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/linux-6.14.4/tools/testing/selftests/tc-testing/tc-tests/qdiscs/
Dnetem.json56 "cmdUnderTest": "$TC qdisc add dev $DUMMY handle 1: root netem delay 100ms",
59 "matchPattern": "qdisc netem 1: root refcnt [0-9]+ .*delay 100ms",
77 …"cmdUnderTest": "$TC qdisc add dev $DUMMY handle 1: root netem delay 100ms 10ms distribution norma…
80 "matchPattern": "qdisc netem 1: root refcnt [0-9]+ .*delay 100ms 10ms corrupt 1%",
98 …"cmdUnderTest": "$TC qdisc add dev $DUMMY handle 1: root netem delay 100ms 10ms distribution norma…
101 "matchPattern": "qdisc netem 1: root refcnt [0-9]+ .*delay 100ms 10ms duplicate 1%",
119 …"cmdUnderTest": "$TC qdisc add dev $DUMMY handle 1: root netem delay 100ms 10ms distribution paret…
122 "matchPattern": "qdisc netem 1: root refcnt [0-9]+ .*delay 100ms 10ms loss 1%",
140 …"cmdUnderTest": "$TC qdisc add dev $DUMMY handle 1: root netem delay 100ms 10ms distribution paret…
143 …"matchPattern": "qdisc netem 1: root refcnt [0-9]+ .*delay 100ms 10ms loss state p13 1% p31 99% p…
[all …]
/linux-6.14.4/net/mac80211/
Drc80211_minstrel_ht_debugfs.c22 struct minstrel_debugfs_info *ms; in minstrel_stats_read() local
24 ms = file->private_data; in minstrel_stats_read()
25 return simple_read_from_buffer(buf, len, ppos, ms->buf, ms->len); in minstrel_stats_read()
113 p += sprintf(p, " %2u.%1uM", r / 10, r % 10); in minstrel_ht_stats_dump()
131 tp_max / 10, tp_max % 10, in minstrel_ht_stats_dump()
132 tp_avg / 10, tp_avg % 10, in minstrel_ht_stats_dump()
133 eprob / 10, eprob % 10, in minstrel_ht_stats_dump()
148 struct minstrel_debugfs_info *ms; in minstrel_ht_stats_open() local
152 ms = kmalloc(32768, GFP_KERNEL); in minstrel_ht_stats_open()
153 if (!ms) in minstrel_ht_stats_open()
[all …]
/linux-6.14.4/drivers/leds/trigger/
Dledtrig-activity.c73 /* We come here every 100ms in the worst case, so that's 100M ns of in led_activity_function()
100 * (typically 10ms every second, or 10ms ON, 990ms OFF). Then we want in led_activity_function()
103 * core systems. At this point it should reach 10 Hz with a 10/90 duty in led_activity_function()
104 * cycle (10ms ON, 90ms OFF). After this point, the blinking frequency in led_activity_function()
105 * remains stable (10 Hz) and only the duty cycle increases to report in led_activity_function()
106 * the activity, up to the point where we have 90ms ON, 10ms OFF when in led_activity_function()
112 * - a target CPU usage of min(50%, 100%/#CPU) for a 10% duty cycle in led_activity_function()
113 * (10ms ON, 90ms OFF) in led_activity_function()
115 * ON_ms = 10 in led_activity_function()
118 * ON_ms = 10 + (usage-target)/(100%-target) * 80 in led_activity_function()
[all …]
/linux-6.14.4/Documentation/ABI/testing/
Ddebugfs-intel-iommu192 <0.1us 0.1us-1us 1us-10us 10us-100us 100us-1ms
195 1ms-10ms >=10ms min(us) max(us) average(us)
201 <0.1us 0.1us-1us 1us-10us 10us-100us 100us-1ms
