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@@ -492,29 +492,29 @@ static int read_rom(struct fw_device *device,
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return rcode;
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}
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-#define READ_BIB_ROM_SIZE 256
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+#define MAX_CONFIG_ROM_SIZE 256
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/*
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* Read the bus info block, perform a speed probe, and read all of the rest of
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* the config ROM. We do all this with a cached bus generation. If the bus
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- * generation changes under us, read_bus_info_block will fail and get retried.
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+ * generation changes under us, read_config_rom will fail and get retried.
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* It's better to start all over in this case because the node from which we
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* are reading the ROM may have changed the ROM during the reset.
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*/
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-static int read_bus_info_block(struct fw_device *device, int generation)
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+static int read_config_rom(struct fw_device *device, int generation)
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{
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const u32 *old_rom, *new_rom;
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u32 *rom, *stack;
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u32 sp, key;
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int i, end, length, ret = -1;
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- rom = kmalloc(sizeof(*rom) * READ_BIB_ROM_SIZE +
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- sizeof(*stack) * READ_BIB_ROM_SIZE, GFP_KERNEL);
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+ rom = kmalloc(sizeof(*rom) * MAX_CONFIG_ROM_SIZE +
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+ sizeof(*stack) * MAX_CONFIG_ROM_SIZE, GFP_KERNEL);
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if (rom == NULL)
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return -ENOMEM;
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- stack = &rom[READ_BIB_ROM_SIZE];
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- memset(rom, 0, sizeof(*rom) * READ_BIB_ROM_SIZE);
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+ stack = &rom[MAX_CONFIG_ROM_SIZE];
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+ memset(rom, 0, sizeof(*rom) * MAX_CONFIG_ROM_SIZE);
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device->max_speed = SCODE_100;
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@@ -581,14 +581,14 @@ static int read_bus_info_block(struct fw_device *device, int generation)
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*/
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key = stack[--sp];
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i = key & 0xffffff;
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- if (WARN_ON(i >= READ_BIB_ROM_SIZE))
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+ if (WARN_ON(i >= MAX_CONFIG_ROM_SIZE))
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goto out;
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/* Read header quadlet for the block to get the length. */
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if (read_rom(device, generation, i, &rom[i]) != RCODE_COMPLETE)
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goto out;
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end = i + (rom[i] >> 16) + 1;
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- if (end > READ_BIB_ROM_SIZE) {
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+ if (end > MAX_CONFIG_ROM_SIZE) {
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/*
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* This block extends outside the config ROM which is
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* a firmware bug. Ignore this whole block, i.e.
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@@ -621,7 +621,7 @@ static int read_bus_info_block(struct fw_device *device, int generation)
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* fake immediate entry so that later iterators over
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* the ROM don't have to check offsets all the time.
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*/
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- if (i + (rom[i] & 0xffffff) >= READ_BIB_ROM_SIZE) {
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+ if (i + (rom[i] & 0xffffff) >= MAX_CONFIG_ROM_SIZE) {
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fw_error("skipped unsupported ROM entry %x at %llx\n",
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rom[i],
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i * 4 | CSR_REGISTER_BASE | CSR_CONFIG_ROM);
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@@ -971,7 +971,7 @@ static void fw_device_init(struct work_struct *work)
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* device.
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*/
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- if (read_bus_info_block(device, device->generation) < 0) {
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+ if (read_config_rom(device, device->generation) < 0) {
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if (device->config_rom_retries < MAX_RETRIES &&
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atomic_read(&device->state) == FW_DEVICE_INITIALIZING) {
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device->config_rom_retries++;
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@@ -1088,7 +1088,7 @@ enum {
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};
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/* Reread and compare bus info block and header of root directory */
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-static int reread_bus_info_block(struct fw_device *device, int generation)
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+static int reread_config_rom(struct fw_device *device, int generation)
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{
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u32 q;
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int i;
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@@ -1114,7 +1114,7 @@ static void fw_device_refresh(struct work_struct *work)
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struct fw_card *card = device->card;
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int node_id = device->node_id;
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- switch (reread_bus_info_block(device, device->generation)) {
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+ switch (reread_config_rom(device, device->generation)) {
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case REREAD_BIB_ERROR:
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if (device->config_rom_retries < MAX_RETRIES / 2 &&
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atomic_read(&device->state) == FW_DEVICE_INITIALIZING) {
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@@ -1148,7 +1148,7 @@ static void fw_device_refresh(struct work_struct *work)
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*/
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device_for_each_child(&device->device, NULL, shutdown_unit);
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- if (read_bus_info_block(device, device->generation) < 0) {
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+ if (read_config_rom(device, device->generation) < 0) {
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if (device->config_rom_retries < MAX_RETRIES &&
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atomic_read(&device->state) == FW_DEVICE_INITIALIZING) {
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device->config_rom_retries++;
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