/src/libavc/fuzzer/avc_dec_fuzzer.cpp
Line  | Count  | Source  | 
1  |  | /******************************************************************************  | 
2  |  |  *  | 
3  |  |  * Copyright (C) 2019 The Android Open Source Project  | 
4  |  |  *  | 
5  |  |  * Licensed under the Apache License, Version 2.0 (the "License");  | 
6  |  |  * you may not use this file except in compliance with the License.  | 
7  |  |  * You may obtain a copy of the License at:  | 
8  |  |  *  | 
9  |  |  * http://www.apache.org/licenses/LICENSE-2.0  | 
10  |  |  *  | 
11  |  |  * Unless required by applicable law or agreed to in writing, software  | 
12  |  |  * distributed under the License is distributed on an "AS IS" BASIS,  | 
13  |  |  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.  | 
14  |  |  * See the License for the specific language governing permissions and  | 
15  |  |  * limitations under the License.  | 
16  |  |  *  | 
17  |  |  *****************************************************************************  | 
18  |  |  * Originally developed and contributed by Ittiam Systems Pvt. Ltd, Bangalore  | 
19  |  |  */  | 
20  |  |  | 
21  |  | #include <stddef.h>  | 
22  |  | #include <stdint.h>  | 
23  |  | #include <stdio.h>  | 
24  |  | #include <stdlib.h>  | 
25  |  | #include <string.h>  | 
26  |  |  | 
27  |  | #include <algorithm>  | 
28  |  | #include <memory>  | 
29  |  |  | 
30  |  | #include "ih264_typedefs.h"  | 
31  |  | #include "ih264d.h"  | 
32  |  | #include "iv.h"  | 
33  |  | #include "ivd.h"  | 
34  |  |  | 
35  |  | #define NELEMENTS(x) (sizeof(x) / sizeof(x[0]))  | 
36  | 973k  | #define ivd_api_function ih264d_api_function  | 
37  |  | const IV_COLOR_FORMAT_T supportedColorFormats[] = { | 
38  |  |     IV_YUV_420P,   IV_YUV_420SP_UV, IV_YUV_420SP_VU,  | 
39  |  |     IV_YUV_422ILE, IV_RGB_565,      IV_RGBA_8888};  | 
40  |  |  | 
41  |  | /* Decoder ignores invalid arch, i.e. for arm build, if SSSE3 is requested,  | 
42  |  |  * decoder defaults to a supported configuration. So same set of supported  | 
43  |  |  * architectures can be used in arm/arm64/x86 builds */  | 
44  |  | const IVD_ARCH_T supportedArchitectures[] = { | 
45  |  |     ARCH_ARM_NONEON,  ARCH_ARM_A9Q,   ARCH_ARM_NEONINTR, ARCH_ARMV8_GENERIC,  | 
46  |  |     ARCH_X86_GENERIC, ARCH_X86_SSSE3, ARCH_X86_SSE42};  | 
47  |  |  | 
48  |  | enum { | 
49  |  |   OFFSET_COLOR_FORMAT = 6,  | 
50  |  |   OFFSET_NUM_CORES,  | 
51  |  |   OFFSET_ARCH,  | 
52  |  |   /* Should be the last entry */  | 
53  |  |   OFFSET_MAX,  | 
54  |  | };  | 
55  |  |  | 
56  |  | const static int kMaxNumDecodeCalls = 100;  | 
57  |  | const static int kSupportedColorFormats = NELEMENTS(supportedColorFormats);  | 
58  |  | const static int kSupportedArchitectures = NELEMENTS(supportedArchitectures);  | 
59  |  | const static int kMaxCores = 4;  | 
60  | 4.37M  | void *iv_aligned_malloc(void *ctxt, WORD32 alignment, WORD32 size) { | 
61  | 4.37M  |   void *buf = NULL;  | 
