1 #include "CreateJavaOutputStreamAdaptor.h"
2 #include "SkStream.h"
3 #include "YuvToJpegEncoder.h"
4 #include <ui/PixelFormat.h>
5 #include <utils/Errors.h>
6 #include <hardware/hardware.h>
7 
8 #include "graphics_jni_helpers.h"
9 
10 #include <csetjmp>
11 
12 extern "C" {
13     // We need to include stdio.h before jpeg because jpeg does not include it, but uses FILE
14     // See https://github.com/libjpeg-turbo/libjpeg-turbo/issues/17
15     #include <stdio.h>
16     #include "jpeglib.h"
17     #include "jerror.h"
18     #include "jmorecfg.h"
19 }
20 
create(int format,int * strides)21 YuvToJpegEncoder* YuvToJpegEncoder::create(int format, int* strides) {
22     // Only ImageFormat.NV21 and ImageFormat.YUY2 are supported
23     // for now.
24     if (format == HAL_PIXEL_FORMAT_YCrCb_420_SP) {
25         return new Yuv420SpToJpegEncoder(strides);
26     } else if (format == HAL_PIXEL_FORMAT_YCbCr_422_I) {
27         return new Yuv422IToJpegEncoder(strides);
28     } else {
29       return NULL;
30     }
31 }
32 
YuvToJpegEncoder(int * strides)33 YuvToJpegEncoder::YuvToJpegEncoder(int* strides) : fStrides(strides) {
34 }
35 
36 struct ErrorMgr {
37     struct jpeg_error_mgr pub;
38     jmp_buf jmp;
39 };
40 
error_exit(j_common_ptr cinfo)41 void error_exit(j_common_ptr cinfo) {
42     ErrorMgr* err = (ErrorMgr*) cinfo->err;
43     (*cinfo->err->output_message) (cinfo);
44     longjmp(err->jmp, 1);
45 }
46 
47 /*
48  * Destination struct for directing decompressed pixels to a SkStream.
49  */
50 static constexpr size_t kMgrBufferSize = 1024;
51 struct skstream_destination_mgr : jpeg_destination_mgr {
52     skstream_destination_mgr(SkWStream* stream);
53 
54     SkWStream* const fStream;
55 
56     uint8_t fBuffer[kMgrBufferSize];
57 };
58 
sk_init_destination(j_compress_ptr cinfo)59 static void sk_init_destination(j_compress_ptr cinfo) {
60     skstream_destination_mgr* dest = (skstream_destination_mgr*)cinfo->dest;
61 
62     dest->next_output_byte = dest->fBuffer;
63     dest->free_in_buffer = kMgrBufferSize;
64 }
65 
sk_empty_output_buffer(j_compress_ptr cinfo)66 static boolean sk_empty_output_buffer(j_compress_ptr cinfo) {
67     skstream_destination_mgr* dest = (skstream_destination_mgr*)cinfo->dest;
68 
69     if (!dest->fStream->write(dest->fBuffer, kMgrBufferSize)) {
70         ERREXIT(cinfo, JERR_FILE_WRITE);
71         return FALSE;
72     }
73 
74     dest->next_output_byte = dest->fBuffer;
75     dest->free_in_buffer = kMgrBufferSize;
76     return TRUE;
77 }
78 
sk_term_destination(j_compress_ptr cinfo)79 static void sk_term_destination(j_compress_ptr cinfo) {
80     skstream_destination_mgr* dest = (skstream_destination_mgr*)cinfo->dest;
81 
82     size_t size = kMgrBufferSize - dest->free_in_buffer;
83     if (size > 0) {
84         if (!dest->fStream->write(dest->fBuffer, size)) {
85             ERREXIT(cinfo, JERR_FILE_WRITE);
86             return;
87         }
88     }
89 
90     dest->fStream->flush();
91 }
92 
skstream_destination_mgr(SkWStream * stream)93 skstream_destination_mgr::skstream_destination_mgr(SkWStream* stream)
