80bd109cd3
- move system calls for use by services from libminlib into libsys; - move srv_fork(2) and srv_kill(2) from RS and into libsys; - replace getprocnr(2) with sef_self(3); - rename previous getnprocnr(2) to getprocnr(2); - clean up getepinfo(2); - change all libsys calls that used _syscall to use _taskcall, so as to avoid going through errno to pass errors; this is already how most calls work anyway, and many of the calls previously using _syscall were already assumed to return the actual error; - initialize request messages to zero, for future compatibility (note that this does not include PCI calls, which are in need of a much bigger overhaul, nor kernel calls); - clean up more of dead DS code as a side effect. Change-Id: I8788f54c68598fcf58e23486e270c2d749780ebb
219 lines
4.3 KiB
C
219 lines
4.3 KiB
C
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#include <minix/ds.h>
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#include <string.h>
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#include "syslib.h"
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static int do_invoke_ds(message *m, int type, const char *ds_name)
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{
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cp_grant_id_t g_key;
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size_t len_key;
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int access, r;
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if(type == DS_CHECK || type == DS_RETRIEVE_LABEL) {
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len_key = DS_MAX_KEYLEN;
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access = CPF_WRITE;
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} else {
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len_key = strlen(ds_name)+1;
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access = CPF_READ;
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}
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/* Grant for key. */
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g_key = cpf_grant_direct(DS_PROC_NR, (vir_bytes) ds_name,
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len_key, access);
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if(!GRANT_VALID(g_key))
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return ENOMEM;
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m->DS_KEY_GRANT = g_key;
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m->DS_KEY_LEN = len_key;
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r = _taskcall(DS_PROC_NR, type, m);
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cpf_revoke(g_key);
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return r;
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}
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int ds_publish_label(const char *ds_name, endpoint_t endpoint, int flags)
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{
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message m;
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memset(&m, 0, sizeof(m));
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m.DS_VAL = (u32_t) endpoint;
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m.DS_FLAGS = DSF_TYPE_LABEL | flags;
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return do_invoke_ds(&m, DS_PUBLISH, ds_name);
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}
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int ds_publish_u32(const char *ds_name, u32_t value, int flags)
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{
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message m;
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memset(&m, 0, sizeof(m));
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m.DS_VAL = value;
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m.DS_FLAGS = DSF_TYPE_U32 | flags;
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return do_invoke_ds(&m, DS_PUBLISH, ds_name);
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}
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static int ds_publish_raw(const char *ds_name, void *vaddr, size_t length,
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int flags)
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{
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cp_grant_id_t gid;
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message m;
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int r;
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/* Grant for memory range. */
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gid = cpf_grant_direct(DS_PROC_NR, (vir_bytes)vaddr, length, CPF_READ);
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if(!GRANT_VALID(gid))
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return ENOMEM;
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memset(&m, 0, sizeof(m));
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m.DS_VAL = gid;
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m.DS_VAL_LEN = length;
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m.DS_FLAGS = flags;
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r = do_invoke_ds(&m, DS_PUBLISH, ds_name);
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cpf_revoke(gid);
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return r;
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}
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int ds_publish_str(const char *ds_name, char *value, int flags)
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{
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size_t length;
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length = strlen(value) + 1;
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value[length - 1] = '\0';
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return ds_publish_raw(ds_name, value, length, flags | DSF_TYPE_STR);
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}
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int ds_publish_mem(const char *ds_name, void *vaddr, size_t length, int flags)
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{
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return ds_publish_raw(ds_name, vaddr, length, flags | DSF_TYPE_MEM);
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}
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int ds_retrieve_label_name(char *ds_name, endpoint_t endpoint)
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{
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message m;
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int r;
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memset(&m, 0, sizeof(m));
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m.DS_VAL = (u32_t) endpoint;
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r = do_invoke_ds(&m, DS_RETRIEVE_LABEL, ds_name);
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return r;
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}
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int ds_retrieve_label_endpt(const char *ds_name, endpoint_t *endpoint)
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{
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message m;
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int r;
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memset(&m, 0, sizeof(m));
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m.DS_FLAGS = DSF_TYPE_LABEL;
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r = do_invoke_ds(&m, DS_RETRIEVE, ds_name);
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*endpoint = (endpoint_t) m.DS_VAL;
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return r;
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}
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int ds_retrieve_u32(const char *ds_name, u32_t *value)
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{
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message m;
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int r;
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memset(&m, 0, sizeof(m));
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m.DS_FLAGS = DSF_TYPE_U32;
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r = do_invoke_ds(&m, DS_RETRIEVE, ds_name);
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*value = m.DS_VAL;
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return r;
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}
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static int ds_retrieve_raw(const char *ds_name, char *vaddr, size_t *length,
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int flags)
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{
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message m;
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cp_grant_id_t gid;
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int r;
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/* Grant for memory range. */
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gid = cpf_grant_direct(DS_PROC_NR, (vir_bytes)vaddr, *length, CPF_WRITE);
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if(!GRANT_VALID(gid))
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return ENOMEM;
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memset(&m, 0, sizeof(m));
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m.DS_VAL = gid;
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m.DS_VAL_LEN = *length;
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m.DS_FLAGS = flags;
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r = do_invoke_ds(&m, DS_RETRIEVE, ds_name);
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*length = m.DS_VAL_LEN;
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cpf_revoke(gid);
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return r;
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}
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int ds_retrieve_str(const char *ds_name, char *value, size_t len_str)
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{
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int r;
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size_t length = len_str + 1;
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r = ds_retrieve_raw(ds_name, value, &length, DSF_TYPE_STR);
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value[length - 1] = '\0';
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return r;
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}
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int ds_retrieve_mem(const char *ds_name, char *vaddr, size_t *length)
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{
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return ds_retrieve_raw(ds_name, vaddr, length, DSF_TYPE_MEM);
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}
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int ds_delete_u32(const char *ds_name)
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{
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message m;
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memset(&m, 0, sizeof(m));
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m.DS_FLAGS = DSF_TYPE_U32;
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return do_invoke_ds(&m, DS_DELETE, ds_name);
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}
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int ds_delete_str(const char *ds_name)
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{
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message m;
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memset(&m, 0, sizeof(m));
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m.DS_FLAGS = DSF_TYPE_STR;
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return do_invoke_ds(&m, DS_DELETE, ds_name);
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}
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int ds_delete_mem(const char *ds_name)
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{
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message m;
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memset(&m, 0, sizeof(m));
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m.DS_FLAGS = DSF_TYPE_MEM;
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return do_invoke_ds(&m, DS_DELETE, ds_name);
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}
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int ds_delete_label(const char *ds_name)
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{
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message m;
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memset(&m, 0, sizeof(m));
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m.DS_FLAGS = DSF_TYPE_LABEL;
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return do_invoke_ds(&m, DS_DELETE, ds_name);
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}
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int ds_subscribe(const char *regexp, int flags)
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{
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message m;
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memset(&m, 0, sizeof(m));
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m.DS_FLAGS = flags;
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return do_invoke_ds(&m, DS_SUBSCRIBE, regexp);
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}
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int ds_check(char *ds_key, int *type, endpoint_t *owner_e)
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{
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message m;
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int r;
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memset(&m, 0, sizeof(m));
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r = do_invoke_ds(&m, DS_CHECK, ds_key);
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if(type) *type = m.DS_FLAGS;
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if(owner_e) *owner_e = m.DS_OWNER;
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return r;
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}
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