62  | 4.37M  |   (void)ctxt;  | 
63  | 4.37M  |   if (0 != posix_memalign(&buf, alignment, size)) { | 
64  | 0  |       return NULL;  | 
65  | 0  |   }  | 
66  | 4.37M  |   return buf;  | 
67  | 4.37M  | }  | 
68  |  |  | 
69  | 4.36M  | void iv_aligned_free(void *ctxt, void *buf) { | 
70  | 4.36M  |   (void)ctxt;  | 
71  | 4.36M  |   free(buf);  | 
72  | 4.36M  | }  | 
73  |  |  | 
74  |  | class Codec { | 
75  |  |  public:  | 
76  |  |   Codec(IV_COLOR_FORMAT_T colorFormat, size_t numCores);  | 
77  |  |   ~Codec();  | 
78  |  |  | 
79  |  |   void createCodec();  | 
80  |  |   void deleteCodec();  | 
81  |  |   void resetCodec();  | 
82  |  |   void setCores();  | 
83  |  |   void allocFrame();  | 
84  |  |   void freeFrame();  | 
85  |  |   void decodeHeader(const uint8_t *data, size_t size);  | 
86  |  |   IV_API_CALL_STATUS_T decodeFrame(const uint8_t *data, size_t size,  | 
87  |  |                                    size_t *bytesConsumed);  | 
88  |  |   void setParams(IVD_VIDEO_DECODE_MODE_T mode);  | 
89  |  |   void setArchitecture(IVD_ARCH_T arch);  | 
90  |  |  | 
91  |  |  private:  | 
92  |  |   IV_COLOR_FORMAT_T mColorFormat;  | 
93  |  |   size_t mNumCores;  | 
94  |  |   iv_obj_t *mCodec;  | 
95  |  |   ivd_out_bufdesc_t mOutBufHandle;  | 
96  |  |   uint32_t mWidth;  | 
97  |  |   uint32_t mHeight;  | 
98  |  | };  | 
99  |  |  | 
100  | 42.8k  | Codec::Codec(IV_COLOR_FORMAT_T colorFormat, size_t numCores) { | 
101  | 42.8k  |   mColorFormat = colorFormat;  | 
102  | 42.8k  |   mNumCores = numCores;  | 
103  | 42.8k  |   mCodec = nullptr;  | 
104  | 42.8k  |   mWidth = 0;  | 
105  | 42.8k  |   mHeight = 0;  | 
106  |  |  | 
107  | 42.8k  |   memset(&mOutBufHandle, 0, sizeof(mOutBufHandle));  | 
108  | 42.8k  | }  | 
109  | 52.0k  | Codec::~Codec() {} | 
110  | 26.4k  | void Codec::createCodec() { | 
111  | 26.4k  |   IV_API_CALL_STATUS_T ret;  | 
112  | 26.4k  |   ih264d_create_ip_t create_ip{}; | 
113  | 26.4k  |   ih264d_create_op_t create_op{}; | 
114  | 26.4k  |   void *fxns = (void *)&ivd_api_function;  | 
115  |  |  | 
116  | 26.4k  |   create_ip.s_ivd_create_ip_t.e_cmd = IVD_CMD_CREATE;  | 
117  | 26.4k  |   create_ip.s_ivd_create_ip_t.u4_share_disp_buf = 0;  | 
118  | 26.4k  |   create_ip.s_ivd_create_ip_t.e_output_format = mColorFormat;  | 
119  | 26.4k  |   create_ip.s_ivd_create_ip_t.pf_aligned_alloc = iv_aligned_malloc;  | 
120  | 26.4k  |   create_ip.s_ivd_create_ip_t.pf_aligned_free = iv_aligned_free;  | 
121  | 26.4k  |   create_ip.u4_keep_threads_active = 1;  | 
122  | 26.4k  |   create_ip.s_ivd_create_ip_t.pv_mem_ctxt = NULL;  | 
123  | 26.4k  |   create_ip.s_ivd_create_ip_t.u4_size = sizeof(ih264d_create_ip_t);  | 
124  | 26.4k  |   create_op.s_ivd_create_op_t.u4_size = sizeof(ih264d_create_op_t);  | 
125  |  |  | 
126  | 26.4k  |   ret = ivd_api_function(NULL, (void *)&create_ip, (void *)&create_op);  | 
127  | 26.4k  |   if (ret != IV_SUCCESS) { | 
128  | 15  |     return;  | 
