macintosh/via-pmu: Replace via pointer with via1 and via2 pointers
On most PowerPC Macs, the PMU driver uses the shift register and IO port B from a single VIA chip. On 68k and early PowerPC PowerBooks, the driver uses the shift register from one VIA chip together with IO port B from another. Replace via with via1 and via2 to accommodate this. For the CONFIG_PPC_PMAC case, set via1 = via2 so there is no change. Tested-by: Stan Johnson <userm57@yahoo.com> Signed-off-by: Finn Thain <fthain@telegraphics.com.au> Signed-off-by: Michael Ellerman <mpe@ellerman.id.au>
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c70c35da52
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@ -76,7 +76,6 @@
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#define BATTERY_POLLING_COUNT 2
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static DEFINE_MUTEX(pmu_info_proc_mutex);
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static volatile unsigned char __iomem *via;
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/* VIA registers - spaced 0x200 bytes apart */
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#define RS 0x200 /* skip between registers */
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@ -145,6 +144,8 @@ static struct device_node *vias;
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static int pmu_kind = PMU_UNKNOWN;
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static int pmu_fully_inited;
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static int pmu_has_adb;
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static volatile unsigned char __iomem *via1;
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static volatile unsigned char __iomem *via2;
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static struct device_node *gpio_node;
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static unsigned char __iomem *gpio_reg;
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static int gpio_irq = 0;
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@ -340,14 +341,14 @@ int __init find_via_pmu(void)
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} else
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pmu_kind = PMU_UNKNOWN;
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via = ioremap(taddr, 0x2000);
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if (via == NULL) {
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via1 = via2 = ioremap(taddr, 0x2000);
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if (via1 == NULL) {
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printk(KERN_ERR "via-pmu: Can't map address !\n");
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goto fail_via_remap;
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}
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out_8(&via[IER], IER_CLR | 0x7f); /* disable all intrs */
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out_8(&via[IFR], 0x7f); /* clear IFR */
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out_8(&via1[IER], IER_CLR | 0x7f); /* disable all intrs */
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out_8(&via1[IFR], 0x7f); /* clear IFR */
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pmu_state = idle;
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@ -362,8 +363,8 @@ int __init find_via_pmu(void)
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return 1;
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fail_init:
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iounmap(via);
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via = NULL;
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iounmap(via1);
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via1 = via2 = NULL;
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fail_via_remap:
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iounmap(gpio_reg);
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gpio_reg = NULL;
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@ -437,7 +438,7 @@ static int __init via_pmu_start(void)
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}
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/* Enable interrupts */
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out_8(&via[IER], IER_SET | SR_INT | CB1_INT);
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out_8(&via1[IER], IER_SET | SR_INT | CB1_INT);
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pmu_fully_inited = 1;
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@ -535,8 +536,8 @@ init_pmu(void)
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struct adb_request req;
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/* Negate TREQ. Set TACK to input and TREQ to output. */
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out_8(&via[B], in_8(&via[B]) | TREQ);
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out_8(&via[DIRB], (in_8(&via[DIRB]) | TREQ) & ~TACK);
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out_8(&via2[B], in_8(&via2[B]) | TREQ);
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out_8(&via2[DIRB], (in_8(&via2[DIRB]) | TREQ) & ~TACK);
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pmu_request(&req, NULL, 2, PMU_SET_INTR_MASK, pmu_intr_mask);
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timeout = 100000;
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@ -1137,7 +1138,7 @@ wait_for_ack(void)
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* reported
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*/
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int timeout = 4000;
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while ((in_8(&via[B]) & TACK) == 0) {
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while ((in_8(&via2[B]) & TACK) == 0) {
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if (--timeout < 0) {
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printk(KERN_ERR "PMU not responding (!ack)\n");
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return;
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@ -1151,23 +1152,19 @@ wait_for_ack(void)
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static inline void
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send_byte(int x)
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{
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volatile unsigned char __iomem *v = via;
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out_8(&v[ACR], in_8(&v[ACR]) | SR_OUT | SR_EXT);
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out_8(&v[SR], x);
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out_8(&v[B], in_8(&v[B]) & ~TREQ); /* assert TREQ */
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(void)in_8(&v[B]);
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out_8(&via1[ACR], in_8(&via1[ACR]) | SR_OUT | SR_EXT);
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out_8(&via1[SR], x);
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out_8(&via2[B], in_8(&via2[B]) & ~TREQ); /* assert TREQ */
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(void)in_8(&via2[B]);
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}
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static inline void
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recv_byte(void)
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{
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volatile unsigned char __iomem *v = via;
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out_8(&v[ACR], (in_8(&v[ACR]) & ~SR_OUT) | SR_EXT);
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in_8(&v[SR]); /* resets SR */
