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  /frameworks/av/media/libstagefright/codecs/amrnb/enc/src/
ton_stab.cpp 171 CLOCK CYCLES: (cycle count equation for this function) + (variable
276 CLOCK CYCLES: (cycle count equation for this function) + (variable
368 CLOCK CYCLES: (cycle count equation for this function) + (variable
512 CLOCK CYCLES: (cycle count equation for this function) + (variable
677 CLOCK CYCLES: (cycle count equation for this function) + (variable
775 CLOCK CYCLES: (cycle count equation for this function) + (variable
  /frameworks/av/media/libstagefright/codecs/amrnb/dec/src/
d8_31pf.cpp 150 CLOCK CYCLES: (cycle count equation for this function) + (variable
329 CLOCK CYCLES: (cycle count equation for this function) + (variable
545 CLOCK CYCLES: (cycle count equation for this function) + (variable
post_pro.cpp 200 CLOCK CYCLES: (cycle count equation for this function) + (variable
268 equation:
331 CLOCK CYCLES: (cycle count equation for this function) + (variable
  /development/ndk/platforms/android-4/include/GLES/
glext.h 532 GL_API void GL_APIENTRY glClipPlanexOES (GLenum plane, const GLfixed *equation);
572 typedef void (GL_APIENTRYP PFNGLCLIPPLANEXOESPROC) (GLenum plane, const GLfixed *equation);
    [all...]
  /external/ceres-solver/internal/ceres/
corrector_test.cc 94 // The alpha equation is
  /external/chromium_org/third_party/mesa/src/include/GLES/
glext.h 566 GL_API void GL_APIENTRY glClipPlanexOES (GLenum plane, const GLfixed *equation);
606 typedef void (GL_APIENTRYP PFNGLCLIPPLANEXOESPROC) (GLenum plane, const GLfixed *equation);
    [all...]
  /external/chromium_org/third_party/mesa/src/src/mesa/drivers/dri/i965/
gen6_cc.c 135 * the result of the blending equation are clamped. For
  /external/chromium_org/third_party/mesa/src/src/mesa/drivers/dri/nouveau/
nouveau_state.c 61 nouveau_clip_plane(struct gl_context *ctx, GLenum plane, const GLfloat *equation)
nv10_state_frag.c 336 * The final fragment value equation is something like:
  /external/chromium_org/third_party/mesa/src/src/mesa/main/
texgen.c 169 /* Transform plane equation by the inverse modelview matrix */
  /external/chromium_org/third_party/mesa/src/src/mesa/swrast/
s_aatriangle.c 100 * Solve plane equation for Z at (X,Y).
  /external/chromium_org/third_party/openssl/openssl/crypto/ec/
ecp_oct.c 96 /* Recover y. We have a Weierstrass equation
  /external/chromium_org/third_party/opus/src/silk/float/
main_FLP.h 252 /* Function to solve linear equation Ax = b, where A is an MxM symmetric matrix */
  /external/chromium_org/third_party/skia/include/core/
SkXfermode.h 61 /** If the xfermode can be expressed as an equation using the coefficients
  /external/chromium_org/third_party/skia/include/utils/
SkRandom.h 19 linear equation. Unlike rand(), this class holds its own seed (initially
  /external/eigen/Eigen/src/Eigenvalues/
ComplexEigenSolver.h 272 // Compute X(i,k) using the (i,k) entry of the equation X T = D X
  /external/eigen/doc/
C06_TutorialLinearAlgebra.dox 25 \b The \b problem: You have a system of equations, that you have written as a single matrix equation
  /external/eigen/test/
jacobisvd.cpp 88 // evaluate normal equation which works also for least-squares solutions
  /external/jmonkeyengine/engine/src/core/com/jme3/bounding/
Intersection.java 267 // // compute plane equation of triangle: normal * x + d = 0
  /external/mesa3d/include/GLES/
glext.h 566 GL_API void GL_APIENTRY glClipPlanexOES (GLenum plane, const GLfixed *equation);
606 typedef void (GL_APIENTRYP PFNGLCLIPPLANEXOESPROC) (GLenum plane, const GLfixed *equation);
    [all...]
  /external/mesa3d/src/mesa/drivers/dri/i965/
gen6_cc.c 135 * the result of the blending equation are clamped. For
  /external/mesa3d/src/mesa/drivers/dri/nouveau/
nouveau_state.c 61 nouveau_clip_plane(struct gl_context *ctx, GLenum plane, const GLfloat *equation)
nv10_state_frag.c 336 * The final fragment value equation is something like:
  /external/mesa3d/src/mesa/main/
texgen.c 169 /* Transform plane equation by the inverse modelview matrix */
  /external/mesa3d/src/mesa/swrast/
s_aatriangle.c 100 * Solve plane equation for Z at (X,Y).

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