Update libmaxminddb to v1.3.2 (#526)
* Update libmaxminddb to v1.3.2 * Move PACKAGE_VERSION declaration
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@ -13,6 +13,7 @@ binary.compiler.defines += [
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binary.sources = [
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'../../public/sdk/amxxmodule.cpp',
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'../../third_party/libmaxminddb/data-pool.c',
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'../../third_party/libmaxminddb/maxminddb.c',
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'geoip_main.cpp',
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'geoip_natives.cpp',
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@ -102,6 +102,7 @@
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</Link>
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</ItemDefinitionGroup>
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<ItemGroup>
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<ClCompile Include="..\..\..\third_party\libmaxminddb\data-pool.c" />
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<ClCompile Include="..\..\..\third_party\libmaxminddb\maxminddb.c" />
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<ClCompile Include="..\geoip_main.cpp" />
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<ClCompile Include="..\geoip_natives.cpp" />
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@ -109,6 +110,7 @@
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<ClCompile Include="..\..\..\public\sdk\amxxmodule.cpp" />
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</ItemGroup>
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<ItemGroup>
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<ClInclude Include="..\..\..\third_party\libmaxminddb\data-pool.h" />
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<ClInclude Include="..\..\..\third_party\libmaxminddb\maxminddb-compat-util.h" />
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<ClInclude Include="..\..\..\third_party\libmaxminddb\maxminddb.h" />
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<ClInclude Include="..\..\..\third_party\libmaxminddb\maxminddb_config.h" />
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@ -38,6 +38,9 @@
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<ClCompile Include="..\..\..\third_party\libmaxminddb\maxminddb.c">
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<Filter>GeoIP2</Filter>
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</ClCompile>
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<ClCompile Include="..\..\..\third_party\libmaxminddb\data-pool.c">
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<Filter>GeoIP2</Filter>
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</ClCompile>
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</ItemGroup>
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<ItemGroup>
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<ClInclude Include="..\geoip_util.h">
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@ -64,6 +67,9 @@
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<ClInclude Include="..\..\..\third_party\libmaxminddb\maxminddb-compat-util.h">
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<Filter>GeoIP2</Filter>
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</ClInclude>
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<ClInclude Include="..\..\..\third_party\libmaxminddb\data-pool.h">
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<Filter>GeoIP2</Filter>
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</ClInclude>
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</ItemGroup>
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<ItemGroup>
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<None Include="..\..\..\plugins\include\geoip.inc">
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180
third_party/libmaxminddb/data-pool.c
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180
third_party/libmaxminddb/data-pool.c
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@ -0,0 +1,180 @@
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#include "data-pool.h"
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#include "maxminddb.h"
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#include <stdbool.h>
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#include <stddef.h>
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#include <stdlib.h>
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static bool can_multiply(size_t const, size_t const, size_t const);
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// Allocate an MMDB_data_pool_s. It initially has space for size
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// MMDB_entry_data_list_s structs.
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MMDB_data_pool_s *data_pool_new(size_t const size)
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{
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MMDB_data_pool_s *const pool = calloc(1, sizeof(MMDB_data_pool_s));
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if (!pool) {
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return NULL;
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}
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if (size == 0 ||
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!can_multiply(SIZE_MAX, size, sizeof(MMDB_entry_data_list_s))) {
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data_pool_destroy(pool);
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return NULL;
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}
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pool->size = size;
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pool->blocks[0] = calloc(pool->size, sizeof(MMDB_entry_data_list_s));
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if (!pool->blocks[0]) {
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data_pool_destroy(pool);
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return NULL;
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}
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pool->blocks[0]->pool = pool;
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pool->sizes[0] = size;
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pool->block = pool->blocks[0];
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return pool;
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}
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// Determine if we can multiply m*n. We can do this if the result will be below
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// the given max. max will typically be SIZE_MAX.
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//
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// We want to know if we'll wrap around.
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static bool can_multiply(size_t const max, size_t const m, size_t const n)
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{
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if (m == 0) {
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return false;
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}
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return n <= max / m;
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}
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// Clean up the data pool.
