/linux-6.12.1/drivers/clocksource/ |
D | timer-zevio.c | 51 void __iomem *timer1, *timer2; member 67 writel(delta, timer->timer1 + IO_CURRENT_VAL); in zevio_timer_set_event() 69 timer->timer1 + IO_CONTROL); in zevio_timer_set_event() 83 writel(CNTL_STOP_TIMER, timer->timer1 + IO_CONTROL); in zevio_timer_shutdown() 108 writel(CNTL_STOP_TIMER, timer->timer1 + IO_CONTROL); in zevio_timer_interrupt() 131 timer->timer1 = timer->base + IO_TIMER1; in zevio_timer_add() 164 writel(CNTL_STOP_TIMER, timer->timer1 + IO_CONTROL); in zevio_timer_add() 165 writel(0, timer->timer1 + IO_DIVIDER); in zevio_timer_add()
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D | timer-orion.c | 139 /* we are only interested in timer1 irq */ in orion_timer_init() 142 pr_err("%pOFn: unable to parse timer1 irq\n", np); in orion_timer_init() 166 /* setup timer1 as clockevent timer */ in orion_timer_init()
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D | timer-npcm7xx.c | 184 "npcm7xx-timer1", timer_of_rate(&npcm7xx_to), in npcm7xx_clocksource_init() 203 /* Enable the clock for timer1, if it exists */ in npcm7xx_timer_init() 209 pr_warn("%pOF: Failed to get clock for timer1: %pe", np, clk); in npcm7xx_timer_init()
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D | arc_timer.c | 7 /* ARC700 has two 32bit independent prog Timers: TIMER0 and TIMER1, Each can be 9 * We've designated TIMER0 for clockevents and TIMER1 for clocksource 193 * 32bit TIMER1 to keep counting monotonically and wraparound 207 .name = "ARC Timer1",
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D | timer-ixp4xx.c | 159 * We use OS timer1 on the CPU for the timer tick and the timestamp 199 tmr->clkevt.name = "ixp4xx timer1"; in ixp4xx_timer_register() 210 IRQF_TIMER, "IXP4XX-TIMER1", tmr); in ixp4xx_timer_register()
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D | timer-fttmr010.c | 386 IRQF_TIMER, "FTTMR010-TIMER1", in fttmr010_common_init() 391 IRQF_TIMER, "FTTMR010-TIMER1", in fttmr010_common_init() 395 pr_err("FTTMR010-TIMER1 no IRQ\n"); in fttmr010_common_init() 399 fttmr010->clkevt.name = "FTTMR010-TIMER1"; in fttmr010_common_init()
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D | timer-owl.c | 131 timer1_irq = of_irq_get_byname(node, "timer1"); in owl_timer_init() 133 pr_err("Can't parse timer1 IRQ\n"); in owl_timer_init()
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/linux-6.12.1/sound/isa/gus/ |
D | gus_timer.c | 91 struct snd_timer *timer = gus->gf1.timer1; in snd_gf1_interrupt_timer1() 132 gus->gf1.timer1 = NULL; in snd_gf1_timer1_free() 146 if (gus->gf1.timer1 != NULL || gus->gf1.timer2 != NULL) in snd_gf1_timers_init() 164 gus->gf1.timer1 = timer; in snd_gf1_timers_init() 180 if (gus->gf1.timer1) { in snd_gf1_timers_done() 181 snd_device_free(gus->card, gus->gf1.timer1); in snd_gf1_timers_done() 182 gus->gf1.timer1 = NULL; in snd_gf1_timers_done()
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/linux-6.12.1/Documentation/devicetree/bindings/timer/ |
D | ezchip,nps400-timer1.txt | 5 - compatible : should be "ezchip,nps400-timer1" 7 Clocks required for compatible = "ezchip,nps400-timer1": 13 compatible = "ezchip,nps400-timer1";
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D | snps,arc-timer.txt | 4 - Two identical copies TIMER0 and TIMER1 exist in ARC cores and historically 6 TIMER1 used for clocksource (mandatory for ARC700, optional for ARC HS) 24 timer1 {
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D | cirrus,clps711x-timer.txt | 13 timer0 = &timer1; 14 timer1 = &timer2; 17 timer1: timer@80000300 {
