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Unified Diff: src/codec/SkSwizzler.cpp

Issue 1260673002: SkScaledCodec class (Closed) Base URL: https://skia.googlesource.com/skia.git@master
Patch Set: Works for jpeg images Created 5 years, 5 months ago
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Index: src/codec/SkSwizzler.cpp
diff --git a/src/codec/SkSwizzler.cpp b/src/codec/SkSwizzler.cpp
index 71cb82a08bc5803fd6f8877044b452a3d1591cd3..e9ceb8bce6dc74145addc42c18e7632e15c7a888 100644
--- a/src/codec/SkSwizzler.cpp
+++ b/src/codec/SkSwizzler.cpp
@@ -19,6 +19,14 @@ SkSwizzler::ResultAlpha SkSwizzler::GetResult(uint8_t zeroAlpha,
return (((uint16_t) maxAlpha) << 8) | zeroAlpha;
}
+static SkSwizzler::ResultAlpha sample(void* SK_RESTRICT dstRow, const uint8_t* SK_RESTRICT src,
scroggo 2015/07/30 17:53:01 Could you add a description?
emmaleer 2015/07/30 22:27:56 Yes. Also, we can use the sample function for all
+ int width, int deltaSrc, int y, const SkPMColor ctable[]){
+ uint8_t* SK_RESTRICT dst = (uint8_t*) dstRow;
scroggo 2015/07/30 17:53:01 Does this do what we want it to? It looks like it
emmaleer 2015/07/30 22:27:56 I think this is working somehow.. When I test it,
scroggo 2015/07/31 13:35:33 That is correct. For the "small index" versions (a
emmaleer 2015/07/31 18:41:56 I've fixed this to work with 565
+ for (int x = 0; x < width; x++) {
+ dst[x] = src[0];
+ src += deltaSrc;
+ }
scroggo 2015/07/30 17:53:01 This method should return a value. For 565, we do
emmaleer 2015/07/30 22:27:56 Acknowledged.
+}
// kIndex1, kIndex2, kIndex4
static SkSwizzler::ResultAlpha swizzle_small_index_to_index(
@@ -72,10 +80,17 @@ static SkSwizzler::ResultAlpha swizzle_small_index_to_n32(
static SkSwizzler::ResultAlpha swizzle_index_to_index(
void* SK_RESTRICT dstRow, const uint8_t* SK_RESTRICT src, int width,
- int bytesPerPixel, int y, const SkPMColor ctable[]) {
+ int deltaSrc, int y, const SkPMColor ctable[]) {
uint8_t* SK_RESTRICT dst = (uint8_t*) dstRow;
- memcpy(dst, src, width);
+ if (1 == deltaSrc) {
+ memcpy(dst, src, width);
+ } else {
+ for (int x = 0; x < width; x++) {
+ dst[x] = src[0];
+ src += deltaSrc;
+ }
+ }
// TODO (msarett): Should we skip the loop here and guess that the row is opaque/not opaque?
// SkScaledBitmap sampler just guesses that it is opaque. This is dangerous
// and probably wrong since gif and bmp (rarely) may have alpha.