204 1ms-10ms >=10ms min(us) max(us) average(us)
214 <0.1us 0.1us-1us 1us-10us 10us-100us 100us-1ms
217 >=10ms min(us) max(us) average(us)
/linux-6.14.4/include/linux/usb/
Dpd.h25 PD_CTRL_PR_SWAP = 10,
69 PD_EXT_FW_UPDATE_REQUEST = 10,
149 #define PD_EXT_HDR_REQ_CHUNK BIT(10)
236 #define PDO_FIXED_VOLT_SHIFT 10 /* 50mV units */
237 #define PDO_FIXED_CURR_SHIFT 0 /* 10mA units */
240 #define PDO_FIXED_CURR(ma) ((((ma) / 10) & PDO_CURR_MASK) << PDO_FIXED_CURR_SHIFT)
249 #define PDO_BATT_MIN_VOLT_SHIFT 10 /* 50mV units */
261 #define PDO_VAR_MIN_VOLT_SHIFT 10 /* 50mV units */
262 #define PDO_VAR_MAX_CURR_SHIFT 0 /* 10mA units */
266 #define PDO_VAR_MAX_CURR(ma) ((((ma) / 10) & PDO_CURR_MASK) << PDO_VAR_MAX_CURR_SHIFT)
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/linux-6.14.4/tools/testing/selftests/damon/
Ddamos_apply_interval.py10 # access two 10 MiB memory regions, 2 second per each
11 sz_region = 10 * 1024 * 1024
14 # Set quota up to 1 MiB per 100 ms
22 # >= 25% access rate, >= 200ms age
24 # aggregation interval (100 ms) is used
26 # use 10ms apply interval
29 # >= 25% access rate, >= 200ms age
31 # explicitly set 10 ms apply interval
32 apply_interval_us=10 * 1000)
/linux-6.14.4/Documentation/fb/
Dviafb.modes15 # Sync Width 3.813 us 0.064 ms
17 # Front Porch 0.636 us 0.318 ms
18 # 2 chars 10 lines
19 # Back Porch 1.907 us 1.048 ms
21 # Active Time 25.422 us 15.253 ms
23 # Blank Time 6.356 us 1.430 ms
31 timings 39722 48 16 33 10 96 2 endmode mode "480x640-60"
40 # Sync Width 2.032 us 0.080 ms
42 # Front Porch 0.508 us 0.027 ms
44 # Back Porch 3.810 us 0.427 ms
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/linux-6.14.4/tools/testing/selftests/net/
Dtxtimestamp.sh10 # set 1ms delay on lo egress
11 tc qdisc add dev lo root netem delay 10ms
13 # set 2ms delay on ifb0 egress
17 tc qdisc add dev ifb_netem0 root netem delay 20ms
27 # SND will be delayed 10ms
28 # ACK will be delayed 60ms: 10 + 20 ms round-trip
29 # allow +/- tolerance of 8ms
/linux-6.14.4/Documentation/translations/zh_CN/scheduler/
Dsched-bwc.rst78 cpu.cfs_period_us=100ms
104 /proc/sys/kernel/sched_cfs_bandwidth_slice_us (default=5ms)
174 # echo 250000 > cpu.cfs_quota_us /* quota = 250ms */
175 # echo 250000 > cpu.cfs_period_us /* period = 250ms */
181 # echo 1000000 > cpu.cfs_quota_us /* quota = 1000ms */
182 # echo 500000 > cpu.cfs_period_us /* period = 500ms */
188 在50ms周期内,10ms配额将相当于1个CPU的20%。::
190 # echo 10000 > cpu.cfs_quota_us /* quota = 10ms */
191 # echo 50000 > cpu.cfs_period_us /* period = 50ms */
200 # echo 20000 > cpu.cfs_quota_us /* quota = 20ms */
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/linux-6.14.4/drivers/usb/phy/
Dphy-fsl-usb.h87 #define PORTSC_LINE_STATUS_BITS (0x3<<10)
99 /* bit 11-10 are line status */
100 #define PORTSC_LINE_STATUS_SE0 (0x0<<10)
101 #define PORTSC_LINE_STATUS_JSTATE (0x1<<10)
102 #define PORTSC_LINE_STATUS_KSTATE (0x2<<10)
103 #define PORTSC_LINE_STATUS_UNDEF (0x3<<10)