129  | 15  |   }  | 
130  | 26.3k  |   mCodec = (iv_obj_t *)create_op.s_ivd_create_op_t.pv_handle;  | 
131  | 26.3k  |   mCodec->pv_fxns = fxns;  | 
132  | 26.3k  |   mCodec->u4_size = sizeof(iv_obj_t);  | 
133  | 26.3k  | }  | 
134  |  |  | 
135  | 26.4k  | void Codec::deleteCodec() { | 
136  | 26.4k  |   ivd_delete_ip_t delete_ip{}; | 
137  | 26.4k  |   ivd_delete_op_t delete_op{}; | 
138  |  |  | 
139  | 26.4k  |   delete_ip.e_cmd = IVD_CMD_DELETE;  | 
140  | 26.4k  |   delete_ip.u4_size = sizeof(ivd_delete_ip_t);  | 
141  | 26.4k  |   delete_op.u4_size = sizeof(ivd_delete_op_t);  | 
142  |  |  | 
143  | 26.4k  |   ivd_api_function(mCodec, (void *)&delete_ip, (void *)&delete_op);  | 
144  | 26.4k  | }  | 
145  | 6.37k  | void Codec::resetCodec() { | 
146  | 6.37k  |   ivd_ctl_reset_ip_t s_ctl_ip{}; | 
147  | 6.37k  |   ivd_ctl_reset_op_t s_ctl_op{}; | 
148  |  |  | 
149  | 6.37k  |   s_ctl_ip.e_cmd = IVD_CMD_VIDEO_CTL;  | 
150  | 6.37k  |   s_ctl_ip.e_sub_cmd = IVD_CMD_CTL_RESET;  | 
151  | 6.37k  |   s_ctl_ip.u4_size = sizeof(ivd_ctl_reset_ip_t);  | 
152  | 6.37k  |   s_ctl_op.u4_size = sizeof(ivd_ctl_reset_op_t);  | 
153  |  |  | 
154  | 6.37k  |   ivd_api_function(mCodec, (void *)&s_ctl_ip, (void *)&s_ctl_op);  | 
155  | 6.37k  | }  | 
156  |  |  | 
157  | 42.8k  | void Codec::setCores() { | 
158  | 42.8k  |   ih264d_ctl_set_num_cores_ip_t s_ctl_ip{}; | 
159  | 42.8k  |   ih264d_ctl_set_num_cores_op_t s_ctl_op{}; | 
160  |  |  | 
161  | 42.8k  |   s_ctl_ip.e_cmd = IVD_CMD_VIDEO_CTL;  | 
162  | 42.8k  |   s_ctl_ip.e_sub_cmd =  | 
163  | 42.8k  |       (IVD_CONTROL_API_COMMAND_TYPE_T)IH264D_CMD_CTL_SET_NUM_CORES;  | 
164  | 42.8k  |   s_ctl_ip.u4_num_cores = mNumCores;  | 
165  | 42.8k  |   s_ctl_ip.u4_size = sizeof(ih264d_ctl_set_num_cores_ip_t);  | 
166  | 42.8k  |   s_ctl_op.u4_size = sizeof(ih264d_ctl_set_num_cores_op_t);  | 
167  |  |  | 
168  | 42.8k  |   ivd_api_function(mCodec, (void *)&s_ctl_ip, (void *)&s_ctl_op);  | 
169  | 42.8k  | }  | 
170  |  |  | 
171  | 52.8k  | void Codec::setParams(IVD_VIDEO_DECODE_MODE_T mode) { | 
172  | 52.8k  |   ivd_ctl_set_config_ip_t s_ctl_ip{}; | 
173  | 52.8k  |   ivd_ctl_set_config_op_t s_ctl_op{}; | 
174  |  |  | 
175  | 52.8k  |   s_ctl_ip.u4_disp_wd = 0;  | 
176  | 52.8k  |   s_ctl_ip.e_frm_skip_mode = IVD_SKIP_NONE;  | 
177  | 52.8k  |   s_ctl_ip.e_frm_out_mode = IVD_DISPLAY_FRAME_OUT;  | 
178  | 52.8k  |   s_ctl_ip.e_vid_dec_mode = mode;  | 
179  | 52.8k  |   s_ctl_ip.e_cmd = IVD_CMD_VIDEO_CTL;  | 
180  | 52.8k  |   s_ctl_ip.e_sub_cmd = IVD_CMD_CTL_SETPARAMS;  | 
181  | 52.8k  |   s_ctl_ip.u4_size = sizeof(ivd_ctl_set_config_ip_t);  | 
182  | 52.8k  |   s_ctl_op.u4_size = sizeof(ivd_ctl_set_config_op_t);  | 
183  |  |  | 
184  | 52.8k  |   ivd_api_function(mCodec, (void *)&s_ctl_ip, (void *)&s_ctl_op);  | 
185  | 52.8k  | }  | 
186  |  |  | 
187  | 42.8k  | void Codec::setArchitecture(IVD_ARCH_T arch) { | 
188  | 42.8k  |   ih264d_ctl_set_processor_ip_t s_ctl_ip{}; | 