@@ -88,30 +103,32 @@ static SkSwizzler::ResultAlpha swizzle_index_to_index(
static SkSwizzler::ResultAlpha swizzle_index_to_n32(
void* SK_RESTRICT dstRow, const uint8_t* SK_RESTRICT src, int width,
- int bytesPerPixel, int y, const SkPMColor ctable[]) {
+ int deltaSrc, int y, const SkPMColor ctable[]) {
SkPMColor* SK_RESTRICT dst = (SkPMColor*)dstRow;
INIT_RESULT_ALPHA;
for (int x = 0; x < width; x++) {
- SkPMColor c = ctable[src[x]];
+ SkPMColor c = ctable[*src];
UPDATE_RESULT_ALPHA(c >> SK_A32_SHIFT);
dst[x] = c;
+ src += deltaSrc;
}
return COMPUTE_RESULT_ALPHA;
}
static SkSwizzler::ResultAlpha swizzle_index_to_n32_skipZ(
void* SK_RESTRICT dstRow, const uint8_t* SK_RESTRICT src, int width,
- int bytesPerPixel, int y, const SkPMColor ctable[]) {
+ int deltaSrc, int y, const SkPMColor ctable[]) {
SkPMColor* SK_RESTRICT dst = (SkPMColor*)dstRow;
INIT_RESULT_ALPHA;
for (int x = 0; x < width; x++) {
- SkPMColor c = ctable[src[x]];
+ SkPMColor c = ctable[*src];
UPDATE_RESULT_ALPHA(c >> SK_A32_SHIFT);
if (c != 0) {
dst[x] = c;
}
+ src += deltaSrc;
}
return COMPUTE_RESULT_ALPHA;
}
@@ -122,19 +139,29 @@ static SkSwizzler::ResultAlpha swizzle_index_to_n32_skipZ(
static SkSwizzler::ResultAlpha swizzle_gray_to_n32(
void* SK_RESTRICT dstRow, const uint8_t* SK_RESTRICT src, int width,
- int bytesPerPixel, int y, const SkPMColor ctable[]) {
+ int deltaSrc, int y, const SkPMColor ctable[]) {
SkPMColor* SK_RESTRICT dst = (SkPMColor*)dstRow;
for (int x = 0; x < width; x++) {
- dst[x] = SkPackARGB32NoCheck(0xFF, src[x], src[x], src[x]);
+ dst[x] = SkPackARGB32NoCheck(0xFF, *src, *src, *src);
+ src += deltaSrc;
}
return SkSwizzler::kOpaque_ResultAlpha;
}
static SkSwizzler::ResultAlpha swizzle_gray_to_gray(
void* SK_RESTRICT dstRow, const uint8_t* SK_RESTRICT src, int width,
- int bytesPerPixel, int y, const SkPMColor ctable[]) {
- memcpy(dstRow, src, width);
+ int deltaSrc, int y, const SkPMColor ctable[]) {
+
+ uint8_t* SK_RESTRICT dst = (uint8_t*) dstRow;
+ if (1 == deltaSrc) {
+ memcpy(dstRow, src, width);
+ } else {
+ for (int x = 0; x < width; x++) {
+ dst[x] = src[0];
+ src += deltaSrc;
+ }
+ }
return SkSwizzler::kOpaque_ResultAlpha;
}
@@ -142,12 +169,12 @@ static SkSwizzler::ResultAlpha swizzle_gray_to_gray(
static SkSwizzler::ResultAlpha swizzle_bgrx_to_n32(
void* SK_RESTRICT dstRow, const uint8_t* SK_RESTRICT src, int width,
- int bytesPerPixel, int y, const SkPMColor ctable[]) {
+ int deltaSrc, int y, const SkPMColor ctable[]) {
SkPMColor* SK_RESTRICT dst = (SkPMColor*)dstRow;
for (int x = 0; x < width; x++) {
dst[x] = SkPackARGB32NoCheck(0xFF, src[2], src[1], src[0]);
- src += bytesPerPixel;
+ src += deltaSrc;
}
return SkSwizzler::kOpaque_ResultAlpha;
}
@@ -156,7 +183,7 @@ static SkSwizzler::ResultAlpha swizzle_bgrx_to_n32(
static SkSwizzler::ResultAlpha swizzle_bgra_to_n32_unpremul(
void* SK_RESTRICT dstRow, const uint8_t* SK_RESTRICT src, int width,
- int bytesPerPixel, int y, const SkPMColor ctable[]) {
+ int deltaSrc, int y, const SkPMColor ctable[]) {
SkPMColor* SK_RESTRICT dst = (SkPMColor*)dstRow;
INIT_RESULT_ALPHA;