94         : fStream(stream) {
95     this->init_destination = sk_init_destination;
96     this->empty_output_buffer = sk_empty_output_buffer;
97     this->term_destination = sk_term_destination;
98 }
99 
encode(SkWStream * stream,void * inYuv,int width,int height,int * offsets,int jpegQuality)100 bool YuvToJpegEncoder::encode(SkWStream* stream, void* inYuv, int width,
101         int height, int* offsets, int jpegQuality) {
102     jpeg_compress_struct      cinfo;
103     ErrorMgr                  err;
104     skstream_destination_mgr  sk_wstream(stream);
105 
106     cinfo.err = jpeg_std_error(&err.pub);
107     err.pub.error_exit = error_exit;
108 
109     if (setjmp(err.jmp)) {
110         jpeg_destroy_compress(&cinfo);
111         return false;
112     }
113     jpeg_create_compress(&cinfo);
114 
115     cinfo.dest = &sk_wstream;
116 
117     setJpegCompressStruct(&cinfo, width, height, jpegQuality);
118 
119     jpeg_start_compress(&cinfo, TRUE);
120 
121     compress(&cinfo, (uint8_t*) inYuv, offsets);
122 
123     jpeg_finish_compress(&cinfo);
124 
125     jpeg_destroy_compress(&cinfo);
126 
127     return true;
128 }
129 
setJpegCompressStruct(jpeg_compress_struct * cinfo,int width,int height,int quality)130 void YuvToJpegEncoder::setJpegCompressStruct(jpeg_compress_struct* cinfo,
131         int width, int height, int quality) {
132     cinfo->image_width = width;
133     cinfo->image_height = height;
134     cinfo->input_components = 3;
135     cinfo->in_color_space = JCS_YCbCr;
136     jpeg_set_defaults(cinfo);
137 
138     jpeg_set_quality(cinfo, quality, TRUE);
139     jpeg_set_colorspace(cinfo, JCS_YCbCr);
140     cinfo->raw_data_in = TRUE;
141     cinfo->dct_method = JDCT_IFAST;
142     configSamplingFactors(cinfo);
143 }
144 
145 ///////////////////////////////////////////////////////////////////
Yuv420SpToJpegEncoder(int * strides)146 Yuv420SpToJpegEncoder::Yuv420SpToJpegEncoder(int* strides) :
147         YuvToJpegEncoder(strides) {
148     fNumPlanes = 2;
149 }
150 
compress(jpeg_compress_struct * cinfo,uint8_t * yuv,int * offsets)151 void Yuv420SpToJpegEncoder::compress(jpeg_compress_struct* cinfo,
152         uint8_t* yuv, int* offsets) {
153     ALOGD("onFlyCompress");
154     JSAMPROW y[16];
155     JSAMPROW cb[8];
156     JSAMPROW cr[8];
157     JSAMPARRAY planes[3];
158     planes[0] = y;
159     planes[1] = cb;
160     planes[2] = cr;
161 
162     int width = cinfo->image_width;
163     int height = cinfo->image_height;
164     uint8_t* yPlanar = yuv + offsets[0];
165     uint8_t* vuPlanar = yuv + offsets[1]; //width * height;
166     uint8_t* uRows = new uint8_t [8 * (width >> 1)];
167     uint8_t* vRows = new uint8_t [8 * (width >> 1)];
168 
169 
170     // process 16 lines of Y and 8 lines of U/V each time.
171     while (cinfo->next_scanline < cinfo->image_height) {
172         //deitnerleave u and v
173         deinterleave(vuPlanar, uRows, vRows, cinfo->next_scanline, width, height);
174 
175         // Jpeg library ignores the rows whose indices are greater than height.
