/hardware/qcom/display/msm8226/liboverlay/ |
overlayMem.h | 58 uint32_t bufSz, bool isSecure); 76 uint32_t bufSz() const; 121 uint32_t bufSz, bool isSecure) 126 OVASSERT(numbufs && bufSz, "numbufs=%d bufSz=%d", numbufs, bufSz); 127 mBufSz = bufSz; 132 mBufSzAligned = utils::align(bufSz, SIZE_1M); 135 mBufSzAligned = bufSz; 202 inline uint32_t OvMem::bufSz() cons [all...] |
overlayRotator.h | 55 uint32_t size() const { return mem.bufSz(); } 135 bool open_i(uint32_t numbufs, uint32_t bufsz); 194 bool open_i(uint32_t numbufs, uint32_t bufsz);
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overlayWriteback.cpp | 40 if(mBuf.bufSz() == size) {
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/hardware/qcom/display/msm8909/liboverlay/ |
overlayMem.h | 58 uint32_t bufSz, bool isSecure); 76 uint32_t bufSz() const; 121 uint32_t bufSz, bool isSecure) 126 OVASSERT(numbufs && bufSz, "numbufs=%d bufSz=%d", numbufs, bufSz); 127 mBufSz = bufSz; 132 mBufSzAligned = utils::align(bufSz, SIZE_1M); 135 mBufSzAligned = bufSz; 202 inline uint32_t OvMem::bufSz() cons [all...] |
overlayRotator.h | 54 uint32_t size() const { return mem.bufSz(); } 162 bool open_i(uint32_t numbufs, uint32_t bufsz); 234 bool open_i(uint32_t numbufs, uint32_t bufsz);
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overlayWriteback.cpp | 40 if(mBuf.bufSz() == size) {
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/hardware/qcom/display/msm8994/liboverlay/ |
overlayMem.h | 58 uint32_t bufSz, bool isSecure); 76 uint32_t bufSz() const; 121 uint32_t bufSz, bool isSecure) 126 OVASSERT(numbufs && bufSz, "numbufs=%d bufSz=%d", numbufs, bufSz); 127 mBufSz = bufSz; 132 mBufSzAligned = utils::align(bufSz, SIZE_1M); 135 mBufSzAligned = bufSz; 202 inline uint32_t OvMem::bufSz() cons [all...] |
overlayRotator.h | 54 uint32_t size() const { return mem.bufSz(); } 162 bool open_i(uint32_t numbufs, uint32_t bufsz); 234 bool open_i(uint32_t numbufs, uint32_t bufsz);
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overlayWriteback.cpp | 40 if(mBuf.bufSz() == size) {
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/hardware/qcom/display/msm8960/liboverlay/ |
overlayMem.h | 57 uint32_t bufSz, bool isSecure); 75 uint32_t bufSz() const; 117 uint32_t bufSz, bool isSecure) 128 OVASSERT(numbufs && bufSz, "numbufs=%d bufSz=%d", numbufs, bufSz); 130 mBufSz = bufSz; 191 inline uint32_t OvMem::bufSz() const 204 ALOGE("fd=%d addr=%p type=%d bufsz=%u", mFd, mBaseAddr, mAllocType, mBufSz);
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overlayRotator.h | 57 uint32_t size() const { return m.bufSz(); } 142 bool open_i(uint32_t numbufs, uint32_t bufsz); 201 bool open_i(uint32_t numbufs, uint32_t bufsz);
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/hardware/qcom/display/msm8084/liboverlay/ |
overlayMem.h | 61 uint32_t bufSz, bool isSecure); 79 uint32_t bufSz() const; 131 uint32_t bufSz, bool isSecure) 136 OVASSERT(numbufs && bufSz, "numbufs=%d bufSz=%d", numbufs, bufSz); 137 mBufSz = bufSz; 142 mBufSzAligned = utils::align(bufSz, SIZE_2M); 145 mBufSzAligned = bufSz; 241 inline uint32_t OvMem::bufSz() cons [all...] |
overlayRotator.h | 55 uint32_t size() const { return mem.bufSz(); } 128 bool open_i(uint32_t numbufs, uint32_t bufsz); 185 bool open_i(uint32_t numbufs, uint32_t bufsz);
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overlayWriteback.cpp | 40 if(mBuf.bufSz() == size) {
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/device/google/contexthub/lib/include/nanohub/ |
nanoapp.h | 23 void *reallocOrDie(void *buf, size_t bufSz);
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/device/google/contexthub/lib/nanohub/ |
nanoapp.c | 27 void *reallocOrDie(void *buf, size_t bufSz) 29 void *newBuf = realloc(buf, bufSz); 31 fprintf(stderr, "Failed to allocate %zu bytes\n", bufSz);
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/frameworks/base/libs/common_time/ |
common_time_server.cpp | 786 ssize_t bufSz = pkt.serializePacket(buf, sizeof(buf)); 787 if (bufSz < 0) 791 mSocket, buf, bufSz, 0, [all...] |
/external/opencv/cvaux/src/ |
cvbgfg_codebook.cpp | 120 int bufSz = image->cols*image->rows*sizeof(model->cbmap[0]); 121 model->cbmap = (CvBGCodeBookElem**)cvAlloc(bufSz); 122 memset( model->cbmap, 0, bufSz );
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/device/google/contexthub/util/nanoapp_postprocess/ |
postprocess.c | 227 static int finalizeAndWrite(uint8_t *buf, uint32_t bufUsed, uint32_t bufSz, FILE *out, uint32_t layoutFlags, uint64_t appId) 253 assertMem(bufUsed + hdrDiff, bufSz); 299 uint32_t bufSz = bufUsed * 3 /2; 302 buf = reallocOrDie(buf, bufSz); 499 assertMem(bufUsed, bufSz); 530 ret = finalizeAndWrite(buf, bufUsed, bufSz, out, layoutFlags, appId); [all...] |