PCI: replace struct pci_bus secondary/subordinate with busn_res

Replace the struct pci_bus secondary/subordinate members with the
struct resource busn_res.  Later we'll build a resource tree of these
bus numbers.

[bhelgaas: changelog]
Signed-off-by: Yinghai Lu <yinghai@kernel.org>
Signed-off-by: Bjorn Helgaas <bhelgaas@google.com>
diff --git a/drivers/pcmcia/yenta_socket.c b/drivers/pcmcia/yenta_socket.c
index d07f9ac..667678d 100644
--- a/drivers/pcmcia/yenta_socket.c
+++ b/drivers/pcmcia/yenta_socket.c
@@ -1048,8 +1048,8 @@
 	config_writeb(socket, PCI_LATENCY_TIMER, 168);
 	config_writel(socket, PCI_PRIMARY_BUS,
 		(176 << 24) |			   /* sec. latency timer */
-		(dev->subordinate->subordinate << 16) | /* subordinate bus */
-		(dev->subordinate->secondary << 8) |  /* secondary bus */
+		((unsigned int)dev->subordinate->busn_res.end << 16) | /* subordinate bus */
+		((unsigned int)dev->subordinate->busn_res.start << 8) |  /* secondary bus */
 		dev->subordinate->primary);		   /* primary bus */
 
 	/*
@@ -1086,14 +1086,14 @@
 	struct pci_bus *bridge_to_fix = cardbus_bridge->parent;
 
 	/* Check bus numbers are already set up correctly: */
-	if (bridge_to_fix->subordinate >= cardbus_bridge->subordinate)
+	if (bridge_to_fix->busn_res.end >= cardbus_bridge->busn_res.end)
 		return; /* The subordinate number is ok, nothing to do */
 
 	if (!bridge_to_fix->parent)
 		return; /* Root bridges are ok */
 
 	/* stay within the limits of the bus range of the parent: */
-	upper_limit = bridge_to_fix->parent->subordinate;
+	upper_limit = bridge_to_fix->parent->busn_res.end;
 
 	/* check the bus ranges of all silbling bridges to prevent overlap */
 	list_for_each(tmp, &bridge_to_fix->parent->children) {
@@ -1104,36 +1104,36 @@
 		 * current upper limit, set the new upper limit to
 		 * the bus number below the silbling's range:
 		 */
-		if (silbling->secondary > bridge_to_fix->subordinate
-		    && silbling->secondary <= upper_limit)
-			upper_limit = silbling->secondary - 1;
+		if (silbling->busn_res.start > bridge_to_fix->busn_res.end
+		    && silbling->busn_res.start <= upper_limit)
+			upper_limit = silbling->busn_res.start - 1;
 	}
 
 	/* Show that the wanted subordinate number is not possible: */
-	if (cardbus_bridge->subordinate > upper_limit)
+	if (cardbus_bridge->busn_res.end > upper_limit)
 		dev_printk(KERN_WARNING, &cardbus_bridge->dev,
 			   "Upper limit for fixing this "
 			   "bridge's parent bridge: #%02x\n", upper_limit);
 
 	/* If we have room to increase the bridge's subordinate number, */
-	if (bridge_to_fix->subordinate < upper_limit) {
+	if (bridge_to_fix->busn_res.end < upper_limit) {
 
 		/* use the highest number of the hidden bus, within limits */
 		unsigned char subordinate_to_assign =
-			min(cardbus_bridge->subordinate, upper_limit);
+			min_t(int, cardbus_bridge->busn_res.end, upper_limit);
 
 		dev_printk(KERN_INFO, &bridge_to_fix->dev,
 			   "Raising subordinate bus# of parent "
 			   "bus (#%02x) from #%02x to #%02x\n",
 			   bridge_to_fix->number,
-			   bridge_to_fix->subordinate, subordinate_to_assign);
+			   (int)bridge_to_fix->busn_res.end, subordinate_to_assign);
 
 		/* Save the new subordinate in the bus struct of the bridge */
-		bridge_to_fix->subordinate = subordinate_to_assign;
+		bridge_to_fix->busn_res.end = subordinate_to_assign;
 
 		/* and update the PCI config space with the new subordinate */
 		pci_write_config_byte(bridge_to_fix->self,
-			PCI_SUBORDINATE_BUS, bridge_to_fix->subordinate);
+			PCI_SUBORDINATE_BUS, bridge_to_fix->busn_res.end);
 	}
 }