176         for (int i = 0; i < 16; i++) {
177             // y row
178             y[i] = yPlanar + (cinfo->next_scanline + i) * fStrides[0];
179 
180             // construct u row and v row
181             if ((i & 1) == 0) {
182                 // height and width are both halved because of downsampling
183                 int offset = (i >> 1) * (width >> 1);
184                 cb[i/2] = uRows + offset;
185                 cr[i/2] = vRows + offset;
186             }
187           }
188         jpeg_write_raw_data(cinfo, planes, 16);
189     }
190     delete [] uRows;
191     delete [] vRows;
192 
193 }
194 
deinterleave(uint8_t * vuPlanar,uint8_t * uRows,uint8_t * vRows,int rowIndex,int width,int height)195 void Yuv420SpToJpegEncoder::deinterleave(uint8_t* vuPlanar, uint8_t* uRows,
196         uint8_t* vRows, int rowIndex, int width, int height) {
197     int numRows = (height - rowIndex) / 2;
198     if (numRows > 8) numRows = 8;
199     for (int row = 0; row < numRows; ++row) {
200         int offset = ((rowIndex >> 1) + row) * fStrides[1];
201         uint8_t* vu = vuPlanar + offset;
202         for (int i = 0; i < (width >> 1); ++i) {
203             int index = row * (width >> 1) + i;
204             uRows[index] = vu[1];
205             vRows[index] = vu[0];
206             vu += 2;
207         }
208     }
209 }
210 
configSamplingFactors(jpeg_compress_struct * cinfo)211 void Yuv420SpToJpegEncoder::configSamplingFactors(jpeg_compress_struct* cinfo) {
212     // cb and cr are horizontally downsampled and vertically downsampled as well.
213     cinfo->comp_info[0].h_samp_factor = 2;
214     cinfo->comp_info[0].v_samp_factor = 2;
215     cinfo->comp_info[1].h_samp_factor = 1;
216     cinfo->comp_info[1].v_samp_factor = 1;
217     cinfo->comp_info[2].h_samp_factor = 1;
218     cinfo->comp_info[2].v_samp_factor = 1;
219 }
220 
221 ///////////////////////////////////////////////////////////////////////////////
Yuv422IToJpegEncoder(int * strides)222 Yuv422IToJpegEncoder::Yuv422IToJpegEncoder(int* strides) :
223         YuvToJpegEncoder(strides) {
224     fNumPlanes = 1;
225 }
226 
compress(jpeg_compress_struct * cinfo,uint8_t * yuv,int * offsets)227 void Yuv422IToJpegEncoder::compress(jpeg_compress_struct* cinfo,
228         uint8_t* yuv, int* offsets) {
229     ALOGD("onFlyCompress_422");
230     JSAMPROW y[16];
231     JSAMPROW cb[16];
232     JSAMPROW cr[16];
233     JSAMPARRAY planes[3];
234     planes[0] = y;
235     planes[1] = cb;
236     planes[2] = cr;
237 
238     int width = cinfo->image_width;
239     int height = cinfo->image_height;
240     uint8_t* yRows = new uint8_t [16 * width];
241     uint8_t* uRows = new uint8_t [16 * (width >> 1)];
242     uint8_t* vRows = new uint8_t [16 * (width >> 1)];
243 
244     uint8_t* yuvOffset = yuv + offsets[0];
245 
246     // process 16 lines of Y and 16 lines of U/V each time.
247     while (cinfo->next_scanline < cinfo->image_height) {
248         deinterleave(yuvOffset, yRows, uRows, vRows, cinfo->next_scanline, width, height);
249 
250         // Jpeg library ignores the rows whose indices are greater than height.
251         for (int i = 0; i < 16; i++) {
252             // y row
253             y[i] = yRows + i * width;
254 
255             // construct u row and v row
256             // width is halved because of downsampling
257             int offset = i * (width >> 1);
258             cb[i] = uRows + offset;
259             cr[i] = vRows + offset;
260         }
261 
262         jpeg_write_raw_data(cinfo, planes, 16);
263     }
264     delete [] yRows;
265     delete [] uRows;
266     delete [] vRows;
267 }
268 
269 
deinterleave(uint8_t * yuv,uint8_t * yRows,uint8_t * uRows,uint8_t * vRows,int rowIndex,int width,int height)270 void Yuv422IToJpegEncoder::deinterleave(uint8_t* yuv, uint8_t* yRows, uint8_t* uRows,
271         uint8_t* vRows, int rowIndex, int width, int height) {
272     int numRows = height - rowIndex;
273     if (numRows > 16) numRows = 16;
274     for (int row = 0; row < numRows; ++row) {
275         uint8_t* yuvSeg = yuv + (rowIndex + row) * fStrides[0];
276         for (int i = 0; i < (width >> 1); ++i) {
277             int indexY = row * width + (i << 1);
278             int indexU = row * (width >> 1) + i;
279             yRows[indexY] = yuvSeg[0];
280             yRows[indexY + 1] = yuvSeg[2];
281             uRows[indexU] = yuvSeg[1];
282             vRows[indexU] = yuvSeg[3];
283             yuvSeg += 4;
284         }
285     }
286 }
287 
configSamplingFactors(jpeg_compress_struct * cinfo)288 void Yuv422IToJpegEncoder::configSamplingFactors(jpeg_compress_struct* cinfo) {
289     // cb and cr are horizontally downsampled and vertically downsampled as well.