104 #define PORTSC_LINE_STATUS_BIT_POS (10)
155 #define OTGSC_STS_A_SESSION_VALID (0x1<<10)
234 #define TA_WAIT_VRISE (100) /* a_wait_vrise 100 ms, section: 6.6.5.1 */
244 /* It is necessary for this timer to be more than 750 ms because of a bug in OPT
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/linux-6.14.4/Documentation/devicetree/bindings/mfd/
Drohm,bd71847-pmic.yaml65 # Shortest being 10ms, next 500ms and then multiple of 500ms up to 7,5s
67 # Shortest being 10ms, next 1000ms and then multiple of 1000ms up to 15s
71 rohm,short-press-ms:
75 - 10
92 rohm,long-press-ms:
96 - 10
145 rohm,short-press-ms = <10>;
146 rohm,long-press-ms = <2000>;
Drohm,bd71837-pmic.yaml65 # Shortest being 10ms, next 500ms and then multiple of 500ms up to 7,5s
67 # Shortest being 10ms, next 1000ms and then multiple of 1000ms up to 15s
71 rohm,short-press-ms:
75 - 10
91 rohm,long-press-ms:
95 - 10
142 rohm,short-press-ms = <10>;
143 rohm,long-press-ms = <2000>;
Dst,stmpe.yaml67 description: ADC bit mode 0 = 10bit ADC, 1 = 12bit ADC
155 0 = 10 us
159 4 = 1 ms
160 5 = 5 ms
161 6 = 10 ms
162 7 = 50 ms
169 0 = 10 us
172 3 = 1 ms
173 4 = 5 ms
174 5 = 10 ms
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/linux-6.14.4/Documentation/devicetree/bindings/input/touchscreen/
Dbrcm,iproc-touchscreen.txt20 - settling_timeout: The settling duration (in ms) is the amount of time
24 0 = 0.008 ms
25 1 = 0.01 ms
26 2 = 0.02 ms
27 3 = 0.04 ms
28 4 = 0.08 ms
29 5 = 0.16 ms
30 6 = 0.32 ms
31 7 = 0.64 ms
32 8 = 1.28 ms
[all …]
/linux-6.14.4/Documentation/accounting/
Ddelay-accounting.rst98 Get delays, since system boot, for pid 10::
100 # ./getdelays -d -p 10
111 … 39 156000000 156576579 2111069 0.054ms 0.212296ms 0.031307ms
113 0 0 0.000ms 0.000000ms 0.000000ms
115 0 0 0.000ms 0.000000ms 0.000000ms
117 0 0 0.000ms 0.000000ms 0.000000ms
119 0 0 0.000ms 0.000000ms 0.000000ms
121 0 0 0.000ms 0.000000ms 0.000000ms
123 156 11215873 0.072ms 0.207403ms 0.033913ms
125 0 0 0.000ms 0.000000ms 0.000000ms
/linux-6.14.4/samples/bpf/
Dtracex3_user.c67 printf("|1ns |10ns |100ns |1us |10us |100us" in print_banner()
68 " |1ms |10ms |100ms |1s |10s\n"); in print_banner()
70 printf("|1us |10us |100us |1ms |10ms " in print_banner()
71 "|100ms |1s |10s\n"); in print_banner()
/linux-6.14.4/Documentation/scheduler/
Dsched-bwc.rst84 cpu.cfs_period_us=100ms
95 period is 1ms. There is also an upper bound on the period length of 1s.
120 /proc/sys/kernel/sched_cfs_bandwidth_slice_us (default=5ms)
163 Once a slice is assigned to a cpu it does not expire. However all but 1ms of
181 1ms per cpu or as defined by min_cfs_rq_runtime). This slight burst only
186 also limits the burst ability to no more than 1ms per cpu. This provides
199 will use up to 1ms additional quota in some periods, thereby preventing the
210 If period is 250ms and quota is also 250ms, the group will get
211 1 CPU worth of runtime every 250ms.
