dtc: Remove remaining old-style checks
The remaining old-style tree checking code: check_root(), check_cpus() and check_memory() really aren't that useful. They mostly check for the presence of particular nodes and properties. That's inherently prone to false-positives, because we could be dealing with an artificial tree (like many of the testcases) or it could be expected that the missing properties are filled in by a bootloader or other agent. If any of these checks really turns out to be useful, we can reimplement them later in a better conceived way on top of the new checking infrastructure. For now, just get rid of them, removing the last vestiges of the old-style checking code (hoorah). Signed-off-by: David Gibson <david@gibson.dropbear.id.au>
This commit is contained in:
parent
d6f9b62fe1
commit
376ab6f2ed
3 changed files with 3 additions and 217 deletions
215
checks.c
215
checks.c
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@ -511,10 +511,7 @@ static struct check *check_table[] = {
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&obsolete_chosen_interrupt_controller,
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};
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int check_semantics(struct node *dt, int outversion, int boot_cpuid_phys);
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void process_checks(int force, struct boot_info *bi,
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int checkflag, int outversion, int boot_cpuid_phys)
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void process_checks(int force, struct boot_info *bi)
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{
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struct node *dt = bi->dt;
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int i;
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@ -537,214 +534,4 @@ void process_checks(int force, struct boot_info *bi,
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"output forced\n");
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}
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}
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if (checkflag) {
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if (error) {
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fprintf(stderr, "Warning: Skipping semantic checks due to structural errors\n");
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} else {
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if (!check_semantics(bi->dt, outversion,
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boot_cpuid_phys))
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fprintf(stderr, "Warning: Input tree has semantic errors\n");
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}
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}
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}
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/*
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* Semantic check functions
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*/
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#define ERRMSG(...) if (quiet < 2) fprintf(stderr, "ERROR: " __VA_ARGS__)
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#define WARNMSG(...) if (quiet < 1) fprintf(stderr, "Warning: " __VA_ARGS__)
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#define DO_ERR(...) do {ERRMSG(__VA_ARGS__); ok = 0; } while (0)
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#define CHECK_HAVE(node, propname) \
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do { \
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if (! (prop = get_property((node), (propname)))) \
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DO_ERR("Missing \"%s\" property in %s\n", (propname), \
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(node)->fullpath); \
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} while (0);
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#define CHECK_HAVE_WARN(node, propname) \
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do { \
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if (! (prop = get_property((node), (propname)))) \
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WARNMSG("%s has no \"%s\" property\n", \
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(node)->fullpath, (propname)); \
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} while (0)
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#define CHECK_HAVE_STRING(node, propname) \
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do { \
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CHECK_HAVE((node), (propname)); \
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if (prop && !data_is_one_string(prop->val)) \
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DO_ERR("\"%s\" property in %s is not a string\n", \
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(propname), (node)->fullpath); \
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} while (0)
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#define CHECK_HAVE_STREQ(node, propname, value) \
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do { \
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CHECK_HAVE_STRING((node), (propname)); \
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if (prop && !streq(prop->val.val, (value))) \
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DO_ERR("%s has wrong %s, %s (should be %s\n", \
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(node)->fullpath, (propname), \
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prop->val.val, (value)); \
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} while (0)
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#define CHECK_HAVE_ONECELL(node, propname) \
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do { \
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CHECK_HAVE((node), (propname)); \
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if (prop && (prop->val.len != sizeof(cell_t))) \
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DO_ERR("\"%s\" property in %s has wrong size %d (should be 1 cell)\n", (propname), (node)->fullpath, prop->val.len); \
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} while (0)
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#define CHECK_HAVE_WARN_ONECELL(node, propname) \
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do { \
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CHECK_HAVE_WARN((node), (propname)); \
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if (prop && (prop->val.len != sizeof(cell_t))) \
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DO_ERR("\"%s\" property in %s has wrong size %d (should be 1 cell)\n", (propname), (node)->fullpath, prop->val.len); \
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} while (0)
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#define CHECK_HAVE_WARN_PHANDLE(xnode, propname, root) \
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do { \
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struct node *ref; \
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CHECK_HAVE_WARN_ONECELL((xnode), (propname)); \
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if (prop) {\
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cell_t phandle = propval_cell(prop); \
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if ((phandle == 0) || (phandle == -1)) { \
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DO_ERR("\"%s\" property in %s contains an invalid phandle %x\n", (propname), (xnode)->fullpath, phandle); \
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} else { \
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ref = get_node_by_phandle((root), propval_cell(prop)); \
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if (! ref) \
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DO_ERR("\"%s\" property in %s refers to non-existant phandle %x\n", (propname), (xnode)->fullpath, propval_cell(prop)); \
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} \
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} \
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} while (0)
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#define CHECK_HAVE_WARN_STRING(node, propname) \
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do { \
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CHECK_HAVE_WARN((node), (propname)); \
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if (prop && !data_is_one_string(prop->val)) \
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DO_ERR("\"%s\" property in %s is not a string\n", \
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(propname), (node)->fullpath); \
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} while (0)
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static int check_root(struct node *root)
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{