290     cinfo->comp_info[0].h_samp_factor = 2;
291     cinfo->comp_info[0].v_samp_factor = 2;
292     cinfo->comp_info[1].h_samp_factor = 1;
293     cinfo->comp_info[1].v_samp_factor = 2;
294     cinfo->comp_info[2].h_samp_factor = 1;
295     cinfo->comp_info[2].v_samp_factor = 2;
296 }
297 ///////////////////////////////////////////////////////////////////////////////
298 
299 using namespace ultrahdr;
300 
findColorGamut(JNIEnv * env,int aDataSpace)301 ultrahdr_color_gamut P010Yuv420ToJpegREncoder::findColorGamut(JNIEnv* env, int aDataSpace) {
302     switch (aDataSpace & ADataSpace::STANDARD_MASK) {
303         case ADataSpace::STANDARD_BT709:
304             return ultrahdr_color_gamut::ULTRAHDR_COLORGAMUT_BT709;
305         case ADataSpace::STANDARD_DCI_P3:
306             return ultrahdr_color_gamut::ULTRAHDR_COLORGAMUT_P3;
307         case ADataSpace::STANDARD_BT2020:
308             return ultrahdr_color_gamut::ULTRAHDR_COLORGAMUT_BT2100;
309         default:
310             jclass IllegalArgumentException = env->FindClass("java/lang/IllegalArgumentException");
311             env->ThrowNew(IllegalArgumentException,
312                     "The requested color gamut is not supported by JPEG/R.");
313     }
314 
315     return ultrahdr_color_gamut::ULTRAHDR_COLORGAMUT_UNSPECIFIED;
316 }
317 
findHdrTransferFunction(JNIEnv * env,int aDataSpace)318 ultrahdr_transfer_function P010Yuv420ToJpegREncoder::findHdrTransferFunction(JNIEnv* env,
319         int aDataSpace) {
320     switch (aDataSpace & ADataSpace::TRANSFER_MASK) {
321         case ADataSpace::TRANSFER_ST2084:
322             return ultrahdr_transfer_function::ULTRAHDR_TF_PQ;
323         case ADataSpace::TRANSFER_HLG:
324             return ultrahdr_transfer_function::ULTRAHDR_TF_HLG;
325         default:
326             jclass IllegalArgumentException = env->FindClass("java/lang/IllegalArgumentException");
327             env->ThrowNew(IllegalArgumentException,
328                     "The requested HDR transfer function is not supported by JPEG/R.");
329     }
330 
331     return ultrahdr_transfer_function::ULTRAHDR_TF_UNSPECIFIED;
332 }
333 
encode(JNIEnv * env,SkWStream * stream,void * hdr,int hdrColorSpace,void * sdr,int sdrColorSpace,int width,int height,int jpegQuality,ScopedByteArrayRO * jExif,ScopedIntArrayRO * jHdrStrides,ScopedIntArrayRO * jSdrStrides)334 bool P010Yuv420ToJpegREncoder::encode(JNIEnv* env,
335         SkWStream* stream, void* hdr, int hdrColorSpace, void* sdr, int sdrColorSpace,
336         int width, int height, int jpegQuality, ScopedByteArrayRO* jExif,
337         ScopedIntArrayRO* jHdrStrides, ScopedIntArrayRO* jSdrStrides) {
338     // Check SDR color space. Now we only support SRGB transfer function
339     if ((sdrColorSpace & ADataSpace::TRANSFER_MASK) !=  ADataSpace::TRANSFER_SRGB) {
340         jclass IllegalArgumentException = env->FindClass("java/lang/IllegalArgumentException");
341         env->ThrowNew(IllegalArgumentException,
342             "The requested SDR color space is not supported. Transfer function must be SRGB");
343         return false;
344     }
345     // Check HDR and SDR strides length.