213 # echo 250000 > cpu.cfs_quota_us /* quota = 250ms */
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/linux-6.14.4/drivers/iommu/intel/
Dperf.h20 COUNTS_10e4, /* 1us ~ 10us */
21 COUNTS_10e5, /* 10us ~ 100us */
22 COUNTS_10e6, /* 100us ~ 1ms */
23 COUNTS_10e7, /* 1ms ~ 10ms */
24 COUNTS_10e8_plus, /* 10ms and plus*/
/linux-6.14.4/drivers/gpu/drm/panel/
Dpanel-feiyang-fy07024di26a30d.c58 /* T1 (dvdd start + dvdd rise) 0 < T1 <= 10ms */ in feiyang_prepare()
59 msleep(10); in feiyang_prepare()
65 /* T3 (dvdd rise + avdd start + avdd rise) T3 >= 20ms */ in feiyang_prepare()
72 * T5 >= 10ms, 0 < T6 <= 10ms in feiyang_prepare()
78 /* T12 (video & logic signal rise + backlight rise) T12 >= 200ms */ in feiyang_prepare()
98 /* T12 (video & logic signal rise + backlight rise) T12 >= 200ms */ in feiyang_enable()
126 /* T13 (backlight fall + video & logic signal fall) T13 >= 200ms */ in feiyang_unprepare()
133 /* T11 (dvdd rise to fall) 0 < T11 <= 10ms */ in feiyang_unprepare()
134 msleep(10); in feiyang_unprepare()
/linux-6.14.4/drivers/scsi/
Dmesh.c68 MODULE_PARM_DESC(sync_rate, "Synchronous rate (0..10, 0=async)");
186 static void mesh_done(struct mesh_state *ms, int start_next);
187 static void mesh_interrupt(struct mesh_state *ms);
188 static void cmd_complete(struct mesh_state *ms);
189 static void set_dma_cmds(struct mesh_state *ms, struct scsi_cmnd *cmd);
190 static void halt_dma(struct mesh_state *ms);
191 static void phase_mismatch(struct mesh_state *ms);
213 static void dlog(struct mesh_state *ms, char *fmt, int a) in dlog() argument
215 struct mesh_target *tp = &ms->tgts[ms->conn_tgt]; in dlog()
219 slp = &ms->log[ms->log_ix]; in dlog()
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/linux-6.14.4/drivers/usb/chipidea/
Dotg_fsm.h20 * TA_VBUS_RISE <= 100ms, section 4.4
31 * and 30000 ms, section 5.5, Table 5-1
34 #define TA_AIDL_BDIS (5000) /* a_suspend min 200 ms, section 5.2.1
39 * 500ms is used for B switch to host
48 #define TB_DATA_PLS (10) /* b_srp_init,continue 5~10ms
56 #define TB_ASE0_BRST (155) /* minimum 155 ms, section:5.3.1 */
62 #define TB_AIDL_BDIS (20) /* 4ms ~ 150ms, section 5.2.1 */
/linux-6.14.4/Documentation/hwmon/
Dds1621.rst112 - DS1621 - 750ms (older devices may take up to 1000ms)
113 - DS1625 - 500ms
114 - DS1631 - 93ms..750ms for 9..12 bits resolution, respectively.
115 - DS1721 - 93ms..750ms for 9..12 bits resolution, respectively.
116 - DS1731 - 93ms..750ms for 9..12 bits resolution, respectively.
119 On the DS1621, internal access to non-volatile registers may last for 10ms
128 - DS1721: +/- 1.0 degree Celsius (from -10 to +85 degrees)
129 - DS1731: +/- 1.0 degree Celsius (from -10 to +85 degrees)
147 1 0 10 bits, 0.25 degrees Celsius
217 - 93.75ms = minimum conversion time
/linux-6.14.4/Documentation/translations/sp_SP/scheduler/
Dsched-bwc.rst107 cpu.cfs_period_us=100ms
118 la cuota o periodo es 1ms. Hay también un límite superior en la duración del
146 /proc/sys/kernel/sched_cfs_bandwidth_slice_us (valor por defecto=5ms)
194 excepto las "slices" menos las de 1ms, puede ser devueltas a la reserva global
213 (típicamente como mucho 1ms por cada cpu o lo que se ha definido como
220 también limita la habilidad de un sobreuso a no más de 1ms por cada cpu.
236 no ligada a ninguna CPU use su 1ms adicional de cuota en algunos periodos,
249 Si el periodo son 250ms y la cuota son 250ms el grupo de tareas tendrá el tiempo
250 de ejecución de 1 CPU cada 250ms::
252 # echo 250000 > cpu.cfs_quota_us /* cuota = 250ms */
[all …]
/linux-6.14.4/Documentation/devicetree/bindings/leds/backlight/
Dpwm-backlight.yaml35 post-pwm-on-delay-ms:
37 Delay in ms between setting an initial (non-zero) PWM and enabling the
40 pwm-off-delay-ms:
42 Delay in ms between disabling the backlight using GPIO and setting PWM
73 post-pwm-on-delay-ms = <10>;
74 pwm-off-delay-ms = <10>;
/linux-6.14.4/tools/testing/selftests/net/packetdrill/
Dtcp_timestamping_server.pkt12 +0 < S 0:0(0) win 32792 <mss 1000,sackOK,nop,nop,nop,wscale 10>
41 // after write at t=10ms.
59 // after write at t=10ms.
77 // after that at t=10ms.
95 // after that at t=10ms.
112 // SCM_TSTAMP_ACK for the first chunk should be received at t=20ms.
129 // SCM_TSTAMP_ACK for the second chunk should be received at t=30ms.

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