Aesthetics in C code and replaced some asserts with NULL returns.

This commit is contained in:
Davi de Castro Reis 2011-12-26 19:35:30 -02:00
parent 4e4d36d833
commit 24e645febe
27 changed files with 649 additions and 656 deletions

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@ -227,7 +227,7 @@ bdz_config_data_t *bdz_config_new(void)
{ {
bdz_config_data_t *bdz; bdz_config_data_t *bdz;
bdz = (bdz_config_data_t *)malloc(sizeof(bdz_config_data_t)); bdz = (bdz_config_data_t *)malloc(sizeof(bdz_config_data_t));
assert(bdz); if (!bdz) return NULL;
memset(bdz, 0, sizeof(bdz_config_data_t)); memset(bdz, 0, sizeof(bdz_config_data_t));
bdz->hashfunc = CMPH_HASH_JENKINS; bdz->hashfunc = CMPH_HASH_JENKINS;
bdz->g = NULL; bdz->g = NULL;

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@ -128,4 +128,3 @@ int main(int argc, char** argv) {
lsmap_destroy(g_created_mphf); lsmap_destroy(g_created_mphf);
return 0; return 0;
} }

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@ -24,7 +24,7 @@ bmz_config_data_t *bmz_config_new(void)
{ {
bmz_config_data_t *bmz = NULL; bmz_config_data_t *bmz = NULL;
bmz = (bmz_config_data_t *)malloc(sizeof(bmz_config_data_t)); bmz = (bmz_config_data_t *)malloc(sizeof(bmz_config_data_t));
assert(bmz); if (!bmz) return NULL;
memset(bmz, 0, sizeof(bmz_config_data_t)); memset(bmz, 0, sizeof(bmz_config_data_t));
bmz->hashfuncs[0] = CMPH_HASH_JENKINS; bmz->hashfuncs[0] = CMPH_HASH_JENKINS;
bmz->hashfuncs[1] = CMPH_HASH_JENKINS; bmz->hashfuncs[1] = CMPH_HASH_JENKINS;

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@ -23,7 +23,7 @@ bmz8_config_data_t *bmz8_config_new(void)
{ {
bmz8_config_data_t *bmz8; bmz8_config_data_t *bmz8;
bmz8 = (bmz8_config_data_t *)malloc(sizeof(bmz8_config_data_t)); bmz8 = (bmz8_config_data_t *)malloc(sizeof(bmz8_config_data_t));
assert(bmz8); if (!bmz8) return NULL;
memset(bmz8, 0, sizeof(bmz8_config_data_t)); memset(bmz8, 0, sizeof(bmz8_config_data_t));
bmz8->hashfuncs[0] = CMPH_HASH_JENKINS; bmz8->hashfuncs[0] = CMPH_HASH_JENKINS;
bmz8->hashfuncs[1] = CMPH_HASH_JENKINS; bmz8->hashfuncs[1] = CMPH_HASH_JENKINS;

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@ -28,6 +28,7 @@ brz_config_data_t *brz_config_new(void)
{ {
brz_config_data_t *brz = NULL; brz_config_data_t *brz = NULL;
brz = (brz_config_data_t *)malloc(sizeof(brz_config_data_t)); brz = (brz_config_data_t *)malloc(sizeof(brz_config_data_t));
if (!brz) return NULL;
brz->algo = CMPH_FCH; brz->algo = CMPH_FCH;
brz->b = 128; brz->b = 128;
brz->hashfuncs[0] = CMPH_HASH_JENKINS; brz->hashfuncs[0] = CMPH_HASH_JENKINS;
@ -982,4 +983,3 @@ cmph_uint32 brz_search_packed(void *packed_mphf, const char *key, cmph_uint32 ke
default: assert(0); default: assert(0);
} }
} }

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@ -17,7 +17,7 @@ struct __buffer_entry_t
buffer_entry_t * buffer_entry_new(cmph_uint32 capacity) buffer_entry_t * buffer_entry_new(cmph_uint32 capacity)
{ {
buffer_entry_t *buff_entry = (buffer_entry_t *)malloc(sizeof(buffer_entry_t)); buffer_entry_t *buff_entry = (buffer_entry_t *)malloc(sizeof(buffer_entry_t));
assert(buff_entry); if (!buff_entry) return NULL;
buff_entry->fd = NULL; buff_entry->fd = NULL;
buff_entry->buff = NULL; buff_entry->buff = NULL;
buff_entry->capacity = capacity; buff_entry->capacity = capacity;

