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/linux-6.12.1/arch/m68k/ifpsp060/
Dilsp.doc34 module can be used to emulate 64-bit divide and multiply,
95 For a divide:
105 bsr.l _060LISP_TOP+0x08 # branch to divide routine
128 If the instruction being emulated is a divide and the source
130 instruction, executes an implemented divide using a zero
Dfskeleton.S145 | This is the exit point for the 060FPSP when an enabled divide-by-zero exception
147 | for enabled divide-by-zero exceptions. The exception stack frame is a divide-by-zero
/linux-6.12.1/drivers/gpu/drm/ci/xfails/
Di915-whl-skips.txt1 # This is generating kernel oops with divide error
Di915-cml-skips.txt1 # This is generating kernel oops with divide error
Di915-amly-skips.txt3 # This is generating kernel oops with divide error
Di915-glk-skips.txt4 # This is generating kernel oops with divide error
Di915-apl-skips.txt3 # This is generating kernel oops with divide error
Di915-kbl-skips.txt4 # This is generating kernel oops with divide error
Di915-tgl-skips.txt10 # This is generating kernel oops with divide error
/linux-6.12.1/scripts/
DMakefile.ubsan9 ubsan-cflags-$(CONFIG_UBSAN_DIV_ZERO) += -fsanitize=integer-divide-by-zero
/linux-6.12.1/arch/m68k/ifpsp060/src/
Dilsp.S68 # 64-bit divide instruction. #
85 # sign info for later. Separate out special cases like divide-by-zero #
90 # zero, then perform a divide-by-zero using a 16-bit implemented #
91 # divide instruction. This way, the operating system can record that #
141 # separate signed and unsigned divide
143 beq.b ldspecialcases # use positive divide
174 bls.b ld32bitdivide # yes, so use 32 bit divide
190 # perform the divide algorithm:
191 bsr.l ldclassical # do int divide
/linux-6.12.1/Documentation/arch/arm/nwfpe/
Dnetwinder-fpe.rst84 DVF{cond}<S|D|E>{P,M,Z} Fd, Fn, <Fm,#value> - divide
85 RDV{cond}<S|D|E>{P,M,Z} Fd, Fn, <Fm,#value> - reverse divide
90 FDV{cond}<S|D|E>{P,M,Z} Fd, Fn, <Fm,#value> - fast divide
91 FRD{cond}<S|D|E>{P,M,Z} Fd, Fn, <Fm,#value> - fast reverse divide
/linux-6.12.1/sound/pci/
Des1968.c790 int divide; in snd_es1968_bob_start() local
799 divide = 1; in snd_es1968_bob_start()
800 while ((prescale > 5) && (divide < 32)) { in snd_es1968_bob_start()
802 divide <<= 1; in snd_es1968_bob_start()
804 divide >>= 1; in snd_es1968_bob_start()
807 for (; divide < 31; divide++) in snd_es1968_bob_start()
809 ((ESS_SYSCLK >> (prescale + 9)) / (divide + 1))) break; in snd_es1968_bob_start()
812 if (divide == 0) { in snd_es1968_bob_start()
813 divide++; in snd_es1968_bob_start()
816 } else if (divide > 1) in snd_es1968_bob_start()
[all …]
/linux-6.12.1/arch/alpha/lib/
DMakefile45 $(src)/$(ev6-y)divide.S FORCE
/linux-6.12.1/lib/
DKconfig.ubsan98 bool "Perform checking for integer divide-by-zero"
99 depends on $(cc-option,-fsanitize=integer-divide-by-zero)
104 This option enables -fsanitize=integer-divide-by-zero which checks
/linux-6.12.1/arch/powerpc/lib/
Ddiv64.S39 divwu r11,r11,r9 # then we divide the shifted quantities
/linux-6.12.1/Documentation/devicetree/bindings/net/can/
Dcc770.txt39 - bosch,divide-memory-clock : see data sheet.
/linux-6.12.1/arch/m68k/fpsp040/
Dfpsp.h234 .set dz_bit,2 | divide by zero
241 .set adz_bit,4 | accrued divide by zero
263 .set adz_mask,0x00000010 | accrued divide by zero
Dsatanh.S36 | divide-by-zero by
/linux-6.12.1/drivers/media/dvb-frontends/
Dsp887x.c285 static void divide (int n, int d, int *quotient_i, int *quotient_f) in divide() function
333 divide(freq / 333, sysclock, NULL, &frequency_shift); in sp887x_correct_offsets()
/linux-6.12.1/arch/arm64/boot/dts/renesas/
Dhihope-rev4.dtsi61 assigned-clock-rates = <24576000>; /* 1/1 divide */
/linux-6.12.1/drivers/i2c/busses/
Di2c-hisi.c390 u32 divide, u32 divisor, in hisi_i2c_set_scl() argument
399 t_scl_hcnt = DIV_ROUND_UP_ULL(total_cnt * divide, divisor); in hisi_i2c_set_scl()
/linux-6.12.1/arch/openrisc/
DKconfig117 bool "Have instruction l.div for hardware divide"
120 Select this if your implementation has a hardware divide instruction
/linux-6.12.1/Documentation/misc-devices/
Doxsemi-tornado.rst13 divisor is used as with the original 8250, to divide the frequency by a
15 that can take any value from 4 to 16 to divide the frequency further and
/linux-6.12.1/Documentation/admin-guide/cgroup-v1/
Dcpuacct.rst34 cpuacct.stat file lists a few statistics which further divide the

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