189  | 42.8k  |   ih264d_ctl_set_processor_op_t s_ctl_op{}; | 
190  |  |  | 
191  | 42.8k  |   s_ctl_ip.e_cmd = IVD_CMD_VIDEO_CTL;  | 
192  | 42.8k  |   s_ctl_ip.e_sub_cmd =  | 
193  | 42.8k  |       (IVD_CONTROL_API_COMMAND_TYPE_T)IH264D_CMD_CTL_SET_PROCESSOR;  | 
194  | 42.8k  |   s_ctl_ip.u4_arch = arch;  | 
195  | 42.8k  |   s_ctl_ip.u4_soc = SOC_GENERIC;  | 
196  | 42.8k  |   s_ctl_ip.u4_size = sizeof(ih264d_ctl_set_processor_ip_t);  | 
197  | 42.8k  |   s_ctl_op.u4_size = sizeof(ih264d_ctl_set_processor_op_t);  | 
198  |  |  | 
199  | 42.8k  |   ivd_api_function(mCodec, (void *)&s_ctl_ip, (void *)&s_ctl_op);  | 
200  | 42.8k  | }  | 
201  | 88.2k  | void Codec::freeFrame() { | 
202  | 245k  |   for (int i = 0; i < mOutBufHandle.u4_num_bufs; i++) { | 
203  | 157k  |     if (mOutBufHandle.pu1_bufs[i]) { | 
204  | 157k  |       free(mOutBufHandle.pu1_bufs[i]);  | 
205  | 157k  |       mOutBufHandle.pu1_bufs[i] = nullptr;  | 
206  | 157k  |     }  | 
207  | 157k  |   }  | 
208  | 88.2k  | }  | 
209  | 47.9k  | void Codec::allocFrame() { | 
210  | 47.9k  |   size_t sizes[4] = {0}; | 
211  | 47.9k  |   size_t num_bufs = 0;  | 
212  |  |  | 
213  | 47.9k  |   freeFrame();  | 
214  |  |  | 
215  | 47.9k  |   memset(&mOutBufHandle, 0, sizeof(mOutBufHandle));  | 
216  |  |  | 
217  | 47.9k  |   switch (mColorFormat) { | 
218  | 14.3k  |     case IV_YUV_420SP_UV:  | 
219  | 14.3k  |       [[fallthrough]];  | 
220  | 28.2k  |     case IV_YUV_420SP_VU:  | 
221  | 28.2k  |       sizes[0] = mWidth * mHeight;  | 
222  | 28.2k  |       sizes[1] = mWidth * mHeight >> 1;  | 
223  | 28.2k  |       num_bufs = 2;  | 
224  | 28.2k  |       break;  | 
225  | 121  |     case IV_YUV_422ILE:  | 
226  | 121  |       sizes[0] = mWidth * mHeight * 2;  | 
227  | 121  |       num_bufs = 1;  | 
228  | 121  |       break;  | 
229  | 205  |     case IV_RGB_565:  | 
230  | 205  |       sizes[0] = mWidth * mHeight * 2;  | 
231  | 205  |       num_bufs = 1;  | 
232  | 205  |       break;  | 
233  | 7  |     case IV_RGBA_8888:  | 
234  | 7  |       sizes[0] = mWidth * mHeight * 4;  | 
235  | 7  |       num_bufs = 1;  | 
236  | 7  |       break;  | 
237  | 19.3k  |     case IV_YUV_420P:  | 
238  | 19.3k  |       [[fallthrough]];  | 
239  | 19.3k  |     default:  | 
240  | 19.3k  |       sizes[0] = mWidth * mHeight;  | 
241  | 19.3k  |       sizes[1] = mWidth * mHeight >> 2;  | 
242  | 19.3k  |       sizes[2] = mWidth * mHeight >> 2;  | 
243  | 19.3k  |       num_bufs = 3;  | 
244  | 19.3k  |       break;  | 
245  | 47.9k  |   }  | 
246  | 47.9k  |   mOutBufHandle.u4_num_bufs = num_bufs;  | 
247  | 162k  |   for (int i = 0; i < num_bufs; i++) { | 
248  | 114k  |     mOutBufHandle.u4_min_out_buf_size[i] = sizes[i];  | 
249  | 114k  |     mOutBufHandle.pu1_bufs[i] = (UWORD8 *)iv_aligned_malloc(NULL, 16, sizes[i]);  | 
250  | 114k  |   }  | 
251  | 47.9k  | }  | 
252  | 26.4k  | void Codec::decodeHeader(const uint8_t *data, size_t size) { | 
253  | 26.4k  |   setParams(IVD_DECODE_HEADER);  | 