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@ -16,7 +16,7 @@ buffer_manage_t * buffer_manage_new(cmph_uint32 memory_avail, cmph_uint32 nentri
{ {
cmph_uint32 memory_avail_entry, i; cmph_uint32 memory_avail_entry, i;
buffer_manage_t *buff_manage = (buffer_manage_t *)malloc(sizeof(buffer_manage_t)); buffer_manage_t *buff_manage = (buffer_manage_t *)malloc(sizeof(buffer_manage_t));
assert(buff_manage); if (!buff_manage) return NULL;
buff_manage->memory_avail = memory_avail; buff_manage->memory_avail = memory_avail;
buff_manage->buffer_entries = (buffer_entry_t **)calloc((size_t)nentries, sizeof(buffer_entry_t *)); buff_manage->buffer_entries = (buffer_entry_t **)calloc((size_t)nentries, sizeof(buffer_entry_t *));
buff_manage->memory_avail_list = (cmph_uint32 *)calloc((size_t)nentries, sizeof(cmph_uint32)); buff_manage->memory_avail_list = (cmph_uint32 *)calloc((size_t)nentries, sizeof(cmph_uint32));

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@ -16,7 +16,7 @@ buffer_manager_t * buffer_manager_new(cmph_uint32 memory_avail, cmph_uint32 nent
{ {
cmph_uint32 memory_avail_entry, i; cmph_uint32 memory_avail_entry, i;
buffer_manager_t *buff_manager = (buffer_manager_t *)malloc(sizeof(buffer_manager_t)); buffer_manager_t *buff_manager = (buffer_manager_t *)malloc(sizeof(buffer_manager_t));
assert(buff_manager); if (!buff_manager) return NULL;
buff_manager->memory_avail = memory_avail; buff_manager->memory_avail = memory_avail;
buff_manager->buffer_entries = (buffer_entry_t **)calloc((size_t)nentries, sizeof(buffer_entry_t *)); buff_manager->buffer_entries = (buffer_entry_t **)calloc((size_t)nentries, sizeof(buffer_entry_t *));
buff_manager->memory_avail_list = (cmph_uint32 *)calloc((size_t)nentries, sizeof(cmph_uint32)); buff_manager->memory_avail_list = (cmph_uint32 *)calloc((size_t)nentries, sizeof(cmph_uint32));

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@ -18,7 +18,7 @@ chd_config_data_t *chd_config_new(cmph_config_t *mph)
cmph_io_adapter_t *key_source = mph->key_source; cmph_io_adapter_t *key_source = mph->key_source;
chd_config_data_t *chd; chd_config_data_t *chd;
chd = (chd_config_data_t *)malloc(sizeof(chd_config_data_t)); chd = (chd_config_data_t *)malloc(sizeof(chd_config_data_t));
assert(chd); if (!chd) return NULL;
memset(chd, 0, sizeof(chd_config_data_t)); memset(chd, 0, sizeof(chd_config_data_t));
chd->chd_ph = cmph_config_new(key_source); chd->chd_ph = cmph_config_new(key_source);
@ -268,5 +268,3 @@ cmph_uint32 chd_search_packed(void *packed_mphf, const char *key, cmph_uint32 ke
register cmph_uint8 * packed_chd_phf = ((cmph_uint8 *) ptr) + packed_cr_size + sizeof(cmph_uint32); register cmph_uint8 * packed_chd_phf = ((cmph_uint8 *) ptr) + packed_cr_size + sizeof(cmph_uint32);
return _chd_search(packed_chd_phf, ptr, key, keylen); return _chd_search(packed_chd_phf, ptr, key, keylen);
} }