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struct property *prop;
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int ok = 1;
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CHECK_HAVE_STRING(root, "model");
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CHECK_HAVE_WARN(root, "compatible");
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return ok;
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}
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static int check_cpus(struct node *root, int outversion, int boot_cpuid_phys)
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{
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struct node *cpus, *cpu;
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struct property *prop;
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struct node *bootcpu = NULL;
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int ok = 1;
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cpus = get_subnode(root, "cpus");
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if (! cpus) {
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ERRMSG("Missing /cpus node\n");
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return 0;
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}
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if (cpus->addr_cells != 1)
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DO_ERR("%s has bad #address-cells value %d (should be 1)\n",
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cpus->fullpath, cpus->addr_cells);
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if (cpus->size_cells != 0)
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DO_ERR("%s has bad #size-cells value %d (should be 0)\n",
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cpus->fullpath, cpus->size_cells);
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for_each_child(cpus, cpu) {
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CHECK_HAVE_STREQ(cpu, "device_type", "cpu");
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CHECK_HAVE_ONECELL(cpu, "reg");
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if (prop) {
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cell_t unitnum;
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char *eptr;
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unitnum = strtol(get_unitname(cpu), &eptr, 16);
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if (*eptr) {
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WARNMSG("%s has bad format unit name %s (should be CPU number\n",
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cpu->fullpath, get_unitname(cpu));
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} else if (unitnum != propval_cell(prop)) {
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WARNMSG("%s unit name \"%s\" does not match \"reg\" property <%x>\n",
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cpu->fullpath, get_unitname(cpu),
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propval_cell(prop));
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}
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}
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/* CHECK_HAVE_ONECELL(cpu, "d-cache-line-size"); */
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/* CHECK_HAVE_ONECELL(cpu, "i-cache-line-size"); */
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CHECK_HAVE_ONECELL(cpu, "d-cache-size");
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CHECK_HAVE_ONECELL(cpu, "i-cache-size");
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CHECK_HAVE_WARN_ONECELL(cpu, "clock-frequency");
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CHECK_HAVE_WARN_ONECELL(cpu, "timebase-frequency");
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prop = get_property(cpu, "linux,boot-cpu");
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if (prop) {
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if (prop->val.len)
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WARNMSG("\"linux,boot-cpu\" property in %s is non-empty\n",
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cpu->fullpath);
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if (bootcpu)
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DO_ERR("Multiple boot cpus (%s and %s)\n",
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bootcpu->fullpath, cpu->fullpath);
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else
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bootcpu = cpu;
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}
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}
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if (outversion < 2) {
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if (! bootcpu)
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WARNMSG("No cpu has \"linux,boot-cpu\" property\n");
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} else {
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if (bootcpu)
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WARNMSG("\"linux,boot-cpu\" property is deprecated in blob version 2 or higher\n");
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if (boot_cpuid_phys == 0xfeedbeef)
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WARNMSG("physical boot CPU not set. Use -b option to set\n");
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}
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return ok;
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}
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static int check_memory(struct node *root)
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{
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struct node *mem;
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struct property *prop;
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int nnodes = 0;
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int ok = 1;
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for_each_child(root, mem) {
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if (! strneq(mem->name, "memory", mem->basenamelen))
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continue;
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nnodes++;
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CHECK_HAVE_STREQ(mem, "device_type", "memory");
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CHECK_HAVE(mem, "reg");
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}
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if (nnodes == 0) {
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ERRMSG("No memory nodes\n");
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return 0;
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}
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return ok;
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}
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int check_semantics(struct node *dt, int outversion, int boot_cpuid_phys)
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{
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int ok = 1;
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ok = ok && check_root(dt);
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ok = ok && check_cpus(dt, outversion, boot_cpuid_phys);
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ok = ok && check_memory(dt);
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if (! ok)
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return 0;
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return 1;
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}
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2
dtc.c
2
dtc.c
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@ -204,7 +204,7 @@ int main(int argc, char *argv[])
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if (! bi || ! bi->dt)
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die("Couldn't read input tree\n");
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process_checks(force, bi, check, outversion, boot_cpuid_phys);
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process_checks(force, bi);
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if (streq(outname, "-")) {
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outf = stdout;
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3
dtc.h
3
dtc.h
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@ -240,8 +240,7 @@ struct boot_info *build_boot_info(struct reserve_info *reservelist,
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/* Checks */
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void process_checks(int force, struct boot_info *bi,
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int checkflag, int outversion, int boot_cpuid_phys);
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void process_checks(int force, struct boot_info *bi);
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/* Flattened trees */
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