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out_8(&v[B], in_8(&v[B]) & ~TREQ);
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(void)in_8(&v[B]);
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out_8(&via1[ACR], (in_8(&via1[ACR]) & ~SR_OUT) | SR_EXT);
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in_8(&via1[SR]); /* resets SR */
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out_8(&via2[B], in_8(&via2[B]) & ~TREQ);
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(void)in_8(&via2[B]);
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}
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static inline void
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@ -1270,7 +1267,7 @@ pmu_suspend(void)
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if (!adb_int_pending && pmu_state == idle && !req_awaiting_reply) {
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if (gpio_irq >= 0)
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disable_irq_nosync(gpio_irq);
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out_8(&via[IER], CB1_INT | IER_CLR);
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out_8(&via1[IER], CB1_INT | IER_CLR);
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spin_unlock_irqrestore(&pmu_lock, flags);
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break;
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}
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@ -1294,7 +1291,7 @@ pmu_resume(void)
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adb_int_pending = 1;
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if (gpio_irq >= 0)
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enable_irq(gpio_irq);
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out_8(&via[IER], CB1_INT | IER_SET);
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out_8(&via1[IER], CB1_INT | IER_SET);
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spin_unlock_irqrestore(&pmu_lock, flags);
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pmu_poll();
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}
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@ -1419,20 +1416,20 @@ pmu_sr_intr(void)
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struct adb_request *req;
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int bite = 0;
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if (in_8(&via[B]) & TREQ) {
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printk(KERN_ERR "PMU: spurious SR intr (%x)\n", in_8(&via[B]));
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if (in_8(&via2[B]) & TREQ) {
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printk(KERN_ERR "PMU: spurious SR intr (%x)\n", in_8(&via2[B]));
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return NULL;
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}
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/* The ack may not yet be low when we get the interrupt */
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while ((in_8(&via[B]) & TACK) != 0)
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while ((in_8(&via2[B]) & TACK) != 0)
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;
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/* if reading grab the byte, and reset the interrupt */
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if (pmu_state == reading || pmu_state == reading_intr)
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bite = in_8(&via[SR]);
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bite = in_8(&via1[SR]);
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/* reset TREQ and wait for TACK to go high */
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out_8(&via[B], in_8(&via[B]) | TREQ);
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out_8(&via2[B], in_8(&via2[B]) | TREQ);
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wait_for_ack();
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switch (pmu_state) {
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@ -1533,17 +1530,17 @@ via_pmu_interrupt(int irq, void *arg)
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++disable_poll;
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for (;;) {
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intr = in_8(&via[IFR]) & (SR_INT | CB1_INT);
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intr = in_8(&via1[IFR]) & (SR_INT | CB1_INT);
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if (intr == 0)
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break;
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handled = 1;
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if (++nloop > 1000) {
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printk(KERN_DEBUG "PMU: stuck in intr loop, "
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"intr=%x, ier=%x pmu_state=%d\n",
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intr, in_8(&via[IER]), pmu_state);
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intr, in_8(&via1[IER]), pmu_state);
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break;
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}
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out_8(&via[IFR], intr);
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out_8(&via1[IFR], intr);
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if (intr & CB1_INT) {
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adb_int_pending = 1;
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pmu_irq_stats[0]++;
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@ -1725,29 +1722,29 @@ static u32 save_via[8];
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static void
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save_via_state(void)
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{
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save_via[0] = in_8(&via[ANH]);
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save_via[1] = in_8(&via[DIRA]);
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save_via[2] = in_8(&via[B]);
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save_via[3] = in_8(&via[DIRB]);
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save_via[4] = in_8(&via[PCR]);
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save_via[5] = in_8(&via[ACR]);
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save_via[6] = in_8(&via[T1CL]);
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save_via[7] = in_8(&via[T1CH]);
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save_via[0] = in_8(&via1[ANH]);
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save_via[1] = in_8(&via1[DIRA]);
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save_via[2] = in_8(&via1[B]);
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save_via[3] = in_8(&via1[DIRB]);
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save_via[4] = in_8(&via1[PCR]);
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save_via[5] = in_8(&via1[ACR]);
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save_via[6] = in_8(&via1[T1CL]);
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save_via[7] = in_8(&via1[T1CH]);
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}
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static void
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restore_via_state(void)
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{
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out_8(&via[ANH], save_via[0]);
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out_8(&via[DIRA], save_via[1]);
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out_8(&via[B], save_via[2]);