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@ -145,7 +145,7 @@ chd_ph_config_data_t *chd_ph_config_new(void)
{ {
chd_ph_config_data_t *chd_ph; chd_ph_config_data_t *chd_ph;
chd_ph = (chd_ph_config_data_t *)malloc(sizeof(chd_ph_config_data_t)); chd_ph = (chd_ph_config_data_t *)malloc(sizeof(chd_ph_config_data_t));
assert(chd_ph); if (!chd_ph) return NULL;
memset(chd_ph, 0, sizeof(chd_ph_config_data_t)); memset(chd_ph, 0, sizeof(chd_ph_config_data_t));
chd_ph->hashfunc = CMPH_HASH_JENKINS; chd_ph->hashfunc = CMPH_HASH_JENKINS;
@ -983,6 +983,3 @@ cmph_uint32 chd_ph_search_packed(void *packed_mphf, const char *key, cmph_uint32
position = (cmph_uint32)((f + ((cmph_uint64 )h)*probe0_num + probe1_num) % n); position = (cmph_uint32)((f + ((cmph_uint64 )h)*probe0_num + probe1_num) % n);
return position; return position;
} }

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@ -21,7 +21,7 @@ chm_config_data_t *chm_config_new(void)
{ {
chm_config_data_t *chm = NULL; chm_config_data_t *chm = NULL;
chm = (chm_config_data_t *)malloc(sizeof(chm_config_data_t)); chm = (chm_config_data_t *)malloc(sizeof(chm_config_data_t));
assert(chm); if (!chm) return NULL;
memset(chm, 0, sizeof(chm_config_data_t)); memset(chm, 0, sizeof(chm_config_data_t));
chm->hashfuncs[0] = CMPH_HASH_JENKINS; chm->hashfuncs[0] = CMPH_HASH_JENKINS;
chm->hashfuncs[1] = CMPH_HASH_JENKINS; chm->hashfuncs[1] = CMPH_HASH_JENKINS;

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@ -65,5 +65,3 @@ cmph_t *__cmph_load(FILE *f)
return mphf; return mphf;
} }

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@ -4,6 +4,7 @@
djb2_state_t *djb2_state_new() djb2_state_t *djb2_state_new()
{ {
djb2_state_t *state = (djb2_state_t *)malloc(sizeof(djb2_state_t)); djb2_state_t *state = (djb2_state_t *)malloc(sizeof(djb2_state_t));
if (!djb2_state) return NULL;
state->hashfunc = CMPH_HASH_DJB2; state->hashfunc = CMPH_HASH_DJB2;
return state; return state;
} }

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@ -23,7 +23,7 @@ fch_config_data_t *fch_config_new()
{ {
fch_config_data_t *fch; fch_config_data_t *fch;
fch = (fch_config_data_t *)malloc(sizeof(fch_config_data_t)); fch = (fch_config_data_t *)malloc(sizeof(fch_config_data_t));
assert(fch); if (!fch) return NULL;
memset(fch, 0, sizeof(fch_config_data_t)); memset(fch, 0, sizeof(fch_config_data_t));
fch->hashfuncs[0] = CMPH_HASH_JENKINS; fch->hashfuncs[0] = CMPH_HASH_JENKINS;
fch->hashfuncs[1] = CMPH_HASH_JENKINS; fch->hashfuncs[1] = CMPH_HASH_JENKINS;
@ -514,4 +514,3 @@ cmph_uint32 fch_search_packed(void *packed_mphf, const char *key, cmph_uint32 ke
h1 = mixh10h11h12 (b, p1, p2, h1); h1 = mixh10h11h12 (b, p1, p2, h1);
return (h2 + g_ptr[h1]) % m; return (h2 + g_ptr[h1]) % m;
} }

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@ -116,7 +116,7 @@ fch_buckets_t * fch_buckets_new(cmph_uint32 nbuckets)
{ {
cmph_uint32 i; cmph_uint32 i;
fch_buckets_t *buckets = (fch_buckets_t *)malloc(sizeof(fch_buckets_t)); fch_buckets_t *buckets = (fch_buckets_t *)malloc(sizeof(fch_buckets_t));
assert(buckets); if (!buckets) return NULL;
buckets->values = (fch_bucket_t *)calloc((size_t)nbuckets, sizeof(fch_bucket_t)); buckets->values = (fch_bucket_t *)calloc((size_t)nbuckets, sizeof(fch_bucket_t));
for (i = 0; i < nbuckets; i++) fch_bucket_new(buckets->values + i); for (i = 0; i < nbuckets; i++) fch_bucket_new(buckets->values + i);
assert(buckets->values); assert(buckets->values);