254  |  |  | 
255  | 26.4k  |   size_t numDecodeCalls = 0;  | 
256  |  |  | 
257  | 535k  |   while (size > 0 && numDecodeCalls < kMaxNumDecodeCalls) { | 
258  | 509k  |     IV_API_CALL_STATUS_T ret;  | 
259  | 509k  |     ivd_video_decode_ip_t dec_ip{}; | 
260  | 509k  |     ivd_video_decode_op_t dec_op{}; | 
261  | 509k  |     size_t bytes_consumed;  | 
262  |  |  | 
263  | 509k  |     dec_ip.e_cmd = IVD_CMD_VIDEO_DECODE;  | 
264  | 509k  |     dec_ip.u4_ts = 0;  | 
265  | 509k  |     dec_ip.pv_stream_buffer = (void *)data;  | 
266  | 509k  |     dec_ip.u4_num_Bytes = size;  | 
267  | 509k  |     dec_ip.u4_size = sizeof(ivd_video_decode_ip_t);  | 
268  | 509k  |     dec_op.u4_size = sizeof(ivd_video_decode_op_t);  | 
269  |  |  | 
270  | 509k  |     ret = ivd_api_function(mCodec, (void *)&dec_ip, (void *)&dec_op);  | 
271  |  |  | 
272  | 509k  |     bytes_consumed = dec_op.u4_num_bytes_consumed;  | 
273  |  |     /* If no bytes are consumed, then consume 4 bytes to ensure fuzzer proceeds  | 
274  |  |      * to feed next data */  | 
275  | 509k  |     if (!bytes_consumed) bytes_consumed = 4;  | 
276  |  |  | 
277  | 509k  |     bytes_consumed = std::min(size, bytes_consumed);  | 
278  |  |  | 
279  | 509k  |     data += bytes_consumed;  | 
280  | 509k  |     size -= bytes_consumed;  | 
281  | 509k  |     numDecodeCalls++;  | 
282  |  |  | 
283  | 509k  |     mWidth = std::min(dec_op.u4_pic_wd, (UWORD32)10240);  | 
284  | 509k  |     mHeight = std::min(dec_op.u4_pic_ht, (UWORD32)10240);  | 
285  |  |  | 
286  |  |     /* Break after successful header decode */  | 
287  | 509k  |     if (mWidth && mHeight) { | 
288  | 352  |       break;  | 
289  | 352  |     }  | 
290  | 509k  |   }  | 
291  |  |   /* if width / height are invalid, set them to defaults */  | 
292  | 26.4k  |   if (!mWidth) mWidth = 1920;  | 
293  | 26.4k  |   if (!mHeight) mHeight = 1088;  | 
294  | 26.4k  | }  | 
295  |  |  | 
296  |  | IV_API_CALL_STATUS_T Codec::decodeFrame(const uint8_t *data, size_t size,  | 
297  | 233k  |                                         size_t *bytesConsumed) { | 
298  | 233k  |   IV_API_CALL_STATUS_T ret;  | 
299  | 233k  |   ivd_video_decode_ip_t dec_ip{}; | 
300  | 233k  |   ivd_video_decode_op_t dec_op{}; | 
301  |  |  | 
302  | 233k  |   dec_ip.e_cmd = IVD_CMD_VIDEO_DECODE;  | 
303  | 233k  |   dec_ip.u4_ts = 0;  | 
304  | 233k  |   dec_ip.pv_stream_buffer = (void *)data;  | 
305  | 233k  |   dec_ip.u4_num_Bytes = size;  | 
306  | 233k  |   dec_ip.u4_size = sizeof(ivd_video_decode_ip_t);  | 
307  | 233k  |   dec_ip.s_out_buffer = mOutBufHandle;  | 
308  |  |  | 
309  | 233k  |   dec_op.u4_size = sizeof(ivd_video_decode_op_t);  | 
310  |  |  | 
311  | 233k  |   ret = ivd_api_function(mCodec, (void *)&dec_ip, (void *)&dec_op);  | 
312  |  |  | 
313  |  |   /* In case of change in resolution, reset codec and feed the same data again  | 
314  |  |    */  | 
315  | 233k  |   if (IVD_RES_CHANGED == (dec_op.u4_error_code & 0xFF)) { | 