346     // HDR is YCBCR_P010 color format, and its strides length must be 2 (Y, chroma (Cb, Cr)).
347     // SDR is YUV_420_888 color format, and its strides length must be 3 (Y, Cb, Cr).
348     if (jHdrStrides->size() != 2) {
349         jclass IllegalArgumentException = env->FindClass("java/lang/IllegalArgumentException");
350         env->ThrowNew(IllegalArgumentException, "HDR stride length must be 2.");
351         return false;
352     }
353     if (jSdrStrides->size() != 3) {
354         jclass IllegalArgumentException = env->FindClass("java/lang/IllegalArgumentException");
355         env->ThrowNew(IllegalArgumentException, "SDR stride length must be 3.");
356         return false;
357     }
358 
359     ultrahdr_color_gamut hdrColorGamut = findColorGamut(env, hdrColorSpace);
360     ultrahdr_color_gamut sdrColorGamut = findColorGamut(env, sdrColorSpace);
361     ultrahdr_transfer_function hdrTransferFunction = findHdrTransferFunction(env, hdrColorSpace);
362 
363     if (hdrColorGamut == ultrahdr_color_gamut::ULTRAHDR_COLORGAMUT_UNSPECIFIED
364             || sdrColorGamut == ultrahdr_color_gamut::ULTRAHDR_COLORGAMUT_UNSPECIFIED
365             || hdrTransferFunction == ultrahdr_transfer_function::ULTRAHDR_TF_UNSPECIFIED) {
366         return false;
367     }
368 
369     const int* hdrStrides = reinterpret_cast<const int*>(jHdrStrides->get());
370     const int* sdrStrides = reinterpret_cast<const int*>(jSdrStrides->get());
371 
372     JpegR jpegREncoder;
373 
374     jpegr_uncompressed_struct p010;
375     p010.data = hdr;
376     p010.width = width;
377     p010.height = height;
378     // Divided by 2 because unit in libultrader is pixel and in YuvImage it is byte.
379     p010.luma_stride = (hdrStrides[0] + 1) / 2;
380     p010.chroma_stride = (hdrStrides[1] + 1) / 2;
381     p010.colorGamut = hdrColorGamut;
382 
383     jpegr_uncompressed_struct yuv420;
384     yuv420.data = sdr;
385     yuv420.width = width;
386     yuv420.height = height;
387     yuv420.luma_stride = sdrStrides[0];
388     yuv420.chroma_stride = sdrStrides[1];
389     yuv420.colorGamut = sdrColorGamut;
390 
391     jpegr_exif_struct exif;
392     exif.data = const_cast<void*>(reinterpret_cast<const void*>(jExif->get()));
393     exif.length = jExif->size();
394 
395     jpegr_compressed_struct jpegR;
396     jpegR.maxLength = width * height * sizeof(uint8_t);
397 
398     std::unique_ptr<uint8_t[]> jpegr_data = std::make_unique<uint8_t[]>(jpegR.maxLength);
399     jpegR.data = jpegr_data.get();
400 
401     if (int success = jpegREncoder.encodeJPEGR(&p010, &yuv420,
402             hdrTransferFunction,
403             &jpegR, jpegQuality,
404             exif.length > 0 ? &exif : NULL); success != JPEGR_NO_ERROR) {
405         ALOGW("Encode JPEG/R failed, error code: %d.", success);
406         return false;
407     }
408 
409     if (!stream->write(jpegR.data, jpegR.length)) {
410         ALOGW("Writing JPEG/R to stream failed.");
411         return false;
412     }
413 
414     return true;
415 }
416 
417 ///////////////////////////////////////////////////////////////////////////////
418 