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@ -4,6 +4,7 @@
fnv_state_t *fnv_state_new() fnv_state_t *fnv_state_new()
{ {
fnv_state_t *state = (fnv_state_t *)malloc(sizeof(fnv_state_t)); fnv_state_t *state = (fnv_state_t *)malloc(sizeof(fnv_state_t));
if (!state) return NULL;
state->hashfunc = CMPH_HASH_FNV; state->hashfunc = CMPH_HASH_FNV;
return state; return state;
} }
@ -41,6 +42,7 @@ void fnv_state_dump(fnv_state_t *state, char **buf, cmph_uint32 *buflen)
fnv_state_t * fnv_state_copy(fnv_state_t *src_state) fnv_state_t * fnv_state_copy(fnv_state_t *src_state)
{ {
fnv_state_t *dest_state = (fnv_state_t *)malloc(sizeof(fnv_state_t)); fnv_state_t *dest_state = (fnv_state_t *)malloc(sizeof(fnv_state_t));
if (!dest_state) return NULL;
dest_state->hashfunc = src_state->hashfunc; dest_state->hashfunc = src_state->hashfunc;
return dest_state; return dest_state;
} }

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@ -334,5 +334,3 @@ cmph_uint32 graph_next_neighbor(graph_t *g, graph_iterator_t* it)
it->edge = g->next[it->edge]; it->edge = g->next[it->edge];
return ret; return ret;
} }

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@ -87,6 +87,7 @@ acceptable. Do NOT use for cryptographic purposes.
jenkins_state_t *jenkins_state_new(cmph_uint32 size) //size of hash table jenkins_state_t *jenkins_state_new(cmph_uint32 size) //size of hash table
{ {
jenkins_state_t *state = (jenkins_state_t *)malloc(sizeof(jenkins_state_t)); jenkins_state_t *state = (jenkins_state_t *)malloc(sizeof(jenkins_state_t));
if (!state) return NULL;
DEBUGP("Initializing jenkins hash\n"); DEBUGP("Initializing jenkins hash\n");
state->seed = ((cmph_uint32)rand() % size); state->seed = ((cmph_uint32)rand() % size);
return state; return state;

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@ -12,6 +12,7 @@ struct __linear_string_map_t {
lsmap_t *lsmap_new() { lsmap_t *lsmap_new() {
lsmap_t* lsmap = (lsmap_t*)malloc(sizeof(lsmap_t)); lsmap_t* lsmap = (lsmap_t*)malloc(sizeof(lsmap_t));
if (!lsmap) return NULL;
lsmap->key = "dummy node"; lsmap->key = "dummy node";
lsmap->next = NULL; lsmap->next = NULL;
return lsmap; return lsmap;
@ -65,4 +66,3 @@ void lsmap_destroy(lsmap_t *lsmap) {
} }
free(lsmap); free(lsmap);
} }

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@ -4,6 +4,7 @@
sdbm_state_t *sdbm_state_new() sdbm_state_t *sdbm_state_new()
{ {
sdbm_state_t *state = (sdbm_state_t *)malloc(sizeof(sdbm_state_t)); sdbm_state_t *state = (sdbm_state_t *)malloc(sizeof(sdbm_state_t));
if (!state) return NULL;
state->hashfunc = CMPH_HASH_SDBM; state->hashfunc = CMPH_HASH_SDBM;
return state; return state;
} }

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@ -12,7 +12,7 @@ vqueue_t * vqueue_new(cmph_uint32 capacity)
{ {
size_t capacity_plus_one = capacity + 1; size_t capacity_plus_one = capacity + 1;
vqueue_t *q = (vqueue_t *)malloc(sizeof(vqueue_t)); vqueue_t *q = (vqueue_t *)malloc(sizeof(vqueue_t));
assert(q); if (!q) return NULL;
q->values = (cmph_uint32 *)calloc(capacity_plus_one, sizeof(cmph_uint32)); q->values = (cmph_uint32 *)calloc(capacity_plus_one, sizeof(cmph_uint32));
q->beg = q->end = 0; q->beg = q->end = 0;
q->capacity = (cmph_uint32) capacity_plus_one; q->capacity = (cmph_uint32) capacity_plus_one;

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@ -76,4 +76,3 @@ void vstack_reserve(vstack_t *stack, cmph_uint32 size)
DEBUGP("Increased\n"); DEBUGP("Increased\n");
} }
} }