@@ -164,14 +191,14 @@ static SkSwizzler::ResultAlpha swizzle_bgra_to_n32_unpremul(
uint8_t alpha = src[3];
UPDATE_RESULT_ALPHA(alpha);
dst[x] = SkPackARGB32NoCheck(alpha, src[2], src[1], src[0]);
- src += bytesPerPixel;
+ src += deltaSrc;
}
return COMPUTE_RESULT_ALPHA;
}
static SkSwizzler::ResultAlpha swizzle_bgra_to_n32_premul(
void* SK_RESTRICT dstRow, const uint8_t* SK_RESTRICT src, int width,
- int bytesPerPixel, int y, const SkPMColor ctable[]) {
+ int deltaSrc, int y, const SkPMColor ctable[]) {
SkPMColor* SK_RESTRICT dst = (SkPMColor*)dstRow;
INIT_RESULT_ALPHA;
@@ -179,7 +206,7 @@ static SkSwizzler::ResultAlpha swizzle_bgra_to_n32_premul(
uint8_t alpha = src[3];
UPDATE_RESULT_ALPHA(alpha);
dst[x] = SkPreMultiplyARGB(alpha, src[2], src[1], src[0]);
- src += bytesPerPixel;
+ src += deltaSrc;
}
return COMPUTE_RESULT_ALPHA;
}
@@ -187,19 +214,19 @@ static SkSwizzler::ResultAlpha swizzle_bgra_to_n32_premul(
// n32
static SkSwizzler::ResultAlpha swizzle_rgbx_to_n32(
void* SK_RESTRICT dstRow, const uint8_t* SK_RESTRICT src, int width,
- int bytesPerPixel, int y, const SkPMColor ctable[]) {
+ int deltaSrc, int y, const SkPMColor ctable[]) {
SkPMColor* SK_RESTRICT dst = (SkPMColor*)dstRow;
for (int x = 0; x < width; x++) {
dst[x] = SkPackARGB32(0xFF, src[0], src[1], src[2]);
- src += bytesPerPixel;
+ src += deltaSrc;
}
return SkSwizzler::kOpaque_ResultAlpha;
}
static SkSwizzler::ResultAlpha swizzle_rgba_to_n32_premul(
void* SK_RESTRICT dstRow, const uint8_t* SK_RESTRICT src, int width,
- int bytesPerPixel, int y, const SkPMColor ctable[]) {
+ int deltaSrc, int y, const SkPMColor ctable[]) {
SkPMColor* SK_RESTRICT dst = (SkPMColor*)dstRow;
INIT_RESULT_ALPHA;
@@ -207,14 +234,14 @@ static SkSwizzler::ResultAlpha swizzle_rgba_to_n32_premul(
unsigned alpha = src[3];
UPDATE_RESULT_ALPHA(alpha);
dst[x] = SkPreMultiplyARGB(alpha, src[0], src[1], src[2]);
- src += bytesPerPixel;
+ src += deltaSrc;
}
return COMPUTE_RESULT_ALPHA;
}
static SkSwizzler::ResultAlpha swizzle_rgba_to_n32_unpremul(
void* SK_RESTRICT dstRow, const uint8_t* SK_RESTRICT src, int width,
- int bytesPerPixel, int y, const SkPMColor ctable[]) {
+ int deltaSrc, int y, const SkPMColor ctable[]) {
uint32_t* SK_RESTRICT dst = reinterpret_cast<uint32_t*>(dstRow);
INIT_RESULT_ALPHA;
@@ -222,14 +249,14 @@ static SkSwizzler::ResultAlpha swizzle_rgba_to_n32_unpremul(
unsigned alpha = src[3];
UPDATE_RESULT_ALPHA(alpha);
dst[x] = SkPackARGB32NoCheck(alpha, src[0], src[1], src[2]);
- src += bytesPerPixel;
+ src += deltaSrc;
}
return COMPUTE_RESULT_ALPHA;
}
static SkSwizzler::ResultAlpha swizzle_rgba_to_n32_premul_skipZ(
void* SK_RESTRICT dstRow, const uint8_t* SK_RESTRICT src, int width,
- int bytesPerPixel, int y, const SkPMColor ctable[]) {
+ int deltaSrc, int y, const SkPMColor ctable[]) {
SkPMColor* SK_RESTRICT dst = (SkPMColor*)dstRow;
INIT_RESULT_ALPHA;
@@ -239,7 +266,7 @@ static SkSwizzler::ResultAlpha swizzle_rgba_to_n32_premul_skipZ(
if (0 != alpha) {
dst[x] = SkPreMultiplyARGB(alpha, src[0], src[1], src[2]);
}
- src += bytesPerPixel;
+ src += deltaSrc;
}
return COMPUTE_RESULT_ALPHA;