YuvImage_compressToJpeg(JNIEnv * env,jobject,jbyteArray inYuv,jint format,jint width,jint height,jintArray offsets,jintArray strides,jint jpegQuality,jobject jstream,jbyteArray jstorage)419 static jboolean YuvImage_compressToJpeg(JNIEnv* env, jobject, jbyteArray inYuv,
420         jint format, jint width, jint height, jintArray offsets,
421         jintArray strides, jint jpegQuality, jobject jstream,
422         jbyteArray jstorage) {
423     jbyte* yuv = env->GetByteArrayElements(inYuv, NULL);
424     SkWStream* strm = CreateJavaOutputStreamAdaptor(env, jstream, jstorage);
425 
426     jint* imgOffsets = env->GetIntArrayElements(offsets, NULL);
427     jint* imgStrides = env->GetIntArrayElements(strides, NULL);
428     YuvToJpegEncoder* encoder = YuvToJpegEncoder::create(format, imgStrides);
429     jboolean result = JNI_FALSE;
430     if (encoder != NULL) {
431         encoder->encode(strm, yuv, width, height, imgOffsets, jpegQuality);
432         delete encoder;
433         result = JNI_TRUE;
434     }
435 
436     env->ReleaseByteArrayElements(inYuv, yuv, 0);
437     env->ReleaseIntArrayElements(offsets, imgOffsets, 0);
438     env->ReleaseIntArrayElements(strides, imgStrides, 0);
439     delete strm;
440     return result;
441 }
442 
YuvImage_compressToJpegR(JNIEnv * env,jobject,jbyteArray inHdr,jint hdrColorSpace,jbyteArray inSdr,jint sdrColorSpace,jint width,jint height,jint quality,jobject jstream,jbyteArray jstorage,jbyteArray jExif,jintArray jHdrStrides,jintArray jSdrStrides)443 static jboolean YuvImage_compressToJpegR(JNIEnv* env, jobject, jbyteArray inHdr,
444         jint hdrColorSpace, jbyteArray inSdr, jint sdrColorSpace,
445         jint width, jint height, jint quality, jobject jstream,
446         jbyteArray jstorage, jbyteArray jExif,
447         jintArray jHdrStrides, jintArray jSdrStrides) {
448     jbyte* hdr = env->GetByteArrayElements(inHdr, NULL);
449     jbyte* sdr = env->GetByteArrayElements(inSdr, NULL);
450     ScopedByteArrayRO exif(env, jExif);
451     ScopedIntArrayRO hdrStrides(env, jHdrStrides);
452     ScopedIntArrayRO sdrStrides(env, jSdrStrides);
453 
454     SkWStream* strm = CreateJavaOutputStreamAdaptor(env, jstream, jstorage);
455     P010Yuv420ToJpegREncoder encoder;
456 
457     jboolean result = JNI_FALSE;
458     if (encoder.encode(env, strm, hdr, hdrColorSpace, sdr, sdrColorSpace,
459                        width, height, quality, &exif,
460                        &hdrStrides, &sdrStrides)) {
461         result = JNI_TRUE;
462     }
463 
464     env->ReleaseByteArrayElements(inHdr, hdr, 0);
465     env->ReleaseByteArrayElements(inSdr, sdr, 0);
466 
467     delete strm;
468     return result;
469 }
470 ///////////////////////////////////////////////////////////////////////////////
471 
472 static const JNINativeMethod gYuvImageMethods[] = {
473     {   "nativeCompressToJpeg",  "([BIII[I[IILjava/io/OutputStream;[B)Z",
474         (void*)YuvImage_compressToJpeg },
475     {   "nativeCompressToJpegR",  "([BI[BIIIILjava/io/OutputStream;[B[B[I[I)Z",
476         (void*)YuvImage_compressToJpegR }
477 };
478 
register_android_graphics_YuvImage(JNIEnv * env)479 int register_android_graphics_YuvImage(JNIEnv* env)
480 {
481     return android::RegisterMethodsOrDie(env, "android/graphics/YuvImage", gYuvImageMethods,
482                                          NELEM(gYuvImageMethods));
483 }
484