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/linux/arch/x86/math-emu/
H A Dpoly_l2.c5 | Compute the base 2 log of a FPU_REG, using a polynomial approximation. |
25 | Base 2 logarithm by a polynomial approximation. |
103 | Base 2 logarithm by a polynomial approximation. |
179 | Base 2 logarithm by a polynomial approximation. |
H A Dpoly_tan.c5 | Compute the tan of a FPU_REG, using a polynomial approximation. |
165 approximation for pi/2 in poly_tan()
168 error due to the approximation used for pi/2 in poly_tan()
H A Dpoly_sin.c5 | Computation of an approximation of the sin function and the cosine |
162 compensate for the error due to the approximation used for in poly_sine()
342 compensate for the error due to the approximation used for in poly_cos()
/linux/drivers/staging/media/atomisp/pci/isp/kernels/bnlm/
H A Dia_css_bnlm_types.h43 /* Coefficient for approximation, in the form of (1 + x / N)^N,
58 /* A lookup table for 1/sqrt(1+mu) approximation */
/linux/lib/math/
H A Drational.c19 * calculate best rational approximation for a given fraction
70 /* Calculate the current rational approximation (aka in rational_best_approximation()
/linux/drivers/staging/media/atomisp/pci/isp/kernels/ctc/ctc_1.0/
H A Dia_css_ctc_types.h55 * ISP block: CTC2 (CTC by polygonal line approximation)
104 * (ISP2: CTC2 (CTC by polygonal line approximation) is used.)
/linux/drivers/clk/
H A Dclk-fractional-divider.c6 * Uses rational best approximation algorithm.
164 if (fd->approximation) in clk_fd_round_rate()
165 fd->approximation(hw, rate, parent_rate, &m, &n); in clk_fd_round_rate()
/linux/lib/crypto/mpi/
H A Dmpih-div.c59 * result is a (N+1)-bit approximation to 1/DIVISOR_LIMB, with the in mpihelp_mod_1()
95 * result is a (N+1)-bit approximation to 1/DIVISOR_LIMB, with the in mpihelp_mod_1()
409 * result is a (N+1)-bit approximation to 1/DIVISOR_LIMB, with the in mpihelp_divmod_1()
444 * result is a (N+1)-bit approximation to 1/DIVISOR_LIMB, with the in mpihelp_divmod_1()
/linux/Documentation/hwmon/
H A Dmcp3021.rst31 The Microchip Technology Inc. MCP3021 is a successive approximation A/D
/linux/arch/arm/boot/dts/intel/ixp/
H A Dintel-ixp42x-freecom-fsg-3.dts40 /* Closest approximation of what the key should do */
53 /* Unplug USB, closest approximation of what the key should do */
/linux/Documentation/arch/x86/x86_64/
H A Dcpu-hotplug-spec.rst23 number (or a reasonable approximation of it, with erring towards more not less)
/linux/sound/pci/cs46xx/
H A Dcs46xx_dsp_scb_types.h266 /* 16b.16b integer.frac approximation to the
268 frame. (approximation must be floor, to
342 16b.16b integer.frac approximation to the
344 (approximation must be floor, to insure */
/linux/drivers/staging/media/atomisp/pci/isp/kernels/ctc/ctc2/
H A Dia_css_ctc2_types.h21 * ISP block: CTC2 (CTC by polygonal approximation)
/linux/Documentation/devicetree/bindings/iio/adc/
H A Dlltc,ltc2497.yaml15 low noise, low power, 8-channel, 12-bit successive approximation ADC with an
H A Dsophgo,cv1800b-saradc.yaml8 Sophgo CV1800B SoC 3 channels Successive Approximation Analog to
H A Drockchip-saradc.yaml7 title: Rockchip Successive Approximation Register (SAR) A/D Converter
H A Drenesas,rzg2l-adc.yaml13 A/D Converter block is a successive approximation analog-to-digital converter
H A Damlogic,meson-saradc.yaml7 title: Amlogic Meson SAR (Successive Approximation Register) A/D converter
/linux/arch/arm/mach-omap1/
H A Dmtd-xip.h41 * It's permitted to do approximation for xip_elapsed_since macro
/linux/drivers/clk/baikal-t1/
H A Dccu-pll.c178 * This will cause a worse approximation though. in ccu_pll_calc_factors()
206 * handled by the rational fraction approximation algorithm. in ccu_pll_calc_factors()
219 /* Select the best approximation of the target rate. */ in ccu_pll_calc_factors()
/linux/drivers/clk/sunxi/
H A Dclk-sun6i-apb0-gates.c67 /* Worst-case size approximation and memory allocation */ in sun6i_a31_apb0_gates_clk_probe()
/linux/Documentation/devicetree/bindings/iio/afe/
H A Dtemperature-sense-rtd.yaml65 approximation of the resistance versus temperature relationship
/linux/arch/x86/kernel/
H A Debda.c19 * This means that as a first approximation on most systems we can
/linux/drivers/net/ethernet/qlogic/qed/
H A Dqed_ptp.c292 /* Determine which end gives better approximation */ in qed_ptp_hw_adjfreq()
299 /* Track best approximation found so far */ in qed_ptp_hw_adjfreq()
/linux/arch/x86/mm/
H A Dmem_encrypt.c129 * is more of an approximation of the static adjustment which in mem_encrypt_setup_arch()

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