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out_8(&via[DIRB], save_via[3]);
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out_8(&via[PCR], save_via[4]);
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out_8(&via[ACR], save_via[5]);
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out_8(&via[T1CL], save_via[6]);
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out_8(&via[T1CH], save_via[7]);
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out_8(&via[IER], IER_CLR | 0x7f); /* disable all intrs */
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out_8(&via[IFR], 0x7f); /* clear IFR */
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out_8(&via[IER], IER_SET | SR_INT | CB1_INT);
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out_8(&via1[ANH], save_via[0]);
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out_8(&via1[DIRA], save_via[1]);
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out_8(&via1[B], save_via[2]);
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out_8(&via1[DIRB], save_via[3]);
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out_8(&via1[PCR], save_via[4]);
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out_8(&via1[ACR], save_via[5]);
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out_8(&via1[T1CL], save_via[6]);
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out_8(&via1[T1CH], save_via[7]);
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out_8(&via1[IER], IER_CLR | 0x7f); /* disable all intrs */
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out_8(&via1[IFR], 0x7f); /* clear IFR */
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out_8(&via1[IER], IER_SET | SR_INT | CB1_INT);
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}
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#define GRACKLE_PM (1<<7)
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@ -2389,33 +2386,33 @@ device_initcall(pmu_device_init);
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#ifdef DEBUG_SLEEP
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static inline void
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polled_handshake(volatile unsigned char __iomem *via)
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polled_handshake(void)
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{
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via[B] &= ~TREQ; eieio();
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while ((via[B] & TACK) != 0)
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via2[B] &= ~TREQ; eieio();
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while ((via2[B] & TACK) != 0)
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;
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via[B] |= TREQ; eieio();
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while ((via[B] & TACK) == 0)
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via2[B] |= TREQ; eieio();
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while ((via2[B] & TACK) == 0)
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;
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}
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static inline void
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polled_send_byte(volatile unsigned char __iomem *via, int x)
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polled_send_byte(int x)
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{
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via[ACR] |= SR_OUT | SR_EXT; eieio();
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via[SR] = x; eieio();
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polled_handshake(via);
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via1[ACR] |= SR_OUT | SR_EXT; eieio();
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via1[SR] = x; eieio();
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polled_handshake();
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}
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static inline int
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polled_recv_byte(volatile unsigned char __iomem *via)
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polled_recv_byte(void)
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{
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int x;
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via[ACR] = (via[ACR] & ~SR_OUT) | SR_EXT; eieio();
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x = via[SR]; eieio();
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polled_handshake(via);
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x = via[SR]; eieio();
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via1[ACR] = (via1[ACR] & ~SR_OUT) | SR_EXT; eieio();
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x = via1[SR]; eieio();
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polled_handshake();
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x = via1[SR]; eieio();
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return x;
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}
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@ -2424,7 +2421,6 @@ pmu_polled_request(struct adb_request *req)
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{
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unsigned long flags;
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int i, l, c;
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volatile unsigned char __iomem *v = via;
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req->complete = 1;
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c = req->data[0];
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@ -2436,21 +2432,21 @@ pmu_polled_request(struct adb_request *req)
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while (pmu_state != idle)
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pmu_poll();
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while ((via[B] & TACK) == 0)
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while ((via2[B] & TACK) == 0)
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;
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polled_send_byte(v, c);
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polled_send_byte(c);
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if (l < 0) {
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l = req->nbytes - 1;
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polled_send_byte(v, l);
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polled_send_byte(l);
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}
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for (i = 1; i <= l; ++i)
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polled_send_byte(v, req->data[i]);
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polled_send_byte(req->data[i]);
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l = pmu_data_len[c][1];
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if (l < 0)
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l = polled_recv_byte(v);
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l = polled_recv_byte();
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for (i = 0; i < l; ++i)
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req->reply[i + req->reply_len] = polled_recv_byte(v);
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req->reply[i + req->reply_len] = polled_recv_byte();
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if (req->done)
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(*req->done)(req);
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