|  | @@ -5626,10 +5626,10 @@ test_config_compute_max_mem_in_queues(void *data)
 | 
	
		
			
				|  |  |  
 | 
	
		
			
				|  |  |  #if SIZEOF_VOID_P >= 8
 | 
	
		
			
				|  |  |    /* We are on a 64-bit system. */
 | 
	
		
			
				|  |  | -  tt_int_op(compute_real_max_mem_in_queues(0, 0), OP_EQ, GIGABYTE(8));
 | 
	
		
			
				|  |  | +  tt_u64_op(compute_real_max_mem_in_queues(0, 0), OP_EQ, GIGABYTE(8));
 | 
	
		
			
				|  |  |  #else
 | 
	
		
			
				|  |  |    /* We are on a 32-bit system. */
 | 
	
		
			
				|  |  | -  tt_int_op(compute_real_max_mem_in_queues(0, 0), OP_EQ, GIGABYTE(1));
 | 
	
		
			
				|  |  | +  tt_u64_op(compute_real_max_mem_in_queues(0, 0), OP_EQ, GIGABYTE(1));
 | 
	
		
			
				|  |  |  #endif
 | 
	
		
			
				|  |  |  
 | 
	
		
			
				|  |  |    /* We are able to detect the amount of RAM on the system. */
 | 
	
	
		
			
				|  | @@ -5639,7 +5639,7 @@ test_config_compute_max_mem_in_queues(void *data)
 | 
	
		
			
				|  |  |    total_system_memory_output = GIGABYTE(1);
 | 
	
		
			
				|  |  |  
 | 
	
		
			
				|  |  |    /* We have 0.75 * RAM available. */
 | 
	
		
			
				|  |  | -  tt_int_op(compute_real_max_mem_in_queues(0, 0), OP_EQ,
 | 
	
		
			
				|  |  | +  tt_u64_op(compute_real_max_mem_in_queues(0, 0), OP_EQ,
 | 
	
		
			
				|  |  |              3 * (GIGABYTE(1) / 4));
 | 
	
		
			
				|  |  |  
 | 
	
		
			
				|  |  |    /* We are running on a tiny machine with 256 MB of RAM. */
 | 
	
	
		
			
				|  | @@ -5648,28 +5648,30 @@ test_config_compute_max_mem_in_queues(void *data)
 | 
	
		
			
				|  |  |    /* We will now enforce a minimum of 256 MB of RAM available for the
 | 
	
		
			
				|  |  |     * MaxMemInQueues here, even though we should only have had 0.75 * 256 = 192
 | 
	
		
			
				|  |  |     * MB available. */
 | 
	
		
			
				|  |  | -  tt_int_op(compute_real_max_mem_in_queues(0, 0), OP_EQ, MEGABYTE(256));
 | 
	
		
			
				|  |  | +  tt_u64_op(compute_real_max_mem_in_queues(0, 0), OP_EQ, MEGABYTE(256));
 | 
	
		
			
				|  |  |  
 | 
	
		
			
				|  |  | +#if SIZEOF_SIZE_T > 4
 | 
	
		
			
				|  |  |    /* We are running on a machine with 8 GB of RAM. */
 | 
	
		
			
				|  |  |    total_system_memory_output = GIGABYTE(8);
 | 
	
		
			
				|  |  |  
 | 
	
		
			
				|  |  |    /* We will have 0.4 * RAM available. */
 | 
	
		
			
				|  |  | -  tt_int_op(compute_real_max_mem_in_queues(0, 0), OP_EQ,
 | 
	
		
			
				|  |  | +  tt_u64_op(compute_real_max_mem_in_queues(0, 0), OP_EQ,
 | 
	
		
			
				|  |  |              2 * (GIGABYTE(8) / 5));
 | 
	
		
			
				|  |  |  
 | 
	
		
			
				|  |  |    /* We are running on a machine with 16 GB of RAM. */
 | 
	
		
			
				|  |  |    total_system_memory_output = GIGABYTE(16);
 | 
	
		
			
				|  |  |  
 | 
	
		
			
				|  |  |    /* We will have 0.4 * RAM available. */
 | 
	
		
			
				|  |  | -  tt_int_op(compute_real_max_mem_in_queues(0, 0), OP_EQ,
 | 
	
		
			
				|  |  | +  tt_u64_op(compute_real_max_mem_in_queues(0, 0), OP_EQ,
 | 
	
		
			
				|  |  |              2 * (GIGABYTE(16) / 5));
 | 
	
		
			
				|  |  |  
 | 
	
		
			
				|  |  |    /* We are running on a machine with 32 GB of RAM. */
 | 
	
		
			
				|  |  |    total_system_memory_output = GIGABYTE(32);
 | 
	
		
			
				|  |  |  
 | 
	
		
			
				|  |  |    /* We will at maximum get MAX_DEFAULT_MEMORY_QUEUE_SIZE here. */
 | 
	
		
			
				|  |  | -  tt_int_op(compute_real_max_mem_in_queues(0, 0), OP_EQ,
 | 
	
		
			
				|  |  | +  tt_u64_op(compute_real_max_mem_in_queues(0, 0), OP_EQ,
 | 
	
		
			
				|  |  |              MAX_DEFAULT_MEMORY_QUEUE_SIZE);
 | 
	
		
			
				|  |  | +#endif
 | 
	
		
			
				|  |  |  
 | 
	
		
			
				|  |  |   done:
 | 
	
		
			
				|  |  |    UNMOCK(get_total_system_memory);
 |