}
@@ -275,7 +302,7 @@ SkSwizzler* SkSwizzler::CreateSwizzler(SkSwizzler::SrcConfig sc,
const SkPMColor* ctable,
const SkImageInfo& info, void* dst,
size_t dstRowBytes,
- SkCodec::ZeroInitialized zeroInit) {
+ SkCodec::ZeroInitialized zeroInit, int sampleX) {
if (info.colorType() == kUnknown_SkColorType || kUnknown == sc) {
return NULL;
}
@@ -286,7 +313,9 @@ SkSwizzler* SkSwizzler::CreateSwizzler(SkSwizzler::SrcConfig sc,
&& NULL == ctable) {
return NULL;
}
+
RowProc proc = NULL;
+
switch (sc) {
case kIndex1:
case kIndex2:
@@ -397,6 +426,14 @@ SkSwizzler* SkSwizzler::CreateSwizzler(SkSwizzler::SrcConfig sc,
break;
}
break;
+ case kRGB_565:
+ switch (info.colorType()) {
+ case kRGB_565_SkColorType:
+ proc = &sample;
+ break;
+ default:
+ break;
+ }
default:
break;
}
@@ -408,12 +445,12 @@ SkSwizzler* SkSwizzler::CreateSwizzler(SkSwizzler::SrcConfig sc,
int deltaSrc = SkIsAlign8(BitsPerPixel(sc)) ? BytesPerPixel(sc) :
BitsPerPixel(sc);
return SkNEW_ARGS(SkSwizzler, (proc, ctable, deltaSrc, info, dst,
- dstRowBytes));
+ dstRowBytes, sampleX));
}
SkSwizzler::SkSwizzler(RowProc proc, const SkPMColor* ctable,
int deltaSrc, const SkImageInfo& info, void* dst,
- size_t rowBytes)
+ size_t rowBytes, int sampleX)
: fRowProc(proc)
, fColorTable(ctable)
, fDeltaSrc(deltaSrc)
@@ -421,7 +458,11 @@ SkSwizzler::SkSwizzler(RowProc proc, const SkPMColor* ctable,
, fDstRow(dst)
, fDstRowBytes(rowBytes)
, fCurrY(0)
+ , fSampleX(sampleX)
+ , fX0(sampleX == 1 ? 0 : sampleX >> 1)
{
+ // check that fX0 is less than original width
+ SkASSERT(fX0 >= 0 && fX0 < fDstInfo.width() * fSampleX);
SkDEBUGCODE(fNextMode = kUninitialized_NextMode);
}
@@ -432,8 +473,8 @@ SkSwizzler::ResultAlpha SkSwizzler::next(const uint8_t* SK_RESTRICT src) {
SkDEBUGCODE(fNextMode = kConsecutive_NextMode);
// Decode a row
- const ResultAlpha result = fRowProc(fDstRow, src, fDstInfo.width(),
- fDeltaSrc, fCurrY, fColorTable);
+ const ResultAlpha result = fRowProc(fDstRow, src + fX0 * fDeltaSrc, fDstInfo.width(),
msarett 2015/07/30 13:55:38 nit: extra space before src
emmaleer 2015/07/30 17:50:39 Acknowledged.
+ fSampleX * fDeltaSrc, fCurrY, fColorTable);
// Move to the next row and return the result
fCurrY++;
@@ -451,7 +492,7 @@ SkSwizzler::ResultAlpha SkSwizzler::next(const uint8_t* SK_RESTRICT src,
void* row = SkTAddOffset<void>(fDstRow, y*fDstRowBytes);
// Decode the row
- return fRowProc(row, src, fDstInfo.width(), fDeltaSrc, fCurrY,
+ return fRowProc(row, src + fX0 * fDeltaSrc, fDstInfo.width(), fSampleX * fDeltaSrc, fCurrY,
fColorTable);
}
@@ -506,6 +547,7 @@ void SkSwizzler::Fill(void* dstStartRow, const SkImageInfo& dstInfo, size_t dstR
// for black.
memset(dstStartRow, (uint8_t) colorOrIndex, bytesToFill);
break;
+
msarett 2015/07/30 13:55:38 nit: extra new line Also, you might want to try r
emmaleer 2015/07/30 17:50:39 Acknowledged.
scroggo 2015/07/30 17:53:01 Just as a general piece of advice, I find it usefu
default:
SkCodecPrintf("Error: Unsupported dst color type for fill(). Doing nothing.\n");
SkASSERT(false);
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