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void data_pool_destroy(MMDB_data_pool_s *const pool)
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{
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if (!pool) {
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return;
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}
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for (size_t i = 0; i <= pool->index; i++) {
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free(pool->blocks[i]);
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}
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free(pool);
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}
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// Claim a new struct from the pool. Doing this may cause the pool's size to
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// grow.
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MMDB_entry_data_list_s *data_pool_alloc(MMDB_data_pool_s *const pool)
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{
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if (!pool) {
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return NULL;
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}
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if (pool->used < pool->size) {
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MMDB_entry_data_list_s *const element = pool->block + pool->used;
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pool->used++;
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return element;
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}
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// Take it from a new block of memory.
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size_t const new_index = pool->index + 1;
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if (new_index == DATA_POOL_NUM_BLOCKS) {
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// See the comment about not growing this on DATA_POOL_NUM_BLOCKS.
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return NULL;
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}
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if (!can_multiply(SIZE_MAX, pool->size, 2)) {
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return NULL;
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}
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size_t const new_size = pool->size * 2;
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if (!can_multiply(SIZE_MAX, new_size, sizeof(MMDB_entry_data_list_s))) {
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return NULL;
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}
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pool->blocks[new_index] = calloc(new_size, sizeof(MMDB_entry_data_list_s));
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if (!pool->blocks[new_index]) {
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return NULL;
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}
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// We don't need to set this, but it's useful for introspection in tests.
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pool->blocks[new_index]->pool = pool;
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pool->index = new_index;
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pool->block = pool->blocks[pool->index];
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pool->size = new_size;
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pool->sizes[pool->index] = pool->size;
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MMDB_entry_data_list_s *const element = pool->block;
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pool->used = 1;
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return element;
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}
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// Turn the structs in the array-like pool into a linked list.
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//
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// Before calling this function, the list isn't linked up.
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MMDB_entry_data_list_s *data_pool_to_list(MMDB_data_pool_s *const pool)
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{
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if (!pool) {
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return NULL;
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}
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if (pool->index == 0 && pool->used == 0) {
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return NULL;
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}
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for (size_t i = 0; i <= pool->index; i++) {
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MMDB_entry_data_list_s *const block = pool->blocks[i];
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size_t size = pool->sizes[i];
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if (i == pool->index) {
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size = pool->used;
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}
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for (size_t j = 0; j < size - 1; j++) {
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MMDB_entry_data_list_s *const cur = block + j;
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cur->next = block + j + 1;
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}
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if (i < pool->index) {
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MMDB_entry_data_list_s *const last = block + size - 1;
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last->next = pool->blocks[i + 1];
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}
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}
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return pool->blocks[0];
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}
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#ifdef TEST_DATA_POOL
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#include <libtap/tap.h>
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#include <maxminddb_test_helper.h>
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static void test_can_multiply(void);
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int main(void)
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{
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plan(NO_PLAN);
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test_can_multiply();
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done_testing();
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}
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static void test_can_multiply(void)
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{
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{
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ok(can_multiply(SIZE_MAX, 1, SIZE_MAX), "1*SIZE_MAX is ok");
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}
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{
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ok(!can_multiply(SIZE_MAX, 2, SIZE_MAX), "2*SIZE_MAX is not ok");
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}
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{
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ok(can_multiply(SIZE_MAX, 10240, sizeof(MMDB_entry_data_list_s)),
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"1024 entry_data_list_s's are okay");
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}
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}
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#endif
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52
third_party/libmaxminddb/data-pool.h
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52
third_party/libmaxminddb/data-pool.h
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#ifndef DATA_POOL_H
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#define DATA_POOL_H
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#include "maxminddb.h"
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#include <stdbool.h>
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#include <stddef.h>
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// This should be large enough that we never need to grow the array of pointers
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// to blocks. 32 is enough. Even starting out of with size 1 (1 struct), the
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// 32nd element alone will provide 2**32 structs as we exponentially increase
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// the number in each block. Being confident that we do not have to grow the
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// array lets us avoid writing code to do that. That code would be risky as it
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// would rarely be hit and likely not be well tested.
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#define DATA_POOL_NUM_BLOCKS 32
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// A pool of memory for MMDB_entry_data_list_s structs. This is so we can
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// allocate multiple up front rather than one at a time for performance
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// reasons.
