PCI: designware: Remove open-coded bitmap operations
Replace them by using the standard kernel bitmap ops. No functional change, but makes the code a lot cleaner. Signed-off-by: Lucas Stach <l.stach@pengutronix.de> Signed-off-by: Bjorn Helgaas <bhelgaas@google.com> Reviewed-by: Pratyush Anand <pratyush.anand@st.com> Acked-by: Jingoo Han <jg1.han@samsung.com>
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@ -196,30 +196,6 @@ void dw_pcie_msi_init(struct pcie_port *pp)
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dw_pcie_wr_own_conf(pp, PCIE_MSI_ADDR_HI, 4, 0);
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}
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static int find_valid_pos0(struct pcie_port *pp, int msgvec, int pos, int *pos0)
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{
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int flag = 1;
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do {
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pos = find_next_zero_bit(pp->msi_irq_in_use,
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MAX_MSI_IRQS, pos);
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/*if you have reached to the end then get out from here.*/
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if (pos == MAX_MSI_IRQS)
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return -ENOSPC;
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/*
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* Check if this position is at correct offset.nvec is always a
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* power of two. pos0 must be nvec bit aligned.
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*/
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if (pos % msgvec)
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pos += msgvec - (pos % msgvec);
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else
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flag = 0;
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} while (flag);
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*pos0 = pos;
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return 0;
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}
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static void dw_pcie_msi_clear_irq(struct pcie_port *pp, int irq)
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{
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unsigned int res, bit, val;
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@ -238,13 +214,14 @@ static void clear_irq_range(struct pcie_port *pp, unsigned int irq_base,
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for (i = 0; i < nvec; i++) {
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irq_set_msi_desc_off(irq_base, i, NULL);
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clear_bit(pos + i, pp->msi_irq_in_use);
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/* Disable corresponding interrupt on MSI controller */
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if (pp->ops->msi_clear_irq)
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pp->ops->msi_clear_irq(pp, pos + i);
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else
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dw_pcie_msi_clear_irq(pp, pos + i);
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}
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bitmap_release_region(pp->msi_irq_in_use, pos, order_base_2(nvec));
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}
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static void dw_pcie_msi_set_irq(struct pcie_port *pp, int irq)
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@ -260,26 +237,13 @@ static void dw_pcie_msi_set_irq(struct pcie_port *pp, int irq)
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static int assign_irq(int no_irqs, struct msi_desc *desc, int *pos)
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{
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int irq, pos0, pos1, i;
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int irq, pos0, i;
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struct pcie_port *pp = sys_to_pcie(desc->dev->bus->sysdata);
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pos0 = find_first_zero_bit(pp->msi_irq_in_use,
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MAX_MSI_IRQS);
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if (pos0 % no_irqs) {
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if (find_valid_pos0(pp, no_irqs, pos0, &pos0))
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pos0 = bitmap_find_free_region(pp->msi_irq_in_use, MAX_MSI_IRQS,
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order_base_2(no_irqs));
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if (pos0 < 0)
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goto no_valid_irq;
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}
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if (no_irqs > 1) {
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pos1 = find_next_bit(pp->msi_irq_in_use,
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MAX_MSI_IRQS, pos0);
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/* there must be nvec number of consecutive free bits */
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while ((pos1 - pos0) < no_irqs) {
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if (find_valid_pos0(pp, no_irqs, pos1, &pos0))
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goto no_valid_irq;
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pos1 = find_next_bit(pp->msi_irq_in_use,
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MAX_MSI_IRQS, pos0);
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}
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}
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irq = irq_find_mapping(pp->irq_domain, pos0);
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if (!irq)
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@ -297,7 +261,6 @@ static int assign_irq(int no_irqs, struct msi_desc *desc, int *pos)
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clear_irq_range(pp, irq, i, pos0);
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goto no_valid_irq;
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}
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set_bit(pos0 + i, pp->msi_irq_in_use);
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/*Enable corresponding interrupt in MSI interrupt controller */
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if (pp->ops->msi_set_irq)
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pp->ops->msi_set_irq(pp, pos0 + i);
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