)
748                 goto end;
749         }
750 
751         /* The constructor didn't return success */
752 
753         /*
754          * so we try to use the object we got and feed it to any next
755          * decoder that will take it.  Object references are not
756          * allowed for this.
757          * If this data isn't present, decoding has failed.
758          */
759 
760         p = OSSL_PARAM_locate_const(params, OSSL_OBJECT_PARAM_DATA);
761         if (p == NULL || p->data_type != OSSL_PARAM_OCTET_STRING)
762             goto end;
763         new_data.bio = BIO_new_mem_buf(p->data, (int)p->data_size);
764         if (new_data.bio == NULL)
765             goto end;
766         bio = new_data.bio;
767 
768         /* Get the data type if there is one */
769         p = OSSL_PARAM_locate_const(params, OSSL_OBJECT_PARAM_DATA_TYPE);
770         if (p != NULL && !OSSL_PARAM_get_utf8_string_ptr(p, &data_type))
771             goto end;
772 
773         /* Get the data structure if there is one */
774         p = OSSL_PARAM_locate_const(params, OSSL_OBJECT_PARAM_DATA_STRUCTURE);
775         if (p != NULL && !OSSL_PARAM_get_utf8_string_ptr(p, &data_structure))
776             goto end;
777 
778         /*
779          * If the data structure is "type-specific" and the data type is
780          * given, we drop the data structure.  The reasoning is that the
781          * data type is already enough to find the applicable next decoder,
782          * so an additional "type-specific" data structure is extraneous.
783          *
784          * Furthermore, if the OSSL_DECODER caller asked for a type specific
785          * structure under another name, such as "DH", we get a mismatch
786          * if the data structure we just received is "type-specific".
787          * There's only so much you can do without infusing this code with
788          * too special knowledge.
789          */
790         trace_data_structure = data_structure;
791         if (data_type != NULL && data_structure != NULL
792             && strcasecmp(data_structure, "type-specific") == 0)
793             data_structure = NULL;
794 
795         OSSL_TRACE_BEGIN(DECODER) {
796             BIO_printf(trc_out,
797                        "(ctx %p) %s incoming from previous decoder (%p):\n"
798                        "    data type: %s, data structure: %s%s\n",
799                        (void *)new_data.ctx, LEVEL, (void *)decoder,
800                        data_type, trace_data_structure,
801                        (trace_data_structure == data_structure
802                         ? "" : " (dropped)"));
803         } OSSL_TRACE_END(DECODER);
804     }
805 
806     /*
807      * If we have no more decoders to look through at this point,
808      * we failed
809      */
810     if (data->current_decoder_inst_index == 0)
811         goto end;
812 
813     if ((loc = BIO_tell(bio)) < 0) {
814         ERR_raise(ERR_LIB_OSSL_DECODER, ERR_R_BIO_LIB);
815         goto end;
816     }
817 
818     if ((cbio = ossl_core_bio_new_from_bio(bio)) == NULL) {
819         ERR_raise(ERR_LIB_OSSL_DECODER, ERR_R_MALLOC_FAILURE);
820         goto end;
821     }
822 
823     for (i = data->current_decoder_inst_index; i-- > 0;) {
824         OSSL_DECODER_INSTANCE *new_decoder_inst =
825             sk_OSSL_DECODER_INSTANCE_value(ctx->decoder_insts, i);
826         OSSL_DECODER *new_decoder =
827             OSSL_DECODER_INSTANCE_get_decoder(new_decoder_inst);
828         void *new_decoderctx =
829             OSSL_DECODER_INSTANCE_get_decoder_ctx(new_decoder_inst);
830         const char *new_input_type =
831             OSSL_DECODER_INSTANCE_get_input_type(new_decoder_inst);
832         int n_i_s_was_set = 0;   /* We don't care here */
833         const char *new_input_structure =
834             OSSL_DECODER_INSTANCE_get_input_structure(new_decoder_inst,
835                                                       &n_i_s_was_set);
836 
837         OSSL_TRACE_BEGIN(DECODER) {
838             BIO_printf(trc_out,
839                        "(ctx %p) %s [%u] Considering decoder instance %p (decoder %p):\n"
840                        "    %s with %s\n",
841                        (void *)new_data.ctx, LEVEL, (unsigned int)i,
842                        (void *)new_decoder_inst, (void *)new_decoder,
843                        OSSL_DECODER_get0_name(new_decoder),
844                        OSSL_DECODER_get0_properties(new_decoder));
845         } OSSL_TRACE_END(DECODER);
846 
847         /*
848          * If |decoder| is NULL, it means we've just started, and the caller
849          * may have specified what it expects the initial input to be.  If
850          * that's the case, we do this extra check.
851          */
852         if (decoder == NULL && ctx->start_input_type != NULL
853             && strcasecmp(ctx->start_input_type, new_input_type) != 0) {
854             OSSL_TRACE_BEGIN(DECODER) {
855                 BIO_printf(trc_out,
856                            "(ctx %p) %s [%u] the start input type '%s' doesn't match the input type of the considered decoder, skipping...\n",
857                            (void *)new_data.ctx, LEVEL, (unsigned int)i,
858                            ctx->start_input_type);
859             } OSSL_TRACE_END(DECODER);
860             continue;
861         }
862 
863         /*
864          * If we have a previous decoder, we check that the input type
865          * of the next to be used matches the type of this previous one.
866          * |new_input_type| holds the value of the "input-type" parameter
867          * for the decoder we're currently considering.