316  | 6.37k  |     resetCodec();  | 
317  | 6.37k  |     ret = ivd_api_function(mCodec, (void *)&dec_ip, (void *)&dec_op);  | 
318  | 6.37k  |   }  | 
319  | 233k  |   *bytesConsumed = dec_op.u4_num_bytes_consumed;  | 
320  |  |  | 
321  |  |   /* If no bytes are consumed, then consume 4 bytes to ensure fuzzer proceeds  | 
322  |  |    * to feed next data */  | 
323  | 233k  |   if (!*bytesConsumed) *bytesConsumed = 4;  | 
324  |  |  | 
325  | 233k  |   if (dec_op.u4_pic_wd && dec_op.u4_pic_ht &&  | 
326  | 111k  |       (mWidth != dec_op.u4_pic_wd || mHeight != dec_op.u4_pic_ht)) { | 
327  | 21.5k  |     mWidth = std::min(dec_op.u4_pic_wd, (UWORD32)10240);  | 
328  | 21.5k  |     mHeight = std::min(dec_op.u4_pic_ht, (UWORD32)10240);  | 
329  | 21.5k  |     allocFrame();  | 
330  | 21.5k  |   }  | 
331  |  |  | 
332  | 233k  |   return ret;  | 
333  | 233k  | }  | 
334  |  |  | 
335  | 26.4k  | extern "C" int LLVMFuzzerTestOneInput(const uint8_t *data, size_t size) { | 
336  | 26.4k  |   if (size < 1) { | 
337  | 0  |     return 0;  | 
338  | 0  |   }  | 
339  | 26.4k  |   size_t colorFormatOfst = std::min((size_t)OFFSET_COLOR_FORMAT, size - 1);  | 
340  | 26.4k  |   size_t numCoresOfst = std::min((size_t)OFFSET_NUM_CORES, size - 1);  | 
341  | 26.4k  |   size_t architectureOfst = std::min((size_t)OFFSET_ARCH, size - 1);  | 
342  | 26.4k  |   size_t architectureIdx = data[architectureOfst] % kSupportedArchitectures;  | 
343  | 26.4k  |   IVD_ARCH_T arch = (IVD_ARCH_T)supportedArchitectures[architectureIdx];  | 
344  | 26.4k  |   size_t colorFormatIdx = data[colorFormatOfst] % kSupportedColorFormats;  | 
345  | 26.4k  |   IV_COLOR_FORMAT_T colorFormat =  | 
346  | 26.4k  |       (IV_COLOR_FORMAT_T)(supportedColorFormats[colorFormatIdx]);  | 
347  | 26.4k  |   uint32_t numCores = (data[numCoresOfst] % kMaxCores) + 1;  | 
348  | 26.4k  |   size_t numDecodeCalls = 0;  | 
349  | 26.4k  |   Codec *codec = new Codec(colorFormat, numCores);  | 
350  | 26.4k  |   codec->createCodec();  | 
351  | 26.4k  |   codec->setArchitecture(arch);  | 
352  | 26.4k  |   codec->setCores();  | 
353  | 26.4k  |   codec->decodeHeader(data, size);  | 
354  | 26.4k  |   codec->setParams(IVD_DECODE_FRAME);  | 
355  | 26.4k  |   codec->allocFrame();  | 
356  |  |  | 
357  | 260k  |   while (size > 0 && numDecodeCalls < kMaxNumDecodeCalls) { | 
358  | 233k  |     IV_API_CALL_STATUS_T ret;  | 
359  | 233k  |     size_t bytesConsumed;  | 
360  | 233k  |     ret = codec->decodeFrame(data, size, &bytesConsumed);  | 
361  |  |  | 
362  | 233k  |     bytesConsumed = std::min(size, bytesConsumed);  | 
363  | 233k  |     data += bytesConsumed;  | 
364  | 233k  |     size -= bytesConsumed;  | 
365  | 233k  |     numDecodeCalls++;  | 
366  | 233k  |   }  | 
367  |  |  | 
368  | 26.4k  |   codec->freeFrame();  | 
369  | 26.4k  |   codec->deleteCodec();  | 
370  | 26.4k  |   delete codec;  | 
371  | 26.4k  |   return 0;  | 
372  | 26.4k  | }  |