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x86: revert assign IRQs to hpet timer
The commits: commit37a47db8d7
Author: Balaji Rao <balajirrao@gmail.com> Date: Wed Jan 30 13:30:03 2008 +0100 x86: assign IRQs to HPET timers, fix and commite3f37a54f6
Author: Balaji Rao <balajirrao@gmail.com> Date: Wed Jan 30 13:30:03 2008 +0100 x86: assign IRQs to HPET timers have been identified to cause a regression on some platforms due to the assignement of legacy IRQs which makes the legacy devices connected to those IRQs disfunctional. Revert them. This fixes http://bugzilla.kernel.org/show_bug.cgi?id=10382 Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Signed-off-by: Ingo Molnar <mingo@elte.hu>
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@ -133,13 +133,16 @@ static void hpet_reserve_platform_timers(unsigned long id)
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#ifdef CONFIG_HPET_EMULATE_RTC
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hpet_reserve_timer(&hd, 1);
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#endif
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hd.hd_irq[0] = HPET_LEGACY_8254;
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hd.hd_irq[1] = HPET_LEGACY_RTC;
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for (i = 2; i < nrtimers; timer++, i++)
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hd.hd_irq[i] = (timer->hpet_config & Tn_INT_ROUTE_CNF_MASK) >>
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Tn_INT_ROUTE_CNF_SHIFT;
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for (i = 2; i < nrtimers; timer++, i++)
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hd.hd_irq[i] = (timer->hpet_config & Tn_INT_ROUTE_CNF_MASK) >>
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Tn_INT_ROUTE_CNF_SHIFT;
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hpet_alloc(&hd);
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}
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#else
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static void hpet_reserve_platform_timers(unsigned long id) { }
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@ -731,14 +731,14 @@ static unsigned long hpet_calibrate(struct hpets *hpetp)
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int hpet_alloc(struct hpet_data *hdp)
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{
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u64 cap, mcfg, hpet_config;
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u64 cap, mcfg;
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struct hpet_dev *devp;
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u32 i, ntimer, irq;
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u32 i, ntimer;
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struct hpets *hpetp;
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size_t siz;
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struct hpet __iomem *hpet;
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static struct hpets *last = NULL;
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unsigned long period, irq_bitmap;
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unsigned long period;
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unsigned long long temp;
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/*
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@ -765,48 +765,12 @@ int hpet_alloc(struct hpet_data *hdp)
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hpetp->hp_hpet_phys = hdp->hd_phys_address;
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hpetp->hp_ntimer = hdp->hd_nirqs;
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for (i = 0; i < hdp->hd_nirqs; i++)
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hpetp->hp_dev[i].hd_hdwirq = hdp->hd_irq[i];
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hpet = hpetp->hp_hpet;
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/* Assign IRQs statically for legacy devices */
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hpetp->hp_dev[0].hd_hdwirq = hdp->hd_irq[0];
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hpetp->hp_dev[1].hd_hdwirq = hdp->hd_irq[1];
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/* Assign IRQs dynamically for the others */
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for (i = 2, devp = &hpetp->hp_dev[2]; i < hdp->hd_nirqs; i++, devp++) {
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struct hpet_timer __iomem *timer;
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timer = &hpet->hpet_timers[devp - hpetp->hp_dev];
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/* Check if there's already an IRQ assigned to the timer */
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if (hdp->hd_irq[i]) {
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hpetp->hp_dev[i].hd_hdwirq = hdp->hd_irq[i];
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continue;
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}
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hpet_config = readq(&timer->hpet_config);
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irq_bitmap = (hpet_config & Tn_INT_ROUTE_CAP_MASK)
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>> Tn_INT_ROUTE_CAP_SHIFT;
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if (!irq_bitmap)
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irq = 0; /* No valid IRQ Assignable */
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else {
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irq = find_first_bit(&irq_bitmap, 32);
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do {
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hpet_config |= irq << Tn_INT_ROUTE_CNF_SHIFT;
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writeq(hpet_config, &timer->hpet_config);
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/*
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* Verify whether we have written a valid
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* IRQ number by reading it back again
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*/
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hpet_config = readq(&timer->hpet_config);
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if (irq == (hpet_config & Tn_INT_ROUTE_CNF_MASK)
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>> Tn_INT_ROUTE_CNF_SHIFT)
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break; /* Success */
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} while ((irq = (find_next_bit(&irq_bitmap, 32, irq))));
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}
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hpetp->hp_dev[i].hd_hdwirq = irq;
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}
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cap = readq(&hpet->hpet_cap);
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ntimer = ((cap & HPET_NUM_TIM_CAP_MASK) >> HPET_NUM_TIM_CAP_SHIFT) + 1;
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@ -836,8 +800,7 @@ int hpet_alloc(struct hpet_data *hdp)
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hpetp->hp_which, hdp->hd_phys_address,
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hpetp->hp_ntimer > 1 ? "s" : "");
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for (i = 0; i < hpetp->hp_ntimer; i++)
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printk("%s %d", i > 0 ? "," : "",
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hpetp->hp_dev[i].hd_hdwirq);
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printk("%s %d", i > 0 ? "," : "", hdp->hd_irq[i]);
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printk("\n");
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printk(KERN_INFO "hpet%u: %u %d-bit timers, %Lu Hz\n",
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@ -64,7 +64,7 @@ struct hpet {
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*/
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#define Tn_INT_ROUTE_CAP_MASK (0xffffffff00000000ULL)
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#define Tn_INT_ROUTE_CAP_SHIFT (32UL)
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#define Tn_INI_ROUTE_CAP_SHIFT (32UL)
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#define Tn_FSB_INT_DELCAP_MASK (0x8000UL)
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#define Tn_FSB_INT_DELCAP_SHIFT (15)
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#define Tn_FSB_EN_CNF_MASK (0x4000UL)
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