868          */
869         if (decoder != NULL && !OSSL_DECODER_is_a(decoder, new_input_type)) {
870             OSSL_TRACE_BEGIN(DECODER) {
871                 BIO_printf(trc_out,
872                            "(ctx %p) %s [%u] the input type doesn't match the name of the previous decoder (%p), skipping...\n",
873                            (void *)new_data.ctx, LEVEL, (unsigned int)i,
874                            (void *)decoder);
875             } OSSL_TRACE_END(DECODER);
876             continue;
877         }
878 
879         /*
880          * If the previous decoder gave us a data type, we check to see
881          * if that matches the decoder we're currently considering.
882          */
883         if (data_type != NULL && !OSSL_DECODER_is_a(new_decoder, data_type)) {
884             OSSL_TRACE_BEGIN(DECODER) {
885                 BIO_printf(trc_out,
886                            "(ctx %p) %s [%u] the previous decoder's data type doesn't match the name of the considered decoder, skipping...\n",
887                            (void *)new_data.ctx, LEVEL, (unsigned int)i);
888             } OSSL_TRACE_END(DECODER);
889             continue;
890         }
891 
892         /*
893          * If the previous decoder gave us a data structure name, we check
894          * to see that it matches the input data structure of the decoder
895          * we're currently considering.
896          */
897         if (data_structure != NULL
898             && (new_input_structure == NULL
899                 || strcasecmp(data_structure, new_input_structure) != 0)) {
900             OSSL_TRACE_BEGIN(DECODER) {
901                 BIO_printf(trc_out,
902                            "(ctx %p) %s [%u] the previous decoder's data structure doesn't match the input structure of the considered decoder, skipping...\n",
903                            (void *)new_data.ctx, LEVEL, (unsigned int)i);
904             } OSSL_TRACE_END(DECODER);
905             continue;
906         }
907 
908         /*
909          * If the decoder we're currently considering specifies a structure,
910          * and this check hasn't already been done earlier in this chain of
911          * decoder_process() calls, check that it matches the user provided
912          * input structure, if one is given.
913          */
914         if (!data->flag_input_structure_checked
915             && ctx->input_structure != NULL
916             && new_input_structure != NULL) {
917             data->flag_input_structure_checked = 1;
918             if (strcasecmp(new_input_structure, ctx->input_structure) != 0) {
919                 OSSL_TRACE_BEGIN(DECODER) {
920                     BIO_printf(trc_out,
921                                "(ctx %p) %s [%u] the previous decoder's data structure doesn't match the input structure given by the user, skipping...\n",
922                                (void *)new_data.ctx, LEVEL, (unsigned int)i);
923                 } OSSL_TRACE_END(DECODER);
924                 continue;
925             }
926         }
927 
928         /*
929          * Checking the return value of BIO_reset() or BIO_seek() is unsafe.
930          * Furthermore, BIO_reset() is unsafe to use if the source BIO happens
931          * to be a BIO_s_mem(), because the earlier BIO_tell() gives us zero
932          * no matter where we are in the underlying buffer we're reading from.
933          *
934          * So, we simply do a BIO_seek(), and use BIO_tell() that we're back
935          * at the same position.  This is a best effort attempt, but BIO_seek()
936          * and BIO_tell() should come as a pair...
937          */
938         (void)BIO_seek(bio, loc);
939         if (BIO_tell(bio) != loc)
940             goto end;
941 
942         /* Recurse */
943         OSSL_TRACE_BEGIN(DECODER) {
944             BIO_printf(trc_out,
945                        "(ctx %p) %s [%u] Running decoder instance %p\n",
946                        (void *)new_data.ctx, LEVEL, (unsigned int)i,
947                        (void *)new_decoder_inst);
948         } OSSL_TRACE_END(DECODER);
949 
950         /*
951          * We only care about errors reported from decoder implementations
952          * if it returns false (i.e. there was a fatal error).
953          */
954         ERR_set_mark();
955 
956         new_data.current_decoder_inst_index = i;
957         new_data.flag_input_structure_checked
958             = data->flag_input_structure_checked;
959         ok = new_decoder->decode(new_decoderctx, cbio,
960                                  new_data.ctx->selection,
961                                  decoder_process, &new_data,
962                                  ossl_pw_passphrase_callback_dec,
963                                  &new_data.ctx->pwdata);
964 
965         OSSL_TRACE_BEGIN(DECODER) {
966             BIO_printf(trc_out,
967                        "(ctx %p) %s [%u] Running decoder instance %p => %d"
968                        " (recursed further: %s, construct called: %s)\n",
969                        (void *)new_data.ctx, LEVEL, (unsigned int)i,
970                        (void *)new_decoder_inst, ok,
971                        new_data.flag_next_level_called ? "yes" : "no",
972                        new_data.flag_construct_called ? "yes" : "no");
973         } OSSL_TRACE_END(DECODER);
974 
975         data->flag_construct_called = new_data.flag_construct_called;
976 
977         /* Break on error or if we tried to construct an object already */
978         if (!ok || data->flag_construct_called) {
979             ERR_clear_last_mark();
980             break;
981         }
982         ERR_pop_to_mark();
983 
984         /*
985          * Break if the decoder implementation that we called recursed, since
986          * that indicates that it successfully decoded something.
987          */
988         if (new_data.flag_next_level_called)
989             break;
990     }
991 
992  end:
993     ossl_core_bio_free(cbio);
994     BIO_free(new_data.bio);
995     return ok;
996 }
997