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//
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// The order you add elements to it (by calling data_pool_alloc()) ends up as
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// the order of the list.
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//
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// The memory only grows. There is no support for releasing an element you take
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// back to the pool.
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typedef struct MMDB_data_pool_s {
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// Index of the current block we're allocating out of.
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size_t index;
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// The size of the current block, counting by structs.
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size_t size;
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// How many used in the current block, counting by structs.
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size_t used;
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// The current block we're allocating out of.
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MMDB_entry_data_list_s *block;
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// The size of each block.
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size_t sizes[DATA_POOL_NUM_BLOCKS];
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// An array of pointers to blocks of memory holding space for list
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// elements.
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MMDB_entry_data_list_s *blocks[DATA_POOL_NUM_BLOCKS];
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} MMDB_data_pool_s;
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MMDB_data_pool_s *data_pool_new(size_t const);
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void data_pool_destroy(MMDB_data_pool_s *const);
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MMDB_entry_data_list_s *data_pool_alloc(MMDB_data_pool_s *const);
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MMDB_entry_data_list_s *data_pool_to_list(MMDB_data_pool_s *const);
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#endif
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723
third_party/libmaxminddb/maxminddb.c
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723
third_party/libmaxminddb/maxminddb.c
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File diff suppressed because it is too large
Load Diff
28
third_party/libmaxminddb/maxminddb.h
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28
third_party/libmaxminddb/maxminddb.h
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@ -5,10 +5,21 @@ extern "C" {
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#ifndef MAXMINDDB_H
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#define MAXMINDDB_H
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/* Request POSIX.1-2008. However, we want to remain compatible with
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* POSIX.1-2001 (since we have been historically and see no reason to drop
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* compatibility). By requesting POSIX.1-2008, we can conditionally use
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* features provided by that standard if the implementation provides it. We can
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* check for what the implementation provides by checking the _POSIX_VERSION
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* macro after including unistd.h. If a feature is in POSIX.1-2008 but not
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* POSIX.1-2001, check that macro before using the feature (or check for the
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* feature directly if possible). */
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#ifndef _POSIX_C_SOURCE
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#define _POSIX_C_SOURCE 200112L
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#define _POSIX_C_SOURCE 200809L
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#endif
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/* libmaxminddb package version from configure */
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#define PACKAGE_VERSION "1.3.2"
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#include "maxminddb_config.h"
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#include <stdarg.h>
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#include <stdbool.h>
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@ -24,7 +35,7 @@ typedef ADDRESS_FAMILY sa_family_t;
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#if defined(_MSC_VER)
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/* MSVC doesn't define signed size_t, copy it from configure */
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#define ssize_t int
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#define ssize_t SSIZE_T
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/* MSVC doesn't support restricted pointers */
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#define restrict
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#include <sys/socket.h>
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#endif
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/* libmaxminddb package version from configure */
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#define PACKAGE_VERSION "1.1.0"
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#define MMDB_DATA_TYPE_EXTENDED (0)
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#define MMDB_DATA_TYPE_POINTER (1)
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#define MMDB_DATA_TYPE_UTF8_STRING (2)
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#define MMDB_DATA_TYPE_BOOLEAN (14)
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#define MMDB_DATA_TYPE_FLOAT (15)
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#define MMDB_RECORD_TYPE_SEARCH_NODE (0)
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#define MMDB_RECORD_TYPE_EMPTY (1)
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#define MMDB_RECORD_TYPE_DATA (2)
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#define MMDB_RECORD_TYPE_INVALID (3)
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/* flags for open */
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#define MMDB_MODE_MMAP (1)
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#define MMDB_MODE_MASK (7)
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typedef struct MMDB_entry_data_list_s {
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MMDB_entry_data_s entry_data;
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struct MMDB_entry_data_list_s *next;
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void *pool;
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} MMDB_entry_data_list_s;
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typedef struct MMDB_description_s {
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typedef struct MMDB_search_node_s {
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uint64_t left_record;
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uint64_t right_record;
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uint8_t left_record_type;
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uint8_t right_record_type;
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MMDB_entry_s left_record_entry;
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MMDB_entry_s right_record_entry;
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} MMDB_search_node_s;
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/* *INDENT-OFF* */
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