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D | actions,owl-timer.txt | 10 "timer0", "timer1", "timer2", "timer3" 20 interrupt-names = "timer0", "timer1";
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D | realtek,otto-timer.yaml | 29 - description: timer1 registers 40 - description: timer1 interrupt
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D | arm,sp804.yaml | 56 be 1 or 3 clocks. With 3 clocks, the order is timer0 clock, timer1 96 clock-names = "timer1", "timer2", "apb_pclk";
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/linux-6.12.1/arch/arm64/boot/dts/broadcom/stingray/ |
D | stingray.dtsi | 347 clock-names = "timer1", "timer2", "apb_pclk"; 351 timer1: timer@40000 { label 358 clock-names = "timer1", "timer2", "apb_pclk"; 368 clock-names = "timer1", "timer2", "apb_pclk"; 379 clock-names = "timer1", "timer2", "apb_pclk"; 390 clock-names = "timer1", "timer2", "apb_pclk"; 401 clock-names = "timer1", "timer2", "apb_pclk"; 412 clock-names = "timer1", "timer2", "apb_pclk"; 423 clock-names = "timer1", "timer2", "apb_pclk";
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/linux-6.12.1/arch/arc/boot/dts/ |
D | skeleton.dtsi | 38 /* TIMER1 for free running clocksource */ 39 timer1 {
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D | skeleton_hs.dtsi | 39 /* TIMER1 for free running clocksource: Fallback if rtc not found */ 40 timer1 {
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/linux-6.12.1/arch/arm/boot/dts/cirrus/ |
D | ep7209.dtsi | 23 timer0 = &timer1; 24 timer1 = &timer2; 117 timer1: timer@80000300 { label
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/linux-6.12.1/arch/arm64/boot/dts/altera/ |
D | socfpga_stratix10_swvp.dts | 17 timer1 = &timer1;
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/linux-6.12.1/arch/mips/boot/dts/mobileye/ |
D | eyeq5-pins.dtsi | 13 timer1_pins: timer1-pins { 14 function = "timer1";
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/linux-6.12.1/sound/drivers/opl3/ |
D | opl3_lib.c | 98 /* Set timer1 to 0xff */ in snd_opl3_detect() 252 opl3->timer1 = timer; in snd_opl3_timer1_init() 296 timer = opl3->timer1; in snd_opl3_interrupt() 466 snd_device_free(opl3->card, opl3->timer1); in snd_opl3_timer_new() 467 opl3->timer1 = NULL; in snd_opl3_timer_new()
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/linux-6.12.1/arch/m68k/bvme6000/ |
D | config.c | 182 * So, when reading the elapsed time, you should read timer1, 246 rtc->t1cr_omr |= 0x40; /* Latch timer1 */ in bvme6000_read_clk() 247 msb = rtc->t1msb; /* Read timer1 */ in bvme6000_read_clk() 248 v = (msb << 8) | rtc->t1lsb; /* Read timer1 */ in bvme6000_read_clk()
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/linux-6.12.1/drivers/pci/hotplug/ |
D | cpcihp_zt5550.c | 113 * Disable timer0, timer1 and ENUM interrupts in zt5550_hc_config() 115 dbg("disabling timer0, timer1 and ENUM interrupts"); in zt5550_hc_config() 117 dbg("disabled timer0, timer1 and ENUM interrupts"); in zt5550_hc_config()
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/linux-6.12.1/drivers/clk/ |
D | clk-clps711x.c | 96 /* Timer1 in free running mode. in clps711x_clk_init_dt() 119 clk_hw_register_divider_table(NULL, "timer1", "timer_ref", 0, in clps711x_clk_init_dt()
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/linux-6.12.1/include/dt-bindings/pinctrl/ |
D | k210-fpioa.h | 208 #define K210_PCF_TIMER1_TOGGLE1 194 /* TIMER1 Toggle Output 1 */ 209 #define K210_PCF_TIMER1_TOGGLE2 195 /* TIMER1 Toggle Output 2 */ 210 #define K210_PCF_TIMER1_TOGGLE3 196 /* TIMER1 Toggle Output 3 */ 211 #define K210_PCF_TIMER1_TOGGLE4 197 /* TIMER1 Toggle Output 4 */
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